diff options
Diffstat (limited to 'package/kernel/lantiq')
139 files changed, 70448 insertions, 0 deletions
diff --git a/package/kernel/lantiq/ltq-adsl-app/Config.in b/package/kernel/lantiq/ltq-adsl-app/Config.in new file mode 100644 index 0000000..728fe65 --- /dev/null +++ b/package/kernel/lantiq/ltq-adsl-app/Config.in @@ -0,0 +1,9 @@ +config LTQ_DSL_ENABLE_SOAP + bool "Enable SOAP support" + depends on PACKAGE_ltq-dsl-app + default n + +config LTQ_DSL_ENABLE_DSL_EVENT_POLLING + bool "Include Event Polling support" + depends on PACKAGE_ltq-dsl-app + default n diff --git a/package/kernel/lantiq/ltq-adsl-app/Makefile b/package/kernel/lantiq/ltq-adsl-app/Makefile new file mode 100644 index 0000000..92445e5 --- /dev/null +++ b/package/kernel/lantiq/ltq-adsl-app/Makefile @@ -0,0 +1,98 @@ +# +# Copyright (C) 2011-2012 OpenWrt.org +# +# This is free software, licensed under the GNU General Public License v2. +# See /LICENSE for more information. +# + +include $(TOPDIR)/rules.mk +include $(INCLUDE_DIR)/kernel.mk + +PKG_NAME:=dsl_cpe_control_danube +PKG_VERSION:=3.24.4.4 +PKG_RELEASE:=2 +PKG_SOURCE:=$(PKG_NAME)-$(PKG_VERSION).tar.gz +PKG_BUILD_DIR:=$(BUILD_DIR)/dsl_cpe_control-$(PKG_VERSION) +PKG_SOURCE_URL:=http://mirror2.openwrt.org/sources/ +PKG_MD5SUM:=ee315306626b68794d3d3636dabfe161 +PKG_MAINTAINER:=John Crispin <blogic@openwrt.org> + +PKG_FIXUP:=autoreconf + +PKG_CONFIG_DEPENDS:=\ + CONFIG_LTQ_DSL_ENABLE_SOAP \ + CONFIG_LTQ_DSL_ENABLE_DSL_EVENT_POLLING + +PKG_BUILD_DEPENDS:=TARGET_lantiq_xway:kmod-ltq-adsl-danube TARGET_lantiq_ase:kmod-ltq-adsl-ase + +include $(INCLUDE_DIR)/package.mk + +define Package/ltq-adsl-app + SECTION:=net + CATEGORY:=Network + TITLE:=Lantiq DSL userland tool + URL:=http://www.lantiq.com/ + DEPENDS:=@(TARGET_lantiq_xway||TARGET_lantiq_ase) +libpthread + MENU:=1 +endef + +define Package/ltq-adsl-app/description + Infineon DSL CPE API for Amazon SE, Danube and Vinax. +endef + +define Package/ltq-adsl-app/config + source "$(SOURCE)/Config.in" +endef + +LTQ_DSL_MAX_DEVICE=1 +LTQ_DSL_LINES_PER_DEVICE=1 +LTQ_DSL_CHANNELS_PER_LINE=1 + +CONFIGURE_ARGS += \ + --with-max-device="$(LTQ_DSL_MAX_DEVICE)" \ + --with-lines-per-device="$(LTQ_DSL_LINES_PER_DEVICE)" \ + --with-channels-per-line="$(LTQ_DSL_CHANNELS_PER_LINE)" \ + --enable-danube \ + --enable-driver-include="-I$(STAGING_DIR)/usr/include/adsl/" \ + --enable-debug-prints \ + --enable-add-appl-cflags="-DMAX_CLI_PIPES=2" \ + --enable-cli-support \ + --enable-cmv-scripts \ + --enable-debug-tool-interface \ + --enable-adsl-led \ + --enable-dsl-ceoc \ + --enable-script-notification \ + --enable-dsl-pm \ + --enable-dsl-pm-total \ + --enable-dsl-pm-history \ + --enable-dsl-pm-showtime \ + --enable-dsl-pm-channel-counters \ + --enable-dsl-pm-datapath-counters \ + --enable-dsl-pm-line-counters \ + --enable-dsl-pm-channel-thresholds \ + --enable-dsl-pm-datapath-thresholds \ + --enable-dsl-pm-line-thresholds \ + --enable-dsl-pm-optional-parameters + +ifeq ($(CONFIG_LTQ_DSL_ENABLE_SOAP),y) +CONFIGURE_ARGS += \ + --enable-soap-support +endif + +ifeq ($(CONFIG_LTQ_DSL_ENABLE_DSL_EVENT_POLLING),y) +CONFIGURE_ARGS += \ + --enable-dsl-event-polling +endif + +TARGET_CFLAGS += -I$(LINUX_DIR)/include + +define Package/ltq-adsl-app/install + $(INSTALL_DIR) $(1)/etc/init.d + $(INSTALL_BIN) ./files/dsl_control $(1)/etc/init.d/ + + $(INSTALL_DIR) $(1)/sbin + $(INSTALL_BIN) $(PKG_BUILD_DIR)/src/dsl_cpe_control $(1)/sbin + $(INSTALL_BIN) ./files/dsl_notify.sh $(1)/sbin +endef + +$(eval $(call BuildPackage,ltq-adsl-app)) diff --git a/package/kernel/lantiq/ltq-adsl-app/files/dsl_control b/package/kernel/lantiq/ltq-adsl-app/files/dsl_control new file mode 100644 index 0000000..e8a286f --- /dev/null +++ b/package/kernel/lantiq/ltq-adsl-app/files/dsl_control @@ -0,0 +1,311 @@ +#!/bin/sh /etc/rc.common +# Copyright (C) 2012 OpenWrt.org + +START=99 + +EXTRA_COMMANDS="status lucistat" +EXTRA_HELP=" status Get DSL status information + lucistat Get status information if lua friendly format" + +SERVICE_DAEMONIZE=1 +SERVICE_WRITE_PID=1 + +# +# Basic functions to send CLI commands to the dsl_cpe_control daemon +# +dsl_cmd() { + killall -0 dsl_cpe_control && ( + echo "$@" > /tmp/pipe/dsl_cpe0_cmd + cat /tmp/pipe/dsl_cpe0_ack + ) +} +dsl_val() { + echo $(expr "$1" : '.*'$2'=\([-\.[:alnum:]]*\).*') +} + +# +# Simple divide by 10 routine to cope with one decimal place +# +dbt() { + local a=$(expr $1 / 10) + local b=$(expr $1 % 10) + echo "${a}.${b}" +} +# +# Take a number and convert to k or meg +# +scale() { + local val=$1 + local a + local b + + if [ "$val" -gt 1000000 ]; then + a=$(expr $val / 1000) + b=$(expr $a % 1000) + a=$(expr $a / 1000) + printf "%d.%03d Mb" ${a} ${b} + elif [ "$val" -gt 1000 ]; then + a=$(expr $val / 1000) + printf "%d Kb" ${a} + else + echo "${val} b" + fi +} + +# +# Read the data rates for both directions +# +data_rates() { + local csg + local dru + local drd + local sdru + local sdrd + + csg=$(dsl_cmd g997csg 0 1) + drd=$(dsl_val "$csg" ActualDataRate) + + csg=$(dsl_cmd g997csg 0 0) + dru=$(dsl_val "$csg" ActualDataRate) + + [ -z "$drd" ] && drd=0 + [ -z "$dru" ] && dru=0 + + sdrd=$(scale $drd) + sdru=$(scale $dru) + + if [ "$action" = "lucistat" ]; then + echo "dsl.data_rate_down=$drd" + echo "dsl.data_rate_up=$dru" + echo "dsl.data_rate_down_s=\"$sdrd\"" + echo "dsl.data_rate_up_s=\"$sdru\"" + else + echo "Data Rate: ${sdrd}/s / ${sdru}/s" + fi +} + +# +# Chipset +# +chipset() { + local vig + local cs + local csv + + vig=$(dsl_cmd vig) + cs=$(dsl_val "$vig" DSL_ChipSetType) + csv=$(dsl_val "$vig" DSL_ChipSetHWVersion) + + if [ "$action" = "lucistat" ]; then + echo "dsl.chipset=\"${cs} ${csv}\"" + else + echo "Chipset: ${cs} ${csv}" + fi +} + +# +# Work out how long the line has been up +# +line_uptime() { + local ccsg + local et + local etr + local d + local h + local m + local s + local rc="" + + ccsg=$(dsl_cmd pmccsg 0 0 0) + et=$(dsl_val "$ccsg" nElapsedTime) + + [ -z "$et" ] && et=0 + + if [ "$action" = "lucistat" ]; then + echo "dsl.line_uptime=${et}" + return + fi + + d=$(expr $et / 86400) + etr=$(expr $et % 86400) + h=$(expr $etr / 3600) + etr=$(expr $etr % 3600) + m=$(expr $etr / 60) + s=$(expr $etr % 60) + + + [ "${d}${h}${m}${s}" -ne 0 ] && rc="${s}s" + [ "${d}${h}${m}" -ne 0 ] && rc="${m}m ${rc}" + [ "${d}${h}" -ne 0 ] && rc="${h}h ${rc}" + [ "${d}" -ne 0 ] && rc="${d}d ${rc}" + + [ -z "$rc" ] && rc="down" + echo "Line Uptime: ${rc}" +} + +# +# Get noise and attenuation figures +# +line_data() { + local lsg + local latnu + local latnd + local snru + local snrd + + lsg=$(dsl_cmd g997lsg 1 1) + latnd=$(dsl_val "$lsg" LATN) + snrd=$(dsl_val "$lsg" SNR) + + lsg=$(dsl_cmd g997lsg 0 1) + latnu=$(dsl_val "$lsg" LATN) + snru=$(dsl_val "$lsg" SNR) + + [ -z "$latnd" ] && latnd=0 + [ -z "$latnu" ] && latnu=0 + [ -z "$snrd" ] && snrd=0 + [ -z "$snru" ] && snru=0 + + latnd=$(dbt $latnd) + latnu=$(dbt $latnu) + snrd=$(dbt $snrd) + snru=$(dbt $snru) + + if [ "$action" = "lucistat" ]; then + echo "dsl.line_attenuation_down=$latnd" + echo "dsl.line_attenuation_up=$latnu" + echo "dsl.noise_margin_down=$snrd" + echo "dsl.noise_margin_up=$snru" + else + echo "Line Attenuation: ${latnd}dB / ${latnu}dB" + echo "Noise Margin: ${snrd}dB / ${snru}dB" + fi +} + +# +# Is the line up? Or what state is it in? +# +line_state() { + local lsg=$(dsl_cmd lsg) + local ls=$(dsl_val "$lsg" nLineState); + local s; + + case "$ls" in + "0x0") s="not initialized" ;; + "0x1") s="exception" ;; + "0x10") s="not updated" ;; + "0xff") s="idle request" ;; + "0x100") s="idle" ;; + "0x1ff") s="silent request" ;; + "0x200") s="silent" ;; + "0x300") s="handshake" ;; + "0x380") s="full_init" ;; + "0x400") s="discovery" ;; + "0x500") s="training" ;; + "0x600") s="analysis" ;; + "0x700") s="exchange" ;; + "0x800") s="showtime_no_sync" ;; + "0x801") s="showtime_tc_sync" ;; + "0x900") s="fastretrain" ;; + "0xa00") s="lowpower_l2" ;; + "0xb00") s="loopdiagnostic active" ;; + "0xb10") s="loopdiagnostic data exchange" ;; + "0xb20") s="loopdiagnostic data request" ;; + "0xc00") s="loopdiagnostic complete" ;; + "0x1000000") s="test" ;; + "0xd00") s="resync" ;; + "0x3c0") s="short init entry" ;; + "") s="not running daemon"; ls="0xfff" ;; + *) s="unknown" ;; + esac + + if [ $action = "lucistat" ]; then + echo "dsl.line_state_num=$ls" + echo "dsl.line_state_detail=\"$s\"" + if [ "$ls" = "0x801" ]; then + echo "dsl.line_state=\"UP\"" + else + echo "dsl.line_state=\"DOWN\"" + fi + else + if [ "$ls" = "0x801" ]; then + echo "Line State: UP [$ls: $s]" + else + echo "Line State: DOWN [$ls: $s]" + fi + fi +} + +# +# Main status routine +# +status() { + chipset + line_state + data_rates + line_data + line_uptime +} + +# +# Luci (lua) compatible version that's easy to parse +# +lucistat() { + echo "local dsl={}" + status + echo "return dsl" +} + + +annex_b=10_00_10_00_00_04_00_00 +annex_bdmt=10_00_00_00_00_00_00_00 +annex_b2=00_00_10_00_00_00_00_00 +annex_b2p=00_00_00_00_00_04_00_00 +annex_a=04_01_04_00_00_01_00_00 +annex_at1=01_00_00_00_00_00_00_00 +annex_alite=00_01_00_00_00_00_00_00 +annex_admt=04_00_00_00_00_00_00_00 +annex_a2=00_00_04_00_00_00_00_00 +annex_a2p=00_00_00_00_00_01_00_00 +annex_l=00_00_00_00_04_00_00_00 +annex_m=00_00_00_00_40_00_04_00 +annex_m2=00_00_00_00_40_00_00_00 +annex_m2p=00_00_00_00_00_00_04_00 + +# +# Simple start routine +# +start() { + local annex + local firmware + local xtu + config_load network + config_get annex wan annex + config_get firmware wan firmware + + # get xtu + eval "xtu=\"\${annex_$annex}\"" + + # check for firmware + [ -z "${firmware}" ] && + firmware=adsl.bin + + # start CPE dsl daemon in the background + service_start /sbin/dsl_cpe_control -i${xtu} \ + -n /sbin/dsl_notify.sh \ + -f /lib/firmware/${firmware} +} + +# +# For stop we want to simulate the notification call for when +# the line goes down, so that we can stop the ppp link before +# we die. +# +stop() { + DSL_NOTIFICATION_TYPE="DSL_INTERFACE_STATUS" \ + DSL_INTERFACE_STATUS="DOWN" \ + /sbin/dsl_notify.sh + + service_stop /sbin/dsl_cpe_control +} + diff --git a/package/kernel/lantiq/ltq-adsl-app/files/dsl_notify.sh b/package/kernel/lantiq/ltq-adsl-app/files/dsl_notify.sh new file mode 100644 index 0000000..5e9f396 --- /dev/null +++ b/package/kernel/lantiq/ltq-adsl-app/files/dsl_notify.sh @@ -0,0 +1,44 @@ +#!/bin/sh +# +# This script is called by dsl_cpe_control whenever there is a DSL event, +# we only actually care about the DSL_INTERFACE_STATUS events as these +# tell us the line has either come up or gone down. +# +# The rest of the code is basically the same at the atm hotplug code +# + +[ "$DSL_NOTIFICATION_TYPE" = "DSL_INTERFACE_STATUS" ] || exit 0 + +. /lib/functions.sh + +include /lib/network +scan_interfaces + +local found=0 +local ifc +for ifc in $interfaces; do + local up + config_get_bool up "$ifc" up 0 + + local auto + config_get_bool auto "$ifc" auto 1 + + local proto + config_get proto "$ifc" proto + + if [ "$DSL_INTERFACE_STATUS" = "UP" ]; then + if [ "$proto" = "pppoa" ] && [ "$up" != 1 ] && [ "$auto" = 1 ]; then + found=1 + ( sleep 1; ifup "$ifc" ) & + fi + else + if [ "$proto" = "pppoa" ] && [ "$up" = 1 ] && [ "$auto" = 1 ]; then + found=1 + ( sleep 1; ifdown "$ifc" ) & + fi + fi +done + +if [ "$found" != 1 ]; then + logger "Found no matching interface for DSL notification ($DSL_INTERFACE_STATUS)" +fi diff --git a/package/kernel/lantiq/ltq-adsl-fw/Makefile b/package/kernel/lantiq/ltq-adsl-fw/Makefile new file mode 100644 index 0000000..53d223b --- /dev/null +++ b/package/kernel/lantiq/ltq-adsl-fw/Makefile @@ -0,0 +1,55 @@ +# +# Copyright (C) 2011 OpenWrt.org +# +# This is free software, licensed under the GNU General Public License v2. +# See /LICENSE for more information. +# + +include $(TOPDIR)/rules.mk + +PKG_NAME:=ltq-adsl-fw +PKG_VERSION:=0.1 +PKG_RELEASE:=1 + +PKG_BUILD_DIR:=$(BUILD_DIR)/ltq-dsl-fw-$(PKG_VERSION) +PKG_SOURCE:=ltq-dsl-fw-$(PKG_VERSION).tar.bz2 +PKG_SOURCE_URL:=http://mirror2.openwrt.org/sources/ +PKG_MD5SUM:=4700a36b66b955b4c5544227267356f4 +PKG_MAINTAINER:=John Crispin <blogic@openwrt.org> + +include $(INCLUDE_DIR)/package.mk + +define Package/kmod-ltq-adsl-fw-template + TITLE+=Firmware Annex-$(1) $(2) + SECTION:=sys + CATEGORY:=Kernel modules + SUBMENU:=Network Devices + VARIANT:= $(2)-fw-$(1) + SOC:=$(2) + ANNEX:=$(1) + URL:=http://www.lantiq.com/ + DEPENDS:=@TARGET_lantiq_$(3) +kmod-ltq-adsl-$(2) +endef + +Package/kmod-ltq-adsl-danube-fw-a=$(call Package/kmod-ltq-adsl-fw-template,a,danube,xway) +Package/kmod-ltq-adsl-danube-fw-b=$(call Package/kmod-ltq-adsl-fw-template,b,danube,xway) +Package/kmod-ltq-adsl-ar9-fw-a=$(call Package/kmod-ltq-adsl-fw-template,a,ar9,xway) +Package/kmod-ltq-adsl-ar9-fw-b=$(call Package/kmod-ltq-adsl-fw-template,b,ar9,xway) +Package/kmod-ltq-adsl-ase-fw-a=$(call Package/kmod-ltq-adsl-fw-template,a,ase,ase) +Package/kmod-ltq-adsl-ase-fw-b=$(call Package/kmod-ltq-adsl-fw-template,b,ase,ase) + +define Build/Compile +endef + +define Package/kmod-ltq-adsl-$(BUILD_VARIANT)/install + $(INSTALL_DIR) $(1)/lib/firmware/ + $(CP) $(PKG_BUILD_DIR)/$(FW_NAME)/ltq-dsl-fw-$(ANNEX)-$(SOC).bin $(1)/lib/firmware/ + ln -s /lib/firmware/$(FW_NAME)/ltq-dsl-fw-$(ANNEX)-$(SOC).bin $(1)/lib/firmware/adsl.bin +endef + +$(eval $(call BuildPackage,kmod-ltq-adsl-danube-fw-a)) +$(eval $(call BuildPackage,kmod-ltq-adsl-danube-fw-b)) +$(eval $(call BuildPackage,kmod-ltq-adsl-ase-fw-a)) +$(eval $(call BuildPackage,kmod-ltq-adsl-ase-fw-b)) +$(eval $(call BuildPackage,kmod-ltq-adsl-ar9-fw-a)) +$(eval $(call BuildPackage,kmod-ltq-adsl-ar9-fw-b)) diff --git a/package/kernel/lantiq/ltq-adsl-mei/Makefile b/package/kernel/lantiq/ltq-adsl-mei/Makefile new file mode 100644 index 0000000..790b891 --- /dev/null +++ b/package/kernel/lantiq/ltq-adsl-mei/Makefile @@ -0,0 +1,49 @@ +# Copyright (C) 2012 OpenWrt.org +# +# This is free software, licensed under the GNU General Public License v2. +# See /LICENSE for more information. + +include $(TOPDIR)/rules.mk +include $(INCLUDE_DIR)/kernel.mk + +PKG_NAME:=ltq-adsl-mei +PKG_RELEASE:=1 +PKG_BUILD_DIR:=$(KERNEL_BUILD_DIR)/ltq-adsl-mei-$(BUILD_VARIANT)/ + +PKG_MAINTAINER:=John Crispin <blogic@openwrt.org> + +include $(INCLUDE_DIR)/package.mk + +define KernelPackage/ltq-adsl-mei-template + SECTION:=sys + CATEGORY:=Kernel modules + SUBMENU:=Network Devices + TITLE:=mei driver for $(1) + URL:=http://www.lantiq.com/ + VARIANT:=$(1) + DEPENDS:=@TARGET_lantiq_$(2) + FILES:=$(PKG_BUILD_DIR)/ltq_mei_$(1).ko + AUTOLOAD:=$(call AutoLoad,50,ltq_mei_$(1)) +endef + +KernelPackage/ltq-adsl-danube-mei=$(call KernelPackage/ltq-adsl-mei-template,danube,xway) +KernelPackage/ltq-adsl-ar9-mei=$(call KernelPackage/ltq-adsl-mei-template,ar9,xway) +KernelPackage/ltq-adsl-ase-mei=$(call KernelPackage/ltq-adsl-mei-template,ase,ase) + +define Build/Prepare + $(INSTALL_DIR) $(PKG_BUILD_DIR)/ + $(CP) ./src/* $(PKG_BUILD_DIR)/ +endef + +define Build/Configure +endef + +define Build/Compile + cd $(LINUX_DIR); \ + ARCH=mips CROSS_COMPILE="$(KERNEL_CROSS)" \ + $(MAKE) BUILD_VARIANT=$(BUILD_VARIANT) M=$(PKG_BUILD_DIR)/ V=1 modules +endef + +$(eval $(call KernelPackage,ltq-adsl-danube-mei)) +$(eval $(call KernelPackage,ltq-adsl-ase-mei)) +$(eval $(call KernelPackage,ltq-adsl-ar9-mei)) diff --git a/package/kernel/lantiq/ltq-adsl-mei/src/Makefile b/package/kernel/lantiq/ltq-adsl-mei/src/Makefile new file mode 100644 index 0000000..2d8645f --- /dev/null +++ b/package/kernel/lantiq/ltq-adsl-mei/src/Makefile @@ -0,0 +1,17 @@ +ifeq ($(BUILD_VARIANT),danube) + CFLAGS_MODULE = -DCONFIG_DANUBE -DCONFIG_IFXMIPS_DSL_CPE_MEI + obj-m = ltq_mei_danube.o + ltq_mei_danube-objs = lantiq_mei.o +endif + +ifeq ($(BUILD_VARIANT),ase) + CFLAGS_MODULE = -DCONFIG_AMAZON_SE -DCONFIG_IFXMIPS_DSL_CPE_MEI + obj-m = ltq_mei_ase.o + ltq_mei_ase-objs = lantiq_mei.o +endif + +ifeq ($(BUILD_VARIANT),ar9) + CFLAGS_MODULE = -DCONFIG_AR9 -DCONFIG_IFXMIPS_DSL_CPE_MEI + obj-m = ltq_mei_ar9.o + ltq_mei_ar9-objs = lantiq_mei.o +endif diff --git a/package/kernel/lantiq/ltq-adsl-mei/src/ifxmips_mei_interface.h b/package/kernel/lantiq/ltq-adsl-mei/src/ifxmips_mei_interface.h new file mode 100644 index 0000000..4ddc4c6 --- /dev/null +++ b/package/kernel/lantiq/ltq-adsl-mei/src/ifxmips_mei_interface.h @@ -0,0 +1,702 @@ +/****************************************************************************** + + Copyright (c) 2009 + Infineon Technologies AG + Am Campeon 1-12; 81726 Munich, Germany + + For licensing information, see the file 'LICENSE' in the root folder of + this software module. + +******************************************************************************/ + +#ifndef IFXMIPS_MEI_H +#define IFXMIPS_MEI_H + +//#define CONFIG_AMAZON_SE 1 +//#define CONFIG_DANUBE 1 +//#define CONFIG_AR9 1 + +#if !defined(CONFIG_DANUBE) && !defined(CONFIG_AMAZON_SE) && !defined(CONFIG_AR9) && !defined(CONFIG_VR9) +#error Platform undefined!!! +#endif + +#ifdef IFX_MEI_BSP +/** This is the character datatype. */ +typedef char DSL_char_t; +/** This is the unsigned 8-bit datatype. */ +typedef unsigned char DSL_uint8_t; +/** This is the signed 8-bit datatype. */ +typedef signed char DSL_int8_t; +/** This is the unsigned 16-bit datatype. */ +typedef unsigned short DSL_uint16_t; +/** This is the signed 16-bit datatype. */ +typedef signed short DSL_int16_t; +/** This is the unsigned 32-bit datatype. */ +typedef unsigned long DSL_uint32_t; +/** This is the signed 32-bit datatype. */ +typedef signed long DSL_int32_t; +/** This is the float datatype. */ +typedef float DSL_float_t; +/** This is the void datatype. */ +typedef void DSL_void_t; +/** integer type, width is depending on processor arch */ +typedef int DSL_int_t; +/** unsigned integer type, width is depending on processor arch */ +typedef unsigned int DSL_uint_t; +typedef struct file DSL_DRV_file_t; +typedef struct inode DSL_DRV_inode_t; + +/** + * Defines all possible CMV groups + * */ +typedef enum { + DSL_CMV_GROUP_CNTL = 1, + DSL_CMV_GROUP_STAT = 2, + DSL_CMV_GROUP_INFO = 3, + DSL_CMV_GROUP_TEST = 4, + DSL_CMV_GROUP_OPTN = 5, + DSL_CMV_GROUP_RATE = 6, + DSL_CMV_GROUP_PLAM = 7, + DSL_CMV_GROUP_CNFG = 8 +} DSL_CmvGroup_t; +/** + * Defines all opcode types + * */ +typedef enum { + H2D_CMV_READ = 0x00, + H2D_CMV_WRITE = 0x04, + H2D_CMV_INDICATE_REPLY = 0x10, + H2D_ERROR_OPCODE_UNKNOWN =0x20, + H2D_ERROR_CMV_UNKNOWN =0x30, + + D2H_CMV_READ_REPLY =0x01, + D2H_CMV_WRITE_REPLY = 0x05, + D2H_CMV_INDICATE = 0x11, + D2H_ERROR_OPCODE_UNKNOWN = 0x21, + D2H_ERROR_CMV_UNKNOWN = 0x31, + D2H_ERROR_CMV_READ_NOT_AVAILABLE = 0x41, + D2H_ERROR_CMV_WRITE_ONLY = 0x51, + D2H_ERROR_CMV_READ_ONLY = 0x61, + + H2D_DEBUG_READ_DM = 0x02, + H2D_DEBUG_READ_PM = 0x06, + H2D_DEBUG_WRITE_DM = 0x0a, + H2D_DEBUG_WRITE_PM = 0x0e, + + D2H_DEBUG_READ_DM_REPLY = 0x03, + D2H_DEBUG_READ_FM_REPLY = 0x07, + D2H_DEBUG_WRITE_DM_REPLY = 0x0b, + D2H_DEBUG_WRITE_FM_REPLY = 0x0f, + D2H_ERROR_ADDR_UNKNOWN = 0x33, + + D2H_AUTONOMOUS_MODEM_READY_MSG = 0xf1 +} DSL_CmvOpcode_t; + +/* mutex macros */ +#define MEI_MUTEX_INIT(id,flag) \ + sema_init(&id,flag) +#define MEI_MUTEX_LOCK(id) \ + down_interruptible(&id) +#define MEI_MUTEX_UNLOCK(id) \ + up(&id) +#define MEI_WAIT(ms) \ + {\ + set_current_state(TASK_INTERRUPTIBLE);\ + schedule_timeout(ms);\ + } +#define MEI_INIT_WAKELIST(name,queue) \ + init_waitqueue_head(&queue) + +/* wait for an event, timeout is measured in ms */ +#define MEI_WAIT_EVENT_TIMEOUT(ev,timeout)\ + interruptible_sleep_on_timeout(&ev,timeout * HZ / 1000) +#define MEI_WAKEUP_EVENT(ev)\ + wake_up_interruptible(&ev) +#endif /* IFX_MEI_BSP */ + +/*** Register address offsets, relative to MEI_SPACE_ADDRESS ***/ +#define ME_DX_DATA (0x0000) +#define ME_VERSION (0x0004) +#define ME_ARC_GP_STAT (0x0008) +#define ME_DX_STAT (0x000C) +#define ME_DX_AD (0x0010) +#define ME_DX_MWS (0x0014) +#define ME_ME2ARC_INT (0x0018) +#define ME_ARC2ME_STAT (0x001C) +#define ME_ARC2ME_MASK (0x0020) +#define ME_DBG_WR_AD (0x0024) +#define ME_DBG_RD_AD (0x0028) +#define ME_DBG_DATA (0x002C) +#define ME_DBG_DECODE (0x0030) +#define ME_CONFIG (0x0034) +#define ME_RST_CTRL (0x0038) +#define ME_DBG_MASTER (0x003C) +#define ME_CLK_CTRL (0x0040) +#define ME_BIST_CTRL (0x0044) +#define ME_BIST_STAT (0x0048) +#define ME_XDATA_BASE_SH (0x004c) +#define ME_XDATA_BASE (0x0050) +#define ME_XMEM_BAR_BASE (0x0054) +#define ME_XMEM_BAR0 (0x0054) +#define ME_XMEM_BAR1 (0x0058) +#define ME_XMEM_BAR2 (0x005C) +#define ME_XMEM_BAR3 (0x0060) +#define ME_XMEM_BAR4 (0x0064) +#define ME_XMEM_BAR5 (0x0068) +#define ME_XMEM_BAR6 (0x006C) +#define ME_XMEM_BAR7 (0x0070) +#define ME_XMEM_BAR8 (0x0074) +#define ME_XMEM_BAR9 (0x0078) +#define ME_XMEM_BAR10 (0x007C) +#define ME_XMEM_BAR11 (0x0080) +#define ME_XMEM_BAR12 (0x0084) +#define ME_XMEM_BAR13 (0x0088) +#define ME_XMEM_BAR14 (0x008C) +#define ME_XMEM_BAR15 (0x0090) +#define ME_XMEM_BAR16 (0x0094) + +#define WHILE_DELAY 20000 +/* +** Define where in ME Processor's memory map the Stratify chip lives +*/ + +#define MAXSWAPSIZE (8 * 1024) //8k *(32bits) + +// Mailboxes +#define MSG_LENGTH 16 // x16 bits +#define YES_REPLY 1 +#define NO_REPLY 0 + +#define CMV_TIMEOUT 1000 //jiffies + +// Block size per BAR +#define SDRAM_SEGMENT_SIZE (64*1024) +// Number of Bar registers +#define MAX_BAR_REGISTERS (17) + +#define XDATA_REGISTER (15) + +// ARC register addresss +#define ARC_STATUS 0x0 +#define ARC_LP_START 0x2 +#define ARC_LP_END 0x3 +#define ARC_DEBUG 0x5 +#define ARC_INT_MASK 0x10A + +#define IRAM0_BASE (0x00000) +#define IRAM1_BASE (0x04000) +#if defined(CONFIG_DANUBE) +#define BRAM_BASE (0x0A000) +#elif defined(CONFIG_AMAZON_SE) || defined(CONFIG_AR9) || defined(CONFIG_VR9) +#define BRAM_BASE (0x08000) +#endif +#define XRAM_BASE (0x18000) +#define YRAM_BASE (0x1A000) +#define EXT_MEM_BASE (0x80000) +#define ARC_GPIO_CTRL (0xC030) +#define ARC_GPIO_DATA (0xC034) + +#define IRAM0_SIZE (16*1024) +#define IRAM1_SIZE (16*1024) +#define BRAM_SIZE (12*1024) +#define XRAM_SIZE (8*1024) +#define YRAM_SIZE (8*1024) +#define EXT_MEM_SIZE (1536*1024) + +#define ADSL_BASE (0x20000) +#define CRI_BASE (ADSL_BASE + 0x11F00) +#define CRI_CCR0 (CRI_BASE + 0x00) +#define CRI_RST (CRI_BASE + 0x04*4) +#define ADSL_DILV_BASE (ADSL_BASE+0x20000) + +// +#define IRAM0_ADDR_BIT_MASK 0xFFF +#define IRAM1_ADDR_BIT_MASK 0xFFF +#define BRAM_ADDR_BIT_MASK 0xFFF +#define RX_DILV_ADDR_BIT_MASK 0x1FFF + +/*** Bit definitions ***/ +#define ARC_AUX_HALT (1 << 25) +#define ARC_DEBUG_HALT (1 << 1) +#define FALSE 0 +#define TRUE 1 +#define BIT0 (1<<0) +#define BIT1 (1<<1) +#define BIT2 (1<<2) +#define BIT3 (1<<3) +#define BIT4 (1<<4) +#define BIT5 (1<<5) +#define BIT6 (1<<6) +#define BIT7 (1<<7) +#define BIT8 (1<<8) +#define BIT9 (1<<9) +#define BIT10 (1<<10) +#define BIT11 (1<<11) +#define BIT12 (1<<12) +#define BIT13 (1<<13) +#define BIT14 (1<<14) +#define BIT15 (1<<15) +#define BIT16 (1<<16) +#define BIT17 (1<<17) +#define BIT18 (1<<18) +#define BIT19 (1<<19) +#define BIT20 (1<<20) +#define BIT21 (1<<21) +#define BIT22 (1<<22) +#define BIT23 (1<<23) +#define BIT24 (1<<24) +#define BIT25 (1<<25) +#define BIT26 (1<<26) +#define BIT27 (1<<27) +#define BIT28 (1<<28) +#define BIT29 (1<<29) +#define BIT30 (1<<30) +#define BIT31 (1<<31) + +// CRI_CCR0 Register definitions +#define CLK_2M_MODE_ENABLE BIT6 +#define ACL_CLK_MODE_ENABLE BIT4 +#define FDF_CLK_MODE_ENABLE BIT2 +#define STM_CLK_MODE_ENABLE BIT0 + +// CRI_RST Register definitions +#define FDF_SRST BIT3 +#define MTE_SRST BIT2 +#define FCI_SRST BIT1 +#define AAI_SRST BIT0 + +// MEI_TO_ARC_INTERRUPT Register definitions +#define MEI_TO_ARC_INT1 BIT3 +#define MEI_TO_ARC_INT0 BIT2 +#define MEI_TO_ARC_CS_DONE BIT1 //need to check +#define MEI_TO_ARC_MSGAV BIT0 + +// ARC_TO_MEI_INTERRUPT Register definitions +#define ARC_TO_MEI_INT1 BIT8 +#define ARC_TO_MEI_INT0 BIT7 +#define ARC_TO_MEI_CS_REQ BIT6 +#define ARC_TO_MEI_DBG_DONE BIT5 +#define ARC_TO_MEI_MSGACK BIT4 +#define ARC_TO_MEI_NO_ACCESS BIT3 +#define ARC_TO_MEI_CHECK_AAITX BIT2 +#define ARC_TO_MEI_CHECK_AAIRX BIT1 +#define ARC_TO_MEI_MSGAV BIT0 + +// ARC_TO_MEI_INTERRUPT_MASK Register definitions +#define GP_INT1_EN BIT8 +#define GP_INT0_EN BIT7 +#define CS_REQ_EN BIT6 +#define DBG_DONE_EN BIT5 +#define MSGACK_EN BIT4 +#define NO_ACC_EN BIT3 +#define AAITX_EN BIT2 +#define AAIRX_EN BIT1 +#define MSGAV_EN BIT0 + +#define MEI_SOFT_RESET BIT0 + +#define HOST_MSTR BIT0 + +#define JTAG_MASTER_MODE 0x0 +#define MEI_MASTER_MODE HOST_MSTR + +// MEI_DEBUG_DECODE Register definitions +#define MEI_DEBUG_DEC_MASK (0x3) +#define MEI_DEBUG_DEC_AUX_MASK (0x0) +#define ME_DBG_DECODE_DMP1_MASK (0x1) +#define MEI_DEBUG_DEC_DMP2_MASK (0x2) +#define MEI_DEBUG_DEC_CORE_MASK (0x3) + +#define AUX_STATUS (0x0) +#define AUX_ARC_GPIO_CTRL (0x10C) +#define AUX_ARC_GPIO_DATA (0x10D) +// ARC_TO_MEI_MAILBOX[11] is a special location used to indicate +// page swap requests. +#if defined(CONFIG_DANUBE) +#define OMBOX_BASE 0xDF80 +#define ARC_TO_MEI_MAILBOX 0xDFA0 +#define IMBOX_BASE 0xDFC0 +#define MEI_TO_ARC_MAILBOX 0xDFD0 +#elif defined(CONFIG_AMAZON_SE) || defined(CONFIG_AR9) || defined(CONFIG_VR9) +#define OMBOX_BASE 0xAF80 +#define ARC_TO_MEI_MAILBOX 0xAFA0 +#define IMBOX_BASE 0xAFC0 +#define MEI_TO_ARC_MAILBOX 0xAFD0 +#endif + +#define MEI_TO_ARC_MAILBOXR (MEI_TO_ARC_MAILBOX + 0x2C) +#define ARC_MEI_MAILBOXR (ARC_TO_MEI_MAILBOX + 0x2C) +#define OMBOX1 (OMBOX_BASE+0x4) + +// Codeswap request messages are indicated by setting BIT31 +#define OMB_CODESWAP_MESSAGE_MSG_TYPE_MASK (0x80000000) + +// Clear Eoc messages received are indicated by setting BIT17 +#define OMB_CLEAREOC_INTERRUPT_CODE (0x00020000) +#define OMB_REBOOT_INTERRUPT_CODE (1 << 18) + +/* +** Swap page header +*/ +// Page must be loaded at boot time if size field has BIT31 set +#define BOOT_FLAG (BIT31) +#define BOOT_FLAG_MASK ~BOOT_FLAG + +#define FREE_RELOAD 1 +#define FREE_SHOWTIME 2 +#define FREE_ALL 3 + +// marcos +#define IFX_MEI_WRITE_REGISTER_L(data,addr) *((volatile u32*)(addr)) = (u32)(data) +#define IFX_MEI_READ_REGISTER_L(addr) (*((volatile u32*)(addr))) +#define SET_BIT(reg, mask) reg |= (mask) +#define CLEAR_BIT(reg, mask) reg &= (~mask) +#define CLEAR_BITS(reg, mask) CLEAR_BIT(reg, mask) +//#define SET_BITS(reg, mask) SET_BIT(reg, mask) +#define SET_BITFIELD(reg, mask, off, val) {reg &= (~mask); reg |= (val << off);} + +#define ALIGN_SIZE ( 1L<<10 ) //1K size align +#define MEM_ALIGN(addr) (((addr) + ALIGN_SIZE - 1) & ~ (ALIGN_SIZE -1) ) + +// swap marco +#define MEI_HALF_WORD_SWAP(data) {data = ((data & 0xffff)<<16) + ((data & 0xffff0000)>>16);} +#define MEI_BYTE_SWAP(data) {data = ((data & 0xff)<<24) + ((data & 0xff00)<<8)+ ((data & 0xff0000)>>8)+ ((data & 0xff000000)>>24);} + + +#ifdef CONFIG_PROC_FS +typedef struct reg_entry +{ + int *flag; + char name[30]; /* big enough to hold names */ + char description[100]; /* big enough to hold description */ + unsigned short low_ino; +} reg_entry_t; +#endif +// Swap page header describes size in 32-bit words, load location, and image offset +// for program and/or data segments +typedef struct _arc_swp_page_hdr { + u32 p_offset; //Offset bytes of progseg from beginning of image + u32 p_dest; //Destination addr of progseg on processor + u32 p_size; //Size in 32-bitwords of program segment + u32 d_offset; //Offset bytes of dataseg from beginning of image + u32 d_dest; //Destination addr of dataseg on processor + u32 d_size; //Size in 32-bitwords of data segment +} ARC_SWP_PAGE_HDR; + +/* +** Swap image header +*/ +#define GET_PROG 0 // Flag used for program mem segment +#define GET_DATA 1 // Flag used for data mem segment + +// Image header contains size of image, checksum for image, and count of +// page headers. Following that are 'count' page headers followed by +// the code and/or data segments to be loaded +typedef struct _arc_img_hdr { + u32 size; // Size of binary image in bytes + u32 checksum; // Checksum for image + u32 count; // Count of swp pages in image + ARC_SWP_PAGE_HDR page[1]; // Should be "count" pages - '1' to make compiler happy +} ARC_IMG_HDR; + +typedef struct smmu_mem_info { + int type; + int boot; + unsigned long nCopy; + unsigned long size; + unsigned char *address; + unsigned char *org_address; +} smmu_mem_info_t; + +#ifdef __KERNEL__ +typedef struct ifx_mei_device_private { + int modem_ready; + int arcmsgav; + int cmv_reply; + int cmv_waiting; + // Mei to ARC CMV count, reply count, ARC Indicator count + int modem_ready_cnt; + int cmv_count; + int reply_count; + unsigned long image_size; + int nBar; + u16 Recent_indicator[MSG_LENGTH]; + + u16 CMV_RxMsg[MSG_LENGTH] __attribute__ ((aligned (4))); + + smmu_mem_info_t adsl_mem_info[MAX_BAR_REGISTERS]; + ARC_IMG_HDR *img_hdr; + // to wait for arc cmv reply, sleep on wait_queue_arcmsgav; + wait_queue_head_t wait_queue_arcmsgav; + wait_queue_head_t wait_queue_modemready; + struct semaphore mei_cmv_sema; +} ifx_mei_device_private_t; +#endif +typedef struct winhost_message { + union { + u16 RxMessage[MSG_LENGTH] __attribute__ ((aligned (4))); + u16 TxMessage[MSG_LENGTH] __attribute__ ((aligned (4))); + } msg; +} DSL_DEV_WinHost_Message_t; +/******************************************************************************************************** + * DSL CPE API Driver Stack Interface Definitions + * *****************************************************************************************************/ +/** IOCTL codes for bsp driver */ +#define DSL_IOC_MEI_BSP_MAGIC 's' + +#define DSL_FIO_BSP_DSL_START _IO (DSL_IOC_MEI_BSP_MAGIC, 0) +#define DSL_FIO_BSP_RUN _IO (DSL_IOC_MEI_BSP_MAGIC, 1) +#define DSL_FIO_BSP_FREE_RESOURCE _IO (DSL_IOC_MEI_BSP_MAGIC, 2) +#define DSL_FIO_BSP_RESET _IO (DSL_IOC_MEI_BSP_MAGIC, 3) +#define DSL_FIO_BSP_REBOOT _IO (DSL_IOC_MEI_BSP_MAGIC, 4) +#define DSL_FIO_BSP_HALT _IO (DSL_IOC_MEI_BSP_MAGIC, 5) +#define DSL_FIO_BSP_BOOTDOWNLOAD _IO (DSL_IOC_MEI_BSP_MAGIC, 6) +#define DSL_FIO_BSP_JTAG_ENABLE _IO (DSL_IOC_MEI_BSP_MAGIC, 7) +#define DSL_FIO_FREE_RESOURCE _IO (DSL_IOC_MEI_BSP_MAGIC, 8) +#define DSL_FIO_ARC_MUX_TEST _IO (DSL_IOC_MEI_BSP_MAGIC, 9) +#define DSL_FIO_BSP_REMOTE _IOW (DSL_IOC_MEI_BSP_MAGIC, 10, u32) +#define DSL_FIO_BSP_GET_BASE_ADDRESS _IOR (DSL_IOC_MEI_BSP_MAGIC, 11, u32) +#define DSL_FIO_BSP_IS_MODEM_READY _IOR (DSL_IOC_MEI_BSP_MAGIC, 12, u32) +#define DSL_FIO_BSP_GET_VERSION _IOR (DSL_IOC_MEI_BSP_MAGIC, 13, DSL_DEV_Version_t) +#define DSL_FIO_BSP_CMV_WINHOST _IOWR(DSL_IOC_MEI_BSP_MAGIC, 14, DSL_DEV_WinHost_Message_t) +#define DSL_FIO_BSP_CMV_READ _IOWR(DSL_IOC_MEI_BSP_MAGIC, 15, DSL_DEV_MeiReg_t) +#define DSL_FIO_BSP_CMV_WRITE _IOW (DSL_IOC_MEI_BSP_MAGIC, 16, DSL_DEV_MeiReg_t) +#define DSL_FIO_BSP_DEBUG_READ _IOWR(DSL_IOC_MEI_BSP_MAGIC, 17, DSL_DEV_MeiDebug_t) +#define DSL_FIO_BSP_DEBUG_WRITE _IOWR(DSL_IOC_MEI_BSP_MAGIC, 18, DSL_DEV_MeiDebug_t) +#define DSL_FIO_BSP_GET_CHIP_INFO _IOR (DSL_IOC_MEI_BSP_MAGIC, 19, DSL_DEV_HwVersion_t) + +#define DSL_DEV_MEIDEBUG_BUFFER_SIZES 512 + +typedef struct DSL_DEV_MeiDebug +{ + DSL_uint32_t iAddress; + DSL_uint32_t iCount; + DSL_uint32_t buffer[DSL_DEV_MEIDEBUG_BUFFER_SIZES]; +} DSL_DEV_MeiDebug_t; /* meidebug */ + +/** + * Structure is used for debug access only. + * Refer to configure option INCLUDE_ADSL_WINHOST_DEBUG */ +typedef struct struct_meireg +{ + /* + * Specifies that address for debug access */ + unsigned long iAddress; + /* + * Specifies the pointer to the data that has to be written or returns a + * pointer to the data that has been read out*/ + unsigned long iData; +} DSL_DEV_MeiReg_t; /* meireg */ + +typedef struct DSL_DEV_Device +{ + DSL_int_t nInUse; /* modem state, update by bsp driver, */ + DSL_void_t *pPriv; + DSL_uint32_t base_address; /* mei base address */ + DSL_int_t nIrq[2]; /* irq number */ +#define IFX_DFEIR 0 +#define IFX_DYING_GASP 1 + DSL_DEV_MeiDebug_t lop_debugwr; /* dying gasp */ +#if (LINUX_VERSION_CODE > KERNEL_VERSION(2,6,0)) + struct module *owner; +#endif +} DSL_DEV_Device_t; /* ifx_adsl_device_t */ + +#define DSL_DEV_PRIVATE(dev) ((ifx_mei_device_private_t*)(dev->pPriv)) + +typedef struct DSL_DEV_Version /* ifx_adsl_bsp_version */ +{ + unsigned long major; + unsigned long minor; + unsigned long revision; +} DSL_DEV_Version_t; /* ifx_adsl_bsp_version_t */ + +typedef struct DSL_DEV_ChipInfo +{ + unsigned long major; + unsigned long minor; +} DSL_DEV_HwVersion_t; + +typedef struct +{ + DSL_uint8_t dummy; +} DSL_DEV_DeviceConfig_t; + +/** error code definitions */ +typedef enum DSL_DEV_MeiError +{ + DSL_DEV_MEI_ERR_SUCCESS = 0, + DSL_DEV_MEI_ERR_FAILURE = -1, + DSL_DEV_MEI_ERR_MAILBOX_FULL = -2, + DSL_DEV_MEI_ERR_MAILBOX_EMPTY = -3, + DSL_DEV_MEI_ERR_MAILBOX_TIMEOUT = -4 +} DSL_DEV_MeiError_t; /* MEI_ERROR */ + +typedef enum { + DSL_BSP_MEMORY_READ=0, + DSL_BSP_MEMORY_WRITE, +} DSL_BSP_MemoryAccessType_t; /* ifx_adsl_memory_access_type_t */ + +typedef enum +{ + DSL_LED_LINK_ID=0, + DSL_LED_DATA_ID +} DSL_DEV_LedId_t; /* ifx_adsl_led_id_t */ + +typedef enum +{ + DSL_LED_LINK_TYPE=0, + DSL_LED_DATA_TYPE +} DSL_DEV_LedType_t; /* ifx_adsl_led_type_t */ + +typedef enum +{ + DSL_LED_HD_CPU=0, + DSL_LED_HD_FW +} DSL_DEV_LedHandler_t; /* ifx_adsl_led_handler_t */ + +typedef enum { + DSL_LED_ON=0, + DSL_LED_OFF, + DSL_LED_FLASH, +} DSL_DEV_LedMode_t; /* ifx_adsl_led_mode_t */ + +typedef enum { + DSL_CPU_HALT=0, + DSL_CPU_RUN, + DSL_CPU_RESET, +} DSL_DEV_CpuMode_t; /* ifx_adsl_cpu_mode_t */ + +#if 0 +typedef enum { + DSL_BSP_EVENT_DYING_GASP = 0, + DSL_BSP_EVENT_CEOC_IRQ, +} DSL_BSP_Event_id_t; /* ifx_adsl_event_id_t */ + +typedef union DSL_BSP_CB_Param +{ + DSL_uint32_t nIrqMessage; +} DSL_BSP_CB_Param_t; /* ifx_adsl_cbparam_t */ + +typedef struct DSL_BSP_CB_Event +{ + DSL_BSP_Event_id_t nID; + DSL_DEV_Device_t *pDev; + DSL_BSP_CB_Param_t *pParam; +} DSL_BSP_CB_Event_t; /* ifx_adsl_cb_event_t */ +#endif + +/* external functions (from the BSP Driver) */ +extern DSL_DEV_Device_t* DSL_BSP_DriverHandleGet(int, int); +extern DSL_int_t DSL_BSP_DriverHandleDelete(DSL_DEV_Device_t *); +extern DSL_DEV_MeiError_t DSL_BSP_FWDownload(DSL_DEV_Device_t *, const DSL_char_t *, DSL_uint32_t, DSL_int32_t *, DSL_int32_t *); +extern int DSL_BSP_KernelIoctls(DSL_DEV_Device_t *, unsigned int, unsigned long); +extern DSL_DEV_MeiError_t DSL_BSP_SendCMV(DSL_DEV_Device_t *, DSL_uint16_t *, DSL_int_t, DSL_uint16_t *); +extern DSL_DEV_MeiError_t DSL_BSP_AdslLedInit(DSL_DEV_Device_t *, DSL_DEV_LedId_t, DSL_DEV_LedType_t, DSL_DEV_LedHandler_t); +extern DSL_DEV_MeiError_t DSL_BSP_Showtime(DSL_DEV_Device_t *, DSL_uint32_t, DSL_uint32_t); +extern int DSL_BSP_ATMLedCBRegister( int (*ifx_adsl_ledcallback)(void)); +extern DSL_DEV_MeiError_t DSL_BSP_MemoryDebugAccess(DSL_DEV_Device_t *, DSL_BSP_MemoryAccessType_t, DSL_uint32_t, DSL_uint32_t *, DSL_uint32_t); +extern volatile DSL_DEV_Device_t *adsl_dev; + +/** + * Dummy structure by now to show mechanism of extended data that will be + * provided within event callback itself. + * */ +typedef struct +{ + /** + * Dummy value */ + DSL_uint32_t nDummy1; +} DSL_BSP_CB_Event1DataDummy_t; + +/** + * Dummy structure by now to show mechanism of extended data that will be + * provided within event callback itself. + * */ +typedef struct +{ + /** + * Dummy value */ + DSL_uint32_t nDummy2; +} DSL_BSP_CB_Event2DataDummy_t; + +/** + * encapsulate all data structures that are necessary for status event + * callbacks. + * */ +typedef union +{ + DSL_BSP_CB_Event1DataDummy_t dataEvent1; + DSL_BSP_CB_Event2DataDummy_t dataEvent2; +} DSL_BSP_CB_DATA_Union_t; + + +typedef enum +{ + /** + * Informs the upper layer driver (DSL CPE API) about a reboot request from the + * firmware. + * \note This event does NOT include any additional data. + * More detailed information upon reboot reason has to be requested from + * upper layer software via CMV (INFO 109) if necessary. */ + DSL_BSP_CB_FIRST = 0, + DSL_BSP_CB_DYING_GASP, + DSL_BSP_CB_CEOC_IRQ, + DSL_BSP_CB_FIRMWARE_REBOOT, + /** + * Delimiter only */ + DSL_BSP_CB_LAST +} DSL_BSP_CB_Type_t; + +/** + * Specifies the common event type that has to be used for registering and + * signalling of interrupts/autonomous status events from MEI BSP Driver. + * + * \param pDev + * Context pointer from MEI BSP Driver. + * + * \param IFX_ADSL_BSP_CallbackType_t + * Specifies the event callback type (reason of callback). Regrading to the + * setting of this value the data which is included in the following union + * might have different meanings. + * Please refer to the description of the union to get information about the + * meaning of the included data. + * + * \param pData + * Data according to \ref DSL_BSP_CB_DATA_Union_t. + * If this pointer is NULL there is no additional data available. + * + * \return depending on event + */ +typedef int (*DSL_BSP_EventCallback_t) +( + DSL_DEV_Device_t *pDev, + DSL_BSP_CB_Type_t nCallbackType, + DSL_BSP_CB_DATA_Union_t *pData +); + +typedef struct { + DSL_BSP_EventCallback_t function; + DSL_BSP_CB_Type_t event; + DSL_BSP_CB_DATA_Union_t *pData; +} DSL_BSP_EventCallBack_t; + +extern int DSL_BSP_EventCBRegister(DSL_BSP_EventCallBack_t *); +extern int DSL_BSP_EventCBUnregister(DSL_BSP_EventCallBack_t *); + +/** Modem states */ +#define DSL_DEV_STAT_InitState 0x0000 +#define DSL_DEV_STAT_ReadyState 0x0001 +#define DSL_DEV_STAT_FailState 0x0002 +#define DSL_DEV_STAT_IdleState 0x0003 +#define DSL_DEV_STAT_QuietState 0x0004 +#define DSL_DEV_STAT_GhsState 0x0005 +#define DSL_DEV_STAT_FullInitState 0x0006 +#define DSL_DEV_STAT_ShowTimeState 0x0007 +#define DSL_DEV_STAT_FastRetrainState 0x0008 +#define DSL_DEV_STAT_LoopDiagMode 0x0009 +#define DSL_DEV_STAT_ShortInit 0x000A /* Bis short initialization */ + +#define DSL_DEV_STAT_CODESWAP_COMPLETE 0x0002 + +#endif //IFXMIPS_MEI_H diff --git a/package/kernel/lantiq/ltq-adsl-mei/src/lantiq_mei.c b/package/kernel/lantiq/ltq-adsl-mei/src/lantiq_mei.c new file mode 100644 index 0000000..443b9d9 --- /dev/null +++ b/package/kernel/lantiq/ltq-adsl-mei/src/lantiq_mei.c @@ -0,0 +1,2805 @@ +/****************************************************************************** + + Copyright (c) 2009 + Infineon Technologies AG + Am Campeon 1-12; 81726 Munich, Germany + + For licensing information, see the file 'LICENSE' in the root folder of + this software module. + +******************************************************************************/ + +/*! + \defgroup AMAZON_S_MEI Amazon-S MEI Driver Module + \brief Amazon-S MEI driver module + */ + +/*! + \defgroup Internal Compile Parametere + \ingroup AMAZON_S_MEI + \brief exported functions for other driver use + */ + +/*! + \file amazon_s_mei_bsp.c + \ingroup AMAZON_S_MEI + \brief Amazon-S MEI driver file + */ + +#include <linux/kernel.h> +#include <linux/module.h> +#include <linux/version.h> +#include <generated/utsrelease.h> +#include <linux/types.h> +#include <linux/fs.h> +#include <linux/mm.h> +#include <linux/errno.h> +#include <linux/interrupt.h> +#include <linux/netdevice.h> +#include <linux/etherdevice.h> +#include <linux/proc_fs.h> +#include <linux/init.h> +#include <linux/ioport.h> +#include <linux/delay.h> +#include <linux/device.h> +#include <linux/sched.h> +#include <linux/platform_device.h> +#include <asm/uaccess.h> +#include <asm/hardirq.h> + +#include "lantiq_atm.h" +#include <lantiq_soc.h> +//#include "ifxmips_atm.h" +#define IFX_MEI_BSP +#include "ifxmips_mei_interface.h" + +/*#define LTQ_RCU_RST IFX_RCU_RST_REQ +#define LTQ_RCU_RST_REQ_ARC_JTAG IFX_RCU_RST_REQ_ARC_JTAG +#define LTQ_RCU_RST_REQ_DFE IFX_RCU_RST_REQ_DFE +#define LTQ_RCU_RST_REQ_AFE IFX_RCU_RST_REQ_AFE +#define IFXMIPS_FUSE_BASE_ADDR IFX_FUSE_BASE_ADDR +#define IFXMIPS_ICU_IM0_IER IFX_ICU_IM0_IER +#define IFXMIPS_ICU_IM2_IER IFX_ICU_IM2_IER +#define LTQ_MEI_INT IFX_MEI_INT +#define LTQ_MEI_DYING_GASP_INT IFX_MEI_DYING_GASP_INT +#define LTQ_MEI_BASE_ADDR IFX_MEI_SPACE_ACCESS +#define IFXMIPS_PMU_PWDCR IFX_PMU_PWDCR +#define IFXMIPS_MPS_CHIPID IFX_MPS_CHIPID + +#define ifxmips_port_reserve_pin ifx_gpio_pin_reserve +#define ifxmips_port_set_dir_in ifx_gpio_dir_in_set +#define ifxmips_port_clear_altsel0 ifx_gpio_altsel0_set +#define ifxmips_port_clear_altsel1 ifx_gpio_altsel1_clear +#define ifxmips_port_set_open_drain ifx_gpio_open_drain_clear +#define ifxmips_port_free_pin ifx_gpio_pin_free +#define ifxmips_mask_and_ack_irq bsp_mask_and_ack_irq +#define IFXMIPS_MPS_CHIPID_VERSION_GET IFX_MCD_CHIPID_VERSION_GET +#define ltq_r32(reg) __raw_readl(reg) +#define ltq_w32(val, reg) __raw_writel(val, reg) +#define ltq_w32_mask(clear, set, reg) ltq_w32((ltq_r32(reg) & ~clear) | set, reg) +*/ + +#define LTQ_RCU_BASE_ADDR 0x1F203000 +#define LTQ_ICU_BASE_ADDR 0x1F880200 +#define LTQ_MEI_BASE_ADDR 0x1E116000 +#define LTQ_PMU_BASE_ADDR 0x1F102000 +#define LTQ_MEI_DYING_GASP_INT (INT_NUM_IM1_IRL0 + 21) +#define LTQ_USB_OC_INT (INT_NUM_IM4_IRL0 + 23) +#define LTQ_MEI_INT (INT_NUM_IM1_IRL0 + 23) + +#define LTQ_RCU_RST_REQ_DFE (1 << 7) +#define LTQ_RCU_RST_REQ_AFE (1 << 11) + +#define LTQ_PMU_BASE (KSEG1 + LTQ_PMU_BASE_ADDR) +#define LTQ_RCU_BASE (KSEG1 + LTQ_RCU_BASE_ADDR) +#define LTQ_ICU_BASE (KSEG1 + LTQ_ICU_BASE_ADDR) + +#define LTQ_PMU_PWDCR ((u32 *)(LTQ_PMU_BASE + 0x001C)) +#define LTQ_PMU_PWDSR ((u32 *)(LTQ_PMU_BASE + 0x0020)) +#define LTQ_RCU_RST ((u32 *)(LTQ_RCU_BASE + 0x0010)) +#define LTQ_RCU_RST_ALL 0x40000000 + +#define LTQ_ICU_IM0_ISR ((u32 *)(LTQ_ICU_BASE + 0x0000)) +#define LTQ_ICU_IM0_IER ((u32 *)(LTQ_ICU_BASE + 0x0008)) +#define LTQ_ICU_IM0_IOSR ((u32 *)(LTQ_ICU_BASE + 0x0010)) +#define LTQ_ICU_IM0_IRSR ((u32 *)(LTQ_ICU_BASE + 0x0018)) +#define LTQ_ICU_IM0_IMR ((u32 *)(LTQ_ICU_BASE + 0x0020)) + + +#define LTQ_ICU_IM1_ISR ((u32 *)(LTQ_ICU_BASE + 0x0028)) +#define LTQ_ICU_IM2_ISR ((u32 *)(LTQ_ICU_BASE + 0x0050)) +#define LTQ_ICU_IM3_ISR ((u32 *)(LTQ_ICU_BASE + 0x0078)) +#define LTQ_ICU_IM4_ISR ((u32 *)(LTQ_ICU_BASE + 0x00A0)) + +#define LTQ_ICU_OFFSET (LTQ_ICU_IM1_ISR - LTQ_ICU_IM0_ISR) +#define LTQ_ICU_IM2_IER (LTQ_ICU_IM0_IER + LTQ_ICU_OFFSET) + +#define IFX_MEI_EMSG(fmt, args...) pr_err("[%s %d]: " fmt,__FUNCTION__, __LINE__, ## args) +#define IFX_MEI_DMSG(fmt, args...) pr_debug("[%s %d]: " fmt,__FUNCTION__, __LINE__, ## args) + +#define LTQ_FUSE_BASE (KSEG1 + 0x1F107354) + +#ifdef CONFIG_LTQ_MEI_FW_LOOPBACK +//#define DFE_MEM_TEST +//#define DFE_PING_TEST +#define DFE_ATM_LOOPBACK + + +#ifdef DFE_ATM_LOOPBACK +#include <asm/ifxmips/ifxmips_mei_fw_loopback.h> +#endif + +void dfe_loopback_irq_handler (DSL_DEV_Device_t *pDev); + +#endif //CONFIG_AMAZON_S_MEI_FW_LOOPBACK + +DSL_DEV_Version_t bsp_mei_version = { + major: 5, + minor: 0, + revision:0 +}; +DSL_DEV_HwVersion_t bsp_chip_info; + +#define IFX_MEI_DEVNAME "ifx_mei" +#define BSP_MAX_DEVICES 1 +#define MEI_DIRNAME "ifxmips_mei" + +DSL_DEV_MeiError_t DSL_BSP_FWDownload (DSL_DEV_Device_t *, const char *, unsigned long, long *, long *); +DSL_DEV_MeiError_t DSL_BSP_Showtime (DSL_DEV_Device_t *, DSL_uint32_t, DSL_uint32_t); +DSL_DEV_MeiError_t DSL_BSP_AdslLedInit (DSL_DEV_Device_t *, DSL_DEV_LedId_t, DSL_DEV_LedType_t, DSL_DEV_LedHandler_t); +//DSL_DEV_MeiError_t DSL_BSP_AdslLedSet (DSL_DEV_Device_t *, DSL_DEV_LedId_t, DSL_DEV_LedMode_t); +DSL_DEV_MeiError_t DSL_BSP_MemoryDebugAccess (DSL_DEV_Device_t *, DSL_BSP_MemoryAccessType_t, DSL_uint32_t, DSL_uint32_t*, DSL_uint32_t); +DSL_DEV_MeiError_t DSL_BSP_SendCMV (DSL_DEV_Device_t *, u16 *, int, u16 *); + +int DSL_BSP_KernelIoctls (DSL_DEV_Device_t *, unsigned int, unsigned long); + +static DSL_DEV_MeiError_t IFX_MEI_RunAdslModem (DSL_DEV_Device_t *); +static DSL_DEV_MeiError_t IFX_MEI_CpuModeSet (DSL_DEV_Device_t *, DSL_DEV_CpuMode_t); +static DSL_DEV_MeiError_t IFX_MEI_DownloadBootCode (DSL_DEV_Device_t *); +static DSL_DEV_MeiError_t IFX_MEI_ArcJtagEnable (DSL_DEV_Device_t *, int); +static DSL_DEV_MeiError_t IFX_MEI_AdslMailboxIRQEnable (DSL_DEV_Device_t *, int); + +static int IFX_MEI_GetPage (DSL_DEV_Device_t *, u32, u32, u32, u32 *, u32 *); +static int IFX_MEI_BarUpdate (DSL_DEV_Device_t *, int); + +static ssize_t IFX_MEI_Write (DSL_DRV_file_t *, const char *, size_t, loff_t *); +static long IFX_MEI_UserIoctls (DSL_DRV_file_t *, unsigned int, unsigned long); +static int IFX_MEI_Open (DSL_DRV_inode_t *, DSL_DRV_file_t *); +static int IFX_MEI_Release (DSL_DRV_inode_t *, DSL_DRV_file_t *); + +void AMAZON_SE_MEI_ARC_MUX_Test(void); + +void IFX_MEI_ARC_MUX_Test(void); + +static int adsl_dummy_ledcallback(void); + +int (*ifx_mei_atm_showtime_enter)(struct port_cell_info *, void *) = NULL; +EXPORT_SYMBOL(ifx_mei_atm_showtime_enter); + +int (*ifx_mei_atm_showtime_exit)(void) = NULL; +EXPORT_SYMBOL(ifx_mei_atm_showtime_exit); + +static int (*g_adsl_ledcallback)(void) = adsl_dummy_ledcallback; + +static unsigned int g_tx_link_rate[2] = {0}; + +static void *g_xdata_addr = NULL; + +static u32 *mei_arc_swap_buff = NULL; // holding swap pages + +extern void ltq_mask_and_ack_irq(struct irq_data *d); +static void inline MEI_MASK_AND_ACK_IRQ(int x) +{ + struct irq_data d; + d.hwirq = x; + ltq_mask_and_ack_irq(&d); +} +#define MEI_MAJOR 105 +static int dev_major = MEI_MAJOR; + +static struct file_operations bsp_mei_operations = { + owner:THIS_MODULE, + open:IFX_MEI_Open, + release:IFX_MEI_Release, + write:IFX_MEI_Write, + unlocked_ioctl:IFX_MEI_UserIoctls, +}; + +static DSL_DEV_Device_t dsl_devices[BSP_MAX_DEVICES]; + +static ifx_mei_device_private_t + sDanube_Mei_Private[BSP_MAX_DEVICES]; + +static DSL_BSP_EventCallBack_t dsl_bsp_event_callback[DSL_BSP_CB_LAST + 1]; + +/** + * Write a value to register + * This function writes a value to danube register + * + * \param ul_address The address to write + * \param ul_data The value to write + * \ingroup Internal + */ +static void +IFX_MEI_LongWordWrite (u32 ul_address, u32 ul_data) +{ + IFX_MEI_WRITE_REGISTER_L (ul_data, ul_address); + wmb(); + return; +} + +/** + * Write a value to register + * This function writes a value to danube register + * + * \param pDev the device pointer + * \param ul_address The address to write + * \param ul_data The value to write + * \ingroup Internal + */ +static void +IFX_MEI_LongWordWriteOffset (DSL_DEV_Device_t * pDev, u32 ul_address, + u32 ul_data) +{ + IFX_MEI_WRITE_REGISTER_L (ul_data, pDev->base_address + ul_address); + wmb(); + return; +} + +/** + * Read the danube register + * This function read the value from danube register + * + * \param ul_address The address to write + * \param pul_data Pointer to the data + * \ingroup Internal + */ +static void +IFX_MEI_LongWordRead (u32 ul_address, u32 * pul_data) +{ + *pul_data = IFX_MEI_READ_REGISTER_L (ul_address); + rmb(); + return; +} + +/** + * Read the danube register + * This function read the value from danube register + * + * \param pDev the device pointer + * \param ul_address The address to write + * \param pul_data Pointer to the data + * \ingroup Internal + */ +static void +IFX_MEI_LongWordReadOffset (DSL_DEV_Device_t * pDev, u32 ul_address, + u32 * pul_data) +{ + *pul_data = IFX_MEI_READ_REGISTER_L (pDev->base_address + ul_address); + rmb(); + return; +} + +/** + * Write several DWORD datas to ARC memory via ARC DMA interface + * This function writes several DWORD datas to ARC memory via DMA interface. + * + * \param pDev the device pointer + * \param destaddr The address to write + * \param databuff Pointer to the data buffer + * \param databuffsize Number of DWORDs to write + * \return DSL_DEV_MEI_ERR_SUCCESS or DSL_DEV_MEI_ERR_FAILURE + * \ingroup Internal + */ +static DSL_DEV_MeiError_t +IFX_MEI_DMAWrite (DSL_DEV_Device_t * pDev, u32 destaddr, + u32 * databuff, u32 databuffsize) +{ + u32 *p = databuff; + u32 temp; + + if (destaddr & 3) + return DSL_DEV_MEI_ERR_FAILURE; + + // Set the write transfer address + IFX_MEI_LongWordWriteOffset (pDev, ME_DX_AD, destaddr); + + // Write the data pushed across DMA + while (databuffsize--) { + temp = *p; + if (destaddr == MEI_TO_ARC_MAILBOX) + MEI_HALF_WORD_SWAP (temp); + IFX_MEI_LongWordWriteOffset (pDev, (u32) ME_DX_DATA, temp); + p++; + } + + return DSL_DEV_MEI_ERR_SUCCESS; + +} + +/** + * Read several DWORD datas from ARC memory via ARC DMA interface + * This function reads several DWORD datas from ARC memory via DMA interface. + * + * \param pDev the device pointer + * \param srcaddr The address to read + * \param databuff Pointer to the data buffer + * \param databuffsize Number of DWORDs to read + * \return DSL_DEV_MEI_ERR_SUCCESS or DSL_DEV_MEI_ERR_FAILURE + * \ingroup Internal + */ +static DSL_DEV_MeiError_t +IFX_MEI_DMARead (DSL_DEV_Device_t * pDev, u32 srcaddr, u32 * databuff, + u32 databuffsize) +{ + u32 *p = databuff; + u32 temp; + + if (srcaddr & 3) + return DSL_DEV_MEI_ERR_FAILURE; + + // Set the read transfer address + IFX_MEI_LongWordWriteOffset (pDev, (u32) ME_DX_AD, srcaddr); + + // Read the data popped across DMA + while (databuffsize--) { + IFX_MEI_LongWordReadOffset (pDev, (u32) ME_DX_DATA, &temp); + if (databuff == (u32 *) DSL_DEV_PRIVATE(pDev)->CMV_RxMsg) // swap half word + MEI_HALF_WORD_SWAP (temp); + *p = temp; + p++; + } + + return DSL_DEV_MEI_ERR_SUCCESS; + +} + +/** + * Switch the ARC control mode + * This function switchs the ARC control mode to JTAG mode or MEI mode + * + * \param pDev the device pointer + * \param mode The mode want to switch: JTAG_MASTER_MODE or MEI_MASTER_MODE. + * \ingroup Internal + */ +static void +IFX_MEI_ControlModeSet (DSL_DEV_Device_t * pDev, int mode) +{ + u32 temp = 0x0; + + IFX_MEI_LongWordReadOffset (pDev, (u32) ME_DBG_MASTER, &temp); + switch (mode) { + case JTAG_MASTER_MODE: + temp &= ~(HOST_MSTR); + break; + case MEI_MASTER_MODE: + temp |= (HOST_MSTR); + break; + default: + IFX_MEI_EMSG ("IFX_MEI_ControlModeSet: unkonwn mode [%d]\n", mode); + return; + } + IFX_MEI_LongWordWriteOffset (pDev, (u32) ME_DBG_MASTER, temp); +} + +/** + * Disable ARC to MEI interrupt + * + * \param pDev the device pointer + * \ingroup Internal + */ +static void +IFX_MEI_IRQDisable (DSL_DEV_Device_t * pDev) +{ + IFX_MEI_LongWordWriteOffset (pDev, (u32) ME_ARC2ME_MASK, 0x0); +} + +/** + * Eable ARC to MEI interrupt + * + * \param pDev the device pointer + * \ingroup Internal + */ +static void +IFX_MEI_IRQEnable (DSL_DEV_Device_t * pDev) +{ + IFX_MEI_LongWordWriteOffset (pDev, (u32) ME_ARC2ME_MASK, MSGAV_EN); +} + +/** + * Poll for transaction complete signal + * This function polls and waits for transaction complete signal. + * + * \param pDev the device pointer + * \ingroup Internal + */ +static void +meiPollForDbgDone (DSL_DEV_Device_t * pDev) +{ + u32 query = 0; + int i = 0; + + while (i < WHILE_DELAY) { + IFX_MEI_LongWordReadOffset (pDev, (u32) ME_ARC2ME_STAT, &query); + query &= (ARC_TO_MEI_DBG_DONE); + if (query) + break; + i++; + if (i == WHILE_DELAY) { + IFX_MEI_EMSG ("PollforDbg fail!\n"); + } + } + IFX_MEI_LongWordWriteOffset (pDev, (u32) ME_ARC2ME_STAT, ARC_TO_MEI_DBG_DONE); // to clear this interrupt +} + +/** + * ARC Debug Memory Access for a single DWORD reading. + * This function used for direct, address-based access to ARC memory. + * + * \param pDev the device pointer + * \param DEC_mode ARC memory space to used + * \param address Address to read + * \param data Pointer to data + * \return DSL_DEV_MEI_ERR_SUCCESS or DSL_DEV_MEI_ERR_FAILURE + * \ingroup Internal + */ +static DSL_DEV_MeiError_t +_IFX_MEI_DBGLongWordRead (DSL_DEV_Device_t * pDev, u32 DEC_mode, + u32 address, u32 * data) +{ + IFX_MEI_LongWordWriteOffset (pDev, (u32) ME_DBG_DECODE, DEC_mode); + IFX_MEI_LongWordWriteOffset (pDev, (u32) ME_DBG_RD_AD, address); + meiPollForDbgDone (pDev); + IFX_MEI_LongWordReadOffset (pDev, (u32) ME_DBG_DATA, data); + return DSL_DEV_MEI_ERR_SUCCESS; +} + +/** + * ARC Debug Memory Access for a single DWORD writing. + * This function used for direct, address-based access to ARC memory. + * + * \param pDev the device pointer + * \param DEC_mode ARC memory space to used + * \param address The address to write + * \param data The data to write + * \return DSL_DEV_MEI_ERR_SUCCESS or DSL_DEV_MEI_ERR_FAILURE + * \ingroup Internal + */ +static DSL_DEV_MeiError_t +_IFX_MEI_DBGLongWordWrite (DSL_DEV_Device_t * pDev, u32 DEC_mode, + u32 address, u32 data) +{ + IFX_MEI_LongWordWriteOffset (pDev, (u32) ME_DBG_DECODE, DEC_mode); + IFX_MEI_LongWordWriteOffset (pDev, (u32) ME_DBG_WR_AD, address); + IFX_MEI_LongWordWriteOffset (pDev, (u32) ME_DBG_DATA, data); + meiPollForDbgDone (pDev); + return DSL_DEV_MEI_ERR_SUCCESS; +} + +/** + * ARC Debug Memory Access for writing. + * This function used for direct, address-based access to ARC memory. + * + * \param pDev the device pointer + * \param destaddr The address to read + * \param databuffer Pointer to data + * \param databuffsize The number of DWORDs to read + * \return DSL_DEV_MEI_ERR_SUCCESS or DSL_DEV_MEI_ERR_FAILURE + * \ingroup Internal + */ + +static DSL_DEV_MeiError_t +IFX_MEI_DebugWrite (DSL_DEV_Device_t * pDev, u32 destaddr, + u32 * databuff, u32 databuffsize) +{ + u32 i; + u32 temp = 0x0; + u32 address = 0x0; + u32 *buffer = 0x0; + + // Open the debug port before DMP memory write + IFX_MEI_ControlModeSet (pDev, MEI_MASTER_MODE); + + // For the requested length, write the address and write the data + address = destaddr; + buffer = databuff; + for (i = 0; i < databuffsize; i++) { + temp = *buffer; + _IFX_MEI_DBGLongWordWrite (pDev, ME_DBG_DECODE_DMP1_MASK, address, temp); + address += 4; + buffer++; + } + + // Close the debug port after DMP memory write + IFX_MEI_ControlModeSet (pDev, JTAG_MASTER_MODE); + + return DSL_DEV_MEI_ERR_SUCCESS; +} + +/** + * ARC Debug Memory Access for reading. + * This function used for direct, address-based access to ARC memory. + * + * \param pDev the device pointer + * \param srcaddr The address to read + * \param databuffer Pointer to data + * \param databuffsize The number of DWORDs to read + * \return DSL_DEV_MEI_ERR_SUCCESS or DSL_DEV_MEI_ERR_FAILURE + * \ingroup Internal + */ +static DSL_DEV_MeiError_t +IFX_MEI_DebugRead (DSL_DEV_Device_t * pDev, u32 srcaddr, u32 * databuff, u32 databuffsize) +{ + u32 i; + u32 temp = 0x0; + u32 address = 0x0; + u32 *buffer = 0x0; + + // Open the debug port before DMP memory read + IFX_MEI_ControlModeSet (pDev, MEI_MASTER_MODE); + + // For the requested length, write the address and read the data + address = srcaddr; + buffer = databuff; + for (i = 0; i < databuffsize; i++) { + _IFX_MEI_DBGLongWordRead (pDev, ME_DBG_DECODE_DMP1_MASK, address, &temp); + *buffer = temp; + address += 4; + buffer++; + } + + // Close the debug port after DMP memory read + IFX_MEI_ControlModeSet (pDev, JTAG_MASTER_MODE); + + return DSL_DEV_MEI_ERR_SUCCESS; +} + +/** + * Send a message to ARC MailBox. + * This function sends a message to ARC Mailbox via ARC DMA interface. + * + * \param pDev the device pointer + * \param msgsrcbuffer Pointer to message. + * \param msgsize The number of words to write. + * \return DSL_DEV_MEI_ERR_SUCCESS or DSL_DEV_MEI_ERR_FAILURE + * \ingroup Internal + */ +static DSL_DEV_MeiError_t +IFX_MEI_MailboxWrite (DSL_DEV_Device_t * pDev, u16 * msgsrcbuffer, + u16 msgsize) +{ + int i; + u32 arc_mailbox_status = 0x0; + u32 temp = 0; + DSL_DEV_MeiError_t meiMailboxError = DSL_DEV_MEI_ERR_SUCCESS; + + // Write to mailbox + meiMailboxError = + IFX_MEI_DMAWrite (pDev, MEI_TO_ARC_MAILBOX, (u32 *) msgsrcbuffer, msgsize / 2); + meiMailboxError = + IFX_MEI_DMAWrite (pDev, MEI_TO_ARC_MAILBOXR, (u32 *) (&temp), 1); + + // Notify arc that mailbox write completed + DSL_DEV_PRIVATE(pDev)->cmv_waiting = 1; + IFX_MEI_LongWordWriteOffset (pDev, (u32) ME_ME2ARC_INT, MEI_TO_ARC_MSGAV); + + i = 0; + while (i < WHILE_DELAY) { // wait for ARC to clear the bit + IFX_MEI_LongWordReadOffset (pDev, (u32) ME_ME2ARC_INT, &arc_mailbox_status); + if ((arc_mailbox_status & MEI_TO_ARC_MSGAV) != MEI_TO_ARC_MSGAV) + break; + i++; + if (i == WHILE_DELAY) { + IFX_MEI_EMSG (">>> Timeout waiting for ARC to clear MEI_TO_ARC_MSGAV!!!" + " MEI_TO_ARC message size = %d DWORDs <<<\n", msgsize/2); + meiMailboxError = DSL_DEV_MEI_ERR_FAILURE; + } + } + + return meiMailboxError; +} + +/** + * Read a message from ARC MailBox. + * This function reads a message from ARC Mailbox via ARC DMA interface. + * + * \param pDev the device pointer + * \param msgsrcbuffer Pointer to message. + * \param msgsize The number of words to read + * \return DSL_DEV_MEI_ERR_SUCCESS or DSL_DEV_MEI_ERR_FAILURE + * \ingroup Internal + */ +static DSL_DEV_MeiError_t +IFX_MEI_MailboxRead (DSL_DEV_Device_t * pDev, u16 * msgdestbuffer, + u16 msgsize) +{ + DSL_DEV_MeiError_t meiMailboxError = DSL_DEV_MEI_ERR_SUCCESS; + // Read from mailbox + meiMailboxError = + IFX_MEI_DMARead (pDev, ARC_TO_MEI_MAILBOX, (u32 *) msgdestbuffer, msgsize / 2); + + // Notify arc that mailbox read completed + IFX_MEI_LongWordWriteOffset (pDev, (u32) ME_ARC2ME_STAT, ARC_TO_MEI_MSGAV); + + return meiMailboxError; +} + +/** + * Download boot pages to ARC. + * This function downloads boot pages to ARC. + * + * \param pDev the device pointer + * \return DSL_DEV_MEI_ERR_SUCCESS or DSL_DEV_MEI_ERR_FAILURE + * \ingroup Internal + */ +static DSL_DEV_MeiError_t +IFX_MEI_DownloadBootPages (DSL_DEV_Device_t * pDev) +{ + int boot_loop; + int page_size; + u32 dest_addr; + + /* + ** DMA the boot code page(s) + */ + + for (boot_loop = 1; + boot_loop < + (DSL_DEV_PRIVATE(pDev)->img_hdr-> count); boot_loop++) { + if ((DSL_DEV_PRIVATE(pDev)-> img_hdr->page[boot_loop].p_size) & BOOT_FLAG) { + page_size = IFX_MEI_GetPage (pDev, boot_loop, + GET_PROG, MAXSWAPSIZE, + mei_arc_swap_buff, + &dest_addr); + if (page_size > 0) { + IFX_MEI_DMAWrite (pDev, dest_addr, + mei_arc_swap_buff, + page_size); + } + } + if ((DSL_DEV_PRIVATE(pDev)-> img_hdr->page[boot_loop].d_size) & BOOT_FLAG) { + page_size = IFX_MEI_GetPage (pDev, boot_loop, + GET_DATA, MAXSWAPSIZE, + mei_arc_swap_buff, + &dest_addr); + if (page_size > 0) { + IFX_MEI_DMAWrite (pDev, dest_addr, + mei_arc_swap_buff, + page_size); + } + } + } + return DSL_DEV_MEI_ERR_SUCCESS; +} + +/** + * Initial efuse rar. + **/ +static void +IFX_MEI_FuseInit (DSL_DEV_Device_t * pDev) +{ + u32 data = 0; + IFX_MEI_DMAWrite (pDev, IRAM0_BASE, &data, 1); + IFX_MEI_DMAWrite (pDev, IRAM0_BASE + 4, &data, 1); + IFX_MEI_DMAWrite (pDev, IRAM1_BASE, &data, 1); + IFX_MEI_DMAWrite (pDev, IRAM1_BASE + 4, &data, 1); + IFX_MEI_DMAWrite (pDev, BRAM_BASE, &data, 1); + IFX_MEI_DMAWrite (pDev, BRAM_BASE + 4, &data, 1); + IFX_MEI_DMAWrite (pDev, ADSL_DILV_BASE, &data, 1); + IFX_MEI_DMAWrite (pDev, ADSL_DILV_BASE + 4, &data, 1); +} + +/** + * efuse rar program + **/ +static void +IFX_MEI_FuseProg (DSL_DEV_Device_t * pDev) +{ + u32 reg_data, fuse_value; + int i = 0; + + IFX_MEI_LongWordRead ((u32) LTQ_RCU_RST, ®_data); + while ((reg_data & 0x10000000) == 0) { + IFX_MEI_LongWordRead ((u32) LTQ_RCU_RST, ®_data); + i++; + /* 0x4000 translate to about 16 ms@111M, so should be enough */ + if (i == 0x4000) + return; + } + // STEP a: Prepare memory for external accesses + // Write fuse_en bit24 + IFX_MEI_LongWordRead ((u32) LTQ_RCU_RST, ®_data); + IFX_MEI_LongWordWrite ((u32) LTQ_RCU_RST, reg_data | (1 << 24)); + + IFX_MEI_FuseInit (pDev); + for (i = 0; i < 4; i++) { + IFX_MEI_LongWordRead ((u32) (LTQ_FUSE_BASE) + i * 4, &fuse_value); + switch (fuse_value & 0xF0000) { + case 0x80000: + reg_data = ((fuse_value & RX_DILV_ADDR_BIT_MASK) | + (RX_DILV_ADDR_BIT_MASK + 0x1)); + IFX_MEI_DMAWrite (pDev, ADSL_DILV_BASE, ®_data, 1); + break; + case 0x90000: + reg_data = ((fuse_value & RX_DILV_ADDR_BIT_MASK) | + (RX_DILV_ADDR_BIT_MASK + 0x1)); + IFX_MEI_DMAWrite (pDev, ADSL_DILV_BASE + 4, ®_data, 1); + break; + case 0xA0000: + reg_data = ((fuse_value & IRAM0_ADDR_BIT_MASK) | + (IRAM0_ADDR_BIT_MASK + 0x1)); + IFX_MEI_DMAWrite (pDev, IRAM0_BASE, ®_data, 1); + break; + case 0xB0000: + reg_data = ((fuse_value & IRAM0_ADDR_BIT_MASK) | + (IRAM0_ADDR_BIT_MASK + 0x1)); + IFX_MEI_DMAWrite (pDev, IRAM0_BASE + 4, ®_data, 1); + break; + case 0xC0000: + reg_data = ((fuse_value & IRAM1_ADDR_BIT_MASK) | + (IRAM1_ADDR_BIT_MASK + 0x1)); + IFX_MEI_DMAWrite (pDev, IRAM1_BASE, ®_data, 1); + break; + case 0xD0000: + reg_data = ((fuse_value & IRAM1_ADDR_BIT_MASK) | + (IRAM1_ADDR_BIT_MASK + 0x1)); + IFX_MEI_DMAWrite (pDev, IRAM1_BASE + 4, ®_data, 1); + break; + case 0xE0000: + reg_data = ((fuse_value & BRAM_ADDR_BIT_MASK) | + (BRAM_ADDR_BIT_MASK + 0x1)); + IFX_MEI_DMAWrite (pDev, BRAM_BASE, ®_data, 1); + break; + case 0xF0000: + reg_data = ((fuse_value & BRAM_ADDR_BIT_MASK) | + (BRAM_ADDR_BIT_MASK + 0x1)); + IFX_MEI_DMAWrite (pDev, BRAM_BASE + 4, ®_data, 1); + break; + default: // PPE efuse + break; + } + } + IFX_MEI_LongWordRead ((u32) LTQ_RCU_RST, ®_data); + IFX_MEI_LongWordWrite ((u32) LTQ_RCU_RST, reg_data & ~(1 << 24)); + IFX_MEI_LongWordRead ((u32) LTQ_RCU_RST, ®_data); +} + +/** + * Enable DFE Clock + * This function enables DFE Clock + * + * \param pDev the device pointer + * \return DSL_DEV_MEI_ERR_SUCCESS or DSL_DEV_MEI_ERR_FAILURE + * \ingroup Internal + */ +static DSL_DEV_MeiError_t +IFX_MEI_EnableCLK (DSL_DEV_Device_t * pDev) +{ + u32 arc_debug_data = 0; + IFX_MEI_ControlModeSet (pDev, MEI_MASTER_MODE); + //enable ac_clk signal + _IFX_MEI_DBGLongWordRead (pDev, ME_DBG_DECODE_DMP1_MASK, + CRI_CCR0, &arc_debug_data); + arc_debug_data |= ACL_CLK_MODE_ENABLE; + _IFX_MEI_DBGLongWordWrite (pDev, ME_DBG_DECODE_DMP1_MASK, + CRI_CCR0, arc_debug_data); + IFX_MEI_ControlModeSet (pDev, JTAG_MASTER_MODE); + return DSL_DEV_MEI_ERR_SUCCESS; +} + +/** + * Halt the ARC. + * This function halts the ARC. + * + * \param pDev the device pointer + * \return DSL_DEV_MEI_ERR_SUCCESS or DSL_DEV_MEI_ERR_FAILURE + * \ingroup Internal + */ +static DSL_DEV_MeiError_t +IFX_MEI_HaltArc (DSL_DEV_Device_t * pDev) +{ + u32 arc_debug_data = 0x0; + + // Switch arc control from JTAG mode to MEI mode + IFX_MEI_ControlModeSet (pDev, MEI_MASTER_MODE); + _IFX_MEI_DBGLongWordRead (pDev, MEI_DEBUG_DEC_AUX_MASK, + ARC_DEBUG, &arc_debug_data); + arc_debug_data |= ARC_DEBUG_HALT; + _IFX_MEI_DBGLongWordWrite (pDev, MEI_DEBUG_DEC_AUX_MASK, + ARC_DEBUG, arc_debug_data); + // Switch arc control from MEI mode to JTAG mode + IFX_MEI_ControlModeSet (pDev, JTAG_MASTER_MODE); + + MEI_WAIT (10); + + return DSL_DEV_MEI_ERR_SUCCESS; +} + +/** + * Run the ARC. + * This function runs the ARC. + * + * \param pDev the device pointer + * \return DSL_DEV_MEI_ERR_SUCCESS or DSL_DEV_MEI_ERR_FAILURE + * \ingroup Internal + */ +static DSL_DEV_MeiError_t +IFX_MEI_RunArc (DSL_DEV_Device_t * pDev) +{ + u32 arc_debug_data = 0x0; + + // Switch arc control from JTAG mode to MEI mode- write '1' to bit0 + IFX_MEI_ControlModeSet (pDev, MEI_MASTER_MODE); + _IFX_MEI_DBGLongWordRead (pDev, MEI_DEBUG_DEC_AUX_MASK, + AUX_STATUS, &arc_debug_data); + + // Write debug data reg with content ANDd with 0xFDFFFFFF (halt bit cleared) + arc_debug_data &= ~ARC_AUX_HALT; + _IFX_MEI_DBGLongWordWrite (pDev, MEI_DEBUG_DEC_AUX_MASK, + AUX_STATUS, arc_debug_data); + + // Switch arc control from MEI mode to JTAG mode- write '0' to bit0 + IFX_MEI_ControlModeSet (pDev, JTAG_MASTER_MODE); + // Enable mask for arc codeswap interrupts + IFX_MEI_IRQEnable (pDev); + + return DSL_DEV_MEI_ERR_SUCCESS; + +} + +/** + * Reset the ARC. + * This function resets the ARC. + * + * \param pDev the device pointer + * \return DSL_DEV_MEI_ERR_SUCCESS or DSL_DEV_MEI_ERR_FAILURE + * \ingroup Internal + */ +static DSL_DEV_MeiError_t +IFX_MEI_ResetARC (DSL_DEV_Device_t * pDev) +{ + u32 arc_debug_data = 0; + + IFX_MEI_HaltArc (pDev); + + IFX_MEI_LongWordRead ((u32) LTQ_RCU_RST, &arc_debug_data); + IFX_MEI_LongWordWrite ((u32) LTQ_RCU_RST, + arc_debug_data | LTQ_RCU_RST_REQ_DFE | LTQ_RCU_RST_REQ_AFE); + + // reset ARC + IFX_MEI_LongWordWriteOffset (pDev, (u32) ME_RST_CTRL, MEI_SOFT_RESET); + IFX_MEI_LongWordWriteOffset (pDev, (u32) ME_RST_CTRL, 0); + + IFX_MEI_IRQDisable (pDev); + + IFX_MEI_EnableCLK (pDev); + +#if 0 + // reset part of PPE + *(unsigned long *) (BSP_PPE32_SRST) = 0xC30; + *(unsigned long *) (BSP_PPE32_SRST) = 0xFFF; +#endif + + DSL_DEV_PRIVATE(pDev)->modem_ready = 0; + + return DSL_DEV_MEI_ERR_SUCCESS; +} + +DSL_DEV_MeiError_t +DSL_BSP_Showtime (DSL_DEV_Device_t * dev, DSL_uint32_t rate_fast, DSL_uint32_t rate_intl) +{ + struct port_cell_info port_cell = {0}; + + IFX_MEI_EMSG ("Datarate US intl = %d, fast = %d\n", (int)rate_intl, + (int)rate_fast); + + if ( rate_fast ) + g_tx_link_rate[0] = rate_fast / (53 * 8); + if ( rate_intl ) + g_tx_link_rate[1] = rate_intl / (53 * 8); + + if ( g_tx_link_rate[0] == 0 && g_tx_link_rate[1] == 0 ) { + IFX_MEI_EMSG ("Got rate fail.\n"); + } + + if ( ifx_mei_atm_showtime_enter ) + { + port_cell.port_num = 2; + port_cell.tx_link_rate[0] = g_tx_link_rate[0]; + port_cell.tx_link_rate[1] = g_tx_link_rate[1]; + ifx_mei_atm_showtime_enter(&port_cell, g_xdata_addr); + } + else + { + IFX_MEI_EMSG("no hookup from ATM driver to set cell rate\n"); + } + + return DSL_DEV_MEI_ERR_SUCCESS; +}; + +/** + * Reset/halt/run the DFE. + * This function provide operations to reset/halt/run the DFE. + * + * \param pDev the device pointer + * \param mode which operation want to do + * \return DSL_DEV_MEI_ERR_SUCCESS or DSL_DEV_MEI_ERR_FAILURE + * \ingroup Internal + */ +static DSL_DEV_MeiError_t +IFX_MEI_CpuModeSet (DSL_DEV_Device_t *pDev, + DSL_DEV_CpuMode_t mode) +{ + DSL_DEV_MeiError_t err_ret = DSL_DEV_MEI_ERR_FAILURE; + switch (mode) { + case DSL_CPU_HALT: + err_ret = IFX_MEI_HaltArc (pDev); + break; + case DSL_CPU_RUN: + err_ret = IFX_MEI_RunArc (pDev); + break; + case DSL_CPU_RESET: + err_ret = IFX_MEI_ResetARC (pDev); + break; + default: + break; + } + return err_ret; +} + +/** + * Accress DFE memory. + * This function provide a way to access DFE memory; + * + * \param pDev the device pointer + * \param type read or write + * \param destaddr destination address + * \param databuff pointer to hold data + * \param databuffsize size want to read/write + * \return DSL_DEV_MEI_ERR_SUCCESS or DSL_DEV_MEI_ERR_FAILURE + * \ingroup Internal + */ +DSL_DEV_MeiError_t +DSL_BSP_MemoryDebugAccess (DSL_DEV_Device_t * pDev, + DSL_BSP_MemoryAccessType_t type, + DSL_uint32_t destaddr, DSL_uint32_t *databuff, + DSL_uint32_t databuffsize) +{ + DSL_DEV_MeiError_t meierr = DSL_DEV_MEI_ERR_SUCCESS; + switch (type) { + case DSL_BSP_MEMORY_READ: + meierr = IFX_MEI_DebugRead (pDev, (u32)destaddr, (u32*)databuff, (u32)databuffsize); + break; + case DSL_BSP_MEMORY_WRITE: + meierr = IFX_MEI_DebugWrite (pDev, (u32)destaddr, (u32*)databuff, (u32)databuffsize); + break; + } + return DSL_DEV_MEI_ERR_SUCCESS; +}; + +/** + * Download boot code to ARC. + * This function downloads boot code to ARC. + * + * \param pDev the device pointer + * \return DSL_DEV_MEI_ERR_SUCCESS or DSL_DEV_MEI_ERR_FAILURE + * \ingroup Internal + */ +static DSL_DEV_MeiError_t +IFX_MEI_DownloadBootCode (DSL_DEV_Device_t *pDev) +{ + IFX_MEI_IRQDisable (pDev); + + IFX_MEI_EnableCLK (pDev); + + IFX_MEI_FuseProg (pDev); //program fuse rar + + IFX_MEI_DownloadBootPages (pDev); + + return DSL_DEV_MEI_ERR_SUCCESS; +}; + +/** + * Enable Jtag debugger interface + * This function setups mips gpio to enable jtag debugger + * + * \param pDev the device pointer + * \param enable enable or disable + * \return DSL_DEV_MEI_ERR_SUCCESS or DSL_DEV_MEI_ERR_FAILURE + * \ingroup Internal + */ +static DSL_DEV_MeiError_t +IFX_MEI_ArcJtagEnable (DSL_DEV_Device_t *dev, int enable) +{ + /* + int meierr=0; + u32 reg_data; + switch (enable) { + case 1: + //reserve gpio 9, 10, 11, 14, 19 for ARC JTAG + ifxmips_port_reserve_pin (0, 9); + ifxmips_port_reserve_pin (0, 10); + ifxmips_port_reserve_pin (0, 11); + ifxmips_port_reserve_pin (0, 14); + ifxmips_port_reserve_pin (1, 3); + + ifxmips_port_set_dir_in(0, 11); + ifxmips_port_clear_altsel0(0, 11); + ifxmips_port_clear_altsel1(0, 11); + ifxmips_port_set_open_drain(0, 11); + //enable ARC JTAG + IFX_MEI_LongWordRead ((u32) LTQ_RCU_RST, ®_data); + IFX_MEI_LongWordWrite ((u32) LTQ_RCU_RST, reg_data | LTQ_RCU_RST_REQ_ARC_JTAG); + break; + case 0: + default: + break; + } +jtag_end: + if (meierr) + return DSL_DEV_MEI_ERR_FAILURE; +*/ + + return DSL_DEV_MEI_ERR_SUCCESS; +}; + +/** + * Enable DFE to MIPS interrupt + * This function enable DFE to MIPS interrupt + * + * \param pDev the device pointer + * \param enable enable or disable + * \return DSL_DEV_MEI_ERR_SUCCESS or DSL_DEV_MEI_ERR_FAILURE + * \ingroup Internal + */ +static DSL_DEV_MeiError_t +IFX_MEI_AdslMailboxIRQEnable (DSL_DEV_Device_t *pDev, int enable) +{ + DSL_DEV_MeiError_t meierr; + switch (enable) { + case 0: + meierr = DSL_DEV_MEI_ERR_SUCCESS; + IFX_MEI_IRQDisable (pDev); + break; + case 1: + IFX_MEI_IRQEnable (pDev); + meierr = DSL_DEV_MEI_ERR_SUCCESS; + break; + default: + meierr = DSL_DEV_MEI_ERR_FAILURE; + break; + + } + return meierr; +} + +/** + * Get the modem status + * This function return the modem status + * + * \param pDev the device pointer + * \return 1: modem ready 0: not ready + * \ingroup Internal + */ +static int +IFX_MEI_IsModemReady (DSL_DEV_Device_t * pDev) +{ + return DSL_DEV_PRIVATE(pDev)->modem_ready; +} + +DSL_DEV_MeiError_t +DSL_BSP_AdslLedInit (DSL_DEV_Device_t * dev, + DSL_DEV_LedId_t led_number, + DSL_DEV_LedType_t type, + DSL_DEV_LedHandler_t handler) +{ +#if 0 + struct led_config_param param; + if (led_number == DSL_LED_LINK_ID && type == DSL_LED_LINK_TYPE && handler == /*DSL_LED_HD_CPU*/DSL_LED_HD_FW) { + param.operation_mask = CONFIG_OPERATION_UPDATE_SOURCE; + param.led = 0x01; + param.source = 0x01; +// bsp_led_config (¶m); + + } else if (led_number == DSL_LED_DATA_ID && type == DSL_LED_DATA_TYPE && (handler == DSL_LED_HD_FW)) { + param.operation_mask = CONFIG_OPERATION_UPDATE_SOURCE; + param.led = 0x02; + param.source = 0x02; +// bsp_led_config (¶m); + } +#endif + return DSL_DEV_MEI_ERR_SUCCESS; +}; +#if 0 +DSL_DEV_MeiError_t +DSL_BSP_AdslLedSet (DSL_DEV_Device_t * dev, DSL_DEV_LedId_t led_number, DSL_DEV_LedMode_t mode) +{ + printk(KERN_INFO "[%s %d]: mode = %#x, led_number = %d\n", __func__, __LINE__, mode, led_number); + switch (mode) { + case DSL_LED_OFF: + switch (led_number) { + case DSL_LED_LINK_ID: +#ifdef CONFIG_BSP_LED + bsp_led_set_blink (1, 0); + bsp_led_set_data (1, 0); +#endif + break; + case DSL_LED_DATA_ID: +#ifdef CONFIG_BSP_LED + bsp_led_set_blink (0, 0); + bsp_led_set_data (0, 0); +#endif + break; + } + break; + case DSL_LED_FLASH: + switch (led_number) { + case DSL_LED_LINK_ID: +#ifdef CONFIG_BSP_LED + bsp_led_set_blink (1, 1); // data +#endif + break; + case DSL_LED_DATA_ID: +#ifdef CONFIG_BSP_LED + bsp_led_set_blink (0, 1); // data +#endif + break; + } + break; + case DSL_LED_ON: + switch (led_number) { + case DSL_LED_LINK_ID: +#ifdef CONFIG_BSP_LED + bsp_led_set_blink (1, 0); + bsp_led_set_data (1, 1); +#endif + break; + case DSL_LED_DATA_ID: +#ifdef CONFIG_BSP_LED + bsp_led_set_blink (0, 0); + bsp_led_set_data (0, 1); +#endif + break; + } + break; + } + return DSL_DEV_MEI_ERR_SUCCESS; +}; + +#endif + +/** +* Compose a message. +* This function compose a message from opcode, group, address, index, size, and data +* +* \param opcode The message opcode +* \param group The message group number +* \param address The message address. +* \param index The message index. +* \param size The number of words to read/write. +* \param data The pointer to data. +* \param CMVMSG The pointer to message buffer. +* \ingroup Internal +*/ +void +makeCMV (u8 opcode, u8 group, u16 address, u16 index, int size, u16 * data, u16 *CMVMSG) +{ + memset (CMVMSG, 0, MSG_LENGTH * 2); + CMVMSG[0] = (opcode << 4) + (size & 0xf); + CMVMSG[1] = (((index == 0) ? 0 : 1) << 7) + (group & 0x7f); + CMVMSG[2] = address; + CMVMSG[3] = index; + if (opcode == H2D_CMV_WRITE) + memcpy (CMVMSG + 4, data, size * 2); + return; +} + +/** + * Send a message to ARC and read the response + * This function sends a message to arc, waits the response, and reads the responses. + * + * \param pDev the device pointer + * \param request Pointer to the request + * \param reply Wait reply or not. + * \param response Pointer to the response + * \return DSL_DEV_MEI_ERR_SUCCESS or DSL_DEV_MEI_ERR_FAILURE + * \ingroup Internal + */ +DSL_DEV_MeiError_t +DSL_BSP_SendCMV (DSL_DEV_Device_t * pDev, u16 * request, int reply, u16 * response) // write cmv to arc, if reply needed, wait for reply +{ + DSL_DEV_MeiError_t meierror; +#if defined(BSP_PORT_RTEMS) + int delay_counter = 0; +#endif + + if (MEI_MUTEX_LOCK (DSL_DEV_PRIVATE(pDev)->mei_cmv_sema)) + return -ERESTARTSYS; + + DSL_DEV_PRIVATE(pDev)->cmv_reply = reply; + memset (DSL_DEV_PRIVATE(pDev)->CMV_RxMsg, 0, + sizeof (DSL_DEV_PRIVATE(pDev)-> + CMV_RxMsg)); + DSL_DEV_PRIVATE(pDev)->arcmsgav = 0; + + meierror = IFX_MEI_MailboxWrite (pDev, request, MSG_LENGTH); + + if (meierror != DSL_DEV_MEI_ERR_SUCCESS) { + DSL_DEV_PRIVATE(pDev)->cmv_waiting = 0; + DSL_DEV_PRIVATE(pDev)->arcmsgav = 0; + IFX_MEI_EMSG ("MailboxWrite Fail!\n"); + IFX_MEI_EMSG ("Resetting ARC...\n"); + IFX_MEI_ResetARC(pDev); + MEI_MUTEX_UNLOCK (DSL_DEV_PRIVATE(pDev)->mei_cmv_sema); + return meierror; + } + else { + DSL_DEV_PRIVATE(pDev)->cmv_count++; + } + + if (DSL_DEV_PRIVATE(pDev)->cmv_reply == + NO_REPLY) { + MEI_MUTEX_UNLOCK (DSL_DEV_PRIVATE(pDev)->mei_cmv_sema); + return DSL_DEV_MEI_ERR_SUCCESS; + } + +#if !defined(BSP_PORT_RTEMS) + if (DSL_DEV_PRIVATE(pDev)->arcmsgav == 0) + MEI_WAIT_EVENT_TIMEOUT (DSL_DEV_PRIVATE(pDev)->wait_queue_arcmsgav, CMV_TIMEOUT); +#else + while (DSL_DEV_PRIVATE(pDev)->arcmsgav == 0 && delay_counter < CMV_TIMEOUT / 5) { + MEI_WAIT (5); + delay_counter++; + } +#endif + + DSL_DEV_PRIVATE(pDev)->cmv_waiting = 0; + if (DSL_DEV_PRIVATE(pDev)->arcmsgav == 0) { //CMV_timeout + DSL_DEV_PRIVATE(pDev)->arcmsgav = 0; + IFX_MEI_EMSG ("\%s: DSL_DEV_MEI_ERR_MAILBOX_TIMEOUT\n", + __FUNCTION__); + MEI_MUTEX_UNLOCK (DSL_DEV_PRIVATE(pDev)->mei_cmv_sema); + return DSL_DEV_MEI_ERR_MAILBOX_TIMEOUT; + } + else { + DSL_DEV_PRIVATE(pDev)->arcmsgav = 0; + DSL_DEV_PRIVATE(pDev)-> + reply_count++; + memcpy (response, DSL_DEV_PRIVATE(pDev)->CMV_RxMsg, MSG_LENGTH * 2); + MEI_MUTEX_UNLOCK (DSL_DEV_PRIVATE(pDev)->mei_cmv_sema); + return DSL_DEV_MEI_ERR_SUCCESS; + } + MEI_MUTEX_UNLOCK (DSL_DEV_PRIVATE(pDev)->mei_cmv_sema); + return DSL_DEV_MEI_ERR_SUCCESS; +} + +/** + * Reset the ARC, download boot codes, and run the ARC. + * This function resets the ARC, downloads boot codes to ARC, and runs the ARC. + * + * \param pDev the device pointer + * \return DSL_DEV_MEI_ERR_SUCCESS or DSL_DEV_MEI_ERR_FAILURE + * \ingroup Internal + */ +static DSL_DEV_MeiError_t +IFX_MEI_RunAdslModem (DSL_DEV_Device_t *pDev) +{ + int nSize = 0, idx = 0; + uint32_t im0_register, im2_register; +// DSL_DEV_WinHost_Message_t m; + + if (mei_arc_swap_buff == NULL) { + mei_arc_swap_buff = + (u32 *) kmalloc (MAXSWAPSIZE * 4, GFP_KERNEL); + if (mei_arc_swap_buff == NULL) { + IFX_MEI_EMSG (">>> malloc fail for codeswap buff!!! <<<\n"); + return DSL_DEV_MEI_ERR_FAILURE; + } + IFX_MEI_DMSG("allocate %dKB swap buff memory at: 0x%p\n", ksize(mei_arc_swap_buff)/1024, mei_arc_swap_buff); + } + + DSL_DEV_PRIVATE(pDev)->img_hdr = + (ARC_IMG_HDR *) DSL_DEV_PRIVATE(pDev)->adsl_mem_info[0].address; + if ((DSL_DEV_PRIVATE(pDev)->img_hdr-> + count) * sizeof (ARC_SWP_PAGE_HDR) > SDRAM_SEGMENT_SIZE) { + IFX_MEI_EMSG ("firmware header size is bigger than 64K segment size\n"); + return DSL_DEV_MEI_ERR_FAILURE; + } + // check image size + for (idx = 0; idx < MAX_BAR_REGISTERS; idx++) { + nSize += DSL_DEV_PRIVATE(pDev)->adsl_mem_info[idx].nCopy; + } + if (nSize != + DSL_DEV_PRIVATE(pDev)->image_size) { + IFX_MEI_EMSG ("Firmware download is not completed. Please download firmware again!\n"); + return DSL_DEV_MEI_ERR_FAILURE; + } + // TODO: check crc + /// + + IFX_MEI_ResetARC (pDev); + IFX_MEI_HaltArc (pDev); + IFX_MEI_BarUpdate (pDev, DSL_DEV_PRIVATE(pDev)->nBar); + + //IFX_MEI_DMSG("Starting to meiDownloadBootCode\n"); + + IFX_MEI_DownloadBootCode (pDev); + + im0_register = (*LTQ_ICU_IM0_IER) & (1 << 20); + im2_register = (*LTQ_ICU_IM2_IER) & (1 << 20); + /* Turn off irq */ + #ifdef CONFIG_SOC_AMAZON_SE +#define IFXMIPS_USB_OC_INT0 (INT_NUM_IM4_IRL0 + 23) + disable_irq (IFXMIPS_USB_OC_INT0); +// disable_irq (IFXMIPS_USB_OC_INT2); + #elif defined(CONFIG_SOC_AR9) +#define IFXMIPS_USB_OC_INT0 (INT_NUM_IM4_IRL1 + 28) + disable_irq (IFXMIPS_USB_OC_INT0); +// disable_irq (IFXMIPS_USB_OC_INT2); + #elif defined(CONFIG_SOC_XWAY) + disable_irq (LTQ_USB_OC_INT); + #else + #error unkonwn arch + #endif + disable_irq (pDev->nIrq[IFX_DYING_GASP]); + + IFX_MEI_RunArc (pDev); + + MEI_WAIT_EVENT_TIMEOUT (DSL_DEV_PRIVATE(pDev)->wait_queue_modemready, 1000); + + #ifdef CONFIG_SOC_AMAZON_SE + MEI_MASK_AND_ACK_IRQ (IFXMIPS_USB_OC_INT0); +// MEI_MASK_AND_ACK_IRQ (IFXMIPS_USB_OC_INT2); + #elif defined(CONFIG_SOC_AR9) + MEI_MASK_AND_ACK_IRQ (IFXMIPS_USB_OC_INT0); +// MEI_MASK_AND_ACK_IRQ (IFXMIPS_USB_OC_INT2); + #elif defined(CONFIG_SOC_XWAY) + MEI_MASK_AND_ACK_IRQ (LTQ_USB_OC_INT); + #else + #error unkonwn arch + #endif + MEI_MASK_AND_ACK_IRQ (pDev->nIrq[IFX_DYING_GASP]); + + /* Re-enable irq */ + enable_irq(pDev->nIrq[IFX_DYING_GASP]); + *LTQ_ICU_IM0_IER |= im0_register; + *LTQ_ICU_IM2_IER |= im2_register; + + if (DSL_DEV_PRIVATE(pDev)->modem_ready != 1) { + IFX_MEI_EMSG ("Modem failed to be ready!\n"); + return DSL_DEV_MEI_ERR_FAILURE; + } else { + IFX_MEI_DMSG("Modem is ready.\n"); + return DSL_DEV_MEI_ERR_SUCCESS; + } +} + +/** + * Get the page's data pointer + * This function caculats the data address from the firmware header. + * + * \param pDev the device pointer + * \param Page The page number. + * \param data Data page or program page. + * \param MaxSize The maximum size to read. + * \param Buffer Pointer to data. + * \param Dest Pointer to the destination address. + * \return The number of bytes to read. + * \ingroup Internal + */ +static int +IFX_MEI_GetPage (DSL_DEV_Device_t * pDev, u32 Page, u32 data, + u32 MaxSize, u32 * Buffer, u32 * Dest) +{ + u32 size; + u32 i; + u32 *p; + u32 idx, offset, nBar = 0; + + if (Page > DSL_DEV_PRIVATE(pDev)->img_hdr->count) + return -2; + /* + ** Get program or data size, depending on "data" flag + */ + size = (data == GET_DATA) ? (DSL_DEV_PRIVATE(pDev)->img_hdr->page[Page].d_size) : + (DSL_DEV_PRIVATE(pDev)->img_hdr->page[Page].p_size); + size &= BOOT_FLAG_MASK; // Clear boot bit! + if (size > MaxSize) + return -1; + + if (size == 0) + return 0; + /* + ** Get program or data offset, depending on "data" flag + */ + i = data ? (DSL_DEV_PRIVATE(pDev)->img_hdr->page[Page].d_offset) : + (DSL_DEV_PRIVATE(pDev)->img_hdr->page[Page].p_offset); + + /* + ** Copy data/program to buffer + */ + + idx = i / SDRAM_SEGMENT_SIZE; + offset = i % SDRAM_SEGMENT_SIZE; + p = (u32 *) ((u8 *) DSL_DEV_PRIVATE(pDev)->adsl_mem_info[idx].address + offset); + + for (i = 0; i < size; i++) { + if (offset + i * 4 - (nBar * SDRAM_SEGMENT_SIZE) >= SDRAM_SEGMENT_SIZE) { + idx++; + nBar++; + p = (u32 *) ((u8 *) KSEG1ADDR ((u32)DSL_DEV_PRIVATE(pDev)->adsl_mem_info[idx].address)); + } + Buffer[i] = *p++; + } + + /* + ** Pass back data/program destination address + */ + *Dest = data ? (DSL_DEV_PRIVATE(pDev)-> img_hdr->page[Page].d_dest) : + (DSL_DEV_PRIVATE(pDev)->img_hdr->page[Page].p_dest); + + return size; +} + +/** + * Free the memory for ARC firmware + * + * \param pDev the device pointer + * \param type Free all memory or free the unused memory after showtime + * \ingroup Internal + */ +const char *free_str[4] = {"Invalid", "Free_Reload", "Free_Showtime", "Free_All"}; +static int +IFX_MEI_DFEMemoryFree (DSL_DEV_Device_t * pDev, int type) +{ + int idx = 0; + smmu_mem_info_t *adsl_mem_info = + DSL_DEV_PRIVATE(pDev)->adsl_mem_info; + + for (idx = 0; idx < MAX_BAR_REGISTERS; idx++) { + if (type == FREE_ALL ||adsl_mem_info[idx].type == type) { + if (adsl_mem_info[idx].size > 0) { + IFX_MEI_DMSG ("Freeing memory %p (%s)\n", adsl_mem_info[idx].org_address, free_str[adsl_mem_info[idx].type]); + if ( idx == XDATA_REGISTER ) { + g_xdata_addr = NULL; + if ( ifx_mei_atm_showtime_exit ) + ifx_mei_atm_showtime_exit(); + } + kfree (adsl_mem_info[idx].org_address); + adsl_mem_info[idx].org_address = 0; + adsl_mem_info[idx].address = 0; + adsl_mem_info[idx].size = 0; + adsl_mem_info[idx].type = 0; + adsl_mem_info[idx].nCopy = 0; + } + } + } + + if(mei_arc_swap_buff != NULL){ + IFX_MEI_DMSG("free %dKB swap buff memory at: 0x%p\n", ksize(mei_arc_swap_buff)/1024, mei_arc_swap_buff); + kfree(mei_arc_swap_buff); + mei_arc_swap_buff=NULL; + } + + return 0; +} +static int +IFX_MEI_DFEMemoryAlloc (DSL_DEV_Device_t * pDev, long size) +{ + unsigned long mem_ptr; + char *org_mem_ptr = NULL; + int idx = 0; + long total_size = 0; + int err = 0; + smmu_mem_info_t *adsl_mem_info = + ((ifx_mei_device_private_t *) pDev->pPriv)->adsl_mem_info; +// DSL_DEV_PRIVATE(pDev)->adsl_mem_info; + int allocate_size = SDRAM_SEGMENT_SIZE; + + IFX_MEI_DMSG("image_size = %ld\n", size); + // Alloc Swap Pages + for (idx = 0; size > 0 && idx < MAX_BAR_REGISTERS; idx++) { + // skip bar15 for XDATA usage. + if (idx == XDATA_REGISTER) + continue; +#if 0 + if (size < SDRAM_SEGMENT_SIZE) { + allocate_size = size; + if (allocate_size < 1024) + allocate_size = 1024; + } +#endif + if (idx == (MAX_BAR_REGISTERS - 1)) + allocate_size = size; + else + allocate_size = SDRAM_SEGMENT_SIZE; + org_mem_ptr = kmalloc (allocate_size + 1024, GFP_KERNEL); + if (org_mem_ptr == NULL) { + IFX_MEI_EMSG ("%d: kmalloc %d bytes memory fail!\n", idx, allocate_size); + err = -ENOMEM; + goto allocate_error; + } + mem_ptr = (unsigned long) (org_mem_ptr + 1023) & ~(1024 -1); + adsl_mem_info[idx].address = (char *) mem_ptr; + adsl_mem_info[idx].org_address = org_mem_ptr; + adsl_mem_info[idx].size = allocate_size; + size -= allocate_size; + total_size += allocate_size; + } + if (size > 0) { + IFX_MEI_EMSG ("Image size is too large!\n"); + err = -EFBIG; + goto allocate_error; + } + err = idx; + return err; + + allocate_error: + IFX_MEI_DFEMemoryFree (pDev, FREE_ALL); + return err; +} + +/** + * Program the BAR registers + * + * \param pDev the device pointer + * \param nTotalBar The number of bar to program. + * \ingroup Internal + */ +static int +IFX_MEI_BarUpdate (DSL_DEV_Device_t * pDev, int nTotalBar) +{ + int idx = 0; + smmu_mem_info_t *adsl_mem_info = + DSL_DEV_PRIVATE(pDev)->adsl_mem_info; + + for (idx = 0; idx < nTotalBar; idx++) { + //skip XDATA register + if (idx == XDATA_REGISTER) + continue; + IFX_MEI_LongWordWriteOffset (pDev, (u32) ME_XMEM_BAR_BASE + idx * 4, + (((uint32_t) adsl_mem_info[idx].address) & 0x0FFFFFFF)); + } + for (idx = nTotalBar; idx < MAX_BAR_REGISTERS; idx++) { + if (idx == XDATA_REGISTER) + continue; + IFX_MEI_LongWordWriteOffset (pDev, (u32) ME_XMEM_BAR_BASE + idx * 4, + (((uint32_t)adsl_mem_info[nTotalBar - 1].address) & 0x0FFFFFFF)); + /* These are for /proc/danube_mei/meminfo purpose */ + adsl_mem_info[idx].address = adsl_mem_info[nTotalBar - 1].address; + adsl_mem_info[idx].org_address = adsl_mem_info[nTotalBar - 1].org_address; + adsl_mem_info[idx].size = 0; /* Prevent it from being freed */ + } + + g_xdata_addr = adsl_mem_info[XDATA_REGISTER].address; + IFX_MEI_LongWordWriteOffset (pDev, (u32) ME_XMEM_BAR_BASE + XDATA_REGISTER * 4, + (((uint32_t) adsl_mem_info [XDATA_REGISTER].address) & 0x0FFFFFFF)); + // update MEI_XDATA_BASE_SH + IFX_MEI_LongWordWriteOffset (pDev, (u32) ME_XDATA_BASE_SH, + ((unsigned long)adsl_mem_info[XDATA_REGISTER].address) & 0x0FFFFFFF); + + return DSL_DEV_MEI_ERR_SUCCESS; +} + +/* This copies the firmware from secondary storage to 64k memory segment in SDRAM */ +DSL_DEV_MeiError_t +DSL_BSP_FWDownload (DSL_DEV_Device_t * pDev, const char *buf, + unsigned long size, long *loff, long *current_offset) +{ + ARC_IMG_HDR img_hdr_tmp; + smmu_mem_info_t *adsl_mem_info = DSL_DEV_PRIVATE(pDev)->adsl_mem_info; + + size_t nRead = 0, nCopy = 0; + char *mem_ptr; + ssize_t retval = -ENOMEM; + int idx = 0; + + IFX_MEI_DMSG("\n"); + + if (*loff == 0) { + if (size < sizeof (img_hdr_tmp)) { + IFX_MEI_EMSG ("Firmware size is too small!\n"); + return retval; + } + copy_from_user ((char *) &img_hdr_tmp, buf, sizeof (img_hdr_tmp)); + // header of image_size and crc are not included. + DSL_DEV_PRIVATE(pDev)->image_size = le32_to_cpu (img_hdr_tmp.size) + 8; + + if (DSL_DEV_PRIVATE(pDev)->image_size > 1024 * 1024) { + IFX_MEI_EMSG ("Firmware size is too large!\n"); + return retval; + } + // check if arc is halt + IFX_MEI_ResetARC (pDev); + IFX_MEI_HaltArc (pDev); + + IFX_MEI_DFEMemoryFree (pDev, FREE_ALL); //free all + + retval = IFX_MEI_DFEMemoryAlloc (pDev, DSL_DEV_PRIVATE(pDev)->image_size); + if (retval < 0) { + IFX_MEI_EMSG ("Error: No memory space left.\n"); + goto error; + } + for (idx = 0; idx < retval; idx++) { + //skip XDATA register + if (idx == XDATA_REGISTER) + continue; + if (idx * SDRAM_SEGMENT_SIZE < le32_to_cpu (img_hdr_tmp.page[0].p_offset)) + adsl_mem_info[idx].type = FREE_RELOAD; + else + adsl_mem_info[idx].type = FREE_SHOWTIME; + } + DSL_DEV_PRIVATE(pDev)->nBar = retval; + + DSL_DEV_PRIVATE(pDev)->img_hdr = + (ARC_IMG_HDR *) adsl_mem_info[0].address; + + adsl_mem_info[XDATA_REGISTER].org_address = kmalloc (SDRAM_SEGMENT_SIZE + 1024, GFP_KERNEL); + adsl_mem_info[XDATA_REGISTER].address = + (char *) ((unsigned long) (adsl_mem_info[XDATA_REGISTER].org_address + 1023) & 0xFFFFFC00); + + adsl_mem_info[XDATA_REGISTER].size = SDRAM_SEGMENT_SIZE; + + if (adsl_mem_info[XDATA_REGISTER].address == NULL) { + IFX_MEI_EMSG ("kmalloc memory fail!\n"); + retval = -ENOMEM; + goto error; + } + adsl_mem_info[XDATA_REGISTER].type = FREE_RELOAD; + IFX_MEI_DMSG("-> IFX_MEI_BarUpdate()\n"); + IFX_MEI_BarUpdate (pDev, (DSL_DEV_PRIVATE(pDev)->nBar)); + } + else if (DSL_DEV_PRIVATE(pDev)-> image_size == 0) { + IFX_MEI_EMSG ("Error: Firmware size=0! \n"); + goto error; + } + + nRead = 0; + while (nRead < size) { + long offset = ((long) (*loff) + nRead) % SDRAM_SEGMENT_SIZE; + idx = (((long) (*loff)) + nRead) / SDRAM_SEGMENT_SIZE; + mem_ptr = (char *) KSEG1ADDR ((unsigned long) (adsl_mem_info[idx].address) + offset); + if ((size - nRead + offset) > SDRAM_SEGMENT_SIZE) + nCopy = SDRAM_SEGMENT_SIZE - offset; + else + nCopy = size - nRead; + copy_from_user (mem_ptr, buf + nRead, nCopy); + for (offset = 0; offset < (nCopy / 4); offset++) { + ((unsigned long *) mem_ptr)[offset] = le32_to_cpu (((unsigned long *) mem_ptr)[offset]); + } + nRead += nCopy; + adsl_mem_info[idx].nCopy += nCopy; + } + + *loff += size; + *current_offset = size; + return DSL_DEV_MEI_ERR_SUCCESS; +error: + IFX_MEI_DFEMemoryFree (pDev, FREE_ALL); + return DSL_DEV_MEI_ERR_FAILURE; +} +/* + * Register a callback event. + * Return: + * -1 if the event already has a callback function registered. + * 0 success + */ +int DSL_BSP_EventCBRegister(DSL_BSP_EventCallBack_t *p) +{ + if (!p) { + IFX_MEI_EMSG("Invalid parameter!\n"); + return -EINVAL; + } + if (p->event > DSL_BSP_CB_LAST || p->event < DSL_BSP_CB_FIRST) { + IFX_MEI_EMSG("Invalid Event %d\n", p->event); + return -EINVAL; + } + if (dsl_bsp_event_callback[p->event].function) { + IFX_MEI_EMSG("Event %d already has a callback function registered!\n", p->event); + return -1; + } else { + dsl_bsp_event_callback[p->event].function = p->function; + dsl_bsp_event_callback[p->event].event = p->event; + dsl_bsp_event_callback[p->event].pData = p->pData; + } + return 0; +} +int DSL_BSP_EventCBUnregister(DSL_BSP_EventCallBack_t *p) +{ + if (!p) { + IFX_MEI_EMSG("Invalid parameter!\n"); + return -EINVAL; + } + if (p->event > DSL_BSP_CB_LAST || p->event < DSL_BSP_CB_FIRST) { + IFX_MEI_EMSG("Invalid Event %d\n", p->event); + return -EINVAL; + } + if (dsl_bsp_event_callback[p->event].function) { + IFX_MEI_EMSG("Unregistering Event %d...\n", p->event); + dsl_bsp_event_callback[p->event].function = NULL; + dsl_bsp_event_callback[p->event].pData = NULL; + } else { + IFX_MEI_EMSG("Event %d is not registered!\n", p->event); + return -1; + } + return 0; +} + +/** + * MEI Dying Gasp interrupt handler + * + * \param int1 + * \param void0 + * \param regs Pointer to the structure of danube mips registers + * \ingroup Internal + */ +/*static irqreturn_t IFX_MEI_Dying_Gasp_IrqHandle (int int1, void *void0) +{ + DSL_DEV_Device_t *pDev = (DSL_DEV_Device_t *) void0; + DSL_BSP_CB_Type_t event; + + if (pDev == NULL) + IFX_MEI_EMSG("Error: Got Interrupt but pDev is NULL!!!!\n"); + +#ifndef CONFIG_SMP + disable_irq (pDev->nIrq[IFX_DYING_GASP]); +#else + disable_irq_nosync(pDev->nIrq[IFX_DYING_GASP]); +#endif + event = DSL_BSP_CB_DYING_GASP; + + if (dsl_bsp_event_callback[event].function) + (*dsl_bsp_event_callback[event].function)(pDev, event, dsl_bsp_event_callback[event].pData); + +#ifdef CONFIG_USE_EMULATOR + IFX_MEI_EMSG("Dying Gasp! Shutting Down... (Work around for Amazon-S Venus emulator)\n"); +#else + IFX_MEI_EMSG("Dying Gasp! Shutting Down...\n"); +// kill_proc (1, SIGINT, 1); +#endif + return IRQ_HANDLED; +} +*/ +extern void ifx_usb_enable_afe_oc(void); + +/** + * MEI interrupt handler + * + * \param int1 + * \param void0 + * \param regs Pointer to the structure of danube mips registers + * \ingroup Internal + */ +static irqreturn_t IFX_MEI_IrqHandle (int int1, void *void0) +{ + u32 scratch; + DSL_DEV_Device_t *pDev = (DSL_DEV_Device_t *) void0; +#if defined(CONFIG_LTQ_MEI_FW_LOOPBACK) && defined(DFE_PING_TEST) + dfe_loopback_irq_handler (pDev); + return IRQ_HANDLED; +#endif //CONFIG_AMAZON_S_MEI_FW_LOOPBACK + DSL_BSP_CB_Type_t event; + + if (pDev == NULL) + IFX_MEI_EMSG("Error: Got Interrupt but pDev is NULL!!!!\n"); + + IFX_MEI_DebugRead (pDev, ARC_MEI_MAILBOXR, &scratch, 1); + if (scratch & OMB_CODESWAP_MESSAGE_MSG_TYPE_MASK) { + IFX_MEI_EMSG("Receive Code Swap Request interrupt!!!\n"); + return IRQ_HANDLED; + } + else if (scratch & OMB_CLEAREOC_INTERRUPT_CODE) { + // clear eoc message interrupt + IFX_MEI_DMSG("OMB_CLEAREOC_INTERRUPT_CODE\n"); + event = DSL_BSP_CB_CEOC_IRQ; + IFX_MEI_LongWordWriteOffset (pDev, (u32) ME_ARC2ME_STAT, ARC_TO_MEI_MSGAV); + if (dsl_bsp_event_callback[event].function) + (*dsl_bsp_event_callback[event].function)(pDev, event, dsl_bsp_event_callback[event].pData); + } else if (scratch & OMB_REBOOT_INTERRUPT_CODE) { + // Reboot + IFX_MEI_DMSG("OMB_REBOOT_INTERRUPT_CODE\n"); + event = DSL_BSP_CB_FIRMWARE_REBOOT; + + IFX_MEI_LongWordWriteOffset (pDev, (u32) ME_ARC2ME_STAT, ARC_TO_MEI_MSGAV); + + if (dsl_bsp_event_callback[event].function) + (*dsl_bsp_event_callback[event].function)(pDev, event, dsl_bsp_event_callback[event].pData); + } else { // normal message + IFX_MEI_MailboxRead (pDev, DSL_DEV_PRIVATE(pDev)->CMV_RxMsg, MSG_LENGTH); + if (DSL_DEV_PRIVATE(pDev)-> cmv_waiting == 1) { + DSL_DEV_PRIVATE(pDev)-> arcmsgav = 1; + DSL_DEV_PRIVATE(pDev)-> cmv_waiting = 0; +#if !defined(BSP_PORT_RTEMS) + MEI_WAKEUP_EVENT (DSL_DEV_PRIVATE(pDev)->wait_queue_arcmsgav); +#endif + } + else { + DSL_DEV_PRIVATE(pDev)-> modem_ready_cnt++; + memcpy ((char *) DSL_DEV_PRIVATE(pDev)->Recent_indicator, + (char *) DSL_DEV_PRIVATE(pDev)->CMV_RxMsg, MSG_LENGTH * 2); + if (((DSL_DEV_PRIVATE(pDev)->CMV_RxMsg[0] & 0xff0) >> 4) == D2H_AUTONOMOUS_MODEM_READY_MSG) { + //check ARC ready message + IFX_MEI_DMSG ("Got MODEM_READY_MSG\n"); + DSL_DEV_PRIVATE(pDev)->modem_ready = 1; + MEI_WAKEUP_EVENT (DSL_DEV_PRIVATE(pDev)->wait_queue_modemready); + } + } + } + + return IRQ_HANDLED; +} + +int +DSL_BSP_ATMLedCBRegister (int (*ifx_adsl_ledcallback) (void)) +{ + g_adsl_ledcallback = ifx_adsl_ledcallback; + return 0; +} + +int +DSL_BSP_ATMLedCBUnregister (int (*ifx_adsl_ledcallback) (void)) +{ + g_adsl_ledcallback = adsl_dummy_ledcallback; + return 0; +} + +#if 0 +int +DSL_BSP_EventCBRegister (int (*ifx_adsl_callback) + (DSL_BSP_CB_Event_t * param)) +{ + int error = 0; + + if (DSL_EventCB == NULL) { + DSL_EventCB = ifx_adsl_callback; + } + else { + error = -EIO; + } + return error; +} + +int +DSL_BSP_EventCBUnregister (int (*ifx_adsl_callback) + (DSL_BSP_CB_Event_t * param)) +{ + int error = 0; + + if (DSL_EventCB == ifx_adsl_callback) { + DSL_EventCB = NULL; + } + else { + error = -EIO; + } + return error; +} + +static int +DSL_BSP_GetEventCB (int (**ifx_adsl_callback) + (DSL_BSP_CB_Event_t * param)) +{ + *ifx_adsl_callback = DSL_EventCB; + return 0; +} +#endif + +#ifdef CONFIG_LTQ_MEI_FW_LOOPBACK +#define mte_reg_base (0x4800*4+0x20000) + +/* Iridia Registers Address Constants */ +#define MTE_Reg(r) (int)(mte_reg_base + (r*4)) + +#define IT_AMODE MTE_Reg(0x0004) + +#define TIMER_DELAY (1024) +#define BC0_BYTES (32) +#define BC1_BYTES (30) +#define NUM_MB (12) +#define TIMEOUT_VALUE 2000 + +static void +BFMWait (u32 cycle) +{ + u32 i; + for (i = 0; i < cycle; i++); +} + +static void +WriteRegLong (u32 addr, u32 data) +{ + //*((volatile u32 *)(addr)) = data; + IFX_MEI_WRITE_REGISTER_L (data, addr); +} + +static u32 +ReadRegLong (u32 addr) +{ + // u32 rd_val; + //rd_val = *((volatile u32 *)(addr)); + // return rd_val; + return IFX_MEI_READ_REGISTER_L (addr); +} + +/* This routine writes the mailbox with the data in an input array */ +static void +WriteMbox (u32 * mboxarray, u32 size) +{ + IFX_MEI_DebugWrite (&dsl_devices[0], IMBOX_BASE, mboxarray, size); + IFX_MEI_DMSG("write to %X\n", IMBOX_BASE); + IFX_MEI_LongWordWriteOffset (&dsl_devices[0], (u32) ME_ME2ARC_INT, MEI_TO_ARC_MSGAV); +} + +/* This routine reads the output mailbox and places the results into an array */ +static void +ReadMbox (u32 * mboxarray, u32 size) +{ + IFX_MEI_DebugRead (&dsl_devices[0], OMBOX_BASE, mboxarray, size); + IFX_MEI_DMSG("read from %X\n", OMBOX_BASE); +} + +static void +MEIWriteARCValue (u32 address, u32 value) +{ + u32 i, check = 0; + + /* Write address register */ + IFX_MEI_WRITE_REGISTER_L (address, ME_DBG_WR_AD + LTQ_MEI_BASE_ADDR); + + /* Write data register */ + IFX_MEI_WRITE_REGISTER_L (value, ME_DBG_DATA + LTQ_MEI_BASE_ADDR); + + /* wait until complete - timeout at 40 */ + for (i = 0; i < 40; i++) { + check = IFX_MEI_READ_REGISTER_L (ME_ARC2ME_STAT + LTQ_MEI_BASE_ADDR); + + if ((check & ARC_TO_MEI_DBG_DONE)) + break; + } + /* clear the flag */ + IFX_MEI_WRITE_REGISTER_L (ARC_TO_MEI_DBG_DONE, ME_ARC2ME_STAT + LTQ_MEI_BASE_ADDR); +} + +void +arc_code_page_download (uint32_t arc_code_length, uint32_t * start_address) +{ + int count; + + IFX_MEI_DMSG("try to download pages,size=%d\n", arc_code_length); + IFX_MEI_ControlModeSet (&dsl_devices[0], MEI_MASTER_MODE); + IFX_MEI_HaltArc (&dsl_devices[0]); + IFX_MEI_LongWordWriteOffset (&dsl_devices[0], (u32) ME_DX_AD, 0); + for (count = 0; count < arc_code_length; count++) { + IFX_MEI_LongWordWriteOffset (&dsl_devices[0], (u32) ME_DX_DATA, + *(start_address + count)); + } + IFX_MEI_ControlModeSet (&dsl_devices[0], JTAG_MASTER_MODE); +} +static int +load_jump_table (unsigned long addr) +{ + int i; + uint32_t addr_le, addr_be; + uint32_t jump_table[32]; + + for (i = 0; i < 16; i++) { + addr_le = i * 8 + addr; + addr_be = ((addr_le >> 16) & 0xffff); + addr_be |= ((addr_le & 0xffff) << 16); + jump_table[i * 2 + 0] = 0x0f802020; + jump_table[i * 2 + 1] = addr_be; + //printk("jt %X %08X %08X\n",i,jump_table[i*2+0],jump_table[i*2+1]); + } + arc_code_page_download (32, &jump_table[0]); +return 0; +} + +int got_int = 0; + +void +dfe_loopback_irq_handler (DSL_DEV_Device_t *pDev) +{ + uint32_t rd_mbox[10]; + + memset (&rd_mbox[0], 0, 10 * 4); + ReadMbox (&rd_mbox[0], 6); + if (rd_mbox[0] == 0x0) { + FX_MEI_DMSG("Get ARC_ACK\n"); + got_int = 1; + } + else if (rd_mbox[0] == 0x5) { + IFX_MEI_DMSG("Get ARC_BUSY\n"); + got_int = 2; + } + else if (rd_mbox[0] == 0x3) { + IFX_MEI_DMSG("Get ARC_EDONE\n"); + if (rd_mbox[1] == 0x0) { + got_int = 3; + IFX_MEI_DMSG("Get E_MEMTEST\n"); + if (rd_mbox[2] != 0x1) { + got_int = 4; + IFX_MEI_DMSG("Get Result %X\n", rd_mbox[2]); + } + } + } + IFX_MEI_LongWordWriteOffset (&dsl_devices[0], (u32) ME_ARC2ME_STAT, + ARC_TO_MEI_DBG_DONE); + MEI_MASK_AND_ACK_IRQ (pDev->nIrq[IFX_DFEIR]); + disable_irq (pDev->nIrq[IFX_DFEIR]); + //got_int = 1; + return; +} + +static void +wait_mem_test_result (void) +{ + uint32_t mbox[5]; + mbox[0] = 0; + + IFX_MEI_DMSG("Waiting Starting\n"); + while (mbox[0] == 0) { + ReadMbox (&mbox[0], 5); + } + IFX_MEI_DMSG("Try to get mem test result.\n"); + ReadMbox (&mbox[0], 5); + if (mbox[0] == 0xA) { + IFX_MEI_DMSG("Success.\n"); + } + else if (mbox[0] == 0xA) { + IFX_MEI_EMSG("Fail,address %X,except data %X,receive data %X\n", + mbox[1], mbox[2], mbox[3]); + } + else { + IFX_MEI_EMSG("Fail\n"); + } +} + +static int +arc_ping_testing (DSL_DEV_Device_t *pDev) +{ +#define MEI_PING 0x00000001 + uint32_t wr_mbox[10], rd_mbox[10]; + int i; + + for (i = 0; i < 10; i++) { + wr_mbox[i] = 0; + rd_mbox[i] = 0; + } + + FX_MEI_DMSG("send ping msg\n"); + wr_mbox[0] = MEI_PING; + WriteMbox (&wr_mbox[0], 10); + + while (got_int == 0) { + MEI_WAIT (100); + } + + IFX_MEI_DMSG("send start event\n"); + got_int = 0; + + wr_mbox[0] = 0x4; + wr_mbox[1] = 0; + wr_mbox[2] = 0; + wr_mbox[3] = (uint32_t) 0xf5acc307e; + wr_mbox[4] = 5; + wr_mbox[5] = 2; + wr_mbox[6] = 0x1c000; + wr_mbox[7] = 64; + wr_mbox[8] = 0; + wr_mbox[9] = 0; + WriteMbox (&wr_mbox[0], 10); + DSL_ENABLE_IRQ (pDev->nIrq[IFX_DFEIR]); + //printk("IFX_MEI_MailboxWrite ret=%d\n",i); + IFX_MEI_LongWordWriteOffset (&dsl_devices[0], + (u32) ME_ME2ARC_INT, + MEI_TO_ARC_MSGAV); + IFX_MEI_DMSG("sleeping\n"); + while (1) { + if (got_int > 0) { + + if (got_int > 3) + IFX_MEI_DMSG("got_int >>>> 3\n"); + else + IFX_MEI_DMSG("got int = %d\n", got_int); + got_int = 0; + //schedule(); + DSL_ENABLE_IRQ (pDev->nIrq[IFX_DFEIR]); + } + //mbox_read(&rd_mbox[0],6); + MEI_WAIT (100); + } + return 0; +} + +static DSL_DEV_MeiError_t +DFE_Loopback_Test (void) +{ + int i = 0; + u32 arc_debug_data = 0, temp; + DSL_DEV_Device_t *pDev = &dsl_devices[0]; + uint32_t wr_mbox[10]; + + IFX_MEI_ResetARC (pDev); + // start the clock + arc_debug_data = ACL_CLK_MODE_ENABLE; + IFX_MEI_DebugWrite (pDev, CRI_CCR0, &arc_debug_data, 1); + +#if defined( DFE_PING_TEST )|| defined( DFE_ATM_LOOPBACK) + // WriteARCreg(AUX_XMEM_LTEST,0); + IFX_MEI_ControlModeSet (pDev, MEI_MASTER_MODE); +#define AUX_XMEM_LTEST 0x128 + _IFX_MEI_DBGLongWordWrite (pDev, MEI_DEBUG_DEC_AUX_MASK, AUX_XMEM_LTEST, 0); + IFX_MEI_ControlModeSet (pDev, JTAG_MASTER_MODE); + + // WriteARCreg(AUX_XDMA_GAP,0); + IFX_MEI_ControlModeSet (pDev, MEI_MASTER_MODE); +#define AUX_XDMA_GAP 0x114 + _IFX_MEI_DBGLongWordWrite (pDev, MEI_DEBUG_DEC_AUX_MASK, AUX_XDMA_GAP, 0); + IFX_MEI_ControlModeSet (pDev, JTAG_MASTER_MODE); + + IFX_MEI_ControlModeSet (pDev, MEI_MASTER_MODE); + temp = 0; + _IFX_MEI_DBGLongWordWrite (pDev, MEI_DEBUG_DEC_AUX_MASK, + (u32) ME_XDATA_BASE_SH + LTQ_MEI_BASE_ADDR, temp); + IFX_MEI_ControlModeSet (pDev, JTAG_MASTER_MODE); + + i = IFX_MEI_DFEMemoryAlloc (pDev, SDRAM_SEGMENT_SIZE * 16); + if (i >= 0) { + int idx; + + for (idx = 0; idx < i; idx++) { + DSL_DEV_PRIVATE(pDev)->adsl_mem_info[idx].type = FREE_RELOAD; + IFX_MEI_WRITE_REGISTER_L ((((uint32_t) DSL_DEV_PRIVATE(pDev)->adsl_mem_info[idx].address) & 0x0fffffff), + LTQ_MEI_BASE_ADDR + ME_XMEM_BAR_BASE + idx * 4); + IFX_MEI_DMSG("bar%d(%X)=%X\n", idx, + LTQ_MEI_BASE_ADDR + ME_XMEM_BAR_BASE + + idx * 4, (((uint32_t) + ((ifx_mei_device_private_t *) + pDev->pPriv)->adsl_mem_info[idx]. + address) & 0x0fffffff)); + memset ((u8 *) DSL_DEV_PRIVATE(pDev)->adsl_mem_info[idx].address, 0, SDRAM_SEGMENT_SIZE); + } + + IFX_MEI_LongWordWriteOffset (pDev, (u32) ME_XDATA_BASE_SH, + ((unsigned long) DSL_DEV_PRIVATE(pDev)->adsl_mem_info[XDATA_REGISTER].address) & 0x0FFFFFFF); + } + else { + IFX_MEI_EMSG ("cannot load image: no memory\n"); + return DSL_DEV_MEI_ERR_FAILURE; + } + //WriteARCreg(AUX_IC_CTRL,2); + IFX_MEI_DMSG("Setting MEI_MASTER_MODE..\n"); + IFX_MEI_ControlModeSet (pDev, MEI_MASTER_MODE); +#define AUX_IC_CTRL 0x11 + _IFX_MEI_DBGLongWordWrite (pDev, MEI_DEBUG_DEC_AUX_MASK, + AUX_IC_CTRL, 2); + IFX_MEI_DMSG("Setting JTAG_MASTER_MODE..\n"); + IFX_MEI_ControlModeSet (pDev, JTAG_MASTER_MODE); + + IFX_MEI_DMSG("Halting ARC...\n"); + IFX_MEI_HaltArc (&dsl_devices[0]); + +#ifdef DFE_PING_TEST + + IFX_MEI_DMSG("ping test image size=%d\n", sizeof (arc_ahb_access_code)); + memcpy ((u8 *) (DSL_DEV_PRIVATE(pDev)-> + adsl_mem_info[0].address + 0x1004), + &arc_ahb_access_code[0], sizeof (arc_ahb_access_code)); + load_jump_table (0x80000 + 0x1004); + +#endif //DFE_PING_TEST + + IFX_MEI_DMSG("ARC ping test code download complete\n"); +#endif //defined( DFE_PING_TEST )|| defined( DFE_ATM_LOOPBACK) +#ifdef DFE_MEM_TEST + IFX_MEI_LongWordWriteOffset (&dsl_devices[0], (u32) ME_ARC2ME_MASK, MSGAV_EN); + + arc_code_page_download (1537, &code_array[0]); + IFX_MEI_DMSG("ARC mem test code download complete\n"); +#endif //DFE_MEM_TEST +#ifdef DFE_ATM_LOOPBACK + arc_debug_data = 0xf; + arc_code_page_download (sizeof(code_array) / sizeof(*code_array), &code_array[0]); + wr_mbox[0] = 0; //TIMER_DELAY - org: 1024 + wr_mbox[1] = 0; //TXFB_START0 + wr_mbox[2] = 0x7f; //TXFB_END0 - org: 49 + wr_mbox[3] = 0x80; //TXFB_START1 - org: 80 + wr_mbox[4] = 0xff; //TXFB_END1 - org: 109 + wr_mbox[5] = 0x100; //RXFB_START0 - org: 0 + wr_mbox[6] = 0x17f; //RXFB_END0 - org: 49 + wr_mbox[7] = 0x180; //RXFB_START1 - org: 256 + wr_mbox[8] = 0x1ff; //RXFB_END1 - org: 315 + WriteMbox (&wr_mbox[0], 9); + // Start Iridia IT_AMODE (in dmp access) why is it required? + IFX_MEI_DebugWrite (&dsl_devices[0], 0x32010, &arc_debug_data, 1); +#endif //DFE_ATM_LOOPBACK + IFX_MEI_IRQEnable (pDev); + IFX_MEI_DMSG("run ARC...\n"); + IFX_MEI_RunArc (&dsl_devices[0]); + +#ifdef DFE_PING_TEST + arc_ping_testing (pDev); +#endif //DFE_PING_TEST +#ifdef DFE_MEM_TEST + wait_mem_test_result (); +#endif //DFE_MEM_TEST + + IFX_MEI_DFEMemoryFree (pDev, FREE_ALL); + return DSL_DEV_MEI_ERR_SUCCESS; +} + +#endif //CONFIG_AMAZON_S_MEI_FW_LOOPBACK + +static int +IFX_MEI_InitDevNode (int num) +{ + if (num == 0) { + if ((dev_major = register_chrdev (dev_major, IFX_MEI_DEVNAME, &bsp_mei_operations)) < 0) { + IFX_MEI_EMSG ("register_chrdev(%d %s) failed!\n", dev_major, IFX_MEI_DEVNAME); + return -ENODEV; + } + } + return 0; +} + +static int +IFX_MEI_CleanUpDevNode (int num) +{ + if (num == 0) + unregister_chrdev (dev_major, MEI_DIRNAME); + return 0; +} + +static int +IFX_MEI_InitDevice (int num) +{ + DSL_DEV_Device_t *pDev; + u32 temp; + pDev = &dsl_devices[num]; + if (pDev == NULL) + return -ENOMEM; + pDev->pPriv = &sDanube_Mei_Private[num]; + memset (pDev->pPriv, 0, sizeof (ifx_mei_device_private_t)); + + memset (&DSL_DEV_PRIVATE(pDev)-> + adsl_mem_info[0], 0, + sizeof (smmu_mem_info_t) * MAX_BAR_REGISTERS); + + if (num == 0) { + pDev->nIrq[IFX_DFEIR] = LTQ_MEI_INT; + pDev->nIrq[IFX_DYING_GASP] = LTQ_MEI_DYING_GASP_INT; + pDev->base_address = KSEG1 + LTQ_MEI_BASE_ADDR; + + /* Power up MEI */ +#ifdef CONFIG_LANTIQ_AMAZON_SE + *LTQ_PMU_PWDCR &= ~(1 << 9); // enable dsl + *LTQ_PMU_PWDCR &= ~(1 << 15); // enable AHB base +#else + temp = ltq_r32(LTQ_PMU_PWDCR); + temp &= 0xffff7dbe; + ltq_w32(temp, LTQ_PMU_PWDCR); +#endif + } + pDev->nInUse = 0; + DSL_DEV_PRIVATE(pDev)->modem_ready = 0; + DSL_DEV_PRIVATE(pDev)->arcmsgav = 0; + + MEI_INIT_WAKELIST ("arcq", DSL_DEV_PRIVATE(pDev)->wait_queue_arcmsgav); // for ARCMSGAV + MEI_INIT_WAKELIST ("arcr", DSL_DEV_PRIVATE(pDev)->wait_queue_modemready); // for arc modem ready + + MEI_MUTEX_INIT (DSL_DEV_PRIVATE(pDev)->mei_cmv_sema, 1); // semaphore initialization, mutex +#if 0 + MEI_MASK_AND_ACK_IRQ (pDev->nIrq[IFX_DFEIR]); + MEI_MASK_AND_ACK_IRQ (pDev->nIrq[IFX_DYING_GASP]); +#endif + if (request_irq (pDev->nIrq[IFX_DFEIR], IFX_MEI_IrqHandle, 0, "DFEIR", pDev) != 0) { + IFX_MEI_EMSG ("request_irq %d failed!\n", pDev->nIrq[IFX_DFEIR]); + return -1; + } + /*if (request_irq (pDev->nIrq[IFX_DYING_GASP], IFX_MEI_Dying_Gasp_IrqHandle, 0, "DYING_GASP", pDev) != 0) { + IFX_MEI_EMSG ("request_irq %d failed!\n", pDev->nIrq[IFX_DYING_GASP]); + return -1; + }*/ +// IFX_MEI_DMSG("Device %d initialized. IER %#x\n", num, bsp_get_irq_ier(pDev->nIrq[IFX_DYING_GASP])); + return 0; +} + +static int +IFX_MEI_ExitDevice (int num) +{ + DSL_DEV_Device_t *pDev; + pDev = &dsl_devices[num]; + + if (pDev == NULL) + return -EIO; + + disable_irq (pDev->nIrq[IFX_DFEIR]); + disable_irq (pDev->nIrq[IFX_DYING_GASP]); + + free_irq(pDev->nIrq[IFX_DFEIR], pDev); + free_irq(pDev->nIrq[IFX_DYING_GASP], pDev); + + return 0; +} + +static DSL_DEV_Device_t * +IFX_BSP_HandleGet (int maj, int num) +{ + if (num > BSP_MAX_DEVICES) + return NULL; + return &dsl_devices[num]; +} + +DSL_DEV_Device_t * +DSL_BSP_DriverHandleGet (int maj, int num) +{ + DSL_DEV_Device_t *pDev; + + if (num > BSP_MAX_DEVICES) + return NULL; + + pDev = &dsl_devices[num]; + if (!try_module_get(pDev->owner)) + return NULL; + + pDev->nInUse++; + return pDev; +} + +int +DSL_BSP_DriverHandleDelete (DSL_DEV_Device_t * nHandle) +{ + DSL_DEV_Device_t *pDev = (DSL_DEV_Device_t *) nHandle; + if (pDev->nInUse) + pDev->nInUse--; + module_put(pDev->owner); + return 0; +} + +static int +IFX_MEI_Open (DSL_DRV_inode_t * ino, DSL_DRV_file_t * fil) +{ + int maj = MAJOR (ino->i_rdev); + int num = MINOR (ino->i_rdev); + + DSL_DEV_Device_t *pDev = NULL; + if ((pDev = DSL_BSP_DriverHandleGet (maj, num)) == NULL) { + IFX_MEI_EMSG("open(%d:%d) fail!\n", maj, num); + return -EIO; + } + fil->private_data = pDev; + return 0; +} + +static int +IFX_MEI_Release (DSL_DRV_inode_t * ino, DSL_DRV_file_t * fil) +{ + //int maj = MAJOR(ino->i_rdev); + int num = MINOR (ino->i_rdev); + DSL_DEV_Device_t *pDev; + + pDev = &dsl_devices[num]; + if (pDev == NULL) + return -EIO; + DSL_BSP_DriverHandleDelete (pDev); + return 0; +} + +/** + * Callback function for linux userspace program writing + */ +static ssize_t +IFX_MEI_Write (DSL_DRV_file_t * filp, const char *buf, size_t size, loff_t * loff) +{ + DSL_DEV_MeiError_t mei_error = DSL_DEV_MEI_ERR_FAILURE; + long offset = 0; + DSL_DEV_Device_t *pDev = (DSL_DEV_Device_t *) filp->private_data; + + if (pDev == NULL) + return -EIO; + + mei_error = + DSL_BSP_FWDownload (pDev, buf, size, (long *) loff, &offset); + + if (mei_error == DSL_DEV_MEI_ERR_FAILURE) + return -EIO; + return (ssize_t) offset; +} + +/** + * Callback function for linux userspace program ioctling + */ +static int +IFX_MEI_IoctlCopyFrom (int from_kernel, char *dest, char *from, int size) +{ + int ret = 0; + + if (!from_kernel) + ret = copy_from_user ((char *) dest, (char *) from, size); + else + ret = (int)memcpy ((char *) dest, (char *) from, size); + return ret; +} + +static int +IFX_MEI_IoctlCopyTo (int from_kernel, char *dest, char *from, int size) +{ + int ret = 0; + + if (!from_kernel) + ret = copy_to_user ((char *) dest, (char *) from, size); + else + ret = (int)memcpy ((char *) dest, (char *) from, size); + return ret; +} + +int +IFX_MEI_Ioctls (DSL_DEV_Device_t * pDev, int from_kernel, unsigned int command, unsigned long lon) +{ + int i = 0; + int meierr = DSL_DEV_MEI_ERR_SUCCESS; + u32 base_address = LTQ_MEI_BASE_ADDR; + DSL_DEV_WinHost_Message_t winhost_msg, m; +// DSL_DEV_MeiDebug_t debugrdwr; + DSL_DEV_MeiReg_t regrdwr; + + switch (command) { + + case DSL_FIO_BSP_CMV_WINHOST: + IFX_MEI_IoctlCopyFrom (from_kernel, (char *) winhost_msg.msg.TxMessage, + (char *) lon, MSG_LENGTH * 2); + + if ((meierr = DSL_BSP_SendCMV (pDev, winhost_msg.msg.TxMessage, YES_REPLY, + winhost_msg.msg.RxMessage)) != DSL_DEV_MEI_ERR_SUCCESS) { + IFX_MEI_EMSG ("WINHOST CMV fail :TxMessage:%X %X %X %X, RxMessage:%X %X %X %X %X\n", + winhost_msg.msg.TxMessage[0], winhost_msg.msg.TxMessage[1], winhost_msg.msg.TxMessage[2], winhost_msg.msg.TxMessage[3], + winhost_msg.msg.RxMessage[0], winhost_msg.msg.RxMessage[1], winhost_msg.msg.RxMessage[2], winhost_msg.msg.RxMessage[3], + winhost_msg.msg.RxMessage[4]); + meierr = DSL_DEV_MEI_ERR_FAILURE; + } + else { + IFX_MEI_IoctlCopyTo (from_kernel, (char *) lon, + (char *) winhost_msg.msg.RxMessage, + MSG_LENGTH * 2); + } + break; + + case DSL_FIO_BSP_CMV_READ: + IFX_MEI_IoctlCopyFrom (from_kernel, (char *) (®rdwr), + (char *) lon, sizeof (DSL_DEV_MeiReg_t)); + + IFX_MEI_LongWordRead ((u32) regrdwr.iAddress, + (u32 *) & (regrdwr.iData)); + + IFX_MEI_IoctlCopyTo (from_kernel, (char *) lon, + (char *) (®rdwr), + sizeof (DSL_DEV_MeiReg_t)); + + break; + + case DSL_FIO_BSP_CMV_WRITE: + IFX_MEI_IoctlCopyFrom (from_kernel, (char *) (®rdwr), + (char *) lon, sizeof (DSL_DEV_MeiReg_t)); + + IFX_MEI_LongWordWrite ((u32) regrdwr.iAddress, + regrdwr.iData); + break; + + case DSL_FIO_BSP_GET_BASE_ADDRESS: + IFX_MEI_IoctlCopyTo (from_kernel, (char *) lon, + (char *) (&base_address), + sizeof (base_address)); + break; + + case DSL_FIO_BSP_IS_MODEM_READY: + i = IFX_MEI_IsModemReady (pDev); + IFX_MEI_IoctlCopyTo (from_kernel, (char *) lon, + (char *) (&i), sizeof (int)); + meierr = DSL_DEV_MEI_ERR_SUCCESS; + break; + case DSL_FIO_BSP_RESET: + case DSL_FIO_BSP_REBOOT: + meierr = IFX_MEI_CpuModeSet (pDev, DSL_CPU_RESET); + meierr = IFX_MEI_CpuModeSet (pDev, DSL_CPU_HALT); + break; + + case DSL_FIO_BSP_HALT: + meierr = IFX_MEI_CpuModeSet (pDev, DSL_CPU_HALT); + break; + + case DSL_FIO_BSP_RUN: + meierr = IFX_MEI_CpuModeSet (pDev, DSL_CPU_RUN); + break; + case DSL_FIO_BSP_BOOTDOWNLOAD: + meierr = IFX_MEI_DownloadBootCode (pDev); + break; + case DSL_FIO_BSP_JTAG_ENABLE: + meierr = IFX_MEI_ArcJtagEnable (pDev, 1); + break; + + case DSL_FIO_BSP_REMOTE: + IFX_MEI_IoctlCopyFrom (from_kernel, (char *) (&i), + (char *) lon, sizeof (int)); + + meierr = IFX_MEI_AdslMailboxIRQEnable (pDev, i); + break; + + case DSL_FIO_BSP_DSL_START: + IFX_MEI_DMSG("DSL_FIO_BSP_DSL_START\n"); + if ((meierr = IFX_MEI_RunAdslModem (pDev)) != DSL_DEV_MEI_ERR_SUCCESS) { + IFX_MEI_EMSG ("IFX_MEI_RunAdslModem() error..."); + meierr = DSL_DEV_MEI_ERR_FAILURE; + } + break; + +/* case DSL_FIO_BSP_DEBUG_READ: + case DSL_FIO_BSP_DEBUG_WRITE: + IFX_MEI_IoctlCopyFrom (from_kernel, + (char *) (&debugrdwr), + (char *) lon, + sizeof (debugrdwr)); + + if (command == DSL_FIO_BSP_DEBUG_READ) + meierr = DSL_BSP_MemoryDebugAccess (pDev, + DSL_BSP_MEMORY_READ, + debugrdwr. + iAddress, + debugrdwr. + buffer, + debugrdwr. + iCount); + else + meierr = DSL_BSP_MemoryDebugAccess (pDev, + DSL_BSP_MEMORY_WRITE, + debugrdwr. + iAddress, + debugrdwr. + buffer, + debugrdwr. + iCount); + + IFX_MEI_IoctlCopyTo (from_kernel, (char *) lon, (char *) (&debugrdwr), sizeof (debugrdwr)); + break;*/ + case DSL_FIO_BSP_GET_VERSION: + IFX_MEI_IoctlCopyTo (from_kernel, (char *) lon, (char *) (&bsp_mei_version), sizeof (DSL_DEV_Version_t)); + break; + +#define LTQ_MPS_CHIPID_VERSION_GET(value) (((value) >> 28) & ((1 << 4) - 1)) + case DSL_FIO_BSP_GET_CHIP_INFO: + bsp_chip_info.major = 1; + bsp_chip_info.minor = LTQ_MPS_CHIPID_VERSION_GET(*LTQ_MPS_CHIPID); + IFX_MEI_IoctlCopyTo (from_kernel, (char *) lon, (char *) (&bsp_chip_info), sizeof (DSL_DEV_HwVersion_t)); + meierr = DSL_DEV_MEI_ERR_SUCCESS; + break; + + case DSL_FIO_BSP_FREE_RESOURCE: + makeCMV (H2D_CMV_READ, DSL_CMV_GROUP_STAT, 4, 0, 1, NULL, m.msg.TxMessage); + if (DSL_BSP_SendCMV (pDev, m.msg.TxMessage, YES_REPLY, m.msg.RxMessage) != DSL_DEV_MEI_ERR_SUCCESS) { + meierr = DSL_DEV_MEI_ERR_FAILURE; + return -EIO; + } + IFX_MEI_DMSG("RxMessage[4] = %#x\n", m.msg.RxMessage[4]); + if (!(m.msg.RxMessage[4] & DSL_DEV_STAT_CODESWAP_COMPLETE)) { + meierr = DSL_DEV_MEI_ERR_FAILURE; + return -EAGAIN; + } + IFX_MEI_DMSG("Freeing all memories marked FREE_SHOWTIME\n"); + IFX_MEI_DFEMemoryFree (pDev, FREE_SHOWTIME); + meierr = DSL_DEV_MEI_ERR_SUCCESS; + break; +#ifdef CONFIG_IFXMIPS_AMAZON_SE + case DSL_FIO_ARC_MUX_TEST: + AMAZON_SE_MEI_ARC_MUX_Test(); + break; +#endif + default: +// IFX_MEI_EMSG("Invalid IOCTL command: %d\n"); + break; + } + return meierr; +} + +#ifdef CONFIG_IFXMIPS_AMAZON_SE +void AMAZON_SE_MEI_ARC_MUX_Test(void) +{ + u32 *p, i; + *LTQ_RCU_RST |= LTQ_RCU_RST_REQ_MUX_ARC; + + p = (u32*)(DFE_LDST_BASE_ADDR + IRAM0_BASE); + IFX_MEI_EMSG("Writing to IRAM0(%p)...\n", p); + for (i = 0; i < IRAM0_SIZE/sizeof(u32); i++, p++) { + *p = 0xdeadbeef; + if (*p != 0xdeadbeef) + IFX_MEI_EMSG("%p: %#x\n", p, *p); + } + + p = (u32*)(DFE_LDST_BASE_ADDR + IRAM1_BASE); + IFX_MEI_EMSG("Writing to IRAM1(%p)...\n", p); + for (i = 0; i < IRAM1_SIZE/sizeof(u32); i++, p++) { + *p = 0xdeadbeef; + if (*p != 0xdeadbeef) + IFX_MEI_EMSG("%p: %#x\n", p, *p); + } + + p = (u32*)(DFE_LDST_BASE_ADDR + BRAM_BASE); + IFX_MEI_EMSG("Writing to BRAM(%p)...\n", p); + for (i = 0; i < BRAM_SIZE/sizeof(u32); i++, p++) { + *p = 0xdeadbeef; + if (*p != 0xdeadbeef) + IFX_MEI_EMSG("%p: %#x\n", p, *p); + } + + p = (u32*)(DFE_LDST_BASE_ADDR + XRAM_BASE); + IFX_MEI_EMSG("Writing to XRAM(%p)...\n", p); + for (i = 0; i < XRAM_SIZE/sizeof(u32); i++, p++) { + *p = 0xdeadbeef; + if (*p != 0xdeadbeef) + IFX_MEI_EMSG("%p: %#x\n", p, *p); + } + + p = (u32*)(DFE_LDST_BASE_ADDR + YRAM_BASE); + IFX_MEI_EMSG("Writing to YRAM(%p)...\n", p); + for (i = 0; i < YRAM_SIZE/sizeof(u32); i++, p++) { + *p = 0xdeadbeef; + if (*p != 0xdeadbeef) + IFX_MEI_EMSG("%p: %#x\n", p, *p); + } + + p = (u32*)(DFE_LDST_BASE_ADDR + EXT_MEM_BASE); + IFX_MEI_EMSG("Writing to EXT_MEM(%p)...\n", p); + for (i = 0; i < EXT_MEM_SIZE/sizeof(u32); i++, p++) { + *p = 0xdeadbeef; + if (*p != 0xdeadbeef) + IFX_MEI_EMSG("%p: %#x\n", p, *p); + } + *LTQ_RCU_RST &= ~LTQ_RCU_RST_REQ_MUX_ARC; +} +#endif +int +DSL_BSP_KernelIoctls (DSL_DEV_Device_t * pDev, unsigned int command, + unsigned long lon) +{ + int error = 0; + + error = IFX_MEI_Ioctls (pDev, 1, command, lon); + return error; +} + +static long +IFX_MEI_UserIoctls (DSL_DRV_file_t * fil, + unsigned int command, unsigned long lon) +{ + int error = 0; + DSL_DEV_Device_t *pDev; + + pDev = IFX_BSP_HandleGet (0, 0); + if (pDev == NULL) + return -EIO; + + error = IFX_MEI_Ioctls (pDev, 0, command, lon); + return error; +} + +static int adsl_dummy_ledcallback(void) +{ + return 0; +} + +int ifx_mei_atm_led_blink(void) +{ + return g_adsl_ledcallback(); +} +EXPORT_SYMBOL(ifx_mei_atm_led_blink); + +int ifx_mei_atm_showtime_check(int *is_showtime, struct port_cell_info *port_cell, void **xdata_addr) +{ + int i; + + if ( is_showtime ) { + *is_showtime = g_tx_link_rate[0] == 0 && g_tx_link_rate[1] == 0 ? 0 : 1; + } + + if ( port_cell ) { + for ( i = 0; i < port_cell->port_num && i < 2; i++ ) + port_cell->tx_link_rate[i] = g_tx_link_rate[i]; + } + + if ( xdata_addr ) { + if ( g_tx_link_rate[0] == 0 && g_tx_link_rate[1] == 0 ) + *xdata_addr = NULL; + else + *xdata_addr = g_xdata_addr; + } + + return 0; +} +EXPORT_SYMBOL(ifx_mei_atm_showtime_check); + +/* + * Writing function for linux proc filesystem + */ +static int ltq_mei_probe(struct platform_device *pdev) +{ + int i = 0; + static struct class *dsl_class; + + pr_info("IFX MEI Version %ld.%02ld.%02ld\n", bsp_mei_version.major, bsp_mei_version.minor, bsp_mei_version.revision); + + for (i = 0; i < BSP_MAX_DEVICES; i++) { + if (IFX_MEI_InitDevice (i) != 0) { + IFX_MEI_EMSG("Init device fail!\n"); + return -EIO; + } + IFX_MEI_InitDevNode (i); + } + for (i = 0; i <= DSL_BSP_CB_LAST ; i++) + dsl_bsp_event_callback[i].function = NULL; + +#ifdef CONFIG_LTQ_MEI_FW_LOOPBACK + IFX_MEI_DMSG("Start loopback test...\n"); + DFE_Loopback_Test (); +#endif + dsl_class = class_create(THIS_MODULE, "ifx_mei"); + device_create(dsl_class, NULL, MKDEV(MEI_MAJOR, 0), NULL, "ifx_mei"); + return 0; +} + +static int ltq_mei_remove(struct platform_device *pdev) +{ + int i = 0; + int num; + + for (num = 0; num < BSP_MAX_DEVICES; num++) { + IFX_MEI_CleanUpDevNode (num); + } + + for (i = 0; i < BSP_MAX_DEVICES; i++) { + for (i = 0; i < BSP_MAX_DEVICES; i++) { + IFX_MEI_ExitDevice (i); + } + } + return 0; +} + +static const struct of_device_id ltq_mei_match[] = { + { .compatible = "lantiq,mei-xway"}, + {}, +}; + +static struct platform_driver ltq_mei_driver = { + .probe = ltq_mei_probe, + .remove = ltq_mei_remove, + .driver = { + .name = "lantiq,mei-xway", + .owner = THIS_MODULE, + .of_match_table = ltq_mei_match, + }, +}; + +module_platform_driver(ltq_mei_driver); + +/* export function for DSL Driver */ + +/* The functions of MEI_DriverHandleGet and MEI_DriverHandleDelete are +something like open/close in kernel space , where the open could be used +to register a callback for autonomous messages and returns a mei driver context pointer (comparable to the file descriptor in user space) + The context will be required for the multi line chips future! */ + +EXPORT_SYMBOL (DSL_BSP_DriverHandleGet); +EXPORT_SYMBOL (DSL_BSP_DriverHandleDelete); + +EXPORT_SYMBOL (DSL_BSP_ATMLedCBRegister); +EXPORT_SYMBOL (DSL_BSP_ATMLedCBUnregister); +EXPORT_SYMBOL (DSL_BSP_KernelIoctls); +EXPORT_SYMBOL (DSL_BSP_AdslLedInit); +//EXPORT_SYMBOL (DSL_BSP_AdslLedSet); +EXPORT_SYMBOL (DSL_BSP_FWDownload); +EXPORT_SYMBOL (DSL_BSP_Showtime); + +EXPORT_SYMBOL (DSL_BSP_MemoryDebugAccess); +EXPORT_SYMBOL (DSL_BSP_SendCMV); + +// provide a register/unregister function for DSL driver to register a event callback function +EXPORT_SYMBOL (DSL_BSP_EventCBRegister); +EXPORT_SYMBOL (DSL_BSP_EventCBUnregister); + +MODULE_LICENSE("Dual BSD/GPL"); diff --git a/package/kernel/lantiq/ltq-adsl/Config.in b/package/kernel/lantiq/ltq-adsl/Config.in new file mode 100644 index 0000000..6d9caf4 --- /dev/null +++ b/package/kernel/lantiq/ltq-adsl/Config.in @@ -0,0 +1,5 @@ +config LANTIQ_DSL_DEBUG + bool "verbose debugging" + depends on PACKAGE_kmod-ltq-dsl + help + Say Y, if you need ltq-dsl to display debug messages. diff --git a/package/kernel/lantiq/ltq-adsl/Makefile b/package/kernel/lantiq/ltq-adsl/Makefile new file mode 100644 index 0000000..6a0daa2 --- /dev/null +++ b/package/kernel/lantiq/ltq-adsl/Makefile @@ -0,0 +1,96 @@ +# +# Copyright (C) 2011 OpenWrt.org +# +# This is free software, licensed under the GNU General Public License v2. +# See /LICENSE for more information. +# + +include $(TOPDIR)/rules.mk +include $(INCLUDE_DIR)/kernel.mk + +PKG_NAME:=ltq-adsl +PKG_VERSION:=3.24.4.4 +PKG_RELEASE:=1 +PKG_SOURCE:=drv_dsl_cpe_api_danube-$(PKG_VERSION).tar.gz +PKG_BUILD_DIR:=$(KERNEL_BUILD_DIR)/ltq-dsl-$(BUILD_VARIANT)/drv_dsl_cpe_api-$(PKG_VERSION) +PKG_SOURCE_URL:=http://mirror2.openwrt.org/sources/ +PKG_MD5SUM:=c45bc531c1ed2ac80f68fb986b63bb87 +PKG_MAINTAINER:=John Crispin <blogic@openwrt.org> + +include $(INCLUDE_DIR)/package.mk + +define KernelPackage/ltq-adsl-template + SECTION:=sys + CATEGORY:=Kernel modules + SUBMENU:=Network Devices + TITLE:=adsl driver for $(1) + URL:=http://www.lantiq.com/ + VARIANT:=$(1) + DEPENDS:=@TARGET_lantiq_$(2) +kmod-ltq-adsl-$(1)-mei + FILES:=$(PKG_BUILD_DIR)/src/drv_dsl_cpe_api.ko + AUTOLOAD:=$(call AutoLoad,51,drv_dsl_cpe_api) +endef + +KernelPackage/ltq-adsl-danube=$(call KernelPackage/ltq-adsl-template,danube,xway) +KernelPackage/ltq-adsl-ar9=$(call KernelPackage/ltq-adsl-template,ar9,xway) +KernelPackage/ltq-adsl-ase=$(call KernelPackage/ltq-adsl-template,ase,ase) + +define KernelPackage/ltq-dsl/config + source "$(SOURCE)/Config.in" +endef + +IFX_DSL_MAX_DEVICE=1 +IFX_DSL_LINES_PER_DEVICE=1 +IFX_DSL_CHANNELS_PER_LINE=1 + +CONFIGURE_ARGS += --enable-kernel-include="$(LINUX_DIR)/include" \ + --with-max-device="$(IFX_DSL_MAX_DEVICE)" \ + --with-lines-per-device="$(IFX_DSL_LINES_PER_DEVICE)" \ + --with-channels-per-line="$(IFX_DSL_CHANNELS_PER_LINE)" \ + --disable-dsl-delt-static \ + --disable-adsl-led \ + --enable-dsl-ceoc \ + --enable-dsl-pm \ + --enable-dsl-pm-total \ + --enable-dsl-pm-history \ + --enable-dsl-pm-showtime \ + --enable-dsl-pm-channel-counters \ + --enable-dsl-pm-datapath-counters \ + --enable-dsl-pm-line-counters \ + --enable-dsl-pm-channel-thresholds \ + --enable-dsl-pm-datapath-thresholds \ + --enable-dsl-pm-line-thresholds \ + --enable-dsl-pm-optional-parameters \ + --enable-linux-26 \ + --enable-kernelbuild="$(LINUX_DIR)" \ + ARCH=$(LINUX_KARCH) + +CONFIG_TAG_danube:=DANUBE +CONFIG_TAG_ase:=AMAZON_SE +CONFIG_TAG_ar9:=AR9 +CONFIGURE_ARGS += --enable-add-drv-cflags="-DMODULE -DCONFIG_$(CONFIG_TAG_$(BUILD_VARIANT))" + +CONFIGURE_ARGS += --enable-danube + +ifeq ($(CONFIG_LANTIQ_DSL_DEBUG),y) +CONFIGURE_ARGS += \ + --enable-debug=yes \ + --enable-debug-prints=yes +EXTRA_CFLAGS += -DDEBUG +endif + +EXTRA_CFLAGS = -fno-pic -mno-abicalls -mlong-calls -G 0 + +define Build/Configure + (cd $(PKG_BUILD_DIR); aclocal && autoconf && automake) + $(call Build/Configure/Default) +endef + +define Build/InstallDev + $(INSTALL_DIR) $(1)/usr/include/adsl + $(CP) $(PKG_BUILD_DIR)/src/include/drv_dsl_cpe_*.h $(1)/usr/include/adsl/ +endef + +$(eval $(call KernelPackage,ltq-adsl-danube)) +$(eval $(call KernelPackage,ltq-adsl-ase)) +$(eval $(call KernelPackage,ltq-adsl-ar9)) diff --git a/package/kernel/lantiq/ltq-adsl/patches/100-dsl_compat.patch b/package/kernel/lantiq/ltq-adsl/patches/100-dsl_compat.patch new file mode 100644 index 0000000..f2ed230 --- /dev/null +++ b/package/kernel/lantiq/ltq-adsl/patches/100-dsl_compat.patch @@ -0,0 +1,1065 @@ +Index: drv_dsl_cpe_api-3.24.4.4/src/include/drv_dsl_cpe_device_danube.h +=================================================================== +--- drv_dsl_cpe_api-3.24.4.4.orig/src/include/drv_dsl_cpe_device_danube.h 2009-05-12 20:02:16.000000000 +0200 ++++ drv_dsl_cpe_api-3.24.4.4/src/include/drv_dsl_cpe_device_danube.h 2012-11-29 19:47:21.060210322 +0100 +@@ -24,7 +24,7 @@ + #include "drv_dsl_cpe_simulator_danube.h" + #else + /* Include for the low level driver interface header file */ +-#include "asm/ifx/ifx_mei_bsp.h" ++#include "ifxmips_mei_interface.h" + #endif /* defined(DSL_CPE_SIMULATOR_DRIVER) && defined(WIN32)*/ + + #define DSL_MAX_LINE_NUMBER 1 +Index: drv_dsl_cpe_api-3.24.4.4/src/common/drv_dsl_cpe_os_linux.c +=================================================================== +--- drv_dsl_cpe_api-3.24.4.4.orig/src/common/drv_dsl_cpe_os_linux.c 2009-07-13 11:33:43.000000000 +0200 ++++ drv_dsl_cpe_api-3.24.4.4/src/common/drv_dsl_cpe_os_linux.c 2012-11-29 19:46:32.700209112 +0100 +@@ -11,6 +11,7 @@ + #ifdef __LINUX__ + + #define DSL_INTERN ++#include <linux/device.h> + + #include "drv_dsl_cpe_api.h" + #include "drv_dsl_cpe_api_ioctl.h" +@@ -34,9 +35,13 @@ + static DSL_ssize_t DSL_DRV_Write(DSL_DRV_file_t *pFile, const DSL_char_t * pBuf, + DSL_DRV_size_t nSize, DSL_DRV_offset_t * pLoff); + ++#if (LINUX_VERSION_CODE < KERNEL_VERSION(2,6,36)) + static DSL_int_t DSL_DRV_Ioctls(DSL_DRV_inode_t * pINode, DSL_DRV_file_t * pFile, + DSL_uint_t nCommand, unsigned long nArg); +- ++#else ++static DSL_int_t DSL_DRV_Ioctls(DSL_DRV_file_t * pFile, ++ DSL_uint_t nCommand, unsigned long nArg); ++#endif + static int DSL_DRV_Open(DSL_DRV_inode_t * ino, DSL_DRV_file_t * fil); + + static int DSL_DRV_Release(DSL_DRV_inode_t * ino, DSL_DRV_file_t * fil); +@@ -72,7 +77,11 @@ + open: DSL_DRV_Open, + release: DSL_DRV_Release, + write: DSL_DRV_Write, ++#if (LINUX_VERSION_CODE < KERNEL_VERSION(2,6,36)) + ioctl: DSL_DRV_Ioctls, ++#else ++ unlocked_ioctl: DSL_DRV_Ioctls, ++#endif + poll: DSL_DRV_Poll + }; + #else +@@ -168,10 +177,17 @@ + \return Success or failure. + \ingroup Internal + */ ++#if (LINUX_VERSION_CODE < KERNEL_VERSION(2,6,36)) + static DSL_int_t DSL_DRV_Ioctls(DSL_DRV_inode_t * pINode, + DSL_DRV_file_t * pFile, + DSL_uint_t nCommand, + unsigned long nArg) ++#else ++static DSL_int_t DSL_DRV_Ioctls( ++ DSL_DRV_file_t * pFile, ++ DSL_uint_t nCommand, ++ unsigned long nArg) ++#endif + { + DSL_int_t nErr=0; + DSL_boolean_t bIsInKernel; +@@ -216,16 +232,7 @@ + } + } + } +- +- if (pINode == DSL_NULL) +- { +- bIsInKernel = DSL_TRUE; +- } +- else +- { +- bIsInKernel = DSL_FALSE; +- } +- ++ bIsInKernel = DSL_FALSE; + if ( (_IOC_TYPE(nCommand) == DSL_IOC_MAGIC_CPE_API) || + (_IOC_TYPE(nCommand) == DSL_IOC_MAGIC_CPE_API_G997) || + (_IOC_TYPE(nCommand) == DSL_IOC_MAGIC_CPE_API_PM) || +@@ -1058,6 +1065,7 @@ + /* Entry point of driver */ + int __init DSL_ModuleInit(void) + { ++ struct class *dsl_class; + DSL_int_t i; + + printk(DSL_DRV_CRLF DSL_DRV_CRLF "Infineon CPE API Driver version: %s" DSL_DRV_CRLF, +@@ -1104,7 +1112,8 @@ + } + + DSL_DRV_DevNodeInit(); +- ++ dsl_class = class_create(THIS_MODULE, "dsl_cpe_api"); ++ device_create(dsl_class, NULL, MKDEV(DRV_DSL_CPE_API_DEV_MAJOR, 0), NULL, "dsl_cpe_api"); + return 0; + } + +Index: drv_dsl_cpe_api-3.24.4.4/src/include/drv_dsl_cpe_os_linux.h +=================================================================== +--- drv_dsl_cpe_api-3.24.4.4.orig/src/include/drv_dsl_cpe_os_linux.h 2009-07-03 17:04:51.000000000 +0200 ++++ drv_dsl_cpe_api-3.24.4.4/src/include/drv_dsl_cpe_os_linux.h 2012-11-29 19:47:23.092210377 +0100 +@@ -17,17 +17,17 @@ + #endif + + #include <asm/ioctl.h> +-#include <linux/autoconf.h> ++#include <generated/autoconf.h> + #include <linux/module.h> + #include <linux/kernel.h> + #include <linux/init.h> + #include <linux/ctype.h> + #include <linux/version.h> + #include <linux/spinlock.h> +- ++#include <linux/sched.h> + + #if (LINUX_VERSION_CODE > KERNEL_VERSION(2,6,17)) +- #include <linux/utsrelease.h> ++ #include <generated/utsrelease.h> + #endif + + #include <linux/types.h> +Index: drv_dsl_cpe_api-3.24.4.4/src/ifxmips_mei_interface.h +=================================================================== +--- /dev/null 1970-01-01 00:00:00.000000000 +0000 ++++ drv_dsl_cpe_api-3.24.4.4/src/ifxmips_mei_interface.h 2012-11-29 19:47:54.972211177 +0100 +@@ -0,0 +1,702 @@ ++/****************************************************************************** ++ ++ Copyright (c) 2009 ++ Infineon Technologies AG ++ Am Campeon 1-12; 81726 Munich, Germany ++ ++ For licensing information, see the file 'LICENSE' in the root folder of ++ this software module. ++ ++******************************************************************************/ ++ ++#ifndef IFXMIPS_MEI_H ++#define IFXMIPS_MEI_H ++ ++//#define CONFIG_AMAZON_SE 1 ++//#define CONFIG_DANUBE 1 ++//#define CONFIG_AR9 1 ++ ++#if !defined(CONFIG_DANUBE) && !defined(CONFIG_AMAZON_SE) && !defined(CONFIG_AR9) && !defined(CONFIG_VR9) ++#error Platform undefined!!! ++#endif ++ ++#ifdef IFX_MEI_BSP ++/** This is the character datatype. */ ++typedef char DSL_char_t; ++/** This is the unsigned 8-bit datatype. */ ++typedef unsigned char DSL_uint8_t; ++/** This is the signed 8-bit datatype. */ ++typedef signed char DSL_int8_t; ++/** This is the unsigned 16-bit datatype. */ ++typedef unsigned short DSL_uint16_t; ++/** This is the signed 16-bit datatype. */ ++typedef signed short DSL_int16_t; ++/** This is the unsigned 32-bit datatype. */ ++typedef unsigned long DSL_uint32_t; ++/** This is the signed 32-bit datatype. */ ++typedef signed long DSL_int32_t; ++/** This is the float datatype. */ ++typedef float DSL_float_t; ++/** This is the void datatype. */ ++typedef void DSL_void_t; ++/** integer type, width is depending on processor arch */ ++typedef int DSL_int_t; ++/** unsigned integer type, width is depending on processor arch */ ++typedef unsigned int DSL_uint_t; ++typedef struct file DSL_DRV_file_t; ++typedef struct inode DSL_DRV_inode_t; ++ ++/** ++ * Defines all possible CMV groups ++ * */ ++typedef enum { ++ DSL_CMV_GROUP_CNTL = 1, ++ DSL_CMV_GROUP_STAT = 2, ++ DSL_CMV_GROUP_INFO = 3, ++ DSL_CMV_GROUP_TEST = 4, ++ DSL_CMV_GROUP_OPTN = 5, ++ DSL_CMV_GROUP_RATE = 6, ++ DSL_CMV_GROUP_PLAM = 7, ++ DSL_CMV_GROUP_CNFG = 8 ++} DSL_CmvGroup_t; ++/** ++ * Defines all opcode types ++ * */ ++typedef enum { ++ H2D_CMV_READ = 0x00, ++ H2D_CMV_WRITE = 0x04, ++ H2D_CMV_INDICATE_REPLY = 0x10, ++ H2D_ERROR_OPCODE_UNKNOWN =0x20, ++ H2D_ERROR_CMV_UNKNOWN =0x30, ++ ++ D2H_CMV_READ_REPLY =0x01, ++ D2H_CMV_WRITE_REPLY = 0x05, ++ D2H_CMV_INDICATE = 0x11, ++ D2H_ERROR_OPCODE_UNKNOWN = 0x21, ++ D2H_ERROR_CMV_UNKNOWN = 0x31, ++ D2H_ERROR_CMV_READ_NOT_AVAILABLE = 0x41, ++ D2H_ERROR_CMV_WRITE_ONLY = 0x51, ++ D2H_ERROR_CMV_READ_ONLY = 0x61, ++ ++ H2D_DEBUG_READ_DM = 0x02, ++ H2D_DEBUG_READ_PM = 0x06, ++ H2D_DEBUG_WRITE_DM = 0x0a, ++ H2D_DEBUG_WRITE_PM = 0x0e, ++ ++ D2H_DEBUG_READ_DM_REPLY = 0x03, ++ D2H_DEBUG_READ_FM_REPLY = 0x07, ++ D2H_DEBUG_WRITE_DM_REPLY = 0x0b, ++ D2H_DEBUG_WRITE_FM_REPLY = 0x0f, ++ D2H_ERROR_ADDR_UNKNOWN = 0x33, ++ ++ D2H_AUTONOMOUS_MODEM_READY_MSG = 0xf1 ++} DSL_CmvOpcode_t; ++ ++/* mutex macros */ ++#define MEI_MUTEX_INIT(id,flag) \ ++ sema_init(&id,flag) ++#define MEI_MUTEX_LOCK(id) \ ++ down_interruptible(&id) ++#define MEI_MUTEX_UNLOCK(id) \ ++ up(&id) ++#define MEI_WAIT(ms) \ ++ {\ ++ set_current_state(TASK_INTERRUPTIBLE);\ ++ schedule_timeout(ms);\ ++ } ++#define MEI_INIT_WAKELIST(name,queue) \ ++ init_waitqueue_head(&queue) ++ ++/* wait for an event, timeout is measured in ms */ ++#define MEI_WAIT_EVENT_TIMEOUT(ev,timeout)\ ++ interruptible_sleep_on_timeout(&ev,timeout * HZ / 1000) ++#define MEI_WAKEUP_EVENT(ev)\ ++ wake_up_interruptible(&ev) ++#endif /* IFX_MEI_BSP */ ++ ++/*** Register address offsets, relative to MEI_SPACE_ADDRESS ***/ ++#define ME_DX_DATA (0x0000) ++#define ME_VERSION (0x0004) ++#define ME_ARC_GP_STAT (0x0008) ++#define ME_DX_STAT (0x000C) ++#define ME_DX_AD (0x0010) ++#define ME_DX_MWS (0x0014) ++#define ME_ME2ARC_INT (0x0018) ++#define ME_ARC2ME_STAT (0x001C) ++#define ME_ARC2ME_MASK (0x0020) ++#define ME_DBG_WR_AD (0x0024) ++#define ME_DBG_RD_AD (0x0028) ++#define ME_DBG_DATA (0x002C) ++#define ME_DBG_DECODE (0x0030) ++#define ME_CONFIG (0x0034) ++#define ME_RST_CTRL (0x0038) ++#define ME_DBG_MASTER (0x003C) ++#define ME_CLK_CTRL (0x0040) ++#define ME_BIST_CTRL (0x0044) ++#define ME_BIST_STAT (0x0048) ++#define ME_XDATA_BASE_SH (0x004c) ++#define ME_XDATA_BASE (0x0050) ++#define ME_XMEM_BAR_BASE (0x0054) ++#define ME_XMEM_BAR0 (0x0054) ++#define ME_XMEM_BAR1 (0x0058) ++#define ME_XMEM_BAR2 (0x005C) ++#define ME_XMEM_BAR3 (0x0060) ++#define ME_XMEM_BAR4 (0x0064) ++#define ME_XMEM_BAR5 (0x0068) ++#define ME_XMEM_BAR6 (0x006C) ++#define ME_XMEM_BAR7 (0x0070) ++#define ME_XMEM_BAR8 (0x0074) ++#define ME_XMEM_BAR9 (0x0078) ++#define ME_XMEM_BAR10 (0x007C) ++#define ME_XMEM_BAR11 (0x0080) ++#define ME_XMEM_BAR12 (0x0084) ++#define ME_XMEM_BAR13 (0x0088) ++#define ME_XMEM_BAR14 (0x008C) ++#define ME_XMEM_BAR15 (0x0090) ++#define ME_XMEM_BAR16 (0x0094) ++ ++#define WHILE_DELAY 20000 ++/* ++** Define where in ME Processor's memory map the Stratify chip lives ++*/ ++ ++#define MAXSWAPSIZE (8 * 1024) //8k *(32bits) ++ ++// Mailboxes ++#define MSG_LENGTH 16 // x16 bits ++#define YES_REPLY 1 ++#define NO_REPLY 0 ++ ++#define CMV_TIMEOUT 1000 //jiffies ++ ++// Block size per BAR ++#define SDRAM_SEGMENT_SIZE (64*1024) ++// Number of Bar registers ++#define MAX_BAR_REGISTERS (17) ++ ++#define XDATA_REGISTER (15) ++ ++// ARC register addresss ++#define ARC_STATUS 0x0 ++#define ARC_LP_START 0x2 ++#define ARC_LP_END 0x3 ++#define ARC_DEBUG 0x5 ++#define ARC_INT_MASK 0x10A ++ ++#define IRAM0_BASE (0x00000) ++#define IRAM1_BASE (0x04000) ++#if defined(CONFIG_DANUBE) ++#define BRAM_BASE (0x0A000) ++#elif defined(CONFIG_AMAZON_SE) || defined(CONFIG_AR9) || defined(CONFIG_VR9) ++#define BRAM_BASE (0x08000) ++#endif ++#define XRAM_BASE (0x18000) ++#define YRAM_BASE (0x1A000) ++#define EXT_MEM_BASE (0x80000) ++#define ARC_GPIO_CTRL (0xC030) ++#define ARC_GPIO_DATA (0xC034) ++ ++#define IRAM0_SIZE (16*1024) ++#define IRAM1_SIZE (16*1024) ++#define BRAM_SIZE (12*1024) ++#define XRAM_SIZE (8*1024) ++#define YRAM_SIZE (8*1024) ++#define EXT_MEM_SIZE (1536*1024) ++ ++#define ADSL_BASE (0x20000) ++#define CRI_BASE (ADSL_BASE + 0x11F00) ++#define CRI_CCR0 (CRI_BASE + 0x00) ++#define CRI_RST (CRI_BASE + 0x04*4) ++#define ADSL_DILV_BASE (ADSL_BASE+0x20000) ++ ++// ++#define IRAM0_ADDR_BIT_MASK 0xFFF ++#define IRAM1_ADDR_BIT_MASK 0xFFF ++#define BRAM_ADDR_BIT_MASK 0xFFF ++#define RX_DILV_ADDR_BIT_MASK 0x1FFF ++ ++/*** Bit definitions ***/ ++#define ARC_AUX_HALT (1 << 25) ++#define ARC_DEBUG_HALT (1 << 1) ++#define FALSE 0 ++#define TRUE 1 ++#define BIT0 (1<<0) ++#define BIT1 (1<<1) ++#define BIT2 (1<<2) ++#define BIT3 (1<<3) ++#define BIT4 (1<<4) ++#define BIT5 (1<<5) ++#define BIT6 (1<<6) ++#define BIT7 (1<<7) ++#define BIT8 (1<<8) ++#define BIT9 (1<<9) ++#define BIT10 (1<<10) ++#define BIT11 (1<<11) ++#define BIT12 (1<<12) ++#define BIT13 (1<<13) ++#define BIT14 (1<<14) ++#define BIT15 (1<<15) ++#define BIT16 (1<<16) ++#define BIT17 (1<<17) ++#define BIT18 (1<<18) ++#define BIT19 (1<<19) ++#define BIT20 (1<<20) ++#define BIT21 (1<<21) ++#define BIT22 (1<<22) ++#define BIT23 (1<<23) ++#define BIT24 (1<<24) ++#define BIT25 (1<<25) ++#define BIT26 (1<<26) ++#define BIT27 (1<<27) ++#define BIT28 (1<<28) ++#define BIT29 (1<<29) ++#define BIT30 (1<<30) ++#define BIT31 (1<<31) ++ ++// CRI_CCR0 Register definitions ++#define CLK_2M_MODE_ENABLE BIT6 ++#define ACL_CLK_MODE_ENABLE BIT4 ++#define FDF_CLK_MODE_ENABLE BIT2 ++#define STM_CLK_MODE_ENABLE BIT0 ++ ++// CRI_RST Register definitions ++#define FDF_SRST BIT3 ++#define MTE_SRST BIT2 ++#define FCI_SRST BIT1 ++#define AAI_SRST BIT0 ++ ++// MEI_TO_ARC_INTERRUPT Register definitions ++#define MEI_TO_ARC_INT1 BIT3 ++#define MEI_TO_ARC_INT0 BIT2 ++#define MEI_TO_ARC_CS_DONE BIT1 //need to check ++#define MEI_TO_ARC_MSGAV BIT0 ++ ++// ARC_TO_MEI_INTERRUPT Register definitions ++#define ARC_TO_MEI_INT1 BIT8 ++#define ARC_TO_MEI_INT0 BIT7 ++#define ARC_TO_MEI_CS_REQ BIT6 ++#define ARC_TO_MEI_DBG_DONE BIT5 ++#define ARC_TO_MEI_MSGACK BIT4 ++#define ARC_TO_MEI_NO_ACCESS BIT3 ++#define ARC_TO_MEI_CHECK_AAITX BIT2 ++#define ARC_TO_MEI_CHECK_AAIRX BIT1 ++#define ARC_TO_MEI_MSGAV BIT0 ++ ++// ARC_TO_MEI_INTERRUPT_MASK Register definitions ++#define GP_INT1_EN BIT8 ++#define GP_INT0_EN BIT7 ++#define CS_REQ_EN BIT6 ++#define DBG_DONE_EN BIT5 ++#define MSGACK_EN BIT4 ++#define NO_ACC_EN BIT3 ++#define AAITX_EN BIT2 ++#define AAIRX_EN BIT1 ++#define MSGAV_EN BIT0 ++ ++#define MEI_SOFT_RESET BIT0 ++ ++#define HOST_MSTR BIT0 ++ ++#define JTAG_MASTER_MODE 0x0 ++#define MEI_MASTER_MODE HOST_MSTR ++ ++// MEI_DEBUG_DECODE Register definitions ++#define MEI_DEBUG_DEC_MASK (0x3) ++#define MEI_DEBUG_DEC_AUX_MASK (0x0) ++#define ME_DBG_DECODE_DMP1_MASK (0x1) ++#define MEI_DEBUG_DEC_DMP2_MASK (0x2) ++#define MEI_DEBUG_DEC_CORE_MASK (0x3) ++ ++#define AUX_STATUS (0x0) ++#define AUX_ARC_GPIO_CTRL (0x10C) ++#define AUX_ARC_GPIO_DATA (0x10D) ++// ARC_TO_MEI_MAILBOX[11] is a special location used to indicate ++// page swap requests. ++#if defined(CONFIG_DANUBE) ++#define OMBOX_BASE 0xDF80 ++#define ARC_TO_MEI_MAILBOX 0xDFA0 ++#define IMBOX_BASE 0xDFC0 ++#define MEI_TO_ARC_MAILBOX 0xDFD0 ++#elif defined(CONFIG_AMAZON_SE) || defined(CONFIG_AR9) || defined(CONFIG_VR9) ++#define OMBOX_BASE 0xAF80 ++#define ARC_TO_MEI_MAILBOX 0xAFA0 ++#define IMBOX_BASE 0xAFC0 ++#define MEI_TO_ARC_MAILBOX 0xAFD0 ++#endif ++ ++#define MEI_TO_ARC_MAILBOXR (MEI_TO_ARC_MAILBOX + 0x2C) ++#define ARC_MEI_MAILBOXR (ARC_TO_MEI_MAILBOX + 0x2C) ++#define OMBOX1 (OMBOX_BASE+0x4) ++ ++// Codeswap request messages are indicated by setting BIT31 ++#define OMB_CODESWAP_MESSAGE_MSG_TYPE_MASK (0x80000000) ++ ++// Clear Eoc messages received are indicated by setting BIT17 ++#define OMB_CLEAREOC_INTERRUPT_CODE (0x00020000) ++#define OMB_REBOOT_INTERRUPT_CODE (1 << 18) ++ ++/* ++** Swap page header ++*/ ++// Page must be loaded at boot time if size field has BIT31 set ++#define BOOT_FLAG (BIT31) ++#define BOOT_FLAG_MASK ~BOOT_FLAG ++ ++#define FREE_RELOAD 1 ++#define FREE_SHOWTIME 2 ++#define FREE_ALL 3 ++ ++// marcos ++#define IFX_MEI_WRITE_REGISTER_L(data,addr) *((volatile u32*)(addr)) = (u32)(data) ++#define IFX_MEI_READ_REGISTER_L(addr) (*((volatile u32*)(addr))) ++#define SET_BIT(reg, mask) reg |= (mask) ++#define CLEAR_BIT(reg, mask) reg &= (~mask) ++#define CLEAR_BITS(reg, mask) CLEAR_BIT(reg, mask) ++//#define SET_BITS(reg, mask) SET_BIT(reg, mask) ++#define SET_BITFIELD(reg, mask, off, val) {reg &= (~mask); reg |= (val << off);} ++ ++#define ALIGN_SIZE ( 1L<<10 ) //1K size align ++#define MEM_ALIGN(addr) (((addr) + ALIGN_SIZE - 1) & ~ (ALIGN_SIZE -1) ) ++ ++// swap marco ++#define MEI_HALF_WORD_SWAP(data) {data = ((data & 0xffff)<<16) + ((data & 0xffff0000)>>16);} ++#define MEI_BYTE_SWAP(data) {data = ((data & 0xff)<<24) + ((data & 0xff00)<<8)+ ((data & 0xff0000)>>8)+ ((data & 0xff000000)>>24);} ++ ++ ++#ifdef CONFIG_PROC_FS ++typedef struct reg_entry ++{ ++ int *flag; ++ char name[30]; /* big enough to hold names */ ++ char description[100]; /* big enough to hold description */ ++ unsigned short low_ino; ++} reg_entry_t; ++#endif ++// Swap page header describes size in 32-bit words, load location, and image offset ++// for program and/or data segments ++typedef struct _arc_swp_page_hdr { ++ u32 p_offset; //Offset bytes of progseg from beginning of image ++ u32 p_dest; //Destination addr of progseg on processor ++ u32 p_size; //Size in 32-bitwords of program segment ++ u32 d_offset; //Offset bytes of dataseg from beginning of image ++ u32 d_dest; //Destination addr of dataseg on processor ++ u32 d_size; //Size in 32-bitwords of data segment ++} ARC_SWP_PAGE_HDR; ++ ++/* ++** Swap image header ++*/ ++#define GET_PROG 0 // Flag used for program mem segment ++#define GET_DATA 1 // Flag used for data mem segment ++ ++// Image header contains size of image, checksum for image, and count of ++// page headers. Following that are 'count' page headers followed by ++// the code and/or data segments to be loaded ++typedef struct _arc_img_hdr { ++ u32 size; // Size of binary image in bytes ++ u32 checksum; // Checksum for image ++ u32 count; // Count of swp pages in image ++ ARC_SWP_PAGE_HDR page[1]; // Should be "count" pages - '1' to make compiler happy ++} ARC_IMG_HDR; ++ ++typedef struct smmu_mem_info { ++ int type; ++ int boot; ++ unsigned long nCopy; ++ unsigned long size; ++ unsigned char *address; ++ unsigned char *org_address; ++} smmu_mem_info_t; ++ ++#ifdef __KERNEL__ ++typedef struct ifx_mei_device_private { ++ int modem_ready; ++ int arcmsgav; ++ int cmv_reply; ++ int cmv_waiting; ++ // Mei to ARC CMV count, reply count, ARC Indicator count ++ int modem_ready_cnt; ++ int cmv_count; ++ int reply_count; ++ unsigned long image_size; ++ int nBar; ++ u16 Recent_indicator[MSG_LENGTH]; ++ ++ u16 CMV_RxMsg[MSG_LENGTH] __attribute__ ((aligned (4))); ++ ++ smmu_mem_info_t adsl_mem_info[MAX_BAR_REGISTERS]; ++ ARC_IMG_HDR *img_hdr; ++ // to wait for arc cmv reply, sleep on wait_queue_arcmsgav; ++ wait_queue_head_t wait_queue_arcmsgav; ++ wait_queue_head_t wait_queue_modemready; ++ struct semaphore mei_cmv_sema; ++} ifx_mei_device_private_t; ++#endif ++typedef struct winhost_message { ++ union { ++ u16 RxMessage[MSG_LENGTH] __attribute__ ((aligned (4))); ++ u16 TxMessage[MSG_LENGTH] __attribute__ ((aligned (4))); ++ } msg; ++} DSL_DEV_WinHost_Message_t; ++/******************************************************************************************************** ++ * DSL CPE API Driver Stack Interface Definitions ++ * *****************************************************************************************************/ ++/** IOCTL codes for bsp driver */ ++#define DSL_IOC_MEI_BSP_MAGIC 's' ++ ++#define DSL_FIO_BSP_DSL_START _IO (DSL_IOC_MEI_BSP_MAGIC, 0) ++#define DSL_FIO_BSP_RUN _IO (DSL_IOC_MEI_BSP_MAGIC, 1) ++#define DSL_FIO_BSP_FREE_RESOURCE _IO (DSL_IOC_MEI_BSP_MAGIC, 2) ++#define DSL_FIO_BSP_RESET _IO (DSL_IOC_MEI_BSP_MAGIC, 3) ++#define DSL_FIO_BSP_REBOOT _IO (DSL_IOC_MEI_BSP_MAGIC, 4) ++#define DSL_FIO_BSP_HALT _IO (DSL_IOC_MEI_BSP_MAGIC, 5) ++#define DSL_FIO_BSP_BOOTDOWNLOAD _IO (DSL_IOC_MEI_BSP_MAGIC, 6) ++#define DSL_FIO_BSP_JTAG_ENABLE _IO (DSL_IOC_MEI_BSP_MAGIC, 7) ++#define DSL_FIO_FREE_RESOURCE _IO (DSL_IOC_MEI_BSP_MAGIC, 8) ++#define DSL_FIO_ARC_MUX_TEST _IO (DSL_IOC_MEI_BSP_MAGIC, 9) ++#define DSL_FIO_BSP_REMOTE _IOW (DSL_IOC_MEI_BSP_MAGIC, 10, u32) ++#define DSL_FIO_BSP_GET_BASE_ADDRESS _IOR (DSL_IOC_MEI_BSP_MAGIC, 11, u32) ++#define DSL_FIO_BSP_IS_MODEM_READY _IOR (DSL_IOC_MEI_BSP_MAGIC, 12, u32) ++#define DSL_FIO_BSP_GET_VERSION _IOR (DSL_IOC_MEI_BSP_MAGIC, 13, DSL_DEV_Version_t) ++#define DSL_FIO_BSP_CMV_WINHOST _IOWR(DSL_IOC_MEI_BSP_MAGIC, 14, DSL_DEV_WinHost_Message_t) ++#define DSL_FIO_BSP_CMV_READ _IOWR(DSL_IOC_MEI_BSP_MAGIC, 15, DSL_DEV_MeiReg_t) ++#define DSL_FIO_BSP_CMV_WRITE _IOW (DSL_IOC_MEI_BSP_MAGIC, 16, DSL_DEV_MeiReg_t) ++#define DSL_FIO_BSP_DEBUG_READ _IOWR(DSL_IOC_MEI_BSP_MAGIC, 17, DSL_DEV_MeiDebug_t) ++#define DSL_FIO_BSP_DEBUG_WRITE _IOWR(DSL_IOC_MEI_BSP_MAGIC, 18, DSL_DEV_MeiDebug_t) ++#define DSL_FIO_BSP_GET_CHIP_INFO _IOR (DSL_IOC_MEI_BSP_MAGIC, 19, DSL_DEV_HwVersion_t) ++ ++#define DSL_DEV_MEIDEBUG_BUFFER_SIZES 512 ++ ++typedef struct DSL_DEV_MeiDebug ++{ ++ DSL_uint32_t iAddress; ++ DSL_uint32_t iCount; ++ DSL_uint32_t buffer[DSL_DEV_MEIDEBUG_BUFFER_SIZES]; ++} DSL_DEV_MeiDebug_t; /* meidebug */ ++ ++/** ++ * Structure is used for debug access only. ++ * Refer to configure option INCLUDE_ADSL_WINHOST_DEBUG */ ++typedef struct struct_meireg ++{ ++ /* ++ * Specifies that address for debug access */ ++ unsigned long iAddress; ++ /* ++ * Specifies the pointer to the data that has to be written or returns a ++ * pointer to the data that has been read out*/ ++ unsigned long iData; ++} DSL_DEV_MeiReg_t; /* meireg */ ++ ++typedef struct DSL_DEV_Device ++{ ++ DSL_int_t nInUse; /* modem state, update by bsp driver, */ ++ DSL_void_t *pPriv; ++ DSL_uint32_t base_address; /* mei base address */ ++ DSL_int_t nIrq[2]; /* irq number */ ++#define IFX_DFEIR 0 ++#define IFX_DYING_GASP 1 ++ DSL_DEV_MeiDebug_t lop_debugwr; /* dying gasp */ ++#if (LINUX_VERSION_CODE > KERNEL_VERSION(2,6,0)) ++ struct module *owner; ++#endif ++} DSL_DEV_Device_t; /* ifx_adsl_device_t */ ++ ++#define DSL_DEV_PRIVATE(dev) ((ifx_mei_device_private_t*)(dev->pPriv)) ++ ++typedef struct DSL_DEV_Version /* ifx_adsl_bsp_version */ ++{ ++ unsigned long major; ++ unsigned long minor; ++ unsigned long revision; ++} DSL_DEV_Version_t; /* ifx_adsl_bsp_version_t */ ++ ++typedef struct DSL_DEV_ChipInfo ++{ ++ unsigned long major; ++ unsigned long minor; ++} DSL_DEV_HwVersion_t; ++ ++typedef struct ++{ ++ DSL_uint8_t dummy; ++} DSL_DEV_DeviceConfig_t; ++ ++/** error code definitions */ ++typedef enum DSL_DEV_MeiError ++{ ++ DSL_DEV_MEI_ERR_SUCCESS = 0, ++ DSL_DEV_MEI_ERR_FAILURE = -1, ++ DSL_DEV_MEI_ERR_MAILBOX_FULL = -2, ++ DSL_DEV_MEI_ERR_MAILBOX_EMPTY = -3, ++ DSL_DEV_MEI_ERR_MAILBOX_TIMEOUT = -4 ++} DSL_DEV_MeiError_t; /* MEI_ERROR */ ++ ++typedef enum { ++ DSL_BSP_MEMORY_READ=0, ++ DSL_BSP_MEMORY_WRITE, ++} DSL_BSP_MemoryAccessType_t; /* ifx_adsl_memory_access_type_t */ ++ ++typedef enum ++{ ++ DSL_LED_LINK_ID=0, ++ DSL_LED_DATA_ID ++} DSL_DEV_LedId_t; /* ifx_adsl_led_id_t */ ++ ++typedef enum ++{ ++ DSL_LED_LINK_TYPE=0, ++ DSL_LED_DATA_TYPE ++} DSL_DEV_LedType_t; /* ifx_adsl_led_type_t */ ++ ++typedef enum ++{ ++ DSL_LED_HD_CPU=0, ++ DSL_LED_HD_FW ++} DSL_DEV_LedHandler_t; /* ifx_adsl_led_handler_t */ ++ ++typedef enum { ++ DSL_LED_ON=0, ++ DSL_LED_OFF, ++ DSL_LED_FLASH, ++} DSL_DEV_LedMode_t; /* ifx_adsl_led_mode_t */ ++ ++typedef enum { ++ DSL_CPU_HALT=0, ++ DSL_CPU_RUN, ++ DSL_CPU_RESET, ++} DSL_DEV_CpuMode_t; /* ifx_adsl_cpu_mode_t */ ++ ++#if 0 ++typedef enum { ++ DSL_BSP_EVENT_DYING_GASP = 0, ++ DSL_BSP_EVENT_CEOC_IRQ, ++} DSL_BSP_Event_id_t; /* ifx_adsl_event_id_t */ ++ ++typedef union DSL_BSP_CB_Param ++{ ++ DSL_uint32_t nIrqMessage; ++} DSL_BSP_CB_Param_t; /* ifx_adsl_cbparam_t */ ++ ++typedef struct DSL_BSP_CB_Event ++{ ++ DSL_BSP_Event_id_t nID; ++ DSL_DEV_Device_t *pDev; ++ DSL_BSP_CB_Param_t *pParam; ++} DSL_BSP_CB_Event_t; /* ifx_adsl_cb_event_t */ ++#endif ++ ++/* external functions (from the BSP Driver) */ ++extern DSL_DEV_Device_t* DSL_BSP_DriverHandleGet(int, int); ++extern DSL_int_t DSL_BSP_DriverHandleDelete(DSL_DEV_Device_t *); ++extern DSL_DEV_MeiError_t DSL_BSP_FWDownload(DSL_DEV_Device_t *, const DSL_char_t *, DSL_uint32_t, DSL_int32_t *, DSL_int32_t *); ++extern int DSL_BSP_KernelIoctls(DSL_DEV_Device_t *, unsigned int, unsigned long); ++extern DSL_DEV_MeiError_t DSL_BSP_SendCMV(DSL_DEV_Device_t *, DSL_uint16_t *, DSL_int_t, DSL_uint16_t *); ++extern DSL_DEV_MeiError_t DSL_BSP_AdslLedInit(DSL_DEV_Device_t *, DSL_DEV_LedId_t, DSL_DEV_LedType_t, DSL_DEV_LedHandler_t); ++extern DSL_DEV_MeiError_t DSL_BSP_Showtime(DSL_DEV_Device_t *, DSL_uint32_t, DSL_uint32_t); ++extern int DSL_BSP_ATMLedCBRegister( int (*ifx_adsl_ledcallback)(void)); ++extern DSL_DEV_MeiError_t DSL_BSP_MemoryDebugAccess(DSL_DEV_Device_t *, DSL_BSP_MemoryAccessType_t, DSL_uint32_t, DSL_uint32_t *, DSL_uint32_t); ++extern volatile DSL_DEV_Device_t *adsl_dev; ++ ++/** ++ * Dummy structure by now to show mechanism of extended data that will be ++ * provided within event callback itself. ++ * */ ++typedef struct ++{ ++ /** ++ * Dummy value */ ++ DSL_uint32_t nDummy1; ++} DSL_BSP_CB_Event1DataDummy_t; ++ ++/** ++ * Dummy structure by now to show mechanism of extended data that will be ++ * provided within event callback itself. ++ * */ ++typedef struct ++{ ++ /** ++ * Dummy value */ ++ DSL_uint32_t nDummy2; ++} DSL_BSP_CB_Event2DataDummy_t; ++ ++/** ++ * encapsulate all data structures that are necessary for status event ++ * callbacks. ++ * */ ++typedef union ++{ ++ DSL_BSP_CB_Event1DataDummy_t dataEvent1; ++ DSL_BSP_CB_Event2DataDummy_t dataEvent2; ++} DSL_BSP_CB_DATA_Union_t; ++ ++ ++typedef enum ++{ ++ /** ++ * Informs the upper layer driver (DSL CPE API) about a reboot request from the ++ * firmware. ++ * \note This event does NOT include any additional data. ++ * More detailed information upon reboot reason has to be requested from ++ * upper layer software via CMV (INFO 109) if necessary. */ ++ DSL_BSP_CB_FIRST = 0, ++ DSL_BSP_CB_DYING_GASP, ++ DSL_BSP_CB_CEOC_IRQ, ++ DSL_BSP_CB_FIRMWARE_REBOOT, ++ /** ++ * Delimiter only */ ++ DSL_BSP_CB_LAST ++} DSL_BSP_CB_Type_t; ++ ++/** ++ * Specifies the common event type that has to be used for registering and ++ * signalling of interrupts/autonomous status events from MEI BSP Driver. ++ * ++ * \param pDev ++ * Context pointer from MEI BSP Driver. ++ * ++ * \param IFX_ADSL_BSP_CallbackType_t ++ * Specifies the event callback type (reason of callback). Regrading to the ++ * setting of this value the data which is included in the following union ++ * might have different meanings. ++ * Please refer to the description of the union to get information about the ++ * meaning of the included data. ++ * ++ * \param pData ++ * Data according to \ref DSL_BSP_CB_DATA_Union_t. ++ * If this pointer is NULL there is no additional data available. ++ * ++ * \return depending on event ++ */ ++typedef int (*DSL_BSP_EventCallback_t) ++( ++ DSL_DEV_Device_t *pDev, ++ DSL_BSP_CB_Type_t nCallbackType, ++ DSL_BSP_CB_DATA_Union_t *pData ++); ++ ++typedef struct { ++ DSL_BSP_EventCallback_t function; ++ DSL_BSP_CB_Type_t event; ++ DSL_BSP_CB_DATA_Union_t *pData; ++} DSL_BSP_EventCallBack_t; ++ ++extern int DSL_BSP_EventCBRegister(DSL_BSP_EventCallBack_t *); ++extern int DSL_BSP_EventCBUnregister(DSL_BSP_EventCallBack_t *); ++ ++/** Modem states */ ++#define DSL_DEV_STAT_InitState 0x0000 ++#define DSL_DEV_STAT_ReadyState 0x0001 ++#define DSL_DEV_STAT_FailState 0x0002 ++#define DSL_DEV_STAT_IdleState 0x0003 ++#define DSL_DEV_STAT_QuietState 0x0004 ++#define DSL_DEV_STAT_GhsState 0x0005 ++#define DSL_DEV_STAT_FullInitState 0x0006 ++#define DSL_DEV_STAT_ShowTimeState 0x0007 ++#define DSL_DEV_STAT_FastRetrainState 0x0008 ++#define DSL_DEV_STAT_LoopDiagMode 0x0009 ++#define DSL_DEV_STAT_ShortInit 0x000A /* Bis short initialization */ ++ ++#define DSL_DEV_STAT_CODESWAP_COMPLETE 0x0002 ++ ++#endif //IFXMIPS_MEI_H +--- a/configure.in ++++ b/configure.in +@@ -310,7 +310,7 @@ + AC_ARG_ENABLE(kernelbuild, + AC_HELP_STRING(--enable-kernel-build=x,Set the target kernel build path), + [ +- if test -e $enableval/include/linux/autoconf.h; then ++ if test -e $enableval/include/linux/autoconf.h -o -e $enableval/include/generated/autoconf.h; then + AC_SUBST([KERNEL_BUILD_PATH],[$enableval]) + else + AC_MSG_ERROR([The kernel build directory is not valid or not configured!]) +@@ -333,12 +333,12 @@ + echo Set the lib_ifxos include path $enableval + AC_SUBST([IFXOS_INCLUDE_PATH],[$enableval]) + else +- echo -e Set the default lib_ifxos include path $DEFAULT_IFXOS_INCLUDE_PATH ++ echo Set the default lib_ifxos include path $DEFAULT_IFXOS_INCLUDE_PATH + AC_SUBST([IFXOS_INCLUDE_PATH],[$DEFAULT_IFXOS_INCLUDE_PATH]) + fi + ], + [ +- echo -e Set the default lib_ifxos include path $DEFAULT_IFXOS_INCLUDE_PATH ++ echo Set the default lib_ifxos include path $DEFAULT_IFXOS_INCLUDE_PATH + AC_SUBST([IFXOS_INCLUDE_PATH],[$DEFAULT_IFXOS_INCLUDE_PATH]) + ] + ) +@@ -1702,73 +1702,73 @@ + AC_SUBST([DISTCHECK_CONFIGURE_PARAMS],[$CONFIGURE_OPTIONS]) + + AC_CONFIG_COMMANDS_PRE([ +-echo -e "------------------------------------------------------------------------" +-echo -e " Configuration for drv_dsl_cpe_api:" +-echo -e " Configure model type: $DSL_CONFIG_MODEL_TYPE" +-echo -e " Source code location: $srcdir" +-echo -e " Compiler: $CC" +-echo -e " Compiler c-flags: $CFLAGS" +-echo -e " Extra compiler c-flags: $EXTRA_DRV_CFLAGS" +-echo -e " Host System Type: $host" +-echo -e " Install path: $prefix" +-echo -e " Linux kernel include path: $KERNEL_INCL_PATH" +-echo -e " Linux kernel build path: $KERNEL_BUILD_PATH" +-echo -e " Linux kernel architecture: $KERNEL_ARCH" +-echo -e " Include IFXOS: $INCLUDE_DSL_CPE_API_IFXOS_SUPPORT" +-echo -e " IFXOS include path: $IFXOS_INCLUDE_PATH" +-echo -e " Driver Include Path $DSL_DRIVER_INCL_PATH" +-echo -e " DSL device: $DSL_DEVICE_NAME" +-echo -e " Max device number: $DSL_DRV_MAX_DEVICE_NUMBER" +-echo -e " Channels per line: $DSL_CHANNELS_PER_LINE" +-echo -e " Build lib (only for kernel 2.6) $DSL_CPE_API_LIBRARY_BUILD_2_6" +-echo -e " DSL data led flash frequency: $DSL_DATA_LED_FLASH_FREQUENCY Hz" +-echo -e " Disable debug prints: $DSL_DEBUG_DISABLE" +-echo -e " Preselection of max. debug level: $DSL_DBG_MAX_LEVEL_SET" +-echo -e " Preselected max. debug level: $DSL_DBG_MAX_LEVEL_PRE" +-echo -e " Include deprecated functions: $INCLUDE_DEPRECATED" +-echo -e " Include Device Exception Codes: $INCLUDE_DEVICE_EXCEPTION_CODES" +-echo -e " Include FW request support: $INCLUDE_FW_REQUEST_SUPPORT" +-echo -e " Include ADSL trace buffer: $INCLUDE_DSL_CPE_TRACE_BUFFER" +-echo -e " Include ADSL MIB: $INCLUDE_DSL_ADSL_MIB" +-echo -e " Include ADSL LED: $INCLUDE_ADSL_LED" +-echo -e " Include CEOC: $INCLUDE_DSL_CEOC" +-echo -e " Include config get support: $INCLUDE_DSL_CONFIG_GET" +-echo -e " Include System i/f configuration: $INCLUDE_DSL_SYSTEM_INTERFACE" +-echo -e " Include Resource Statistics: $INCLUDE_DSL_RESOURCE_STATISTICS" +-echo -e " Include Framing Parameters: $INCLUDE_DSL_FRAMING_PARAMETERS" +-echo -e " Include G997 Line Inventory: $INCLUDE_DSL_G997_LINE_INVENTORY" +-echo -e " Include G997 Framing Parameters: $INCLUDE_DSL_G997_FRAMING_PARAMETERS" +-echo -e " Include G997 per tone data: $INCLUDE_DSL_G997_PER_TONE" +-echo -e " Include G997 status: $INCLUDE_DSL_G997_STATUS" +-echo -e " Include G997 alarm: $INCLUDE_DSL_G997_ALARM" +-echo -e " Include DSL Bonding: $INCLUDE_DSL_BONDING" +-echo -e " Include Misc Line Status $INCLUDE_DSL_CPE_MISC_LINE_STATUS" +-echo -e " Include DELT: $INCLUDE_DSL_DELT" +-echo -e " Include DELT data static storage: $DSL_CPE_STATIC_DELT_DATA" +-echo -e " Include PM: $INCLUDE_DSL_PM" +-echo -e " Include PM config: $INCLUDE_DSL_CPE_PM_CONFIG" +-echo -e " Include PM total: $INCLUDE_DSL_CPE_PM_TOTAL_COUNTERS" +-echo -e " Include PM history: $INCLUDE_DSL_CPE_PM_HISTORY" +-echo -e " Include PM showtime: $INCLUDE_DSL_CPE_PM_SHOWTIME_COUNTERS" +-echo -e " Include PM optional: $INCLUDE_DSL_CPE_PM_OPTIONAL_PARAMETERS" +-echo -e " Include PM line: $INCLUDE_DSL_CPE_PM_LINE_COUNTERS" +-echo -e " Include PM line event showtime: $INCLUDE_DSL_CPE_PM_LINE_EVENT_SHOWTIME_COUNTERS" +-echo -e " Include PM channel: $INCLUDE_DSL_CPE_PM_CHANNEL_COUNTERS" +-echo -e " Include PM channel extended: $INCLUDE_DSL_CPE_PM_CHANNEL_EXT_COUNTERS" +-echo -e " Include PM data path: $INCLUDE_DSL_CPE_PM_DATA_PATH_COUNTERS" +-echo -e " Include PM data path failure: $INCLUDE_DSL_CPE_PM_DATA_PATH_FAILURE_COUNTERS" +-echo -e " Include PM ReTx: $INCLUDE_DSL_CPE_PM_RETX_COUNTERS" +-echo -e " Include PM line threshold: $INCLUDE_DSL_CPE_PM_LINE_THRESHOLDS" +-echo -e " Include PM channel threshold: $INCLUDE_DSL_CPE_PM_CHANNEL_THRESHOLDS" +-echo -e " Include PM data path threshold: $INCLUDE_DSL_CPE_PM_DATA_PATH_THRESHOLDS" +-echo -e " Include PM ReTx threshold: $INCLUDE_DSL_CPE_PM_RETX_THRESHOLDS" +-echo -e " Include FW memory free support: $INCLUDE_DSL_FIRMWARE_MEMORY_FREE" +-echo -e "----------------------- deprectated ! ----------------------------------" +-echo -e " Include PM line failure: $INCLUDE_DSL_CPE_PM_LINE_FAILURE_COUNTERS" +-echo -e "" +-echo -e " Settings:" +-echo -e " Configure options: $CONFIGURE_OPTIONS" +-echo -e "------------------------------------------------------------------------" ++echo "------------------------------------------------------------------------" ++echo " Configuration for drv_dsl_cpe_api:" ++echo " Configure model type: $DSL_CONFIG_MODEL_TYPE" ++echo " Source code location: $srcdir" ++echo " Compiler: $CC" ++echo " Compiler c-flags: $CFLAGS" ++echo " Extra compiler c-flags: $EXTRA_DRV_CFLAGS" ++echo " Host System Type: $host" ++echo " Install path: $prefix" ++echo " Linux kernel include path: $KERNEL_INCL_PATH" ++echo " Linux kernel build path: $KERNEL_BUILD_PATH" ++echo " Linux kernel architecture: $KERNEL_ARCH" ++echo " Include IFXOS: $INCLUDE_DSL_CPE_API_IFXOS_SUPPORT" ++echo " IFXOS include path: $IFXOS_INCLUDE_PATH" ++echo " Driver Include Path $DSL_DRIVER_INCL_PATH" ++echo " DSL device: $DSL_DEVICE_NAME" ++echo " Max device number: $DSL_DRV_MAX_DEVICE_NUMBER" ++echo " Channels per line: $DSL_CHANNELS_PER_LINE" ++echo " Build lib (only for kernel 2.6) $DSL_CPE_API_LIBRARY_BUILD_2_6" ++echo " DSL data led flash frequency: $DSL_DATA_LED_FLASH_FREQUENCY Hz" ++echo " Disable debug prints: $DSL_DEBUG_DISABLE" ++echo " Preselection of max. debug level: $DSL_DBG_MAX_LEVEL_SET" ++echo " Preselected max. debug level: $DSL_DBG_MAX_LEVEL_PRE" ++echo " Include deprecated functions: $INCLUDE_DEPRECATED" ++echo " Include Device Exception Codes: $INCLUDE_DEVICE_EXCEPTION_CODES" ++echo " Include FW request support: $INCLUDE_FW_REQUEST_SUPPORT" ++echo " Include ADSL trace buffer: $INCLUDE_DSL_CPE_TRACE_BUFFER" ++echo " Include ADSL MIB: $INCLUDE_DSL_ADSL_MIB" ++echo " Include ADSL LED: $INCLUDE_ADSL_LED" ++echo " Include CEOC: $INCLUDE_DSL_CEOC" ++echo " Include config get support: $INCLUDE_DSL_CONFIG_GET" ++echo " Include System i/f configuration: $INCLUDE_DSL_SYSTEM_INTERFACE" ++echo " Include Resource Statistics: $INCLUDE_DSL_RESOURCE_STATISTICS" ++echo " Include Framing Parameters: $INCLUDE_DSL_FRAMING_PARAMETERS" ++echo " Include G997 Line Inventory: $INCLUDE_DSL_G997_LINE_INVENTORY" ++echo " Include G997 Framing Parameters: $INCLUDE_DSL_G997_FRAMING_PARAMETERS" ++echo " Include G997 per tone data: $INCLUDE_DSL_G997_PER_TONE" ++echo " Include G997 status: $INCLUDE_DSL_G997_STATUS" ++echo " Include G997 alarm: $INCLUDE_DSL_G997_ALARM" ++echo " Include DSL Bonding: $INCLUDE_DSL_BONDING" ++echo " Include Misc Line Status $INCLUDE_DSL_CPE_MISC_LINE_STATUS" ++echo " Include DELT: $INCLUDE_DSL_DELT" ++echo " Include DELT data static storage: $DSL_CPE_STATIC_DELT_DATA" ++echo " Include PM: $INCLUDE_DSL_PM" ++echo " Include PM config: $INCLUDE_DSL_CPE_PM_CONFIG" ++echo " Include PM total: $INCLUDE_DSL_CPE_PM_TOTAL_COUNTERS" ++echo " Include PM history: $INCLUDE_DSL_CPE_PM_HISTORY" ++echo " Include PM showtime: $INCLUDE_DSL_CPE_PM_SHOWTIME_COUNTERS" ++echo " Include PM optional: $INCLUDE_DSL_CPE_PM_OPTIONAL_PARAMETERS" ++echo " Include PM line: $INCLUDE_DSL_CPE_PM_LINE_COUNTERS" ++echo " Include PM line event showtime: $INCLUDE_DSL_CPE_PM_LINE_EVENT_SHOWTIME_COUNTERS" ++echo " Include PM channel: $INCLUDE_DSL_CPE_PM_CHANNEL_COUNTERS" ++echo " Include PM channel extended: $INCLUDE_DSL_CPE_PM_CHANNEL_EXT_COUNTERS" ++echo " Include PM data path: $INCLUDE_DSL_CPE_PM_DATA_PATH_COUNTERS" ++echo " Include PM data path failure: $INCLUDE_DSL_CPE_PM_DATA_PATH_FAILURE_COUNTERS" ++echo " Include PM ReTx: $INCLUDE_DSL_CPE_PM_RETX_COUNTERS" ++echo " Include PM line threshold: $INCLUDE_DSL_CPE_PM_LINE_THRESHOLDS" ++echo " Include PM channel threshold: $INCLUDE_DSL_CPE_PM_CHANNEL_THRESHOLDS" ++echo " Include PM data path threshold: $INCLUDE_DSL_CPE_PM_DATA_PATH_THRESHOLDS" ++echo " Include PM ReTx threshold: $INCLUDE_DSL_CPE_PM_RETX_THRESHOLDS" ++echo " Include FW memory free support: $INCLUDE_DSL_FIRMWARE_MEMORY_FREE" ++echo "----------------------- deprectated ! ----------------------------------" ++echo " Include PM line failure: $INCLUDE_DSL_CPE_PM_LINE_FAILURE_COUNTERS" ++echo "" ++echo " Settings:" ++echo " Configure options: $CONFIGURE_OPTIONS" ++echo "------------------------------------------------------------------------" + ]) + + AC_CONFIG_FILES([Makefile src/Makefile]) +--- a/src/Makefile.am ++++ b/src/Makefile.am +@@ -303,7 +303,7 @@ + drv_dsl_cpe_api_OBJS = "$(subst .c,.o,$(filter %.c,$(drv_dsl_cpe_api_SOURCES)))" + + drv_dsl_cpe_api.ko: $(drv_dsl_cpe_api_SOURCES) +- @echo -e "drv_dsl_cpe_api: Making Linux 2.6.x kernel object" ++ @echo "drv_dsl_cpe_api: Making Linux 2.6.x kernel object" + if test ! -e common/drv_dsl_cpe_api.c ; then \ + echo "copy source files (as links only!)"; \ + for f in $(filter %.c,$(drv_dsl_cpe_api_SOURCES)); do \ +@@ -311,10 +311,10 @@ + cp -s $(addprefix @abs_srcdir@/,$$f) $(PWD)/`dirname $$f`/ ; \ + done \ + fi +- @echo -e "# drv_dsl_cpe_api: Generated to build Linux 2.6.x kernel object" > $(PWD)/Kbuild +- @echo -e "obj-m := $(subst .ko,.o,$@)" >> $(PWD)/Kbuild +- @echo -e "$(subst .ko,,$@)-y := $(drv_dsl_cpe_api_OBJS)" >> $(PWD)/Kbuild +- @echo -e "EXTRA_CFLAGS := $(CFLAGS) -DHAVE_CONFIG_H $(drv_dsl_cpe_api_CFLAGS) $(DSL_DRIVER_INCL_PATH) $(IFXOS_INCLUDE_PATH) -I@abs_srcdir@/include -I$(PWD)/include" >> $(PWD)/Kbuild ++ @echo "# drv_dsl_cpe_api: Generated to build Linux 2.6.x kernel object" > $(PWD)/Kbuild ++ @echo "obj-m := $(subst .ko,.o,$@)" >> $(PWD)/Kbuild ++ @echo "$(subst .ko,,$@)-y := $(drv_dsl_cpe_api_OBJS)" >> $(PWD)/Kbuild ++ @echo "EXTRA_CFLAGS := $(CFLAGS) -DHAVE_CONFIG_H $(drv_dsl_cpe_api_CFLAGS) $(DSL_DRIVER_INCL_PATH) $(IFXOS_INCLUDE_PATH) -I@abs_srcdir@/include -I$(PWD)/include" >> $(PWD)/Kbuild + $(MAKE) ARCH=@KERNEL_ARCH@ -C @KERNEL_BUILD_PATH@ O=@KERNEL_BUILD_PATH@ M=$(PWD) modules + + clean-generic: +--- a/src/include/drv_dsl_cpe_os_linux.h ++++ b/src/include/drv_dsl_cpe_os_linux.h +@@ -16,8 +16,6 @@ + extern "C" { + #endif + +-#include <asm/ioctl.h> +-#include <generated/autoconf.h> + #include <linux/module.h> + #include <linux/kernel.h> + #include <linux/init.h> +@@ -26,8 +24,10 @@ + #include <linux/spinlock.h> + #include <linux/sched.h> + +-#if (LINUX_VERSION_CODE > KERNEL_VERSION(2,6,17)) +- #include <generated/utsrelease.h> ++#if (LINUX_VERSION_CODE < KERNEL_VERSION(2,6,33)) ++#include <linux/utsrelease.h> ++#else ++#include <generated/utsrelease.h> + #endif + + #include <linux/types.h> +@@ -39,7 +39,8 @@ + #include <linux/delay.h> + #include <linux/poll.h> + #include <asm/uaccess.h> +-#include <linux/smp_lock.h> ++//#include <linux/smp_lock.h> ++#include <asm/ioctl.h> + + #ifdef INCLUDE_DSL_CPE_API_IFXOS_SUPPORT + /** IFXOS includes*/ diff --git a/package/kernel/lantiq/ltq-adsl/patches/110-fix_status_polling_loop.patch b/package/kernel/lantiq/ltq-adsl/patches/110-fix_status_polling_loop.patch new file mode 100644 index 0000000..870943d --- /dev/null +++ b/package/kernel/lantiq/ltq-adsl/patches/110-fix_status_polling_loop.patch @@ -0,0 +1,11 @@ +--- a/src/device/drv_dsl_cpe_device_danube.c ++++ b/src/device/drv_dsl_cpe_device_danube.c +@@ -4069,7 +4069,7 @@ static DSL_Error_t DSL_DRV_DANUBE_XTUSys + + DSL_CTX_WRITE(pContext, nErrCode, xtseCurr, xtseCurr); + +- for (nRetry = 0; nRetry < 20; nRetry++) ++ for (nRetry = 0; nRetry < 20 && bStatusUpdated == DSL_FALSE; nRetry++) + { + /* Get STAT1 info*/ + nErrCode = DSL_DRV_DANUBE_CmvRead(pContext, DSL_CMV_GROUP_STAT, diff --git a/package/kernel/lantiq/ltq-adsl/patches/120-platform.patch b/package/kernel/lantiq/ltq-adsl/patches/120-platform.patch new file mode 100644 index 0000000..48c7581 --- /dev/null +++ b/package/kernel/lantiq/ltq-adsl/patches/120-platform.patch @@ -0,0 +1,72 @@ +Index: drv_dsl_cpe_api-3.24.4.4/src/common/drv_dsl_cpe_os_linux.c +=================================================================== +--- drv_dsl_cpe_api-3.24.4.4.orig/src/common/drv_dsl_cpe_os_linux.c 2012-12-07 21:22:58.020256076 +0100 ++++ drv_dsl_cpe_api-3.24.4.4/src/common/drv_dsl_cpe_os_linux.c 2012-12-07 21:31:13.156268489 +0100 +@@ -12,6 +12,7 @@ + + #define DSL_INTERN + #include <linux/device.h> ++#include <linux/platform_device.h> + + #include "drv_dsl_cpe_api.h" + #include "drv_dsl_cpe_api_ioctl.h" +@@ -1063,7 +1064,7 @@ + #endif + + /* Entry point of driver */ +-int __init DSL_ModuleInit(void) ++static int __devinit ltq_adsl_probe(struct platform_device *pdev) + { + struct class *dsl_class; + DSL_int_t i; +@@ -1117,7 +1118,7 @@ + return 0; + } + +-void __exit DSL_ModuleCleanup(void) ++static int __devexit ltq_adsl_remove(struct platform_device *pdev) + { + printk("Module will be unloaded"DSL_DRV_CRLF); + +@@ -1132,7 +1133,7 @@ + (DSL_uint8_t**)&g_BndFpgaBase); + #endif /* defined(INCLUDE_DSL_CPE_API_VINAX) && defined(INCLUDE_DSL_BONDING)*/ + +- return; ++ return 0; + } + + #ifndef _lint +@@ -1148,8 +1149,30 @@ + MODULE_PARM_DESC(debug_level, "set to get more (1) or fewer (4) debug outputs"); + #endif /* #ifndef DSL_DEBUG_DISABLE*/ + +-module_init(DSL_ModuleInit); +-module_exit(DSL_ModuleCleanup); ++static const struct of_device_id ltq_adsl_match[] = { ++#ifdef CONFIG_DANUBE ++ { .compatible = "lantiq,adsl-danube"}, ++#elif defined CONFIG_AMAZON_SE ++ { .compatible = "lantiq,adsl-ase"}, ++#elif defined CONFIG_AR9 ++ { .compatible = "lantiq,adsl-arx100"}, ++#endif ++ {}, ++}; ++MODULE_DEVICE_TABLE(of, ltq_adsl_match); ++ ++static struct platform_driver ltq_adsl_driver = { ++ .probe = ltq_adsl_probe, ++ .remove = __devexit_p(ltq_adsl_remove), ++ .driver = { ++ .name = "adsl", ++ .owner = THIS_MODULE, ++ .of_match_table = ltq_adsl_match, ++ }, ++}; ++ ++module_platform_driver(ltq_adsl_driver); ++ + #endif /* #ifndef _lint*/ + + //EXPORT_SYMBOL(DSL_ModuleInit); diff --git a/package/kernel/lantiq/ltq-adsl/patches/130-linux3.8.patch b/package/kernel/lantiq/ltq-adsl/patches/130-linux3.8.patch new file mode 100644 index 0000000..bf758e0 --- /dev/null +++ b/package/kernel/lantiq/ltq-adsl/patches/130-linux3.8.patch @@ -0,0 +1,143 @@ +Index: drv_dsl_cpe_api-3.24.4.4/src/common/drv_dsl_cpe_os_linux.c +=================================================================== +--- drv_dsl_cpe_api-3.24.4.4.orig/src/common/drv_dsl_cpe_os_linux.c 2013-03-14 11:44:50.318326078 +0100 ++++ drv_dsl_cpe_api-3.24.4.4/src/common/drv_dsl_cpe_os_linux.c 2013-03-14 11:46:08.562329425 +0100 +@@ -11,6 +11,7 @@ + #ifdef __LINUX__ + + #define DSL_INTERN ++#include <linux/kthread.h> + #include <linux/device.h> + #include <linux/platform_device.h> + +@@ -40,7 +41,7 @@ + static DSL_int_t DSL_DRV_Ioctls(DSL_DRV_inode_t * pINode, DSL_DRV_file_t * pFile, + DSL_uint_t nCommand, unsigned long nArg); + #else +-static DSL_int_t DSL_DRV_Ioctls(DSL_DRV_file_t * pFile, ++static long DSL_DRV_Ioctls(DSL_DRV_file_t * pFile, + DSL_uint_t nCommand, unsigned long nArg); + #endif + static int DSL_DRV_Open(DSL_DRV_inode_t * ino, DSL_DRV_file_t * fil); +@@ -184,7 +185,7 @@ + DSL_uint_t nCommand, + unsigned long nArg) + #else +-static DSL_int_t DSL_DRV_Ioctls( ++static long DSL_DRV_Ioctls( + DSL_DRV_file_t * pFile, + DSL_uint_t nCommand, + unsigned long nArg) +@@ -521,9 +522,9 @@ + - IFX_SUCCESS on success + - IFX_ERROR on error + */ +-DSL_DRV_STATIC DSL_int32_t DSL_DRV_KernelThreadStartup( +- DSL_DRV_ThreadCtrl_t *pThrCntrl) ++static int DSL_DRV_KernelThreadStartup(void *data) + { ++ DSL_DRV_ThreadCtrl_t *pThrCntrl = (DSL_DRV_ThreadCtrl_t*) data; + DSL_int32_t retVal = -1; + #ifndef _lint + +@@ -546,30 +547,6 @@ + (DSL_NULL, "ENTER - Kernel Thread Startup <%s>" DSL_DRV_CRLF, + pThrCntrl->thrParams.pName)); + +- /* do LINUX specific setup */ +-#if (LINUX_VERSION_CODE < KERNEL_VERSION(2,6,0)) +- daemonize(); +- reparent_to_init(); +- +- /* lock the kernel. A new kernel thread starts without +- the big kernel lock, regardless of the lock state +- of the creator (the lock level is *not* inheritated) +- */ +- lock_kernel(); +- +- /* Don't care about any signals. */ +- siginitsetinv(¤t->blocked, 0); +- +- /* set name of this process */ +- strcpy(kthread->comm, pThrCntrl->thrParams.pName); +- +- /* let others run */ +- unlock_kernel(); +-#else +- daemonize(pThrCntrl->thrParams.pName); +- +-#endif +- + /*DSL_DRV_ThreadPriorityModify(pThrCntrl->nPriority);*/ + + pThrCntrl->thrParams.bRunning = 1; +@@ -639,9 +616,7 @@ + init_completion(&pThrCntrl->thrCompletion); + + /* start kernel thread via the wrapper function */ +- pThrCntrl->pid = kernel_thread( (DSL_DRV_KERNEL_THREAD_StartRoutine)DSL_DRV_KernelThreadStartup, +- (void *)pThrCntrl, +- DSL_DRV_DRV_THREAD_OPTIONS); ++ pThrCntrl->pid = kthread_run(DSL_DRV_KernelThreadStartup, (void *)pThrCntrl, pThrCntrl->thrParams.pName); + + pThrCntrl->bValid = DSL_TRUE; + +@@ -1064,12 +1039,12 @@ + #endif + + /* Entry point of driver */ +-static int __devinit ltq_adsl_probe(struct platform_device *pdev) ++static int ltq_adsl_probe(struct platform_device *pdev) + { + struct class *dsl_class; + DSL_int_t i; + +- printk(DSL_DRV_CRLF DSL_DRV_CRLF "Infineon CPE API Driver version: %s" DSL_DRV_CRLF, ++ printk("Infineon CPE API Driver version: %s" DSL_DRV_CRLF, + &(dsl_cpe_api_version[4])); + + DSL_DRV_MemSet( ifxDevices, 0, sizeof(DSL_devCtx_t) * DSL_DRV_MAX_DEVICE_NUMBER ); +@@ -1118,7 +1093,7 @@ + return 0; + } + +-static int __devexit ltq_adsl_remove(struct platform_device *pdev) ++static int ltq_adsl_remove(struct platform_device *pdev) + { + printk("Module will be unloaded"DSL_DRV_CRLF); + +@@ -1163,7 +1138,7 @@ + + static struct platform_driver ltq_adsl_driver = { + .probe = ltq_adsl_probe, +- .remove = __devexit_p(ltq_adsl_remove), ++ .remove = ltq_adsl_remove, + .driver = { + .name = "adsl", + .owner = THIS_MODULE, +Index: drv_dsl_cpe_api-3.24.4.4/src/include/drv_dsl_cpe_os_lint_map.h +=================================================================== +--- drv_dsl_cpe_api-3.24.4.4.orig/src/include/drv_dsl_cpe_os_lint_map.h 2009-02-24 21:44:54.000000000 +0100 ++++ drv_dsl_cpe_api-3.24.4.4/src/include/drv_dsl_cpe_os_lint_map.h 2013-03-14 11:44:50.330326079 +0100 +@@ -247,7 +247,7 @@ + DSL_DRV_ThreadFunction_t pThrFct; + + /** Kernel thread process ID */ +- DSL_int32_t pid; ++ struct task_struct *pid; + + /** requested kernel thread priority */ + DSL_int32_t nPriority; +Index: drv_dsl_cpe_api-3.24.4.4/src/include/drv_dsl_cpe_os_linux.h +=================================================================== +--- drv_dsl_cpe_api-3.24.4.4.orig/src/include/drv_dsl_cpe_os_linux.h 2013-03-14 11:44:50.298326077 +0100 ++++ drv_dsl_cpe_api-3.24.4.4/src/include/drv_dsl_cpe_os_linux.h 2013-03-14 11:44:50.330326079 +0100 +@@ -288,7 +288,7 @@ + DSL_DRV_ThreadFunction_t pThrFct; + + /** Kernel thread process ID */ +- DSL_int32_t pid; ++ struct task_struct *pid; + + /** requested kernel thread priority */ + DSL_int32_t nPriority; diff --git a/package/kernel/lantiq/ltq-atm/Makefile b/package/kernel/lantiq/ltq-atm/Makefile new file mode 100644 index 0000000..e6e0059 --- /dev/null +++ b/package/kernel/lantiq/ltq-atm/Makefile @@ -0,0 +1,51 @@ +# Copyright (C) 2012 OpenWrt.org +# +# This is free software, licensed under the GNU General Public License v2. +# See /LICENSE for more information. + +include $(TOPDIR)/rules.mk +include $(INCLUDE_DIR)/kernel.mk + +PKG_NAME:=ltq-atm +PKG_RELEASE:=1 +PKG_BUILD_DIR:=$(KERNEL_BUILD_DIR)/ltq-atm-$(BUILD_VARIANT) + +PKG_MAINTAINER:=John Crispin <blogic@openwrt.org> + +include $(INCLUDE_DIR)/package.mk + +define KernelPackage/ltq-atm-template + SECTION:=sys + CATEGORY:=Kernel modules + SUBMENU:=Network Devices + TITLE:=atm driver for $(1) + URL:=http://www.lantiq.com/ + VARIANT:=$(1) + DEPENDS:=@TARGET_lantiq_$(2) +kmod-atm +br2684ctl + FILES:=$(PKG_BUILD_DIR)/ltq_atm_$(1).ko + AUTOLOAD:=$(call AutoLoad,52,ltq_atm_$(1)) +endef + +KernelPackage/ltq-atm-danube=$(call KernelPackage/ltq-atm-template,danube,xway) +KernelPackage/ltq-atm-ar9=$(call KernelPackage/ltq-atm-template,ar9,xway) +KernelPackage/ltq-atm-ase=$(call KernelPackage/ltq-atm-template,ase,ase) +KernelPackage/ltq-atm-vr9=$(call KernelPackage/ltq-atm-template,vr9,xway) + +define Build/Prepare + $(INSTALL_DIR) $(PKG_BUILD_DIR) + $(CP) ./src/* $(PKG_BUILD_DIR) +endef + +define Build/Configure +endef + +define Build/Compile + cd $(LINUX_DIR); \ + ARCH=mips CROSS_COMPILE="$(KERNEL_CROSS)" \ + $(MAKE) BUILD_VARIANT=$(BUILD_VARIANT) M=$(PKG_BUILD_DIR) V=1 modules +endef + +$(eval $(call KernelPackage,ltq-atm-danube)) +$(eval $(call KernelPackage,ltq-atm-ase)) +$(eval $(call KernelPackage,ltq-atm-ar9)) +$(eval $(call KernelPackage,ltq-atm-vr9)) diff --git a/package/kernel/lantiq/ltq-atm/src/Makefile b/package/kernel/lantiq/ltq-atm/src/Makefile new file mode 100644 index 0000000..3d68c8f --- /dev/null +++ b/package/kernel/lantiq/ltq-atm/src/Makefile @@ -0,0 +1,23 @@ +ifeq ($(BUILD_VARIANT),danube) + CFLAGS_MODULE = -DCONFIG_DANUBE + obj-m = ltq_atm_danube.o + ltq_atm_danube-objs = ltq_atm.o ifxmips_atm_danube.o +endif + +ifeq ($(BUILD_VARIANT),ase) + CFLAGS_MODULE = -DCONFIG_AMAZON_SE + obj-m = ltq_atm_ase.o + ltq_atm_ase-objs = ltq_atm.o ifxmips_atm_amazon_se.o +endif + +ifeq ($(BUILD_VARIANT),ar9) + CFLAGS_MODULE = -DCONFIG_AR9 + obj-m = ltq_atm_ar9.o + ltq_atm_ar9-objs = ltq_atm.o ifxmips_atm_ar9.o +endif + +ifeq ($(BUILD_VARIANT),vr9) + CFLAGS_MODULE = -DCONFIG_VR9 + obj-m = ltq_atm_vr9.o + ltq_atm_vr9-objs = ltq_atm.o ifxmips_atm_vr9.o +endif diff --git a/package/kernel/lantiq/ltq-atm/src/ifxmips_atm_amazon_se.c b/package/kernel/lantiq/ltq-atm/src/ifxmips_atm_amazon_se.c new file mode 100644 index 0000000..6e8975b --- /dev/null +++ b/package/kernel/lantiq/ltq-atm/src/ifxmips_atm_amazon_se.c @@ -0,0 +1,341 @@ +/****************************************************************************** +** +** FILE NAME : ifxmips_atm_amazon_se.c +** PROJECT : UEIP +** MODULES : ATM +** +** DATE : 7 Jul 2009 +** AUTHOR : Xu Liang +** DESCRIPTION : ATM driver common source file (core functions) +** COPYRIGHT : Copyright (c) 2006 +** Infineon Technologies AG +** Am Campeon 1-12, 85579 Neubiberg, Germany +** +** This program is free software; you can redistribute it and/or modify +** it under the terms of the GNU General Public License as published by +** the Free Software Foundation; either version 2 of the License, or +** (at your option) any later version. +** +** HISTORY +** $Date $Author $Comment +** 07 JUL 2009 Xu Liang Init Version +*******************************************************************************/ + + + +/* + * #################################### + * Head File + * #################################### + */ + +/* + * Common Head File + */ +#include <linux/kernel.h> +#include <linux/module.h> +#include <linux/version.h> +#include <linux/types.h> +#include <linux/errno.h> +#include <linux/proc_fs.h> +#include <linux/init.h> +#include <linux/ioctl.h> +#include <asm/delay.h> + +/* + * Chip Specific Head File + */ +#include "ifxmips_atm_core.h" +#include "ifxmips_atm_fw_amazon_se.h" + +#include <lantiq_soc.h> + +#define EMA_CMD_BUF_LEN 0x0040 +#define EMA_CMD_BASE_ADDR (0x00001580 << 2) +#define EMA_DATA_BUF_LEN 0x0100 +#define EMA_DATA_BASE_ADDR (0x00001900 << 2) +#define EMA_WRITE_BURST 0x2 +#define EMA_READ_BURST 0x2 + + + +/* + * #################################### + * Definition + * #################################### + */ + +/* + * EMA Settings + */ +#define EMA_CMD_BUF_LEN 0x0040 +#define EMA_CMD_BASE_ADDR (0x00001580 << 2) +#define EMA_DATA_BUF_LEN 0x0100 +#define EMA_DATA_BASE_ADDR (0x00000B00 << 2) +#define EMA_WRITE_BURST 0x2 +#define EMA_READ_BURST 0x2 + + + +/* + * #################################### + * Declaration + * #################################### + */ + +/* + * Hardware Init/Uninit Functions + */ +static inline void init_pmu(void); +static inline void uninit_pmu(void); +static inline void reset_ppe(void); +static inline void init_ema(void); +static inline void init_mailbox(void); +static inline void init_atm_tc(void); +static inline void clear_share_buffer(void); + + + +/* + * #################################### + * Local Variable + * #################################### + */ + + + +/* + * #################################### + * Local Function + * #################################### + */ +#define IFX_PMU_MODULE_PPE_SLL01 BIT(19) +#define IFX_PMU_MODULE_PPE_TC BIT(21) +#define IFX_PMU_MODULE_PPE_EMA BIT(22) +#define IFX_PMU_MODULE_PPE_QSB BIT(18) +#define IFX_PMU_MODULE_TPE BIT(13) +#define IFX_PMU_MODULE_DSL_DFE BIT(9) + +static inline void init_pmu(void) +{ + //*(unsigned long *)0xBF10201C &= ~((1 << 15) | (1 << 13) | (1 << 9)); + //PPE_TOP_PMU_SETUP(IFX_PMU_ENABLE); +/* PPE_SLL01_PMU_SETUP(IFX_PMU_ENABLE); + PPE_TC_PMU_SETUP(IFX_PMU_ENABLE); + PPE_EMA_PMU_SETUP(IFX_PMU_ENABLE); + //PPE_QSB_PMU_SETUP(IFX_PMU_ENABLE); + PPE_TPE_PMU_SETUP(IFX_PMU_ENABLE); + DSL_DFE_PMU_SETUP(IFX_PMU_ENABLE);*/ + ltq_pmu_enable(IFX_PMU_MODULE_PPE_SLL01 | + IFX_PMU_MODULE_PPE_TC | + IFX_PMU_MODULE_PPE_EMA | + IFX_PMU_MODULE_TPE | + IFX_PMU_MODULE_DSL_DFE); +} + +static inline void uninit_pmu(void) +{ + /*PPE_SLL01_PMU_SETUP(IFX_PMU_DISABLE); + PPE_TC_PMU_SETUP(IFX_PMU_DISABLE); + PPE_EMA_PMU_SETUP(IFX_PMU_DISABLE); + //PPE_QSB_PMU_SETUP(IFX_PMU_DISABLE); + PPE_TPE_PMU_SETUP(IFX_PMU_DISABLE); + DSL_DFE_PMU_SETUP(IFX_PMU_DISABLE); + //PPE_TOP_PMU_SETUP(IFX_PMU_DISABLE);*/ +} + +static inline void reset_ppe(void) +{ +#if 0 //MODULE + unsigned int etop_cfg; + unsigned int etop_mdio_cfg; + unsigned int etop_ig_plen_ctrl; + unsigned int enet_mac_cfg; + + etop_cfg = *IFX_PP32_ETOP_CFG; + etop_mdio_cfg = *IFX_PP32_ETOP_MDIO_CFG; + etop_ig_plen_ctrl = *IFX_PP32_ETOP_IG_PLEN_CTRL; + enet_mac_cfg = *IFX_PP32_ENET_MAC_CFG; + + *IFX_PP32_ETOP_CFG = (*IFX_PP32_ETOP_CFG & ~0x03C0) | 0x0001; + + // reset PPE + ifx_rcu_rst(IFX_RCU_DOMAIN_PPE, IFX_RCU_MODULE_ATM); + + *IFX_PP32_ETOP_MDIO_CFG = etop_mdio_cfg; + *IFX_PP32_ETOP_IG_PLEN_CTRL = etop_ig_plen_ctrl; + *IFX_PP32_ENET_MAC_CFG = enet_mac_cfg; + *IFX_PP32_ETOP_CFG = etop_cfg; +#endif +} + +static inline void init_ema(void) +{ + IFX_REG_W32((EMA_CMD_BUF_LEN << 16) | (EMA_CMD_BASE_ADDR >> 2), EMA_CMDCFG); + IFX_REG_W32((EMA_DATA_BUF_LEN << 16) | (EMA_DATA_BASE_ADDR >> 2), EMA_DATACFG); + IFX_REG_W32(0x000000FF, EMA_IER); + IFX_REG_W32(EMA_READ_BURST | (EMA_WRITE_BURST << 2), EMA_CFG); +} + +static inline void init_mailbox(void) +{ + IFX_REG_W32(0xFFFFFFFF, MBOX_IGU1_ISRC); + IFX_REG_W32(0x00000000, MBOX_IGU1_IER); + IFX_REG_W32(0xFFFFFFFF, MBOX_IGU3_ISRC); + IFX_REG_W32(0x00000000, MBOX_IGU3_IER); +} + +static inline void init_atm_tc(void) +{ + IFX_REG_W32(0x0000, DREG_AT_CTRL); + IFX_REG_W32(0x0000, DREG_AR_CTRL); + IFX_REG_W32(0x0, DREG_AT_IDLE0); + IFX_REG_W32(0x0, DREG_AT_IDLE1); + IFX_REG_W32(0x0, DREG_AR_IDLE0); + IFX_REG_W32(0x0, DREG_AR_IDLE1); + IFX_REG_W32(0x40, RFBI_CFG); + IFX_REG_W32(0x0700, SFSM_DBA0); + IFX_REG_W32(0x0818, SFSM_DBA1); + IFX_REG_W32(0x0930, SFSM_CBA0); + IFX_REG_W32(0x0944, SFSM_CBA1); + IFX_REG_W32(0x14014, SFSM_CFG0); + IFX_REG_W32(0x14014, SFSM_CFG1); + IFX_REG_W32(0x0958, FFSM_DBA0); + IFX_REG_W32(0x09AC, FFSM_DBA1); + IFX_REG_W32(0x10006, FFSM_CFG0); + IFX_REG_W32(0x10006, FFSM_CFG1); + IFX_REG_W32(0x00000001, FFSM_IDLE_HEAD_BC0); + IFX_REG_W32(0x00000001, FFSM_IDLE_HEAD_BC1); +} + +static inline void clear_share_buffer(void) +{ + volatile u32 *p = SB_RAM0_ADDR(0); + unsigned int i; + + for ( i = 0; i < SB_RAM0_DWLEN + SB_RAM1_DWLEN; i++ ) + IFX_REG_W32(0, p++); +} + +/* + * Description: + * Download PPE firmware binary code. + * Input: + * src --- u32 *, binary code buffer + * dword_len --- unsigned int, binary code length in DWORD (32-bit) + * Output: + * int --- 0: Success + * else: Error Code + */ +static inline int pp32_download_code(u32 *code_src, unsigned int code_dword_len, u32 *data_src, unsigned int data_dword_len) +{ + volatile u32 *dest; + + if ( code_src == 0 || ((unsigned long)code_src & 0x03) != 0 + || data_src == 0 || ((unsigned long)data_src & 0x03) != 0 ) + return -1; + + if ( code_dword_len <= CDM_CODE_MEMORYn_DWLEN(0) ) + IFX_REG_W32(0x00, CDM_CFG); + else + IFX_REG_W32(0x04, CDM_CFG); + + /* copy code */ + dest = CDM_CODE_MEMORY(0, 0); + while ( code_dword_len-- > 0 ) + IFX_REG_W32(*code_src++, dest++); + + /* copy data */ + dest = CDM_DATA_MEMORY(0, 0); + while ( data_dword_len-- > 0 ) + IFX_REG_W32(*data_src++, dest++); + + return 0; +} + + + +/* + * #################################### + * Global Function + * #################################### + */ + +extern void ase_fw_ver(unsigned int *major, unsigned int *minor) +{ + ASSERT(major != NULL, "pointer is NULL"); + ASSERT(minor != NULL, "pointer is NULL"); + + *major = FW_VER_ID->major; + *minor = FW_VER_ID->minor; +} + +void ase_init(void) +{ + init_pmu(); + + reset_ppe(); + + init_ema(); + + init_mailbox(); + + init_atm_tc(); + + clear_share_buffer(); +} + +void ase_shutdown(void) +{ + uninit_pmu(); +} + +/* + * Description: + * Initialize and start up PP32. + * Input: + * none + * Output: + * int --- 0: Success + * else: Error Code + */ +int ase_start(int pp32) +{ + int ret; + + /* download firmware */ + ret = pp32_download_code(firmware_binary_code, sizeof(firmware_binary_code) / sizeof(*firmware_binary_code), firmware_binary_data, sizeof(firmware_binary_data) / sizeof(*firmware_binary_data)); + if ( ret != 0 ) + return ret; + + /* run PP32 */ + IFX_REG_W32(DBG_CTRL_RESTART, PP32_DBG_CTRL); + + /* idle for a while to let PP32 init itself */ + udelay(10); + + return 0; +} + +/* + * Description: + * Halt PP32. + * Input: + * none + * Output: + * none + */ +void ase_stop(int pp32) +{ + /* halt PP32 */ + IFX_REG_W32(DBG_CTRL_STOP, PP32_DBG_CTRL); +} + +struct ltq_atm_ops ase_ops = { + .init = ase_init, + .shutdown = ase_shutdown, + .start = ase_start, + .stop = ase_stop, + .fw_ver = ase_fw_ver, +}; + diff --git a/package/kernel/lantiq/ltq-atm/src/ifxmips_atm_ar9.c b/package/kernel/lantiq/ltq-atm/src/ifxmips_atm_ar9.c new file mode 100644 index 0000000..b68848b --- /dev/null +++ b/package/kernel/lantiq/ltq-atm/src/ifxmips_atm_ar9.c @@ -0,0 +1,244 @@ +/****************************************************************************** +** +** FILE NAME : ifxmips_atm_ar9.c +** PROJECT : UEIP +** MODULES : ATM +** +** DATE : 7 Jul 2009 +** AUTHOR : Xu Liang +** DESCRIPTION : ATM driver common source file (core functions) +** COPYRIGHT : Copyright (c) 2006 +** Infineon Technologies AG +** Am Campeon 1-12, 85579 Neubiberg, Germany +** +** This program is free software; you can redistribute it and/or modify +** it under the terms of the GNU General Public License as published by +** the Free Software Foundation; either version 2 of the License, or +** (at your option) any later version. +** +** HISTORY +** $Date $Author $Comment +** 07 JUL 2009 Xu Liang Init Version +*******************************************************************************/ + + + +/* + * #################################### + * Head File + * #################################### + */ + +/* + * Common Head File + */ +#include <linux/kernel.h> +#include <linux/module.h> +#include <linux/version.h> +#include <linux/types.h> +#include <linux/errno.h> +#include <linux/proc_fs.h> +#include <linux/init.h> +#include <linux/ioctl.h> +#include <asm/delay.h> + +/* + * Chip Specific Head File + */ +#include "ifxmips_atm_core.h" + +#include "ifxmips_atm_fw_ar9.h" +#include "ifxmips_atm_fw_regs_ar9.h" + +#include <lantiq_soc.h> + + + +/* + * #################################### + * Definition + * #################################### + */ + +/* + * EMA Settings + */ +#define EMA_CMD_BUF_LEN 0x0040 +#define EMA_CMD_BASE_ADDR (0x00003B80 << 2) +#define EMA_DATA_BUF_LEN 0x0100 +#define EMA_DATA_BASE_ADDR (0x00003C00 << 2) +#define EMA_WRITE_BURST 0x2 +#define EMA_READ_BURST 0x2 + + + +/* + * #################################### + * Declaration + * #################################### + */ + +/* + * Hardware Init/Uninit Functions + */ +static inline void init_pmu(void); +static inline void uninit_pmu(void); +static inline void reset_ppe(void); +static inline void init_ema(void); +static inline void init_mailbox(void); +static inline void clear_share_buffer(void); + + + +/* + * #################################### + * Local Variable + * #################################### + */ + + + +/* + * #################################### + * Local Function + * #################################### + */ + +#define IFX_PMU_MODULE_PPE_SLL01 BIT(19) +#define IFX_PMU_MODULE_PPE_TC BIT(21) +#define IFX_PMU_MODULE_PPE_EMA BIT(22) +#define IFX_PMU_MODULE_PPE_QSB BIT(18) +#define IFX_PMU_MODULE_TPE BIT(13) +#define IFX_PMU_MODULE_DSL_DFE BIT(9) + +static inline void init_pmu(void) +{ + ltq_pmu_enable(IFX_PMU_MODULE_PPE_SLL01 | + IFX_PMU_MODULE_PPE_TC | + IFX_PMU_MODULE_PPE_EMA | + IFX_PMU_MODULE_PPE_QSB | + IFX_PMU_MODULE_TPE | + IFX_PMU_MODULE_DSL_DFE); +} + +static inline void uninit_pmu(void) +{ +} + +static inline void reset_ppe(void) +{ +#ifdef MODULE + // reset PPE +// ifx_rcu_rst(IFX_RCU_DOMAIN_PPE, IFX_RCU_MODULE_ATM); +#endif +} + +static inline void init_ema(void) +{ + IFX_REG_W32((EMA_CMD_BUF_LEN << 16) | (EMA_CMD_BASE_ADDR >> 2), EMA_CMDCFG); + IFX_REG_W32((EMA_DATA_BUF_LEN << 16) | (EMA_DATA_BASE_ADDR >> 2), EMA_DATACFG); + IFX_REG_W32(0x000000FF, EMA_IER); + IFX_REG_W32(EMA_READ_BURST | (EMA_WRITE_BURST << 2), EMA_CFG); +} + +static inline void init_mailbox(void) +{ + IFX_REG_W32(0xFFFFFFFF, MBOX_IGU1_ISRC); + IFX_REG_W32(0x00000000, MBOX_IGU1_IER); + IFX_REG_W32(0xFFFFFFFF, MBOX_IGU3_ISRC); + IFX_REG_W32(0x00000000, MBOX_IGU3_IER); +} + +static inline void clear_share_buffer(void) +{ + volatile u32 *p = SB_RAM0_ADDR(0); + unsigned int i; + + for ( i = 0; i < SB_RAM0_DWLEN + SB_RAM1_DWLEN + SB_RAM2_DWLEN + SB_RAM3_DWLEN + SB_RAM4_DWLEN; i++ ) + IFX_REG_W32(0, p++); +} + +static inline int pp32_download_code(u32 *code_src, unsigned int code_dword_len, u32 *data_src, unsigned int data_dword_len) +{ + volatile u32 *dest; + + if ( code_src == 0 || ((unsigned long)code_src & 0x03) != 0 + || data_src == 0 || ((unsigned long)data_src & 0x03) != 0 ) + return -1; + + if ( code_dword_len <= CDM_CODE_MEMORYn_DWLEN(0) ) + IFX_REG_W32(0x00, CDM_CFG); + else + IFX_REG_W32(0x04, CDM_CFG); + + /* copy code */ + dest = CDM_CODE_MEMORY(0, 0); + while ( code_dword_len-- > 0 ) + IFX_REG_W32(*code_src++, dest++); + + /* copy data */ + dest = CDM_DATA_MEMORY(0, 0); + while ( data_dword_len-- > 0 ) + IFX_REG_W32(*data_src++, dest++); + + return 0; +} + +void ar9_fw_ver(unsigned int *major, unsigned int *minor) +{ + ASSERT(major != NULL, "pointer is NULL"); + ASSERT(minor != NULL, "pointer is NULL"); + + *major = FW_VER_ID->major; + *minor = FW_VER_ID->minor; +} + +void ar9_init(void) +{ + init_pmu(); + reset_ppe(); + init_ema(); + init_mailbox(); + clear_share_buffer(); +} + +void ar9_shutdown(void) +{ + ltq_pmu_disable(IFX_PMU_MODULE_PPE_SLL01 | + IFX_PMU_MODULE_PPE_TC | + IFX_PMU_MODULE_PPE_EMA | + IFX_PMU_MODULE_PPE_QSB | + IFX_PMU_MODULE_TPE | + IFX_PMU_MODULE_DSL_DFE); +} + +int ar9_start(int pp32) +{ + int ret; + + ret = pp32_download_code(ar9_fw_bin, sizeof(ar9_fw_bin) / sizeof(*ar9_fw_bin), + ar9_fw_data, sizeof(ar9_fw_data) / sizeof(*ar9_fw_data)); + if ( ret != 0 ) + return ret; + + IFX_REG_W32(DBG_CTRL_RESTART, PP32_DBG_CTRL(0)); + + udelay(10); + + return 0; +} + +void ar9_stop(int pp32) +{ + IFX_REG_W32(DBG_CTRL_STOP, PP32_DBG_CTRL(0)); +} + +struct ltq_atm_ops ar9_ops = { + .init = ar9_init, + .shutdown = ar9_shutdown, + .start = ar9_start, + .stop = ar9_stop, + .fw_ver = ar9_fw_ver, +}; + + diff --git a/package/kernel/lantiq/ltq-atm/src/ifxmips_atm_core.h b/package/kernel/lantiq/ltq-atm/src/ifxmips_atm_core.h new file mode 100644 index 0000000..2f754c9 --- /dev/null +++ b/package/kernel/lantiq/ltq-atm/src/ifxmips_atm_core.h @@ -0,0 +1,245 @@ +/****************************************************************************** +** +** FILE NAME : ifxmips_atm_core.h +** PROJECT : UEIP +** MODULES : ATM +** +** DATE : 7 Jul 2009 +** AUTHOR : Xu Liang +** DESCRIPTION : ATM driver header file (core functions) +** COPYRIGHT : Copyright (c) 2006 +** Infineon Technologies AG +** Am Campeon 1-12, 85579 Neubiberg, Germany +** +** This program is free software; you can redistribute it and/or modify +** it under the terms of the GNU General Public License as published by +** the Free Software Foundation; either version 2 of the License, or +** (at your option) any later version. +** +** HISTORY +** $Date $Author $Comment +** 17 JUN 2009 Xu Liang Init Version +*******************************************************************************/ + +#ifndef IFXMIPS_ATM_CORE_H +#define IFXMIPS_ATM_CORE_H + + +#define INT_NUM_IM2_IRL24 (INT_NUM_IM2_IRL0 + 24) +#define INT_NUM_IM2_IRL13 (INT_NUM_IM2_IRL0 + 13) +#define CONFIG_IFXMIPS_DSL_CPE_MEI +#define IFX_REG_W32(_v, _r) __raw_writel((_v), (volatile unsigned int *)(_r)) +#define IFX_REG_R32(_r) __raw_readl((volatile unsigned int *)(_r)) +#define IFX_REG_W32_MASK(_clr, _set, _r) IFX_REG_W32((IFX_REG_R32((_r)) & ~(_clr)) | (_set), (_r)) +#define SET_BITS(x, msb, lsb, value) (((x) & ~(((1 << ((msb) + 1)) - 1) ^ ((1 << (lsb)) - 1))) | (((value) & ((1 << (1 + (msb) - (lsb))) - 1)) << (lsb))) + +struct ltq_atm_ops { + void (*init)(void); + void (*shutdown)(void); + + int (*start)(int pp32); + void (*stop)(int pp32); + + void (*fw_ver)(unsigned int *major, unsigned int *minor); +}; + +#include <lantiq_atm.h> + +/* + * #################################### + * Definition + * #################################### + */ + +/* + * Compile Options + */ + +#define ENABLE_DEBUG 1 + +#define ENABLE_ASSERT 1 + +#define INLINE + +#define DEBUG_DUMP_SKB 1 + +#define DEBUG_QOS 1 + +#define DISABLE_QOS_WORKAROUND 0 + +#define ENABLE_DBG_PROC 1 + +#define ENABLE_FW_PROC 1 + +#ifdef CONFIG_IFX_ATM_TASKLET + #define ENABLE_TASKLET 1 +#endif + +#ifdef CONFIG_IFX_ATM_RETX + #define ENABLE_ATM_RETX 1 +#endif + +#if defined(CONFIG_DSL_MEI_CPE_DRV) && !defined(CONFIG_IFXMIPS_DSL_CPE_MEI) + #define CONFIG_IFXMIPS_DSL_CPE_MEI 1 +#endif + +/* + * Debug/Assert/Error Message + */ + +#define ifx_atm_dbg_enable 1 + +#define DBG_ENABLE_MASK_ERR (1 << 0) +#define DBG_ENABLE_MASK_DEBUG_PRINT (1 << 1) +#define DBG_ENABLE_MASK_ASSERT (1 << 2) +#define DBG_ENABLE_MASK_DUMP_SKB_RX (1 << 8) +#define DBG_ENABLE_MASK_DUMP_SKB_TX (1 << 9) +#define DBG_ENABLE_MASK_DUMP_QOS (1 << 10) +#define DBG_ENABLE_MASK_DUMP_INIT (1 << 11) +#define DBG_ENABLE_MASK_MAC_SWAP (1 << 12) +#define DBG_ENABLE_MASK_ALL (DBG_ENABLE_MASK_ERR | DBG_ENABLE_MASK_DEBUG_PRINT | DBG_ENABLE_MASK_ASSERT | DBG_ENABLE_MASK_DUMP_SKB_RX | DBG_ENABLE_MASK_DUMP_SKB_TX | DBG_ENABLE_MASK_DUMP_QOS | DBG_ENABLE_MASK_DUMP_INIT | DBG_ENABLE_MASK_MAC_SWAP) + +#if defined(ENABLE_ASSERT) && ENABLE_ASSERT + #define ASSERT(cond, format, arg...) do { if ( (ifx_atm_dbg_enable & DBG_ENABLE_MASK_ASSERT) && !(cond) ) printk(KERN_ERR __FILE__ ":%d:%s: " format "\n", __LINE__, __FUNCTION__, ##arg); } while ( 0 ) +#else + #define ASSERT(cond, format, arg...) +#endif + + +/* + * Constants + */ +#define DEFAULT_TX_LINK_RATE 3200 // in cells + +/* + * ATM Port, QSB Queue, DMA RX/TX Channel Parameters + */ +#define ATM_PORT_NUMBER 2 +#define MAX_QUEUE_NUMBER 16 +#define OAM_RX_QUEUE 15 +#define QSB_RESERVE_TX_QUEUE 0 +#define FIRST_QSB_QID 1 +#define MAX_PVC_NUMBER (MAX_QUEUE_NUMBER - FIRST_QSB_QID) +#define MAX_RX_DMA_CHANNEL_NUMBER 8 +#define MAX_TX_DMA_CHANNEL_NUMBER 16 +#define DATA_BUFFER_ALIGNMENT EMA_ALIGNMENT +#define DESC_ALIGNMENT 8 +#define DEFAULT_RX_HUNT_BITTH 4 + +/* + * RX DMA Channel Allocation + */ +#define RX_DMA_CH_OAM 0 +#define RX_DMA_CH_AAL 1 +#define RX_DMA_CH_TOTAL 2 +#define RX_DMA_CH_OAM_DESC_LEN 32 +#define RX_DMA_CH_OAM_BUF_SIZE ((CELL_SIZE + 14) & ~15) +#define RX_DMA_CH_AAL_BUF_SIZE (2048 - 48) + +/* + * OAM Constants + */ +#define OAM_HTU_ENTRY_NUMBER 3 +#define OAM_F4_SEG_HTU_ENTRY 0 +#define OAM_F4_TOT_HTU_ENTRY 1 +#define OAM_F5_HTU_ENTRY 2 +#define OAM_F4_CELL_ID 0 +#define OAM_F5_CELL_ID 15 +#if defined(ENABLE_ATM_RETX) && ENABLE_ATM_RETX + #undef OAM_HTU_ENTRY_NUMBER + #define OAM_HTU_ENTRY_NUMBER 4 + #define OAM_ARQ_HTU_ENTRY 3 +#endif + +/* + * RX Frame Definitions + */ +#define MAX_RX_PACKET_ALIGN_BYTES 3 +#define MAX_RX_PACKET_PADDING_BYTES 3 +#define RX_INBAND_TRAILER_LENGTH 8 +#define MAX_RX_FRAME_EXTRA_BYTES (RX_INBAND_TRAILER_LENGTH + MAX_RX_PACKET_ALIGN_BYTES + MAX_RX_PACKET_PADDING_BYTES) + +/* + * TX Frame Definitions + */ +#define MAX_TX_HEADER_ALIGN_BYTES 12 +#define MAX_TX_PACKET_ALIGN_BYTES 3 +#define MAX_TX_PACKET_PADDING_BYTES 3 +#define TX_INBAND_HEADER_LENGTH 8 +#define MAX_TX_FRAME_EXTRA_BYTES (TX_INBAND_HEADER_LENGTH + MAX_TX_HEADER_ALIGN_BYTES + MAX_TX_PACKET_ALIGN_BYTES + MAX_TX_PACKET_PADDING_BYTES) + +#define CELL_SIZE ATM_AAL0_SDU + +#if defined(ENABLE_ATM_RETX) && ENABLE_ATM_RETX + #define RETX_PLAYOUT_BUFFER_ORDER 6 + #define RETX_PLAYOUT_BUFFER_SIZE (PAGE_SIZE * (1 << RETX_PLAYOUT_BUFFER_ORDER)) + #define RETX_PLAYOUT_FW_BUFF_SIZE (RETX_PLAYOUT_BUFFER_SIZE / (32 * 56 /* cell size */)) + #define RETX_POLLING_INTERVAL (HZ / 100 > 0 ? HZ / 100 : 1) +#endif + +typedef struct { + unsigned int h; + unsigned int l; +} ppe_u64_t; + +struct port { + unsigned int tx_max_cell_rate; + unsigned int tx_current_cell_rate; + + struct atm_dev *dev; +}; + +struct connection { + struct atm_vcc *vcc; + + volatile struct tx_descriptor *tx_desc; + unsigned int tx_desc_pos; + struct sk_buff **tx_skb; + + unsigned int aal5_vcc_crc_err; /* number of packets with CRC error */ + unsigned int aal5_vcc_oversize_sdu; /* number of packets with oversize error */ + + unsigned int port; +}; + +struct atm_priv_data { + unsigned long conn_table; + struct connection conn[MAX_PVC_NUMBER]; + + volatile struct rx_descriptor *aal_desc; + unsigned int aal_desc_pos; + + volatile struct rx_descriptor *oam_desc; + unsigned char *oam_buf; + unsigned int oam_desc_pos; + + struct port port[ATM_PORT_NUMBER]; + + unsigned int wrx_pdu; /* successfully received AAL5 packet */ + unsigned int wrx_drop_pdu; /* AAL5 packet dropped by driver on RX */ + unsigned int wtx_pdu; /* successfully transmitted AAL5 packet */ + unsigned int wtx_err_pdu; /* error AAL5 packet */ + unsigned int wtx_drop_pdu; /* AAL5 packet dropped by driver on TX */ + + unsigned int wrx_oam; /* successfully received OAM cell */ + unsigned int wrx_drop_oam; /* OAM cell dropped by driver on RX */ + unsigned int wtx_oam; /* successfully transmitted OAM cell */ + unsigned int wtx_err_oam; /* error during transmiting OAM cell */ + unsigned int wtx_drop_oam; /* OAM cell dropped by driver on TX */ + + ppe_u64_t wrx_total_byte; + ppe_u64_t wtx_total_byte; + unsigned int prev_wrx_total_byte; + unsigned int prev_wtx_total_byte; + + void *aal_desc_base; + void *oam_desc_base; + void *oam_buf_base; + void *tx_desc_base; + void *tx_skb_base; +}; + +#include "ifxmips_atm_ppe_common.h" +#include "ifxmips_atm_fw_regs_common.h" + +#endif diff --git a/package/kernel/lantiq/ltq-atm/src/ifxmips_atm_danube.c b/package/kernel/lantiq/ltq-atm/src/ifxmips_atm_danube.c new file mode 100644 index 0000000..9bab5b4 --- /dev/null +++ b/package/kernel/lantiq/ltq-atm/src/ifxmips_atm_danube.c @@ -0,0 +1,231 @@ +/****************************************************************************** +** +** FILE NAME : ifxmips_atm_danube.c +** PROJECT : UEIP +** MODULES : ATM +** +** DATE : 7 Jul 2009 +** AUTHOR : Xu Liang +** DESCRIPTION : ATM driver common source file (core functions) +** COPYRIGHT : Copyright (c) 2006 +** Infineon Technologies AG +** Am Campeon 1-12, 85579 Neubiberg, Germany +** +** This program is free software; you can redistribute it and/or modify +** it under the terms of the GNU General Public License as published by +** the Free Software Foundation; either version 2 of the License, or +** (at your option) any later version. +** +** HISTORY +** $Date $Author $Comment +** 07 JUL 2009 Xu Liang Init Version +*******************************************************************************/ + + + +/* + * #################################### + * Head File + * #################################### + */ + +/* + * Common Head File + */ +#include <linux/kernel.h> +#include <linux/module.h> +#include <linux/version.h> +#include <linux/types.h> +#include <linux/errno.h> +#include <linux/proc_fs.h> +#include <linux/init.h> +#include <linux/ioctl.h> +#include <linux/delay.h> + +/* + * Chip Specific Head File + */ +#include "ifxmips_atm_core.h" + +#ifdef CONFIG_DANUBE + +#include "ifxmips_atm_fw_danube.h" +#include "ifxmips_atm_fw_regs_danube.h" + +#include <lantiq_soc.h> + +#define EMA_CMD_BUF_LEN 0x0040 +#define EMA_CMD_BASE_ADDR (0x00001580 << 2) +#define EMA_DATA_BUF_LEN 0x0100 +#define EMA_DATA_BASE_ADDR (0x00001900 << 2) +#define EMA_WRITE_BURST 0x2 +#define EMA_READ_BURST 0x2 + +static inline void reset_ppe(void); + +#define IFX_PMU_MODULE_PPE_SLL01 BIT(19) +#define IFX_PMU_MODULE_PPE_TC BIT(21) +#define IFX_PMU_MODULE_PPE_EMA BIT(22) +#define IFX_PMU_MODULE_PPE_QSB BIT(18) +#define IFX_PMU_MODULE_TPE BIT(13) +#define IFX_PMU_MODULE_DSL_DFE BIT(9) + +static inline void reset_ppe(void) +{ +/*#ifdef MODULE + unsigned int etop_cfg; + unsigned int etop_mdio_cfg; + unsigned int etop_ig_plen_ctrl; + unsigned int enet_mac_cfg; + + etop_cfg = *IFX_PP32_ETOP_CFG; + etop_mdio_cfg = *IFX_PP32_ETOP_MDIO_CFG; + etop_ig_plen_ctrl = *IFX_PP32_ETOP_IG_PLEN_CTRL; + enet_mac_cfg = *IFX_PP32_ENET_MAC_CFG; + + *IFX_PP32_ETOP_CFG &= ~0x03C0; + + // reset PPE + ifx_rcu_rst(IFX_RCU_DOMAIN_PPE, IFX_RCU_MODULE_ATM); + + *IFX_PP32_ETOP_MDIO_CFG = etop_mdio_cfg; + *IFX_PP32_ETOP_IG_PLEN_CTRL = etop_ig_plen_ctrl; + *IFX_PP32_ENET_MAC_CFG = enet_mac_cfg; + *IFX_PP32_ETOP_CFG = etop_cfg; +#endif*/ +} + +/* + * Description: + * Download PPE firmware binary code. + * Input: + * src --- u32 *, binary code buffer + * dword_len --- unsigned int, binary code length in DWORD (32-bit) + * Output: + * int --- 0: Success + * else: Error Code + */ +static inline int danube_pp32_download_code(u32 *code_src, unsigned int code_dword_len, u32 *data_src, unsigned int data_dword_len) +{ + volatile u32 *dest; + + if ( code_src == 0 || ((unsigned long)code_src & 0x03) != 0 + || data_src == 0 || ((unsigned long)data_src & 0x03) != 0 ) + return -1; + + if ( code_dword_len <= CDM_CODE_MEMORYn_DWLEN(0) ) + IFX_REG_W32(0x00, CDM_CFG); + else + IFX_REG_W32(0x04, CDM_CFG); + + /* copy code */ + dest = CDM_CODE_MEMORY(0, 0); + while ( code_dword_len-- > 0 ) + IFX_REG_W32(*code_src++, dest++); + + /* copy data */ + dest = CDM_DATA_MEMORY(0, 0); + while ( data_dword_len-- > 0 ) + IFX_REG_W32(*data_src++, dest++); + + return 0; +} + +static void danube_fw_ver(unsigned int *major, unsigned int *minor) +{ + ASSERT(major != NULL, "pointer is NULL"); + ASSERT(minor != NULL, "pointer is NULL"); + + *major = FW_VER_ID->major; + *minor = FW_VER_ID->minor; +} + +static void danube_init(void) +{ + volatile u32 *p = SB_RAM0_ADDR(0); + unsigned int i; + + ltq_pmu_enable(IFX_PMU_MODULE_PPE_SLL01 | + IFX_PMU_MODULE_PPE_TC | + IFX_PMU_MODULE_PPE_EMA | + IFX_PMU_MODULE_PPE_QSB | + IFX_PMU_MODULE_TPE | + IFX_PMU_MODULE_DSL_DFE); + + reset_ppe(); + + /* init ema */ + IFX_REG_W32((EMA_CMD_BUF_LEN << 16) | (EMA_CMD_BASE_ADDR >> 2), EMA_CMDCFG); + IFX_REG_W32((EMA_DATA_BUF_LEN << 16) | (EMA_DATA_BASE_ADDR >> 2), EMA_DATACFG); + IFX_REG_W32(0x000000FF, EMA_IER); + IFX_REG_W32(EMA_READ_BURST | (EMA_WRITE_BURST << 2), EMA_CFG); + + /* init mailbox */ + IFX_REG_W32(0xFFFFFFFF, MBOX_IGU1_ISRC); + IFX_REG_W32(0x00000000, MBOX_IGU1_IER); + IFX_REG_W32(0xFFFFFFFF, MBOX_IGU3_ISRC); + IFX_REG_W32(0x00000000, MBOX_IGU3_IER); + + /* init atm tc */ + IFX_REG_W32(0x0000, DREG_AT_CTRL); + IFX_REG_W32(0x0000, DREG_AR_CTRL); + IFX_REG_W32(0x0, DREG_AT_IDLE0); + IFX_REG_W32(0x0, DREG_AT_IDLE1); + IFX_REG_W32(0x0, DREG_AR_IDLE0); + IFX_REG_W32(0x0, DREG_AR_IDLE1); + IFX_REG_W32(0x40, RFBI_CFG); + IFX_REG_W32(0x1600, SFSM_DBA0); + IFX_REG_W32(0x1718, SFSM_DBA1); + IFX_REG_W32(0x1830, SFSM_CBA0); + IFX_REG_W32(0x1844, SFSM_CBA1); + IFX_REG_W32(0x14014, SFSM_CFG0); + IFX_REG_W32(0x14014, SFSM_CFG1); + IFX_REG_W32(0x1858, FFSM_DBA0); + IFX_REG_W32(0x18AC, FFSM_DBA1); + IFX_REG_W32(0x10006, FFSM_CFG0); + IFX_REG_W32(0x10006, FFSM_CFG1); + IFX_REG_W32(0x00000001, FFSM_IDLE_HEAD_BC0); + IFX_REG_W32(0x00000001, FFSM_IDLE_HEAD_BC1); + + for ( i = 0; i < SB_RAM0_DWLEN + SB_RAM1_DWLEN + SB_RAM2_DWLEN + SB_RAM3_DWLEN; i++ ) + IFX_REG_W32(0, p++); +} + +static void danube_shutdown(void) +{ +} + +int danube_start(int pp32) +{ + int ret; + + /* download firmware */ + ret = danube_pp32_download_code( + danube_fw_bin, sizeof(danube_fw_bin) / sizeof(*danube_fw_bin), + danube_fw_data, sizeof(danube_fw_data) / sizeof(*danube_fw_data)); + if ( ret != 0 ) + return ret; + + /* run PP32 */ + IFX_REG_W32(DBG_CTRL_START_SET(1), PP32_DBG_CTRL); + + /* idle for a while to let PP32 init itself */ + udelay(10); + + return 0; +} + +void danube_stop(int pp32) +{ + IFX_REG_W32(DBG_CTRL_STOP_SET(1), PP32_DBG_CTRL); +} + +struct ltq_atm_ops danube_ops = { + .init = danube_init, + .shutdown = danube_shutdown, + .start = danube_start, + .stop = danube_stop, + .fw_ver = danube_fw_ver, +}; + +#endif diff --git a/package/kernel/lantiq/ltq-atm/src/ifxmips_atm_fw_amazon_se.h b/package/kernel/lantiq/ltq-atm/src/ifxmips_atm_fw_amazon_se.h new file mode 100644 index 0000000..b0a9c91 --- /dev/null +++ b/package/kernel/lantiq/ltq-atm/src/ifxmips_atm_fw_amazon_se.h @@ -0,0 +1,457 @@ +#ifndef IFXMIPS_ATM_FW_AMAZON_SE_H +#define IFXMIPS_ATM_FW_AMAZON_SE_H + + +/****************************************************************************** +** +** FILE NAME : ifxmips_atm_fw_amazon_se.h +** PROJECT : UEIP +** MODULES : ATM (ADSL) +** +** DATE : 1 AUG 2005 +** AUTHOR : Xu Liang +** DESCRIPTION : ATM Driver (PP32 Firmware) +** COPYRIGHT : Copyright (c) 2006 +** Infineon Technologies AG +** Am Campeon 1-12, 85579 Neubiberg, Germany +** +** This program is free software; you can redistribute it and/or modify +** it under the terms of the GNU General Public License as published by +** the Free Software Foundation; either version 2 of the License, or +** (at your option) any later version. +** +** HISTORY +** $Date $Author $Comment +** 4 AUG 2005 Xu Liang Initiate Version +** 23 OCT 2006 Xu Liang Add GPL header. +** 9 JAN 2007 Xu Liang First version got from Anand (IC designer) +*******************************************************************************/ + + +#define VER_IN_FIRMWARE 1 + +#define ATM_FW_VER_MAJOR 0 +#define ATM_FW_VER_MINOR 16 + + +static unsigned int firmware_binary_code[] = { + 0x800004b8, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x8000ffe0, 0x00000000, 0x00000000, 0x00000000, + 0xc1000002, 0xd90c00f8, 0xc2000002, 0xda0800f9, 0x80004cc8, 0xc2000000, 0xda0800f9, 0x80004330, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x800042e8, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x800055a8, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x800041e8, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0xc0400000, 0xc0004840, 0xc88400f8, 0x80004988, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0xc0400002, 0xc0004840, 0xc88400f8, 0x80004908, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0xc3c00004, 0xdbc800f9, 0xc10c0002, 0xd90c00f8, 0x8000fee0, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0xc10e0002, 0xd90c00f8, 0xc0004808, 0xc84000f8, 0x80004938, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0xc3e1fffe, 0x597dfffe, 0x593dfe14, 0x900004d9, 0x00000000, 0x00000000, 0x00000000, 0x90cc0481, + 0x00000000, 0x00000000, 0x00000000, 0xc3c00000, 0xdbc800f9, 0xc1400008, 0xc1900000, 0x71588000, + 0x14100100, 0xc140000a, 0xc1900002, 0x71588000, 0x14100100, 0xc140000c, 0xc1900004, 0x71588000, + 0x14100100, 0xc1400004, 0xc1900006, 0x71588000, 0x14100100, 0xc1400006, 0xc1900008, 0x71588000, + 0x14100100, 0xc140000e, 0xc190000a, 0x71588000, 0x14100100, 0xc1400000, 0xc190000c, 0x71588000, + 0x14100100, 0xc1400002, 0xc190000e, 0x71588000, 0x14100100, 0xc0400000, 0xc11c0000, 0xc000082c, + 0xcd05ce00, 0xc11c0002, 0xc000082c, 0xcd05ce00, 0xc0400002, 0xc11c0000, 0xc000082c, 0xcd05ce00, + 0xc11c0002, 0xc000082c, 0xcd05ce00, 0xc0000824, 0x00000000, 0xcbc000f9, 0xcb8000f9, 0xcb4000f9, + 0xcb0000f8, 0xc0004878, 0x5bfc4000, 0xcfc000f9, 0x5bb84000, 0xcf8000f9, 0x5b744000, 0xcf4000f9, + 0x5b304000, 0xcf0000f8, 0xc0000a10, 0x00000000, 0xcbc000f9, 0xcb8000f8, 0xc0004874, 0x5bfc4000, + 0xcfc000f9, 0x5bb84000, 0xcf8000f8, 0xc30001fe, 0xc000140a, 0xcf0000f8, 0xc3000000, 0x7f018000, + 0xc000042e, 0xcf0000f8, 0xc000040e, 0xcf0000f8, 0xc3c1fffe, 0xc000490e, 0xcfc00078, 0xc000492c, + 0xcfc00078, 0xc0004924, 0xcfc00038, 0xc0004912, 0xcfc00038, 0xc0004966, 0xcfc00038, 0xc0004968, + 0xcfc00078, 0xc000496a, 0xcfc00078, 0xc3c1fffe, 0xc00049a0, 0xcfc000f8, 0xc3c00000, 0xc2800020, + 0xc3000000, 0x7f018000, 0x6ff88000, 0x6fd44000, 0x4395c000, 0x5bb84a00, 0x5838000a, 0xcf0000f8, + 0x5bfc0002, 0xb7e8ffc8, 0x00000000, 0xc3c00000, 0xc2800010, 0x6ff86000, 0x47bdc000, 0x5bb84c80, + 0xc3400000, 0x58380004, 0xcb420078, 0x00000000, 0x58380008, 0xcf400078, 0x5bfc0002, 0xb7e8ffb0, + 0x00000000, 0xc3c00000, 0xc2800020, 0xc348001e, 0xc3000000, 0x7f018000, 0x6ff8a000, 0x6fd44000, + 0x4795c000, 0x47bdc000, 0x5bb85e00, 0x58380008, 0xcf408418, 0x5838000a, 0xcf0000f8, 0x5bfc0002, + 0xb7e8ffb0, 0x00000000, 0x00000000, 0xc3e06242, 0x5bfc0020, 0xc0004802, 0xcfc000f8, 0xc161fffe, + 0x5955fffe, 0x14140000, 0x00000000, 0xc1000000, 0xd91c00f8, 0xc3e01002, 0x5bfd88c0, 0xc3a00f88, + 0x5bb839a2, 0x99005fa8, 0xdbd800f8, 0xdb9800f9, 0x00000000, 0xc3c00000, 0xdf7f0038, 0xa7ccfff0, + 0xc3800000, 0xc00048c0, 0xcb818078, 0xc0001408, 0xcfc000f8, 0xc10e0002, 0xd90c00f8, 0x5d3802a6, + 0xc1000002, 0xd91c1f02, 0x00000000, 0xc121fffe, 0x5911fe14, 0x14100000, 0xa9fe0270, 0xc3c00000, + 0xddfc00f0, 0x5d3c0000, 0x84000100, 0xc0000c04, 0xcb8000f8, 0xc11c0002, 0x00000000, 0x7391c000, + 0xcf8000f8, 0xc3800000, 0xc3400080, 0xdf780038, 0xb7b4ffea, 0xc3203002, 0x5b3188c4, 0xc2e00f88, + 0x5aec100e, 0x99005fa8, 0xdb1800f8, 0xdad800f9, 0x00000000, 0xc3800000, 0xc3400080, 0xdf780038, + 0xb7b4ffea, 0xc3205002, 0x5b3188c8, 0xc2e00f90, 0x5aec180c, 0x99005fa8, 0xdb1800f8, 0xdad800f9, + 0x00000000, 0x80000128, 0xc00048cc, 0xca8000f8, 0x00000000, 0xc1000006, 0x76914000, 0x840000fa, + 0x00000000, 0xa6800070, 0xc3800000, 0xc3400080, 0xdf780038, 0xb7b4ffea, 0xc3202002, 0x5b31c8c6, + 0xc2e00f88, 0x5aec100e, 0x99005fa8, 0xdb1800f8, 0xdad800f9, 0x00000000, 0xa6820068, 0xc3800000, + 0xc3400080, 0xdf780038, 0xb7b4ffea, 0xc3204002, 0x5b31c8ca, 0xc2e00f90, 0x5aec180c, 0x99005fa8, + 0xdb1800f8, 0xdad800f9, 0x00000000, 0xc00048cc, 0xc2800000, 0xce8000f8, 0xc3a00140, 0x5bfc0002, + 0x47bc8000, 0xc1000000, 0xc53c00fe, 0xdbdc00f0, 0x80000530, 0x00000000, 0x80002130, 0x00000000, + 0x8000fd70, 0xc0004958, 0xc84000f8, 0x00000000, 0xc3c00002, 0x787c2000, 0xcc4000f8, 0xc0004848, + 0xcb8400f8, 0xc000495c, 0xcac400f8, 0xc0004844, 0xc88400f8, 0x47ad0000, 0x8400ff82, 0xc000487c, + 0xc80400f8, 0x00000000, 0x00000000, 0x40080000, 0xca0000f8, 0xc0001624, 0xcb0400f8, 0xa63c007a, + 0x00000000, 0x00000000, 0xa71eff22, 0x00000000, 0xc0000824, 0xca8400f8, 0x6ca08000, 0x6ca42000, + 0x46250000, 0x42290000, 0xc35e0002, 0xc6340060, 0xc0001624, 0xcf440078, 0xc2000000, 0xc161fffe, + 0x5955fffe, 0x14140000, 0x00000000, 0xc0004844, 0xc88400f8, 0xc000082c, 0xca040038, 0x00000000, + 0x00000000, 0x58880002, 0xb6080018, 0x00000000, 0xc0800000, 0xc0004844, 0xcc840038, 0x5aec0002, + 0xc000495c, 0xcec400f8, 0x5e6c0006, 0x84000060, 0xc0004848, 0xcb8400f8, 0xc0000838, 0xc2500002, + 0xce450800, 0x5fb80002, 0xc0004848, 0xcf8400f8, 0x5eec0002, 0xc000495c, 0xcec400f8, 0x00000000, + 0xc121fffe, 0x5911fe14, 0x14100000, 0x8000fd98, 0xc000495a, 0xc84000f8, 0x00000000, 0xc3c00002, + 0x787c2000, 0xcc4000f8, 0xc0004960, 0xcac400f8, 0x00000000, 0x00000000, 0x5eec0000, 0x8400010a, + 0x00000000, 0xb6fc0050, 0xc0001600, 0xca0400f8, 0x00000000, 0x00000000, 0xa61e00d2, 0x6fe90000, + 0xc0000a28, 0xce850800, 0xc2c00000, 0xc2800004, 0xb6e800a0, 0xc0001604, 0xca8400f8, 0xc0004960, + 0xcec400f8, 0xa69efcc2, 0x00000000, 0x6fe90000, 0xc0000a28, 0xce850800, 0xc2c00002, 0xc0001600, + 0xca0400f8, 0x00000000, 0x00000000, 0xa61e002a, 0x6fe90000, 0xc0000a28, 0xce850800, 0xc2c00000, + 0xc0001604, 0xca8400f8, 0xc0004960, 0xcec400f8, 0xa69efc2a, 0xc2400000, 0xc0000a14, 0xca440028, + 0x00000000, 0x00000000, 0x466d2000, 0xa4400020, 0xc2800000, 0xdfeb0029, 0x80000010, 0xdfea0029, + 0xb668f932, 0x00000000, 0xc00048a0, 0xcb0400f8, 0xc0000a10, 0xca8400f8, 0x6f208000, 0x6f242000, + 0x46250000, 0x42a10000, 0xc2400000, 0xc0000a14, 0xca440028, 0xc35e0002, 0xc6340060, 0xc0001604, + 0xcf440078, 0x5b300002, 0xb6700018, 0x5aec0002, 0xc3000000, 0xc00048a0, 0xcf0400f8, 0xc0004960, + 0xcec400f8, 0x8000f868, 0xc0004918, 0xd28000f8, 0xc2000000, 0xdf600038, 0x5e600080, 0x84000272, + 0x00000000, 0xc161fffe, 0x5955fffe, 0x14140000, 0x00000000, 0xc000480a, 0xca0000f8, 0xc0004912, + 0xca4000f8, 0xc0004924, 0xca8000f8, 0xc0004966, 0xcac000f8, 0x00000000, 0xc121fffe, 0x5911fe14, + 0x14100000, 0x76250000, 0x76290000, 0x762d0000, 0x840001ca, 0xc0004918, 0xca4000f8, 0xc28001fe, + 0x76290000, 0x5a640002, 0x6a254010, 0x5ee80000, 0x8400001a, 0x6aa54000, 0x80000010, 0xc62800f8, + 0x62818008, 0xc0004918, 0xcf0000f8, 0xc161fffe, 0x5955fffe, 0x14140000, 0x00000000, 0xc0004966, + 0xca4000f8, 0xc2000002, 0x6a310000, 0x7e010000, 0x76612000, 0xce4000f8, 0x00000000, 0xc121fffe, + 0x5911fe14, 0x14100000, 0x6f346000, 0x4771a000, 0x5b744c80, 0xc2800000, 0x58340006, 0xca800078, + 0xc2c00000, 0x58340000, 0xcac000d8, 0xc2400000, 0x5834000a, 0xca420078, 0x6ea82000, 0x42e9e000, + 0x6f2ca000, 0x42e56000, 0x5aec1400, 0xc3990040, 0xc7381c18, 0xc6f80060, 0x99005fa8, 0xdb9800f8, + 0xdbd800f9, 0x00000000, 0xdea000f8, 0x46310000, 0x8400fd80, 0xc0004958, 0xc84000f8, 0x00000000, + 0xc3c00002, 0x787c2000, 0xcc4000f8, 0xc0004848, 0xcb8400f8, 0xc0004844, 0xc88400f8, 0x5fb80000, + 0x8400f7f2, 0xc0001a1c, 0xca0000f8, 0xc2400002, 0x6a452000, 0x76250000, 0x8400f7c2, 0xc000487c, + 0xc80400f8, 0x00000000, 0x00000000, 0x40080000, 0xca0000f8, 0xc42400f8, 0x00000000, 0xa63c17da, + 0x00000000, 0xc0004878, 0xc80400f8, 0x6c908000, 0x45088000, 0x45088000, 0x40100000, 0xca0000f8, + 0xc42400f8, 0x00000000, 0xc0004934, 0xce0000f8, 0xc2800002, 0xc4681c08, 0xc62821d0, 0xc2600010, + 0x5a652440, 0xc0004800, 0xcb4000f8, 0xc2200400, 0x5a202400, 0xc7601040, 0xc0001220, 0xce8000f8, + 0xc0001200, 0xce4000f8, 0xc0001202, 0xce0000f8, 0xc0001240, 0xcb4000f8, 0x00000000, 0x00000000, + 0xa754ffe0, 0xc2000000, 0xc7600040, 0xa7520042, 0x00000000, 0x00000000, 0x99006720, 0xc0004822, + 0xc94000f8, 0xc1800002, 0x80001680, 0x58206480, 0xc2000000, 0xca000018, 0xc2400000, 0xca414000, + 0xc2800000, 0xca812000, 0xc2c00000, 0xcac20018, 0xc0004938, 0xce0000f8, 0xc0004920, 0xce4000f8, + 0xc0004916, 0xce8000f8, 0xc0004922, 0xcec000f8, 0xa6400540, 0x00000000, 0xc0004938, 0xcbc000f8, + 0x00000000, 0xc3800000, 0x6ff48000, 0x6fd44000, 0x4355a000, 0x5b744a00, 0x58340000, 0xcb802010, + 0x00000000, 0xc2000000, 0x6fb46000, 0x4779a000, 0x5b744c80, 0x5834000c, 0xca000020, 0xc000491a, + 0xcf8000f8, 0x5e200000, 0x8400046a, 0xc2000000, 0xdf610048, 0x5e6001e8, 0x8800ffe8, 0xc2000002, + 0xc2400466, 0xc2a00000, 0x5aa80000, 0xc0001006, 0xce0000f8, 0xc0001008, 0xce4000f8, 0xc000100a, + 0xce8000f8, 0x990059e8, 0xc1a0fffe, 0xc0000824, 0xc9840060, 0xc0004934, 0xca4000f8, 0xc2000000, + 0xc2800002, 0x99005a28, 0xda9800f8, 0xc61400f8, 0xc65800f8, 0xc161fffe, 0x5955fffe, 0x14140000, + 0x00000000, 0x99005b10, 0xc000491a, 0xc94000f8, 0x00000000, 0x00000000, 0xc121fffe, 0x5911fe14, + 0x14100000, 0xc0004922, 0xca001118, 0xc3c00000, 0xc3800000, 0xc0004930, 0xce023118, 0xc0004932, + 0xcbc000d8, 0xc2800000, 0xc000491e, 0xcfc000f8, 0xc0004862, 0xca800060, 0xc3a0001a, 0x5bb94000, + 0xc6b80060, 0xc000491c, 0xcf8000f8, 0x99005d80, 0xc000491c, 0xc1400000, 0xc9420048, 0x00000000, + 0x00000000, 0x00000000, 0xa8e2ffe8, 0xc2000000, 0xc1220002, 0xd90c00f8, 0xdf600038, 0x5e600080, + 0x8400fff2, 0xc000491c, 0xca0000f8, 0xc000491e, 0xca4000f8, 0x00000000, 0x00000000, 0x99005fa8, + 0xda1800f8, 0xda5800f9, 0x00000000, 0xc2000000, 0xdf610048, 0x5e6001fe, 0x8800ffe8, 0xc0004916, + 0xca8000f8, 0xc2c00000, 0xdfec0048, 0xc2400000, 0x466d2000, 0x8400004a, 0x5ea80000, 0x8400003a, + 0xc2600002, 0x99006720, 0xc000482e, 0xc94000f8, 0xc1800002, 0x80000030, 0xc2600000, 0x99006720, + 0xc000482c, 0xc94000f8, 0xc1800002, 0xc2000068, 0xc6240078, 0xc0004930, 0xce400080, 0xc000491a, + 0xc98000f8, 0xc0004862, 0xc94000f8, 0x6d9c6000, 0x45d8e000, 0x59dc4c80, 0x99005e08, 0xd95800f8, + 0xd99800f9, 0xd9d400f8, 0x99005d80, 0xc000491c, 0xc1400000, 0xc9420048, 0xc2000000, 0xdf600038, + 0x5e600080, 0x8400ffea, 0x00000000, 0xc000491c, 0xca0000f8, 0xc000491e, 0xca4000f8, 0x00000000, + 0x00000000, 0x99005fa8, 0xda1800f8, 0xda5800f9, 0x00000000, 0x800010e8, 0x00000000, 0x99006720, + 0xc000482a, 0xc94000f8, 0xc1800002, 0x800010b8, 0xc0004938, 0xcbc000f8, 0x00000000, 0x00000000, + 0x6ff88000, 0x6fd44000, 0x4395c000, 0x5bb84a00, 0x58380008, 0xca0000f8, 0x00000000, 0x00000000, + 0xa6000382, 0x00000000, 0xc0004938, 0xcbc000f8, 0xc3000000, 0x00000000, 0x6ff88000, 0x6fd44000, + 0x4395c000, 0x5bb84a00, 0x58380000, 0xcb002010, 0xc2000000, 0x58380008, 0xca020078, 0x5838000c, + 0xcac000f8, 0x5838000e, 0xca4000f8, 0xc000491a, 0xcf0000f8, 0xc0004930, 0xcec000f8, 0xc000493c, + 0xce0000f8, 0xc0004932, 0xce4000f8, 0x5e200000, 0x84000120, 0xc2800000, 0xa6fe00ba, 0x6f206000, + 0x46310000, 0x5a204c80, 0x5820000c, 0xca800020, 0x00000000, 0x00000000, 0x5ea80000, 0x840001f2, + 0x00000000, 0xc161fffe, 0x5955fffe, 0x14140000, 0x00000000, 0x99005b10, 0xc000491a, 0xc94000f8, + 0x00000000, 0x00000000, 0xc121fffe, 0x5911fe14, 0x14100000, 0xc0004930, 0xcac000f8, 0xc0004932, + 0xca4000f8, 0xc7ec1118, 0xc0004930, 0xcec000f8, 0x5838000c, 0xcec000f8, 0x58000002, 0xce4000f8, + 0xc0004934, 0xca0000f8, 0xc2400002, 0x6e642000, 0x6e642000, 0x76612000, 0x8400002a, 0xc2400002, + 0x6e684000, 0x58380008, 0xce804200, 0xa6000020, 0x6e682000, 0x58380008, 0xce802100, 0xc2400002, + 0x6e642000, 0x76612000, 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0x9d000000, 0x00000000, 0x719cc000, 0xcd8000f8, 0xc000492a, 0xc94000f8, + 0xc1c00002, 0x69d8e000, 0x7dc0c000, 0x7558a000, 0xcd4000f8, 0xc000492c, 0xc94000f8, 0xdd8000f9, + 0x58000032, 0x755ca000, 0x84000090, 0xc94000f9, 0xc98000f8, 0xdd8000f9, 0x5800000c, 0x00000000, + 0xcd4000f9, 0xcd8000f8, 0xc000492c, 0xc94000f8, 0xc000492a, 0xc98000f8, 0x715ca000, 0xc000492c, + 0xcd4000f8, 0x719cc000, 0xc000492a, 0xcd8000f8, 0x9d000000, 0x00000000, 0x00000000, 0x00000000, + 0xc0004862, 0xc98000f8, 0x00000000, 0xc1c00200, 0x4194c000, 0x459ce000, 0x88000012, 0xc5d800f8, + 0xc0004862, 0xcd8000f8, 0xc0001406, 0xc98000f8, 0xc1c00002, 0x9d000000, 0xc5d80a00, 0xc5581048, + 0xcd8000f8, 0xc0004930, 0xc98000f8, 0xc0004932, 0xc9c000f8, 0xc140000e, 0xc5581c18, 0xdd9400f8, + 0xc0005600, 0x40140000, 0x5d405800, 0x88000012, 0x5c000200, 0xcd8000f8, 0x58000002, 0x5d405800, + 0x88000012, 0x5c000200, 0xcdc000f8, 0xdd5400f8, 0xc1c00000, 0x58140006, 0xc9c20078, 0xc1800000, + 0x58140000, 0xc98000d8, 0x6ddc2000, 0xc000491e, 0x41d8e000, 0xcdc000f8, 0xdd9800f8, 0xc1c00022, + 0xc5d80d70, 0xdd9400f9, 0xc5581c18, 0xc000491c, 0xcd8000f8, 0xdd5400f8, 0xc1c00000, 0x58140006, + 0xc9c20078, 0xc1800000, 0x58140004, 0xc9820078, 0x00000000, 0x59dc0002, 0x45d8c000, 0x84000010, + 0xc1c00000, 0x9d000000, 0x58140006, 0xc5d81078, 0xcd821078, 0xc0004860, 0xc94000f8, 0xc1820080, + 0xc1d00002, 0x58146b00, 0xd58000f8, 0x58000002, 0xd58000f9, 0x59540004, 0xb5580018, 0xc0004860, + 0xc1400000, 0xcd4000f8, 0xdd9800f9, 0x9d000000, 0xdd9400f8, 0xc0001404, 0xcdc10800, 0xc1c00000, + 0xc1800200, 0x5d980004, 0xdf5d0048, 0x459ca000, 0x8800fff2, 0xdd8000f9, 0x5800000c, 0x00000000, + 0xc94000f9, 0xc98000f8, 0xc1c00002, 0xc5d43f00, 0xc5d81e00, 0xc0004862, 0xc9c000f8, 0x00000000, + 0x00000000, 0x581c5600, 0x5dc05800, 0x88000012, 0x5c000200, 0xcd4000f8, 0x58000002, 0x5dc05800, + 0x88000012, 0x5c000200, 0xcd8000f8, 0xc0004862, 0xc9c000f8, 0x00000000, 0xc15004c0, 0xc5d40060, + 0xdd9c00f8, 0xc5d41c18, 0xc1c00000, 0xdd8000f9, 0x58000030, 0xc9c00078, 0xdd8000f9, 0x58000002, + 0xc98000f8, 0x6ddc2000, 0xc000491c, 0x41d8e000, 0xcd4000f9, 0xcdc000f8, 0xdd9400f9, 0xc1c00000, + 0x58140030, 0xc9c00078, 0xc1800000, 0x58140006, 0xc9820078, 0x00000000, 0x59dc0002, 0x45d8c000, + 0x84000010, 0xc1c00000, 0x9d000000, 0x58140030, 0xc5d80078, 0xcd800078, 0xc1c00000, 0xdf5c0038, + 0x5ddc0080, 0x8400ffea, 0x00000000, 0x9d000000, 0x00000000, 0x00000000, 0x00000000, 0xc160fffe, + 0xc0000a10, 0xc9440060, 0xc1a0fffe, 0x59981e08, 0xc000100c, 0xcd4000f8, 0xc000100e, 0xcd8000f8, + 0xc0004964, 0xc98000f8, 0x00000000, 0xc170000a, 0x7158a000, 0x6c988000, 0x4588c000, 0x4588c000, + 0x59980004, 0xc5940270, 0xc0001010, 0xcd4000f8, 0xc0004946, 0xc94000f8, 0x00000000, 0x00000000, + 0x6d58a000, 0x6d5c4000, 0x459cc000, 0x4594c000, 0xc000494a, 0xc94000f8, 0xc0004948, 0xc9c000f8, + 0x4194c000, 0xc1400012, 0xc55c1818, 0x9d000000, 0xc59c0268, 0xc0001012, 0xcdc000f8, 0xc1400000, + 0x58000012, 0xc9410038, 0xc0004950, 0xc9c000f8, 0xc55800f8, 0xc5940838, 0xc5581078, 0xd99400f8, + 0xc000493c, 0xc94000f8, 0xc0004954, 0xc98000f8, 0x59dc00a8, 0x45d4e000, 0x41d8e000, 0x5d5c0030, + 0x88000010, 0xc1c00030, 0xc1800000, 0xc5d84028, 0xc1400000, 0xc5d40008, 0x5dd40002, 0x84000072, + 0x5dd40004, 0x8400009a, 0x5dd40006, 0x840000c2, 0x5dd80026, 0x840000ea, 0xdd5400f8, 0xdd8000f9, + 0x58000008, 0x40180000, 0xcd4000f8, 0x59980002, 0x8000ffc0, 0xdd5400f8, 0xdd8000f9, 0x58000008, + 0x40180000, 0xcd4000b8, 0x59980002, 0x8000ff88, 0xdd5400f8, 0xdd8000f9, 0x58000008, 0x40180000, + 0xcd400078, 0x59980002, 0x8000ff50, 0xdd5400f8, 0xdd8000f9, 0x58000008, 0x40180000, 0xcd400038, + 0x59980002, 0x8000ff18, 0x00000000, 0x9d000000, 0x00000000, 0x00000000, 0x00000000, 0x58000012, + 0xc94000f8, 0xc0004954, 0xc9c000f8, 0xc0004950, 0xc9400078, 0xdd8000f9, 0x58000028, 0x5d9c0000, + 0x84000052, 0x5d9c0002, 0x84000052, 0x5d9c0004, 0x8400006a, 0xc55b0038, 0xc55c08b8, 0xcd800039, + 0xcdc108b8, 0x80000060, 0xcd4000f8, 0x80000050, 0xc55900b8, 0xc55c1838, 0xcd8000b9, 0xcdc31838, + 0x80000028, 0xc55a0078, 0xc55c1078, 0xcd800079, 0xcdc21078, 0x9d000000, 0x00000000, 0x00000000, + 0x00000000, 0x59540002, 0x6994e018, 0x61c0c008, 0x4194a000, 0x5d940040, 0x88000012, 0xc59400f8, + 0x9d000000, 0xcd4000f8, 0x00000000, 0x00000000, 0x9d000000, 0x4158a000, 0xcd4000f8, 0x00000000, +}; + +static unsigned int firmware_binary_data[] = { +}; + + +#endif // IFXMIPS_ATM_FW_AMAZON_SE_H diff --git a/package/kernel/lantiq/ltq-atm/src/ifxmips_atm_fw_ar9.h b/package/kernel/lantiq/ltq-atm/src/ifxmips_atm_fw_ar9.h new file mode 100644 index 0000000..5ee6d23 --- /dev/null +++ b/package/kernel/lantiq/ltq-atm/src/ifxmips_atm_fw_ar9.h @@ -0,0 +1,439 @@ +#ifndef IFXMIPS_ATM_FW_AR9_H +#define IFXMIPS_ATM_FW_AR9_H + + +/****************************************************************************** +** +** FILE NAME : ifxmips_atm_fw_ar9.h +** PROJECT : UEIP +** MODULES : ATM (ADSL) +** +** DATE : 22 OCT 2007 +** AUTHOR : Xu Liang +** DESCRIPTION : ATM Driver (PP32 Firmware) +** COPYRIGHT : Copyright (c) 2006 +** Infineon Technologies AG +** Am Campeon 1-12, 85579 Neubiberg, Germany +** +** This program is free software; you can redistribute it and/or modify +** it under the terms of the GNU General Public License as published by +** the Free Software Foundation; either version 2 of the License, or +** (at your option) any later version. +** +** HISTORY +** $Date $Author $Comment +** 22 OCT 2007 Xu Liang Initiate Version, v00.01 +*******************************************************************************/ + + +#define VER_IN_FIRMWARE 1 + +#define ATM_FW_VER_MAJOR 0 +#define ATM_FW_VER_MINOR 16 + + +static unsigned int ar9_fw_bin[] = { + 0x800004b8, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x8000ffe0, 0x00000000, 0x00000000, 0x00000000, + 0xc1000002, 0xd90c00f8, 0xc2000002, 0xda0800f9, 0x80004980, 0xc2000000, 0xda0800f9, 0x80003fe8, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x80003fa0, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x80005178, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x80003ea0, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0xc0400000, 0xc0004840, 0xc88400f8, 0x80004640, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0xc0400002, 0xc0004840, 0xc88400f8, 0x800045c0, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0xc3c00004, 0xdbc800f9, 0xc10c0002, 0xd90c00f8, 0x8000fee0, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0xc10e0002, 0xd90c00f8, 0xc0004808, 0xc84000f8, 0x800045f0, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0xc3e1fffe, 0x597dfffe, 0x593dfe14, 0x900004d9, 0x00000000, 0x00000000, 0x00000000, 0x90cc0481, + 0x00000000, 0x00000000, 0x00000000, 0xc3c00000, 0xdbc800f9, 0xc1400008, 0xc1900000, 0x71588000, + 0x14100100, 0xc140000a, 0xc1900002, 0x71588000, 0x14100100, 0xc140000c, 0xc1900004, 0x71588000, + 0x14100100, 0xc1400004, 0xc1900006, 0x71588000, 0x14100100, 0xc1400006, 0xc1900008, 0x71588000, + 0x14100100, 0xc140000e, 0xc190000a, 0x71588000, 0x14100100, 0xc1400000, 0xc190000c, 0x71588000, + 0x14100100, 0xc1400002, 0xc190000e, 0x71588000, 0x14100100, 0xc0400000, 0xc11c0000, 0xc000082c, + 0xcd05ce00, 0xc11c0002, 0xc000082c, 0xcd05ce00, 0xc0400002, 0xc11c0000, 0xc000082c, 0xcd05ce00, + 0xc11c0002, 0xc000082c, 0xcd05ce00, 0xc0000824, 0x00000000, 0xcbc000f9, 0xcb8000f9, 0xcb4000f9, + 0xcb0000f8, 0xc0004878, 0x5bfc4000, 0xcfc000f9, 0x5bb84000, 0xcf8000f9, 0x5b744000, 0xcf4000f9, + 0x5b304000, 0xcf0000f8, 0xc0000a10, 0x00000000, 0xcbc000f9, 0xcb8000f8, 0xc0004874, 0x5bfc4000, + 0xcfc000f9, 0x5bb84000, 0xcf8000f8, 0xc30001fe, 0xc000140a, 0xcf0000f8, 0xc3000000, 0x7f018000, + 0xc000042e, 0xcf0000f8, 0xc000040e, 0xcf0000f8, 0xc3c1fffe, 0xc000490e, 0xcfc00078, 0xc000492c, + 0xcfc00078, 0xc0004924, 0xcfc00038, 0xc0004912, 0xcfc00038, 0xc0004966, 0xcfc00038, 0xc0004968, + 0xcfc00078, 0xc000496a, 0xcfc00078, 0xc3c1fffe, 0xc00049a0, 0xcfc000f8, 0xc3c00000, 0xc2800020, + 0xc3000000, 0x7f018000, 0x6ff88000, 0x6fd44000, 0x4395c000, 0x5bb84a00, 0x5838000a, 0xcf0000f8, + 0x5bfc0002, 0xb7e8ffc8, 0x00000000, 0xc3c00000, 0xc2800010, 0x6ff86000, 0x47bdc000, 0x5bb84c80, + 0xc3400000, 0x58380004, 0xcb420078, 0x00000000, 0x58380008, 0xcf400078, 0x5bfc0002, 0xb7e8ffb0, + 0x00000000, 0xc3c00000, 0xc2800020, 0xc348001e, 0xc3000000, 0x7f018000, 0x6ff8a000, 0x6fd44000, + 0x4795c000, 0x47bdc000, 0x5bb87000, 0x58380008, 0xcf408418, 0x5838000a, 0xcf0000f8, 0x5bfc0002, + 0xb7e8ffb0, 0x00000000, 0x00000000, 0xc3e0a242, 0x5bfc0020, 0xc0004002, 0xcfc000f8, 0x00000000, + 0xc121fffe, 0x5911fe14, 0x14100000, 0x80000530, 0x00000000, 0x80002130, 0x00000000, 0x8000ffe0, + 0xc0004958, 0xc84000f8, 0x00000000, 0xc3c00002, 0x787c2000, 0xcc4000f8, 0xc0004848, 0xcb8400f8, + 0xc000495c, 0xcac400f8, 0xc0004844, 0xc88400f8, 0x47ad0000, 0x8400ff82, 0xc000487c, 0xc80400f8, + 0x00000000, 0x00000000, 0x40080000, 0xca0000f8, 0xc0001624, 0xcb0400f8, 0xa63c007a, 0x00000000, + 0x00000000, 0xa71eff22, 0x00000000, 0xc0000824, 0xca8400f8, 0x6ca08000, 0x6ca42000, 0x46250000, + 0x42290000, 0xc35e0002, 0xc6340060, 0xc0001624, 0xcf440078, 0xc2000000, 0xc161fffe, 0x5955fffe, + 0x14140000, 0x00000000, 0xc0004844, 0xc88400f8, 0xc000082c, 0xca040038, 0x00000000, 0x00000000, + 0x58880002, 0xb6080018, 0x00000000, 0xc0800000, 0xc0004844, 0xcc840038, 0x5aec0002, 0xc000495c, + 0xcec400f8, 0x5e6c0006, 0x84000060, 0xc0004848, 0xcb8400f8, 0xc0000838, 0xc2500002, 0xce450800, + 0x5fb80002, 0xc0004848, 0xcf8400f8, 0x5eec0002, 0xc000495c, 0xcec400f8, 0x00000000, 0xc121fffe, + 0x5911fe14, 0x14100000, 0x8000fd98, 0xc000495a, 0xc84000f8, 0x00000000, 0xc3c00002, 0x787c2000, + 0xcc4000f8, 0xc0004960, 0xcac400f8, 0x00000000, 0x00000000, 0x5eec0000, 0x8400010a, 0x00000000, + 0xb6fc0050, 0xc0001600, 0xca0400f8, 0x00000000, 0x00000000, 0xa61e00d2, 0x6fe90000, 0xc0000a28, + 0xce850800, 0xc2c00000, 0xc2800004, 0xb6e800a0, 0xc0001604, 0xca8400f8, 0xc0004960, 0xcec400f8, + 0xa69efcc2, 0x00000000, 0x6fe90000, 0xc0000a28, 0xce850800, 0xc2c00002, 0xc0001600, 0xca0400f8, + 0x00000000, 0x00000000, 0xa61e002a, 0x6fe90000, 0xc0000a28, 0xce850800, 0xc2c00000, 0xc0001604, + 0xca8400f8, 0xc0004960, 0xcec400f8, 0xa69efc2a, 0xc2400000, 0xc0000a14, 0xca440028, 0x00000000, + 0x00000000, 0x466d2000, 0xa4400020, 0xc2800000, 0xdfeb0029, 0x80000010, 0xdfea0029, 0xb668fba2, + 0x00000000, 0xc00048a0, 0xcb0400f8, 0xc0000a10, 0xca8400f8, 0x6f208000, 0x6f242000, 0x46250000, + 0x42a10000, 0xc2400000, 0xc0000a14, 0xca440028, 0xc35e0002, 0xc6340060, 0xc0001604, 0xcf440078, + 0x5b300002, 0xb6700018, 0x5aec0002, 0xc3000000, 0xc00048a0, 0xcf0400f8, 0xc0004960, 0xcec400f8, + 0x8000fad8, 0xc0004918, 0xd28000f8, 0xc2000000, 0xdf600038, 0x5e600080, 0x84000272, 0x00000000, + 0xc161fffe, 0x5955fffe, 0x14140000, 0x00000000, 0xc000480a, 0xca0000f8, 0xc0004912, 0xca4000f8, + 0xc0004924, 0xca8000f8, 0xc0004966, 0xcac000f8, 0x00000000, 0xc121fffe, 0x5911fe14, 0x14100000, + 0x76250000, 0x76290000, 0x762d0000, 0x840001ca, 0xc0004918, 0xca4000f8, 0xc28001fe, 0x76290000, + 0x5a640002, 0x6a254010, 0x5ee80000, 0x8400001a, 0x6aa54000, 0x80000010, 0xc62800f8, 0x62818008, + 0xc0004918, 0xcf0000f8, 0xc161fffe, 0x5955fffe, 0x14140000, 0x00000000, 0xc0004966, 0xca4000f8, + 0xc2000002, 0x6a310000, 0x7e010000, 0x76612000, 0xce4000f8, 0x00000000, 0xc121fffe, 0x5911fe14, + 0x14100000, 0x6f346000, 0x4771a000, 0x5b744c80, 0xc2800000, 0x58340006, 0xca800078, 0xc2c00000, + 0x58340000, 0xcac000d8, 0xc2400000, 0x5834000a, 0xca420078, 0x6ea82000, 0x42e9e000, 0x6f2ca000, + 0x42e56000, 0x5aec2e00, 0xc3990040, 0xc7381c18, 0xc6f80060, 0x99005b78, 0xdb9800f8, 0xdbd800f9, + 0x00000000, 0xdea000f8, 0x46310000, 0x8400fd80, 0xc0004958, 0xc84000f8, 0x00000000, 0xc3c00002, + 0x787c2000, 0xcc4000f8, 0xc0004848, 0xcb8400f8, 0xc0004844, 0xc88400f8, 0x5fb80000, 0x8400f7f2, + 0xc0001a1c, 0xca0000f8, 0xc2400002, 0x6a452000, 0x76250000, 0x8400f7c2, 0xc000487c, 0xc80400f8, + 0x00000000, 0x00000000, 0x40080000, 0xca0000f8, 0xc42400f8, 0x00000000, 0xa63c17da, 0x00000000, + 0xc0004878, 0xc80400f8, 0x6c908000, 0x45088000, 0x45088000, 0x40100000, 0xca0000f8, 0xc42400f8, + 0x00000000, 0xc0004934, 0xce0000f8, 0xc2800002, 0xc4681c08, 0xc62821d0, 0xc2600010, 0x5a650060, + 0xc0004800, 0xcb4000f8, 0xc2200400, 0x5a200020, 0xc7601040, 0xc0001220, 0xce8000f8, 0xc0001200, + 0xce4000f8, 0xc0001202, 0xce0000f8, 0xc0001240, 0xcb4000f8, 0x00000000, 0x00000000, 0xa754ffe0, + 0xc2000000, 0xc7600040, 0xa7520042, 0x00000000, 0x00000000, 0x990062f0, 0xc0004822, 0xc94000f8, + 0xc1800002, 0x80001680, 0x582040a0, 0xc2000000, 0xca000018, 0xc2400000, 0xca414000, 0xc2800000, + 0xca812000, 0xc2c00000, 0xcac20018, 0xc0004938, 0xce0000f8, 0xc0004920, 0xce4000f8, 0xc0004916, + 0xce8000f8, 0xc0004922, 0xcec000f8, 0xa6400540, 0x00000000, 0xc0004938, 0xcbc000f8, 0x00000000, + 0xc3800000, 0x6ff48000, 0x6fd44000, 0x4355a000, 0x5b744a00, 0x58340000, 0xcb802010, 0x00000000, + 0xc2000000, 0x6fb46000, 0x4779a000, 0x5b744c80, 0x5834000c, 0xca000020, 0xc000491a, 0xcf8000f8, + 0x5e200000, 0x8400046a, 0xc2000000, 0xdf610048, 0x5e6001e8, 0x8800ffe8, 0xc2000002, 0xc2400466, + 0xc2a00000, 0x5aa80000, 0xc0001006, 0xce0000f8, 0xc0001008, 0xce4000f8, 0xc000100a, 0xce8000f8, + 0x990055b8, 0xc1a0fffe, 0xc0000824, 0xc9840060, 0xc0004934, 0xca4000f8, 0xc2000000, 0xc2800002, + 0x990055f8, 0xda9800f8, 0xc61400f8, 0xc65800f8, 0xc161fffe, 0x5955fffe, 0x14140000, 0x00000000, + 0x990056e0, 0xc000491a, 0xc94000f8, 0x00000000, 0x00000000, 0xc121fffe, 0x5911fe14, 0x14100000, + 0xc0004922, 0xca001118, 0xc3c00000, 0xc3800000, 0xc0004930, 0xce023118, 0xc0004932, 0xcbc000d8, + 0xc2800000, 0xc000491e, 0xcfc000f8, 0xc0004862, 0xca800060, 0xc3a0001a, 0x5bb94000, 0xc6b80060, + 0xc000491c, 0xcf8000f8, 0x99005950, 0xc000491c, 0xc1400000, 0xc9420048, 0x00000000, 0x00000000, + 0x00000000, 0xa8e2ffe8, 0xc2000000, 0xc1220002, 0xd90c00f8, 0xdf600038, 0x5e600080, 0x8400fff2, + 0xc000491c, 0xca0000f8, 0xc000491e, 0xca4000f8, 0x00000000, 0x00000000, 0x99005b78, 0xda1800f8, + 0xda5800f9, 0x00000000, 0xc2000000, 0xdf610048, 0x5e6001fe, 0x8800ffe8, 0xc0004916, 0xca8000f8, + 0xc2c00000, 0xdfec0048, 0xc2400000, 0x466d2000, 0x8400004a, 0x5ea80000, 0x8400003a, 0xc2600002, + 0x990062f0, 0xc000482e, 0xc94000f8, 0xc1800002, 0x80000030, 0xc2600000, 0x990062f0, 0xc000482c, + 0xc94000f8, 0xc1800002, 0xc2000068, 0xc6240078, 0xc0004930, 0xce400080, 0xc000491a, 0xc98000f8, + 0xc0004862, 0xc94000f8, 0x6d9c6000, 0x45d8e000, 0x59dc4c80, 0x990059d8, 0xd95800f8, 0xd99800f9, + 0xd9d400f8, 0x99005950, 0xc000491c, 0xc1400000, 0xc9420048, 0xc2000000, 0xdf600038, 0x5e600080, + 0x8400ffea, 0x00000000, 0xc000491c, 0xca0000f8, 0xc000491e, 0xca4000f8, 0x00000000, 0x00000000, + 0x99005b78, 0xda1800f8, 0xda5800f9, 0x00000000, 0x800010e8, 0x00000000, 0x990062f0, 0xc000482a, + 0xc94000f8, 0xc1800002, 0x800010b8, 0xc0004938, 0xcbc000f8, 0x00000000, 0x00000000, 0x6ff88000, + 0x6fd44000, 0x4395c000, 0x5bb84a00, 0x58380008, 0xca0000f8, 0x00000000, 0x00000000, 0xa6000382, + 0x00000000, 0xc0004938, 0xcbc000f8, 0xc3000000, 0x00000000, 0x6ff88000, 0x6fd44000, 0x4395c000, + 0x5bb84a00, 0x58380000, 0xcb002010, 0xc2000000, 0x58380008, 0xca020078, 0x5838000c, 0xcac000f8, + 0x5838000e, 0xca4000f8, 0xc000491a, 0xcf0000f8, 0xc0004930, 0xcec000f8, 0xc000493c, 0xce0000f8, + 0xc0004932, 0xce4000f8, 0x5e200000, 0x84000120, 0xc2800000, 0xa6fe00ba, 0x6f206000, 0x46310000, + 0x5a204c80, 0x5820000c, 0xca800020, 0x00000000, 0x00000000, 0x5ea80000, 0x840001f2, 0x00000000, + 0xc161fffe, 0x5955fffe, 0x14140000, 0x00000000, 0x990056e0, 0xc000491a, 0xc94000f8, 0x00000000, + 0x00000000, 0xc121fffe, 0x5911fe14, 0x14100000, 0xc0004930, 0xcac000f8, 0xc0004932, 0xca4000f8, + 0xc7ec1118, 0xc0004930, 0xcec000f8, 0x5838000c, 0xcec000f8, 0x58000002, 0xce4000f8, 0xc0004934, + 0xca0000f8, 0xc2400002, 0x6e642000, 0x6e642000, 0x76612000, 0x8400002a, 0xc2400002, 0x6e684000, + 0x58380008, 0xce804200, 0xa6000020, 0x6e682000, 0x58380008, 0xce802100, 0xc2400002, 0x6e642000, + 0x76612000, 0x840000ea, 0x58380008, 0xca0000f8, 0xc2800000, 0xc2400000, 0xa60200c0, 0xdba800f8, + 0x6f386000, 0x47b1c000, 0x5bb84c80, 0x58380004, 0xca400078, 0x58380002, 0xca800078, 0x00000000, + 0xdeb800f8, 0x46a54000, 0x88000060, 0x00000000, 0xc0004824, 0xca0000f8, 0xc2400002, 0x6e640000, + 0x5a200002, 0xce0000f8, 0x58380008, 0xce400000, 0x80000018, 0x00000000, 0x80000048, 0xc0004934, + 0xca0000f8, 0x00000000, 0x00000000, 0xa6020c6a, 0x00000000, 0x00000000, 0x80000c98, 0xc2800000, + 0xc2000200, 0xc240001a, 0xdf690048, 0x46294000, 0x46a54000, 0x8800ffd2, 0xc2000006, 0xc2600982, + 0x5a643b6e, 0x5838000a, 0xca8000f8, 0xc0001006, 0xce0000f8, 0xc0001008, 0xce4000f8, 0xc000100a, + 0xce8000f8, 0x990055b8, 0xc1a0fffe, 0xc0000824, 0xc9840060, 0xc2000000, 0xc0004930, 0xca02e008, + 0x58380026, 0xca4000f8, 0x00000000, 0xc2800000, 0x990055f8, 0xda9800f8, 0xc61400f8, 0xc65800f8, + 0xc0004934, 0xca0000f8, 0x00000000, 0x00000000, 0xa6020022, 0x00000000, 0x00000000, 0x80000318, + 0xc0004938, 0xcbc000f8, 0xc0004878, 0xc80400f8, 0x6c908000, 0x45088000, 0x45088000, 0x40100000, + 0xca0000f8, 0xc42400f8, 0x00000000, 0x58240018, 0xca0000f8, 0x6ff88000, 0x6fd44000, 0x4395c000, + 0x5bb84a00, 0xc3000000, 0xc3400002, 0xc2c00000, 0xc62c0078, 0xc6270038, 0xc0004940, 0xce400038, + 0xc6260038, 0xc0004942, 0xce400038, 0xc000493c, 0xca0000f8, 0x5eec0000, 0x8400018a, 0x5a6c0010, + 0x46254000, 0x88000190, 0x5a600052, 0x46e54000, 0x88000178, 0x58380006, 0xca8000f8, 0xc0004940, + 0xca0000f8, 0xc2400000, 0xc6a70038, 0x7e412000, 0x76612000, 0xc2000000, 0xc6a10038, 0x46250000, + 0x84000138, 0xc0004942, 0xca0000f8, 0xc2400000, 0xc6a60038, 0x7e412000, 0x76612000, 0xc2000000, + 0xc6a00038, 0x58380002, 0xca8000f8, 0x46250000, 0x840000e8, 0xc2400000, 0xc6a60078, 0x466d0000, + 0x880000da, 0xc2400000, 0xc6a40078, 0x58380008, 0xca8000f8, 0x46e50000, 0x880000ba, 0x00000000, + 0xa6820018, 0x00000000, 0xc7700b00, 0xa6840098, 0x00000000, 0xc7700a00, 0x80000080, 0xc7700200, + 0xc000493c, 0xcac000f8, 0x80000060, 0xc7700300, 0xc000493c, 0xcac000f8, 0x80000040, 0xc7700900, + 0x80000030, 0xc7700800, 0x80000020, 0xc7700700, 0x80000010, 0xc7700500, 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0xcfc000f8, + 0x80000008, 0x00000000, 0x00000000, 0x00000000, 0xc2000000, 0xdce000f8, 0xa622ffd8, 0xc1220002, + 0xd90c00f8, 0xc0004938, 0xcbc000f8, 0xc0004944, 0xcb4000f8, 0xc0004862, 0xcb0000f8, 0xc0004934, + 0xca0000f8, 0x6ff88000, 0x6fd44000, 0x4395c000, 0x5bb84a00, 0xa6020268, 0xc2400000, 0x58380008, + 0xca406000, 0xdfe800f8, 0xc2218e08, 0x5a21baf6, 0x46a14000, 0x84000022, 0xc2080002, 0x7361a000, + 0x80000058, 0x5e640000, 0x84000022, 0xc20c0002, 0x7361a000, 0x80000030, 0xc2000000, 0xc760e710, + 0xc7604218, 0x5e200000, 0x84000272, 0xc2200002, 0xc0004930, 0xce021000, 0x990062f0, 0xc0004828, + 0xc94000f8, 0xc1800002, 0x58380000, 0xca0000f8, 0x00000000, 0x00000000, 0xa6000132, 0xc0004940, + 0xca8000f8, 0xc0004942, 0xca4000f8, 0xc7600078, 0xc6a01838, 0xc6601038, 0xc000493a, 0xca4000f8, + 0xc0004934, 0xca8000f8, 0xc0007800, 0x40300000, 0x40240000, 0x5c000004, 0x5ec07a00, 0x88000012, + 0x5c000200, 0xce0000f8, 0x58000002, 0x5ec07a00, 0x88000012, 0x5c000200, 0xce8000f8, 0xc000493e, + 0xca0000f8, 0xc2400000, 0x5838000c, 0xce4000f8, 0x990062f0, 0xc0004830, 0xc94000f8, 0xc61800f8, + 0xc0004930, 0xc6100078, 0xcd000078, 0x800000a8, 0xc2400002, 0x58380008, 0xce400000, 0xc0004944, + 0xcf4000f8, 0x80000278, 0xc000493c, 0xca4000f8, 0xdfe800f8, 0x5a300018, 0xc0007800, 0x40200000, + 0xca0000f8, 0x58380008, 0xc6501078, 0xcd021078, 0x5838000a, 0xce8000f8, 0x58380026, 0xce0000f8, + 0xc0004944, 0xcf4000f8, 0x99005950, 0xc000491c, 0xc1400000, 0xc9420048, 0x80000038, 0x00000000, + 0x990062f0, 0xc0004826, 0xc94000f8, 0xc1800002, 0x8000fdd8, 0xc2000000, 0xc2400080, 0xdf600038, + 0xb624ffea, 0xc000491c, 0xca4000f8, 0xc000491e, 0xca8000f8, 0x99005b78, 0xda5800f8, 0xda9800f9, + 0x00000000, 0xc0004934, 0xca0000f8, 0x00000000, 0xc2800000, 0xa6020160, 0xc2400004, 0xc2000200, + 0xdf690048, 0x46294000, 0x46a54000, 0x8800ffda, 0x00000000, 0xc000491a, 0xc98000f8, 0xc0004862, + 0xc94000f8, 0x6d9c6000, 0x45d8e000, 0x59dc4c80, 0x990059d8, 0xd95800f8, 0xd99800f9, 0xd9d400f8, + 0x99005950, 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0xd99800f9, 0x00000000, 0xc161fffe, 0x5955fffe, 0x14140000, 0x00000000, 0x99005840, 0xdbd800f8, + 0xdb9800f9, 0xc7d800f8, 0x00000000, 0xc121fffe, 0x5911fe14, 0x14100000, 0xc000493c, 0xca8000f8, + 0xc000494e, 0xcac000f8, 0xc3000018, 0xc3400006, 0x5e200000, 0x8400002a, 0xc2800000, 0xc2c00000, + 0xc300001e, 0xc3400000, 0xc6ac1078, 0xc72c0418, 0xc76c0810, 0x58380010, 0xca8000f8, 0x58380008, + 0xcec000f8, 0xc6280100, 0xc0004874, 0xc80400f8, 0x6c908000, 0x45088000, 0x45088000, 0x40100000, + 0xcb0000f8, 0xc43400f8, 0x00000000, 0xc74000f8, 0xce8000f8, 0xc0004952, 0xce8000f8, 0x00000000, + 0x00000000, 0x00000000, 0xa8e2ffe8, 0x00000000, 0xc000494c, 0xca0000f8, 0xc0004950, 0xcac000f8, + 0x5e200000, 0x8400006a, 0xdfe800f8, 0x7e814000, 0x5834001a, 0xce8000f8, 0x990062f0, 0xc0004834, + 0xc94000f8, 0xc1800002, 0x990062f0, 0xc0004838, 0xc94000f8, 0xc6d800f8, 0xc1220002, 0xd90c00f8, + 0x5e200000, 0x84000040, 0x5838002c, 0xcb0000f8, 0xdfe800f8, 0x00000000, 0x58380014, 0xcf0000f8, + 0x80000058, 0xc2a1fffe, 0x5aa9fffe, 0x58380000, 0xc90000f8, 0xc00049a0, 0xcb0000f8, 0xc2c00000, + 0xc52d0038, 0x732d8000, 0xcf0000f8, 0x5838000a, 0xce8000f8, 0xc3000000, 0xc0000a14, 0xcb040028, + 0xc2d00002, 0xc0000a28, 0xcec50800, 0xc000494e, 0xca8000f8, 0x58880002, 0xb4b00018, 0xc00048a0, + 0xc0800000, 0xcc8400f8, 0x5ea80000, 0x8400017a, 0x5e200000, 0x84000168, 0xc000493c, 0xca8000f8, + 0x00000000, 0x00000000, 0x5aa80060, 0xce8000f8, 0x99005f88, 0xdbd800f8, 0xdb9800f9, 0xc78000f8, + 0x99006188, 0xdbd800f8, 0xdb9800f9, 0xc78000f8, 0x58380000, 0xcac000f8, 0x00000000, 0xc2000000, + 0xc6e04018, 0xc0004952, 0xcac000f8, 0x58380000, 0xca8000f8, 0xc30c0002, 0xc6300018, 0xa6800098, + 0x00000000, 0x00000000, 0xc161fffe, 0x5955fffe, 0x14140000, 0x00000000, 0xc0001800, 0xca0000f8, + 0x00000000, 0x00000000, 0xa60cffea, 0xc6f00500, 0xc6b0c400, 0xcf0000f8, 0x00000000, 0xc121fffe, + 0x5911fe14, 0x14100000, 0x8000c9c8, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x8000c960, + 0xdcbc00f9, 0x5ffc0000, 0x84000052, 0xc3800002, 0xdb8800f9, 0x5ffc0004, 0x8400c292, 0xc3800000, + 0xdb8800f9, 0xc3ce0002, 0xc0000800, 0xcfc0e700, 0xc3e1fffe, 0x597dfffe, 0x593dfe14, 0x94000001, + 0x00000000, 0x00000000, 0x00000000, 0xc000487c, 0xc80400f8, 0x00000000, 0x00000000, 0x40080000, + 0xcbc000f8, 0xc43800f8, 0x00000000, 0xc000480e, 0xca0000f8, 0xc0004858, 0xcb4400f8, 0x00000000, + 0x00000000, 0x47610000, 0x880000b0, 0x00000000, 0xa7c00048, 0xc0004854, 0xc1000002, 0xcd0400f8, + 0xc11c0000, 0xc000082c, 0xcd05ce00, 0x800000d8, 0x00000000, 0xa7d20138, 0x00000000, 0xc7e14040, + 0xc2400000, 0xc6246028, 0xc200006a, 0x46250000, 0xc6240030, 0xc0000810, 0xce440030, 0x8000ff70, + 0xc2000000, 0xc0000808, 0xca040010, 0xc11c0000, 0xc000082c, 0xcd05ce00, 0x5a200002, 0x5e600010, + 0x84000010, 0xc2000000, 0xc0000808, 0xce040010, 0xc3400000, 0x80000028, 0xc1200002, 0xc0000818, + 0xcd061000, 0x5b740002, 0xc0004858, 0xcf4400f8, 0x99005590, 0xc0004848, 0xc94400f8, 0xc1800000, + 0xc11c0002, 0xc000082c, 0xcd05ce00, 0x80000600, 0x5b740002, 0xc0004858, 0xcf4400f8, 0xc78000f8, + 0xc13c0002, 0xcd03de00, 0xc0004848, 0xc94400f8, 0xc1800000, 0xc000082c, 0xc9840028, 0x59540002, + 0xc0004848, 0xcd4400f8, 0x58880002, 0xb4980580, 0x00000000, 0xc0800000, 0x80000568, 0xc000487c, + 0xc80400f8, 0x00000000, 0x00000000, 0x40080000, 0xcbc000f8, 0xc42800f8, 0x00000000, 0xa7c00130, + 0xc000484c, 0xca0400f8, 0xc2400000, 0xc0001aec, 0xca440018, 0x5a200002, 0xc000484c, 0xce0400f8, + 0xb624008a, 0xc68000f8, 0xc13c0002, 0xcd03de00, 0xc0004848, 0xc94400f8, 0xc1800000, 0xc000082c, + 0xc9840028, 0x59540002, 0xc0004848, 0xcd4400f8, 0x58880002, 0xb4980470, 0x00000000, 0xc0800000, + 0x80000458, 0xc0004854, 0xc1000004, 0xcd0400f8, 0xc0000820, 0xc2000002, 0xce0400f8, 0xc2000000, + 0xc000484c, 0xce0400f8, 0xc0004858, 0xce0400f8, 0x8000ff28, 0xc0004854, 0xc1000000, 0xcd0400f8, + 0xc11c0000, 0xc000082c, 0xcd05ce00, 0x99005590, 0xc0004848, 0xc94400f8, 0xc1800000, 0xc1200000, + 0xc0000818, 0xcd061000, 0xc11c0002, 0xc000082c, 0xcd05ce00, 0xc2000000, 0xc000484c, 0xce0400f8, + 0x80000358, 0xc0001ac0, 0xcb8400f8, 0xc000487c, 0xc80400f8, 0x00000000, 0x00000000, 0x40080000, + 0xcbc000f8, 0xc42800f8, 0x00000000, 0x00000000, 0xc68000f8, 0xc13c0000, 0xcd03de00, 0xa780024a, + 0x00000000, 0x00000000, 0xa7c0020a, 0x00000000, 0xc0001b00, 0xc2060006, 0xce046308, 0xa7e801c2, + 0x00000000, 0xc0004850, 0xca0400f8, 0xc2400000, 0xc0001aec, 0xca448018, 0x5a200002, 0xc0004850, + 0xce0400f8, 0xb62400aa, 0x00000000, 0xc68000f8, 0xc13c0002, 0xcd03de00, 0xc0001acc, 0xc2000002, + 0xce040000, 0xc0004848, 0xc94400f8, 0xc1800000, 0xc000082c, 0xc9840028, 0x59540002, 0xc0004848, + 0xcd4400f8, 0x58880002, 0xb49801c8, 0x00000000, 0xc0800000, 0x800001b0, 0xc0004854, 0xc1000000, + 0xcd0400f8, 0xc11c0000, 0xc000082c, 0xcd05ce00, 0x99005590, 0xc0004848, 0xc94400f8, 0xc1800000, + 0xc2000000, 0xc0000820, 0xce0400f8, 0xc1200000, 0xc0000818, 0xcd061000, 0xc11c0002, 0xc000082c, + 0xcd05ce00, 0xc0004850, 0xce0400f8, 0xc2000002, 0xc0001acc, 0xce040008, 0x800000e8, 0xc2000002, + 0xc0004850, 0xce0400f8, 0x8000fe88, 0xc2000000, 0xc0004850, 0xce0400f8, 0xa7e60032, 0x00000000, + 0xc2000002, 0xc0001b00, 0xce040000, 0x8000fe70, 0x00000000, 0xa7860052, 0x00000000, 0xc68000f8, + 0xc13c0002, 0xcd03de00, 0xc2020002, 0xc7e2a540, 0xc0001b00, 0xce0400f8, 0x8000fe18, 0xc2040002, + 0xc0001b00, 0xce044200, 0x8000fdf8, 0xc2c80002, 0x6ac56000, 0xdacc00f8, 0xc0004854, 0xcb4400f8, + 0xc0004848, 0xcb8400f8, 0xc0000838, 0xc3c00000, 0xcbc40028, 0x5ef40004, 0x84000022, 0xc3000000, + 0xc0001acc, 0xcf042100, 0x47f98000, 0x8400002a, 0x47f98000, 0x88000030, 0xc1006e8c, 0x8000b6c8, + 0xc0004840, 0xcc8400f8, 0x8000f6b0, 0xc0001ac0, 0xcac400f8, 0xc0004854, 0xcb4400f8, 0xa6c0fbd2, + 0x00000000, 0x5ef40000, 0x8400f70a, 0x5ef40002, 0x8400f99a, 0x5ef40004, 0x8400fb9a, 0xc1006ce8, + 0x8000b640, 0x00000000, 0xc0800000, 0xdf4b0038, 0xc0004900, 0xcb8000f8, 0xc2000000, 0xc000490a, + 0xa78000d0, 0xcbc000f8, 0xc1000000, 0xd90000f9, 0xc1000002, 0xd90c00f8, 0x6ff46000, 0x477da000, + 0x5b744c80, 0xc2400000, 0x58340004, 0xca400078, 0xc0004900, 0xce000000, 0x5a640002, 0x58340004, + 0xc6500078, 0xcd000078, 0xc0004914, 0xca4000f8, 0xc2000002, 0x6a3d0000, 0x72612000, 0xce4000f8, + 0xc0000408, 0xce0000f8, 0xa78200d8, 0xc0004908, 0xcbc000f8, 0xc1000000, 0xd90000f9, 0xc1000002, + 0xd90c00f8, 0x6ff4a000, 0x6fd44000, 0x4755a000, 0x477da000, 0x5b747000, 0xc2800000, 0x58340006, + 0xca800078, 0xc2000000, 0xc0004900, 0xce002100, 0x5ea80002, 0x58340006, 0xc6900078, 0xcd000078, + 0x5a7c0020, 0xc2000002, 0x6a250000, 0xc0000408, 0xce0000f8, 0xdca800f9, 0x5ea80000, 0x8400b4b0, + 0x00000000, 0xa4800230, 0x00000000, 0xc3c00000, 0xc000140e, 0xcbc00018, 0xc3400000, 0xc2400000, + 0x6ff86000, 0x47bdc000, 0x5bb84c80, 0x58380008, 0xcb400078, 0x58380006, 0xca400078, 0x5f740002, + 0x58380008, 0xc7500078, 0xcd000078, 0xc2000000, 0x58380004, 0xca020078, 0xc3000000, 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0x00000000, 0x00000000, 0xd95800f8, 0x6d586000, 0x4594c000, + 0x59984c80, 0xd99800f9, 0x5818000a, 0xc1800000, 0xc9800078, 0xc0006e00, 0x6d5ca000, 0x401c0000, + 0x40180000, 0xc94000f8, 0x58000002, 0x00000000, 0xc9c000f8, 0xc0004930, 0xcd4000f8, 0xc0004932, + 0xcdc000f8, 0x59980004, 0xc1c20020, 0xb59c0018, 0x00000000, 0xc1800000, 0xdd9c00f9, 0x581c000a, + 0xcd800078, 0x581c000c, 0xc1800000, 0xc9800020, 0xc1c00002, 0xdd9400f8, 0x69d4e000, 0x5d980002, + 0xcd800020, 0xc0004924, 0xc98000f8, 0x00000000, 0x9d000000, 0x00000000, 0x719cc000, 0xcd8000f8, + 0xc000492a, 0xc94000f8, 0xc1c00002, 0x69d8e000, 0x7dc0c000, 0x7558a000, 0xcd4000f8, 0xc000492c, + 0xc94000f8, 0xdd8000f9, 0x58000032, 0x755ca000, 0x84000090, 0xc94000f9, 0xc98000f8, 0xdd8000f9, + 0x5800000c, 0x00000000, 0xcd4000f9, 0xcd8000f8, 0xc000492c, 0xc94000f8, 0xc000492a, 0xc98000f8, + 0x715ca000, 0xc000492c, 0xcd4000f8, 0x719cc000, 0xc000492a, 0xcd8000f8, 0x9d000000, 0x00000000, + 0x00000000, 0x00000000, 0xc0004862, 0xc98000f8, 0x00000000, 0xc1c00200, 0x4194c000, 0x459ce000, + 0x88000012, 0xc5d800f8, 0xc0004862, 0xcd8000f8, 0xc0001406, 0xc98000f8, 0xc1c00002, 0x9d000000, + 0xc5d80a00, 0xc5581048, 0xcd8000f8, 0xc0004930, 0xc98000f8, 0xc0004932, 0xc9c000f8, 0xc140000e, + 0xc5581c18, 0xdd9400f8, 0xc0007800, 0x40140000, 0x5d407a00, 0x88000012, 0x5c000200, 0xcd8000f8, + 0x58000002, 0x5d407a00, 0x88000012, 0x5c000200, 0xcdc000f8, 0xdd5400f8, 0xc1c00000, 0x58140006, + 0xc9c20078, 0xc1800000, 0x58140000, 0xc98000d8, 0x6ddc2000, 0xc000491e, 0x41d8e000, 0xcdc000f8, + 0xdd9800f8, 0xc1c00022, 0xc5d80d70, 0xdd9400f9, 0xc5581c18, 0xc000491c, 0xcd8000f8, 0xdd5400f8, + 0xc1c00000, 0x58140006, 0xc9c20078, 0xc1800000, 0x58140004, 0xc9820078, 0x00000000, 0x59dc0002, + 0x45d8c000, 0x84000010, 0xc1c00000, 0x9d000000, 0x58140006, 0xc5d81078, 0xcd821078, 0xc0004860, + 0xc94000f8, 0xc1820080, 0xc1d00002, 0x58147700, 0xd58000f8, 0x58000002, 0xd58000f9, 0x59540004, + 0xb5580018, 0xc0004860, 0xc1400000, 0xcd4000f8, 0xdd9800f9, 0x9d000000, 0xdd9400f8, 0xc0001404, + 0xcdc10800, 0xc1c00000, 0xc1800200, 0x5d980004, 0xdf5d0048, 0x459ca000, 0x8800fff2, 0xdd8000f9, + 0x5800000c, 0x00000000, 0xc94000f9, 0xc98000f8, 0xc1c00002, 0xc5d43f00, 0xc5d81e00, 0xc0004862, + 0xc9c000f8, 0x00000000, 0x00000000, 0x581c7800, 0x5dc07a00, 0x88000012, 0x5c000200, 0xcd4000f8, + 0x58000002, 0x5dc07a00, 0x88000012, 0x5c000200, 0xcd8000f8, 0xc0004862, 0xc9c000f8, 0x00000000, + 0xc15004c0, 0xc5d40060, 0xdd9c00f8, 0xc5d41c18, 0xc1c00000, 0xdd8000f9, 0x58000030, 0xc9c00078, + 0xdd8000f9, 0x58000002, 0xc98000f8, 0x6ddc2000, 0xc000491c, 0x41d8e000, 0xcd4000f9, 0xcdc000f8, + 0xdd9400f9, 0xc1c00000, 0x58140030, 0xc9c00078, 0xc1800000, 0x58140006, 0xc9820078, 0x00000000, + 0x59dc0002, 0x45d8c000, 0x84000010, 0xc1c00000, 0x9d000000, 0x58140030, 0xc5d80078, 0xcd800078, + 0xc1c00000, 0xdf5c0038, 0x5ddc0080, 0x8400ffea, 0x00000000, 0x9d000000, 0x00000000, 0x00000000, + 0x00000000, 0xc160fffe, 0xc0000a10, 0xc9440060, 0xc1a0fffe, 0x59983008, 0xc000100c, 0xcd4000f8, + 0xc000100e, 0xcd8000f8, 0xc0004964, 0xc98000f8, 0x00000000, 0xc170000a, 0x7158a000, 0x6c988000, + 0x4588c000, 0x4588c000, 0x59980004, 0xc5940270, 0xc0001010, 0xcd4000f8, 0xc0004946, 0xc94000f8, + 0x00000000, 0x00000000, 0x6d58a000, 0x6d5c4000, 0x459cc000, 0x4594c000, 0xc000494a, 0xc94000f8, + 0xc0004948, 0xc9c000f8, 0x4194c000, 0xc1400012, 0xc55c1818, 0x9d000000, 0xc59c0268, 0xc0001012, + 0xcdc000f8, 0xc1400000, 0x58000012, 0xc9410038, 0xc0004950, 0xc9c000f8, 0xc55800f8, 0xc5940838, + 0xc5581078, 0xd99400f8, 0xc000493c, 0xc94000f8, 0xc0004954, 0xc98000f8, 0x59dc00a8, 0x45d4e000, + 0x41d8e000, 0x5d5c0030, 0x88000010, 0xc1c00030, 0xc1800000, 0xc5d84028, 0xc1400000, 0xc5d40008, + 0x5dd40002, 0x84000072, 0x5dd40004, 0x8400009a, 0x5dd40006, 0x840000c2, 0x5dd80026, 0x840000ea, + 0xdd5400f8, 0xdd8000f9, 0x58000008, 0x40180000, 0xcd4000f8, 0x59980002, 0x8000ffc0, 0xdd5400f8, + 0xdd8000f9, 0x58000008, 0x40180000, 0xcd4000b8, 0x59980002, 0x8000ff88, 0xdd5400f8, 0xdd8000f9, + 0x58000008, 0x40180000, 0xcd400078, 0x59980002, 0x8000ff50, 0xdd5400f8, 0xdd8000f9, 0x58000008, + 0x40180000, 0xcd400038, 0x59980002, 0x8000ff18, 0x00000000, 0x9d000000, 0x00000000, 0x00000000, + 0x00000000, 0x58000012, 0xc94000f8, 0xc0004954, 0xc9c000f8, 0xc0004950, 0xc9400078, 0xdd8000f9, + 0x58000028, 0x5d9c0000, 0x84000052, 0x5d9c0002, 0x84000052, 0x5d9c0004, 0x8400006a, 0xc55b0038, + 0xc55c08b8, 0xcd800039, 0xcdc108b8, 0x80000060, 0xcd4000f8, 0x80000050, 0xc55900b8, 0xc55c1838, + 0xcd8000b9, 0xcdc31838, 0x80000028, 0xc55a0078, 0xc55c1078, 0xcd800079, 0xcdc21078, 0x9d000000, + 0x00000000, 0x00000000, 0x00000000, 0x59540002, 0x6994e018, 0x61c0c008, 0x4194a000, 0x5d940040, + 0x88000012, 0xc59400f8, 0x9d000000, 0xcd4000f8, 0x00000000, 0x00000000, 0x9d000000, 0x4158a000, + 0xcd4000f8, 0x00000000, +}; + +static unsigned int ar9_fw_data[] = { +}; + + +#endif // IFXMIPS_ATM_FW_AR9_H diff --git a/package/kernel/lantiq/ltq-atm/src/ifxmips_atm_fw_ar9_retx.h b/package/kernel/lantiq/ltq-atm/src/ifxmips_atm_fw_ar9_retx.h new file mode 100644 index 0000000..51e4f9c --- /dev/null +++ b/package/kernel/lantiq/ltq-atm/src/ifxmips_atm_fw_ar9_retx.h @@ -0,0 +1,611 @@ +#ifndef IFXMIPS_ATM_FW_AR9_H +#define IFXMIPS_ATM_FW_AR9_H + + +/****************************************************************************** +** +** FILE NAME : ifxmips_atm_fw_ar9.h +** PROJECT : UEIP +** MODULES : ATM (ADSL) +** +** DATE : 22 OCT 2007 +** AUTHOR : Xu Liang +** DESCRIPTION : ATM Driver (PP32 Firmware) +** COPYRIGHT : Copyright (c) 2006 +** Infineon Technologies AG +** Am Campeon 1-12, 85579 Neubiberg, Germany +** +** This program is free software; you can redistribute it and/or modify +** it under the terms of the GNU General Public License as published by +** the Free Software Foundation; either version 2 of the License, or +** (at your option) any later version. +** +** HISTORY +** $Date $Author $Comment +** 22 OCT 2007 Xu Liang Initiate Version, v00.01 +*******************************************************************************/ + + +#define VER_IN_FIRMWARE 1 + +#define ATM_FW_VER_MAJOR 0 +#define ATM_FW_VER_MINOR 15 + + +static unsigned int firmware_binary_code[] = { + 0x800004B8, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x8000FFE0, 0x00000000, 0x00000000, 0x00000000, + 0xC1000002, 0xD90C00F8, 0xC2000002, 0xDA0800F9, 0xC0001B50, 0x8C100000, 0x00000000, 0x00000000, + 0x00000000, 0xC2000000, 0xDA0800F9, 0x80006030, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x80006008, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0xC1001DA6, 0x8D3C0000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x80005F08, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0xC0400000, 0xC0004840, 0xC88400F8, 0xC2001AEE, 0x8E100000, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0xC0400002, 0xC0004840, 0xC88400F8, 0xC2001AEE, 0x8E100000, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0xC3C00004, 0xDBC800F9, 0xC10C0002, 0xD90C00F8, 0x8000FEE0, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0xC10E0002, 0xD90C00F8, 0xC0004808, 0xC84000F8, 0xC2001B4C, 0x8E100000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0xC3E1FFFE, 0x597DFFFE, 0x593DFE14, 0x900004D9, 0x00000000, 0x00000000, 0x00000000, 0x90CC0481, + 0x00000000, 0x00000000, 0x00000000, 0xC3E0A252, 0x5BFC001E, 0xC0004002, 0xCFC000F8, 0xC3C00000, + 0xDBC800F9, 0xC1400008, 0xC1900000, 0x71588000, 0x14100100, 0xC140000A, 0xC1900002, 0x71588000, + 0x14100100, 0xC140000C, 0xC1900004, 0x71588000, 0x14100100, 0xC1400004, 0xC1900006, 0x71588000, + 0x14100100, 0xC1400006, 0xC1900008, 0x71588000, 0x14100100, 0xC140000E, 0xC190000A, 0x71588000, + 0x14100100, 0xC1400000, 0xC190000C, 0x71588000, 0x14100100, 0xC1400002, 0xC190000E, 0x71588000, + 0x14100100, 0xC0400000, 0xC11C0000, 0xC000082C, 0xCD05CE00, 0xC11C0002, 0xC000082C, 0xCD05CE00, + 0xC0400002, 0xC11C0000, 0xC000082C, 0xCD05CE00, 0xC0000824, 0x00000000, 0xCBC000F9, 0xCB8000F9, + 0xCB4000F9, 0xCB0000F8, 0xC0004878, 0x5BFC4000, 0xCFC000F9, 0x5BB84000, 0xCF8000F9, 0x5B744000, + 0xCF4000F9, 0x5B304000, 0xCF0000F8, 0xC0000A10, 0x00000000, 0xCBC000F9, 0xCB8000F8, 0xC0004874, + 0x5BFC4000, 0xCFC000F9, 0x5BB84000, 0xCF8000F8, 0xC30001FE, 0xC000140A, 0xCF0000F8, 0xC3000000, + 0x7F018000, 0xC000042E, 0xCF0000F8, 0xC000040E, 0xCF0000F8, 0xC3C1FFFE, 0xC000490E, 0xCFC00078, + 0xC000492C, 0xCFC00078, 0xC0004924, 0xCFC00038, 0xC0004912, 0xCFC00038, 0xC0004966, 0xCFC00038, + 0xC0004968, 0xCFC00078, 0xC000496A, 0xCFC00078, 0xC3C00000, 0xC2800020, 0xC3000000, 0x7F018000, + 0x6FF88000, 0x6FD44000, 0x4395C000, 0x5BB84A00, 0x5838000A, 0xCF0000F8, 0x5BFC0002, 0xB7E8FFC8, + 0x00000000, 0xC3C00000, 0xC2800010, 0x6FF86000, 0x47BDC000, 0x5BB84C80, 0xC3400000, 0x58380004, + 0xCB420078, 0x00000000, 0x58380008, 0xCF400078, 0x5BFC0002, 0xB7E8FFB0, 0x00000000, 0xC3C00000, + 0xC2800020, 0xC348001E, 0xC3000000, 0x7F018000, 0x6FF8A000, 0x6FD44000, 0x4795C000, 0x47BDC000, + 0x5BB87000, 0x58380008, 0xCF408418, 0x5838000A, 0xCF0000F8, 0x5BFC0002, 0xB7E8FFB0, 0x00000000, + 0x00000000, 0xC0004816, 0xC3C00000, 0xCBC00078, 0x00000000, 0x00000000, 0xC1000000, 0xD90400F9, + 0xDBC40078, 0xC1000006, 0xD90400F9, 0x00000000, 0xC121FFFE, 0x5911FE54, 0x14100000, 0xC3C00000, + 0xDCFC2000, 0x5FFC0002, 0x00000000, 0x98C08D62, 0xC0004730, 0xC94000F8, 0xC0004732, 0xC0001AF2, + 0xCBC000F8, 0x00000000, 0x00000000, 0xA7C20470, 0xC000474A, 0xCA8000F8, 0x00000000, 0x00000000, + 0x5D280000, 0x8400FFE0, 0x00000000, 0xC121FFFE, 0x5911FEF4, 0x14100000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0xC2802000, 0x6EA8E010, 0xC0004200, 0xC2400000, 0x7E410000, 0xC1000000, 0xCE4000F9, 0xCE4000F9, + 0xCE4000F9, 0xCE4000F9, 0x5EA80002, 0x8400FFD8, 0xC0004300, 0xC2800200, 0x6EA84010, 0xCE4000F9, + 0xCE0000F9, 0xCE4000F9, 0xCE0000F9, 0xCE4000F9, 0xCE0000F9, 0xCE4000F9, 0xCE0000F9, 0x5EA80002, + 0x8400FFB8, 0xC0004700, 0xC2800200, 0x6EA8E010, 0xCE4000F9, 0xCE4000F9, 0xCE4000F9, 0xCE4000F9, + 0x5EA80002, 0x8400FFD8, 0xC0004740, 0xCE4000F8, 0xC0004742, 0xC1000200, 0x5D100002, 0xCD0000F8, + 0xC0004744, 0xCE4000F8, 0xC0004746, 0xCE4000F8, 0xC0004748, 0xCE4000F8, 0xC000474A, 0xCE4000F8, + 0xC000474C, 0xC1000002, 0xCD0000F8, 0xC000474E, 0xCE4000F8, 0xC0004750, 0xCE4000F8, 0xC0004752, + 0xCE4000F8, 0xC0004754, 0xCE4000F8, 0xC0400000, 0xC11C0000, 0xC000082C, 0xCD05CE00, 0xC0000838, + 0xCE4000F8, 0xC0000818, 0xCE4000F8, 0xC0000820, 0xCE4000F8, 0xC2804840, 0xC240485A, 0x98C086B0, + 0xC68000F8, 0xC65400F8, 0xC1800000, 0xC11C0002, 0xC000082C, 0xCD05CE00, 0x00000000, 0xC121FFFE, + 0x5911FE54, 0x14100000, 0xC0000A10, 0xCB8000F8, 0xC0000A12, 0xCB4000F8, 0xC0000A14, 0xCB0000F8, + 0xC0000A16, 0xCAC000F8, 0xC0000040, 0xC2800000, 0xCE800000, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0xC2800002, + 0xCE800000, 0xC0000A10, 0xCF8000F8, 0xC0000A12, 0xCF4000F8, 0xC0000A14, 0xCF0000F8, 0xC0000A16, + 0xCEC000F8, 0xC1000000, 0xC00048A0, 0xCD0000F8, 0xC00048A2, 0xCD0000F8, 0xC0001AF2, 0xC1000000, + 0xCD002100, 0x80001038, 0x00000000, 0xC3C00000, 0xDCFC2000, 0x5FFC0002, 0x00000000, 0x98C08D62, + 0xC0004730, 0xC94000F8, 0xC0004732, 0x800033D8, 0x00000000, 0xC3C00000, 0xDCFC2000, 0x5FFC0002, + 0x00000000, 0x98C08D62, 0xC0004730, 0xC94000F8, 0xC0004732, 0xC0004810, 0xC90000F8, 0xC000474A, + 0xC94000F8, 0xA50007E8, 0x00000000, 0x5D140002, 0x840007D2, 0xC1000000, 0xC000484A, 0xC90000F8, + 0xC0004740, 0xC84000F8, 0x5D100000, 0x84000798, 0x00000000, 0x00000000, 0xC121FFFE, 0x5911FEF4, + 0x14100000, 0xC0004744, 0xC88000F8, 0xC0001AF0, 0xC3000000, 0x58000002, 0xCB010038, 0x6C7C2000, + 0x5BFC4300, 0x98C08A88, 0xC1400000, 0xC4540020, 0x6C40A010, 0x5D240002, 0x8400021A, 0x00000000, + 0xC0004742, 0xCA8000F8, 0x00000000, 0x00000000, 0x59280002, 0x6D130000, 0x6D130010, 0x45048000, + 0x84000692, 0x00000000, 0x98C08870, 0xC45400F8, 0xC69800F8, 0xC241FFFE, 0xC67400F8, 0x5D35FFFE, + 0x84000652, 0x47448000, 0x84000642, 0xC1000000, 0x6F502000, 0xC0004300, 0x40100000, 0xC1400000, + 0x58000000, 0xC9410038, 0xC1800000, 0xC0004814, 0xC9820038, 0x4714A000, 0xC10001FE, 0x4150A004, + 0x45588000, 0x880005CA, 0x4744C000, 0xC1000200, 0x4190C004, 0xC000473E, 0xC90000F8, 0x00000000, + 0x00000000, 0x41188000, 0xCD0000F8, 0xC000471C, 0xC90000F8, 0x00000000, 0x00000000, 0x41188000, + 0xCD0000F8, 0x98C087E8, 0xC45400F8, 0x6C58A010, 0xC0004700, 0x58440002, 0x6C470000, 0x6C470010, + 0x44748000, 0x8400FFC0, 0xC74400F8, 0xC0004740, 0xCC4000F8, 0xC0800000, 0xC0004744, 0xCC8000F8, + 0x800004D0, 0xC1000000, 0x583C0000, 0xC9000038, 0x00000000, 0x00000000, 0x44908000, 0x88000280, + 0xC1400000, 0x583C0000, 0xC9410038, 0xC1800000, 0xC0004814, 0xC9800038, 0x4714A000, 0xC10001FE, + 0x4150A004, 0x45588000, 0x88000442, 0xC3800000, 0x583C0002, 0xCB820078, 0xC1000000, 0x583C0002, + 0xC9000078, 0x00000000, 0x00000000, 0x47908000, 0x8400024A, 0xC0400002, 0xC0800000, 0xC3C00000, + 0xC000481A, 0xC80000F8, 0x6F908000, 0x45388000, 0x45388000, 0x4011E000, 0xC000491E, 0xCFC000F8, + 0xC3400000, 0xC0004878, 0xC80400F8, 0x6C908000, 0x45088000, 0x45088000, 0x40100000, 0xCAC000F8, + 0xC43000F8, 0x00000000, 0xC7340060, 0xC1000002, 0xC5341B00, 0xC100001C, 0xC5341048, 0xC100000C, + 0xC5340D10, 0xC000491C, 0xCF4000F8, 0xC3000000, 0xDF700038, 0x5D300080, 0x8800FFE8, 0xC000474A, + 0xC1000002, 0xCD0000F8, 0xC000491C, 0xCB4000F8, 0xC000491E, 0xCBC000F8, 0x99007F18, 0xDB5800F8, + 0xDBD800F9, 0x00000000, 0xC1400000, 0xC794A030, 0xC1800000, 0xC7980020, 0x58144200, 0xC9C000F8, + 0xC1210000, 0x69188010, 0x7D008000, 0x75D0E000, 0xCDC000F8, 0x80000228, 0x00000000, 0xC1000000, + 0x583C0000, 0xC903E000, 0x00000000, 0x00000000, 0x5D100000, 0x84000042, 0xC0004734, 0xC90000F8, + 0x00000000, 0x00000000, 0x59100002, 0xCD0000F8, 0x800000C0, 0xC1400000, 0x583C0000, 0xC9410038, + 0xC1800000, 0xC0004814, 0xC9820038, 0x4714A000, 0xC10001FE, 0x4150A004, 0x45588000, 0x8800015A, + 0xC000473E, 0xC90000F8, 0x00000000, 0x00000000, 0x59100002, 0xCD0000F8, 0xC000471C, 0xC90000F8, + 0x00000000, 0x00000000, 0x59100002, 0xCD0000F8, 0xC3800000, 0x583C0002, 0xCB820078, 0x00000000, + 0x00000000, 0x5D39FFFE, 0x84000062, 0xC1400000, 0xC794A030, 0xC1800000, 0xC7980020, 0x58144200, + 0xC9C000F8, 0xC1210000, 0x69188010, 0x7D008000, 0x75D0E000, 0xCDC000F8, 0x98C087E8, 0xC45400F8, + 0x6C58A010, 0xC0004700, 0x58440002, 0x6C470000, 0x6C470010, 0xC0004740, 0xCC4000F8, 0xC0800000, + 0xC0004744, 0xCC8000F8, 0x00000000, 0xC121FFFE, 0x5911FE54, 0x14100000, 0x8000F288, 0x00000000, + 0x00000000, 0x98C086F0, 0xC0004748, 0xC98000F8, 0xC2000000, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0xC1400000, 0xC7D4A030, 0xC1800000, 0xC7D80020, 0x58144200, + 0xC9C000F8, 0xC1210000, 0x69188010, 0x7D008000, 0x75D0E000, 0xCDC000F8, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x98C087E8, 0xC7D400F8, 0x6FD8A010, 0xC0004700, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x98C08870, 0xC7D400F8, 0xC79800F8, 0xC241FFFE, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x98C08A88, 0xC1400000, 0xC7D40020, 0x6FC0A010, + 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0x6A310000, 0xC000042A, + 0xCE0000F8, 0xC1040002, 0xD90C00F8, 0x00000000, 0x8000E7E8, 0x00000000, 0xC4980928, 0x9D000000, + 0xC5580028, 0xC0000838, 0xCD8400F8, 0xC1440200, 0xC1C03800, 0xC55C1070, 0xC000100E, 0x9D000000, + 0xCD8000F8, 0xC000100C, 0xCDC000F8, 0xC0004862, 0xC9C000F8, 0x00000000, 0x00000000, 0xD9D800F9, + 0xC0007800, 0x401C0000, 0x5DC07A00, 0x88000012, 0x5C000200, 0xCD8000F8, 0xC1F0000A, 0x715CA000, + 0xDD9800F8, 0xDD9C00F9, 0x41D8E000, 0xC5D40260, 0xC0001010, 0xCD4000F8, 0x6C9C8000, 0x45C8E000, + 0x45C8E000, 0x59DC0004, 0xC1601260, 0xC5D40260, 0x9D000000, 0xC0001012, 0xCD4000F8, 0x00000000, + 0x00000000, 0xD95800F8, 0x6D586000, 0x4594C000, 0x59984C80, 0xD99800F9, 0x5818000A, 0xC1800000, + 0xC9800078, 0xC0006E00, 0x6D5CA000, 0x401C0000, 0x40180000, 0xC94000F8, 0x58000002, 0x00000000, + 0xC9C000F8, 0xC0004930, 0xCD4000F8, 0xC0004932, 0xCDC000F8, 0x59980004, 0xC1C20020, 0xB59C0018, + 0x00000000, 0xC1800000, 0xDD9C00F9, 0x581C000A, 0xCD800078, 0x581C000C, 0xC1800000, 0xC9800020, + 0xC1C00002, 0xDD9400F8, 0x69D4E000, 0x5D980002, 0xCD800020, 0xC0004924, 0xC98000F8, 0x00000000, + 0x9D000000, 0x00000000, 0x719CC000, 0xCD8000F8, 0xC000492A, 0xC94000F8, 0xC1C00002, 0x69D8E000, + 0x7DC0C000, 0x7558A000, 0xCD4000F8, 0xC000492C, 0xC94000F8, 0xDD8000F9, 0x58000032, 0x755CA000, + 0x84000090, 0xC94000F9, 0xC98000F8, 0xDD8000F9, 0x5800000C, 0x00000000, 0xCD4000F9, 0xCD8000F8, + 0xC000492C, 0xC94000F8, 0xC000492A, 0xC98000F8, 0x715CA000, 0xC000492C, 0xCD4000F8, 0x719CC000, + 0xC000492A, 0xCD8000F8, 0x9D000000, 0x00000000, 0x00000000, 0x00000000, 0xC0004862, 0xC98000F8, + 0x00000000, 0xC1C00200, 0x4194C000, 0x459CE000, 0x88000012, 0xC5D800F8, 0xC0004862, 0xCD8000F8, + 0xC0001406, 0xC98000F8, 0xC1C00002, 0x9D000000, 0xC5D80A00, 0xC5581048, 0xCD8000F8, 0xC0004930, + 0xC98000F8, 0xC0004932, 0xC9C000F8, 0xC140000E, 0xC5581C18, 0xDD9400F8, 0xC0007800, 0x40140000, + 0x5D407A00, 0x88000012, 0x5C000200, 0xCD8000F8, 0x58000002, 0x5D407A00, 0x88000012, 0x5C000200, + 0xCDC000F8, 0xDD5400F8, 0xC1C00000, 0x58140006, 0xC9C20078, 0xC1800000, 0x58140000, 0xC98000D8, + 0x6DDC2000, 0xC000491E, 0x41D8E000, 0xCDC000F8, 0xDD9800F8, 0xC1C00022, 0xC5D80D70, 0xDD9400F9, + 0xC5581C18, 0xC000491C, 0xCD8000F8, 0xDD5400F8, 0xC1C00000, 0x58140006, 0xC9C20078, 0xC1800000, + 0x58140004, 0xC9820078, 0x00000000, 0x59DC0002, 0x45D8C000, 0x84000010, 0xC1C00000, 0x9D000000, + 0x58140006, 0xC5D81078, 0xCD821078, 0xC0004860, 0xC94000F8, 0xC1820080, 0xC1D00002, 0x58147700, + 0xD58000F8, 0x58000002, 0xD58000F9, 0x59540004, 0xB5580018, 0xC0004860, 0xC1400000, 0xCD4000F8, + 0xDD9800F9, 0x9D000000, 0xDD9400F8, 0xC0001404, 0xCDC10800, 0xC1C00000, 0xC1800200, 0x5D980004, + 0xDF5D0048, 0x459CA000, 0x8800FFF2, 0xDD8000F9, 0x5800000C, 0x00000000, 0xC94000F9, 0xC98000F8, + 0xC1C00002, 0xC5D43F00, 0xC5D81E00, 0xC0004862, 0xC9C000F8, 0x00000000, 0x00000000, 0x581C7800, + 0x5DC07A00, 0x88000012, 0x5C000200, 0xCD4000F8, 0x58000002, 0x5DC07A00, 0x88000012, 0x5C000200, + 0xCD8000F8, 0xC0004862, 0xC9C000F8, 0x00000000, 0xC15004C0, 0xC5D40060, 0xDD9C00F8, 0xC5D41C18, + 0xC1C00000, 0xDD8000F9, 0x58000030, 0xC9C00078, 0xDD8000F9, 0x58000002, 0xC98000F8, 0x6DDC2000, + 0xC000491C, 0x41D8E000, 0xCD4000F9, 0xCDC000F8, 0xDD9400F9, 0xC1C00000, 0x58140030, 0xC9C00078, + 0xC1800000, 0x58140006, 0xC9820078, 0x00000000, 0x59DC0002, 0x45D8C000, 0x84000010, 0xC1C00000, + 0x9D000000, 0x58140030, 0xC5D80078, 0xCD800078, 0xC1C00000, 0xDF5C0038, 0x5DDC0080, 0x8400FFEA, + 0x00000000, 0x9D000000, 0x00000000, 0x00000000, 0x00000000, 0xC160FFFE, 0xC0000A10, 0xC9440060, + 0xC1A0FFFE, 0x59983008, 0xC000100C, 0xCD4000F8, 0xC000100E, 0xCD8000F8, 0xC0004964, 0xC98000F8, + 0x00000000, 0xC170000A, 0x7158A000, 0x6C988000, 0x4588C000, 0x4588C000, 0x59980004, 0xC5940270, + 0xC0001010, 0xCD4000F8, 0xC0004946, 0xC94000F8, 0x00000000, 0x00000000, 0x6D58A000, 0x6D5C4000, + 0x459CC000, 0x4594C000, 0xC000494A, 0xC94000F8, 0xC0004948, 0xC9C000F8, 0x4194C000, 0xC1400012, + 0xC55C1818, 0x9D000000, 0xC59C0268, 0xC0001012, 0xCDC000F8, 0xC1400000, 0x58000012, 0xC9410038, + 0xC0004950, 0xC9C000F8, 0xC55800F8, 0xC5940838, 0xC5581078, 0xD99400F8, 0xC000493C, 0xC94000F8, + 0xC0004954, 0xC98000F8, 0x59DC00A8, 0x45D4E000, 0x41D8E000, 0x5D5C0030, 0x88000010, 0xC1C00030, + 0xC1800000, 0xC5D84028, 0xC1400000, 0xC5D40008, 0x5DD40002, 0x84000072, 0x5DD40004, 0x8400009A, + 0x5DD40006, 0x840000C2, 0x5DD80026, 0x840000EA, 0xDD5400F8, 0xDD8000F9, 0x58000008, 0x40180000, + 0xCD4000F8, 0x59980002, 0x8000FFC0, 0xDD5400F8, 0xDD8000F9, 0x58000008, 0x40180000, 0xCD4000B8, + 0x59980002, 0x8000FF88, 0xDD5400F8, 0xDD8000F9, 0x58000008, 0x40180000, 0xCD400078, 0x59980002, + 0x8000FF50, 0xDD5400F8, 0xDD8000F9, 0x58000008, 0x40180000, 0xCD400038, 0x59980002, 0x8000FF18, + 0x00000000, 0x9D000000, 0x00000000, 0x00000000, 0x00000000, 0x58000012, 0xC94000F8, 0xC0004954, + 0xC9C000F8, 0xC0004950, 0xC9400078, 0xDD8000F9, 0x58000028, 0x5D9C0000, 0x84000052, 0x5D9C0002, + 0x84000052, 0x5D9C0004, 0x8400006A, 0xC55B0038, 0xC55C08B8, 0xCD800039, 0xCDC108B8, 0x80000060, + 0xCD4000F8, 0x80000050, 0xC55900B8, 0xC55C1838, 0xCD8000B9, 0xCDC31838, 0x80000028, 0xC55A0078, + 0xC55C1078, 0xCD800079, 0xCDC21078, 0x9D000000, 0x00000000, 0x00000000, 0x00000000, 0x59540002, + 0x6994E018, 0x61C0C008, 0x4194A000, 0x5D940040, 0x88000012, 0xC59400F8, 0x9D000000, 0xCD4000F8, + 0x00000000, 0x00000000, 0x9D000000, 0x4158A000, 0xCD4000F8, 0x00000000, 0xCD8000F9, 0x45408000, + 0x8800FFF0, 0x00000000, 0x9CC00000, 0x00000000, 0x00000000, 0x00000000, 0xC0004810, 0xCA010038, + 0xC241FFFE, 0xC1400000, 0x46148000, 0x00000000, 0x9CC00006, 0xC0004200, 0x40180000, 0xC9C000F8, + 0x00000000, 0x00000000, 0x61C08010, 0x8400005A, 0xC2400002, 0x6A512000, 0x71E4E000, 0xCDC000F8, + 0xC0004748, 0xCD8000F8, 0x9CC00000, 0x6D98A000, 0x5998003E, 0x45912000, 0x59540002, 0x59980002, + 0x46188000, 0xC1000000, 0xC51800FE, 0x8000FF38, 0x00000000, 0x40180000, 0xC9C000F8, 0xC2000000, + 0xC5600020, 0xC1210000, 0x69208010, 0x7D008000, 0x75D0E000, 0xCDC000F8, 0x6D542000, 0x58144300, + 0xC1000000, 0xCD0000F9, 0x9CC00000, 0xC121FFFE, 0x5911FFFE, 0xCD0000F9, 0x79588000, 0x6D10A010, + 0x5D100000, 0x840000C0, 0x45948000, 0x880000B0, 0x6D536000, 0x6D136010, 0x6D54A010, 0xC0004700, + 0x40140000, 0xCA0000F8, 0x00000000, 0x00000000, 0x6A110000, 0x6A110010, 0x62008018, 0x84000032, + 0x00000000, 0x9CC00000, 0x6D54A000, 0x5954003E, 0x45512000, 0x59540002, 0x6D57A000, 0x6D57A010, + 0x6D54A000, 0x6D936000, 0x6D136010, 0xC1E10000, 0x69D0E010, 0x5DDC0002, 0x7DC0E000, 0x6D98A010, + 0x6D536000, 0x6D136010, 0x6D54A010, 0xC0004700, 0x40140000, 0xCA0000F8, 0x00000000, 0x00000000, + 0x6A110000, 0x6A110010, 0x45588000, 0x00000000, 0x761D0002, 0x62008018, 0x84000032, 0x00000000, + 0x9CC00000, 0x6D54A000, 0x5954003E, 0x45512000, 0x45588000, 0x00000000, 0x9CC00002, 0x59540002, + 0x6D57A000, 0x6D57A010, 0xC0004700, 0x40140000, 0xCA0000F8, 0x8000FF68, 0x00000000, 0x00000000, + 0x00000000, 0x58004700, 0xC98000F8, 0x9CC00000, 0x00000000, 0x6994C000, 0x6DA7E010, 0x58004700, + 0xC98000F8, 0xC1210000, 0x9CC00000, 0x69148010, 0x7190C000, 0xCD8000F8, 0xC1000000, 0xC0004810, + 0xC9020038, 0x00000000, 0x00000000, 0x45D0C000, 0x88000062, 0xC2400002, 0x45588000, 0xC1000000, + 0xC52400FC, 0x45D48000, 0xC1000000, 0xC52400FE, 0x9CC00000, 0x00000000, 0x00000000, 0x00000000, + 0x59980200, 0xC2400000, 0x455C8000, 0xC1000002, 0xC52400FC, 0x45948000, 0xC1000002, 0xC52400FE, + 0x9CC00000, 0x00000000, 0x00000000, 0x00000000, 0xC0004740, 0xC9C000F8, 0x59180002, 0x6D130000, + 0x6D130010, 0x451C8000, 0xC2400000, 0x9CC00002, 0x00000000, 0x00000000, 0x459C8000, 0x88000062, + 0xC2400002, 0x455C8000, 0xC1000000, 0xC52400FC, 0x45948000, 0xC1000000, 0xC52400FC, 0x9CC00000, + 0x00000000, 0x00000000, 0x00000000, 0xC2400000, 0x45588000, 0xC1000002, 0xC52400FE, 0x45D48000, + 0xC1000002, 0xC52400FE, 0x9CC00000, 0x00000000, 0x00000000, 0x00000000, 0x59540002, 0x6D570000, + 0x6D570010, 0x45588000, 0x6D402000, 0x9CC00002, 0x58004300, 0x58000000, 0xC13C0002, 0xCD03DE00, + 0x8000FFB0, 0x00000000, 0x00000000, 0x00000000, 0xC1020002, 0xD90C00F8, 0xC98000F8, 0x59540002, + 0xC0004730, 0xCD4000F8, 0x5D980002, 0x00000000, 0x80000036, 0x00000000, 0x9CC00000, 0xC0004732, + 0xCD8000F8, 0x00000000, 0xC0004734, 0xC9C000F8, 0xC1800000, 0xC0004816, 0xC9820078, 0xC0004738, + 0xCDC000F8, 0xC1C00000, 0xC0004734, 0x9CC00000, 0xCDC000F8, 0xC0004732, 0xCD8000F8, +}; + +static unsigned int firmware_binary_data[] = { +}; + + +#endif // IFXMIPS_ATM_FW_AR9_H diff --git a/package/kernel/lantiq/ltq-atm/src/ifxmips_atm_fw_danube.h b/package/kernel/lantiq/ltq-atm/src/ifxmips_atm_fw_danube.h new file mode 100644 index 0000000..57b7586 --- /dev/null +++ b/package/kernel/lantiq/ltq-atm/src/ifxmips_atm_fw_danube.h @@ -0,0 +1,442 @@ +#ifndef IFXMIPS_ATM_FW_DANUBE_H +#define IFXMIPS_ATM_FW_DANUBE_H + + +/****************************************************************************** +** +** FILE NAME : ifxmips_atm_fw_danube.h +** PROJECT : Danube +** MODULES : ATM (ADSL) +** +** DATE : 1 AUG 2005 +** AUTHOR : Xu Liang +** DESCRIPTION : ATM Driver (PP32 Firmware) +** COPYRIGHT : Copyright (c) 2006 +** Infineon Technologies AG +** Am Campeon 1-12, 85579 Neubiberg, Germany +** +** This program is free software; you can redistribute it and/or modify +** it under the terms of the GNU General Public License as published by +** the Free Software Foundation; either version 2 of the License, or +** (at your option) any later version. +** +** HISTORY +** $Date $Author $Comment +** 4 AUG 2005 Xu Liang Initiate Version +** 23 OCT 2006 Xu Liang Add GPL header. +*******************************************************************************/ + + +#define VER_IN_FIRMWARE 1 + +#define ATM_FW_VER_MAJOR 0 +#define ATM_FW_VER_MINOR 17 +// fix 1 upstream packet stuck in TX queue issue +// add multiple queue per PVC feature + + +static unsigned int danube_fw_bin[] = { + 0x800004A0, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x8000FFC8, 0x00000000, 0x00000000, 0x00000000, + 0xC1000002, 0xD90C0000, 0xC2000002, 0xDA080001, 0x80004968, 0xC2000000, 0xDA080001, 0x80003FD0, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x80003F88, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x80005160, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x80003E88, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0xC0400000, 0xC0004840, 0xC8840000, 0x80004628, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0xC0400002, 0xC0004840, 0xC8840000, 0x800045A8, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0xC3C00004, 0xDBC80001, 0xC10C0002, 0xD90C0000, 0x8000FEC8, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0xC10E0002, 0xD90C0000, 0xC0004808, 0xC8400000, 0x800045D8, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0xC3E1FFFE, 0x597DFFFE, 0x593DFE14, 0x900004D9, 0x00000000, 0x00000000, 0x00000000, 0x90CC0481, + 0x00000000, 0x00000000, 0x00000000, 0xC3C00000, 0xDBC80001, 0xC1400008, 0xC1900000, 0x71948000, + 0x15000100, 0xC140000A, 0xC1900002, 0x71948000, 0x15000100, 0xC140000C, 0xC1900004, 0x71948000, + 0x15000100, 0xC1400004, 0xC1900006, 0x71948000, 0x15000100, 0xC1400006, 0xC1900008, 0x71948000, + 0x15000100, 0xC140000E, 0xC190000A, 0x71948000, 0x15000100, 0xC1400000, 0xC190000C, 0x71948000, + 0x15000100, 0xC1400002, 0xC190000E, 0x71948000, 0x15000100, 0xC0400000, 0xC11C0000, 0xC000082C, + 0xCD040E08, 0xC11C0002, 0xC000082C, 0xCD040E08, 0xC0400002, 0xC11C0000, 0xC000082C, 0xCD040E08, + 0xC11C0002, 0xC000082C, 0xCD040E08, 0xC0000824, 0x00000000, 0xCBC00001, 0xCB800001, 0xCB400001, + 0xCB000000, 0xC0004878, 0x5BFC4000, 0xCFC00001, 0x5BB84000, 0xCF800001, 0x5B744000, 0xCF400001, + 0x5B304000, 0xCF000000, 0xC0000A10, 0x00000000, 0xCBC00001, 0xCB800000, 0xC0004874, 0x5BFC4000, + 0xCFC00001, 0x5BB84000, 0xCF800000, 0xC30001FE, 0xC000140A, 0xCF000000, 0xC3000000, 0x7F018000, + 0xC000042E, 0xCF000000, 0xC000040E, 0xCF000000, 0xC3C1FFFE, 0xC000490E, 0xCFC00080, 0xC000492C, + 0xCFC00080, 0xC0004924, 0xCFC00040, 0xC0004912, 0xCFC00040, 0xC0004966, 0xCFC00040, 0xC0004968, + 0xCFC00080, 0xC000496A, 0xCFC00080, 0xC3C1FFFE, 0xC00049A0, 0xCFC00000, 0xC3C00000, 0xC2800020, + 0xC3000000, 0x7F018000, 0x6FF88000, 0x6FD44000, 0x4395C000, 0x5BB84A00, 0x5838000A, 0xCF000000, + 0x5BFC0002, 0xB7E8FFA8, 0x00000000, 0xC3C00000, 0xC2800010, 0x6FF86000, 0x47F9C000, 0x5BB84C80, + 0xC3400000, 0x58380004, 0xCB420080, 0x00000000, 0x58380008, 0xCF400080, 0x5BFC0002, 0xB7E8FF90, + 0x00000000, 0xC3C00000, 0xC2800020, 0xC348001E, 0xC3000000, 0x7F018000, 0x6FF8A000, 0x6FD44000, + 0x4579C000, 0x47F9C000, 0x5BB84E20, 0x58380008, 0xCF400420, 0x5838000A, 0xCF000000, 0x5BFC0002, + 0xB7E8FF90, 0x00000000, 0x00000000, 0xC3E02242, 0x5BFC0022, 0xC0004002, 0xCFC00000, 0x00000000, + 0xC121FFFE, 0x5911FE14, 0x15000000, 0x80000518, 0x00000000, 0x80002118, 0x00000000, 0x8000FFC8, + 0xC0004958, 0xC8400000, 0x00000000, 0xC3C00002, 0x7BC42000, 0xCC400000, 0xC0004848, 0xCB840000, + 0xC000495C, 0xCAC40000, 0xC0004844, 0xC8840000, 0x46F90000, 0x8400FF6A, 0xC000487C, 0xC8040000, + 0x00000000, 0x00000000, 0x40080000, 0xCA000000, 0xC0001624, 0xCB040000, 0xA63C005A, 0x00000000, + 0x00000000, 0xA71EFF02, 0x00000000, 0xC0000824, 0xCA840000, 0x6CA08000, 0x6CA42000, 0x46610000, + 0x42290000, 0xC35E0002, 0xC6340068, 0xC0001624, 0xCF440080, 0xC2000000, 0xC161FFFE, 0x5955FFFE, + 0x15400000, 0x00000000, 0xC0004844, 0xC8840000, 0xC000082C, 0xCA040040, 0x00000000, 0x00000000, + 0x58880002, 0xB608FFF8, 0x00000000, 0xC0800000, 0xC0004844, 0xCC840040, 0x5AEC0002, 0xC000495C, + 0xCEC40000, 0x5E6C0006, 0x84000048, 0xC0004848, 0xCB840000, 0xC0000838, 0xC2500002, 0xCE440808, + 0x5FB80002, 0xC0004848, 0xCF840000, 0x5EEC0002, 0xC000495C, 0xCEC40000, 0x00000000, 0xC121FFFE, + 0x5911FE14, 0x15000000, 0x8000FD80, 0xC000495A, 0xC8400000, 0x00000000, 0xC3C00002, 0x7BC42000, + 0xCC400000, 0xC0004960, 0xCAC40000, 0x00000000, 0x00000000, 0x5EEC0000, 0x840000F2, 0x00000000, + 0xB6FC0030, 0xC0001600, 0xCA040000, 0x00000000, 0x00000000, 0xA61E00B2, 0x6FE90000, 0xC0000A28, + 0xCE840808, 0xC2C00000, 0xC2800004, 0xB6E80080, 0xC0001604, 0xCA840000, 0xC0004960, 0xCEC40000, + 0xA69EFCA2, 0x00000000, 0x6FE90000, 0xC0000A28, 0xCE840808, 0xC2C00002, 0xC0001600, 0xCA040000, + 0x00000000, 0x00000000, 0xA61E000A, 0x6FE90000, 0xC0000A28, 0xCE840808, 0xC2C00000, 0xC0001604, + 0xCA840000, 0xC0004960, 0xCEC40000, 0xA69EFC0A, 0xC2400000, 0xC0000A14, 0xCA440030, 0x00000000, + 0x00000000, 0x46E52000, 0xA4400000, 0xC2800000, 0xDFEB0031, 0x8000FFF8, 0xDFEA0031, 0xB668FB82, + 0x00000000, 0xC00048A0, 0xCB040000, 0xC0000A10, 0xCA840000, 0x6F208000, 0x6F242000, 0x46610000, + 0x42A10000, 0xC2400000, 0xC0000A14, 0xCA440030, 0xC35E0002, 0xC6340068, 0xC0001604, 0xCF440080, + 0x5B300002, 0xB670FFF8, 0x5AEC0002, 0xC3000000, 0xC00048A0, 0xCF040000, 0xC0004960, 0xCEC40000, + 0x8000FAC0, 0xC0004918, 0xD2800000, 0xC2000000, 0xDF600040, 0x5E600080, 0x8400025A, 0x00000000, + 0xC161FFFE, 0x5955FFFE, 0x15400000, 0x00000000, 0xC000480A, 0xCA000000, 0xC0004912, 0xCA400000, + 0xC0004924, 0xCA800000, 0xC0004966, 0xCAC00000, 0x00000000, 0xC121FFFE, 0x5911FE14, 0x15000000, + 0x76610000, 0x76A10000, 0x76E10000, 0x840001B2, 0xC0004918, 0xCA400000, 0xC28001FE, 0x76A10000, + 0x5A640002, 0x6A254010, 0x5EE80000, 0x84000002, 0x6AA54000, 0x8000FFF8, 0xC6280000, 0x62818008, + 0xC0004918, 0xCF000000, 0xC161FFFE, 0x5955FFFE, 0x15400000, 0x00000000, 0xC0004966, 0xCA400000, + 0xC2000002, 0x6A310000, 0x7E010000, 0x76252000, 0xCE400000, 0x00000000, 0xC121FFFE, 0x5911FE14, + 0x15000000, 0x6F346000, 0x4735A000, 0x5B744C80, 0xC2800000, 0x58340006, 0xCA800080, 0xC2C00000, + 0x58340000, 0xCAC000E0, 0xC2400000, 0x5834000A, 0xCA420080, 0x6EA82000, 0x42E9E000, 0x6F2CA000, + 0x42E56000, 0x5AEC1400, 0xC3990040, 0xC7381C20, 0xC6F80068, 0x99005B78, 0xDB980000, 0xDBD80001, + 0x00000000, 0xDEA00000, 0x47210000, 0x8400FD68, 0xC0004958, 0xC8400000, 0x00000000, 0xC3C00002, + 0x7BC42000, 0xCC400000, 0xC0004848, 0xCB840000, 0xC0004844, 0xC8840000, 0x5FB80000, 0x8400F7DA, + 0xC0001A1C, 0xCA000000, 0xC2400002, 0x6A452000, 0x76610000, 0x8400F7AA, 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0xC0004912, 0xCA800000, 0xC2400002, 0x6A712000, 0x72694000, 0xCE800000, 0x5E200000, 0x8400003A, + 0xC000480A, 0xCA000000, 0xC0000408, 0xCA800000, 0x76610000, 0x00000000, 0x72294000, 0xCE800000, + 0x80000020, 0xC0004914, 0xCA000000, 0x7E412000, 0x00000000, 0x76610000, 0xCE000000, 0x800000B8, + 0x6EF4A000, 0x6ED44000, 0x4575A000, 0x46F5A000, 0x5B744E20, 0x5834002E, 0xC2400000, 0xCA420080, + 0x00000000, 0xC2000000, 0x5A640002, 0xC6501080, 0xCD001080, 0x58340006, 0xCA000080, 0x00000000, + 0x00000000, 0x5A200002, 0xCE000080, 0xC0004910, 0xCA400000, 0xC2000002, 0x6A2D0000, 0x72252000, + 0xCE400000, 0xC2000002, 0x6A310000, 0xC000042A, 0xCE000000, 0xC1040002, 0xD90C0000, 0x00000000, + 0x8000EB08, 0x00000000, 0xC4980930, 0x9D000000, 0xC5580030, 0xC0000838, 0xCD840000, 0xC1440200, + 0xC1C03200, 0xC55C1078, 0xC000100E, 0x9D000000, 0xCD800000, 0xC000100C, 0xCDC00000, 0xC0004862, + 0xC9C00000, 0x00000000, 0x00000000, 0xD9D80001, 0xC0007200, 0x401C0000, 0x5DC07400, 0x8800FFFA, + 0x5C000200, 0xCD800000, 0xC1F0000A, 0x71D4A000, 0xDD980000, 0xDD9C0001, 0x41D8E000, 0xC5D40268, + 0xC0001010, 0xCD400000, 0x6C9C8000, 0x449CE000, 0x449CE000, 0x59DC0004, 0xC1601260, 0xC5D40268, + 0x9D000000, 0xC0001012, 0xCD400000, 0x00000000, 0x00000000, 0xD9580000, 0x6D586000, 0x4558C000, + 0x59984C80, 0xD9980001, 0x5818000A, 0xC1800000, 0xC9800080, 0xC0005400, 0x6D5CA000, 0x401C0000, + 0x40180000, 0xC9400000, 0x58000002, 0x00000000, 0xC9C00000, 0xC0004930, 0xCD400000, 0xC0004932, + 0xCDC00000, 0x59980004, 0xC1C20020, 0xB59CFFF8, 0x00000000, 0xC1800000, 0xDD9C0001, 0x581C000A, + 0xCD800080, 0x581C000C, 0xC1800000, 0xC9800028, 0xC1C00002, 0xDD940000, 0x69D4E000, 0x5D980002, + 0xCD800028, 0xC0004924, 0xC9800000, 0x00000000, 0x9D000000, 0x00000000, 0x71D8C000, 0xCD800000, + 0xC000492A, 0xC9400000, 0xC1C00002, 0x69D8E000, 0x7DC0C000, 0x7594A000, 0xCD400000, 0xC000492C, + 0xC9400000, 0xDD800001, 0x58000032, 0x75D4A000, 0x84000078, 0xC9400001, 0xC9800000, 0xDD800001, + 0x5800000C, 0x00000000, 0xCD400001, 0xCD800000, 0xC000492C, 0xC9400000, 0xC000492A, 0xC9800000, + 0x71D4A000, 0xC000492C, 0xCD400000, 0x71D8C000, 0xC000492A, 0xCD800000, 0x9D000000, 0x00000000, + 0x00000000, 0x00000000, 0xC0004862, 0xC9800000, 0x00000000, 0xC1C00200, 0x4194C000, 0x45D8E000, + 0x8800FFFA, 0xC5D80000, 0xC0004862, 0xCD800000, 0xC0001406, 0xC9800000, 0xC1C00002, 0x9D000000, + 0xC5D80A08, 0xC5581050, 0xCD800000, 0xC0004930, 0xC9800000, 0xC0004932, 0xC9C00000, 0xC140000E, + 0xC5581C20, 0xDD940000, 0xC0007200, 0x40140000, 0x5D407400, 0x8800FFFA, 0x5C000200, 0xCD800000, + 0x58000002, 0x5D407400, 0x8800FFFA, 0x5C000200, 0xCDC00000, 0xDD540000, 0xC1C00000, 0x58140006, + 0xC9C20080, 0xC1800000, 0x58140000, 0xC98000E0, 0x6DDC2000, 0xC000491E, 0x41D8E000, 0xCDC00000, + 0xDD980000, 0xC1C00022, 0xC5D80D78, 0xDD940001, 0xC5581C20, 0xC000491C, 0xCD800000, 0xDD540000, + 0xC1C00000, 0x58140006, 0xC9C20080, 0xC1800000, 0x58140004, 0xC9820080, 0x00000000, 0x59DC0002, + 0x459CC000, 0x8400FFF8, 0xC1C00000, 0x9D000000, 0x58140006, 0xC5D81080, 0xCD801080, 0xC0004860, + 0xC9400000, 0xC1820080, 0xC1D00002, 0x58146B00, 0xD5800000, 0x58000002, 0xD5800001, 0x59540004, + 0xB558FFF8, 0xC0004860, 0xC1400000, 0xCD400000, 0xDD980001, 0x9D000000, 0xDD940000, 0xC0001404, + 0xCDC00808, 0xC1C00000, 0xC1800200, 0x5D980004, 0xDF5D0050, 0x45D8A000, 0x8800FFDA, 0xDD800001, + 0x5800000C, 0x00000000, 0xC9400001, 0xC9800000, 0xC1C00002, 0xC5D43F08, 0xC5D81E08, 0xC0004862, + 0xC9C00000, 0x00000000, 0x00000000, 0x581C7200, 0x5DC07400, 0x8800FFFA, 0x5C000200, 0xCD400000, + 0x58000002, 0x5DC07400, 0x8800FFFA, 0x5C000200, 0xCD800000, 0xC0004862, 0xC9C00000, 0x00000000, + 0xC15004C0, 0xC5D40068, 0xDD9C0000, 0xC5D41C20, 0xC1C00000, 0xDD800001, 0x58000030, 0xC9C00080, + 0xDD800001, 0x58000002, 0xC9800000, 0x6DDC2000, 0xC000491C, 0x41D8E000, 0xCD400001, 0xCDC00000, + 0xDD940001, 0xC1C00000, 0x58140030, 0xC9C00080, 0xC1800000, 0x58140006, 0xC9820080, 0x00000000, + 0x59DC0002, 0x459CC000, 0x8400FFF8, 0xC1C00000, 0x9D000000, 0x58140030, 0xC5D80080, 0xCD800080, + 0xC1C00000, 0xDF5C0040, 0x5DDC0080, 0x8400FFD2, 0x00000000, 0x9D000000, 0x00000000, 0x00000000, + 0x00000000, 0xC160FFFE, 0xC0000A10, 0xC9440068, 0xC1A0FFFE, 0x59980E28, 0xC000100C, 0xCD400000, + 0xC000100E, 0xCD800000, 0xC0004964, 0xC9800000, 0x00000000, 0xC170000A, 0x7194A000, 0x6C988000, + 0x4498C000, 0x4498C000, 0x59980004, 0xC5940278, 0xC0001010, 0xCD400000, 0xC0004946, 0xC9400000, + 0x00000000, 0x00000000, 0x6D58A000, 0x6D5C4000, 0x45D8C000, 0x4558C000, 0xC000494A, 0xC9400000, + 0xC0004948, 0xC9C00000, 0x4194C000, 0xC1400012, 0xC55C1820, 0x9D000000, 0xC59C0270, 0xC0001012, + 0xCDC00000, 0xC1400000, 0x58000012, 0xC9410040, 0xC0004950, 0xC9C00000, 0xC5580000, 0xC5940840, + 0xC5581080, 0xD9940000, 0xC000493C, 0xC9400000, 0xC0004954, 0xC9800000, 0x59DC00A8, 0x455CE000, + 0x41D8E000, 0x5D5C0030, 0x8800FFF8, 0xC1C00030, 0xC1800000, 0xC5D84030, 0xC1400000, 0xC5D40010, + 0x5DD40002, 0x8400005A, 0x5DD40004, 0x84000082, 0x5DD40006, 0x840000AA, 0x5DD80026, 0x840000D2, + 0xDD540000, 0xDD800001, 0x58000008, 0x40180000, 0xCD400000, 0x59980002, 0x8000FFA8, 0xDD540000, + 0xDD800001, 0x58000008, 0x40180000, 0xCD4000C0, 0x59980002, 0x8000FF70, 0xDD540000, 0xDD800001, + 0x58000008, 0x40180000, 0xCD400080, 0x59980002, 0x8000FF38, 0xDD540000, 0xDD800001, 0x58000008, + 0x40180000, 0xCD400040, 0x59980002, 0x8000FF00, 0x00000000, 0x9D000000, 0x00000000, 0x00000000, + 0x00000000, 0x58000012, 0xC9400000, 0xC0004954, 0xC9C00000, 0xC0004950, 0xC9400080, 0xDD800001, + 0x58000028, 0x5D9C0000, 0x8400003A, 0x5D9C0002, 0x8400003A, 0x5D9C0004, 0x84000052, 0xC55B0040, + 0xC55C08C0, 0xCD800041, 0xCDC008C0, 0x80000048, 0xCD400000, 0x80000038, 0xC55900C0, 0xC55C1840, + 0xCD8000C1, 0xCDC01840, 0x80000010, 0xC55A0080, 0xC55C1080, 0xCD800081, 0xCDC01080, 0x9D000000, + 0x00000000, 0x00000000, 0x00000000, 0x59540002, 0x6994E018, 0x61C0C008, 0x4194A000, 0x5D940040, + 0x8800FFFA, 0xC5940000, 0x9D000000, 0xCD400000, 0x00000000, 0x00000000, 0x9D000000, 0x4158A000, + 0xCD400000, 0x00000000, +}; + +static unsigned int danube_fw_data[] = { +}; + + +#endif // IFXMIPS_ATM_FW_DANUBE_H diff --git a/package/kernel/lantiq/ltq-atm/src/ifxmips_atm_fw_danube_retx.h b/package/kernel/lantiq/ltq-atm/src/ifxmips_atm_fw_danube_retx.h new file mode 100644 index 0000000..1c915db --- /dev/null +++ b/package/kernel/lantiq/ltq-atm/src/ifxmips_atm_fw_danube_retx.h @@ -0,0 +1,612 @@ +#ifndef IFXMIPS_ATM_FW_DANUBE_H +#define IFXMIPS_ATM_FW_DANUBE_H + + +/****************************************************************************** +** +** FILE NAME : ifxmips_atm_fw_danube.h +** PROJECT : Danube +** MODULES : ATM (ADSL) +** +** DATE : 1 AUG 2005 +** AUTHOR : Xu Liang +** DESCRIPTION : ATM Driver (PP32 Firmware) +** COPYRIGHT : Copyright (c) 2006 +** Infineon Technologies AG +** Am Campeon 1-12, 85579 Neubiberg, Germany +** +** This program is free software; you can redistribute it and/or modify +** it under the terms of the GNU General Public License as published by +** the Free Software Foundation; either version 2 of the License, or +** (at your option) any later version. +** +** HISTORY +** $Date $Author $Comment +** 4 AUG 2005 Xu Liang Initiate Version +** 23 OCT 2006 Xu Liang Add GPL header. +*******************************************************************************/ + + +#define VER_IN_FIRMWARE 1 + +#define ATM_FW_VER_MAJOR 0 +#define ATM_FW_VER_MINOR 15 + + +static unsigned int firmware_binary_code[] = { + 0x800004A0, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x8000FFC8, 0x00000000, 0x00000000, 0x00000000, + 0xC1000002, 0xD90C0000, 0xC2000002, 0xDA080001, 0xC0001B50, 0x8C100000, 0x00000000, 0x00000000, + 0x00000000, 0xC2000000, 0xDA080001, 0x80006018, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x80005FF0, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0xC1001DA6, 0x8D3C0000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x80005EF0, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0xC0400000, 0xC0004840, 0xC8840000, 0xC2001AEE, 0x8E100000, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0xC0400002, 0xC0004840, 0xC8840000, 0xC2001AEE, 0x8E100000, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0xC3C00004, 0xDBC80001, 0xC10C0002, 0xD90C0000, 0x8000FEC8, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0xC10E0002, 0xD90C0000, 0xC0004808, 0xC8400000, 0xC2001B4C, 0x8E100000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0xC3E1FFFE, 0x597DFFFE, 0x593DFE14, 0x900004D9, 0x00000000, 0x00000000, 0x00000000, 0x90CC0481, + 0x00000000, 0x00000000, 0x00000000, 0xC3E02252, 0x5BFC001E, 0xC0004002, 0xCFC00000, 0xC3C00000, + 0xDBC80001, 0xC1400008, 0xC1900000, 0x71948000, 0x15000100, 0xC140000A, 0xC1900002, 0x71948000, + 0x15000100, 0xC140000C, 0xC1900004, 0x71948000, 0x15000100, 0xC1400004, 0xC1900006, 0x71948000, + 0x15000100, 0xC1400006, 0xC1900008, 0x71948000, 0x15000100, 0xC140000E, 0xC190000A, 0x71948000, + 0x15000100, 0xC1400000, 0xC190000C, 0x71948000, 0x15000100, 0xC1400002, 0xC190000E, 0x71948000, + 0x15000100, 0xC0400000, 0xC11C0000, 0xC000082C, 0xCD040E08, 0xC11C0002, 0xC000082C, 0xCD040E08, + 0xC0400002, 0xC11C0000, 0xC000082C, 0xCD040E08, 0xC0000824, 0x00000000, 0xCBC00001, 0xCB800001, + 0xCB400001, 0xCB000000, 0xC0004878, 0x5BFC4000, 0xCFC00001, 0x5BB84000, 0xCF800001, 0x5B744000, + 0xCF400001, 0x5B304000, 0xCF000000, 0xC0000A10, 0x00000000, 0xCBC00001, 0xCB800000, 0xC0004874, + 0x5BFC4000, 0xCFC00001, 0x5BB84000, 0xCF800000, 0xC30001FE, 0xC000140A, 0xCF000000, 0xC3000000, + 0x7F018000, 0xC000042E, 0xCF000000, 0xC000040E, 0xCF000000, 0xC3C1FFFE, 0xC000490E, 0xCFC00080, + 0xC000492C, 0xCFC00080, 0xC0004924, 0xCFC00040, 0xC0004912, 0xCFC00040, 0xC0004966, 0xCFC00040, + 0xC0004968, 0xCFC00080, 0xC000496A, 0xCFC00080, 0xC3C00000, 0xC2800020, 0xC3000000, 0x7F018000, + 0x6FF88000, 0x6FD44000, 0x4395C000, 0x5BB84A00, 0x5838000A, 0xCF000000, 0x5BFC0002, 0xB7E8FFA8, + 0x00000000, 0xC3C00000, 0xC2800010, 0x6FF86000, 0x47F9C000, 0x5BB84C80, 0xC3400000, 0x58380004, + 0xCB420080, 0x00000000, 0x58380008, 0xCF400080, 0x5BFC0002, 0xB7E8FF90, 0x00000000, 0xC3C00000, + 0xC2800020, 0xC348001E, 0xC3000000, 0x7F018000, 0x6FF8A000, 0x6FD44000, 0x4579C000, 0x47F9C000, + 0x5BB84E20, 0x58380008, 0xCF400420, 0x5838000A, 0xCF000000, 0x5BFC0002, 0xB7E8FF90, 0x00000000, + 0x00000000, 0xC0004816, 0xC3C00000, 0xCBC00080, 0x00000000, 0x00000000, 0xC1000000, 0xD9040001, + 0xDBC40080, 0xC1000006, 0xD9040001, 0x00000000, 0xC121FFFE, 0x5911FE54, 0x15000000, 0xC3C00000, + 0xDCFC2008, 0x5FFC0002, 0x00000000, 0x98C08D62, 0xC0004730, 0xC9400000, 0xC0004732, 0xC0001AF2, + 0xCBC00000, 0x00000000, 0x00000000, 0xA7C20450, 0xC000474A, 0xCA800000, 0x00000000, 0x00000000, + 0x5D280000, 0x8400FFC8, 0x00000000, 0xC121FFFE, 0x5911FEF4, 0x15000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0xC2802000, 0x6EA8E010, 0xC0004200, 0xC2400000, 0x7E410000, 0xC1000000, 0xCE400001, 0xCE400001, + 0xCE400001, 0xCE400001, 0x5EA80002, 0x8400FFC0, 0xC0004300, 0xC2800200, 0x6EA84010, 0xCE400001, + 0xCE000001, 0xCE400001, 0xCE000001, 0xCE400001, 0xCE000001, 0xCE400001, 0xCE000001, 0x5EA80002, + 0x8400FFA0, 0xC0004700, 0xC2800200, 0x6EA8E010, 0xCE400001, 0xCE400001, 0xCE400001, 0xCE400001, + 0x5EA80002, 0x8400FFC0, 0xC0004740, 0xCE400000, 0xC0004742, 0xC1000200, 0x5D100002, 0xCD000000, + 0xC0004744, 0xCE400000, 0xC0004746, 0xCE400000, 0xC0004748, 0xCE400000, 0xC000474A, 0xCE400000, + 0xC000474C, 0xC1000002, 0xCD000000, 0xC000474E, 0xCE400000, 0xC0004750, 0xCE400000, 0xC0004752, + 0xCE400000, 0xC0004754, 0xCE400000, 0xC0400000, 0xC11C0000, 0xC000082C, 0xCD040E08, 0xC0000838, + 0xCE400000, 0xC0000818, 0xCE400000, 0xC0000820, 0xCE400000, 0xC2804840, 0xC240485A, 0x98C086B0, + 0xC6800000, 0xC6540000, 0xC1800000, 0xC11C0002, 0xC000082C, 0xCD040E08, 0x00000000, 0xC121FFFE, + 0x5911FE54, 0x15000000, 0xC0000A10, 0xCB800000, 0xC0000A12, 0xCB400000, 0xC0000A14, 0xCB000000, + 0xC0000A16, 0xCAC00000, 0xC0000040, 0xC2800000, 0xCE800008, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0xC2800002, + 0xCE800008, 0xC0000A10, 0xCF800000, 0xC0000A12, 0xCF400000, 0xC0000A14, 0xCF000000, 0xC0000A16, + 0xCEC00000, 0xC1000000, 0xC00048A0, 0xCD000000, 0xC00048A2, 0xCD000000, 0xC0001AF2, 0xC1000000, + 0xCD000108, 0x80001020, 0x00000000, 0xC3C00000, 0xDCFC2008, 0x5FFC0002, 0x00000000, 0x98C08D62, + 0xC0004730, 0xC9400000, 0xC0004732, 0x800033C0, 0x00000000, 0xC3C00000, 0xDCFC2008, 0x5FFC0002, + 0x00000000, 0x98C08D62, 0xC0004730, 0xC9400000, 0xC0004732, 0xC0004810, 0xC9000000, 0xC000474A, + 0xC9400000, 0xA50007C8, 0x00000000, 0x5D140002, 0x840007BA, 0xC1000000, 0xC000484A, 0xC9000000, + 0xC0004740, 0xC8400000, 0x5D100000, 0x84000780, 0x00000000, 0x00000000, 0xC121FFFE, 0x5911FEF4, + 0x15000000, 0xC0004744, 0xC8800000, 0xC0001AF0, 0xC3000000, 0x58000002, 0xCB010040, 0x6C7C2000, + 0x5BFC4300, 0x98C08A88, 0xC1400000, 0xC4540028, 0x6C40A010, 0x5D240002, 0x84000202, 0x00000000, + 0xC0004742, 0xCA800000, 0x00000000, 0x00000000, 0x59280002, 0x6D130000, 0x6D130010, 0x44508000, + 0x8400067A, 0x00000000, 0x98C08870, 0xC4540000, 0xC6980000, 0xC241FFFE, 0xC6740000, 0x5D35FFFE, + 0x8400063A, 0x44748000, 0x8400062A, 0xC1000000, 0x6F502000, 0xC0004300, 0x40100000, 0xC1400000, + 0x58000000, 0xC9410040, 0xC1800000, 0xC0004814, 0xC9820040, 0x4570A000, 0xC10001FE, 0x4150A004, + 0x45948000, 0x880005B2, 0x4474C000, 0xC1000200, 0x4190C004, 0xC000473E, 0xC9000000, 0x00000000, + 0x00000000, 0x41188000, 0xCD000000, 0xC000471C, 0xC9000000, 0x00000000, 0x00000000, 0x41188000, + 0xCD000000, 0x98C087E8, 0xC4540000, 0x6C58A010, 0xC0004700, 0x58440002, 0x6C470000, 0x6C470010, + 0x47448000, 0x8400FFA8, 0xC7440000, 0xC0004740, 0xCC400000, 0xC0800000, 0xC0004744, 0xCC800000, + 0x800004B8, 0xC1000000, 0x583C0000, 0xC9000040, 0x00000000, 0x00000000, 0x45088000, 0x88000268, + 0xC1400000, 0x583C0000, 0xC9410040, 0xC1800000, 0xC0004814, 0xC9800040, 0x4570A000, 0xC10001FE, + 0x4150A004, 0x45948000, 0x8800042A, 0xC3800000, 0x583C0002, 0xCB820080, 0xC1000000, 0x583C0002, + 0xC9000080, 0x00000000, 0x00000000, 0x45388000, 0x84000232, 0xC0400002, 0xC0800000, 0xC3C00000, + 0xC000481A, 0xC8000000, 0x6F908000, 0x47908000, 0x47908000, 0x4011E000, 0xC000491E, 0xCFC00000, + 0xC3400000, 0xC0004878, 0xC8040000, 0x6C908000, 0x44908000, 0x44908000, 0x40100000, 0xCAC00000, + 0xC4300000, 0x00000000, 0xC7340068, 0xC1000002, 0xC5341B08, 0xC100001C, 0xC5341050, 0xC100000C, + 0xC5340D18, 0xC000491C, 0xCF400000, 0xC3000000, 0xDF700040, 0x5D300080, 0x8800FFD0, 0xC000474A, + 0xC1000002, 0xCD000000, 0xC000491C, 0xCB400000, 0xC000491E, 0xCBC00000, 0x99007F18, 0xDB580000, + 0xDBD80001, 0x00000000, 0xC1400000, 0xC794A038, 0xC1800000, 0xC7980028, 0x58144200, 0xC9C00000, + 0xC1210000, 0x69188010, 0x7D008000, 0x751CE000, 0xCDC00000, 0x80000210, 0x00000000, 0xC1000000, + 0x583C0000, 0xC903E008, 0x00000000, 0x00000000, 0x5D100000, 0x8400002A, 0xC0004734, 0xC9000000, + 0x00000000, 0x00000000, 0x59100002, 0xCD000000, 0x800000A8, 0xC1400000, 0x583C0000, 0xC9410040, + 0xC1800000, 0xC0004814, 0xC9820040, 0x4570A000, 0xC10001FE, 0x4150A004, 0x45948000, 0x88000142, + 0xC000473E, 0xC9000000, 0x00000000, 0x00000000, 0x59100002, 0xCD000000, 0xC000471C, 0xC9000000, + 0x00000000, 0x00000000, 0x59100002, 0xCD000000, 0xC3800000, 0x583C0002, 0xCB820080, 0x00000000, + 0x00000000, 0x5D39FFFE, 0x8400004A, 0xC1400000, 0xC794A038, 0xC1800000, 0xC7980028, 0x58144200, + 0xC9C00000, 0xC1210000, 0x69188010, 0x7D008000, 0x751CE000, 0xCDC00000, 0x98C087E8, 0xC4540000, + 0x6C58A010, 0xC0004700, 0x58440002, 0x6C470000, 0x6C470010, 0xC0004740, 0xCC400000, 0xC0800000, + 0xC0004744, 0xCC800000, 0x00000000, 0xC121FFFE, 0x5911FE54, 0x15000000, 0x8000F270, 0x00000000, + 0x00000000, 0x98C086F0, 0xC0004748, 0xC9800000, 0xC2000000, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0xC1400000, 0xC7D4A038, 0xC1800000, 0xC7D80028, 0x58144200, + 0xC9C00000, 0xC1210000, 0x69188010, 0x7D008000, 0x751CE000, 0xCDC00000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x98C087E8, 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0x9D000000, 0xC5D80A08, 0xC5581050, 0xCD800000, 0xC0004930, + 0xC9800000, 0xC0004932, 0xC9C00000, 0xC140000E, 0xC5581C20, 0xDD940000, 0xC0007200, 0x40140000, + 0x5D407400, 0x8800FFFA, 0x5C000200, 0xCD800000, 0x58000002, 0x5D407400, 0x8800FFFA, 0x5C000200, + 0xCDC00000, 0xDD540000, 0xC1C00000, 0x58140006, 0xC9C20080, 0xC1800000, 0x58140000, 0xC98000E0, + 0x6DDC2000, 0xC000491E, 0x41D8E000, 0xCDC00000, 0xDD980000, 0xC1C00022, 0xC5D80D78, 0xDD940001, + 0xC5581C20, 0xC000491C, 0xCD800000, 0xDD540000, 0xC1C00000, 0x58140006, 0xC9C20080, 0xC1800000, + 0x58140004, 0xC9820080, 0x00000000, 0x59DC0002, 0x459CC000, 0x8400FFF8, 0xC1C00000, 0x9D000000, + 0x58140006, 0xC5D81080, 0xCD801080, 0xC0004860, 0xC9400000, 0xC1820080, 0xC1D00002, 0x58146B00, + 0xD5800000, 0x58000002, 0xD5800001, 0x59540004, 0xB558FFF8, 0xC0004860, 0xC1400000, 0xCD400000, + 0xDD980001, 0x9D000000, 0xDD940000, 0xC0001404, 0xCDC00808, 0xC1C00000, 0xC1800200, 0x5D980004, + 0xDF5D0050, 0x45D8A000, 0x8800FFDA, 0xDD800001, 0x5800000C, 0x00000000, 0xC9400001, 0xC9800000, + 0xC1C00002, 0xC5D43F08, 0xC5D81E08, 0xC0004862, 0xC9C00000, 0x00000000, 0x00000000, 0x581C7200, + 0x5DC07400, 0x8800FFFA, 0x5C000200, 0xCD400000, 0x58000002, 0x5DC07400, 0x8800FFFA, 0x5C000200, + 0xCD800000, 0xC0004862, 0xC9C00000, 0x00000000, 0xC15004C0, 0xC5D40068, 0xDD9C0000, 0xC5D41C20, + 0xC1C00000, 0xDD800001, 0x58000030, 0xC9C00080, 0xDD800001, 0x58000002, 0xC9800000, 0x6DDC2000, + 0xC000491C, 0x41D8E000, 0xCD400001, 0xCDC00000, 0xDD940001, 0xC1C00000, 0x58140030, 0xC9C00080, + 0xC1800000, 0x58140006, 0xC9820080, 0x00000000, 0x59DC0002, 0x459CC000, 0x8400FFF8, 0xC1C00000, + 0x9D000000, 0x58140030, 0xC5D80080, 0xCD800080, 0xC1C00000, 0xDF5C0040, 0x5DDC0080, 0x8400FFD2, + 0x00000000, 0x9D000000, 0x00000000, 0x00000000, 0x00000000, 0xC160FFFE, 0xC0000A10, 0xC9440068, + 0xC1A0FFFE, 0x59980E28, 0xC000100C, 0xCD400000, 0xC000100E, 0xCD800000, 0xC0004964, 0xC9800000, + 0x00000000, 0xC170000A, 0x7194A000, 0x6C988000, 0x4498C000, 0x4498C000, 0x59980004, 0xC5940278, + 0xC0001010, 0xCD400000, 0xC0004946, 0xC9400000, 0x00000000, 0x00000000, 0x6D58A000, 0x6D5C4000, + 0x45D8C000, 0x4558C000, 0xC000494A, 0xC9400000, 0xC0004948, 0xC9C00000, 0x4194C000, 0xC1400012, + 0xC55C1820, 0x9D000000, 0xC59C0270, 0xC0001012, 0xCDC00000, 0xC1400000, 0x58000012, 0xC9410040, + 0xC0004950, 0xC9C00000, 0xC5580000, 0xC5940840, 0xC5581080, 0xD9940000, 0xC000493C, 0xC9400000, + 0xC0004954, 0xC9800000, 0x59DC00A8, 0x455CE000, 0x41D8E000, 0x5D5C0030, 0x8800FFF8, 0xC1C00030, + 0xC1800000, 0xC5D84030, 0xC1400000, 0xC5D40010, 0x5DD40002, 0x8400005A, 0x5DD40004, 0x84000082, + 0x5DD40006, 0x840000AA, 0x5DD80026, 0x840000D2, 0xDD540000, 0xDD800001, 0x58000008, 0x40180000, + 0xCD400000, 0x59980002, 0x8000FFA8, 0xDD540000, 0xDD800001, 0x58000008, 0x40180000, 0xCD4000C0, + 0x59980002, 0x8000FF70, 0xDD540000, 0xDD800001, 0x58000008, 0x40180000, 0xCD400080, 0x59980002, + 0x8000FF38, 0xDD540000, 0xDD800001, 0x58000008, 0x40180000, 0xCD400040, 0x59980002, 0x8000FF00, + 0x00000000, 0x9D000000, 0x00000000, 0x00000000, 0x00000000, 0x58000012, 0xC9400000, 0xC0004954, + 0xC9C00000, 0xC0004950, 0xC9400080, 0xDD800001, 0x58000028, 0x5D9C0000, 0x8400003A, 0x5D9C0002, + 0x8400003A, 0x5D9C0004, 0x84000052, 0xC55B0040, 0xC55C08C0, 0xCD800041, 0xCDC008C0, 0x80000048, + 0xCD400000, 0x80000038, 0xC55900C0, 0xC55C1840, 0xCD8000C1, 0xCDC01840, 0x80000010, 0xC55A0080, + 0xC55C1080, 0xCD800081, 0xCDC01080, 0x9D000000, 0x00000000, 0x00000000, 0x00000000, 0x59540002, + 0x6994E018, 0x61C0C008, 0x4194A000, 0x5D940040, 0x8800FFFA, 0xC5940000, 0x9D000000, 0xCD400000, + 0x00000000, 0x00000000, 0x9D000000, 0x4158A000, 0xCD400000, 0x00000000, 0xCD800001, 0x44148000, + 0x8800FFD8, 0x00000000, 0x9CC00000, 0x00000000, 0x00000000, 0x00000000, 0xC0004810, 0xCA010040, + 0xC241FFFE, 0xC1400000, 0x45608000, 0x00000000, 0x9CC00006, 0xC0004200, 0x40180000, 0xC9C00000, + 0x00000000, 0x00000000, 0x61C08010, 0x84000042, 0xC2400002, 0x6A512000, 0x725CE000, 0xCDC00000, + 0xC0004748, 0xCD800000, 0x9CC00000, 0x6D98A000, 0x5998003E, 0x45192000, 0x59540002, 0x59980002, + 0x45A08000, 0xC1000000, 0xC5180006, 0x8000FF20, 0x00000000, 0x40180000, 0xC9C00000, 0xC2000000, + 0xC5600028, 0xC1210000, 0x69208010, 0x7D008000, 0x751CE000, 0xCDC00000, 0x6D542000, 0x58144300, + 0xC1000000, 0xCD000001, 0x9CC00000, 0xC121FFFE, 0x5911FFFE, 0xCD000001, 0x79948000, 0x6D10A010, + 0x5D100000, 0x840000A8, 0x45588000, 0x88000098, 0x6D536000, 0x6D136010, 0x6D54A010, 0xC0004700, + 0x40140000, 0xCA000000, 0x00000000, 0x00000000, 0x6A110000, 0x6A110010, 0x62008018, 0x8400001A, + 0x00000000, 0x9CC00000, 0x6D54A000, 0x5954003E, 0x45152000, 0x59540002, 0x6D57A000, 0x6D57A010, + 0x6D54A000, 0x6D936000, 0x6D136010, 0xC1E10000, 0x69D0E010, 0x5DDC0002, 0x7DC0E000, 0x6D98A010, + 0x6D536000, 0x6D136010, 0x6D54A010, 0xC0004700, 0x40140000, 0xCA000000, 0x00000000, 0x00000000, + 0x6A110000, 0x6A110010, 0x45948000, 0x00000000, 0x75E10002, 0x62008018, 0x8400001A, 0x00000000, + 0x9CC00000, 0x6D54A000, 0x5954003E, 0x45152000, 0x45948000, 0x00000000, 0x9CC00002, 0x59540002, + 0x6D57A000, 0x6D57A010, 0xC0004700, 0x40140000, 0xCA000000, 0x8000FF50, 0x00000000, 0x00000000, + 0x00000000, 0x58004700, 0xC9800000, 0x9CC00000, 0x00000000, 0x6994C000, 0x6DA7E010, 0x58004700, + 0xC9800000, 0xC1210000, 0x9CC00000, 0x69148010, 0x7118C000, 0xCD800000, 0xC1000000, 0xC0004810, + 0xC9020040, 0x00000000, 0x00000000, 0x451CC000, 0x8800004A, 0xC2400002, 0x45948000, 0xC1000000, + 0xC5240004, 0x455C8000, 0xC1000000, 0xC5240006, 0x9CC00000, 0x00000000, 0x00000000, 0x00000000, + 0x59980200, 0xC2400000, 0x45D48000, 0xC1000002, 0xC5240004, 0x45588000, 0xC1000002, 0xC5240006, + 0x9CC00000, 0x00000000, 0x00000000, 0x00000000, 0xC0004740, 0xC9C00000, 0x59180002, 0x6D130000, + 0x6D130010, 0x45D08000, 0xC2400000, 0x9CC00002, 0x00000000, 0x00000000, 0x45D88000, 0x8800004A, + 0xC2400002, 0x45D48000, 0xC1000000, 0xC5240004, 0x45588000, 0xC1000000, 0xC5240004, 0x9CC00000, + 0x00000000, 0x00000000, 0x00000000, 0xC2400000, 0x45948000, 0xC1000002, 0xC5240006, 0x455C8000, + 0xC1000002, 0xC5240006, 0x9CC00000, 0x00000000, 0x00000000, 0x00000000, 0x59540002, 0x6D570000, + 0x6D570010, 0x45948000, 0x6D402000, 0x9CC00002, 0x58004300, 0x58000000, 0xC13C0002, 0xCD001E08, + 0x8000FF98, 0x00000000, 0x00000000, 0x00000000, 0xC1020002, 0xD90C0000, 0xC9800000, 0x59540002, + 0xC0004730, 0xCD400000, 0x5D980002, 0x00000000, 0x8000001E, 0x00000000, 0x9CC00000, 0xC0004732, + 0xCD800000, 0x00000000, 0xC0004734, 0xC9C00000, 0xC1800000, 0xC0004816, 0xC9820080, 0xC0004738, + 0xCDC00000, 0xC1C00000, 0xC0004734, 0x9CC00000, 0xCDC00000, 0xC0004732, 0xCD800000, +}; + +static unsigned int firmware_binary_data[] = { +}; + + +#endif // IFXMIPS_ATM_FW_DANUBE_H diff --git a/package/kernel/lantiq/ltq-atm/src/ifxmips_atm_fw_regs_amazon_se.h b/package/kernel/lantiq/ltq-atm/src/ifxmips_atm_fw_regs_amazon_se.h new file mode 100644 index 0000000..87cbe5d --- /dev/null +++ b/package/kernel/lantiq/ltq-atm/src/ifxmips_atm_fw_regs_amazon_se.h @@ -0,0 +1,57 @@ +/****************************************************************************** +** +** FILE NAME : ifxmips_atm_fw_regs_amazon_se.h +** PROJECT : UEIP +** MODULES : ATM (ADSL) +** +** DATE : 1 AUG 2005 +** AUTHOR : Xu Liang +** DESCRIPTION : ATM Driver (Firmware Registers) +** COPYRIGHT : Copyright (c) 2006 +** Infineon Technologies AG +** Am Campeon 1-12, 85579 Neubiberg, Germany +** +** This program is free software; you can redistribute it and/or modify +** it under the terms of the GNU General Public License as published by +** the Free Software Foundation; either version 2 of the License, or +** (at your option) any later version. +** +** HISTORY +** $Date $Author $Comment +** 4 AUG 2005 Xu Liang Initiate Version +** 23 OCT 2006 Xu Liang Add GPL header. +** 9 JAN 2007 Xu Liang First version got from Anand (IC designer) +*******************************************************************************/ + + + +#ifndef IFXMIPS_ATM_FW_REGS_AMAZON_SE_H +#define IFXMIPS_ATM_FW_REGS_AMAZON_SE_H + + + +/* + * Host-PPE Communication Data Address Mapping + */ +#define FW_VER_ID ((volatile struct fw_ver_id *) SB_BUFFER(0x2401)) /* Firmware Version ID */ +#define CFG_WRX_HTUTS SB_BUFFER(0x2400) /* WAN RX HTU Table Size, must be configured before enable PPE firmware. */ +//#define CFG_WRX_QNUM SB_BUFFER(0x2401) /* WAN RX Queue Number */ +#define CFG_WRX_DCHNUM SB_BUFFER(0x2402) /* WAN RX DMA Channel Number, no more than 8, must be configured before enable PPE firmware. */ +#define CFG_WTX_DCHNUM SB_BUFFER(0x2403) /* WAN TX DMA Channel Number, no more than 16, must be configured before enable PPE firmware. */ +#define CFG_WRDES_DELAY SB_BUFFER(0x2404) /* WAN Descriptor Write Delay, must be configured before enable PPE firmware. */ +#define WRX_DMACH_ON SB_BUFFER(0x2405) /* WAN RX DMA Channel Enable, must be configured before enable PPE firmware. */ +#define WTX_DMACH_ON SB_BUFFER(0x2406) /* WAN TX DMA Channel Enable, must be configured before enable PPE firmware. */ +#define WRX_HUNT_BITTH SB_BUFFER(0x2407) /* WAN RX HUNT Threshold, must be between 2 to 8. */ +#define WRX_QUEUE_CONFIG(i) ((struct wrx_queue_config*) SB_BUFFER(0x2500 + (i) * 20)) +#define WRX_DMA_CHANNEL_CONFIG(i) ((struct wrx_dma_channel_config*) SB_BUFFER(0x2640 + (i) * 7)) +#define WTX_PORT_CONFIG(i) ((struct wtx_port_config*) SB_BUFFER(0x2440 + (i))) +#define WTX_QUEUE_CONFIG(i) ((struct wtx_queue_config*) SB_BUFFER(0x2F00 + (i) * 27)) +#define WTX_DMA_CHANNEL_CONFIG(i) ((struct wtx_dma_channel_config*) SB_BUFFER(0x2F01 + (i) * 27)) +#define WAN_MIB_TABLE ((struct wan_mib_table*) SB_BUFFER(0x2410)) +#define HTU_ENTRY(i) ((struct htu_entry*) SB_BUFFER(0x3200 + (i))) +#define HTU_MASK(i) ((struct htu_mask*) SB_BUFFER(0x3220 + (i))) +#define HTU_RESULT(i) ((struct htu_result*) SB_BUFFER(0x3240 + (i))) + + + +#endif // IFXMIPS_ATM_FW_REGS_AMAZON_SE_H diff --git a/package/kernel/lantiq/ltq-atm/src/ifxmips_atm_fw_regs_ar9.h b/package/kernel/lantiq/ltq-atm/src/ifxmips_atm_fw_regs_ar9.h new file mode 100644 index 0000000..dd010f5 --- /dev/null +++ b/package/kernel/lantiq/ltq-atm/src/ifxmips_atm_fw_regs_ar9.h @@ -0,0 +1,172 @@ +/****************************************************************************** +** +** FILE NAME : ifxmips_atm_fw_regs_ar9.h +** PROJECT : UEIP +** MODULES : ATM (ADSL) +** +** DATE : 1 AUG 2005 +** AUTHOR : Xu Liang +** DESCRIPTION : ATM Driver (Firmware Registers) +** COPYRIGHT : Copyright (c) 2006 +** Infineon Technologies AG +** Am Campeon 1-12, 85579 Neubiberg, Germany +** +** This program is free software; you can redistribute it and/or modify +** it under the terms of the GNU General Public License as published by +** the Free Software Foundation; either version 2 of the License, or +** (at your option) any later version. +** +** HISTORY +** $Date $Author $Comment +** 4 AUG 2005 Xu Liang Initiate Version +** 23 OCT 2006 Xu Liang Add GPL header. +** 9 JAN 2007 Xu Liang First version got from Anand (IC designer) +*******************************************************************************/ + + + +#ifndef IFXMIPS_ATM_FW_REGS_AR9_H +#define IFXMIPS_ATM_FW_REGS_AR9_H + + + +/* + * Host-PPE Communication Data Address Mapping + */ +#define FW_VER_ID ((volatile struct fw_ver_id *) SB_BUFFER(0x2001)) +#define CFG_WRX_HTUTS SB_BUFFER(0x2400) /* WAN RX HTU Table Size, must be configured before enable PPE firmware. */ +#define CFG_WRX_QNUM SB_BUFFER(0x2401) /* WAN RX Queue Number */ +#define CFG_WRX_DCHNUM SB_BUFFER(0x2402) /* WAN RX DMA Channel Number, no more than 8, must be configured before enable PPE firmware. */ +#define CFG_WTX_DCHNUM SB_BUFFER(0x2403) /* WAN TX DMA Channel Number, no more than 16, must be configured before enable PPE firmware. */ +#define CFG_WRDES_DELAY SB_BUFFER(0x2404) /* WAN Descriptor Write Delay, must be configured before enable PPE firmware. */ +#define WRX_DMACH_ON SB_BUFFER(0x2405) /* WAN RX DMA Channel Enable, must be configured before enable PPE firmware. */ +#define WTX_DMACH_ON SB_BUFFER(0x2406) /* WAN TX DMA Channel Enable, must be configured before enable PPE firmware. */ +#define WRX_HUNT_BITTH SB_BUFFER(0x2407) /* WAN RX HUNT Threshold, must be between 2 to 8. */ +#define WRX_QUEUE_CONFIG(i) ((struct wrx_queue_config*) SB_BUFFER(0x2500 + (i) * 20)) +#define WRX_QUEUE_CONTEXT(i) ((struct wrx_queue_context*) SB_BUFFER(0x2504 + (i) * 20)) +#define WRX_DMA_CHANNEL_CONFIG(i) ((struct wrx_dma_channel_config*) SB_BUFFER(0x2640 + (i) * 7)) +#define WRX_DESC_CONTEXT(i) ((struct wrx_desc_context*) SB_BUFFER(0x2643 + (i) * 7)) +#define WTX_PORT_CONFIG(i) ((struct wtx_port_config*) SB_BUFFER(0x2440 + (i))) +#define WTX_QUEUE_CONFIG(i) ((struct wtx_queue_config*) SB_BUFFER(0x3800 + (i) * 27)) +#define WTX_DMA_CHANNEL_CONFIG(i) ((struct wtx_dma_channel_config*) SB_BUFFER(0x3801 + (i) * 27)) +#define WAN_MIB_TABLE ((struct wan_mib_table*) SB_BUFFER(0x2410)) +#define HTU_ENTRY(i) ((struct htu_entry*) SB_BUFFER(0x2010 + (i))) +#define HTU_MASK(i) ((struct htu_mask*) SB_BUFFER(0x2030 + (i))) +#define HTU_RESULT(i) ((struct htu_result*) SB_BUFFER(0x2050 + (i))) + +#if defined(ENABLE_ATM_RETX) && ENABLE_ATM_RETX + + #define RETX_MODE_CFG ((volatile struct Retx_mode_cfg *) SB_BUFFER(0x2408)) + #define RETX_TSYNC_CFG ((volatile struct Retx_Tsync_cfg *) SB_BUFFER(0x2409)) + #define RETX_TD_CFG ((volatile struct Retx_Td_cfg *) SB_BUFFER(0x240A)) + #define RETX_MIB_TIMER_CFG ((volatile struct Retx_MIB_Timer_cfg *) SB_BUFFER(0x240B)) + #define RETX_PLAYOUT_BUFFER_BASE SB_BUFFER(0x240D) + #define RETX_SERVICE_HEADER_CFG SB_BUFFER(0x240E) + #define RETX_MASK_HEADER_CFG SB_BUFFER(0x240F) + + #define RETX_ADSL_PPE_INTF ((volatile struct Retx_adsl_ppe_intf *) PPE_REG_ADDR(0x0D78)) + #define BAD_REC_RETX_ADSL_PPE_INTF ((volatile struct Retx_adsl_ppe_intf *) SB_BUFFER(0x23AC)) + #define FIRST_BAD_REC_RETX_ADSL_PPE_INTF ((volatile struct Retx_adsl_ppe_intf *) SB_BUFFER(0x23AE)) + + #define PB_BUFFER_USAGE SB_BUFFER(0x2100) + #define DTU_STAT_INFO ((volatile struct DTU_stat_info *) SB_BUFFER(0x2180)) + #define DTU_VLD_STAT SB_BUFFER(0x2380) + + + //===================================================================== + // retx firmware mib, for debug purpose + // address : 0x2388 - 0x238F + // size : 8 + //===================================================================== + #define URETX_RX_TOTAL_DTU SB_BUFFER(0x2388) + #define URETX_RX_BAD_DTU SB_BUFFER(0x2389) + #define URETX_RX_GOOD_DTU SB_BUFFER(0x238A) + #define URETX_RX_CORRECTED_DTU SB_BUFFER(0x238B) + #define URETX_RX_OUTOFDATE_DTU SB_BUFFER(0x238C) + #define URETX_RX_DUPLICATE_DTU SB_BUFFER(0x238D) + #define URETX_RX_TIMEOUT_DTU SB_BUFFER(0x238E) + + #define URETX_ALPHA_SWITCH_TO_HUNT_TIMES SB_BUFFER(0x238F) + + // cell counter for debug purpose + #define WRX_BC0_CELL_NUM SB_BUFFER(0x23E0) + #define WRX_BC0_DROP_CELL_NUM SB_BUFFER(0x23E1) + #define WRX_BC0_NONRETX_CELL_NUM SB_BUFFER(0x23E2) + #define WRX_BC0_RETX_CELL_NUM SB_BUFFER(0x23E3) + #define WRX_BC0_OUTOFDATE_CELL_NUM SB_BUFFER(0x23E4) + #define WRX_BC0_DIRECTUP_NUM SB_BUFFER(0x23E5) + #define WRX_BC0_PBW_TOTAL_NUM SB_BUFFER(0x23E6) + #define WRX_BC0_PBW_SUCC_NUM SB_BUFFER(0x23E7) + #define WRX_BC0_PBW_FAIL_NUM SB_BUFFER(0x23E8) + #define WRX_BC1_CELL_NUM SB_BUFFER(0x23E9) + + // debug info (interface) + + #define DBG_DTU_INTF_WRPTR SB_BUFFER(0x2390) + #define DBG_INTF_FCW_DUP_CNT SB_BUFFER(0x2391) + #define DBG_INTF_SID_CHANGE_IN_DTU_CNT SB_BUFFER(0x2392) + #define DBG_INTF_LCW_DUP_CNT SB_BUFFER(0x2393) + + #define DBG_RFBI_DONE_INT_CNT SB_BUFFER(0x2394) + #define DBG_DREG_BEG_END SB_BUFFER(0x2395) + #define DBG_RFBI_BC0_INVALID_CNT SB_BUFFER(0x2396) + #define DBG_RFBI_LAST_T SB_BUFFER(0x2397) + + #define DBG_RFBI_INTV0 SB_BUFFER(0x23EE) + #define DBG_RFBI_INTV1 SB_BUFFER(0x23EF) + + #define DBG_INTF_INFO(i) ((volatile struct Retx_adsl_ppe_intf_rec *) SB_BUFFER(0x23F0 + i)) + + // Internal status + #define URetx_curr_time SB_BUFFER(0x2398) + #define URetx_sec_counter SB_BUFFER(0x2399) + #define RxCURR_EFB SB_BUFFER(0x239A) + #define RxDTURetransmittedCNT SB_BUFFER(0x239B) + + //===================================================================== + // standardized MIB counter + // address : 0x239C - 0x239F + // size : 4 + //===================================================================== + #define RxLastEFBCNT SB_BUFFER(0x239C) + #define RxDTUCorrectedCNT SB_BUFFER(0x239D) + #define RxDTUCorruptedCNT SB_BUFFER(0x239E) + #define RxRetxDTUUncorrectedCNT SB_BUFFER(0x239F) + + + //===================================================================== + // General URetx Context + // address : 0x23A0 - 0x23AF + // size : 16 + //===================================================================== + #define NEXT_DTU_SID_OUT SB_BUFFER(0x23A0) + #define LAST_DTU_SID_IN SB_BUFFER(0x23A1) + #define NEXT_CELL_SID_OUT SB_BUFFER(0x23A2) + #define ISR_CELL_ID SB_BUFFER(0x23A3) + #define PB_CELL_SEARCH_IDX SB_BUFFER(0x23A4) + #define PB_READ_PEND_FLAG SB_BUFFER(0x23A5) + #define RFBI_FIRST_CW SB_BUFFER(0x23A6) + #define RFBI_BAD_CW SB_BUFFER(0x23A7) + #define RFBI_INVALID_CW SB_BUFFER(0x23A8) + #define RFBI_RETX_CW SB_BUFFER(0x23A9) + #define RFBI_CHK_DTU_STATUS SB_BUFFER(0x23AA) + + //===================================================================== + // per PVC counter for RX error_pdu and correct_pdu + // address : 0x23B0 - 0x23CF + // size : 32 + //===================================================================== + #define WRX_PER_PVC_CORRECT_PDU_BASE SB_BUFFER(0x23B0) + #define WRX_PER_PVC_ERROR_PDU_BASE SB_BUFFER(0x23C0) + + #define __WRXCTXT_L2_RdPtr(i) SB_BUFFER(0x2422 + (i)) + #define __WRXCTXT_L2Pages(i) SB_BUFFER(0x2424 + (i)) + + #define __WTXCTXT_TC_WRPTR(i) SB_BUFFER(0x2450 + (i)) + #define __WRXCTXT_PortState(i) SB_BUFFER(0x242A + (i)) + +#endif + + + +#endif // IFXMIPS_ATM_FW_REGS_AR9_H diff --git a/package/kernel/lantiq/ltq-atm/src/ifxmips_atm_fw_regs_common.h b/package/kernel/lantiq/ltq-atm/src/ifxmips_atm_fw_regs_common.h new file mode 100644 index 0000000..49be99e --- /dev/null +++ b/package/kernel/lantiq/ltq-atm/src/ifxmips_atm_fw_regs_common.h @@ -0,0 +1,549 @@ +/****************************************************************************** +** +** FILE NAME : ifxmips_atm_fw_regs_common.h +** PROJECT : UEIP +** MODULES : ATM (ADSL) +** +** DATE : 1 AUG 2005 +** AUTHOR : Xu Liang +** DESCRIPTION : ATM Driver (Firmware Register Structures) +** COPYRIGHT : Copyright (c) 2006 +** Infineon Technologies AG +** Am Campeon 1-12, 85579 Neubiberg, Germany +** +** This program is free software; you can redistribute it and/or modify +** it under the terms of the GNU General Public License as published by +** the Free Software Foundation; either version 2 of the License, or +** (at your option) any later version. +** +** HISTORY +** $Date $Author $Comment +** 4 AUG 2005 Xu Liang Initiate Version +** 23 OCT 2006 Xu Liang Add GPL header. +** 9 JAN 2007 Xu Liang First version got from Anand (IC designer) +*******************************************************************************/ + + + +#ifndef IFXMIPS_ATM_FW_REGS_COMMON_H +#define IFXMIPS_ATM_FW_REGS_COMMON_H + + +#if defined(CONFIG_DANUBE) + #include "ifxmips_atm_fw_regs_danube.h" +#elif defined(CONFIG_AMAZON_SE) + #include "ifxmips_atm_fw_regs_amazon_se.h" +#elif defined(CONFIG_AR9) + #include "ifxmips_atm_fw_regs_ar9.h" +#elif defined(CONFIG_VR9) + #include "ifxmips_atm_fw_regs_vr9.h" +#else + #error Platform is not specified! +#endif + + + +/* + * PPE ATM Cell Header + */ +#if defined(__BIG_ENDIAN) + struct uni_cell_header { + unsigned int gfc :4; + unsigned int vpi :8; + unsigned int vci :16; + unsigned int pti :3; + unsigned int clp :1; + }; +#else + struct uni_cell_header { + unsigned int clp :1; + unsigned int pti :3; + unsigned int vci :16; + unsigned int vpi :8; + unsigned int gfc :4; + }; +#endif // defined(__BIG_ENDIAN) + +/* + * Inband Header and Trailer + */ +#if defined(__BIG_ENDIAN) + struct rx_inband_trailer { + /* 0 - 3h */ + unsigned int uu :8; + unsigned int cpi :8; + unsigned int stw_res1:4; + unsigned int stw_clp :1; + unsigned int stw_ec :1; + unsigned int stw_uu :1; + unsigned int stw_cpi :1; + unsigned int stw_ovz :1; + unsigned int stw_mfl :1; + unsigned int stw_usz :1; + unsigned int stw_crc :1; + unsigned int stw_il :1; + unsigned int stw_ra :1; + unsigned int stw_res2:2; + /* 4 - 7h */ + unsigned int gfc :4; + unsigned int vpi :8; + unsigned int vci :16; + unsigned int pti :3; + unsigned int clp :1; + }; + + struct tx_inband_header { + /* 0 - 3h */ + unsigned int gfc :4; + unsigned int vpi :8; + unsigned int vci :16; + unsigned int pti :3; + unsigned int clp :1; + /* 4 - 7h */ + unsigned int uu :8; + unsigned int cpi :8; + unsigned int pad :8; + unsigned int res1 :8; + }; +#else + struct rx_inband_trailer { + /* 0 - 3h */ + unsigned int stw_res2:2; + unsigned int stw_ra :1; + unsigned int stw_il :1; + unsigned int stw_crc :1; + unsigned int stw_usz :1; + unsigned int stw_mfl :1; + unsigned int stw_ovz :1; + unsigned int stw_cpi :1; + unsigned int stw_uu :1; + unsigned int stw_ec :1; + unsigned int stw_clp :1; + unsigned int stw_res1:4; + unsigned int cpi :8; + unsigned int uu :8; + /* 4 - 7h */ + unsigned int clp :1; + unsigned int pti :3; + unsigned int vci :16; + unsigned int vpi :8; + unsigned int gfc :4; + }; + + struct tx_inband_header { + /* 0 - 3h */ + unsigned int clp :1; + unsigned int pti :3; + unsigned int vci :16; + unsigned int vpi :8; + unsigned int gfc :4; + /* 4 - 7h */ + unsigned int res1 :8; + unsigned int pad :8; + unsigned int cpi :8; + unsigned int uu :8; + }; +#endif // defined(__BIG_ENDIAN) + +/* + * MIB Table Maintained by Firmware + */ +struct wan_mib_table { + u32 res1; + u32 wrx_drophtu_cell; + u32 wrx_dropdes_pdu; + u32 wrx_correct_pdu; + u32 wrx_err_pdu; + u32 wrx_dropdes_cell; + u32 wrx_correct_cell; + u32 wrx_err_cell; + u32 wrx_total_byte; + u32 res2; + u32 wtx_total_pdu; + u32 wtx_total_cell; + u32 wtx_total_byte; +}; + +/* + * Host-PPE Communication Data Structure + */ + +#if defined(__BIG_ENDIAN) + struct fw_ver_id { + unsigned int family :4; + unsigned int fwtype :4; + unsigned int interface :4; + unsigned int fwmode :4; + unsigned int major :8; + unsigned int minor :8; + }; + + struct wrx_queue_config { + /* 0h */ + unsigned int res2 :27; + unsigned int dmach :4; + unsigned int errdp :1; + /* 1h */ + unsigned int oversize :16; + unsigned int undersize :16; + /* 2h */ + unsigned int res1 :16; + unsigned int mfs :16; + /* 3h */ + unsigned int uumask :8; + unsigned int cpimask :8; + unsigned int uuexp :8; + unsigned int cpiexp :8; + }; + + struct wrx_queue_context { + /* 0h */ + unsigned int curr_len :16; + unsigned int res0 :12; + unsigned int mfs :1; + unsigned int ec :1; + unsigned int clp1 :1; + unsigned int aal5dp :1; + + /* 1h */ + unsigned int intcrc; + + /* 2h, 3h */ + unsigned int curr_des0; + unsigned int curr_des1; + + /* 4h - 0xE */ + unsigned int res1[11]; + + unsigned int last_dword; + }; + + struct wtx_port_config { + unsigned int res1 :27; + unsigned int qid :4; + unsigned int qsben :1; + }; + + struct wtx_queue_config { + unsigned int res1 :16; + unsigned int same_vc_qmap:8; + unsigned int res2 :1; + unsigned int sbid :1; + unsigned int qsb_vcid :4; // Which QSB queue (VCID) does this TX queue map to. + unsigned int res3 :1; + unsigned int qsben :1; + }; + + struct wrx_desc_context { + unsigned int dmach_wrptr : 16; + unsigned int dmach_rdptr : 16; + + unsigned int res0 : 16; + unsigned int dmach_fcnt : 16; + + unsigned int res1 : 11; + unsigned int desbuf_wrptr : 5; + unsigned int res2 : 11; + unsigned int desbuf_rdptr : 5; + + unsigned int res3 : 27; + unsigned int desbuf_vcnt : 5; + }; + + struct wrx_dma_channel_config { + /* 0h */ + unsigned int res1 :1; + unsigned int mode :2; + unsigned int rlcfg :1; + unsigned int desba :28; + /* 1h */ + unsigned int chrl :16; + unsigned int clp1th :16; + /* 2h */ + unsigned int deslen :16; + unsigned int vlddes :16; + }; + + struct wtx_dma_channel_config { + /* 0h */ + unsigned int res2 :1; + unsigned int mode :2; + unsigned int res3 :1; + unsigned int desba :28; + /* 1h */ + unsigned int res1 :32; + /* 2h */ + unsigned int deslen :16; + unsigned int vlddes :16; + }; + + struct htu_entry { + unsigned int res1 :1; + unsigned int clp :1; + unsigned int pid :2; + unsigned int vpi :8; + unsigned int vci :16; + unsigned int pti :3; + unsigned int vld :1; + }; + + struct htu_mask { + unsigned int set :1; + unsigned int clp :1; + unsigned int pid_mask :2; + unsigned int vpi_mask :8; + unsigned int vci_mask :16; + unsigned int pti_mask :3; + unsigned int clear :1; + }; + + struct htu_result { + unsigned int res1 :12; + unsigned int cellid :4; + unsigned int res2 :5; + unsigned int type :1; + unsigned int ven :1; + unsigned int res3 :5; + unsigned int qid :4; + }; + + struct rx_descriptor { + /* 0 - 3h */ + unsigned int own :1; + unsigned int c :1; + unsigned int sop :1; + unsigned int eop :1; + unsigned int res1 :3; + unsigned int byteoff :2; + unsigned int res2 :2; + unsigned int id :4; + unsigned int err :1; + unsigned int datalen :16; + /* 4 - 7h */ + unsigned int res3 :4; + unsigned int dataptr :28; + }; + + struct tx_descriptor { + /* 0 - 3h */ + unsigned int own :1; + unsigned int c :1; + unsigned int sop :1; + unsigned int eop :1; + unsigned int byteoff :5; + unsigned int res1 :5; + unsigned int iscell :1; + unsigned int clp :1; + unsigned int datalen :16; + /* 4 - 7h */ + unsigned int res2 :4; + unsigned int dataptr :28; + }; +#else + struct wrx_queue_config { + /* 0h */ + unsigned int errdp :1; + unsigned int dmach :4; + unsigned int res2 :27; + /* 1h */ + unsigned int undersize :16; + unsigned int oversize :16; + /* 2h */ + unsigned int mfs :16; + unsigned int res1 :16; + /* 3h */ + unsigned int cpiexp :8; + unsigned int uuexp :8; + unsigned int cpimask :8; + unsigned int uumask :8; + }; + + struct wtx_port_config { + unsigned int qsben :1; + unsigned int qid :4; + unsigned int res1 :27; + }; + + struct wtx_queue_config { + unsigned int qsben :1; + unsigned int res3 :1; + unsigned int qsb_vcid :4; // Which QSB queue (VCID) does this TX queue map to. + unsigned int sbid :1; + unsigned int res2 :1; + unsigned int same_vc_qmap:8; + unsigned int res1 :16; + }; + + struct wrx_dma_channel_config + { + /* 0h */ + unsigned int desba :28; + unsigned int rlcfg :1; + unsigned int mode :2; + unsigned int res1 :1; + /* 1h */ + unsigned int clp1th :16; + unsigned int chrl :16; + /* 2h */ + unsigned int vlddes :16; + unsigned int deslen :16; + }; + + struct wtx_dma_channel_config { + /* 0h */ + unsigned int desba :28; + unsigned int res3 :1; + unsigned int mode :2; + unsigned int res2 :1; + /* 1h */ + unsigned int res1 :32; + /* 2h */ + unsigned int vlddes :16; + unsigned int deslen :16; + }; + + struct rx_descriptor { + /* 4 - 7h */ + unsigned int dataptr :28; + unsigned int res3 :4; + /* 0 - 3h */ + unsigned int datalen :16; + unsigned int err :1; + unsigned int id :4; + unsigned int res2 :2; + unsigned int byteoff :2; + unsigned int res1 :3; + unsigned int eop :1; + unsigned int sop :1; + unsigned int c :1; + unsigned int own :1; + }; + + struct tx_descriptor { + /* 4 - 7h */ + unsigned int dataptr :28; + unsigned int res2 :4; + /* 0 - 3h */ + unsigned int datalen :16; + unsigned int clp :1; + unsigned int iscell :1; + unsigned int res1 :5; + unsigned int byteoff :5; + unsigned int eop :1; + unsigned int sop :1; + unsigned int c :1; + unsigned int own :1; + }; +#endif // defined(__BIG_ENDIAN) + +#if defined(ENABLE_ATM_RETX) && ENABLE_ATM_RETX + #if defined(__BIG_ENDIAN) + + struct Retx_adsl_ppe_intf { + unsigned int res0_0 : 16; + unsigned int dtu_sid : 8; + unsigned int dtu_timestamp : 8; + + unsigned int res1_0 : 16; + unsigned int local_time : 8; + unsigned int res1_1 : 5; + unsigned int is_last_cw : 1; + unsigned int reinit_flag : 1; + unsigned int is_bad_cw : 1; + }; + + struct Retx_adsl_ppe_intf_rec { + + unsigned int local_time : 8; + unsigned int res1_1 : 5; + unsigned int is_last_cw : 1; + unsigned int reinit_flag : 1; + unsigned int is_bad_cw : 1; + + unsigned int dtu_sid : 8; + unsigned int dtu_timestamp : 8; + + }; + + struct Retx_mode_cfg { + unsigned int res0 :8; + unsigned int invld_range :8; // used for rejecting the too late arrival of the retransmitted DTU + unsigned int buff_size :8; // the total number of cells in playout buffer is 32 * buff_size + unsigned int res1 :7; + unsigned int retx_en :1; + }; + + struct Retx_Tsync_cfg { + unsigned int fw_alpha :16; // number of consecutive HEC error cell causes that the cell delineation state machine transit from SYNC to HUNT (0 means never) + unsigned int sync_inp :16; // reserved + }; + + struct Retx_Td_cfg { + unsigned int res0 :8; + unsigned int td_max :8; // maximum delay between the time a DTU is first created at transmitter and the time the DTU is sent out of ReTX layer at receiver + unsigned int res1 :8; + unsigned int td_min :8; // minimum delay between the time a DTU is first created at transmitter and the time the DTU is sent out of ReTX layer at receiver + }; + + struct Retx_MIB_Timer_cfg { + unsigned int ticks_per_sec : 16; + unsigned int tick_cycle : 16; + }; + + struct DTU_stat_info { + unsigned int complete : 1; + unsigned int bad : 1; + unsigned int res0_0 : 14; + unsigned int time_stamp : 8; + unsigned int cell_cnt : 8; + + unsigned int dtu_rd_ptr : 16; + unsigned int dtu_wr_ptr : 16; + }; + + struct Retx_ctrl_field { + unsigned int res0 : 1; + + unsigned int l2_drop : 1; + unsigned int res1 : 13; + unsigned int retx : 1; + + unsigned int dtu_sid : 8; + unsigned int cell_sid : 8; + }; + + #else + #error Little Endian is not supported yet. + #endif + + struct dsl_param { + unsigned int update_flag; // 00 + unsigned int res0; // 04 + unsigned int MinDelayrt; // 08 + unsigned int MaxDelayrt; // 0C + unsigned int res1; // 10 + unsigned int res2; // 14 + unsigned int RetxEnable; // 18 + unsigned int ServiceSpecificReTx; // 1C + unsigned int res3; // 20 + unsigned int ReTxPVC; // 24 + unsigned int res4; // 28 + unsigned int res5; // 2C + unsigned int res6; // 30 + unsigned int res7; // 34 + unsigned int res8; // 38 + unsigned int res9; // 3C + unsigned int res10; // 40 + unsigned int res11; // 44 + unsigned int res12; // 48 + unsigned int res13; // 4C + unsigned int RxDtuCorruptedCNT; // 50 + unsigned int RxRetxDtuUnCorrectedCNT;// 54 + unsigned int RxLastEFB; // 58 + unsigned int RxDtuCorrectedCNT; // 5C + }; +#endif + + + +#endif // IFXMIPS_ATM_FW_REGS_COMMON_H diff --git a/package/kernel/lantiq/ltq-atm/src/ifxmips_atm_fw_regs_danube.h b/package/kernel/lantiq/ltq-atm/src/ifxmips_atm_fw_regs_danube.h new file mode 100644 index 0000000..9bdefdb --- /dev/null +++ b/package/kernel/lantiq/ltq-atm/src/ifxmips_atm_fw_regs_danube.h @@ -0,0 +1,51 @@ +/****************************************************************************** +** +** FILE NAME : ifxmips_atm_fw_regs_danube.h +** PROJECT : UEIP +** MODULES : ATM (ADSL) +** +** DATE : 1 AUG 2005 +** AUTHOR : Xu Liang +** DESCRIPTION : ATM Driver (Firmware Registers) +** COPYRIGHT : Copyright (c) 2006 +** Infineon Technologies AG +** Am Campeon 1-12, 85579 Neubiberg, Germany +** +** This program is free software; you can redistribute it and/or modify +** it under the terms of the GNU General Public License as published by +** the Free Software Foundation; either version 2 of the License, or +** (at your option) any later version. +** +** HISTORY +** $Date $Author $Comment +** 4 AUG 2005 Xu Liang Initiate Version +** 23 OCT 2006 Xu Liang Add GPL header. +** 9 JAN 2007 Xu Liang First version got from Anand (IC designer) +*******************************************************************************/ + + + +#ifndef IFXMIPS_ATM_FW_REGS_DANUBE_H +#define IFXMIPS_ATM_FW_REGS_DANUBE_H + +#define FW_VER_ID ((volatile struct fw_ver_id *) SB_BUFFER(0x2001)) +#define CFG_WRX_HTUTS SB_BUFFER(0x2400) /* WAN RX HTU Table Size, must be configured before enable PPE firmware. */ +#define CFG_WRX_QNUM SB_BUFFER(0x2401) /* WAN RX Queue Number */ +#define CFG_WRX_DCHNUM SB_BUFFER(0x2402) /* WAN RX DMA Channel Number, no more than 8, must be configured before enable PPE firmware. */ +#define CFG_WTX_DCHNUM SB_BUFFER(0x2403) /* WAN TX DMA Channel Number, no more than 16, must be configured before enable PPE firmware. */ +#define CFG_WRDES_DELAY SB_BUFFER(0x2404) /* WAN Descriptor Write Delay, must be configured before enable PPE firmware. */ +#define WRX_DMACH_ON SB_BUFFER(0x2405) /* WAN RX DMA Channel Enable, must be configured before enable PPE firmware. */ +#define WTX_DMACH_ON SB_BUFFER(0x2406) /* WAN TX DMA Channel Enable, must be configured before enable PPE firmware. */ +#define WRX_HUNT_BITTH SB_BUFFER(0x2407) /* WAN RX HUNT Threshold, must be between 2 to 8. */ + +#define WRX_QUEUE_CONFIG(i) ((struct wrx_queue_config*) SB_BUFFER(0x2500 + (i) * 20)) +#define WRX_DMA_CHANNEL_CONFIG(i) ((struct wrx_dma_channel_config*) SB_BUFFER(0x2640 + (i) * 7)) +#define WTX_PORT_CONFIG(i) ((struct wtx_port_config*) SB_BUFFER(0x2440 + (i))) +#define WTX_QUEUE_CONFIG(i) ((struct wtx_queue_config*) SB_BUFFER(0x2710 + (i) * 27)) +#define WTX_DMA_CHANNEL_CONFIG(i) ((struct wtx_dma_channel_config*) SB_BUFFER(0x2711 + (i) * 27)) +#define WAN_MIB_TABLE ((struct wan_mib_table*) SB_BUFFER(0x2410)) +#define HTU_ENTRY(i) ((struct htu_entry*) SB_BUFFER(0x2000 + (i))) +#define HTU_MASK(i) ((struct htu_mask*) SB_BUFFER(0x2020 + (i))) +#define HTU_RESULT(i) ((struct htu_result*) SB_BUFFER(0x2040 + (i))) + +#endif diff --git a/package/kernel/lantiq/ltq-atm/src/ifxmips_atm_fw_regs_vr9.h b/package/kernel/lantiq/ltq-atm/src/ifxmips_atm_fw_regs_vr9.h new file mode 100644 index 0000000..708d337 --- /dev/null +++ b/package/kernel/lantiq/ltq-atm/src/ifxmips_atm_fw_regs_vr9.h @@ -0,0 +1,72 @@ +/****************************************************************************** +** +** FILE NAME : ifxmips_atm_fw_regs_vr9.h +** PROJECT : UEIP +** MODULES : ATM (ADSL) +** +** DATE : 1 AUG 2005 +** AUTHOR : Xu Liang +** DESCRIPTION : ATM Driver (Firmware Registers) +** COPYRIGHT : Copyright (c) 2006 +** Infineon Technologies AG +** Am Campeon 1-12, 85579 Neubiberg, Germany +** +** This program is free software; you can redistribute it and/or modify +** it under the terms of the GNU General Public License as published by +** the Free Software Foundation; either version 2 of the License, or +** (at your option) any later version. +** +** HISTORY +** $Date $Author $Comment +** 4 AUG 2005 Xu Liang Initiate Version +** 23 OCT 2006 Xu Liang Add GPL header. +** 9 JAN 2007 Xu Liang First version got from Anand (IC designer) +*******************************************************************************/ + + + +#ifndef IFXMIPS_ATM_FW_REGS_VR9_H +#define IFXMIPS_ATM_FW_REGS_VR9_H + +#define FW_VER_ID ((volatile struct fw_ver_id *) SB_BUFFER(0x2001)) + +/* WAN RX HTU Table Size, must be configured before enable PPE firmware. */ +#define CFG_WRX_HTUTS SB_BUFFER(0x2010) +/* WAN RX Queue Number */ +#define CFG_WRX_QNUM SB_BUFFER(0x2011) +/* WAN RX DMA Channel Number, no more than 8, must be configured before enable PPE firmware. */ +#define CFG_WRX_DCHNUM SB_BUFFER(0x2012) +/* WAN TX DMA Channel Number, no more than 16, must be configured before enable PPE firmware. */ +#define CFG_WTX_DCHNUM SB_BUFFER(0x2013) +/* WAN Descriptor Write Delay, must be configured before enable PPE firmware. */ +#define CFG_WRDES_DELAY SB_BUFFER(0x2014) +/* WAN RX DMA Channel Enable, must be configured before enable PPE firmware. */ +#define WRX_DMACH_ON SB_BUFFER(0x2015) +/* WAN TX DMA Channel Enable, must be configured before enable PPE firmware. */ +#define WTX_DMACH_ON SB_BUFFER(0x2016) +/* WAN RX HUNT Threshold, must be between 2 to 8. */ +#define WRX_HUNT_BITTH SB_BUFFER(0x2017) +/* i < 16 */ +#define WRX_QUEUE_CONFIG(i) ((struct wrx_queue_config *) SB_BUFFER(0x4C00 + (i) * 20)) +/* i < 8 */ +#define WRX_DMA_CHANNEL_CONFIG(i) ((struct wrx_dma_channel_config *) SB_BUFFER(0x4F80 + (i) * 7)) +/* i < 2 */ +#define WTX_PORT_CONFIG(i) ((struct wtx_port_config *) SB_BUFFER(0x4FB8 + (i))) +/* i < 16 */ +#define WTX_QUEUE_CONFIG(i) ((struct wtx_queue_config *) SB_BUFFER(0x3A00 + (i) * 27)) +/* i < 16 */ +#define WTX_DMA_CHANNEL_CONFIG(i) ((struct wtx_dma_channel_config *) SB_BUFFER(0x3A01 + (i) * 27)) + +#define WAN_MIB_TABLE ((struct wan_mib_table *) SB_BUFFER(0x4EF0)) +/* i < 32 */ +#define HTU_ENTRY(i) ((struct htu_entry *) SB_BUFFER(0x26A0 + (i))) +/* i < 32 */ +#define HTU_MASK(i) ((struct htu_mask *) SB_BUFFER(0x26C0 + (i))) +/* i < 32 */ +#define HTU_RESULT(i) ((struct htu_result *) SB_BUFFER(0x26E0 + (i))) +/* bit 0~3 - 0x0F: in showtime, 0x00: not in showtime */ +#define UTP_CFG SB_BUFFER(0x2018) + + + +#endif // IFXMIPS_ATM_FW_REGS_VR9_H diff --git a/package/kernel/lantiq/ltq-atm/src/ifxmips_atm_fw_vr9.h b/package/kernel/lantiq/ltq-atm/src/ifxmips_atm_fw_vr9.h new file mode 100644 index 0000000..42a26ec --- /dev/null +++ b/package/kernel/lantiq/ltq-atm/src/ifxmips_atm_fw_vr9.h @@ -0,0 +1,427 @@ +#ifndef IFXMIPS_ATM_FW_VR9_H +#define IFXMIPS_ATM_FW_VR9_H + + +/****************************************************************************** +** +** FILE NAME : ifxmips_atm_fw_vr9.h +** PROJECT : UEIP +** MODULES : ATM (ADSL) +** +** DATE : 22 OCT 2007 +** AUTHOR : Xu Liang +** DESCRIPTION : ATM Driver (PP32 Firmware) +** COPYRIGHT : Copyright (c) 2006 +** Infineon Technologies AG +** Am Campeon 1-12, 85579 Neubiberg, Germany +** +** This program is free software; you can redistribute it and/or modify +** it under the terms of the GNU General Public License as published by +** the Free Software Foundation; either version 2 of the License, or +** (at your option) any later version. +** +** HISTORY +** $Date $Author $Comment +** 22 OCT 2007 Xu Liang Initial Version, v00.01 +*******************************************************************************/ + + +#define VER_IN_FIRMWARE 1 + +#define ATM_FW_VER_MAJOR 0 +#define ATM_FW_VER_MINOR 24 + + +static u32 vr9_fw_bin[] = { + 0x800004B8, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x8000FFE0, 0x00000000, 0x00000000, 0x00000000, + 0xC1000002, 0xD90C00F8, 0xC2000002, 0xDA0800F9, 0x80004390, 0xC2000000, 0xDA0800F9, 0x80003A10, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x800039C8, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x80004B60, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x800038C8, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0xC0400000, 0xC000ABC0, 0xC88400F8, 0x80004050, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0xC0400002, 0xC000ABC0, 0xC88400F8, 0x80003FD0, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0xC3C00004, 0xDBC800F9, 0xC10C0002, 0xD90C00F8, 0x8000FEE0, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0xC10E0002, 0xD90C00F8, 0xC0004028, 0xC84000F8, 0x80004000, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0xC3E1FFFE, 0x597DFFFE, 0x593DFE14, 0x900004D9, 0x00000000, 0x00000000, 0x00000000, 0x90CC0481, + 0x00000000, 0x00000000, 0x00000000, 0xC3C00000, 0xDBC800F9, 0xC1400008, 0xC1900000, 0x71588000, + 0x14100100, 0xC140000A, 0xC1900002, 0x71588000, 0x14100100, 0xC140000C, 0xC1900004, 0x71588000, + 0x14100100, 0xC1400004, 0xC1900006, 0x71588000, 0x14100100, 0xC1400006, 0xC1900008, 0x71588000, + 0x14100100, 0xC140000E, 0xC190000A, 0x71588000, 0x14100100, 0xC1400000, 0xC190000C, 0x71588000, + 0x14100100, 0xC1400002, 0xC190000E, 0x71588000, 0x14100100, 0xC0400000, 0xC11C0000, 0xC000E82C, + 0xCD05CE00, 0xC11C0002, 0xC000E82C, 0xCD05CE00, 0xC0400002, 0xC11C0000, 0xC000E82C, 0xCD05CE00, + 0xC11C0002, 0xC000E82C, 0xCD05CE00, 0xC000E824, 0x00000000, 0xCBC000F9, 0xCB8000F9, 0xCB4000F9, + 0xCB0000F8, 0xC000ABE4, 0x5BFC4000, 0xCFC000F9, 0x5BB84000, 0xCF8000F9, 0x5B744000, 0xCF4000F9, + 0x5B304000, 0xCF0000F8, 0xC000EA10, 0x00000000, 0xCBC000F9, 0xCB8000F8, 0xC000ABE0, 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0xC000ABD4, + 0xCB4400F8, 0xA6C0FBD2, 0x00000000, 0x5EF40000, 0x8400F722, 0x5EF40002, 0x8400F99A, 0x5EF40004, + 0x8400FB9A, 0xC1006CE8, 0x8000BC30, 0x00000000, 0xC0800000, 0xDF4B0038, 0xC0006900, 0xCB8000F8, + 0xC2000000, 0xC000690A, 0xA78000D0, 0xCBC000F8, 0xC1000000, 0xD90000F9, 0xC1000002, 0xD90C00F8, + 0x6FF46000, 0x477DA000, 0x5B749F00, 0xC2400000, 0x58340004, 0xCA400078, 0xC0006900, 0xCE000000, + 0x5A640002, 0x58340004, 0xC6500078, 0xCD000078, 0xC0006914, 0xCA4000F8, 0xC2000002, 0x6A3D0000, + 0x72612000, 0xCE4000F8, 0xC000E408, 0xCE0000F8, 0xA78200D8, 0xC0006908, 0xCBC000F8, 0xC1000000, + 0xD90000F9, 0xC1000002, 0xD90C00F8, 0x6FF4A000, 0x6FD44000, 0x4755A000, 0x477DA000, 0x5B747400, + 0xC2800000, 0x58340006, 0xCA800078, 0xC2000000, 0xC0006900, 0xCE002100, 0x5EA80002, 0x58340006, + 0xC6900078, 0xCD000078, 0x5A7C0020, 0xC2000002, 0x6A250000, 0xC000E408, 0xCE0000F8, 0xDCA800F9, + 0x5EA80000, 0x8400BAA0, 0x00000000, 0xA4800230, 0x00000000, 0xC3C00000, 0xC000F418, 0xCBC00018, + 0xC3400000, 0xC2400000, 0x6FF86000, 0x47BDC000, 0x5BB89F00, 0x58380008, 0xCB400078, 0x58380006, + 0xCA400078, 0x5F740002, 0x58380008, 0xC7500078, 0xCD000078, 0xC2000000, 0x58380004, 0xCA020078, + 0xC3000000, 0x5838000C, 0xCB000020, 0x5A640002, 0x46610000, 0x84000010, 0xC2400000, 0x58380006, + 0xC6500078, 0xCD000078, 0xC2000000, 0x5838000A, 0xCA020078, 0x5B300002, 0x5838000C, 0xC7100020, + 0xCD000020, 0xC2420020, 0x5A200004, 0x46252000, 0x84000010, 0xC2000000, 0x5838000A, 0xC6101078, + 0xCD021078, 0xC0006966, 0xCA4000F8, 0xC2000002, 0x6A3D0000, 0x72612000, 0xCE4000F8, 0x5F740000, + 0x84000040, 0xC0006912, 0xCA0000F8, 0xC2C00002, 0x6AFD6000, 0x7EC16000, 0x762D0000, 0xCE0000F8, + 0x5F300020, 0x84000040, 0xC0006924, 0xCA0000F8, 0xC2C00002, 0x6AFD6000, 0x7EC16000, 0x762D0000, + 0xCE0000F8, 0xA4820070, 0xC2400000, 0xC000F418, 0xCA408018, 0xC2000002, 0xC0006900, 0xCE000000, + 0xC000690A, 0xCE4000F8, 0xC1000000, 0xD90000F9, 0xD8400078, 0xC1000004, 0xD90000F9, 0xA4840270, + 0x00000000, 0xC3C00000, 0xC000F418, 0xCBC10018, 0xC2800000, 0xC2000000, 0x6FF8A000, 0x6FD44000, + 0x4795C000, 0x47BDC000, 0x5BB87400, 0x5838002E, 0xCA800078, 0x58380006, 0xCA020078, 0xC3400000, + 0x5838002E, 0xCB420078, 0x5AA80002, 0x46A10000, 0x84000010, 0xC2800000, 0x5838002E, 0xC6900078, + 0xCD000078, 0x5F740002, 0x5838002E, 0xC7501078, 0xCD021078, 0xC0006968, 0xCA4000F8, 0xC2000002, + 0x6A3D0000, 0x72612000, 0xCE4000F8, 0xC000692A, 0xCA8000F8, 0x5E740000, 0x84000040, 0xC0006910, + 0xCA0000F8, 0xC2C00002, 0x6AFD6000, 0x7EC16000, 0x762D0000, 0xCE0000F8, 0x6ABD4010, 0xA68000BA, + 0x00000000, 0x58380032, 0xCA0000F8, 0x58000002, 0xCA4000F8, 0x5838000C, 0x00000000, 0xCE0000F9, + 0xCE4000F8, 0xC000692A, 0xCA0000F8, 0xC2C00002, 0x6AFD6000, 0x722D0000, 0xCE0000F8, 0xC000692C, + 0xCA0000F8, 0xC2C00002, 0x6AFD6000, 0x722D0000, 0xCE0000F8, 0x80000040, 0xC000692C, 0xCA0000F8, + 0xC2C00002, 0x6AFD6000, 0x7EC16000, 0x762D0000, 0xCE0000F8, 0xA4880120, 0xC2C00000, 0xC000F418, + 0xCAC20018, 0xC000690E, 0xCA4000F8, 0xC2000002, 0x6A2D0000, 0x7E010000, 0x76612000, 0xCE4000F8, + 0xC000696A, 0xCA4000F8, 0xC2000002, 0x6A2D0000, 0x72612000, 0xCE4000F8, 0x6EF0A000, 0x6ED44000, + 0x47158000, 0x472D8000, 0x5B307400, 0x58300000, 0xCA0000F8, 0x00000000, 0xC2400002, 0x76612000, + 0x8400004A, 0xC24C0002, 0xC6E40018, 0xC624C400, 0x58300010, 0xCA400500, 0x00000000, 0xC000F800, + 0xCE4000F8, 0xA4860070, 0xC2400000, 0xC000F418, 0xCA418018, 0xC2020002, 0xC0006900, 0xCE002100, + 0xC0006908, 0xCE4000F8, 0xC1000000, 0xD90000F9, 0xD8400078, 0xC1000004, 0xD90000F9, 0xC000F414, + 0xCC8000F8, 0xC10E0002, 0xD90C00F8, 0x8000EDF0, 0xDFBC00F9, 0xC000696E, 0x99005C80, 0xC94000F8, + 0xC7D800F8, 0x00000000, 0xC57000F8, 0x5EF00020, 0x88000148, 0x6F346000, 0x4771A000, 0x5B749F00, + 0x58340008, 0xC2400000, 0xCA400078, 0x00000000, 0xC2000000, 0x5A640002, 0xCE400078, 0x58340004, + 0xCA000078, 0x00000000, 0x00000000, 0x5E200002, 0xCE000078, 0xC0006912, 0xCA8000F8, 0xC2400002, + 0x6A712000, 0x72A54000, 0xCE8000F8, 0x5E200000, 0x84000052, 0xC000402A, 0xCA0000F8, 0xC000E408, + 0xCA8000F8, 0x76250000, 0x00000000, 0x72A14000, 0xCE8000F8, 0x80000038, 0xC0006914, 0xCA0000F8, + 0x7E412000, 0x00000000, 0x76250000, 0xCE0000F8, 0x800000D0, 0x6EF4A000, 0x6ED44000, 0x4755A000, + 0x476DA000, 0x5B747400, 0x5834002E, 0xC2400000, 0xCA420078, 0x00000000, 0xC2000000, 0x5A640002, + 0xC6501078, 0xCD021078, 0x58340006, 0xCA000078, 0x00000000, 0x00000000, 0x5A200002, 0xCE000078, + 0xC0006910, 0xCA4000F8, 0xC2000002, 0x6A2D0000, 0x72612000, 0xCE4000F8, 0xC2000002, 0x6A310000, + 0xC000E42A, 0xCE0000F8, 0xC1040002, 0xD90C00F8, 0x00000000, 0x8000EB60, 0x00000000, 0xC4980928, + 0x9D000000, 0xC5580038, 0xC000E838, 0xCD8400F8, 0xC1440080, 0xC1C06B40, 0xC55C0F80, 0xC000F00E, + 0x9D000000, 0xCD8000F8, 0xC000F00C, 0xCDC000F8, 0xC000ABDE, 0xC9C000F8, 0x00000000, 0x00000000, + 0xD9D800F9, 0xC000AB40, 0x401C0000, 0x5DC0ABC0, 0x88000012, 0x5C000080, 0xCD8000F8, 0xC1F0000A, + 0x715CA000, 0xDD9800F8, 0xDD9C00F9, 0x41D8E000, 0xC5D40260, 0xC000F010, 0xCD4000F8, 0x6C9C8000, + 0x45C8E000, 0x45C8E000, 0x59DC0004, 0xC1601260, 0xC5D40260, 0x9D000000, 0xC000F012, 0xCD4000F8, + 0x00000000, 0x00000000, 0xD95800F8, 0x6D586000, 0x4594C000, 0x59989F00, 0xD99800F9, 0x5818000A, + 0xC1800000, 0xC9800078, 0xC0007200, 0x6D5CA000, 0x401C0000, 0x40180000, 0xC94000F8, 0x58000002, + 0x00000000, 0xC9C000F8, 0xC0006930, 0xCD4000F8, 0xC0006932, 0xCDC000F8, 0x59980004, 0xC1C20020, + 0xB59C0018, 0x00000000, 0xC1800000, 0xDD9C00F9, 0x581C000A, 0xCD800078, 0x581C000C, 0xC1800000, + 0xC9800020, 0xC1C00002, 0xDD9400F8, 0x69D4E000, 0x5D980002, 0xCD800020, 0xC0006924, 0xC98000F8, + 0x00000000, 0x9D000000, 0x00000000, 0x719CC000, 0xCD8000F8, 0xC000692A, 0xC94000F8, 0xC1C00002, + 0x69D8E000, 0x7DC0C000, 0x7558A000, 0xCD4000F8, 0xC000692C, 0xC94000F8, 0xDD8000F9, 0x58000032, + 0x755CA000, 0x84000090, 0xC94000F9, 0xC98000F8, 0xDD8000F9, 0x5800000C, 0x00000000, 0xCD4000F9, + 0xCD8000F8, 0xC000692C, 0xC94000F8, 0xC000692A, 0xC98000F8, 0x715CA000, 0xC000692C, 0xCD4000F8, + 0x719CC000, 0xC000692A, 0xCD8000F8, 0x9D000000, 0x00000000, 0x00000000, 0x00000000, 0xC000ABDE, + 0xC98000F8, 0x00000000, 0xC1C00080, 0x4194C000, 0x459CE000, 0x88000012, 0xC5D800F8, 0xC000ABDE, + 0xCD8000F8, 0xC000F406, 0xC98000F8, 0xC1C00002, 0x9D000000, 0xC5D80A00, 0xC5581048, 0xCD8000F8, + 0xC0006930, 0xC98000F8, 0xC0006932, 0xC9C000F8, 0xC140000E, 0xC5581C18, 0xDD9400F8, 0xC000AB40, + 0x40140000, 0x5D40ABC0, 0x88000012, 0x5C000080, 0xCD8000F8, 0x58000002, 0x5D40ABC0, 0x88000012, + 0x5C000080, 0xCDC000F8, 0xDD5400F8, 0xC1C00000, 0x58140006, 0xC9C20078, 0xC1800000, 0x58140000, + 0xC98000D8, 0x6DDC2000, 0xC000691E, 0x41D8E000, 0xCDC000F8, 0xDD9800F8, 0xC1C00022, 0xC5D80D70, + 0xDD9400F9, 0xC5581C18, 0xC000691C, 0xCD8000F8, 0xDD5400F8, 0xC1C00000, 0x58140006, 0xC9C20078, + 0xC1800000, 0x58140004, 0xC9820078, 0x00000000, 0x59DC0002, 0x45D8C000, 0x84000010, 0xC1C00000, + 0x9D000000, 0x58140006, 0xC5D81078, 0xCD821078, 0xC000ABDC, 0xC94000F8, 0xC1820020, 0xC1D00002, + 0x5814AB00, 0xD58000F8, 0x58000002, 0xD58000F9, 0x59540004, 0xB5580018, 0xC000ABDC, 0xC1400000, + 0xCD4000F8, 0xDD9800F9, 0x9D000000, 0xDD9400F8, 0xC000F402, 0xCDC10800, 0xC1C00000, 0xC1800080, + 0x5D980004, 0xDF5D0048, 0x459CA000, 0x8800FFF2, 0xDD8000F9, 0x5800000C, 0x00000000, 0xC94000F9, + 0xC98000F8, 0xC1C00002, 0xC5D43F00, 0xC5D81E00, 0xC000ABDE, 0xC9C000F8, 0x00000000, 0x00000000, + 0x581CAB40, 0x5DC0ABC0, 0x88000012, 0x5C000080, 0xCD4000F8, 0x58000002, 0x5DC0ABC0, 0x88000012, + 0x5C000080, 0xCD8000F8, 0xC000ABDE, 0xC9C000F8, 0x00000000, 0xC15004C0, 0xC5D40060, 0xDD9C00F8, + 0xC5D41C18, 0xC1C00000, 0xDD8000F9, 0x58000030, 0xC9C00078, 0xDD8000F9, 0x58000002, 0xC98000F8, + 0x6DDC2000, 0xC000691C, 0x41D8E000, 0xCD4000F9, 0xCDC000F8, 0xDD9400F9, 0xC1C00000, 0x58140030, + 0xC9C00078, 0xC1800000, 0x58140006, 0xC9820078, 0x00000000, 0x59DC0002, 0x45D8C000, 0x84000010, + 0xC1C00000, 0x9D000000, 0x58140030, 0xC5D80078, 0xCD800078, 0xC1C00000, 0xDF5C0038, 0x5DDC0020, + 0x8400FFEA, 0x00000000, 0x9D000000, 0x00000000, 0x00000000, 0x00000000, 0xC160FFFE, 0xC000EA10, + 0xC9440070, 0xC1A0FFFE, 0x59983408, 0xC000F00C, 0xCD4000F8, 0xC000F00E, 0xCD8000F8, 0xC0006964, + 0xC98000F8, 0x00000000, 0xC170000A, 0x7158A000, 0x6C988000, 0x4588C000, 0x4588C000, 0x59980004, + 0xC5940270, 0xC000F010, 0xCD4000F8, 0xC0006946, 0xC94000F8, 0x00000000, 0x00000000, 0x6D58A000, + 0x6D5C4000, 0x459CC000, 0x4594C000, 0xC000694A, 0xC94000F8, 0xC0006948, 0xC9C000F8, 0x4194C000, + 0xC1400012, 0xC55C1818, 0x9D000000, 0xC59C0268, 0xC000F012, 0xCDC000F8, 0xC1400000, 0x58000012, + 0xC9410038, 0xC0006950, 0xC9C000F8, 0xC55800F8, 0xC5940838, 0xC5581078, 0xD99400F8, 0xC000693C, + 0xC94000F8, 0xC0006954, 0xC98000F8, 0x59DC00A8, 0x45D4E000, 0x41D8E000, 0x5D5C0030, 0x88000010, + 0xC1C00030, 0xC1800000, 0xC5D84028, 0xC1400000, 0xC5D40008, 0x5DD40002, 0x84000072, 0x5DD40004, + 0x8400009A, 0x5DD40006, 0x840000C2, 0x5DD80026, 0x840000EA, 0xDD5400F8, 0xDD8000F9, 0x58000008, + 0x40180000, 0xCD4000F8, 0x59980002, 0x8000FFC0, 0xDD5400F8, 0xDD8000F9, 0x58000008, 0x40180000, + 0xCD4000B8, 0x59980002, 0x8000FF88, 0xDD5400F8, 0xDD8000F9, 0x58000008, 0x40180000, 0xCD400078, + 0x59980002, 0x8000FF50, 0xDD5400F8, 0xDD8000F9, 0x58000008, 0x40180000, 0xCD400038, 0x59980002, + 0x8000FF18, 0x00000000, 0x9D000000, 0x00000000, 0x00000000, 0x00000000, 0x58000012, 0xC94000F8, + 0xC0006954, 0xC9C000F8, 0xC0006950, 0xC9400078, 0xDD8000F9, 0x58000028, 0x5D9C0000, 0x84000052, + 0x5D9C0002, 0x84000052, 0x5D9C0004, 0x8400006A, 0xC55B0038, 0xC55C08B8, 0xCD800039, 0xCDC108B8, + 0x80000060, 0xCD4000F8, 0x80000050, 0xC55900B8, 0xC55C1838, 0xCD8000B9, 0xCDC31838, 0x80000028, + 0xC55A0078, 0xC55C1078, 0xCD800079, 0xCDC21078, 0x9D000000, 0x00000000, 0x00000000, 0x00000000, + 0x59540002, 0x6994E018, 0x61C0C008, 0x4194A000, 0x5D940040, 0x88000012, 0xC59400F8, 0x9D000000, + 0xCD4000F8, 0x00000000, 0x00000000, 0xC000697E, 0xCA4000F8, 0xC0000000, 0xC55800F8, 0xC9D400F9, + 0x00000000, 0x00000000, 0x79E08000, 0xCD1800F9, 0xC5D000F8, 0xC9D400F9, 0xC66000F8, 0xC52160A0, + 0xC5241550, 0x79E08000, 0xCD1800F9, 0xC5D000F8, 0xC9D400F9, 0xC66000F8, 0xC52160A0, 0xC5241550, + 0x79E08000, 0xCD1800F9, 0xC5D000F8, 0xC9D400F9, 0xC66000F8, 0xC52160A0, 0xC5241550, 0x79E08000, + 0xCD1800F9, 0xC5D000F8, 0xC9D400F9, 0xC66000F8, 0xC52160A0, 0xC5241550, 0x79E08000, 0xCD1800F9, + 0xC5D000F8, 0xC9D400F9, 0xC66000F8, 0xC52160A0, 0xC5241550, 0x79E08000, 0xCD1800F9, 0xC5D000F8, + 0xC9D400F9, 0xC66000F8, 0xC52160A0, 0xC5241550, 0x79E08000, 0xCD1800F9, 0xC5D000F8, 0xC9D400F9, + 0xC66000F8, 0xC52160A0, 0xC5241550, 0x79E08000, 0xCD1800F9, 0xC5D000F8, 0xC9D400F9, 0xC66000F8, + 0xC52160A0, 0xC5241550, 0x79E08000, 0xCD1800F9, 0xC5D000F8, 0xC9D400F9, 0xC66000F8, 0xC52160A0, + 0xC5241550, 0x79E08000, 0xCD1800F9, 0xC5D000F8, 0xC9D400F9, 0xC66000F8, 0xC52160A0, 0xC5241550, + 0x79E08000, 0xCD1800F9, 0xC5D000F8, 0xC9D400F9, 0xC66000F8, 0xC52160A0, 0xC5241550, 0x79E08000, + 0xCD1800F9, 0xC5D000F8, 0xC9D400F9, 0xC66000F8, 0xC52160A0, 0xC5241550, 0xC000697C, 0x9CC00000, + 0xCE0000F8, 0xC000697E, 0xCE4000F8, 0x9D000000, 0x4158A000, 0xCD4000F8, 0x00000000, +}; + +static u32 vr9_fw_data[] = { +}; + + +#endif // IFXMIPS_ATM_FW_VR9_H + diff --git a/package/kernel/lantiq/ltq-atm/src/ifxmips_atm_ppe_amazon_se.h b/package/kernel/lantiq/ltq-atm/src/ifxmips_atm_ppe_amazon_se.h new file mode 100644 index 0000000..412f605 --- /dev/null +++ b/package/kernel/lantiq/ltq-atm/src/ifxmips_atm_ppe_amazon_se.h @@ -0,0 +1,121 @@ +/****************************************************************************** +** +** FILE NAME : ifxmips_atm_ppe_amazon_se.h +** PROJECT : UEIP +** MODULES : ATM (ADSL) +** +** DATE : 1 AUG 2005 +** AUTHOR : Xu Liang +** DESCRIPTION : ATM Driver (PPE Registers) +** COPYRIGHT : Copyright (c) 2006 +** Infineon Technologies AG +** Am Campeon 1-12, 85579 Neubiberg, Germany +** +** This program is free software; you can redistribute it and/or modify +** it under the terms of the GNU General Public License as published by +** the Free Software Foundation; either version 2 of the License, or +** (at your option) any later version. +** +** HISTORY +** $Date $Author $Comment +** 4 AUG 2005 Xu Liang Initiate Version +** 23 OCT 2006 Xu Liang Add GPL header. +** 9 JAN 2007 Xu Liang First version got from Anand (IC designer) +*******************************************************************************/ + + + +#ifndef IFXMIPS_ATM_PPE_AMAZON_SE_H +#define IFXMIPS_ATM_PPE_AMAZON_SE_H + + + +/* + * FPI Configuration Bus Register and Memory Address Mapping + */ +#define IFX_PPE (KSEG1 | 0x1E180000) +#define PP32_DEBUG_REG_ADDR(i, x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x0000) << 2))) +#define PPM_INT_REG_ADDR(i, x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x0030) << 2))) +#define PP32_INTERNAL_RES_ADDR(i, x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x0040) << 2))) +#define CDM_CODE_MEMORY(i, x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x1000) << 2))) +#define PPE_REG_ADDR(x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x4000) << 2))) +#define CDM_DATA_MEMORY(i, x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x5000) << 2))) +#define PPM_INT_UNIT_ADDR(x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x6000) << 2))) +#define PPM_TIMER0_ADDR(x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x6100) << 2))) +#define PPM_TASK_IND_REG_ADDR(x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x6200) << 2))) +#define PPS_BRK_ADDR(x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x6300) << 2))) +#define PPM_TIMER1_ADDR(x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x6400) << 2))) +#define SB_RAM0_ADDR(x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x8200) << 2))) +#define SB_RAM1_ADDR(x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x8C00) << 2))) +#define QSB_CONF_REG_ADDR(x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0xC000) << 2))) + +/* + * DWORD-Length of Memory Blocks + */ +#define PP32_DEBUG_REG_DWLEN 0x0030 +#define PPM_INT_REG_DWLEN 0x0010 +#define PP32_INTERNAL_RES_DWLEN 0x00C0 +#define CDM_CODE_MEMORYn_DWLEN(n) ((n) == 0 ? 0x1000 : 0x0800) +#define PPE_REG_DWLEN 0x1000 +#define CDM_DATA_MEMORY_DWLEN CDM_CODE_MEMORYn_DWLEN(1) +#define PPM_INT_UNIT_DWLEN 0x0100 +#define PPM_TIMER0_DWLEN 0x0100 +#define PPM_TASK_IND_REG_DWLEN 0x0100 +#define PPS_BRK_DWLEN 0x0100 +#define PPM_TIMER1_DWLEN 0x0100 +#define SB_RAM0_DWLEN 0x0A00 +#define SB_RAM1_DWLEN 0x0A00 +#define QSB_CONF_REG_DWLEN 0x0100 + +/* + * PP32 to FPI Address Mapping + */ +#define SB_BUFFER(__sb_addr) ((volatile unsigned int *)((((__sb_addr) >= 0x2200) && ((__sb_addr) <= 0x2BFF)) ? SB_RAM0_ADDR((__sb_addr) - 0x2200) : \ + (((__sb_addr) >= 0x2C00) && ((__sb_addr) <= 0x35FF)) ? SB_RAM1_ADDR((__sb_addr) - 0x2C00) : \ + 0)) + +/* + * PP32 Debug Control Register + */ +#define PP32_DBG_CTRL PP32_DEBUG_REG_ADDR(0, 0x0000) + +#define DBG_CTRL_RESTART 0 +#define DBG_CTRL_STOP 1 + +#define PP32_HALT_STAT PP32_DEBUG_REG_ADDR(0, 0x0D00) +#define PP32_BREAKPOINT_REASONS PP32_DEBUG_REG_ADDR(0, 0x0A00) + +#define PP32_BRK_SRC PP32_DEBUG_REG_ADDR(0, 0x0F00) + +#define PP32_DBG_CUR_PC PP32_DEBUG_REG_ADDR(0, 0x0F80) + +#define PP32_DBG_TASK_NO PP32_DEBUG_REG_ADDR(0, 0x0F81) + +/* + * Share Buffer + */ +#define SB_MST_PRI0 PPE_REG_ADDR(0x0300) +#define SB_MST_PRI1 PPE_REG_ADDR(0x0301) + +/* + * EMA Registers + */ +#define EMA_CMDCFG PPE_REG_ADDR(0x0A00) +#define EMA_DATACFG PPE_REG_ADDR(0x0A01) +#define EMA_CMDCNT PPE_REG_ADDR(0x0A02) +#define EMA_DATACNT PPE_REG_ADDR(0x0A03) +#define EMA_ISR PPE_REG_ADDR(0x0A04) +#define EMA_IER PPE_REG_ADDR(0x0A05) +#define EMA_CFG PPE_REG_ADDR(0x0A06) +#define EMA_SUBID PPE_REG_ADDR(0x0A07) + +#define EMA_ALIGNMENT 4 + +/* + * Mailbox IGU1 Interrupt + */ +#define PPE_MAILBOX_IGU1_INT INT_NUM_IM2_IRL13 + + + +#endif // IFXMIPS_ATM_PPE_AMAZON_SE_H diff --git a/package/kernel/lantiq/ltq-atm/src/ifxmips_atm_ppe_ar9.h b/package/kernel/lantiq/ltq-atm/src/ifxmips_atm_ppe_ar9.h new file mode 100644 index 0000000..fae0252 --- /dev/null +++ b/package/kernel/lantiq/ltq-atm/src/ifxmips_atm_ppe_ar9.h @@ -0,0 +1,188 @@ +/****************************************************************************** +** +** FILE NAME : ifxmips_atm_ppe_ar9.h +** PROJECT : UEIP +** MODULES : ATM (ADSL) +** +** DATE : 1 AUG 2005 +** AUTHOR : Xu Liang +** DESCRIPTION : ATM Driver (PPE Registers) +** COPYRIGHT : Copyright (c) 2006 +** Infineon Technologies AG +** Am Campeon 1-12, 85579 Neubiberg, Germany +** +** This program is free software; you can redistribute it and/or modify +** it under the terms of the GNU General Public License as published by +** the Free Software Foundation; either version 2 of the License, or +** (at your option) any later version. +** +** HISTORY +** $Date $Author $Comment +** 4 AUG 2005 Xu Liang Initiate Version +** 23 OCT 2006 Xu Liang Add GPL header. +** 9 JAN 2007 Xu Liang First version got from Anand (IC designer) +*******************************************************************************/ + + + +#ifndef IFXMIPS_ATM_PPE_AR9_H +#define IFXMIPS_ATM_PPE_AR9_H + + + +/* + * FPI Configuration Bus Register and Memory Address Mapping + */ +#define IFX_PPE (KSEG1 | 0x1E180000) +#define PP32_DEBUG_REG_ADDR(i, x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x0000) << 2))) +#define PPM_INT_REG_ADDR(i, x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x0030) << 2))) +#define PP32_INTERNAL_RES_ADDR(i, x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x0040) << 2))) +#define CDM_CODE_MEMORY(i, x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x1000) << 2))) +#define PPE_REG_ADDR(x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x4000) << 2))) +#define CDM_DATA_MEMORY(i, x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x5000) << 2))) +#define PPM_INT_UNIT_ADDR(x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x6000) << 2))) +#define PPM_TIMER0_ADDR(x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x6100) << 2))) +#define PPM_TASK_IND_REG_ADDR(x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x6200) << 2))) +#define PPS_BRK_ADDR(x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x6300) << 2))) +#define PPM_TIMER1_ADDR(x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x6400) << 2))) +#define SB_RAM0_ADDR(x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x8000) << 2))) +#define SB_RAM1_ADDR(x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x8800) << 2))) +#define SB_RAM2_ADDR(x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x9000) << 2))) +#define SB_RAM3_ADDR(x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x9800) << 2))) +#define SB_RAM4_ADDR(x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0xA000) << 2))) +#define QSB_CONF_REG_ADDR(x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0xC000) << 2))) + +/* + * DWORD-Length of Memory Blocks + */ +#define PP32_DEBUG_REG_DWLEN 0x0030 +#define PPM_INT_REG_DWLEN 0x0010 +#define PP32_INTERNAL_RES_DWLEN 0x00C0 +#define CDM_CODE_MEMORYn_DWLEN(n) 0x1000 +#define PPE_REG_DWLEN 0x1000 +#define CDM_DATA_MEMORY_DWLEN CDM_CODE_MEMORYn_DWLEN(1) +#define PPM_INT_UNIT_DWLEN 0x0100 +#define PPM_TIMER0_DWLEN 0x0100 +#define PPM_TASK_IND_REG_DWLEN 0x0100 +#define PPS_BRK_DWLEN 0x0100 +#define PPM_TIMER1_DWLEN 0x0100 +#define SB_RAM0_DWLEN 0x0800 +#define SB_RAM1_DWLEN 0x0800 +#define SB_RAM2_DWLEN 0x0800 +#define SB_RAM3_DWLEN 0x0800 +#define SB_RAM4_DWLEN 0x0C00 +#define QSB_CONF_REG_DWLEN 0x0100 + +/* + * PP32 to FPI Address Mapping + */ +#define SB_BUFFER(__sb_addr) ((volatile unsigned int *)((((__sb_addr) >= 0x0000) && ((__sb_addr) <= 0x0FFF)) ? PPE_REG_ADDR((__sb_addr)): \ + (((__sb_addr) >= 0x2000) && ((__sb_addr) <= 0x27FF)) ? SB_RAM0_ADDR((__sb_addr) - 0x2000) : \ + (((__sb_addr) >= 0x2800) && ((__sb_addr) <= 0x2FFF)) ? SB_RAM1_ADDR((__sb_addr) - 0x2800) : \ + (((__sb_addr) >= 0x3000) && ((__sb_addr) <= 0x37FF)) ? SB_RAM2_ADDR((__sb_addr) - 0x3000) : \ + (((__sb_addr) >= 0x3800) && ((__sb_addr) <= 0x3FFF)) ? SB_RAM3_ADDR((__sb_addr) - 0x3800) : \ + (((__sb_addr) >= 0x4000) && ((__sb_addr) <= 0x4BFF)) ? SB_RAM4_ADDR((__sb_addr) - 0x4000) : \ + 0)) + +/* + * PP32 Debug Control Register + */ +#define NUM_OF_PP32 1 + +#define PP32_DBG_CTRL(n) PP32_DEBUG_REG_ADDR(n, 0x0000) + +#define DBG_CTRL_RESTART 0 +#define DBG_CTRL_STOP 1 + +#define PP32_CTRL_CMD(n) PP32_DEBUG_REG_ADDR(n, 0x0B00) + #define PP32_CTRL_CMD_RESTART (1 << 0) + #define PP32_CTRL_CMD_STOP (1 << 1) + #define PP32_CTRL_CMD_STEP (1 << 2) + #define PP32_CTRL_CMD_BREAKOUT (1 << 3) + +#define PP32_CTRL_OPT(n) PP32_DEBUG_REG_ADDR(n, 0x0C00) + #define PP32_CTRL_OPT_BREAKOUT_ON_STOP_ON (3 << 0) + #define PP32_CTRL_OPT_BREAKOUT_ON_STOP_OFF (2 << 0) + #define PP32_CTRL_OPT_BREAKOUT_ON_BREAKIN_ON (3 << 2) + #define PP32_CTRL_OPT_BREAKOUT_ON_BREAKIN_OFF (2 << 2) + #define PP32_CTRL_OPT_STOP_ON_BREAKIN_ON (3 << 4) + #define PP32_CTRL_OPT_STOP_ON_BREAKIN_OFF (2 << 4) + #define PP32_CTRL_OPT_STOP_ON_BREAKPOINT_ON (3 << 6) + #define PP32_CTRL_OPT_STOP_ON_BREAKPOINT_OFF (2 << 6) + #define PP32_CTRL_OPT_BREAKOUT_ON_STOP(n) (*PP32_CTRL_OPT(n) & (1 << 0)) + #define PP32_CTRL_OPT_BREAKOUT_ON_BREAKIN(n) (*PP32_CTRL_OPT(n) & (1 << 2)) + #define PP32_CTRL_OPT_STOP_ON_BREAKIN(n) (*PP32_CTRL_OPT(n) & (1 << 4)) + #define PP32_CTRL_OPT_STOP_ON_BREAKPOINT(n) (*PP32_CTRL_OPT(n) & (1 << 6)) + +#define PP32_BRK_PC(n, i) PP32_DEBUG_REG_ADDR(n, 0x0900 + (i) * 2) +#define PP32_BRK_PC_MASK(n, i) PP32_DEBUG_REG_ADDR(n, 0x0901 + (i) * 2) +#define PP32_BRK_DATA_ADDR(n, i) PP32_DEBUG_REG_ADDR(n, 0x0904 + (i) * 2) +#define PP32_BRK_DATA_ADDR_MASK(n, i) PP32_DEBUG_REG_ADDR(n, 0x0905 + (i) * 2) +#define PP32_BRK_DATA_VALUE_RD(n, i) PP32_DEBUG_REG_ADDR(n, 0x0908 + (i) * 2) +#define PP32_BRK_DATA_VALUE_RD_MASK(n, i) PP32_DEBUG_REG_ADDR(n, 0x0909 + (i) * 2) +#define PP32_BRK_DATA_VALUE_WR(n, i) PP32_DEBUG_REG_ADDR(n, 0x090C + (i) * 2) +#define PP32_BRK_DATA_VALUE_WR_MASK(n, i) PP32_DEBUG_REG_ADDR(n, 0x090D + (i) * 2) + #define PP32_BRK_CONTEXT_MASK(i) (1 << (i)) + #define PP32_BRK_CONTEXT_MASK_EN (1 << 4) + #define PP32_BRK_COMPARE_GREATER_EQUAL (1 << 5) // valid for break data value rd/wr only + #define PP32_BRK_COMPARE_LOWER_EQUAL (1 << 6) + #define PP32_BRK_COMPARE_EN (1 << 7) + +#define PP32_BRK_TRIG(n) PP32_DEBUG_REG_ADDR(n, 0x0F00) + #define PP32_BRK_GRPi_PCn_ON(i, n) ((3 << ((n) * 2)) << ((i) * 16)) + #define PP32_BRK_GRPi_PCn_OFF(i, n) ((2 << ((n) * 2)) << ((i) * 16)) + #define PP32_BRK_GRPi_DATA_ADDRn_ON(i, n) ((3 << ((n) * 2 + 4)) << ((i) * 16)) + #define PP32_BRK_GRPi_DATA_ADDRn_OFF(i, n) ((2 << ((n) * 2 + 4)) << ((i) * 16)) + #define PP32_BRK_GRPi_DATA_VALUE_RDn_ON(i, n) ((3 << ((n) * 2 + 8)) << ((i) * 16)) + #define PP32_BRK_GRPi_DATA_VALUE_RDn_OFF(i, n)((2 << ((n) * 2 + 8)) << ((i) * 16)) + #define PP32_BRK_GRPi_DATA_VALUE_WRn_ON(i, n) ((3 << ((n) * 2 + 12)) << ((i) * 16)) + #define PP32_BRK_GRPi_DATA_VALUE_WRn_OFF(i, n)((2 << ((n) * 2 + 12)) << ((i) * 16)) + #define PP32_BRK_GRPi_PCn(k, i, n) (*PP32_BRK_TRIG(k) & ((1 << ((n))) << ((i) * 8))) + #define PP32_BRK_GRPi_DATA_ADDRn(k, i, n) (*PP32_BRK_TRIG(k) & ((1 << ((n) + 2)) << ((i) * 8))) + #define PP32_BRK_GRPi_DATA_VALUE_RDn(k, i, n) (*PP32_BRK_TRIG(k) & ((1 << ((n) + 4)) << ((i) * 8))) + #define PP32_BRK_GRPi_DATA_VALUE_WRn(k, i, n) (*PP32_BRK_TRIG(k) & ((1 << ((n) + 6)) << ((i) * 8))) + +#define PP32_CPU_STATUS(n) PP32_DEBUG_REG_ADDR(n, 0x0D00) +#define PP32_HALT_STAT(n) PP32_CPU_STATUS(n) +#define PP32_DBG_CUR_PC(n) PP32_CPU_STATUS(n) + #define PP32_CPU_USER_STOPPED(n) (*PP32_CPU_STATUS(n) & (1 << 0)) + #define PP32_CPU_USER_BREAKIN_RCV(n) (*PP32_CPU_STATUS(n) & (1 << 1)) + #define PP32_CPU_USER_BREAKPOINT_MET(n) (*PP32_CPU_STATUS(n) & (1 << 2)) + #define PP32_CPU_CUR_PC(n) (*PP32_CPU_STATUS(n) >> 16) + +#define PP32_BREAKPOINT_REASONS(n) PP32_DEBUG_REG_ADDR(n, 0x0A00) + #define PP32_BRK_PC_MET(n, i) (*PP32_BREAKPOINT_REASONS(n) & (1 << (i))) + #define PP32_BRK_DATA_ADDR_MET(n, i) (*PP32_BREAKPOINT_REASONS(n) & (1 << ((i) + 2))) + #define PP32_BRK_DATA_VALUE_RD_MET(n, i) (*PP32_BREAKPOINT_REASONS(n) & (1 << ((i) + 4))) + #define PP32_BRK_DATA_VALUE_WR_MET(n, i) (*PP32_BREAKPOINT_REASONS(n) & (1 << ((i) + 6))) + #define PP32_BRK_DATA_VALUE_RD_LO_EQ(n, i) (*PP32_BREAKPOINT_REASONS(n) & (1 << ((i) * 2 + 8))) + #define PP32_BRK_DATA_VALUE_RD_GT_EQ(n, i) (*PP32_BREAKPOINT_REASONS(n) & (1 << ((i) * 2 + 9))) + #define PP32_BRK_DATA_VALUE_WR_LO_EQ(n, i) (*PP32_BREAKPOINT_REASONS(n) & (1 << ((i) * 2 + 12))) + #define PP32_BRK_DATA_VALUE_WR_GT_EQ(n, i) (*PP32_BREAKPOINT_REASONS(n) & (1 << ((i) * 2 + 13))) + #define PP32_BRK_CUR_CONTEXT(n) ((*PP32_BREAKPOINT_REASONS(n) >> 16) & 0x03) + +#define PP32_GP_REG_BASE(n) PP32_DEBUG_REG_ADDR(n, 0x0E00) +#define PP32_GP_CONTEXTi_REGn(n, i, j) PP32_DEBUG_REG_ADDR(n, 0x0E00 + (i) * 16 + (j)) + +/* + * EMA Registers + */ +#define EMA_CMDCFG PPE_REG_ADDR(0x0A00) +#define EMA_DATACFG PPE_REG_ADDR(0x0A01) +#define EMA_CMDCNT PPE_REG_ADDR(0x0A02) +#define EMA_DATACNT PPE_REG_ADDR(0x0A03) +#define EMA_ISR PPE_REG_ADDR(0x0A04) +#define EMA_IER PPE_REG_ADDR(0x0A05) +#define EMA_CFG PPE_REG_ADDR(0x0A06) +#define EMA_SUBID PPE_REG_ADDR(0x0A07) + +#define EMA_ALIGNMENT 4 + +/* + * Mailbox IGU1 Interrupt + */ +#define PPE_MAILBOX_IGU1_INT INT_NUM_IM2_IRL24 + + + +#endif // IFXMIPS_ATM_PPE_AR9_H diff --git a/package/kernel/lantiq/ltq-atm/src/ifxmips_atm_ppe_common.h b/package/kernel/lantiq/ltq-atm/src/ifxmips_atm_ppe_common.h new file mode 100644 index 0000000..ee55fd7 --- /dev/null +++ b/package/kernel/lantiq/ltq-atm/src/ifxmips_atm_ppe_common.h @@ -0,0 +1,368 @@ +/****************************************************************************** +** +** FILE NAME : ifxmips_atm_ppe_common.h +** PROJECT : UEIP +** MODULES : ATM (ADSL) +** +** DATE : 1 AUG 2005 +** AUTHOR : Xu Liang +** DESCRIPTION : ATM Driver (PPE Registers) +** COPYRIGHT : Copyright (c) 2006 +** Infineon Technologies AG +** Am Campeon 1-12, 85579 Neubiberg, Germany +** +** This program is free software; you can redistribute it and/or modify +** it under the terms of the GNU General Public License as published by +** the Free Software Foundation; either version 2 of the License, or +** (at your option) any later version. +** +** HISTORY +** $Date $Author $Comment +** 4 AUG 2005 Xu Liang Initiate Version +** 23 OCT 2006 Xu Liang Add GPL header. +** 9 JAN 2007 Xu Liang First version got from Anand (IC designer) +*******************************************************************************/ + + + +#ifndef IFXMIPS_ATM_PPE_COMMON_H +#define IFXMIPS_ATM_PPE_COMMON_H + + + +#if defined(CONFIG_DANUBE) + #include "ifxmips_atm_ppe_danube.h" +#elif defined(CONFIG_AMAZON_SE) + #include "ifxmips_atm_ppe_amazon_se.h" +#elif defined(CONFIG_AR9) + #include "ifxmips_atm_ppe_ar9.h" +#elif defined(CONFIG_VR9) + #include "ifxmips_atm_ppe_vr9.h" +#else + #error Platform is not specified! +#endif + + + +/* + * Code/Data Memory (CDM) Interface Configuration Register + */ +#define CDM_CFG PPE_REG_ADDR(0x0100) + +#define CDM_CFG_RAM1 GET_BITS(*CDM_CFG, 3, 2) +#define CDM_CFG_RAM0 (*CDM_CFG & (1 << 1)) + +#define CDM_CFG_RAM1_SET(value) SET_BITS(0, 3, 2, value) +#define CDM_CFG_RAM0_SET(value) ((value) ? (1 << 1) : 0) + +/* + * QSB Internal Cell Delay Variation Register + */ +#define QSB_ICDV QSB_CONF_REG_ADDR(0x0007) + +#define QSB_ICDV_TAU GET_BITS(*QSB_ICDV, 5, 0) + +#define QSB_ICDV_TAU_SET(value) SET_BITS(0, 5, 0, value) + +/* + * QSB Scheduler Burst Limit Register + */ +#define QSB_SBL QSB_CONF_REG_ADDR(0x0009) + +#define QSB_SBL_SBL GET_BITS(*QSB_SBL, 3, 0) + +#define QSB_SBL_SBL_SET(value) SET_BITS(0, 3, 0, value) + +/* + * QSB Configuration Register + */ +#define QSB_CFG QSB_CONF_REG_ADDR(0x000A) + +#define QSB_CFG_TSTEPC GET_BITS(*QSB_CFG, 1, 0) + +#define QSB_CFG_TSTEPC_SET(value) SET_BITS(0, 1, 0, value) + +/* + * QSB RAM Transfer Table Register + */ +#define QSB_RTM QSB_CONF_REG_ADDR(0x000B) + +#define QSB_RTM_DM (*QSB_RTM) + +#define QSB_RTM_DM_SET(value) ((value) & 0xFFFFFFFF) + +/* + * QSB RAM Transfer Data Register + */ +#define QSB_RTD QSB_CONF_REG_ADDR(0x000C) + +#define QSB_RTD_TTV (*QSB_RTD) + +#define QSB_RTD_TTV_SET(value) ((value) & 0xFFFFFFFF) + +/* + * QSB RAM Access Register + */ +#define QSB_RAMAC QSB_CONF_REG_ADDR(0x000D) + +#define QSB_RAMAC_RW (*QSB_RAMAC & (1 << 31)) +#define QSB_RAMAC_TSEL GET_BITS(*QSB_RAMAC, 27, 24) +#define QSB_RAMAC_LH (*QSB_RAMAC & (1 << 16)) +#define QSB_RAMAC_TESEL GET_BITS(*QSB_RAMAC, 9, 0) + +#define QSB_RAMAC_RW_SET(value) ((value) ? (1 << 31) : 0) +#define QSB_RAMAC_TSEL_SET(value) SET_BITS(0, 27, 24, value) +#define QSB_RAMAC_LH_SET(value) ((value) ? (1 << 16) : 0) +#define QSB_RAMAC_TESEL_SET(value) SET_BITS(0, 9, 0, value) + +/* + * QSB Queue Scheduling and Shaping Definitions + */ +#define QSB_WFQ_NONUBR_MAX 0x3f00 +#define QSB_WFQ_UBR_BYPASS 0x3fff +#define QSB_TP_TS_MAX 65472 +#define QSB_TAUS_MAX 64512 +#define QSB_GCR_MIN 18 + +/* + * QSB Constant + */ +#define QSB_RAMAC_RW_READ 0 +#define QSB_RAMAC_RW_WRITE 1 + +#define QSB_RAMAC_TSEL_QPT 0x01 +#define QSB_RAMAC_TSEL_SCT 0x02 +#define QSB_RAMAC_TSEL_SPT 0x03 +#define QSB_RAMAC_TSEL_VBR 0x08 + +#define QSB_RAMAC_LH_LOW 0 +#define QSB_RAMAC_LH_HIGH 1 + +#define QSB_QPT_SET_MASK 0x0 +#define QSB_QVPT_SET_MASK 0x0 +#define QSB_SET_SCT_MASK 0x0 +#define QSB_SET_SPT_MASK 0x0 +#define QSB_SET_SPT_SBVALID_MASK 0x7FFFFFFF + +#define QSB_SPT_SBV_VALID (1 << 31) +#define QSB_SPT_PN_SET(value) (((value) & 0x01) ? (1 << 16) : 0) +#define QSB_SPT_INTRATE_SET(value) SET_BITS(0, 13, 0, value) + +/* + * QSB Queue Parameter Table Entry and Queue VBR Parameter Table Entry + */ +#if defined(__BIG_ENDIAN) + union qsb_queue_parameter_table { + struct { + unsigned int res1 :1; + unsigned int vbr :1; + unsigned int wfqf :14; + unsigned int tp :16; + } bit; + u32 dword; + }; + + union qsb_queue_vbr_parameter_table { + struct { + unsigned int taus :16; + unsigned int ts :16; + } bit; + u32 dword; + }; +#else + union qsb_queue_parameter_table { + struct { + unsigned int tp :16; + unsigned int wfqf :14; + unsigned int vbr :1; + unsigned int res1 :1; + } bit; + u32 dword; + }; + + union qsb_queue_vbr_parameter_table { + struct { + unsigned int ts :16; + unsigned int taus :16; + } bit; + u32 dword; + }; +#endif // defined(__BIG_ENDIAN) + +/* + * Mailbox IGU0 Registers + */ +#define MBOX_IGU0_ISRS PPE_REG_ADDR(0x0200) +#define MBOX_IGU0_ISRC PPE_REG_ADDR(0x0201) +#define MBOX_IGU0_ISR PPE_REG_ADDR(0x0202) +#define MBOX_IGU0_IER PPE_REG_ADDR(0x0203) + +#define MBOX_IGU0_ISRS_SET(n) (1 << (n)) +#define MBOX_IGU0_ISRC_CLEAR(n) (1 << (n)) +#define MBOX_IGU0_ISR_ISR(n) (*MBOX_IGU0_ISR & (1 << (n))) +#define MBOX_IGU0_IER_EN(n) (*MBOX_IGU0_IER & (1 << (n))) +#define MBOX_IGU0_IER_EN_SET(n) (1 << (n)) + +/* + * Mailbox IGU1 Registers + */ +#define MBOX_IGU1_ISRS PPE_REG_ADDR(0x0204) +#define MBOX_IGU1_ISRC PPE_REG_ADDR(0x0205) +#define MBOX_IGU1_ISR PPE_REG_ADDR(0x0206) +#define MBOX_IGU1_IER PPE_REG_ADDR(0x0207) + +#define MBOX_IGU1_ISRS_SET(n) (1 << (n)) +#define MBOX_IGU1_ISRC_CLEAR(n) (1 << (n)) +#define MBOX_IGU1_ISR_ISR(n) (*MBOX_IGU1_ISR & (1 << (n))) +#define MBOX_IGU1_IER_EN(n) (*MBOX_IGU1_IER & (1 << (n))) +#define MBOX_IGU1_IER_EN_SET(n) (1 << (n)) + +/* + * Mailbox IGU3 Registers + */ +#define MBOX_IGU3_ISRS PPE_REG_ADDR(0x0214) +#define MBOX_IGU3_ISRC PPE_REG_ADDR(0x0215) +#define MBOX_IGU3_ISR PPE_REG_ADDR(0x0216) +#define MBOX_IGU3_IER PPE_REG_ADDR(0x0217) + +#define MBOX_IGU3_ISRS_SET(n) (1 << (n)) +#define MBOX_IGU3_ISRC_CLEAR(n) (1 << (n)) +#define MBOX_IGU3_ISR_ISR(n) (*MBOX_IGU3_ISR & (1 << (n))) +#define MBOX_IGU3_IER_EN(n) (*MBOX_IGU3_IER & (1 << (n))) +#define MBOX_IGU3_IER_EN_SET(n) (1 << (n)) + +/* + * RTHA/TTHA Registers + */ +#define RFBI_CFG PPE_REG_ADDR(0x0400) +#define RBA_CFG0 PPE_REG_ADDR(0x0404) +#define RBA_CFG1 PPE_REG_ADDR(0x0405) +#define RCA_CFG0 PPE_REG_ADDR(0x0408) +#define RCA_CFG1 PPE_REG_ADDR(0x0409) +#define RDES_CFG0 PPE_REG_ADDR(0x040C) +#define RDES_CFG1 PPE_REG_ADDR(0x040D) +#define SFSM_STATE0 PPE_REG_ADDR(0x0410) +#define SFSM_STATE1 PPE_REG_ADDR(0x0411) +#define SFSM_DBA0 PPE_REG_ADDR(0x0412) +#define SFSM_DBA1 PPE_REG_ADDR(0x0413) +#define SFSM_CBA0 PPE_REG_ADDR(0x0414) +#define SFSM_CBA1 PPE_REG_ADDR(0x0415) +#define SFSM_CFG0 PPE_REG_ADDR(0x0416) +#define SFSM_CFG1 PPE_REG_ADDR(0x0417) +#define SFSM_PGCNT0 PPE_REG_ADDR(0x041C) +#define SFSM_PGCNT1 PPE_REG_ADDR(0x041D) +#define FFSM_DBA0 PPE_REG_ADDR(0x0508) +#define FFSM_DBA1 PPE_REG_ADDR(0x0509) +#define FFSM_CFG0 PPE_REG_ADDR(0x050A) +#define FFSM_CFG1 PPE_REG_ADDR(0x050B) +#define FFSM_IDLE_HEAD_BC0 PPE_REG_ADDR(0x050E) +#define FFSM_IDLE_HEAD_BC1 PPE_REG_ADDR(0x050F) +#define FFSM_PGCNT0 PPE_REG_ADDR(0x0514) +#define FFSM_PGCNT1 PPE_REG_ADDR(0x0515) + +/* + * PPE TC Logic Registers (partial) + */ +#define DREG_A_VERSION PPE_REG_ADDR(0x0D00) +#define DREG_A_CFG PPE_REG_ADDR(0x0D01) +#define DREG_AT_CTRL PPE_REG_ADDR(0x0D02) +#define DREG_AT_CB_CFG0 PPE_REG_ADDR(0x0D03) +#define DREG_AT_CB_CFG1 PPE_REG_ADDR(0x0D04) +#define DREG_AR_CTRL PPE_REG_ADDR(0x0D08) +#define DREG_AR_CB_CFG0 PPE_REG_ADDR(0x0D09) +#define DREG_AR_CB_CFG1 PPE_REG_ADDR(0x0D0A) +#define DREG_A_UTPCFG PPE_REG_ADDR(0x0D0E) +#define DREG_A_STATUS PPE_REG_ADDR(0x0D0F) +#define DREG_AT_CFG0 PPE_REG_ADDR(0x0D20) +#define DREG_AT_CFG1 PPE_REG_ADDR(0x0D21) +#define DREG_AT_FB_SIZE0 PPE_REG_ADDR(0x0D22) +#define DREG_AT_FB_SIZE1 PPE_REG_ADDR(0x0D23) +#define DREG_AT_CELL0 PPE_REG_ADDR(0x0D24) +#define DREG_AT_CELL1 PPE_REG_ADDR(0x0D25) +#define DREG_AT_IDLE_CNT0 PPE_REG_ADDR(0x0D26) +#define DREG_AT_IDLE_CNT1 PPE_REG_ADDR(0x0D27) +#define DREG_AT_IDLE0 PPE_REG_ADDR(0x0D28) +#define DREG_AT_IDLE1 PPE_REG_ADDR(0x0D29) +#define DREG_AR_CFG0 PPE_REG_ADDR(0x0D60) +#define DREG_AR_CFG1 PPE_REG_ADDR(0x0D61) +#define DREG_AR_CELL0 PPE_REG_ADDR(0x0D68) +#define DREG_AR_CELL1 PPE_REG_ADDR(0x0D69) +#define DREG_AR_IDLE_CNT0 PPE_REG_ADDR(0x0D6A) +#define DREG_AR_IDLE_CNT1 PPE_REG_ADDR(0x0D6B) +#define DREG_AR_AIIDLE_CNT0 PPE_REG_ADDR(0x0D6C) +#define DREG_AR_AIIDLE_CNT1 PPE_REG_ADDR(0x0D6D) +#define DREG_AR_BE_CNT0 PPE_REG_ADDR(0x0D6E) +#define DREG_AR_BE_CNT1 PPE_REG_ADDR(0x0D6F) +#define DREG_AR_HEC_CNT0 PPE_REG_ADDR(0x0D70) +#define DREG_AR_HEC_CNT1 PPE_REG_ADDR(0x0D71) +#define DREG_AR_IDLE0 PPE_REG_ADDR(0x0D74) +#define DREG_AR_IDLE1 PPE_REG_ADDR(0x0D75) +#define DREG_AR_CVN_CNT0 PPE_REG_ADDR(0x0DA4) +#define DREG_AR_CVN_CNT1 PPE_REG_ADDR(0x0DA5) +#define DREG_AR_CVNP_CNT0 PPE_REG_ADDR(0x0DA6) +#define DREG_AR_CVNP_CNT1 PPE_REG_ADDR(0x0DA7) +#define DREG_B0_LADR PPE_REG_ADDR(0x0DA8) +#define DREG_B1_LADR PPE_REG_ADDR(0x0DA9) + +#define SFSM_DBA(i) ( (SFSM_dba * ) PPE_REG_ADDR(0x0412 + (i))) +#define SFSM_CBA(i) ( (SFSM_cba * ) PPE_REG_ADDR(0x0414 + (i))) +#define SFSM_CFG(i) ( (SFSM_cfg * ) PPE_REG_ADDR(0x0416 + (i))) +#define SFSM_PGCNT(i) ( (SFSM_pgcnt * ) PPE_REG_ADDR(0x041C + (i))) + +#define FFSM_DBA(i) ( (FFSM_dba * ) PPE_REG_ADDR(0x0508 + (i))) +#define FFSM_CFG(i) ( (FFSM_cfg * ) PPE_REG_ADDR(0x050A + (i))) +#define FFSM_PGCNT(i) ( (FFSM_pgcnt * ) PPE_REG_ADDR(0x0514 + (i))) + +typedef struct { + unsigned int res : 19; + unsigned int dbase : 13; +} SFSM_dba; + +typedef struct { + unsigned int res : 19; + unsigned int cbase : 13; +} SFSM_cba; + +typedef struct { + unsigned int res : 15; + unsigned int endian : 1; + unsigned int idlekeep: 1; + unsigned int sen : 1; + unsigned int res1 : 8; + unsigned int pnum : 6; +} SFSM_cfg; + +typedef struct { + unsigned int res : 17; + unsigned int pptr : 6; + unsigned int dcmd : 1; + unsigned int res1 : 2; + unsigned int upage : 6; +} SFSM_pgcnt; + +typedef struct { + unsigned int res : 19; + unsigned int dbase : 13; +} FFSM_dba; + +typedef struct { + unsigned int res : 12; + unsigned int rstptr : 1; + unsigned int clvpage : 1; + unsigned int fidle : 1; + unsigned int endian : 1; + unsigned int res1 : 10; + unsigned int pnum : 6; +} FFSM_cfg; + +typedef struct { + unsigned int res : 17; + unsigned int ival : 6; + unsigned int icmd : 1; + unsigned int res1 : 2; + unsigned int vpage : 6; +} FFSM_pgcnt; + + + +#endif // IFXMIPS_ATM_PPE_COMMON_H diff --git a/package/kernel/lantiq/ltq-atm/src/ifxmips_atm_ppe_danube.h b/package/kernel/lantiq/ltq-atm/src/ifxmips_atm_ppe_danube.h new file mode 100644 index 0000000..7aaaa8d --- /dev/null +++ b/package/kernel/lantiq/ltq-atm/src/ifxmips_atm_ppe_danube.h @@ -0,0 +1,129 @@ +/****************************************************************************** +** +** FILE NAME : ifxmips_atm_ppe_danube.h +** PROJECT : UEIP +** MODULES : ATM (ADSL) +** +** DATE : 1 AUG 2005 +** AUTHOR : Xu Liang +** DESCRIPTION : ATM Driver (PPE Registers) +** COPYRIGHT : Copyright (c) 2006 +** Infineon Technologies AG +** Am Campeon 1-12, 85579 Neubiberg, Germany +** +** This program is free software; you can redistribute it and/or modify +** it under the terms of the GNU General Public License as published by +** the Free Software Foundation; either version 2 of the License, or +** (at your option) any later version. +** +** HISTORY +** $Date $Author $Comment +** 4 AUG 2005 Xu Liang Initiate Version +** 23 OCT 2006 Xu Liang Add GPL header. +** 9 JAN 2007 Xu Liang First version got from Anand (IC designer) +*******************************************************************************/ + + + +#ifndef IFXMIPS_ATM_PPE_DANUBE_H +#define IFXMIPS_ATM_PPE_DANUBE_H + + + +/* + * FPI Configuration Bus Register and Memory Address Mapping + */ +#define IFX_PPE (KSEG1 | 0x1E180000) +#define PP32_DEBUG_REG_ADDR(i, x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x0000) << 2))) +#define PPM_INT_REG_ADDR(i, x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x0030) << 2))) +#define PP32_INTERNAL_RES_ADDR(i, x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x0040) << 2))) +#define CDM_CODE_MEMORY(i, x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x1000) << 2))) +#define PPE_REG_ADDR(x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x4000) << 2))) +#define CDM_DATA_MEMORY(i, x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x5000) << 2))) +#define PPM_INT_UNIT_ADDR(x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x6000) << 2))) +#define PPM_TIMER0_ADDR(x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x6100) << 2))) +#define PPM_TASK_IND_REG_ADDR(x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x6200) << 2))) +#define PPS_BRK_ADDR(x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x6300) << 2))) +#define PPM_TIMER1_ADDR(x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x6400) << 2))) +#define SB_RAM0_ADDR(x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x8000) << 2))) +#define SB_RAM1_ADDR(x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x8400) << 2))) +#define SB_RAM2_ADDR(x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x8C00) << 2))) +#define SB_RAM3_ADDR(x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x9600) << 2))) +#define QSB_CONF_REG_ADDR(x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0xC000) << 2))) + +/* + * DWORD-Length of Memory Blocks + */ +#define PP32_DEBUG_REG_DWLEN 0x0030 +#define PPM_INT_REG_DWLEN 0x0010 +#define PP32_INTERNAL_RES_DWLEN 0x00C0 +#define CDM_CODE_MEMORYn_DWLEN(n) ((n) == 0 ? 0x1000 : 0x0800) +#define PPE_REG_DWLEN 0x1000 +#define CDM_DATA_MEMORY_DWLEN CDM_CODE_MEMORYn_DWLEN(1) +#define PPM_INT_UNIT_DWLEN 0x0100 +#define PPM_TIMER0_DWLEN 0x0100 +#define PPM_TASK_IND_REG_DWLEN 0x0100 +#define PPS_BRK_DWLEN 0x0100 +#define PPM_TIMER1_DWLEN 0x0100 +#define SB_RAM0_DWLEN 0x0400 +#define SB_RAM1_DWLEN 0x0800 +#define SB_RAM2_DWLEN 0x0A00 +#define SB_RAM3_DWLEN 0x0400 +#define QSB_CONF_REG_DWLEN 0x0100 + +/* + * PP32 to FPI Address Mapping + */ +#define SB_BUFFER(__sb_addr) ((volatile unsigned int *)((((__sb_addr) >= 0x2000) && ((__sb_addr) <= 0x23FF)) ? SB_RAM0_ADDR((__sb_addr) - 0x2000) : \ + (((__sb_addr) >= 0x2400) && ((__sb_addr) <= 0x2BFF)) ? SB_RAM1_ADDR((__sb_addr) - 0x2400) : \ + (((__sb_addr) >= 0x2C00) && ((__sb_addr) <= 0x35FF)) ? SB_RAM2_ADDR((__sb_addr) - 0x2C00) : \ + (((__sb_addr) >= 0x3600) && ((__sb_addr) <= 0x39FF)) ? SB_RAM3_ADDR((__sb_addr) - 0x3600) : \ + 0)) + +/* + * PP32 Debug Control Register + */ +#define PP32_DBG_CTRL PP32_DEBUG_REG_ADDR(0, 0x0000) + +#define DBG_CTRL_START_SET(value) ((value) ? (1 << 0) : 0) +#define DBG_CTRL_STOP_SET(value) ((value) ? (1 << 1) : 0) +#define DBG_CTRL_STEP_SET(value) ((value) ? (1 << 2) : 0) + +#define PP32_HALT_STAT PP32_DEBUG_REG_ADDR(0, 0x0001) + +#define PP32_BRK_SRC PP32_DEBUG_REG_ADDR(0, 0x0002) + +#define PP32_DBG_PC_MIN(i) PP32_DEBUG_REG_ADDR(0, 0x0010 + (i)) +#define PP32_DBG_PC_MAX(i) PP32_DEBUG_REG_ADDR(0, 0x0014 + (i)) +#define PP32_DBG_DATA_MIN(i) PP32_DEBUG_REG_ADDR(0, 0x0018 + (i)) +#define PP32_DBG_DATA_MAX(i) PP32_DEBUG_REG_ADDR(0, 0x001A + (i)) +#define PP32_DBG_DATA_VAL(i) PP32_DEBUG_REG_ADDR(0, 0x001C + (i)) + +#define PP32_DBG_CUR_PC PP32_DEBUG_REG_ADDR(0, 0x0080) + +#define PP32_DBG_TASK_NO PP32_DEBUG_REG_ADDR(0, 0x0081) + +#define PP32_DBG_REG_BASE(tsk, i) PP32_DEBUG_REG_ADDR(0, 0x0100 + (tsk) * 16 + (i)) + +/* + * EMA Registers + */ +#define EMA_CMDCFG PPE_REG_ADDR(0x0A00) +#define EMA_DATACFG PPE_REG_ADDR(0x0A01) +#define EMA_CMDCNT PPE_REG_ADDR(0x0A02) +#define EMA_DATACNT PPE_REG_ADDR(0x0A03) +#define EMA_ISR PPE_REG_ADDR(0x0A04) +#define EMA_IER PPE_REG_ADDR(0x0A05) +#define EMA_CFG PPE_REG_ADDR(0x0A06) +#define EMA_SUBID PPE_REG_ADDR(0x0A07) + +#define EMA_ALIGNMENT 4 + +/* + * Mailbox IGU1 Interrupt + */ +#define PPE_MAILBOX_IGU1_INT INT_NUM_IM2_IRL24 + + + +#endif // IFXMIPS_ATM_PPE_DANUBE_H diff --git a/package/kernel/lantiq/ltq-atm/src/ifxmips_atm_ppe_vr9.h b/package/kernel/lantiq/ltq-atm/src/ifxmips_atm_ppe_vr9.h new file mode 100644 index 0000000..144c396 --- /dev/null +++ b/package/kernel/lantiq/ltq-atm/src/ifxmips_atm_ppe_vr9.h @@ -0,0 +1,192 @@ +/****************************************************************************** +** +** FILE NAME : ifxmips_atm_ppe_vr9.h +** PROJECT : UEIP +** MODULES : ATM (ADSL) +** +** DATE : 1 AUG 2005 +** AUTHOR : Xu Liang +** DESCRIPTION : ATM Driver (PPE Registers) +** COPYRIGHT : Copyright (c) 2006 +** Infineon Technologies AG +** Am Campeon 1-12, 85579 Neubiberg, Germany +** +** This program is free software; you can redistribute it and/or modify +** it under the terms of the GNU General Public License as published by +** the Free Software Foundation; either version 2 of the License, or +** (at your option) any later version. +** +** HISTORY +** $Date $Author $Comment +** 4 AUG 2005 Xu Liang Initiate Version +** 23 OCT 2006 Xu Liang Add GPL header. +** 9 JAN 2007 Xu Liang First version got from Anand (IC designer) +*******************************************************************************/ + + + +#ifndef IFXMIPS_ATM_PPE_VR9_H +#define IFXMIPS_ATM_PPE_VR9_H + + + +/* + * FPI Configuration Bus Register and Memory Address Mapping + */ +#define IFX_PPE (KSEG1 | 0x1E200000) +#define PP32_DEBUG_REG_ADDR(i, x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x000000 + (i) * 0x00010000) << 2))) +#define CDM_CODE_MEMORY(i, x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x001000 + (i) * 0x00010000) << 2))) +#define CDM_DATA_MEMORY(i, x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x004000 + (i) * 0x00010000) << 2))) +#define SB_RAM0_ADDR(x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x008000) << 2))) +#define SB_RAM1_ADDR(x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x009000) << 2))) +#define SB_RAM2_ADDR(x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x00A000) << 2))) +#define SB_RAM3_ADDR(x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x00B000) << 2))) +#define PPE_REG_ADDR(x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x00D000) << 2))) +#define QSB_CONF_REG_ADDR(x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x00E000) << 2))) +#define SB_RAM6_ADDR(x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x018000) << 2))) + +/* + * DWORD-Length of Memory Blocks + */ +#define PP32_DEBUG_REG_DWLEN 0x0030 +#define CDM_CODE_MEMORYn_DWLEN(n) ((n) == 0 ? 0x1000 : 0x0800) +#define CDM_DATA_MEMORY_DWLEN CDM_CODE_MEMORYn_DWLEN(1) +#define SB_RAM0_DWLEN 0x1000 +#define SB_RAM1_DWLEN 0x1000 +#define SB_RAM2_DWLEN 0x1000 +#define SB_RAM3_DWLEN 0x1000 +#define SB_RAM6_DWLEN 0x8000 +#define QSB_CONF_REG_DWLEN 0x0100 + +/* + * PP32 to FPI Address Mapping + */ +#define SB_BUFFER(__sb_addr) ((volatile unsigned int *)((((__sb_addr) >= 0x0000) && ((__sb_addr) <= 0x1FFF)) ? PPE_REG_ADDR((__sb_addr)) : \ + (((__sb_addr) >= 0x2000) && ((__sb_addr) <= 0x2FFF)) ? SB_RAM0_ADDR((__sb_addr) - 0x2000) : \ + (((__sb_addr) >= 0x3000) && ((__sb_addr) <= 0x3FFF)) ? SB_RAM1_ADDR((__sb_addr) - 0x3000) : \ + (((__sb_addr) >= 0x4000) && ((__sb_addr) <= 0x4FFF)) ? SB_RAM2_ADDR((__sb_addr) - 0x4000) : \ + (((__sb_addr) >= 0x5000) && ((__sb_addr) <= 0x5FFF)) ? SB_RAM3_ADDR((__sb_addr) - 0x5000) : \ + (((__sb_addr) >= 0x7000) && ((__sb_addr) <= 0x7FFF)) ? PPE_REG_ADDR((__sb_addr) - 0x7000) : \ + (((__sb_addr) >= 0x8000) && ((__sb_addr) <= 0xFFFF)) ? SB_RAM6_ADDR((__sb_addr) - 0x8000) : \ + 0)) + +/* + * PP32 Debug Control Register + */ +#define NUM_OF_PP32 2 + +#define PP32_FREEZE PPE_REG_ADDR(0x0000) +#define PP32_SRST PPE_REG_ADDR(0x0020) + +#define PP32_DBG_CTRL(n) PP32_DEBUG_REG_ADDR(n, 0x0000) + +#define DBG_CTRL_RESTART 0 +#define DBG_CTRL_STOP 1 + +#define PP32_CTRL_CMD(n) PP32_DEBUG_REG_ADDR(n, 0x0B00) + #define PP32_CTRL_CMD_RESTART (1 << 0) + #define PP32_CTRL_CMD_STOP (1 << 1) + #define PP32_CTRL_CMD_STEP (1 << 2) + #define PP32_CTRL_CMD_BREAKOUT (1 << 3) + +#define PP32_CTRL_OPT(n) PP32_DEBUG_REG_ADDR(n, 0x0C00) + #define PP32_CTRL_OPT_BREAKOUT_ON_STOP_ON (3 << 0) + #define PP32_CTRL_OPT_BREAKOUT_ON_STOP_OFF (2 << 0) + #define PP32_CTRL_OPT_BREAKOUT_ON_BREAKIN_ON (3 << 2) + #define PP32_CTRL_OPT_BREAKOUT_ON_BREAKIN_OFF (2 << 2) + #define PP32_CTRL_OPT_STOP_ON_BREAKIN_ON (3 << 4) + #define PP32_CTRL_OPT_STOP_ON_BREAKIN_OFF (2 << 4) + #define PP32_CTRL_OPT_STOP_ON_BREAKPOINT_ON (3 << 6) + #define PP32_CTRL_OPT_STOP_ON_BREAKPOINT_OFF (2 << 6) + #define PP32_CTRL_OPT_BREAKOUT_ON_STOP(n) (*PP32_CTRL_OPT(n) & (1 << 0)) + #define PP32_CTRL_OPT_BREAKOUT_ON_BREAKIN(n) (*PP32_CTRL_OPT(n) & (1 << 2)) + #define PP32_CTRL_OPT_STOP_ON_BREAKIN(n) (*PP32_CTRL_OPT(n) & (1 << 4)) + #define PP32_CTRL_OPT_STOP_ON_BREAKPOINT(n) (*PP32_CTRL_OPT(n) & (1 << 6)) + +#define PP32_BRK_PC(n, i) PP32_DEBUG_REG_ADDR(n, 0x0900 + (i) * 2) +#define PP32_BRK_PC_MASK(n, i) PP32_DEBUG_REG_ADDR(n, 0x0901 + (i) * 2) +#define PP32_BRK_DATA_ADDR(n, i) PP32_DEBUG_REG_ADDR(n, 0x0904 + (i) * 2) +#define PP32_BRK_DATA_ADDR_MASK(n, i) PP32_DEBUG_REG_ADDR(n, 0x0905 + (i) * 2) +#define PP32_BRK_DATA_VALUE_RD(n, i) PP32_DEBUG_REG_ADDR(n, 0x0908 + (i) * 2) +#define PP32_BRK_DATA_VALUE_RD_MASK(n, i) PP32_DEBUG_REG_ADDR(n, 0x0909 + (i) * 2) +#define PP32_BRK_DATA_VALUE_WR(n, i) PP32_DEBUG_REG_ADDR(n, 0x090C + (i) * 2) +#define PP32_BRK_DATA_VALUE_WR_MASK(n, i) PP32_DEBUG_REG_ADDR(n, 0x090D + (i) * 2) + #define PP32_BRK_CONTEXT_MASK(i) (1 << (i)) + #define PP32_BRK_CONTEXT_MASK_EN (1 << 4) + #define PP32_BRK_COMPARE_GREATER_EQUAL (1 << 5) // valid for break data value rd/wr only + #define PP32_BRK_COMPARE_LOWER_EQUAL (1 << 6) + #define PP32_BRK_COMPARE_EN (1 << 7) + +#define PP32_BRK_TRIG(n) PP32_DEBUG_REG_ADDR(n, 0x0F00) + #define PP32_BRK_GRPi_PCn_ON(i, n) ((3 << ((n) * 2)) << ((i) * 16)) + #define PP32_BRK_GRPi_PCn_OFF(i, n) ((2 << ((n) * 2)) << ((i) * 16)) + #define PP32_BRK_GRPi_DATA_ADDRn_ON(i, n) ((3 << ((n) * 2 + 4)) << ((i) * 16)) + #define PP32_BRK_GRPi_DATA_ADDRn_OFF(i, n) ((2 << ((n) * 2 + 4)) << ((i) * 16)) + #define PP32_BRK_GRPi_DATA_VALUE_RDn_ON(i, n) ((3 << ((n) * 2 + 8)) << ((i) * 16)) + #define PP32_BRK_GRPi_DATA_VALUE_RDn_OFF(i, n)((2 << ((n) * 2 + 8)) << ((i) * 16)) + #define PP32_BRK_GRPi_DATA_VALUE_WRn_ON(i, n) ((3 << ((n) * 2 + 12)) << ((i) * 16)) + #define PP32_BRK_GRPi_DATA_VALUE_WRn_OFF(i, n)((2 << ((n) * 2 + 12)) << ((i) * 16)) + #define PP32_BRK_GRPi_PCn(k, i, n) (*PP32_BRK_TRIG(k) & ((1 << ((n))) << ((i) * 8))) + #define PP32_BRK_GRPi_DATA_ADDRn(k, i, n) (*PP32_BRK_TRIG(k) & ((1 << ((n) + 2)) << ((i) * 8))) + #define PP32_BRK_GRPi_DATA_VALUE_RDn(k, i, n) (*PP32_BRK_TRIG(k) & ((1 << ((n) + 4)) << ((i) * 8))) + #define PP32_BRK_GRPi_DATA_VALUE_WRn(k, i, n) (*PP32_BRK_TRIG(k) & ((1 << ((n) + 6)) << ((i) * 8))) + +#define PP32_CPU_STATUS(n) PP32_DEBUG_REG_ADDR(n, 0x0D00) +#define PP32_HALT_STAT(n) PP32_CPU_STATUS(n) +#define PP32_DBG_CUR_PC(n) PP32_CPU_STATUS(n) + #define PP32_CPU_USER_STOPPED(n) (*PP32_CPU_STATUS(n) & (1 << 0)) + #define PP32_CPU_USER_BREAKIN_RCV(n) (*PP32_CPU_STATUS(n) & (1 << 1)) + #define PP32_CPU_USER_BREAKPOINT_MET(n) (*PP32_CPU_STATUS(n) & (1 << 2)) + #define PP32_CPU_CUR_PC(n) (*PP32_CPU_STATUS(n) >> 16) + +#define PP32_BREAKPOINT_REASONS(n) PP32_DEBUG_REG_ADDR(n, 0x0A00) + #define PP32_BRK_PC_MET(n, i) (*PP32_BREAKPOINT_REASONS(n) & (1 << (i))) + #define PP32_BRK_DATA_ADDR_MET(n, i) (*PP32_BREAKPOINT_REASONS(n) & (1 << ((i) + 2))) + #define PP32_BRK_DATA_VALUE_RD_MET(n, i) (*PP32_BREAKPOINT_REASONS(n) & (1 << ((i) + 4))) + #define PP32_BRK_DATA_VALUE_WR_MET(n, i) (*PP32_BREAKPOINT_REASONS(n) & (1 << ((i) + 6))) + #define PP32_BRK_DATA_VALUE_RD_LO_EQ(n, i) (*PP32_BREAKPOINT_REASONS(n) & (1 << ((i) * 2 + 8))) + #define PP32_BRK_DATA_VALUE_RD_GT_EQ(n, i) (*PP32_BREAKPOINT_REASONS(n) & (1 << ((i) * 2 + 9))) + #define PP32_BRK_DATA_VALUE_WR_LO_EQ(n, i) (*PP32_BREAKPOINT_REASONS(n) & (1 << ((i) * 2 + 12))) + #define PP32_BRK_DATA_VALUE_WR_GT_EQ(n, i) (*PP32_BREAKPOINT_REASONS(n) & (1 << ((i) * 2 + 13))) + #define PP32_BRK_CUR_CONTEXT(n) ((*PP32_BREAKPOINT_REASONS(n) >> 16) & 0x03) + +#define PP32_GP_REG_BASE(n) PP32_DEBUG_REG_ADDR(n, 0x0E00) +#define PP32_GP_CONTEXTi_REGn(n, i, j) PP32_DEBUG_REG_ADDR(n, 0x0E00 + (i) * 16 + (j)) + +/* + * PDMA/EMA Registers + */ +#define PDMA_CFG PPE_REG_ADDR(0x0A00) +#define PDMA_RX_CMDCNT PPE_REG_ADDR(0x0A01) +#define PDMA_TX_CMDCNT PPE_REG_ADDR(0x0A02) +#define PDMA_RX_FWDATACNT PPE_REG_ADDR(0x0A03) +#define PDMA_TX_FWDATACNT PPE_REG_ADDR(0x0A04) +#define PDMA_RX_CTX_CFG PPE_REG_ADDR(0x0A05) +#define PDMA_TX_CTX_CFG PPE_REG_ADDR(0x0A06) +#define PDMA_RX_MAX_LEN_REG PPE_REG_ADDR(0x0A07) +#define PDMA_RX_DELAY_CFG PPE_REG_ADDR(0x0A08) +#define PDMA_INT_FIFO_RD PPE_REG_ADDR(0x0A09) +#define PDMA_ISR PPE_REG_ADDR(0x0A0A) +#define PDMA_IER PPE_REG_ADDR(0x0A0B) +#define PDMA_SUBID PPE_REG_ADDR(0x0A0C) +#define PDMA_BAR0 PPE_REG_ADDR(0x0A0D) +#define PDMA_BAR1 PPE_REG_ADDR(0x0A0E) + +#define SAR_PDMA_RX_CMDBUF_CFG PPE_REG_ADDR(0x0F00) +#define SAR_PDMA_TX_CMDBUF_CFG PPE_REG_ADDR(0x0F01) +#define SAR_PDMA_RX_FW_CMDBUF_CFG PPE_REG_ADDR(0x0F02) +#define SAR_PDMA_TX_FW_CMDBUF_CFG PPE_REG_ADDR(0x0F03) +#define SAR_PDMA_RX_CMDBUF_STATUS PPE_REG_ADDR(0x0F04) +#define SAR_PDMA_TX_CMDBUF_STATUS PPE_REG_ADDR(0x0F05) + +#define PDMA_ALIGNMENT 4 +#define EMA_ALIGNMENT PDMA_ALIGNMENT + +/* + * Mailbox IGU1 Interrupt + */ +#define PPE_MAILBOX_IGU1_INT INT_NUM_IM2_IRL24 + + + +#endif // IFXMIPS_ATM_PPE_VR9_H diff --git a/package/kernel/lantiq/ltq-atm/src/ifxmips_atm_vr9.c b/package/kernel/lantiq/ltq-atm/src/ifxmips_atm_vr9.c new file mode 100644 index 0000000..89c71e3 --- /dev/null +++ b/package/kernel/lantiq/ltq-atm/src/ifxmips_atm_vr9.c @@ -0,0 +1,190 @@ +/****************************************************************************** +** +** FILE NAME : ifxmips_atm_vr9.c +** PROJECT : UEIP +** MODULES : ATM +** +** DATE : 7 Jul 2009 +** AUTHOR : Xu Liang +** DESCRIPTION : ATM driver common source file (core functions) +** COPYRIGHT : Copyright (c) 2006 +** Infineon Technologies AG +** Am Campeon 1-12, 85579 Neubiberg, Germany +** +** This program is free software; you can redistribute it and/or modify +** it under the terms of the GNU General Public License as published by +** the Free Software Foundation; either version 2 of the License, or +** (at your option) any later version. +** +** HISTORY +** $Date $Author $Comment +** 07 JUL 2009 Xu Liang Init Version +*******************************************************************************/ + + + +/* + * #################################### + * Head File + * #################################### + */ + +/* + * Common Head File + */ +#include <linux/kernel.h> +#include <linux/module.h> +#include <linux/version.h> +#include <linux/types.h> +#include <linux/errno.h> +#include <linux/proc_fs.h> +#include <linux/init.h> +#include <linux/ioctl.h> +#include <asm/delay.h> + +#include "ifxmips_atm_core.h" +#include "ifxmips_atm_fw_vr9.h" + +#ifdef CONFIG_VR9 + +#include <lantiq_soc.h> + +#define IFX_PMU_MODULE_PPE_SLL01 BIT(19) +#define IFX_PMU_MODULE_PPE_TC BIT(21) +#define IFX_PMU_MODULE_PPE_EMA BIT(22) +#define IFX_PMU_MODULE_PPE_QSB BIT(18) +#define IFX_PMU_MODULE_AHBS BIT(13) +#define IFX_PMU_MODULE_DSL_DFE BIT(9) + +static inline void vr9_reset_ppe(void) +{ +/*#ifdef MODULE + // reset PPE + ifx_rcu_rst(IFX_RCU_DOMAIN_DSLDFE, IFX_RCU_MODULE_ATM); + udelay(1000); + ifx_rcu_rst(IFX_RCU_DOMAIN_DSLTC, IFX_RCU_MODULE_ATM); + udelay(1000); + ifx_rcu_rst(IFX_RCU_DOMAIN_PPE, IFX_RCU_MODULE_ATM); + udelay(1000); + *PP32_SRST &= ~0x000303CF; + udelay(1000); + *PP32_SRST |= 0x000303CF; + udelay(1000); +#endif*/ +} + +static inline int vr9_pp32_download_code(int pp32, u32 *code_src, unsigned int code_dword_len, u32 *data_src, unsigned int data_dword_len) +{ + unsigned int clr, set; + volatile u32 *dest; + + if ( code_src == 0 || ((unsigned long)code_src & 0x03) != 0 + || data_src == 0 || ((unsigned long)data_src & 0x03) != 0 ) + return -1; + + clr = pp32 ? 0xF0 : 0x0F; + if ( code_dword_len <= CDM_CODE_MEMORYn_DWLEN(0) ) + set = pp32 ? (3 << 6): (2 << 2); + else + set = 0x00; + IFX_REG_W32_MASK(clr, set, CDM_CFG); + + dest = CDM_CODE_MEMORY(pp32, 0); + while ( code_dword_len-- > 0 ) + IFX_REG_W32(*code_src++, dest++); + + dest = CDM_DATA_MEMORY(pp32, 0); + while ( data_dword_len-- > 0 ) + IFX_REG_W32(*data_src++, dest++); + + return 0; +} + +static void vr9_fw_ver(unsigned int *major, unsigned int *minor) +{ + + *major = FW_VER_ID->major; + *minor = FW_VER_ID->minor; +} + +static void vr9_init(void) +{ + volatile u32 *p; + unsigned int i; + + /* setup pmu */ + ltq_pmu_enable(IFX_PMU_MODULE_PPE_SLL01 | + IFX_PMU_MODULE_PPE_TC | + IFX_PMU_MODULE_PPE_EMA | + IFX_PMU_MODULE_PPE_QSB | + IFX_PMU_MODULE_AHBS | + IFX_PMU_MODULE_DSL_DFE); + + vr9_reset_ppe(); + + /* pdma init */ + IFX_REG_W32(0x08, PDMA_CFG); + IFX_REG_W32(0x00203580, SAR_PDMA_RX_CMDBUF_CFG); + IFX_REG_W32(0x004035A0, SAR_PDMA_RX_FW_CMDBUF_CFG); + + /* mailbox init */ + IFX_REG_W32(0xFFFFFFFF, MBOX_IGU1_ISRC); + IFX_REG_W32(0x00000000, MBOX_IGU1_IER); + IFX_REG_W32(0xFFFFFFFF, MBOX_IGU3_ISRC); + IFX_REG_W32(0x00000000, MBOX_IGU3_IER); + + /* tc init - clear sync state */ + *SFSM_STATE0 = 0; + *SFSM_STATE1 = 0; + + /* init shared buffer */ + p = SB_RAM0_ADDR(0); + for ( i = 0; i < SB_RAM0_DWLEN + SB_RAM1_DWLEN + SB_RAM2_DWLEN + SB_RAM3_DWLEN; i++ ) + IFX_REG_W32(0, p++); + + p = SB_RAM6_ADDR(0); + for ( i = 0; i < SB_RAM6_DWLEN; i++ ) + IFX_REG_W32(0, p++); +} + +static void vr9_shutdown(void) +{ +} + +static int vr9_start(int pp32) +{ + unsigned int mask = 1 << (pp32 << 4); + int ret; + + /* download firmware */ + ret = vr9_pp32_download_code(pp32, + vr9_fw_bin, sizeof(vr9_fw_bin) / sizeof(*vr9_fw_bin), + vr9_fw_data, sizeof(vr9_fw_data) / sizeof(*vr9_fw_data)); + if ( ret != 0 ) + return ret; + + /* run PP32 */ + IFX_REG_W32_MASK(mask, 0, PP32_FREEZE); + + /* idle for a while to let PP32 init itself */ + udelay(10); + + return 0; +} + +static void vr9_stop(int pp32) +{ + unsigned int mask = 1 << (pp32 << 4); + + IFX_REG_W32_MASK(0, mask, PP32_FREEZE); +} + +struct ltq_atm_ops vr9_ops = { + .init = vr9_init, + .shutdown = vr9_shutdown, + .start = vr9_start, + .stop = vr9_stop, + .fw_ver = vr9_fw_ver, +}; + +#endif diff --git a/package/kernel/lantiq/ltq-atm/src/ltq_atm.c b/package/kernel/lantiq/ltq-atm/src/ltq_atm.c new file mode 100644 index 0000000..8466510 --- /dev/null +++ b/package/kernel/lantiq/ltq-atm/src/ltq_atm.c @@ -0,0 +1,1913 @@ +/****************************************************************************** +** +** FILE NAME : ifxmips_atm_core.c +** PROJECT : UEIP +** MODULES : ATM +** +** DATE : 7 Jul 2009 +** AUTHOR : Xu Liang +** DESCRIPTION : ATM driver common source file (core functions) +** COPYRIGHT : Copyright (c) 2006 +** Infineon Technologies AG +** Am Campeon 1-12, 85579 Neubiberg, Germany +** +** This program is free software; you can redistribute it and/or modify +** it under the terms of the GNU General Public License as published by +** the Free Software Foundation; either version 2 of the License, or +** (at your option) any later version. +** +** HISTORY +** $Date $Author $Comment +** 07 JUL 2009 Xu Liang Init Version +*******************************************************************************/ + +#define IFX_ATM_VER_MAJOR 1 +#define IFX_ATM_VER_MID 0 +#define IFX_ATM_VER_MINOR 26 + +#include <linux/kernel.h> +#include <linux/module.h> +#include <linux/version.h> +#include <linux/types.h> +#include <linux/errno.h> +#include <linux/proc_fs.h> +#include <linux/init.h> +#include <linux/ioctl.h> +#include <linux/atmdev.h> +#include <linux/platform_device.h> +#include <linux/of_device.h> +#include <linux/atm.h> +#include <linux/clk.h> +#include <linux/interrupt.h> +#ifdef CONFIG_XFRM + #include <net/xfrm.h> +#endif + +#include <lantiq_soc.h> + +#include "ifxmips_atm_core.h" + +#define MODULE_PARM_ARRAY(a, b) module_param_array(a, int, NULL, 0) +#define MODULE_PARM(a, b) module_param(a, int, 0) + +/*! + \brief QSB cell delay variation due to concurrency + */ +static int qsb_tau = 1; /* QSB cell delay variation due to concurrency */ +/*! + \brief QSB scheduler burst length + */ +static int qsb_srvm = 0x0F; /* QSB scheduler burst length */ +/*! + \brief QSB time step, all legal values are 1, 2, 4 + */ +static int qsb_tstep = 4 ; /* QSB time step, all legal values are 1, 2, 4 */ + +/*! + \brief Write descriptor delay + */ +static int write_descriptor_delay = 0x20; /* Write descriptor delay */ + +/*! + \brief AAL5 padding byte ('~') + */ +static int aal5_fill_pattern = 0x007E; /* AAL5 padding byte ('~') */ +/*! + \brief Max frame size for RX + */ +static int aal5r_max_packet_size = 0x0700; /* Max frame size for RX */ +/*! + \brief Min frame size for RX + */ +static int aal5r_min_packet_size = 0x0000; /* Min frame size for RX */ +/*! + \brief Max frame size for TX + */ +static int aal5s_max_packet_size = 0x0700; /* Max frame size for TX */ +/*! + \brief Min frame size for TX + */ +static int aal5s_min_packet_size = 0x0000; /* Min frame size for TX */ +/*! + \brief Drop error packet in RX path + */ +static int aal5r_drop_error_packet = 1; /* Drop error packet in RX path */ + +/*! + \brief Number of descriptors per DMA RX channel + */ +static int dma_rx_descriptor_length = 128; /* Number of descriptors per DMA RX channel */ +/*! + \brief Number of descriptors per DMA TX channel + */ +static int dma_tx_descriptor_length = 64; /* Number of descriptors per DMA TX channel */ +/*! + \brief PPE core clock cycles between descriptor write and effectiveness in external RAM + */ +static int dma_rx_clp1_descriptor_threshold = 38; +/*@}*/ + +MODULE_PARM(qsb_tau, "i"); +MODULE_PARM_DESC(qsb_tau, "Cell delay variation. Value must be > 0"); +MODULE_PARM(qsb_srvm, "i"); +MODULE_PARM_DESC(qsb_srvm, "Maximum burst size"); +MODULE_PARM(qsb_tstep, "i"); +MODULE_PARM_DESC(qsb_tstep, "n*32 cycles per sbs cycles n=1,2,4"); + +MODULE_PARM(write_descriptor_delay, "i"); +MODULE_PARM_DESC(write_descriptor_delay, "PPE core clock cycles between descriptor write and effectiveness in external RAM"); + +MODULE_PARM(aal5_fill_pattern, "i"); +MODULE_PARM_DESC(aal5_fill_pattern, "Filling pattern (PAD) for AAL5 frames"); +MODULE_PARM(aal5r_max_packet_size, "i"); +MODULE_PARM_DESC(aal5r_max_packet_size, "Max packet size in byte for downstream AAL5 frames"); +MODULE_PARM(aal5r_min_packet_size, "i"); +MODULE_PARM_DESC(aal5r_min_packet_size, "Min packet size in byte for downstream AAL5 frames"); +MODULE_PARM(aal5s_max_packet_size, "i"); +MODULE_PARM_DESC(aal5s_max_packet_size, "Max packet size in byte for upstream AAL5 frames"); +MODULE_PARM(aal5s_min_packet_size, "i"); +MODULE_PARM_DESC(aal5s_min_packet_size, "Min packet size in byte for upstream AAL5 frames"); +MODULE_PARM(aal5r_drop_error_packet, "i"); +MODULE_PARM_DESC(aal5r_drop_error_packet, "Non-zero value to drop error packet for downstream"); + +MODULE_PARM(dma_rx_descriptor_length, "i"); +MODULE_PARM_DESC(dma_rx_descriptor_length, "Number of descriptor assigned to DMA RX channel (>16)"); +MODULE_PARM(dma_tx_descriptor_length, "i"); +MODULE_PARM_DESC(dma_tx_descriptor_length, "Number of descriptor assigned to DMA TX channel (>16)"); +MODULE_PARM(dma_rx_clp1_descriptor_threshold, "i"); +MODULE_PARM_DESC(dma_rx_clp1_descriptor_threshold, "Descriptor threshold for cells with cell loss priority 1"); + + + +/* + * #################################### + * Definition + * #################################### + */ + +#ifdef CONFIG_AMAZON_SE + #define ENABLE_LESS_CACHE_INV 1 + #define LESS_CACHE_INV_LEN 96 +#endif + +#define DUMP_SKB_LEN ~0 + + + +/* + * #################################### + * Declaration + * #################################### + */ + +/* + * Network Operations + */ +static int ppe_ioctl(struct atm_dev *, unsigned int, void *); +static int ppe_open(struct atm_vcc *); +static void ppe_close(struct atm_vcc *); +static int ppe_send(struct atm_vcc *, struct sk_buff *); +static int ppe_send_oam(struct atm_vcc *, void *, int); +static int ppe_change_qos(struct atm_vcc *, struct atm_qos *, int); + +/* + * ADSL LED + */ +static inline void adsl_led_flash(void); + +/* + * 64-bit operation used by MIB calculation + */ +static inline void u64_add_u32(ppe_u64_t, unsigned int, ppe_u64_t *); + +/* + * buffer manage functions + */ +static inline struct sk_buff* alloc_skb_rx(void); +static inline struct sk_buff* alloc_skb_tx(unsigned int); +struct sk_buff* atm_alloc_tx(struct atm_vcc *, unsigned int); +static inline void atm_free_tx_skb_vcc(struct sk_buff *, struct atm_vcc *); +static inline struct sk_buff *get_skb_rx_pointer(unsigned int); +static inline int get_tx_desc(unsigned int); +static struct sk_buff* skb_duplicate(struct sk_buff *); +static struct sk_buff* skb_break_away_from_protocol(struct sk_buff *); + +/* + * mailbox handler and signal function + */ +static inline void mailbox_oam_rx_handler(void); +static inline void mailbox_aal_rx_handler(void); +static irqreturn_t mailbox_irq_handler(int, void *); +static inline void mailbox_signal(unsigned int, int); +static void do_ppe_tasklet(unsigned long); +DECLARE_TASKLET(g_dma_tasklet, do_ppe_tasklet, 0); + +/* + * QSB & HTU setting functions + */ +static void set_qsb(struct atm_vcc *, struct atm_qos *, unsigned int); +static void qsb_global_set(void); +static inline void set_htu_entry(unsigned int, unsigned int, unsigned int, int, int); +static inline void clear_htu_entry(unsigned int); +static void validate_oam_htu_entry(void); +static void invalidate_oam_htu_entry(void); + +/* + * look up for connection ID + */ +static inline int find_vpi(unsigned int); +static inline int find_vpivci(unsigned int, unsigned int); +static inline int find_vcc(struct atm_vcc *); + +static inline int ifx_atm_version(const struct ltq_atm_ops *ops, char *); + +/* + * Init & clean-up functions + */ +static inline void check_parameters(void); +static inline int init_priv_data(void); +static inline void clear_priv_data(void); +static inline void init_rx_tables(void); +static inline void init_tx_tables(void); + +/* + * Exteranl Function + */ +#if defined(CONFIG_IFX_OAM) || defined(CONFIG_IFX_OAM_MODULE) +extern void ifx_push_oam(unsigned char *); +#else +static inline void ifx_push_oam(unsigned char *dummy) {} +#endif + +#if defined(CONFIG_IFXMIPS_DSL_CPE_MEI) || defined(CONFIG_IFXMIPS_DSL_CPE_MEI_MODULE) +extern int ifx_mei_atm_showtime_check(int *is_showtime, struct port_cell_info *port_cell, void **xdata_addr); +extern int (*ifx_mei_atm_showtime_enter)(struct port_cell_info *, void *); + +extern int (*ifx_mei_atm_showtime_exit)(void); +extern int ifx_mei_atm_led_blink(void); +#else +static inline int ifx_mei_atm_led_blink(void) { return 0; } +static inline int ifx_mei_atm_showtime_check(int *is_showtime, struct port_cell_info *port_cell, void **xdata_addr) +{ + if ( is_showtime != NULL ) + *is_showtime = 0; + return 0; +} +int (*ifx_mei_atm_showtime_enter)(struct port_cell_info *, void *) = NULL; +EXPORT_SYMBOL(ifx_mei_atm_showtime_enter); + +int (*ifx_mei_atm_showtime_exit)(void) = NULL; +EXPORT_SYMBOL(ifx_mei_atm_showtime_exit); + +#endif + +static struct sk_buff* (*ifx_atm_alloc_tx)(struct atm_vcc *, unsigned int) = NULL; + +static struct atm_priv_data g_atm_priv_data; + +static struct atmdev_ops g_ifx_atm_ops = { + .open = ppe_open, + .close = ppe_close, + .ioctl = ppe_ioctl, + .send = ppe_send, + .send_oam = ppe_send_oam, + .change_qos = ppe_change_qos, + .owner = THIS_MODULE, +}; + +static int g_showtime = 0; +static void *g_xdata_addr = NULL; + +static int ppe_ioctl(struct atm_dev *dev, unsigned int cmd, void *arg) +{ + int ret = 0; + atm_cell_ifEntry_t mib_cell; + atm_aal5_ifEntry_t mib_aal5; + atm_aal5_vcc_x_t mib_vcc; + unsigned int value; + int conn; + + if ( _IOC_TYPE(cmd) != PPE_ATM_IOC_MAGIC + || _IOC_NR(cmd) >= PPE_ATM_IOC_MAXNR ) + return -ENOTTY; + + if ( _IOC_DIR(cmd) & _IOC_READ ) + ret = !access_ok(VERIFY_WRITE, arg, _IOC_SIZE(cmd)); + else if ( _IOC_DIR(cmd) & _IOC_WRITE ) + ret = !access_ok(VERIFY_READ, arg, _IOC_SIZE(cmd)); + if ( ret ) + return -EFAULT; + + switch (cmd) { + case PPE_ATM_MIB_CELL: /* cell level MIB */ + /* These MIB should be read at ARC side, now put zero only. */ + mib_cell.ifHCInOctets_h = 0; + mib_cell.ifHCInOctets_l = 0; + mib_cell.ifHCOutOctets_h = 0; + mib_cell.ifHCOutOctets_l = 0; + mib_cell.ifInErrors = 0; + mib_cell.ifInUnknownProtos = WAN_MIB_TABLE->wrx_drophtu_cell; + mib_cell.ifOutErrors = 0; + + ret = sizeof(mib_cell) - copy_to_user(arg, &mib_cell, sizeof(mib_cell)); + break; + + case PPE_ATM_MIB_AAL5: /* AAL5 MIB */ + value = WAN_MIB_TABLE->wrx_total_byte; + u64_add_u32(g_atm_priv_data.wrx_total_byte, value - g_atm_priv_data.prev_wrx_total_byte, &g_atm_priv_data.wrx_total_byte); + g_atm_priv_data.prev_wrx_total_byte = value; + mib_aal5.ifHCInOctets_h = g_atm_priv_data.wrx_total_byte.h; + mib_aal5.ifHCInOctets_l = g_atm_priv_data.wrx_total_byte.l; + + value = WAN_MIB_TABLE->wtx_total_byte; + u64_add_u32(g_atm_priv_data.wtx_total_byte, value - g_atm_priv_data.prev_wtx_total_byte, &g_atm_priv_data.wtx_total_byte); + g_atm_priv_data.prev_wtx_total_byte = value; + mib_aal5.ifHCOutOctets_h = g_atm_priv_data.wtx_total_byte.h; + mib_aal5.ifHCOutOctets_l = g_atm_priv_data.wtx_total_byte.l; + + mib_aal5.ifInUcastPkts = g_atm_priv_data.wrx_pdu; + mib_aal5.ifOutUcastPkts = WAN_MIB_TABLE->wtx_total_pdu; + mib_aal5.ifInErrors = WAN_MIB_TABLE->wrx_err_pdu; + mib_aal5.ifInDiscards = WAN_MIB_TABLE->wrx_dropdes_pdu + g_atm_priv_data.wrx_drop_pdu; + mib_aal5.ifOutErros = g_atm_priv_data.wtx_err_pdu; + mib_aal5.ifOutDiscards = g_atm_priv_data.wtx_drop_pdu; + + ret = sizeof(mib_aal5) - copy_to_user(arg, &mib_aal5, sizeof(mib_aal5)); + break; + + case PPE_ATM_MIB_VCC: /* VCC related MIB */ + copy_from_user(&mib_vcc, arg, sizeof(mib_vcc)); + conn = find_vpivci(mib_vcc.vpi, mib_vcc.vci); + if (conn >= 0) { + mib_vcc.mib_vcc.aal5VccCrcErrors = g_atm_priv_data.conn[conn].aal5_vcc_crc_err; + mib_vcc.mib_vcc.aal5VccOverSizedSDUs = g_atm_priv_data.conn[conn].aal5_vcc_oversize_sdu; + mib_vcc.mib_vcc.aal5VccSarTimeOuts = 0; /* no timer support */ + ret = sizeof(mib_vcc) - copy_to_user(arg, &mib_vcc, sizeof(mib_vcc)); + } else + ret = -EINVAL; + break; + + default: + ret = -ENOIOCTLCMD; + } + + return ret; +} + +static int ppe_open(struct atm_vcc *vcc) +{ + int ret; + short vpi = vcc->vpi; + int vci = vcc->vci; + struct port *port = &g_atm_priv_data.port[(int)vcc->dev->dev_data]; + int conn; + int f_enable_irq = 0; + + if ( vcc->qos.aal != ATM_AAL5 && vcc->qos.aal != ATM_AAL0 ) + return -EPROTONOSUPPORT; + +#if !defined(DISABLE_QOS_WORKAROUND) || !DISABLE_QOS_WORKAROUND + /* check bandwidth */ + if ( (vcc->qos.txtp.traffic_class == ATM_CBR && vcc->qos.txtp.max_pcr > (port->tx_max_cell_rate - port->tx_current_cell_rate)) + || (vcc->qos.txtp.traffic_class == ATM_VBR_RT && vcc->qos.txtp.max_pcr > (port->tx_max_cell_rate - port->tx_current_cell_rate)) + || (vcc->qos.txtp.traffic_class == ATM_VBR_NRT && vcc->qos.txtp.scr > (port->tx_max_cell_rate - port->tx_current_cell_rate)) + || (vcc->qos.txtp.traffic_class == ATM_UBR_PLUS && vcc->qos.txtp.min_pcr > (port->tx_max_cell_rate - port->tx_current_cell_rate)) ) + { + ret = -EINVAL; + goto PPE_OPEN_EXIT; + } +#endif + + /* check existing vpi,vci */ + conn = find_vpivci(vpi, vci); + if ( conn >= 0 ) { + ret = -EADDRINUSE; + goto PPE_OPEN_EXIT; + } + + /* check whether it need to enable irq */ + if ( g_atm_priv_data.conn_table == 0 ) + f_enable_irq = 1; + + /* allocate connection */ + for ( conn = 0; conn < MAX_PVC_NUMBER; conn++ ) { + if ( test_and_set_bit(conn, &g_atm_priv_data.conn_table) == 0 ) { + g_atm_priv_data.conn[conn].vcc = vcc; + break; + } + } + if ( conn == MAX_PVC_NUMBER ) { + ret = -EINVAL; + goto PPE_OPEN_EXIT; + } + + /* reserve bandwidth */ + switch ( vcc->qos.txtp.traffic_class ) { + case ATM_CBR: + case ATM_VBR_RT: + port->tx_current_cell_rate += vcc->qos.txtp.max_pcr; + break; + case ATM_VBR_NRT: + port->tx_current_cell_rate += vcc->qos.txtp.scr; + break; + case ATM_UBR_PLUS: + port->tx_current_cell_rate += vcc->qos.txtp.min_pcr; + break; + } + + /* set qsb */ + set_qsb(vcc, &vcc->qos, conn); + + /* update atm_vcc structure */ + vcc->itf = (int)vcc->dev->dev_data; + vcc->vpi = vpi; + vcc->vci = vci; + set_bit(ATM_VF_READY, &vcc->flags); + + /* enable irq */ + if ( f_enable_irq ) { + ifx_atm_alloc_tx = atm_alloc_tx; + + *MBOX_IGU1_ISRC = (1 << RX_DMA_CH_AAL) | (1 << RX_DMA_CH_OAM); + *MBOX_IGU1_IER = (1 << RX_DMA_CH_AAL) | (1 << RX_DMA_CH_OAM); + + enable_irq(PPE_MAILBOX_IGU1_INT); + } + + /* set port */ + WTX_QUEUE_CONFIG(conn + FIRST_QSB_QID)->sbid = (int)vcc->dev->dev_data; + + /* set htu entry */ + set_htu_entry(vpi, vci, conn, vcc->qos.aal == ATM_AAL5 ? 1 : 0, 0); + + ret = 0; + +PPE_OPEN_EXIT: + return ret; +} + +static void ppe_close(struct atm_vcc *vcc) +{ + int conn; + struct port *port; + struct connection *connection; + if ( vcc == NULL ) + return; + + /* get connection id */ + conn = find_vcc(vcc); + if ( conn < 0 ) { + pr_err("can't find vcc\n"); + goto PPE_CLOSE_EXIT; + } + connection = &g_atm_priv_data.conn[conn]; + port = &g_atm_priv_data.port[connection->port]; + + /* clear htu */ + clear_htu_entry(conn); + + /* release connection */ + connection->vcc = NULL; + connection->aal5_vcc_crc_err = 0; + connection->aal5_vcc_oversize_sdu = 0; + clear_bit(conn, &g_atm_priv_data.conn_table); + + /* disable irq */ + if ( g_atm_priv_data.conn_table == 0 ) { + disable_irq(PPE_MAILBOX_IGU1_INT); + ifx_atm_alloc_tx = NULL; + } + + /* release bandwidth */ + switch ( vcc->qos.txtp.traffic_class ) + { + case ATM_CBR: + case ATM_VBR_RT: + port->tx_current_cell_rate -= vcc->qos.txtp.max_pcr; + break; + case ATM_VBR_NRT: + port->tx_current_cell_rate -= vcc->qos.txtp.scr; + break; + case ATM_UBR_PLUS: + port->tx_current_cell_rate -= vcc->qos.txtp.min_pcr; + break; + } + + /* wait for incoming packets to be processed by upper layers */ + tasklet_unlock_wait(&g_dma_tasklet); + +PPE_CLOSE_EXIT: + return; +} + +static int ppe_send(struct atm_vcc *vcc, struct sk_buff *skb) +{ + int ret; + int conn; + int desc_base; + struct tx_descriptor reg_desc = {0}; + struct sk_buff *new_skb; + + if ( vcc == NULL || skb == NULL ) + return -EINVAL; + + skb_get(skb); + atm_free_tx_skb_vcc(skb, vcc); + + conn = find_vcc(vcc); + if ( conn < 0 ) { + ret = -EINVAL; + goto FIND_VCC_FAIL; + } + + if ( !g_showtime ) { + pr_debug("not in showtime\n"); + ret = -EIO; + goto PPE_SEND_FAIL; + } + + if ( vcc->qos.aal == ATM_AAL5 ) { + int byteoff; + int datalen; + struct tx_inband_header *header; + + byteoff = (unsigned int)skb->data & (DATA_BUFFER_ALIGNMENT - 1); + if ( skb_headroom(skb) < byteoff + TX_INBAND_HEADER_LENGTH ) + new_skb = skb_duplicate(skb); + else + new_skb = skb_break_away_from_protocol(skb); + if ( new_skb == NULL ) { + pr_err("either skb_duplicate or skb_break_away_from_protocol fail\n"); + ret = -ENOMEM; + goto PPE_SEND_FAIL; + } + dev_kfree_skb_any(skb); + skb = new_skb; + + datalen = skb->len; + byteoff = (unsigned int)skb->data & (DATA_BUFFER_ALIGNMENT - 1); + + skb_push(skb, byteoff + TX_INBAND_HEADER_LENGTH); + + header = (struct tx_inband_header *)skb->data; + + /* setup inband trailer */ + header->uu = 0; + header->cpi = 0; + header->pad = aal5_fill_pattern; + header->res1 = 0; + + /* setup cell header */ + header->clp = (vcc->atm_options & ATM_ATMOPT_CLP) ? 1 : 0; + header->pti = ATM_PTI_US0; + header->vci = vcc->vci; + header->vpi = vcc->vpi; + header->gfc = 0; + + /* setup descriptor */ + reg_desc.dataptr = (unsigned int)skb->data >> 2; + reg_desc.datalen = datalen; + reg_desc.byteoff = byteoff; + reg_desc.iscell = 0; + } else { + /* if data pointer is not aligned, allocate new sk_buff */ + if ( ((unsigned int)skb->data & (DATA_BUFFER_ALIGNMENT - 1)) != 0 ) { + pr_err("skb->data not aligned\n"); + new_skb = skb_duplicate(skb); + } else + new_skb = skb_break_away_from_protocol(skb); + if ( new_skb == NULL ) { + pr_err("either skb_duplicate or skb_break_away_from_protocol fail\n"); + ret = -ENOMEM; + goto PPE_SEND_FAIL; + } + dev_kfree_skb_any(skb); + skb = new_skb; + + reg_desc.dataptr = (unsigned int)skb->data >> 2; + reg_desc.datalen = skb->len; + reg_desc.byteoff = 0; + reg_desc.iscell = 1; + } + + reg_desc.own = 1; + reg_desc.c = 1; + reg_desc.sop = reg_desc.eop = 1; + + desc_base = get_tx_desc(conn); + if ( desc_base < 0 ) { + pr_debug("ALLOC_TX_CONNECTION_FAIL\n"); + ret = -EIO; + goto PPE_SEND_FAIL; + } + + if ( vcc->stats ) + atomic_inc(&vcc->stats->tx); + if ( vcc->qos.aal == ATM_AAL5 ) + g_atm_priv_data.wtx_pdu++; + + /* update descriptor send pointer */ + if ( g_atm_priv_data.conn[conn].tx_skb[desc_base] != NULL ) + dev_kfree_skb_any(g_atm_priv_data.conn[conn].tx_skb[desc_base]); + g_atm_priv_data.conn[conn].tx_skb[desc_base] = skb; + + /* write discriptor to memory and write back cache */ + g_atm_priv_data.conn[conn].tx_desc[desc_base] = reg_desc; + dma_cache_wback((unsigned long)skb->data, skb->len); + + mailbox_signal(conn, 1); + + adsl_led_flash(); + + return 0; + +FIND_VCC_FAIL: + pr_err("FIND_VCC_FAIL\n"); + g_atm_priv_data.wtx_err_pdu++; + dev_kfree_skb_any(skb); + return ret; + +PPE_SEND_FAIL: + if ( vcc->qos.aal == ATM_AAL5 ) + g_atm_priv_data.wtx_drop_pdu++; + if ( vcc->stats ) + atomic_inc(&vcc->stats->tx_err); + dev_kfree_skb_any(skb); + return ret; +} + +/* operation and maintainance */ +static int ppe_send_oam(struct atm_vcc *vcc, void *cell, int flags) +{ + int conn; + struct uni_cell_header *uni_cell_header = (struct uni_cell_header *)cell; + int desc_base; + struct sk_buff *skb; + struct tx_descriptor reg_desc = {0}; + + if ( ((uni_cell_header->pti == ATM_PTI_SEGF5 || uni_cell_header->pti == ATM_PTI_E2EF5) + && find_vpivci(uni_cell_header->vpi, uni_cell_header->vci) < 0) + || ((uni_cell_header->vci == 0x03 || uni_cell_header->vci == 0x04) + && find_vpi(uni_cell_header->vpi) < 0) ) + { + g_atm_priv_data.wtx_err_oam++; + return -EINVAL; + } + + if ( !g_showtime ) { + pr_err("not in showtime\n"); + g_atm_priv_data.wtx_drop_oam++; + return -EIO; + } + + conn = find_vcc(vcc); + if ( conn < 0 ) { + pr_err("FIND_VCC_FAIL\n"); + g_atm_priv_data.wtx_drop_oam++; + return -EINVAL; + } + + skb = alloc_skb_tx(CELL_SIZE); + if ( skb == NULL ) { + pr_err("ALLOC_SKB_TX_FAIL\n"); + g_atm_priv_data.wtx_drop_oam++; + return -ENOMEM; + } + skb_put(skb, CELL_SIZE); + memcpy(skb->data, cell, CELL_SIZE); + + reg_desc.dataptr = (unsigned int)skb->data >> 2; + reg_desc.datalen = CELL_SIZE; + reg_desc.byteoff = 0; + reg_desc.iscell = 1; + + reg_desc.own = 1; + reg_desc.c = 1; + reg_desc.sop = reg_desc.eop = 1; + + desc_base = get_tx_desc(conn); + if ( desc_base < 0 ) { + dev_kfree_skb_any(skb); + pr_err("ALLOC_TX_CONNECTION_FAIL\n"); + g_atm_priv_data.wtx_drop_oam++; + return -EIO; + } + + if ( vcc->stats ) + atomic_inc(&vcc->stats->tx); + + /* update descriptor send pointer */ + if ( g_atm_priv_data.conn[conn].tx_skb[desc_base] != NULL ) + dev_kfree_skb_any(g_atm_priv_data.conn[conn].tx_skb[desc_base]); + g_atm_priv_data.conn[conn].tx_skb[desc_base] = skb; + + /* write discriptor to memory and write back cache */ + g_atm_priv_data.conn[conn].tx_desc[desc_base] = reg_desc; + dma_cache_wback((unsigned long)skb->data, CELL_SIZE); + + mailbox_signal(conn, 1); + + g_atm_priv_data.wtx_oam++; + adsl_led_flash(); + + return 0; +} + +static int ppe_change_qos(struct atm_vcc *vcc, struct atm_qos *qos, int flags) +{ + int conn; + + if ( vcc == NULL || qos == NULL ) + return -EINVAL; + + conn = find_vcc(vcc); + if ( conn < 0 ) + return -EINVAL; + + set_qsb(vcc, qos, conn); + + return 0; +} + +static inline void adsl_led_flash(void) +{ + ifx_mei_atm_led_blink(); +} + +/* +* Description: +* Add a 32-bit value to 64-bit value, and put result in a 64-bit variable. +* Input: +* opt1 --- ppe_u64_t, first operand, a 64-bit unsigned integer value +* opt2 --- unsigned int, second operand, a 32-bit unsigned integer value +* ret --- ppe_u64_t, pointer to a variable to hold result +* Output: +* none +*/ +static inline void u64_add_u32(ppe_u64_t opt1, unsigned int opt2, ppe_u64_t *ret) +{ + ret->l = opt1.l + opt2; + if ( ret->l < opt1.l || ret->l < opt2 ) + ret->h++; +} + +static inline struct sk_buff* alloc_skb_rx(void) +{ + struct sk_buff *skb; + + skb = dev_alloc_skb(RX_DMA_CH_AAL_BUF_SIZE + DATA_BUFFER_ALIGNMENT); + if ( skb != NULL ) { + /* must be burst length alignment */ + if ( ((unsigned int)skb->data & (DATA_BUFFER_ALIGNMENT - 1)) != 0 ) + skb_reserve(skb, ~((unsigned int)skb->data + (DATA_BUFFER_ALIGNMENT - 1)) & (DATA_BUFFER_ALIGNMENT - 1)); + /* pub skb in reserved area "skb->data - 4" */ + *((struct sk_buff **)skb->data - 1) = skb; + /* write back and invalidate cache */ + dma_cache_wback_inv((unsigned long)skb->data - sizeof(skb), sizeof(skb)); + /* invalidate cache */ +#if defined(ENABLE_LESS_CACHE_INV) && ENABLE_LESS_CACHE_INV + dma_cache_inv((unsigned long)skb->data, LESS_CACHE_INV_LEN); +#else + dma_cache_inv((unsigned long)skb->data, RX_DMA_CH_AAL_BUF_SIZE); +#endif + } + return skb; +} + +static inline struct sk_buff* alloc_skb_tx(unsigned int size) +{ + struct sk_buff *skb; + + /* allocate memory including header and padding */ + size += TX_INBAND_HEADER_LENGTH + MAX_TX_PACKET_ALIGN_BYTES + MAX_TX_PACKET_PADDING_BYTES; + size &= ~(DATA_BUFFER_ALIGNMENT - 1); + skb = dev_alloc_skb(size + DATA_BUFFER_ALIGNMENT); + /* must be burst length alignment */ + if ( skb != NULL ) + skb_reserve(skb, (~((unsigned int)skb->data + (DATA_BUFFER_ALIGNMENT - 1)) & (DATA_BUFFER_ALIGNMENT - 1)) + TX_INBAND_HEADER_LENGTH); + return skb; +} + +struct sk_buff* atm_alloc_tx(struct atm_vcc *vcc, unsigned int size) +{ + int conn; + struct sk_buff *skb; + + /* oversize packet */ + if ( size > aal5s_max_packet_size ) { + pr_err("atm_alloc_tx: oversize packet\n"); + return NULL; + } + /* send buffer overflow */ + if ( sk_wmem_alloc_get(sk_atm(vcc)) && !atm_may_send(vcc, size) ) { + pr_err("atm_alloc_tx: send buffer overflow\n"); + return NULL; + } + conn = find_vcc(vcc); + if ( conn < 0 ) { + pr_err("atm_alloc_tx: unknown VCC\n"); + return NULL; + } + + skb = dev_alloc_skb(size); + if ( skb == NULL ) { + pr_err("atm_alloc_tx: sk buffer is used up\n"); + return NULL; + } + + atomic_add(skb->truesize, &sk_atm(vcc)->sk_wmem_alloc); + + return skb; +} + +static inline void atm_free_tx_skb_vcc(struct sk_buff *skb, struct atm_vcc *vcc) +{ + if ( vcc->pop != NULL ) + vcc->pop(vcc, skb); + else + dev_kfree_skb_any(skb); +} + +static inline struct sk_buff *get_skb_rx_pointer(unsigned int dataptr) +{ + unsigned int skb_dataptr; + struct sk_buff *skb; + + skb_dataptr = ((dataptr - 1) << 2) | KSEG1; + skb = *(struct sk_buff **)skb_dataptr; + + ASSERT((unsigned int)skb >= KSEG0, "invalid skb - skb = %#08x, dataptr = %#08x", (unsigned int)skb, dataptr); + ASSERT(((unsigned int)skb->data | KSEG1) == ((dataptr << 2) | KSEG1), "invalid skb - skb = %#08x, skb->data = %#08x, dataptr = %#08x", (unsigned int)skb, (unsigned int)skb->data, dataptr); + + return skb; +} + +static inline int get_tx_desc(unsigned int conn) +{ + int desc_base = -1; + struct connection *p_conn = &g_atm_priv_data.conn[conn]; + + if ( p_conn->tx_desc[p_conn->tx_desc_pos].own == 0 ) { + desc_base = p_conn->tx_desc_pos; + if ( ++(p_conn->tx_desc_pos) == dma_tx_descriptor_length ) + p_conn->tx_desc_pos = 0; + } + + return desc_base; +} + +static struct sk_buff* skb_duplicate(struct sk_buff *skb) +{ + struct sk_buff *new_skb; + + new_skb = alloc_skb_tx(skb->len); + if ( new_skb == NULL ) + return NULL; + + skb_put(new_skb, skb->len); + memcpy(new_skb->data, skb->data, skb->len); + + return new_skb; +} + +static struct sk_buff* skb_break_away_from_protocol(struct sk_buff *skb) +{ + struct sk_buff *new_skb; + + if ( skb_shared(skb) ) { + new_skb = skb_clone(skb, GFP_ATOMIC); + if ( new_skb == NULL ) + return NULL; + } else + new_skb = skb_get(skb); + + skb_dst_drop(new_skb); +#if defined(CONFIG_NF_CONNTRACK) || defined(CONFIG_NF_CONNTRACK_MODULE) + nf_conntrack_put(new_skb->nfct); + new_skb->nfct = NULL; + nf_conntrack_put_reasm(new_skb->nfct_reasm); + new_skb->nfct_reasm = NULL; + #ifdef CONFIG_BRIDGE_NETFILTER + nf_bridge_put(new_skb->nf_bridge); + new_skb->nf_bridge = NULL; + #endif +#endif + + return new_skb; +} + +static inline void mailbox_oam_rx_handler(void) +{ + unsigned int vlddes = WRX_DMA_CHANNEL_CONFIG(RX_DMA_CH_OAM)->vlddes; + struct rx_descriptor reg_desc; + struct uni_cell_header *header; + int conn; + struct atm_vcc *vcc; + unsigned int i; + + for ( i = 0; i < vlddes; i++ ) { + unsigned int loop_count = 0; + + do { + reg_desc = g_atm_priv_data.oam_desc[g_atm_priv_data.oam_desc_pos]; + if ( ++loop_count == 1000 ) + break; + } while ( reg_desc.own || !reg_desc.c ); // keep test OWN and C bit until data is ready + ASSERT(loop_count == 1, "loop_count = %u, own = %d, c = %d, oam_desc_pos = %u", loop_count, (int)reg_desc.own, (int)reg_desc.c, g_atm_priv_data.oam_desc_pos); + + header = (struct uni_cell_header *)&g_atm_priv_data.oam_buf[g_atm_priv_data.oam_desc_pos * RX_DMA_CH_OAM_BUF_SIZE]; + + if ( header->pti == ATM_PTI_SEGF5 || header->pti == ATM_PTI_E2EF5 ) + conn = find_vpivci(header->vpi, header->vci); + else if ( header->vci == 0x03 || header->vci == 0x04 ) + conn = find_vpi(header->vpi); + else + conn = -1; + + if ( conn >= 0 && g_atm_priv_data.conn[conn].vcc != NULL ) { + vcc = g_atm_priv_data.conn[conn].vcc; + + if ( vcc->push_oam != NULL ) + vcc->push_oam(vcc, header); + else + ifx_push_oam((unsigned char *)header); + + g_atm_priv_data.wrx_oam++; + + adsl_led_flash(); + } else + g_atm_priv_data.wrx_drop_oam++; + + reg_desc.byteoff = 0; + reg_desc.datalen = RX_DMA_CH_OAM_BUF_SIZE; + reg_desc.own = 1; + reg_desc.c = 0; + + g_atm_priv_data.oam_desc[g_atm_priv_data.oam_desc_pos] = reg_desc; + if ( ++g_atm_priv_data.oam_desc_pos == RX_DMA_CH_OAM_DESC_LEN ) + g_atm_priv_data.oam_desc_pos = 0; + + dma_cache_inv((unsigned long)header, CELL_SIZE); + mailbox_signal(RX_DMA_CH_OAM, 0); + } +} + +static inline void mailbox_aal_rx_handler(void) +{ + unsigned int vlddes = WRX_DMA_CHANNEL_CONFIG(RX_DMA_CH_AAL)->vlddes; + struct rx_descriptor reg_desc; + int conn; + struct atm_vcc *vcc; + struct sk_buff *skb, *new_skb; + struct rx_inband_trailer *trailer; + unsigned int i; + + for ( i = 0; i < vlddes; i++ ) { + unsigned int loop_count = 0; + + do { + reg_desc = g_atm_priv_data.aal_desc[g_atm_priv_data.aal_desc_pos]; + if ( ++loop_count == 1000 ) + break; + } while ( reg_desc.own || !reg_desc.c ); // keep test OWN and C bit until data is ready + ASSERT(loop_count == 1, "loop_count = %u, own = %d, c = %d, aal_desc_pos = %u", loop_count, (int)reg_desc.own, (int)reg_desc.c, g_atm_priv_data.aal_desc_pos); + + conn = reg_desc.id; + + if ( g_atm_priv_data.conn[conn].vcc != NULL ) { + vcc = g_atm_priv_data.conn[conn].vcc; + + skb = get_skb_rx_pointer(reg_desc.dataptr); + + if ( reg_desc.err ) { + if ( vcc->qos.aal == ATM_AAL5 ) { + trailer = (struct rx_inband_trailer *)((unsigned int)skb->data + ((reg_desc.byteoff + reg_desc.datalen + MAX_RX_PACKET_PADDING_BYTES) & ~MAX_RX_PACKET_PADDING_BYTES)); + if ( trailer->stw_crc ) + g_atm_priv_data.conn[conn].aal5_vcc_crc_err++; + if ( trailer->stw_ovz ) + g_atm_priv_data.conn[conn].aal5_vcc_oversize_sdu++; + g_atm_priv_data.wrx_drop_pdu++; + } + if ( vcc->stats ) { + atomic_inc(&vcc->stats->rx_drop); + atomic_inc(&vcc->stats->rx_err); + } + reg_desc.err = 0; + } else if ( atm_charge(vcc, skb->truesize) ) { + new_skb = alloc_skb_rx(); + if ( new_skb != NULL ) { +#if defined(ENABLE_LESS_CACHE_INV) && ENABLE_LESS_CACHE_INV + if ( reg_desc.byteoff + reg_desc.datalen > LESS_CACHE_INV_LEN ) + dma_cache_inv((unsigned long)skb->data + LESS_CACHE_INV_LEN, reg_desc.byteoff + reg_desc.datalen - LESS_CACHE_INV_LEN); +#endif + + skb_reserve(skb, reg_desc.byteoff); + skb_put(skb, reg_desc.datalen); + ATM_SKB(skb)->vcc = vcc; + + vcc->push(vcc, skb); + + if ( vcc->qos.aal == ATM_AAL5 ) + g_atm_priv_data.wrx_pdu++; + if ( vcc->stats ) + atomic_inc(&vcc->stats->rx); + adsl_led_flash(); + + reg_desc.dataptr = (unsigned int)new_skb->data >> 2; + } else { + atm_return(vcc, skb->truesize); + if ( vcc->qos.aal == ATM_AAL5 ) + g_atm_priv_data.wrx_drop_pdu++; + if ( vcc->stats ) + atomic_inc(&vcc->stats->rx_drop); + } + } else { + if ( vcc->qos.aal == ATM_AAL5 ) + g_atm_priv_data.wrx_drop_pdu++; + if ( vcc->stats ) + atomic_inc(&vcc->stats->rx_drop); + } + } else { + g_atm_priv_data.wrx_drop_pdu++; + } + + reg_desc.byteoff = 0; + reg_desc.datalen = RX_DMA_CH_AAL_BUF_SIZE; + reg_desc.own = 1; + reg_desc.c = 0; + + g_atm_priv_data.aal_desc[g_atm_priv_data.aal_desc_pos] = reg_desc; + if ( ++g_atm_priv_data.aal_desc_pos == dma_rx_descriptor_length ) + g_atm_priv_data.aal_desc_pos = 0; + + mailbox_signal(RX_DMA_CH_AAL, 0); + } +} + +static void do_ppe_tasklet(unsigned long data) +{ + *MBOX_IGU1_ISRC = *MBOX_IGU1_ISR; + mailbox_oam_rx_handler(); + mailbox_aal_rx_handler(); + + if ((*MBOX_IGU1_ISR & ((1 << RX_DMA_CH_AAL) | (1 << RX_DMA_CH_OAM))) != 0) + tasklet_schedule(&g_dma_tasklet); + else + enable_irq(PPE_MAILBOX_IGU1_INT); +} + +static irqreturn_t mailbox_irq_handler(int irq, void *dev_id) +{ + if ( !*MBOX_IGU1_ISR ) + return IRQ_HANDLED; + + disable_irq_nosync(PPE_MAILBOX_IGU1_INT); + tasklet_schedule(&g_dma_tasklet); + + return IRQ_HANDLED; +} + +static inline void mailbox_signal(unsigned int queue, int is_tx) +{ + int count = 1000; + + if ( is_tx ) { + while ( MBOX_IGU3_ISR_ISR(queue + FIRST_QSB_QID + 16) && count > 0 ) + count--; + *MBOX_IGU3_ISRS = MBOX_IGU3_ISRS_SET(queue + FIRST_QSB_QID + 16); + } else { + while ( MBOX_IGU3_ISR_ISR(queue) && count > 0 ) + count--; + *MBOX_IGU3_ISRS = MBOX_IGU3_ISRS_SET(queue); + } + + ASSERT(count > 0, "queue = %u, is_tx = %d, MBOX_IGU3_ISR = 0x%08x", queue, is_tx, IFX_REG_R32(MBOX_IGU3_ISR)); +} + +static void set_qsb(struct atm_vcc *vcc, struct atm_qos *qos, unsigned int queue) +{ + struct clk *fpi_clk = clk_get_fpi(); + unsigned int qsb_clk = clk_get_rate(fpi_clk); + unsigned int qsb_qid = queue + FIRST_QSB_QID; + union qsb_queue_parameter_table qsb_queue_parameter_table = {{0}}; + union qsb_queue_vbr_parameter_table qsb_queue_vbr_parameter_table = {{0}}; + unsigned int tmp; + + + /* + * Peak Cell Rate (PCR) Limiter + */ + if ( qos->txtp.max_pcr == 0 ) + qsb_queue_parameter_table.bit.tp = 0; /* disable PCR limiter */ + else { + /* peak cell rate would be slightly lower than requested [maximum_rate / pcr = (qsb_clock / 8) * (time_step / 4) / pcr] */ + tmp = ((qsb_clk * qsb_tstep) >> 5) / qos->txtp.max_pcr + 1; + /* check if overflow takes place */ + qsb_queue_parameter_table.bit.tp = tmp > QSB_TP_TS_MAX ? QSB_TP_TS_MAX : tmp; + } + +#if !defined(DISABLE_QOS_WORKAROUND) || !DISABLE_QOS_WORKAROUND + // A funny issue. Create two PVCs, one UBR and one UBR with max_pcr. + // Send packets to these two PVCs at same time, it trigger strange behavior. + // In A1, RAM from 0x80000000 to 0x0x8007FFFF was corrupted with fixed pattern 0x00000000 0x40000000. + // In A4, PPE firmware keep emiting unknown cell and do not respond to driver. + // To work around, create UBR always with max_pcr. + // If user want to create UBR without max_pcr, we give a default one larger than line-rate. + if ( qos->txtp.traffic_class == ATM_UBR && qsb_queue_parameter_table.bit.tp == 0 ) { + int port = g_atm_priv_data.conn[queue].port; + unsigned int max_pcr = g_atm_priv_data.port[port].tx_max_cell_rate + 1000; + + tmp = ((qsb_clk * qsb_tstep) >> 5) / max_pcr + 1; + if ( tmp > QSB_TP_TS_MAX ) + tmp = QSB_TP_TS_MAX; + else if ( tmp < 1 ) + tmp = 1; + qsb_queue_parameter_table.bit.tp = tmp; + } +#endif + + /* + * Weighted Fair Queueing Factor (WFQF) + */ + switch ( qos->txtp.traffic_class ) { + case ATM_CBR: + case ATM_VBR_RT: + /* real time queue gets weighted fair queueing bypass */ + qsb_queue_parameter_table.bit.wfqf = 0; + break; + case ATM_VBR_NRT: + case ATM_UBR_PLUS: + /* WFQF calculation here is based on virtual cell rates, to reduce granularity for high rates */ + /* WFQF is maximum cell rate / garenteed cell rate */ + /* wfqf = qsb_minimum_cell_rate * QSB_WFQ_NONUBR_MAX / requested_minimum_peak_cell_rate */ + if ( qos->txtp.min_pcr == 0 ) + qsb_queue_parameter_table.bit.wfqf = QSB_WFQ_NONUBR_MAX; + else { + tmp = QSB_GCR_MIN * QSB_WFQ_NONUBR_MAX / qos->txtp.min_pcr; + if ( tmp == 0 ) + qsb_queue_parameter_table.bit.wfqf = 1; + else if ( tmp > QSB_WFQ_NONUBR_MAX ) + qsb_queue_parameter_table.bit.wfqf = QSB_WFQ_NONUBR_MAX; + else + qsb_queue_parameter_table.bit.wfqf = tmp; + } + break; + default: + case ATM_UBR: + qsb_queue_parameter_table.bit.wfqf = QSB_WFQ_UBR_BYPASS; + } + + /* + * Sustained Cell Rate (SCR) Leaky Bucket Shaper VBR.0/VBR.1 + */ + if ( qos->txtp.traffic_class == ATM_VBR_RT || qos->txtp.traffic_class == ATM_VBR_NRT ) { + if ( qos->txtp.scr == 0 ) { + /* disable shaper */ + qsb_queue_vbr_parameter_table.bit.taus = 0; + qsb_queue_vbr_parameter_table.bit.ts = 0; + } else { + /* Cell Loss Priority (CLP) */ + if ( (vcc->atm_options & ATM_ATMOPT_CLP) ) + /* CLP1 */ + qsb_queue_parameter_table.bit.vbr = 1; + else + /* CLP0 */ + qsb_queue_parameter_table.bit.vbr = 0; + /* Rate Shaper Parameter (TS) and Burst Tolerance Parameter for SCR (tauS) */ + tmp = ((qsb_clk * qsb_tstep) >> 5) / qos->txtp.scr + 1; + qsb_queue_vbr_parameter_table.bit.ts = tmp > QSB_TP_TS_MAX ? QSB_TP_TS_MAX : tmp; + tmp = (qos->txtp.mbs - 1) * (qsb_queue_vbr_parameter_table.bit.ts - qsb_queue_parameter_table.bit.tp) / 64; + if ( tmp == 0 ) + qsb_queue_vbr_parameter_table.bit.taus = 1; + else if ( tmp > QSB_TAUS_MAX ) + qsb_queue_vbr_parameter_table.bit.taus = QSB_TAUS_MAX; + else + qsb_queue_vbr_parameter_table.bit.taus = tmp; + } + } else { + qsb_queue_vbr_parameter_table.bit.taus = 0; + qsb_queue_vbr_parameter_table.bit.ts = 0; + } + + /* Queue Parameter Table (QPT) */ + *QSB_RTM = QSB_RTM_DM_SET(QSB_QPT_SET_MASK); + *QSB_RTD = QSB_RTD_TTV_SET(qsb_queue_parameter_table.dword); + *QSB_RAMAC = QSB_RAMAC_RW_SET(QSB_RAMAC_RW_WRITE) | QSB_RAMAC_TSEL_SET(QSB_RAMAC_TSEL_QPT) | QSB_RAMAC_LH_SET(QSB_RAMAC_LH_LOW) | QSB_RAMAC_TESEL_SET(qsb_qid); + /* Queue VBR Paramter Table (QVPT) */ + *QSB_RTM = QSB_RTM_DM_SET(QSB_QVPT_SET_MASK); + *QSB_RTD = QSB_RTD_TTV_SET(qsb_queue_vbr_parameter_table.dword); + *QSB_RAMAC = QSB_RAMAC_RW_SET(QSB_RAMAC_RW_WRITE) | QSB_RAMAC_TSEL_SET(QSB_RAMAC_TSEL_VBR) | QSB_RAMAC_LH_SET(QSB_RAMAC_LH_LOW) | QSB_RAMAC_TESEL_SET(qsb_qid); + +} + +static void qsb_global_set(void) +{ + struct clk *fpi_clk = clk_get_fpi(); + unsigned int qsb_clk = clk_get_rate(fpi_clk); + int i; + unsigned int tmp1, tmp2, tmp3; + + *QSB_ICDV = QSB_ICDV_TAU_SET(qsb_tau); + *QSB_SBL = QSB_SBL_SBL_SET(qsb_srvm); + *QSB_CFG = QSB_CFG_TSTEPC_SET(qsb_tstep >> 1); + + /* + * set SCT and SPT per port + */ + for ( i = 0; i < ATM_PORT_NUMBER; i++ ) { + if ( g_atm_priv_data.port[i].tx_max_cell_rate != 0 ) { + tmp1 = ((qsb_clk * qsb_tstep) >> 1) / g_atm_priv_data.port[i].tx_max_cell_rate; + tmp2 = tmp1 >> 6; /* integer value of Tsb */ + tmp3 = (tmp1 & ((1 << 6) - 1)) + 1; /* fractional part of Tsb */ + /* carry over to integer part (?) */ + if ( tmp3 == (1 << 6) ) { + tmp3 = 0; + tmp2++; + } + if ( tmp2 == 0 ) + tmp2 = tmp3 = 1; + /* 1. set mask */ + /* 2. write value to data transfer register */ + /* 3. start the tranfer */ + /* SCT (FracRate) */ + *QSB_RTM = QSB_RTM_DM_SET(QSB_SET_SCT_MASK); + *QSB_RTD = QSB_RTD_TTV_SET(tmp3); + *QSB_RAMAC = QSB_RAMAC_RW_SET(QSB_RAMAC_RW_WRITE) | + QSB_RAMAC_TSEL_SET(QSB_RAMAC_TSEL_SCT) | + QSB_RAMAC_LH_SET(QSB_RAMAC_LH_LOW) | + QSB_RAMAC_TESEL_SET(i & 0x01); + /* SPT (SBV + PN + IntRage) */ + *QSB_RTM = QSB_RTM_DM_SET(QSB_SET_SPT_MASK); + *QSB_RTD = QSB_RTD_TTV_SET(QSB_SPT_SBV_VALID | QSB_SPT_PN_SET(i & 0x01) | QSB_SPT_INTRATE_SET(tmp2)); + *QSB_RAMAC = QSB_RAMAC_RW_SET(QSB_RAMAC_RW_WRITE) | + QSB_RAMAC_TSEL_SET(QSB_RAMAC_TSEL_SPT) | + QSB_RAMAC_LH_SET(QSB_RAMAC_LH_LOW) | + QSB_RAMAC_TESEL_SET(i & 0x01); + } + } +} + +static inline void set_htu_entry(unsigned int vpi, unsigned int vci, unsigned int queue, int aal5, int is_retx) +{ + struct htu_entry htu_entry = { + res1: 0x00, + clp: is_retx ? 0x01 : 0x00, + pid: g_atm_priv_data.conn[queue].port & 0x01, + vpi: vpi, + vci: vci, + pti: 0x00, + vld: 0x01}; + + struct htu_mask htu_mask = { + set: 0x01, + clp: 0x01, + pid_mask: 0x02, + vpi_mask: 0x00, + vci_mask: 0x0000, + pti_mask: 0x03, // 0xx, user data + clear: 0x00}; + + struct htu_result htu_result = { + res1: 0x00, + cellid: queue, + res2: 0x00, + type: aal5 ? 0x00 : 0x01, + ven: 0x01, + res3: 0x00, + qid: queue}; + + *HTU_RESULT(queue + OAM_HTU_ENTRY_NUMBER) = htu_result; + *HTU_MASK(queue + OAM_HTU_ENTRY_NUMBER) = htu_mask; + *HTU_ENTRY(queue + OAM_HTU_ENTRY_NUMBER) = htu_entry; +} + +static inline void clear_htu_entry(unsigned int queue) +{ + HTU_ENTRY(queue + OAM_HTU_ENTRY_NUMBER)->vld = 0; +} + +static void validate_oam_htu_entry(void) +{ + HTU_ENTRY(OAM_F4_SEG_HTU_ENTRY)->vld = 1; + HTU_ENTRY(OAM_F4_TOT_HTU_ENTRY)->vld = 1; + HTU_ENTRY(OAM_F5_HTU_ENTRY)->vld = 1; +} + +static void invalidate_oam_htu_entry(void) +{ + HTU_ENTRY(OAM_F4_SEG_HTU_ENTRY)->vld = 0; + HTU_ENTRY(OAM_F4_TOT_HTU_ENTRY)->vld = 0; + HTU_ENTRY(OAM_F5_HTU_ENTRY)->vld = 0; +} + +static inline int find_vpi(unsigned int vpi) +{ + int i; + unsigned int bit; + + for ( i = 0, bit = 1; i < MAX_PVC_NUMBER; i++, bit <<= 1 ) { + if ( (g_atm_priv_data.conn_table & bit) != 0 + && g_atm_priv_data.conn[i].vcc != NULL + && vpi == g_atm_priv_data.conn[i].vcc->vpi ) + return i; + } + + return -1; +} + +static inline int find_vpivci(unsigned int vpi, unsigned int vci) +{ + int i; + unsigned int bit; + + for ( i = 0, bit = 1; i < MAX_PVC_NUMBER; i++, bit <<= 1 ) { + if ( (g_atm_priv_data.conn_table & bit) != 0 + && g_atm_priv_data.conn[i].vcc != NULL + && vpi == g_atm_priv_data.conn[i].vcc->vpi + && vci == g_atm_priv_data.conn[i].vcc->vci ) + return i; + } + + return -1; +} + +static inline int find_vcc(struct atm_vcc *vcc) +{ + int i; + unsigned int bit; + + for ( i = 0, bit = 1; i < MAX_PVC_NUMBER; i++, bit <<= 1 ) { + if ( (g_atm_priv_data.conn_table & bit) != 0 + && g_atm_priv_data.conn[i].vcc == vcc ) + return i; + } + + return -1; +} + +static inline int ifx_atm_version(const struct ltq_atm_ops *ops, char *buf) +{ + int len = 0; + unsigned int major, minor; + + ops->fw_ver(&major, &minor); + + len += sprintf(buf + len, "ATM%d.%d.%d", IFX_ATM_VER_MAJOR, IFX_ATM_VER_MID, IFX_ATM_VER_MINOR); + len += sprintf(buf + len, " ATM (A1) firmware version %d.%d\n", major, minor); + + return len; +} + +static inline void check_parameters(void) +{ + /* Please refer to Amazon spec 15.4 for setting these values. */ + if ( qsb_tau < 1 ) + qsb_tau = 1; + if ( qsb_tstep < 1 ) + qsb_tstep = 1; + else if ( qsb_tstep > 4 ) + qsb_tstep = 4; + else if ( qsb_tstep == 3 ) + qsb_tstep = 2; + + /* There is a delay between PPE write descriptor and descriptor is */ + /* really stored in memory. Host also has this delay when writing */ + /* descriptor. So PPE will use this value to determine if the write */ + /* operation makes effect. */ + if ( write_descriptor_delay < 0 ) + write_descriptor_delay = 0; + + if ( aal5_fill_pattern < 0 ) + aal5_fill_pattern = 0; + else + aal5_fill_pattern &= 0xFF; + + /* Because of the limitation of length field in descriptors, the packet */ + /* size could not be larger than 64K minus overhead size. */ + if ( aal5r_max_packet_size < 0 ) + aal5r_max_packet_size = 0; + else if ( aal5r_max_packet_size >= 65535 - MAX_RX_FRAME_EXTRA_BYTES ) + aal5r_max_packet_size = 65535 - MAX_RX_FRAME_EXTRA_BYTES; + if ( aal5r_min_packet_size < 0 ) + aal5r_min_packet_size = 0; + else if ( aal5r_min_packet_size > aal5r_max_packet_size ) + aal5r_min_packet_size = aal5r_max_packet_size; + if ( aal5s_max_packet_size < 0 ) + aal5s_max_packet_size = 0; + else if ( aal5s_max_packet_size >= 65535 - MAX_TX_FRAME_EXTRA_BYTES ) + aal5s_max_packet_size = 65535 - MAX_TX_FRAME_EXTRA_BYTES; + if ( aal5s_min_packet_size < 0 ) + aal5s_min_packet_size = 0; + else if ( aal5s_min_packet_size > aal5s_max_packet_size ) + aal5s_min_packet_size = aal5s_max_packet_size; + + if ( dma_rx_descriptor_length < 2 ) + dma_rx_descriptor_length = 2; + if ( dma_tx_descriptor_length < 2 ) + dma_tx_descriptor_length = 2; + if ( dma_rx_clp1_descriptor_threshold < 0 ) + dma_rx_clp1_descriptor_threshold = 0; + else if ( dma_rx_clp1_descriptor_threshold > dma_rx_descriptor_length ) + dma_rx_clp1_descriptor_threshold = dma_rx_descriptor_length; + + if ( dma_tx_descriptor_length < 2 ) + dma_tx_descriptor_length = 2; +} + +static inline int init_priv_data(void) +{ + void *p; + int i; + struct rx_descriptor rx_desc = {0}; + struct sk_buff *skb; + volatile struct tx_descriptor *p_tx_desc; + struct sk_buff **ppskb; + + // clear atm private data structure + memset(&g_atm_priv_data, 0, sizeof(g_atm_priv_data)); + + // allocate memory for RX (AAL) descriptors + p = kzalloc(dma_rx_descriptor_length * sizeof(struct rx_descriptor) + DESC_ALIGNMENT, GFP_KERNEL); + if ( p == NULL ) + return -1; + dma_cache_wback_inv((unsigned long)p, dma_rx_descriptor_length * sizeof(struct rx_descriptor) + DESC_ALIGNMENT); + g_atm_priv_data.aal_desc_base = p; + p = (void *)((((unsigned int)p + DESC_ALIGNMENT - 1) & ~(DESC_ALIGNMENT - 1)) | KSEG1); + g_atm_priv_data.aal_desc = (volatile struct rx_descriptor *)p; + + // allocate memory for RX (OAM) descriptors + p = kzalloc(RX_DMA_CH_OAM_DESC_LEN * sizeof(struct rx_descriptor) + DESC_ALIGNMENT, GFP_KERNEL); + if ( p == NULL ) + return -1; + dma_cache_wback_inv((unsigned long)p, RX_DMA_CH_OAM_DESC_LEN * sizeof(struct rx_descriptor) + DESC_ALIGNMENT); + g_atm_priv_data.oam_desc_base = p; + p = (void *)((((unsigned int)p + DESC_ALIGNMENT - 1) & ~(DESC_ALIGNMENT - 1)) | KSEG1); + g_atm_priv_data.oam_desc = (volatile struct rx_descriptor *)p; + + // allocate memory for RX (OAM) buffer + p = kzalloc(RX_DMA_CH_OAM_DESC_LEN * RX_DMA_CH_OAM_BUF_SIZE + DATA_BUFFER_ALIGNMENT, GFP_KERNEL); + if ( p == NULL ) + return -1; + dma_cache_wback_inv((unsigned long)p, RX_DMA_CH_OAM_DESC_LEN * RX_DMA_CH_OAM_BUF_SIZE + DATA_BUFFER_ALIGNMENT); + g_atm_priv_data.oam_buf_base = p; + p = (void *)(((unsigned int)p + DATA_BUFFER_ALIGNMENT - 1) & ~(DATA_BUFFER_ALIGNMENT - 1)); + g_atm_priv_data.oam_buf = p; + + // allocate memory for TX descriptors + p = kzalloc(MAX_PVC_NUMBER * dma_tx_descriptor_length * sizeof(struct tx_descriptor) + DESC_ALIGNMENT, GFP_KERNEL); + if ( p == NULL ) + return -1; + dma_cache_wback_inv((unsigned long)p, MAX_PVC_NUMBER * dma_tx_descriptor_length * sizeof(struct tx_descriptor) + DESC_ALIGNMENT); + g_atm_priv_data.tx_desc_base = p; + + // allocate memory for TX skb pointers + p = kzalloc(MAX_PVC_NUMBER * dma_tx_descriptor_length * sizeof(struct sk_buff *) + 4, GFP_KERNEL); + if ( p == NULL ) + return -1; + dma_cache_wback_inv((unsigned long)p, MAX_PVC_NUMBER * dma_tx_descriptor_length * sizeof(struct sk_buff *) + 4); + g_atm_priv_data.tx_skb_base = p; + + // setup RX (AAL) descriptors + rx_desc.own = 1; + rx_desc.c = 0; + rx_desc.sop = 1; + rx_desc.eop = 1; + rx_desc.byteoff = 0; + rx_desc.id = 0; + rx_desc.err = 0; + rx_desc.datalen = RX_DMA_CH_AAL_BUF_SIZE; + for ( i = 0; i < dma_rx_descriptor_length; i++ ) { + skb = alloc_skb_rx(); + if ( skb == NULL ) + return -1; + rx_desc.dataptr = ((unsigned int)skb->data >> 2) & 0x0FFFFFFF; + g_atm_priv_data.aal_desc[i] = rx_desc; + } + + // setup RX (OAM) descriptors + p = (void *)((unsigned int)g_atm_priv_data.oam_buf | KSEG1); + rx_desc.own = 1; + rx_desc.c = 0; + rx_desc.sop = 1; + rx_desc.eop = 1; + rx_desc.byteoff = 0; + rx_desc.id = 0; + rx_desc.err = 0; + rx_desc.datalen = RX_DMA_CH_OAM_BUF_SIZE; + for ( i = 0; i < RX_DMA_CH_OAM_DESC_LEN; i++ ) { + rx_desc.dataptr = ((unsigned int)p >> 2) & 0x0FFFFFFF; + g_atm_priv_data.oam_desc[i] = rx_desc; + p = (void *)((unsigned int)p + RX_DMA_CH_OAM_BUF_SIZE); + } + + // setup TX descriptors and skb pointers + p_tx_desc = (volatile struct tx_descriptor *)((((unsigned int)g_atm_priv_data.tx_desc_base + DESC_ALIGNMENT - 1) & ~(DESC_ALIGNMENT - 1)) | KSEG1); + ppskb = (struct sk_buff **)(((unsigned int)g_atm_priv_data.tx_skb_base + 3) & ~3); + for ( i = 0; i < MAX_PVC_NUMBER; i++ ) { + g_atm_priv_data.conn[i].tx_desc = &p_tx_desc[i * dma_tx_descriptor_length]; + g_atm_priv_data.conn[i].tx_skb = &ppskb[i * dma_tx_descriptor_length]; + } + + for ( i = 0; i < ATM_PORT_NUMBER; i++ ) + g_atm_priv_data.port[i].tx_max_cell_rate = DEFAULT_TX_LINK_RATE; + + return 0; +} + +static inline void clear_priv_data(void) +{ + int i, j; + struct sk_buff *skb; + + for ( i = 0; i < MAX_PVC_NUMBER; i++ ) { + if ( g_atm_priv_data.conn[i].tx_skb != NULL ) { + for ( j = 0; j < dma_tx_descriptor_length; j++ ) + if ( g_atm_priv_data.conn[i].tx_skb[j] != NULL ) + dev_kfree_skb_any(g_atm_priv_data.conn[i].tx_skb[j]); + } + } + + if ( g_atm_priv_data.tx_skb_base != NULL ) + kfree(g_atm_priv_data.tx_skb_base); + + if ( g_atm_priv_data.tx_desc_base != NULL ) + kfree(g_atm_priv_data.tx_desc_base); + + if ( g_atm_priv_data.oam_buf_base != NULL ) + kfree(g_atm_priv_data.oam_buf_base); + + if ( g_atm_priv_data.oam_desc_base != NULL ) + kfree(g_atm_priv_data.oam_desc_base); + + if ( g_atm_priv_data.aal_desc_base != NULL ) { + for ( i = 0; i < dma_rx_descriptor_length; i++ ) { + if ( g_atm_priv_data.aal_desc[i].sop || g_atm_priv_data.aal_desc[i].eop ) { // descriptor initialized + skb = get_skb_rx_pointer(g_atm_priv_data.aal_desc[i].dataptr); + dev_kfree_skb_any(skb); + } + } + kfree(g_atm_priv_data.aal_desc_base); + } +} + +static inline void init_rx_tables(void) +{ + int i; + struct wrx_queue_config wrx_queue_config = {0}; + struct wrx_dma_channel_config wrx_dma_channel_config = {0}; + struct htu_entry htu_entry = {0}; + struct htu_result htu_result = {0}; + struct htu_mask htu_mask = { + set: 0x01, + clp: 0x01, + pid_mask: 0x00, + vpi_mask: 0x00, + vci_mask: 0x00, + pti_mask: 0x00, + clear: 0x00 + }; + + /* + * General Registers + */ + *CFG_WRX_HTUTS = MAX_PVC_NUMBER + OAM_HTU_ENTRY_NUMBER; +#ifndef CONFIG_AMAZON_SE + *CFG_WRX_QNUM = MAX_QUEUE_NUMBER; +#endif + *CFG_WRX_DCHNUM = RX_DMA_CH_TOTAL; + *WRX_DMACH_ON = (1 << RX_DMA_CH_TOTAL) - 1; + *WRX_HUNT_BITTH = DEFAULT_RX_HUNT_BITTH; + + /* + * WRX Queue Configuration Table + */ + wrx_queue_config.uumask = 0xFF; + wrx_queue_config.cpimask = 0xFF; + wrx_queue_config.uuexp = 0; + wrx_queue_config.cpiexp = 0; + wrx_queue_config.mfs = aal5r_max_packet_size; + wrx_queue_config.oversize = aal5r_max_packet_size; + wrx_queue_config.undersize = aal5r_min_packet_size; + wrx_queue_config.errdp = aal5r_drop_error_packet; + wrx_queue_config.dmach = RX_DMA_CH_AAL; + for ( i = 0; i < MAX_QUEUE_NUMBER; i++ ) + *WRX_QUEUE_CONFIG(i) = wrx_queue_config; + WRX_QUEUE_CONFIG(OAM_RX_QUEUE)->dmach = RX_DMA_CH_OAM; + + /* + * WRX DMA Channel Configuration Table + */ + wrx_dma_channel_config.chrl = 0; + wrx_dma_channel_config.clp1th = dma_rx_clp1_descriptor_threshold; + wrx_dma_channel_config.mode = 0; + wrx_dma_channel_config.rlcfg = 0; + + wrx_dma_channel_config.deslen = RX_DMA_CH_OAM_DESC_LEN; + wrx_dma_channel_config.desba = ((unsigned int)g_atm_priv_data.oam_desc >> 2) & 0x0FFFFFFF; + *WRX_DMA_CHANNEL_CONFIG(RX_DMA_CH_OAM) = wrx_dma_channel_config; + + wrx_dma_channel_config.deslen = dma_rx_descriptor_length; + wrx_dma_channel_config.desba = ((unsigned int)g_atm_priv_data.aal_desc >> 2) & 0x0FFFFFFF; + *WRX_DMA_CHANNEL_CONFIG(RX_DMA_CH_AAL) = wrx_dma_channel_config; + + /* + * HTU Tables + */ + for (i = 0; i < MAX_PVC_NUMBER; i++) { + htu_result.qid = (unsigned int)i; + + *HTU_ENTRY(i + OAM_HTU_ENTRY_NUMBER) = htu_entry; + *HTU_MASK(i + OAM_HTU_ENTRY_NUMBER) = htu_mask; + *HTU_RESULT(i + OAM_HTU_ENTRY_NUMBER) = htu_result; + } + + /* OAM HTU Entry */ + htu_entry.vci = 0x03; + htu_mask.pid_mask = 0x03; + htu_mask.vpi_mask = 0xFF; + htu_mask.vci_mask = 0x0000; + htu_mask.pti_mask = 0x07; + htu_result.cellid = OAM_RX_QUEUE; + htu_result.type = 1; + htu_result.ven = 1; + htu_result.qid = OAM_RX_QUEUE; + *HTU_RESULT(OAM_F4_SEG_HTU_ENTRY) = htu_result; + *HTU_MASK(OAM_F4_SEG_HTU_ENTRY) = htu_mask; + *HTU_ENTRY(OAM_F4_SEG_HTU_ENTRY) = htu_entry; + htu_entry.vci = 0x04; + htu_result.cellid = OAM_RX_QUEUE; + htu_result.type = 1; + htu_result.ven = 1; + htu_result.qid = OAM_RX_QUEUE; + *HTU_RESULT(OAM_F4_TOT_HTU_ENTRY) = htu_result; + *HTU_MASK(OAM_F4_TOT_HTU_ENTRY) = htu_mask; + *HTU_ENTRY(OAM_F4_TOT_HTU_ENTRY) = htu_entry; + htu_entry.vci = 0x00; + htu_entry.pti = 0x04; + htu_mask.vci_mask = 0xFFFF; + htu_mask.pti_mask = 0x01; + htu_result.cellid = OAM_RX_QUEUE; + htu_result.type = 1; + htu_result.ven = 1; + htu_result.qid = OAM_RX_QUEUE; + *HTU_RESULT(OAM_F5_HTU_ENTRY) = htu_result; + *HTU_MASK(OAM_F5_HTU_ENTRY) = htu_mask; + *HTU_ENTRY(OAM_F5_HTU_ENTRY) = htu_entry; +} + +static inline void init_tx_tables(void) +{ + int i; + struct wtx_queue_config wtx_queue_config = {0}; + struct wtx_dma_channel_config wtx_dma_channel_config = {0}; + struct wtx_port_config wtx_port_config = { + res1: 0, + qid: 0, + qsben: 1 + }; + + /* + * General Registers + */ + *CFG_WTX_DCHNUM = MAX_TX_DMA_CHANNEL_NUMBER; + *WTX_DMACH_ON = ((1 << MAX_TX_DMA_CHANNEL_NUMBER) - 1) ^ ((1 << FIRST_QSB_QID) - 1); + *CFG_WRDES_DELAY = write_descriptor_delay; + + /* + * WTX Port Configuration Table + */ + for ( i = 0; i < ATM_PORT_NUMBER; i++ ) + *WTX_PORT_CONFIG(i) = wtx_port_config; + + /* + * WTX Queue Configuration Table + */ + wtx_queue_config.qsben = 1; + wtx_queue_config.sbid = 0; + for ( i = 0; i < MAX_TX_DMA_CHANNEL_NUMBER; i++ ) { + wtx_queue_config.qsb_vcid = i; + *WTX_QUEUE_CONFIG(i) = wtx_queue_config; + } + + /* + * WTX DMA Channel Configuration Table + */ + wtx_dma_channel_config.mode = 0; + wtx_dma_channel_config.deslen = 0; + wtx_dma_channel_config.desba = 0; + for ( i = 0; i < FIRST_QSB_QID; i++ ) + *WTX_DMA_CHANNEL_CONFIG(i) = wtx_dma_channel_config; + /* normal connection */ + wtx_dma_channel_config.deslen = dma_tx_descriptor_length; + for ( ; i < MAX_TX_DMA_CHANNEL_NUMBER ; i++ ) { + wtx_dma_channel_config.desba = ((unsigned int)g_atm_priv_data.conn[i - FIRST_QSB_QID].tx_desc >> 2) & 0x0FFFFFFF; + *WTX_DMA_CHANNEL_CONFIG(i) = wtx_dma_channel_config; + } +} + +static int atm_showtime_enter(struct port_cell_info *port_cell, void *xdata_addr) +{ + int i, j; + + ASSERT(port_cell != NULL, "port_cell is NULL"); + ASSERT(xdata_addr != NULL, "xdata_addr is NULL"); + + for ( j = 0; j < ATM_PORT_NUMBER && j < port_cell->port_num; j++ ) + if ( port_cell->tx_link_rate[j] > 0 ) + break; + for ( i = 0; i < ATM_PORT_NUMBER && i < port_cell->port_num; i++ ) + g_atm_priv_data.port[i].tx_max_cell_rate = + port_cell->tx_link_rate[i] > 0 ? port_cell->tx_link_rate[i] : port_cell->tx_link_rate[j]; + + qsb_global_set(); + + for ( i = 0; i < MAX_PVC_NUMBER; i++ ) + if ( g_atm_priv_data.conn[i].vcc != NULL ) + set_qsb(g_atm_priv_data.conn[i].vcc, &g_atm_priv_data.conn[i].vcc->qos, i); + + // TODO: ReTX set xdata_addr + g_xdata_addr = xdata_addr; + + g_showtime = 1; + +#if defined(CONFIG_VR9) + IFX_REG_W32(0x0F, UTP_CFG); +#endif + + printk("enter showtime, cell rate: 0 - %d, 1 - %d, xdata addr: 0x%08x\n", + g_atm_priv_data.port[0].tx_max_cell_rate, + g_atm_priv_data.port[1].tx_max_cell_rate, + (unsigned int)g_xdata_addr); + + return 0; +} + +static int atm_showtime_exit(void) +{ + if ( !g_showtime ) + return -1; + +#if defined(CONFIG_VR9) + IFX_REG_W32(0x00, UTP_CFG); +#endif + g_showtime = 0; + g_xdata_addr = NULL; + printk("leave showtime\n"); + return 0; +} + +extern struct ltq_atm_ops ar9_ops; +extern struct ltq_atm_ops vr9_ops; +extern struct ltq_atm_ops danube_ops; +extern struct ltq_atm_ops ase_ops; + +static const struct of_device_id ltq_atm_match[] = { +#ifdef CONFIG_DANUBE + { .compatible = "lantiq,ppe-danube", .data = &danube_ops }, +#elif defined CONFIG_AMAZON_SE + { .compatible = "lantiq,ppe-ase", .data = &ase_ops }, +#elif defined CONFIG_AR9 + { .compatible = "lantiq,ppe-arx100", .data = &ar9_ops }, +#elif defined CONFIG_VR9 + { .compatible = "lantiq,ppe-xrx200", .data = &vr9_ops }, +#endif + {}, +}; +MODULE_DEVICE_TABLE(of, ltq_atm_match); + +static int ltq_atm_probe(struct platform_device *pdev) +{ + const struct of_device_id *match; + struct ltq_atm_ops *ops = NULL; + int ret; + int port_num; + struct port_cell_info port_cell = {0}; + int i, j; + char ver_str[256]; + + match = of_match_device(ltq_atm_match, &pdev->dev); + if (!match) { + dev_err(&pdev->dev, "failed to find matching device\n"); + return -ENOENT; + } + ops = (struct ltq_atm_ops *) match->data; + + check_parameters(); + + ret = init_priv_data(); + if ( ret != 0 ) { + pr_err("INIT_PRIV_DATA_FAIL\n"); + goto INIT_PRIV_DATA_FAIL; + } + + ops->init(); + init_rx_tables(); + init_tx_tables(); + + /* create devices */ + for ( port_num = 0; port_num < ATM_PORT_NUMBER; port_num++ ) { + g_atm_priv_data.port[port_num].dev = atm_dev_register("ifxmips_atm", NULL, &g_ifx_atm_ops, -1, NULL); + if ( !g_atm_priv_data.port[port_num].dev ) { + pr_err("failed to register atm device %d!\n", port_num); + ret = -EIO; + goto ATM_DEV_REGISTER_FAIL; + } else { + g_atm_priv_data.port[port_num].dev->ci_range.vpi_bits = 8; + g_atm_priv_data.port[port_num].dev->ci_range.vci_bits = 16; + g_atm_priv_data.port[port_num].dev->link_rate = g_atm_priv_data.port[port_num].tx_max_cell_rate; + g_atm_priv_data.port[port_num].dev->dev_data = (void*)port_num; + } + } + + /* register interrupt handler */ + ret = request_irq(PPE_MAILBOX_IGU1_INT, mailbox_irq_handler, IRQF_DISABLED, "atm_mailbox_isr", &g_atm_priv_data); + if ( ret ) { + if ( ret == -EBUSY ) { + pr_err("IRQ may be occupied by other driver, please reconfig to disable it.\n"); + } else { + pr_err("request_irq fail irq:%d\n", PPE_MAILBOX_IGU1_INT); + } + goto REQUEST_IRQ_PPE_MAILBOX_IGU1_INT_FAIL; + } + disable_irq(PPE_MAILBOX_IGU1_INT); + + + ret = ops->start(0); + if ( ret ) { + pr_err("ifx_pp32_start fail!\n"); + goto PP32_START_FAIL; + } + + port_cell.port_num = ATM_PORT_NUMBER; + ifx_mei_atm_showtime_check(&g_showtime, &port_cell, &g_xdata_addr); + if ( g_showtime ) { + for ( i = 0; i < ATM_PORT_NUMBER; i++ ) + if ( port_cell.tx_link_rate[i] != 0 ) + break; + for ( j = 0; j < ATM_PORT_NUMBER; j++ ) + g_atm_priv_data.port[j].tx_max_cell_rate = + port_cell.tx_link_rate[j] != 0 ? port_cell.tx_link_rate[j] : port_cell.tx_link_rate[i]; + } + + qsb_global_set(); + validate_oam_htu_entry(); + + ifx_mei_atm_showtime_enter = atm_showtime_enter; + ifx_mei_atm_showtime_exit = atm_showtime_exit; + + ifx_atm_version(ops, ver_str); + printk(KERN_INFO "%s", ver_str); + platform_set_drvdata(pdev, ops); + printk("ifxmips_atm: ATM init succeed\n"); + + return 0; + +PP32_START_FAIL: + free_irq(PPE_MAILBOX_IGU1_INT, &g_atm_priv_data); +REQUEST_IRQ_PPE_MAILBOX_IGU1_INT_FAIL: +ATM_DEV_REGISTER_FAIL: + while ( port_num-- > 0 ) + atm_dev_deregister(g_atm_priv_data.port[port_num].dev); +INIT_PRIV_DATA_FAIL: + clear_priv_data(); + printk("ifxmips_atm: ATM init failed\n"); + return ret; +} + +static int ltq_atm_remove(struct platform_device *pdev) +{ + int port_num; + struct ltq_atm_ops *ops = platform_get_drvdata(pdev); + + ifx_mei_atm_showtime_enter = NULL; + ifx_mei_atm_showtime_exit = NULL; + + invalidate_oam_htu_entry(); + + ops->stop(0); + + free_irq(PPE_MAILBOX_IGU1_INT, &g_atm_priv_data); + + for ( port_num = 0; port_num < ATM_PORT_NUMBER; port_num++ ) + atm_dev_deregister(g_atm_priv_data.port[port_num].dev); + + ops->shutdown(); + + clear_priv_data(); + + return 0; +} + +static struct platform_driver ltq_atm_driver = { + .probe = ltq_atm_probe, + .remove = ltq_atm_remove, + .driver = { + .name = "atm", + .owner = THIS_MODULE, + .of_match_table = ltq_atm_match, + }, +}; + +module_platform_driver(ltq_atm_driver); + +MODULE_LICENSE("Dual BSD/GPL"); diff --git a/package/kernel/lantiq/ltq-deu/Makefile b/package/kernel/lantiq/ltq-deu/Makefile new file mode 100644 index 0000000..4e0d955 --- /dev/null +++ b/package/kernel/lantiq/ltq-deu/Makefile @@ -0,0 +1,49 @@ +# Copyright (C) 2012 OpenWrt.org +# +# This is free software, licensed under the GNU General Public License v2. +# See /LICENSE for more information. + +include $(TOPDIR)/rules.mk +include $(INCLUDE_DIR)/kernel.mk + +PKG_NAME:=ltq-deu +PKG_RELEASE:=1 +PKG_BUILD_DIR:=$(KERNEL_BUILD_DIR)/ltq-deu-$(BUILD_VARIANT) + +PKG_MAINTAINER:=John Crispin <blogic@openwrt.org> + +include $(INCLUDE_DIR)/package.mk + +define KernelPackage/ltq-deu-template + SECTION:=sys + CATEGORY:=Kernel modules + SUBMENU:=Cryptographic API modules + TITLE:=deu driver for $(1) + URL:=http://www.lantiq.com/ + VARIANT:=$(1) + DEPENDS:=@TARGET_lantiq_xway + FILES:=$(PKG_BUILD_DIR)/ltq_deu_$(1).ko $(PKG_BUILD_DIR)/ltq_deu_testmgr.ko + AUTOLOAD:=$(call AutoLoad,52,ltq_deu_$(1)) +endef + +KernelPackage/ltq-deu-danube=$(call KernelPackage/ltq-deu-template,danube) +KernelPackage/ltq-deu-ar9=$(call KernelPackage/ltq-deu-template,ar9) +KernelPackage/ltq-deu-vr9=$(call KernelPackage/ltq-deu-template,vr9) + +define Build/Prepare + $(INSTALL_DIR) $(PKG_BUILD_DIR) + $(CP) ./src/* $(PKG_BUILD_DIR) +endef + +define Build/Configure +endef + +define Build/Compile + cd $(LINUX_DIR); \ + ARCH=mips CROSS_COMPILE="$(KERNEL_CROSS)" \ + $(MAKE) BUILD_VARIANT=$(BUILD_VARIANT) M=$(PKG_BUILD_DIR) V=1 modules +endef + +$(eval $(call KernelPackage,ltq-deu-danube)) +$(eval $(call KernelPackage,ltq-deu-ar9)) +$(eval $(call KernelPackage,ltq-deu-vr9)) diff --git a/package/kernel/lantiq/ltq-deu/src/Makefile b/package/kernel/lantiq/ltq-deu/src/Makefile new file mode 100644 index 0000000..9714e83 --- /dev/null +++ b/package/kernel/lantiq/ltq-deu/src/Makefile @@ -0,0 +1,26 @@ +ifeq ($(BUILD_VARIANT),danube) + CFLAGS_MODULE =-DCONFIG_DANUBE -DCONFIG_CRYPTO_DEV_DEU -DCONFIG_CRYPTO_DEV_SPEED_TEST -DCONFIG_CRYPTO_DEV_DES \ + -DCONFIG_CRYPTO_DEV_AES -DCONFIG_CRYPTO_DEV_SHA1 -DCONFIG_CRYPTO_DEV_MD5 + obj-m = ltq_deu_danube.o + ltq_deu_danube-objs = ifxmips_deu.o ifxmips_deu_danube.o ifxmips_des.o ifxmips_aes.o ifxmips_sha1.o ifxmips_md5.o +endif + +ifeq ($(BUILD_VARIANT),ar9) + CFLAGS_MODULE = -DCONFIG_AR9 -DCONFIG_CRYPTO_DEV_DEU -DCONFIG_CRYPTO_DEV_SPEED_TEST -DCONFIG_CRYPTO_DEV_DES \ + -DCONFIG_CRYPTO_DEV_AES -DCONFIG_CRYPTO_DEV_SHA1 -DCONFIG_CRYPTO_DEV_MD5 -DCONFIG_CRYPTO_DEV_ARC4 \ + -DCONFIG_CRYPTO_DEV_SHA1_HMAC -DCONFIG_CRYPTO_DEV_MD5_HMAC + obj-m = ltq_deu_ar9.o + ltq_deu_ar9-objs = ifxmips_deu.o ifxmips_deu_ar9.o ifxmips_des.o ifxmips_aes.o ifxmips_arc4.o \ + ifxmips_sha1.o ifxmips_md5.o ifxmips_sha1_hmac.o ifxmips_md5_hmac.o +endif + +ifeq ($(BUILD_VARIANT),vr9) + CFLAGS_MODULE = -DCONFIG_VR9 -DCONFIG_CRYPTO_DEV_DEU -DCONFIG_CRYPTO_DEV_SPEED_TEST -DCONFIG_CRYPTO_DEV_DES \ + -DCONFIG_CRYPTO_DEV_AES -DCONFIG_CRYPTO_DEV_SHA1 -DCONFIG_CRYPTO_DEV_MD5 -DCONFIG_CRYPTO_DEV_ARC4 \ + -DCONFIG_CRYPTO_DEV_SHA1_HMAC -DCONFIG_CRYPTO_DEV_MD5_HMAC + obj-m = ltq_deu_vr9.o + ltq_deu_vr9-objs = ifxmips_deu.o ifxmips_deu_vr9.o ifxmips_des.o ifxmips_aes.o ifxmips_arc4.o \ + ifxmips_sha1.o ifxmips_md5.o ifxmips_sha1_hmac.o ifxmips_md5_hmac.o +endif + +obj-m += ltq_deu_testmgr.o diff --git a/package/kernel/lantiq/ltq-deu/src/ifxmips_aes.c b/package/kernel/lantiq/ltq-deu/src/ifxmips_aes.c new file mode 100644 index 0000000..bf77537 --- /dev/null +++ b/package/kernel/lantiq/ltq-deu/src/ifxmips_aes.c @@ -0,0 +1,904 @@ +/****************************************************************************** +** +** FILE NAME : ifxmips_aes.c +** PROJECT : IFX UEIP +** MODULES : DEU Module +** +** DATE : September 8, 2009 +** AUTHOR : Mohammad Firdaus +** DESCRIPTION : Data Encryption Unit Driver for AES Algorithm +** COPYRIGHT : Copyright (c) 2009 +** Infineon Technologies AG +** Am Campeon 1-12, 85579 Neubiberg, Germany +** +** This program is free software; you can redistribute it and/or modify +** it under the terms of the GNU General Public License as published by +** the Free Software Foundation; either version 2 of the License, or +** (at your option) any later version. +** +** HISTORY +** $Date $Author $Comment +** 08,Sept 2009 Mohammad Firdaus Initial UEIP release +*******************************************************************************/ +/*! + \defgroup IFX_DEU IFX_DEU_DRIVERS + \ingroup API + \brief ifx DEU driver module +*/ + +/*! + \file ifxmips_aes.c + \ingroup IFX_DEU + \brief AES Encryption Driver main file +*/ + +/*! + \defgroup IFX_AES_FUNCTIONS IFX_AES_FUNCTIONS + \ingroup IFX_DEU + \brief IFX AES driver Functions +*/ + + +/* Project Header Files */ +#if defined(CONFIG_MODVERSIONS) +#define MODVERSIONS +#include <linux/modeversions> +#endif + +#include <linux/version.h> +#include <linux/module.h> +#include <linux/init.h> +#include <linux/proc_fs.h> +#include <linux/fs.h> +#include <linux/types.h> +#include <linux/errno.h> +#include <linux/crypto.h> +#include <linux/interrupt.h> +#include <linux/delay.h> +#include <asm/byteorder.h> +#include <crypto/algapi.h> + +#include "ifxmips_deu.h" + +#if defined(CONFIG_DANUBE) +#include "ifxmips_deu_danube.h" +extern int ifx_danube_pre_1_4; +#elif defined(CONFIG_AR9) +#include "ifxmips_deu_ar9.h" +#elif defined(CONFIG_VR9) || defined(CONFIG_AR10) +#include "ifxmips_deu_vr9.h" +#else +#error "Unkown platform" +#endif + +/* DMA related header and variables */ + +spinlock_t aes_lock; +#define CRTCL_SECT_INIT spin_lock_init(&aes_lock) +#define CRTCL_SECT_START spin_lock_irqsave(&aes_lock, flag) +#define CRTCL_SECT_END spin_unlock_irqrestore(&aes_lock, flag) + +/* Definition of constants */ +#define AES_START IFX_AES_CON +#define AES_MIN_KEY_SIZE 16 +#define AES_MAX_KEY_SIZE 32 +#define AES_BLOCK_SIZE 16 +#define CTR_RFC3686_NONCE_SIZE 4 +#define CTR_RFC3686_IV_SIZE 8 +#define CTR_RFC3686_MAX_KEY_SIZE (AES_MAX_KEY_SIZE + CTR_RFC3686_NONCE_SIZE) + +#ifdef CRYPTO_DEBUG +extern char debug_level; +#define DPRINTF(level, format, args...) if (level < debug_level) printk(KERN_INFO "[%s %s %d]: " format, __FILE__, __func__, __LINE__, ##args); +#else +#define DPRINTF(level, format, args...) +#endif /* CRYPTO_DEBUG */ + +/* Function decleration */ +int aes_chip_init(void); +u32 endian_swap(u32 input); +u32 input_swap(u32 input); +u32* memory_alignment(const u8 *arg, u32 *buff_alloc, int in_out, int nbytes); +void aes_dma_memory_copy(u32 *outcopy, u32 *out_dma, u8 *out_arg, int nbytes); +void des_dma_memory_copy(u32 *outcopy, u32 *out_dma, u8 *out_arg, int nbytes); +int aes_memory_allocate(int value); +int des_memory_allocate(int value); +void memory_release(u32 *addr); + + +extern void ifx_deu_aes (void *ctx_arg, uint8_t *out_arg, const uint8_t *in_arg, + uint8_t *iv_arg, size_t nbytes, int encdec, int mode); +/* End of function decleration */ + +struct aes_ctx { + int key_length; + u32 buf[AES_MAX_KEY_SIZE]; + u8 nonce[CTR_RFC3686_NONCE_SIZE]; +}; + +extern int disable_deudma; +extern int disable_multiblock; + +/*! \fn int aes_set_key (struct crypto_tfm *tfm, const uint8_t *in_key, unsigned int key_len) + * \ingroup IFX_AES_FUNCTIONS + * \brief sets the AES keys + * \param tfm linux crypto algo transform + * \param in_key input key + * \param key_len key lengths of 16, 24 and 32 bytes supported + * \return -EINVAL - bad key length, 0 - SUCCESS +*/ +int aes_set_key (struct crypto_tfm *tfm, const u8 *in_key, unsigned int key_len) +{ + struct aes_ctx *ctx = crypto_tfm_ctx(tfm); + unsigned long *flags = (unsigned long *) &tfm->crt_flags; + + //printk("set_key in %s\n", __FILE__); + + //aes_chip_init(); + + if (key_len != 16 && key_len != 24 && key_len != 32) { + *flags |= CRYPTO_TFM_RES_BAD_KEY_LEN; + return -EINVAL; + } + + ctx->key_length = key_len; + DPRINTF(0, "ctx @%p, key_len %d, ctx->key_length %d\n", ctx, key_len, ctx->key_length); + memcpy ((u8 *) (ctx->buf), in_key, key_len); + + return 0; +} + + +/*! \fn void ifx_deu_aes (void *ctx_arg, u8 *out_arg, const u8 *in_arg, u8 *iv_arg, size_t nbytes, int encdec, int mode) + * \ingroup IFX_AES_FUNCTIONS + * \brief main interface to AES hardware + * \param ctx_arg crypto algo context + * \param out_arg output bytestream + * \param in_arg input bytestream + * \param iv_arg initialization vector + * \param nbytes length of bytestream + * \param encdec 1 for encrypt; 0 for decrypt + * \param mode operation mode such as ebc, cbc, ctr + * +*/ +void ifx_deu_aes (void *ctx_arg, u8 *out_arg, const u8 *in_arg, + u8 *iv_arg, size_t nbytes, int encdec, int mode) + +{ + /*~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~ */ + volatile struct aes_t *aes = (volatile struct aes_t *) AES_START; + struct aes_ctx *ctx = (struct aes_ctx *)ctx_arg; + u32 *in_key = ctx->buf; + unsigned long flag; + /*~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~ */ + int key_len = ctx->key_length; + + int i = 0; + int byte_cnt = nbytes; + + + CRTCL_SECT_START; + /* 128, 192 or 256 bit key length */ + aes->controlr.K = key_len / 8 - 2; + if (key_len == 128 / 8) { + aes->K3R = DEU_ENDIAN_SWAP(*((u32 *) in_key + 0)); + aes->K2R = DEU_ENDIAN_SWAP(*((u32 *) in_key + 1)); + aes->K1R = DEU_ENDIAN_SWAP(*((u32 *) in_key + 2)); + aes->K0R = DEU_ENDIAN_SWAP(*((u32 *) in_key + 3)); + } + else if (key_len == 192 / 8) { + aes->K5R = DEU_ENDIAN_SWAP(*((u32 *) in_key + 0)); + aes->K4R = DEU_ENDIAN_SWAP(*((u32 *) in_key + 1)); + aes->K3R = DEU_ENDIAN_SWAP(*((u32 *) in_key + 2)); + aes->K2R = DEU_ENDIAN_SWAP(*((u32 *) in_key + 3)); + aes->K1R = DEU_ENDIAN_SWAP(*((u32 *) in_key + 4)); + aes->K0R = DEU_ENDIAN_SWAP(*((u32 *) in_key + 5)); + } + else if (key_len == 256 / 8) { + aes->K7R = DEU_ENDIAN_SWAP(*((u32 *) in_key + 0)); + aes->K6R = DEU_ENDIAN_SWAP(*((u32 *) in_key + 1)); + aes->K5R = DEU_ENDIAN_SWAP(*((u32 *) in_key + 2)); + aes->K4R = DEU_ENDIAN_SWAP(*((u32 *) in_key + 3)); + aes->K3R = DEU_ENDIAN_SWAP(*((u32 *) in_key + 4)); + aes->K2R = DEU_ENDIAN_SWAP(*((u32 *) in_key + 5)); + aes->K1R = DEU_ENDIAN_SWAP(*((u32 *) in_key + 6)); + aes->K0R = DEU_ENDIAN_SWAP(*((u32 *) in_key + 7)); + } + else { + printk (KERN_ERR "[%s %s %d]: Invalid key_len : %d\n", __FILE__, __func__, __LINE__, key_len); + CRTCL_SECT_END; + return;// -EINVAL; + } + + /* let HW pre-process DEcryption key in any case (even if + ENcryption is used). Key Valid (KV) bit is then only + checked in decryption routine! */ + aes->controlr.PNK = 1; + + + aes->controlr.E_D = !encdec; //encryption + aes->controlr.O = mode; //0 ECB 1 CBC 2 OFB 3 CFB 4 CTR + + //aes->controlr.F = 128; //default; only for CFB and OFB modes; change only for customer-specific apps + if (mode > 0) { + aes->IV3R = DEU_ENDIAN_SWAP(*(u32 *) iv_arg); + aes->IV2R = DEU_ENDIAN_SWAP(*((u32 *) iv_arg + 1)); + aes->IV1R = DEU_ENDIAN_SWAP(*((u32 *) iv_arg + 2)); + aes->IV0R = DEU_ENDIAN_SWAP(*((u32 *) iv_arg + 3)); + }; + + + i = 0; + while (byte_cnt >= 16) { + + aes->ID3R = INPUT_ENDIAN_SWAP(*((u32 *) in_arg + (i * 4) + 0)); + aes->ID2R = INPUT_ENDIAN_SWAP(*((u32 *) in_arg + (i * 4) + 1)); + aes->ID1R = INPUT_ENDIAN_SWAP(*((u32 *) in_arg + (i * 4) + 2)); + aes->ID0R = INPUT_ENDIAN_SWAP(*((u32 *) in_arg + (i * 4) + 3)); /* start crypto */ + + while (aes->controlr.BUS) { + // this will not take long + } + + *((volatile u32 *) out_arg + (i * 4) + 0) = aes->OD3R; + *((volatile u32 *) out_arg + (i * 4) + 1) = aes->OD2R; + *((volatile u32 *) out_arg + (i * 4) + 2) = aes->OD1R; + *((volatile u32 *) out_arg + (i * 4) + 3) = aes->OD0R; + + i++; + byte_cnt -= 16; + } + + + //tc.chen : copy iv_arg back + if (mode > 0) { + *((u32 *) iv_arg) = DEU_ENDIAN_SWAP(*((u32 *) iv_arg)); + *((u32 *) iv_arg + 1) = DEU_ENDIAN_SWAP(*((u32 *) iv_arg + 1)); + *((u32 *) iv_arg + 2) = DEU_ENDIAN_SWAP(*((u32 *) iv_arg + 2)); + *((u32 *) iv_arg + 3) = DEU_ENDIAN_SWAP(*((u32 *) iv_arg + 3)); + } + + CRTCL_SECT_END; +} + +/*! + * \fn int ctr_rfc3686_aes_set_key (struct crypto_tfm *tfm, const uint8_t *in_key, unsigned int key_len) + * \ingroup IFX_AES_FUNCTIONS + * \brief sets RFC3686 key + * \param tfm linux crypto algo transform + * \param in_key input key + * \param key_len key lengths of 20, 28 and 36 bytes supported; last 4 bytes is nonce + * \return 0 - SUCCESS + * -EINVAL - bad key length +*/ +int ctr_rfc3686_aes_set_key (struct crypto_tfm *tfm, const uint8_t *in_key, unsigned int key_len) +{ + struct aes_ctx *ctx = crypto_tfm_ctx(tfm); + unsigned long *flags = (unsigned long *)&tfm->crt_flags; + + //printk("ctr_rfc3686_aes_set_key in %s\n", __FILE__); + + memcpy(ctx->nonce, in_key + (key_len - CTR_RFC3686_NONCE_SIZE), + CTR_RFC3686_NONCE_SIZE); + + key_len -= CTR_RFC3686_NONCE_SIZE; // remove 4 bytes of nonce + + if (key_len != 16 && key_len != 24 && key_len != 32) { + *flags |= CRYPTO_TFM_RES_BAD_KEY_LEN; + return -EINVAL; + } + + ctx->key_length = key_len; + + memcpy ((u8 *) (ctx->buf), in_key, key_len); + + return 0; +} + +/*! \fn void ifx_deu_aes (void *ctx_arg, u8 *out_arg, const u8 *in_arg, u8 *iv_arg, u32 nbytes, int encdec, int mode) + * \ingroup IFX_AES_FUNCTIONS + * \brief main interface with deu hardware in DMA mode + * \param ctx_arg crypto algo context + * \param out_arg output bytestream + * \param in_arg input bytestream + * \param iv_arg initialization vector + * \param nbytes length of bytestream + * \param encdec 1 for encrypt; 0 for decrypt + * \param mode operation mode such as ebc, cbc, ctr +*/ + + +//definitions from linux/include/crypto.h: +//#define CRYPTO_TFM_MODE_ECB 0x00000001 +//#define CRYPTO_TFM_MODE_CBC 0x00000002 +//#define CRYPTO_TFM_MODE_CFB 0x00000004 +//#define CRYPTO_TFM_MODE_CTR 0x00000008 +//#define CRYPTO_TFM_MODE_OFB 0x00000010 // not even defined +//but hardware definition: 0 ECB 1 CBC 2 OFB 3 CFB 4 CTR + +/*! \fn void ifx_deu_aes_ecb (void *ctx, uint8_t *dst, const uint8_t *src, uint8_t *iv, size_t nbytes, int encdec, int inplace) + * \ingroup IFX_AES_FUNCTIONS + * \brief sets AES hardware to ECB mode + * \param ctx crypto algo context + * \param dst output bytestream + * \param src input bytestream + * \param iv initialization vector + * \param nbytes length of bytestream + * \param encdec 1 for encrypt; 0 for decrypt + * \param inplace not used +*/ +void ifx_deu_aes_ecb (void *ctx, uint8_t *dst, const uint8_t *src, + uint8_t *iv, size_t nbytes, int encdec, int inplace) +{ + ifx_deu_aes (ctx, dst, src, NULL, nbytes, encdec, 0); +} + +/*! \fn void ifx_deu_aes_cbc (void *ctx, uint8_t *dst, const uint8_t *src, uint8_t *iv, size_t nbytes, int encdec, int inplace) + * \ingroup IFX_AES_FUNCTIONS + * \brief sets AES hardware to CBC mode + * \param ctx crypto algo context + * \param dst output bytestream + * \param src input bytestream + * \param iv initialization vector + * \param nbytes length of bytestream + * \param encdec 1 for encrypt; 0 for decrypt + * \param inplace not used +*/ +void ifx_deu_aes_cbc (void *ctx, uint8_t *dst, const uint8_t *src, + uint8_t *iv, size_t nbytes, int encdec, int inplace) +{ + ifx_deu_aes (ctx, dst, src, iv, nbytes, encdec, 1); +} + +/*! \fn void ifx_deu_aes_ofb (void *ctx, uint8_t *dst, const uint8_t *src, uint8_t *iv, size_t nbytes, int encdec, int inplace) + * \ingroup IFX_AES_FUNCTIONS + * \brief sets AES hardware to OFB mode + * \param ctx crypto algo context + * \param dst output bytestream + * \param src input bytestream + * \param iv initialization vector + * \param nbytes length of bytestream + * \param encdec 1 for encrypt; 0 for decrypt + * \param inplace not used +*/ +void ifx_deu_aes_ofb (void *ctx, uint8_t *dst, const uint8_t *src, + uint8_t *iv, size_t nbytes, int encdec, int inplace) +{ + ifx_deu_aes (ctx, dst, src, iv, nbytes, encdec, 2); +} + +/*! \fn void ifx_deu_aes_cfb (void *ctx, uint8_t *dst, const uint8_t *src, uint8_t *iv, size_t nbytes, int encdec, int inplace) + * \ingroup IFX_AES_FUNCTIONS + * \brief sets AES hardware to CFB mode + * \param ctx crypto algo context + * \param dst output bytestream + * \param src input bytestream + * \param iv initialization vector + * \param nbytes length of bytestream + * \param encdec 1 for encrypt; 0 for decrypt + * \param inplace not used +*/ +void ifx_deu_aes_cfb (void *ctx, uint8_t *dst, const uint8_t *src, + uint8_t *iv, size_t nbytes, int encdec, int inplace) +{ + ifx_deu_aes (ctx, dst, src, iv, nbytes, encdec, 3); +} + +/*! \fn void ifx_deu_aes_ctr (void *ctx, uint8_t *dst, const uint8_t *src, uint8_t *iv, size_t nbytes, int encdec, int inplace) + * \ingroup IFX_AES_FUNCTIONS + * \brief sets AES hardware to CTR mode + * \param ctx crypto algo context + * \param dst output bytestream + * \param src input bytestream + * \param iv initialization vector + * \param nbytes length of bytestream + * \param encdec 1 for encrypt; 0 for decrypt + * \param inplace not used +*/ +void ifx_deu_aes_ctr (void *ctx, uint8_t *dst, const uint8_t *src, + uint8_t *iv, size_t nbytes, int encdec, int inplace) +{ + ifx_deu_aes (ctx, dst, src, iv, nbytes, encdec, 4); +} + +/*! \fn void aes_encrypt (struct crypto_tfm *tfm, uint8_t *out, const uint8_t *in) + * \ingroup IFX_AES_FUNCTIONS + * \brief encrypt AES_BLOCK_SIZE of data + * \param tfm linux crypto algo transform + * \param out output bytestream + * \param in input bytestream +*/ +void aes_encrypt (struct crypto_tfm *tfm, uint8_t *out, const uint8_t *in) +{ + struct aes_ctx *ctx = crypto_tfm_ctx(tfm); + ifx_deu_aes (ctx, out, in, NULL, AES_BLOCK_SIZE, + CRYPTO_DIR_ENCRYPT, 0); +} + +/*! \fn void aes_decrypt (struct crypto_tfm *tfm, uint8_t *out, const uint8_t *in) + * \ingroup IFX_AES_FUNCTIONS + * \brief decrypt AES_BLOCK_SIZE of data + * \param tfm linux crypto algo transform + * \param out output bytestream + * \param in input bytestream +*/ +void aes_decrypt (struct crypto_tfm *tfm, uint8_t *out, const uint8_t *in) +{ + struct aes_ctx *ctx = crypto_tfm_ctx(tfm); + ifx_deu_aes (ctx, out, in, NULL, AES_BLOCK_SIZE, + CRYPTO_DIR_DECRYPT, 0); +} + +/* + * \brief AES function mappings +*/ +struct crypto_alg ifxdeu_aes_alg = { + .cra_name = "aes", + .cra_driver_name = "ifxdeu-aes", + .cra_flags = CRYPTO_ALG_TYPE_CIPHER, + .cra_blocksize = AES_BLOCK_SIZE, + .cra_ctxsize = sizeof(struct aes_ctx), + .cra_module = THIS_MODULE, + .cra_list = LIST_HEAD_INIT(ifxdeu_aes_alg.cra_list), + .cra_u = { + .cipher = { + .cia_min_keysize = AES_MIN_KEY_SIZE, + .cia_max_keysize = AES_MAX_KEY_SIZE, + .cia_setkey = aes_set_key, + .cia_encrypt = aes_encrypt, + .cia_decrypt = aes_decrypt, + } + } +}; + +/*! \fn int ecb_aes_encrypt(struct blkcipher_desc *desc, struct scatterlist *dst, struct scatterlist *src, unsigned int nbytes) + * \ingroup IFX_AES_FUNCTIONS + * \brief ECB AES encrypt using linux crypto blkcipher + * \param desc blkcipher descriptor + * \param dst output scatterlist + * \param src input scatterlist + * \param nbytes data size in bytes + * \return err +*/ +int ecb_aes_encrypt(struct blkcipher_desc *desc, + struct scatterlist *dst, struct scatterlist *src, + unsigned int nbytes) +{ + struct aes_ctx *ctx = crypto_blkcipher_ctx(desc->tfm); + struct blkcipher_walk walk; + int err; + + blkcipher_walk_init(&walk, dst, src, nbytes); + err = blkcipher_walk_virt(desc, &walk); + + while ((nbytes = walk.nbytes)) { + nbytes -= (nbytes % AES_BLOCK_SIZE); + ifx_deu_aes_ecb(ctx, walk.dst.virt.addr, walk.src.virt.addr, + NULL, nbytes, CRYPTO_DIR_ENCRYPT, 0); + nbytes &= AES_BLOCK_SIZE - 1; + err = blkcipher_walk_done(desc, &walk, nbytes); + } + + return err; +} + +/*! \fn int ecb_aes_decrypt(struct blkcipher_desc *desc, struct scatterlist *dst, struct scatterlist *src, unsigned int nbytes) + * \ingroup IFX_AES_FUNCTIONS + * \brief ECB AES decrypt using linux crypto blkcipher + * \param desc blkcipher descriptor + * \param dst output scatterlist + * \param src input scatterlist + * \param nbytes data size in bytes + * \return err +*/ +int ecb_aes_decrypt(struct blkcipher_desc *desc, + struct scatterlist *dst, struct scatterlist *src, + unsigned int nbytes) +{ + struct aes_ctx *ctx = crypto_blkcipher_ctx(desc->tfm); + struct blkcipher_walk walk; + int err; + + blkcipher_walk_init(&walk, dst, src, nbytes); + err = blkcipher_walk_virt(desc, &walk); + + while ((nbytes = walk.nbytes)) { + nbytes -= (nbytes % AES_BLOCK_SIZE); + ifx_deu_aes_ecb(ctx, walk.dst.virt.addr, walk.src.virt.addr, + NULL, nbytes, CRYPTO_DIR_DECRYPT, 0); + nbytes &= AES_BLOCK_SIZE - 1; + err = blkcipher_walk_done(desc, &walk, nbytes); + } + + return err; +} + +/* + * \brief AES function mappings +*/ +struct crypto_alg ifxdeu_ecb_aes_alg = { + .cra_name = "ecb(aes)", + .cra_driver_name = "ifxdeu-ecb(aes)", + .cra_flags = CRYPTO_ALG_TYPE_BLKCIPHER, + .cra_blocksize = AES_BLOCK_SIZE, + .cra_ctxsize = sizeof(struct aes_ctx), + .cra_type = &crypto_blkcipher_type, + .cra_module = THIS_MODULE, + .cra_list = LIST_HEAD_INIT(ifxdeu_ecb_aes_alg.cra_list), + .cra_u = { + .blkcipher = { + .min_keysize = AES_MIN_KEY_SIZE, + .max_keysize = AES_MAX_KEY_SIZE, + .setkey = aes_set_key, + .encrypt = ecb_aes_encrypt, + .decrypt = ecb_aes_decrypt, + } + } +}; + + +/*! \fn int cbc_aes_encrypt(struct blkcipher_desc *desc, struct scatterlist *dst, struct scatterlist *src, unsigned int nbytes) + * \ingroup IFX_AES_FUNCTIONS + * \brief CBC AES encrypt using linux crypto blkcipher + * \param desc blkcipher descriptor + * \param dst output scatterlist + * \param src input scatterlist + * \param nbytes data size in bytes + * \return err +*/ +int cbc_aes_encrypt(struct blkcipher_desc *desc, + struct scatterlist *dst, struct scatterlist *src, + unsigned int nbytes) +{ + struct aes_ctx *ctx = crypto_blkcipher_ctx(desc->tfm); + struct blkcipher_walk walk; + int err; + + blkcipher_walk_init(&walk, dst, src, nbytes); + err = blkcipher_walk_virt(desc, &walk); + + while ((nbytes = walk.nbytes)) { + u8 *iv = walk.iv; + nbytes -= (nbytes % AES_BLOCK_SIZE); + ifx_deu_aes_cbc(ctx, walk.dst.virt.addr, walk.src.virt.addr, + iv, nbytes, CRYPTO_DIR_ENCRYPT, 0); + nbytes &= AES_BLOCK_SIZE - 1; + err = blkcipher_walk_done(desc, &walk, nbytes); + } + + return err; +} + +/*! \fn int cbc_aes_decrypt(struct blkcipher_desc *desc, struct scatterlist *dst, struct scatterlist *src, unsigned int nbytes) + * \ingroup IFX_AES_FUNCTIONS + * \brief CBC AES decrypt using linux crypto blkcipher + * \param desc blkcipher descriptor + * \param dst output scatterlist + * \param src input scatterlist + * \param nbytes data size in bytes + * \return err +*/ +int cbc_aes_decrypt(struct blkcipher_desc *desc, + struct scatterlist *dst, struct scatterlist *src, + unsigned int nbytes) +{ + struct aes_ctx *ctx = crypto_blkcipher_ctx(desc->tfm); + struct blkcipher_walk walk; + int err; + + blkcipher_walk_init(&walk, dst, src, nbytes); + err = blkcipher_walk_virt(desc, &walk); + + while ((nbytes = walk.nbytes)) { + u8 *iv = walk.iv; + nbytes -= (nbytes % AES_BLOCK_SIZE); + ifx_deu_aes_cbc(ctx, walk.dst.virt.addr, walk.src.virt.addr, + iv, nbytes, CRYPTO_DIR_DECRYPT, 0); + nbytes &= AES_BLOCK_SIZE - 1; + err = blkcipher_walk_done(desc, &walk, nbytes); + } + + return err; +} + +/* + * \brief AES function mappings +*/ +struct crypto_alg ifxdeu_cbc_aes_alg = { + .cra_name = "cbc(aes)", + .cra_driver_name = "ifxdeu-cbc(aes)", + .cra_flags = CRYPTO_ALG_TYPE_BLKCIPHER, + .cra_blocksize = AES_BLOCK_SIZE, + .cra_ctxsize = sizeof(struct aes_ctx), + .cra_type = &crypto_blkcipher_type, + .cra_module = THIS_MODULE, + .cra_list = LIST_HEAD_INIT(ifxdeu_cbc_aes_alg.cra_list), + .cra_u = { + .blkcipher = { + .min_keysize = AES_MIN_KEY_SIZE, + .max_keysize = AES_MAX_KEY_SIZE, + .ivsize = AES_BLOCK_SIZE, + .setkey = aes_set_key, + .encrypt = cbc_aes_encrypt, + .decrypt = cbc_aes_decrypt, + } + } +}; + + +/*! \fn int ctr_basic_aes_encrypt(struct blkcipher_desc *desc, struct scatterlist *dst, struct scatterlist *src, unsigned int nbytes) + * \ingroup IFX_AES_FUNCTIONS + * \brief Counter mode AES encrypt using linux crypto blkcipher + * \param desc blkcipher descriptor + * \param dst output scatterlist + * \param src input scatterlist + * \param nbytes data size in bytes + * \return err +*/ +int ctr_basic_aes_encrypt(struct blkcipher_desc *desc, + struct scatterlist *dst, struct scatterlist *src, + unsigned int nbytes) +{ + struct aes_ctx *ctx = crypto_blkcipher_ctx(desc->tfm); + struct blkcipher_walk walk; + int err; + + blkcipher_walk_init(&walk, dst, src, nbytes); + err = blkcipher_walk_virt(desc, &walk); + + while ((nbytes = walk.nbytes)) { + u8 *iv = walk.iv; + nbytes -= (nbytes % AES_BLOCK_SIZE); + ifx_deu_aes_ctr(ctx, walk.dst.virt.addr, walk.src.virt.addr, + iv, nbytes, CRYPTO_DIR_ENCRYPT, 0); + nbytes &= AES_BLOCK_SIZE - 1; + err = blkcipher_walk_done(desc, &walk, nbytes); + } + + return err; +} + +/*! \fn int ctr_basic_aes_decrypt(struct blkcipher_desc *desc, struct scatterlist *dst, struct scatterlist *src, unsigned int nbytes) + * \ingroup IFX_AES_FUNCTIONS + * \brief Counter mode AES decrypt using linux crypto blkcipher + * \param desc blkcipher descriptor + * \param dst output scatterlist + * \param src input scatterlist + * \param nbytes data size in bytes + * \return err +*/ +int ctr_basic_aes_decrypt(struct blkcipher_desc *desc, + struct scatterlist *dst, struct scatterlist *src, + unsigned int nbytes) +{ + struct aes_ctx *ctx = crypto_blkcipher_ctx(desc->tfm); + struct blkcipher_walk walk; + int err; + + blkcipher_walk_init(&walk, dst, src, nbytes); + err = blkcipher_walk_virt(desc, &walk); + + while ((nbytes = walk.nbytes)) { + u8 *iv = walk.iv; + nbytes -= (nbytes % AES_BLOCK_SIZE); + ifx_deu_aes_ctr(ctx, walk.dst.virt.addr, walk.src.virt.addr, + iv, nbytes, CRYPTO_DIR_DECRYPT, 0); + nbytes &= AES_BLOCK_SIZE - 1; + err = blkcipher_walk_done(desc, &walk, nbytes); + } + + return err; +} + +/* + * \brief AES function mappings +*/ +struct crypto_alg ifxdeu_ctr_basic_aes_alg = { + .cra_name = "ctr(aes)", + .cra_driver_name = "ifxdeu-ctr(aes)", + .cra_flags = CRYPTO_ALG_TYPE_BLKCIPHER, + .cra_blocksize = AES_BLOCK_SIZE, + .cra_ctxsize = sizeof(struct aes_ctx), + .cra_type = &crypto_blkcipher_type, + .cra_module = THIS_MODULE, + .cra_list = LIST_HEAD_INIT(ifxdeu_ctr_basic_aes_alg.cra_list), + .cra_u = { + .blkcipher = { + .min_keysize = AES_MIN_KEY_SIZE, + .max_keysize = AES_MAX_KEY_SIZE, + .ivsize = AES_BLOCK_SIZE, + .setkey = aes_set_key, + .encrypt = ctr_basic_aes_encrypt, + .decrypt = ctr_basic_aes_decrypt, + } + } +}; + + +/*! \fn int ctr_rfc3686_aes_encrypt(struct blkcipher_desc *desc, struct scatterlist *dst, struct scatterlist *src, unsigned int nbytes) + * \ingroup IFX_AES_FUNCTIONS + * \brief Counter mode AES (rfc3686) encrypt using linux crypto blkcipher + * \param desc blkcipher descriptor + * \param dst output scatterlist + * \param src input scatterlist + * \param nbytes data size in bytes + * \return err +*/ +int ctr_rfc3686_aes_encrypt(struct blkcipher_desc *desc, + struct scatterlist *dst, struct scatterlist *src, + unsigned int nbytes) +{ + struct aes_ctx *ctx = crypto_blkcipher_ctx(desc->tfm); + struct blkcipher_walk walk; + int err; + u8 rfc3686_iv[16]; + + blkcipher_walk_init(&walk, dst, src, nbytes); + err = blkcipher_walk_virt(desc, &walk); + + /* set up counter block */ + memcpy(rfc3686_iv, ctx->nonce, CTR_RFC3686_NONCE_SIZE); + memcpy(rfc3686_iv + CTR_RFC3686_NONCE_SIZE, walk.iv, CTR_RFC3686_IV_SIZE); + + /* initialize counter portion of counter block */ + *(__be32 *)(rfc3686_iv + CTR_RFC3686_NONCE_SIZE + CTR_RFC3686_IV_SIZE) = + cpu_to_be32(1); + + while ((nbytes = walk.nbytes)) { + nbytes -= (nbytes % AES_BLOCK_SIZE); + ifx_deu_aes_ctr(ctx, walk.dst.virt.addr, walk.src.virt.addr, + rfc3686_iv, nbytes, CRYPTO_DIR_ENCRYPT, 0); + nbytes &= AES_BLOCK_SIZE - 1; + err = blkcipher_walk_done(desc, &walk, nbytes); + } + + return err; +} + +/*! \fn int ctr_rfc3686_aes_decrypt(struct blkcipher_desc *desc, struct scatterlist *dst, struct scatterlist *src, unsigned int nbytes) + * \ingroup IFX_AES_FUNCTIONS + * \brief Counter mode AES (rfc3686) decrypt using linux crypto blkcipher + * \param desc blkcipher descriptor + * \param dst output scatterlist + * \param src input scatterlist + * \param nbytes data size in bytes + * \return err +*/ +int ctr_rfc3686_aes_decrypt(struct blkcipher_desc *desc, + struct scatterlist *dst, struct scatterlist *src, + unsigned int nbytes) +{ + struct aes_ctx *ctx = crypto_blkcipher_ctx(desc->tfm); + struct blkcipher_walk walk; + int err; + u8 rfc3686_iv[16]; + + blkcipher_walk_init(&walk, dst, src, nbytes); + err = blkcipher_walk_virt(desc, &walk); + + /* set up counter block */ + memcpy(rfc3686_iv, ctx->nonce, CTR_RFC3686_NONCE_SIZE); + memcpy(rfc3686_iv + CTR_RFC3686_NONCE_SIZE, walk.iv, CTR_RFC3686_IV_SIZE); + + /* initialize counter portion of counter block */ + *(__be32 *)(rfc3686_iv + CTR_RFC3686_NONCE_SIZE + CTR_RFC3686_IV_SIZE) = + cpu_to_be32(1); + + while ((nbytes = walk.nbytes)) { + nbytes -= (nbytes % AES_BLOCK_SIZE); + ifx_deu_aes_ctr(ctx, walk.dst.virt.addr, walk.src.virt.addr, + rfc3686_iv, nbytes, CRYPTO_DIR_DECRYPT, 0); + nbytes &= AES_BLOCK_SIZE - 1; + err = blkcipher_walk_done(desc, &walk, nbytes); + } + + return err; +} + +/* + * \brief AES function mappings +*/ +struct crypto_alg ifxdeu_ctr_rfc3686_aes_alg = { + .cra_name = "rfc3686(ctr(aes))", + .cra_driver_name = "ifxdeu-ctr-rfc3686(aes)", + .cra_flags = CRYPTO_ALG_TYPE_BLKCIPHER, + .cra_blocksize = AES_BLOCK_SIZE, + .cra_ctxsize = sizeof(struct aes_ctx), + .cra_type = &crypto_blkcipher_type, + .cra_module = THIS_MODULE, + .cra_list = LIST_HEAD_INIT(ifxdeu_ctr_rfc3686_aes_alg.cra_list), + .cra_u = { + .blkcipher = { + .min_keysize = AES_MIN_KEY_SIZE, + .max_keysize = CTR_RFC3686_MAX_KEY_SIZE, + .ivsize = CTR_RFC3686_IV_SIZE, + .setkey = ctr_rfc3686_aes_set_key, + .encrypt = ctr_rfc3686_aes_encrypt, + .decrypt = ctr_rfc3686_aes_decrypt, + } + } +}; + + +/*! \fn int __init ifxdeu_init_aes (void) + * \ingroup IFX_AES_FUNCTIONS + * \brief function to initialize AES driver + * \return ret +*/ +int __init ifxdeu_init_aes (void) +{ + int ret = -ENOSYS; + + + +#if (LINUX_VERSION_CODE < KERNEL_VERSION(2,6,20)) + if (!disable_multiblock) { + ifxdeu_aes_alg.cra_u.cipher.cia_max_nbytes = AES_BLOCK_SIZE; //(size_t)-1; + ifxdeu_aes_alg.cra_u.cipher.cia_req_align = 16; + ifxdeu_aes_alg.cra_u.cipher.cia_ecb = ifx_deu_aes_ecb; + ifxdeu_aes_alg.cra_u.cipher.cia_cbc = ifx_deu_aes_cbc; + ifxdeu_aes_alg.cra_u.cipher.cia_cfb = ifx_deu_aes_cfb; + ifxdeu_aes_alg.cra_u.cipher.cia_ofb = ifx_deu_aes_ofb; + } +#endif + + if ((ret = crypto_register_alg(&ifxdeu_aes_alg))) + goto aes_err; + + if ((ret = crypto_register_alg(&ifxdeu_ecb_aes_alg))) + goto ecb_aes_err; + + if ((ret = crypto_register_alg(&ifxdeu_cbc_aes_alg))) + goto cbc_aes_err; + + if ((ret = crypto_register_alg(&ifxdeu_ctr_basic_aes_alg))) + goto ctr_basic_aes_err; + + if ((ret = crypto_register_alg(&ifxdeu_ctr_rfc3686_aes_alg))) + goto ctr_rfc3686_aes_err; + + aes_chip_init (); + + CRTCL_SECT_INIT; + + + printk (KERN_NOTICE "IFX DEU AES initialized%s%s.\n", disable_multiblock ? "" : " (multiblock)", disable_deudma ? "" : " (DMA)"); + return ret; + +ctr_rfc3686_aes_err: + crypto_unregister_alg(&ifxdeu_ctr_rfc3686_aes_alg); + printk (KERN_ERR "IFX ctr_rfc3686_aes initialization failed!\n"); + return ret; +ctr_basic_aes_err: + crypto_unregister_alg(&ifxdeu_ctr_basic_aes_alg); + printk (KERN_ERR "IFX ctr_basic_aes initialization failed!\n"); + return ret; +cbc_aes_err: + crypto_unregister_alg(&ifxdeu_cbc_aes_alg); + printk (KERN_ERR "IFX cbc_aes initialization failed!\n"); + return ret; +ecb_aes_err: + crypto_unregister_alg(&ifxdeu_ecb_aes_alg); + printk (KERN_ERR "IFX aes initialization failed!\n"); + return ret; +aes_err: + printk(KERN_ERR "IFX DEU AES initialization failed!\n"); + + return ret; +} + +/*! \fn void __exit ifxdeu_fini_aes (void) + * \ingroup IFX_AES_FUNCTIONS + * \brief unregister aes driver +*/ +void __exit ifxdeu_fini_aes (void) +{ + crypto_unregister_alg (&ifxdeu_aes_alg); + crypto_unregister_alg (&ifxdeu_ecb_aes_alg); + crypto_unregister_alg (&ifxdeu_cbc_aes_alg); + crypto_unregister_alg (&ifxdeu_ctr_basic_aes_alg); + crypto_unregister_alg (&ifxdeu_ctr_rfc3686_aes_alg); + +} + + diff --git a/package/kernel/lantiq/ltq-deu/src/ifxmips_arc4.c b/package/kernel/lantiq/ltq-deu/src/ifxmips_arc4.c new file mode 100644 index 0000000..ee56187 --- /dev/null +++ b/package/kernel/lantiq/ltq-deu/src/ifxmips_arc4.c @@ -0,0 +1,389 @@ +/****************************************************************************** +** +** FILE NAME : ifxmips_arc4.c +** PROJECT : IFX UEIP +** MODULES : DEU Module +** +** DATE : September 8, 2009 +** AUTHOR : Mohammad Firdaus +** DESCRIPTION : Data Encryption Unit Driver for ARC4 Algorithm +** COPYRIGHT : Copyright (c) 2009 +** Infineon Technologies AG +** Am Campeon 1-12, 85579 Neubiberg, Germany +** +** This program is free software; you can redistribute it and/or modify +** it under the terms of the GNU General Public License as published by +** the Free Software Foundation; either version 2 of the License, or +** (at your option) any later version. +** +** HISTORY +** $Date $Author $Comment +** 08 Sept 2009 Mohammad Firdaus Initial UEIP release +*******************************************************************************/ + +/*! + \defgroup IFX_DEU IFX_DEU_DRIVERS + \ingroup API + \brief ifx deu driver module +*/ + +/*! + \file ifxmips_arc4.c + \ingroup IFX_DEU + \brief ARC4 encryption DEU driver file +*/ + +/*! + \defgroup IFX_ARC4_FUNCTIONS IFX_ARC4_FUNCTIONS + \ingroup IFX_DEU + \brief IFX deu driver functions +*/ + +/* Project header */ +#include <linux/version.h> +#include <linux/module.h> +#include <linux/init.h> +#include <linux/types.h> +#include <linux/errno.h> +#include <linux/crypto.h> +#include <crypto/algapi.h> +#include <linux/interrupt.h> +#include <asm/byteorder.h> +#include <linux/delay.h> + +/* Board specific header files */ +#ifdef CONFIG_AR9 +#include "ifxmips_deu_ar9.h" +#endif +#ifdef CONFIG_VR9 +#include "ifxmips_deu_vr9.h" +#endif + +static spinlock_t lock; +#define CRTCL_SECT_INIT spin_lock_init(&lock) +#define CRTCL_SECT_START spin_lock_irqsave(&lock, flag) +#define CRTCL_SECT_END spin_unlock_irqrestore(&lock, flag) + +/* Preprocessor declerations */ +#define ARC4_MIN_KEY_SIZE 1 +//#define ARC4_MAX_KEY_SIZE 256 +#define ARC4_MAX_KEY_SIZE 16 +#define ARC4_BLOCK_SIZE 1 +#define ARC4_START IFX_ARC4_CON +#ifdef CRYPTO_DEBUG +extern char debug_level; +#define DPRINTF(level, format, args...) if (level < debug_level) printk(KERN_INFO "[%s %s %d]: " format, __FILE__, __func__, __LINE__, ##args); +#else +#define DPRINTF(level, format, args...) +#endif + +/* + * \brief arc4 private structure +*/ +struct arc4_ctx { + int key_length; + u8 buf[120]; +}; + +extern int disable_deudma; +extern int disable_multiblock; + + +/*! \fn static void _deu_arc4 (void *ctx_arg, u8 *out_arg, const u8 *in_arg, u8 *iv_arg, u32 nbytes, int encdec, int mode) + \ingroup IFX_ARC4_FUNCTIONS + \brief main interface to ARC4 hardware + \param ctx_arg crypto algo context + \param out_arg output bytestream + \param in_arg input bytestream + \param iv_arg initialization vector + \param nbytes length of bytestream + \param encdec 1 for encrypt; 0 for decrypt + \param mode operation mode such as ebc, cbc, ctr +*/ +static void _deu_arc4 (void *ctx_arg, u8 *out_arg, const u8 *in_arg, + u8 *iv_arg, u32 nbytes, int encdec, int mode) +{ + volatile struct arc4_t *arc4 = (struct arc4_t *) ARC4_START; + + int i = 0; + unsigned long flag; + +#if 1 // need to handle nbytes not multiple of 16 + volatile u32 tmp_array32[4]; + volatile u8 *tmp_ptr8; + int remaining_bytes, j; +#endif + + CRTCL_SECT_START; + + arc4->IDLEN = nbytes; + +#if 1 + while (i < nbytes) { + arc4->ID3R = *((u32 *) in_arg + (i>>2) + 0); + arc4->ID2R = *((u32 *) in_arg + (i>>2) + 1); + arc4->ID1R = *((u32 *) in_arg + (i>>2) + 2); + arc4->ID0R = *((u32 *) in_arg + (i>>2) + 3); + + arc4->controlr.GO = 1; + + while (arc4->controlr.BUS) { + // this will not take long + } + +#if 1 + // need to handle nbytes not multiple of 16 + tmp_array32[0] = arc4->OD3R; + tmp_array32[1] = arc4->OD2R; + tmp_array32[2] = arc4->OD1R; + tmp_array32[3] = arc4->OD0R; + + remaining_bytes = nbytes - i; + if (remaining_bytes > 16) + remaining_bytes = 16; + + tmp_ptr8 = (u8 *)&tmp_array32[0]; + for (j = 0; j < remaining_bytes; j++) + *out_arg++ = *tmp_ptr8++; +#else + *((u32 *) out_arg + (i>>2) + 0) = arc4->OD3R; + *((u32 *) out_arg + (i>>2) + 1) = arc4->OD2R; + *((u32 *) out_arg + (i>>2) + 2) = arc4->OD1R; + *((u32 *) out_arg + (i>>2) + 3) = arc4->OD0R; +#endif + + i += 16; + } +#else // dma + +#endif // dma + + CRTCL_SECT_END; +} + +/*! \fn arc4_chip_init (void) + \ingroup IFX_ARC4_FUNCTIONS + \brief initialize arc4 hardware +*/ +static void arc4_chip_init (void) +{ + //do nothing +} + +/*! \fn static int arc4_set_key(struct crypto_tfm *tfm, const u8 *in_key, unsigned int key_len) + \ingroup IFX_ARC4_FUNCTIONS + \brief sets ARC4 key + \param tfm linux crypto algo transform + \param in_key input key + \param key_len key lengths less than or equal to 16 bytes supported +*/ +static int arc4_set_key(struct crypto_tfm *tfm, const u8 *inkey, + unsigned int key_len) +{ + //struct arc4_ctx *ctx = crypto_tfm_ctx(tfm); + volatile struct arc4_t *arc4 = (struct arc4_t *) ARC4_START; + u32 *in_key = (u32 *)inkey; + + // must program all bits at one go?!!! +//#if 1 + *IFX_ARC4_CON = ( (1<<31) | ((key_len - 1)<<27) | (1<<26) | (3<<16) ); + //NDC=1,ENDI=1,GO=0,KSAE=1,SM=0 + + arc4->K3R = *((u32 *) in_key + 0); + arc4->K2R = *((u32 *) in_key + 1); + arc4->K1R = *((u32 *) in_key + 2); + arc4->K0R = *((u32 *) in_key + 3); + +#if 0 // arc4 is a ugly state machine, KSAE can only be set once per session + ctx->key_length = key_len; + + memcpy ((u8 *) (ctx->buf), in_key, key_len); +#endif + + return 0; +} + +/*! \fn static void _deu_arc4_ecb(void *ctx, uint8_t *dst, const uint8_t *src, uint8_t *iv, size_t nbytes, int encdec, int inplace) + \ingroup IFX_ARC4_FUNCTIONS + \brief sets ARC4 hardware to ECB mode + \param ctx crypto algo context + \param dst output bytestream + \param src input bytestream + \param iv initialization vector + \param nbytes length of bytestream + \param encdec 1 for encrypt; 0 for decrypt + \param inplace not used +*/ +static void _deu_arc4_ecb(void *ctx, uint8_t *dst, const uint8_t *src, + uint8_t *iv, size_t nbytes, int encdec, int inplace) +{ + _deu_arc4 (ctx, dst, src, NULL, nbytes, encdec, 0); +} + +/*! \fn static void arc4_crypt(struct crypto_tfm *tfm, u8 *out, const u8 *in) + \ingroup IFX_ARC4_FUNCTIONS + \brief encrypt/decrypt ARC4_BLOCK_SIZE of data + \param tfm linux crypto algo transform + \param out output bytestream + \param in input bytestream +*/ +static void arc4_crypt(struct crypto_tfm *tfm, u8 *out, const u8 *in) +{ + struct arc4_ctx *ctx = crypto_tfm_ctx(tfm); + + _deu_arc4 (ctx, out, in, NULL, ARC4_BLOCK_SIZE, + CRYPTO_DIR_DECRYPT, 0); + +} + +/* + * \brief ARC4 function mappings +*/ +static struct crypto_alg ifxdeu_arc4_alg = { + .cra_name = "arc4", + .cra_driver_name = "ifxdeu-arc4", + .cra_flags = CRYPTO_ALG_TYPE_CIPHER, + .cra_blocksize = ARC4_BLOCK_SIZE, + .cra_ctxsize = sizeof(struct arc4_ctx), + .cra_module = THIS_MODULE, + .cra_list = LIST_HEAD_INIT(ifxdeu_arc4_alg.cra_list), + .cra_u = { + .cipher = { + .cia_min_keysize = ARC4_MIN_KEY_SIZE, + .cia_max_keysize = ARC4_MAX_KEY_SIZE, + .cia_setkey = arc4_set_key, + .cia_encrypt = arc4_crypt, + .cia_decrypt = arc4_crypt, + } + } +}; + +/*! \fn static int ecb_arc4_encrypt(struct blkcipher_desc *desc, struct scatterlist *dst, struct scatterlist *src, unsigned int nbytes) + \ingroup IFX_ARC4_FUNCTIONS + \brief ECB ARC4 encrypt using linux crypto blkcipher + \param desc blkcipher descriptor + \param dst output scatterlist + \param src input scatterlist + \param nbytes data size in bytes +*/ +static int ecb_arc4_encrypt(struct blkcipher_desc *desc, + struct scatterlist *dst, struct scatterlist *src, + unsigned int nbytes) +{ + struct arc4_ctx *ctx = crypto_blkcipher_ctx(desc->tfm); + struct blkcipher_walk walk; + int err; + + DPRINTF(1, "\n"); + blkcipher_walk_init(&walk, dst, src, nbytes); + err = blkcipher_walk_virt(desc, &walk); + + while ((nbytes = walk.nbytes)) { + _deu_arc4_ecb(ctx, walk.dst.virt.addr, walk.src.virt.addr, + NULL, nbytes, CRYPTO_DIR_ENCRYPT, 0); + nbytes &= ARC4_BLOCK_SIZE - 1; + err = blkcipher_walk_done(desc, &walk, nbytes); + } + + return err; +} + +/*! \fn static int ecb_arc4_decrypt(struct blkcipher_desc *desc, struct scatterlist *dst, struct scatterlist *src, unsigned int nbytes) + \ingroup IFX_ARC4_FUNCTIONS + \brief ECB ARC4 decrypt using linux crypto blkcipher + \param desc blkcipher descriptor + \param dst output scatterlist + \param src input scatterlist + \param nbytes data size in bytes +*/ +static int ecb_arc4_decrypt(struct blkcipher_desc *desc, + struct scatterlist *dst, struct scatterlist *src, + unsigned int nbytes) +{ + struct arc4_ctx *ctx = crypto_blkcipher_ctx(desc->tfm); + struct blkcipher_walk walk; + int err; + + DPRINTF(1, "\n"); + blkcipher_walk_init(&walk, dst, src, nbytes); + err = blkcipher_walk_virt(desc, &walk); + + while ((nbytes = walk.nbytes)) { + _deu_arc4_ecb(ctx, walk.dst.virt.addr, walk.src.virt.addr, + NULL, nbytes, CRYPTO_DIR_DECRYPT, 0); + nbytes &= ARC4_BLOCK_SIZE - 1; + err = blkcipher_walk_done(desc, &walk, nbytes); + } + + return err; +} + +/* + * \brief ARC4 function mappings +*/ +static struct crypto_alg ifxdeu_ecb_arc4_alg = { + .cra_name = "ecb(arc4)", + .cra_driver_name = "ifxdeu-ecb(arc4)", + .cra_flags = CRYPTO_ALG_TYPE_BLKCIPHER, + .cra_blocksize = ARC4_BLOCK_SIZE, + .cra_ctxsize = sizeof(struct arc4_ctx), + .cra_type = &crypto_blkcipher_type, + .cra_module = THIS_MODULE, + .cra_list = LIST_HEAD_INIT(ifxdeu_ecb_arc4_alg.cra_list), + .cra_u = { + .blkcipher = { + .min_keysize = ARC4_MIN_KEY_SIZE, + .max_keysize = ARC4_MAX_KEY_SIZE, + .setkey = arc4_set_key, + .encrypt = ecb_arc4_encrypt, + .decrypt = ecb_arc4_decrypt, + } + } +}; + +/*! \fn int __init ifxdeu_init_arc4(void) + \ingroup IFX_ARC4_FUNCTIONS + \brief initialize arc4 driver +*/ +int __init ifxdeu_init_arc4(void) +{ + int ret = -ENOSYS; + + + if ((ret = crypto_register_alg(&ifxdeu_arc4_alg))) + goto arc4_err; + + if ((ret = crypto_register_alg(&ifxdeu_ecb_arc4_alg))) + goto ecb_arc4_err; + + arc4_chip_init (); + + CRTCL_SECT_INIT; + + printk (KERN_NOTICE "IFX DEU ARC4 initialized%s%s.\n", disable_multiblock ? "" : " (multiblock)", disable_deudma ? "" : " (DMA)"); + return ret; + +arc4_err: + crypto_unregister_alg(&ifxdeu_arc4_alg); + printk(KERN_ERR "IFX arc4 initialization failed!\n"); + return ret; +ecb_arc4_err: + crypto_unregister_alg(&ifxdeu_ecb_arc4_alg); + printk (KERN_ERR "IFX ecb_arc4 initialization failed!\n"); + return ret; + +} + +/*! \fn void __exit ifxdeu_fini_arc4(void) + \ingroup IFX_ARC4_FUNCTIONS + \brief unregister arc4 driver +*/ +void __exit ifxdeu_fini_arc4(void) +{ + crypto_unregister_alg (&ifxdeu_arc4_alg); + crypto_unregister_alg (&ifxdeu_ecb_arc4_alg); + + +} + + diff --git a/package/kernel/lantiq/ltq-deu/src/ifxmips_async_aes.c b/package/kernel/lantiq/ltq-deu/src/ifxmips_async_aes.c new file mode 100644 index 0000000..64536da --- /dev/null +++ b/package/kernel/lantiq/ltq-deu/src/ifxmips_async_aes.c @@ -0,0 +1,1137 @@ +/****************************************************************************** +** +** FILE NAME : ifxmips_async_aes.c +** PROJECT : IFX UEIP +** MODULES : DEU Module +** +** DATE : October 11, 2010 +** AUTHOR : Mohammad Firdaus +** DESCRIPTION : Data Encryption Unit Driver for AES Algorithm +** COPYRIGHT : Copyright (c) 2010 +** Infineon Technologies AG +** Am Campeon 1-12, 85579 Neubiberg, Germany +** +** This program is free software; you can redistribute it and/or modify +** it under the terms of the GNU General Public License as published by +** the Free Software Foundation; either version 2 of the License, or +** (at your option) any later version. +** +** HISTORY +** $Date $Author $Comment +** 08,Sept 2009 Mohammad Firdaus Initial UEIP release +** 11, Oct 2010 Mohammad Firdaus Kernel Port incl. Async. Ablkcipher mode +** 21,March 2011 Mohammad Firdaus Changes for Kernel 2.6.32 and IPSec integration +*******************************************************************************/ +/*! + \defgroup IFX_DEU IFX_DEU_DRIVERS + \ingroup API + \brief ifx DEU driver module +*/ + +/*! + \file ifxmips_async_aes.c + \ingroup IFX_DEU + \brief AES Encryption Driver main file +*/ + +/*! + \defgroup IFX_AES_FUNCTIONS IFX_AES_FUNCTIONS + \ingroup IFX_DEU + \brief IFX AES driver Functions +*/ + + + +#include <linux/wait.h> +#include <linux/crypto.h> +#include <linux/kernel.h> +#include <linux/kthread.h> +#include <linux/interrupt.h> +#include <linux/spinlock.h> +#include <linux/list.h> +#include <crypto/ctr.h> +#include <crypto/aes.h> +#include <crypto/algapi.h> +#include <crypto/scatterwalk.h> + +#include <asm/ifx/ifx_regs.h> +#include <asm/ifx/ifx_types.h> +#include <asm/ifx/common_routines.h> +#include <asm/ifx/irq.h> +#include <asm/ifx/ifx_pmu.h> +#include <asm/ifx/ifx_gpio.h> +#include <asm/kmap_types.h> + +#include "ifxmips_deu.h" + +#if defined(CONFIG_DANUBE) +#include "ifxmips_deu_danube.h" +extern int ifx_danube_pre_1_4; +#elif defined(CONFIG_AR9) +#include "ifxmips_deu_ar9.h" +#elif defined(CONFIG_VR9) || defined(CONFIG_AR10) +#include "ifxmips_deu_vr9.h" +#else +#error "Unkown platform" +#endif + +/* DMA related header and variables */ + +spinlock_t aes_lock; +#define CRTCL_SECT_INIT spin_lock_init(&aes_lock) +#define CRTCL_SECT_START spin_lock_irqsave(&aes_lock, flag) +#define CRTCL_SECT_END spin_unlock_irqrestore(&aes_lock, flag) + +/* Definition of constants */ +//#define AES_START IFX_AES_CON +#define AES_MIN_KEY_SIZE 16 +#define AES_MAX_KEY_SIZE 32 +#define AES_BLOCK_SIZE 16 +#define CTR_RFC3686_NONCE_SIZE 4 +#define CTR_RFC3686_IV_SIZE 8 +#define CTR_RFC3686_MAX_KEY_SIZE (AES_MAX_KEY_SIZE + CTR_RFC3686_NONCE_SIZE) + +#ifdef CRYPTO_DEBUG +extern char debug_level; +#define DPRINTF(level, format, args...) if (level < debug_level) printk(KERN_INFO "[%s %s %d]: " format, __FILE__, __func__, __LINE__, ##args); +#else +#define DPRINTF(level, format, args...) +#endif /* CRYPTO_DEBUG */ + + +static int disable_multiblock = 0; +#if LINUX_VERSION_CODE >= KERNEL_VERSION(2,4,0) +module_param(disable_multiblock, int, 0); +#else +MODULE_PARM_DESC(disable_multiblock, "Disable encryption of whole multiblock buffers"); +#endif + +static int disable_deudma = 1; + +/* Function decleration */ +int aes_chip_init(void); +u32 endian_swap(u32 input); +u32 input_swap(u32 input); +u32* memory_alignment(const u8 *arg, u32 *buff_alloc, int in_out, int nbytes); +void aes_dma_memory_copy(u32 *outcopy, u32 *out_dma, u8 *out_arg, int nbytes); +int aes_memory_allocate(int value); +int des_memory_allocate(int value); +void memory_release(u32 *addr); + + +struct aes_ctx { + int key_length; + u32 buf[AES_MAX_KEY_SIZE]; + u8 nonce[CTR_RFC3686_NONCE_SIZE]; + +}; + +struct aes_container { + u8 *iv; + u8 *src_buf; + u8 *dst_buf; + + int mode; + int encdec; + int complete; + int flag; + + u32 bytes_processed; + u32 nbytes; + + struct ablkcipher_request arequest; + +}; + +aes_priv_t *aes_queue; +extern deu_drv_priv_t deu_dma_priv; + +void hexdump(unsigned char *buf, unsigned int len) +{ + print_hex_dump(KERN_CONT, "", DUMP_PREFIX_OFFSET, + 16, 1, + buf, len, false); +} + +/*! \fn void lq_deu_aes_core (void *ctx_arg, u8 *out_arg, const u8 *in_arg, u8 *iv_arg, + size_t nbytes, int encdec, int mode) + * \ingroup IFX_AES_FUNCTIONS + * \brief main interface to AES hardware + * \param ctx_arg crypto algo context + * \param out_arg output bytestream + * \param in_arg input bytestream + * \param iv_arg initialization vector + * \param nbytes length of bytestream + * \param encdec 1 for encrypt; 0 for decrypt + * \param mode operation mode such as ebc, cbc, ctr + * +*/ + +static int lq_deu_aes_core (void *ctx_arg, u8 *out_arg, const u8 *in_arg, + u8 *iv_arg, size_t nbytes, int encdec, int mode) +{ + /*~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~ */ + volatile struct aes_t *aes = (volatile struct aes_t *) AES_START; + struct aes_ctx *ctx = (struct aes_ctx *)ctx_arg; + u32 *in_key = ctx->buf; + unsigned long flag; + /*~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~ */ + int key_len = ctx->key_length; + + volatile struct deu_dma_t *dma = (struct deu_dma_t *) IFX_DEU_DMA_CON; + struct dma_device_info *dma_device = ifx_deu[0].dma_device; + deu_drv_priv_t *deu_priv = (deu_drv_priv_t *)dma_device->priv; + int wlen = 0; + //u32 *outcopy = NULL; + u32 *dword_mem_aligned_in = NULL; + + CRTCL_SECT_START; + + /* 128, 192 or 256 bit key length */ + aes->controlr.K = key_len / 8 - 2; + if (key_len == 128 / 8) { + aes->K3R = DEU_ENDIAN_SWAP(*((u32 *) in_key + 0)); + aes->K2R = DEU_ENDIAN_SWAP(*((u32 *) in_key + 1)); + aes->K1R = DEU_ENDIAN_SWAP(*((u32 *) in_key + 2)); + aes->K0R = DEU_ENDIAN_SWAP(*((u32 *) in_key + 3)); + } + else if (key_len == 192 / 8) { + aes->K5R = DEU_ENDIAN_SWAP(*((u32 *) in_key + 0)); + aes->K4R = DEU_ENDIAN_SWAP(*((u32 *) in_key + 1)); + aes->K3R = DEU_ENDIAN_SWAP(*((u32 *) in_key + 2)); + aes->K2R = DEU_ENDIAN_SWAP(*((u32 *) in_key + 3)); + aes->K1R = DEU_ENDIAN_SWAP(*((u32 *) in_key + 4)); + aes->K0R = DEU_ENDIAN_SWAP(*((u32 *) in_key + 5)); + } + else if (key_len == 256 / 8) { + aes->K7R = DEU_ENDIAN_SWAP(*((u32 *) in_key + 0)); + aes->K6R = DEU_ENDIAN_SWAP(*((u32 *) in_key + 1)); + aes->K5R = DEU_ENDIAN_SWAP(*((u32 *) in_key + 2)); + aes->K4R = DEU_ENDIAN_SWAP(*((u32 *) in_key + 3)); + aes->K3R = DEU_ENDIAN_SWAP(*((u32 *) in_key + 4)); + aes->K2R = DEU_ENDIAN_SWAP(*((u32 *) in_key + 5)); + aes->K1R = DEU_ENDIAN_SWAP(*((u32 *) in_key + 6)); + aes->K0R = DEU_ENDIAN_SWAP(*((u32 *) in_key + 7)); + } + else { + printk (KERN_ERR "[%s %s %d]: Invalid key_len : %d\n", __FILE__, __func__, __LINE__, key_len); + CRTCL_SECT_END; + return -EINVAL; + } + + /* let HW pre-process DEcryption key in any case (even if + ENcryption is used). Key Valid (KV) bit is then only + checked in decryption routine! */ + aes->controlr.PNK = 1; + + while (aes->controlr.BUS) { + // this will not take long + } + AES_DMA_MISC_CONFIG(); + + aes->controlr.E_D = !encdec; //encryption + aes->controlr.O = mode; //0 ECB 1 CBC 2 OFB 3 CFB 4 CTR + + //aes->controlr.F = 128; //default; only for CFB and OFB modes; change only for customer-specific apps + if (mode > 0) { + aes->IV3R = DEU_ENDIAN_SWAP(*(u32 *) iv_arg); + aes->IV2R = DEU_ENDIAN_SWAP(*((u32 *) iv_arg + 1)); + aes->IV1R = DEU_ENDIAN_SWAP(*((u32 *) iv_arg + 2)); + aes->IV0R = DEU_ENDIAN_SWAP(*((u32 *) iv_arg + 3)); + }; + + + /* Prepare Rx buf length used in dma psuedo interrupt */ + deu_priv->deu_rx_buf = (u32 *)out_arg; + deu_priv->deu_rx_len = nbytes; + + /* memory alignment issue */ + dword_mem_aligned_in = (u32 *) DEU_DWORD_REORDERING(in_arg, aes_buff_in, BUFFER_IN, nbytes); + + dma->controlr.ALGO = 1; //AES + dma->controlr.BS = 0; + aes->controlr.DAU = 0; + dma->controlr.EN = 1; + + while (aes->controlr.BUS) { + // wait for AES to be ready + }; + + deu_priv->outcopy = (u32 *) DEU_DWORD_REORDERING(out_arg, aes_buff_out, BUFFER_OUT, nbytes); + deu_priv->event_src = AES_ASYNC_EVENT; + + wlen = dma_device_write (dma_device, (u8 *)dword_mem_aligned_in, nbytes, NULL); + if (wlen != nbytes) { + dma->controlr.EN = 0; + CRTCL_SECT_END; + printk (KERN_ERR "[%s %s %d]: dma_device_write fail!\n", __FILE__, __func__, __LINE__); + return -EINVAL; + } + + // WAIT_AES_DMA_READY(); + + CRTCL_SECT_END; + + if (mode > 0) { + *((u32 *) iv_arg) = DEU_ENDIAN_SWAP(*((u32 *) iv_arg)); + *((u32 *) iv_arg + 1) = DEU_ENDIAN_SWAP(*((u32 *) iv_arg + 1)); + *((u32 *) iv_arg + 2) = DEU_ENDIAN_SWAP(*((u32 *) iv_arg + 2)); + *((u32 *) iv_arg + 3) = DEU_ENDIAN_SWAP(*((u32 *) iv_arg + 3)); + } + + return -EINPROGRESS; +} + +/* \fn static int count_sgs(struct scatterlist *sl, unsigned int total_bytes) + * \ingroup IFX_AES_FUNCTIONS + * \brief Counts and return the number of scatterlists + * \param *sl Function pointer to the scatterlist + * \param total_bytes The total number of bytes that needs to be encrypted/decrypted + * \return The number of scatterlists +*/ + +static int count_sgs(struct scatterlist *sl, unsigned int total_bytes) +{ + int i = 0; + + do { + total_bytes -= sl[i].length; + i++; + + } while (total_bytes > 0); + + return i; +} + +/* \fn void lq_sg_init(struct scatterlist *src, + * struct scatterlist *dst) + * \ingroup IFX_AES_FUNCTIONS + * \brief Maps the scatterlists into a source/destination page. + * \param *src Pointer to the source scatterlist + * \param *dst Pointer to the destination scatterlist +*/ + +static void lq_sg_init(struct aes_container *aes_con,struct scatterlist *src, + struct scatterlist *dst) +{ + + struct page *dst_page, *src_page; + + src_page = sg_virt(src); + aes_con->src_buf = (char *) src_page; + + dst_page = sg_virt(dst); + aes_con->dst_buf = (char *) dst_page; + +} + + +/* \fn static void lq_sg_complete(struct aes_container *aes_con) + * \ingroup IFX_AES_FUNCTIONS + * \brief Free the used up memory after encryt/decrypt. +*/ + +static void lq_sg_complete(struct aes_container *aes_con) +{ + unsigned long queue_flag; + + spin_lock_irqsave(&aes_queue->lock, queue_flag); + kfree(aes_con); + spin_unlock_irqrestore(&aes_queue->lock, queue_flag); +} + +/* \fn static inline struct aes_container *aes_container_cast ( + * struct scatterlist *dst) + * \ingroup IFX_AES_FUNCTIONS + * \brief Locate the structure aes_container in memory. + * \param *areq Pointer to memory location where ablkcipher_request is located + * \return *aes_cointainer The function pointer to aes_container +*/ +static inline struct aes_container *aes_container_cast ( + struct ablkcipher_request *areq) +{ + return container_of(areq, struct aes_container, arequest); +} + + +/* \fn static int process_next_packet(struct aes_container *aes_con, struct ablkcipher_request *areq, + * \ int state) + * \ingroup IFX_AES_FUNCTIONS + * \brief Process next packet to be encrypt/decrypt + * \param *aes_con AES container structure + * \param *areq Pointer to memory location where ablkcipher_request is located + * \param state The state of the current packet (part of scatterlist or new packet) + * \return -EINVAL: error, -EINPROGRESS: Crypto still running, 1: no more scatterlist +*/ + +static int process_next_packet(struct aes_container *aes_con, struct ablkcipher_request *areq, + int state) +{ + u8 *iv; + int mode, dir, err = -EINVAL; + unsigned long queue_flag; + u32 inc, nbytes, remain, chunk_size; + struct scatterlist *src = NULL; + struct scatterlist *dst = NULL; + struct crypto_ablkcipher *cipher; + struct aes_ctx *ctx; + + spin_lock_irqsave(&aes_queue->lock, queue_flag); + + dir = aes_con->encdec; + mode = aes_con->mode; + iv = aes_con->iv; + + if (state & PROCESS_SCATTER) { + src = scatterwalk_sg_next(areq->src); + dst = scatterwalk_sg_next(areq->dst); + + if (!src || !dst) { + spin_unlock_irqrestore(&aes_queue->lock, queue_flag); + return 1; + } + } + else if (state & PROCESS_NEW_PACKET) { + src = areq->src; + dst = areq->dst; + } + + remain = aes_con->bytes_processed; + chunk_size = src->length; + + if (remain > DEU_MAX_PACKET_SIZE) + inc = DEU_MAX_PACKET_SIZE; + else if (remain > chunk_size) + inc = chunk_size; + else + inc = remain; + + remain -= inc; + aes_con->nbytes = inc; + + if (state & PROCESS_SCATTER) { + aes_con->src_buf += aes_con->nbytes; + aes_con->dst_buf += aes_con->nbytes; + } + + lq_sg_init(aes_con, src, dst); + + nbytes = aes_con->nbytes; + + //printk("debug - Line: %d, func: %s, reqsize: %d, scattersize: %d\n", + // __LINE__, __func__, nbytes, chunk_size); + + cipher = crypto_ablkcipher_reqtfm(areq); + ctx = crypto_ablkcipher_ctx(cipher); + + + if (aes_queue->hw_status == AES_IDLE) + aes_queue->hw_status = AES_STARTED; + + aes_con->bytes_processed -= aes_con->nbytes; + err = ablkcipher_enqueue_request(&aes_queue->list, &aes_con->arequest); + if (err == -EBUSY) { + spin_unlock_irqrestore(&aes_queue->lock, queue_flag); + printk("Failed to enqueue request, ln: %d, err: %d\n", + __LINE__, err); + return -EINVAL; + } + + spin_unlock_irqrestore(&aes_queue->lock, queue_flag); + + err = lq_deu_aes_core(ctx, aes_con->dst_buf, aes_con->src_buf, iv, nbytes, dir, mode); + return err; + +} + +/* \fn static void process_queue (unsigned long data) + * \ingroup IFX_AES_FUNCTIONS + * \brief tasklet to signal the dequeuing of the next packet to be processed + * \param unsigned long data Not used + * \return void +*/ + +static void process_queue(unsigned long data) +{ + + DEU_WAKEUP_EVENT(deu_dma_priv.deu_thread_wait, AES_ASYNC_EVENT, + deu_dma_priv.aes_event_flags); +} + + +/* \fn static int aes_crypto_thread (void *data) + * \ingroup IFX_AES_FUNCTIONS + * \brief AES thread that handles crypto requests from upper layer & DMA + * \param *data Not used + * \return -EINVAL: DEU failure, -EBUSY: DEU HW busy, 0: exit thread +*/ +static int aes_crypto_thread (void *data) +{ + struct aes_container *aes_con = NULL; + struct ablkcipher_request *areq = NULL; + int err; + unsigned long queue_flag; + + daemonize("lq_aes_thread"); + printk("AES Queue Manager Starting\n"); + + while (1) + { + DEU_WAIT_EVENT(deu_dma_priv.deu_thread_wait, AES_ASYNC_EVENT, + deu_dma_priv.aes_event_flags); + + spin_lock_irqsave(&aes_queue->lock, queue_flag); + + /* wait to prevent starting a crypto session before + * exiting the dma interrupt thread. + */ + if (aes_queue->hw_status == AES_STARTED) { + areq = ablkcipher_dequeue_request(&aes_queue->list); + aes_con = aes_container_cast(areq); + aes_queue->hw_status = AES_BUSY; + } + else if (aes_queue->hw_status == AES_IDLE) { + areq = ablkcipher_dequeue_request(&aes_queue->list); + aes_con = aes_container_cast(areq); + aes_queue->hw_status = AES_STARTED; + } + else if (aes_queue->hw_status == AES_BUSY) { + areq = ablkcipher_dequeue_request(&aes_queue->list); + aes_con = aes_container_cast(areq); + } + else if (aes_queue->hw_status == AES_COMPLETED) { + lq_sg_complete(aes_con); + aes_queue->hw_status = AES_IDLE; + areq->base.complete(&areq->base, 0); + spin_unlock_irqrestore(&aes_queue->lock, queue_flag); + return 0; + } + //printk("debug ln: %d, bytes proc: %d\n", __LINE__, aes_con->bytes_processed); + spin_unlock_irqrestore(&aes_queue->lock, queue_flag); + + if (!aes_con) { + printk("AES_CON return null\n"); + goto aes_done; + } + + if (aes_con->bytes_processed == 0) { + goto aes_done; + } + + /* Process new packet or the next packet in a scatterlist */ + if (aes_con->flag & PROCESS_NEW_PACKET) { + aes_con->flag = PROCESS_SCATTER; + err = process_next_packet(aes_con, areq, PROCESS_NEW_PACKET); + } + else + err = process_next_packet(aes_con, areq, PROCESS_SCATTER); + + if (err == -EINVAL) { + areq->base.complete(&areq->base, err); + lq_sg_complete(aes_con); + printk("src/dst returned -EINVAL in func: %s\n", __func__); + } + else if (err > 0) { + printk("src/dst returned zero in func: %s\n", __func__); + goto aes_done; + } + + continue; + +aes_done: + //printk("debug line - %d, func: %s, qlen: %d\n", __LINE__, __func__, aes_queue->list.qlen); + areq->base.complete(&areq->base, 0); + lq_sg_complete(aes_con); + + spin_lock_irqsave(&aes_queue->lock, queue_flag); + if (aes_queue->list.qlen > 0) { + spin_unlock_irqrestore(&aes_queue->lock, queue_flag); + tasklet_schedule(&aes_queue->aes_task); + } + else { + aes_queue->hw_status = AES_IDLE; + spin_unlock_irqrestore(&aes_queue->lock, queue_flag); + } + } //while(1) + + return 0; +} + +/* \fn static int lq_aes_queue_mgr(struct aes_ctx *ctx, struct ablkcipher_request *areq, + u8 *iv, int dir, int mode) + * \ingroup IFX_AES_FUNCTIONS + * \brief starts the process of queuing DEU requests + * \param *ctx crypto algo contax + * \param *areq Pointer to the balkcipher requests + * \param *iv Pointer to intput vector location + * \param dir Encrypt/Decrypt + * \mode The mode AES algo is running + * \return 0 if success +*/ + +static int lq_aes_queue_mgr(struct aes_ctx *ctx, struct ablkcipher_request *areq, + u8 *iv, int dir, int mode) +{ + int err = -EINVAL; + unsigned long queue_flag; + struct scatterlist *src = areq->src; + struct scatterlist *dst = areq->dst; + struct aes_container *aes_con = NULL; + u32 remain, inc, nbytes = areq->nbytes; + u32 chunk_bytes = src->length; + + + aes_con = (struct aes_container *)kmalloc(sizeof(struct aes_container), + GFP_KERNEL); + + if (!(aes_con)) { + printk("Cannot allocate memory for AES container, fn %s, ln %d\n", + __func__, __LINE__); + return -ENOMEM; + } + + /* AES encrypt/decrypt mode */ + if (mode == 5) { + nbytes = AES_BLOCK_SIZE; + chunk_bytes = AES_BLOCK_SIZE; + mode = 0; + } + + aes_con->bytes_processed = nbytes; + aes_con->arequest = *(areq); + remain = nbytes; + + //printk("debug - Line: %d, func: %s, reqsize: %d, scattersize: %d\n", + // __LINE__, __func__, nbytes, chunk_bytes); + + if (remain > DEU_MAX_PACKET_SIZE) + inc = DEU_MAX_PACKET_SIZE; + else if (remain > chunk_bytes) + inc = chunk_bytes; + else + inc = remain; + + remain -= inc; + lq_sg_init(aes_con, src, dst); + + if (remain <= 0) + aes_con->complete = 1; + else + aes_con->complete = 0; + + aes_con->nbytes = inc; + aes_con->iv = iv; + aes_con->mode = mode; + aes_con->encdec = dir; + + spin_lock_irqsave(&aes_queue->lock, queue_flag); + + if (aes_queue->hw_status == AES_STARTED || aes_queue->hw_status == AES_BUSY || + aes_queue->list.qlen > 0) { + + aes_con->flag = PROCESS_NEW_PACKET; + err = ablkcipher_enqueue_request(&aes_queue->list, &aes_con->arequest); + + /* max queue length reached */ + if (err == -EBUSY) { + spin_unlock_irqrestore(&aes_queue->lock, queue_flag); + printk("Unable to enqueue request ln: %d, err: %d\n", __LINE__, err); + return err; + } + + spin_unlock_irqrestore(&aes_queue->lock, queue_flag); + return -EINPROGRESS; + } + else if (aes_queue->hw_status == AES_IDLE) + aes_queue->hw_status = AES_STARTED; + + aes_con->flag = PROCESS_SCATTER; + aes_con->bytes_processed -= aes_con->nbytes; + /* or enqueue the whole structure so as to get back the info + * at the moment that it's queued. nbytes might be different */ + err = ablkcipher_enqueue_request(&aes_queue->list, &aes_con->arequest); + + if (err == -EBUSY) { + spin_unlock_irqrestore(&aes_queue->lock, queue_flag); + printk("Unable to enqueue request ln: %d, err: %d\n", __LINE__, err); + return err; + } + + spin_unlock_irqrestore(&aes_queue->lock, queue_flag); + return lq_deu_aes_core(ctx, aes_con->dst_buf, aes_con->src_buf, iv, inc, dir, mode); + +} + +/* \fn static int aes_setkey(struct crypto_ablkcipher *tfm, const u8 *in_key, + * unsigned int keylen) + * \ingroup IFX_AES_FUNCTIONS + * \brief Sets AES key + * \param *tfm Pointer to the ablkcipher transform + * \param *in_key Pointer to input keys + * \param key_len Length of the AES keys + * \return 0 is success, -EINVAL if bad key length +*/ + +static int aes_setkey(struct crypto_ablkcipher *tfm, const u8 *in_key, + unsigned int keylen) +{ + struct aes_ctx *ctx = crypto_ablkcipher_ctx(tfm); + unsigned long *flags = (unsigned long *) &tfm->base.crt_flags; + + DPRINTF(2, "set_key in %s\n", __FILE__); + + if (keylen != 16 && keylen != 24 && keylen != 32) { + *flags |= CRYPTO_TFM_RES_BAD_KEY_LEN; + return -EINVAL; + } + + ctx->key_length = keylen; + DPRINTF(0, "ctx @%p, keylen %d, ctx->key_length %d\n", ctx, keylen, ctx->key_length); + memcpy ((u8 *) (ctx->buf), in_key, keylen); + + return 0; + +} + +/* \fn static int aes_generic_setkey(struct crypto_ablkcipher *tfm, const u8 *in_key, + * unsigned int keylen) + * \ingroup IFX_AES_FUNCTIONS + * \brief Sets AES key + * \param *tfm Pointer to the ablkcipher transform + * \param *key Pointer to input keys + * \param keylen Length of AES keys + * \return 0 is success, -EINVAL if bad key length +*/ + +static int aes_generic_setkey(struct crypto_ablkcipher *tfm, const u8 *key, + unsigned int keylen) +{ + return aes_setkey(tfm, key, keylen); +} + +/* \fn static int rfc3686_aes_setkey(struct crypto_ablkcipher *tfm, const u8 *in_key, + * unsigned int keylen) + * \ingroup IFX_AES_FUNCTIONS + * \brief Sets AES key + * \param *tfm Pointer to the ablkcipher transform + * \param *in_key Pointer to input keys + * \param key_len Length of the AES keys + * \return 0 is success, -EINVAL if bad key length +*/ + +static int rfc3686_aes_setkey(struct crypto_ablkcipher *tfm, + const u8 *in_key, unsigned int keylen) +{ + struct aes_ctx *ctx = crypto_ablkcipher_ctx(tfm); + unsigned long *flags = (unsigned long *)&tfm->base.crt_flags; + + DPRINTF(2, "ctr_rfc3686_aes_set_key in %s\n", __FILE__); + + memcpy(ctx->nonce, in_key + (keylen - CTR_RFC3686_NONCE_SIZE), + CTR_RFC3686_NONCE_SIZE); + + keylen -= CTR_RFC3686_NONCE_SIZE; // remove 4 bytes of nonce + + if (keylen != 16 && keylen != 24 && keylen != 32) { + *flags |= CRYPTO_TFM_RES_BAD_KEY_LEN; + return -EINVAL; + } + + ctx->key_length = keylen; + + memcpy ((u8 *) (ctx->buf), in_key, keylen); + + return 0; +} + +/* \fn static int aes_encrypt(struct ablkcipher_request *areq) + * \ingroup IFX_AES_FUNCTIONS + * \brief Encrypt function for AES algo + * \param *areq Pointer to ablkcipher request in memory + * \return 0 is success, -EINPROGRESS if encryting, EINVAL if failure +*/ + +static int aes_encrypt (struct ablkcipher_request *areq) +{ + struct crypto_ablkcipher *cipher = crypto_ablkcipher_reqtfm(areq); + struct aes_ctx *ctx = crypto_ablkcipher_ctx(cipher); + + return lq_aes_queue_mgr(ctx, areq, NULL, CRYPTO_DIR_ENCRYPT, 5); + +} + +/* \fn static int aes_decrypt(struct ablkcipher_request *areq) + * \ingroup IFX_AES_FUNCTIONS + * \brief Decrypt function for AES algo + * \param *areq Pointer to ablkcipher request in memory + * \return 0 is success, -EINPROGRESS if encryting, EINVAL if failure +*/ +static int aes_decrypt (struct ablkcipher_request *areq) +{ + struct crypto_ablkcipher *cipher = crypto_ablkcipher_reqtfm(areq); + struct aes_ctx *ctx = crypto_ablkcipher_ctx(cipher); + + return lq_aes_queue_mgr(ctx, areq, NULL, CRYPTO_DIR_DECRYPT, 5); +} + +/* \fn static int ecb_aes_decrypt(struct ablkcipher_request *areq) + * \ingroup IFX_AES_FUNCTIONS + * \brief Encrypt function for AES algo + * \param *areq Pointer to ablkcipher request in memory + * \return 0 is success, -EINPROGRESS if encryting, EINVAL if failure +*/ + +static int ecb_aes_encrypt (struct ablkcipher_request *areq) +{ + struct crypto_ablkcipher *cipher = crypto_ablkcipher_reqtfm(areq); + struct aes_ctx *ctx = crypto_ablkcipher_ctx(cipher); + + return lq_aes_queue_mgr(ctx, areq, areq->info, CRYPTO_DIR_ENCRYPT, 0); + +} +/* \fn static int ecb_aes_decrypt(struct ablkcipher_request *areq) + * \ingroup IFX_AES_FUNCTIONS + * \brief Decrypt function for AES algo + * \param *areq Pointer to ablkcipher request in memory + * \return 0 is success, -EINPROGRESS if encryting, EINVAL if failure +*/ +static int ecb_aes_decrypt(struct ablkcipher_request *areq) + +{ + struct crypto_ablkcipher *cipher = crypto_ablkcipher_reqtfm(areq); + struct aes_ctx *ctx = crypto_ablkcipher_ctx(cipher); + + return lq_aes_queue_mgr(ctx, areq, areq->info, CRYPTO_DIR_DECRYPT, 0); +} + +/* \fn static int cbc_aes_encrypt(struct ablkcipher_request *areq) + * \ingroup IFX_AES_FUNCTIONS + * \brief Encrypt function for AES algo + * \param *areq Pointer to ablkcipher request in memory + * \return 0 is success, -EINPROGRESS if encryting, EINVAL if failure +*/ + +static int cbc_aes_encrypt (struct ablkcipher_request *areq) +{ + struct crypto_ablkcipher *cipher = crypto_ablkcipher_reqtfm(areq); + struct aes_ctx *ctx = crypto_ablkcipher_ctx(cipher); + + return lq_aes_queue_mgr(ctx, areq, areq->info, CRYPTO_DIR_ENCRYPT, 1); + +} + +/* \fn static int cbc_aes_decrypt(struct ablkcipher_request *areq) + * \ingroup IFX_AES_FUNCTIONS + * \brief Decrypt function for AES algo + * \param *areq Pointer to ablkcipher request in memory + * \return 0 is success, -EINPROGRESS if encryting, EINVAL if failure +*/ + +static int cbc_aes_decrypt(struct ablkcipher_request *areq) +{ + struct crypto_ablkcipher *cipher = crypto_ablkcipher_reqtfm(areq); + struct aes_ctx *ctx = crypto_ablkcipher_ctx(cipher); + + return lq_aes_queue_mgr(ctx, areq, areq->info, CRYPTO_DIR_DECRYPT, 1); +} +#if 0 +static int ofb_aes_encrypt (struct ablkcipher_request *areq) +{ + struct crypto_ablkcipher *cipher = crypto_ablkcipher_reqtfm(areq); + struct aes_ctx *ctx = crypto_ablkcipher_ctx(cipher); + + return lq_aes_queue_mgr(ctx, areq, areq->info, CRYPTO_DIR_ENCRYPT, 2); + +} + +static int ofb_aes_decrypt(struct ablkcipher_request *areq) +{ + struct crypto_ablkcipher *cipher = crypto_ablkcipher_reqtfm(areq); + struct aes_ctx *ctx = crypto_ablkcipher_ctx(cipher); + + return lq_aes_queue_mgr(ctx, areq, areq->info, CRYPTO_DIR_DECRYPT, 2); +} + +static int cfb_aes_encrypt (struct ablkcipher_request *areq) +{ + struct crypto_ablkcipher *cipher = crypto_ablkcipher_reqtfm(areq); + struct aes_ctx *ctx = crypto_ablkcipher_ctx(cipher); + + return lq_aes_queue_mgr(ctx, areq, areq->info, CRYPTO_DIR_ENCRYPT, 3); + +} + +static int cfb_aes_decrypt(struct ablkcipher_request *areq) +{ + struct crypto_ablkcipher *cipher = crypto_ablkcipher_reqtfm(areq); + struct aes_ctx *ctx = crypto_ablkcipher_ctx(cipher); + + return lq_aes_queue_mgr(ctx, areq, areq->info, CRYPTO_DIR_DECRYPT, 3); +} +#endif + +/* \fn static int ctr_aes_encrypt(struct ablkcipher_request *areq) + * \ingroup IFX_AES_FUNCTIONS + * \brief Encrypt function for AES algo + * \param *areq Pointer to ablkcipher request in memory + * \return 0 is success, -EINPROGRESS if encryting, EINVAL if failure +*/ + +static int ctr_aes_encrypt (struct ablkcipher_request *areq) +{ + struct crypto_ablkcipher *cipher = crypto_ablkcipher_reqtfm(areq); + struct aes_ctx *ctx = crypto_ablkcipher_ctx(cipher); + + return lq_aes_queue_mgr(ctx, areq, areq->info, CRYPTO_DIR_ENCRYPT, 4); + +} + +/* \fn static int ctr_aes_decrypt(struct ablkcipher_request *areq) + * \ingroup IFX_AES_FUNCTIONS + * \brief Decrypt function for AES algo + * \param *areq Pointer to ablkcipher request in memory + * \return 0 is success, -EINPROGRESS if encryting, EINVAL if failure +*/ + +static int ctr_aes_decrypt(struct ablkcipher_request *areq) +{ + struct crypto_ablkcipher *cipher = crypto_ablkcipher_reqtfm(areq); + struct aes_ctx *ctx = crypto_ablkcipher_ctx(cipher); + + return lq_aes_queue_mgr(ctx, areq, areq->info, CRYPTO_DIR_DECRYPT, 4); +} + +/* \fn static int rfc3686_aes_encrypt(struct ablkcipher_request *areq) + * \ingroup IFX_AES_FUNCTIONS + * \brief Encrypt function for AES algo + * \param *areq Pointer to ablkcipher request in memory + * \return 0 is success, -EINPROGRESS if encryting, EINVAL if failure +*/ + +static int rfc3686_aes_encrypt(struct ablkcipher_request *areq) +{ + struct crypto_ablkcipher *cipher = crypto_ablkcipher_reqtfm(areq); + struct aes_ctx *ctx = crypto_ablkcipher_ctx(cipher); + int ret; + u8 *info = areq->info; + u8 rfc3686_iv[16]; + + memcpy(rfc3686_iv, ctx->nonce, CTR_RFC3686_NONCE_SIZE); + memcpy(rfc3686_iv + CTR_RFC3686_NONCE_SIZE, info, CTR_RFC3686_IV_SIZE); + + /* initialize counter portion of counter block */ + *(__be32 *)(rfc3686_iv + CTR_RFC3686_NONCE_SIZE + CTR_RFC3686_IV_SIZE) = + cpu_to_be32(1); + + areq->info = rfc3686_iv; + ret = lq_aes_queue_mgr(ctx, areq, areq->info, CRYPTO_DIR_ENCRYPT, 4); + areq->info = info; + return ret; +} + +/* \fn static int rfc3686_aes_decrypt(struct ablkcipher_request *areq) + * \ingroup IFX_AES_FUNCTIONS + * \brief Decrypt function for AES algo + * \param *areq Pointer to ablkcipher request in memory + * \return 0 is success, -EINPROGRESS if encryting, EINVAL if failure +*/ + +static int rfc3686_aes_decrypt(struct ablkcipher_request *areq) +{ + struct crypto_ablkcipher *cipher = crypto_ablkcipher_reqtfm(areq); + struct aes_ctx *ctx = crypto_ablkcipher_ctx(cipher); + int ret; + u8 *info = areq->info; + u8 rfc3686_iv[16]; + + /* set up counter block */ + memcpy(rfc3686_iv, ctx->nonce, CTR_RFC3686_NONCE_SIZE); + memcpy(rfc3686_iv + CTR_RFC3686_NONCE_SIZE, info, CTR_RFC3686_IV_SIZE); + + /* initialize counter portion of counter block */ + *(__be32 *)(rfc3686_iv + CTR_RFC3686_NONCE_SIZE + CTR_RFC3686_IV_SIZE) = + cpu_to_be32(1); + + areq->info = rfc3686_iv; + ret = lq_aes_queue_mgr(ctx, areq, areq->info, CRYPTO_DIR_DECRYPT, 4); + areq->info = info; + return ret; +} + +struct lq_aes_alg { + struct crypto_alg alg; +}; + +/* AES supported algo array */ +static struct lq_aes_alg aes_drivers_alg[] = { + { + .alg = { + .cra_name = "aes", + .cra_driver_name = "ifxdeu-aes", + .cra_flags = CRYPTO_ALG_TYPE_ABLKCIPHER | CRYPTO_ALG_ASYNC, + .cra_blocksize = AES_BLOCK_SIZE, + .cra_ctxsize = sizeof(struct aes_ctx), + .cra_type = &crypto_ablkcipher_type, + .cra_priority = 300, + .cra_module = THIS_MODULE, + .cra_ablkcipher = { + .setkey = aes_setkey, + .encrypt = aes_encrypt, + .decrypt = aes_decrypt, + .geniv = "eseqiv", + .min_keysize = AES_MIN_KEY_SIZE, + .max_keysize = AES_MAX_KEY_SIZE, + .ivsize = AES_BLOCK_SIZE, + } + } + },{ + .alg = { + .cra_name = "ecb(aes)", + .cra_driver_name = "ifxdeu-ecb(aes)", + .cra_flags = CRYPTO_ALG_TYPE_ABLKCIPHER | CRYPTO_ALG_ASYNC, + .cra_blocksize = AES_BLOCK_SIZE, + .cra_ctxsize = sizeof(struct aes_ctx), + .cra_type = &crypto_ablkcipher_type, + .cra_priority = 300, + .cra_module = THIS_MODULE, + .cra_ablkcipher = { + .setkey = aes_generic_setkey, + .encrypt = ecb_aes_encrypt, + .decrypt = ecb_aes_decrypt, + .geniv = "eseqiv", + .min_keysize = AES_MIN_KEY_SIZE, + .max_keysize = AES_MAX_KEY_SIZE, + .ivsize = AES_BLOCK_SIZE, + } + } + },{ + .alg = { + .cra_name = "cbc(aes)", + .cra_driver_name = "ifxdeu-cbc(aes)", + .cra_flags = CRYPTO_ALG_TYPE_ABLKCIPHER | CRYPTO_ALG_ASYNC, + .cra_blocksize = AES_BLOCK_SIZE, + .cra_ctxsize = sizeof(struct aes_ctx), + .cra_type = &crypto_ablkcipher_type, + .cra_priority = 300, + .cra_module = THIS_MODULE, + .cra_ablkcipher = { + .setkey = aes_generic_setkey, + .encrypt = cbc_aes_encrypt, + .decrypt = cbc_aes_decrypt, + .geniv = "eseqiv", + .min_keysize = AES_MIN_KEY_SIZE, + .max_keysize = AES_MAX_KEY_SIZE, + .ivsize = AES_BLOCK_SIZE, + } + } + },{ + .alg = { + .cra_name = "ctr(aes)", + .cra_driver_name = "ifxdeu-ctr(aes)", + .cra_flags = CRYPTO_ALG_TYPE_ABLKCIPHER | CRYPTO_ALG_ASYNC, + .cra_blocksize = AES_BLOCK_SIZE, + .cra_ctxsize = sizeof(struct aes_ctx), + .cra_type = &crypto_ablkcipher_type, + .cra_priority = 300, + .cra_module = THIS_MODULE, + .cra_ablkcipher = { + .setkey = aes_generic_setkey, + .encrypt = ctr_aes_encrypt, + .decrypt = ctr_aes_decrypt, + .geniv = "eseqiv", + .min_keysize = AES_MIN_KEY_SIZE, + .max_keysize = AES_MAX_KEY_SIZE, + .ivsize = AES_BLOCK_SIZE, + } + } + },{ + .alg = { + .cra_name = "rfc3686(ctr(aes))", + .cra_driver_name = "ifxdeu-rfc3686(ctr(aes))", + .cra_flags = CRYPTO_ALG_TYPE_ABLKCIPHER | CRYPTO_ALG_ASYNC, + .cra_blocksize = AES_BLOCK_SIZE, + .cra_ctxsize = sizeof(struct aes_ctx), + .cra_type = &crypto_ablkcipher_type, + .cra_priority = 300, + .cra_module = THIS_MODULE, + .cra_ablkcipher = { + .setkey = rfc3686_aes_setkey, + .encrypt = rfc3686_aes_encrypt, + .decrypt = rfc3686_aes_decrypt, + .geniv = "eseqiv", + .min_keysize = AES_MIN_KEY_SIZE, + .max_keysize = CTR_RFC3686_MAX_KEY_SIZE, + //.max_keysize = AES_MAX_KEY_SIZE, + //.ivsize = CTR_RFC3686_IV_SIZE, + .ivsize = AES_BLOCK_SIZE, // else cannot reg + } + } + } +}; + +/* \fn int __init lqdeu_async_aes_init (void) + * \ingroup IFX_AES_FUNCTIONS + * \brief Initializes the Async. AES driver + * \return 0 is success, -EINPROGRESS if encryting, EINVAL if failure +*/ + +int __init lqdeu_async_aes_init (void) +{ + int i, j, ret = -EINVAL; + +#define IFX_DEU_DRV_VERSION "2.0.0" + printk(KERN_INFO "Lantiq Technologies DEU Driver version %s\n", IFX_DEU_DRV_VERSION); + + for (i = 0; i < ARRAY_SIZE(aes_drivers_alg); i++) { + ret = crypto_register_alg(&aes_drivers_alg[i].alg); + printk("driver: %s\n", aes_drivers_alg[i].alg.cra_name); + if (ret) + goto aes_err; + } + + aes_chip_init(); + + CRTCL_SECT_INIT; + + + printk (KERN_NOTICE "Lantiq DEU AES initialized %s %s.\n", + disable_multiblock ? "" : " (multiblock)", disable_deudma ? "" : " (DMA)"); + + return ret; + +aes_err: + + for (j = 0; j < i; j++) + crypto_unregister_alg(&aes_drivers_alg[j].alg); + + printk(KERN_ERR "Lantiq %s driver initialization failed!\n", (char *)&aes_drivers_alg[i].alg.cra_driver_name); + return ret; + +ctr_rfc3686_aes_err: + for (i = 0; i < ARRAY_SIZE(aes_drivers_alg); i++) { + if (!strcmp((char *)&aes_drivers_alg[i].alg.cra_name, "rfc3686(ctr(aes))")) + crypto_unregister_alg(&aes_drivers_alg[j].alg); + } + printk (KERN_ERR "Lantiq ctr_rfc3686_aes initialization failed!\n"); + return ret; +} + +/*! \fn void __exit ifxdeu_fini_aes (void) + * \ingroup IFX_AES_FUNCTIONS + * \brief unregister aes driver +*/ +void __exit lqdeu_fini_async_aes (void) +{ + int i; + + for (i = 0; i < ARRAY_SIZE(aes_drivers_alg); i++) + crypto_unregister_alg(&aes_drivers_alg[i].alg); + + aes_queue->hw_status = AES_COMPLETED; + + DEU_WAKEUP_EVENT(deu_dma_priv.deu_thread_wait, AES_ASYNC_EVENT, + deu_dma_priv.aes_event_flags); + + kfree(aes_queue); + +} diff --git a/package/kernel/lantiq/ltq-deu/src/ifxmips_async_des.c b/package/kernel/lantiq/ltq-deu/src/ifxmips_async_des.c new file mode 100644 index 0000000..9c593ae --- /dev/null +++ b/package/kernel/lantiq/ltq-deu/src/ifxmips_async_des.c @@ -0,0 +1,954 @@ +/****************************************************************************** +** +** FILE NAME : ifxmips_async_des.c +** PROJECT : IFX UEIP +** MODULES : DEU Module +** +** DATE : October 11, 2010 +** AUTHOR : Mohammad Firdaus +** DESCRIPTION : Data Encryption Unit Driver for DES Algorithm +** COPYRIGHT : Copyright (c) 2010 +** Infineon Technologies AG +** Am Campeon 1-12, 85579 Neubiberg, Germany +** +** This program is free software; you can redistribute it and/or modify +** it under the terms of the GNU General Public License as published by +** the Free Software Foundation; either version 2 of the License, or +** (at your option) any later version. +** +** HISTORY +** $Date $Author $Comment +** 08,Sept 2009 Mohammad Firdaus Initial UEIP release +** 11, Oct 2010 Mohammad Firdaus Kernel Port incl. Async. Ablkcipher mode +** 21,March 2011 Mohammad Firdaus Changes for Kernel 2.6.32 and IPSec integration +*******************************************************************************/ +/*! + \defgroup IFX_DEU IFX_DEU_DRIVERS + \ingroup API + \brief ifx DEU driver module +*/ + +/*! + \file ifxmips_async_des.c + \ingroup IFX_DEU + \brief DES Encryption Driver main file +*/ + +/*! + \defgroup IFX_DES_FUNCTIONS IFX_DES_FUNCTIONS + \ingroup IFX_DEU + \brief IFX DES driver Functions +*/ + +#include <linux/wait.h> +#include <linux/crypto.h> +#include <linux/kernel.h> +#include <linux/interrupt.h> +#include <linux/spinlock.h> +#include <linux/list.h> +#include <crypto/ctr.h> +#include <crypto/aes.h> +#include <crypto/algapi.h> +#include <crypto/scatterwalk.h> + +#include <asm/ifx/ifx_regs.h> +#include <asm/ifx/ifx_types.h> +#include <asm/ifx/common_routines.h> +#include <asm/ifx/irq.h> +#include <asm/ifx/ifx_pmu.h> +#include <asm/ifx/ifx_gpio.h> +#include <asm/kmap_types.h> + +#include "ifxmips_deu.h" + +#if defined(CONFIG_DANUBE) +#include "ifxmips_deu_danube.h" +extern int ifx_danube_pre_1_4; +#elif defined(CONFIG_AR9) +#include "ifxmips_deu_ar9.h" +#elif defined(CONFIG_VR9) || defined(CONFIG_AR10) +#include "ifxmips_deu_vr9.h" +#else +#error "Unkown platform" +#endif + +/* DMA specific header and variables */ + +spinlock_t des_lock; +#define CRTCL_SECT_INIT spin_lock_init(&des_lock) +#define CRTCL_SECT_START spin_lock_irqsave(&des_lock, flag) +#define CRTCL_SECT_END spin_unlock_irqrestore(&des_lock, flag) + +/* Preprocessor declerations */ +#ifdef CRYPTO_DEBUG +extern char debug_level; +#define DPRINTF(level, format, args...) if (level < debug_level) printk(KERN_INFO "[%s %s %d]: " format, __FILE__, __func__, __LINE__, ##args); +#else +#define DPRINTF(level, format, args...) +#endif +//#define DES_3DES_START IFX_DES_CON +#define DES_KEY_SIZE 8 +#define DES_EXPKEY_WORDS 32 +#define DES_BLOCK_SIZE 8 +#define DES3_EDE_KEY_SIZE (3 * DES_KEY_SIZE) +#define DES3_EDE_EXPKEY_WORDS (3 * DES_EXPKEY_WORDS) +#define DES3_EDE_BLOCK_SIZE DES_BLOCK_SIZE + +/* Function Declaration to prevent warning messages */ +void des_chip_init (void); +u32 endian_swap(u32 input); +u32 input_swap(u32 input); +int aes_memory_allocate(int value); +int des_memory_allocate(int value); +void memory_release(u32 *buffer); +u32* memory_alignment(const u8 *arg, u32 *buff_alloc, int in_out, int nbytes); +void aes_dma_memory_copy(u32 *outcopy, u32 *out_dma, u8 *out_arg, int nbytes); +void des_dma_memory_copy(u32 *outcopy, u32 *out_dma, u8 *out_arg, int nbytes); + +static int lq_deu_des_core (void *ctx_arg, u8 *out_arg, const u8 *in_arg, + u8 *iv_arg, u32 nbytes, int encdec, int mode); + +struct des_ctx { + int controlr_M; + int key_length; + u8 iv[DES_BLOCK_SIZE]; + u32 expkey[DES3_EDE_EXPKEY_WORDS]; +}; + + +static int disable_multiblock = 0; +#if LINUX_VERSION_CODE >= KERNEL_VERSION(2,4,0) +module_param(disable_multiblock, int, 0); +#else +MODULE_PARM_DESC(disable_multiblock, "Disable encryption of whole multiblock buffers"); +#endif + +static int disable_deudma = 1; + +struct des_container { + u8 *iv; + u8 *dst_buf; + u8 *src_buf; + int mode; + int encdec; + int complete; + int flag; + + u32 bytes_processed; + u32 nbytes; + + struct ablkcipher_request arequest; +}; + +des_priv_t *des_queue; +extern deu_drv_priv_t deu_dma_priv; + +void hexdump1(unsigned char *buf, unsigned int len) +{ + print_hex_dump(KERN_CONT, "", DUMP_PREFIX_OFFSET, + 16, 1, + buf, len, false); +} + + +/*! \fn int lq_des_setkey(struct crypto_ablkcipher *tfm, const u8 *key, unsigned int keylen) + * \ingroup IFX_DES_FUNCTIONS + * \brief sets DES key + * \param tfm linux crypto algo transform + * \param key input key + * \param keylen key length +*/ +static int lq_des_setkey(struct crypto_ablkcipher *tfm, const u8 *key, + unsigned int keylen) +{ + struct des_ctx *dctx = crypto_ablkcipher_ctx(tfm); + + //printk("setkey in %s\n", __FILE__); + + dctx->controlr_M = 0; // des + dctx->key_length = keylen; + + memcpy ((u8 *) (dctx->expkey), key, keylen); + + return 0; +} + +/*! \fn int lq_des3_ede_setkey(struct crypto_ablkcipher *tfm, const u8 *key, unsigned int keylen) + * \ingroup IFX_DES_FUNCTIONS + * \brief sets DES key + * \param tfm linux crypto algo transform + * \param key input key + * \param keylen key length +*/ + +static int lq_des3_ede_setkey(struct crypto_ablkcipher *tfm, const u8 *in_key, + unsigned int keylen) +{ + struct des_ctx *dctx = crypto_ablkcipher_ctx(tfm); + + //printk("setkey in %s\n", __FILE__); + + dctx->controlr_M = keylen/8 + 1; // des + dctx->key_length = keylen; + + memcpy ((u8 *) (dctx->expkey), in_key, keylen); + + return 0; +} + +/*! \fn void ifx_deu_des_core(void *ctx_arg, u8 *out_arg, const u8 *in_arg, u8 *iv_arg, u32 nbytes, int encdec, int mode) + * \ingroup IFX_DES_FUNCTIONS + * \brief main interface to DES hardware + * \param ctx_arg crypto algo context + * \param out_arg output bytestream + * \param in_arg input bytestream + * \param iv_arg initialization vector + * \param nbytes length of bytestream + * \param encdec 1 for encrypt; 0 for decrypt + * \param mode operation mode such as ebc, cbc +*/ + +static int lq_deu_des_core (void *ctx_arg, u8 *out_arg, const u8 *in_arg, + u8 *iv_arg, u32 nbytes, int encdec, int mode) +{ + volatile struct des_t *des = (struct des_t *) DES_3DES_START; + struct des_ctx *dctx = ctx_arg; + u32 *key = dctx->expkey; + unsigned long flag; + + int i = 0; + int nblocks = 0; + + CRTCL_SECT_START; + + des->controlr.M = dctx->controlr_M; + if (dctx->controlr_M == 0) // des + { + des->K1HR = DEU_ENDIAN_SWAP(*((u32 *) key + 0)); + des->K1LR = DEU_ENDIAN_SWAP(*((u32 *) key + 1)); + + } + else { + /* Hardware Section */ + switch (dctx->key_length) { + case 24: + des->K3HR = DEU_ENDIAN_SWAP(*((u32 *) key + 4)); + des->K3LR = DEU_ENDIAN_SWAP(*((u32 *) key + 5)); + /* no break; */ + + case 16: + des->K2HR = DEU_ENDIAN_SWAP(*((u32 *) key + 2)); + des->K2LR = DEU_ENDIAN_SWAP(*((u32 *) key + 3)); + + /* no break; */ + case 8: + des->K1HR = DEU_ENDIAN_SWAP(*((u32 *) key + 0)); + des->K1LR = DEU_ENDIAN_SWAP(*((u32 *) key + 1)); + break; + + default: + CRTCL_SECT_END; + return -EINVAL; + } + } + + des->controlr.E_D = !encdec; //encryption + des->controlr.O = mode; //0 ECB 1 CBC 2 OFB 3 CFB 4 CTR hexdump(prin,sizeof(*des)); + + if (mode > 0) { + des->IVHR = DEU_ENDIAN_SWAP(*(u32 *) iv_arg); + des->IVLR = DEU_ENDIAN_SWAP(*((u32 *) iv_arg + 1)); + }; + + /* memory alignment issue */ + dword_mem_aligned_in = (u32 *) DEU_DWORD_REORDERING(in_arg, des_buff_in, BUFFER_IN, nbytes); + + deu_priv->deu_rx_buf = (u32 *) out_arg; + deu_priv->deu_rx_len = nbytes; + + dma->controlr.ALGO = 0; //DES + des->controlr.DAU = 0; + dma->controlr.BS = 0; + dma->controlr.EN = 1; + + while (des->controlr.BUS) { + }; + + wlen = dma_device_write (dma_device, (u8 *) dword_mem_aligned_in, nbytes, NULL); + if (wlen != nbytes) { + dma->controlr.EN = 0; + CRTCL_SECT_END; + printk (KERN_ERR "[%s %s %d]: dma_device_write fail!\n", __FILE__, __func__, __LINE__); + return -EINVAL; + } + + + /* Prepare Rx buf length used in dma psuedo interrupt */ + outcopy = (u32 *) DEU_DWORD_REORDERING(out_arg, des_buff_out, BUFFER_OUT, nbytes); + deu_priv->outcopy = outcopy; + deu_priv->event_src = DES_ASYNC_EVENT; + + if (mode > 0) { + *(u32 *) iv_arg = DEU_ENDIAN_SWAP(des->IVHR); + *((u32 *) iv_arg + 1) = DEU_ENDIAN_SWAP(des->IVLR); + }; + + CRTCL_SECT_END; + + return -EINPROGRESS; + +} + +static int count_sgs(struct scatterlist *sl, unsigned int total_bytes) +{ + int i = 0; + + do { + total_bytes -= sl[i].length; + i++; + + } while (total_bytes > 0); + + return i; +} + +/* \fn static inline struct des_container *des_container_cast ( + * struct scatterlist *dst) + * \ingroup IFX_DES_FUNCTIONS + * \brief Locate the structure des_container in memory. + * \param *areq Pointer to memory location where ablkcipher_request is located + * \return *des_cointainer The function pointer to des_container +*/ + +static inline struct des_container *des_container_cast( + struct ablkcipher_request *areq) +{ + return container_of(areq, struct des_container, arequest); +} + +/* \fn static void lq_sg_complete(struct des_container *des_con) + * \ingroup IFX_DES_FUNCTIONS + * \brief Free the used up memory after encryt/decrypt. +*/ + +static void lq_sg_complete(struct des_container *des_con) +{ + unsigned long queue_flag; + + spin_lock_irqsave(&des_queue->lock, queue_flag); + kfree(des_con); + spin_unlock_irqrestore(&des_queue->lock, queue_flag); +} + +/* \fn void lq_sg_init(struct scatterlist *src, + * struct scatterlist *dst) + * \ingroup IFX_DES_FUNCTIONS + * \brief Maps the scatterlists into a source/destination page. + * \param *src Pointer to the source scatterlist + * \param *dst Pointer to the destination scatterlist +*/ + +static void lq_sg_init(struct des_container *des_con, struct scatterlist *src, + struct scatterlist *dst) +{ + struct page *dst_page, *src_page; + + src_page = sg_virt(src); + des_con->src_buf = (char *) src_page; + + dst_page = sg_virt(dst); + des_con->dst_buf = (char *) dst_page; +} + +/* \fn static int process_next_packet(struct des_container *des_con, struct ablkcipher_request *areq, + * int state) + * \ingroup IFX_DES_FUNCTIONS + * \brief Process the next packet after dequeuing the packet from crypto queue + * \param *des_con Pointer to DES container structure + * \param *areq Pointer to ablkcipher_request container + * \param state State of the packet (scattered packet or new packet to be processed) + * \return -EINVAL: DEU failure, -EINPROGRESS: DEU encrypt/decrypt in progress, 1: no scatterlist left +*/ + +static int process_next_packet(struct des_container *des_con, struct ablkcipher_request *areq, + int state) +{ + u8 *iv; + int mode, encdec, err = -EINVAL; + u32 remain, inc, chunk_size, nbytes; + struct scatterlist *src = NULL; + struct scatterlist *dst = NULL; + struct crypto_ablkcipher *cipher; + struct des_ctx *ctx; + unsigned long queue_flag; + + spin_lock_irqsave(&des_queue->lock, queue_flag); + + mode = des_con->mode; + encdec = des_con->encdec; + iv = des_con->iv; + + if (state & PROCESS_SCATTER) { + src = scatterwalk_sg_next(areq->src); + dst = scatterwalk_sg_next(areq->dst); + + if (!src || !dst) { + spin_unlock_irqrestore(&des_queue->lock, queue_flag); + return 1; + } + } + else if (state & PROCESS_NEW_PACKET) { + src = areq->src; + dst = areq->dst; + } + + remain = des_con->bytes_processed; + chunk_size = src->length; + + //printk("debug ln: %d, func: %s, reqsize: %d, scattersize: %d\n", +// __LINE__, __func__, areq->nbytes, chunk_size); + + if (remain > DEU_MAX_PACKET_SIZE) + inc = DEU_MAX_PACKET_SIZE; + else if(remain > chunk_size) + inc = chunk_size; + else + inc = remain; + + remain -= inc; + des_con->nbytes = inc; + + if (state & PROCESS_SCATTER) { + des_con->src_buf += des_con->nbytes; + des_con->dst_buf += des_con->nbytes; + } + + lq_sg_init(des_con, src, dst); + + nbytes = des_con->nbytes; + + cipher = crypto_ablkcipher_reqtfm(areq); + ctx = crypto_ablkcipher_ctx(cipher); + + if (des_queue->hw_status == DES_IDLE) { + des_queue->hw_status = DES_STARTED; + } + + des_con->bytes_processed -= des_con->nbytes; + err = ablkcipher_enqueue_request(&des_queue->list, &des_con->arequest); + if (err == -EBUSY) { + printk("Failed to enqueue request, ln: %d, err: %d\n", + __LINE__, err); + spin_unlock_irqrestore(&des_queue->lock, queue_flag); + return -EINVAL; + } + + spin_unlock_irqrestore(&des_queue->lock, queue_flag); + err = lq_deu_des_core(ctx, des_con->dst_buf, des_con->src_buf, iv, nbytes, encdec, mode); + + return err; +} + +/* \fn static void process_queue(unsigned long data) + * \ingroup IFX_DES_FUNCTIONS + * \brief Process next packet in queue + * \param data not used + * \return +*/ + +static void process_queue(unsigned long data) +{ + DEU_WAKEUP_EVENT(deu_dma_priv.deu_thread_wait, DES_ASYNC_EVENT, + deu_dma_priv.des_event_flags); + +} + +/* \fn static int des_crypto_thread (void *data) + * \ingroup IFX_DES_FUNCTIONS + * \brief DES thread that handles crypto requests from upper layer & DMA + * \param *data Not used + * \return -EINVAL: DEU failure, -EBUSY: DEU HW busy, 0: exit thread +*/ + +static int des_crypto_thread(void *data) +{ + struct des_container *des_con = NULL; + struct ablkcipher_request *areq = NULL; + int err; + unsigned long queue_flag; + + daemonize("lq_des_thread"); + + while (1) + { + DEU_WAIT_EVENT(deu_dma_priv.deu_thread_wait, DES_ASYNC_EVENT, + deu_dma_priv.des_event_flags); + spin_lock_irqsave(&des_queue->lock, queue_flag); + + /* wait to prevent starting a crypto session before + * exiting the dma interrupt thread. + */ + + if (des_queue->hw_status == DES_STARTED) { + areq = ablkcipher_dequeue_request(&des_queue->list); + des_con = des_container_cast(areq); + des_queue->hw_status = DES_BUSY; + } + else if (des_queue->hw_status == DES_IDLE) { + areq = ablkcipher_dequeue_request(&des_queue->list); + des_con = des_container_cast(areq); + des_queue->hw_status = DES_STARTED; + } + else if (des_queue->hw_status == DES_BUSY) { + areq = ablkcipher_dequeue_request(&des_queue->list); + des_con = des_container_cast(areq); + } + else if (des_queue->hw_status == DES_COMPLETED) { + areq->base.complete(&areq->base, 0); + lq_sg_complete(des_con); + des_queue->hw_status = DES_IDLE; + spin_unlock_irqrestore(&des_queue->lock, queue_flag); + return 0; + } + spin_unlock_irqrestore(&des_queue->lock, queue_flag); + + if ((des_con->bytes_processed == 0)) { + goto des_done; + } + + if (!des_con) { + goto des_done; + } + + if (des_con->flag & PROCESS_NEW_PACKET) { + des_con->flag = PROCESS_SCATTER; + err = process_next_packet(des_con, areq, PROCESS_NEW_PACKET); + } + else + err = process_next_packet(des_con, areq, PROCESS_SCATTER); + + if (err == -EINVAL) { + areq->base.complete(&areq->base, err); + lq_sg_complete(des_con); + printk("src/dst returned -EINVAL in func: %s\n", __func__); + } + else if (err > 0) { + printk("src/dst returned zero in func: %s\n", __func__); + goto des_done; + } + + continue; + +des_done: + //printk("debug line - %d, func: %s, qlen: %d\n", __LINE__, __func__, des_queue->list.qlen); + areq->base.complete(&areq->base, 0); + lq_sg_complete(des_con); + + spin_lock_irqsave(&des_queue->lock, queue_flag); + if (des_queue->list.qlen > 0) { + spin_unlock_irqrestore(&des_queue->lock, queue_flag); + tasklet_schedule(&des_queue->des_task); + } + else { + des_queue->hw_status = DES_IDLE; + spin_unlock_irqrestore(&des_queue->lock, queue_flag); + } + } // while(1) + + return 0; + +} + +/* \fn static int lq_des_queue_mgr(struct des_ctx *ctx, struct ablkcipher_request *areq, + u8 *iv, int encdec, int mode) + * \ingroup IFX_DES_FUNCTIONS + * \brief starts the process of queuing DEU requests + * \param *ctx crypto algo contax + * \param *areq Pointer to the balkcipher requests + * \param *iv Pointer to intput vector location + * \param dir Encrypt/Decrypt + * \mode The mode DES algo is running + * \return 0 if success +*/ + +static int lq_queue_mgr(struct des_ctx *ctx, struct ablkcipher_request *areq, + u8 *iv, int encdec, int mode) +{ + int err = -EINVAL; + unsigned long queue_flag; + struct scatterlist *src = areq->src; + struct scatterlist *dst = areq->dst; + struct des_container *des_con = NULL; + u32 remain, inc, nbytes = areq->nbytes; + u32 chunk_bytes = src->length; + + des_con = (struct des_container *)kmalloc(sizeof(struct des_container), + GFP_KERNEL); + + if (!(des_con)) { + printk("Cannot allocate memory for AES container, fn %s, ln %d\n", + __func__, __LINE__); + return -ENOMEM; + } + + /* DES encrypt/decrypt mode */ + if (mode == 5) { + nbytes = DES_BLOCK_SIZE; + chunk_bytes = DES_BLOCK_SIZE; + mode = 0; + } + + des_con->bytes_processed = nbytes; + des_con->arequest = (*areq); + remain = nbytes; + + //printk("debug - Line: %d, func: %s, reqsize: %d, scattersize: %d\n", + // __LINE__, __func__, nbytes, chunk_bytes); + + if (remain > DEU_MAX_PACKET_SIZE) + inc = DEU_MAX_PACKET_SIZE; + else if(remain > chunk_bytes) + inc = chunk_bytes; + else + inc = remain; + + remain -= inc; + lq_sg_init(des_con, src, dst); + + if (remain <= 0 ) { + des_con->complete = 1; + } + else + des_con->complete = 0; + + des_con->nbytes = inc; + des_con->iv = iv; + des_con->mode = mode; + des_con->encdec = encdec; + + spin_lock_irqsave(&des_queue->lock, queue_flag); + + if (des_queue->hw_status == DES_STARTED || des_queue->hw_status == DES_BUSY || + des_queue->list.qlen > 0) { + + des_con->flag = PROCESS_NEW_PACKET; + err = ablkcipher_enqueue_request(&des_queue->list, &des_con->arequest); + if (err == -EBUSY) { + spin_unlock_irqrestore(&des_queue->lock, queue_flag); + printk("Fail to enqueue ablkcipher request ln: %d, err: %d\n", + __LINE__, err); + return err; + } + + spin_unlock_irqrestore(&des_queue->lock, queue_flag); + return -EINPROGRESS; + + } + else if (des_queue->hw_status == DES_IDLE) { + des_queue->hw_status = DES_STARTED; + } + + des_con->flag = PROCESS_SCATTER; + des_con->bytes_processed -= des_con->nbytes; + + err = ablkcipher_enqueue_request(&des_queue->list, &des_con->arequest); + if (err == -EBUSY) { + printk("Fail to enqueue ablkcipher request ln: %d, err: %d\n", + __LINE__, err); + + spin_unlock_irqrestore(&des_queue->lock, queue_flag); + return err; + } + + spin_unlock_irqrestore(&des_queue->lock, queue_flag); + return lq_deu_des_core(ctx, des_con->dst_buf, des_con->src_buf, iv, inc, encdec, mode); + +} + +/* \fn static int lq_des_encrypt(struct ablkcipher_request *areq) + * \ingroup IFX_DES_FUNCTIONS + * \brief Decrypt function for DES algo + * \param *areq Pointer to ablkcipher request in memory + * \return 0 is success, -EINPROGRESS if encryting, EINVAL if failure +*/ + +static int lq_des_encrypt(struct ablkcipher_request *areq) +{ + struct crypto_ablkcipher *cipher = crypto_ablkcipher_reqtfm(areq); + struct des_ctx *ctx = crypto_ablkcipher_ctx(cipher); + + return lq_queue_mgr(ctx, areq, NULL, CRYPTO_DIR_ENCRYPT, 5); + +} + +/* \fn static int lq_des_decrypt(struct ablkcipher_request *areq) + * \ingroup IFX_DES_FUNCTIONS + * \brief Decrypt function for DES algo + * \param *areq Pointer to ablkcipher request in memory + * \return 0 is success, -EINPROGRESS if encryting, EINVAL if failure +*/ + +static int lq_des_decrypt(struct ablkcipher_request *areq) +{ + struct crypto_ablkcipher *cipher = crypto_ablkcipher_reqtfm(areq); + struct des_ctx *ctx = crypto_ablkcipher_ctx(cipher); + + return lq_queue_mgr(ctx, areq, NULL, CRYPTO_DIR_DECRYPT, 5); +} + +/* \fn static int lq_ecb_des_encrypt(struct ablkcipher_request *areq) + * \ingroup IFX_DES_FUNCTIONS + * \brief Decrypt function for DES algo + * \param *areq Pointer to ablkcipher request in memory + * \return 0 is success, -EINPROGRESS if encryting, EINVAL if failure +*/ + +static int lq_ecb_des_encrypt(struct ablkcipher_request *areq) +{ + struct crypto_ablkcipher *cipher = crypto_ablkcipher_reqtfm(areq); + struct des_ctx *ctx = crypto_ablkcipher_ctx(cipher); + + return lq_queue_mgr(ctx, areq, areq->info, CRYPTO_DIR_ENCRYPT, 0); +} + +/* \fn static int lq_ecb_des_decrypt(struct ablkcipher_request *areq) + * \ingroup IFX_DES_FUNCTIONS + * \brief Decrypt function for DES algo + * \param *areq Pointer to ablkcipher request in memory + * \return 0 is success, -EINPROGRESS if encryting, EINVAL if failure +*/ +static int lq_ecb_des_decrypt(struct ablkcipher_request *areq) +{ + struct crypto_ablkcipher *cipher = crypto_ablkcipher_reqtfm(areq); + struct des_ctx *ctx = crypto_ablkcipher_ctx(cipher); + + return lq_queue_mgr(ctx, areq, areq->info, CRYPTO_DIR_DECRYPT, 0); + +} + +/* \fn static int lq_cbc_ecb_des_encrypt(struct ablkcipher_request *areq) + * \ingroup IFX_DES_FUNCTIONS + * \brief Decrypt function for DES algo + * \param *areq Pointer to ablkcipher request in memory + * \return 0 is success, -EINPROGRESS if encryting, EINVAL if failure +*/ + +static int lq_cbc_des_encrypt(struct ablkcipher_request *areq) +{ + struct crypto_ablkcipher *cipher = crypto_ablkcipher_reqtfm(areq); + struct des_ctx *ctx = crypto_ablkcipher_ctx(cipher); + + return lq_queue_mgr(ctx, areq, areq->info, CRYPTO_DIR_ENCRYPT, 1); +} +/* \fn static int lq_cbc_des_decrypt(struct ablkcipher_request *areq) + * \ingroup IFX_DES_FUNCTIONS + * \brief Decrypt function for DES algo + * \param *areq Pointer to ablkcipher request in memory + * \return 0 is success, -EINPROGRESS if encryting, EINVAL if failure +*/ + +static int lq_cbc_des_decrypt(struct ablkcipher_request *areq) +{ + struct crypto_ablkcipher *cipher = crypto_ablkcipher_reqtfm(areq); + struct des_ctx *ctx = crypto_ablkcipher_ctx(cipher); + + return lq_queue_mgr(ctx, areq, areq->info, CRYPTO_DIR_DECRYPT, 1); +} + +struct lq_des_alg { + struct crypto_alg alg; +}; + +/* DES Supported algo array */ +static struct lq_des_alg des_drivers_alg [] = { + { + .alg = { + .cra_name = "des", + .cra_driver_name = "lqdeu-des", + .cra_flags = CRYPTO_ALG_TYPE_ABLKCIPHER | CRYPTO_ALG_ASYNC, + .cra_blocksize = DES_BLOCK_SIZE, + .cra_ctxsize = sizeof(struct des_ctx), + .cra_type = &crypto_ablkcipher_type, + .cra_priority = 300, + .cra_module = THIS_MODULE, + .cra_ablkcipher = { + .setkey = lq_des_setkey, + .encrypt = lq_des_encrypt, + .decrypt = lq_des_decrypt, + .geniv = "eseqiv", + .min_keysize = DES_KEY_SIZE, + .max_keysize = DES_KEY_SIZE, + .ivsize = DES_BLOCK_SIZE, + } + } + + },{ + .alg = { + .cra_name = "ecb(des)", + .cra_driver_name = "lqdeu-ecb(des)", + .cra_flags = CRYPTO_ALG_TYPE_ABLKCIPHER | CRYPTO_ALG_ASYNC, + .cra_blocksize = DES_BLOCK_SIZE, + .cra_ctxsize = sizeof(struct des_ctx), + .cra_type = &crypto_ablkcipher_type, + .cra_priority = 300, + .cra_module = THIS_MODULE, + .cra_ablkcipher = { + .setkey = lq_des_setkey, + .encrypt = lq_ecb_des_encrypt, + .decrypt = lq_ecb_des_decrypt, + .geniv = "eseqiv", + .min_keysize = DES_KEY_SIZE, + .max_keysize = DES_KEY_SIZE, + .ivsize = DES_BLOCK_SIZE, + } + } + },{ + .alg = { + .cra_name = "cbc(des)", + .cra_driver_name = "lqdeu-cbc(des)", + .cra_flags = CRYPTO_ALG_TYPE_ABLKCIPHER | CRYPTO_ALG_ASYNC, + .cra_blocksize = DES_BLOCK_SIZE, + .cra_ctxsize = sizeof(struct des_ctx), + .cra_type = &crypto_ablkcipher_type, + .cra_priority = 300, + .cra_module = THIS_MODULE, + .cra_ablkcipher = { + .setkey = lq_des_setkey, + .encrypt = lq_cbc_des_encrypt, + .decrypt = lq_cbc_des_decrypt, + .geniv = "eseqiv", + .min_keysize = DES3_EDE_KEY_SIZE, + .max_keysize = DES3_EDE_KEY_SIZE, + .ivsize = DES3_EDE_BLOCK_SIZE, + } + } + },{ + .alg = { + .cra_name = "des3_ede", + .cra_driver_name = "lqdeu-des3_ede", + .cra_flags = CRYPTO_ALG_TYPE_ABLKCIPHER | CRYPTO_ALG_ASYNC, + .cra_blocksize = DES_BLOCK_SIZE, + .cra_ctxsize = sizeof(struct des_ctx), + .cra_type = &crypto_ablkcipher_type, + .cra_priority = 300, + .cra_module = THIS_MODULE, + .cra_ablkcipher = { + .setkey = lq_des3_ede_setkey, + .encrypt = lq_des_encrypt, + .decrypt = lq_des_decrypt, + .geniv = "eseqiv", + .min_keysize = DES_KEY_SIZE, + .max_keysize = DES_KEY_SIZE, + .ivsize = DES_BLOCK_SIZE, + } + } + },{ + .alg = { + .cra_name = "ecb(des3_ede)", + .cra_driver_name = "lqdeu-ecb(des3_ede)", + .cra_flags = CRYPTO_ALG_TYPE_ABLKCIPHER | CRYPTO_ALG_ASYNC, + .cra_blocksize = DES_BLOCK_SIZE, + .cra_ctxsize = sizeof(struct des_ctx), + .cra_type = &crypto_ablkcipher_type, + .cra_priority = 300, + .cra_module = THIS_MODULE, + .cra_ablkcipher = { + .setkey = lq_des3_ede_setkey, + .encrypt = lq_ecb_des_encrypt, + .decrypt = lq_ecb_des_decrypt, + .geniv = "eseqiv", + .min_keysize = DES3_EDE_KEY_SIZE, + .max_keysize = DES3_EDE_KEY_SIZE, + .ivsize = DES3_EDE_BLOCK_SIZE, + } + } + },{ + .alg = { + .cra_name = "cbc(des3_ede)", + .cra_driver_name = "lqdeu-cbc(des3_ede)", + .cra_flags = CRYPTO_ALG_TYPE_ABLKCIPHER | CRYPTO_ALG_ASYNC, + .cra_blocksize = DES_BLOCK_SIZE, + .cra_ctxsize = sizeof(struct des_ctx), + .cra_type = &crypto_ablkcipher_type, + .cra_priority = 300, + .cra_module = THIS_MODULE, + .cra_ablkcipher = { + .setkey = lq_des3_ede_setkey, + .encrypt = lq_cbc_des_encrypt, + .decrypt = lq_cbc_des_decrypt, + .geniv = "eseqiv", + .min_keysize = DES3_EDE_KEY_SIZE, + .max_keysize = DES3_EDE_KEY_SIZE, + .ivsize = DES3_EDE_BLOCK_SIZE, + } + } + } +}; + +/*! \fn int __init lqdeu_async_des_init (void) + * \ingroup IFX_DES_FUNCTIONS + * \brief initialize des driver +*/ +int __init lqdeu_async_des_init (void) +{ + int i, j, ret = -EINVAL; + +#if (LINUX_VERSION_CODE < KERNEL_VERSION(2,6,20)) + if (!disable_multiblock) { + ifxdeu_des_alg.cra_u.cipher.cia_max_nbytes = DES_BLOCK_SIZE; //(size_t)-1; + ifxdeu_des_alg.cra_u.cipher.cia_req_align = 16; + ifxdeu_des_alg.cra_u.cipher.cia_ecb = ifx_deu_des_ecb; + ifxdeu_des_alg.cra_u.cipher.cia_cbc = ifx_deu_des_cbc; + ifxdeu_des_alg.cra_u.cipher.cia_cfb = ifx_deu_des_cfb; + ifxdeu_des_alg.cra_u.cipher.cia_ofb = ifx_deu_des_ofb; + } +#endif + for (i = 0; i < ARRAY_SIZE(des_drivers_alg); i++) { + ret = crypto_register_alg(&des_drivers_alg[i].alg); + //printk("driver: %s\n", des_drivers_alg[i].alg.cra_name); + if (ret) + goto des_err; + } + + des_chip_init(); + CRTCL_SECT_INIT; + + + printk (KERN_NOTICE "IFX DEU DES initialized%s%s.\n", disable_multiblock ? "" : " (multiblock)", disable_deudma ? "" : " (DMA)"); + return ret; + +des_err: + for (j = 0; j < i; j++) + crypto_unregister_alg(&des_drivers_alg[i].alg); + + printk(KERN_ERR "Lantiq %s driver initialization failed!\n", (char *)&des_drivers_alg[i].alg.cra_driver_name); + return ret; + +cbc_des3_ede_err: + for (i = 0; i < ARRAY_SIZE(des_drivers_alg); i++) { + if (!strcmp((char *)&des_drivers_alg[i].alg.cra_name, "cbc(des3_ede)")) + crypto_unregister_alg(&des_drivers_alg[i].alg); + } + + printk(KERN_ERR "Lantiq %s driver initialization failed!\n", (char *)&des_drivers_alg[i].alg.cra_driver_name); + return ret; +} + +/*! \fn void __exit lqdeu_fini_async_des (void) + * \ingroup IFX_DES_FUNCTIONS + * \brief unregister des driver +*/ +void __exit lqdeu_fini_async_des (void) +{ + int i; + + for (i = 0; i < ARRAY_SIZE(des_drivers_alg); i++) + crypto_unregister_alg(&des_drivers_alg[i].alg); + + des_queue->hw_status = DES_COMPLETED; + DEU_WAKEUP_EVENT(deu_dma_priv.deu_thread_wait, DES_ASYNC_EVENT, + deu_dma_priv.des_event_flags); + + kfree(des_queue); +} + diff --git a/package/kernel/lantiq/ltq-deu/src/ifxmips_des.c b/package/kernel/lantiq/ltq-deu/src/ifxmips_des.c new file mode 100644 index 0000000..dcf6c18 --- /dev/null +++ b/package/kernel/lantiq/ltq-deu/src/ifxmips_des.c @@ -0,0 +1,768 @@ +/****************************************************************************** +** +** FILE NAME : ifxmips_des.c +** PROJECT : IFX UEIP +** MODULES : DEU Module +** +** DATE : September 8, 2009 +** AUTHOR : Mohammad Firdaus +** DESCRIPTION : Data Encryption Unit Driver for DES Algorithm +** COPYRIGHT : Copyright (c) 2009 +** Infineon Technologies AG +** Am Campeon 1-12, 85579 Neubiberg, Germany +** +** This program is free software; you can redistribute it and/or modify +** it under the terms of the GNU General Public License as published by +** the Free Software Foundation; either version 2 of the License, or +** (at your option) any later version. +** +** HISTORY +** $Date $Author $Comment +** 08 Sept 2009 Mohammad Firdaus Initial UEIP release +*******************************************************************************/ + +/*! + \defgroup IFX_DEU IFX_DEU_DRIVERS + \ingroup API + \brief ifx deu driver +*/ + +/*! + \file ifxmips_des.c + \ingroup IFX_DEU + \brief DES encryption DEU driver file +*/ + +/*! + \defgroup IFX_DES_FUNCTIONS IFX_DES_FUNCTIONS + \ingroup IFX_DEU + \brief IFX DES Encryption functions +*/ + +/* Project Header Files */ +#include <linux/version.h> +#include <linux/module.h> +#include <linux/init.h> +#include <linux/types.h> +#include <linux/errno.h> +#include <linux/crypto.h> +#include <linux/interrupt.h> +#include <linux/delay.h> +#include <asm/byteorder.h> +#include <crypto/algapi.h> +#include "ifxmips_deu.h" + +#if defined(CONFIG_DANUBE) +#include "ifxmips_deu_danube.h" +extern int ifx_danube_pre_1_4; +#elif defined(CONFIG_AR9) +#include "ifxmips_deu_ar9.h" +#elif defined(CONFIG_VR9) || defined(CONFIG_AR10) +#include "ifxmips_deu_vr9.h" +#else +#error "Unkown platform" +#endif + +/* DMA specific header and variables */ + +#if 0 + #define CRTCL_SECT_INIT + #define CRTCL_SECT_START + #define CRTCL_SECT_END +#else +spinlock_t des_lock; +#define CRTCL_SECT_INIT spin_lock_init(&des_lock) +#define CRTCL_SECT_START spin_lock_irqsave(&des_lock, flag) +#define CRTCL_SECT_END spin_unlock_irqrestore(&des_lock, flag) +#endif + +/* Preprocessor declerations */ +#ifdef CRYPTO_DEBUG +extern char debug_level; +#define DPRINTF(level, format, args...) if (level < debug_level) printk(KERN_INFO "[%s %s %d]: " format, __FILE__, __func__, __LINE__, ##args); +#else +#define DPRINTF(level, format, args...) +#endif +#define DES_3DES_START IFX_DES_CON +#define DES_KEY_SIZE 8 +#define DES_EXPKEY_WORDS 32 +#define DES_BLOCK_SIZE 8 +#define DES3_EDE_KEY_SIZE (3 * DES_KEY_SIZE) +#define DES3_EDE_EXPKEY_WORDS (3 * DES_EXPKEY_WORDS) +#define DES3_EDE_BLOCK_SIZE DES_BLOCK_SIZE + +/* Function Declaration to prevent warning messages */ +void des_chip_init (void); +u32 endian_swap(u32 input); +u32 input_swap(u32 input); +int aes_memory_allocate(int value); +int des_memory_allocate(int value); +void memory_release(u32 *buffer); +u32* memory_alignment(const u8 *arg, u32 *buff_alloc, int in_out, int nbytes); +void aes_dma_memory_copy(u32 *outcopy, u32 *out_dma, u8 *out_arg, int nbytes); +void des_dma_memory_copy(u32 *outcopy, u32 *out_dma, u8 *out_arg, int nbytes); + +void ifx_deu_des (void *ctx_arg, u8 *out_arg, const u8 *in_arg, + u8 *iv_arg, u32 nbytes, int encdec, int mode); + +struct des_ctx { + int controlr_M; + int key_length; + u8 iv[DES_BLOCK_SIZE]; + u32 expkey[DES3_EDE_EXPKEY_WORDS]; +}; + +extern int disable_multiblock; +extern int disable_deudma; + + +/*! \fn int des_setkey(struct crypto_tfm *tfm, const u8 *key, unsigned int keylen) + * \ingroup IFX_DES_FUNCTIONS + * \brief sets DES key + * \param tfm linux crypto algo transform + * \param key input key + * \param keylen key length +*/ +int des_setkey(struct crypto_tfm *tfm, const u8 *key, + unsigned int keylen) +{ + struct des_ctx *dctx = crypto_tfm_ctx(tfm); + + //printk("setkey in %s\n", __FILE__); + + dctx->controlr_M = 0; // des + dctx->key_length = keylen; + + memcpy ((u8 *) (dctx->expkey), key, keylen); + + return 0; +} + + +/*! \fn void ifx_deu_des(void *ctx_arg, u8 *out_arg, const u8 *in_arg, u8 *iv_arg, u32 nbytes, int encdec, int mode) + * \ingroup IFX_DES_FUNCTIONS + * \brief main interface to DES hardware + * \param ctx_arg crypto algo context + * \param out_arg output bytestream + * \param in_arg input bytestream + * \param iv_arg initialization vector + * \param nbytes length of bytestream + * \param encdec 1 for encrypt; 0 for decrypt + * \param mode operation mode such as ebc, cbc +*/ + +void ifx_deu_des (void *ctx_arg, u8 *out_arg, const u8 *in_arg, + u8 *iv_arg, u32 nbytes, int encdec, int mode) +{ + volatile struct des_t *des = (struct des_t *) DES_3DES_START; + struct des_ctx *dctx = ctx_arg; + u32 *key = dctx->expkey; + unsigned long flag; + + int i = 0; + int nblocks = 0; + + CRTCL_SECT_START; + + des->controlr.M = dctx->controlr_M; + if (dctx->controlr_M == 0) // des + { + des->K1HR = DEU_ENDIAN_SWAP(*((u32 *) key + 0)); + des->K1LR = DEU_ENDIAN_SWAP(*((u32 *) key + 1)); + + } + else { + /* Hardware Section */ + switch (dctx->key_length) { + case 24: + des->K3HR = DEU_ENDIAN_SWAP(*((u32 *) key + 4)); + des->K3LR = DEU_ENDIAN_SWAP(*((u32 *) key + 5)); + /* no break; */ + + case 16: + des->K2HR = DEU_ENDIAN_SWAP(*((u32 *) key + 2)); + des->K2LR = DEU_ENDIAN_SWAP(*((u32 *) key + 3)); + + /* no break; */ + case 8: + des->K1HR = DEU_ENDIAN_SWAP(*((u32 *) key + 0)); + des->K1LR = DEU_ENDIAN_SWAP(*((u32 *) key + 1)); + break; + + default: + CRTCL_SECT_END; + return; + } + } + + des->controlr.E_D = !encdec; //encryption + des->controlr.O = mode; //0 ECB 1 CBC 2 OFB 3 CFB 4 CTR hexdump(prin,sizeof(*des)); + + if (mode > 0) { + des->IVHR = DEU_ENDIAN_SWAP(*(u32 *) iv_arg); + des->IVLR = DEU_ENDIAN_SWAP(*((u32 *) iv_arg + 1)); + }; + + nblocks = nbytes / 4; + + for (i = 0; i < nblocks; i += 2) { + /* wait for busy bit to clear */ + + /*--- Workaround ---------------------------------------------------- + do a dummy read to the busy flag because it is not raised early + enough in CFB/OFB 3DES modes */ +#ifdef CRYPTO_DEBUG + printk ("ihr: %x\n", (*((u32 *) in_arg + i))); + printk ("ilr: %x\n", (*((u32 *) in_arg + 1 + i))); +#endif + des->IHR = INPUT_ENDIAN_SWAP(*((u32 *) in_arg + i)); + des->ILR = INPUT_ENDIAN_SWAP(*((u32 *) in_arg + 1 + i)); /* start crypto */ + + while (des->controlr.BUS) { + // this will not take long + } + + *((u32 *) out_arg + 0 + i) = des->OHR; + *((u32 *) out_arg + 1 + i) = des->OLR; + + } + + + + if (mode > 0) { + *(u32 *) iv_arg = DEU_ENDIAN_SWAP(des->IVHR); + *((u32 *) iv_arg + 1) = DEU_ENDIAN_SWAP(des->IVLR); + }; + + CRTCL_SECT_END; +} + +//definitions from linux/include/crypto.h: +//#define CRYPTO_TFM_MODE_ECB 0x00000001 +//#define CRYPTO_TFM_MODE_CBC 0x00000002 +//#define CRYPTO_TFM_MODE_CFB 0x00000004 +//#define CRYPTO_TFM_MODE_CTR 0x00000008 +//#define CRYPTO_TFM_MODE_OFB 0x00000010 // not even defined +//but hardware definition: 0 ECB 1 CBC 2 OFB 3 CFB 4 CTR + +/*! \fn void ifx_deu_des(void *ctx_arg, u8 *out_arg, const u8 *in_arg, u8 *iv_arg, u32 nbytes, int encdec, int mode) + * \ingroup IFX_DES_FUNCTIONS + * \brief main interface to DES hardware + * \param ctx_arg crypto algo context + * \param out_arg output bytestream + * \param in_arg input bytestream + * \param iv_arg initialization vector + * \param nbytes length of bytestream + * \param encdec 1 for encrypt; 0 for decrypt + * \param mode operation mode such as ebc, cbc +*/ + + + +/*! \fn void ifx_deu_des_ecb (void *ctx, uint8_t *dst, const uint8_t *src, uint8_t *iv, size_t nbytes, int encdec, int inplace) + * \ingroup IFX_DES_FUNCTIONS + * \brief sets DES hardware to ECB mode + * \param ctx crypto algo context + * \param dst output bytestream + * \param src input bytestream + * \param iv initialization vector + * \param nbytes length of bytestream + * \param encdec 1 for encrypt; 0 for decrypt + * \param inplace not used +*/ + +void ifx_deu_des_ecb (void *ctx, uint8_t *dst, const uint8_t *src, + uint8_t *iv, size_t nbytes, int encdec, int inplace) +{ + ifx_deu_des (ctx, dst, src, NULL, nbytes, encdec, 0); +} + +/*! \fn void ifx_deu_des_cbc (void *ctx, uint8_t *dst, const uint8_t *src, uint8_t *iv, size_t nbytes, int encdec, int inplace) + * \ingroup IFX_DES_FUNCTIONS + * \brief sets DES hardware to CBC mode + * \param ctx crypto algo context + * \param dst output bytestream + * \param src input bytestream + * \param iv initialization vector + * \param nbytes length of bytestream + * \param encdec 1 for encrypt; 0 for decrypt + * \param inplace not used +*/ +void ifx_deu_des_cbc (void *ctx, uint8_t *dst, const uint8_t *src, + uint8_t *iv, size_t nbytes, int encdec, int inplace) +{ + ifx_deu_des (ctx, dst, src, iv, nbytes, encdec, 1); +} + +/*! \fn void ifx_deu_des_ofb (void *ctx, uint8_t *dst, const uint8_t *src, uint8_t *iv, size_t nbytes, int encdec, int inplace) + * \ingroup IFX_DES_FUNCTIONS + * \brief sets DES hardware to OFB mode + * \param ctx crypto algo context + * \param dst output bytestream + * \param src input bytestream + * \param iv initialization vector + * \param nbytes length of bytestream + * \param encdec 1 for encrypt; 0 for decrypt + * \param inplace not used +*/ +void ifx_deu_des_ofb (void *ctx, uint8_t *dst, const uint8_t *src, + uint8_t *iv, size_t nbytes, int encdec, int inplace) +{ + ifx_deu_des (ctx, dst, src, iv, nbytes, encdec, 2); +} + +/*! \fn void ifx_deu_des_cfb (void *ctx, uint8_t *dst, const uint8_t *src, uint8_t *iv, size_t nbytes, int encdec, int inplace) + \ingroup IFX_DES_FUNCTIONS + \brief sets DES hardware to CFB mode + \param ctx crypto algo context + \param dst output bytestream + \param src input bytestream + \param iv initialization vector + \param nbytes length of bytestream + \param encdec 1 for encrypt; 0 for decrypt + \param inplace not used +*/ +void ifx_deu_des_cfb (void *ctx, uint8_t *dst, const uint8_t *src, + uint8_t *iv, size_t nbytes, int encdec, int inplace) +{ + ifx_deu_des (ctx, dst, src, iv, nbytes, encdec, 3); +} + +/*! \fn void ifx_deu_des_ctr (void *ctx, uint8_t *dst, const uint8_t *src, uint8_t *iv, size_t nbytes, int encdec, int inplace) + * \ingroup IFX_DES_FUNCTIONS + * \brief sets DES hardware to CTR mode + * \param ctx crypto algo context + * \param dst output bytestream + * \param src input bytestream + * \param iv initialization vector + * \param nbytes length of bytestream + * \param encdec 1 for encrypt; 0 for decrypt + * \param inplace not used +*/ +void ifx_deu_des_ctr (void *ctx, uint8_t *dst, const uint8_t *src, + uint8_t *iv, size_t nbytes, int encdec, int inplace) +{ + ifx_deu_des (ctx, dst, src, iv, nbytes, encdec, 4); +} + +/*! \fn void des_encrypt (struct crypto_tfm *tfm, uint8_t *out, const uint8_t *in) + * \ingroup IFX_DES_FUNCTIONS + * \brief encrypt DES_BLOCK_SIZE of data + * \param tfm linux crypto algo transform + * \param out output bytestream + * \param in input bytestream +*/ +void des_encrypt (struct crypto_tfm *tfm, uint8_t * out, const uint8_t * in) +{ + struct des_ctx *ctx = crypto_tfm_ctx(tfm); + ifx_deu_des (ctx, out, in, NULL, DES_BLOCK_SIZE, + CRYPTO_DIR_ENCRYPT, 0); + +} + +/*! \fn void des_decrypt (struct crypto_tfm *tfm, uint8_t *out, const uint8_t *in) + * \ingroup IFX_DES_FUNCTIONS + * \brief encrypt DES_BLOCK_SIZE of data + * \param tfm linux crypto algo transform + * \param out output bytestream + * \param in input bytestream +*/ +void des_decrypt (struct crypto_tfm *tfm, uint8_t * out, const uint8_t * in) +{ + struct des_ctx *ctx = crypto_tfm_ctx(tfm); + ifx_deu_des (ctx, out, in, NULL, DES_BLOCK_SIZE, + CRYPTO_DIR_DECRYPT, 0); +} + +/* + * \brief RFC2451: + * + * For DES-EDE3, there is no known need to reject weak or + * complementation keys. Any weakness is obviated by the use of + * multiple keys. + * + * However, if the first two or last two independent 64-bit keys are + * equal (k1 == k2 or k2 == k3), then the DES3 operation is simply the + * same as DES. Implementers MUST reject keys that exhibit this + * property. + * + */ + +/*! \fn int des3_ede_setkey(struct crypto_tfm *tfm, const u8 *key, unsigned int keylen) + * \ingroup IFX_DES_FUNCTIONS + * \brief sets 3DES key + * \param tfm linux crypto algo transform + * \param key input key + * \param keylen key length +*/ +int des3_ede_setkey(struct crypto_tfm *tfm, const u8 *key, + unsigned int keylen) +{ + struct des_ctx *dctx = crypto_tfm_ctx(tfm); + + //printk("setkey in %s\n", __FILE__); + + dctx->controlr_M = keylen / 8 + 1; // 3DES EDE1 / EDE2 / EDE3 Mode + dctx->key_length = keylen; + + memcpy ((u8 *) (dctx->expkey), key, keylen); + + return 0; +} + +/* + * \brief DES function mappings +*/ +struct crypto_alg ifxdeu_des_alg = { + .cra_name = "des", + .cra_driver_name = "ifxdeu-des", + .cra_flags = CRYPTO_ALG_TYPE_CIPHER, + .cra_blocksize = DES_BLOCK_SIZE, + .cra_ctxsize = sizeof(struct des_ctx), + .cra_module = THIS_MODULE, + .cra_alignmask = 3, + .cra_list = LIST_HEAD_INIT(ifxdeu_des_alg.cra_list), + .cra_u = { .cipher = { + .cia_min_keysize = DES_KEY_SIZE, + .cia_max_keysize = DES_KEY_SIZE, + .cia_setkey = des_setkey, + .cia_encrypt = des_encrypt, + .cia_decrypt = des_decrypt } } +}; + +/* + * \brief DES function mappings +*/ +struct crypto_alg ifxdeu_des3_ede_alg = { + .cra_name = "des3_ede", + .cra_driver_name = "ifxdeu-des3_ede", + .cra_flags = CRYPTO_ALG_TYPE_CIPHER, + .cra_blocksize = DES_BLOCK_SIZE, + .cra_ctxsize = sizeof(struct des_ctx), + .cra_module = THIS_MODULE, + .cra_alignmask = 3, + .cra_list = LIST_HEAD_INIT(ifxdeu_des3_ede_alg.cra_list), + .cra_u = { .cipher = { + .cia_min_keysize = DES_KEY_SIZE, + .cia_max_keysize = DES_KEY_SIZE, + .cia_setkey = des3_ede_setkey, + .cia_encrypt = des_encrypt, + .cia_decrypt = des_decrypt } } +}; + +/*! \fn int ecb_des_encrypt(struct blkcipher_desc *desc, struct scatterlist *dst, struct scatterlist *src, unsigned int nbytes) + * \ingroup IFX_DES_FUNCTIONS + * \brief ECB DES encrypt using linux crypto blkcipher + * \param desc blkcipher descriptor + * \param dst output scatterlist + * \param src input scatterlist + * \param nbytes data size in bytes +*/ +int ecb_des_encrypt(struct blkcipher_desc *desc, + struct scatterlist *dst, struct scatterlist *src, + unsigned int nbytes) +{ + struct des_ctx *ctx = crypto_blkcipher_ctx(desc->tfm); + struct blkcipher_walk walk; + int err; + + blkcipher_walk_init(&walk, dst, src, nbytes); + err = blkcipher_walk_virt(desc, &walk); + + while ((nbytes = walk.nbytes)) { + nbytes -= (nbytes % DES_BLOCK_SIZE); + ifx_deu_des_ecb(ctx, walk.dst.virt.addr, walk.src.virt.addr, + NULL, nbytes, CRYPTO_DIR_ENCRYPT, 0); + nbytes &= DES_BLOCK_SIZE - 1; + err = blkcipher_walk_done(desc, &walk, nbytes); + } + + return err; +} + +/*! \fn int ecb_des_decrypt(struct blkcipher_desc *desc, struct scatterlist *dst, struct scatterlist *src, unsigned int nbytes) + * \ingroup IFX_DES_FUNCTIONS + * \brief ECB DES decrypt using linux crypto blkcipher + * \param desc blkcipher descriptor + * \param dst output scatterlist + * \param src input scatterlist + * \param nbytes data size in bytes + * \return err +*/ +int ecb_des_decrypt(struct blkcipher_desc *desc, + struct scatterlist *dst, struct scatterlist *src, + unsigned int nbytes) +{ + struct des_ctx *ctx = crypto_blkcipher_ctx(desc->tfm); + struct blkcipher_walk walk; + int err; + + DPRINTF(1, "\n"); + blkcipher_walk_init(&walk, dst, src, nbytes); + err = blkcipher_walk_virt(desc, &walk); + + while ((nbytes = walk.nbytes)) { + nbytes -= (nbytes % DES_BLOCK_SIZE); + ifx_deu_des_ecb(ctx, walk.dst.virt.addr, walk.src.virt.addr, + NULL, nbytes, CRYPTO_DIR_DECRYPT, 0); + nbytes &= DES_BLOCK_SIZE - 1; + err = blkcipher_walk_done(desc, &walk, nbytes); + } + + return err; +} + +/* + * \brief DES function mappings +*/ +struct crypto_alg ifxdeu_ecb_des_alg = { + .cra_name = "ecb(des)", + .cra_driver_name = "ifxdeu-ecb(des)", + .cra_flags = CRYPTO_ALG_TYPE_BLKCIPHER, + .cra_blocksize = DES_BLOCK_SIZE, + .cra_ctxsize = sizeof(struct des_ctx), + .cra_type = &crypto_blkcipher_type, + .cra_module = THIS_MODULE, + .cra_list = LIST_HEAD_INIT(ifxdeu_ecb_des_alg.cra_list), + .cra_u = { + .blkcipher = { + .min_keysize = DES_KEY_SIZE, + .max_keysize = DES_KEY_SIZE, + .setkey = des_setkey, + .encrypt = ecb_des_encrypt, + .decrypt = ecb_des_decrypt, + } + } +}; + +/* + * \brief DES function mappings +*/ +struct crypto_alg ifxdeu_ecb_des3_ede_alg = { + .cra_name = "ecb(des3_ede)", + .cra_driver_name = "ifxdeu-ecb(des3_ede)", + .cra_flags = CRYPTO_ALG_TYPE_BLKCIPHER, + .cra_blocksize = DES3_EDE_BLOCK_SIZE, + .cra_ctxsize = sizeof(struct des_ctx), + .cra_type = &crypto_blkcipher_type, + .cra_module = THIS_MODULE, + .cra_list = LIST_HEAD_INIT(ifxdeu_ecb_des3_ede_alg.cra_list), + .cra_u = { + .blkcipher = { + .min_keysize = DES3_EDE_KEY_SIZE, + .max_keysize = DES3_EDE_KEY_SIZE, + .setkey = des3_ede_setkey, + .encrypt = ecb_des_encrypt, + .decrypt = ecb_des_decrypt, + } + } +}; + +/*! \fn int cbc_des_encrypt(struct blkcipher_desc *desc, struct scatterlist *dst, struct scatterlist *src, unsigned int nbytes) + * \ingroup IFX_DES_FUNCTIONS + * \brief CBC DES encrypt using linux crypto blkcipher + * \param desc blkcipher descriptor + * \param dst output scatterlist + * \param src input scatterlist + * \param nbytes data size in bytes + * \return err +*/ +int cbc_des_encrypt(struct blkcipher_desc *desc, + struct scatterlist *dst, struct scatterlist *src, + unsigned int nbytes) +{ + struct des_ctx *ctx = crypto_blkcipher_ctx(desc->tfm); + struct blkcipher_walk walk; + int err; + + DPRINTF(1, "\n"); + blkcipher_walk_init(&walk, dst, src, nbytes); + err = blkcipher_walk_virt(desc, &walk); + + while ((nbytes = walk.nbytes)) { + u8 *iv = walk.iv; + nbytes -= (nbytes % DES_BLOCK_SIZE); + ifx_deu_des_cbc(ctx, walk.dst.virt.addr, walk.src.virt.addr, + iv, nbytes, CRYPTO_DIR_ENCRYPT, 0); + nbytes &= DES_BLOCK_SIZE - 1; + err = blkcipher_walk_done(desc, &walk, nbytes); + } + + return err; +} + +/*! \fn int cbc_des_decrypt(struct blkcipher_desc *desc, struct scatterlist *dst, struct scatterlist *src, unsigned int nbytes) + * \ingroup IFX_DES_FUNCTIONS + * \brief CBC DES decrypt using linux crypto blkcipher + * \param desc blkcipher descriptor + * \param dst output scatterlist + * \param src input scatterlist + * \param nbytes data size in bytes + * \return err +*/ +int cbc_des_decrypt(struct blkcipher_desc *desc, + struct scatterlist *dst, struct scatterlist *src, + unsigned int nbytes) +{ + struct des_ctx *ctx = crypto_blkcipher_ctx(desc->tfm); + struct blkcipher_walk walk; + int err; + + DPRINTF(1, "\n"); + blkcipher_walk_init(&walk, dst, src, nbytes); + err = blkcipher_walk_virt(desc, &walk); + + while ((nbytes = walk.nbytes)) { + u8 *iv = walk.iv; + nbytes -= (nbytes % DES_BLOCK_SIZE); + ifx_deu_des_cbc(ctx, walk.dst.virt.addr, walk.src.virt.addr, + iv, nbytes, CRYPTO_DIR_DECRYPT, 0); + nbytes &= DES_BLOCK_SIZE - 1; + err = blkcipher_walk_done(desc, &walk, nbytes); + } + + return err; +} + +/* + * \brief DES function mappings +*/ +struct crypto_alg ifxdeu_cbc_des_alg = { + .cra_name = "cbc(des)", + .cra_driver_name = "ifxdeu-cbc(des)", + .cra_flags = CRYPTO_ALG_TYPE_BLKCIPHER, + .cra_blocksize = DES_BLOCK_SIZE, + .cra_ctxsize = sizeof(struct des_ctx), + .cra_type = &crypto_blkcipher_type, + .cra_module = THIS_MODULE, + .cra_list = LIST_HEAD_INIT(ifxdeu_cbc_des_alg.cra_list), + .cra_u = { + .blkcipher = { + .min_keysize = DES_KEY_SIZE, + .max_keysize = DES_KEY_SIZE, + .ivsize = DES_BLOCK_SIZE, + .setkey = des_setkey, + .encrypt = cbc_des_encrypt, + .decrypt = cbc_des_decrypt, + } + } +}; + +/* + * \brief DES function mappings +*/ +struct crypto_alg ifxdeu_cbc_des3_ede_alg = { + .cra_name = "cbc(des3_ede)", + .cra_driver_name = "ifxdeu-cbc(des3_ede)", + .cra_flags = CRYPTO_ALG_TYPE_BLKCIPHER, + .cra_blocksize = DES3_EDE_BLOCK_SIZE, + .cra_ctxsize = sizeof(struct des_ctx), + .cra_type = &crypto_blkcipher_type, + .cra_module = THIS_MODULE, + .cra_list = LIST_HEAD_INIT(ifxdeu_cbc_des3_ede_alg.cra_list), + .cra_u = { + .blkcipher = { + .min_keysize = DES3_EDE_KEY_SIZE, + .max_keysize = DES3_EDE_KEY_SIZE, + .ivsize = DES_BLOCK_SIZE, + .setkey = des3_ede_setkey, + .encrypt = cbc_des_encrypt, + .decrypt = cbc_des_decrypt, + } + } +}; + +/*! \fn int __init ifxdeu_init_des (void) + * \ingroup IFX_DES_FUNCTIONS + * \brief initialize des driver +*/ +int __init ifxdeu_init_des (void) +{ + int ret = -ENOSYS; + + +#if (LINUX_VERSION_CODE < KERNEL_VERSION(2,6,20)) + if (!disable_multiblock) { + ifxdeu_des_alg.cra_u.cipher.cia_max_nbytes = DES_BLOCK_SIZE; //(size_t)-1; + ifxdeu_des_alg.cra_u.cipher.cia_req_align = 16; + ifxdeu_des_alg.cra_u.cipher.cia_ecb = ifx_deu_des_ecb; + ifxdeu_des_alg.cra_u.cipher.cia_cbc = ifx_deu_des_cbc; + ifxdeu_des_alg.cra_u.cipher.cia_cfb = ifx_deu_des_cfb; + ifxdeu_des_alg.cra_u.cipher.cia_ofb = ifx_deu_des_ofb; + } +#endif + + ret = crypto_register_alg(&ifxdeu_des_alg); + if (ret < 0) + goto des_err; + + ret = crypto_register_alg(&ifxdeu_ecb_des_alg); + if (ret < 0) + goto ecb_des_err; + + ret = crypto_register_alg(&ifxdeu_cbc_des_alg); + if (ret < 0) + goto cbc_des_err; + + ret = crypto_register_alg(&ifxdeu_des3_ede_alg); + if (ret < 0) + goto des3_ede_err; + + ret = crypto_register_alg(&ifxdeu_ecb_des3_ede_alg); + if (ret < 0) + goto ecb_des3_ede_err; + + ret = crypto_register_alg(&ifxdeu_cbc_des3_ede_alg); + if (ret < 0) + goto cbc_des3_ede_err; + + des_chip_init(); + CRTCL_SECT_INIT; + + + + printk (KERN_NOTICE "IFX DEU DES initialized%s%s.\n", disable_multiblock ? "" : " (multiblock)", disable_deudma ? "" : " (DMA)"); + return ret; + +des_err: + crypto_unregister_alg(&ifxdeu_des_alg); + printk(KERN_ERR "IFX des initialization failed!\n"); + return ret; +ecb_des_err: + crypto_unregister_alg(&ifxdeu_ecb_des_alg); + printk (KERN_ERR "IFX ecb_des initialization failed!\n"); + return ret; +cbc_des_err: + crypto_unregister_alg(&ifxdeu_cbc_des_alg); + printk (KERN_ERR "IFX cbc_des initialization failed!\n"); + return ret; +des3_ede_err: + crypto_unregister_alg(&ifxdeu_des3_ede_alg); + printk(KERN_ERR "IFX des3_ede initialization failed!\n"); + return ret; +ecb_des3_ede_err: + crypto_unregister_alg(&ifxdeu_ecb_des3_ede_alg); + printk (KERN_ERR "IFX ecb_des3_ede initialization failed!\n"); + return ret; +cbc_des3_ede_err: + crypto_unregister_alg(&ifxdeu_cbc_des3_ede_alg); + printk (KERN_ERR "IFX cbc_des3_ede initialization failed!\n"); + return ret; + +} + +/*! \fn void __exit ifxdeu_fini_des (void) + * \ingroup IFX_DES_FUNCTIONS + * \brief unregister des driver +*/ +void __exit ifxdeu_fini_des (void) +{ + crypto_unregister_alg (&ifxdeu_des_alg); + crypto_unregister_alg (&ifxdeu_ecb_des_alg); + crypto_unregister_alg (&ifxdeu_cbc_des_alg); + crypto_unregister_alg (&ifxdeu_des3_ede_alg); + crypto_unregister_alg (&ifxdeu_ecb_des3_ede_alg); + crypto_unregister_alg (&ifxdeu_cbc_des3_ede_alg); + +} + diff --git a/package/kernel/lantiq/ltq-deu/src/ifxmips_deu.c b/package/kernel/lantiq/ltq-deu/src/ifxmips_deu.c new file mode 100644 index 0000000..05f1681 --- /dev/null +++ b/package/kernel/lantiq/ltq-deu/src/ifxmips_deu.c @@ -0,0 +1,210 @@ +/****************************************************************************** +** +** FILE NAME : ifxmips_deu.c +** PROJECT : IFX UEIP +** MODULES : DEU Module for Danube +** +** DATE : September 8, 2009 +** AUTHOR : Mohammad Firdaus +** DESCRIPTION : Data Encryption Unit Driver +** COPYRIGHT : Copyright (c) 2009 +** Infineon Technologies AG +** Am Campeon 1-12, 85579 Neubiberg, Germany +** +** This program is free software; you can redistribute it and/or modify +** it under the terms of the GNU General Public License as published by +** the Free Software Foundation; either version 2 of the License, or +** (at your option) any later version. +** +** HISTORY +** $Date $Author $Comment +** 08,Sept 2009 Mohammad Firdaus Initial UEIP release +*******************************************************************************/ + +/*! + \defgroup IFX_DEU IFX_DEU_DRIVERS + \ingroup API + \brief ifx deu driver module +*/ + +/*! + \file ifxmips_deu.c + \ingroup IFX_DEU + \brief main deu driver file +*/ + +/*! + \defgroup IFX_DEU_FUNCTIONS IFX_DEU_FUNCTIONS + \ingroup IFX_DEU + \brief IFX DEU functions +*/ + +/* Project header */ +#include <linux/version.h> +#if defined(CONFIG_MODVERSIONS) +#define MODVERSIONS +#include <linux/modversions.h> +#endif +#include <linux/module.h> +#include <linux/init.h> +#include <linux/types.h> +#include <linux/errno.h> +#include <linux/crypto.h> +#include <linux/proc_fs.h> +#include <linux/platform_device.h> +#include <linux/fs.h> /* Stuff about file systems that we need */ +#include <asm/byteorder.h> +#include "ifxmips_deu.h" + +#include <lantiq_soc.h> + +#if defined(CONFIG_DANUBE) +#include "ifxmips_deu_danube.h" +#elif defined(CONFIG_AR9) +#include "ifxmips_deu_ar9.h" +#elif defined(CONFIG_VR9) || defined(CONFIG_AR10) +#include "ifxmips_deu_vr9.h" +#else +#error "Platform unknown!" +#endif /* CONFIG_xxxx */ + +int disable_deudma = 1; + +void chip_version(void); + +/*! \fn static int __init deu_init (void) + * \ingroup IFX_DEU_FUNCTIONS + * \brief link all modules that have been selected in kernel config for ifx hw crypto support + * \return ret +*/ + +static int ltq_deu_probe(struct platform_device *pdev) +{ + int ret = -ENOSYS; + + + START_DEU_POWER; + +#define IFX_DEU_DRV_VERSION "2.0.0" + printk(KERN_INFO "Infineon Technologies DEU driver version %s \n", IFX_DEU_DRV_VERSION); + + FIND_DEU_CHIP_VERSION; + +#if defined(CONFIG_CRYPTO_DEV_DES) + if ((ret = ifxdeu_init_des ())) { + printk (KERN_ERR "IFX DES initialization failed!\n"); + } +#endif +#if defined(CONFIG_CRYPTO_DEV_AES) + if ((ret = ifxdeu_init_aes ())) { + printk (KERN_ERR "IFX AES initialization failed!\n"); + } + +#endif +#if defined(CONFIG_CRYPTO_DEV_ARC4) + if ((ret = ifxdeu_init_arc4 ())) { + printk (KERN_ERR "IFX ARC4 initialization failed!\n"); + } + +#endif +#if defined(CONFIG_CRYPTO_DEV_SHA1) + if ((ret = ifxdeu_init_sha1 ())) { + printk (KERN_ERR "IFX SHA1 initialization failed!\n"); + } +#endif +#if defined(CONFIG_CRYPTO_DEV_MD5) + if ((ret = ifxdeu_init_md5 ())) { + printk (KERN_ERR "IFX MD5 initialization failed!\n"); + } + +#endif +#if defined(CONFIG_CRYPTO_DEV_SHA1_HMAC) + if ((ret = ifxdeu_init_sha1_hmac ())) { + printk (KERN_ERR "IFX SHA1_HMAC initialization failed!\n"); + } +#endif +#if defined(CONFIG_CRYPTO_DEV_MD5_HMAC) + if ((ret = ifxdeu_init_md5_hmac ())) { + printk (KERN_ERR "IFX MD5_HMAC initialization failed!\n"); + } +#endif + + + + return ret; + +} + +/*! \fn static void __exit deu_fini (void) + * \ingroup IFX_DEU_FUNCTIONS + * \brief remove the loaded crypto algorithms +*/ +static int ltq_deu_remove(struct platform_device *pdev) +{ +//#ifdef CONFIG_CRYPTO_DEV_PWR_SAVE_MODE + #if defined(CONFIG_CRYPTO_DEV_DES) + ifxdeu_fini_des (); + #endif + #if defined(CONFIG_CRYPTO_DEV_AES) + ifxdeu_fini_aes (); + #endif + #if defined(CONFIG_CRYPTO_DEV_ARC4) + ifxdeu_fini_arc4 (); + #endif + #if defined(CONFIG_CRYPTO_DEV_SHA1) + ifxdeu_fini_sha1 (); + #endif + #if defined(CONFIG_CRYPTO_DEV_MD5) + ifxdeu_fini_md5 (); + #endif + #if defined(CONFIG_CRYPTO_DEV_SHA1_HMAC) + ifxdeu_fini_sha1_hmac (); + #endif + #if defined(CONFIG_CRYPTO_DEV_MD5_HMAC) + ifxdeu_fini_md5_hmac (); + #endif + printk("DEU has exited successfully\n"); + + return 0; +} + + +int disable_multiblock = 0; + +#if LINUX_VERSION_CODE >= KERNEL_VERSION(2,4,0) +module_param(disable_multiblock,int,0); + +#else +//MODULE_PARM (disable_multiblock, "i"); +MODULE_PARM_DESC (disable_multiblock, + "Disable encryption of whole multiblock buffers."); +#endif + +static const struct of_device_id ltq_deu_match[] = { +#ifdef CONFIG_DANUBE + { .compatible = "lantiq,deu-danube"}, +#elif defined CONFIG_AR9 + { .compatible = "lantiq,deu-arx100"}, +#elif defined CONFIG_VR9 + { .compatible = "lantiq,deu-xrx200"}, +#endif + {}, +}; +MODULE_DEVICE_TABLE(of, ltq_deu_match); + + +static struct platform_driver ltq_deu_driver = { + .probe = ltq_deu_probe, + .remove = ltq_deu_remove, + .driver = { + .name = "deu", + .owner = THIS_MODULE, + .of_match_table = ltq_deu_match, + }, +}; + +module_platform_driver(ltq_deu_driver); + +MODULE_DESCRIPTION ("Infineon DEU crypto engine support."); +MODULE_LICENSE ("GPL"); +MODULE_AUTHOR ("Mohammad Firdaus"); diff --git a/package/kernel/lantiq/ltq-deu/src/ifxmips_deu.h b/package/kernel/lantiq/ltq-deu/src/ifxmips_deu.h new file mode 100644 index 0000000..c842d64 --- /dev/null +++ b/package/kernel/lantiq/ltq-deu/src/ifxmips_deu.h @@ -0,0 +1,232 @@ +/****************************************************************************** +** +** FILE NAME : ifxmips_deu.h +** DESCRIPTION : Data Encryption Unit Driver +** COPYRIGHT : Copyright (c) 2009 +** Infineon Technologies AG +** Am Campeon 1-12, 85579 Neubiberg, Germany +** +** This program is free software; you can redistribute it and/or modify +** it under the terms of the GNU General Public License as published by +** the Free Software Foundation; either version 2 of the License, or +** (at your option) any later version. +** +** HISTORY +** $Date $Author $Comment +** 08,Sept 2009 Mohammad Firdaus Initial UEIP release +*******************************************************************************/ +/*! + \defgroup IFX_DEU IFX_DEU_DRIVERS + \ingroup API + \brief ifx deu driver module +*/ + +/*! + \file ifxmips_deu.h + \brief main deu driver header file +*/ + +/*! + \defgroup IFX_DEU_DEFINITIONS IFX_DEU_DEFINITIONS + \ingroup IFX_DEU + \brief ifx deu definitions +*/ + + +#ifndef IFXMIPS_DEU_H +#define IFXMIPS_DEU_H + +#include <crypto/algapi.h> +#include <linux/interrupt.h> + +#define IFXDEU_ALIGNMENT 16 + +#define IFX_DEU_BASE_ADDR (KSEG1 | 0x1E103100) +#define IFX_DEU_CLK ((volatile u32 *)(IFX_DEU_BASE_ADDR + 0x0000)) +#define IFX_DES_CON ((volatile u32 *)(IFX_DEU_BASE_ADDR + 0x0010)) +#define IFX_AES_CON ((volatile u32 *)(IFX_DEU_BASE_ADDR + 0x0050)) +#define IFX_HASH_CON ((volatile u32 *)(IFX_DEU_BASE_ADDR + 0x00B0)) +#define IFX_ARC4_CON ((volatile u32 *)(IFX_DEU_BASE_ADDR + 0x0100)) + +#define PFX "ifxdeu: " +#define CLC_START IFX_DEU_CLK +#define IFXDEU_CRA_PRIORITY 300 +#define IFXDEU_COMPOSITE_PRIORITY 400 +//#define KSEG1 0xA0000000 +#define IFX_PMU_ENABLE 1 +#define IFX_PMU_DISABLE 0 + +#define CRYPTO_DIR_ENCRYPT 1 +#define CRYPTO_DIR_DECRYPT 0 + +#define AES_IDLE 0 +#define AES_BUSY 1 +#define AES_STARTED 2 +#define AES_COMPLETED 3 +#define DES_IDLE 0 +#define DES_BUSY 1 +#define DES_STARTED 2 +#define DES_COMPLETED 3 + +#define PROCESS_SCATTER 1 +#define PROCESS_NEW_PACKET 2 + +#define PMU_DEU BIT(20) +#define START_DEU_POWER \ + do { \ + volatile struct clc_controlr_t *clc = (struct clc_controlr_t *) CLC_START; \ + ltq_pmu_enable(PMU_DEU); \ + clc->FSOE = 0; \ + clc->SBWE = 0; \ + clc->SPEN = 0; \ + clc->SBWE = 0; \ + clc->DISS = 0; \ + clc->DISR = 0; \ + } while(0) + +#define STOP_DEU_POWER \ + do { \ + volatile struct clc_controlr_t *clc = (struct clc_controlr_t *) CLC_START; \ + ltq_pmu_disable(PMU_DEU); \ + clc->FSOE = 1; \ + clc->SBWE = 1; \ + clc->SPEN = 1; \ + clc->SBWE = 1; \ + clc->DISS = 1; \ + clc->DISR = 1; \ + } while (0) + +/* + * Not used anymore in UEIP (use IFX_DES_CON, IFX_AES_CON, etc instead) + * #define DEU_BASE (KSEG1+0x1E103100) + * #define DES_CON (DEU_BASE+0x10) + * #define AES_CON (DEU_BASE+0x50) + * #define HASH_CON (DEU_BASE+0xB0) + * #define DMA_CON (DEU_BASE+0xEC) + * #define INT_CON (DEU_BASE+0xF4) + * #define ARC4_CON (DEU_BASE+0x100) + */ + + +int __init ifxdeu_init_des (void); +int __init ifxdeu_init_aes (void); +int __init ifxdeu_init_arc4 (void); +int __init ifxdeu_init_sha1 (void); +int __init ifxdeu_init_md5 (void); +int __init ifxdeu_init_sha1_hmac (void); +int __init ifxdeu_init_md5_hmac (void); +int __init lqdeu_async_aes_init(void); +int __init lqdeu_async_des_init(void); + +void __exit ifxdeu_fini_des (void); +void __exit ifxdeu_fini_aes (void); +void __exit ifxdeu_fini_arc4 (void); +void __exit ifxdeu_fini_sha1 (void); +void __exit ifxdeu_fini_md5 (void); +void __exit ifxdeu_fini_sha1_hmac (void); +void __exit ifxdeu_fini_md5_hmac (void); +void __exit ifxdeu_fini_dma(void); +void __exit lqdeu_fini_async_aes(void); +void __exit lqdeu_fini_async_des(void); +void __exit deu_fini (void); +int deu_dma_init (void); + + + +#define DEU_WAKELIST_INIT(queue) \ + init_waitqueue_head(&queue) + +#define DEU_WAIT_EVENT_TIMEOUT(queue, event, flags, timeout) \ + do { \ + wait_event_interruptible_timeout((queue), \ + test_bit((event), &(flags)), (timeout)); \ + clear_bit((event), &(flags)); \ + }while (0) + + +#define DEU_WAKEUP_EVENT(queue, event, flags) \ + do { \ + set_bit((event), &(flags)); \ + wake_up_interruptible(&(queue)); \ + }while (0) + +#define DEU_WAIT_EVENT(queue, event, flags) \ + do { \ + wait_event_interruptible(queue, \ + test_bit((event), &(flags))); \ + clear_bit((event), &(flags)); \ + }while (0) + +typedef struct deu_drv_priv { + wait_queue_head_t deu_thread_wait; +#define DEU_EVENT 1 +#define DES_ASYNC_EVENT 2 +#define AES_ASYNC_EVENT 3 + volatile long des_event_flags; + volatile long aes_event_flags; + volatile long deu_event_flags; + int event_src; + u32 *deu_rx_buf; + u32 *outcopy; + u32 deu_rx_len; + + struct aes_priv *aes_dataptr; + struct des_priv *des_dataptr; +}deu_drv_priv_t; + + +/** + * struct aes_priv_t - ASYNC AES + * @lock: spinlock lock + * @lock_flag: flag for spinlock activities + * @list: crypto queue API list + * @hw_status: DEU hw status flag + * @aes_wait_flag: flag for sleep queue + * @aes_wait_queue: queue attributes for aes + * @bytes_processed: number of bytes to process by DEU + * @aes_pid: pid number for AES thread + * @aes_sync: atomic wait sync for AES + * +*/ + +typedef struct { + spinlock_t lock; + struct crypto_queue list; + unsigned int hw_status; + volatile long aes_wait_flag; + wait_queue_head_t aes_wait_queue; + + pid_t aes_pid; + + struct tasklet_struct aes_task; + +} aes_priv_t; + +/** + * struct des_priv_t - ASYNC DES + * @lock: spinlock lock + * @list: crypto queue API list + * @hw_status: DEU hw status flag + * @des_wait_flag: flag for sleep queue + * @des_wait_queue: queue attributes for des + * @des_pid: pid number for DES thread + * @des_sync: atomic wait sync for DES + * +*/ + +typedef struct { + spinlock_t lock; + struct crypto_queue list; + unsigned int hw_status; + volatile long des_wait_flag; + wait_queue_head_t des_wait_queue; + + pid_t des_pid; + + struct tasklet_struct des_task; + +} des_priv_t; + +#endif /* IFXMIPS_DEU_H */ + + diff --git a/package/kernel/lantiq/ltq-deu/src/ifxmips_deu_ar9.c b/package/kernel/lantiq/ltq-deu/src/ifxmips_deu_ar9.c new file mode 100644 index 0000000..9dc3e30 --- /dev/null +++ b/package/kernel/lantiq/ltq-deu/src/ifxmips_deu_ar9.c @@ -0,0 +1,135 @@ +/****************************************************************************** +** +** FILE NAME : ifxmips_deu_ar9.c +** PROJECT : IFX UEIP +** MODULES : DEU Module for AR9 +** +** DATE : September 8, 2009 +** AUTHOR : Mohammad Firdaus +** DESCRIPTION : Data Encryption Unit Driver +** COPYRIGHT : Copyright (c) 2009 +** Infineon Technologies AG +** Am Campeon 1-12, 85579 Neubiberg, Germany +** +** This program is free software; you can redistribute it and/or modify +** it under the terms of the GNU General Public License as published by +** the Free Software Foundation; either version 2 of the License, or +** (at your option) any later version. +** +** HISTORY +** $Date $Author $Comment +** 08,Sept 2009 Mohammad Firdaus Initial UEIP release +*******************************************************************************/ +/*! + \defgroup IFX_DEU IFX_DEU_DRIVERS + \ingroup API + \brief ifx deu driver module +*/ + +/*! + \file ifxmips_deu_ar9.c + \brief ifx deu board specific driver file for ar9 +*/ + +/*! + \defgroup BOARD_SPECIFIC_FUNCTIONS IFX_BOARD_SPECIFIC_FUNCTIONS + \ingroup IFX_DEU + \brief board specific functions +*/ + +/* Project header files */ +#include <linux/module.h> +#include <linux/init.h> +#include <linux/types.h> +#include <linux/errno.h> +#include <asm/io.h> //dma_cache_inv + +#include "ifxmips_deu_dma.h" +#include "ifxmips_deu_ar9.h" + +/* Function decleration */ +void aes_chip_init (void); +void des_chip_init (void); +int deu_dma_init (void); +u32 endian_swap(u32 input); +u32* memory_alignment(const u8 *arg, u32 *buff_alloc, int in_out, int nbytes); +void aes_dma_memory_copy(u32 *outcopy, u32 *out_dma, u8 *out_arg, int nbytes); +void des_dma_memory_copy(u32 *outcopy, u32 *out_dma, u8 *out_arg, int nbytes); +void deu_dma_priv_init(void); +void __exit ifxdeu_fini_dma(void); + +#define DES_3DES_START IFX_DES_CON +#define AES_START IFX_AES_CON +#define CLC_START IFX_DEU_CLK + +/* Variables */ + +u8 *g_dma_page_ptr = NULL; +u8 *g_dma_block = NULL; +u8 *g_dma_block2 = NULL; + +deu_drv_priv_t deu_dma_priv; + + +/*! \fn u32 endian_swap(u32 input) + * \ingroup BOARD_SPECIFIC_FUNCTIONS + * \brief Swap data given to the function + * \param input Data input to be swapped + * \return either the swapped data or the input data depending on whether it is in DMA mode or FPI mode +*/ +u32 endian_swap(u32 input) +{ + return input; +} + +/*! \fn u32 input_swap(u32 input) + * \ingroup BOARD_SPECIFIC_FUNCTIONS + * \brief Not used + * \return input +*/ + +u32 input_swap(u32 input) +{ + return input; +} + +/*! \fn void aes_chip_init (void) + * \ingroup BOARD_SPECIFIC_FUNCTIONS + * \brief initialize AES hardware +*/ + +void aes_chip_init (void) +{ + volatile struct aes_t *aes = (struct aes_t *) AES_START; + + aes->controlr.SM = 1; + aes->controlr.ARS = 1; + +} + +/*! \fn void des_chip_init (void) + * \ingroup BOARD_SPECIFIC_FUNCTIONS + * \brief initialize DES hardware +*/ + +void des_chip_init (void) +{ + volatile struct des_t *des = (struct des_t *) DES_3DES_START; + + // start crypto engine with write to ILR + des->controlr.SM = 1; + asm("sync"); + des->controlr.ARS = 1; + +} + +/*! \fn void chip_version(void) + * \ingroup BOARD_SPECIFIC_FUNCTIONS + * \brief not used! +*/ + +void chip_version(void) +{ + return; +} + diff --git a/package/kernel/lantiq/ltq-deu/src/ifxmips_deu_ar9.h b/package/kernel/lantiq/ltq-deu/src/ifxmips_deu_ar9.h new file mode 100644 index 0000000..1d84da3 --- /dev/null +++ b/package/kernel/lantiq/ltq-deu/src/ifxmips_deu_ar9.h @@ -0,0 +1,299 @@ +/****************************************************************************** +** +** FILE NAME : ifxmips_deu_ar9.h +** PROJECT : IFX UEIP +** MODULES : DEU Module for AR9 +** +** DATE : September 8, 2009 +** AUTHOR : Mohammad Firdaus +** DESCRIPTION : Data Encryption Unit Driver +** COPYRIGHT : Copyright (c) 2009 +** Infineon Technologies AG +** Am Campeon 1-12, 85579 Neubiberg, Germany +** +** This program is free software; you can redistribute it and/or modify +** it under the terms of the GNU General Public License as published by +** the Free Software Foundation; either version 2 of the License, or +** (at your option) any later version. +** +** HISTORY +** $Date $Author $Comment +** 08,Sept 2009 Mohammad Firdaus Initial UEIP release +*******************************************************************************/ +/*! + \defgroup IFX_DEU IFX_DEU_DRIVERS + \ingroup API + \brief deu driver module +*/ + +/*! + \defgroup IFX_DEU_DEFINITIONS IFX_DEU_DEFINITIONS + \ingroup IFX_DEU + \brief ifx deu definitions +*/ + +/*! + \file ifxmips_deu_ar9.h + \brief deu driver header file +*/ + + +#ifndef IFXMIPS_DEU_AR9_H +#define IFXMIPS_DEU_AR9_H + +/* Project Header Files */ +#include <linux/version.h> +#include <linux/module.h> +#include <linux/init.h> +#include <linux/types.h> +#include <linux/errno.h> +#include <linux/crypto.h> +#include <linux/interrupt.h> +#include <linux/delay.h> +#include <asm/byteorder.h> +#include <crypto/algapi.h> +#include <linux/module.h> +#include <linux/mm.h> +#include <asm/scatterlist.h> +#include <linux/skbuff.h> +#include <linux/netdevice.h> +#include "ifxmips_deu.h" + + +/* SHA CONSTANTS */ +#define HASH_CON_VALUE 0x0700002C + +#define INPUT_ENDIAN_SWAP(input) input_swap(input) +#define DEU_ENDIAN_SWAP(input) endian_swap(input) +#define DELAY_PERIOD 10 +#define FIND_DEU_CHIP_VERSION chip_version() +#define CLC_START IFX_DEU_CLK + +#define AES_INIT 0 +#define DES_INIT 1 +#define ARC4_INIT 2 +#define SHA1_INIT 3 +#define MD5_INIT 4 +#define SHA1_HMAC_INIT 5 +#define MD5_HMAC_INIT 6 + +#define AES_START IFX_AES_CON +#define DES_3DES_START IFX_DES_CON + +#define WAIT_AES_DMA_READY() \ + do { \ + int i; \ + volatile struct deu_dma_t *dma = (struct deu_dma_t *) IFX_DEU_DMA_CON; \ + volatile struct aes_t *aes = (volatile struct aes_t *) AES_START; \ + for (i = 0; i < 10; i++) \ + udelay(DELAY_PERIOD); \ + while (dma->controlr.BSY) {}; \ + while (aes->controlr.BUS) {}; \ + } while (0) + +#define WAIT_DES_DMA_READY() \ + do { \ + int i; \ + volatile struct deu_dma_t *dma = (struct deu_dma_t *) IFX_DEU_DMA_CON; \ + volatile struct des_t *des = (struct des_t *) DES_3DES_START; \ + for (i = 0; i < 10; i++) \ + udelay(DELAY_PERIOD); \ + while (dma->controlr.BSY) {}; \ + while (des->controlr.BUS) {}; \ + } while (0) + +#define AES_DMA_MISC_CONFIG() \ + do { \ + volatile struct aes_t *aes = (volatile struct aes_t *) AES_START; \ + aes->controlr.KRE = 1; \ + aes->controlr.GO = 1; \ + } while(0) + +#define SHA_HASH_INIT \ + do { \ + volatile struct deu_hash_t *hash = (struct deu_hash_t *) HASH_START; \ + hash->controlr.SM = 1; \ + hash->controlr.ALGO = 0; \ + hash->controlr.INIT = 1; \ + } while(0) + +/* DEU Common Structures for AR9*/ + +struct clc_controlr_t { + u32 Res:26; + u32 FSOE:1; + u32 SBWE:1; + u32 EDIS:1; + u32 SPEN:1; + u32 DISS:1; + u32 DISR:1; + +}; + +struct des_t { + struct des_controlr { //10h + u32 KRE:1; + u32 reserved1:5; + u32 GO:1; + u32 STP:1; + u32 Res2:6; + u32 NDC:1; + u32 ENDI:1; + u32 Res3:2; + u32 F:3; + u32 O:3; + u32 BUS:1; + u32 DAU:1; + u32 ARS:1; + u32 SM:1; + u32 E_D:1; + u32 M:3; + + } controlr; + u32 IHR; //14h + u32 ILR; //18h + u32 K1HR; //1c + u32 K1LR; // + u32 K2HR; + u32 K2LR; + u32 K3HR; + u32 K3LR; //30h + u32 IVHR; //34h + u32 IVLR; //38 + u32 OHR; //3c + u32 OLR; //40 +}; + +struct aes_t { + struct aes_controlr { + + u32 KRE:1; + u32 reserved1:4; + u32 PNK:1; + u32 GO:1; + u32 STP:1; + u32 reserved2:6; + u32 NDC:1; + u32 ENDI:1; + u32 reserved3:2; + u32 F:3; //fbs + u32 O:3; //om + u32 BUS:1; //bsy + u32 DAU:1; + u32 ARS:1; + u32 SM:1; + u32 E_D:1; + u32 KV:1; + u32 K:2; //KL + + } controlr; + u32 ID3R; //80h + u32 ID2R; //84h + u32 ID1R; //88h + u32 ID0R; //8Ch + u32 K7R; //90h + u32 K6R; //94h + u32 K5R; //98h + u32 K4R; //9Ch + u32 K3R; //A0h + u32 K2R; //A4h + u32 K1R; //A8h + u32 K0R; //ACh + u32 IV3R; //B0h + u32 IV2R; //B4h + u32 IV1R; //B8h + u32 IV0R; //BCh + u32 OD3R; //D4h + u32 OD2R; //D8h + u32 OD1R; //DCh + u32 OD0R; //E0h +}; + +struct arc4_t { + struct arc4_controlr { + + u32 KRE:1; + u32 KLEN:4; + u32 KSAE:1; + u32 GO:1; + u32 STP:1; + u32 reserved1:6; + u32 NDC:1; + u32 ENDI:1; + u32 reserved2:8; + u32 BUS:1; //bsy + u32 reserved3:1; + u32 ARS:1; + u32 SM:1; + u32 reserved4:4; + + } controlr; + u32 K3R; //104h + u32 K2R; //108h + u32 K1R; //10Ch + u32 K0R; //110h + + u32 IDLEN; //114h + + u32 ID3R; //118h + u32 ID2R; //11Ch + u32 ID1R; //120h + u32 ID0R; //124h + + u32 OD3R; //128h + u32 OD2R; //12Ch + u32 OD1R; //130h + u32 OD0R; //134h +}; + +struct deu_hash_t { + struct hash_controlr { + u32 reserved1:5; + u32 KHS:1; + u32 GO:1; + u32 INIT:1; + u32 reserved2:6; + u32 NDC:1; + u32 ENDI:1; + u32 reserved3:7; + u32 DGRY:1; + u32 BSY:1; + u32 reserved4:1; + u32 IRCL:1; + u32 SM:1; + u32 KYUE:1; + u32 HMEN:1; + u32 SSEN:1; + u32 ALGO:1; + + } controlr; + u32 MR; //B4h + u32 D1R; //B8h + u32 D2R; //BCh + u32 D3R; //C0h + u32 D4R; //C4h + u32 D5R; //C8h + + u32 dummy; //CCh + + u32 KIDX; //D0h + u32 KEY; //D4h + u32 DBN; //D8h +}; + + +struct deu_dma_t { + struct dma_controlr { + u32 reserved1:22; + u32 BS:2; + u32 BSY:1; + u32 reserved2:1; + u32 ALGO:2; + u32 RXCLS:2; + u32 reserved3:1; + u32 EN:1; + + } controlr; +}; + +#endif /* IFXMIPS_DEU_AR9_H */ diff --git a/package/kernel/lantiq/ltq-deu/src/ifxmips_deu_danube.c b/package/kernel/lantiq/ltq-deu/src/ifxmips_deu_danube.c new file mode 100644 index 0000000..492391d --- /dev/null +++ b/package/kernel/lantiq/ltq-deu/src/ifxmips_deu_danube.c @@ -0,0 +1,168 @@ +/****************************************************************************** +** +** FILE NAME : ifxmips_deu_danube.c +** PROJECT : IFX UEIP +** MODULES : DEU Module for Danube +** +** DATE : September 8, 2009 +** AUTHOR : Mohammad Firdaus +** DESCRIPTION : Data Encryption Unit Driver +** COPYRIGHT : Copyright (c) 2009 +** Infineon Technologies AG +** Am Campeon 1-12, 85579 Neubiberg, Germany +** +** This program is free software; you can redistribute it and/or modify +** it under the terms of the GNU General Public License as published by +** the Free Software Foundation; either version 2 of the License, or +** (at your option) any later version. +** +** HISTORY +** $Date $Author $Comment +** 08,Sept 2009 Mohammad Firdaus Initial UEIP release +*******************************************************************************/ +/*! + \defgroup IFX_DEU IFX_DEU_DRIVERS + \ingroup API + \brief deu driver module +*/ + +/*! + \file ifxmips_deu_danube.c + \ingroup IFX_DEU + \brief board specific deu driver file for danube +*/ + +/*! + \defgroup BOARD_SPECIFIC_FUNCTIONS IFX_BOARD_SPECIFIC_FUNCTIONS + \ingroup IFX_DEU + \brief board specific deu functions +*/ + +/* Project header files */ +#include <linux/module.h> +#include <linux/init.h> +#include <linux/types.h> +#include <linux/errno.h> +#include <asm/io.h> //dma_cache_inv + +#include "ifxmips_deu_dma.h" +#include "ifxmips_deu_danube.h" + + +/* Function Declerations */ +int aes_memory_allocate(int value); +int des_memory_allocate(int value); +void memory_release(u32 *addr); +int aes_chip_init (void); +void des_chip_init (void); +int deu_dma_init (void); +u32 endian_swap(u32 input); +u32* memory_alignment(const u8 *arg, u32 *buff_alloc, int in_out, int nbytes); +void dma_memory_copy(u32 *outcopy, u32 *out_dma, u8 *out_arg, int nbytes); +void chip_version(void); +void deu_dma_priv_init(void); +void __exit ifxdeu_fini_dma(void); + +#define DES_3DES_START IFX_DES_CON +#define AES_START IFX_AES_CON +#define CLC_START IFX_DEU_CLK + +/* Variables definition */ +int ifx_danube_pre_1_4; +u8 *g_dma_page_ptr = NULL; +u8 *g_dma_block = NULL; +u8 *g_dma_block2 = NULL; + +deu_drv_priv_t deu_dma_priv; + + +/*! \fn u32 endian_swap(u32 input) + * \ingroup BOARD_SPECIFIC_FUNCTIONS + * \brief function is not used + * \param input Data input to be swapped + * \return input +*/ + +u32 endian_swap(u32 input) +{ + return input; +} + +/*! \fn u32 input_swap(u32 input) + * \ingroup BOARD_SPECIFIC_FUNCTIONS + * \brief Swap the input data if the current chip is Danube version + * 1.4 and do nothing to the data if the current chip is + * Danube version 1.3 + * \param input data that needs to be swapped + * \return input or swapped input +*/ + +u32 input_swap(u32 input) +{ + if (!ifx_danube_pre_1_4) { + u8 *ptr = (u8 *)&input; + return ((ptr[3] << 24) | (ptr[2] << 16) | (ptr[1] << 8) | ptr[0]); + } + else + return input; +} + + + +/*! \fn void aes_chip_init (void) + * \ingroup BOARD_SPECIFIC_FUNCTIONS + * \brief initialize AES hardware +*/ + +int aes_chip_init (void) +{ + volatile struct aes_t *aes = (struct aes_t *) AES_START; + + //start crypto engine with write to ILR + aes->controlr.SM = 1; + aes->controlr.ARS = 1; + return 0; +} + +/*! \fn void des_chip_init (void) + * \ingroup BOARD_SPECIFIC_FUNCTIONS + * \brief initialize DES hardware +*/ + +void des_chip_init (void) +{ + volatile struct des_t *des = (struct des_t *) DES_3DES_START; + + // start crypto engine with write to ILR + des->controlr.SM = 1; + des->controlr.ARS = 1; +} + +/*! \fn void chip_version (void) + * \ingroup IFX_DES_FUNCTIONS + * \brief To find the version of the chip by looking at the chip ID + * \param ifx_danube_pre_1_4 (sets to 1 if Chip is Danube less than v1.4) +*/ +#define IFX_MPS (KSEG1 | 0x1F107000) +#define IFX_MPS_CHIPID ((volatile u32*)(IFX_MPS + 0x0344)) + +void chip_version(void) +{ + + /* DANUBE PRE 1.4 SOFTWARE FIX */ + int chip_id = 0; + chip_id = *IFX_MPS_CHIPID; + chip_id >>= 28; + + if (chip_id >= 4) { + ifx_danube_pre_1_4 = 0; + printk("Danube Chip ver. 1.4 detected. \n"); + } + else { + ifx_danube_pre_1_4 = 1; + printk("Danube Chip ver. 1.3 or below detected. \n"); + } + + return; +} + diff --git a/package/kernel/lantiq/ltq-deu/src/ifxmips_deu_danube.h b/package/kernel/lantiq/ltq-deu/src/ifxmips_deu_danube.h new file mode 100644 index 0000000..62ad96d --- /dev/null +++ b/package/kernel/lantiq/ltq-deu/src/ifxmips_deu_danube.h @@ -0,0 +1,250 @@ +/****************************************************************************** +** +** FILE NAME : ifxmips_deu_danube.h +** PROJECT : IFX UEIP +** MODULES : DEU Module for Danube +** +** DATE : September 8, 2009 +** AUTHOR : Mohammad Firdaus +** DESCRIPTION : Data Encryption Unit Driver +** COPYRIGHT : Copyright (c) 2009 +** Infineon Technologies AG +** Am Campeon 1-12, 85579 Neubiberg, Germany +** +** This program is free software; you can redistribute it and/or modify +** it under the terms of the GNU General Public License as published by +** the Free Software Foundation; either version 2 of the License, or +** (at your option) any later version. +** +** HISTORY +** $Date $Author $Comment +** 08,Sept 2009 Mohammad Firdaus Initial UEIP release +*******************************************************************************/ +/*! + \defgroup IFX_DEU IFX_DEU_DRIVERS + \ingroup API + \brief deu driver module +*/ + +/*! + \file ifxmips_deu_danube.h + \brief board specific driver header file for danube +*/ + +/*! + \defgroup BOARD_SPECIFIC_FUNCTIONS IFX_BOARD_SPECIFIC_FUNCTIONS + \ingroup IFX_DEU + \brief board specific deu header files +*/ + +#ifndef IFXMIPS_DEU_DANUBE_H +#define IFXMIPS_DEU_DANUBE_H + +/* Project Header Files */ +#include <linux/version.h> +#include <linux/module.h> +#include <linux/init.h> +#include <linux/types.h> +#include <linux/errno.h> +#include <linux/crypto.h> +#include <linux/interrupt.h> +#include <linux/delay.h> +#include <asm/byteorder.h> +#include <crypto/algapi.h> +#include <linux/module.h> +#include <linux/mm.h> +#include <asm/scatterlist.h> +#include <linux/skbuff.h> +#include <linux/netdevice.h> +#include "ifxmips_deu.h" + + + +#define INPUT_ENDIAN_SWAP(input) input_swap(input) +#define DEU_ENDIAN_SWAP(input) endian_swap(input) +#define FIND_DEU_CHIP_VERSION chip_version() +#define AES_DMA_MISC_CONFIG() +#define CLC_START IFX_DEU_CLK + +#define AES_START IFX_AES_CON +#define DES_3DES_START IFX_DES_CON + +#define AES_INIT 0 +#define DES_INIT 1 +#define SHA1_INIT 2 +#define MD5_INIT 3 + +#define WAIT_AES_DMA_READY() \ + do { \ + int i; \ + volatile struct deu_dma_t *dma = (struct deu_dma_t *) IFX_DEU_DMA_CON; \ + volatile struct aes_t *aes = (volatile struct aes_t *) AES_START; \ + for (i = 0; i < 10; i++) \ + udelay(DELAY_PERIOD); \ + while (dma->controlr.BSY) {}; \ + while (aes->controlr.BUS) {}; \ + } while (0) + +#define WAIT_DES_DMA_READY() \ + do { \ + int i; \ + volatile struct deu_dma_t *dma = (struct deu_dma_t *) IFX_DEU_DMA_CON; \ + volatile struct des_t *des = (struct des_t *) DES_3DES_START; \ + for (i = 0; i < 10; i++) \ + udelay(DELAY_PERIOD); \ + while (dma->controlr.BSY) {}; \ + while (des->controlr.BUS) {}; \ + } while (0) + +#define SHA_HASH_INIT \ + do { \ + volatile struct deu_hash_t *hash = (struct deu_hash_t *) HASH_START; \ + hash->controlr.SM = 1; \ + hash->controlr.ALGO = 0; \ + hash->controlr.INIT = 1; \ + } while(0) + +/* DEU STRUCTURES */ + +struct clc_controlr_t { + u32 Res:26; + u32 FSOE:1; + u32 SBWE:1; + u32 EDIS:1; + u32 SPEN:1; + u32 DISS:1; + u32 DISR:1; + +}; + +struct des_t { + struct des_controlr { //10h + u32 KRE:1; + u32 reserved1:5; + u32 GO:1; + u32 STP:1; + u32 Res2:6; + u32 NDC:1; + u32 ENDI:1; + u32 Res3:2; + u32 F:3; + u32 O:3; + u32 BUS:1; + u32 DAU:1; + u32 ARS:1; + u32 SM:1; + u32 E_D:1; + u32 M:3; + + } controlr; + u32 IHR; //14h + u32 ILR; //18h + u32 K1HR; //1c + u32 K1LR; // + u32 K2HR; + u32 K2LR; + u32 K3HR; + u32 K3LR; //30h + u32 IVHR; //34h + u32 IVLR; //38 + u32 OHR; //3c + u32 OLR; //40 +}; + +struct aes_t { + struct aes_controlr { + + u32 KRE:1; + u32 reserved1:4; + u32 PNK:1; + u32 GO:1; + u32 STP:1; + + u32 reserved2:6; + u32 NDC:1; + u32 ENDI:1; + u32 reserved3:2; + + u32 F:3; //fbs + u32 O:3; //om + u32 BUS:1; //bsy + u32 DAU:1; + u32 ARS:1; + u32 SM:1; + u32 E_D:1; + u32 KV:1; + u32 K:2; //KL + + } controlr; + u32 ID3R; //80h + u32 ID2R; //84h + u32 ID1R; //88h + u32 ID0R; //8Ch + u32 K7R; //90h + u32 K6R; //94h + u32 K5R; //98h + u32 K4R; //9Ch + u32 K3R; //A0h + u32 K2R; //A4h + u32 K1R; //A8h + u32 K0R; //ACh + u32 IV3R; //B0h + u32 IV2R; //B4h + u32 IV1R; //B8h + u32 IV0R; //BCh + u32 OD3R; //D4h + u32 OD2R; //D8h + u32 OD1R; //DCh + u32 OD0R; //E0h +}; + +struct deu_hash_t { + struct hash_controlr { + u32 reserved1:5; + u32 KHS:1; + u32 GO:1; + u32 INIT:1; + u32 reserved2:6; + u32 NDC:1; + u32 ENDI:1; + u32 reserved3:7; + u32 DGRY:1; + u32 BSY:1; + u32 reserved4:1; + u32 IRCL:1; + u32 SM:1; + u32 KYUE:1; + u32 HMEN:1; + u32 SSEN:1; + u32 ALGO:1; + + } controlr; + u32 MR; //B4h + u32 D1R; //B8h + u32 D2R; //BCh + u32 D3R; //C0h + u32 D4R; //C4h + u32 D5R; //C8h + + u32 dummy; //CCh + + u32 KIDX; //D0h + u32 KEY; //D4h + u32 DBN; //D8h +}; + +struct deu_dma_t { + struct dma_controlr { + u32 reserved1:22; + u32 BS:2; + u32 BSY:1; + u32 reserved2:1; + u32 ALGO:2; + u32 RXCLS:2; + u32 reserved3:1; + u32 EN:1; + + } controlr; +}; + +#endif /* IFXMIPS_DEU_DANUBE_H */ diff --git a/package/kernel/lantiq/ltq-deu/src/ifxmips_deu_dma.c b/package/kernel/lantiq/ltq-deu/src/ifxmips_deu_dma.c new file mode 100644 index 0000000..13dc921 --- /dev/null +++ b/package/kernel/lantiq/ltq-deu/src/ifxmips_deu_dma.c @@ -0,0 +1,42 @@ +/****************************************************************************** +** +** FILE NAME : ifxmips_deu_dma.c +** PROJECT : IFX UEIP +** MODULES : DEU Module for Danube +** +** DATE : September 8, 2009 +** AUTHOR : Mohammad Firdaus +** DESCRIPTION : Data Encryption Unit Driver +** COPYRIGHT : Copyright (c) 2009 +** Infineon Technologies AG +** Am Campeon 1-12, 85579 Neubiberg, Germany +** +** This program is free software; you can redistribute it and/or modify +** it under the terms of the GNU General Public License as published by +** the Free Software Foundation; either version 2 of the License, or +** (at your option) any later version. +** +** HISTORY +** $Date $Author $Comment +** 08 Sept 2009 Mohammad Firdaus Initial UEIP release +*******************************************************************************/ +/*! + \defgroup IFX_DEU IFX_DEU_DRIVERS + \ingroup IFX_API + \brief ifx deu driver module +*/ + +/*! + \file ifxmips_deu_dma.c + \ingroup IFX_DEU + \brief DMA deu driver file +*/ + +/*! + \defgroup IFX_DMA_FUNCTIONS IFX_DMA_FUNCTIONS + \ingroup IFX_DEU + \brief deu-dma driver functions +*/ + +/* Project header files */ + diff --git a/package/kernel/lantiq/ltq-deu/src/ifxmips_deu_dma.h b/package/kernel/lantiq/ltq-deu/src/ifxmips_deu_dma.h new file mode 100644 index 0000000..5198a4a --- /dev/null +++ b/package/kernel/lantiq/ltq-deu/src/ifxmips_deu_dma.h @@ -0,0 +1,69 @@ +/****************************************************************************** +** +** FILE NAME : ifxmips_deu_dma.h +** DESCRIPTION : Data Encryption Unit Driver +** COPYRIGHT : Copyright (c) 2009 +** Infineon Technologies AG +** Am Campeon 1-12, 85579 Neubiberg, Germany +** +** This program is free software; you can redistribute it and/or modify +** it under the terms of the GNU General Public License as published by +** the Free Software Foundation; either version 2 of the License, or +** (at your option) any later version. +** +** HISTORY +** $Date $Author $Comment +** 08,Sept 2009 Mohammad Firdaus Initial UEIP release +*******************************************************************************/ + +/*! + \addtogroup IFX_DEU IFX_DEU_DRIVERS + \ingroup API + \brief ifx deu driver module +*/ + +/*! + \file ifxmips_deu_dma.h + \ingroup IFX_DEU + \brief DMA deu driver header file +*/ + +#ifndef IFXMIPS_DEU_DMA_H +#define IFXMIPS_DEU_DMA_H + +#include <linux/init.h> +#include <linux/module.h> +#include <linux/mm.h> +#include <linux/crypto.h> +#include <asm/scatterlist.h> +#include <asm/byteorder.h> +#include <linux/skbuff.h> +#include <linux/netdevice.h> + +// must match the size of memory block allocated for g_dma_block and g_dma_block2 +#define DEU_MAX_PACKET_SIZE (PAGE_SIZE >> 1) + +typedef struct ifx_deu_device { + struct dma_device_info *dma_device; + u8 *dst; + u8 *src; + int len; + int dst_count; + int src_count; + int recv_count; + int packet_size; + int packet_num; + wait_queue_t wait; +} _ifx_deu_device; + +extern _ifx_deu_device ifx_deu[1]; + +extern int deu_dma_intr_handler (struct dma_device_info *, int); +extern u8 *deu_dma_buffer_alloc (int, int *, void **); +extern int deu_dma_buffer_free (u8 *, void *); +extern void deu_dma_inactivate_poll(struct dma_device_info* dma_dev); +extern void deu_dma_activate_poll (struct dma_device_info* dma_dev); +extern struct dma_device_info* deu_dma_reserve(struct dma_device_info** dma_device); +extern int deu_dma_release(struct dma_device_info** dma_device); + +#endif /* IFMIPS_DEU_DMA_H */ diff --git a/package/kernel/lantiq/ltq-deu/src/ifxmips_deu_vr9.c b/package/kernel/lantiq/ltq-deu/src/ifxmips_deu_vr9.c new file mode 100644 index 0000000..aaa7bce --- /dev/null +++ b/package/kernel/lantiq/ltq-deu/src/ifxmips_deu_vr9.c @@ -0,0 +1,144 @@ +/****************************************************************************** +** +** FILE NAME : ifxmips_deu_vr9.c +** PROJECT : IFX UEIP +** MODULES : DEU Module for VR9 +** +** DATE : September 8, 2009 +** AUTHOR : Mohammad Firdaus +** DESCRIPTION : Data Encryption Unit Driver +** COPYRIGHT : Copyright (c) 2009 +** Infineon Technologies AG +** Am Campeon 1-12, 85579 Neubiberg, Germany +** +** This program is free software; you can redistribute it and/or modify +** it under the terms of the GNU General Public License as published by +** the Free Software Foundation; either version 2 of the License, or +** (at your option) any later version. +** +** HISTORY +** $Date $Author $Comment +** 08,Sept 2009 Mohammad Firdaus Initial UEIP release +*******************************************************************************/ + +/*! + \defgroup IFX_DEU IFX_DEU_DRIVERS + \ingroup API + \brief deu driver module +*/ + +/*! + \file ifxmips_deu_vr9.c + \ingroup IFX_DEU + \brief board specific deu driver file for vr9 +*/ + +/*! + \defgroup BOARD_SPECIFIC_FUNCTIONS IFX_BOARD_SPECIFIC_FUNCTIONS + \ingroup IFX_DEU + \brief board specific deu driver functions +*/ + +/* Project header files */ +#include <linux/module.h> +#include <linux/init.h> +#include <linux/types.h> +#include <linux/errno.h> +#include <asm/io.h> //dma_cache_inv + +#include "ifxmips_deu_dma.h" +#include "ifxmips_deu_vr9.h" + +/* Function decleration */ +void aes_chip_init (void); +void des_chip_init (void); +int deu_dma_init (void); +void deu_dma_priv_init(void); +u32 endian_swap(u32 input); +u32* memory_alignment(const u8 *arg, u32 *buff_alloc, int in_out, int nbytes); +void aes_dma_memory_copy(u32 *outcopy, u32 *out_dma, u8 *out_arg, int nbytes); +void des_dma_memory_copy(u32 *outcopy, u32 *out_dma, u8 *out_arg, int nbytes); +void __exit ifxdeu_fini_dma(void); + +#define DES_3DES_START IFX_DES_CON +#define AES_START IFX_AES_CON + +/* Variables */ + +u8 *g_dma_page_ptr = NULL; +u8 *g_dma_block = NULL; +u8 *g_dma_block2 = NULL; + +deu_drv_priv_t deu_dma_priv; + + +/*! \fn u32 endian_swap(u32 input) + * \ingroup BOARD_SPECIFIC_FUNCTIONS + * \brief Swap data given to the function + * \param input Data input to be swapped + * \return either the swapped data or the input data depending on whether it is in DMA mode or FPI mode +*/ + + +u32 endian_swap(u32 input) +{ + return input; +} + +/*! \fn u32 input_swap(u32 input) + * \ingroup BOARD_SPECIFIC_FUNCTIONS + * \brief Not used + * \return input +*/ + +u32 input_swap(u32 input) +{ + return input; +} + +/*! \fn void aes_chip_init (void) + * \ingroup BOARD_SPECIFIC_FUNCTIONS + * \brief initialize AES hardware +*/ + +void aes_chip_init (void) +{ + volatile struct aes_t *aes = (struct aes_t *) AES_START; + + // start crypto engine with write to ILR + aes->controlr.SM = 1; + aes->controlr.NDC = 0; + asm("sync"); + aes->controlr.ENDI = 1; + asm("sync"); + aes->controlr.ARS = 0; + +} + +/*! \fn void des_chip_init (void) + * \ingroup IFX_AES_FUNCTIONS + * \brief initialize DES hardware +*/ + +void des_chip_init (void) +{ + volatile struct des_t *des = (struct des_t *) DES_3DES_START; + + // start crypto engine with write to ILR + des->controlr.SM = 1; + des->controlr.NDC = 1; + asm("sync"); + des->controlr.ENDI = 1; + asm("sync"); + des->controlr.ARS = 0; + +} +/*! \fn void chip_version(void) + * \ingroup IFX_DES_FUNCTIONS + * \brief function not used in VR9 +*/ +void chip_version(void) +{ + return; +} + diff --git a/package/kernel/lantiq/ltq-deu/src/ifxmips_deu_vr9.h b/package/kernel/lantiq/ltq-deu/src/ifxmips_deu_vr9.h new file mode 100644 index 0000000..d2cfd11 --- /dev/null +++ b/package/kernel/lantiq/ltq-deu/src/ifxmips_deu_vr9.h @@ -0,0 +1,324 @@ +/****************************************************************************** +** +** FILE NAME : ifxmips_deu_vr9.h +** PROJECT : IFX UEIP +** MODULES : DEU Module for VR9 +** +** DATE : September 8, 2009 +** AUTHOR : Mohammad Firdaus +** DESCRIPTION : Data Encryption Unit Driver +** COPYRIGHT : Copyright (c) 2009 +** Infineon Technologies AG +** Am Campeon 1-12, 85579 Neubiberg, Germany +** +** This program is free software; you can redistribute it and/or modify +** it under the terms of the GNU General Public License as published by +** the Free Software Foundation; either version 2 of the License, or +** (at your option) any later version. +** +** HISTORY +** $Date $Author $Comment +** 08,Sept 2009 Mohammad Firdaus Initial UEIP release +*******************************************************************************/ +/*! + \defgroup IFX_DEU IFX_DEU_DRIVERS + \ingroup API + \brief deu driver module +*/ + +/*! + \file ifxmips_deu_vr9.h + \ingroup IFX_DEU + \brief board specific deu driver header file for vr9 +*/ + +/*! + \defgroup IFX_DEU_DEFINITIONS IFX_DEU_DEFINITIONS + \brief deu driver header file +*/ + + +#ifndef IFXMIPS_DEU_VR9_H +#define IFXMIPS_DEU_VR9_H + +/* Project Header Files */ +#include <linux/version.h> +#include <linux/module.h> +#include <linux/init.h> +#include <linux/types.h> +#include <linux/errno.h> +#include <linux/crypto.h> +#include <linux/interrupt.h> +#include <linux/delay.h> +#include <asm/byteorder.h> +#include <crypto/algapi.h> +#include <linux/module.h> +#include <linux/mm.h> +#include <asm/scatterlist.h> +#include <linux/skbuff.h> +#include <linux/netdevice.h> +#include "ifxmips_deu.h" + + +#define AES_INIT 1 +#define DES_INIT 2 +#define ARC4_INIT 3 +#define SHA1_INIT 4 +#define MD5_INIT 5 +#define SHA1_HMAC_INIT 6 +#define MD5_HMAC_INIT 7 + +#define AES_START IFX_AES_CON +#define DES_3DES_START IFX_DES_CON + +#if 0 +#define AES_IDLE 0 +#define AES_BUSY 1 +#define AES_STARTED 2 +#define AES_COMPLETED 3 +#define DES_IDLE 0 +#define DES_BUSY 1 +#define DES_STARTED 2 +#define DES_COMPLETED 3 +#endif + +/* SHA1 CONSTANT */ +#define HASH_CON_VALUE 0x0701002C + +#define INPUT_ENDIAN_SWAP(input) input_swap(input) +#define DEU_ENDIAN_SWAP(input) endian_swap(input) +#define FIND_DEU_CHIP_VERSION chip_version() + +#if defined (CONFIG_AR10) +#define DELAY_PERIOD 30 +#else +#define DELAY_PERIOD 10 +#endif + +#define WAIT_AES_DMA_READY() \ + do { \ + int i; \ + volatile struct deu_dma_t *dma = (struct deu_dma_t *) IFX_DEU_DMA_CON; \ + volatile struct aes_t *aes = (volatile struct aes_t *) AES_START; \ + for (i = 0; i < 10; i++) \ + udelay(DELAY_PERIOD); \ + while (dma->controlr.BSY) {}; \ + while (aes->controlr.BUS) {}; \ + } while (0) + +#define WAIT_DES_DMA_READY() \ + do { \ + int i; \ + volatile struct deu_dma_t *dma = (struct deu_dma_t *) IFX_DEU_DMA_CON; \ + volatile struct des_t *des = (struct des_t *) DES_3DES_START; \ + for (i = 0; i < 10; i++) \ + udelay(DELAY_PERIOD); \ + while (dma->controlr.BSY) {}; \ + while (des->controlr.BUS) {}; \ + } while (0) + +#define AES_DMA_MISC_CONFIG() \ + do { \ + volatile struct aes_t *aes = (volatile struct aes_t *) AES_START; \ + aes->controlr.KRE = 1; \ + aes->controlr.GO = 1; \ + } while(0) + +#define SHA_HASH_INIT \ + do { \ + volatile struct deu_hash_t *hash = (struct deu_hash_t *) HASH_START; \ + hash->controlr.ENDI = 1; \ + hash->controlr.SM = 1; \ + hash->controlr.ALGO = 0; \ + hash->controlr.INIT = 1; \ + } while(0) + +#define MD5_HASH_INIT \ + do { \ + volatile struct deu_hash_t *hash = (struct deu_hash_t *) HASH_START; \ + hash->controlr.ENDI = 1; \ + hash->controlr.SM = 1; \ + hash->controlr.ALGO = 1; \ + hash->controlr.INIT = 1; \ + } while(0) + +/* DEU Common Structures for AR9*/ + +struct clc_controlr_t { + u32 Res:26; + u32 FSOE:1; + u32 SBWE:1; + u32 EDIS:1; + u32 SPEN:1; + u32 DISS:1; + u32 DISR:1; + +}; + +struct des_t { + struct des_controlr { //10h + u32 KRE:1; + u32 reserved1:5; + u32 GO:1; + u32 STP:1; + u32 Res2:6; + u32 NDC:1; + u32 ENDI:1; + u32 Res3:2; + u32 F:3; + u32 O:3; + u32 BUS:1; + u32 DAU:1; + u32 ARS:1; + u32 SM:1; + u32 E_D:1; + u32 M:3; + + } controlr; + u32 IHR; //14h + u32 ILR; //18h + u32 K1HR; //1c + u32 K1LR; // + u32 K2HR; + u32 K2LR; + u32 K3HR; + u32 K3LR; //30h + u32 IVHR; //34h + u32 IVLR; //38 + u32 OHR; //3c + u32 OLR; //40 +}; + +struct aes_t { + struct aes_controlr { + + u32 KRE:1; + u32 reserved1:4; + u32 PNK:1; + u32 GO:1; + u32 STP:1; + u32 reserved2:6; + u32 NDC:1; + u32 ENDI:1; + u32 reserved3:2; + u32 F:3; //fbs + u32 O:3; //om + u32 BUS:1; //bsy + u32 DAU:1; + u32 ARS:1; + u32 SM:1; + u32 E_D:1; + u32 KV:1; + u32 K:2; //KL + + } controlr; + u32 ID3R; //80h + u32 ID2R; //84h + u32 ID1R; //88h + u32 ID0R; //8Ch + u32 K7R; //90h + u32 K6R; //94h + u32 K5R; //98h + u32 K4R; //9Ch + u32 K3R; //A0h + u32 K2R; //A4h + u32 K1R; //A8h + u32 K0R; //ACh + u32 IV3R; //B0h + u32 IV2R; //B4h + u32 IV1R; //B8h + u32 IV0R; //BCh + u32 OD3R; //D4h + u32 OD2R; //D8h + u32 OD1R; //DCh + u32 OD0R; //E0h +}; + +struct arc4_t { + struct arc4_controlr { + + u32 KRE:1; + u32 KLEN:4; + u32 KSAE:1; + u32 GO:1; + u32 STP:1; + u32 reserved1:6; + u32 NDC:1; + u32 ENDI:1; + u32 reserved2:8; + u32 BUS:1; //bsy + u32 reserved3:1; + u32 ARS:1; + u32 SM:1; + u32 reserved4:4; + + } controlr; + u32 K3R; //104h + u32 K2R; //108h + u32 K1R; //10Ch + u32 K0R; //110h + + u32 IDLEN; //114h + + u32 ID3R; //118h + u32 ID2R; //11Ch + u32 ID1R; //120h + u32 ID0R; //124h + + u32 OD3R; //128h + u32 OD2R; //12Ch + u32 OD1R; //130h + u32 OD0R; //134h +}; + +struct deu_hash_t { + struct hash_controlr { + u32 reserved1:5; + u32 KHS:1; + u32 GO:1; + u32 INIT:1; + u32 reserved2:6; + u32 NDC:1; + u32 ENDI:1; + u32 reserved3:7; + u32 DGRY:1; + u32 BSY:1; + u32 reserved4:1; + u32 IRCL:1; + u32 SM:1; + u32 KYUE:1; + u32 HMEN:1; + u32 SSEN:1; + u32 ALGO:1; + + } controlr; + u32 MR; //B4h + u32 D1R; //B8h + u32 D2R; //BCh + u32 D3R; //C0h + u32 D4R; //C4h + u32 D5R; //C8h + + u32 dummy; //CCh + + u32 KIDX; //D0h + u32 KEY; //D4h + u32 DBN; //D8h +}; + + +struct deu_dma_t { + struct dma_controlr { + u32 reserved1:22; + u32 BS:2; + u32 BSY:1; + u32 reserved2:1; + u32 ALGO:2; + u32 RXCLS:2; + u32 reserved3:1; + u32 EN:1; + + } controlr; +}; + +#endif /* IFXMIPS_DEU_VR9_H */ diff --git a/package/kernel/lantiq/ltq-deu/src/ifxmips_md5.c b/package/kernel/lantiq/ltq-deu/src/ifxmips_md5.c new file mode 100644 index 0000000..591389f --- /dev/null +++ b/package/kernel/lantiq/ltq-deu/src/ifxmips_md5.c @@ -0,0 +1,310 @@ +/****************************************************************************** +** +** FILE NAME : ifxmips_md5.c +** PROJECT : IFX UEIP +** MODULES : DEU Module for UEIP +** +** DATE : September 8, 2009 +** AUTHOR : Mohammad Firdaus +** DESCRIPTION : Data Encryption Unit Driver +** COPYRIGHT : Copyright (c) 2009 +** Infineon Technologies AG +** Am Campeon 1-12, 85579 Neubiberg, Germany +** +** This program is free software; you can redistribute it and/or modify +** it under the terms of the GNU General Public License as published by +** the Free Software Foundation; either version 2 of the License, or +** (at your option) any later version. +** +** HISTORY +** $Date $Author $Comment +** 08,Sept 2009 Mohammad Firdaus Initial UEIP release +*******************************************************************************/ +/*! + \defgroup IFX_DEU IFX_DEU_DRIVERS + \ingroup API + \brief ifx deu driver module +*/ + +/*! + \file ifxmips_md5.c + \ingroup IFX_DEU + \brief MD5 encryption deu driver file +*/ + +/*! + \defgroup IFX_MD5_FUNCTIONS IFX_MD5_FUNCTIONS + \ingroup IFX_DEU + \brief ifx deu MD5 functions +*/ + +/*Project header files */ +#include <linux/init.h> +#include <linux/module.h> +#include <linux/string.h> +#include <linux/crypto.h> +#include <linux/types.h> +#include <crypto/internal/hash.h> +#include <asm/byteorder.h> + +/* Project header */ +#if defined(CONFIG_DANUBE) +#include "ifxmips_deu_danube.h" +#elif defined(CONFIG_AR9) +#include "ifxmips_deu_ar9.h" +#elif defined(CONFIG_VR9) || defined(CONFIG_AR10) +#include "ifxmips_deu_vr9.h" +#else +#error "Plaform Unknwon!" +#endif + +#define MD5_DIGEST_SIZE 16 +#define MD5_HMAC_BLOCK_SIZE 64 +#define MD5_BLOCK_WORDS 16 +#define MD5_HASH_WORDS 4 +#define HASH_START IFX_HASH_CON + +static spinlock_t lock; +#define CRTCL_SECT_INIT spin_lock_init(&lock) +#define CRTCL_SECT_START spin_lock_irqsave(&lock, flag) +#define CRTCL_SECT_END spin_unlock_irqrestore(&lock, flag) + +//#define CRYPTO_DEBUG +#ifdef CRYPTO_DEBUG +extern char debug_level; +#define DPRINTF(level, format, args...) if (level < debug_level) printk(KERN_INFO "[%s %s %d]: " format, __FILE__, __func__, __LINE__, ##args); +#else +#define DPRINTF(level, format, args...) +#endif + +struct md5_ctx { + int started; + u32 hash[MD5_HASH_WORDS]; + u32 block[MD5_BLOCK_WORDS]; + u64 byte_count; +}; + +extern int disable_deudma; + +/*! \fn static u32 endian_swap(u32 input) + * \ingroup IFX_MD5_FUNCTIONS + * \brief perform dword level endian swap + * \param input value of dword that requires to be swapped +*/ +static u32 endian_swap(u32 input) +{ + u8 *ptr = (u8 *)&input; + + return ((ptr[3] << 24) | (ptr[2] << 16) | (ptr[1] << 8) | ptr[0]); +} + +/*! \fn static void md5_transform(u32 *hash, u32 const *in) + * \ingroup IFX_MD5_FUNCTIONS + * \brief main interface to md5 hardware + * \param hash current hash value + * \param in 64-byte block of input +*/ +static void md5_transform(struct md5_ctx *mctx, u32 *hash, u32 const *in) +{ + int i; + volatile struct deu_hash_t *hashs = (struct deu_hash_t *) HASH_START; + unsigned long flag; + + CRTCL_SECT_START; + + if (mctx->started) { + hashs->D1R = endian_swap(*((u32 *) hash + 0)); + hashs->D2R = endian_swap(*((u32 *) hash + 1)); + hashs->D3R = endian_swap(*((u32 *) hash + 2)); + hashs->D4R = endian_swap(*((u32 *) hash + 3)); + } + + for (i = 0; i < 16; i++) { + hashs->MR = endian_swap(in[i]); +// printk("in[%d]: %08x\n", i, endian_swap(in[i])); + }; + + //wait for processing + while (hashs->controlr.BSY) { + // this will not take long + } + + *((u32 *) hash + 0) = endian_swap (hashs->D1R); + *((u32 *) hash + 1) = endian_swap (hashs->D2R); + *((u32 *) hash + 2) = endian_swap (hashs->D3R); + *((u32 *) hash + 3) = endian_swap (hashs->D4R); + + mctx->started = 1; + + CRTCL_SECT_END; +} + +/*! \fn static inline void md5_transform_helper(struct md5_ctx *ctx) + * \ingroup IFX_MD5_FUNCTIONS + * \brief interfacing function for md5_transform() + * \param ctx crypto context +*/ +static inline void md5_transform_helper(struct md5_ctx *ctx) +{ + //le32_to_cpu_array(ctx->block, sizeof(ctx->block) / sizeof(u32)); + md5_transform(ctx, ctx->hash, ctx->block); +} + +/*! \fn static void md5_init(struct crypto_tfm *tfm) + * \ingroup IFX_MD5_FUNCTIONS + * \brief initialize md5 hardware + * \param tfm linux crypto algo transform +*/ +static int md5_init(struct shash_desc *desc) +{ + struct md5_ctx *mctx = shash_desc_ctx(desc); + volatile struct deu_hash_t *hash = (struct deu_hash_t *) HASH_START; + + hash->controlr.ENDI = 0; + hash->controlr.SM = 1; + hash->controlr.ALGO = 1; // 1 = md5 0 = sha1 + hash->controlr.INIT = 1; // Initialize the hash operation by writing a '1' to the INIT bit. + + mctx->byte_count = 0; + mctx->started = 0; + return 0; +} + +/*! \fn static void md5_update(struct crypto_tfm *tfm, const u8 *data, unsigned int len) + * \ingroup IFX_MD5_FUNCTIONS + * \brief on-the-fly md5 computation + * \param tfm linux crypto algo transform + * \param data input data + * \param len size of input data +*/ +static int md5_update(struct shash_desc *desc, const u8 *data, unsigned int len) +{ + struct md5_ctx *mctx = shash_desc_ctx(desc); + const u32 avail = sizeof(mctx->block) - (mctx->byte_count & 0x3f); + + mctx->byte_count += len; + + if (avail > len) { + memcpy((char *)mctx->block + (sizeof(mctx->block) - avail), + data, len); + return 0; + } + + memcpy((char *)mctx->block + (sizeof(mctx->block) - avail), + data, avail); + + md5_transform_helper(mctx); + data += avail; + len -= avail; + + while (len >= sizeof(mctx->block)) { + memcpy(mctx->block, data, sizeof(mctx->block)); + md5_transform_helper(mctx); + data += sizeof(mctx->block); + len -= sizeof(mctx->block); + } + + memcpy(mctx->block, data, len); + return 0; +} + +/*! \fn static void md5_final(struct crypto_tfm *tfm, u8 *out) + * \ingroup IFX_MD5_FUNCTIONS + * \brief compute final md5 value + * \param tfm linux crypto algo transform + * \param out final md5 output value +*/ +static int md5_final(struct shash_desc *desc, u8 *out) +{ + struct md5_ctx *mctx = shash_desc_ctx(desc); + const unsigned int offset = mctx->byte_count & 0x3f; + char *p = (char *)mctx->block + offset; + int padding = 56 - (offset + 1); + volatile struct deu_hash_t *hashs = (struct deu_hash_t *) HASH_START; + unsigned long flag; + + *p++ = 0x80; + if (padding < 0) { + memset(p, 0x00, padding + sizeof (u64)); + md5_transform_helper(mctx); + p = (char *)mctx->block; + padding = 56; + } + + memset(p, 0, padding); + mctx->block[14] = endian_swap(mctx->byte_count << 3); + mctx->block[15] = endian_swap(mctx->byte_count >> 29); + +#if 0 + le32_to_cpu_array(mctx->block, (sizeof(mctx->block) - + sizeof(u64)) / sizeof(u32)); +#endif + + md5_transform(mctx, mctx->hash, mctx->block); + + CRTCL_SECT_START; + + *((u32 *) out + 0) = endian_swap (hashs->D1R); + *((u32 *) out + 1) = endian_swap (hashs->D2R); + *((u32 *) out + 2) = endian_swap (hashs->D3R); + *((u32 *) out + 3) = endian_swap (hashs->D4R); + + CRTCL_SECT_END; + + // Wipe context + memset(mctx, 0, sizeof(*mctx)); + + return 0; +} + +/* + * \brief MD5 function mappings +*/ +static struct shash_alg ifxdeu_md5_alg = { + .digestsize = MD5_DIGEST_SIZE, + .init = md5_init, + .update = md5_update, + .final = md5_final, + .descsize = sizeof(struct md5_ctx), + .base = { + .cra_name = "md5", + .cra_driver_name= "ifxdeu-md5", + .cra_flags = CRYPTO_ALG_TYPE_DIGEST, + .cra_blocksize = MD5_HMAC_BLOCK_SIZE, + .cra_module = THIS_MODULE, + } +}; + +/*! \fn int __init ifxdeu_init_md5 (void) + * \ingroup IFX_MD5_FUNCTIONS + * \brief initialize md5 driver +*/ +int __init ifxdeu_init_md5 (void) +{ + int ret = -ENOSYS; + + + if ((ret = crypto_register_shash(&ifxdeu_md5_alg))) + goto md5_err; + + CRTCL_SECT_INIT; + + printk (KERN_NOTICE "IFX DEU MD5 initialized%s.\n", disable_deudma ? "" : " (DMA)"); + return ret; + +md5_err: + printk(KERN_ERR "IFX DEU MD5 initialization failed!\n"); + return ret; +} + +/*! \fn void __exit ifxdeu_fini_md5 (void) + * \ingroup IFX_MD5_FUNCTIONS + * \brief unregister md5 driver +*/ + +void __exit ifxdeu_fini_md5 (void) +{ + crypto_unregister_shash(&ifxdeu_md5_alg); + +} + diff --git a/package/kernel/lantiq/ltq-deu/src/ifxmips_md5_hmac.c b/package/kernel/lantiq/ltq-deu/src/ifxmips_md5_hmac.c new file mode 100644 index 0000000..fc6f52e --- /dev/null +++ b/package/kernel/lantiq/ltq-deu/src/ifxmips_md5_hmac.c @@ -0,0 +1,386 @@ +/****************************************************************************** +** +** FILE NAME : ifxmips_md5_hmac.c +** PROJECT : IFX UEIP +** MODULES : DEU Module for UEIP +** +** DATE : September 8, 2009 +** AUTHOR : Mohammad Firdaus +** DESCRIPTION : Data Encryption Unit Driver +** COPYRIGHT : Copyright (c) 2009 +** Infineon Technologies AG +** Am Campeon 1-12, 85579 Neubiberg, Germany +** +** This program is free software; you can redistribute it and/or modify +** it under the terms of the GNU General Public License as published by +** the Free Software Foundation; either version 2 of the License, or +** (at your option) any later version. +** +** HISTORY +** $Date $Author $Comment +** 08,Sept 2009 Mohammad Firdaus Initial UEIP release +** 21,March 2011 Mohammad Firdaus Changes for Kernel 2.6.32 and IPSec integration +*******************************************************************************/ +/*! + \defgroup IFX_DEU IFX_DEU_DRIVERS + \ingroup API + \brief ifx deu driver module +*/ + +/*! + \file ifxmips_md5_hmac.c + \ingroup IFX_DEU + \brief MD5-HMAC encryption deu driver file +*/ + +/*! + \defgroup IFX_MD5_HMAC_FUNCTIONS IFX_MD5_HMAC_FUNCTIONS + \ingroup IFX_DEU + \brief ifx md5-hmac driver functions +*/ + +/* Project Header files */ +#include <linux/init.h> +#include <linux/module.h> +#include <linux/string.h> +#include <linux/crypto.h> +#include <linux/types.h> +#include <crypto/internal/hash.h> +#include <asm/byteorder.h> + +#if defined(CONFIG_AR9) +#include "ifxmips_deu_ar9.h" +#elif defined(CONFIG_VR9) || defined(CONFIG_AR10) +#include "ifxmips_deu_vr9.h" +#else +#error "Plaform Unknwon!" +#endif + +#define MD5_DIGEST_SIZE 16 +#define MD5_HMAC_BLOCK_SIZE 64 +#define MD5_BLOCK_WORDS 16 +#define MD5_HASH_WORDS 4 +#define MD5_HMAC_DBN_TEMP_SIZE 1024 // size in dword, needed for dbn workaround +#define HASH_START IFX_HASH_CON + +static spinlock_t lock; +#define CRTCL_SECT_INIT spin_lock_init(&lock) +#define CRTCL_SECT_START spin_lock_irqsave(&lock, flag) +#define CRTCL_SECT_END spin_unlock_irqrestore(&lock, flag) + +//#define CRYPTO_DEBUG +#ifdef CRYPTO_DEBUG +extern char debug_level; +#define DPRINTF(level, format, args...) if (level < debug_level) printk(KERN_INFO "[%s %s %d]: " format, __FILE__, __func__, __LINE__, ##args); +#else +#define DPRINTF(level, format, args...) +#endif + +#define MAX_HASH_KEYLEN 64 + +struct md5_hmac_ctx { + u8 key[MAX_HASH_KEYLEN]; + u32 hash[MD5_HASH_WORDS]; + u32 block[MD5_BLOCK_WORDS]; + u64 byte_count; + u32 dbn; + unsigned int keylen; +}; + +static u32 temp[MD5_HMAC_DBN_TEMP_SIZE]; + +extern int disable_deudma; + +/*! \fn static u32 endian_swap(u32 input) + * \ingroup IFX_MD5_HMAC_FUNCTIONS + * \brief perform dword level endian swap + * \param input value of dword that requires to be swapped +*/ +static u32 endian_swap(u32 input) +{ + u8 *ptr = (u8 *)&input; + + return ((ptr[3] << 24) | (ptr[2] << 16) | (ptr[1] << 8) | ptr[0]); +} + +/*! \fn static void md5_hmac_transform(struct crypto_tfm *tfm, u32 const *in) + * \ingroup IFX_MD5_HMAC_FUNCTIONS + * \brief save input block to context + * \param tfm linux crypto algo transform + * \param in 64-byte block of input +*/ +static void md5_hmac_transform(struct shash_desc *desc, u32 const *in) +{ + struct md5_hmac_ctx *mctx = crypto_shash_ctx(desc->tfm); + + memcpy(&temp[mctx->dbn<<4], in, 64); //dbn workaround + mctx->dbn += 1; + + if ( (mctx->dbn<<4) > MD5_HMAC_DBN_TEMP_SIZE ) + { + printk("MD5_HMAC_DBN_TEMP_SIZE exceeded\n"); + } + +} + +/*! \fn int md5_hmac_setkey(struct crypto_tfm *tfm, const u8 *key, unsigned int keylen) + * \ingroup IFX_MD5_HMAC_FUNCTIONS + * \brief sets md5 hmac key + * \param tfm linux crypto algo transform + * \param key input key + * \param keylen key length greater than 64 bytes IS NOT SUPPORTED +*/ +static int md5_hmac_setkey(struct crypto_shash *tfm, const u8 *key, unsigned int keylen) +{ + struct md5_hmac_ctx *mctx = crypto_shash_ctx(tfm); + volatile struct deu_hash_t *hash = (struct deu_hash_t *) HASH_START; + //printk("copying keys to context with length %d\n", keylen); + + if (keylen > MAX_HASH_KEYLEN) { + printk("Key length more than what DEU hash can handle\n"); + return -EINVAL; + } + + + hash->KIDX |= 0x80000000; // reset all 16 words of the key to '0' + memcpy(&mctx->key, key, keylen); + mctx->keylen = keylen; + + return 0; + +} + + +/*! \fn int md5_hmac_setkey_hw(const u8 *key, unsigned int keylen) + * \ingroup IFX_MD5_HMAC_FUNCTIONS + * \brief sets md5 hmac key into the hardware registers + * \param key input key + * \param keylen key length greater than 64 bytes IS NOT SUPPORTED +*/ + +static int md5_hmac_setkey_hw(const u8 *key, unsigned int keylen) +{ + volatile struct deu_hash_t *hash = (struct deu_hash_t *) HASH_START; + unsigned long flag; + int i, j; + u32 *in_key = (u32 *)key; + + //printk("\nsetkey keylen: %d\n key: ", keylen); + + CRTCL_SECT_START; + j = 0; + for (i = 0; i < keylen; i+=4) + { + hash->KIDX = j; + asm("sync"); + hash->KEY = *((u32 *) in_key + j); + asm("sync"); + j++; + } + CRTCL_SECT_END; + + return 0; +} + +/*! \fn void md5_hmac_init(struct crypto_tfm *tfm) + * \ingroup IFX_MD5_HMAC_FUNCTIONS + * \brief initialize md5 hmac context + * \param tfm linux crypto algo transform +*/ +static int md5_hmac_init(struct shash_desc *desc) +{ + + struct md5_hmac_ctx *mctx = crypto_shash_ctx(desc->tfm); + + + mctx->dbn = 0; //dbn workaround + md5_hmac_setkey_hw(mctx->key, mctx->keylen); + + return 0; +} +EXPORT_SYMBOL(md5_hmac_init); + +/*! \fn void md5_hmac_update(struct crypto_tfm *tfm, const u8 *data, unsigned int len) + * \ingroup IFX_MD5_HMAC_FUNCTIONS + * \brief on-the-fly md5 hmac computation + * \param tfm linux crypto algo transform + * \param data input data + * \param len size of input data +*/ +static int md5_hmac_update(struct shash_desc *desc, const u8 *data, unsigned int len) +{ + struct md5_hmac_ctx *mctx = crypto_shash_ctx(desc->tfm); + const u32 avail = sizeof(mctx->block) - (mctx->byte_count & 0x3f); + + mctx->byte_count += len; + + if (avail > len) { + memcpy((char *)mctx->block + (sizeof(mctx->block) - avail), + data, len); + return 0; + } + + memcpy((char *)mctx->block + (sizeof(mctx->block) - avail), + data, avail); + + md5_hmac_transform(desc, mctx->block); + data += avail; + len -= avail; + + while (len >= sizeof(mctx->block)) { + memcpy(mctx->block, data, sizeof(mctx->block)); + md5_hmac_transform(desc, mctx->block); + data += sizeof(mctx->block); + len -= sizeof(mctx->block); + } + + memcpy(mctx->block, data, len); + return 0; +} +EXPORT_SYMBOL(md5_hmac_update); + +/*! \fn void md5_hmac_final(struct crypto_tfm *tfm, u8 *out) + * \ingroup IFX_MD5_HMAC_FUNCTIONS + * \brief compute final md5 hmac value + * \param tfm linux crypto algo transform + * \param out final md5 hmac output value +*/ +static int md5_hmac_final(struct shash_desc *desc, u8 *out) +{ + struct md5_hmac_ctx *mctx = crypto_shash_ctx(desc->tfm); + const unsigned int offset = mctx->byte_count & 0x3f; + char *p = (char *)mctx->block + offset; + int padding = 56 - (offset + 1); + volatile struct deu_hash_t *hashs = (struct deu_hash_t *) HASH_START; + unsigned long flag; + int i = 0; + int dbn; + u32 *in = &temp[0]; + + + *p++ = 0x80; + if (padding < 0) { + memset(p, 0x00, padding + sizeof (u64)); + md5_hmac_transform(desc, mctx->block); + p = (char *)mctx->block; + padding = 56; + } + + memset(p, 0, padding); + mctx->block[14] = endian_swap((mctx->byte_count + 64) << 3); // need to add 512 bit of the IPAD operation + mctx->block[15] = 0x00000000; + + md5_hmac_transform(desc, mctx->block); + + CRTCL_SECT_START; + + //printk("\ndbn = %d\n", mctx->dbn); + hashs->DBN = mctx->dbn; + asm("sync"); + + *IFX_HASH_CON = 0x0703002D; //khs, go, init, ndc, endi, kyue, hmen, md5 + + //wait for processing + while (hashs->controlr.BSY) { + // this will not take long + } + + for (dbn = 0; dbn < mctx->dbn; dbn++) + { + for (i = 0; i < 16; i++) { + hashs->MR = in[i]; + }; + + hashs->controlr.GO = 1; + asm("sync"); + + //wait for processing + while (hashs->controlr.BSY) { + // this will not take long + } + + in += 16; +} + + +#if 1 + //wait for digest ready + while (! hashs->controlr.DGRY) { + // this will not take long + } +#endif + + *((u32 *) out + 0) = hashs->D1R; + *((u32 *) out + 1) = hashs->D2R; + *((u32 *) out + 2) = hashs->D3R; + *((u32 *) out + 3) = hashs->D4R; + *((u32 *) out + 4) = hashs->D5R; + + /* reset the context after we finish with the hash */ + mctx->byte_count = 0; + memset(&mctx->hash[0], 0, sizeof(MD5_HASH_WORDS)); + memset(&mctx->block[0], 0, sizeof(MD5_BLOCK_WORDS)); + memset(&temp[0], 0, MD5_HMAC_DBN_TEMP_SIZE); + + CRTCL_SECT_END; + + + return 0; +} + +EXPORT_SYMBOL(md5_hmac_final); + +/* + * \brief MD5_HMAC function mappings +*/ + +static struct shash_alg ifxdeu_md5_hmac_alg = { + .digestsize = MD5_DIGEST_SIZE, + .init = md5_hmac_init, + .update = md5_hmac_update, + .final = md5_hmac_final, + .setkey = md5_hmac_setkey, + .descsize = sizeof(struct md5_hmac_ctx), + .base = { + .cra_name = "hmac(md5)", + .cra_driver_name= "ifxdeu-md5_hmac", + .cra_ctxsize = sizeof(struct md5_hmac_ctx), + .cra_flags = CRYPTO_ALG_TYPE_DIGEST, + .cra_blocksize = MD5_HMAC_BLOCK_SIZE, + .cra_module = THIS_MODULE, + } +}; + +/*! \fn int __init ifxdeu_init_md5_hmac (void) + * \ingroup IFX_MD5_HMAC_FUNCTIONS + * \brief initialize md5 hmac driver +*/ +int __init ifxdeu_init_md5_hmac (void) +{ + + int ret = -ENOSYS; + + + if ((ret = crypto_register_shash(&ifxdeu_md5_hmac_alg))) + goto md5_hmac_err; + + CRTCL_SECT_INIT; + + printk (KERN_NOTICE "IFX DEU MD5_HMAC initialized%s.\n", disable_deudma ? "" : " (DMA)"); + return ret; + +md5_hmac_err: + printk(KERN_ERR "IFX DEU MD5_HMAC initialization failed!\n"); + return ret; +} + +/** \fn void __exit ifxdeu_fini_md5_hmac (void) + * \ingroup IFX_MD5_HMAC_FUNCTIONS + * \brief unregister md5 hmac driver +*/ +void __exit ifxdeu_fini_md5_hmac (void) +{ + crypto_unregister_shash(&ifxdeu_md5_hmac_alg); +} + + diff --git a/package/kernel/lantiq/ltq-deu/src/ifxmips_sha1.c b/package/kernel/lantiq/ltq-deu/src/ifxmips_sha1.c new file mode 100644 index 0000000..a5f5f90 --- /dev/null +++ b/package/kernel/lantiq/ltq-deu/src/ifxmips_sha1.c @@ -0,0 +1,301 @@ +/****************************************************************************** +** +** FILE NAME : ifxmips_sha1.c +** PROJECT : IFX UEIP +** MODULES : DEU Module for Danube +** +** DATE : September 8, 2009 +** AUTHOR : Mohammad Firdaus +** DESCRIPTION : Data Encryption Unit Driver +** COPYRIGHT : Copyright (c) 2009 +** Infineon Technologies AG +** Am Campeon 1-12, 85579 Neubiberg, Germany +** +** This program is free software; you can redistribute it and/or modify +** it under the terms of the GNU General Public License as published by +** the Free Software Foundation; either version 2 of the License, or +** (at your option) any later version. +** +** HISTORY +** $Date $Author $Comment +** 08,Sept 2009 Mohammad Firdaus Initial UEIP release +*******************************************************************************/ +/*! + \defgroup IFX_DEU IFX_DEU_DRIVERS + \ingroup API + \brief ifx deu driver module +*/ + +/*! + \file ifxmips_sha1.c + \ingroup IFX_DEU + \brief SHA1 encryption deu driver file +*/ + +/*! + \defgroup IFX_SHA1_FUNCTIONS IFX_SHA1_FUNCTIONS + \ingroup IFX_DEU + \brief ifx deu sha1 functions +*/ + + +/* Project header */ +#include <linux/init.h> +#include <linux/module.h> +#include <linux/mm.h> +#include <linux/crypto.h> +#include <linux/cryptohash.h> +#include <crypto/sha.h> +#include <crypto/internal/hash.h> +#include <linux/types.h> +#include <asm/scatterlist.h> +#include <asm/byteorder.h> + +#if defined(CONFIG_DANUBE) +#include "ifxmips_deu_danube.h" +#elif defined(CONFIG_AR9) +#include "ifxmips_deu_ar9.h" +#elif defined(CONFIG_VR9) || defined(CONFIG_AR10) +#include "ifxmips_deu_vr9.h" +#else +#error "Plaform Unknwon!" +#endif + +#define SHA1_DIGEST_SIZE 20 +#define SHA1_HMAC_BLOCK_SIZE 64 +#define HASH_START IFX_HASH_CON + +static spinlock_t lock; +#define CRTCL_SECT_INIT spin_lock_init(&lock) +#define CRTCL_SECT_START spin_lock_irqsave(&lock, flag) +#define CRTCL_SECT_END spin_unlock_irqrestore(&lock, flag) + +//#define CRYPTO_DEBUG +#ifdef CRYPTO_DEBUG +extern char debug_level; +#define DPRINTF(level, format, args...) if (level < debug_level) printk(KERN_INFO "[%s %s %d]: " format, __FILE__, __func__, __LINE__, ##args); +#else +#define DPRINTF(level, format, args...) +#endif + +/* + * \brief SHA1 private structure +*/ +struct sha1_ctx { + int started; + u64 count; + u32 hash[5]; + u32 state[5]; + u8 buffer[64]; +}; + +extern int disable_deudma; + + +/*! \fn static void sha1_transform (u32 *state, const u32 *in) + * \ingroup IFX_SHA1_FUNCTIONS + * \brief main interface to sha1 hardware + * \param state current state + * \param in 64-byte block of input +*/ +static void sha1_transform (struct sha1_ctx *sctx, u32 *state, const u32 *in) +{ + int i = 0; + volatile struct deu_hash_t *hashs = (struct deu_hash_t *) HASH_START; + unsigned long flag; + + CRTCL_SECT_START; + + /* For context switching purposes, the previous hash output + * is loaded back into the output register + */ + if (sctx->started) { + hashs->D1R = *((u32 *) sctx->hash + 0); + hashs->D2R = *((u32 *) sctx->hash + 1); + hashs->D3R = *((u32 *) sctx->hash + 2); + hashs->D4R = *((u32 *) sctx->hash + 3); + hashs->D5R = *((u32 *) sctx->hash + 4); + } + + for (i = 0; i < 16; i++) { + hashs->MR = in[i]; + }; + + //wait for processing + while (hashs->controlr.BSY) { + // this will not take long + } + + /* For context switching purposes, the output is saved into a + * context struct which can be used later on + */ + *((u32 *) sctx->hash + 0) = hashs->D1R; + *((u32 *) sctx->hash + 1) = hashs->D2R; + *((u32 *) sctx->hash + 2) = hashs->D3R; + *((u32 *) sctx->hash + 3) = hashs->D4R; + *((u32 *) sctx->hash + 4) = hashs->D5R; + + sctx->started = 1; + + CRTCL_SECT_END; +} + +/*! \fn static void sha1_init(struct crypto_tfm *tfm) + * \ingroup IFX_SHA1_FUNCTIONS + * \brief initialize sha1 hardware + * \param tfm linux crypto algo transform +*/ +static int sha1_init(struct shash_desc *desc) +{ + struct sha1_ctx *sctx = shash_desc_ctx(desc); + + SHA_HASH_INIT; + + sctx->started = 0; + sctx->count = 0; + return 0; +} + +/*! \fn static void sha1_update(struct crypto_tfm *tfm, const u8 *data, unsigned int len) + * \ingroup IFX_SHA1_FUNCTIONS + * \brief on-the-fly sha1 computation + * \param tfm linux crypto algo transform + * \param data input data + * \param len size of input data +*/ +static int sha1_update(struct shash_desc * desc, const u8 *data, + unsigned int len) +{ + struct sha1_ctx *sctx = shash_desc_ctx(desc); + unsigned int i, j; + + j = (sctx->count >> 3) & 0x3f; + sctx->count += len << 3; + + if ((j + len) > 63) { + memcpy (&sctx->buffer[j], data, (i = 64 - j)); + sha1_transform (sctx, sctx->state, (const u32 *)sctx->buffer); + for (; i + 63 < len; i += 64) { + sha1_transform (sctx, sctx->state, (const u32 *)&data[i]); + } + + j = 0; + } + else + i = 0; + + memcpy (&sctx->buffer[j], &data[i], len - i); + return 0; +} + +/*! \fn static void sha1_final(struct crypto_tfm *tfm, u8 *out) + * \ingroup IFX_SHA1_FUNCTIONS + * \brief compute final sha1 value + * \param tfm linux crypto algo transform + * \param out final md5 output value +*/ +static int sha1_final(struct shash_desc *desc, u8 *out) +{ + struct sha1_ctx *sctx = shash_desc_ctx(desc); + u32 index, padlen; + u64 t; + u8 bits[8] = { 0, }; + static const u8 padding[64] = { 0x80, }; + volatile struct deu_hash_t *hashs = (struct deu_hash_t *) HASH_START; + unsigned long flag; + + t = sctx->count; + bits[7] = 0xff & t; + t >>= 8; + bits[6] = 0xff & t; + t >>= 8; + bits[5] = 0xff & t; + t >>= 8; + bits[4] = 0xff & t; + t >>= 8; + bits[3] = 0xff & t; + t >>= 8; + bits[2] = 0xff & t; + t >>= 8; + bits[1] = 0xff & t; + t >>= 8; + bits[0] = 0xff & t; + + /* Pad out to 56 mod 64 */ + index = (sctx->count >> 3) & 0x3f; + padlen = (index < 56) ? (56 - index) : ((64 + 56) - index); + sha1_update (desc, padding, padlen); + + /* Append length */ + sha1_update (desc, bits, sizeof bits); + + CRTCL_SECT_START; + + *((u32 *) out + 0) = hashs->D1R; + *((u32 *) out + 1) = hashs->D2R; + *((u32 *) out + 2) = hashs->D3R; + *((u32 *) out + 3) = hashs->D4R; + *((u32 *) out + 4) = hashs->D5R; + + CRTCL_SECT_END; + + // Wipe context + memset (sctx, 0, sizeof *sctx); + + return 0; +} + +/* + * \brief SHA1 function mappings +*/ +static struct shash_alg ifxdeu_sha1_alg = { + .digestsize = SHA1_DIGEST_SIZE, + .init = sha1_init, + .update = sha1_update, + .final = sha1_final, + .descsize = sizeof(struct sha1_ctx), + .statesize = sizeof(struct sha1_state), + .base = { + .cra_name = "sha1", + .cra_driver_name= "ifxdeu-sha1", + .cra_flags = CRYPTO_ALG_TYPE_DIGEST, + .cra_blocksize = SHA1_HMAC_BLOCK_SIZE, + .cra_module = THIS_MODULE, + } +}; + + +/*! \fn int __init ifxdeu_init_sha1 (void) + * \ingroup IFX_SHA1_FUNCTIONS + * \brief initialize sha1 driver +*/ +int __init ifxdeu_init_sha1 (void) +{ + int ret = -ENOSYS; + + + if ((ret = crypto_register_shash(&ifxdeu_sha1_alg))) + goto sha1_err; + + CRTCL_SECT_INIT; + + printk (KERN_NOTICE "IFX DEU SHA1 initialized%s.\n", disable_deudma ? "" : " (DMA)"); + return ret; + +sha1_err: + printk(KERN_ERR "IFX DEU SHA1 initialization failed!\n"); + return ret; +} + +/*! \fn void __exit ifxdeu_fini_sha1 (void) + * \ingroup IFX_SHA1_FUNCTIONS + * \brief unregister sha1 driver +*/ +void __exit ifxdeu_fini_sha1 (void) +{ + crypto_unregister_shash(&ifxdeu_sha1_alg); + + +} + + diff --git a/package/kernel/lantiq/ltq-deu/src/ifxmips_sha1_hmac.c b/package/kernel/lantiq/ltq-deu/src/ifxmips_sha1_hmac.c new file mode 100644 index 0000000..a5a6c39 --- /dev/null +++ b/package/kernel/lantiq/ltq-deu/src/ifxmips_sha1_hmac.c @@ -0,0 +1,378 @@ +/****************************************************************************** +** +** FILE NAME : ifxmips_sha1_hmac.c +** PROJECT : IFX UEIP +** MODULES : DEU Module for UEIP +** DATE : September 8, 2009 +** AUTHOR : Mohammad Firdaus +** DESCRIPTION : Data Encryption Unit Driver +** COPYRIGHT : Copyright (c) 2009 +** Infineon Technologies AG +** Am Campeon 1-12, 85579 Neubiberg, Germany +** +** This program is free software; you can redistribute it and/or modify +** it under the terms of the GNU General Public License as published by +** the Free Software Foundation; either version 2 of the License, or +** (at your option) any later version. +** +** HISTORY +** $Date $Author $Comment +** 08,Sept 2009 Mohammad Firdaus Initial UEIP release +** 21,March 2011 Mohammad Firdaus Changes for Kernel 2.6.32 and IPSec integration +*******************************************************************************/ +/*! + \defgroup IFX_DEU IFX_DEU_DRIVERS + \ingroup API + \brief ifx deu driver module +*/ + +/*! + \file ifxmips_sha1_hmac.c + \ingroup IFX_DEU + \brief SHA1-HMAC deu driver file +*/ + +/*! + \defgroup IFX_SHA1_HMAC_FUNCTIONS IFX_SHA1_HMAC_FUNCTIONS + \ingroup IFX_DEU + \brief ifx sha1 hmac functions +*/ + + +/* Project header */ +#include <linux/init.h> +#include <linux/module.h> +#include <linux/mm.h> +#include <linux/crypto.h> +#include <linux/cryptohash.h> +#include <crypto/internal/hash.h> +#include <linux/types.h> +#include <asm/scatterlist.h> +#include <asm/byteorder.h> +#include <linux/delay.h> + +#if defined(CONFIG_AR9) +#include "ifxmips_deu_ar9.h" +#elif defined(CONFIG_VR9) || defined(CONFIG_AR10) +#include "ifxmips_deu_vr9.h" +#else +#error "Plaform Unknwon!" +#endif + +#define SHA1_DIGEST_SIZE 20 +#define SHA1_HMAC_BLOCK_SIZE 64 +#define SHA1_HMAC_DBN_TEMP_SIZE 1024 // size in dword, needed for dbn workaround +#define HASH_START IFX_HASH_CON + +#define SHA1_HMAC_MAX_KEYLEN 64 + +static spinlock_t lock; +#define CRTCL_SECT_INIT spin_lock_init(&lock) +#define CRTCL_SECT_START spin_lock_irqsave(&lock, flag) +#define CRTCL_SECT_END spin_unlock_irqrestore(&lock, flag) + +#ifdef CRYPTO_DEBUG +extern char debug_level; +#define DPRINTF(level, format, args...) if (level < debug_level) printk(KERN_INFO "[%s %s %d]: " format, __FILE__, __func__, __LINE__, ##args); +#else +#define DPRINTF(level, format, args...) +#endif + +struct sha1_hmac_ctx { + int keylen; + + u8 buffer[SHA1_HMAC_BLOCK_SIZE]; + u8 key[SHA1_HMAC_MAX_KEYLEN]; + u32 state[5]; + u32 dbn; + u64 count; + +}; + +static u32 temp[SHA1_HMAC_DBN_TEMP_SIZE]; + +extern int disable_deudma; + +/*! \fn static void sha1_hmac_transform(struct crypto_tfm *tfm, u32 const *in) + * \ingroup IFX_SHA1_HMAC_FUNCTIONS + * \brief save input block to context + * \param tfm linux crypto algo transform + * \param in 64-byte block of input +*/ +static int sha1_hmac_transform(struct shash_desc *desc, u32 const *in) +{ + struct sha1_hmac_ctx *sctx = crypto_shash_ctx(desc->tfm); + + memcpy(&temp[sctx->dbn<<4], in, 64); //dbn workaround + sctx->dbn += 1; + + if ( (sctx->dbn<<4) > SHA1_HMAC_DBN_TEMP_SIZE ) + { + printk("SHA1_HMAC_DBN_TEMP_SIZE exceeded\n"); + } + + return 0; +} + +/*! \fn int sha1_hmac_setkey(struct crypto_tfm *tfm, const u8 *key, unsigned int keylen) + * \ingroup IFX_SHA1_HMAC_FUNCTIONS + * \brief sets sha1 hmac key + * \param tfm linux crypto algo transform + * \param key input key + * \param keylen key length greater than 64 bytes IS NOT SUPPORTED +*/ +static int sha1_hmac_setkey(struct crypto_shash *tfm, const u8 *key, unsigned int keylen) +{ + struct sha1_hmac_ctx *sctx = crypto_shash_ctx(tfm); + volatile struct deu_hash_t *hashs = (struct deu_hash_t *) HASH_START; + + if (keylen > SHA1_HMAC_MAX_KEYLEN) { + printk("Key length exceeds maximum key length\n"); + return -EINVAL; + } + + //printk("Setting keys of len: %d\n", keylen); + + hashs->KIDX |= 0x80000000; //reset keys back to 0 + memcpy(&sctx->key, key, keylen); + sctx->keylen = keylen; + + return 0; + +} + + +/*! \fn int sha1_hmac_setkey_hw(struct crypto_tfm *tfm, const u8 *key, unsigned int keylen) + * \ingroup IFX_SHA1_HMAC_FUNCTIONS + * \brief sets sha1 hmac key into hw registers + * \param tfm linux crypto algo transform + * \param key input key + * \param keylen key length greater than 64 bytes IS NOT SUPPORTED +*/ +static int sha1_hmac_setkey_hw(const u8 *key, unsigned int keylen) +{ + volatile struct deu_hash_t *hash = (struct deu_hash_t *) HASH_START; + int i, j; + unsigned long flag; + u32 *in_key = (u32 *)key; + + j = 0; + + CRTCL_SECT_START; + for (i = 0; i < keylen; i+=4) + { + hash->KIDX = j; + asm("sync"); + hash->KEY = *((u32 *) in_key + j); + j++; + } + + CRTCL_SECT_END; + return 0; +} + +/*! \fn void sha1_hmac_init(struct crypto_tfm *tfm) + * \ingroup IFX_SHA1_HMAC_FUNCTIONS + * \brief initialize sha1 hmac context + * \param tfm linux crypto algo transform +*/ +static int sha1_hmac_init(struct shash_desc *desc) +{ + struct sha1_hmac_ctx *sctx = crypto_shash_ctx(desc->tfm); + + //printk("debug ln: %d, fn: %s\n", __LINE__, __func__); + sctx->dbn = 0; //dbn workaround + sha1_hmac_setkey_hw(sctx->key, sctx->keylen); + + return 0; +} + +/*! \fn static void sha1_hmac_update(struct crypto_tfm *tfm, const u8 *data, unsigned int len) + * \ingroup IFX_SHA1_HMAC_FUNCTIONS + * \brief on-the-fly sha1 hmac computation + * \param tfm linux crypto algo transform + * \param data input data + * \param len size of input data +*/ +static int sha1_hmac_update(struct shash_desc *desc, const u8 *data, + unsigned int len) +{ + struct sha1_hmac_ctx *sctx = crypto_shash_ctx(desc->tfm); + unsigned int i, j; + + j = (sctx->count >> 3) & 0x3f; + sctx->count += len << 3; + // printk("sctx->count = %d\n", sctx->count); + + if ((j + len) > 63) { + memcpy (&sctx->buffer[j], data, (i = 64 - j)); + sha1_hmac_transform (desc, (const u32 *)sctx->buffer); + for (; i + 63 < len; i += 64) { + sha1_hmac_transform (desc, (const u32 *)&data[i]); + } + + j = 0; + } + else + i = 0; + + memcpy (&sctx->buffer[j], &data[i], len - i); + return 0; +} + +/*! \fn static void sha1_hmac_final(struct crypto_tfm *tfm, u8 *out) + * \ingroup IFX_SHA1_HMAC_FUNCTIONS + * \brief ompute final sha1 hmac value + * \param tfm linux crypto algo transform + * \param out final sha1 hmac output value +*/ +static int sha1_hmac_final(struct shash_desc *desc, u8 *out) +{ + //struct sha1_hmac_ctx *sctx = shash_desc_ctx(desc); + struct sha1_hmac_ctx *sctx = crypto_shash_ctx(desc->tfm); + u32 index, padlen; + u64 t; + u8 bits[8] = { 0, }; + static const u8 padding[64] = { 0x80, }; + volatile struct deu_hash_t *hashs = (struct deu_hash_t *) HASH_START; + unsigned long flag; + int i = 0; + int dbn; + u32 *in = &temp[0]; + + t = sctx->count + 512; // need to add 512 bit of the IPAD operation + bits[7] = 0xff & t; + t >>= 8; + bits[6] = 0xff & t; + t >>= 8; + bits[5] = 0xff & t; + t >>= 8; + bits[4] = 0xff & t; + t >>= 8; + bits[3] = 0xff & t; + t >>= 8; + bits[2] = 0xff & t; + t >>= 8; + bits[1] = 0xff & t; + t >>= 8; + bits[0] = 0xff & t; + + /* Pad out to 56 mod 64 */ + index = (sctx->count >> 3) & 0x3f; + padlen = (index < 56) ? (56 - index) : ((64 + 56) - index); + sha1_hmac_update (desc, padding, padlen); + + /* Append length */ + sha1_hmac_update (desc, bits, sizeof bits); + + CRTCL_SECT_START; + + hashs->DBN = sctx->dbn; + + //for vr9 change, ENDI = 1 + *IFX_HASH_CON = HASH_CON_VALUE; + + //wait for processing + while (hashs->controlr.BSY) { + // this will not take long + } + + for (dbn = 0; dbn < sctx->dbn; dbn++) + { + for (i = 0; i < 16; i++) { + hashs->MR = in[i]; + }; + + hashs->controlr.GO = 1; + asm("sync"); + + //wait for processing + while (hashs->controlr.BSY) { + // this will not take long + } + + in += 16; +} + + +#if 1 + //wait for digest ready + while (! hashs->controlr.DGRY) { + // this will not take long + } +#endif + + *((u32 *) out + 0) = hashs->D1R; + *((u32 *) out + 1) = hashs->D2R; + *((u32 *) out + 2) = hashs->D3R; + *((u32 *) out + 3) = hashs->D4R; + *((u32 *) out + 4) = hashs->D5R; + + memset(&sctx->buffer[0], 0, SHA1_HMAC_BLOCK_SIZE); + sctx->count = 0; + + //printk("debug ln: %d, fn: %s\n", __LINE__, __func__); + CRTCL_SECT_END; + + + return 0; + +} + +/* + * \brief SHA1-HMAC function mappings +*/ +static struct shash_alg ifxdeu_sha1_hmac_alg = { + .digestsize = SHA1_DIGEST_SIZE, + .init = sha1_hmac_init, + .update = sha1_hmac_update, + .final = sha1_hmac_final, + .setkey = sha1_hmac_setkey, + .descsize = sizeof(struct sha1_hmac_ctx), + .base = { + .cra_name = "hmac(sha1)", + .cra_driver_name= "ifxdeu-sha1_hmac", + .cra_ctxsize = sizeof(struct sha1_hmac_ctx), + .cra_flags = CRYPTO_ALG_TYPE_DIGEST, + .cra_blocksize = SHA1_HMAC_BLOCK_SIZE, + .cra_module = THIS_MODULE, + } + +}; + + +/*! \fn int __init ifxdeu_init_sha1_hmac (void) + * \ingroup IFX_SHA1_HMAC_FUNCTIONS + * \brief initialize sha1 hmac driver +*/ +int __init ifxdeu_init_sha1_hmac (void) +{ + int ret = -ENOSYS; + + + + if ((ret = crypto_register_shash(&ifxdeu_sha1_hmac_alg))) + goto sha1_err; + + CRTCL_SECT_INIT; + + printk (KERN_NOTICE "IFX DEU SHA1_HMAC initialized%s.\n", disable_deudma ? "" : " (DMA)"); + return ret; + +sha1_err: + printk(KERN_ERR "IFX DEU SHA1_HMAC initialization failed!\n"); + return ret; +} + +/*! \fn void __exit ifxdeu_fini_sha1_hmac (void) + * \ingroup IFX_SHA1_HMAC_FUNCTIONS + * \brief unregister sha1 hmac driver +*/ +void __exit ifxdeu_fini_sha1_hmac (void) +{ + + crypto_unregister_shash(&ifxdeu_sha1_hmac_alg); + + +} + diff --git a/package/kernel/lantiq/ltq-deu/src/ifxmips_tcrypt.h b/package/kernel/lantiq/ltq-deu/src/ifxmips_tcrypt.h new file mode 100644 index 0000000..1e7047b --- /dev/null +++ b/package/kernel/lantiq/ltq-deu/src/ifxmips_tcrypt.h @@ -0,0 +1,92 @@ +/* + * Quick & dirty crypto testing module. + * + * This will only exist until we have a better testing mechanism + * (e.g. a char device). + * + * Copyright (c) 2002 James Morris <jmorris@intercode.com.au> + * Copyright (c) 2002 Jean-Francois Dive <jef@linuxbe.org> + * Copyright (c) 2007 Nokia Siemens Networks + * + * This program is free software; you can redistribute it and/or modify it + * under the terms of the GNU General Public License as published by the Free + * Software Foundation; either version 2 of the License, or (at your option) + * any later version. + * + */ +#ifndef _IFXMIPS_CRYPTO_TCRYPT_H +#define _IFXMIPS_CRYPTO_TCRYPT_H + +struct cipher_speed_template { + const char *key; + unsigned int klen; +}; + +struct hash_speed { + unsigned int blen; /* buffer length */ + unsigned int plen; /* per-update length */ +}; + +/* + * DES test vectors. + */ +#define DES3_SPEED_VECTORS 1 +#define CRYPTO_ALG_TYPE_SPEED_TEST 0xB + +static int alg_speed_test(const char *alg, const char *driver, + unsigned int sec, + struct cipher_speed_template *t, + unsigned int tcount, u8 *keysize); + +static struct cipher_speed_template des3_speed_template[] = { + { + .key = "\x01\x23\x45\x67\x89\xab\xcd\xef" + "\x55\x55\x55\x55\x55\x55\x55\x55" + "\xfe\xdc\xba\x98\x76\x54\x32\x10", + .klen = 24, + } +}; + +/* + * Cipher speed tests + */ +static u8 speed_template_8[] = {8, 0}; +static u8 speed_template_24[] = {24, 0}; +static u8 speed_template_8_32[] = {8, 32, 0}; +static u8 speed_template_16_32[] = {16, 32, 0}; +static u8 speed_template_16_24_32[] = {16, 24, 32, 0}; +static u8 speed_template_32_40_48[] = {32, 40, 48, 0}; +static u8 speed_template_32_48_64[] = {32, 48, 64, 0}; + +/* + * Digest speed tests + */ +static struct hash_speed generic_hash_speed_template[] = { + { .blen = 16, .plen = 16, }, + { .blen = 64, .plen = 16, }, + { .blen = 64, .plen = 64, }, + { .blen = 256, .plen = 16, }, + { .blen = 256, .plen = 64, }, + { .blen = 256, .plen = 256, }, + { .blen = 1024, .plen = 16, }, + { .blen = 1024, .plen = 256, }, + { .blen = 1024, .plen = 1024, }, + { .blen = 2048, .plen = 16, }, + { .blen = 2048, .plen = 256, }, + { .blen = 2048, .plen = 1024, }, + { .blen = 2048, .plen = 2048, }, + { .blen = 4096, .plen = 16, }, + { .blen = 4096, .plen = 256, }, + { .blen = 4096, .plen = 1024, }, + { .blen = 4096, .plen = 4096, }, + { .blen = 8192, .plen = 16, }, + { .blen = 8192, .plen = 256, }, + { .blen = 8192, .plen = 1024, }, + { .blen = 8192, .plen = 4096, }, + { .blen = 8192, .plen = 8192, }, + + /* End marker */ + { .blen = 0, .plen = 0, } +}; + +#endif /* _CRYPTO_TCRYPT_H */ diff --git a/package/kernel/lantiq/ltq-deu/src/ifxmips_testmgr.h b/package/kernel/lantiq/ltq-deu/src/ifxmips_testmgr.h new file mode 100644 index 0000000..27fe9a9 --- /dev/null +++ b/package/kernel/lantiq/ltq-deu/src/ifxmips_testmgr.h @@ -0,0 +1,9598 @@ +/* + * Algorithm testing framework and tests. + * + * Copyright (c) 2002 James Morris <jmorris@intercode.com.au> + * Copyright (c) 2002 Jean-Francois Dive <jef@linuxbe.org> + * Copyright (c) 2007 Nokia Siemens Networks + * Copyright (c) 2008 Herbert Xu <herbert@gondor.apana.org.au> + * + * This program is free software; you can redistribute it and/or modify it + * under the terms of the GNU General Public License as published by the Free + * Software Foundation; either version 2 of the License, or (at your option) + * any later version. + * + */ +#ifndef _IFXMIPS_CRYPTO_TESTMGR_H +#define _IFXMIPS_CRYPTO_TESTMGR_H + +#include <linux/netlink.h> +#include <linux/zlib.h> + +#include <crypto/compress.h> + +#define MAX_DIGEST_SIZE 64 +#define MAX_TAP 8 + +#define MAX_KEYLEN 56 +#define MAX_IVLEN 32 + +struct hash_testvec { + /* only used with keyed hash algorithms */ + char *key; + char *plaintext; + char *digest; + unsigned char tap[MAX_TAP]; + unsigned char psize; + unsigned char np; + unsigned char ksize; +}; + +struct cipher_testvec { + char *key; + char *iv; + char *input; + char *result; + unsigned short tap[MAX_TAP]; + int np; + unsigned char fail; + unsigned char wk; /* weak key flag */ + unsigned char klen; + unsigned short ilen; + unsigned short rlen; +}; + +struct aead_testvec { + char *key; + char *iv; + char *input; + char *assoc; + char *result; + unsigned char tap[MAX_TAP]; + unsigned char atap[MAX_TAP]; + int np; + int anp; + unsigned char fail; + unsigned char novrfy; /* ccm dec verification failure expected */ + unsigned char wk; /* weak key flag */ + unsigned char klen; + unsigned short ilen; + unsigned short alen; + unsigned short rlen; +}; + +struct cprng_testvec { + char *key; + char *dt; + char *v; + char *result; + unsigned char klen; + unsigned short dtlen; + unsigned short vlen; + unsigned short rlen; + unsigned short loops; +}; + +static char zeroed_string[48]; + +/* + * MD4 test vectors from RFC1320 + */ +#define MD4_TEST_VECTORS 7 + +static struct hash_testvec md4_tv_template [] = { + { + .plaintext = "", + .digest = "\x31\xd6\xcf\xe0\xd1\x6a\xe9\x31" + "\xb7\x3c\x59\xd7\xe0\xc0\x89\xc0", + }, { + .plaintext = "a", + .psize = 1, + .digest = "\xbd\xe5\x2c\xb3\x1d\xe3\x3e\x46" + "\x24\x5e\x05\xfb\xdb\xd6\xfb\x24", + }, { + .plaintext = "abc", + .psize = 3, + .digest = "\xa4\x48\x01\x7a\xaf\x21\xd8\x52" + "\x5f\xc1\x0a\xe8\x7a\xa6\x72\x9d", + }, { + .plaintext = "message digest", + .psize = 14, + .digest = "\xd9\x13\x0a\x81\x64\x54\x9f\xe8" + "\x18\x87\x48\x06\xe1\xc7\x01\x4b", + }, { + .plaintext = "abcdefghijklmnopqrstuvwxyz", + .psize = 26, + .digest = "\xd7\x9e\x1c\x30\x8a\xa5\xbb\xcd" + "\xee\xa8\xed\x63\xdf\x41\x2d\xa9", + .np = 2, + .tap = { 13, 13 }, + }, { + .plaintext = "ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789", + .psize = 62, + .digest = "\x04\x3f\x85\x82\xf2\x41\xdb\x35" + "\x1c\xe6\x27\xe1\x53\xe7\xf0\xe4", + }, { + .plaintext = "123456789012345678901234567890123456789012345678901234567890123" + "45678901234567890", + .psize = 80, + .digest = "\xe3\x3b\x4d\xdc\x9c\x38\xf2\x19" + "\x9c\x3e\x7b\x16\x4f\xcc\x05\x36", + }, +}; + +/* + * MD5 test vectors from RFC1321 + */ +#define MD5_TEST_VECTORS 7 + +static struct hash_testvec md5_tv_template[] = { + { + .digest = "\xd4\x1d\x8c\xd9\x8f\x00\xb2\x04" + "\xe9\x80\x09\x98\xec\xf8\x42\x7e", + }, { + .plaintext = "a", + .psize = 1, + .digest = "\x0c\xc1\x75\xb9\xc0\xf1\xb6\xa8" + "\x31\xc3\x99\xe2\x69\x77\x26\x61", + }, { + .plaintext = "abc", + .psize = 3, + .digest = "\x90\x01\x50\x98\x3c\xd2\x4f\xb0" + "\xd6\x96\x3f\x7d\x28\xe1\x7f\x72", + }, { + .plaintext = "message digest", + .psize = 14, + .digest = "\xf9\x6b\x69\x7d\x7c\xb7\x93\x8d" + "\x52\x5a\x2f\x31\xaa\xf1\x61\xd0", + }, { + .plaintext = "abcdefghijklmnopqrstuvwxyz", + .psize = 26, + .digest = "\xc3\xfc\xd3\xd7\x61\x92\xe4\x00" + "\x7d\xfb\x49\x6c\xca\x67\xe1\x3b", + .np = 2, + .tap = {13, 13} + }, { + .plaintext = "ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789", + .psize = 62, + .digest = "\xd1\x74\xab\x98\xd2\x77\xd9\xf5" + "\xa5\x61\x1c\x2c\x9f\x41\x9d\x9f", + }, { + .plaintext = "12345678901234567890123456789012345678901234567890123456789012" + "345678901234567890", + .psize = 80, + .digest = "\x57\xed\xf4\xa2\x2b\xe3\xc9\x55" + "\xac\x49\xda\x2e\x21\x07\xb6\x7a", + } + +}; + +/* + * RIPEMD-128 test vectors from ISO/IEC 10118-3:2004(E) + */ +#define RMD128_TEST_VECTORS 10 + +static struct hash_testvec rmd128_tv_template[] = { + { + .digest = "\xcd\xf2\x62\x13\xa1\x50\xdc\x3e" + "\xcb\x61\x0f\x18\xf6\xb3\x8b\x46", + }, { + .plaintext = "a", + .psize = 1, + .digest = "\x86\xbe\x7a\xfa\x33\x9d\x0f\xc7" + "\xcf\xc7\x85\xe7\x2f\x57\x8d\x33", + }, { + .plaintext = "abc", + .psize = 3, + .digest = "\xc1\x4a\x12\x19\x9c\x66\xe4\xba" + "\x84\x63\x6b\x0f\x69\x14\x4c\x77", + }, { + .plaintext = "message digest", + .psize = 14, + .digest = "\x9e\x32\x7b\x3d\x6e\x52\x30\x62" + "\xaf\xc1\x13\x2d\x7d\xf9\xd1\xb8", + }, { + .plaintext = "abcdefghijklmnopqrstuvwxyz", + .psize = 26, + .digest = "\xfd\x2a\xa6\x07\xf7\x1d\xc8\xf5" + "\x10\x71\x49\x22\xb3\x71\x83\x4e", + }, { + .plaintext = "ABCDEFGHIJKLMNOPQRSTUVWXYZabcde" + "fghijklmnopqrstuvwxyz0123456789", + .psize = 62, + .digest = "\xd1\xe9\x59\xeb\x17\x9c\x91\x1f" + "\xae\xa4\x62\x4c\x60\xc5\xc7\x02", + }, { + .plaintext = "1234567890123456789012345678901234567890" + "1234567890123456789012345678901234567890", + .psize = 80, + .digest = "\x3f\x45\xef\x19\x47\x32\xc2\xdb" + "\xb2\xc4\xa2\xc7\x69\x79\x5f\xa3", + }, { + .plaintext = "abcdbcdecdefdefgefghfghighij" + "hijkijkljklmklmnlmnomnopnopq", + .psize = 56, + .digest = "\xa1\xaa\x06\x89\xd0\xfa\xfa\x2d" + "\xdc\x22\xe8\x8b\x49\x13\x3a\x06", + .np = 2, + .tap = { 28, 28 }, + }, { + .plaintext = "abcdefghbcdefghicdefghijdefghijkefghijklfghi" + "jklmghijklmnhijklmnoijklmnopjklmnopqklmnopqr" + "lmnopqrsmnopqrstnopqrstu", + .psize = 112, + .digest = "\xd4\xec\xc9\x13\xe1\xdf\x77\x6b" + "\xf4\x8d\xe9\xd5\x5b\x1f\x25\x46", + }, { + .plaintext = "abcdbcdecdefdefgefghfghighijhijk", + .psize = 32, + .digest = "\x13\xfc\x13\xe8\xef\xff\x34\x7d" + "\xe1\x93\xff\x46\xdb\xac\xcf\xd4", + } +}; + +/* + * RIPEMD-160 test vectors from ISO/IEC 10118-3:2004(E) + */ +#define RMD160_TEST_VECTORS 10 + +static struct hash_testvec rmd160_tv_template[] = { + { + .digest = "\x9c\x11\x85\xa5\xc5\xe9\xfc\x54\x61\x28" + "\x08\x97\x7e\xe8\xf5\x48\xb2\x25\x8d\x31", + }, { + .plaintext = "a", + .psize = 1, + .digest = "\x0b\xdc\x9d\x2d\x25\x6b\x3e\xe9\xda\xae" + "\x34\x7b\xe6\xf4\xdc\x83\x5a\x46\x7f\xfe", + }, { + .plaintext = "abc", + .psize = 3, + .digest = "\x8e\xb2\x08\xf7\xe0\x5d\x98\x7a\x9b\x04" + "\x4a\x8e\x98\xc6\xb0\x87\xf1\x5a\x0b\xfc", + }, { + .plaintext = "message digest", + .psize = 14, + .digest = "\x5d\x06\x89\xef\x49\xd2\xfa\xe5\x72\xb8" + "\x81\xb1\x23\xa8\x5f\xfa\x21\x59\x5f\x36", + }, { + .plaintext = "abcdefghijklmnopqrstuvwxyz", + .psize = 26, + .digest = "\xf7\x1c\x27\x10\x9c\x69\x2c\x1b\x56\xbb" + "\xdc\xeb\x5b\x9d\x28\x65\xb3\x70\x8d\xbc", + }, { + .plaintext = "ABCDEFGHIJKLMNOPQRSTUVWXYZabcde" + "fghijklmnopqrstuvwxyz0123456789", + .psize = 62, + .digest = "\xb0\xe2\x0b\x6e\x31\x16\x64\x02\x86\xed" + "\x3a\x87\xa5\x71\x30\x79\xb2\x1f\x51\x89", + }, { + .plaintext = "1234567890123456789012345678901234567890" + "1234567890123456789012345678901234567890", + .psize = 80, + .digest = "\x9b\x75\x2e\x45\x57\x3d\x4b\x39\xf4\xdb" + "\xd3\x32\x3c\xab\x82\xbf\x63\x32\x6b\xfb", + }, { + .plaintext = "abcdbcdecdefdefgefghfghighij" + "hijkijkljklmklmnlmnomnopnopq", + .psize = 56, + .digest = "\x12\xa0\x53\x38\x4a\x9c\x0c\x88\xe4\x05" + "\xa0\x6c\x27\xdc\xf4\x9a\xda\x62\xeb\x2b", + .np = 2, + .tap = { 28, 28 }, + }, { + .plaintext = "abcdefghbcdefghicdefghijdefghijkefghijklfghi" + "jklmghijklmnhijklmnoijklmnopjklmnopqklmnopqr" + "lmnopqrsmnopqrstnopqrstu", + .psize = 112, + .digest = "\x6f\x3f\xa3\x9b\x6b\x50\x3c\x38\x4f\x91" + "\x9a\x49\xa7\xaa\x5c\x2c\x08\xbd\xfb\x45", + }, { + .plaintext = "abcdbcdecdefdefgefghfghighijhijk", + .psize = 32, + .digest = "\x94\xc2\x64\x11\x54\x04\xe6\x33\x79\x0d" + "\xfc\xc8\x7b\x58\x7d\x36\x77\x06\x7d\x9f", + } +}; + +/* + * RIPEMD-256 test vectors + */ +#define RMD256_TEST_VECTORS 8 + +static struct hash_testvec rmd256_tv_template[] = { + { + .digest = "\x02\xba\x4c\x4e\x5f\x8e\xcd\x18" + "\x77\xfc\x52\xd6\x4d\x30\xe3\x7a" + "\x2d\x97\x74\xfb\x1e\x5d\x02\x63" + "\x80\xae\x01\x68\xe3\xc5\x52\x2d", + }, { + .plaintext = "a", + .psize = 1, + .digest = "\xf9\x33\x3e\x45\xd8\x57\xf5\xd9" + "\x0a\x91\xba\xb7\x0a\x1e\xba\x0c" + "\xfb\x1b\xe4\xb0\x78\x3c\x9a\xcf" + "\xcd\x88\x3a\x91\x34\x69\x29\x25", + }, { + .plaintext = "abc", + .psize = 3, + .digest = "\xaf\xbd\x6e\x22\x8b\x9d\x8c\xbb" + "\xce\xf5\xca\x2d\x03\xe6\xdb\xa1" + "\x0a\xc0\xbc\x7d\xcb\xe4\x68\x0e" + "\x1e\x42\xd2\xe9\x75\x45\x9b\x65", + }, { + .plaintext = "message digest", + .psize = 14, + .digest = "\x87\xe9\x71\x75\x9a\x1c\xe4\x7a" + "\x51\x4d\x5c\x91\x4c\x39\x2c\x90" + "\x18\xc7\xc4\x6b\xc1\x44\x65\x55" + "\x4a\xfc\xdf\x54\xa5\x07\x0c\x0e", + }, { + .plaintext = "abcdefghijklmnopqrstuvwxyz", + .psize = 26, + .digest = "\x64\x9d\x30\x34\x75\x1e\xa2\x16" + "\x77\x6b\xf9\xa1\x8a\xcc\x81\xbc" + "\x78\x96\x11\x8a\x51\x97\x96\x87" + "\x82\xdd\x1f\xd9\x7d\x8d\x51\x33", + }, { + .plaintext = "ABCDEFGHIJKLMNOPQRSTUVWXYZabcde" + "fghijklmnopqrstuvwxyz0123456789", + .psize = 62, + .digest = "\x57\x40\xa4\x08\xac\x16\xb7\x20" + "\xb8\x44\x24\xae\x93\x1c\xbb\x1f" + "\xe3\x63\xd1\xd0\xbf\x40\x17\xf1" + "\xa8\x9f\x7e\xa6\xde\x77\xa0\xb8", + }, { + .plaintext = "1234567890123456789012345678901234567890" + "1234567890123456789012345678901234567890", + .psize = 80, + .digest = "\x06\xfd\xcc\x7a\x40\x95\x48\xaa" + "\xf9\x13\x68\xc0\x6a\x62\x75\xb5" + "\x53\xe3\xf0\x99\xbf\x0e\xa4\xed" + "\xfd\x67\x78\xdf\x89\xa8\x90\xdd", + }, { + .plaintext = "abcdbcdecdefdefgefghfghighij" + "hijkijkljklmklmnlmnomnopnopq", + .psize = 56, + .digest = "\x38\x43\x04\x55\x83\xaa\xc6\xc8" + "\xc8\xd9\x12\x85\x73\xe7\xa9\x80" + "\x9a\xfb\x2a\x0f\x34\xcc\xc3\x6e" + "\xa9\xe7\x2f\x16\xf6\x36\x8e\x3f", + .np = 2, + .tap = { 28, 28 }, + } +}; + +/* + * RIPEMD-320 test vectors + */ +#define RMD320_TEST_VECTORS 8 + +static struct hash_testvec rmd320_tv_template[] = { + { + .digest = "\x22\xd6\x5d\x56\x61\x53\x6c\xdc\x75\xc1" + "\xfd\xf5\xc6\xde\x7b\x41\xb9\xf2\x73\x25" + "\xeb\xc6\x1e\x85\x57\x17\x7d\x70\x5a\x0e" + "\xc8\x80\x15\x1c\x3a\x32\xa0\x08\x99\xb8", + }, { + .plaintext = "a", + .psize = 1, + .digest = "\xce\x78\x85\x06\x38\xf9\x26\x58\xa5\xa5" + "\x85\x09\x75\x79\x92\x6d\xda\x66\x7a\x57" + "\x16\x56\x2c\xfc\xf6\xfb\xe7\x7f\x63\x54" + "\x2f\x99\xb0\x47\x05\xd6\x97\x0d\xff\x5d", + }, { + .plaintext = "abc", + .psize = 3, + .digest = "\xde\x4c\x01\xb3\x05\x4f\x89\x30\xa7\x9d" + "\x09\xae\x73\x8e\x92\x30\x1e\x5a\x17\x08" + "\x5b\xef\xfd\xc1\xb8\xd1\x16\x71\x3e\x74" + "\xf8\x2f\xa9\x42\xd6\x4c\xdb\xc4\x68\x2d", + }, { + .plaintext = "message digest", + .psize = 14, + .digest = "\x3a\x8e\x28\x50\x2e\xd4\x5d\x42\x2f\x68" + "\x84\x4f\x9d\xd3\x16\xe7\xb9\x85\x33\xfa" + "\x3f\x2a\x91\xd2\x9f\x84\xd4\x25\xc8\x8d" + "\x6b\x4e\xff\x72\x7d\xf6\x6a\x7c\x01\x97", + }, { + .plaintext = "abcdefghijklmnopqrstuvwxyz", + .psize = 26, + .digest = "\xca\xbd\xb1\x81\x0b\x92\x47\x0a\x20\x93" + "\xaa\x6b\xce\x05\x95\x2c\x28\x34\x8c\xf4" + "\x3f\xf6\x08\x41\x97\x51\x66\xbb\x40\xed" + "\x23\x40\x04\xb8\x82\x44\x63\xe6\xb0\x09", + }, { + .plaintext = "ABCDEFGHIJKLMNOPQRSTUVWXYZabcde" + "fghijklmnopqrstuvwxyz0123456789", + .psize = 62, + .digest = "\xed\x54\x49\x40\xc8\x6d\x67\xf2\x50\xd2" + "\x32\xc3\x0b\x7b\x3e\x57\x70\xe0\xc6\x0c" + "\x8c\xb9\xa4\xca\xfe\x3b\x11\x38\x8a\xf9" + "\x92\x0e\x1b\x99\x23\x0b\x84\x3c\x86\xa4", + }, { + .plaintext = "1234567890123456789012345678901234567890" + "1234567890123456789012345678901234567890", + .psize = 80, + .digest = "\x55\x78\x88\xaf\x5f\x6d\x8e\xd6\x2a\xb6" + "\x69\x45\xc6\xd2\xa0\xa4\x7e\xcd\x53\x41" + "\xe9\x15\xeb\x8f\xea\x1d\x05\x24\x95\x5f" + "\x82\x5d\xc7\x17\xe4\xa0\x08\xab\x2d\x42", + }, { + .plaintext = "abcdbcdecdefdefgefghfghighij" + "hijkijkljklmklmnlmnomnopnopq", + .psize = 56, + .digest = "\xd0\x34\xa7\x95\x0c\xf7\x22\x02\x1b\xa4" + "\xb8\x4d\xf7\x69\xa5\xde\x20\x60\xe2\x59" + "\xdf\x4c\x9b\xb4\xa4\x26\x8c\x0e\x93\x5b" + "\xbc\x74\x70\xa9\x69\xc9\xd0\x72\xa1\xac", + .np = 2, + .tap = { 28, 28 }, + } +}; + +/* + * SHA1 test vectors from from FIPS PUB 180-1 + */ +#define SHA1_TEST_VECTORS 2 + +static struct hash_testvec sha1_tv_template[] = { + { + .plaintext = "abc", + .psize = 3, + .digest = "\xa9\x99\x3e\x36\x47\x06\x81\x6a\xba\x3e" + "\x25\x71\x78\x50\xc2\x6c\x9c\xd0\xd8\x9d", + }, { + .plaintext = "abcdbcdecdefdefgefghfghighijhijkijkljklmklmnlmnomnopnopq", + .psize = 56, + .digest = "\x84\x98\x3e\x44\x1c\x3b\xd2\x6e\xba\xae" + "\x4a\xa1\xf9\x51\x29\xe5\xe5\x46\x70\xf1", + .np = 2, + .tap = { 28, 28 } + } +}; + + +/* + * SHA224 test vectors from from FIPS PUB 180-2 + */ +#define SHA224_TEST_VECTORS 2 + +static struct hash_testvec sha224_tv_template[] = { + { + .plaintext = "abc", + .psize = 3, + .digest = "\x23\x09\x7D\x22\x34\x05\xD8\x22" + "\x86\x42\xA4\x77\xBD\xA2\x55\xB3" + "\x2A\xAD\xBC\xE4\xBD\xA0\xB3\xF7" + "\xE3\x6C\x9D\xA7", + }, { + .plaintext = + "abcdbcdecdefdefgefghfghighijhijkijkljklmklmnlmnomnopnopq", + .psize = 56, + .digest = "\x75\x38\x8B\x16\x51\x27\x76\xCC" + "\x5D\xBA\x5D\xA1\xFD\x89\x01\x50" + "\xB0\xC6\x45\x5C\xB4\xF5\x8B\x19" + "\x52\x52\x25\x25", + .np = 2, + .tap = { 28, 28 } + } +}; + +/* + * SHA256 test vectors from from NIST + */ +#define SHA256_TEST_VECTORS 2 + +static struct hash_testvec sha256_tv_template[] = { + { + .plaintext = "abc", + .psize = 3, + .digest = "\xba\x78\x16\xbf\x8f\x01\xcf\xea" + "\x41\x41\x40\xde\x5d\xae\x22\x23" + "\xb0\x03\x61\xa3\x96\x17\x7a\x9c" + "\xb4\x10\xff\x61\xf2\x00\x15\xad", + }, { + .plaintext = "abcdbcdecdefdefgefghfghighijhijkijkljklmklmnlmnomnopnopq", + .psize = 56, + .digest = "\x24\x8d\x6a\x61\xd2\x06\x38\xb8" + "\xe5\xc0\x26\x93\x0c\x3e\x60\x39" + "\xa3\x3c\xe4\x59\x64\xff\x21\x67" + "\xf6\xec\xed\xd4\x19\xdb\x06\xc1", + .np = 2, + .tap = { 28, 28 } + }, +}; + +/* + * SHA384 test vectors from from NIST and kerneli + */ +#define SHA384_TEST_VECTORS 4 + +static struct hash_testvec sha384_tv_template[] = { + { + .plaintext= "abc", + .psize = 3, + .digest = "\xcb\x00\x75\x3f\x45\xa3\x5e\x8b" + "\xb5\xa0\x3d\x69\x9a\xc6\x50\x07" + "\x27\x2c\x32\xab\x0e\xde\xd1\x63" + "\x1a\x8b\x60\x5a\x43\xff\x5b\xed" + "\x80\x86\x07\x2b\xa1\xe7\xcc\x23" + "\x58\xba\xec\xa1\x34\xc8\x25\xa7", + }, { + .plaintext = "abcdbcdecdefdefgefghfghighijhijkijkljklmklmnlmnomnopnopq", + .psize = 56, + .digest = "\x33\x91\xfd\xdd\xfc\x8d\xc7\x39" + "\x37\x07\xa6\x5b\x1b\x47\x09\x39" + "\x7c\xf8\xb1\xd1\x62\xaf\x05\xab" + "\xfe\x8f\x45\x0d\xe5\xf3\x6b\xc6" + "\xb0\x45\x5a\x85\x20\xbc\x4e\x6f" + "\x5f\xe9\x5b\x1f\xe3\xc8\x45\x2b", + }, { + .plaintext = "abcdefghbcdefghicdefghijdefghijkefghijklfghijklmghijklmn" + "hijklmnoijklmnopjklmnopqklmnopqrlmnopqrsmnopqrstnopqrstu", + .psize = 112, + .digest = "\x09\x33\x0c\x33\xf7\x11\x47\xe8" + "\x3d\x19\x2f\xc7\x82\xcd\x1b\x47" + "\x53\x11\x1b\x17\x3b\x3b\x05\xd2" + "\x2f\xa0\x80\x86\xe3\xb0\xf7\x12" + "\xfc\xc7\xc7\x1a\x55\x7e\x2d\xb9" + "\x66\xc3\xe9\xfa\x91\x74\x60\x39", + }, { + .plaintext = "abcdefghijklmnopqrstuvwxyzabcdefghijklmnopqrstuvwxyzabcd" + "efghijklmnopqrstuvwxyzabcdefghijklmnopqrstuvwxyz", + .psize = 104, + .digest = "\x3d\x20\x89\x73\xab\x35\x08\xdb" + "\xbd\x7e\x2c\x28\x62\xba\x29\x0a" + "\xd3\x01\x0e\x49\x78\xc1\x98\xdc" + "\x4d\x8f\xd0\x14\xe5\x82\x82\x3a" + "\x89\xe1\x6f\x9b\x2a\x7b\xbc\x1a" + "\xc9\x38\xe2\xd1\x99\xe8\xbe\xa4", + .np = 4, + .tap = { 26, 26, 26, 26 } + }, +}; + +/* + * SHA512 test vectors from from NIST and kerneli + */ +#define SHA512_TEST_VECTORS 4 + +static struct hash_testvec sha512_tv_template[] = { + { + .plaintext = "abc", + .psize = 3, + .digest = "\xdd\xaf\x35\xa1\x93\x61\x7a\xba" + "\xcc\x41\x73\x49\xae\x20\x41\x31" + "\x12\xe6\xfa\x4e\x89\xa9\x7e\xa2" + "\x0a\x9e\xee\xe6\x4b\x55\xd3\x9a" + "\x21\x92\x99\x2a\x27\x4f\xc1\xa8" + "\x36\xba\x3c\x23\xa3\xfe\xeb\xbd" + "\x45\x4d\x44\x23\x64\x3c\xe8\x0e" + "\x2a\x9a\xc9\x4f\xa5\x4c\xa4\x9f", + }, { + .plaintext = "abcdbcdecdefdefgefghfghighijhijkijkljklmklmnlmnomnopnopq", + .psize = 56, + .digest = "\x20\x4a\x8f\xc6\xdd\xa8\x2f\x0a" + "\x0c\xed\x7b\xeb\x8e\x08\xa4\x16" + "\x57\xc1\x6e\xf4\x68\xb2\x28\xa8" + "\x27\x9b\xe3\x31\xa7\x03\xc3\x35" + "\x96\xfd\x15\xc1\x3b\x1b\x07\xf9" + "\xaa\x1d\x3b\xea\x57\x78\x9c\xa0" + "\x31\xad\x85\xc7\xa7\x1d\xd7\x03" + "\x54\xec\x63\x12\x38\xca\x34\x45", + }, { + .plaintext = "abcdefghbcdefghicdefghijdefghijkefghijklfghijklmghijklmn" + "hijklmnoijklmnopjklmnopqklmnopqrlmnopqrsmnopqrstnopqrstu", + .psize = 112, + .digest = "\x8e\x95\x9b\x75\xda\xe3\x13\xda" + "\x8c\xf4\xf7\x28\x14\xfc\x14\x3f" + "\x8f\x77\x79\xc6\xeb\x9f\x7f\xa1" + "\x72\x99\xae\xad\xb6\x88\x90\x18" + "\x50\x1d\x28\x9e\x49\x00\xf7\xe4" + "\x33\x1b\x99\xde\xc4\xb5\x43\x3a" + "\xc7\xd3\x29\xee\xb6\xdd\x26\x54" + "\x5e\x96\xe5\x5b\x87\x4b\xe9\x09", + }, { + .plaintext = "abcdefghijklmnopqrstuvwxyzabcdefghijklmnopqrstuvwxyzabcd" + "efghijklmnopqrstuvwxyzabcdefghijklmnopqrstuvwxyz", + .psize = 104, + .digest = "\x93\x0d\x0c\xef\xcb\x30\xff\x11" + "\x33\xb6\x89\x81\x21\xf1\xcf\x3d" + "\x27\x57\x8a\xfc\xaf\xe8\x67\x7c" + "\x52\x57\xcf\x06\x99\x11\xf7\x5d" + "\x8f\x58\x31\xb5\x6e\xbf\xda\x67" + "\xb2\x78\xe6\x6d\xff\x8b\x84\xfe" + "\x2b\x28\x70\xf7\x42\xa5\x80\xd8" + "\xed\xb4\x19\x87\x23\x28\x50\xc9", + .np = 4, + .tap = { 26, 26, 26, 26 } + }, +}; + + +/* + * WHIRLPOOL test vectors from Whirlpool package + * by Vincent Rijmen and Paulo S. L. M. Barreto as part of the NESSIE + * submission + */ +#define WP512_TEST_VECTORS 8 + +static struct hash_testvec wp512_tv_template[] = { + { + .plaintext = "", + .psize = 0, + .digest = "\x19\xFA\x61\xD7\x55\x22\xA4\x66" + "\x9B\x44\xE3\x9C\x1D\x2E\x17\x26" + "\xC5\x30\x23\x21\x30\xD4\x07\xF8" + "\x9A\xFE\xE0\x96\x49\x97\xF7\xA7" + "\x3E\x83\xBE\x69\x8B\x28\x8F\xEB" + "\xCF\x88\xE3\xE0\x3C\x4F\x07\x57" + "\xEA\x89\x64\xE5\x9B\x63\xD9\x37" + "\x08\xB1\x38\xCC\x42\xA6\x6E\xB3", + + + }, { + .plaintext = "a", + .psize = 1, + .digest = "\x8A\xCA\x26\x02\x79\x2A\xEC\x6F" + "\x11\xA6\x72\x06\x53\x1F\xB7\xD7" + "\xF0\xDF\xF5\x94\x13\x14\x5E\x69" + "\x73\xC4\x50\x01\xD0\x08\x7B\x42" + "\xD1\x1B\xC6\x45\x41\x3A\xEF\xF6" + "\x3A\x42\x39\x1A\x39\x14\x5A\x59" + "\x1A\x92\x20\x0D\x56\x01\x95\xE5" + "\x3B\x47\x85\x84\xFD\xAE\x23\x1A", + }, { + .plaintext = "abc", + .psize = 3, + .digest = "\x4E\x24\x48\xA4\xC6\xF4\x86\xBB" + "\x16\xB6\x56\x2C\x73\xB4\x02\x0B" + "\xF3\x04\x3E\x3A\x73\x1B\xCE\x72" + "\x1A\xE1\xB3\x03\xD9\x7E\x6D\x4C" + "\x71\x81\xEE\xBD\xB6\xC5\x7E\x27" + "\x7D\x0E\x34\x95\x71\x14\xCB\xD6" + "\xC7\x97\xFC\x9D\x95\xD8\xB5\x82" + "\xD2\x25\x29\x20\x76\xD4\xEE\xF5", + }, { + .plaintext = "message digest", + .psize = 14, + .digest = "\x37\x8C\x84\xA4\x12\x6E\x2D\xC6" + "\xE5\x6D\xCC\x74\x58\x37\x7A\xAC" + "\x83\x8D\x00\x03\x22\x30\xF5\x3C" + "\xE1\xF5\x70\x0C\x0F\xFB\x4D\x3B" + "\x84\x21\x55\x76\x59\xEF\x55\xC1" + "\x06\xB4\xB5\x2A\xC5\xA4\xAA\xA6" + "\x92\xED\x92\x00\x52\x83\x8F\x33" + "\x62\xE8\x6D\xBD\x37\xA8\x90\x3E", + }, { + .plaintext = "abcdefghijklmnopqrstuvwxyz", + .psize = 26, + .digest = "\xF1\xD7\x54\x66\x26\x36\xFF\xE9" + "\x2C\x82\xEB\xB9\x21\x2A\x48\x4A" + "\x8D\x38\x63\x1E\xAD\x42\x38\xF5" + "\x44\x2E\xE1\x3B\x80\x54\xE4\x1B" + "\x08\xBF\x2A\x92\x51\xC3\x0B\x6A" + "\x0B\x8A\xAE\x86\x17\x7A\xB4\xA6" + "\xF6\x8F\x67\x3E\x72\x07\x86\x5D" + "\x5D\x98\x19\xA3\xDB\xA4\xEB\x3B", + }, { + .plaintext = "ABCDEFGHIJKLMNOPQRSTUVWXYZ" + "abcdefghijklmnopqrstuvwxyz0123456789", + .psize = 62, + .digest = "\xDC\x37\xE0\x08\xCF\x9E\xE6\x9B" + "\xF1\x1F\x00\xED\x9A\xBA\x26\x90" + "\x1D\xD7\xC2\x8C\xDE\xC0\x66\xCC" + "\x6A\xF4\x2E\x40\xF8\x2F\x3A\x1E" + "\x08\xEB\xA2\x66\x29\x12\x9D\x8F" + "\xB7\xCB\x57\x21\x1B\x92\x81\xA6" + "\x55\x17\xCC\x87\x9D\x7B\x96\x21" + "\x42\xC6\x5F\x5A\x7A\xF0\x14\x67", + }, { + .plaintext = "1234567890123456789012345678901234567890" + "1234567890123456789012345678901234567890", + .psize = 80, + .digest = "\x46\x6E\xF1\x8B\xAB\xB0\x15\x4D" + "\x25\xB9\xD3\x8A\x64\x14\xF5\xC0" + "\x87\x84\x37\x2B\xCC\xB2\x04\xD6" + "\x54\x9C\x4A\xFA\xDB\x60\x14\x29" + "\x4D\x5B\xD8\xDF\x2A\x6C\x44\xE5" + "\x38\xCD\x04\x7B\x26\x81\xA5\x1A" + "\x2C\x60\x48\x1E\x88\xC5\xA2\x0B" + "\x2C\x2A\x80\xCF\x3A\x9A\x08\x3B", + }, { + .plaintext = "abcdbcdecdefdefgefghfghighijhijk", + .psize = 32, + .digest = "\x2A\x98\x7E\xA4\x0F\x91\x70\x61" + "\xF5\xD6\xF0\xA0\xE4\x64\x4F\x48" + "\x8A\x7A\x5A\x52\xDE\xEE\x65\x62" + "\x07\xC5\x62\xF9\x88\xE9\x5C\x69" + "\x16\xBD\xC8\x03\x1B\xC5\xBE\x1B" + "\x7B\x94\x76\x39\xFE\x05\x0B\x56" + "\x93\x9B\xAA\xA0\xAD\xFF\x9A\xE6" + "\x74\x5B\x7B\x18\x1C\x3B\xE3\xFD", + }, +}; + +#define WP384_TEST_VECTORS 8 + +static struct hash_testvec wp384_tv_template[] = { + { + .plaintext = "", + .psize = 0, + .digest = "\x19\xFA\x61\xD7\x55\x22\xA4\x66" + "\x9B\x44\xE3\x9C\x1D\x2E\x17\x26" + "\xC5\x30\x23\x21\x30\xD4\x07\xF8" + "\x9A\xFE\xE0\x96\x49\x97\xF7\xA7" + "\x3E\x83\xBE\x69\x8B\x28\x8F\xEB" + "\xCF\x88\xE3\xE0\x3C\x4F\x07\x57", + + + }, { + .plaintext = "a", + .psize = 1, + .digest = "\x8A\xCA\x26\x02\x79\x2A\xEC\x6F" + "\x11\xA6\x72\x06\x53\x1F\xB7\xD7" + "\xF0\xDF\xF5\x94\x13\x14\x5E\x69" + "\x73\xC4\x50\x01\xD0\x08\x7B\x42" + "\xD1\x1B\xC6\x45\x41\x3A\xEF\xF6" + "\x3A\x42\x39\x1A\x39\x14\x5A\x59", + }, { + .plaintext = "abc", + .psize = 3, + .digest = "\x4E\x24\x48\xA4\xC6\xF4\x86\xBB" + "\x16\xB6\x56\x2C\x73\xB4\x02\x0B" + "\xF3\x04\x3E\x3A\x73\x1B\xCE\x72" + "\x1A\xE1\xB3\x03\xD9\x7E\x6D\x4C" + "\x71\x81\xEE\xBD\xB6\xC5\x7E\x27" + "\x7D\x0E\x34\x95\x71\x14\xCB\xD6", + }, { + .plaintext = "message digest", + .psize = 14, + .digest = "\x37\x8C\x84\xA4\x12\x6E\x2D\xC6" + "\xE5\x6D\xCC\x74\x58\x37\x7A\xAC" + "\x83\x8D\x00\x03\x22\x30\xF5\x3C" + "\xE1\xF5\x70\x0C\x0F\xFB\x4D\x3B" + "\x84\x21\x55\x76\x59\xEF\x55\xC1" + "\x06\xB4\xB5\x2A\xC5\xA4\xAA\xA6", + }, { + .plaintext = "abcdefghijklmnopqrstuvwxyz", + .psize = 26, + .digest = "\xF1\xD7\x54\x66\x26\x36\xFF\xE9" + "\x2C\x82\xEB\xB9\x21\x2A\x48\x4A" + "\x8D\x38\x63\x1E\xAD\x42\x38\xF5" + "\x44\x2E\xE1\x3B\x80\x54\xE4\x1B" + "\x08\xBF\x2A\x92\x51\xC3\x0B\x6A" + "\x0B\x8A\xAE\x86\x17\x7A\xB4\xA6", + }, { + .plaintext = "ABCDEFGHIJKLMNOPQRSTUVWXYZ" + "abcdefghijklmnopqrstuvwxyz0123456789", + .psize = 62, + .digest = "\xDC\x37\xE0\x08\xCF\x9E\xE6\x9B" + "\xF1\x1F\x00\xED\x9A\xBA\x26\x90" + "\x1D\xD7\xC2\x8C\xDE\xC0\x66\xCC" + "\x6A\xF4\x2E\x40\xF8\x2F\x3A\x1E" + "\x08\xEB\xA2\x66\x29\x12\x9D\x8F" + "\xB7\xCB\x57\x21\x1B\x92\x81\xA6", + }, { + .plaintext = "1234567890123456789012345678901234567890" + "1234567890123456789012345678901234567890", + .psize = 80, + .digest = "\x46\x6E\xF1\x8B\xAB\xB0\x15\x4D" + "\x25\xB9\xD3\x8A\x64\x14\xF5\xC0" + "\x87\x84\x37\x2B\xCC\xB2\x04\xD6" + "\x54\x9C\x4A\xFA\xDB\x60\x14\x29" + "\x4D\x5B\xD8\xDF\x2A\x6C\x44\xE5" + "\x38\xCD\x04\x7B\x26\x81\xA5\x1A", + }, { + .plaintext = "abcdbcdecdefdefgefghfghighijhijk", + .psize = 32, + .digest = "\x2A\x98\x7E\xA4\x0F\x91\x70\x61" + "\xF5\xD6\xF0\xA0\xE4\x64\x4F\x48" + "\x8A\x7A\x5A\x52\xDE\xEE\x65\x62" + "\x07\xC5\x62\xF9\x88\xE9\x5C\x69" + "\x16\xBD\xC8\x03\x1B\xC5\xBE\x1B" + "\x7B\x94\x76\x39\xFE\x05\x0B\x56", + }, +}; + +#define WP256_TEST_VECTORS 8 + +static struct hash_testvec wp256_tv_template[] = { + { + .plaintext = "", + .psize = 0, + .digest = "\x19\xFA\x61\xD7\x55\x22\xA4\x66" + "\x9B\x44\xE3\x9C\x1D\x2E\x17\x26" + "\xC5\x30\x23\x21\x30\xD4\x07\xF8" + "\x9A\xFE\xE0\x96\x49\x97\xF7\xA7", + + + }, { + .plaintext = "a", + .psize = 1, + .digest = "\x8A\xCA\x26\x02\x79\x2A\xEC\x6F" + "\x11\xA6\x72\x06\x53\x1F\xB7\xD7" + "\xF0\xDF\xF5\x94\x13\x14\x5E\x69" + "\x73\xC4\x50\x01\xD0\x08\x7B\x42", + }, { + .plaintext = "abc", + .psize = 3, + .digest = "\x4E\x24\x48\xA4\xC6\xF4\x86\xBB" + "\x16\xB6\x56\x2C\x73\xB4\x02\x0B" + "\xF3\x04\x3E\x3A\x73\x1B\xCE\x72" + "\x1A\xE1\xB3\x03\xD9\x7E\x6D\x4C", + }, { + .plaintext = "message digest", + .psize = 14, + .digest = "\x37\x8C\x84\xA4\x12\x6E\x2D\xC6" + "\xE5\x6D\xCC\x74\x58\x37\x7A\xAC" + "\x83\x8D\x00\x03\x22\x30\xF5\x3C" + "\xE1\xF5\x70\x0C\x0F\xFB\x4D\x3B", + }, { + .plaintext = "abcdefghijklmnopqrstuvwxyz", + .psize = 26, + .digest = "\xF1\xD7\x54\x66\x26\x36\xFF\xE9" + "\x2C\x82\xEB\xB9\x21\x2A\x48\x4A" + "\x8D\x38\x63\x1E\xAD\x42\x38\xF5" + "\x44\x2E\xE1\x3B\x80\x54\xE4\x1B", + }, { + .plaintext = "ABCDEFGHIJKLMNOPQRSTUVWXYZ" + "abcdefghijklmnopqrstuvwxyz0123456789", + .psize = 62, + .digest = "\xDC\x37\xE0\x08\xCF\x9E\xE6\x9B" + "\xF1\x1F\x00\xED\x9A\xBA\x26\x90" + "\x1D\xD7\xC2\x8C\xDE\xC0\x66\xCC" + "\x6A\xF4\x2E\x40\xF8\x2F\x3A\x1E", + }, { + .plaintext = "1234567890123456789012345678901234567890" + "1234567890123456789012345678901234567890", + .psize = 80, + .digest = "\x46\x6E\xF1\x8B\xAB\xB0\x15\x4D" + "\x25\xB9\xD3\x8A\x64\x14\xF5\xC0" + "\x87\x84\x37\x2B\xCC\xB2\x04\xD6" + "\x54\x9C\x4A\xFA\xDB\x60\x14\x29", + }, { + .plaintext = "abcdbcdecdefdefgefghfghighijhijk", + .psize = 32, + .digest = "\x2A\x98\x7E\xA4\x0F\x91\x70\x61" + "\xF5\xD6\xF0\xA0\xE4\x64\x4F\x48" + "\x8A\x7A\x5A\x52\xDE\xEE\x65\x62" + "\x07\xC5\x62\xF9\x88\xE9\x5C\x69", + }, +}; + +/* + * TIGER test vectors from Tiger website + */ +#define TGR192_TEST_VECTORS 6 + +static struct hash_testvec tgr192_tv_template[] = { + { + .plaintext = "", + .psize = 0, + .digest = "\x24\xf0\x13\x0c\x63\xac\x93\x32" + "\x16\x16\x6e\x76\xb1\xbb\x92\x5f" + "\xf3\x73\xde\x2d\x49\x58\x4e\x7a", + }, { + .plaintext = "abc", + .psize = 3, + .digest = "\xf2\x58\xc1\xe8\x84\x14\xab\x2a" + "\x52\x7a\xb5\x41\xff\xc5\xb8\xbf" + "\x93\x5f\x7b\x95\x1c\x13\x29\x51", + }, { + .plaintext = "Tiger", + .psize = 5, + .digest = "\x9f\x00\xf5\x99\x07\x23\x00\xdd" + "\x27\x6a\xbb\x38\xc8\xeb\x6d\xec" + "\x37\x79\x0c\x11\x6f\x9d\x2b\xdf", + }, { + .plaintext = "ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789+-", + .psize = 64, + .digest = "\x87\xfb\x2a\x90\x83\x85\x1c\xf7" + "\x47\x0d\x2c\xf8\x10\xe6\xdf\x9e" + "\xb5\x86\x44\x50\x34\xa5\xa3\x86", + }, { + .plaintext = "ABCDEFGHIJKLMNOPQRSTUVWXYZ=abcdefghijklmnopqrstuvwxyz+0123456789", + .psize = 64, + .digest = "\x46\x7d\xb8\x08\x63\xeb\xce\x48" + "\x8d\xf1\xcd\x12\x61\x65\x5d\xe9" + "\x57\x89\x65\x65\x97\x5f\x91\x97", + }, { + .plaintext = "Tiger - A Fast New Hash Function, " + "by Ross Anderson and Eli Biham, " + "proceedings of Fast Software Encryption 3, " + "Cambridge, 1996.", + .psize = 125, + .digest = "\x3d\x9a\xeb\x03\xd1\xbd\x1a\x63" + "\x57\xb2\x77\x4d\xfd\x6d\x5b\x24" + "\xdd\x68\x15\x1d\x50\x39\x74\xfc", + }, +}; + +#define TGR160_TEST_VECTORS 6 + +static struct hash_testvec tgr160_tv_template[] = { + { + .plaintext = "", + .psize = 0, + .digest = "\x24\xf0\x13\x0c\x63\xac\x93\x32" + "\x16\x16\x6e\x76\xb1\xbb\x92\x5f" + "\xf3\x73\xde\x2d", + }, { + .plaintext = "abc", + .psize = 3, + .digest = "\xf2\x58\xc1\xe8\x84\x14\xab\x2a" + "\x52\x7a\xb5\x41\xff\xc5\xb8\xbf" + "\x93\x5f\x7b\x95", + }, { + .plaintext = "Tiger", + .psize = 5, + .digest = "\x9f\x00\xf5\x99\x07\x23\x00\xdd" + "\x27\x6a\xbb\x38\xc8\xeb\x6d\xec" + "\x37\x79\x0c\x11", + }, { + .plaintext = "ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789+-", + .psize = 64, + .digest = "\x87\xfb\x2a\x90\x83\x85\x1c\xf7" + "\x47\x0d\x2c\xf8\x10\xe6\xdf\x9e" + "\xb5\x86\x44\x50", + }, { + .plaintext = "ABCDEFGHIJKLMNOPQRSTUVWXYZ=abcdefghijklmnopqrstuvwxyz+0123456789", + .psize = 64, + .digest = "\x46\x7d\xb8\x08\x63\xeb\xce\x48" + "\x8d\xf1\xcd\x12\x61\x65\x5d\xe9" + "\x57\x89\x65\x65", + }, { + .plaintext = "Tiger - A Fast New Hash Function, " + "by Ross Anderson and Eli Biham, " + "proceedings of Fast Software Encryption 3, " + "Cambridge, 1996.", + .psize = 125, + .digest = "\x3d\x9a\xeb\x03\xd1\xbd\x1a\x63" + "\x57\xb2\x77\x4d\xfd\x6d\x5b\x24" + "\xdd\x68\x15\x1d", + }, +}; + +#define TGR128_TEST_VECTORS 6 + +static struct hash_testvec tgr128_tv_template[] = { + { + .plaintext = "", + .psize = 0, + .digest = "\x24\xf0\x13\x0c\x63\xac\x93\x32" + "\x16\x16\x6e\x76\xb1\xbb\x92\x5f", + }, { + .plaintext = "abc", + .psize = 3, + .digest = "\xf2\x58\xc1\xe8\x84\x14\xab\x2a" + "\x52\x7a\xb5\x41\xff\xc5\xb8\xbf", + }, { + .plaintext = "Tiger", + .psize = 5, + .digest = "\x9f\x00\xf5\x99\x07\x23\x00\xdd" + "\x27\x6a\xbb\x38\xc8\xeb\x6d\xec", + }, { + .plaintext = "ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789+-", + .psize = 64, + .digest = "\x87\xfb\x2a\x90\x83\x85\x1c\xf7" + "\x47\x0d\x2c\xf8\x10\xe6\xdf\x9e", + }, { + .plaintext = "ABCDEFGHIJKLMNOPQRSTUVWXYZ=abcdefghijklmnopqrstuvwxyz+0123456789", + .psize = 64, + .digest = "\x46\x7d\xb8\x08\x63\xeb\xce\x48" + "\x8d\xf1\xcd\x12\x61\x65\x5d\xe9", + }, { + .plaintext = "Tiger - A Fast New Hash Function, " + "by Ross Anderson and Eli Biham, " + "proceedings of Fast Software Encryption 3, " + "Cambridge, 1996.", + .psize = 125, + .digest = "\x3d\x9a\xeb\x03\xd1\xbd\x1a\x63" + "\x57\xb2\x77\x4d\xfd\x6d\x5b\x24", + }, +}; + +/* + * HMAC-MD5 test vectors from RFC2202 + * (These need to be fixed to not use strlen). + */ +#ifndef CONFIG_CRYPTO_DEV_MD5_HMAC +#define HMAC_MD5_TEST_VECTORS 7 +#else +#define HMAC_MD5_TEST_VECTORS 5 +#endif + +static struct hash_testvec hmac_md5_tv_template[] = +{ + { + .key = "\x0b\x0b\x0b\x0b\x0b\x0b\x0b\x0b\x0b\x0b\x0b\x0b\x0b\x0b\x0b\x0b", + .ksize = 16, + .plaintext = "Hi There", + .psize = 8, + .digest = "\x92\x94\x72\x7a\x36\x38\xbb\x1c" + "\x13\xf4\x8e\xf8\x15\x8b\xfc\x9d", + }, { + .key = "Jefe", + .ksize = 4, + .plaintext = "what do ya want for nothing?", + .psize = 28, + .digest = "\x75\x0c\x78\x3e\x6a\xb0\xb5\x03" + "\xea\xa8\x6e\x31\x0a\x5d\xb7\x38", + .np = 2, + .tap = {14, 14} + }, { + .key = "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa", + .ksize = 16, + .plaintext = "\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd" + "\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd" + "\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd" + "\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd", + .psize = 50, + .digest = "\x56\xbe\x34\x52\x1d\x14\x4c\x88" + "\xdb\xb8\xc7\x33\xf0\xe8\xb3\xf6", + }, { + .key = "\x01\x02\x03\x04\x05\x06\x07\x08" + "\x09\x0a\x0b\x0c\x0d\x0e\x0f\x10" + "\x11\x12\x13\x14\x15\x16\x17\x18\x19", + .ksize = 25, + .plaintext = "\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd" + "\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd" + "\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd" + "\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd", + .psize = 50, + .digest = "\x69\x7e\xaf\x0a\xca\x3a\x3a\xea" + "\x3a\x75\x16\x47\x46\xff\xaa\x79", + }, { + .key = "\x0c\x0c\x0c\x0c\x0c\x0c\x0c\x0c\x0c\x0c\x0c\x0c\x0c\x0c\x0c\x0c", + .ksize = 16, + .plaintext = "Test With Truncation", + .psize = 20, + .digest = "\x56\x46\x1e\xf2\x34\x2e\xdc\x00" + "\xf9\xba\xb9\x95\x69\x0e\xfd\x4c", +#ifndef CONFIG_CRYPTO_DEV_MD5_HMAC + }, { + .key = "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa", + .ksize = 80, + .plaintext = "Test Using Larger Than Block-Size Key - Hash Key First", + .psize = 54, + .digest = "\x6b\x1a\xb7\xfe\x4b\xd7\xbf\x8f" + "\x0b\x62\xe6\xce\x61\xb9\xd0\xcd", + }, { + .key = "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa", + .ksize = 80, + .plaintext = "Test Using Larger Than Block-Size Key and Larger Than One " + "Block-Size Data", + .psize = 73, + .digest = "\x6f\x63\x0f\xad\x67\xcd\xa0\xee" + "\x1f\xb1\xf5\x62\xdb\x3a\xa5\x3e", +#endif /* CONFIG_CRYPTO_DEV_MD5_HMAC */ + }, +}; + +/* + * HMAC-RIPEMD128 test vectors from RFC2286 + */ +#define HMAC_RMD128_TEST_VECTORS 7 + +static struct hash_testvec hmac_rmd128_tv_template[] = { + { + .key = "\x0b\x0b\x0b\x0b\x0b\x0b\x0b\x0b\x0b\x0b\x0b\x0b\x0b\x0b\x0b\x0b", + .ksize = 16, + .plaintext = "Hi There", + .psize = 8, + .digest = "\xfb\xf6\x1f\x94\x92\xaa\x4b\xbf" + "\x81\xc1\x72\xe8\x4e\x07\x34\xdb", + }, { + .key = "Jefe", + .ksize = 4, + .plaintext = "what do ya want for nothing?", + .psize = 28, + .digest = "\x87\x5f\x82\x88\x62\xb6\xb3\x34" + "\xb4\x27\xc5\x5f\x9f\x7f\xf0\x9b", + .np = 2, + .tap = { 14, 14 }, + }, { + .key = "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa", + .ksize = 16, + .plaintext = "\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd" + "\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd" + "\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd" + "\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd", + .psize = 50, + .digest = "\x09\xf0\xb2\x84\x6d\x2f\x54\x3d" + "\xa3\x63\xcb\xec\x8d\x62\xa3\x8d", + }, { + .key = "\x01\x02\x03\x04\x05\x06\x07\x08" + "\x09\x0a\x0b\x0c\x0d\x0e\x0f\x10" + "\x11\x12\x13\x14\x15\x16\x17\x18\x19", + .ksize = 25, + .plaintext = "\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd" + "\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd" + "\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd" + "\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd", + .psize = 50, + .digest = "\xbd\xbb\xd7\xcf\x03\xe4\x4b\x5a" + "\xa6\x0a\xf8\x15\xbe\x4d\x22\x94", + }, { + .key = "\x0c\x0c\x0c\x0c\x0c\x0c\x0c\x0c\x0c\x0c\x0c\x0c\x0c\x0c\x0c\x0c", + .ksize = 16, + .plaintext = "Test With Truncation", + .psize = 20, + .digest = "\xe7\x98\x08\xf2\x4b\x25\xfd\x03" + "\x1c\x15\x5f\x0d\x55\x1d\x9a\x3a", + }, { + .key = "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa", + .ksize = 80, + .plaintext = "Test Using Larger Than Block-Size Key - Hash Key First", + .psize = 54, + .digest = "\xdc\x73\x29\x28\xde\x98\x10\x4a" + "\x1f\x59\xd3\x73\xc1\x50\xac\xbb", + }, { + .key = "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa", + .ksize = 80, + .plaintext = "Test Using Larger Than Block-Size Key and Larger Than One " + "Block-Size Data", + .psize = 73, + .digest = "\x5c\x6b\xec\x96\x79\x3e\x16\xd4" + "\x06\x90\xc2\x37\x63\x5f\x30\xc5", + }, +}; + +/* + * HMAC-RIPEMD160 test vectors from RFC2286 + */ +#define HMAC_RMD160_TEST_VECTORS 7 + +static struct hash_testvec hmac_rmd160_tv_template[] = { + { + .key = "\x0b\x0b\x0b\x0b\x0b\x0b\x0b\x0b\x0b\x0b\x0b\x0b\x0b\x0b\x0b\x0b\x0b\x0b\x0b\x0b", + .ksize = 20, + .plaintext = "Hi There", + .psize = 8, + .digest = "\x24\xcb\x4b\xd6\x7d\x20\xfc\x1a\x5d\x2e" + "\xd7\x73\x2d\xcc\x39\x37\x7f\x0a\x56\x68", + }, { + .key = "Jefe", + .ksize = 4, + .plaintext = "what do ya want for nothing?", + .psize = 28, + .digest = "\xdd\xa6\xc0\x21\x3a\x48\x5a\x9e\x24\xf4" + "\x74\x20\x64\xa7\xf0\x33\xb4\x3c\x40\x69", + .np = 2, + .tap = { 14, 14 }, + }, { + .key = "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa", + .ksize = 20, + .plaintext = "\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd" + "\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd" + "\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd" + "\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd", + .psize = 50, + .digest = "\xb0\xb1\x05\x36\x0d\xe7\x59\x96\x0a\xb4" + "\xf3\x52\x98\xe1\x16\xe2\x95\xd8\xe7\xc1", + }, { + .key = "\x01\x02\x03\x04\x05\x06\x07\x08" + "\x09\x0a\x0b\x0c\x0d\x0e\x0f\x10" + "\x11\x12\x13\x14\x15\x16\x17\x18\x19", + .ksize = 25, + .plaintext = "\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd" + "\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd" + "\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd" + "\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd", + .psize = 50, + .digest = "\xd5\xca\x86\x2f\x4d\x21\xd5\xe6\x10\xe1" + "\x8b\x4c\xf1\xbe\xb9\x7a\x43\x65\xec\xf4", + }, { + .key = "\x0c\x0c\x0c\x0c\x0c\x0c\x0c\x0c\x0c\x0c\x0c\x0c\x0c\x0c\x0c\x0c\x0c\x0c\x0c\x0c", + .ksize = 20, + .plaintext = "Test With Truncation", + .psize = 20, + .digest = "\x76\x19\x69\x39\x78\xf9\x1d\x90\x53\x9a" + "\xe7\x86\x50\x0f\xf3\xd8\xe0\x51\x8e\x39", + }, { + .key = "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa", + .ksize = 80, + .plaintext = "Test Using Larger Than Block-Size Key - Hash Key First", + .psize = 54, + .digest = "\x64\x66\xca\x07\xac\x5e\xac\x29\xe1\xbd" + "\x52\x3e\x5a\xda\x76\x05\xb7\x91\xfd\x8b", + }, { + .key = "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa", + .ksize = 80, + .plaintext = "Test Using Larger Than Block-Size Key and Larger Than One " + "Block-Size Data", + .psize = 73, + .digest = "\x69\xea\x60\x79\x8d\x71\x61\x6c\xce\x5f" + "\xd0\x87\x1e\x23\x75\x4c\xd7\x5d\x5a\x0a", + }, +}; + +/* + * HMAC-SHA1 test vectors from RFC2202 + */ +#ifndef CONFIG_CRYPTO_DEV_SHA1_HMAC +#define HMAC_SHA1_TEST_VECTORS 7 +#else +#define HMAC_SHA1_TEST_VECTORS 5 +#endif + +static struct hash_testvec hmac_sha1_tv_template[] = { + { + .key = "\x0b\x0b\x0b\x0b\x0b\x0b\x0b\x0b\x0b\x0b\x0b\x0b\x0b\x0b\x0b\x0b\x0b\x0b\x0b\x0b", + .ksize = 20, + .plaintext = "Hi There", + .psize = 8, + .digest = "\xb6\x17\x31\x86\x55\x05\x72\x64" + "\xe2\x8b\xc0\xb6\xfb\x37\x8c\x8e\xf1" + "\x46\xbe", + }, { + .key = "Jefe", + .ksize = 4, + .plaintext = "what do ya want for nothing?", + .psize = 28, + .digest = "\xef\xfc\xdf\x6a\xe5\xeb\x2f\xa2\xd2\x74" + "\x16\xd5\xf1\x84\xdf\x9c\x25\x9a\x7c\x79", + .np = 2, + .tap = { 14, 14 } + }, { + .key = "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa", + .ksize = 20, + .plaintext = "\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd" + "\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd" + "\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd" + "\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd", + .psize = 50, + .digest = "\x12\x5d\x73\x42\xb9\xac\x11\xcd\x91\xa3" + "\x9a\xf4\x8a\xa1\x7b\x4f\x63\xf1\x75\xd3", + }, { + .key = "\x01\x02\x03\x04\x05\x06\x07\x08" + "\x09\x0a\x0b\x0c\x0d\x0e\x0f\x10" + "\x11\x12\x13\x14\x15\x16\x17\x18\x19", + .ksize = 25, + .plaintext = "\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd" + "\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd" + "\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd" + "\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd", + .psize = 50, + .digest = "\x4c\x90\x07\xf4\x02\x62\x50\xc6\xbc\x84" + "\x14\xf9\xbf\x50\xc8\x6c\x2d\x72\x35\xda", + }, { + .key = "\x0c\x0c\x0c\x0c\x0c\x0c\x0c\x0c\x0c\x0c\x0c\x0c\x0c\x0c\x0c\x0c\x0c\x0c\x0c\x0c", + .ksize = 20, + .plaintext = "Test With Truncation", + .psize = 20, + .digest = "\x4c\x1a\x03\x42\x4b\x55\xe0\x7f\xe7\xf2" + "\x7b\xe1\xd5\x8b\xb9\x32\x4a\x9a\x5a\x04", + +#ifndef CONFIG_CRYPTO_DEV_SHA1_HMAC + }, { + .key = "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa", + .ksize = 80, + .plaintext = "Test Using Larger Than Block-Size Key - Hash Key First", + .psize = 54, + .digest = "\xaa\x4a\xe5\xe1\x52\x72\xd0\x0e\x95\x70" + "\x56\x37\xce\x8a\x3b\x55\xed\x40\x21\x12", + }, { + .key = "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa", + .ksize = 80, + .plaintext = "Test Using Larger Than Block-Size Key and Larger Than One " + "Block-Size Data", + .psize = 73, + .digest = "\xe8\xe9\x9d\x0f\x45\x23\x7d\x78\x6d\x6b" + "\xba\xa7\x96\x5c\x78\x08\xbb\xff\x1a\x91", +#endif + }, +}; + + +/* + * SHA224 HMAC test vectors from RFC4231 + */ +#define HMAC_SHA224_TEST_VECTORS 4 + +static struct hash_testvec hmac_sha224_tv_template[] = { + { + .key = "\x0b\x0b\x0b\x0b\x0b\x0b\x0b\x0b" + "\x0b\x0b\x0b\x0b\x0b\x0b\x0b\x0b" + "\x0b\x0b\x0b\x0b", + .ksize = 20, + /* ("Hi There") */ + .plaintext = "\x48\x69\x20\x54\x68\x65\x72\x65", + .psize = 8, + .digest = "\x89\x6f\xb1\x12\x8a\xbb\xdf\x19" + "\x68\x32\x10\x7c\xd4\x9d\xf3\x3f" + "\x47\xb4\xb1\x16\x99\x12\xba\x4f" + "\x53\x68\x4b\x22", + }, { + .key = "Jefe", + .ksize = 4, + /* ("what do ya want for nothing?") */ + .plaintext = "\x77\x68\x61\x74\x20\x64\x6f\x20" + "\x79\x61\x20\x77\x61\x6e\x74\x20" + "\x66\x6f\x72\x20\x6e\x6f\x74\x68" + "\x69\x6e\x67\x3f", + .psize = 28, + .digest = "\xa3\x0e\x01\x09\x8b\xc6\xdb\xbf" + "\x45\x69\x0f\x3a\x7e\x9e\x6d\x0f" + "\x8b\xbe\xa2\xa3\x9e\x61\x48\x00" + "\x8f\xd0\x5e\x44", + .np = 4, + .tap = { 7, 7, 7, 7 } + }, { + .key = "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa", + .ksize = 131, + /* ("Test Using Larger Than Block-Size Key - Hash Key First") */ + .plaintext = "\x54\x65\x73\x74\x20\x55\x73\x69" + "\x6e\x67\x20\x4c\x61\x72\x67\x65" + "\x72\x20\x54\x68\x61\x6e\x20\x42" + "\x6c\x6f\x63\x6b\x2d\x53\x69\x7a" + "\x65\x20\x4b\x65\x79\x20\x2d\x20" + "\x48\x61\x73\x68\x20\x4b\x65\x79" + "\x20\x46\x69\x72\x73\x74", + .psize = 54, + .digest = "\x95\xe9\xa0\xdb\x96\x20\x95\xad" + "\xae\xbe\x9b\x2d\x6f\x0d\xbc\xe2" + "\xd4\x99\xf1\x12\xf2\xd2\xb7\x27" + "\x3f\xa6\x87\x0e", + }, { + .key = "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa", + .ksize = 131, + /* ("This is a test using a larger than block-size key and a") + (" larger than block-size data. The key needs to be") + (" hashed before being used by the HMAC algorithm.") */ + .plaintext = "\x54\x68\x69\x73\x20\x69\x73\x20" + "\x61\x20\x74\x65\x73\x74\x20\x75" + "\x73\x69\x6e\x67\x20\x61\x20\x6c" + "\x61\x72\x67\x65\x72\x20\x74\x68" + "\x61\x6e\x20\x62\x6c\x6f\x63\x6b" + "\x2d\x73\x69\x7a\x65\x20\x6b\x65" + "\x79\x20\x61\x6e\x64\x20\x61\x20" + "\x6c\x61\x72\x67\x65\x72\x20\x74" + "\x68\x61\x6e\x20\x62\x6c\x6f\x63" + "\x6b\x2d\x73\x69\x7a\x65\x20\x64" + "\x61\x74\x61\x2e\x20\x54\x68\x65" + "\x20\x6b\x65\x79\x20\x6e\x65\x65" + "\x64\x73\x20\x74\x6f\x20\x62\x65" + "\x20\x68\x61\x73\x68\x65\x64\x20" + "\x62\x65\x66\x6f\x72\x65\x20\x62" + "\x65\x69\x6e\x67\x20\x75\x73\x65" + "\x64\x20\x62\x79\x20\x74\x68\x65" + "\x20\x48\x4d\x41\x43\x20\x61\x6c" + "\x67\x6f\x72\x69\x74\x68\x6d\x2e", + .psize = 152, + .digest = "\x3a\x85\x41\x66\xac\x5d\x9f\x02" + "\x3f\x54\xd5\x17\xd0\xb3\x9d\xbd" + "\x94\x67\x70\xdb\x9c\x2b\x95\xc9" + "\xf6\xf5\x65\xd1", + }, +}; + +/* + * HMAC-SHA256 test vectors from + * draft-ietf-ipsec-ciph-sha-256-01.txt + */ +#define HMAC_SHA256_TEST_VECTORS 10 + +static struct hash_testvec hmac_sha256_tv_template[] = { + { + .key = "\x01\x02\x03\x04\x05\x06\x07\x08" + "\x09\x0a\x0b\x0c\x0d\x0e\x0f\x10" + "\x11\x12\x13\x14\x15\x16\x17\x18" + "\x19\x1a\x1b\x1c\x1d\x1e\x1f\x20", + .ksize = 32, + .plaintext = "abc", + .psize = 3, + .digest = "\xa2\x1b\x1f\x5d\x4c\xf4\xf7\x3a" + "\x4d\xd9\x39\x75\x0f\x7a\x06\x6a" + "\x7f\x98\xcc\x13\x1c\xb1\x6a\x66" + "\x92\x75\x90\x21\xcf\xab\x81\x81", + }, { + .key = "\x01\x02\x03\x04\x05\x06\x07\x08" + "\x09\x0a\x0b\x0c\x0d\x0e\x0f\x10" + "\x11\x12\x13\x14\x15\x16\x17\x18" + "\x19\x1a\x1b\x1c\x1d\x1e\x1f\x20", + .ksize = 32, + .plaintext = "abcdbcdecdefdefgefghfghighijhijkijkljklmklmnlmnomnopnopq", + .psize = 56, + .digest = "\x10\x4f\xdc\x12\x57\x32\x8f\x08" + "\x18\x4b\xa7\x31\x31\xc5\x3c\xae" + "\xe6\x98\xe3\x61\x19\x42\x11\x49" + "\xea\x8c\x71\x24\x56\x69\x7d\x30", + }, { + .key = "\x01\x02\x03\x04\x05\x06\x07\x08" + "\x09\x0a\x0b\x0c\x0d\x0e\x0f\x10" + "\x11\x12\x13\x14\x15\x16\x17\x18" + "\x19\x1a\x1b\x1c\x1d\x1e\x1f\x20", + .ksize = 32, + .plaintext = "abcdbcdecdefdefgefghfghighijhijkijkljklmklmnlmnomnopnopq" + "abcdbcdecdefdefgefghfghighijhijkijkljklmklmnlmnomnopnopq", + .psize = 112, + .digest = "\x47\x03\x05\xfc\x7e\x40\xfe\x34" + "\xd3\xee\xb3\xe7\x73\xd9\x5a\xab" + "\x73\xac\xf0\xfd\x06\x04\x47\xa5" + "\xeb\x45\x95\xbf\x33\xa9\xd1\xa3", + }, { + .key = "\x0b\x0b\x0b\x0b\x0b\x0b\x0b\x0b\x0b\x0b\x0b\x0b\x0b" + "\x0b\x0b\x0b\x0b\x0b\x0b\x0b\x0b\x0b\x0b\x0b\x0b\x0b" + "\x0b\x0b\x0b\x0b\x0b\x0b", + .ksize = 32, + .plaintext = "Hi There", + .psize = 8, + .digest = "\x19\x8a\x60\x7e\xb4\x4b\xfb\xc6" + "\x99\x03\xa0\xf1\xcf\x2b\xbd\xc5" + "\xba\x0a\xa3\xf3\xd9\xae\x3c\x1c" + "\x7a\x3b\x16\x96\xa0\xb6\x8c\xf7", + }, { + .key = "Jefe", + .ksize = 4, + .plaintext = "what do ya want for nothing?", + .psize = 28, + .digest = "\x5b\xdc\xc1\x46\xbf\x60\x75\x4e" + "\x6a\x04\x24\x26\x08\x95\x75\xc7" + "\x5a\x00\x3f\x08\x9d\x27\x39\x83" + "\x9d\xec\x58\xb9\x64\xec\x38\x43", + .np = 2, + .tap = { 14, 14 } + }, { + .key = "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa", + .ksize = 32, + .plaintext = "\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd" + "\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd" + "\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd" + "\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd\xdd", + .psize = 50, + .digest = "\xcd\xcb\x12\x20\xd1\xec\xcc\xea" + "\x91\xe5\x3a\xba\x30\x92\xf9\x62" + "\xe5\x49\xfe\x6c\xe9\xed\x7f\xdc" + "\x43\x19\x1f\xbd\xe4\x5c\x30\xb0", + }, { + .key = "\x01\x02\x03\x04\x05\x06\x07\x08" + "\x09\x0a\x0b\x0c\x0d\x0e\x0f\x10" + "\x11\x12\x13\x14\x15\x16\x17\x18" + "\x19\x1a\x1b\x1c\x1d\x1e\x1f\x20" + "\x21\x22\x23\x24\x25", + .ksize = 37, + .plaintext = "\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd" + "\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd" + "\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd" + "\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd\xcd", + .psize = 50, + .digest = "\xd4\x63\x3c\x17\xf6\xfb\x8d\x74" + "\x4c\x66\xde\xe0\xf8\xf0\x74\x55" + "\x6e\xc4\xaf\x55\xef\x07\x99\x85" + "\x41\x46\x8e\xb4\x9b\xd2\xe9\x17", + }, { + .key = "\x0c\x0c\x0c\x0c\x0c\x0c\x0c\x0c\x0c\x0c\x0c\x0c\x0c" + "\x0c\x0c\x0c\x0c\x0c\x0c\x0c\x0c\x0c\x0c\x0c\x0c\x0c" + "\x0c\x0c\x0c\x0c\x0c\x0c", + .ksize = 32, + .plaintext = "Test With Truncation", + .psize = 20, + .digest = "\x75\x46\xaf\x01\x84\x1f\xc0\x9b" + "\x1a\xb9\xc3\x74\x9a\x5f\x1c\x17" + "\xd4\xf5\x89\x66\x8a\x58\x7b\x27" + "\x00\xa9\xc9\x7c\x11\x93\xcf\x42", + }, { + .key = "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa", + .ksize = 80, + .plaintext = "Test Using Larger Than Block-Size Key - Hash Key First", + .psize = 54, + .digest = "\x69\x53\x02\x5e\xd9\x6f\x0c\x09" + "\xf8\x0a\x96\xf7\x8e\x65\x38\xdb" + "\xe2\xe7\xb8\x20\xe3\xdd\x97\x0e" + "\x7d\xdd\x39\x09\x1b\x32\x35\x2f", + }, { + .key = "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa", + .ksize = 80, + .plaintext = "Test Using Larger Than Block-Size Key and Larger Than " + "One Block-Size Data", + .psize = 73, + .digest = "\x63\x55\xac\x22\xe8\x90\xd0\xa3" + "\xc8\x48\x1a\x5c\xa4\x82\x5b\xc8" + "\x84\xd3\xe7\xa1\xff\x98\xa2\xfc" + "\x2a\xc7\xd8\xe0\x64\xc3\xb2\xe6", + }, +}; + +#define XCBC_AES_TEST_VECTORS 6 + +static struct hash_testvec aes_xcbc128_tv_template[] = { + { + .key = "\x00\x01\x02\x03\x04\x05\x06\x07" + "\x08\x09\x0a\x0b\x0c\x0d\x0e\x0f", + .plaintext = zeroed_string, + .digest = "\x75\xf0\x25\x1d\x52\x8a\xc0\x1c" + "\x45\x73\xdf\xd5\x84\xd7\x9f\x29", + .psize = 0, + .ksize = 16, + }, { + .key = "\x00\x01\x02\x03\x04\x05\x06\x07" + "\x08\x09\x0a\x0b\x0c\x0d\x0e\x0f", + .plaintext = "\x00\x01\x02", + .digest = "\x5b\x37\x65\x80\xae\x2f\x19\xaf" + "\xe7\x21\x9c\xee\xf1\x72\x75\x6f", + .psize = 3, + .ksize = 16, + } , { + .key = "\x00\x01\x02\x03\x04\x05\x06\x07" + "\x08\x09\x0a\x0b\x0c\x0d\x0e\x0f", + .plaintext = "\x00\x01\x02\x03\x04\x05\x06\x07" + "\x08\x09\x0a\x0b\x0c\x0d\x0e\x0f", + .digest = "\xd2\xa2\x46\xfa\x34\x9b\x68\xa7" + "\x99\x98\xa4\x39\x4f\xf7\xa2\x63", + .psize = 16, + .ksize = 16, + }, { + .key = "\x00\x01\x02\x03\x04\x05\x06\x07" + "\x08\x09\x0a\x0b\x0c\x0d\x0e\x0f", + .plaintext = "\x00\x01\x02\x03\x04\x05\x06\x07" + "\x08\x09\x0a\x0b\x0c\x0d\x0e\x0f" + "\x10\x11\x12\x13", + .digest = "\x47\xf5\x1b\x45\x64\x96\x62\x15" + "\xb8\x98\x5c\x63\x05\x5e\xd3\x08", + .tap = { 10, 10 }, + .psize = 20, + .np = 2, + .ksize = 16, + }, { + .key = "\x00\x01\x02\x03\x04\x05\x06\x07" + "\x08\x09\x0a\x0b\x0c\x0d\x0e\x0f", + .plaintext = "\x00\x01\x02\x03\x04\x05\x06\x07" + "\x08\x09\x0a\x0b\x0c\x0d\x0e\x0f" + "\x10\x11\x12\x13\x14\x15\x16\x17" + "\x18\x19\x1a\x1b\x1c\x1d\x1e\x1f", + .digest = "\xf5\x4f\x0e\xc8\xd2\xb9\xf3\xd3" + "\x68\x07\x73\x4b\xd5\x28\x3f\xd4", + .psize = 32, + .ksize = 16, + }, { + .key = "\x00\x01\x02\x03\x04\x05\x06\x07" + "\x08\x09\x0a\x0b\x0c\x0d\x0e\x0f", + .plaintext = "\x00\x01\x02\x03\x04\x05\x06\x07" + "\x08\x09\x0a\x0b\x0c\x0d\x0e\x0f" + "\x10\x11\x12\x13\x14\x15\x16\x17" + "\x18\x19\x1a\x1b\x1c\x1d\x1e\x1f" + "\x20\x21", + .digest = "\xbe\xcb\xb3\xbc\xcd\xb5\x18\xa3" + "\x06\x77\xd5\x48\x1f\xb6\xb4\xd8", + .tap = { 17, 17 }, + .psize = 34, + .np = 2, + .ksize = 16, + } +}; + +#define VMAC_AES_TEST_VECTORS 1 +static char vmac_string[128] = {'\x01', '\x01', '\x01', '\x01', + '\x02', '\x03', '\x02', '\x02', + '\x02', '\x04', '\x01', '\x07', + '\x04', '\x01', '\x04', '\x03',}; +static struct hash_testvec aes_vmac128_tv_template[] = { + { + .key = "\x00\x01\x02\x03\x04\x05\x06\x07" + "\x08\x09\x0a\x0b\x0c\x0d\x0e\x0f", + .plaintext = vmac_string, + .digest = "\xcb\xd7\x8a\xfd\xb7\x33\x79\xe7", + .psize = 128, + .ksize = 16, + }, +}; + +/* + * SHA384 HMAC test vectors from RFC4231 + */ + +#define HMAC_SHA384_TEST_VECTORS 4 + +static struct hash_testvec hmac_sha384_tv_template[] = { + { + .key = "\x0b\x0b\x0b\x0b\x0b\x0b\x0b\x0b" + "\x0b\x0b\x0b\x0b\x0b\x0b\x0b\x0b" + "\x0b\x0b\x0b\x0b", + .ksize = 20, + .plaintext = "Hi There", + .psize = 8, + .digest = "\xaf\xd0\x39\x44\xd8\x48\x95\x62" + "\x6b\x08\x25\xf4\xab\x46\x90\x7f" + "\x15\xf9\xda\xdb\xe4\x10\x1e\xc6" + "\x82\xaa\x03\x4c\x7c\xeb\xc5\x9c" + "\xfa\xea\x9e\xa9\x07\x6e\xde\x7f" + "\x4a\xf1\x52\xe8\xb2\xfa\x9c\xb6", + }, { + .key = "Jefe", + .ksize = 4, + .plaintext = "what do ya want for nothing?", + .psize = 28, + .digest = "\xaf\x45\xd2\xe3\x76\x48\x40\x31" + "\x61\x7f\x78\xd2\xb5\x8a\x6b\x1b" + "\x9c\x7e\xf4\x64\xf5\xa0\x1b\x47" + "\xe4\x2e\xc3\x73\x63\x22\x44\x5e" + "\x8e\x22\x40\xca\x5e\x69\xe2\xc7" + "\x8b\x32\x39\xec\xfa\xb2\x16\x49", + .np = 4, + .tap = { 7, 7, 7, 7 } + }, { + .key = "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa", + .ksize = 131, + .plaintext = "Test Using Larger Than Block-Siz" + "e Key - Hash Key First", + .psize = 54, + .digest = "\x4e\xce\x08\x44\x85\x81\x3e\x90" + "\x88\xd2\xc6\x3a\x04\x1b\xc5\xb4" + "\x4f\x9e\xf1\x01\x2a\x2b\x58\x8f" + "\x3c\xd1\x1f\x05\x03\x3a\xc4\xc6" + "\x0c\x2e\xf6\xab\x40\x30\xfe\x82" + "\x96\x24\x8d\xf1\x63\xf4\x49\x52", + }, { + .key = "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa", + .ksize = 131, + .plaintext = "This is a test u" + "sing a larger th" + "an block-size ke" + "y and a larger t" + "han block-size d" + "ata. The key nee" + "ds to be hashed " + "before being use" + "d by the HMAC al" + "gorithm.", + .psize = 152, + .digest = "\x66\x17\x17\x8e\x94\x1f\x02\x0d" + "\x35\x1e\x2f\x25\x4e\x8f\xd3\x2c" + "\x60\x24\x20\xfe\xb0\xb8\xfb\x9a" + "\xdc\xce\xbb\x82\x46\x1e\x99\xc5" + "\xa6\x78\xcc\x31\xe7\x99\x17\x6d" + "\x38\x60\xe6\x11\x0c\x46\x52\x3e", + }, +}; + +/* + * SHA512 HMAC test vectors from RFC4231 + */ + +#define HMAC_SHA512_TEST_VECTORS 4 + +static struct hash_testvec hmac_sha512_tv_template[] = { + { + .key = "\x0b\x0b\x0b\x0b\x0b\x0b\x0b\x0b" + "\x0b\x0b\x0b\x0b\x0b\x0b\x0b\x0b" + "\x0b\x0b\x0b\x0b", + .ksize = 20, + .plaintext = "Hi There", + .psize = 8, + .digest = "\x87\xaa\x7c\xde\xa5\xef\x61\x9d" + "\x4f\xf0\xb4\x24\x1a\x1d\x6c\xb0" + "\x23\x79\xf4\xe2\xce\x4e\xc2\x78" + "\x7a\xd0\xb3\x05\x45\xe1\x7c\xde" + "\xda\xa8\x33\xb7\xd6\xb8\xa7\x02" + "\x03\x8b\x27\x4e\xae\xa3\xf4\xe4" + "\xbe\x9d\x91\x4e\xeb\x61\xf1\x70" + "\x2e\x69\x6c\x20\x3a\x12\x68\x54", + }, { + .key = "Jefe", + .ksize = 4, + .plaintext = "what do ya want for nothing?", + .psize = 28, + .digest = "\x16\x4b\x7a\x7b\xfc\xf8\x19\xe2" + "\xe3\x95\xfb\xe7\x3b\x56\xe0\xa3" + "\x87\xbd\x64\x22\x2e\x83\x1f\xd6" + "\x10\x27\x0c\xd7\xea\x25\x05\x54" + "\x97\x58\xbf\x75\xc0\x5a\x99\x4a" + "\x6d\x03\x4f\x65\xf8\xf0\xe6\xfd" + "\xca\xea\xb1\xa3\x4d\x4a\x6b\x4b" + "\x63\x6e\x07\x0a\x38\xbc\xe7\x37", + .np = 4, + .tap = { 7, 7, 7, 7 } + }, { + .key = "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa", + .ksize = 131, + .plaintext = "Test Using Large" + "r Than Block-Siz" + "e Key - Hash Key" + " First", + .psize = 54, + .digest = "\x80\xb2\x42\x63\xc7\xc1\xa3\xeb" + "\xb7\x14\x93\xc1\xdd\x7b\xe8\xb4" + "\x9b\x46\xd1\xf4\x1b\x4a\xee\xc1" + "\x12\x1b\x01\x37\x83\xf8\xf3\x52" + "\x6b\x56\xd0\x37\xe0\x5f\x25\x98" + "\xbd\x0f\xd2\x21\x5d\x6a\x1e\x52" + "\x95\xe6\x4f\x73\xf6\x3f\x0a\xec" + "\x8b\x91\x5a\x98\x5d\x78\x65\x98", + }, { + .key = "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa\xaa\xaa\xaa\xaa\xaa" + "\xaa\xaa\xaa", + .ksize = 131, + .plaintext = + "This is a test u" + "sing a larger th" + "an block-size ke" + "y and a larger t" + "han block-size d" + "ata. The key nee" + "ds to be hashed " + "before being use" + "d by the HMAC al" + "gorithm.", + .psize = 152, + .digest = "\xe3\x7b\x6a\x77\x5d\xc8\x7d\xba" + "\xa4\xdf\xa9\xf9\x6e\x5e\x3f\xfd" + "\xde\xbd\x71\xf8\x86\x72\x89\x86" + "\x5d\xf5\xa3\x2d\x20\xcd\xc9\x44" + "\xb6\x02\x2c\xac\x3c\x49\x82\xb1" + "\x0d\x5e\xeb\x55\xc3\xe4\xde\x15" + "\x13\x46\x76\xfb\x6d\xe0\x44\x60" + "\x65\xc9\x74\x40\xfa\x8c\x6a\x58", + }, +}; + +/* + * DES test vectors. + */ +#if defined(CONFIG_CRYPTO_DEV_DES) || defined (CONFIG_CRYPTO_ASYNC_DES) +#define DES_ENC_TEST_VECTORS 5 +#define DES_DEC_TEST_VECTORS 3 +#define DES_CBC_ENC_TEST_VECTORS 4 +#define DES_CBC_DEC_TEST_VECTORS 3 +#define DES3_EDE_ENC_TEST_VECTORS 3 +#define DES3_EDE_DEC_TEST_VECTORS 3 +#define DES3_EDE_CBC_ENC_TEST_VECTORS 1 +#define DES3_EDE_CBC_DEC_TEST_VECTORS 1 +#else +#define DES_ENC_TEST_VECTORS 10 +#define DES_DEC_TEST_VECTORS 4 +#define DES_CBC_ENC_TEST_VECTORS 5 +#define DES_CBC_DEC_TEST_VECTORS 4 +#define DES3_EDE_ENC_TEST_VECTORS 3 +#define DES3_EDE_DEC_TEST_VECTORS 3 +#define DES3_EDE_CBC_ENC_TEST_VECTORS 1 +#define DES3_EDE_CBC_DEC_TEST_VECTORS 1 +#endif /*CONFIG_CRYPTO_DEV_DES*/ + +static struct cipher_testvec des_enc_tv_template[] = { + { /* From Applied Cryptography */ + .key = "\x01\x23\x45\x67\x89\xab\xcd\xef", + .klen = 8, + .input = "\x01\x23\x45\x67\x89\xab\xcd\xe7", + .ilen = 8, + .result = "\xc9\x57\x44\x25\x6a\x5e\xd3\x1d", + .rlen = 8, + }, { /* Same key, different plaintext block */ + .key = "\x01\x23\x45\x67\x89\xab\xcd\xef", + .klen = 8, + .input = "\x22\x33\x44\x55\x66\x77\x88\x99", + .ilen = 8, + .result = "\xf7\x9c\x89\x2a\x33\x8f\x4a\x8b", + .rlen = 8, + }, { /* Sbox test from NBS */ + .key = "\x7c\xa1\x10\x45\x4a\x1a\x6e\x57", + .klen = 8, + .input = "\x01\xa1\xd6\xd0\x39\x77\x67\x42", + .ilen = 8, + .result = "\x69\x0f\x5b\x0d\x9a\x26\x93\x9b", + .rlen = 8, + }, { /* Three blocks */ + .key = "\x01\x23\x45\x67\x89\xab\xcd\xef", + .klen = 8, + .input = "\x01\x23\x45\x67\x89\xab\xcd\xe7" + "\x22\x33\x44\x55\x66\x77\x88\x99" + "\xca\xfe\xba\xbe\xfe\xed\xbe\xef", + .ilen = 24, + .result = "\xc9\x57\x44\x25\x6a\x5e\xd3\x1d" + "\xf7\x9c\x89\x2a\x33\x8f\x4a\x8b" + "\xb4\x99\x26\xf7\x1f\xe1\xd4\x90", + .rlen = 24, +//#if !defined(CONFIG_CRYPTO_DEV_DES) && !defined(CONFIG_CRYPTO_ASYNC_DES) +#if 0 + }, { /* Weak key */ + .fail = 1, + .wk = 1, + .key = "\x01\x01\x01\x01\x01\x01\x01\x01", + .klen = 8, + .input = "\x01\x23\x45\x67\x89\xab\xcd\xe7", + .ilen = 8, + .result = "\xc9\x57\x44\x25\x6a\x5e\xd3\x1d", + .rlen = 8, +#endif + }, { /* Two blocks -- for testing encryption across pages */ + .key = "\x01\x23\x45\x67\x89\xab\xcd\xef", + .klen = 8, + .input = "\x01\x23\x45\x67\x89\xab\xcd\xe7" + "\x22\x33\x44\x55\x66\x77\x88\x99", + .ilen = 16, + .result = "\xc9\x57\x44\x25\x6a\x5e\xd3\x1d" + "\xf7\x9c\x89\x2a\x33\x8f\x4a\x8b", + .rlen = 16, + .np = 2, + .tap = { 8, 8 } +//#if !defined(CONFIG_CRYPTO_DEV_DES) && !defined(CONFIG_CRYPTO_ASYNC_DES) +#if 0 + }, { /* Four blocks -- for testing encryption with chunking */ + .key = "\x01\x23\x45\x67\x89\xab\xcd\xef", + .klen = 8, + .input = "\x01\x23\x45\x67\x89\xab\xcd\xe7" + "\x22\x33\x44\x55\x66\x77\x88\x99" + "\xca\xfe\xba\xbe\xfe\xed\xbe\xef" + "\x22\x33\x44\x55\x66\x77\x88\x99", + .ilen = 32, + .result = "\xc9\x57\x44\x25\x6a\x5e\xd3\x1d" + "\xf7\x9c\x89\x2a\x33\x8f\x4a\x8b" + "\xb4\x99\x26\xf7\x1f\xe1\xd4\x90" + "\xf7\x9c\x89\x2a\x33\x8f\x4a\x8b", + .rlen = 32, + .np = 3, + .tap = { 14, 10, 8 } + }, { + .key = "\x01\x23\x45\x67\x89\xab\xcd\xef", + .klen = 8, + .input = "\x01\x23\x45\x67\x89\xab\xcd\xe7" + "\x22\x33\x44\x55\x66\x77\x88\x99" + "\xca\xfe\xba\xbe\xfe\xed\xbe\xef", + .ilen = 24, + .result = "\xc9\x57\x44\x25\x6a\x5e\xd3\x1d" + "\xf7\x9c\x89\x2a\x33\x8f\x4a\x8b" + "\xb4\x99\x26\xf7\x1f\xe1\xd4\x90", + .rlen = 24, + .np = 4, + .tap = { 2, 1, 3, 18 } + }, { + .key = "\x01\x23\x45\x67\x89\xab\xcd\xef", + .klen = 8, + .input = "\x01\x23\x45\x67\x89\xab\xcd\xe7" + "\x22\x33\x44\x55\x66\x77\x88\x99", + .ilen = 16, + .result = "\xc9\x57\x44\x25\x6a\x5e\xd3\x1d" + "\xf7\x9c\x89\x2a\x33\x8f\x4a\x8b", + .rlen = 16, + .np = 5, + .tap = { 2, 2, 2, 2, 8 } + }, { + .key = "\x01\x23\x45\x67\x89\xab\xcd\xef", + .klen = 8, + .input = "\x01\x23\x45\x67\x89\xab\xcd\xe7", + .ilen = 8, + .result = "\xc9\x57\x44\x25\x6a\x5e\xd3\x1d", + .rlen = 8, + .np = 8, + .tap = { 1, 1, 1, 1, 1, 1, 1, 1 } +#endif + }, +}; + +static struct cipher_testvec des_dec_tv_template[] = { + { /* From Applied Cryptography */ + .key = "\x01\x23\x45\x67\x89\xab\xcd\xef", + .klen = 8, + .input = "\xc9\x57\x44\x25\x6a\x5e\xd3\x1d", + .ilen = 8, + .result = "\x01\x23\x45\x67\x89\xab\xcd\xe7", + .rlen = 8, + }, { /* Sbox test from NBS */ + .key = "\x7c\xa1\x10\x45\x4a\x1a\x6e\x57", + .klen = 8, + .input = "\x69\x0f\x5b\x0d\x9a\x26\x93\x9b", + .ilen = 8, + .result = "\x01\xa1\xd6\xd0\x39\x77\x67\x42", + .rlen = 8, + }, { /* Two blocks, for chunking test */ + .key = "\x01\x23\x45\x67\x89\xab\xcd\xef", + .klen = 8, + .input = "\xc9\x57\x44\x25\x6a\x5e\xd3\x1d" + "\x69\x0f\x5b\x0d\x9a\x26\x93\x9b", + .ilen = 16, + .result = "\x01\x23\x45\x67\x89\xab\xcd\xe7" + "\xa3\x99\x7b\xca\xaf\x69\xa0\xf5", + .rlen = 16, + .np = 2, + .tap = { 8, 8 } + }, { + .key = "\x01\x23\x45\x67\x89\xab\xcd\xef", + .klen = 8, + .input = "\xc9\x57\x44\x25\x6a\x5e\xd3\x1d" + "\x69\x0f\x5b\x0d\x9a\x26\x93\x9b", + .ilen = 16, + .result = "\x01\x23\x45\x67\x89\xab\xcd\xe7" + "\xa3\x99\x7b\xca\xaf\x69\xa0\xf5", + .rlen = 16, + .np = 3, + .tap = { 3, 12, 1 } + }, +}; + +static struct cipher_testvec des_cbc_enc_tv_template[] = { + { /* From OpenSSL */ + .key = "\x01\x23\x45\x67\x89\xab\xcd\xef", + .klen = 8, + .iv = "\xfe\xdc\xba\x98\x76\x54\x32\x10", + .input = "\x37\x36\x35\x34\x33\x32\x31\x20" + "\x4e\x6f\x77\x20\x69\x73\x20\x74" + "\x68\x65\x20\x74\x69\x6d\x65\x20", + .ilen = 24, + .result = "\xcc\xd1\x73\xff\xab\x20\x39\xf4" + "\xac\xd8\xae\xfd\xdf\xd8\xa1\xeb" + "\x46\x8e\x91\x15\x78\x88\xba\x68", + .rlen = 24, + }, { /* FIPS Pub 81 */ + .key = "\x01\x23\x45\x67\x89\xab\xcd\xef", + .klen = 8, + .iv = "\x12\x34\x56\x78\x90\xab\xcd\xef", + .input = "\x4e\x6f\x77\x20\x69\x73\x20\x74", + .ilen = 8, + .result = "\xe5\xc7\xcd\xde\x87\x2b\xf2\x7c", + .rlen = 8, + }, { + .key = "\x01\x23\x45\x67\x89\xab\xcd\xef", + .klen = 8, + .iv = "\xe5\xc7\xcd\xde\x87\x2b\xf2\x7c", + .input = "\x68\x65\x20\x74\x69\x6d\x65\x20", + .ilen = 8, + .result = "\x43\xe9\x34\x00\x8c\x38\x9c\x0f", + .rlen = 8, + }, { + .key = "\x01\x23\x45\x67\x89\xab\xcd\xef", + .klen = 8, + .iv = "\x43\xe9\x34\x00\x8c\x38\x9c\x0f", + .input = "\x66\x6f\x72\x20\x61\x6c\x6c\x20", + .ilen = 8, + .result = "\x68\x37\x88\x49\x9a\x7c\x05\xf6", + .rlen = 8, +#if 0 + }, { /* Copy of openssl vector for chunk testing */ + /* From OpenSSL */ + .key = "\x01\x23\x45\x67\x89\xab\xcd\xef", + .klen = 8, + .iv = "\xfe\xdc\xba\x98\x76\x54\x32\x10", + .input = "\x37\x36\x35\x34\x33\x32\x31\x20" + "\x4e\x6f\x77\x20\x69\x73\x20\x74" + "\x68\x65\x20\x74\x69\x6d\x65\x20", + .ilen = 24, + .result = "\xcc\xd1\x73\xff\xab\x20\x39\xf4" + "\xac\xd8\xae\xfd\xdf\xd8\xa1\xeb" + "\x46\x8e\x91\x15\x78\x88\xba\x68", + .rlen = 24, + .np = 2, + .tap = { 13, 11 } +#endif + }, +}; + +static struct cipher_testvec des_cbc_dec_tv_template[] = { + { /* FIPS Pub 81 */ + .key = "\x01\x23\x45\x67\x89\xab\xcd\xef", + .klen = 8, + .iv = "\x12\x34\x56\x78\x90\xab\xcd\xef", + .input = "\xe5\xc7\xcd\xde\x87\x2b\xf2\x7c", + .ilen = 8, + .result = "\x4e\x6f\x77\x20\x69\x73\x20\x74", + .rlen = 8, + }, { + .key = "\x01\x23\x45\x67\x89\xab\xcd\xef", + .klen = 8, + .iv = "\xe5\xc7\xcd\xde\x87\x2b\xf2\x7c", + .input = "\x43\xe9\x34\x00\x8c\x38\x9c\x0f", + .ilen = 8, + .result = "\x68\x65\x20\x74\x69\x6d\x65\x20", + .rlen = 8, + }, { + .key = "\x01\x23\x45\x67\x89\xab\xcd\xef", + .klen = 8, + .iv = "\x43\xe9\x34\x00\x8c\x38\x9c\x0f", + .input = "\x68\x37\x88\x49\x9a\x7c\x05\xf6", + .ilen = 8, + .result = "\x66\x6f\x72\x20\x61\x6c\x6c\x20", + .rlen = 8, + }, { /* Copy of above, for chunk testing */ + .key = "\x01\x23\x45\x67\x89\xab\xcd\xef", + .klen = 8, + .iv = "\x43\xe9\x34\x00\x8c\x38\x9c\x0f", + .input = "\x68\x37\x88\x49\x9a\x7c\x05\xf6", + .ilen = 8, + .result = "\x66\x6f\x72\x20\x61\x6c\x6c\x20", + .rlen = 8, + .np = 2, + .tap = { 4, 4 } + }, +}; + +static struct cipher_testvec des3_ede_enc_tv_template[] = { + { /* These are from openssl */ + .key = "\x01\x23\x45\x67\x89\xab\xcd\xef" + "\x55\x55\x55\x55\x55\x55\x55\x55" + "\xfe\xdc\xba\x98\x76\x54\x32\x10", + .klen = 24, + .input = "\x73\x6f\x6d\x65\x64\x61\x74\x61", + .ilen = 8, + .result = "\x18\xd7\x48\xe5\x63\x62\x05\x72", + .rlen = 8, + }, { + .key = "\x03\x52\x02\x07\x67\x20\x82\x17" + "\x86\x02\x87\x66\x59\x08\x21\x98" + "\x64\x05\x6a\xbd\xfe\xa9\x34\x57", + .klen = 24, + .input = "\x73\x71\x75\x69\x67\x67\x6c\x65", + .ilen = 8, + .result = "\xc0\x7d\x2a\x0f\xa5\x66\xfa\x30", + .rlen = 8, + }, { + .key = "\x10\x46\x10\x34\x89\x98\x80\x20" + "\x91\x07\xd0\x15\x89\x19\x01\x01" + "\x19\x07\x92\x10\x98\x1a\x01\x01", + .klen = 24, + .input = "\x00\x00\x00\x00\x00\x00\x00\x00", + .ilen = 8, + .result = "\xe1\xef\x62\xc3\x32\xfe\x82\x5b", + .rlen = 8, + }, +}; + +static struct cipher_testvec des3_ede_dec_tv_template[] = { + { /* These are from openssl */ + .key = "\x01\x23\x45\x67\x89\xab\xcd\xef" + "\x55\x55\x55\x55\x55\x55\x55\x55" + "\xfe\xdc\xba\x98\x76\x54\x32\x10", + .klen = 24, + .input = "\x18\xd7\x48\xe5\x63\x62\x05\x72", + .ilen = 8, + .result = "\x73\x6f\x6d\x65\x64\x61\x74\x61", + .rlen = 8, + }, { + .key = "\x03\x52\x02\x07\x67\x20\x82\x17" + "\x86\x02\x87\x66\x59\x08\x21\x98" + "\x64\x05\x6a\xbd\xfe\xa9\x34\x57", + .klen = 24, + .input = "\xc0\x7d\x2a\x0f\xa5\x66\xfa\x30", + .ilen = 8, + .result = "\x73\x71\x75\x69\x67\x67\x6c\x65", + .rlen = 8, + }, { + .key = "\x10\x46\x10\x34\x89\x98\x80\x20" + "\x91\x07\xd0\x15\x89\x19\x01\x01" + "\x19\x07\x92\x10\x98\x1a\x01\x01", + .klen = 24, + .input = "\xe1\xef\x62\xc3\x32\xfe\x82\x5b", + .ilen = 8, + .result = "\x00\x00\x00\x00\x00\x00\x00\x00", + .rlen = 8, + }, +}; + +static struct cipher_testvec des3_ede_cbc_enc_tv_template[] = { + { /* Generated from openssl */ + .key = "\xE9\xC0\xFF\x2E\x76\x0B\x64\x24" + "\x44\x4D\x99\x5A\x12\xD6\x40\xC0" + "\xEA\xC2\x84\xE8\x14\x95\xDB\xE8", + .klen = 24, + .iv = "\x7D\x33\x88\x93\x0F\x93\xB2\x42", + .input = "\x6f\x54\x20\x6f\x61\x4d\x79\x6e" + "\x53\x20\x63\x65\x65\x72\x73\x74" + "\x54\x20\x6f\x6f\x4d\x20\x6e\x61" + "\x20\x79\x65\x53\x72\x63\x74\x65" + "\x20\x73\x6f\x54\x20\x6f\x61\x4d" + "\x79\x6e\x53\x20\x63\x65\x65\x72" + "\x73\x74\x54\x20\x6f\x6f\x4d\x20" + "\x6e\x61\x20\x79\x65\x53\x72\x63" + "\x74\x65\x20\x73\x6f\x54\x20\x6f" + "\x61\x4d\x79\x6e\x53\x20\x63\x65" + "\x65\x72\x73\x74\x54\x20\x6f\x6f" + "\x4d\x20\x6e\x61\x20\x79\x65\x53" + "\x72\x63\x74\x65\x20\x73\x6f\x54" + "\x20\x6f\x61\x4d\x79\x6e\x53\x20" + "\x63\x65\x65\x72\x73\x74\x54\x20" + "\x6f\x6f\x4d\x20\x6e\x61\x0a\x79", + .ilen = 128, + .result = "\x0e\x2d\xb6\x97\x3c\x56\x33\xf4" + "\x67\x17\x21\xc7\x6e\x8a\xd5\x49" + "\x74\xb3\x49\x05\xc5\x1c\xd0\xed" + "\x12\x56\x5c\x53\x96\xb6\x00\x7d" + "\x90\x48\xfc\xf5\x8d\x29\x39\xcc" + "\x8a\xd5\x35\x18\x36\x23\x4e\xd7" + "\x76\xd1\xda\x0c\x94\x67\xbb\x04" + "\x8b\xf2\x03\x6c\xa8\xcf\xb6\xea" + "\x22\x64\x47\xaa\x8f\x75\x13\xbf" + "\x9f\xc2\xc3\xf0\xc9\x56\xc5\x7a" + "\x71\x63\x2e\x89\x7b\x1e\x12\xca" + "\xe2\x5f\xaf\xd8\xa4\xf8\xc9\x7a" + "\xd6\xf9\x21\x31\x62\x44\x45\xa6" + "\xd6\xbc\x5a\xd3\x2d\x54\x43\xcc" + "\x9d\xde\xa5\x70\xe9\x42\x45\x8a" + "\x6b\xfa\xb1\x91\x13\xb0\xd9\x19", + .rlen = 128, + }, +}; + +static struct cipher_testvec des3_ede_cbc_dec_tv_template[] = { + { /* Generated from openssl */ + .key = "\xE9\xC0\xFF\x2E\x76\x0B\x64\x24" + "\x44\x4D\x99\x5A\x12\xD6\x40\xC0" + "\xEA\xC2\x84\xE8\x14\x95\xDB\xE8", + .klen = 24, + .iv = "\x7D\x33\x88\x93\x0F\x93\xB2\x42", + .input = "\x0e\x2d\xb6\x97\x3c\x56\x33\xf4" + "\x67\x17\x21\xc7\x6e\x8a\xd5\x49" + "\x74\xb3\x49\x05\xc5\x1c\xd0\xed" + "\x12\x56\x5c\x53\x96\xb6\x00\x7d" + "\x90\x48\xfc\xf5\x8d\x29\x39\xcc" + "\x8a\xd5\x35\x18\x36\x23\x4e\xd7" + "\x76\xd1\xda\x0c\x94\x67\xbb\x04" + "\x8b\xf2\x03\x6c\xa8\xcf\xb6\xea" + "\x22\x64\x47\xaa\x8f\x75\x13\xbf" + "\x9f\xc2\xc3\xf0\xc9\x56\xc5\x7a" + "\x71\x63\x2e\x89\x7b\x1e\x12\xca" + "\xe2\x5f\xaf\xd8\xa4\xf8\xc9\x7a" + "\xd6\xf9\x21\x31\x62\x44\x45\xa6" + "\xd6\xbc\x5a\xd3\x2d\x54\x43\xcc" + "\x9d\xde\xa5\x70\xe9\x42\x45\x8a" + "\x6b\xfa\xb1\x91\x13\xb0\xd9\x19", + .ilen = 128, + .result = "\x6f\x54\x20\x6f\x61\x4d\x79\x6e" + "\x53\x20\x63\x65\x65\x72\x73\x74" + "\x54\x20\x6f\x6f\x4d\x20\x6e\x61" + "\x20\x79\x65\x53\x72\x63\x74\x65" + "\x20\x73\x6f\x54\x20\x6f\x61\x4d" + "\x79\x6e\x53\x20\x63\x65\x65\x72" + "\x73\x74\x54\x20\x6f\x6f\x4d\x20" + "\x6e\x61\x20\x79\x65\x53\x72\x63" + "\x74\x65\x20\x73\x6f\x54\x20\x6f" + "\x61\x4d\x79\x6e\x53\x20\x63\x65" + "\x65\x72\x73\x74\x54\x20\x6f\x6f" + "\x4d\x20\x6e\x61\x20\x79\x65\x53" + "\x72\x63\x74\x65\x20\x73\x6f\x54" + "\x20\x6f\x61\x4d\x79\x6e\x53\x20" + "\x63\x65\x65\x72\x73\x74\x54\x20" + "\x6f\x6f\x4d\x20\x6e\x61\x0a\x79", + .rlen = 128, + }, +}; + +/* + * Blowfish test vectors. + */ +#define BF_ENC_TEST_VECTORS 6 +#define BF_DEC_TEST_VECTORS 6 +#define BF_CBC_ENC_TEST_VECTORS 1 +#define BF_CBC_DEC_TEST_VECTORS 1 + +static struct cipher_testvec bf_enc_tv_template[] = { + { /* DES test vectors from OpenSSL */ + .key = "\x00\x00\x00\x00\x00\x00\x00\x00", + .klen = 8, + .input = "\x00\x00\x00\x00\x00\x00\x00\x00", + .ilen = 8, + .result = "\x4e\xf9\x97\x45\x61\x98\xdd\x78", + .rlen = 8, + }, { + .key = "\x1f\x1f\x1f\x1f\x0e\x0e\x0e\x0e", + .klen = 8, + .input = "\x01\x23\x45\x67\x89\xab\xcd\xef", + .ilen = 8, + .result = "\xa7\x90\x79\x51\x08\xea\x3c\xae", + .rlen = 8, + }, { + .key = "\xf0\xe1\xd2\xc3\xb4\xa5\x96\x87", + .klen = 8, + .input = "\xfe\xdc\xba\x98\x76\x54\x32\x10", + .ilen = 8, + .result = "\xe8\x7a\x24\x4e\x2c\xc8\x5e\x82", + .rlen = 8, + }, { /* Vary the keylength... */ + .key = "\xf0\xe1\xd2\xc3\xb4\xa5\x96\x87" + "\x78\x69\x5a\x4b\x3c\x2d\x1e\x0f", + .klen = 16, + .input = "\xfe\xdc\xba\x98\x76\x54\x32\x10", + .ilen = 8, + .result = "\x93\x14\x28\x87\xee\x3b\xe1\x5c", + .rlen = 8, + }, { + .key = "\xf0\xe1\xd2\xc3\xb4\xa5\x96\x87" + "\x78\x69\x5a\x4b\x3c\x2d\x1e\x0f" + "\x00\x11\x22\x33\x44", + .klen = 21, + .input = "\xfe\xdc\xba\x98\x76\x54\x32\x10", + .ilen = 8, + .result = "\xe6\xf5\x1e\xd7\x9b\x9d\xb2\x1f", + .rlen = 8, + }, { /* Generated with bf488 */ + .key = "\xf0\xe1\xd2\xc3\xb4\xa5\x96\x87" + "\x78\x69\x5a\x4b\x3c\x2d\x1e\x0f" + "\x00\x11\x22\x33\x44\x55\x66\x77" + "\x04\x68\x91\x04\xc2\xfd\x3b\x2f" + "\x58\x40\x23\x64\x1a\xba\x61\x76" + "\x1f\x1f\x1f\x1f\x0e\x0e\x0e\x0e" + "\xff\xff\xff\xff\xff\xff\xff\xff", + .klen = 56, + .input = "\xfe\xdc\xba\x98\x76\x54\x32\x10", + .ilen = 8, + .result = "\xc0\x45\x04\x01\x2e\x4e\x1f\x53", + .rlen = 8, + }, +}; + +static struct cipher_testvec bf_dec_tv_template[] = { + { /* DES test vectors from OpenSSL */ + .key = "\x00\x00\x00\x00\x00\x00\x00\x00", + .klen = 8, + .input = "\x4e\xf9\x97\x45\x61\x98\xdd\x78", + .ilen = 8, + .result = "\x00\x00\x00\x00\x00\x00\x00\x00", + .rlen = 8, + }, { + .key = "\x1f\x1f\x1f\x1f\x0e\x0e\x0e\x0e", + .klen = 8, + .input = "\xa7\x90\x79\x51\x08\xea\x3c\xae", + .ilen = 8, + .result = "\x01\x23\x45\x67\x89\xab\xcd\xef", + .rlen = 8, + }, { + .key = "\xf0\xe1\xd2\xc3\xb4\xa5\x96\x87", + .klen = 8, + .input = "\xe8\x7a\x24\x4e\x2c\xc8\x5e\x82", + .ilen = 8, + .result = "\xfe\xdc\xba\x98\x76\x54\x32\x10", + .rlen = 8, + }, { /* Vary the keylength... */ + .key = "\xf0\xe1\xd2\xc3\xb4\xa5\x96\x87" + "\x78\x69\x5a\x4b\x3c\x2d\x1e\x0f", + .klen = 16, + .input = "\x93\x14\x28\x87\xee\x3b\xe1\x5c", + .ilen = 8, + .result = "\xfe\xdc\xba\x98\x76\x54\x32\x10", + .rlen = 8, + }, { + .key = "\xf0\xe1\xd2\xc3\xb4\xa5\x96\x87" + "\x78\x69\x5a\x4b\x3c\x2d\x1e\x0f" + "\x00\x11\x22\x33\x44", + .klen = 21, + .input = "\xe6\xf5\x1e\xd7\x9b\x9d\xb2\x1f", + .ilen = 8, + .result = "\xfe\xdc\xba\x98\x76\x54\x32\x10", + .rlen = 8, + }, { /* Generated with bf488, using OpenSSL, Libgcrypt and Nettle */ + .key = "\xf0\xe1\xd2\xc3\xb4\xa5\x96\x87" + "\x78\x69\x5a\x4b\x3c\x2d\x1e\x0f" + "\x00\x11\x22\x33\x44\x55\x66\x77" + "\x04\x68\x91\x04\xc2\xfd\x3b\x2f" + "\x58\x40\x23\x64\x1a\xba\x61\x76" + "\x1f\x1f\x1f\x1f\x0e\x0e\x0e\x0e" + "\xff\xff\xff\xff\xff\xff\xff\xff", + .klen = 56, + .input = "\xc0\x45\x04\x01\x2e\x4e\x1f\x53", + .ilen = 8, + .result = "\xfe\xdc\xba\x98\x76\x54\x32\x10", + .rlen = 8, + }, +}; + +static struct cipher_testvec bf_cbc_enc_tv_template[] = { + { /* From OpenSSL */ + .key = "\x01\x23\x45\x67\x89\xab\xcd\xef" + "\xf0\xe1\xd2\xc3\xb4\xa5\x96\x87", + .klen = 16, + .iv = "\xfe\xdc\xba\x98\x76\x54\x32\x10", + .input = "\x37\x36\x35\x34\x33\x32\x31\x20" + "\x4e\x6f\x77\x20\x69\x73\x20\x74" + "\x68\x65\x20\x74\x69\x6d\x65\x20" + "\x66\x6f\x72\x20\x00\x00\x00\x00", + .ilen = 32, + .result = "\x6b\x77\xb4\xd6\x30\x06\xde\xe6" + "\x05\xb1\x56\xe2\x74\x03\x97\x93" + "\x58\xde\xb9\xe7\x15\x46\x16\xd9" + "\x59\xf1\x65\x2b\xd5\xff\x92\xcc", + .rlen = 32, + }, +}; + +static struct cipher_testvec bf_cbc_dec_tv_template[] = { + { /* From OpenSSL */ + .key = "\x01\x23\x45\x67\x89\xab\xcd\xef" + "\xf0\xe1\xd2\xc3\xb4\xa5\x96\x87", + .klen = 16, + .iv = "\xfe\xdc\xba\x98\x76\x54\x32\x10", + .input = "\x6b\x77\xb4\xd6\x30\x06\xde\xe6" + "\x05\xb1\x56\xe2\x74\x03\x97\x93" + "\x58\xde\xb9\xe7\x15\x46\x16\xd9" + "\x59\xf1\x65\x2b\xd5\xff\x92\xcc", + .ilen = 32, + .result = "\x37\x36\x35\x34\x33\x32\x31\x20" + "\x4e\x6f\x77\x20\x69\x73\x20\x74" + "\x68\x65\x20\x74\x69\x6d\x65\x20" + "\x66\x6f\x72\x20\x00\x00\x00\x00", + .rlen = 32, + }, +}; + +/* + * Twofish test vectors. + */ +#define TF_ENC_TEST_VECTORS 3 +#define TF_DEC_TEST_VECTORS 3 +#define TF_CBC_ENC_TEST_VECTORS 4 +#define TF_CBC_DEC_TEST_VECTORS 4 + +static struct cipher_testvec tf_enc_tv_template[] = { + { + .key = zeroed_string, + .klen = 16, + .input = zeroed_string, + .ilen = 16, + .result = "\x9f\x58\x9f\x5c\xf6\x12\x2c\x32" + "\xb6\xbf\xec\x2f\x2a\xe8\xc3\x5a", + .rlen = 16, + }, { + .key = "\x01\x23\x45\x67\x89\xab\xcd\xef" + "\xfe\xdc\xba\x98\x76\x54\x32\x10" + "\x00\x11\x22\x33\x44\x55\x66\x77", + .klen = 24, + .input = zeroed_string, + .ilen = 16, + .result = "\xcf\xd1\xd2\xe5\xa9\xbe\x9c\xdf" + "\x50\x1f\x13\xb8\x92\xbd\x22\x48", + .rlen = 16, + }, { + .key = "\x01\x23\x45\x67\x89\xab\xcd\xef" + "\xfe\xdc\xba\x98\x76\x54\x32\x10" + "\x00\x11\x22\x33\x44\x55\x66\x77" + "\x88\x99\xaa\xbb\xcc\xdd\xee\xff", + .klen = 32, + .input = zeroed_string, + .ilen = 16, + .result = "\x37\x52\x7b\xe0\x05\x23\x34\xb8" + "\x9f\x0c\xfc\xca\xe8\x7c\xfa\x20", + .rlen = 16, + }, +}; + +static struct cipher_testvec tf_dec_tv_template[] = { + { + .key = zeroed_string, + .klen = 16, + .input = "\x9f\x58\x9f\x5c\xf6\x12\x2c\x32" + "\xb6\xbf\xec\x2f\x2a\xe8\xc3\x5a", + .ilen = 16, + .result = zeroed_string, + .rlen = 16, + }, { + .key = "\x01\x23\x45\x67\x89\xab\xcd\xef" + "\xfe\xdc\xba\x98\x76\x54\x32\x10" + "\x00\x11\x22\x33\x44\x55\x66\x77", + .klen = 24, + .input = "\xcf\xd1\xd2\xe5\xa9\xbe\x9c\xdf" + "\x50\x1f\x13\xb8\x92\xbd\x22\x48", + .ilen = 16, + .result = zeroed_string, + .rlen = 16, + }, { + .key = "\x01\x23\x45\x67\x89\xab\xcd\xef" + "\xfe\xdc\xba\x98\x76\x54\x32\x10" + "\x00\x11\x22\x33\x44\x55\x66\x77" + "\x88\x99\xaa\xbb\xcc\xdd\xee\xff", + .klen = 32, + .input = "\x37\x52\x7b\xe0\x05\x23\x34\xb8" + "\x9f\x0c\xfc\xca\xe8\x7c\xfa\x20", + .ilen = 16, + .result = zeroed_string, + .rlen = 16, + }, +}; + +static struct cipher_testvec tf_cbc_enc_tv_template[] = { + { /* Generated with Nettle */ + .key = zeroed_string, + .klen = 16, + .iv = zeroed_string, + .input = zeroed_string, + .ilen = 16, + .result = "\x9f\x58\x9f\x5c\xf6\x12\x2c\x32" + "\xb6\xbf\xec\x2f\x2a\xe8\xc3\x5a", + .rlen = 16, + }, { + .key = zeroed_string, + .klen = 16, + .iv = "\x9f\x58\x9f\x5c\xf6\x12\x2c\x32" + "\xb6\xbf\xec\x2f\x2a\xe8\xc3\x5a", + .input = zeroed_string, + .ilen = 16, + .result = "\xd4\x91\xdb\x16\xe7\xb1\xc3\x9e" + "\x86\xcb\x08\x6b\x78\x9f\x54\x19", + .rlen = 16, + }, { + .key = zeroed_string, + .klen = 16, + .iv = "\xd4\x91\xdb\x16\xe7\xb1\xc3\x9e" + "\x86\xcb\x08\x6b\x78\x9f\x54\x19", + .input = zeroed_string, + .ilen = 16, + .result = "\x05\xef\x8c\x61\xa8\x11\x58\x26" + "\x34\xba\x5c\xb7\x10\x6a\xa6\x41", + .rlen = 16, + }, { + .key = zeroed_string, + .klen = 16, + .iv = zeroed_string, + .input = zeroed_string, + .ilen = 48, + .result = "\x9f\x58\x9f\x5c\xf6\x12\x2c\x32" + "\xb6\xbf\xec\x2f\x2a\xe8\xc3\x5a" + "\xd4\x91\xdb\x16\xe7\xb1\xc3\x9e" + "\x86\xcb\x08\x6b\x78\x9f\x54\x19" + "\x05\xef\x8c\x61\xa8\x11\x58\x26" + "\x34\xba\x5c\xb7\x10\x6a\xa6\x41", + .rlen = 48, + }, +}; + +static struct cipher_testvec tf_cbc_dec_tv_template[] = { + { /* Reverse of the first four above */ + .key = zeroed_string, + .klen = 16, + .iv = zeroed_string, + .input = "\x9f\x58\x9f\x5c\xf6\x12\x2c\x32" + "\xb6\xbf\xec\x2f\x2a\xe8\xc3\x5a", + .ilen = 16, + .result = zeroed_string, + .rlen = 16, + }, { + .key = zeroed_string, + .klen = 16, + .iv = "\x9f\x58\x9f\x5c\xf6\x12\x2c\x32" + "\xb6\xbf\xec\x2f\x2a\xe8\xc3\x5a", + .input = "\xd4\x91\xdb\x16\xe7\xb1\xc3\x9e" + "\x86\xcb\x08\x6b\x78\x9f\x54\x19", + .ilen = 16, + .result = zeroed_string, + .rlen = 16, + }, { + .key = zeroed_string, + .klen = 16, + .iv = "\xd4\x91\xdb\x16\xe7\xb1\xc3\x9e" + "\x86\xcb\x08\x6b\x78\x9f\x54\x19", + .input = "\x05\xef\x8c\x61\xa8\x11\x58\x26" + "\x34\xba\x5c\xb7\x10\x6a\xa6\x41", + .ilen = 16, + .result = zeroed_string, + .rlen = 16, + }, { + .key = zeroed_string, + .klen = 16, + .iv = zeroed_string, + .input = "\x9f\x58\x9f\x5c\xf6\x12\x2c\x32" + "\xb6\xbf\xec\x2f\x2a\xe8\xc3\x5a" + "\xd4\x91\xdb\x16\xe7\xb1\xc3\x9e" + "\x86\xcb\x08\x6b\x78\x9f\x54\x19" + "\x05\xef\x8c\x61\xa8\x11\x58\x26" + "\x34\xba\x5c\xb7\x10\x6a\xa6\x41", + .ilen = 48, + .result = zeroed_string, + .rlen = 48, + }, +}; + +/* + * Serpent test vectors. These are backwards because Serpent writes + * octet sequences in right-to-left mode. + */ +#define SERPENT_ENC_TEST_VECTORS 4 +#define SERPENT_DEC_TEST_VECTORS 4 + +#define TNEPRES_ENC_TEST_VECTORS 4 +#define TNEPRES_DEC_TEST_VECTORS 4 + +static struct cipher_testvec serpent_enc_tv_template[] = { + { + .input = "\x00\x01\x02\x03\x04\x05\x06\x07" + "\x08\x09\x0a\x0b\x0c\x0d\x0e\x0f", + .ilen = 16, + .result = "\x12\x07\xfc\xce\x9b\xd0\xd6\x47" + "\x6a\xe9\x8f\xbe\xd1\x43\xa0\xe2", + .rlen = 16, + }, { + .key = "\x00\x01\x02\x03\x04\x05\x06\x07" + "\x08\x09\x0a\x0b\x0c\x0d\x0e\x0f", + .klen = 16, + .input = "\x00\x01\x02\x03\x04\x05\x06\x07" + "\x08\x09\x0a\x0b\x0c\x0d\x0e\x0f", + .ilen = 16, + .result = "\x4c\x7d\x8a\x32\x80\x72\xa2\x2c" + "\x82\x3e\x4a\x1f\x3a\xcd\xa1\x6d", + .rlen = 16, + }, { + .key = "\x00\x01\x02\x03\x04\x05\x06\x07" + "\x08\x09\x0a\x0b\x0c\x0d\x0e\x0f" + "\x10\x11\x12\x13\x14\x15\x16\x17" + "\x18\x19\x1a\x1b\x1c\x1d\x1e\x1f", + .klen = 32, + .input = "\x00\x01\x02\x03\x04\x05\x06\x07" + "\x08\x09\x0a\x0b\x0c\x0d\x0e\x0f", + .ilen = 16, + .result = "\xde\x26\x9f\xf8\x33\xe4\x32\xb8" + "\x5b\x2e\x88\xd2\x70\x1c\xe7\x5c", + .rlen = 16, + }, { + .key = "\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x80", + .klen = 16, + .input = zeroed_string, + .ilen = 16, + .result = "\xdd\xd2\x6b\x98\xa5\xff\xd8\x2c" + "\x05\x34\x5a\x9d\xad\xbf\xaf\x49", + .rlen = 16, + }, +}; + +static struct cipher_testvec tnepres_enc_tv_template[] = { + { /* KeySize=128, PT=0, I=1 */ + .input = "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x00", + .key = "\x80\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x00", + .klen = 16, + .ilen = 16, + .result = "\x49\xaf\xbf\xad\x9d\x5a\x34\x05" + "\x2c\xd8\xff\xa5\x98\x6b\xd2\xdd", + .rlen = 16, + }, { /* KeySize=192, PT=0, I=1 */ + .key = "\x80\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x00", + .klen = 24, + .input = "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x00", + .ilen = 16, + .result = "\xe7\x8e\x54\x02\xc7\x19\x55\x68" + "\xac\x36\x78\xf7\xa3\xf6\x0c\x66", + .rlen = 16, + }, { /* KeySize=256, PT=0, I=1 */ + .key = "\x80\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x00", + .klen = 32, + .input = "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x00", + .ilen = 16, + .result = "\xab\xed\x96\xe7\x66\xbf\x28\xcb" + "\xc0\xeb\xd2\x1a\x82\xef\x08\x19", + .rlen = 16, + }, { /* KeySize=256, I=257 */ + .key = "\x1f\x1e\x1d\x1c\x1b\x1a\x19\x18" + "\x17\x16\x15\x14\x13\x12\x11\x10" + "\x0f\x0e\x0d\x0c\x0b\x0a\x09\x08" + "\x07\x06\x05\x04\x03\x02\x01\x00", + .klen = 32, + .input = "\x0f\x0e\x0d\x0c\x0b\x0a\x09\x08" + "\x07\x06\x05\x04\x03\x02\x01\x00", + .ilen = 16, + .result = "\x5c\xe7\x1c\x70\xd2\x88\x2e\x5b" + "\xb8\x32\xe4\x33\xf8\x9f\x26\xde", + .rlen = 16, + }, +}; + + +static struct cipher_testvec serpent_dec_tv_template[] = { + { + .input = "\x12\x07\xfc\xce\x9b\xd0\xd6\x47" + "\x6a\xe9\x8f\xbe\xd1\x43\xa0\xe2", + .ilen = 16, + .result = "\x00\x01\x02\x03\x04\x05\x06\x07" + "\x08\x09\x0a\x0b\x0c\x0d\x0e\x0f", + .rlen = 16, + }, { + .key = "\x00\x01\x02\x03\x04\x05\x06\x07" + "\x08\x09\x0a\x0b\x0c\x0d\x0e\x0f", + .klen = 16, + .input = "\x4c\x7d\x8a\x32\x80\x72\xa2\x2c" + "\x82\x3e\x4a\x1f\x3a\xcd\xa1\x6d", + .ilen = 16, + .result = "\x00\x01\x02\x03\x04\x05\x06\x07" + "\x08\x09\x0a\x0b\x0c\x0d\x0e\x0f", + .rlen = 16, + }, { + .key = "\x00\x01\x02\x03\x04\x05\x06\x07" + "\x08\x09\x0a\x0b\x0c\x0d\x0e\x0f" + "\x10\x11\x12\x13\x14\x15\x16\x17" + "\x18\x19\x1a\x1b\x1c\x1d\x1e\x1f", + .klen = 32, + .input = "\xde\x26\x9f\xf8\x33\xe4\x32\xb8" + "\x5b\x2e\x88\xd2\x70\x1c\xe7\x5c", + .ilen = 16, + .result = "\x00\x01\x02\x03\x04\x05\x06\x07" + "\x08\x09\x0a\x0b\x0c\x0d\x0e\x0f", + .rlen = 16, + }, { + .key = "\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x80", + .klen = 16, + .input = "\xdd\xd2\x6b\x98\xa5\xff\xd8\x2c" + "\x05\x34\x5a\x9d\xad\xbf\xaf\x49", + .ilen = 16, + .result = zeroed_string, + .rlen = 16, + }, +}; + +static struct cipher_testvec tnepres_dec_tv_template[] = { + { + .input = "\x41\xcc\x6b\x31\x59\x31\x45\x97" + "\x6d\x6f\xbb\x38\x4b\x37\x21\x28", + .ilen = 16, + .result = "\x00\x01\x02\x03\x04\x05\x06\x07" + "\x08\x09\x0a\x0b\x0c\x0d\x0e\x0f", + .rlen = 16, + }, { + .key = "\x00\x01\x02\x03\x04\x05\x06\x07" + "\x08\x09\x0a\x0b\x0c\x0d\x0e\x0f", + .klen = 16, + .input = "\xea\xf4\xd7\xfc\xd8\x01\x34\x47" + "\x81\x45\x0b\xfa\x0c\xd6\xad\x6e", + .ilen = 16, + .result = "\x00\x01\x02\x03\x04\x05\x06\x07" + "\x08\x09\x0a\x0b\x0c\x0d\x0e\x0f", + .rlen = 16, + }, { + .key = "\x00\x01\x02\x03\x04\x05\x06\x07" + "\x08\x09\x0a\x0b\x0c\x0d\x0e\x0f" + "\x10\x11\x12\x13\x14\x15\x16\x17" + "\x18\x19\x1a\x1b\x1c\x1d\x1e\x1f", + .klen = 32, + .input = "\x64\xa9\x1a\x37\xed\x9f\xe7\x49" + "\xa8\x4e\x76\xd6\xf5\x0d\x78\xee", + .ilen = 16, + .result = "\x00\x01\x02\x03\x04\x05\x06\x07" + "\x08\x09\x0a\x0b\x0c\x0d\x0e\x0f", + .rlen = 16, + }, { /* KeySize=128, I=121 */ + .key = "\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x80", + .klen = 16, + .input = "\x3d\xda\xbf\xc0\x06\xda\xab\x06" + "\x46\x2a\xf4\xef\x81\x54\x4e\x26", + .ilen = 16, + .result = zeroed_string, + .rlen = 16, + }, +}; + + +/* Cast6 test vectors from RFC 2612 */ +#define CAST6_ENC_TEST_VECTORS 3 +#define CAST6_DEC_TEST_VECTORS 3 + +static struct cipher_testvec cast6_enc_tv_template[] = { + { + .key = "\x23\x42\xbb\x9e\xfa\x38\x54\x2c" + "\x0a\xf7\x56\x47\xf2\x9f\x61\x5d", + .klen = 16, + .input = zeroed_string, + .ilen = 16, + .result = "\xc8\x42\xa0\x89\x72\xb4\x3d\x20" + "\x83\x6c\x91\xd1\xb7\x53\x0f\x6b", + .rlen = 16, + }, { + .key = "\x23\x42\xbb\x9e\xfa\x38\x54\x2c" + "\xbe\xd0\xac\x83\x94\x0a\xc2\x98" + "\xba\xc7\x7a\x77\x17\x94\x28\x63", + .klen = 24, + .input = zeroed_string, + .ilen = 16, + .result = "\x1b\x38\x6c\x02\x10\xdc\xad\xcb" + "\xdd\x0e\x41\xaa\x08\xa7\xa7\xe8", + .rlen = 16, + }, { + .key = "\x23\x42\xbb\x9e\xfa\x38\x54\x2c" + "\xbe\xd0\xac\x83\x94\x0a\xc2\x98" + "\x8d\x7c\x47\xce\x26\x49\x08\x46" + "\x1c\xc1\xb5\x13\x7a\xe6\xb6\x04", + .klen = 32, + .input = zeroed_string, + .ilen = 16, + .result = "\x4f\x6a\x20\x38\x28\x68\x97\xb9" + "\xc9\x87\x01\x36\x55\x33\x17\xfa", + .rlen = 16, + }, +}; + +static struct cipher_testvec cast6_dec_tv_template[] = { + { + .key = "\x23\x42\xbb\x9e\xfa\x38\x54\x2c" + "\x0a\xf7\x56\x47\xf2\x9f\x61\x5d", + .klen = 16, + .input = "\xc8\x42\xa0\x89\x72\xb4\x3d\x20" + "\x83\x6c\x91\xd1\xb7\x53\x0f\x6b", + .ilen = 16, + .result = zeroed_string, + .rlen = 16, + }, { + .key = "\x23\x42\xbb\x9e\xfa\x38\x54\x2c" + "\xbe\xd0\xac\x83\x94\x0a\xc2\x98" + "\xba\xc7\x7a\x77\x17\x94\x28\x63", + .klen = 24, + .input = "\x1b\x38\x6c\x02\x10\xdc\xad\xcb" + "\xdd\x0e\x41\xaa\x08\xa7\xa7\xe8", + .ilen = 16, + .result = zeroed_string, + .rlen = 16, + }, { + .key = "\x23\x42\xbb\x9e\xfa\x38\x54\x2c" + "\xbe\xd0\xac\x83\x94\x0a\xc2\x98" + "\x8d\x7c\x47\xce\x26\x49\x08\x46" + "\x1c\xc1\xb5\x13\x7a\xe6\xb6\x04", + .klen = 32, + .input = "\x4f\x6a\x20\x38\x28\x68\x97\xb9" + "\xc9\x87\x01\x36\x55\x33\x17\xfa", + .ilen = 16, + .result = zeroed_string, + .rlen = 16, + }, +}; + + +/* + * AES test vectors. + */ +#if !defined(CONFIG_CRYPTO_DEV_AES) && !defined(CONFIG_CRYPTO_ASYNC_AES) +#define AES_ENC_TEST_VECTORS 3 +#define AES_DEC_TEST_VECTORS 3 +#define AES_CBC_ENC_TEST_VECTORS 4 +#define AES_CBC_DEC_TEST_VECTORS 4 +#define AES_LRW_ENC_TEST_VECTORS 8 +#define AES_LRW_DEC_TEST_VECTORS 8 +#define AES_XTS_ENC_TEST_VECTORS 4 +#define AES_XTS_DEC_TEST_VECTORS 4 +#define AES_CTR_ENC_TEST_VECTORS 3 +#define AES_CTR_DEC_TEST_VECTORS 3 +#define AES_CTR_3686_ENC_TEST_VECTORS 7 +#define AES_CTR_3686_DEC_TEST_VECTORS 6 +#define AES_GCM_ENC_TEST_VECTORS 9 +#define AES_GCM_DEC_TEST_VECTORS 8 +#define AES_CCM_ENC_TEST_VECTORS 7 +#define AES_CCM_DEC_TEST_VECTORS 7 +#define AES_CCM_4309_ENC_TEST_VECTORS 7 +#define AES_CCM_4309_DEC_TEST_VECTORS 10 +#else +#define AES_ENC_TEST_VECTORS 3 +#define AES_DEC_TEST_VECTORS 3 +#define AES_CBC_ENC_TEST_VECTORS 3 +#define AES_CBC_DEC_TEST_VECTORS 3 +#define AES_CTR_ENC_TEST_VECTORS 3 +#define AES_CTR_DEC_TEST_VECTORS 3 +#define AES_GCM_ENC_TEST_VECTORS 9 +#define AES_GCM_DEC_TEST_VECTORS 8 +#define AES_CCM_ENC_TEST_VECTORS 7 +#define AES_CCM_DEC_TEST_VECTORS 7 +#define AES_CCM_4309_ENC_TEST_VECTORS 7 +#define AES_CCM_4309_DEC_TEST_VECTORS 10 +#define AES_CTR_3686_ENC_TEST_VECTORS 6 +#define AES_CTR_3686_DEC_TEST_VECTORS 6 +#endif /* CONFIG_CRYPTO_DEV_AES */ + +static struct cipher_testvec aes_enc_tv_template[] = { + { /* From FIPS-197 */ + .key = "\x00\x01\x02\x03\x04\x05\x06\x07" + "\x08\x09\x0a\x0b\x0c\x0d\x0e\x0f", + .klen = 16, + .input = "\x00\x11\x22\x33\x44\x55\x66\x77" + "\x88\x99\xaa\xbb\xcc\xdd\xee\xff", + .ilen = 16, + .result = "\x69\xc4\xe0\xd8\x6a\x7b\x04\x30" + "\xd8\xcd\xb7\x80\x70\xb4\xc5\x5a", + .rlen = 16, + }, { + .key = "\x00\x01\x02\x03\x04\x05\x06\x07" + "\x08\x09\x0a\x0b\x0c\x0d\x0e\x0f" + "\x10\x11\x12\x13\x14\x15\x16\x17", + .klen = 24, + .input = "\x00\x11\x22\x33\x44\x55\x66\x77" + "\x88\x99\xaa\xbb\xcc\xdd\xee\xff", + .ilen = 16, + .result = "\xdd\xa9\x7c\xa4\x86\x4c\xdf\xe0" + "\x6e\xaf\x70\xa0\xec\x0d\x71\x91", + .rlen = 16, + }, { + .key = "\x00\x01\x02\x03\x04\x05\x06\x07" + "\x08\x09\x0a\x0b\x0c\x0d\x0e\x0f" + "\x10\x11\x12\x13\x14\x15\x16\x17" + "\x18\x19\x1a\x1b\x1c\x1d\x1e\x1f", + .klen = 32, + .input = "\x00\x11\x22\x33\x44\x55\x66\x77" + "\x88\x99\xaa\xbb\xcc\xdd\xee\xff", + .ilen = 16, + .result = "\x8e\xa2\xb7\xca\x51\x67\x45\xbf" + "\xea\xfc\x49\x90\x4b\x49\x60\x89", + .rlen = 16, + }, +}; + +static struct cipher_testvec aes_dec_tv_template[] = { + { /* From FIPS-197 */ + .key = "\x00\x01\x02\x03\x04\x05\x06\x07" + "\x08\x09\x0a\x0b\x0c\x0d\x0e\x0f", + .klen = 16, + .input = "\x69\xc4\xe0\xd8\x6a\x7b\x04\x30" + "\xd8\xcd\xb7\x80\x70\xb4\xc5\x5a", + .ilen = 16, + .result = "\x00\x11\x22\x33\x44\x55\x66\x77" + "\x88\x99\xaa\xbb\xcc\xdd\xee\xff", + .rlen = 16, + }, { + .key = "\x00\x01\x02\x03\x04\x05\x06\x07" + "\x08\x09\x0a\x0b\x0c\x0d\x0e\x0f" + "\x10\x11\x12\x13\x14\x15\x16\x17", + .klen = 24, + .input = "\xdd\xa9\x7c\xa4\x86\x4c\xdf\xe0" + "\x6e\xaf\x70\xa0\xec\x0d\x71\x91", + .ilen = 16, + .result = "\x00\x11\x22\x33\x44\x55\x66\x77" + "\x88\x99\xaa\xbb\xcc\xdd\xee\xff", + .rlen = 16, + }, { + .key = "\x00\x01\x02\x03\x04\x05\x06\x07" + "\x08\x09\x0a\x0b\x0c\x0d\x0e\x0f" + "\x10\x11\x12\x13\x14\x15\x16\x17" + "\x18\x19\x1a\x1b\x1c\x1d\x1e\x1f", + .klen = 32, + .input = "\x8e\xa2\xb7\xca\x51\x67\x45\xbf" + "\xea\xfc\x49\x90\x4b\x49\x60\x89", + .ilen = 16, + .result = "\x00\x11\x22\x33\x44\x55\x66\x77" + "\x88\x99\xaa\xbb\xcc\xdd\xee\xff", + .rlen = 16, + }, +}; + +static struct cipher_testvec aes_cbc_enc_tv_template[] = { + { /* From RFC 3602 */ + .key = "\x06\xa9\x21\x40\x36\xb8\xa1\x5b" + "\x51\x2e\x03\xd5\x34\x12\x00\x06", + .klen = 16, + .iv = "\x3d\xaf\xba\x42\x9d\x9e\xb4\x30" + "\xb4\x22\xda\x80\x2c\x9f\xac\x41", + .input = "Single block msg", + .ilen = 16, + .result = "\xe3\x53\x77\x9c\x10\x79\xae\xb8" + "\x27\x08\x94\x2d\xbe\x77\x18\x1a", + .rlen = 16, + }, { + .key = "\xc2\x86\x69\x6d\x88\x7c\x9a\xa0" + "\x61\x1b\xbb\x3e\x20\x25\xa4\x5a", + .klen = 16, + .iv = "\x56\x2e\x17\x99\x6d\x09\x3d\x28" + "\xdd\xb3\xba\x69\x5a\x2e\x6f\x58", + .input = "\x00\x01\x02\x03\x04\x05\x06\x07" + "\x08\x09\x0a\x0b\x0c\x0d\x0e\x0f" + "\x10\x11\x12\x13\x14\x15\x16\x17" + "\x18\x19\x1a\x1b\x1c\x1d\x1e\x1f", + .ilen = 32, + .result = "\xd2\x96\xcd\x94\xc2\xcc\xcf\x8a" + "\x3a\x86\x30\x28\xb5\xe1\xdc\x0a" + "\x75\x86\x60\x2d\x25\x3c\xff\xf9" + "\x1b\x82\x66\xbe\xa6\xd6\x1a\xb1", + .rlen = 32, + }, { /* From NIST SP800-38A */ + .key = "\x8e\x73\xb0\xf7\xda\x0e\x64\x52" + "\xc8\x10\xf3\x2b\x80\x90\x79\xe5" + "\x62\xf8\xea\xd2\x52\x2c\x6b\x7b", + .klen = 24, + .iv = "\x00\x01\x02\x03\x04\x05\x06\x07" + "\x08\x09\x0a\x0b\x0c\x0d\x0e\x0f", + .input = "\x6b\xc1\xbe\xe2\x2e\x40\x9f\x96" + "\xe9\x3d\x7e\x11\x73\x93\x17\x2a" + "\xae\x2d\x8a\x57\x1e\x03\xac\x9c" + "\x9e\xb7\x6f\xac\x45\xaf\x8e\x51" + "\x30\xc8\x1c\x46\xa3\x5c\xe4\x11" + "\xe5\xfb\xc1\x19\x1a\x0a\x52\xef" + "\xf6\x9f\x24\x45\xdf\x4f\x9b\x17" + "\xad\x2b\x41\x7b\xe6\x6c\x37\x10", + .ilen = 64, + .result = "\x4f\x02\x1d\xb2\x43\xbc\x63\x3d" + "\x71\x78\x18\x3a\x9f\xa0\x71\xe8" + "\xb4\xd9\xad\xa9\xad\x7d\xed\xf4" + "\xe5\xe7\x38\x76\x3f\x69\x14\x5a" + "\x57\x1b\x24\x20\x12\xfb\x7a\xe0" + "\x7f\xa9\xba\xac\x3d\xf1\x02\xe0" + "\x08\xb0\xe2\x79\x88\x59\x88\x81" + "\xd9\x20\xa9\xe6\x4f\x56\x15\xcd", + .rlen = 64, +#if !defined(CONFIG_CRYPTO_DEV_AES) && !defined(CONFIG_CRYPTO_ASYNC_AES) + }, { + .key = "\x60\x3d\xeb\x10\x15\xca\x71\xbe" + "\x2b\x73\xae\xf0\x85\x7d\x77\x81" + "\x1f\x35\x2c\x07\x3b\x61\x08\xd7" + "\x2d\x98\x10\xa3\x09\x14\xdf\xf4", + .klen = 32, + .iv = "\x00\x01\x02\x03\x04\x05\x06\x07" + "\x08\x09\x0a\x0b\x0c\x0d\x0e\x0f", + .input = "\x6b\xc1\xbe\xe2\x2e\x40\x9f\x96" + "\xe9\x3d\x7e\x11\x73\x93\x17\x2a" + "\xae\x2d\x8a\x57\x1e\x03\xac\x9c" + "\x9e\xb7\x6f\xac\x45\xaf\x8e\x51" + "\x30\xc8\x1c\x46\xa3\x5c\xe4\x11" + "\xe5\xfb\xc1\x19\x1a\x0a\x52\xef" + "\xf6\x9f\x24\x45\xdf\x4f\x9b\x17" + "\xad\x2b\x41\x7b\xe6\x6c\x37\x10", + .ilen = 64, + .result = "\xf5\x8c\x4c\x04\xd6\xe5\xf1\xba" + "\x77\x9e\xab\xfb\x5f\x7b\xfb\xd6" + "\x9c\xfc\x4e\x96\x7e\xdb\x80\x8d" + "\x67\x9f\x77\x7b\xc6\x70\x2c\x7d" + "\x39\xf2\x33\x69\xa9\xd9\xba\xcf" + "\xa5\x30\xe2\x63\x04\x23\x14\x61" + "\xb2\xeb\x05\xe2\xc3\x9b\xe9\xfc" + "\xda\x6c\x19\x07\x8c\x6a\x9d\x1b", + .rlen = 64, +#endif + }, +}; + +static struct cipher_testvec aes_cbc_dec_tv_template[] = { + { /* From RFC 3602 */ + .key = "\x06\xa9\x21\x40\x36\xb8\xa1\x5b" + "\x51\x2e\x03\xd5\x34\x12\x00\x06", + .klen = 16, + .iv = "\x3d\xaf\xba\x42\x9d\x9e\xb4\x30" + "\xb4\x22\xda\x80\x2c\x9f\xac\x41", + .input = "\xe3\x53\x77\x9c\x10\x79\xae\xb8" + "\x27\x08\x94\x2d\xbe\x77\x18\x1a", + .ilen = 16, + .result = "Single block msg", + .rlen = 16, + }, { + .key = "\xc2\x86\x69\x6d\x88\x7c\x9a\xa0" + "\x61\x1b\xbb\x3e\x20\x25\xa4\x5a", + .klen = 16, + .iv = "\x56\x2e\x17\x99\x6d\x09\x3d\x28" + "\xdd\xb3\xba\x69\x5a\x2e\x6f\x58", + .input = "\xd2\x96\xcd\x94\xc2\xcc\xcf\x8a" + "\x3a\x86\x30\x28\xb5\xe1\xdc\x0a" + "\x75\x86\x60\x2d\x25\x3c\xff\xf9" + "\x1b\x82\x66\xbe\xa6\xd6\x1a\xb1", + .ilen = 32, + .result = "\x00\x01\x02\x03\x04\x05\x06\x07" + "\x08\x09\x0a\x0b\x0c\x0d\x0e\x0f" + "\x10\x11\x12\x13\x14\x15\x16\x17" + "\x18\x19\x1a\x1b\x1c\x1d\x1e\x1f", + .rlen = 32, + }, { /* From NIST SP800-38A */ + .key = "\x8e\x73\xb0\xf7\xda\x0e\x64\x52" + "\xc8\x10\xf3\x2b\x80\x90\x79\xe5" + "\x62\xf8\xea\xd2\x52\x2c\x6b\x7b", + .klen = 24, + .iv = "\x00\x01\x02\x03\x04\x05\x06\x07" + "\x08\x09\x0a\x0b\x0c\x0d\x0e\x0f", + .input = "\x4f\x02\x1d\xb2\x43\xbc\x63\x3d" + "\x71\x78\x18\x3a\x9f\xa0\x71\xe8" + "\xb4\xd9\xad\xa9\xad\x7d\xed\xf4" + "\xe5\xe7\x38\x76\x3f\x69\x14\x5a" + "\x57\x1b\x24\x20\x12\xfb\x7a\xe0" + "\x7f\xa9\xba\xac\x3d\xf1\x02\xe0" + "\x08\xb0\xe2\x79\x88\x59\x88\x81" + "\xd9\x20\xa9\xe6\x4f\x56\x15\xcd", + .ilen = 64, + .result = "\x6b\xc1\xbe\xe2\x2e\x40\x9f\x96" + "\xe9\x3d\x7e\x11\x73\x93\x17\x2a" + "\xae\x2d\x8a\x57\x1e\x03\xac\x9c" + "\x9e\xb7\x6f\xac\x45\xaf\x8e\x51" + "\x30\xc8\x1c\x46\xa3\x5c\xe4\x11" + "\xe5\xfb\xc1\x19\x1a\x0a\x52\xef" + "\xf6\x9f\x24\x45\xdf\x4f\x9b\x17" + "\xad\x2b\x41\x7b\xe6\x6c\x37\x10", + .rlen = 64, +#if !defined(CONFIG_CRYPTO_DEV_AES) && !defined(CONFIG_CRYPTO_ASYNC_AES) + }, { + .key = "\x60\x3d\xeb\x10\x15\xca\x71\xbe" + "\x2b\x73\xae\xf0\x85\x7d\x77\x81" + "\x1f\x35\x2c\x07\x3b\x61\x08\xd7" + "\x2d\x98\x10\xa3\x09\x14\xdf\xf4", + .klen = 32, + .iv = "\x00\x01\x02\x03\x04\x05\x06\x07" + "\x08\x09\x0a\x0b\x0c\x0d\x0e\x0f", + .input = "\xf5\x8c\x4c\x04\xd6\xe5\xf1\xba" + "\x77\x9e\xab\xfb\x5f\x7b\xfb\xd6" + "\x9c\xfc\x4e\x96\x7e\xdb\x80\x8d" + "\x67\x9f\x77\x7b\xc6\x70\x2c\x7d" + "\x39\xf2\x33\x69\xa9\xd9\xba\xcf" + "\xa5\x30\xe2\x63\x04\x23\x14\x61" + "\xb2\xeb\x05\xe2\xc3\x9b\xe9\xfc" + "\xda\x6c\x19\x07\x8c\x6a\x9d\x1b", + .ilen = 64, + .result = "\x6b\xc1\xbe\xe2\x2e\x40\x9f\x96" + "\xe9\x3d\x7e\x11\x73\x93\x17\x2a" + "\xae\x2d\x8a\x57\x1e\x03\xac\x9c" + "\x9e\xb7\x6f\xac\x45\xaf\x8e\x51" + "\x30\xc8\x1c\x46\xa3\x5c\xe4\x11" + "\xe5\xfb\xc1\x19\x1a\x0a\x52\xef" + "\xf6\x9f\x24\x45\xdf\x4f\x9b\x17" + "\xad\x2b\x41\x7b\xe6\x6c\x37\x10", + .rlen = 64, +#endif + }, +}; + +#if !defined(CONFIG_CRYPTO_DEV_AES) && !defined(CONFIG_CRYPTO_ASYNC_AES) + +static struct cipher_testvec aes_lrw_enc_tv_template[] = { + /* from http://grouper.ieee.org/groups/1619/email/pdf00017.pdf */ + { /* LRW-32-AES 1 */ + .key = "\x45\x62\xac\x25\xf8\x28\x17\x6d" + "\x4c\x26\x84\x14\xb5\x68\x01\x85" + "\x25\x8e\x2a\x05\xe7\x3e\x9d\x03" + "\xee\x5a\x83\x0c\xcc\x09\x4c\x87", + .klen = 32, + .iv = "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x01", + .input = "\x30\x31\x32\x33\x34\x35\x36\x37" + "\x38\x39\x41\x42\x43\x44\x45\x46", + .ilen = 16, + .result = "\xf1\xb2\x73\xcd\x65\xa3\xdf\x5f" + "\xe9\x5d\x48\x92\x54\x63\x4e\xb8", + .rlen = 16, + }, { /* LRW-32-AES 2 */ + .key = "\x59\x70\x47\x14\xf5\x57\x47\x8c" + "\xd7\x79\xe8\x0f\x54\x88\x79\x44" + "\x0d\x48\xf0\xb7\xb1\x5a\x53\xea" + "\x1c\xaa\x6b\x29\xc2\xca\xfb\xaf", + .klen = 32, + .iv = "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x02", + .input = "\x30\x31\x32\x33\x34\x35\x36\x37" + "\x38\x39\x41\x42\x43\x44\x45\x46", + .ilen = 16, + .result = "\x00\xc8\x2b\xae\x95\xbb\xcd\xe5" + "\x27\x4f\x07\x69\xb2\x60\xe1\x36", + .rlen = 16, + }, { /* LRW-32-AES 3 */ + .key = "\xd8\x2a\x91\x34\xb2\x6a\x56\x50" + "\x30\xfe\x69\xe2\x37\x7f\x98\x47" + "\xcd\xf9\x0b\x16\x0c\x64\x8f\xb6" + "\xb0\x0d\x0d\x1b\xae\x85\x87\x1f", + .klen = 32, + .iv = "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x02\x00\x00\x00\x00", + .input = "\x30\x31\x32\x33\x34\x35\x36\x37" + "\x38\x39\x41\x42\x43\x44\x45\x46", + .ilen = 16, + .result = "\x76\x32\x21\x83\xed\x8f\xf1\x82" + "\xf9\x59\x62\x03\x69\x0e\x5e\x01", + .rlen = 16, + }, { /* LRW-32-AES 4 */ + .key = "\x0f\x6a\xef\xf8\xd3\xd2\xbb\x15" + "\x25\x83\xf7\x3c\x1f\x01\x28\x74" + "\xca\xc6\xbc\x35\x4d\x4a\x65\x54" + "\x90\xae\x61\xcf\x7b\xae\xbd\xcc" + "\xad\xe4\x94\xc5\x4a\x29\xae\x70", + .klen = 40, + .iv = "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x01", + .input = "\x30\x31\x32\x33\x34\x35\x36\x37" + "\x38\x39\x41\x42\x43\x44\x45\x46", + .ilen = 16, + .result = "\x9c\x0f\x15\x2f\x55\xa2\xd8\xf0" + "\xd6\x7b\x8f\x9e\x28\x22\xbc\x41", + .rlen = 16, + }, { /* LRW-32-AES 5 */ + .key = "\x8a\xd4\xee\x10\x2f\xbd\x81\xff" + "\xf8\x86\xce\xac\x93\xc5\xad\xc6" + "\xa0\x19\x07\xc0\x9d\xf7\xbb\xdd" + "\x52\x13\xb2\xb7\xf0\xff\x11\xd8" + "\xd6\x08\xd0\xcd\x2e\xb1\x17\x6f", + .klen = 40, + .iv = "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x02\x00\x00\x00\x00", + .input = "\x30\x31\x32\x33\x34\x35\x36\x37" + "\x38\x39\x41\x42\x43\x44\x45\x46", + .ilen = 16, + .result = "\xd4\x27\x6a\x7f\x14\x91\x3d\x65" + "\xc8\x60\x48\x02\x87\xe3\x34\x06", + .rlen = 16, + }, { /* LRW-32-AES 6 */ + .key = "\xf8\xd4\x76\xff\xd6\x46\xee\x6c" + "\x23\x84\xcb\x1c\x77\xd6\x19\x5d" + "\xfe\xf1\xa9\xf3\x7b\xbc\x8d\x21" + "\xa7\x9c\x21\xf8\xcb\x90\x02\x89" + "\xa8\x45\x34\x8e\xc8\xc5\xb5\xf1" + "\x26\xf5\x0e\x76\xfe\xfd\x1b\x1e", + .klen = 48, + .iv = "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x01", + .input = "\x30\x31\x32\x33\x34\x35\x36\x37" + "\x38\x39\x41\x42\x43\x44\x45\x46", + .ilen = 16, + .result = "\xbd\x06\xb8\xe1\xdb\x98\x89\x9e" + "\xc4\x98\xe4\x91\xcf\x1c\x70\x2b", + .rlen = 16, + }, { /* LRW-32-AES 7 */ + .key = "\xfb\x76\x15\xb2\x3d\x80\x89\x1d" + "\xd4\x70\x98\x0b\xc7\x95\x84\xc8" + "\xb2\xfb\x64\xce\x60\x97\x87\x8d" + "\x17\xfc\xe4\x5a\x49\xe8\x30\xb7" + "\x6e\x78\x17\xe7\x2d\x5e\x12\xd4" + "\x60\x64\x04\x7a\xf1\x2f\x9e\x0c", + .klen = 48, + .iv = "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x02\x00\x00\x00\x00", + .input = "\x30\x31\x32\x33\x34\x35\x36\x37" + "\x38\x39\x41\x42\x43\x44\x45\x46", + .ilen = 16, + .result = "\x5b\x90\x8e\xc1\xab\xdd\x67\x5f" + "\x3d\x69\x8a\x95\x53\xc8\x9c\xe5", + .rlen = 16, + }, { +/* http://www.mail-archive.com/stds-p1619@listserv.ieee.org/msg00173.html */ + .key = "\xf8\xd4\x76\xff\xd6\x46\xee\x6c" + "\x23\x84\xcb\x1c\x77\xd6\x19\x5d" + "\xfe\xf1\xa9\xf3\x7b\xbc\x8d\x21" + "\xa7\x9c\x21\xf8\xcb\x90\x02\x89" + "\xa8\x45\x34\x8e\xc8\xc5\xb5\xf1" + "\x26\xf5\x0e\x76\xfe\xfd\x1b\x1e", + .klen = 48, + .iv = "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x01", + .input = "\x05\x11\xb7\x18\xab\xc6\x2d\xac" + "\x70\x5d\xf6\x22\x94\xcd\xe5\x6c" + "\x17\x6b\xf6\x1c\xf0\xf3\x6e\xf8" + "\x50\x38\x1f\x71\x49\xb6\x57\xd6" + "\x8f\xcb\x8d\x6b\xe3\xa6\x29\x90" + "\xfe\x2a\x62\x82\xae\x6d\x8b\xf6" + "\xad\x1e\x9e\x20\x5f\x38\xbe\x04" + "\xda\x10\x8e\xed\xa2\xa4\x87\xab" + "\xda\x6b\xb4\x0c\x75\xba\xd3\x7c" + "\xc9\xac\x42\x31\x95\x7c\xc9\x04" + "\xeb\xd5\x6e\x32\x69\x8a\xdb\xa6" + "\x15\xd7\x3f\x4f\x2f\x66\x69\x03" + "\x9c\x1f\x54\x0f\xde\x1f\xf3\x65" + "\x4c\x96\x12\xed\x7c\x92\x03\x01" + "\x6f\xbc\x35\x93\xac\xf1\x27\xf1" + "\xb4\x96\x82\x5a\x5f\xb0\xa0\x50" + "\x89\xa4\x8e\x66\x44\x85\xcc\xfd" + "\x33\x14\x70\xe3\x96\xb2\xc3\xd3" + "\xbb\x54\x5a\x1a\xf9\x74\xa2\xc5" + "\x2d\x64\x75\xdd\xb4\x54\xe6\x74" + "\x8c\xd3\x9d\x9e\x86\xab\x51\x53" + "\xb7\x93\x3e\x6f\xd0\x4e\x2c\x40" + "\xf6\xa8\x2e\x3e\x9d\xf4\x66\xa5" + "\x76\x12\x73\x44\x1a\x56\xd7\x72" + "\x88\xcd\x21\x8c\x4c\x0f\xfe\xda" + "\x95\xe0\x3a\xa6\xa5\x84\x46\xcd" + "\xd5\x3e\x9d\x3a\xe2\x67\xe6\x60" + "\x1a\xe2\x70\x85\x58\xc2\x1b\x09" + "\xe1\xd7\x2c\xca\xad\xa8\x8f\xf9" + "\xac\xb3\x0e\xdb\xca\x2e\xe2\xb8" + "\x51\x71\xd9\x3c\x6c\xf1\x56\xf8" + "\xea\x9c\xf1\xfb\x0c\xe6\xb7\x10" + "\x1c\xf8\xa9\x7c\xe8\x53\x35\xc1" + "\x90\x3e\x76\x4a\x74\xa4\x21\x2c" + "\xf6\x2c\x4e\x0f\x94\x3a\x88\x2e" + "\x41\x09\x6a\x33\x7d\xf6\xdd\x3f" + "\x8d\x23\x31\x74\x84\xeb\x88\x6e" + "\xcc\xb9\xbc\x22\x83\x19\x07\x22" + "\xa5\x2d\xdf\xa5\xf3\x80\x85\x78" + "\x84\x39\x6a\x6d\x6a\x99\x4f\xa5" + "\x15\xfe\x46\xb0\xe4\x6c\xa5\x41" + "\x3c\xce\x8f\x42\x60\x71\xa7\x75" + "\x08\x40\x65\x8a\x82\xbf\xf5\x43" + "\x71\x96\xa9\x4d\x44\x8a\x20\xbe" + "\xfa\x4d\xbb\xc0\x7d\x31\x96\x65" + "\xe7\x75\xe5\x3e\xfd\x92\x3b\xc9" + "\x55\xbb\x16\x7e\xf7\xc2\x8c\xa4" + "\x40\x1d\xe5\xef\x0e\xdf\xe4\x9a" + "\x62\x73\x65\xfd\x46\x63\x25\x3d" + "\x2b\xaf\xe5\x64\xfe\xa5\x5c\xcf" + "\x24\xf3\xb4\xac\x64\xba\xdf\x4b" + "\xc6\x96\x7d\x81\x2d\x8d\x97\xf7" + "\xc5\x68\x77\x84\x32\x2b\xcc\x85" + "\x74\x96\xf0\x12\x77\x61\xb9\xeb" + "\x71\xaa\x82\xcb\x1c\xdb\x89\xc8" + "\xc6\xb5\xe3\x5c\x7d\x39\x07\x24" + "\xda\x39\x87\x45\xc0\x2b\xbb\x01" + "\xac\xbc\x2a\x5c\x7f\xfc\xe8\xce" + "\x6d\x9c\x6f\xed\xd3\xc1\xa1\xd6" + "\xc5\x55\xa9\x66\x2f\xe1\xc8\x32" + "\xa6\x5d\xa4\x3a\x98\x73\xe8\x45" + "\xa4\xc7\xa8\xb4\xf6\x13\x03\xf6" + "\xe9\x2e\xc4\x29\x0f\x84\xdb\xc4" + "\x21\xc4\xc2\x75\x67\x89\x37\x0a", + .ilen = 512, + .result = "\x1a\x1d\xa9\x30\xad\xf9\x2f\x9b" + "\xb6\x1d\xae\xef\xf0\x2f\xf8\x5a" + "\x39\x3c\xbf\x2a\xb2\x45\xb2\x23" + "\x1b\x63\x3c\xcf\xaa\xbe\xcf\x4e" + "\xfa\xe8\x29\xc2\x20\x68\x2b\x3c" + "\x2e\x8b\xf7\x6e\x25\xbd\xe3\x3d" + "\x66\x27\xd6\xaf\xd6\x64\x3e\xe3" + "\xe8\x58\x46\x97\x39\x51\x07\xde" + "\xcb\x37\xbc\xa9\xc0\x5f\x75\xc3" + "\x0e\x84\x23\x1d\x16\xd4\x1c\x59" + "\x9c\x1a\x02\x55\xab\x3a\x97\x1d" + "\xdf\xdd\xc7\x06\x51\xd7\x70\xae" + "\x23\xc6\x8c\xf5\x1e\xa0\xe5\x82" + "\xb8\xb2\xbf\x04\xa0\x32\x8e\x68" + "\xeb\xaf\x6e\x2d\x94\x22\x2f\xce" + "\x4c\xb5\x59\xe2\xa2\x2f\xa0\x98" + "\x1a\x97\xc6\xd4\xb5\x00\x59\xf2" + "\x84\x14\x72\xb1\x9a\x6e\xa3\x7f" + "\xea\x20\xe7\xcb\x65\x77\x3a\xdf" + "\xc8\x97\x67\x15\xc2\x2a\x27\xcc" + "\x18\x55\xa1\x24\x0b\x24\x24\xaf" + "\x5b\xec\x68\xb8\xc8\xf5\xba\x63" + "\xff\xed\x89\xce\xd5\x3d\x88\xf3" + "\x25\xef\x05\x7c\x3a\xef\xeb\xd8" + "\x7a\x32\x0d\xd1\x1e\x58\x59\x99" + "\x90\x25\xb5\x26\xb0\xe3\x2b\x6c" + "\x4c\xa9\x8b\x84\x4f\x5e\x01\x50" + "\x41\x30\x58\xc5\x62\x74\x52\x1d" + "\x45\x24\x6a\x42\x64\x4f\x97\x1c" + "\xa8\x66\xb5\x6d\x79\xd4\x0d\x48" + "\xc5\x5f\xf3\x90\x32\xdd\xdd\xe1" + "\xe4\xa9\x9f\xfc\xc3\x52\x5a\x46" + "\xe4\x81\x84\x95\x36\x59\x7a\x6b" + "\xaa\xb3\x60\xad\xce\x9f\x9f\x28" + "\xe0\x01\x75\x22\xc4\x4e\xa9\x62" + "\x5c\x62\x0d\x00\xcb\x13\xe8\x43" + "\x72\xd4\x2d\x53\x46\xb5\xd1\x16" + "\x22\x18\xdf\x34\x33\xf5\xd6\x1c" + "\xb8\x79\x78\x97\x94\xff\x72\x13" + "\x4c\x27\xfc\xcb\xbf\x01\x53\xa6" + "\xb4\x50\x6e\xde\xdf\xb5\x43\xa4" + "\x59\xdf\x52\xf9\x7c\xe0\x11\x6f" + "\x2d\x14\x8e\x24\x61\x2c\xe1\x17" + "\xcc\xce\x51\x0c\x19\x8a\x82\x30" + "\x94\xd5\x3d\x6a\x53\x06\x5e\xbd" + "\xb7\xeb\xfa\xfd\x27\x51\xde\x85" + "\x1e\x86\x53\x11\x53\x94\x00\xee" + "\x2b\x8c\x08\x2a\xbf\xdd\xae\x11" + "\xcb\x1e\xa2\x07\x9a\x80\xcf\x62" + "\x9b\x09\xdc\x95\x3c\x96\x8e\xb1" + "\x09\xbd\xe4\xeb\xdb\xca\x70\x7a" + "\x9e\xfa\x31\x18\x45\x3c\x21\x33" + "\xb0\xb3\x2b\xea\xf3\x71\x2d\xe1" + "\x03\xad\x1b\x48\xd4\x67\x27\xf0" + "\x62\xe4\x3d\xfb\x9b\x08\x76\xe7" + "\xdd\x2b\x01\x39\x04\x5a\x58\x7a" + "\xf7\x11\x90\xec\xbd\x51\x5c\x32" + "\x6b\xd7\x35\x39\x02\x6b\xf2\xa6" + "\xd0\x0d\x07\xe1\x06\xc4\x5b\x7d" + "\xe4\x6a\xd7\xee\x15\x1f\x83\xb4" + "\xa3\xa7\x5e\xc3\x90\xb7\xef\xd3" + "\xb7\x4f\xf8\x92\x4c\xb7\x3c\x29" + "\xcd\x7e\x2b\x5d\x43\xea\x42\xe7" + "\x74\x3f\x7d\x58\x88\x75\xde\x3e", + .rlen = 512, + } +}; + +static struct cipher_testvec aes_lrw_dec_tv_template[] = { + /* from http://grouper.ieee.org/groups/1619/email/pdf00017.pdf */ + /* same as enc vectors with input and result reversed */ + { /* LRW-32-AES 1 */ + .key = "\x45\x62\xac\x25\xf8\x28\x17\x6d" + "\x4c\x26\x84\x14\xb5\x68\x01\x85" + "\x25\x8e\x2a\x05\xe7\x3e\x9d\x03" + "\xee\x5a\x83\x0c\xcc\x09\x4c\x87", + .klen = 32, + .iv = "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x01", + .input = "\xf1\xb2\x73\xcd\x65\xa3\xdf\x5f" + "\xe9\x5d\x48\x92\x54\x63\x4e\xb8", + .ilen = 16, + .result = "\x30\x31\x32\x33\x34\x35\x36\x37" + "\x38\x39\x41\x42\x43\x44\x45\x46", + .rlen = 16, + }, { /* LRW-32-AES 2 */ + .key = "\x59\x70\x47\x14\xf5\x57\x47\x8c" + "\xd7\x79\xe8\x0f\x54\x88\x79\x44" + "\x0d\x48\xf0\xb7\xb1\x5a\x53\xea" + "\x1c\xaa\x6b\x29\xc2\xca\xfb\xaf", + .klen = 32, + .iv = "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x02", + .input = "\x00\xc8\x2b\xae\x95\xbb\xcd\xe5" + "\x27\x4f\x07\x69\xb2\x60\xe1\x36", + .ilen = 16, + .result = "\x30\x31\x32\x33\x34\x35\x36\x37" + "\x38\x39\x41\x42\x43\x44\x45\x46", + .rlen = 16, + }, { /* LRW-32-AES 3 */ + .key = "\xd8\x2a\x91\x34\xb2\x6a\x56\x50" + "\x30\xfe\x69\xe2\x37\x7f\x98\x47" + "\xcd\xf9\x0b\x16\x0c\x64\x8f\xb6" + "\xb0\x0d\x0d\x1b\xae\x85\x87\x1f", + .klen = 32, + .iv = "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x02\x00\x00\x00\x00", + .input = "\x76\x32\x21\x83\xed\x8f\xf1\x82" + "\xf9\x59\x62\x03\x69\x0e\x5e\x01", + .ilen = 16, + .result = "\x30\x31\x32\x33\x34\x35\x36\x37" + "\x38\x39\x41\x42\x43\x44\x45\x46", + .rlen = 16, + }, { /* LRW-32-AES 4 */ + .key = "\x0f\x6a\xef\xf8\xd3\xd2\xbb\x15" + "\x25\x83\xf7\x3c\x1f\x01\x28\x74" + "\xca\xc6\xbc\x35\x4d\x4a\x65\x54" + "\x90\xae\x61\xcf\x7b\xae\xbd\xcc" + "\xad\xe4\x94\xc5\x4a\x29\xae\x70", + .klen = 40, + .iv = "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x01", + .input = "\x9c\x0f\x15\x2f\x55\xa2\xd8\xf0" + "\xd6\x7b\x8f\x9e\x28\x22\xbc\x41", + .ilen = 16, + .result = "\x30\x31\x32\x33\x34\x35\x36\x37" + "\x38\x39\x41\x42\x43\x44\x45\x46", + .rlen = 16, + }, { /* LRW-32-AES 5 */ + .key = "\x8a\xd4\xee\x10\x2f\xbd\x81\xff" + "\xf8\x86\xce\xac\x93\xc5\xad\xc6" + "\xa0\x19\x07\xc0\x9d\xf7\xbb\xdd" + "\x52\x13\xb2\xb7\xf0\xff\x11\xd8" + "\xd6\x08\xd0\xcd\x2e\xb1\x17\x6f", + .klen = 40, + .iv = "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x02\x00\x00\x00\x00", + .input = "\xd4\x27\x6a\x7f\x14\x91\x3d\x65" + "\xc8\x60\x48\x02\x87\xe3\x34\x06", + .ilen = 16, + .result = "\x30\x31\x32\x33\x34\x35\x36\x37" + "\x38\x39\x41\x42\x43\x44\x45\x46", + .rlen = 16, + }, { /* LRW-32-AES 6 */ + .key = "\xf8\xd4\x76\xff\xd6\x46\xee\x6c" + "\x23\x84\xcb\x1c\x77\xd6\x19\x5d" + "\xfe\xf1\xa9\xf3\x7b\xbc\x8d\x21" + "\xa7\x9c\x21\xf8\xcb\x90\x02\x89" + "\xa8\x45\x34\x8e\xc8\xc5\xb5\xf1" + "\x26\xf5\x0e\x76\xfe\xfd\x1b\x1e", + .klen = 48, + .iv = "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x01", + .input = "\xbd\x06\xb8\xe1\xdb\x98\x89\x9e" + "\xc4\x98\xe4\x91\xcf\x1c\x70\x2b", + .ilen = 16, + .result = "\x30\x31\x32\x33\x34\x35\x36\x37" + "\x38\x39\x41\x42\x43\x44\x45\x46", + .rlen = 16, + }, { /* LRW-32-AES 7 */ + .key = "\xfb\x76\x15\xb2\x3d\x80\x89\x1d" + "\xd4\x70\x98\x0b\xc7\x95\x84\xc8" + "\xb2\xfb\x64\xce\x60\x97\x87\x8d" + "\x17\xfc\xe4\x5a\x49\xe8\x30\xb7" + "\x6e\x78\x17\xe7\x2d\x5e\x12\xd4" + "\x60\x64\x04\x7a\xf1\x2f\x9e\x0c", + .klen = 48, + .iv = "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x02\x00\x00\x00\x00", + .input = "\x5b\x90\x8e\xc1\xab\xdd\x67\x5f" + "\x3d\x69\x8a\x95\x53\xc8\x9c\xe5", + .ilen = 16, + .result = "\x30\x31\x32\x33\x34\x35\x36\x37" + "\x38\x39\x41\x42\x43\x44\x45\x46", + .rlen = 16, + }, { +/* http://www.mail-archive.com/stds-p1619@listserv.ieee.org/msg00173.html */ + .key = "\xf8\xd4\x76\xff\xd6\x46\xee\x6c" + "\x23\x84\xcb\x1c\x77\xd6\x19\x5d" + "\xfe\xf1\xa9\xf3\x7b\xbc\x8d\x21" + "\xa7\x9c\x21\xf8\xcb\x90\x02\x89" + "\xa8\x45\x34\x8e\xc8\xc5\xb5\xf1" + "\x26\xf5\x0e\x76\xfe\xfd\x1b\x1e", + .klen = 48, + .iv = "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x01", + .input = "\x1a\x1d\xa9\x30\xad\xf9\x2f\x9b" + "\xb6\x1d\xae\xef\xf0\x2f\xf8\x5a" + "\x39\x3c\xbf\x2a\xb2\x45\xb2\x23" + "\x1b\x63\x3c\xcf\xaa\xbe\xcf\x4e" + "\xfa\xe8\x29\xc2\x20\x68\x2b\x3c" + "\x2e\x8b\xf7\x6e\x25\xbd\xe3\x3d" + "\x66\x27\xd6\xaf\xd6\x64\x3e\xe3" + "\xe8\x58\x46\x97\x39\x51\x07\xde" + "\xcb\x37\xbc\xa9\xc0\x5f\x75\xc3" + "\x0e\x84\x23\x1d\x16\xd4\x1c\x59" + "\x9c\x1a\x02\x55\xab\x3a\x97\x1d" + "\xdf\xdd\xc7\x06\x51\xd7\x70\xae" + "\x23\xc6\x8c\xf5\x1e\xa0\xe5\x82" + "\xb8\xb2\xbf\x04\xa0\x32\x8e\x68" + "\xeb\xaf\x6e\x2d\x94\x22\x2f\xce" + "\x4c\xb5\x59\xe2\xa2\x2f\xa0\x98" + "\x1a\x97\xc6\xd4\xb5\x00\x59\xf2" + "\x84\x14\x72\xb1\x9a\x6e\xa3\x7f" + "\xea\x20\xe7\xcb\x65\x77\x3a\xdf" + "\xc8\x97\x67\x15\xc2\x2a\x27\xcc" + "\x18\x55\xa1\x24\x0b\x24\x24\xaf" + "\x5b\xec\x68\xb8\xc8\xf5\xba\x63" + "\xff\xed\x89\xce\xd5\x3d\x88\xf3" + "\x25\xef\x05\x7c\x3a\xef\xeb\xd8" + "\x7a\x32\x0d\xd1\x1e\x58\x59\x99" + "\x90\x25\xb5\x26\xb0\xe3\x2b\x6c" + "\x4c\xa9\x8b\x84\x4f\x5e\x01\x50" + "\x41\x30\x58\xc5\x62\x74\x52\x1d" + "\x45\x24\x6a\x42\x64\x4f\x97\x1c" + "\xa8\x66\xb5\x6d\x79\xd4\x0d\x48" + "\xc5\x5f\xf3\x90\x32\xdd\xdd\xe1" + "\xe4\xa9\x9f\xfc\xc3\x52\x5a\x46" + "\xe4\x81\x84\x95\x36\x59\x7a\x6b" + "\xaa\xb3\x60\xad\xce\x9f\x9f\x28" + "\xe0\x01\x75\x22\xc4\x4e\xa9\x62" + "\x5c\x62\x0d\x00\xcb\x13\xe8\x43" + "\x72\xd4\x2d\x53\x46\xb5\xd1\x16" + "\x22\x18\xdf\x34\x33\xf5\xd6\x1c" + "\xb8\x79\x78\x97\x94\xff\x72\x13" + "\x4c\x27\xfc\xcb\xbf\x01\x53\xa6" + "\xb4\x50\x6e\xde\xdf\xb5\x43\xa4" + "\x59\xdf\x52\xf9\x7c\xe0\x11\x6f" + "\x2d\x14\x8e\x24\x61\x2c\xe1\x17" + "\xcc\xce\x51\x0c\x19\x8a\x82\x30" + "\x94\xd5\x3d\x6a\x53\x06\x5e\xbd" + "\xb7\xeb\xfa\xfd\x27\x51\xde\x85" + "\x1e\x86\x53\x11\x53\x94\x00\xee" + "\x2b\x8c\x08\x2a\xbf\xdd\xae\x11" + "\xcb\x1e\xa2\x07\x9a\x80\xcf\x62" + "\x9b\x09\xdc\x95\x3c\x96\x8e\xb1" + "\x09\xbd\xe4\xeb\xdb\xca\x70\x7a" + "\x9e\xfa\x31\x18\x45\x3c\x21\x33" + "\xb0\xb3\x2b\xea\xf3\x71\x2d\xe1" + "\x03\xad\x1b\x48\xd4\x67\x27\xf0" + "\x62\xe4\x3d\xfb\x9b\x08\x76\xe7" + "\xdd\x2b\x01\x39\x04\x5a\x58\x7a" + "\xf7\x11\x90\xec\xbd\x51\x5c\x32" + "\x6b\xd7\x35\x39\x02\x6b\xf2\xa6" + "\xd0\x0d\x07\xe1\x06\xc4\x5b\x7d" + "\xe4\x6a\xd7\xee\x15\x1f\x83\xb4" + "\xa3\xa7\x5e\xc3\x90\xb7\xef\xd3" + "\xb7\x4f\xf8\x92\x4c\xb7\x3c\x29" + "\xcd\x7e\x2b\x5d\x43\xea\x42\xe7" + "\x74\x3f\x7d\x58\x88\x75\xde\x3e", + .ilen = 512, + .result = "\x05\x11\xb7\x18\xab\xc6\x2d\xac" + "\x70\x5d\xf6\x22\x94\xcd\xe5\x6c" + "\x17\x6b\xf6\x1c\xf0\xf3\x6e\xf8" + "\x50\x38\x1f\x71\x49\xb6\x57\xd6" + "\x8f\xcb\x8d\x6b\xe3\xa6\x29\x90" + "\xfe\x2a\x62\x82\xae\x6d\x8b\xf6" + "\xad\x1e\x9e\x20\x5f\x38\xbe\x04" + "\xda\x10\x8e\xed\xa2\xa4\x87\xab" + "\xda\x6b\xb4\x0c\x75\xba\xd3\x7c" + "\xc9\xac\x42\x31\x95\x7c\xc9\x04" + "\xeb\xd5\x6e\x32\x69\x8a\xdb\xa6" + "\x15\xd7\x3f\x4f\x2f\x66\x69\x03" + "\x9c\x1f\x54\x0f\xde\x1f\xf3\x65" + "\x4c\x96\x12\xed\x7c\x92\x03\x01" + "\x6f\xbc\x35\x93\xac\xf1\x27\xf1" + "\xb4\x96\x82\x5a\x5f\xb0\xa0\x50" + "\x89\xa4\x8e\x66\x44\x85\xcc\xfd" + "\x33\x14\x70\xe3\x96\xb2\xc3\xd3" + "\xbb\x54\x5a\x1a\xf9\x74\xa2\xc5" + "\x2d\x64\x75\xdd\xb4\x54\xe6\x74" + "\x8c\xd3\x9d\x9e\x86\xab\x51\x53" + "\xb7\x93\x3e\x6f\xd0\x4e\x2c\x40" + "\xf6\xa8\x2e\x3e\x9d\xf4\x66\xa5" + "\x76\x12\x73\x44\x1a\x56\xd7\x72" + "\x88\xcd\x21\x8c\x4c\x0f\xfe\xda" + "\x95\xe0\x3a\xa6\xa5\x84\x46\xcd" + "\xd5\x3e\x9d\x3a\xe2\x67\xe6\x60" + "\x1a\xe2\x70\x85\x58\xc2\x1b\x09" + "\xe1\xd7\x2c\xca\xad\xa8\x8f\xf9" + "\xac\xb3\x0e\xdb\xca\x2e\xe2\xb8" + "\x51\x71\xd9\x3c\x6c\xf1\x56\xf8" + "\xea\x9c\xf1\xfb\x0c\xe6\xb7\x10" + "\x1c\xf8\xa9\x7c\xe8\x53\x35\xc1" + "\x90\x3e\x76\x4a\x74\xa4\x21\x2c" + "\xf6\x2c\x4e\x0f\x94\x3a\x88\x2e" + "\x41\x09\x6a\x33\x7d\xf6\xdd\x3f" + "\x8d\x23\x31\x74\x84\xeb\x88\x6e" + "\xcc\xb9\xbc\x22\x83\x19\x07\x22" + "\xa5\x2d\xdf\xa5\xf3\x80\x85\x78" + "\x84\x39\x6a\x6d\x6a\x99\x4f\xa5" + "\x15\xfe\x46\xb0\xe4\x6c\xa5\x41" + "\x3c\xce\x8f\x42\x60\x71\xa7\x75" + "\x08\x40\x65\x8a\x82\xbf\xf5\x43" + "\x71\x96\xa9\x4d\x44\x8a\x20\xbe" + "\xfa\x4d\xbb\xc0\x7d\x31\x96\x65" + "\xe7\x75\xe5\x3e\xfd\x92\x3b\xc9" + "\x55\xbb\x16\x7e\xf7\xc2\x8c\xa4" + "\x40\x1d\xe5\xef\x0e\xdf\xe4\x9a" + "\x62\x73\x65\xfd\x46\x63\x25\x3d" + "\x2b\xaf\xe5\x64\xfe\xa5\x5c\xcf" + "\x24\xf3\xb4\xac\x64\xba\xdf\x4b" + "\xc6\x96\x7d\x81\x2d\x8d\x97\xf7" + "\xc5\x68\x77\x84\x32\x2b\xcc\x85" + "\x74\x96\xf0\x12\x77\x61\xb9\xeb" + "\x71\xaa\x82\xcb\x1c\xdb\x89\xc8" + "\xc6\xb5\xe3\x5c\x7d\x39\x07\x24" + "\xda\x39\x87\x45\xc0\x2b\xbb\x01" + "\xac\xbc\x2a\x5c\x7f\xfc\xe8\xce" + "\x6d\x9c\x6f\xed\xd3\xc1\xa1\xd6" + "\xc5\x55\xa9\x66\x2f\xe1\xc8\x32" + "\xa6\x5d\xa4\x3a\x98\x73\xe8\x45" + "\xa4\xc7\xa8\xb4\xf6\x13\x03\xf6" + "\xe9\x2e\xc4\x29\x0f\x84\xdb\xc4" + "\x21\xc4\xc2\x75\x67\x89\x37\x0a", + .rlen = 512, + } +}; + +static struct cipher_testvec aes_xts_enc_tv_template[] = { + /* http://grouper.ieee.org/groups/1619/email/pdf00086.pdf */ + { /* XTS-AES 1 */ + .key = "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x00", + .klen = 32, + .iv = "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x00", + .input = "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x00", + .ilen = 32, + .result = "\x91\x7c\xf6\x9e\xbd\x68\xb2\xec" + "\x9b\x9f\xe9\xa3\xea\xdd\xa6\x92" + "\xcd\x43\xd2\xf5\x95\x98\xed\x85" + "\x8c\x02\xc2\x65\x2f\xbf\x92\x2e", + .rlen = 32, + }, { /* XTS-AES 2 */ + .key = "\x11\x11\x11\x11\x11\x11\x11\x11" + "\x11\x11\x11\x11\x11\x11\x11\x11" + "\x22\x22\x22\x22\x22\x22\x22\x22" + "\x22\x22\x22\x22\x22\x22\x22\x22", + .klen = 32, + .iv = "\x33\x33\x33\x33\x33\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x00", + .input = "\x44\x44\x44\x44\x44\x44\x44\x44" + "\x44\x44\x44\x44\x44\x44\x44\x44" + "\x44\x44\x44\x44\x44\x44\x44\x44" + "\x44\x44\x44\x44\x44\x44\x44\x44", + .ilen = 32, + .result = "\xc4\x54\x18\x5e\x6a\x16\x93\x6e" + "\x39\x33\x40\x38\xac\xef\x83\x8b" + "\xfb\x18\x6f\xff\x74\x80\xad\xc4" + "\x28\x93\x82\xec\xd6\xd3\x94\xf0", + .rlen = 32, + }, { /* XTS-AES 3 */ + .key = "\xff\xfe\xfd\xfc\xfb\xfa\xf9\xf8" + "\xf7\xf6\xf5\xf4\xf3\xf2\xf1\xf0" + "\x22\x22\x22\x22\x22\x22\x22\x22" + "\x22\x22\x22\x22\x22\x22\x22\x22", + .klen = 32, + .iv = "\x33\x33\x33\x33\x33\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x00", + .input = "\x44\x44\x44\x44\x44\x44\x44\x44" + "\x44\x44\x44\x44\x44\x44\x44\x44" + "\x44\x44\x44\x44\x44\x44\x44\x44" + "\x44\x44\x44\x44\x44\x44\x44\x44", + .ilen = 32, + .result = "\xaf\x85\x33\x6b\x59\x7a\xfc\x1a" + "\x90\x0b\x2e\xb2\x1e\xc9\x49\xd2" + "\x92\xdf\x4c\x04\x7e\x0b\x21\x53" + "\x21\x86\xa5\x97\x1a\x22\x7a\x89", + .rlen = 32, + }, { /* XTS-AES 4 */ + .key = "\x27\x18\x28\x18\x28\x45\x90\x45" + "\x23\x53\x60\x28\x74\x71\x35\x26" + "\x31\x41\x59\x26\x53\x58\x97\x93" + "\x23\x84\x62\x64\x33\x83\x27\x95", + .klen = 32, + .iv = "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x00", + .input = "\x00\x01\x02\x03\x04\x05\x06\x07" + "\x08\x09\x0a\x0b\x0c\x0d\x0e\x0f" + "\x10\x11\x12\x13\x14\x15\x16\x17" + "\x18\x19\x1a\x1b\x1c\x1d\x1e\x1f" + "\x20\x21\x22\x23\x24\x25\x26\x27" + "\x28\x29\x2a\x2b\x2c\x2d\x2e\x2f" + "\x30\x31\x32\x33\x34\x35\x36\x37" + "\x38\x39\x3a\x3b\x3c\x3d\x3e\x3f" + "\x40\x41\x42\x43\x44\x45\x46\x47" + "\x48\x49\x4a\x4b\x4c\x4d\x4e\x4f" + "\x50\x51\x52\x53\x54\x55\x56\x57" + "\x58\x59\x5a\x5b\x5c\x5d\x5e\x5f" + "\x60\x61\x62\x63\x64\x65\x66\x67" + "\x68\x69\x6a\x6b\x6c\x6d\x6e\x6f" + "\x70\x71\x72\x73\x74\x75\x76\x77" + "\x78\x79\x7a\x7b\x7c\x7d\x7e\x7f" + "\x80\x81\x82\x83\x84\x85\x86\x87" + "\x88\x89\x8a\x8b\x8c\x8d\x8e\x8f" + "\x90\x91\x92\x93\x94\x95\x96\x97" + "\x98\x99\x9a\x9b\x9c\x9d\x9e\x9f" + "\xa0\xa1\xa2\xa3\xa4\xa5\xa6\xa7" + "\xa8\xa9\xaa\xab\xac\xad\xae\xaf" + "\xb0\xb1\xb2\xb3\xb4\xb5\xb6\xb7" + "\xb8\xb9\xba\xbb\xbc\xbd\xbe\xbf" + "\xc0\xc1\xc2\xc3\xc4\xc5\xc6\xc7" + "\xc8\xc9\xca\xcb\xcc\xcd\xce\xcf" + "\xd0\xd1\xd2\xd3\xd4\xd5\xd6\xd7" + "\xd8\xd9\xda\xdb\xdc\xdd\xde\xdf" + "\xe0\xe1\xe2\xe3\xe4\xe5\xe6\xe7" + "\xe8\xe9\xea\xeb\xec\xed\xee\xef" + "\xf0\xf1\xf2\xf3\xf4\xf5\xf6\xf7" + "\xf8\xf9\xfa\xfb\xfc\xfd\xfe\xff" + "\x00\x01\x02\x03\x04\x05\x06\x07" + "\x08\x09\x0a\x0b\x0c\x0d\x0e\x0f" + "\x10\x11\x12\x13\x14\x15\x16\x17" + "\x18\x19\x1a\x1b\x1c\x1d\x1e\x1f" + "\x20\x21\x22\x23\x24\x25\x26\x27" + "\x28\x29\x2a\x2b\x2c\x2d\x2e\x2f" + "\x30\x31\x32\x33\x34\x35\x36\x37" + "\x38\x39\x3a\x3b\x3c\x3d\x3e\x3f" + "\x40\x41\x42\x43\x44\x45\x46\x47" + "\x48\x49\x4a\x4b\x4c\x4d\x4e\x4f" + "\x50\x51\x52\x53\x54\x55\x56\x57" + "\x58\x59\x5a\x5b\x5c\x5d\x5e\x5f" + "\x60\x61\x62\x63\x64\x65\x66\x67" + "\x68\x69\x6a\x6b\x6c\x6d\x6e\x6f" + "\x70\x71\x72\x73\x74\x75\x76\x77" + "\x78\x79\x7a\x7b\x7c\x7d\x7e\x7f" + "\x80\x81\x82\x83\x84\x85\x86\x87" + "\x88\x89\x8a\x8b\x8c\x8d\x8e\x8f" + "\x90\x91\x92\x93\x94\x95\x96\x97" + "\x98\x99\x9a\x9b\x9c\x9d\x9e\x9f" + "\xa0\xa1\xa2\xa3\xa4\xa5\xa6\xa7" + "\xa8\xa9\xaa\xab\xac\xad\xae\xaf" + "\xb0\xb1\xb2\xb3\xb4\xb5\xb6\xb7" + "\xb8\xb9\xba\xbb\xbc\xbd\xbe\xbf" + "\xc0\xc1\xc2\xc3\xc4\xc5\xc6\xc7" + "\xc8\xc9\xca\xcb\xcc\xcd\xce\xcf" + "\xd0\xd1\xd2\xd3\xd4\xd5\xd6\xd7" + "\xd8\xd9\xda\xdb\xdc\xdd\xde\xdf" + "\xe0\xe1\xe2\xe3\xe4\xe5\xe6\xe7" + "\xe8\xe9\xea\xeb\xec\xed\xee\xef" + "\xf0\xf1\xf2\xf3\xf4\xf5\xf6\xf7" + "\xf8\xf9\xfa\xfb\xfc\xfd\xfe\xff", + .ilen = 512, + .result = "\x27\xa7\x47\x9b\xef\xa1\xd4\x76" + "\x48\x9f\x30\x8c\xd4\xcf\xa6\xe2" + "\xa9\x6e\x4b\xbe\x32\x08\xff\x25" + "\x28\x7d\xd3\x81\x96\x16\xe8\x9c" + "\xc7\x8c\xf7\xf5\xe5\x43\x44\x5f" + "\x83\x33\xd8\xfa\x7f\x56\x00\x00" + "\x05\x27\x9f\xa5\xd8\xb5\xe4\xad" + "\x40\xe7\x36\xdd\xb4\xd3\x54\x12" + "\x32\x80\x63\xfd\x2a\xab\x53\xe5" + "\xea\x1e\x0a\x9f\x33\x25\x00\xa5" + "\xdf\x94\x87\xd0\x7a\x5c\x92\xcc" + "\x51\x2c\x88\x66\xc7\xe8\x60\xce" + "\x93\xfd\xf1\x66\xa2\x49\x12\xb4" + "\x22\x97\x61\x46\xae\x20\xce\x84" + "\x6b\xb7\xdc\x9b\xa9\x4a\x76\x7a" + "\xae\xf2\x0c\x0d\x61\xad\x02\x65" + "\x5e\xa9\x2d\xc4\xc4\xe4\x1a\x89" + "\x52\xc6\x51\xd3\x31\x74\xbe\x51" + "\xa1\x0c\x42\x11\x10\xe6\xd8\x15" + "\x88\xed\xe8\x21\x03\xa2\x52\xd8" + "\xa7\x50\xe8\x76\x8d\xef\xff\xed" + "\x91\x22\x81\x0a\xae\xb9\x9f\x91" + "\x72\xaf\x82\xb6\x04\xdc\x4b\x8e" + "\x51\xbc\xb0\x82\x35\xa6\xf4\x34" + "\x13\x32\xe4\xca\x60\x48\x2a\x4b" + "\xa1\xa0\x3b\x3e\x65\x00\x8f\xc5" + "\xda\x76\xb7\x0b\xf1\x69\x0d\xb4" + "\xea\xe2\x9c\x5f\x1b\xad\xd0\x3c" + "\x5c\xcf\x2a\x55\xd7\x05\xdd\xcd" + "\x86\xd4\x49\x51\x1c\xeb\x7e\xc3" + "\x0b\xf1\x2b\x1f\xa3\x5b\x91\x3f" + "\x9f\x74\x7a\x8a\xfd\x1b\x13\x0e" + "\x94\xbf\xf9\x4e\xff\xd0\x1a\x91" + "\x73\x5c\xa1\x72\x6a\xcd\x0b\x19" + "\x7c\x4e\x5b\x03\x39\x36\x97\xe1" + "\x26\x82\x6f\xb6\xbb\xde\x8e\xcc" + "\x1e\x08\x29\x85\x16\xe2\xc9\xed" + "\x03\xff\x3c\x1b\x78\x60\xf6\xde" + "\x76\xd4\xce\xcd\x94\xc8\x11\x98" + "\x55\xef\x52\x97\xca\x67\xe9\xf3" + "\xe7\xff\x72\xb1\xe9\x97\x85\xca" + "\x0a\x7e\x77\x20\xc5\xb3\x6d\xc6" + "\xd7\x2c\xac\x95\x74\xc8\xcb\xbc" + "\x2f\x80\x1e\x23\xe5\x6f\xd3\x44" + "\xb0\x7f\x22\x15\x4b\xeb\xa0\xf0" + "\x8c\xe8\x89\x1e\x64\x3e\xd9\x95" + "\xc9\x4d\x9a\x69\xc9\xf1\xb5\xf4" + "\x99\x02\x7a\x78\x57\x2a\xee\xbd" + "\x74\xd2\x0c\xc3\x98\x81\xc2\x13" + "\xee\x77\x0b\x10\x10\xe4\xbe\xa7" + "\x18\x84\x69\x77\xae\x11\x9f\x7a" + "\x02\x3a\xb5\x8c\xca\x0a\xd7\x52" + "\xaf\xe6\x56\xbb\x3c\x17\x25\x6a" + "\x9f\x6e\x9b\xf1\x9f\xdd\x5a\x38" + "\xfc\x82\xbb\xe8\x72\xc5\x53\x9e" + "\xdb\x60\x9e\xf4\xf7\x9c\x20\x3e" + "\xbb\x14\x0f\x2e\x58\x3c\xb2\xad" + "\x15\xb4\xaa\x5b\x65\x50\x16\xa8" + "\x44\x92\x77\xdb\xd4\x77\xef\x2c" + "\x8d\x6c\x01\x7d\xb7\x38\xb1\x8d" + "\xeb\x4a\x42\x7d\x19\x23\xce\x3f" + "\xf2\x62\x73\x57\x79\xa4\x18\xf2" + "\x0a\x28\x2d\xf9\x20\x14\x7b\xea" + "\xbe\x42\x1e\xe5\x31\x9d\x05\x68", + .rlen = 512, + } +}; + +static struct cipher_testvec aes_xts_dec_tv_template[] = { + /* http://grouper.ieee.org/groups/1619/email/pdf00086.pdf */ + { /* XTS-AES 1 */ + .key = "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x00", + .klen = 32, + .iv = "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x00", + .input = "\x91\x7c\xf6\x9e\xbd\x68\xb2\xec" + "\x9b\x9f\xe9\xa3\xea\xdd\xa6\x92" + "\xcd\x43\xd2\xf5\x95\x98\xed\x85" + "\x8c\x02\xc2\x65\x2f\xbf\x92\x2e", + .ilen = 32, + .result = "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x00", + .rlen = 32, + }, { /* XTS-AES 2 */ + .key = "\x11\x11\x11\x11\x11\x11\x11\x11" + "\x11\x11\x11\x11\x11\x11\x11\x11" + "\x22\x22\x22\x22\x22\x22\x22\x22" + "\x22\x22\x22\x22\x22\x22\x22\x22", + .klen = 32, + .iv = "\x33\x33\x33\x33\x33\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x00", + .input = "\xc4\x54\x18\x5e\x6a\x16\x93\x6e" + "\x39\x33\x40\x38\xac\xef\x83\x8b" + "\xfb\x18\x6f\xff\x74\x80\xad\xc4" + "\x28\x93\x82\xec\xd6\xd3\x94\xf0", + .ilen = 32, + .result = "\x44\x44\x44\x44\x44\x44\x44\x44" + "\x44\x44\x44\x44\x44\x44\x44\x44" + "\x44\x44\x44\x44\x44\x44\x44\x44" + "\x44\x44\x44\x44\x44\x44\x44\x44", + .rlen = 32, + }, { /* XTS-AES 3 */ + .key = "\xff\xfe\xfd\xfc\xfb\xfa\xf9\xf8" + "\xf7\xf6\xf5\xf4\xf3\xf2\xf1\xf0" + "\x22\x22\x22\x22\x22\x22\x22\x22" + "\x22\x22\x22\x22\x22\x22\x22\x22", + .klen = 32, + .iv = "\x33\x33\x33\x33\x33\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x00", + .input = "\xaf\x85\x33\x6b\x59\x7a\xfc\x1a" + "\x90\x0b\x2e\xb2\x1e\xc9\x49\xd2" + "\x92\xdf\x4c\x04\x7e\x0b\x21\x53" + "\x21\x86\xa5\x97\x1a\x22\x7a\x89", + .ilen = 32, + .result = "\x44\x44\x44\x44\x44\x44\x44\x44" + "\x44\x44\x44\x44\x44\x44\x44\x44" + "\x44\x44\x44\x44\x44\x44\x44\x44" + "\x44\x44\x44\x44\x44\x44\x44\x44", + .rlen = 32, + }, { /* XTS-AES 4 */ + .key = "\x27\x18\x28\x18\x28\x45\x90\x45" + "\x23\x53\x60\x28\x74\x71\x35\x26" + "\x31\x41\x59\x26\x53\x58\x97\x93" + "\x23\x84\x62\x64\x33\x83\x27\x95", + .klen = 32, + .iv = "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x00", + .input = "\x27\xa7\x47\x9b\xef\xa1\xd4\x76" + "\x48\x9f\x30\x8c\xd4\xcf\xa6\xe2" + "\xa9\x6e\x4b\xbe\x32\x08\xff\x25" + "\x28\x7d\xd3\x81\x96\x16\xe8\x9c" + "\xc7\x8c\xf7\xf5\xe5\x43\x44\x5f" + "\x83\x33\xd8\xfa\x7f\x56\x00\x00" + "\x05\x27\x9f\xa5\xd8\xb5\xe4\xad" + "\x40\xe7\x36\xdd\xb4\xd3\x54\x12" + "\x32\x80\x63\xfd\x2a\xab\x53\xe5" + "\xea\x1e\x0a\x9f\x33\x25\x00\xa5" + "\xdf\x94\x87\xd0\x7a\x5c\x92\xcc" + "\x51\x2c\x88\x66\xc7\xe8\x60\xce" + "\x93\xfd\xf1\x66\xa2\x49\x12\xb4" + "\x22\x97\x61\x46\xae\x20\xce\x84" + "\x6b\xb7\xdc\x9b\xa9\x4a\x76\x7a" + "\xae\xf2\x0c\x0d\x61\xad\x02\x65" + "\x5e\xa9\x2d\xc4\xc4\xe4\x1a\x89" + "\x52\xc6\x51\xd3\x31\x74\xbe\x51" + "\xa1\x0c\x42\x11\x10\xe6\xd8\x15" + "\x88\xed\xe8\x21\x03\xa2\x52\xd8" + "\xa7\x50\xe8\x76\x8d\xef\xff\xed" + "\x91\x22\x81\x0a\xae\xb9\x9f\x91" + "\x72\xaf\x82\xb6\x04\xdc\x4b\x8e" + "\x51\xbc\xb0\x82\x35\xa6\xf4\x34" + "\x13\x32\xe4\xca\x60\x48\x2a\x4b" + "\xa1\xa0\x3b\x3e\x65\x00\x8f\xc5" + "\xda\x76\xb7\x0b\xf1\x69\x0d\xb4" + "\xea\xe2\x9c\x5f\x1b\xad\xd0\x3c" + "\x5c\xcf\x2a\x55\xd7\x05\xdd\xcd" + "\x86\xd4\x49\x51\x1c\xeb\x7e\xc3" + "\x0b\xf1\x2b\x1f\xa3\x5b\x91\x3f" + "\x9f\x74\x7a\x8a\xfd\x1b\x13\x0e" + "\x94\xbf\xf9\x4e\xff\xd0\x1a\x91" + "\x73\x5c\xa1\x72\x6a\xcd\x0b\x19" + "\x7c\x4e\x5b\x03\x39\x36\x97\xe1" + "\x26\x82\x6f\xb6\xbb\xde\x8e\xcc" + "\x1e\x08\x29\x85\x16\xe2\xc9\xed" + "\x03\xff\x3c\x1b\x78\x60\xf6\xde" + "\x76\xd4\xce\xcd\x94\xc8\x11\x98" + "\x55\xef\x52\x97\xca\x67\xe9\xf3" + "\xe7\xff\x72\xb1\xe9\x97\x85\xca" + "\x0a\x7e\x77\x20\xc5\xb3\x6d\xc6" + "\xd7\x2c\xac\x95\x74\xc8\xcb\xbc" + "\x2f\x80\x1e\x23\xe5\x6f\xd3\x44" + "\xb0\x7f\x22\x15\x4b\xeb\xa0\xf0" + "\x8c\xe8\x89\x1e\x64\x3e\xd9\x95" + "\xc9\x4d\x9a\x69\xc9\xf1\xb5\xf4" + "\x99\x02\x7a\x78\x57\x2a\xee\xbd" + "\x74\xd2\x0c\xc3\x98\x81\xc2\x13" + "\xee\x77\x0b\x10\x10\xe4\xbe\xa7" + "\x18\x84\x69\x77\xae\x11\x9f\x7a" + "\x02\x3a\xb5\x8c\xca\x0a\xd7\x52" + "\xaf\xe6\x56\xbb\x3c\x17\x25\x6a" + "\x9f\x6e\x9b\xf1\x9f\xdd\x5a\x38" + "\xfc\x82\xbb\xe8\x72\xc5\x53\x9e" + "\xdb\x60\x9e\xf4\xf7\x9c\x20\x3e" + "\xbb\x14\x0f\x2e\x58\x3c\xb2\xad" + "\x15\xb4\xaa\x5b\x65\x50\x16\xa8" + "\x44\x92\x77\xdb\xd4\x77\xef\x2c" + "\x8d\x6c\x01\x7d\xb7\x38\xb1\x8d" + "\xeb\x4a\x42\x7d\x19\x23\xce\x3f" + "\xf2\x62\x73\x57\x79\xa4\x18\xf2" + "\x0a\x28\x2d\xf9\x20\x14\x7b\xea" + "\xbe\x42\x1e\xe5\x31\x9d\x05\x68", + .ilen = 512, + .result = "\x00\x01\x02\x03\x04\x05\x06\x07" + "\x08\x09\x0a\x0b\x0c\x0d\x0e\x0f" + "\x10\x11\x12\x13\x14\x15\x16\x17" + "\x18\x19\x1a\x1b\x1c\x1d\x1e\x1f" + "\x20\x21\x22\x23\x24\x25\x26\x27" + "\x28\x29\x2a\x2b\x2c\x2d\x2e\x2f" + "\x30\x31\x32\x33\x34\x35\x36\x37" + "\x38\x39\x3a\x3b\x3c\x3d\x3e\x3f" + "\x40\x41\x42\x43\x44\x45\x46\x47" + "\x48\x49\x4a\x4b\x4c\x4d\x4e\x4f" + "\x50\x51\x52\x53\x54\x55\x56\x57" + "\x58\x59\x5a\x5b\x5c\x5d\x5e\x5f" + "\x60\x61\x62\x63\x64\x65\x66\x67" + "\x68\x69\x6a\x6b\x6c\x6d\x6e\x6f" + "\x70\x71\x72\x73\x74\x75\x76\x77" + "\x78\x79\x7a\x7b\x7c\x7d\x7e\x7f" + "\x80\x81\x82\x83\x84\x85\x86\x87" + "\x88\x89\x8a\x8b\x8c\x8d\x8e\x8f" + "\x90\x91\x92\x93\x94\x95\x96\x97" + "\x98\x99\x9a\x9b\x9c\x9d\x9e\x9f" + "\xa0\xa1\xa2\xa3\xa4\xa5\xa6\xa7" + "\xa8\xa9\xaa\xab\xac\xad\xae\xaf" + "\xb0\xb1\xb2\xb3\xb4\xb5\xb6\xb7" + "\xb8\xb9\xba\xbb\xbc\xbd\xbe\xbf" + "\xc0\xc1\xc2\xc3\xc4\xc5\xc6\xc7" + "\xc8\xc9\xca\xcb\xcc\xcd\xce\xcf" + "\xd0\xd1\xd2\xd3\xd4\xd5\xd6\xd7" + "\xd8\xd9\xda\xdb\xdc\xdd\xde\xdf" + "\xe0\xe1\xe2\xe3\xe4\xe5\xe6\xe7" + "\xe8\xe9\xea\xeb\xec\xed\xee\xef" + "\xf0\xf1\xf2\xf3\xf4\xf5\xf6\xf7" + "\xf8\xf9\xfa\xfb\xfc\xfd\xfe\xff" + "\x00\x01\x02\x03\x04\x05\x06\x07" + "\x08\x09\x0a\x0b\x0c\x0d\x0e\x0f" + "\x10\x11\x12\x13\x14\x15\x16\x17" + "\x18\x19\x1a\x1b\x1c\x1d\x1e\x1f" + "\x20\x21\x22\x23\x24\x25\x26\x27" + "\x28\x29\x2a\x2b\x2c\x2d\x2e\x2f" + "\x30\x31\x32\x33\x34\x35\x36\x37" + "\x38\x39\x3a\x3b\x3c\x3d\x3e\x3f" + "\x40\x41\x42\x43\x44\x45\x46\x47" + "\x48\x49\x4a\x4b\x4c\x4d\x4e\x4f" + "\x50\x51\x52\x53\x54\x55\x56\x57" + "\x58\x59\x5a\x5b\x5c\x5d\x5e\x5f" + "\x60\x61\x62\x63\x64\x65\x66\x67" + "\x68\x69\x6a\x6b\x6c\x6d\x6e\x6f" + "\x70\x71\x72\x73\x74\x75\x76\x77" + "\x78\x79\x7a\x7b\x7c\x7d\x7e\x7f" + "\x80\x81\x82\x83\x84\x85\x86\x87" + "\x88\x89\x8a\x8b\x8c\x8d\x8e\x8f" + "\x90\x91\x92\x93\x94\x95\x96\x97" + "\x98\x99\x9a\x9b\x9c\x9d\x9e\x9f" + "\xa0\xa1\xa2\xa3\xa4\xa5\xa6\xa7" + "\xa8\xa9\xaa\xab\xac\xad\xae\xaf" + "\xb0\xb1\xb2\xb3\xb4\xb5\xb6\xb7" + "\xb8\xb9\xba\xbb\xbc\xbd\xbe\xbf" + "\xc0\xc1\xc2\xc3\xc4\xc5\xc6\xc7" + "\xc8\xc9\xca\xcb\xcc\xcd\xce\xcf" + "\xd0\xd1\xd2\xd3\xd4\xd5\xd6\xd7" + "\xd8\xd9\xda\xdb\xdc\xdd\xde\xdf" + "\xe0\xe1\xe2\xe3\xe4\xe5\xe6\xe7" + "\xe8\xe9\xea\xeb\xec\xed\xee\xef" + "\xf0\xf1\xf2\xf3\xf4\xf5\xf6\xf7" + "\xf8\xf9\xfa\xfb\xfc\xfd\xfe\xff", + .rlen = 512, + } +}; + +#endif + +static struct cipher_testvec aes_ctr_enc_tv_template[] = { + { /* From NIST Special Publication 800-38A, Appendix F.5 */ + .key = "\x2b\x7e\x15\x16\x28\xae\xd2\xa6" + "\xab\xf7\x15\x88\x09\xcf\x4f\x3c", + .klen = 16, + .iv = "\xf0\xf1\xf2\xf3\xf4\xf5\xf6\xf7" + "\xf8\xf9\xfa\xfb\xfc\xfd\xfe\xff", + .input = "\x6b\xc1\xbe\xe2\x2e\x40\x9f\x96" + "\xe9\x3d\x7e\x11\x73\x93\x17\x2a" + "\xae\x2d\x8a\x57\x1e\x03\xac\x9c" + "\x9e\xb7\x6f\xac\x45\xaf\x8e\x51" + "\x30\xc8\x1c\x46\xa3\x5c\xe4\x11" + "\xe5\xfb\xc1\x19\x1a\x0a\x52\xef" + "\xf6\x9f\x24\x45\xdf\x4f\x9b\x17" + "\xad\x2b\x41\x7b\xe6\x6c\x37\x10", + .ilen = 64, + .result = "\x87\x4d\x61\x91\xb6\x20\xe3\x26" + "\x1b\xef\x68\x64\x99\x0d\xb6\xce" + "\x98\x06\xf6\x6b\x79\x70\xfd\xff" + "\x86\x17\x18\x7b\xb9\xff\xfd\xff" + "\x5a\xe4\xdf\x3e\xdb\xd5\xd3\x5e" + "\x5b\x4f\x09\x02\x0d\xb0\x3e\xab" + "\x1e\x03\x1d\xda\x2f\xbe\x03\xd1" + "\x79\x21\x70\xa0\xf3\x00\x9c\xee", + .rlen = 64, + }, { + .key = "\x8e\x73\xb0\xf7\xda\x0e\x64\x52" + "\xc8\x10\xf3\x2b\x80\x90\x79\xe5" + "\x62\xf8\xea\xd2\x52\x2c\x6b\x7b", + .klen = 24, + .iv = "\xf0\xf1\xf2\xf3\xf4\xf5\xf6\xf7" + "\xf8\xf9\xfa\xfb\xfc\xfd\xfe\xff", + .input = "\x6b\xc1\xbe\xe2\x2e\x40\x9f\x96" + "\xe9\x3d\x7e\x11\x73\x93\x17\x2a" + "\xae\x2d\x8a\x57\x1e\x03\xac\x9c" + "\x9e\xb7\x6f\xac\x45\xaf\x8e\x51" + "\x30\xc8\x1c\x46\xa3\x5c\xe4\x11" + "\xe5\xfb\xc1\x19\x1a\x0a\x52\xef" + "\xf6\x9f\x24\x45\xdf\x4f\x9b\x17" + "\xad\x2b\x41\x7b\xe6\x6c\x37\x10", + .ilen = 64, + .result = "\x1a\xbc\x93\x24\x17\x52\x1c\xa2" + "\x4f\x2b\x04\x59\xfe\x7e\x6e\x0b" + "\x09\x03\x39\xec\x0a\xa6\xfa\xef" + "\xd5\xcc\xc2\xc6\xf4\xce\x8e\x94" + "\x1e\x36\xb2\x6b\xd1\xeb\xc6\x70" + "\xd1\xbd\x1d\x66\x56\x20\xab\xf7" + "\x4f\x78\xa7\xf6\xd2\x98\x09\x58" + "\x5a\x97\xda\xec\x58\xc6\xb0\x50", + .rlen = 64, + }, { + .key = "\x60\x3d\xeb\x10\x15\xca\x71\xbe" + "\x2b\x73\xae\xf0\x85\x7d\x77\x81" + "\x1f\x35\x2c\x07\x3b\x61\x08\xd7" + "\x2d\x98\x10\xa3\x09\x14\xdf\xf4", + .klen = 32, + .iv = "\xf0\xf1\xf2\xf3\xf4\xf5\xf6\xf7" + "\xf8\xf9\xfa\xfb\xfc\xfd\xfe\xff", + .input = "\x6b\xc1\xbe\xe2\x2e\x40\x9f\x96" + "\xe9\x3d\x7e\x11\x73\x93\x17\x2a" + "\xae\x2d\x8a\x57\x1e\x03\xac\x9c" + "\x9e\xb7\x6f\xac\x45\xaf\x8e\x51" + "\x30\xc8\x1c\x46\xa3\x5c\xe4\x11" + "\xe5\xfb\xc1\x19\x1a\x0a\x52\xef" + "\xf6\x9f\x24\x45\xdf\x4f\x9b\x17" + "\xad\x2b\x41\x7b\xe6\x6c\x37\x10", + .ilen = 64, + .result = "\x60\x1e\xc3\x13\x77\x57\x89\xa5" + "\xb7\xa7\xf5\x04\xbb\xf3\xd2\x28" + "\xf4\x43\xe3\xca\x4d\x62\xb5\x9a" + "\xca\x84\xe9\x90\xca\xca\xf5\xc5" + "\x2b\x09\x30\xda\xa2\x3d\xe9\x4c" + "\xe8\x70\x17\xba\x2d\x84\x98\x8d" + "\xdf\xc9\xc5\x8d\xb6\x7a\xad\xa6" + "\x13\xc2\xdd\x08\x45\x79\x41\xa6", + .rlen = 64, + } +}; + +static struct cipher_testvec aes_ctr_dec_tv_template[] = { + { /* From NIST Special Publication 800-38A, Appendix F.5 */ + .key = "\x2b\x7e\x15\x16\x28\xae\xd2\xa6" + "\xab\xf7\x15\x88\x09\xcf\x4f\x3c", + .klen = 16, + .iv = "\xf0\xf1\xf2\xf3\xf4\xf5\xf6\xf7" + "\xf8\xf9\xfa\xfb\xfc\xfd\xfe\xff", + .input = "\x87\x4d\x61\x91\xb6\x20\xe3\x26" + "\x1b\xef\x68\x64\x99\x0d\xb6\xce" + "\x98\x06\xf6\x6b\x79\x70\xfd\xff" + "\x86\x17\x18\x7b\xb9\xff\xfd\xff" + "\x5a\xe4\xdf\x3e\xdb\xd5\xd3\x5e" + "\x5b\x4f\x09\x02\x0d\xb0\x3e\xab" + "\x1e\x03\x1d\xda\x2f\xbe\x03\xd1" + "\x79\x21\x70\xa0\xf3\x00\x9c\xee", + .ilen = 64, + .result = "\x6b\xc1\xbe\xe2\x2e\x40\x9f\x96" + "\xe9\x3d\x7e\x11\x73\x93\x17\x2a" + "\xae\x2d\x8a\x57\x1e\x03\xac\x9c" + "\x9e\xb7\x6f\xac\x45\xaf\x8e\x51" + "\x30\xc8\x1c\x46\xa3\x5c\xe4\x11" + "\xe5\xfb\xc1\x19\x1a\x0a\x52\xef" + "\xf6\x9f\x24\x45\xdf\x4f\x9b\x17" + "\xad\x2b\x41\x7b\xe6\x6c\x37\x10", + .rlen = 64, + }, { + .key = "\x8e\x73\xb0\xf7\xda\x0e\x64\x52" + "\xc8\x10\xf3\x2b\x80\x90\x79\xe5" + "\x62\xf8\xea\xd2\x52\x2c\x6b\x7b", + .klen = 24, + .iv = "\xf0\xf1\xf2\xf3\xf4\xf5\xf6\xf7" + "\xf8\xf9\xfa\xfb\xfc\xfd\xfe\xff", + .input = "\x1a\xbc\x93\x24\x17\x52\x1c\xa2" + "\x4f\x2b\x04\x59\xfe\x7e\x6e\x0b" + "\x09\x03\x39\xec\x0a\xa6\xfa\xef" + "\xd5\xcc\xc2\xc6\xf4\xce\x8e\x94" + "\x1e\x36\xb2\x6b\xd1\xeb\xc6\x70" + "\xd1\xbd\x1d\x66\x56\x20\xab\xf7" + "\x4f\x78\xa7\xf6\xd2\x98\x09\x58" + "\x5a\x97\xda\xec\x58\xc6\xb0\x50", + .ilen = 64, + .result = "\x6b\xc1\xbe\xe2\x2e\x40\x9f\x96" + "\xe9\x3d\x7e\x11\x73\x93\x17\x2a" + "\xae\x2d\x8a\x57\x1e\x03\xac\x9c" + "\x9e\xb7\x6f\xac\x45\xaf\x8e\x51" + "\x30\xc8\x1c\x46\xa3\x5c\xe4\x11" + "\xe5\xfb\xc1\x19\x1a\x0a\x52\xef" + "\xf6\x9f\x24\x45\xdf\x4f\x9b\x17" + "\xad\x2b\x41\x7b\xe6\x6c\x37\x10", + .rlen = 64, + }, { + .key = "\x60\x3d\xeb\x10\x15\xca\x71\xbe" + "\x2b\x73\xae\xf0\x85\x7d\x77\x81" + "\x1f\x35\x2c\x07\x3b\x61\x08\xd7" + "\x2d\x98\x10\xa3\x09\x14\xdf\xf4", + .klen = 32, + .iv = "\xf0\xf1\xf2\xf3\xf4\xf5\xf6\xf7" + "\xf8\xf9\xfa\xfb\xfc\xfd\xfe\xff", + .input = "\x60\x1e\xc3\x13\x77\x57\x89\xa5" + "\xb7\xa7\xf5\x04\xbb\xf3\xd2\x28" + "\xf4\x43\xe3\xca\x4d\x62\xb5\x9a" + "\xca\x84\xe9\x90\xca\xca\xf5\xc5" + "\x2b\x09\x30\xda\xa2\x3d\xe9\x4c" + "\xe8\x70\x17\xba\x2d\x84\x98\x8d" + "\xdf\xc9\xc5\x8d\xb6\x7a\xad\xa6" + "\x13\xc2\xdd\x08\x45\x79\x41\xa6", + .ilen = 64, + .result = "\x6b\xc1\xbe\xe2\x2e\x40\x9f\x96" + "\xe9\x3d\x7e\x11\x73\x93\x17\x2a" + "\xae\x2d\x8a\x57\x1e\x03\xac\x9c" + "\x9e\xb7\x6f\xac\x45\xaf\x8e\x51" + "\x30\xc8\x1c\x46\xa3\x5c\xe4\x11" + "\xe5\xfb\xc1\x19\x1a\x0a\x52\xef" + "\xf6\x9f\x24\x45\xdf\x4f\x9b\x17" + "\xad\x2b\x41\x7b\xe6\x6c\x37\x10", + .rlen = 64, + } +}; + +static struct cipher_testvec aes_ctr_rfc3686_enc_tv_template[] = { + { /* From RFC 3686 */ + .key = "\xae\x68\x52\xf8\x12\x10\x67\xcc" + "\x4b\xf7\xa5\x76\x55\x77\xf3\x9e" + "\x00\x00\x00\x30", + .klen = 20, + .iv = "\x00\x00\x00\x00\x00\x00\x00\x00", + .input = "Single block msg", + .ilen = 16, + .result = "\xe4\x09\x5d\x4f\xb7\xa7\xb3\x79" + "\x2d\x61\x75\xa3\x26\x13\x11\xb8", + .rlen = 16, + }, { + .key = "\x7e\x24\x06\x78\x17\xfa\xe0\xd7" + "\x43\xd6\xce\x1f\x32\x53\x91\x63" + "\x00\x6c\xb6\xdb", + .klen = 20, + .iv = "\xc0\x54\x3b\x59\xda\x48\xd9\x0b", + .input = "\x00\x01\x02\x03\x04\x05\x06\x07" + "\x08\x09\x0a\x0b\x0c\x0d\x0e\x0f" + "\x10\x11\x12\x13\x14\x15\x16\x17" + "\x18\x19\x1a\x1b\x1c\x1d\x1e\x1f", + .ilen = 32, + .result = "\x51\x04\xa1\x06\x16\x8a\x72\xd9" + "\x79\x0d\x41\xee\x8e\xda\xd3\x88" + "\xeb\x2e\x1e\xfc\x46\xda\x57\xc8" + "\xfc\xe6\x30\xdf\x91\x41\xbe\x28", + .rlen = 32, + }, { + .key = "\x16\xaf\x5b\x14\x5f\xc9\xf5\x79" + "\xc1\x75\xf9\x3e\x3b\xfb\x0e\xed" + "\x86\x3d\x06\xcc\xfd\xb7\x85\x15" + "\x00\x00\x00\x48", + .klen = 28, + .iv = "\x36\x73\x3c\x14\x7d\x6d\x93\xcb", + .input = "Single block msg", + .ilen = 16, + .result = "\x4b\x55\x38\x4f\xe2\x59\xc9\xc8" + "\x4e\x79\x35\xa0\x03\xcb\xe9\x28", + .rlen = 16, + }, { + .key = "\x7c\x5c\xb2\x40\x1b\x3d\xc3\x3c" + "\x19\xe7\x34\x08\x19\xe0\xf6\x9c" + "\x67\x8c\x3d\xb8\xe6\xf6\xa9\x1a" + "\x00\x96\xb0\x3b", + .klen = 28, + .iv = "\x02\x0c\x6e\xad\xc2\xcb\x50\x0d", + .input = "\x00\x01\x02\x03\x04\x05\x06\x07" + "\x08\x09\x0a\x0b\x0c\x0d\x0e\x0f" + "\x10\x11\x12\x13\x14\x15\x16\x17" + "\x18\x19\x1a\x1b\x1c\x1d\x1e\x1f", + .ilen = 32, + .result = "\x45\x32\x43\xfc\x60\x9b\x23\x32" + "\x7e\xdf\xaa\xfa\x71\x31\xcd\x9f" + "\x84\x90\x70\x1c\x5a\xd4\xa7\x9c" + "\xfc\x1f\xe0\xff\x42\xf4\xfb\x00", + .rlen = 32, + }, { + .key = "\x77\x6b\xef\xf2\x85\x1d\xb0\x6f" + "\x4c\x8a\x05\x42\xc8\x69\x6f\x6c" + "\x6a\x81\xaf\x1e\xec\x96\xb4\xd3" + "\x7f\xc1\xd6\x89\xe6\xc1\xc1\x04" + "\x00\x00\x00\x60", + .klen = 36, + .iv = "\xdb\x56\x72\xc9\x7a\xa8\xf0\xb2", + .input = "Single block msg", + .ilen = 16, + .result = "\x14\x5a\xd0\x1d\xbf\x82\x4e\xc7" + "\x56\x08\x63\xdc\x71\xe3\xe0\xc0", + .rlen = 16, + }, { + .key = "\xf6\xd6\x6d\x6b\xd5\x2d\x59\xbb" + "\x07\x96\x36\x58\x79\xef\xf8\x86" + "\xc6\x6d\xd5\x1a\x5b\x6a\x99\x74" + "\x4b\x50\x59\x0c\x87\xa2\x38\x84" + "\x00\xfa\xac\x24", + .klen = 36, + .iv = "\xc1\x58\x5e\xf1\x5a\x43\xd8\x75", + .input = "\x00\x01\x02\x03\x04\x05\x06\x07" + "\x08\x09\x0a\x0b\x0c\x0d\x0e\x0f" + "\x10\x11\x12\x13\x14\x15\x16\x17" + "\x18\x19\x1a\x1b\x1c\x1d\x1e\x1f", + .ilen = 32, + .result = "\xf0\x5e\x23\x1b\x38\x94\x61\x2c" + "\x49\xee\x00\x0b\x80\x4e\xb2\xa9" + "\xb8\x30\x6b\x50\x8f\x83\x9d\x6a" + "\x55\x30\x83\x1d\x93\x44\xaf\x1c", + .rlen = 32, + }, { +#if 0 + // generated using Crypto++ + .key = "\x00\x01\x02\x03\x04\x05\x06\x07" + "\x08\x09\x0a\x0b\x0c\x0d\x0e\x0f" + "\x10\x11\x12\x13\x14\x15\x16\x17" + "\x18\x19\x1a\x1b\x1c\x1d\x1e\x1f" + "\x00\x00\x00\x00", + .klen = 32 + 4, + .iv = "\x00\x00\x00\x00\x00\x00\x00\x00", + .input = + "\x00\x01\x02\x03\x04\x05\x06\x07" + "\x08\x09\x0a\x0b\x0c\x0d\x0e\x0f" + "\x10\x11\x12\x13\x14\x15\x16\x17" + "\x18\x19\x1a\x1b\x1c\x1d\x1e\x1f" + "\x20\x21\x22\x23\x24\x25\x26\x27" + "\x28\x29\x2a\x2b\x2c\x2d\x2e\x2f" + "\x30\x31\x32\x33\x34\x35\x36\x37" + "\x38\x39\x3a\x3b\x3c\x3d\x3e\x3f" + "\x40\x41\x42\x43\x44\x45\x46\x47" + "\x48\x49\x4a\x4b\x4c\x4d\x4e\x4f" + "\x50\x51\x52\x53\x54\x55\x56\x57" + "\x58\x59\x5a\x5b\x5c\x5d\x5e\x5f" + "\x60\x61\x62\x63\x64\x65\x66\x67" + "\x68\x69\x6a\x6b\x6c\x6d\x6e\x6f" + "\x70\x71\x72\x73\x74\x75\x76\x77" + "\x78\x79\x7a\x7b\x7c\x7d\x7e\x7f" + "\x80\x81\x82\x83\x84\x85\x86\x87" + "\x88\x89\x8a\x8b\x8c\x8d\x8e\x8f" + "\x90\x91\x92\x93\x94\x95\x96\x97" + "\x98\x99\x9a\x9b\x9c\x9d\x9e\x9f" + "\xa0\xa1\xa2\xa3\xa4\xa5\xa6\xa7" + "\xa8\xa9\xaa\xab\xac\xad\xae\xaf" + "\xb0\xb1\xb2\xb3\xb4\xb5\xb6\xb7" + "\xb8\xb9\xba\xbb\xbc\xbd\xbe\xbf" + "\xc0\xc1\xc2\xc3\xc4\xc5\xc6\xc7" + "\xc8\xc9\xca\xcb\xcc\xcd\xce\xcf" + "\xd0\xd1\xd2\xd3\xd4\xd5\xd6\xd7" + "\xd8\xd9\xda\xdb\xdc\xdd\xde\xdf" + "\xe0\xe1\xe2\xe3\xe4\xe5\xe6\xe7" + "\xe8\xe9\xea\xeb\xec\xed\xee\xef" + "\xf0\xf1\xf2\xf3\xf4\xf5\xf6\xf7" + "\xf8\xf9\xfa\xfb\xfc\xfd\xfe\xff" + "\x00\x03\x06\x09\x0c\x0f\x12\x15" + "\x18\x1b\x1e\x21\x24\x27\x2a\x2d" + "\x30\x33\x36\x39\x3c\x3f\x42\x45" + "\x48\x4b\x4e\x51\x54\x57\x5a\x5d" + "\x60\x63\x66\x69\x6c\x6f\x72\x75" + "\x78\x7b\x7e\x81\x84\x87\x8a\x8d" + "\x90\x93\x96\x99\x9c\x9f\xa2\xa5" + "\xa8\xab\xae\xb1\xb4\xb7\xba\xbd" + "\xc0\xc3\xc6\xc9\xcc\xcf\xd2\xd5" + "\xd8\xdb\xde\xe1\xe4\xe7\xea\xed" + "\xf0\xf3\xf6\xf9\xfc\xff\x02\x05" + "\x08\x0b\x0e\x11\x14\x17\x1a\x1d" + "\x20\x23\x26\x29\x2c\x2f\x32\x35" + "\x38\x3b\x3e\x41\x44\x47\x4a\x4d" + "\x50\x53\x56\x59\x5c\x5f\x62\x65" + "\x68\x6b\x6e\x71\x74\x77\x7a\x7d" + "\x80\x83\x86\x89\x8c\x8f\x92\x95" + "\x98\x9b\x9e\xa1\xa4\xa7\xaa\xad" + "\xb0\xb3\xb6\xb9\xbc\xbf\xc2\xc5" + "\xc8\xcb\xce\xd1\xd4\xd7\xda\xdd" + "\xe0\xe3\xe6\xe9\xec\xef\xf2\xf5" + "\xf8\xfb\xfe\x01\x04\x07\x0a\x0d" + "\x10\x13\x16\x19\x1c\x1f\x22\x25" + "\x28\x2b\x2e\x31\x34\x37\x3a\x3d" + "\x40\x43\x46\x49\x4c\x4f\x52\x55" + "\x58\x5b\x5e\x61\x64\x67\x6a\x6d" + "\x70\x73\x76\x79\x7c\x7f\x82\x85" + "\x88\x8b\x8e\x91\x94\x97\x9a\x9d" + "\xa0\xa3\xa6\xa9\xac\xaf\xb2\xb5" + "\xb8\xbb\xbe\xc1\xc4\xc7\xca\xcd" + "\xd0\xd3\xd6\xd9\xdc\xdf\xe2\xe5" + "\xe8\xeb\xee\xf1\xf4\xf7\xfa\xfd" + "\x00\x05\x0a\x0f\x14\x19\x1e\x23" + "\x28\x2d\x32\x37\x3c\x41\x46\x4b" + "\x50\x55\x5a\x5f\x64\x69\x6e\x73" + "\x78\x7d\x82\x87\x8c\x91\x96\x9b" + "\xa0\xa5\xaa\xaf\xb4\xb9\xbe\xc3" + "\xc8\xcd\xd2\xd7\xdc\xe1\xe6\xeb" + "\xf0\xf5\xfa\xff\x04\x09\x0e\x13" + "\x18\x1d\x22\x27\x2c\x31\x36\x3b" + "\x40\x45\x4a\x4f\x54\x59\x5e\x63" + "\x68\x6d\x72\x77\x7c\x81\x86\x8b" + "\x90\x95\x9a\x9f\xa4\xa9\xae\xb3" + "\xb8\xbd\xc2\xc7\xcc\xd1\xd6\xdb" + "\xe0\xe5\xea\xef\xf4\xf9\xfe\x03" + "\x08\x0d\x12\x17\x1c\x21\x26\x2b" + "\x30\x35\x3a\x3f\x44\x49\x4e\x53" + "\x58\x5d\x62\x67\x6c\x71\x76\x7b" + "\x80\x85\x8a\x8f\x94\x99\x9e\xa3" + "\xa8\xad\xb2\xb7\xbc\xc1\xc6\xcb" + "\xd0\xd5\xda\xdf\xe4\xe9\xee\xf3" + "\xf8\xfd\x02\x07\x0c\x11\x16\x1b" + "\x20\x25\x2a\x2f\x34\x39\x3e\x43" + "\x48\x4d\x52\x57\x5c\x61\x66\x6b" + "\x70\x75\x7a\x7f\x84\x89\x8e\x93" + "\x98\x9d\xa2\xa7\xac\xb1\xb6\xbb" + "\xc0\xc5\xca\xcf\xd4\xd9\xde\xe3" + "\xe8\xed\xf2\xf7\xfc\x01\x06\x0b" + "\x10\x15\x1a\x1f\x24\x29\x2e\x33" + "\x38\x3d\x42\x47\x4c\x51\x56\x5b" + "\x60\x65\x6a\x6f\x74\x79\x7e\x83" + "\x88\x8d\x92\x97\x9c\xa1\xa6\xab" + "\xb0\xb5\xba\xbf\xc4\xc9\xce\xd3" + "\xd8\xdd\xe2\xe7\xec\xf1\xf6\xfb" + "\x00\x07\x0e\x15\x1c\x23\x2a\x31" + "\x38\x3f\x46\x4d\x54\x5b\x62\x69" + "\x70\x77\x7e\x85\x8c\x93\x9a\xa1" + "\xa8\xaf\xb6\xbd\xc4\xcb\xd2\xd9" + "\xe0\xe7\xee\xf5\xfc\x03\x0a\x11" + "\x18\x1f\x26\x2d\x34\x3b\x42\x49" + "\x50\x57\x5e\x65\x6c\x73\x7a\x81" + "\x88\x8f\x96\x9d\xa4\xab\xb2\xb9" + "\xc0\xc7\xce\xd5\xdc\xe3\xea\xf1" + "\xf8\xff\x06\x0d\x14\x1b\x22\x29" + "\x30\x37\x3e\x45\x4c\x53\x5a\x61" + "\x68\x6f\x76\x7d\x84\x8b\x92\x99" + "\xa0\xa7\xae\xb5\xbc\xc3\xca\xd1" + "\xd8\xdf\xe6\xed\xf4\xfb\x02\x09" + "\x10\x17\x1e\x25\x2c\x33\x3a\x41" + "\x48\x4f\x56\x5d\x64\x6b\x72\x79" + "\x80\x87\x8e\x95\x9c\xa3\xaa\xb1" + "\xb8\xbf\xc6\xcd\xd4\xdb\xe2\xe9" + "\xf0\xf7\xfe\x05\x0c\x13\x1a\x21" + "\x28\x2f\x36\x3d\x44\x4b\x52\x59" + "\x60\x67\x6e\x75\x7c\x83\x8a\x91" + "\x98\x9f\xa6\xad\xb4\xbb\xc2\xc9" + "\xd0\xd7\xde\xe5\xec\xf3\xfa\x01" + "\x08\x0f\x16\x1d\x24\x2b\x32\x39" + "\x40\x47\x4e\x55\x5c\x63\x6a\x71" + "\x78\x7f\x86\x8d\x94\x9b\xa2\xa9" + "\xb0\xb7\xbe\xc5\xcc\xd3\xda\xe1" + "\xe8\xef\xf6\xfd\x04\x0b\x12\x19" + "\x20\x27\x2e\x35\x3c\x43\x4a\x51" + "\x58\x5f\x66\x6d\x74\x7b\x82\x89" + "\x90\x97\x9e\xa5\xac\xb3\xba\xc1" + "\xc8\xcf\xd6\xdd\xe4\xeb\xf2\xf9" + "\x00\x09\x12\x1b\x24\x2d\x36\x3f" + "\x48\x51\x5a\x63\x6c\x75\x7e\x87" + "\x90\x99\xa2\xab\xb4\xbd\xc6\xcf" + "\xd8\xe1\xea\xf3\xfc\x05\x0e\x17" + "\x20\x29\x32\x3b\x44\x4d\x56\x5f" + "\x68\x71\x7a\x83\x8c\x95\x9e\xa7" + "\xb0\xb9\xc2\xcb\xd4\xdd\xe6\xef" + "\xf8\x01\x0a\x13\x1c\x25\x2e\x37" + "\x40\x49\x52\x5b\x64\x6d\x76\x7f" + "\x88\x91\x9a\xa3\xac\xb5\xbe\xc7" + "\xd0\xd9\xe2\xeb\xf4\xfd\x06\x0f" + "\x18\x21\x2a\x33\x3c\x45\x4e\x57" + "\x60\x69\x72\x7b\x84\x8d\x96\x9f" + "\xa8\xb1\xba\xc3\xcc\xd5\xde\xe7" + "\xf0\xf9\x02\x0b\x14\x1d\x26\x2f" + "\x38\x41\x4a\x53\x5c\x65\x6e\x77" + "\x80\x89\x92\x9b\xa4\xad\xb6\xbf" + "\xc8\xd1\xda\xe3\xec\xf5\xfe\x07" + "\x10\x19\x22\x2b\x34\x3d\x46\x4f" + 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"\xe8\xff\x16\x2d\x44\x5b\x72\x89" + "\xa0\xb7\xce\xe5\xfc\x13\x2a\x41" + "\x58\x6f\x86\x9d\xb4\xcb\xe2\xf9" + "\x10\x27\x3e\x55\x6c\x83\x9a\xb1" + "\xc8\xdf\xf6\x0d\x24\x3b\x52\x69" + "\x80\x97\xae\xc5\xdc\xf3\x0a\x21" + "\x38\x4f\x66\x7d\x94\xab\xc2\xd9" + "\xf0\x07\x1e\x35\x4c\x63\x7a\x91" + "\xa8\xbf\xd6\xed\x04\x1b\x32\x49" + "\x60\x77\x8e\xa5\xbc\xd3\xea\x01" + "\x18\x2f\x46\x5d\x74\x8b\xa2\xb9" + "\xd0\xe7\xfe\x15\x2c\x43\x5a\x71" + "\x88\x9f\xb6\xcd\xe4\xfb\x12\x29" + "\x40\x57\x6e\x85\x9c\xb3\xca\xe1" + "\xf8\x0f\x26\x3d\x54\x6b\x82\x99" + "\xb0\xc7\xde\xf5\x0c\x23\x3a\x51" + "\x68\x7f\x96\xad\xc4\xdb\xf2\x09" + "\x20\x37\x4e\x65\x7c\x93\xaa\xc1" + "\xd8\xef\x06\x1d\x34\x4b\x62\x79" + "\x90\xa7\xbe\xd5\xec\x03\x1a\x31" + "\x48\x5f\x76\x8d\xa4\xbb\xd2\xe9" + "\x00\x19\x32\x4b\x64\x7d\x96\xaf" + "\xc8\xe1\xfa\x13\x2c\x45\x5e\x77" + "\x90\xa9\xc2\xdb\xf4\x0d\x26\x3f" + "\x58\x71\x8a\xa3\xbc\xd5\xee\x07" + "\x20\x39\x52\x6b\x84\x9d\xb6\xcf" + "\xe8\x01\x1a\x33\x4c\x65\x7e\x97" + "\xb0\xc9\xe2\xfb\x14\x2d\x46\x5f" + "\x78\x91\xaa\xc3\xdc\xf5\x0e\x27" + "\x40\x59\x72\x8b\xa4\xbd\xd6\xef" + "\x08\x21\x3a\x53\x6c\x85\x9e\xb7" + "\xd0\xe9\x02\x1b\x34\x4d\x66\x7f" + "\x98\xb1\xca\xe3\xfc\x15\x2e\x47" + "\x60\x79\x92\xab\xc4\xdd\xf6\x0f" + "\x28\x41\x5a\x73\x8c\xa5\xbe\xd7" + "\xf0\x09\x22\x3b\x54\x6d\x86\x9f" + "\xb8\xd1\xea\x03\x1c\x35\x4e\x67" + "\x80\x99\xb2\xcb\xe4\xfd\x16\x2f" + "\x48\x61\x7a\x93\xac\xc5\xde\xf7" + "\x10\x29\x42\x5b\x74\x8d\xa6\xbf" + "\xd8\xf1\x0a\x23\x3c\x55\x6e\x87" + "\xa0\xb9\xd2\xeb\x04\x1d\x36\x4f" + "\x68\x81\x9a\xb3\xcc\xe5\xfe\x17" + "\x30\x49\x62\x7b\x94\xad\xc6\xdf" + "\xf8\x11\x2a\x43\x5c\x75\x8e\xa7" + "\xc0\xd9\xf2\x0b\x24\x3d\x56\x6f" + "\x88\xa1\xba\xd3\xec\x05\x1e\x37" + "\x50\x69\x82\x9b\xb4\xcd\xe6\xff" + "\x18\x31\x4a\x63\x7c\x95\xae\xc7" + "\xe0\xf9\x12\x2b\x44\x5d\x76\x8f" + "\xa8\xc1\xda\xf3\x0c\x25\x3e\x57" + "\x70\x89\xa2\xbb\xd4\xed\x06\x1f" + "\x38\x51\x6a\x83\x9c\xb5\xce\xe7" + "\x00\x1b\x36\x51\x6c\x87\xa2\xbd" + "\xd8\xf3\x0e\x29\x44\x5f\x7a\x95" + "\xb0\xcb\xe6\x01\x1c\x37\x52\x6d" + "\x88\xa3\xbe\xd9\xf4\x0f\x2a\x45" + "\x60\x7b\x96\xb1\xcc\xe7\x02\x1d" + "\x38\x53\x6e\x89\xa4\xbf\xda\xf5" + "\x10\x2b\x46\x61\x7c\x97\xb2\xcd" + "\xe8\x03\x1e\x39\x54\x6f\x8a\xa5" + "\xc0\xdb\xf6\x11\x2c\x47\x62\x7d" + "\x98\xb3\xce\xe9\x04\x1f\x3a\x55" + "\x70\x8b\xa6\xc1\xdc\xf7\x12\x2d" + "\x48\x63\x7e\x99\xb4\xcf\xea\x05" + "\x20\x3b\x56\x71\x8c\xa7\xc2\xdd" + "\xf8\x13\x2e\x49\x64\x7f\x9a\xb5" + "\xd0\xeb\x06\x21\x3c\x57\x72\x8d" + "\xa8\xc3\xde\xf9\x14\x2f\x4a\x65" + "\x80\x9b\xb6\xd1\xec\x07\x22\x3d" + "\x58\x73\x8e\xa9\xc4\xdf\xfa\x15" + "\x30\x4b\x66\x81\x9c\xb7\xd2\xed" + "\x08\x23\x3e\x59\x74\x8f\xaa\xc5" + "\xe0\xfb\x16\x31\x4c\x67\x82\x9d" + "\xb8\xd3\xee\x09\x24\x3f\x5a\x75" + "\x90\xab\xc6\xe1\xfc\x17\x32\x4d" + "\x68\x83\x9e\xb9\xd4\xef\x0a\x25" + "\x40\x5b\x76\x91\xac\xc7\xe2\xfd" + "\x18\x33\x4e\x69\x84\x9f\xba\xd5" + "\xf0\x0b\x26\x41\x5c\x77\x92\xad" + "\xc8\xe3\xfe\x19\x34\x4f\x6a\x85" + "\xa0\xbb\xd6\xf1\x0c\x27\x42\x5d" + "\x78\x93\xae\xc9\xe4\xff\x1a\x35" + "\x50\x6b\x86\xa1\xbc\xd7\xf2\x0d" + "\x28\x43\x5e\x79\x94\xaf\xca\xe5" + "\x00\x1d\x3a\x57\x74\x91\xae\xcb" + "\xe8\x05\x22\x3f\x5c\x79\x96\xb3" + "\xd0\xed\x0a\x27\x44\x61\x7e\x9b" + "\xb8\xd5\xf2\x0f\x2c\x49\x66\x83" + "\xa0\xbd\xda\xf7\x14\x31\x4e\x6b" + "\x88\xa5\xc2\xdf\xfc\x19\x36\x53" + "\x70\x8d\xaa\xc7\xe4\x01\x1e\x3b" + "\x58\x75\x92\xaf\xcc\xe9\x06\x23" + "\x40\x5d\x7a\x97\xb4\xd1\xee\x0b" + "\x28\x45\x62\x7f\x9c\xb9\xd6\xf3" + "\x10\x2d\x4a\x67\x84\xa1\xbe\xdb" + "\xf8\x15\x32\x4f\x6c\x89\xa6\xc3" + "\xe0\xfd\x1a\x37\x54\x71\x8e\xab" + "\xc8\xe5\x02\x1f\x3c\x59\x76\x93" + "\xb0\xcd\xea\x07\x24\x41\x5e\x7b" + "\x98\xb5\xd2\xef\x0c\x29\x46\x63" + "\x80\x9d\xba\xd7\xf4\x11\x2e\x4b" + "\x68\x85\xa2\xbf\xdc\xf9\x16\x33" + "\x50\x6d\x8a\xa7\xc4\xe1\xfe\x1b" + "\x38\x55\x72\x8f\xac\xc9\xe6\x03" + "\x20\x3d\x5a\x77\x94\xb1\xce\xeb" + "\x08\x25\x42\x5f\x7c\x99\xb6\xd3" + "\xf0\x0d\x2a\x47\x64\x81\x9e\xbb" + "\xd8\xf5\x12\x2f\x4c\x69\x86\xa3" + "\xc0\xdd\xfa\x17\x34\x51\x6e\x8b" + "\xa8\xc5\xe2\xff\x1c\x39\x56\x73" + "\x90\xad\xca\xe7\x04\x21\x3e\x5b" + "\x78\x95\xb2\xcf\xec\x09\x26\x43" + "\x60\x7d\x9a\xb7\xd4\xf1\x0e\x2b" + "\x48\x65\x82\x9f\xbc\xd9\xf6\x13" + "\x30\x4d\x6a\x87\xa4\xc1\xde\xfb" + "\x18\x35\x52\x6f\x8c\xa9\xc6\xe3" + "\x00\x1f\x3e\x5d\x7c\x9b\xba\xd9" + "\xf8\x17\x36\x55\x74\x93\xb2\xd1" + "\xf0\x0f\x2e\x4d\x6c\x8b\xaa\xc9" + "\xe8\x07\x26\x45\x64\x83\xa2\xc1" + "\xe0\xff\x1e\x3d\x5c\x7b\x9a\xb9" + "\xd8\xf7\x16\x35\x54\x73\x92\xb1" + "\xd0\xef\x0e\x2d\x4c\x6b\x8a\xa9" + "\xc8\xe7\x06\x25\x44\x63\x82\xa1" + "\xc0\xdf\xfe\x1d\x3c\x5b\x7a\x99" + "\xb8\xd7\xf6\x15\x34\x53\x72\x91" + "\xb0\xcf\xee\x0d\x2c\x4b\x6a\x89" + "\xa8\xc7\xe6\x05\x24\x43\x62\x81" + "\xa0\xbf\xde\xfd\x1c\x3b\x5a\x79" + "\x98\xb7\xd6\xf5\x14\x33\x52\x71" + "\x90\xaf\xce\xed\x0c\x2b\x4a\x69" + "\x88\xa7\xc6\xe5\x04\x23\x42\x61" + "\x80\x9f\xbe\xdd\xfc\x1b\x3a\x59" + "\x78\x97\xb6\xd5\xf4\x13\x32\x51" + "\x70\x8f\xae\xcd\xec\x0b\x2a\x49" + "\x68\x87\xa6\xc5\xe4\x03\x22\x41" + "\x60\x7f\x9e\xbd\xdc\xfb\x1a\x39" + "\x58\x77\x96\xb5\xd4\xf3\x12\x31" + "\x50\x6f\x8e\xad\xcc\xeb\x0a\x29" + "\x48\x67\x86\xa5\xc4\xe3\x02\x21" + "\x40\x5f\x7e\x9d\xbc\xdb\xfa\x19" + "\x38\x57\x76\x95\xb4\xd3\xf2\x11" + "\x30\x4f\x6e\x8d\xac\xcb\xea\x09" + "\x28\x47\x66\x85\xa4\xc3\xe2\x01" + "\x20\x3f\x5e\x7d\x9c\xbb\xda\xf9" + "\x18\x37\x56\x75\x94\xb3\xd2\xf1" + "\x10\x2f\x4e\x6d\x8c\xab\xca\xe9" + "\x08\x27\x46\x65\x84\xa3\xc2\xe1" + "\x00\x21\x42\x63", + .ilen = 4100, + .result = + "\xf0\x5c\x74\xad\x4e\xbc\x99\xe2" + "\xae\xff\x91\x3a\x44\xcf\x38\x32" + "\x1e\xad\xa7\xcd\xa1\x39\x95\xaa" + "\x10\xb1\xb3\x2e\x04\x31\x8f\x86" + "\xf2\x62\x74\x70\x0c\xa4\x46\x08" + "\xa8\xb7\x99\xa8\xe9\xd2\x73\x79" + "\x7e\x6e\xd4\x8f\x1e\xc7\x8e\x31" + "\x0b\xfa\x4b\xce\xfd\xf3\x57\x71" + "\xe9\x46\x03\xa5\x3d\x34\x00\xe2" + "\x18\xff\x75\x6d\x06\x2d\x00\xab" + "\xb9\x3e\x6c\x59\xc5\x84\x06\xb5" + "\x8b\xd0\x89\x9c\x4a\x79\x16\xc6" + "\x3d\x74\x54\xfa\x44\xcd\x23\x26" + "\x5c\xcf\x7e\x28\x92\x32\xbf\xdf" + "\xa7\x20\x3c\x74\x58\x2a\x9a\xde" + "\x61\x00\x1c\x4f\xff\x59\xc4\x22" + "\xac\x3c\xd0\xe8\x6c\xf9\x97\x1b" + "\x58\x9b\xad\x71\xe8\xa9\xb5\x0d" + "\xee\x2f\x04\x1f\x7f\xbc\x99\xee" + "\x84\xff\x42\x60\xdc\x3a\x18\xa5" + "\x81\xf9\xef\xdc\x7a\x0f\x65\x41" + "\x2f\xa3\xd3\xf9\xc2\xcb\xc0\x4d" + "\x8f\xd3\x76\x96\xad\x49\x6d\x38" + "\x3d\x39\x0b\x6c\x80\xb7\x54\x69" + "\xf0\x2c\x90\x02\x29\x0d\x1c\x12" + "\xad\x55\xc3\x8b\x68\xd9\xcc\xb3" + "\xb2\x64\x33\x90\x5e\xca\x4b\xe2" + "\xfb\x75\xdc\x63\xf7\x9f\x82\x74" + "\xf0\xc9\xaa\x7f\xe9\x2a\x9b\x33" + "\xbc\x88\x00\x7f\xca\xb2\x1f\x14" + "\xdb\xc5\x8e\x7b\x11\x3c\x3e\x08" + "\xf3\x83\xe8\xe0\x94\x86\x2e\x92" + "\x78\x6b\x01\xc9\xc7\x83\xba\x21" + "\x6a\x25\x15\x33\x4e\x45\x08\xec" + "\x35\xdb\xe0\x6e\x31\x51\x79\xa9" + "\x42\x44\x65\xc1\xa0\xf1\xf9\x2a" + "\x70\xd5\xb6\xc6\xc1\x8c\x39\xfc" + "\x25\xa6\x55\xd9\xdd\x2d\x4c\xec" + 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"\x58\xef\x15\xa9\x83\xd9\x46\xb1" + "\x42\xaa\xf5\x02\x6c\xce\x92\x06" + "\x1b\xdb\x66\x45\x91\x79\xc2\x2d" + "\xe6\x53\xd3\x14\xfd\xbb\x44\x63" + "\xc6\xd7\x3d\x7a\x0c\x75\x78\x9d" + "\x5c\xa6\x39\xb3\xe5\x63\xca\x8b" + "\xfe\xd3\xef\x60\x83\xf6\x8e\x70" + "\xb6\x67\xc7\x77\xed\x23\xef\x4c" + "\xf0\xed\x2d\x07\x59\x6f\xc1\x01" + "\x34\x37\x08\xab\xd9\x1f\x09\xb1" + "\xce\x5b\x17\xff\x74\xf8\x9c\xd5" + "\x2c\x56\x39\x79\x0f\x69\x44\x75" + "\x58\x27\x01\xc4\xbf\xa7\xa1\x1d" + "\x90\x17\x77\x86\x5a\x3f\xd9\xd1" + "\x0e\xa0\x10\xf8\xec\x1e\xa5\x7f" + "\x5e\x36\xd1\xe3\x04\x2c\x70\xf7" + "\x8e\xc0\x98\x2f\x6c\x94\x2b\x41" + "\xb7\x60\x00\xb7\x2e\xb8\x02\x8d" + "\xb8\xb0\xd3\x86\xba\x1d\xd7\x90" + "\xd6\xb6\xe1\xfc\xd7\xd8\x28\x06" + "\x63\x9b\xce\x61\x24\x79\xc0\x70" + "\x52\xd0\xb6\xd4\x28\x95\x24\x87" + "\x03\x1f\xb7\x9a\xda\xa3\xfb\x52" + "\x5b\x68\xe7\x4c\x8c\x24\xe1\x42" + "\xf7\xd5\xfd\xad\x06\x32\x9f\xba" + "\xc1\xfc\xdd\xc6\xfc\xfc\xb3\x38" + "\x74\x56\x58\x40\x02\x37\x52\x2c" + "\x55\xcc\xb3\x9e\x7a\xe9\xd4\x38" + "\x41\x5e\x0c\x35\xe2\x11\xd1\x13" + "\xf8\xb7\x8d\x72\x6b\x22\x2a\xb0" + "\xdb\x08\xba\x35\xb9\x3f\xc8\xd3" + "\x24\x90\xec\x58\xd2\x09\xc7\x2d" + "\xed\x38\x80\x36\x72\x43\x27\x49" + "\x4a\x80\x8a\xa2\xe8\xd3\xda\x30" + "\x7d\xb6\x82\x37\x86\x92\x86\x3e" + "\x08\xb2\x28\x5a\x55\x44\x24\x7d" + "\x40\x48\x8a\xb6\x89\x58\x08\xa0" + "\xd6\x6d\x3a\x17\xbf\xf6\x54\xa2" + "\xf5\xd3\x8c\x0f\x78\x12\x57\x8b" + "\xd5\xc2\xfd\x58\x5b\x7f\x38\xe3" + "\xcc\xb7\x7c\x48\xb3\x20\xe8\x81" + "\x14\x32\x45\x05\xe0\xdb\x9f\x75" + "\x85\xb4\x6a\xfc\x95\xe3\x54\x22" + "\x12\xee\x30\xfe\xd8\x30\xef\x34" + "\x50\xab\x46\x30\x98\x2f\xb7\xc0" + "\x15\xa2\x83\xb6\xf2\x06\x21\xa2" + "\xc3\x26\x37\x14\xd1\x4d\xb5\x10" + "\x52\x76\x4d\x6a\xee\xb5\x2b\x15" + "\xb7\xf9\x51\xe8\x2a\xaf\xc7\xfa" + "\x77\xaf\xb0\x05\x4d\xd1\x68\x8e" + "\x74\x05\x9f\x9d\x93\xa5\x3e\x7f" + "\x4e\x5f\x9d\xcb\x09\xc7\x83\xe3" + "\x02\x9d\x27\x1f\xef\x85\x05\x8d" + "\xec\x55\x88\x0f\x0d\x7c\x4c\xe8" + "\xa1\x75\xa0\xd8\x06\x47\x14\xef" + "\xaa\x61\xcf\x26\x15\xad\xd8\xa3" + "\xaa\x75\xf2\x78\x4a\x5a\x61\xdf" + "\x8b\xc7\x04\xbc\xb2\x32\xd2\x7e" + "\x42\xee\xb4\x2f\x51\xff\x7b\x2e" + "\xd3\x02\xe8\xdc\x5d\x0d\x50\xdc" + "\xae\xb7\x46\xf9\xa8\xe6\xd0\x16" + "\xcc\xe6\x2c\x81\xc7\xad\xe9\xf0" + "\x05\x72\x6d\x3d\x0a\x7a\xa9\x02" + "\xac\x82\x93\x6e\xb6\x1c\x28\xfc" + "\x44\x12\xfb\x73\x77\xd4\x13\x39" + "\x29\x88\x8a\xf3\x5c\xa6\x36\xa0" + "\x2a\xed\x7e\xb1\x1d\xd6\x4c\x6b" + "\x41\x01\x18\x5d\x5d\x07\x97\xa6" + "\x4b\xef\x31\x18\xea\xac\xb1\x84" + "\x21\xed\xda\x86", + .rlen = 4100, + .np = 2, + .tap = { 4064, 36 }, +#endif + }, +}; + +static struct cipher_testvec aes_ctr_rfc3686_dec_tv_template[] = { + { /* From RFC 3686 */ + .key = "\xae\x68\x52\xf8\x12\x10\x67\xcc" + "\x4b\xf7\xa5\x76\x55\x77\xf3\x9e" + "\x00\x00\x00\x30", + .klen = 20, + .iv = "\x00\x00\x00\x00\x00\x00\x00\x00", + .input = "\xe4\x09\x5d\x4f\xb7\xa7\xb3\x79" + "\x2d\x61\x75\xa3\x26\x13\x11\xb8", + .ilen = 16, + .result = "Single block msg", + .rlen = 16, + }, { + .key = "\x7e\x24\x06\x78\x17\xfa\xe0\xd7" + "\x43\xd6\xce\x1f\x32\x53\x91\x63" + "\x00\x6c\xb6\xdb", + .klen = 20, + .iv = "\xc0\x54\x3b\x59\xda\x48\xd9\x0b", + .input = "\x51\x04\xa1\x06\x16\x8a\x72\xd9" + "\x79\x0d\x41\xee\x8e\xda\xd3\x88" + "\xeb\x2e\x1e\xfc\x46\xda\x57\xc8" + "\xfc\xe6\x30\xdf\x91\x41\xbe\x28", + .ilen = 32, + .result = "\x00\x01\x02\x03\x04\x05\x06\x07" + "\x08\x09\x0a\x0b\x0c\x0d\x0e\x0f" + "\x10\x11\x12\x13\x14\x15\x16\x17" + "\x18\x19\x1a\x1b\x1c\x1d\x1e\x1f", + .rlen = 32, + }, { + .key = "\x16\xaf\x5b\x14\x5f\xc9\xf5\x79" + "\xc1\x75\xf9\x3e\x3b\xfb\x0e\xed" + "\x86\x3d\x06\xcc\xfd\xb7\x85\x15" + "\x00\x00\x00\x48", + .klen = 28, + .iv = "\x36\x73\x3c\x14\x7d\x6d\x93\xcb", + .input = "\x4b\x55\x38\x4f\xe2\x59\xc9\xc8" + "\x4e\x79\x35\xa0\x03\xcb\xe9\x28", + .ilen = 16, + .result = "Single block msg", + .rlen = 16, + }, { + .key = "\x7c\x5c\xb2\x40\x1b\x3d\xc3\x3c" + "\x19\xe7\x34\x08\x19\xe0\xf6\x9c" + "\x67\x8c\x3d\xb8\xe6\xf6\xa9\x1a" + "\x00\x96\xb0\x3b", + .klen = 28, + .iv = "\x02\x0c\x6e\xad\xc2\xcb\x50\x0d", + .input = "\x45\x32\x43\xfc\x60\x9b\x23\x32" + "\x7e\xdf\xaa\xfa\x71\x31\xcd\x9f" + "\x84\x90\x70\x1c\x5a\xd4\xa7\x9c" + "\xfc\x1f\xe0\xff\x42\xf4\xfb\x00", + .ilen = 32, + .result = "\x00\x01\x02\x03\x04\x05\x06\x07" + "\x08\x09\x0a\x0b\x0c\x0d\x0e\x0f" + "\x10\x11\x12\x13\x14\x15\x16\x17" + "\x18\x19\x1a\x1b\x1c\x1d\x1e\x1f", + .rlen = 32, + }, { + .key = "\x77\x6b\xef\xf2\x85\x1d\xb0\x6f" + "\x4c\x8a\x05\x42\xc8\x69\x6f\x6c" + "\x6a\x81\xaf\x1e\xec\x96\xb4\xd3" + "\x7f\xc1\xd6\x89\xe6\xc1\xc1\x04" + "\x00\x00\x00\x60", + .klen = 36, + .iv = "\xdb\x56\x72\xc9\x7a\xa8\xf0\xb2", + .input = "\x14\x5a\xd0\x1d\xbf\x82\x4e\xc7" + "\x56\x08\x63\xdc\x71\xe3\xe0\xc0", + .ilen = 16, + .result = "Single block msg", + .rlen = 16, + }, { + .key = "\xf6\xd6\x6d\x6b\xd5\x2d\x59\xbb" + "\x07\x96\x36\x58\x79\xef\xf8\x86" + "\xc6\x6d\xd5\x1a\x5b\x6a\x99\x74" + "\x4b\x50\x59\x0c\x87\xa2\x38\x84" + "\x00\xfa\xac\x24", + .klen = 36, + .iv = "\xc1\x58\x5e\xf1\x5a\x43\xd8\x75", + .input = "\xf0\x5e\x23\x1b\x38\x94\x61\x2c" + "\x49\xee\x00\x0b\x80\x4e\xb2\xa9" + "\xb8\x30\x6b\x50\x8f\x83\x9d\x6a" + "\x55\x30\x83\x1d\x93\x44\xaf\x1c", + .ilen = 32, + .result = "\x00\x01\x02\x03\x04\x05\x06\x07" + "\x08\x09\x0a\x0b\x0c\x0d\x0e\x0f" + "\x10\x11\x12\x13\x14\x15\x16\x17" + "\x18\x19\x1a\x1b\x1c\x1d\x1e\x1f", + .rlen = 32, + }, +}; + +static struct aead_testvec aes_gcm_enc_tv_template[] = { + { /* From McGrew & Viega - http://citeseer.ist.psu.edu/656989.html */ + .key = zeroed_string, + .klen = 16, + .result = "\x58\xe2\xfc\xce\xfa\x7e\x30\x61" + "\x36\x7f\x1d\x57\xa4\xe7\x45\x5a", + .rlen = 16, + }, { + .key = zeroed_string, + .klen = 16, + .input = zeroed_string, + .ilen = 16, + .result = "\x03\x88\xda\xce\x60\xb6\xa3\x92" + "\xf3\x28\xc2\xb9\x71\xb2\xfe\x78" + "\xab\x6e\x47\xd4\x2c\xec\x13\xbd" + "\xf5\x3a\x67\xb2\x12\x57\xbd\xdf", + .rlen = 32, + }, { + .key = "\xfe\xff\xe9\x92\x86\x65\x73\x1c" + "\x6d\x6a\x8f\x94\x67\x30\x83\x08", + .klen = 16, + .iv = "\xca\xfe\xba\xbe\xfa\xce\xdb\xad" + "\xde\xca\xf8\x88", + .input = "\xd9\x31\x32\x25\xf8\x84\x06\xe5" + "\xa5\x59\x09\xc5\xaf\xf5\x26\x9a" + "\x86\xa7\xa9\x53\x15\x34\xf7\xda" + "\x2e\x4c\x30\x3d\x8a\x31\x8a\x72" + "\x1c\x3c\x0c\x95\x95\x68\x09\x53" + "\x2f\xcf\x0e\x24\x49\xa6\xb5\x25" + "\xb1\x6a\xed\xf5\xaa\x0d\xe6\x57" + "\xba\x63\x7b\x39\x1a\xaf\xd2\x55", + .ilen = 64, + .result = "\x42\x83\x1e\xc2\x21\x77\x74\x24" + "\x4b\x72\x21\xb7\x84\xd0\xd4\x9c" + "\xe3\xaa\x21\x2f\x2c\x02\xa4\xe0" + "\x35\xc1\x7e\x23\x29\xac\xa1\x2e" + "\x21\xd5\x14\xb2\x54\x66\x93\x1c" + "\x7d\x8f\x6a\x5a\xac\x84\xaa\x05" + "\x1b\xa3\x0b\x39\x6a\x0a\xac\x97" + "\x3d\x58\xe0\x91\x47\x3f\x59\x85" + "\x4d\x5c\x2a\xf3\x27\xcd\x64\xa6" + "\x2c\xf3\x5a\xbd\x2b\xa6\xfa\xb4", + .rlen = 80, + }, { + .key = "\xfe\xff\xe9\x92\x86\x65\x73\x1c" + "\x6d\x6a\x8f\x94\x67\x30\x83\x08", + .klen = 16, + .iv = "\xca\xfe\xba\xbe\xfa\xce\xdb\xad" + "\xde\xca\xf8\x88", + .input = "\xd9\x31\x32\x25\xf8\x84\x06\xe5" + "\xa5\x59\x09\xc5\xaf\xf5\x26\x9a" + "\x86\xa7\xa9\x53\x15\x34\xf7\xda" + "\x2e\x4c\x30\x3d\x8a\x31\x8a\x72" + "\x1c\x3c\x0c\x95\x95\x68\x09\x53" + "\x2f\xcf\x0e\x24\x49\xa6\xb5\x25" + "\xb1\x6a\xed\xf5\xaa\x0d\xe6\x57" + "\xba\x63\x7b\x39", + .ilen = 60, + .assoc = "\xfe\xed\xfa\xce\xde\xad\xbe\xef" + "\xfe\xed\xfa\xce\xde\xad\xbe\xef" + "\xab\xad\xda\xd2", + .alen = 20, + .result = "\x42\x83\x1e\xc2\x21\x77\x74\x24" + "\x4b\x72\x21\xb7\x84\xd0\xd4\x9c" + "\xe3\xaa\x21\x2f\x2c\x02\xa4\xe0" + "\x35\xc1\x7e\x23\x29\xac\xa1\x2e" + "\x21\xd5\x14\xb2\x54\x66\x93\x1c" + "\x7d\x8f\x6a\x5a\xac\x84\xaa\x05" + "\x1b\xa3\x0b\x39\x6a\x0a\xac\x97" + "\x3d\x58\xe0\x91" + "\x5b\xc9\x4f\xbc\x32\x21\xa5\xdb" + "\x94\xfa\xe9\x5a\xe7\x12\x1a\x47", + .rlen = 76, + }, { + .key = zeroed_string, + .klen = 24, + .result = "\xcd\x33\xb2\x8a\xc7\x73\xf7\x4b" + "\xa0\x0e\xd1\xf3\x12\x57\x24\x35", + .rlen = 16, + }, { + .key = zeroed_string, + .klen = 24, + .input = zeroed_string, + .ilen = 16, + .result = "\x98\xe7\x24\x7c\x07\xf0\xfe\x41" + "\x1c\x26\x7e\x43\x84\xb0\xf6\x00" + "\x2f\xf5\x8d\x80\x03\x39\x27\xab" + "\x8e\xf4\xd4\x58\x75\x14\xf0\xfb", + .rlen = 32, + }, { + .key = "\xfe\xff\xe9\x92\x86\x65\x73\x1c" + "\x6d\x6a\x8f\x94\x67\x30\x83\x08" + "\xfe\xff\xe9\x92\x86\x65\x73\x1c", + .klen = 24, + .iv = "\xca\xfe\xba\xbe\xfa\xce\xdb\xad" + "\xde\xca\xf8\x88", + .input = "\xd9\x31\x32\x25\xf8\x84\x06\xe5" + "\xa5\x59\x09\xc5\xaf\xf5\x26\x9a" + "\x86\xa7\xa9\x53\x15\x34\xf7\xda" + "\x2e\x4c\x30\x3d\x8a\x31\x8a\x72" + "\x1c\x3c\x0c\x95\x95\x68\x09\x53" + "\x2f\xcf\x0e\x24\x49\xa6\xb5\x25" + "\xb1\x6a\xed\xf5\xaa\x0d\xe6\x57" + "\xba\x63\x7b\x39\x1a\xaf\xd2\x55", + .ilen = 64, + .result = "\x39\x80\xca\x0b\x3c\x00\xe8\x41" + "\xeb\x06\xfa\xc4\x87\x2a\x27\x57" + "\x85\x9e\x1c\xea\xa6\xef\xd9\x84" + "\x62\x85\x93\xb4\x0c\xa1\xe1\x9c" + "\x7d\x77\x3d\x00\xc1\x44\xc5\x25" + "\xac\x61\x9d\x18\xc8\x4a\x3f\x47" + "\x18\xe2\x44\x8b\x2f\xe3\x24\xd9" + "\xcc\xda\x27\x10\xac\xad\xe2\x56" + "\x99\x24\xa7\xc8\x58\x73\x36\xbf" + "\xb1\x18\x02\x4d\xb8\x67\x4a\x14", + .rlen = 80, + }, { + .key = "\xfe\xff\xe9\x92\x86\x65\x73\x1c" + "\x6d\x6a\x8f\x94\x67\x30\x83\x08" + "\xfe\xff\xe9\x92\x86\x65\x73\x1c", + .klen = 24, + .iv = "\xca\xfe\xba\xbe\xfa\xce\xdb\xad" + "\xde\xca\xf8\x88", + .input = "\xd9\x31\x32\x25\xf8\x84\x06\xe5" + "\xa5\x59\x09\xc5\xaf\xf5\x26\x9a" + "\x86\xa7\xa9\x53\x15\x34\xf7\xda" + "\x2e\x4c\x30\x3d\x8a\x31\x8a\x72" + "\x1c\x3c\x0c\x95\x95\x68\x09\x53" + "\x2f\xcf\x0e\x24\x49\xa6\xb5\x25" + "\xb1\x6a\xed\xf5\xaa\x0d\xe6\x57" + "\xba\x63\x7b\x39", + .ilen = 60, + .assoc = "\xfe\xed\xfa\xce\xde\xad\xbe\xef" + "\xfe\xed\xfa\xce\xde\xad\xbe\xef" + "\xab\xad\xda\xd2", + .alen = 20, + .result = "\x39\x80\xca\x0b\x3c\x00\xe8\x41" + "\xeb\x06\xfa\xc4\x87\x2a\x27\x57" + "\x85\x9e\x1c\xea\xa6\xef\xd9\x84" + "\x62\x85\x93\xb4\x0c\xa1\xe1\x9c" + "\x7d\x77\x3d\x00\xc1\x44\xc5\x25" + "\xac\x61\x9d\x18\xc8\x4a\x3f\x47" + "\x18\xe2\x44\x8b\x2f\xe3\x24\xd9" + "\xcc\xda\x27\x10" + "\x25\x19\x49\x8e\x80\xf1\x47\x8f" + "\x37\xba\x55\xbd\x6d\x27\x61\x8c", + .rlen = 76, + .np = 2, + .tap = { 32, 28 }, + .anp = 2, + .atap = { 8, 12 } + }, { + .key = zeroed_string, + .klen = 32, + .result = "\x53\x0f\x8a\xfb\xc7\x45\x36\xb9" + "\xa9\x63\xb4\xf1\xc4\xcb\x73\x8b", + .rlen = 16, + } +}; + +static struct aead_testvec aes_gcm_dec_tv_template[] = { + { /* From McGrew & Viega - http://citeseer.ist.psu.edu/656989.html */ + .key = zeroed_string, + .klen = 32, + .input = "\xce\xa7\x40\x3d\x4d\x60\x6b\x6e" + "\x07\x4e\xc5\xd3\xba\xf3\x9d\x18" + "\xd0\xd1\xc8\xa7\x99\x99\x6b\xf0" + "\x26\x5b\x98\xb5\xd4\x8a\xb9\x19", + .ilen = 32, + .result = zeroed_string, + .rlen = 16, + }, { + .key = "\xfe\xff\xe9\x92\x86\x65\x73\x1c" + "\x6d\x6a\x8f\x94\x67\x30\x83\x08" + "\xfe\xff\xe9\x92\x86\x65\x73\x1c" + "\x6d\x6a\x8f\x94\x67\x30\x83\x08", + .klen = 32, + .iv = "\xca\xfe\xba\xbe\xfa\xce\xdb\xad" + "\xde\xca\xf8\x88", + .input = "\x52\x2d\xc1\xf0\x99\x56\x7d\x07" + "\xf4\x7f\x37\xa3\x2a\x84\x42\x7d" + "\x64\x3a\x8c\xdc\xbf\xe5\xc0\xc9" + "\x75\x98\xa2\xbd\x25\x55\xd1\xaa" + "\x8c\xb0\x8e\x48\x59\x0d\xbb\x3d" + "\xa7\xb0\x8b\x10\x56\x82\x88\x38" + "\xc5\xf6\x1e\x63\x93\xba\x7a\x0a" + "\xbc\xc9\xf6\x62\x89\x80\x15\xad" + "\xb0\x94\xda\xc5\xd9\x34\x71\xbd" + "\xec\x1a\x50\x22\x70\xe3\xcc\x6c", + .ilen = 80, + .result = "\xd9\x31\x32\x25\xf8\x84\x06\xe5" + "\xa5\x59\x09\xc5\xaf\xf5\x26\x9a" + "\x86\xa7\xa9\x53\x15\x34\xf7\xda" + "\x2e\x4c\x30\x3d\x8a\x31\x8a\x72" + "\x1c\x3c\x0c\x95\x95\x68\x09\x53" + "\x2f\xcf\x0e\x24\x49\xa6\xb5\x25" + "\xb1\x6a\xed\xf5\xaa\x0d\xe6\x57" + "\xba\x63\x7b\x39\x1a\xaf\xd2\x55", + .rlen = 64, + }, { + .key = "\xfe\xff\xe9\x92\x86\x65\x73\x1c" + "\x6d\x6a\x8f\x94\x67\x30\x83\x08" + "\xfe\xff\xe9\x92\x86\x65\x73\x1c" + "\x6d\x6a\x8f\x94\x67\x30\x83\x08", + .klen = 32, + .iv = "\xca\xfe\xba\xbe\xfa\xce\xdb\xad" + "\xde\xca\xf8\x88", + .input = "\x52\x2d\xc1\xf0\x99\x56\x7d\x07" + "\xf4\x7f\x37\xa3\x2a\x84\x42\x7d" + "\x64\x3a\x8c\xdc\xbf\xe5\xc0\xc9" + "\x75\x98\xa2\xbd\x25\x55\xd1\xaa" + "\x8c\xb0\x8e\x48\x59\x0d\xbb\x3d" + "\xa7\xb0\x8b\x10\x56\x82\x88\x38" + "\xc5\xf6\x1e\x63\x93\xba\x7a\x0a" + "\xbc\xc9\xf6\x62" + "\x76\xfc\x6e\xce\x0f\x4e\x17\x68" + "\xcd\xdf\x88\x53\xbb\x2d\x55\x1b", + .ilen = 76, + .assoc = "\xfe\xed\xfa\xce\xde\xad\xbe\xef" + "\xfe\xed\xfa\xce\xde\xad\xbe\xef" + "\xab\xad\xda\xd2", + .alen = 20, + .result = "\xd9\x31\x32\x25\xf8\x84\x06\xe5" + "\xa5\x59\x09\xc5\xaf\xf5\x26\x9a" + "\x86\xa7\xa9\x53\x15\x34\xf7\xda" + "\x2e\x4c\x30\x3d\x8a\x31\x8a\x72" + "\x1c\x3c\x0c\x95\x95\x68\x09\x53" + "\x2f\xcf\x0e\x24\x49\xa6\xb5\x25" + "\xb1\x6a\xed\xf5\xaa\x0d\xe6\x57" + "\xba\x63\x7b\x39", + .rlen = 60, + .np = 2, + .tap = { 48, 28 }, + .anp = 3, + .atap = { 8, 8, 4 } + }, { + .key = "\xfe\xff\xe9\x92\x86\x65\x73\x1c" + "\x6d\x6a\x8f\x94\x67\x30\x83\x08", + .klen = 16, + .iv = "\xca\xfe\xba\xbe\xfa\xce\xdb\xad" + "\xde\xca\xf8\x88", + .input = "\x42\x83\x1e\xc2\x21\x77\x74\x24" + "\x4b\x72\x21\xb7\x84\xd0\xd4\x9c" + "\xe3\xaa\x21\x2f\x2c\x02\xa4\xe0" + "\x35\xc1\x7e\x23\x29\xac\xa1\x2e" + "\x21\xd5\x14\xb2\x54\x66\x93\x1c" + "\x7d\x8f\x6a\x5a\xac\x84\xaa\x05" + "\x1b\xa3\x0b\x39\x6a\x0a\xac\x97" + "\x3d\x58\xe0\x91\x47\x3f\x59\x85" + "\x4d\x5c\x2a\xf3\x27\xcd\x64\xa6" + "\x2c\xf3\x5a\xbd\x2b\xa6\xfa\xb4", + .ilen = 80, + .result = "\xd9\x31\x32\x25\xf8\x84\x06\xe5" + "\xa5\x59\x09\xc5\xaf\xf5\x26\x9a" + "\x86\xa7\xa9\x53\x15\x34\xf7\xda" + "\x2e\x4c\x30\x3d\x8a\x31\x8a\x72" + "\x1c\x3c\x0c\x95\x95\x68\x09\x53" + "\x2f\xcf\x0e\x24\x49\xa6\xb5\x25" + "\xb1\x6a\xed\xf5\xaa\x0d\xe6\x57" + "\xba\x63\x7b\x39\x1a\xaf\xd2\x55", + .rlen = 64, + }, { + .key = "\xfe\xff\xe9\x92\x86\x65\x73\x1c" + "\x6d\x6a\x8f\x94\x67\x30\x83\x08", + .klen = 16, + .iv = "\xca\xfe\xba\xbe\xfa\xce\xdb\xad" + "\xde\xca\xf8\x88", + .input = "\x42\x83\x1e\xc2\x21\x77\x74\x24" + "\x4b\x72\x21\xb7\x84\xd0\xd4\x9c" + "\xe3\xaa\x21\x2f\x2c\x02\xa4\xe0" + "\x35\xc1\x7e\x23\x29\xac\xa1\x2e" + "\x21\xd5\x14\xb2\x54\x66\x93\x1c" + "\x7d\x8f\x6a\x5a\xac\x84\xaa\x05" + "\x1b\xa3\x0b\x39\x6a\x0a\xac\x97" + "\x3d\x58\xe0\x91" + "\x5b\xc9\x4f\xbc\x32\x21\xa5\xdb" + "\x94\xfa\xe9\x5a\xe7\x12\x1a\x47", + .ilen = 76, + .assoc = "\xfe\xed\xfa\xce\xde\xad\xbe\xef" + "\xfe\xed\xfa\xce\xde\xad\xbe\xef" + "\xab\xad\xda\xd2", + .alen = 20, + .result = "\xd9\x31\x32\x25\xf8\x84\x06\xe5" + "\xa5\x59\x09\xc5\xaf\xf5\x26\x9a" + "\x86\xa7\xa9\x53\x15\x34\xf7\xda" + "\x2e\x4c\x30\x3d\x8a\x31\x8a\x72" + "\x1c\x3c\x0c\x95\x95\x68\x09\x53" + "\x2f\xcf\x0e\x24\x49\xa6\xb5\x25" + "\xb1\x6a\xed\xf5\xaa\x0d\xe6\x57" + "\xba\x63\x7b\x39", + .rlen = 60, + }, { + .key = zeroed_string, + .klen = 24, + .input = "\x98\xe7\x24\x7c\x07\xf0\xfe\x41" + "\x1c\x26\x7e\x43\x84\xb0\xf6\x00" + "\x2f\xf5\x8d\x80\x03\x39\x27\xab" + "\x8e\xf4\xd4\x58\x75\x14\xf0\xfb", + .ilen = 32, + .result = zeroed_string, + .rlen = 16, + }, { + .key = "\xfe\xff\xe9\x92\x86\x65\x73\x1c" + "\x6d\x6a\x8f\x94\x67\x30\x83\x08" + "\xfe\xff\xe9\x92\x86\x65\x73\x1c", + .klen = 24, + .iv = "\xca\xfe\xba\xbe\xfa\xce\xdb\xad" + "\xde\xca\xf8\x88", + .input = "\x39\x80\xca\x0b\x3c\x00\xe8\x41" + "\xeb\x06\xfa\xc4\x87\x2a\x27\x57" + "\x85\x9e\x1c\xea\xa6\xef\xd9\x84" + "\x62\x85\x93\xb4\x0c\xa1\xe1\x9c" + "\x7d\x77\x3d\x00\xc1\x44\xc5\x25" + "\xac\x61\x9d\x18\xc8\x4a\x3f\x47" + "\x18\xe2\x44\x8b\x2f\xe3\x24\xd9" + "\xcc\xda\x27\x10\xac\xad\xe2\x56" + "\x99\x24\xa7\xc8\x58\x73\x36\xbf" + "\xb1\x18\x02\x4d\xb8\x67\x4a\x14", + .ilen = 80, + .result = "\xd9\x31\x32\x25\xf8\x84\x06\xe5" + "\xa5\x59\x09\xc5\xaf\xf5\x26\x9a" + "\x86\xa7\xa9\x53\x15\x34\xf7\xda" + "\x2e\x4c\x30\x3d\x8a\x31\x8a\x72" + "\x1c\x3c\x0c\x95\x95\x68\x09\x53" + "\x2f\xcf\x0e\x24\x49\xa6\xb5\x25" + "\xb1\x6a\xed\xf5\xaa\x0d\xe6\x57" + "\xba\x63\x7b\x39\x1a\xaf\xd2\x55", + .rlen = 64, + }, { + .key = "\xfe\xff\xe9\x92\x86\x65\x73\x1c" + "\x6d\x6a\x8f\x94\x67\x30\x83\x08" + "\xfe\xff\xe9\x92\x86\x65\x73\x1c", + .klen = 24, + .iv = "\xca\xfe\xba\xbe\xfa\xce\xdb\xad" + "\xde\xca\xf8\x88", + .input = "\x39\x80\xca\x0b\x3c\x00\xe8\x41" + "\xeb\x06\xfa\xc4\x87\x2a\x27\x57" + "\x85\x9e\x1c\xea\xa6\xef\xd9\x84" + "\x62\x85\x93\xb4\x0c\xa1\xe1\x9c" + "\x7d\x77\x3d\x00\xc1\x44\xc5\x25" + "\xac\x61\x9d\x18\xc8\x4a\x3f\x47" + "\x18\xe2\x44\x8b\x2f\xe3\x24\xd9" + "\xcc\xda\x27\x10" + "\x25\x19\x49\x8e\x80\xf1\x47\x8f" + "\x37\xba\x55\xbd\x6d\x27\x61\x8c", + .ilen = 76, + .assoc = "\xfe\xed\xfa\xce\xde\xad\xbe\xef" + "\xfe\xed\xfa\xce\xde\xad\xbe\xef" + "\xab\xad\xda\xd2", + .alen = 20, + .result = "\xd9\x31\x32\x25\xf8\x84\x06\xe5" + "\xa5\x59\x09\xc5\xaf\xf5\x26\x9a" + "\x86\xa7\xa9\x53\x15\x34\xf7\xda" + "\x2e\x4c\x30\x3d\x8a\x31\x8a\x72" + "\x1c\x3c\x0c\x95\x95\x68\x09\x53" + "\x2f\xcf\x0e\x24\x49\xa6\xb5\x25" + "\xb1\x6a\xed\xf5\xaa\x0d\xe6\x57" + "\xba\x63\x7b\x39", + .rlen = 60, + } +}; + +static struct aead_testvec aes_ccm_enc_tv_template[] = { + { /* From RFC 3610 */ + .key = "\xc0\xc1\xc2\xc3\xc4\xc5\xc6\xc7" + "\xc8\xc9\xca\xcb\xcc\xcd\xce\xcf", + .klen = 16, + .iv = "\x01\x00\x00\x00\x03\x02\x01\x00" + "\xa0\xa1\xa2\xa3\xa4\xa5\x00\x00", + .assoc = "\x00\x01\x02\x03\x04\x05\x06\x07", + .alen = 8, + .input = "\x08\x09\x0a\x0b\x0c\x0d\x0e\x0f" + "\x10\x11\x12\x13\x14\x15\x16\x17" + "\x18\x19\x1a\x1b\x1c\x1d\x1e", + .ilen = 23, + .result = "\x58\x8c\x97\x9a\x61\xc6\x63\xd2" + "\xf0\x66\xd0\xc2\xc0\xf9\x89\x80" + "\x6d\x5f\x6b\x61\xda\xc3\x84\x17" + "\xe8\xd1\x2c\xfd\xf9\x26\xe0", + .rlen = 31, + }, { + .key = "\xc0\xc1\xc2\xc3\xc4\xc5\xc6\xc7" + "\xc8\xc9\xca\xcb\xcc\xcd\xce\xcf", + .klen = 16, + .iv = "\x01\x00\x00\x00\x07\x06\x05\x04" + "\xa0\xa1\xa2\xa3\xa4\xa5\x00\x00", + .assoc = "\x00\x01\x02\x03\x04\x05\x06\x07" + "\x08\x09\x0a\x0b", + .alen = 12, + .input = "\x0c\x0d\x0e\x0f\x10\x11\x12\x13" + "\x14\x15\x16\x17\x18\x19\x1a\x1b" + "\x1c\x1d\x1e\x1f", + .ilen = 20, + .result = "\xdc\xf1\xfb\x7b\x5d\x9e\x23\xfb" + "\x9d\x4e\x13\x12\x53\x65\x8a\xd8" + "\x6e\xbd\xca\x3e\x51\xe8\x3f\x07" + "\x7d\x9c\x2d\x93", + .rlen = 28, + }, { + .key = "\xc0\xc1\xc2\xc3\xc4\xc5\xc6\xc7" + "\xc8\xc9\xca\xcb\xcc\xcd\xce\xcf", + .klen = 16, + .iv = "\x01\x00\x00\x00\x0b\x0a\x09\x08" + "\xa0\xa1\xa2\xa3\xa4\xa5\x00\x00", + .assoc = "\x00\x01\x02\x03\x04\x05\x06\x07", + .alen = 8, + .input = "\x08\x09\x0a\x0b\x0c\x0d\x0e\x0f" + "\x10\x11\x12\x13\x14\x15\x16\x17" + "\x18\x19\x1a\x1b\x1c\x1d\x1e\x1f" + "\x20", + .ilen = 25, + .result = "\x82\x53\x1a\x60\xcc\x24\x94\x5a" + "\x4b\x82\x79\x18\x1a\xb5\xc8\x4d" + "\xf2\x1c\xe7\xf9\xb7\x3f\x42\xe1" + "\x97\xea\x9c\x07\xe5\x6b\x5e\xb1" + "\x7e\x5f\x4e", + .rlen = 35, + }, { + .key = "\xc0\xc1\xc2\xc3\xc4\xc5\xc6\xc7" + "\xc8\xc9\xca\xcb\xcc\xcd\xce\xcf", + .klen = 16, + .iv = "\x01\x00\x00\x00\x0c\x0b\x0a\x09" + "\xa0\xa1\xa2\xa3\xa4\xa5\x00\x00", + .assoc = "\x00\x01\x02\x03\x04\x05\x06\x07" + "\x08\x09\x0a\x0b", + .alen = 12, + .input = "\x0c\x0d\x0e\x0f\x10\x11\x12\x13" + "\x14\x15\x16\x17\x18\x19\x1a\x1b" + "\x1c\x1d\x1e", + .ilen = 19, + .result = "\x07\x34\x25\x94\x15\x77\x85\x15" + "\x2b\x07\x40\x98\x33\x0a\xbb\x14" + "\x1b\x94\x7b\x56\x6a\xa9\x40\x6b" + "\x4d\x99\x99\x88\xdd", + .rlen = 29, + }, { + .key = "\xd7\x82\x8d\x13\xb2\xb0\xbd\xc3" + "\x25\xa7\x62\x36\xdf\x93\xcc\x6b", + .klen = 16, + .iv = "\x01\x00\x33\x56\x8e\xf7\xb2\x63" + "\x3c\x96\x96\x76\x6c\xfa\x00\x00", + .assoc = "\x63\x01\x8f\x76\xdc\x8a\x1b\xcb", + .alen = 8, + .input = "\x90\x20\xea\x6f\x91\xbd\xd8\x5a" + "\xfa\x00\x39\xba\x4b\xaf\xf9\xbf" + "\xb7\x9c\x70\x28\x94\x9c\xd0\xec", + .ilen = 24, + .result = "\x4c\xcb\x1e\x7c\xa9\x81\xbe\xfa" + "\xa0\x72\x6c\x55\xd3\x78\x06\x12" + "\x98\xc8\x5c\x92\x81\x4a\xbc\x33" + "\xc5\x2e\xe8\x1d\x7d\x77\xc0\x8a", + .rlen = 32, + }, { + .key = "\xd7\x82\x8d\x13\xb2\xb0\xbd\xc3" + "\x25\xa7\x62\x36\xdf\x93\xcc\x6b", + .klen = 16, + .iv = "\x01\x00\xd5\x60\x91\x2d\x3f\x70" + "\x3c\x96\x96\x76\x6c\xfa\x00\x00", + .assoc = "\xcd\x90\x44\xd2\xb7\x1f\xdb\x81" + "\x20\xea\x60\xc0", + .alen = 12, + .input = "\x64\x35\xac\xba\xfb\x11\xa8\x2e" + "\x2f\x07\x1d\x7c\xa4\xa5\xeb\xd9" + "\x3a\x80\x3b\xa8\x7f", + .ilen = 21, + .result = "\x00\x97\x69\xec\xab\xdf\x48\x62" + "\x55\x94\xc5\x92\x51\xe6\x03\x57" + "\x22\x67\x5e\x04\xc8\x47\x09\x9e" + "\x5a\xe0\x70\x45\x51", + .rlen = 29, + }, { + .key = "\xd7\x82\x8d\x13\xb2\xb0\xbd\xc3" + "\x25\xa7\x62\x36\xdf\x93\xcc\x6b", + .klen = 16, + .iv = "\x01\x00\x42\xff\xf8\xf1\x95\x1c" + "\x3c\x96\x96\x76\x6c\xfa\x00\x00", + .assoc = "\xd8\x5b\xc7\xe6\x9f\x94\x4f\xb8", + .alen = 8, + .input = "\x8a\x19\xb9\x50\xbc\xf7\x1a\x01" + "\x8e\x5e\x67\x01\xc9\x17\x87\x65" + "\x98\x09\xd6\x7d\xbe\xdd\x18", + .ilen = 23, + .result = "\xbc\x21\x8d\xaa\x94\x74\x27\xb6" + "\xdb\x38\x6a\x99\xac\x1a\xef\x23" + "\xad\xe0\xb5\x29\x39\xcb\x6a\x63" + "\x7c\xf9\xbe\xc2\x40\x88\x97\xc6" + "\xba", + .rlen = 33, + }, +}; + +static struct aead_testvec aes_ccm_dec_tv_template[] = { + { /* From RFC 3610 */ + .key = "\xc0\xc1\xc2\xc3\xc4\xc5\xc6\xc7" + "\xc8\xc9\xca\xcb\xcc\xcd\xce\xcf", + .klen = 16, + .iv = "\x01\x00\x00\x00\x03\x02\x01\x00" + "\xa0\xa1\xa2\xa3\xa4\xa5\x00\x00", + .assoc = "\x00\x01\x02\x03\x04\x05\x06\x07", + .alen = 8, + .input = "\x58\x8c\x97\x9a\x61\xc6\x63\xd2" + "\xf0\x66\xd0\xc2\xc0\xf9\x89\x80" + "\x6d\x5f\x6b\x61\xda\xc3\x84\x17" + "\xe8\xd1\x2c\xfd\xf9\x26\xe0", + .ilen = 31, + .result = "\x08\x09\x0a\x0b\x0c\x0d\x0e\x0f" + "\x10\x11\x12\x13\x14\x15\x16\x17" + "\x18\x19\x1a\x1b\x1c\x1d\x1e", + .rlen = 23, + }, { + .key = "\xc0\xc1\xc2\xc3\xc4\xc5\xc6\xc7" + "\xc8\xc9\xca\xcb\xcc\xcd\xce\xcf", + .klen = 16, + .iv = "\x01\x00\x00\x00\x07\x06\x05\x04" + "\xa0\xa1\xa2\xa3\xa4\xa5\x00\x00", + .assoc = "\x00\x01\x02\x03\x04\x05\x06\x07" + "\x08\x09\x0a\x0b", + .alen = 12, + .input = "\xdc\xf1\xfb\x7b\x5d\x9e\x23\xfb" + "\x9d\x4e\x13\x12\x53\x65\x8a\xd8" + "\x6e\xbd\xca\x3e\x51\xe8\x3f\x07" + "\x7d\x9c\x2d\x93", + .ilen = 28, + .result = "\x0c\x0d\x0e\x0f\x10\x11\x12\x13" + "\x14\x15\x16\x17\x18\x19\x1a\x1b" + "\x1c\x1d\x1e\x1f", + .rlen = 20, + }, { + .key = "\xc0\xc1\xc2\xc3\xc4\xc5\xc6\xc7" + "\xc8\xc9\xca\xcb\xcc\xcd\xce\xcf", + .klen = 16, + .iv = "\x01\x00\x00\x00\x0b\x0a\x09\x08" + "\xa0\xa1\xa2\xa3\xa4\xa5\x00\x00", + .assoc = "\x00\x01\x02\x03\x04\x05\x06\x07", + .alen = 8, + .input = "\x82\x53\x1a\x60\xcc\x24\x94\x5a" + "\x4b\x82\x79\x18\x1a\xb5\xc8\x4d" + "\xf2\x1c\xe7\xf9\xb7\x3f\x42\xe1" + "\x97\xea\x9c\x07\xe5\x6b\x5e\xb1" + "\x7e\x5f\x4e", + .ilen = 35, + .result = "\x08\x09\x0a\x0b\x0c\x0d\x0e\x0f" + "\x10\x11\x12\x13\x14\x15\x16\x17" + "\x18\x19\x1a\x1b\x1c\x1d\x1e\x1f" + "\x20", + .rlen = 25, + }, { + .key = "\xc0\xc1\xc2\xc3\xc4\xc5\xc6\xc7" + "\xc8\xc9\xca\xcb\xcc\xcd\xce\xcf", + .klen = 16, + .iv = "\x01\x00\x00\x00\x0c\x0b\x0a\x09" + "\xa0\xa1\xa2\xa3\xa4\xa5\x00\x00", + .assoc = "\x00\x01\x02\x03\x04\x05\x06\x07" + "\x08\x09\x0a\x0b", + .alen = 12, + .input = "\x07\x34\x25\x94\x15\x77\x85\x15" + "\x2b\x07\x40\x98\x33\x0a\xbb\x14" + "\x1b\x94\x7b\x56\x6a\xa9\x40\x6b" + "\x4d\x99\x99\x88\xdd", + .ilen = 29, + .result = "\x0c\x0d\x0e\x0f\x10\x11\x12\x13" + "\x14\x15\x16\x17\x18\x19\x1a\x1b" + "\x1c\x1d\x1e", + .rlen = 19, + }, { + .key = "\xd7\x82\x8d\x13\xb2\xb0\xbd\xc3" + "\x25\xa7\x62\x36\xdf\x93\xcc\x6b", + .klen = 16, + .iv = "\x01\x00\x33\x56\x8e\xf7\xb2\x63" + "\x3c\x96\x96\x76\x6c\xfa\x00\x00", + .assoc = "\x63\x01\x8f\x76\xdc\x8a\x1b\xcb", + .alen = 8, + .input = "\x4c\xcb\x1e\x7c\xa9\x81\xbe\xfa" + "\xa0\x72\x6c\x55\xd3\x78\x06\x12" + "\x98\xc8\x5c\x92\x81\x4a\xbc\x33" + "\xc5\x2e\xe8\x1d\x7d\x77\xc0\x8a", + .ilen = 32, + .result = "\x90\x20\xea\x6f\x91\xbd\xd8\x5a" + "\xfa\x00\x39\xba\x4b\xaf\xf9\xbf" + "\xb7\x9c\x70\x28\x94\x9c\xd0\xec", + .rlen = 24, + }, { + .key = "\xd7\x82\x8d\x13\xb2\xb0\xbd\xc3" + "\x25\xa7\x62\x36\xdf\x93\xcc\x6b", + .klen = 16, + .iv = "\x01\x00\xd5\x60\x91\x2d\x3f\x70" + "\x3c\x96\x96\x76\x6c\xfa\x00\x00", + .assoc = "\xcd\x90\x44\xd2\xb7\x1f\xdb\x81" + "\x20\xea\x60\xc0", + .alen = 12, + .input = "\x00\x97\x69\xec\xab\xdf\x48\x62" + "\x55\x94\xc5\x92\x51\xe6\x03\x57" + "\x22\x67\x5e\x04\xc8\x47\x09\x9e" + "\x5a\xe0\x70\x45\x51", + .ilen = 29, + .result = "\x64\x35\xac\xba\xfb\x11\xa8\x2e" + "\x2f\x07\x1d\x7c\xa4\xa5\xeb\xd9" + "\x3a\x80\x3b\xa8\x7f", + .rlen = 21, + }, { + .key = "\xd7\x82\x8d\x13\xb2\xb0\xbd\xc3" + "\x25\xa7\x62\x36\xdf\x93\xcc\x6b", + .klen = 16, + .iv = "\x01\x00\x42\xff\xf8\xf1\x95\x1c" + "\x3c\x96\x96\x76\x6c\xfa\x00\x00", + .assoc = "\xd8\x5b\xc7\xe6\x9f\x94\x4f\xb8", + .alen = 8, + .input = "\xbc\x21\x8d\xaa\x94\x74\x27\xb6" + "\xdb\x38\x6a\x99\xac\x1a\xef\x23" + "\xad\xe0\xb5\x29\x39\xcb\x6a\x63" + "\x7c\xf9\xbe\xc2\x40\x88\x97\xc6" + "\xba", + .ilen = 33, + .result = "\x8a\x19\xb9\x50\xbc\xf7\x1a\x01" + "\x8e\x5e\x67\x01\xc9\x17\x87\x65" + "\x98\x09\xd6\x7d\xbe\xdd\x18", + .rlen = 23, + }, +}; + +/* + * rfc4309 refers to section 8 of rfc3610 for test vectors, but they all + * use a 13-byte nonce, we only support an 11-byte nonce. Similarly, all of + * Special Publication 800-38C's test vectors also use nonce lengths our + * implementation doesn't support. The following are taken from fips cavs + * fax files on hand at Red Hat. + * + * nb: actual key lengths are (klen - 3), the last 3 bytes are actually + * part of the nonce which combine w/the iv, but need to be input this way. + */ +static struct aead_testvec aes_ccm_rfc4309_enc_tv_template[] = { + { + .key = "\x83\xac\x54\x66\xc2\xeb\xe5\x05" + "\x2e\x01\xd1\xfc\x5d\x82\x66\x2e" + "\x96\xac\x59", + .klen = 19, + .iv = "\x30\x07\xa1\xe2\xa2\xc7\x55\x24", + .alen = 0, + .input = "\x19\xc8\x81\xf6\xe9\x86\xff\x93" + "\x0b\x78\x67\xe5\xbb\xb7\xfc\x6e" + "\x83\x77\xb3\xa6\x0c\x8c\x9f\x9c" + "\x35\x2e\xad\xe0\x62\xf9\x91\xa1", + .ilen = 32, + .result = "\xab\x6f\xe1\x69\x1d\x19\x99\xa8" + "\x92\xa0\xc4\x6f\x7e\xe2\x8b\xb1" + "\x70\xbb\x8c\xa6\x4c\x6e\x97\x8a" + "\x57\x2b\xbe\x5d\x98\xa6\xb1\x32" + "\xda\x24\xea\xd9\xa1\x39\x98\xfd" + "\xa4\xbe\xd9\xf2\x1a\x6d\x22\xa8", + .rlen = 48, + }, { + .key = "\x1e\x2c\x7e\x01\x41\x9a\xef\xc0" + "\x0d\x58\x96\x6e\x5c\xa2\x4b\xd3" + "\x4f\xa3\x19", + .klen = 19, + .iv = "\xd3\x01\x5a\xd8\x30\x60\x15\x56", + .assoc = "\xda\xe6\x28\x9c\x45\x2d\xfd\x63" + "\x5e\xda\x4c\xb6\xe6\xfc\xf9\xb7" + "\x0c\x56\xcb\xe4\xe0\x05\x7a\xe1" + "\x0a\x63\x09\x78\xbc\x2c\x55\xde", + .alen = 32, + .input = "\x87\xa3\x36\xfd\x96\xb3\x93\x78" + "\xa9\x28\x63\xba\x12\xa3\x14\x85" + "\x57\x1e\x06\xc9\x7b\x21\xef\x76" + "\x7f\x38\x7e\x8e\x29\xa4\x3e\x7e", + .ilen = 32, + .result = "\x8a\x1e\x11\xf0\x02\x6b\xe2\x19" + "\xfc\x70\xc4\x6d\x8e\xb7\x99\xab" + "\xc5\x4b\xa2\xac\xd3\xf3\x48\xff" + "\x3b\xb5\xce\x53\xef\xde\xbb\x02" + "\xa9\x86\x15\x6c\x13\xfe\xda\x0a" + "\x22\xb8\x29\x3d\xd8\x39\x9a\x23", + .rlen = 48, + }, { + .key = "\xf4\x6b\xc2\x75\x62\xfe\xb4\xe1" + "\xa3\xf0\xff\xdd\x4e\x4b\x12\x75" + "\x53\x14\x73\x66\x8d\x88\xf6\x80" + "\xa0\x20\x35", + .klen = 27, + .iv = "\x26\xf2\x21\x8d\x50\x20\xda\xe2", + .assoc = "\x5b\x9e\x13\x67\x02\x5e\xef\xc1" + "\x6c\xf9\xd7\x1e\x52\x8f\x7a\x47" + "\xe9\xd4\xcf\x20\x14\x6e\xf0\x2d" + "\xd8\x9e\x2b\x56\x10\x23\x56\xe7", + .alen = 32, + .ilen = 0, + .result = "\x36\xea\x7a\x70\x08\xdc\x6a\xbc" + "\xad\x0c\x7a\x63\xf6\x61\xfd\x9b", + .rlen = 16, + }, { + .key = "\x56\xdf\x5c\x8f\x26\x3f\x0e\x42" + "\xef\x7a\xd3\xce\xfc\x84\x60\x62" + "\xca\xb4\x40\xaf\x5f\xc9\xc9\x01" + "\xd6\x3c\x8c", + .klen = 27, + .iv = "\x86\x84\xb6\xcd\xef\x09\x2e\x94", + .assoc = "\x02\x65\x78\x3c\xe9\x21\x30\x91" + "\xb1\xb9\xda\x76\x9a\x78\x6d\x95" + "\xf2\x88\x32\xa3\xf2\x50\xcb\x4c" + "\xe3\x00\x73\x69\x84\x69\x87\x79", + .alen = 32, + .input = "\x9f\xd2\x02\x4b\x52\x49\x31\x3c" + "\x43\x69\x3a\x2d\x8e\x70\xad\x7e" + "\xe0\xe5\x46\x09\x80\x89\x13\xb2" + "\x8c\x8b\xd9\x3f\x86\xfb\xb5\x6b", + .ilen = 32, + .result = "\x39\xdf\x7c\x3c\x5a\x29\xb9\x62" + "\x5d\x51\xc2\x16\xd8\xbd\x06\x9f" + "\x9b\x6a\x09\x70\xc1\x51\x83\xc2" + "\x66\x88\x1d\x4f\x9a\xda\xe0\x1e" + "\xc7\x79\x11\x58\xe5\x6b\x20\x40" + "\x7a\xea\x46\x42\x8b\xe4\x6f\xe1", + .rlen = 48, + }, { + .key = "\xe0\x8d\x99\x71\x60\xd7\x97\x1a" + "\xbd\x01\x99\xd5\x8a\xdf\x71\x3a" + "\xd3\xdf\x24\x4b\x5e\x3d\x4b\x4e" + "\x30\x7a\xb9\xd8\x53\x0a\x5e\x2b" + "\x1e\x29\x91", + .klen = 35, + .iv = "\xad\x8e\xc1\x53\x0a\xcf\x2d\xbe", + .assoc = "\x19\xb6\x1f\x57\xc4\xf3\xf0\x8b" + "\x78\x2b\x94\x02\x29\x0f\x42\x27" + "\x6b\x75\xcb\x98\x34\x08\x7e\x79" + "\xe4\x3e\x49\x0d\x84\x8b\x22\x87", + .alen = 32, + .input = "\xe1\xd9\xd8\x13\xeb\x3a\x75\x3f" + "\x9d\xbd\x5f\x66\xbe\xdc\xbb\x66" + "\xbf\x17\x99\x62\x4a\x39\x27\x1f" + "\x1d\xdc\x24\xae\x19\x2f\x98\x4c", + .ilen = 32, + .result = "\x19\xb8\x61\x33\x45\x2b\x43\x96" + "\x6f\x51\xd0\x20\x30\x7d\x9b\xc6" + "\x26\x3d\xf8\xc9\x65\x16\xa8\x9f" + "\xf0\x62\x17\x34\xf2\x1e\x8d\x75" + "\x4e\x13\xcc\xc0\xc3\x2a\x54\x2d", + .rlen = 40, + }, { + .key = "\x7c\xc8\x18\x3b\x8d\x99\xe0\x7c" + "\x45\x41\xb8\xbd\x5c\xa7\xc2\x32" + "\x8a\xb8\x02\x59\xa4\xfe\xa9\x2c" + "\x09\x75\x9a\x9b\x3c\x9b\x27\x39" + "\xf9\xd9\x4e", + .klen = 35, + .iv = "\x63\xb5\x3d\x9d\x43\xf6\x1e\x50", + .assoc = "\x57\xf5\x6b\x8b\x57\x5c\x3d\x3b" + "\x13\x02\x01\x0c\x83\x4c\x96\x35" + "\x8e\xd6\x39\xcf\x7d\x14\x9b\x94" + "\xb0\x39\x36\xe6\x8f\x57\xe0\x13", + .alen = 32, + .input = "\x3b\x6c\x29\x36\xb6\xef\x07\xa6" + "\x83\x72\x07\x4f\xcf\xfa\x66\x89" + "\x5f\xca\xb1\xba\xd5\x8f\x2c\x27" + "\x30\xdb\x75\x09\x93\xd4\x65\xe4", + .ilen = 32, + .result = "\xb0\x88\x5a\x33\xaa\xe5\xc7\x1d" + "\x85\x23\xc7\xc6\x2f\xf4\x1e\x3d" + "\xcc\x63\x44\x25\x07\x78\x4f\x9e" + "\x96\xb8\x88\xeb\xbc\x48\x1f\x06" + "\x39\xaf\x39\xac\xd8\x4a\x80\x39" + "\x7b\x72\x8a\xf7", + .rlen = 44, + }, { + .key = "\xab\xd0\xe9\x33\x07\x26\xe5\x83" + "\x8c\x76\x95\xd4\xb6\xdc\xf3\x46" + "\xf9\x8f\xad\xe3\x02\x13\x83\x77" + "\x3f\xb0\xf1\xa1\xa1\x22\x0f\x2b" + "\x24\xa7\x8b", + .klen = 35, + .iv = "\x07\xcb\xcc\x0e\xe6\x33\xbf\xf5", + .assoc = "\xd4\xdb\x30\x1d\x03\xfe\xfd\x5f" + "\x87\xd4\x8c\xb6\xb6\xf1\x7a\x5d" + "\xab\x90\x65\x8d\x8e\xca\x4d\x4f" + "\x16\x0c\x40\x90\x4b\xc7\x36\x73", + .alen = 32, + .input = "\xf5\xc6\x7d\x48\xc1\xb7\xe6\x92" + "\x97\x5a\xca\xc4\xa9\x6d\xf9\x3d" + "\x6c\xde\xbc\xf1\x90\xea\x6a\xb2" + "\x35\x86\x36\xaf\x5c\xfe\x4b\x3a", + .ilen = 32, + .result = "\x83\x6f\x40\x87\x72\xcf\xc1\x13" + "\xef\xbb\x80\x21\x04\x6c\x58\x09" + "\x07\x1b\xfc\xdf\xc0\x3f\x5b\xc7" + "\xe0\x79\xa8\x6e\x71\x7c\x3f\xcf" + "\x5c\xda\xb2\x33\xe5\x13\xe2\x0d" + "\x74\xd1\xef\xb5\x0f\x3a\xb5\xf8", + .rlen = 48, + }, +}; + +static struct aead_testvec aes_ccm_rfc4309_dec_tv_template[] = { + { + .key = "\xab\x2f\x8a\x74\xb7\x1c\xd2\xb1" + "\xff\x80\x2e\x48\x7d\x82\xf8\xb9" + "\xc6\xfb\x7d", + .klen = 19, + .iv = "\x80\x0d\x13\xab\xd8\xa6\xb2\xd8", + .alen = 0, + .input = "\xd5\xe8\x93\x9f\xc7\x89\x2e\x2b", + .ilen = 8, + .result = "\x00", + .rlen = 0, + .novrfy = 1, + }, { + .key = "\xab\x2f\x8a\x74\xb7\x1c\xd2\xb1" + "\xff\x80\x2e\x48\x7d\x82\xf8\xb9" + "\xaf\x94\x87", + .klen = 19, + .iv = "\x78\x35\x82\x81\x7f\x88\x94\x68", + .alen = 0, + .input = "\x41\x3c\xb8\x87\x73\xcb\xf3\xf3", + .ilen = 8, + .result = "\x00", + .rlen = 0, + }, { + .key = "\x61\x0e\x8c\xae\xe3\x23\xb6\x38" + "\x76\x1c\xf6\x3a\x67\xa3\x9c\xd8" + "\xc6\xfb\x7d", + .klen = 19, + .iv = "\x80\x0d\x13\xab\xd8\xa6\xb2\xd8", + .assoc = "\xf3\x94\x87\x78\x35\x82\x81\x7f" + "\x88\x94\x68\xb1\x78\x6b\x2b\xd6" + "\x04\x1f\x4e\xed\x78\xd5\x33\x66" + "\xd8\x94\x99\x91\x81\x54\x62\x57", + .alen = 32, + .input = "\xf0\x7c\x29\x02\xae\x1c\x2f\x55" + "\xd0\xd1\x3d\x1a\xa3\x6d\xe4\x0a" + "\x86\xb0\x87\x6b\x62\x33\x8c\x34" + "\xce\xab\x57\xcc\x79\x0b\xe0\x6f" + "\x5c\x3e\x48\x1f\x6c\x46\xf7\x51" + "\x8b\x84\x83\x2a\xc1\x05\xb8\xc5", + .ilen = 48, + .result = "\x50\x82\x3e\x07\xe2\x1e\xb6\xfb" + "\x33\xe4\x73\xce\xd2\xfb\x95\x79" + "\xe8\xb4\xb5\x77\x11\x10\x62\x6f" + "\x6a\x82\xd1\x13\xec\xf5\xd0\x48", + .rlen = 32, + .novrfy = 1, + }, { + .key = "\x61\x0e\x8c\xae\xe3\x23\xb6\x38" + "\x76\x1c\xf6\x3a\x67\xa3\x9c\xd8" + "\x05\xe0\xc9", + .klen = 19, + .iv = "\x0f\xed\x34\xea\x97\xd4\x3b\xdf", + .assoc = "\x49\x5c\x50\x1f\x1d\x94\xcc\x81" + "\xba\xb7\xb6\x03\xaf\xa5\xc1\xa1" + "\xd8\x5c\x42\x68\xe0\x6c\xda\x89" + "\x05\xac\x56\xac\x1b\x2a\xd3\x86", + .alen = 32, + .input = "\x39\xbe\x7d\x15\x62\x77\xf3\x3c" + "\xad\x83\x52\x6d\x71\x03\x25\x1c" + "\xed\x81\x3a\x9a\x16\x7d\x19\x80" + "\x72\x04\x72\xd0\xf6\xff\x05\x0f" + "\xb7\x14\x30\x00\x32\x9e\xa0\xa6" + "\x9e\x5a\x18\xa1\xb8\xfe\xdb\xd3", + .ilen = 48, + .result = "\x75\x05\xbe\xc2\xd9\x1e\xde\x60" + "\x47\x3d\x8c\x7d\xbd\xb5\xd9\xb7" + "\xf2\xae\x61\x05\x8f\x82\x24\x3f" + "\x9c\x67\x91\xe1\x38\x4f\xe4\x0c", + .rlen = 32, + }, { + .key = "\x39\xbb\xa7\xbe\x59\x97\x9e\x73" + "\xa2\xbc\x6b\x98\xd7\x75\x7f\xe3" + "\xa4\x48\x93\x39\x26\x71\x4a\xc6" + "\xee\x49\x83", + .klen = 27, + .iv = "\xe9\xa9\xff\xe9\x57\xba\xfd\x9e", + .assoc = "\x44\xa6\x2c\x05\xe9\xe1\x43\xb1" + "\x58\x7c\xf2\x5c\x6d\x39\x0a\x64" + "\xa4\xf0\x13\x05\xd1\x77\x99\x67" + "\x11\xc4\xc6\xdb\x00\x56\x36\x61", + .alen = 32, + .input = "\x71\x99\xfa\xf4\x44\x12\x68\x9b", + .ilen = 8, + .result = "\x00", + .rlen = 0, + }, { + .key = "\x58\x5d\xa0\x96\x65\x1a\x04\xd7" + "\x96\xe5\xc5\x68\xaa\x95\x35\xe0" + "\x29\xa0\xba\x9e\x48\x78\xd1\xba" + "\xee\x49\x83", + .klen = 27, + .iv = "\xe9\xa9\xff\xe9\x57\xba\xfd\x9e", + .assoc = "\x44\xa6\x2c\x05\xe9\xe1\x43\xb1" + "\x58\x7c\xf2\x5c\x6d\x39\x0a\x64" + "\xa4\xf0\x13\x05\xd1\x77\x99\x67" + "\x11\xc4\xc6\xdb\x00\x56\x36\x61", + .alen = 32, + .input = "\xfb\xe5\x5d\x34\xbe\xe5\xe8\xe7" + "\x5a\xef\x2f\xbf\x1f\x7f\xd4\xb2" + "\x66\xca\x61\x1e\x96\x7a\x61\xb3" + "\x1c\x16\x45\x52\xba\x04\x9c\x9f" + "\xb1\xd2\x40\xbc\x52\x7c\x6f\xb1", + .ilen = 40, + .result = "\x85\x34\x66\x42\xc8\x92\x0f\x36" + "\x58\xe0\x6b\x91\x3c\x98\x5c\xbb" + "\x0a\x85\xcc\x02\xad\x7a\x96\xe9" + "\x65\x43\xa4\xc3\x0f\xdc\x55\x81", + .rlen = 32, + }, { + .key = "\x58\x5d\xa0\x96\x65\x1a\x04\xd7" + "\x96\xe5\xc5\x68\xaa\x95\x35\xe0" + "\x29\xa0\xba\x9e\x48\x78\xd1\xba" + "\xd1\xfc\x57", + .klen = 27, + .iv = "\x9c\xfe\xb8\x9c\xad\x71\xaa\x1f", + .assoc = "\x86\x67\xa5\xa9\x14\x5f\x0d\xc6" + "\xff\x14\xc7\x44\xbf\x6c\x3a\xc3" + "\xff\xb6\x81\xbd\xe2\xd5\x06\xc7" + "\x3c\xa1\x52\x13\x03\x8a\x23\x3a", + .alen = 32, + .input = "\x3f\x66\xb0\x9d\xe5\x4b\x38\x00" + "\xc6\x0e\x6e\xe5\xd6\x98\xa6\x37" + "\x8c\x26\x33\xc6\xb2\xa2\x17\xfa" + "\x64\x19\xc0\x30\xd7\xfc\x14\x6b" + "\xe3\x33\xc2\x04\xb0\x37\xbe\x3f" + "\xa9\xb4\x2d\x68\x03\xa3\x44\xef", + .ilen = 48, + .result = "\x02\x87\x4d\x28\x80\x6e\xb2\xed" + "\x99\x2a\xa8\xca\x04\x25\x45\x90" + "\x1d\xdd\x5a\xd9\xe4\xdb\x9c\x9c" + "\x49\xe9\x01\xfe\xa7\x80\x6d\x6b", + .rlen = 32, + .novrfy = 1, + }, { + .key = "\xa4\x4b\x54\x29\x0a\xb8\x6d\x01" + "\x5b\x80\x2a\xcf\x25\xc4\xb7\x5c" + "\x20\x2c\xad\x30\xc2\x2b\x41\xfb" + "\x0e\x85\xbc\x33\xad\x0f\x2b\xff" + "\xee\x49\x83", + .klen = 35, + .iv = "\xe9\xa9\xff\xe9\x57\xba\xfd\x9e", + .alen = 0, + .input = "\x1f\xb8\x8f\xa3\xdd\x54\x00\xf2", + .ilen = 8, + .result = "\x00", + .rlen = 0, + }, { + .key = "\x39\xbb\xa7\xbe\x59\x97\x9e\x73" + "\xa2\xbc\x6b\x98\xd7\x75\x7f\xe3" + "\xa4\x48\x93\x39\x26\x71\x4a\xc6" + "\xae\x8f\x11\x4c\xc2\x9c\x4a\xbb" + "\x85\x34\x66", + .klen = 35, + .iv = "\x42\xc8\x92\x0f\x36\x58\xe0\x6b", + .alen = 0, + .input = "\x48\x01\x5e\x02\x24\x04\x66\x47" + "\xa1\xea\x6f\xaf\xe8\xfc\xfb\xdd" + "\xa5\xa9\x87\x8d\x84\xee\x2e\x77" + "\xbb\x86\xb9\xf5\x5c\x6c\xff\xf6" + "\x72\xc3\x8e\xf7\x70\xb1\xb2\x07" + "\xbc\xa8\xa3\xbd\x83\x7c\x1d\x2a", + .ilen = 48, + .result = "\xdc\x56\xf2\x71\xb0\xb1\xa0\x6c" + "\xf0\x97\x3a\xfb\x6d\xe7\x32\x99" + "\x3e\xaf\x70\x5e\xb2\x4d\xea\x39" + "\x89\xd4\x75\x7a\x63\xb1\xda\x93", + .rlen = 32, + .novrfy = 1, + }, { + .key = "\x58\x5d\xa0\x96\x65\x1a\x04\xd7" + "\x96\xe5\xc5\x68\xaa\x95\x35\xe0" + "\x29\xa0\xba\x9e\x48\x78\xd1\xba" + "\x0d\x1a\x53\x3b\xb5\xe3\xf8\x8b" + "\xcf\x76\x3f", + .klen = 35, + .iv = "\xd9\x95\x75\x8f\x44\x89\x40\x7b", + .assoc = "\x8f\x86\x6c\x4d\x1d\xc5\x39\x88" + "\xc8\xf3\x5c\x52\x10\x63\x6f\x2b" + "\x8a\x2a\xc5\x6f\x30\x23\x58\x7b" + "\xfb\x36\x03\x11\xb4\xd9\xf2\xfe", + .alen = 32, + .input = "\x48\x58\xd6\xf3\xad\x63\x58\xbf" + "\xae\xc7\x5e\xae\x83\x8f\x7b\xe4" + "\x78\x5c\x4c\x67\x71\x89\x94\xbf" + "\x47\xf1\x63\x7e\x1c\x59\xbd\xc5" + "\x7f\x44\x0a\x0c\x01\x18\x07\x92" + "\xe1\xd3\x51\xce\x32\x6d\x0c\x5b", + .ilen = 48, + .result = "\xc2\x54\xc8\xde\x78\x87\x77\x40" + "\x49\x71\xe4\xb7\xe7\xcb\x76\x61" + "\x0a\x41\xb9\xe9\xc0\x76\x54\xab" + "\x04\x49\x3b\x19\x93\x57\x25\x5d", + .rlen = 32, + }, +}; + +/* + * ANSI X9.31 Continuous Pseudo-Random Number Generator ( + * test vectors, taken from Appendix B.2.9 and B.2.10: + * http://csrc.nist.gov/groups/STM/cavp/documents/rng/RNGVS.pdf + * Only AES-128 is supported at this time. + */ +#define ANSI_CPRNG_AES_TEST_VECTORS 6 + +static struct cprng_testvec ansi_cprng_aes_tv_template[] = { + { + .key = "\xf3\xb1\x66\x6d\x13\x60\x72\x42" + "\xed\x06\x1c\xab\xb8\xd4\x62\x02", + .klen = 16, + .dt = "\xe6\xb3\xbe\x78\x2a\x23\xfa\x62" + "\xd7\x1d\x4a\xfb\xb0\xe9\x22\xf9", + .dtlen = 16, + .v = "\x80\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x00", + .vlen = 16, + .result = "\x59\x53\x1e\xd1\x3b\xb0\xc0\x55" + "\x84\x79\x66\x85\xc1\x2f\x76\x41", + .rlen = 16, + .loops = 1, + }, { + .key = "\xf3\xb1\x66\x6d\x13\x60\x72\x42" + "\xed\x06\x1c\xab\xb8\xd4\x62\x02", + .klen = 16, + .dt = "\xe6\xb3\xbe\x78\x2a\x23\xfa\x62" + "\xd7\x1d\x4a\xfb\xb0\xe9\x22\xfa", + .dtlen = 16, + .v = "\xc0\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x00", + .vlen = 16, + .result = "\x7c\x22\x2c\xf4\xca\x8f\xa2\x4c" + "\x1c\x9c\xb6\x41\xa9\xf3\x22\x0d", + .rlen = 16, + .loops = 1, + }, { + .key = "\xf3\xb1\x66\x6d\x13\x60\x72\x42" + "\xed\x06\x1c\xab\xb8\xd4\x62\x02", + .klen = 16, + .dt = "\xe6\xb3\xbe\x78\x2a\x23\xfa\x62" + "\xd7\x1d\x4a\xfb\xb0\xe9\x22\xfb", + .dtlen = 16, + .v = "\xe0\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x00", + .vlen = 16, + .result = "\x8a\xaa\x00\x39\x66\x67\x5b\xe5" + "\x29\x14\x28\x81\xa9\x4d\x4e\xc7", + .rlen = 16, + .loops = 1, + }, { + .key = "\xf3\xb1\x66\x6d\x13\x60\x72\x42" + "\xed\x06\x1c\xab\xb8\xd4\x62\x02", + .klen = 16, + .dt = "\xe6\xb3\xbe\x78\x2a\x23\xfa\x62" + "\xd7\x1d\x4a\xfb\xb0\xe9\x22\xfc", + .dtlen = 16, + .v = "\xf0\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x00", + .vlen = 16, + .result = "\x88\xdd\xa4\x56\x30\x24\x23\xe5" + "\xf6\x9d\xa5\x7e\x7b\x95\xc7\x3a", + .rlen = 16, + .loops = 1, + }, { + .key = "\xf3\xb1\x66\x6d\x13\x60\x72\x42" + "\xed\x06\x1c\xab\xb8\xd4\x62\x02", + .klen = 16, + .dt = "\xe6\xb3\xbe\x78\x2a\x23\xfa\x62" + "\xd7\x1d\x4a\xfb\xb0\xe9\x22\xfd", + .dtlen = 16, + .v = "\xf8\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x00", + .vlen = 16, + .result = "\x05\x25\x92\x46\x61\x79\xd2\xcb" + "\x78\xc4\x0b\x14\x0a\x5a\x9a\xc8", + .rlen = 16, + .loops = 1, + }, { /* Monte Carlo Test */ + .key = "\x9f\x5b\x51\x20\x0b\xf3\x34\xb5" + "\xd8\x2b\xe8\xc3\x72\x55\xc8\x48", + .klen = 16, + .dt = "\x63\x76\xbb\xe5\x29\x02\xba\x3b" + "\x67\xc9\x25\xfa\x70\x1f\x11\xac", + .dtlen = 16, + .v = "\x57\x2c\x8e\x76\x87\x26\x47\x97" + "\x7e\x74\xfb\xdd\xc4\x95\x01\xd1", + .vlen = 16, + .result = "\x48\xe9\xbd\x0d\x06\xee\x18\xfb" + "\xe4\x57\x90\xd5\xc3\xfc\x9b\x73", + .rlen = 16, + .loops = 10000, + }, +}; + +/* Cast5 test vectors from RFC 2144 */ +#define CAST5_ENC_TEST_VECTORS 3 +#define CAST5_DEC_TEST_VECTORS 3 + +static struct cipher_testvec cast5_enc_tv_template[] = { + { + .key = "\x01\x23\x45\x67\x12\x34\x56\x78" + "\x23\x45\x67\x89\x34\x56\x78\x9a", + .klen = 16, + .input = "\x01\x23\x45\x67\x89\xab\xcd\xef", + .ilen = 8, + .result = "\x23\x8b\x4f\xe5\x84\x7e\x44\xb2", + .rlen = 8, + }, { + .key = "\x01\x23\x45\x67\x12\x34\x56\x78" + "\x23\x45", + .klen = 10, + .input = "\x01\x23\x45\x67\x89\xab\xcd\xef", + .ilen = 8, + .result = "\xeb\x6a\x71\x1a\x2c\x02\x27\x1b", + .rlen = 8, + }, { + .key = "\x01\x23\x45\x67\x12", + .klen = 5, + .input = "\x01\x23\x45\x67\x89\xab\xcd\xef", + .ilen = 8, + .result = "\x7a\xc8\x16\xd1\x6e\x9b\x30\x2e", + .rlen = 8, + }, +}; + +static struct cipher_testvec cast5_dec_tv_template[] = { + { + .key = "\x01\x23\x45\x67\x12\x34\x56\x78" + "\x23\x45\x67\x89\x34\x56\x78\x9a", + .klen = 16, + .input = "\x23\x8b\x4f\xe5\x84\x7e\x44\xb2", + .ilen = 8, + .result = "\x01\x23\x45\x67\x89\xab\xcd\xef", + .rlen = 8, + }, { + .key = "\x01\x23\x45\x67\x12\x34\x56\x78" + "\x23\x45", + .klen = 10, + .input = "\xeb\x6a\x71\x1a\x2c\x02\x27\x1b", + .ilen = 8, + .result = "\x01\x23\x45\x67\x89\xab\xcd\xef", + .rlen = 8, + }, { + .key = "\x01\x23\x45\x67\x12", + .klen = 5, + .input = "\x7a\xc8\x16\xd1\x6e\x9b\x30\x2e", + .ilen = 8, + .result = "\x01\x23\x45\x67\x89\xab\xcd\xef", + .rlen = 8, + }, +}; + +/* + * ARC4 test vectors from OpenSSL + */ +#define ARC4_ENC_TEST_VECTORS 7 +#define ARC4_DEC_TEST_VECTORS 7 + +static struct cipher_testvec arc4_enc_tv_template[] = { + { + .key = "\x01\x23\x45\x67\x89\xab\xcd\xef", + .klen = 8, + .input = "\x01\x23\x45\x67\x89\xab\xcd\xef", + .ilen = 8, + .result = "\x75\xb7\x87\x80\x99\xe0\xc5\x96", + .rlen = 8, + }, { + .key = "\x01\x23\x45\x67\x89\xab\xcd\xef", + .klen = 8, + .input = "\x00\x00\x00\x00\x00\x00\x00\x00", + .ilen = 8, + .result = "\x74\x94\xc2\xe7\x10\x4b\x08\x79", + .rlen = 8, + }, { + .key = "\x00\x00\x00\x00\x00\x00\x00\x00", + .klen = 8, + .input = "\x00\x00\x00\x00\x00\x00\x00\x00", + .ilen = 8, + .result = "\xde\x18\x89\x41\xa3\x37\x5d\x3a", + .rlen = 8, + }, { + .key = "\xef\x01\x23\x45", + .klen = 4, + .input = "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00", + .ilen = 20, + .result = "\xd6\xa1\x41\xa7\xec\x3c\x38\xdf" + "\xbd\x61\x5a\x11\x62\xe1\xc7\xba" + "\x36\xb6\x78\x58", + .rlen = 20, + }, { + .key = "\x01\x23\x45\x67\x89\xab\xcd\xef", + .klen = 8, + .input = "\x12\x34\x56\x78\x9A\xBC\xDE\xF0" + "\x12\x34\x56\x78\x9A\xBC\xDE\xF0" + "\x12\x34\x56\x78\x9A\xBC\xDE\xF0" + "\x12\x34\x56\x78", + .ilen = 28, + .result = "\x66\xa0\x94\x9f\x8a\xf7\xd6\x89" + "\x1f\x7f\x83\x2b\xa8\x33\xc0\x0c" + "\x89\x2e\xbe\x30\x14\x3c\xe2\x87" + "\x40\x01\x1e\xcf", + .rlen = 28, + }, { + .key = "\xef\x01\x23\x45", + .klen = 4, + .input = "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00", + .ilen = 10, + .result = "\xd6\xa1\x41\xa7\xec\x3c\x38\xdf" + "\xbd\x61", + .rlen = 10, + }, { + .key = "\x01\x23\x45\x67\x89\xAB\xCD\xEF" + "\x00\x00\x00\x00\x00\x00\x00\x00", + .klen = 16, + .input = "\x01\x23\x45\x67\x89\xAB\xCD\xEF", + .ilen = 8, + .result = "\x69\x72\x36\x59\x1B\x52\x42\xB1", + .rlen = 8, + }, +}; + +static struct cipher_testvec arc4_dec_tv_template[] = { + { + .key = "\x01\x23\x45\x67\x89\xab\xcd\xef", + .klen = 8, + .input = "\x75\xb7\x87\x80\x99\xe0\xc5\x96", + .ilen = 8, + .result = "\x01\x23\x45\x67\x89\xab\xcd\xef", + .rlen = 8, + }, { + .key = "\x01\x23\x45\x67\x89\xab\xcd\xef", + .klen = 8, + .input = "\x74\x94\xc2\xe7\x10\x4b\x08\x79", + .ilen = 8, + .result = "\x00\x00\x00\x00\x00\x00\x00\x00", + .rlen = 8, + }, { + .key = "\x00\x00\x00\x00\x00\x00\x00\x00", + .klen = 8, + .input = "\xde\x18\x89\x41\xa3\x37\x5d\x3a", + .ilen = 8, + .result = "\x00\x00\x00\x00\x00\x00\x00\x00", + .rlen = 8, + }, { + .key = "\xef\x01\x23\x45", + .klen = 4, + .input = "\xd6\xa1\x41\xa7\xec\x3c\x38\xdf" + "\xbd\x61\x5a\x11\x62\xe1\xc7\xba" + "\x36\xb6\x78\x58", + .ilen = 20, + .result = "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00", + .rlen = 20, + }, { + .key = "\x01\x23\x45\x67\x89\xab\xcd\xef", + .klen = 8, + .input = "\x66\xa0\x94\x9f\x8a\xf7\xd6\x89" + "\x1f\x7f\x83\x2b\xa8\x33\xc0\x0c" + "\x89\x2e\xbe\x30\x14\x3c\xe2\x87" + "\x40\x01\x1e\xcf", + .ilen = 28, + .result = "\x12\x34\x56\x78\x9A\xBC\xDE\xF0" + "\x12\x34\x56\x78\x9A\xBC\xDE\xF0" + "\x12\x34\x56\x78\x9A\xBC\xDE\xF0" + "\x12\x34\x56\x78", + .rlen = 28, + }, { + .key = "\xef\x01\x23\x45", + .klen = 4, + .input = "\xd6\xa1\x41\xa7\xec\x3c\x38\xdf" + "\xbd\x61", + .ilen = 10, + .result = "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00", + .rlen = 10, + }, { + .key = "\x01\x23\x45\x67\x89\xAB\xCD\xEF" + "\x00\x00\x00\x00\x00\x00\x00\x00", + .klen = 16, + .input = "\x69\x72\x36\x59\x1B\x52\x42\xB1", + .ilen = 8, + .result = "\x01\x23\x45\x67\x89\xAB\xCD\xEF", + .rlen = 8, + }, +}; + +/* + * TEA test vectors + */ +#define TEA_ENC_TEST_VECTORS 4 +#define TEA_DEC_TEST_VECTORS 4 + +static struct cipher_testvec tea_enc_tv_template[] = { + { + .key = zeroed_string, + .klen = 16, + .input = zeroed_string, + .ilen = 8, + .result = "\x0a\x3a\xea\x41\x40\xa9\xba\x94", + .rlen = 8, + }, { + .key = "\x2b\x02\x05\x68\x06\x14\x49\x76" + "\x77\x5d\x0e\x26\x6c\x28\x78\x43", + .klen = 16, + .input = "\x74\x65\x73\x74\x20\x6d\x65\x2e", + .ilen = 8, + .result = "\x77\x5d\x2a\x6a\xf6\xce\x92\x09", + .rlen = 8, + }, { + .key = "\x09\x65\x43\x11\x66\x44\x39\x25" + "\x51\x3a\x16\x10\x0a\x08\x12\x6e", + .klen = 16, + .input = "\x6c\x6f\x6e\x67\x65\x72\x5f\x74" + "\x65\x73\x74\x5f\x76\x65\x63\x74", + .ilen = 16, + .result = "\xbe\x7a\xbb\x81\x95\x2d\x1f\x1e" + "\xdd\x89\xa1\x25\x04\x21\xdf\x95", + .rlen = 16, + }, { + .key = "\x4d\x76\x32\x17\x05\x3f\x75\x2c" + "\x5d\x04\x16\x36\x15\x72\x63\x2f", + .klen = 16, + .input = "\x54\x65\x61\x20\x69\x73\x20\x67" + "\x6f\x6f\x64\x20\x66\x6f\x72\x20" + "\x79\x6f\x75\x21\x21\x21\x20\x72" + "\x65\x61\x6c\x6c\x79\x21\x21\x21", + .ilen = 32, + .result = "\xe0\x4d\x5d\x3c\xb7\x8c\x36\x47" + "\x94\x18\x95\x91\xa9\xfc\x49\xf8" + "\x44\xd1\x2d\xc2\x99\xb8\x08\x2a" + "\x07\x89\x73\xc2\x45\x92\xc6\x90", + .rlen = 32, + } +}; + +static struct cipher_testvec tea_dec_tv_template[] = { + { + .key = zeroed_string, + .klen = 16, + .input = "\x0a\x3a\xea\x41\x40\xa9\xba\x94", + .ilen = 8, + .result = zeroed_string, + .rlen = 8, + }, { + .key = "\x2b\x02\x05\x68\x06\x14\x49\x76" + "\x77\x5d\x0e\x26\x6c\x28\x78\x43", + .klen = 16, + .input = "\x77\x5d\x2a\x6a\xf6\xce\x92\x09", + .ilen = 8, + .result = "\x74\x65\x73\x74\x20\x6d\x65\x2e", + .rlen = 8, + }, { + .key = "\x09\x65\x43\x11\x66\x44\x39\x25" + "\x51\x3a\x16\x10\x0a\x08\x12\x6e", + .klen = 16, + .input = "\xbe\x7a\xbb\x81\x95\x2d\x1f\x1e" + "\xdd\x89\xa1\x25\x04\x21\xdf\x95", + .ilen = 16, + .result = "\x6c\x6f\x6e\x67\x65\x72\x5f\x74" + "\x65\x73\x74\x5f\x76\x65\x63\x74", + .rlen = 16, + }, { + .key = "\x4d\x76\x32\x17\x05\x3f\x75\x2c" + "\x5d\x04\x16\x36\x15\x72\x63\x2f", + .klen = 16, + .input = "\xe0\x4d\x5d\x3c\xb7\x8c\x36\x47" + "\x94\x18\x95\x91\xa9\xfc\x49\xf8" + "\x44\xd1\x2d\xc2\x99\xb8\x08\x2a" + "\x07\x89\x73\xc2\x45\x92\xc6\x90", + .ilen = 32, + .result = "\x54\x65\x61\x20\x69\x73\x20\x67" + "\x6f\x6f\x64\x20\x66\x6f\x72\x20" + "\x79\x6f\x75\x21\x21\x21\x20\x72" + "\x65\x61\x6c\x6c\x79\x21\x21\x21", + .rlen = 32, + } +}; + +/* + * XTEA test vectors + */ +#define XTEA_ENC_TEST_VECTORS 4 +#define XTEA_DEC_TEST_VECTORS 4 + +static struct cipher_testvec xtea_enc_tv_template[] = { + { + .key = zeroed_string, + .klen = 16, + .input = zeroed_string, + .ilen = 8, + .result = "\xd8\xd4\xe9\xde\xd9\x1e\x13\xf7", + .rlen = 8, + }, { + .key = "\x2b\x02\x05\x68\x06\x14\x49\x76" + "\x77\x5d\x0e\x26\x6c\x28\x78\x43", + .klen = 16, + .input = "\x74\x65\x73\x74\x20\x6d\x65\x2e", + .ilen = 8, + .result = "\x94\xeb\xc8\x96\x84\x6a\x49\xa8", + .rlen = 8, + }, { + .key = "\x09\x65\x43\x11\x66\x44\x39\x25" + "\x51\x3a\x16\x10\x0a\x08\x12\x6e", + .klen = 16, + .input = "\x6c\x6f\x6e\x67\x65\x72\x5f\x74" + "\x65\x73\x74\x5f\x76\x65\x63\x74", + .ilen = 16, + .result = "\x3e\xce\xae\x22\x60\x56\xa8\x9d" + "\x77\x4d\xd4\xb4\x87\x24\xe3\x9a", + .rlen = 16, + }, { + .key = "\x4d\x76\x32\x17\x05\x3f\x75\x2c" + "\x5d\x04\x16\x36\x15\x72\x63\x2f", + .klen = 16, + .input = "\x54\x65\x61\x20\x69\x73\x20\x67" + "\x6f\x6f\x64\x20\x66\x6f\x72\x20" + "\x79\x6f\x75\x21\x21\x21\x20\x72" + "\x65\x61\x6c\x6c\x79\x21\x21\x21", + .ilen = 32, + .result = "\x99\x81\x9f\x5d\x6f\x4b\x31\x3a" + "\x86\xff\x6f\xd0\xe3\x87\x70\x07" + "\x4d\xb8\xcf\xf3\x99\x50\xb3\xd4" + "\x73\xa2\xfa\xc9\x16\x59\x5d\x81", + .rlen = 32, + } +}; + +static struct cipher_testvec xtea_dec_tv_template[] = { + { + .key = zeroed_string, + .klen = 16, + .input = "\xd8\xd4\xe9\xde\xd9\x1e\x13\xf7", + .ilen = 8, + .result = zeroed_string, + .rlen = 8, + }, { + .key = "\x2b\x02\x05\x68\x06\x14\x49\x76" + "\x77\x5d\x0e\x26\x6c\x28\x78\x43", + .klen = 16, + .input = "\x94\xeb\xc8\x96\x84\x6a\x49\xa8", + .ilen = 8, + .result = "\x74\x65\x73\x74\x20\x6d\x65\x2e", + .rlen = 8, + }, { + .key = "\x09\x65\x43\x11\x66\x44\x39\x25" + "\x51\x3a\x16\x10\x0a\x08\x12\x6e", + .klen = 16, + .input = "\x3e\xce\xae\x22\x60\x56\xa8\x9d" + "\x77\x4d\xd4\xb4\x87\x24\xe3\x9a", + .ilen = 16, + .result = "\x6c\x6f\x6e\x67\x65\x72\x5f\x74" + "\x65\x73\x74\x5f\x76\x65\x63\x74", + .rlen = 16, + }, { + .key = "\x4d\x76\x32\x17\x05\x3f\x75\x2c" + "\x5d\x04\x16\x36\x15\x72\x63\x2f", + .klen = 16, + .input = "\x99\x81\x9f\x5d\x6f\x4b\x31\x3a" + "\x86\xff\x6f\xd0\xe3\x87\x70\x07" + "\x4d\xb8\xcf\xf3\x99\x50\xb3\xd4" + "\x73\xa2\xfa\xc9\x16\x59\x5d\x81", + .ilen = 32, + .result = "\x54\x65\x61\x20\x69\x73\x20\x67" + "\x6f\x6f\x64\x20\x66\x6f\x72\x20" + "\x79\x6f\x75\x21\x21\x21\x20\x72" + "\x65\x61\x6c\x6c\x79\x21\x21\x21", + .rlen = 32, + } +}; + +/* + * KHAZAD test vectors. + */ +#define KHAZAD_ENC_TEST_VECTORS 5 +#define KHAZAD_DEC_TEST_VECTORS 5 + +static struct cipher_testvec khazad_enc_tv_template[] = { + { + .key = "\x80\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x00", + .klen = 16, + .input = "\x00\x00\x00\x00\x00\x00\x00\x00", + .ilen = 8, + .result = "\x49\xa4\xce\x32\xac\x19\x0e\x3f", + .rlen = 8, + }, { + .key = "\x38\x38\x38\x38\x38\x38\x38\x38" + "\x38\x38\x38\x38\x38\x38\x38\x38", + .klen = 16, + .input = "\x38\x38\x38\x38\x38\x38\x38\x38", + .ilen = 8, + .result = "\x7e\x82\x12\xa1\xd9\x5b\xe4\xf9", + .rlen = 8, + }, { + .key = "\xa2\xa2\xa2\xa2\xa2\xa2\xa2\xa2" + "\xa2\xa2\xa2\xa2\xa2\xa2\xa2\xa2", + .klen = 16, + .input = "\xa2\xa2\xa2\xa2\xa2\xa2\xa2\xa2", + .ilen = 8, + .result = "\xaa\xbe\xc1\x95\xc5\x94\x1a\x9c", + .rlen = 8, + }, { + .key = "\x2f\x2f\x2f\x2f\x2f\x2f\x2f\x2f" + "\x2f\x2f\x2f\x2f\x2f\x2f\x2f\x2f", + .klen = 16, + .input = "\x2f\x2f\x2f\x2f\x2f\x2f\x2f\x2f", + .ilen = 8, + .result = "\x04\x74\xf5\x70\x50\x16\xd3\xb8", + .rlen = 8, + }, { + .key = "\x2f\x2f\x2f\x2f\x2f\x2f\x2f\x2f" + "\x2f\x2f\x2f\x2f\x2f\x2f\x2f\x2f", + .klen = 16, + .input = "\x2f\x2f\x2f\x2f\x2f\x2f\x2f\x2f" + "\x2f\x2f\x2f\x2f\x2f\x2f\x2f\x2f", + .ilen = 16, + .result = "\x04\x74\xf5\x70\x50\x16\xd3\xb8" + "\x04\x74\xf5\x70\x50\x16\xd3\xb8", + .rlen = 16, + }, +}; + +static struct cipher_testvec khazad_dec_tv_template[] = { + { + .key = "\x80\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x00", + .klen = 16, + .input = "\x49\xa4\xce\x32\xac\x19\x0e\x3f", + .ilen = 8, + .result = "\x00\x00\x00\x00\x00\x00\x00\x00", + .rlen = 8, + }, { + .key = "\x38\x38\x38\x38\x38\x38\x38\x38" + "\x38\x38\x38\x38\x38\x38\x38\x38", + .klen = 16, + .input = "\x7e\x82\x12\xa1\xd9\x5b\xe4\xf9", + .ilen = 8, + .result = "\x38\x38\x38\x38\x38\x38\x38\x38", + .rlen = 8, + }, { + .key = "\xa2\xa2\xa2\xa2\xa2\xa2\xa2\xa2" + "\xa2\xa2\xa2\xa2\xa2\xa2\xa2\xa2", + .klen = 16, + .input = "\xaa\xbe\xc1\x95\xc5\x94\x1a\x9c", + .ilen = 8, + .result = "\xa2\xa2\xa2\xa2\xa2\xa2\xa2\xa2", + .rlen = 8, + }, { + .key = "\x2f\x2f\x2f\x2f\x2f\x2f\x2f\x2f" + "\x2f\x2f\x2f\x2f\x2f\x2f\x2f\x2f", + .klen = 16, + .input = "\x04\x74\xf5\x70\x50\x16\xd3\xb8", + .ilen = 8, + .result = "\x2f\x2f\x2f\x2f\x2f\x2f\x2f\x2f", + .rlen = 8, + }, { + .key = "\x2f\x2f\x2f\x2f\x2f\x2f\x2f\x2f" + "\x2f\x2f\x2f\x2f\x2f\x2f\x2f\x2f", + .klen = 16, + .input = "\x04\x74\xf5\x70\x50\x16\xd3\xb8" + "\x04\x74\xf5\x70\x50\x16\xd3\xb8", + .ilen = 16, + .result = "\x2f\x2f\x2f\x2f\x2f\x2f\x2f\x2f" + "\x2f\x2f\x2f\x2f\x2f\x2f\x2f\x2f", + .rlen = 16, + }, +}; + +/* + * Anubis test vectors. + */ + +#define ANUBIS_ENC_TEST_VECTORS 5 +#define ANUBIS_DEC_TEST_VECTORS 5 +#define ANUBIS_CBC_ENC_TEST_VECTORS 2 +#define ANUBIS_CBC_DEC_TEST_VECTORS 2 + +static struct cipher_testvec anubis_enc_tv_template[] = { + { + .key = "\xfe\xfe\xfe\xfe\xfe\xfe\xfe\xfe" + "\xfe\xfe\xfe\xfe\xfe\xfe\xfe\xfe", + .klen = 16, + .input = "\xfe\xfe\xfe\xfe\xfe\xfe\xfe\xfe" + "\xfe\xfe\xfe\xfe\xfe\xfe\xfe\xfe", + .ilen = 16, + .result = "\x6d\xc5\xda\xa2\x26\x7d\x62\x6f" + "\x08\xb7\x52\x8e\x6e\x6e\x86\x90", + .rlen = 16, + }, { + + .key = "\x03\x03\x03\x03\x03\x03\x03\x03" + "\x03\x03\x03\x03\x03\x03\x03\x03" + "\x03\x03\x03\x03", + .klen = 20, + .input = "\x03\x03\x03\x03\x03\x03\x03\x03" + "\x03\x03\x03\x03\x03\x03\x03\x03", + .ilen = 16, + .result = "\xdb\xf1\x42\xf4\xd1\x8a\xc7\x49" + "\x87\x41\x6f\x82\x0a\x98\x64\xae", + .rlen = 16, + }, { + .key = "\x24\x24\x24\x24\x24\x24\x24\x24" + "\x24\x24\x24\x24\x24\x24\x24\x24" + "\x24\x24\x24\x24\x24\x24\x24\x24" + "\x24\x24\x24\x24", + .klen = 28, + .input = "\x24\x24\x24\x24\x24\x24\x24\x24" + "\x24\x24\x24\x24\x24\x24\x24\x24", + .ilen = 16, + .result = "\xfd\x1b\x4a\xe3\xbf\xf0\xad\x3d" + "\x06\xd3\x61\x27\xfd\x13\x9e\xde", + .rlen = 16, + }, { + .key = "\x25\x25\x25\x25\x25\x25\x25\x25" + "\x25\x25\x25\x25\x25\x25\x25\x25" + "\x25\x25\x25\x25\x25\x25\x25\x25" + "\x25\x25\x25\x25\x25\x25\x25\x25", + .klen = 32, + .input = "\x25\x25\x25\x25\x25\x25\x25\x25" + "\x25\x25\x25\x25\x25\x25\x25\x25", + .ilen = 16, + .result = "\x1a\x91\xfb\x2b\xb7\x78\x6b\xc4" + "\x17\xd9\xff\x40\x3b\x0e\xe5\xfe", + .rlen = 16, + }, { + .key = "\x35\x35\x35\x35\x35\x35\x35\x35" + "\x35\x35\x35\x35\x35\x35\x35\x35" + "\x35\x35\x35\x35\x35\x35\x35\x35" + "\x35\x35\x35\x35\x35\x35\x35\x35" + "\x35\x35\x35\x35\x35\x35\x35\x35", + .klen = 40, + .input = "\x35\x35\x35\x35\x35\x35\x35\x35" + "\x35\x35\x35\x35\x35\x35\x35\x35", + .ilen = 16, + .result = "\xa5\x2c\x85\x6f\x9c\xba\xa0\x97" + "\x9e\xc6\x84\x0f\x17\x21\x07\xee", + .rlen = 16, + }, +}; + +static struct cipher_testvec anubis_dec_tv_template[] = { + { + .key = "\xfe\xfe\xfe\xfe\xfe\xfe\xfe\xfe" + "\xfe\xfe\xfe\xfe\xfe\xfe\xfe\xfe", + .klen = 16, + .input = "\x6d\xc5\xda\xa2\x26\x7d\x62\x6f" + "\x08\xb7\x52\x8e\x6e\x6e\x86\x90", + .ilen = 16, + .result = "\xfe\xfe\xfe\xfe\xfe\xfe\xfe\xfe" + "\xfe\xfe\xfe\xfe\xfe\xfe\xfe\xfe", + .rlen = 16, + }, { + + .key = "\x03\x03\x03\x03\x03\x03\x03\x03" + "\x03\x03\x03\x03\x03\x03\x03\x03" + "\x03\x03\x03\x03", + .klen = 20, + .input = "\xdb\xf1\x42\xf4\xd1\x8a\xc7\x49" + "\x87\x41\x6f\x82\x0a\x98\x64\xae", + .ilen = 16, + .result = "\x03\x03\x03\x03\x03\x03\x03\x03" + "\x03\x03\x03\x03\x03\x03\x03\x03", + .rlen = 16, + }, { + .key = "\x24\x24\x24\x24\x24\x24\x24\x24" + "\x24\x24\x24\x24\x24\x24\x24\x24" + "\x24\x24\x24\x24\x24\x24\x24\x24" + "\x24\x24\x24\x24", + .klen = 28, + .input = "\xfd\x1b\x4a\xe3\xbf\xf0\xad\x3d" + "\x06\xd3\x61\x27\xfd\x13\x9e\xde", + .ilen = 16, + .result = "\x24\x24\x24\x24\x24\x24\x24\x24" + "\x24\x24\x24\x24\x24\x24\x24\x24", + .rlen = 16, + }, { + .key = "\x25\x25\x25\x25\x25\x25\x25\x25" + "\x25\x25\x25\x25\x25\x25\x25\x25" + "\x25\x25\x25\x25\x25\x25\x25\x25" + "\x25\x25\x25\x25\x25\x25\x25\x25", + .klen = 32, + .input = "\x1a\x91\xfb\x2b\xb7\x78\x6b\xc4" + "\x17\xd9\xff\x40\x3b\x0e\xe5\xfe", + .ilen = 16, + .result = "\x25\x25\x25\x25\x25\x25\x25\x25" + "\x25\x25\x25\x25\x25\x25\x25\x25", + .rlen = 16, + }, { + .key = "\x35\x35\x35\x35\x35\x35\x35\x35" + "\x35\x35\x35\x35\x35\x35\x35\x35" + "\x35\x35\x35\x35\x35\x35\x35\x35" + "\x35\x35\x35\x35\x35\x35\x35\x35" + "\x35\x35\x35\x35\x35\x35\x35\x35", + .input = "\xa5\x2c\x85\x6f\x9c\xba\xa0\x97" + "\x9e\xc6\x84\x0f\x17\x21\x07\xee", + .klen = 40, + .ilen = 16, + .result = "\x35\x35\x35\x35\x35\x35\x35\x35" + "\x35\x35\x35\x35\x35\x35\x35\x35", + .rlen = 16, + }, +}; + +static struct cipher_testvec anubis_cbc_enc_tv_template[] = { + { + .key = "\xfe\xfe\xfe\xfe\xfe\xfe\xfe\xfe" + "\xfe\xfe\xfe\xfe\xfe\xfe\xfe\xfe", + .klen = 16, + .input = "\xfe\xfe\xfe\xfe\xfe\xfe\xfe\xfe" + "\xfe\xfe\xfe\xfe\xfe\xfe\xfe\xfe" + "\xfe\xfe\xfe\xfe\xfe\xfe\xfe\xfe" + "\xfe\xfe\xfe\xfe\xfe\xfe\xfe\xfe", + .ilen = 32, + .result = "\x6d\xc5\xda\xa2\x26\x7d\x62\x6f" + "\x08\xb7\x52\x8e\x6e\x6e\x86\x90" + "\x86\xd8\xb5\x6f\x98\x5e\x8a\x66" + "\x4f\x1f\x78\xa1\xbb\x37\xf1\xbe", + .rlen = 32, + }, { + .key = "\x35\x35\x35\x35\x35\x35\x35\x35" + "\x35\x35\x35\x35\x35\x35\x35\x35" + "\x35\x35\x35\x35\x35\x35\x35\x35" + "\x35\x35\x35\x35\x35\x35\x35\x35" + "\x35\x35\x35\x35\x35\x35\x35\x35", + .klen = 40, + .input = "\x35\x35\x35\x35\x35\x35\x35\x35" + "\x35\x35\x35\x35\x35\x35\x35\x35" + "\x35\x35\x35\x35\x35\x35\x35\x35" + "\x35\x35\x35\x35\x35\x35\x35\x35", + .ilen = 32, + .result = "\xa5\x2c\x85\x6f\x9c\xba\xa0\x97" + "\x9e\xc6\x84\x0f\x17\x21\x07\xee" + "\xa2\xbc\x06\x98\xc6\x4b\xda\x75" + "\x2e\xaa\xbe\x58\xce\x01\x5b\xc7", + .rlen = 32, + }, +}; + +static struct cipher_testvec anubis_cbc_dec_tv_template[] = { + { + .key = "\xfe\xfe\xfe\xfe\xfe\xfe\xfe\xfe" + "\xfe\xfe\xfe\xfe\xfe\xfe\xfe\xfe", + .klen = 16, + .input = "\x6d\xc5\xda\xa2\x26\x7d\x62\x6f" + "\x08\xb7\x52\x8e\x6e\x6e\x86\x90" + "\x86\xd8\xb5\x6f\x98\x5e\x8a\x66" + "\x4f\x1f\x78\xa1\xbb\x37\xf1\xbe", + .ilen = 32, + .result = "\xfe\xfe\xfe\xfe\xfe\xfe\xfe\xfe" + "\xfe\xfe\xfe\xfe\xfe\xfe\xfe\xfe" + "\xfe\xfe\xfe\xfe\xfe\xfe\xfe\xfe" + "\xfe\xfe\xfe\xfe\xfe\xfe\xfe\xfe", + .rlen = 32, + }, { + .key = "\x35\x35\x35\x35\x35\x35\x35\x35" + "\x35\x35\x35\x35\x35\x35\x35\x35" + "\x35\x35\x35\x35\x35\x35\x35\x35" + "\x35\x35\x35\x35\x35\x35\x35\x35" + "\x35\x35\x35\x35\x35\x35\x35\x35", + .klen = 40, + .input = "\xa5\x2c\x85\x6f\x9c\xba\xa0\x97" + "\x9e\xc6\x84\x0f\x17\x21\x07\xee" + "\xa2\xbc\x06\x98\xc6\x4b\xda\x75" + "\x2e\xaa\xbe\x58\xce\x01\x5b\xc7", + .ilen = 32, + .result = "\x35\x35\x35\x35\x35\x35\x35\x35" + "\x35\x35\x35\x35\x35\x35\x35\x35" + "\x35\x35\x35\x35\x35\x35\x35\x35" + "\x35\x35\x35\x35\x35\x35\x35\x35", + .rlen = 32, + }, +}; + +/* + * XETA test vectors + */ +#define XETA_ENC_TEST_VECTORS 4 +#define XETA_DEC_TEST_VECTORS 4 + +static struct cipher_testvec xeta_enc_tv_template[] = { + { + .key = zeroed_string, + .klen = 16, + .input = zeroed_string, + .ilen = 8, + .result = "\xaa\x22\x96\xe5\x6c\x61\xf3\x45", + .rlen = 8, + }, { + .key = "\x2b\x02\x05\x68\x06\x14\x49\x76" + "\x77\x5d\x0e\x26\x6c\x28\x78\x43", + .klen = 16, + .input = "\x74\x65\x73\x74\x20\x6d\x65\x2e", + .ilen = 8, + .result = "\x82\x3e\xeb\x35\xdc\xdd\xd9\xc3", + .rlen = 8, + }, { + .key = "\x09\x65\x43\x11\x66\x44\x39\x25" + "\x51\x3a\x16\x10\x0a\x08\x12\x6e", + .klen = 16, + .input = "\x6c\x6f\x6e\x67\x65\x72\x5f\x74" + "\x65\x73\x74\x5f\x76\x65\x63\x74", + .ilen = 16, + .result = "\xe2\x04\xdb\xf2\x89\x85\x9e\xea" + "\x61\x35\xaa\xed\xb5\xcb\x71\x2c", + .rlen = 16, + }, { + .key = "\x4d\x76\x32\x17\x05\x3f\x75\x2c" + "\x5d\x04\x16\x36\x15\x72\x63\x2f", + .klen = 16, + .input = "\x54\x65\x61\x20\x69\x73\x20\x67" + "\x6f\x6f\x64\x20\x66\x6f\x72\x20" + "\x79\x6f\x75\x21\x21\x21\x20\x72" + "\x65\x61\x6c\x6c\x79\x21\x21\x21", + .ilen = 32, + .result = "\x0b\x03\xcd\x8a\xbe\x95\xfd\xb1" + "\xc1\x44\x91\x0b\xa5\xc9\x1b\xb4" + "\xa9\xda\x1e\x9e\xb1\x3e\x2a\x8f" + "\xea\xa5\x6a\x85\xd1\xf4\xa8\xa5", + .rlen = 32, + } +}; + +static struct cipher_testvec xeta_dec_tv_template[] = { + { + .key = zeroed_string, + .klen = 16, + .input = "\xaa\x22\x96\xe5\x6c\x61\xf3\x45", + .ilen = 8, + .result = zeroed_string, + .rlen = 8, + }, { + .key = "\x2b\x02\x05\x68\x06\x14\x49\x76" + "\x77\x5d\x0e\x26\x6c\x28\x78\x43", + .klen = 16, + .input = "\x82\x3e\xeb\x35\xdc\xdd\xd9\xc3", + .ilen = 8, + .result = "\x74\x65\x73\x74\x20\x6d\x65\x2e", + .rlen = 8, + }, { + .key = "\x09\x65\x43\x11\x66\x44\x39\x25" + "\x51\x3a\x16\x10\x0a\x08\x12\x6e", + .klen = 16, + .input = "\xe2\x04\xdb\xf2\x89\x85\x9e\xea" + "\x61\x35\xaa\xed\xb5\xcb\x71\x2c", + .ilen = 16, + .result = "\x6c\x6f\x6e\x67\x65\x72\x5f\x74" + "\x65\x73\x74\x5f\x76\x65\x63\x74", + .rlen = 16, + }, { + .key = "\x4d\x76\x32\x17\x05\x3f\x75\x2c" + "\x5d\x04\x16\x36\x15\x72\x63\x2f", + .klen = 16, + .input = "\x0b\x03\xcd\x8a\xbe\x95\xfd\xb1" + "\xc1\x44\x91\x0b\xa5\xc9\x1b\xb4" + "\xa9\xda\x1e\x9e\xb1\x3e\x2a\x8f" + "\xea\xa5\x6a\x85\xd1\xf4\xa8\xa5", + .ilen = 32, + .result = "\x54\x65\x61\x20\x69\x73\x20\x67" + "\x6f\x6f\x64\x20\x66\x6f\x72\x20" + "\x79\x6f\x75\x21\x21\x21\x20\x72" + "\x65\x61\x6c\x6c\x79\x21\x21\x21", + .rlen = 32, + } +}; + +/* + * FCrypt test vectors + */ +#define FCRYPT_ENC_TEST_VECTORS ARRAY_SIZE(fcrypt_pcbc_enc_tv_template) +#define FCRYPT_DEC_TEST_VECTORS ARRAY_SIZE(fcrypt_pcbc_dec_tv_template) + +static struct cipher_testvec fcrypt_pcbc_enc_tv_template[] = { + { /* http://www.openafs.org/pipermail/openafs-devel/2000-December/005320.html */ + .key = "\x00\x00\x00\x00\x00\x00\x00\x00", + .klen = 8, + .iv = "\x00\x00\x00\x00\x00\x00\x00\x00", + .input = "\x00\x00\x00\x00\x00\x00\x00\x00", + .ilen = 8, + .result = "\x0E\x09\x00\xC7\x3E\xF7\xED\x41", + .rlen = 8, + }, { + .key = "\x11\x44\x77\xAA\xDD\x00\x33\x66", + .klen = 8, + .iv = "\x00\x00\x00\x00\x00\x00\x00\x00", + .input = "\x12\x34\x56\x78\x9A\xBC\xDE\xF0", + .ilen = 8, + .result = "\xD8\xED\x78\x74\x77\xEC\x06\x80", + .rlen = 8, + }, { /* From Arla */ + .key = "\xf0\xe1\xd2\xc3\xb4\xa5\x96\x87", + .klen = 8, + .iv = "\xfe\xdc\xba\x98\x76\x54\x32\x10", + .input = "The quick brown fox jumps over the lazy dogs.\0\0", + .ilen = 48, + .result = "\x00\xf0\x0e\x11\x75\xe6\x23\x82" + "\xee\xac\x98\x62\x44\x51\xe4\x84" + "\xc3\x59\xd8\xaa\x64\x60\xae\xf7" + "\xd2\xd9\x13\x79\x72\xa3\x45\x03" + "\x23\xb5\x62\xd7\x0c\xf5\x27\xd1" + "\xf8\x91\x3c\xac\x44\x22\x92\xef", + .rlen = 48, + }, { + .key = "\xfe\xdc\xba\x98\x76\x54\x32\x10", + .klen = 8, + .iv = "\xf0\xe1\xd2\xc3\xb4\xa5\x96\x87", + .input = "The quick brown fox jumps over the lazy dogs.\0\0", + .ilen = 48, + .result = "\xca\x90\xf5\x9d\xcb\xd4\xd2\x3c" + "\x01\x88\x7f\x3e\x31\x6e\x62\x9d" + "\xd8\xe0\x57\xa3\x06\x3a\x42\x58" + "\x2a\x28\xfe\x72\x52\x2f\xdd\xe0" + "\x19\x89\x09\x1c\x2a\x8e\x8c\x94" + "\xfc\xc7\x68\xe4\x88\xaa\xde\x0f", + .rlen = 48, + }, { /* split-page version */ + .key = "\xfe\xdc\xba\x98\x76\x54\x32\x10", + .klen = 8, + .iv = "\xf0\xe1\xd2\xc3\xb4\xa5\x96\x87", + .input = "The quick brown fox jumps over the lazy dogs.\0\0", + .ilen = 48, + .result = "\xca\x90\xf5\x9d\xcb\xd4\xd2\x3c" + "\x01\x88\x7f\x3e\x31\x6e\x62\x9d" + "\xd8\xe0\x57\xa3\x06\x3a\x42\x58" + "\x2a\x28\xfe\x72\x52\x2f\xdd\xe0" + "\x19\x89\x09\x1c\x2a\x8e\x8c\x94" + "\xfc\xc7\x68\xe4\x88\xaa\xde\x0f", + .rlen = 48, + .np = 2, + .tap = { 20, 28 }, + } +}; + +static struct cipher_testvec fcrypt_pcbc_dec_tv_template[] = { + { /* http://www.openafs.org/pipermail/openafs-devel/2000-December/005320.html */ + .key = "\x00\x00\x00\x00\x00\x00\x00\x00", + .klen = 8, + .iv = "\x00\x00\x00\x00\x00\x00\x00\x00", + .input = "\x0E\x09\x00\xC7\x3E\xF7\xED\x41", + .ilen = 8, + .result = "\x00\x00\x00\x00\x00\x00\x00\x00", + .rlen = 8, + }, { + .key = "\x11\x44\x77\xAA\xDD\x00\x33\x66", + .klen = 8, + .iv = "\x00\x00\x00\x00\x00\x00\x00\x00", + .input = "\xD8\xED\x78\x74\x77\xEC\x06\x80", + .ilen = 8, + .result = "\x12\x34\x56\x78\x9A\xBC\xDE\xF0", + .rlen = 8, + }, { /* From Arla */ + .key = "\xf0\xe1\xd2\xc3\xb4\xa5\x96\x87", + .klen = 8, + .iv = "\xfe\xdc\xba\x98\x76\x54\x32\x10", + .input = "\x00\xf0\x0e\x11\x75\xe6\x23\x82" + "\xee\xac\x98\x62\x44\x51\xe4\x84" + "\xc3\x59\xd8\xaa\x64\x60\xae\xf7" + "\xd2\xd9\x13\x79\x72\xa3\x45\x03" + "\x23\xb5\x62\xd7\x0c\xf5\x27\xd1" + "\xf8\x91\x3c\xac\x44\x22\x92\xef", + .ilen = 48, + .result = "The quick brown fox jumps over the lazy dogs.\0\0", + .rlen = 48, + }, { + .key = "\xfe\xdc\xba\x98\x76\x54\x32\x10", + .klen = 8, + .iv = "\xf0\xe1\xd2\xc3\xb4\xa5\x96\x87", + .input = "\xca\x90\xf5\x9d\xcb\xd4\xd2\x3c" + "\x01\x88\x7f\x3e\x31\x6e\x62\x9d" + "\xd8\xe0\x57\xa3\x06\x3a\x42\x58" + "\x2a\x28\xfe\x72\x52\x2f\xdd\xe0" + "\x19\x89\x09\x1c\x2a\x8e\x8c\x94" + "\xfc\xc7\x68\xe4\x88\xaa\xde\x0f", + .ilen = 48, + .result = "The quick brown fox jumps over the lazy dogs.\0\0", + .rlen = 48, + }, { /* split-page version */ + .key = "\xfe\xdc\xba\x98\x76\x54\x32\x10", + .klen = 8, + .iv = "\xf0\xe1\xd2\xc3\xb4\xa5\x96\x87", + .input = "\xca\x90\xf5\x9d\xcb\xd4\xd2\x3c" + "\x01\x88\x7f\x3e\x31\x6e\x62\x9d" + "\xd8\xe0\x57\xa3\x06\x3a\x42\x58" + "\x2a\x28\xfe\x72\x52\x2f\xdd\xe0" + "\x19\x89\x09\x1c\x2a\x8e\x8c\x94" + "\xfc\xc7\x68\xe4\x88\xaa\xde\x0f", + .ilen = 48, + .result = "The quick brown fox jumps over the lazy dogs.\0\0", + .rlen = 48, + .np = 2, + .tap = { 20, 28 }, + } +}; + +/* + * CAMELLIA test vectors. + */ +#define CAMELLIA_ENC_TEST_VECTORS 3 +#define CAMELLIA_DEC_TEST_VECTORS 3 +#define CAMELLIA_CBC_ENC_TEST_VECTORS 2 +#define CAMELLIA_CBC_DEC_TEST_VECTORS 2 + +static struct cipher_testvec camellia_enc_tv_template[] = { + { + .key = "\x01\x23\x45\x67\x89\xab\xcd\xef" + "\xfe\xdc\xba\x98\x76\x54\x32\x10", + .klen = 16, + .input = "\x01\x23\x45\x67\x89\xab\xcd\xef" + "\xfe\xdc\xba\x98\x76\x54\x32\x10", + .ilen = 16, + .result = "\x67\x67\x31\x38\x54\x96\x69\x73" + "\x08\x57\x06\x56\x48\xea\xbe\x43", + .rlen = 16, + }, { + .key = "\x01\x23\x45\x67\x89\xab\xcd\xef" + "\xfe\xdc\xba\x98\x76\x54\x32\x10" + "\x00\x11\x22\x33\x44\x55\x66\x77", + .klen = 24, + .input = "\x01\x23\x45\x67\x89\xab\xcd\xef" + "\xfe\xdc\xba\x98\x76\x54\x32\x10", + .ilen = 16, + .result = "\xb4\x99\x34\x01\xb3\xe9\x96\xf8" + "\x4e\xe5\xce\xe7\xd7\x9b\x09\xb9", + .rlen = 16, + }, { + .key = "\x01\x23\x45\x67\x89\xab\xcd\xef" + "\xfe\xdc\xba\x98\x76\x54\x32\x10" + "\x00\x11\x22\x33\x44\x55\x66\x77" + "\x88\x99\xaa\xbb\xcc\xdd\xee\xff", + .klen = 32, + .input = "\x01\x23\x45\x67\x89\xab\xcd\xef" + "\xfe\xdc\xba\x98\x76\x54\x32\x10", + .ilen = 16, + .result = "\x9a\xcc\x23\x7d\xff\x16\xd7\x6c" + "\x20\xef\x7c\x91\x9e\x3a\x75\x09", + .rlen = 16, + }, +}; + +static struct cipher_testvec camellia_dec_tv_template[] = { + { + .key = "\x01\x23\x45\x67\x89\xab\xcd\xef" + "\xfe\xdc\xba\x98\x76\x54\x32\x10", + .klen = 16, + .input = "\x67\x67\x31\x38\x54\x96\x69\x73" + "\x08\x57\x06\x56\x48\xea\xbe\x43", + .ilen = 16, + .result = "\x01\x23\x45\x67\x89\xab\xcd\xef" + "\xfe\xdc\xba\x98\x76\x54\x32\x10", + .rlen = 16, + }, { + .key = "\x01\x23\x45\x67\x89\xab\xcd\xef" + "\xfe\xdc\xba\x98\x76\x54\x32\x10" + "\x00\x11\x22\x33\x44\x55\x66\x77", + .klen = 24, + .input = "\xb4\x99\x34\x01\xb3\xe9\x96\xf8" + "\x4e\xe5\xce\xe7\xd7\x9b\x09\xb9", + .ilen = 16, + .result = "\x01\x23\x45\x67\x89\xab\xcd\xef" + "\xfe\xdc\xba\x98\x76\x54\x32\x10", + .rlen = 16, + }, { + .key = "\x01\x23\x45\x67\x89\xab\xcd\xef" + "\xfe\xdc\xba\x98\x76\x54\x32\x10" + "\x00\x11\x22\x33\x44\x55\x66\x77" + "\x88\x99\xaa\xbb\xcc\xdd\xee\xff", + .klen = 32, + .input = "\x9a\xcc\x23\x7d\xff\x16\xd7\x6c" + "\x20\xef\x7c\x91\x9e\x3a\x75\x09", + .ilen = 16, + .result = "\x01\x23\x45\x67\x89\xab\xcd\xef" + "\xfe\xdc\xba\x98\x76\x54\x32\x10", + .rlen = 16, + }, +}; + +static struct cipher_testvec camellia_cbc_enc_tv_template[] = { + { + .key = "\x06\xa9\x21\x40\x36\xb8\xa1\x5b" + "\x51\x2e\x03\xd5\x34\x12\x00\x06", + .klen = 16, + .iv = "\x3d\xaf\xba\x42\x9d\x9e\xb4\x30" + "\xb4\x22\xda\x80\x2c\x9f\xac\x41", + .input = "Single block msg", + .ilen = 16, + .result = "\xea\x32\x12\x76\x3b\x50\x10\xe7" + "\x18\xf6\xfd\x5d\xf6\x8f\x13\x51", + .rlen = 16, + }, { + .key = "\xc2\x86\x69\x6d\x88\x7c\x9a\xa0" + "\x61\x1b\xbb\x3e\x20\x25\xa4\x5a", + .klen = 16, + .iv = "\x56\x2e\x17\x99\x6d\x09\x3d\x28" + "\xdd\xb3\xba\x69\x5a\x2e\x6f\x58", + .input = "\x00\x01\x02\x03\x04\x05\x06\x07" + "\x08\x09\x0a\x0b\x0c\x0d\x0e\x0f" + "\x10\x11\x12\x13\x14\x15\x16\x17" + "\x18\x19\x1a\x1b\x1c\x1d\x1e\x1f", + .ilen = 32, + .result = "\xa5\xdf\x6e\x50\xda\x70\x6c\x01" + "\x4a\xab\xf3\xf2\xd6\xfc\x6c\xfd" + "\x19\xb4\x3e\x57\x1c\x02\x5e\xa0" + "\x15\x78\xe0\x5e\xf2\xcb\x87\x16", + .rlen = 32, + }, +}; + +static struct cipher_testvec camellia_cbc_dec_tv_template[] = { + { + .key = "\x06\xa9\x21\x40\x36\xb8\xa1\x5b" + "\x51\x2e\x03\xd5\x34\x12\x00\x06", + .klen = 16, + .iv = "\x3d\xaf\xba\x42\x9d\x9e\xb4\x30" + "\xb4\x22\xda\x80\x2c\x9f\xac\x41", + .input = "\xea\x32\x12\x76\x3b\x50\x10\xe7" + "\x18\xf6\xfd\x5d\xf6\x8f\x13\x51", + .ilen = 16, + .result = "Single block msg", + .rlen = 16, + }, { + .key = "\xc2\x86\x69\x6d\x88\x7c\x9a\xa0" + "\x61\x1b\xbb\x3e\x20\x25\xa4\x5a", + .klen = 16, + .iv = "\x56\x2e\x17\x99\x6d\x09\x3d\x28" + "\xdd\xb3\xba\x69\x5a\x2e\x6f\x58", + .input = "\xa5\xdf\x6e\x50\xda\x70\x6c\x01" + "\x4a\xab\xf3\xf2\xd6\xfc\x6c\xfd" + "\x19\xb4\x3e\x57\x1c\x02\x5e\xa0" + "\x15\x78\xe0\x5e\xf2\xcb\x87\x16", + .ilen = 32, + .result = "\x00\x01\x02\x03\x04\x05\x06\x07" + "\x08\x09\x0a\x0b\x0c\x0d\x0e\x0f" + "\x10\x11\x12\x13\x14\x15\x16\x17" + "\x18\x19\x1a\x1b\x1c\x1d\x1e\x1f", + .rlen = 32, + }, +}; + +/* + * SEED test vectors + */ +#define SEED_ENC_TEST_VECTORS 4 +#define SEED_DEC_TEST_VECTORS 4 + +static struct cipher_testvec seed_enc_tv_template[] = { + { + .key = zeroed_string, + .klen = 16, + .input = "\x00\x01\x02\x03\x04\x05\x06\x07" + "\x08\x09\x0a\x0b\x0c\x0d\x0e\x0f", + .ilen = 16, + .result = "\x5e\xba\xc6\xe0\x05\x4e\x16\x68" + "\x19\xaf\xf1\xcc\x6d\x34\x6c\xdb", + .rlen = 16, + }, { + .key = "\x00\x01\x02\x03\x04\x05\x06\x07" + "\x08\x09\x0a\x0b\x0c\x0d\x0e\x0f", + .klen = 16, + .input = zeroed_string, + .ilen = 16, + .result = "\xc1\x1f\x22\xf2\x01\x40\x50\x50" + "\x84\x48\x35\x97\xe4\x37\x0f\x43", + .rlen = 16, + }, { + .key = "\x47\x06\x48\x08\x51\xe6\x1b\xe8" + "\x5d\x74\xbf\xb3\xfd\x95\x61\x85", + .klen = 16, + .input = "\x83\xa2\xf8\xa2\x88\x64\x1f\xb9" + "\xa4\xe9\xa5\xcc\x2f\x13\x1c\x7d", + .ilen = 16, + .result = "\xee\x54\xd1\x3e\xbc\xae\x70\x6d" + "\x22\x6b\xc3\x14\x2c\xd4\x0d\x4a", + .rlen = 16, + }, { + .key = "\x28\xdb\xc3\xbc\x49\xff\xd8\x7d" + "\xcf\xa5\x09\xb1\x1d\x42\x2b\xe7", + .klen = 16, + .input = "\xb4\x1e\x6b\xe2\xeb\xa8\x4a\x14" + "\x8e\x2e\xed\x84\x59\x3c\x5e\xc7", + .ilen = 16, + .result = "\x9b\x9b\x7b\xfc\xd1\x81\x3c\xb9" + "\x5d\x0b\x36\x18\xf4\x0f\x51\x22", + .rlen = 16, + } +}; + +static struct cipher_testvec seed_dec_tv_template[] = { + { + .key = zeroed_string, + .klen = 16, + .input = "\x5e\xba\xc6\xe0\x05\x4e\x16\x68" + "\x19\xaf\xf1\xcc\x6d\x34\x6c\xdb", + .ilen = 16, + .result = "\x00\x01\x02\x03\x04\x05\x06\x07" + "\x08\x09\x0a\x0b\x0c\x0d\x0e\x0f", + .rlen = 16, + }, { + .key = "\x00\x01\x02\x03\x04\x05\x06\x07" + "\x08\x09\x0a\x0b\x0c\x0d\x0e\x0f", + .klen = 16, + .input = "\xc1\x1f\x22\xf2\x01\x40\x50\x50" + "\x84\x48\x35\x97\xe4\x37\x0f\x43", + .ilen = 16, + .result = zeroed_string, + .rlen = 16, + }, { + .key = "\x47\x06\x48\x08\x51\xe6\x1b\xe8" + "\x5d\x74\xbf\xb3\xfd\x95\x61\x85", + .klen = 16, + .input = "\xee\x54\xd1\x3e\xbc\xae\x70\x6d" + "\x22\x6b\xc3\x14\x2c\xd4\x0d\x4a", + .ilen = 16, + .result = "\x83\xa2\xf8\xa2\x88\x64\x1f\xb9" + "\xa4\xe9\xa5\xcc\x2f\x13\x1c\x7d", + .rlen = 16, + }, { + .key = "\x28\xdb\xc3\xbc\x49\xff\xd8\x7d" + "\xcf\xa5\x09\xb1\x1d\x42\x2b\xe7", + .klen = 16, + .input = "\x9b\x9b\x7b\xfc\xd1\x81\x3c\xb9" + "\x5d\x0b\x36\x18\xf4\x0f\x51\x22", + .ilen = 16, + .result = "\xb4\x1e\x6b\xe2\xeb\xa8\x4a\x14" + "\x8e\x2e\xed\x84\x59\x3c\x5e\xc7", + .rlen = 16, + } +}; + +#define SALSA20_STREAM_ENC_TEST_VECTORS 5 +static struct cipher_testvec salsa20_stream_enc_tv_template[] = { + /* + * Testvectors from verified.test-vectors submitted to ECRYPT. + * They are truncated to size 39, 64, 111, 129 to test a variety + * of input length. + */ + { /* Set 3, vector 0 */ + .key = "\x00\x01\x02\x03\x04\x05\x06\x07" + "\x08\x09\x0A\x0B\x0C\x0D\x0E\x0F", + .klen = 16, + .iv = "\x00\x00\x00\x00\x00\x00\x00\x00", + .input = "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00", + .ilen = 39, + .result = "\x2D\xD5\xC3\xF7\xBA\x2B\x20\xF7" + "\x68\x02\x41\x0C\x68\x86\x88\x89" + "\x5A\xD8\xC1\xBD\x4E\xA6\xC9\xB1" + "\x40\xFB\x9B\x90\xE2\x10\x49\xBF" + "\x58\x3F\x52\x79\x70\xEB\xC1", + .rlen = 39, + }, { /* Set 5, vector 0 */ + .key = "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x00", + .klen = 16, + .iv = "\x80\x00\x00\x00\x00\x00\x00\x00", + .input = "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x00", + .ilen = 64, + .result = "\xB6\x6C\x1E\x44\x46\xDD\x95\x57" + "\xE5\x78\xE2\x23\xB0\xB7\x68\x01" + "\x7B\x23\xB2\x67\xBB\x02\x34\xAE" + "\x46\x26\xBF\x44\x3F\x21\x97\x76" + "\x43\x6F\xB1\x9F\xD0\xE8\x86\x6F" + "\xCD\x0D\xE9\xA9\x53\x8F\x4A\x09" + "\xCA\x9A\xC0\x73\x2E\x30\xBC\xF9" + "\x8E\x4F\x13\xE4\xB9\xE2\x01\xD9", + .rlen = 64, + }, { /* Set 3, vector 27 */ + .key = "\x1B\x1C\x1D\x1E\x1F\x20\x21\x22" + "\x23\x24\x25\x26\x27\x28\x29\x2A" + "\x2B\x2C\x2D\x2E\x2F\x30\x31\x32" + "\x33\x34\x35\x36\x37\x38\x39\x3A", + .klen = 32, + .iv = "\x00\x00\x00\x00\x00\x00\x00\x00", + .input = "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00", + .ilen = 111, + .result = "\xAE\x39\x50\x8E\xAC\x9A\xEC\xE7" + "\xBF\x97\xBB\x20\xB9\xDE\xE4\x1F" + "\x87\xD9\x47\xF8\x28\x91\x35\x98" + "\xDB\x72\xCC\x23\x29\x48\x56\x5E" + "\x83\x7E\x0B\xF3\x7D\x5D\x38\x7B" + "\x2D\x71\x02\xB4\x3B\xB5\xD8\x23" + "\xB0\x4A\xDF\x3C\xEC\xB6\xD9\x3B" + "\x9B\xA7\x52\xBE\xC5\xD4\x50\x59" + "\x15\x14\xB4\x0E\x40\xE6\x53\xD1" + "\x83\x9C\x5B\xA0\x92\x29\x6B\x5E" + "\x96\x5B\x1E\x2F\xD3\xAC\xC1\x92" + "\xB1\x41\x3F\x19\x2F\xC4\x3B\xC6" + "\x95\x46\x45\x54\xE9\x75\x03\x08" + "\x44\xAF\xE5\x8A\x81\x12\x09", + .rlen = 111, + }, { /* Set 5, vector 27 */ + .key = "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x00", + .klen = 32, + .iv = "\x00\x00\x00\x10\x00\x00\x00\x00", + .input = "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00", + .ilen = 129, + .result = "\xD2\xDB\x1A\x5C\xF1\xC1\xAC\xDB" + "\xE8\x1A\x7A\x43\x40\xEF\x53\x43" + "\x5E\x7F\x4B\x1A\x50\x52\x3F\x8D" + "\x28\x3D\xCF\x85\x1D\x69\x6E\x60" + "\xF2\xDE\x74\x56\x18\x1B\x84\x10" + "\xD4\x62\xBA\x60\x50\xF0\x61\xF2" + "\x1C\x78\x7F\xC1\x24\x34\xAF\x58" + "\xBF\x2C\x59\xCA\x90\x77\xF3\xB0" + "\x5B\x4A\xDF\x89\xCE\x2C\x2F\xFC" + "\x67\xF0\xE3\x45\xE8\xB3\xB3\x75" + "\xA0\x95\x71\xA1\x29\x39\x94\xCA" + "\x45\x2F\xBD\xCB\x10\xB6\xBE\x9F" + "\x8E\xF9\xB2\x01\x0A\x5A\x0A\xB7" + "\x6B\x9D\x70\x8E\x4B\xD6\x2F\xCD" + "\x2E\x40\x48\x75\xE9\xE2\x21\x45" + "\x0B\xC9\xB6\xB5\x66\xBC\x9A\x59" + "\x5A", + .rlen = 129, + }, { /* large test vector generated using Crypto++ */ + .key = "\x00\x01\x02\x03\x04\x05\x06\x07" + "\x08\x09\x0a\x0b\x0c\x0d\x0e\x0f" + "\x10\x11\x12\x13\x14\x15\x16\x17" + "\x18\x19\x1a\x1b\x1c\x1d\x1e\x1f", + .klen = 32, + .iv = "\x00\x00\x00\x00\x00\x00\x00\x00" + "\x00\x00\x00\x00\x00\x00\x00\x00", + .input = + "\x00\x01\x02\x03\x04\x05\x06\x07" + "\x08\x09\x0a\x0b\x0c\x0d\x0e\x0f" + "\x10\x11\x12\x13\x14\x15\x16\x17" + "\x18\x19\x1a\x1b\x1c\x1d\x1e\x1f" + "\x20\x21\x22\x23\x24\x25\x26\x27" + "\x28\x29\x2a\x2b\x2c\x2d\x2e\x2f" + "\x30\x31\x32\x33\x34\x35\x36\x37" + "\x38\x39\x3a\x3b\x3c\x3d\x3e\x3f" + "\x40\x41\x42\x43\x44\x45\x46\x47" + "\x48\x49\x4a\x4b\x4c\x4d\x4e\x4f" + "\x50\x51\x52\x53\x54\x55\x56\x57" + "\x58\x59\x5a\x5b\x5c\x5d\x5e\x5f" + "\x60\x61\x62\x63\x64\x65\x66\x67" + "\x68\x69\x6a\x6b\x6c\x6d\x6e\x6f" + "\x70\x71\x72\x73\x74\x75\x76\x77" + "\x78\x79\x7a\x7b\x7c\x7d\x7e\x7f" + "\x80\x81\x82\x83\x84\x85\x86\x87" + "\x88\x89\x8a\x8b\x8c\x8d\x8e\x8f" + "\x90\x91\x92\x93\x94\x95\x96\x97" + "\x98\x99\x9a\x9b\x9c\x9d\x9e\x9f" + "\xa0\xa1\xa2\xa3\xa4\xa5\xa6\xa7" + "\xa8\xa9\xaa\xab\xac\xad\xae\xaf" + "\xb0\xb1\xb2\xb3\xb4\xb5\xb6\xb7" + "\xb8\xb9\xba\xbb\xbc\xbd\xbe\xbf" + "\xc0\xc1\xc2\xc3\xc4\xc5\xc6\xc7" + "\xc8\xc9\xca\xcb\xcc\xcd\xce\xcf" + "\xd0\xd1\xd2\xd3\xd4\xd5\xd6\xd7" + "\xd8\xd9\xda\xdb\xdc\xdd\xde\xdf" + "\xe0\xe1\xe2\xe3\xe4\xe5\xe6\xe7" + "\xe8\xe9\xea\xeb\xec\xed\xee\xef" + "\xf0\xf1\xf2\xf3\xf4\xf5\xf6\xf7" + "\xf8\xf9\xfa\xfb\xfc\xfd\xfe\xff" + "\x00\x03\x06\x09\x0c\x0f\x12\x15" + "\x18\x1b\x1e\x21\x24\x27\x2a\x2d" + "\x30\x33\x36\x39\x3c\x3f\x42\x45" + "\x48\x4b\x4e\x51\x54\x57\x5a\x5d" + "\x60\x63\x66\x69\x6c\x6f\x72\x75" + "\x78\x7b\x7e\x81\x84\x87\x8a\x8d" + "\x90\x93\x96\x99\x9c\x9f\xa2\xa5" + "\xa8\xab\xae\xb1\xb4\xb7\xba\xbd" + "\xc0\xc3\xc6\xc9\xcc\xcf\xd2\xd5" + "\xd8\xdb\xde\xe1\xe4\xe7\xea\xed" + "\xf0\xf3\xf6\xf9\xfc\xff\x02\x05" + "\x08\x0b\x0e\x11\x14\x17\x1a\x1d" + "\x20\x23\x26\x29\x2c\x2f\x32\x35" + "\x38\x3b\x3e\x41\x44\x47\x4a\x4d" + "\x50\x53\x56\x59\x5c\x5f\x62\x65" + "\x68\x6b\x6e\x71\x74\x77\x7a\x7d" + "\x80\x83\x86\x89\x8c\x8f\x92\x95" + "\x98\x9b\x9e\xa1\xa4\xa7\xaa\xad" + "\xb0\xb3\xb6\xb9\xbc\xbf\xc2\xc5" + "\xc8\xcb\xce\xd1\xd4\xd7\xda\xdd" + "\xe0\xe3\xe6\xe9\xec\xef\xf2\xf5" + "\xf8\xfb\xfe\x01\x04\x07\x0a\x0d" + "\x10\x13\x16\x19\x1c\x1f\x22\x25" + "\x28\x2b\x2e\x31\x34\x37\x3a\x3d" + "\x40\x43\x46\x49\x4c\x4f\x52\x55" + "\x58\x5b\x5e\x61\x64\x67\x6a\x6d" + "\x70\x73\x76\x79\x7c\x7f\x82\x85" + "\x88\x8b\x8e\x91\x94\x97\x9a\x9d" + "\xa0\xa3\xa6\xa9\xac\xaf\xb2\xb5" + "\xb8\xbb\xbe\xc1\xc4\xc7\xca\xcd" + "\xd0\xd3\xd6\xd9\xdc\xdf\xe2\xe5" + "\xe8\xeb\xee\xf1\xf4\xf7\xfa\xfd" + "\x00\x05\x0a\x0f\x14\x19\x1e\x23" + "\x28\x2d\x32\x37\x3c\x41\x46\x4b" + "\x50\x55\x5a\x5f\x64\x69\x6e\x73" + "\x78\x7d\x82\x87\x8c\x91\x96\x9b" + "\xa0\xa5\xaa\xaf\xb4\xb9\xbe\xc3" + "\xc8\xcd\xd2\xd7\xdc\xe1\xe6\xeb" + "\xf0\xf5\xfa\xff\x04\x09\x0e\x13" + "\x18\x1d\x22\x27\x2c\x31\x36\x3b" + "\x40\x45\x4a\x4f\x54\x59\x5e\x63" + "\x68\x6d\x72\x77\x7c\x81\x86\x8b" + "\x90\x95\x9a\x9f\xa4\xa9\xae\xb3" + "\xb8\xbd\xc2\xc7\xcc\xd1\xd6\xdb" + "\xe0\xe5\xea\xef\xf4\xf9\xfe\x03" + "\x08\x0d\x12\x17\x1c\x21\x26\x2b" + "\x30\x35\x3a\x3f\x44\x49\x4e\x53" + "\x58\x5d\x62\x67\x6c\x71\x76\x7b" + "\x80\x85\x8a\x8f\x94\x99\x9e\xa3" + "\xa8\xad\xb2\xb7\xbc\xc1\xc6\xcb" + "\xd0\xd5\xda\xdf\xe4\xe9\xee\xf3" + "\xf8\xfd\x02\x07\x0c\x11\x16\x1b" + "\x20\x25\x2a\x2f\x34\x39\x3e\x43" + "\x48\x4d\x52\x57\x5c\x61\x66\x6b" + "\x70\x75\x7a\x7f\x84\x89\x8e\x93" + "\x98\x9d\xa2\xa7\xac\xb1\xb6\xbb" + "\xc0\xc5\xca\xcf\xd4\xd9\xde\xe3" + "\xe8\xed\xf2\xf7\xfc\x01\x06\x0b" + "\x10\x15\x1a\x1f\x24\x29\x2e\x33" + "\x38\x3d\x42\x47\x4c\x51\x56\x5b" + "\x60\x65\x6a\x6f\x74\x79\x7e\x83" + "\x88\x8d\x92\x97\x9c\xa1\xa6\xab" + "\xb0\xb5\xba\xbf\xc4\xc9\xce\xd3" + "\xd8\xdd\xe2\xe7\xec\xf1\xf6\xfb" + "\x00\x07\x0e\x15\x1c\x23\x2a\x31" + "\x38\x3f\x46\x4d\x54\x5b\x62\x69" + "\x70\x77\x7e\x85\x8c\x93\x9a\xa1" + "\xa8\xaf\xb6\xbd\xc4\xcb\xd2\xd9" + "\xe0\xe7\xee\xf5\xfc\x03\x0a\x11" + "\x18\x1f\x26\x2d\x34\x3b\x42\x49" + "\x50\x57\x5e\x65\x6c\x73\x7a\x81" + "\x88\x8f\x96\x9d\xa4\xab\xb2\xb9" + "\xc0\xc7\xce\xd5\xdc\xe3\xea\xf1" + "\xf8\xff\x06\x0d\x14\x1b\x22\x29" + "\x30\x37\x3e\x45\x4c\x53\x5a\x61" + "\x68\x6f\x76\x7d\x84\x8b\x92\x99" + "\xa0\xa7\xae\xb5\xbc\xc3\xca\xd1" + "\xd8\xdf\xe6\xed\xf4\xfb\x02\x09" + "\x10\x17\x1e\x25\x2c\x33\x3a\x41" + "\x48\x4f\x56\x5d\x64\x6b\x72\x79" + "\x80\x87\x8e\x95\x9c\xa3\xaa\xb1" + "\xb8\xbf\xc6\xcd\xd4\xdb\xe2\xe9" + "\xf0\xf7\xfe\x05\x0c\x13\x1a\x21" + "\x28\x2f\x36\x3d\x44\x4b\x52\x59" + "\x60\x67\x6e\x75\x7c\x83\x8a\x91" + "\x98\x9f\xa6\xad\xb4\xbb\xc2\xc9" + "\xd0\xd7\xde\xe5\xec\xf3\xfa\x01" + "\x08\x0f\x16\x1d\x24\x2b\x32\x39" + "\x40\x47\x4e\x55\x5c\x63\x6a\x71" + "\x78\x7f\x86\x8d\x94\x9b\xa2\xa9" + "\xb0\xb7\xbe\xc5\xcc\xd3\xda\xe1" + "\xe8\xef\xf6\xfd\x04\x0b\x12\x19" + "\x20\x27\x2e\x35\x3c\x43\x4a\x51" + "\x58\x5f\x66\x6d\x74\x7b\x82\x89" + "\x90\x97\x9e\xa5\xac\xb3\xba\xc1" + "\xc8\xcf\xd6\xdd\xe4\xeb\xf2\xf9" + "\x00\x09\x12\x1b\x24\x2d\x36\x3f" + "\x48\x51\x5a\x63\x6c\x75\x7e\x87" + "\x90\x99\xa2\xab\xb4\xbd\xc6\xcf" + "\xd8\xe1\xea\xf3\xfc\x05\x0e\x17" + "\x20\x29\x32\x3b\x44\x4d\x56\x5f" + "\x68\x71\x7a\x83\x8c\x95\x9e\xa7" + "\xb0\xb9\xc2\xcb\xd4\xdd\xe6\xef" + "\xf8\x01\x0a\x13\x1c\x25\x2e\x37" + "\x40\x49\x52\x5b\x64\x6d\x76\x7f" + "\x88\x91\x9a\xa3\xac\xb5\xbe\xc7" + "\xd0\xd9\xe2\xeb\xf4\xfd\x06\x0f" + "\x18\x21\x2a\x33\x3c\x45\x4e\x57" + "\x60\x69\x72\x7b\x84\x8d\x96\x9f" + "\xa8\xb1\xba\xc3\xcc\xd5\xde\xe7" + "\xf0\xf9\x02\x0b\x14\x1d\x26\x2f" + "\x38\x41\x4a\x53\x5c\x65\x6e\x77" + "\x80\x89\x92\x9b\xa4\xad\xb6\xbf" + "\xc8\xd1\xda\xe3\xec\xf5\xfe\x07" + "\x10\x19\x22\x2b\x34\x3d\x46\x4f" + "\x58\x61\x6a\x73\x7c\x85\x8e\x97" + "\xa0\xa9\xb2\xbb\xc4\xcd\xd6\xdf" + 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"\xa8\xbb\xce\xe1\xf4\x07\x1a\x2d" + "\x40\x53\x66\x79\x8c\x9f\xb2\xc5" + "\xd8\xeb\xfe\x11\x24\x37\x4a\x5d" + "\x70\x83\x96\xa9\xbc\xcf\xe2\xf5" + "\x08\x1b\x2e\x41\x54\x67\x7a\x8d" + "\xa0\xb3\xc6\xd9\xec\xff\x12\x25" + "\x38\x4b\x5e\x71\x84\x97\xaa\xbd" + "\xd0\xe3\xf6\x09\x1c\x2f\x42\x55" + "\x68\x7b\x8e\xa1\xb4\xc7\xda\xed" + "\x00\x15\x2a\x3f\x54\x69\x7e\x93" + "\xa8\xbd\xd2\xe7\xfc\x11\x26\x3b" + "\x50\x65\x7a\x8f\xa4\xb9\xce\xe3" + "\xf8\x0d\x22\x37\x4c\x61\x76\x8b" + "\xa0\xb5\xca\xdf\xf4\x09\x1e\x33" + "\x48\x5d\x72\x87\x9c\xb1\xc6\xdb" + "\xf0\x05\x1a\x2f\x44\x59\x6e\x83" + "\x98\xad\xc2\xd7\xec\x01\x16\x2b" + "\x40\x55\x6a\x7f\x94\xa9\xbe\xd3" + "\xe8\xfd\x12\x27\x3c\x51\x66\x7b" + "\x90\xa5\xba\xcf\xe4\xf9\x0e\x23" + "\x38\x4d\x62\x77\x8c\xa1\xb6\xcb" + "\xe0\xf5\x0a\x1f\x34\x49\x5e\x73" + "\x88\x9d\xb2\xc7\xdc\xf1\x06\x1b" + "\x30\x45\x5a\x6f\x84\x99\xae\xc3" + "\xd8\xed\x02\x17\x2c\x41\x56\x6b" + "\x80\x95\xaa\xbf\xd4\xe9\xfe\x13" + "\x28\x3d\x52\x67\x7c\x91\xa6\xbb" + "\xd0\xe5\xfa\x0f\x24\x39\x4e\x63" + "\x78\x8d\xa2\xb7\xcc\xe1\xf6\x0b" + "\x20\x35\x4a\x5f\x74\x89\x9e\xb3" + "\xc8\xdd\xf2\x07\x1c\x31\x46\x5b" + "\x70\x85\x9a\xaf\xc4\xd9\xee\x03" + "\x18\x2d\x42\x57\x6c\x81\x96\xab" + "\xc0\xd5\xea\xff\x14\x29\x3e\x53" + "\x68\x7d\x92\xa7\xbc\xd1\xe6\xfb" + "\x10\x25\x3a\x4f\x64\x79\x8e\xa3" + "\xb8\xcd\xe2\xf7\x0c\x21\x36\x4b" + "\x60\x75\x8a\x9f\xb4\xc9\xde\xf3" + "\x08\x1d\x32\x47\x5c\x71\x86\x9b" + "\xb0\xc5\xda\xef\x04\x19\x2e\x43" + "\x58\x6d\x82\x97\xac\xc1\xd6\xeb" + "\x00\x17\x2e\x45\x5c\x73\x8a\xa1" + "\xb8\xcf\xe6\xfd\x14\x2b\x42\x59" + "\x70\x87\x9e\xb5\xcc\xe3\xfa\x11" + "\x28\x3f\x56\x6d\x84\x9b\xb2\xc9" + "\xe0\xf7\x0e\x25\x3c\x53\x6a\x81" + "\x98\xaf\xc6\xdd\xf4\x0b\x22\x39" + "\x50\x67\x7e\x95\xac\xc3\xda\xf1" + "\x08\x1f\x36\x4d\x64\x7b\x92\xa9" + "\xc0\xd7\xee\x05\x1c\x33\x4a\x61" + "\x78\x8f\xa6\xbd\xd4\xeb\x02\x19" + "\x30\x47\x5e\x75\x8c\xa3\xba\xd1" + "\xe8\xff\x16\x2d\x44\x5b\x72\x89" + "\xa0\xb7\xce\xe5\xfc\x13\x2a\x41" + "\x58\x6f\x86\x9d\xb4\xcb\xe2\xf9" + "\x10\x27\x3e\x55\x6c\x83\x9a\xb1" + "\xc8\xdf\xf6\x0d\x24\x3b\x52\x69" + "\x80\x97\xae\xc5\xdc\xf3\x0a\x21" + "\x38\x4f\x66\x7d\x94\xab\xc2\xd9" + "\xf0\x07\x1e\x35\x4c\x63\x7a\x91" + "\xa8\xbf\xd6\xed\x04\x1b\x32\x49" + "\x60\x77\x8e\xa5\xbc\xd3\xea\x01" + "\x18\x2f\x46\x5d\x74\x8b\xa2\xb9" + "\xd0\xe7\xfe\x15\x2c\x43\x5a\x71" + "\x88\x9f\xb6\xcd\xe4\xfb\x12\x29" + "\x40\x57\x6e\x85\x9c\xb3\xca\xe1" + "\xf8\x0f\x26\x3d\x54\x6b\x82\x99" + "\xb0\xc7\xde\xf5\x0c\x23\x3a\x51" + "\x68\x7f\x96\xad\xc4\xdb\xf2\x09" + "\x20\x37\x4e\x65\x7c\x93\xaa\xc1" + "\xd8\xef\x06\x1d\x34\x4b\x62\x79" + "\x90\xa7\xbe\xd5\xec\x03\x1a\x31" + "\x48\x5f\x76\x8d\xa4\xbb\xd2\xe9" + "\x00\x19\x32\x4b\x64\x7d\x96\xaf" + "\xc8\xe1\xfa\x13\x2c\x45\x5e\x77" + "\x90\xa9\xc2\xdb\xf4\x0d\x26\x3f" + "\x58\x71\x8a\xa3\xbc\xd5\xee\x07" + "\x20\x39\x52\x6b\x84\x9d\xb6\xcf" + "\xe8\x01\x1a\x33\x4c\x65\x7e\x97" + "\xb0\xc9\xe2\xfb\x14\x2d\x46\x5f" + "\x78\x91\xaa\xc3\xdc\xf5\x0e\x27" + "\x40\x59\x72\x8b\xa4\xbd\xd6\xef" + "\x08\x21\x3a\x53\x6c\x85\x9e\xb7" + "\xd0\xe9\x02\x1b\x34\x4d\x66\x7f" + "\x98\xb1\xca\xe3\xfc\x15\x2e\x47" + "\x60\x79\x92\xab\xc4\xdd\xf6\x0f" + "\x28\x41\x5a\x73\x8c\xa5\xbe\xd7" + "\xf0\x09\x22\x3b\x54\x6d\x86\x9f" + "\xb8\xd1\xea\x03\x1c\x35\x4e\x67" + "\x80\x99\xb2\xcb\xe4\xfd\x16\x2f" + "\x48\x61\x7a\x93\xac\xc5\xde\xf7" + "\x10\x29\x42\x5b\x74\x8d\xa6\xbf" + "\xd8\xf1\x0a\x23\x3c\x55\x6e\x87" + "\xa0\xb9\xd2\xeb\x04\x1d\x36\x4f" + "\x68\x81\x9a\xb3\xcc\xe5\xfe\x17" + "\x30\x49\x62\x7b\x94\xad\xc6\xdf" + "\xf8\x11\x2a\x43\x5c\x75\x8e\xa7" + "\xc0\xd9\xf2\x0b\x24\x3d\x56\x6f" + "\x88\xa1\xba\xd3\xec\x05\x1e\x37" + "\x50\x69\x82\x9b\xb4\xcd\xe6\xff" + "\x18\x31\x4a\x63\x7c\x95\xae\xc7" + "\xe0\xf9\x12\x2b\x44\x5d\x76\x8f" + "\xa8\xc1\xda\xf3\x0c\x25\x3e\x57" + "\x70\x89\xa2\xbb\xd4\xed\x06\x1f" + "\x38\x51\x6a\x83\x9c\xb5\xce\xe7" + "\x00\x1b\x36\x51\x6c\x87\xa2\xbd" + "\xd8\xf3\x0e\x29\x44\x5f\x7a\x95" + "\xb0\xcb\xe6\x01\x1c\x37\x52\x6d" + "\x88\xa3\xbe\xd9\xf4\x0f\x2a\x45" + "\x60\x7b\x96\xb1\xcc\xe7\x02\x1d" + "\x38\x53\x6e\x89\xa4\xbf\xda\xf5" + "\x10\x2b\x46\x61\x7c\x97\xb2\xcd" + "\xe8\x03\x1e\x39\x54\x6f\x8a\xa5" + "\xc0\xdb\xf6\x11\x2c\x47\x62\x7d" + "\x98\xb3\xce\xe9\x04\x1f\x3a\x55" + "\x70\x8b\xa6\xc1\xdc\xf7\x12\x2d" + "\x48\x63\x7e\x99\xb4\xcf\xea\x05" + "\x20\x3b\x56\x71\x8c\xa7\xc2\xdd" + "\xf8\x13\x2e\x49\x64\x7f\x9a\xb5" + "\xd0\xeb\x06\x21\x3c\x57\x72\x8d" + "\xa8\xc3\xde\xf9\x14\x2f\x4a\x65" + "\x80\x9b\xb6\xd1\xec\x07\x22\x3d" + "\x58\x73\x8e\xa9\xc4\xdf\xfa\x15" + "\x30\x4b\x66\x81\x9c\xb7\xd2\xed" + "\x08\x23\x3e\x59\x74\x8f\xaa\xc5" + "\xe0\xfb\x16\x31\x4c\x67\x82\x9d" + "\xb8\xd3\xee\x09\x24\x3f\x5a\x75" + "\x90\xab\xc6\xe1\xfc\x17\x32\x4d" + "\x68\x83\x9e\xb9\xd4\xef\x0a\x25" + "\x40\x5b\x76\x91\xac\xc7\xe2\xfd" + "\x18\x33\x4e\x69\x84\x9f\xba\xd5" + "\xf0\x0b\x26\x41\x5c\x77\x92\xad" + "\xc8\xe3\xfe\x19\x34\x4f\x6a\x85" + "\xa0\xbb\xd6\xf1\x0c\x27\x42\x5d" + "\x78\x93\xae\xc9\xe4\xff\x1a\x35" + "\x50\x6b\x86\xa1\xbc\xd7\xf2\x0d" + "\x28\x43\x5e\x79\x94\xaf\xca\xe5" + "\x00\x1d\x3a\x57\x74\x91\xae\xcb" + "\xe8\x05\x22\x3f\x5c\x79\x96\xb3" + "\xd0\xed\x0a\x27\x44\x61\x7e\x9b" + "\xb8\xd5\xf2\x0f\x2c\x49\x66\x83" + "\xa0\xbd\xda\xf7\x14\x31\x4e\x6b" + "\x88\xa5\xc2\xdf\xfc\x19\x36\x53" + "\x70\x8d\xaa\xc7\xe4\x01\x1e\x3b" + "\x58\x75\x92\xaf\xcc\xe9\x06\x23" + "\x40\x5d\x7a\x97\xb4\xd1\xee\x0b" + "\x28\x45\x62\x7f\x9c\xb9\xd6\xf3" + "\x10\x2d\x4a\x67\x84\xa1\xbe\xdb" + "\xf8\x15\x32\x4f\x6c\x89\xa6\xc3" + "\xe0\xfd\x1a\x37\x54\x71\x8e\xab" + "\xc8\xe5\x02\x1f\x3c\x59\x76\x93" + "\xb0\xcd\xea\x07\x24\x41\x5e\x7b" + "\x98\xb5\xd2\xef\x0c\x29\x46\x63" + "\x80\x9d\xba\xd7\xf4\x11\x2e\x4b" + "\x68\x85\xa2\xbf\xdc\xf9\x16\x33" + "\x50\x6d\x8a\xa7\xc4\xe1\xfe\x1b" + "\x38\x55\x72\x8f\xac\xc9\xe6\x03" + "\x20\x3d\x5a\x77\x94\xb1\xce\xeb" + "\x08\x25\x42\x5f\x7c\x99\xb6\xd3" + "\xf0\x0d\x2a\x47\x64\x81\x9e\xbb" + "\xd8\xf5\x12\x2f\x4c\x69\x86\xa3" + "\xc0\xdd\xfa\x17\x34\x51\x6e\x8b" + "\xa8\xc5\xe2\xff\x1c\x39\x56\x73" + "\x90\xad\xca\xe7\x04\x21\x3e\x5b" + "\x78\x95\xb2\xcf\xec\x09\x26\x43" + "\x60\x7d\x9a\xb7\xd4\xf1\x0e\x2b" + "\x48\x65\x82\x9f\xbc\xd9\xf6\x13" + "\x30\x4d\x6a\x87\xa4\xc1\xde\xfb" + "\x18\x35\x52\x6f\x8c\xa9\xc6\xe3" + "\x00\x1f\x3e\x5d\x7c\x9b\xba\xd9" + "\xf8\x17\x36\x55\x74\x93\xb2\xd1" + "\xf0\x0f\x2e\x4d\x6c\x8b\xaa\xc9" + "\xe8\x07\x26\x45\x64\x83\xa2\xc1" + "\xe0\xff\x1e\x3d\x5c\x7b\x9a\xb9" + "\xd8\xf7\x16\x35\x54\x73\x92\xb1" + "\xd0\xef\x0e\x2d\x4c\x6b\x8a\xa9" + "\xc8\xe7\x06\x25\x44\x63\x82\xa1" + "\xc0\xdf\xfe\x1d\x3c\x5b\x7a\x99" + "\xb8\xd7\xf6\x15\x34\x53\x72\x91" + "\xb0\xcf\xee\x0d\x2c\x4b\x6a\x89" + "\xa8\xc7\xe6\x05\x24\x43\x62\x81" + "\xa0\xbf\xde\xfd\x1c\x3b\x5a\x79" + "\x98\xb7\xd6\xf5\x14\x33\x52\x71" + "\x90\xaf\xce\xed\x0c\x2b\x4a\x69" + "\x88\xa7\xc6\xe5\x04\x23\x42\x61" + "\x80\x9f\xbe\xdd\xfc\x1b\x3a\x59" + "\x78\x97\xb6\xd5\xf4\x13\x32\x51" + "\x70\x8f\xae\xcd\xec\x0b\x2a\x49" + "\x68\x87\xa6\xc5\xe4\x03\x22\x41" + "\x60\x7f\x9e\xbd\xdc\xfb\x1a\x39" + "\x58\x77\x96\xb5\xd4\xf3\x12\x31" + "\x50\x6f\x8e\xad\xcc\xeb\x0a\x29" + "\x48\x67\x86\xa5\xc4\xe3\x02\x21" + "\x40\x5f\x7e\x9d\xbc\xdb\xfa\x19" + "\x38\x57\x76\x95\xb4\xd3\xf2\x11" + "\x30\x4f\x6e\x8d\xac\xcb\xea\x09" + "\x28\x47\x66\x85\xa4\xc3\xe2\x01" + "\x20\x3f\x5e\x7d\x9c\xbb\xda\xf9" + "\x18\x37\x56\x75\x94\xb3\xd2\xf1" + "\x10\x2f\x4e\x6d\x8c\xab\xca\xe9" + "\x08\x27\x46\x65\x84\xa3\xc2\xe1" + "\x00\x21\x42\x63", + .ilen = 4100, + .result = + "\xb5\x81\xf5\x64\x18\x73\xe3\xf0" + "\x4c\x13\xf2\x77\x18\x60\x65\x5e" + "\x29\x01\xce\x98\x55\x53\xf9\x0c" + "\x2a\x08\xd5\x09\xb3\x57\x55\x56" + "\xc5\xe9\x56\x90\xcb\x6a\xa3\xc0" + "\xff\xc4\x79\xb4\xd2\x97\x5d\xc4" + "\x43\xd1\xfe\x94\x7b\x88\x06\x5a" + "\xb2\x9e\x2c\xfc\x44\x03\xb7\x90" + "\xa0\xc1\xba\x6a\x33\xb8\xc7\xb2" + "\x9d\xe1\x12\x4f\xc0\x64\xd4\x01" + "\xfe\x8c\x7a\x66\xf7\xe6\x5a\x91" + "\xbb\xde\x56\x86\xab\x65\x21\x30" + "\x00\x84\x65\x24\xa5\x7d\x85\xb4" + "\xe3\x17\xed\x3a\xb7\x6f\xb4\x0b" + "\x0b\xaf\x15\xae\x5a\x8f\xf2\x0c" + "\x2f\x27\xf4\x09\xd8\xd2\x96\xb7" + "\x71\xf2\xc5\x99\x4d\x7e\x7f\x75" + "\x77\x89\x30\x8b\x59\xdb\xa2\xb2" + "\xa0\xf3\x19\x39\x2b\xc5\x7e\x3f" + "\x4f\xd9\xd3\x56\x28\x97\x44\xdc" + "\xc0\x8b\x77\x24\xd9\x52\xe7\xc5" + "\xaf\xf6\x7d\x59\xb2\x44\x05\x1d" + "\xb1\xb0\x11\xa5\x0f\xec\x33\xe1" + "\x6d\x1b\x4e\x1f\xff\x57\x91\xb4" + "\x5b\x9a\x96\xc5\x53\xbc\xae\x20" + "\x3c\xbb\x14\xe2\xe8\x22\x33\xc1" + "\x5e\x76\x9e\x46\x99\xf6\x2a\x15" + "\xc6\x97\x02\xa0\x66\x43\xd1\xa6" + "\x31\xa6\x9f\xfb\xf4\xd3\x69\xe5" + "\xcd\x76\x95\xb8\x7a\x82\x7f\x21" + "\x45\xff\x3f\xce\x55\xf6\x95\x10" + "\x08\x77\x10\x43\xc6\xf3\x09\xe5" + "\x68\xe7\x3c\xad\x00\x52\x45\x0d" + "\xfe\x2d\xc6\xc2\x94\x8c\x12\x1d" + "\xe6\x25\xae\x98\x12\x8e\x19\x9c" + "\x81\x68\xb1\x11\xf6\x69\xda\xe3" + "\x62\x08\x18\x7a\x25\x49\x28\xac" + "\xba\x71\x12\x0b\xe4\xa2\xe5\xc7" + "\x5d\x8e\xec\x49\x40\x21\xbf\x5a" + "\x98\xf3\x02\x68\x55\x03\x7f\x8a" + 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"\xd6\x2e\xff\x24\xd8\x71\x6c\xed" + "\xaf\x55\xeb\x22\xac\x93\x68\x32" + "\x05\x5b\x47\xdd\xc6\x4a\xcb\xc7" + "\x10\xe1\x3c\x92\x1a\xf3\x23\x78" + "\x2b\xa1\xd2\x80\xf4\x12\xb1\x20" + "\x8f\xff\x26\x35\xdd\xfb\xc7\x4e" + "\x78\xf1\x2d\x50\x12\x77\xa8\x60" + "\x7c\x0f\xf5\x16\x2f\x63\x70\x2a" + "\xc0\x96\x80\x4e\x0a\xb4\x93\x35" + "\x5d\x1d\x3f\x56\xf7\x2f\xbb\x90" + "\x11\x16\x8f\xa2\xec\x47\xbe\xac" + "\x56\x01\x26\x56\xb1\x8c\xb2\x10" + "\xf9\x1a\xca\xf5\xd1\xb7\x39\x20" + "\x63\xf1\x69\x20\x4f\x13\x12\x1f" + "\x5b\x65\xfc\x98\xf7\xc4\x7a\xbe" + "\xf7\x26\x4d\x2b\x84\x7b\x42\xad" + "\xd8\x7a\x0a\xb4\xd8\x74\xbf\xc1" + "\xf0\x6e\xb4\x29\xa3\xbb\xca\x46" + "\x67\x70\x6a\x2d\xce\x0e\xa2\x8a" + "\xa9\x87\xbf\x05\xc4\xc1\x04\xa3" + "\xab\xd4\x45\x43\x8c\xb6\x02\xb0" + "\x41\xc8\xfc\x44\x3d\x59\xaa\x2e" + "\x44\x21\x2a\x8d\x88\x9d\x57\xf4" + "\xa0\x02\x77\xb8\xa6\xa0\xe6\x75" + "\x5c\x82\x65\x3e\x03\x5c\x29\x8f" + "\x38\x55\xab\x33\x26\xef\x9f\x43" + "\x52\xfd\x68\xaf\x36\xb4\xbb\x9a" + "\x58\x09\x09\x1b\xc3\x65\x46\x46" + "\x1d\xa7\x94\x18\x23\x50\x2c\xca" + "\x2c\x55\x19\x97\x01\x9d\x93\x3b" + "\x63\x86\xf2\x03\x67\x45\xd2\x72" + "\x28\x52\x6c\xf4\xe3\x1c\xb5\x11" + "\x13\xf1\xeb\x21\xc7\xd9\x56\x82" + "\x2b\x82\x39\xbd\x69\x54\xed\x62" + "\xc3\xe2\xde\x73\xd4\x6a\x12\xae" + "\x13\x21\x7f\x4b\x5b\xfc\xbf\xe8" + "\x2b\xbe\x56\xba\x68\x8b\x9a\xb1" + "\x6e\xfa\xbf\x7e\x5a\x4b\xf1\xac" + "\x98\x65\x85\xd1\x93\x53\xd3\x7b" + "\x09\xdd\x4b\x10\x6d\x84\xb0\x13" + "\x65\xbd\xcf\x52\x09\xc4\x85\xe2" + "\x84\x74\x15\x65\xb7\xf7\x51\xaf" + "\x55\xad\xa4\xd1\x22\x54\x70\x94" + "\xa0\x1c\x90\x41\xfd\x99\xd7\x5a" + "\x31\xef\xaa\x25\xd0\x7f\x4f\xea" + "\x1d\x55\x42\xe5\x49\xb0\xd0\x46" + "\x62\x36\x43\xb2\x82\x15\x75\x50" + "\xa4\x72\xeb\x54\x27\x1f\x8a\xe4" + "\x7d\xe9\x66\xc5\xf1\x53\xa4\xd1" + "\x0c\xeb\xb8\xf8\xbc\xd4\xe2\xe7" + "\xe1\xf8\x4b\xcb\xa9\xa1\xaf\x15" + "\x83\xcb\x72\xd0\x33\x79\x00\x2d" + "\x9f\xd7\xf1\x2e\x1e\x10\xe4\x45" + "\xc0\x75\x3a\x39\xea\x68\xf7\x5d" + "\x1b\x73\x8f\xe9\x8e\x0f\x72\x47" + "\xae\x35\x0a\x31\x7a\x14\x4d\x4a" + "\x6f\x47\xf7\x7e\x91\x6e\x74\x8b" + "\x26\x47\xf9\xc3\xf9\xde\x70\xf5" + "\x61\xab\xa9\x27\x9f\x82\xe4\x9c" + "\x89\x91\x3f\x2e\x6a\xfd\xb5\x49" + "\xe9\xfd\x59\x14\x36\x49\x40\x6d" + "\x32\xd8\x85\x42\xf3\xa5\xdf\x0c" + "\xa8\x27\xd7\x54\xe2\x63\x2f\xf2" + "\x7e\x8b\x8b\xe7\xf1\x9a\x95\x35" + "\x43\xdc\x3a\xe4\xb6\xf4\xd0\xdf" + "\x9c\xcb\x94\xf3\x21\xa0\x77\x50" + "\xe2\xc6\xc4\xc6\x5f\x09\x64\x5b" + "\x92\x90\xd8\xe1\xd1\xed\x4b\x42" + "\xd7\x37\xaf\x65\x3d\x11\x39\xb6" + "\x24\x8a\x60\xae\xd6\x1e\xbf\x0e" + "\x0d\xd7\xdc\x96\x0e\x65\x75\x4e" + "\x29\x06\x9d\xa4\x51\x3a\x10\x63" + "\x8f\x17\x07\xd5\x8e\x3c\xf4\x28" + "\x00\x5a\x5b\x05\x19\xd8\xc0\x6c" + "\xe5\x15\xe4\x9c\x9d\x71\x9d\x5e" + "\x94\x29\x1a\xa7\x80\xfa\x0e\x33" + "\x03\xdd\xb7\x3e\x9a\xa9\x26\x18" + "\x37\xa9\x64\x08\x4d\x94\x5a\x88" + "\xca\x35\xce\x81\x02\xe3\x1f\x1b" + "\x89\x1a\x77\x85\xe3\x41\x6d\x32" + "\x42\x19\x23\x7d\xc8\x73\xee\x25" + "\x85\x0d\xf8\x31\x25\x79\x1b\x6f" + "\x79\x25\xd2\xd8\xd4\x23\xfd\xf7" + "\x82\x36\x6a\x0c\x46\x22\x15\xe9" + "\xff\x72\x41\x91\x91\x7d\x3a\xb7" + "\xdd\x65\x99\x70\xf6\x8d\x84\xf8" + "\x67\x15\x20\x11\xd6\xb2\x55\x7b" + "\xdb\x87\xee\xef\x55\x89\x2a\x59" + "\x2b\x07\x8f\x43\x8a\x59\x3c\x01" + "\x8b\x65\x54\xa1\x66\xd5\x38\xbd" + "\xc6\x30\xa9\xcc\x49\xb6\xa8\x1b" + "\xb8\xc0\x0e\xe3\x45\x28\xe2\xff" + "\x41\x9f\x7e\x7c\xd1\xae\x9e\x25" + "\x3f\x4c\x7c\x7c\xf4\xa8\x26\x4d" + "\x5c\xfd\x4b\x27\x18\xf9\x61\x76" + "\x48\xba\x0c\x6b\xa9\x4d\xfc\xf5" + "\x3b\x35\x7e\x2f\x4a\xa9\xc2\x9a" + "\xae\xab\x86\x09\x89\xc9\xc2\x40" + "\x39\x2c\x81\xb3\xb8\x17\x67\xc2" + "\x0d\x32\x4a\x3a\x67\x81\xd7\x1a" + "\x34\x52\xc5\xdb\x0a\xf5\x63\x39" + "\xea\x1f\xe1\x7c\xa1\x9e\xc1\x35" + "\xe3\xb1\x18\x45\x67\xf9\x22\x38" + "\x95\xd9\x34\x34\x86\xc6\x41\x94" + "\x15\xf9\x5b\x41\xa6\x87\x8b\xf8" + "\xd5\xe1\x1b\xe2\x5b\xf3\x86\x10" + "\xff\xe6\xae\x69\x76\xbc\x0d\xb4" + "\x09\x90\x0c\xa2\x65\x0c\xad\x74" + "\xf5\xd7\xff\xda\xc1\xce\x85\xbe" + "\x00\xa7\xff\x4d\x2f\x65\xd3\x8c" + "\x86\x2d\x05\xe8\xed\x3e\x6b\x8b" + "\x0f\x3d\x83\x8c\xf1\x1d\x5b\x96" + "\x2e\xb1\x9c\xc2\x98\xe1\x70\xb9" + "\xba\x5c\x8a\x43\xd6\x34\xa7\x2d" + "\xc9\x92\xae\xf2\xa5\x7b\x05\x49" + "\xa7\x33\x34\x86\xca\xe4\x96\x23" + "\x76\x5b\xf2\xc6\xf1\x51\x28\x42" + "\x7b\xcc\x76\x8f\xfa\xa2\xad\x31" + "\xd4\xd6\x7a\x6d\x25\x25\x54\xe4" + "\x3f\x50\x59\xe1\x5c\x05\xb7\x27" + "\x48\xbf\x07\xec\x1b\x13\xbe\x2b" + "\xa1\x57\x2b\xd5\xab\xd7\xd0\x4c" + "\x1e\xcb\x71\x9b\xc5\x90\x85\xd3" + "\xde\x59\xec\x71\xeb\x89\xbb\xd0" + "\x09\x50\xe1\x16\x3f\xfd\x1c\x34" + "\xc3\x1c\xa1\x10\x77\x53\x98\xef" + "\xf2\xfd\xa5\x01\x59\xc2\x9b\x26" + "\xc7\x42\xd9\x49\xda\x58\x2b\x6e" + "\x9f\x53\x19\x76\x7e\xd9\xc9\x0e" + "\x68\xc8\x7f\x51\x22\x42\xef\x49" + "\xa4\x55\xb6\x36\xac\x09\xc7\x31" + "\x88\x15\x4b\x2e\x8f\x3a\x08\xf7" + "\xd8\xf7\xa8\xc5\xa9\x33\xa6\x45" + "\xe4\xc4\x94\x76\xf3\x0d\x8f\x7e" + "\xc8\xf6\xbc\x23\x0a\xb6\x4c\xd3" + "\x6a\xcd\x36\xc2\x90\x5c\x5c\x3c" + "\x65\x7b\xc2\xd6\xcc\xe6\x0d\x87" + "\x73\x2e\x71\x79\x16\x06\x63\x28" + "\x09\x15\xd8\x89\x38\x38\x3d\xb5" + "\x42\x1c\x08\x24\xf7\x2a\xd2\x9d" + "\xc8\xca\xef\xf9\x27\xd8\x07\x86" + "\xf7\x43\x0b\x55\x15\x3f\x9f\x83" + "\xef\xdc\x49\x9d\x2a\xc1\x54\x62" + "\xbd\x9b\x66\x55\x9f\xb7\x12\xf3" + "\x1b\x4d\x9d\x2a\x5c\xed\x87\x75" + "\x87\x26\xec\x61\x2c\xb4\x0f\x89" + "\xb0\xfb\x2e\x68\x5d\x15\xc7\x8d" + "\x2e\xc0\xd9\xec\xaf\x4f\xd2\x25" + "\x29\xe8\xd2\x26\x2b\x67\xe9\xfc" + "\x2b\xa8\x67\x96\x12\x1f\x5b\x96" + "\xc6\x14\x53\xaf\x44\xea\xd6\xe2" + "\x94\x98\xe4\x12\x93\x4c\x92\xe0" + "\x18\xa5\x8d\x2d\xe4\x71\x3c\x47" + "\x4c\xf7\xe6\x47\x9e\xc0\x68\xdf" + "\xd4\xf5\x5a\x74\xb1\x2b\x29\x03" + "\x19\x07\xaf\x90\x62\x5c\x68\x98" + "\x48\x16\x11\x02\x9d\xee\xb4\x9b" + "\xe5\x42\x7f\x08\xfd\x16\x32\x0b" + "\xd0\xb3\xfa\x2b\xb7\x99\xf9\x29" + "\xcd\x20\x45\x9f\xb3\x1a\x5d\xa2" + "\xaf\x4d\xe0\xbd\x42\x0d\xbc\x74" + "\x99\x9c\x8e\x53\x1a\xb4\x3e\xbd" + "\xa2\x9a\x2d\xf7\xf8\x39\x0f\x67" + "\x63\xfc\x6b\xc0\xaf\xb3\x4b\x4f" + "\x55\xc4\xcf\xa7\xc8\x04\x11\x3e" + "\x14\x32\xbb\x1b\x38\x77\xd6\x7f" + "\x54\x4c\xdf\x75\xf3\x07\x2d\x33" + "\x9b\xa8\x20\xe1\x7b\x12\xb5\xf3" + "\xef\x2f\xce\x72\xe5\x24\x60\xc1" + "\x30\xe2\xab\xa1\x8e\x11\x09\xa8" + "\x21\x33\x44\xfe\x7f\x35\x32\x93" + "\x39\xa7\xad\x8b\x79\x06\xb2\xcb" + "\x4e\xa9\x5f\xc7\xba\x74\x29\xec" + "\x93\xa0\x4e\x54\x93\xc0\xbc\x55" + "\x64\xf0\x48\xe5\x57\x99\xee\x75" + "\xd6\x79\x0f\x66\xb7\xc6\x57\x76" + "\xf7\xb7\xf3\x9c\xc5\x60\xe8\x7f" + "\x83\x76\xd6\x0e\xaa\xe6\x90\x39" + "\x1d\xa6\x32\x6a\x34\xe3\x55\xf8" + "\x58\xa0\x58\x7d\x33\xe0\x22\x39" + "\x44\x64\x87\x86\x5a\x2f\xa7\x7e" + "\x0f\x38\xea\xb0\x30\xcc\x61\xa5" + "\x6a\x32\xae\x1e\xf7\xe9\xd0\xa9" + "\x0c\x32\x4b\xb5\x49\x28\xab\x85" + "\x2f\x8e\x01\x36\x38\x52\xd0\xba" + "\xd6\x02\x78\xf8\x0e\x3e\x9c\x8b" + "\x6b\x45\x99\x3f\x5c\xfe\x58\xf1" + "\x5c\x94\x04\xe1\xf5\x18\x6d\x51" + "\xb2\x5d\x18\x20\xb6\xc2\x9a\x42" + "\x1d\xb3\xab\x3c\xb6\x3a\x13\x03" + "\xb2\x46\x82\x4f\xfc\x64\xbc\x4f" + "\xca\xfa\x9c\xc0\xd5\xa7\xbd\x11" + "\xb7\xe4\x5a\xf6\x6f\x4d\x4d\x54" + "\xea\xa4\x98\x66\xd4\x22\x3b\xd3" + "\x8f\x34\x47\xd9\x7c\xf4\x72\x3b" + "\x4d\x02\x77\xf6\xd6\xdd\x08\x0a" + "\x81\xe1\x86\x89\x3e\x56\x10\x3c" + "\xba\xd7\x81\x8c\x08\xbc\x8b\xe2" + "\x53\xec\xa7\x89\xee\xc8\x56\xb5" + "\x36\x2c\xb2\x03\xba\x99\xdd\x7c" + "\x48\xa0\xb0\xbc\x91\x33\xe9\xa8" + "\xcb\xcd\xcf\x59\x5f\x1f\x15\xe2" + "\x56\xf5\x4e\x01\x35\x27\x45\x77" + "\x47\xc8\xbc\xcb\x7e\x39\xc1\x97" + "\x28\xd3\x84\xfc\x2c\x3e\xc8\xad" + "\x9c\xf8\x8a\x61\x9c\x28\xaa\xc5" + "\x99\x20\x43\x85\x9d\xa5\xe2\x8b" + "\xb8\xae\xeb\xd0\x32\x0d\x52\x78" + "\x09\x56\x3f\xc7\xd8\x7e\x26\xfc" + "\x37\xfb\x6f\x04\xfc\xfa\x92\x10" + "\xac\xf8\x3e\x21\xdc\x8c\x21\x16" + "\x7d\x67\x6e\xf6\xcd\xda\xb6\x98" + "\x23\xab\x23\x3c\xb2\x10\xa0\x53" + "\x5a\x56\x9f\xc5\xd0\xff\xbb\xe4" + "\x98\x3c\x69\x1e\xdb\x38\x8f\x7e" + "\x0f\xd2\x98\x88\x81\x8b\x45\x67" + "\xea\x33\xf1\xeb\xe9\x97\x55\x2e" + "\xd9\xaa\xeb\x5a\xec\xda\xe1\x68" + "\xa8\x9d\x3c\x84\x7c\x05\x3d\x62" + "\x87\x8f\x03\x21\x28\x95\x0c\x89" + "\x25\x22\x4a\xb0\x93\xa9\x50\xa2" + "\x2f\x57\x6e\x18\x42\x19\x54\x0c" + "\x55\x67\xc6\x11\x49\xf4\x5c\xd2" + "\xe9\x3d\xdd\x8b\x48\x71\x21\x00" + "\xc3\x9a\x6c\x85\x74\x28\x83\x4a" + "\x1b\x31\x05\xe1\x06\x92\xe7\xda" + "\x85\x73\x78\x45\x20\x7f\xae\x13" + "\x7c\x33\x06\x22\xf4\x83\xf9\x35" + "\x3f\x6c\x71\xa8\x4e\x48\xbe\x9b" + "\xce\x8a\xba\xda\xbe\x28\x08\xf7" + "\xe2\x14\x8c\x71\xea\x72\xf9\x33" + "\xf2\x88\x3f\xd7\xbb\x69\x6c\x29" + "\x19\xdc\x84\xce\x1f\x12\x4f\xc8" + "\xaf\xa5\x04\xba\x5a\xab\xb0\xd9" + "\x14\x1f\x6c\x68\x98\x39\x89\x7a" + "\xd9\xd8\x2f\xdf\xa8\x47\x4a\x25" + "\xe2\xfb\x33\xf4\x59\x78\xe1\x68" + "\x85\xcf\xfe\x59\x20\xd4\x05\x1d" + "\x80\x99\xae\xbc\xca\xae\x0f\x2f" + "\x65\x43\x34\x8e\x7e\xac\xd3\x93" + "\x2f\xac\x6d\x14\x3d\x02\x07\x70" + "\x9d\xa4\xf3\x1b\x5c\x36\xfc\x01" + "\x73\x34\x85\x0c\x6c\xd6\xf1\xbd" + "\x3f\xdf\xee\xf5\xd9\xba\x56\xef" + "\xf4\x9b\x6b\xee\x9f\x5a\x78\x6d" + "\x32\x19\xf4\xf7\xf8\x4c\x69\x0b" + "\x4b\xbc\xbb\xb7\xf2\x85\xaf\x70" + "\x75\x24\x6c\x54\xa7\x0e\x4d\x1d" + "\x01\xbf\x08\xac\xcf\x7f\x2c\xe3" + "\x14\x89\x5e\x70\x5a\x99\x92\xcd" + "\x01\x84\xc8\xd2\xab\xe5\x4f\x58" + "\xe7\x0f\x2f\x0e\xff\x68\xea\xfd" + "\x15\xb3\x17\xe6\xb0\xe7\x85\xd8" + "\x23\x2e\x05\xc7\xc9\xc4\x46\x1f" + "\xe1\x9e\x49\x20\x23\x24\x4d\x7e" + "\x29\x65\xff\xf4\xb6\xfd\x1a\x85" + "\xc4\x16\xec\xfc\xea\x7b\xd6\x2c" + "\x43\xf8\xb7\xbf\x79\xc0\x85\xcd" + "\xef\xe1\x98\xd3\xa5\xf7\x90\x8c" + "\xe9\x7f\x80\x6b\xd2\xac\x4c\x30" + "\xa7\xc6\x61\x6c\xd2\xf9\x2c\xff" + "\x30\xbc\x22\x81\x7d\x93\x12\xe4" + "\x0a\xcd\xaf\xdd\xe8\xab\x0a\x1e" + "\x13\xa4\x27\xc3\x5f\xf7\x4b\xbb" + "\x37\x09\x4b\x91\x6f\x92\x4f\xaf" + "\x52\xee\xdf\xef\x09\x6f\xf7\x5c" + "\x6e\x12\x17\x72\x63\x57\xc7\xba" + "\x3b\x6b\x38\x32\x73\x1b\x9c\x80" + "\xc1\x7a\xc6\xcf\xcd\x35\xc0\x6b" + "\x31\x1a\x6b\xe9\xd8\x2c\x29\x3f" + "\x96\xfb\xb6\xcd\x13\x91\x3b\xc2" + "\xd2\xa3\x31\x8d\xa4\xcd\x57\xcd" + "\x13\x3d\x64\xfd\x06\xce\xe6\xdc" + "\x0c\x24\x43\x31\x40\x57\xf1\x72" + "\x17\xe3\x3a\x63\x6d\x35\xcf\x5d" + "\x97\x40\x59\xdd\xf7\x3c\x02\xf7" + "\x1c\x7e\x05\xbb\xa9\x0d\x01\xb1" + "\x8e\xc0\x30\xa9\x53\x24\xc9\x89" + "\x84\x6d\xaa\xd0\xcd\x91\xc2\x4d" + "\x91\xb0\x89\xe2\xbf\x83\x44\xaa" + "\x28\x72\x23\xa0\xc2\xad\xad\x1c" + "\xfc\x3f\x09\x7a\x0b\xdc\xc5\x1b" + "\x87\x13\xc6\x5b\x59\x8d\xf2\xc8" + "\xaf\xdf\x11\x95", + .rlen = 4100, + .np = 2, + .tap = { 4064, 36 }, + }, +}; + +/* + * CTS (Cipher Text Stealing) mode tests + */ +#define CTS_MODE_ENC_TEST_VECTORS 6 +#define CTS_MODE_DEC_TEST_VECTORS 6 +static struct cipher_testvec cts_mode_enc_tv_template[] = { + { /* from rfc3962 */ + .klen = 16, + .key = "\x63\x68\x69\x63\x6b\x65\x6e\x20" + "\x74\x65\x72\x69\x79\x61\x6b\x69", + .ilen = 17, + .input = "\x49\x20\x77\x6f\x75\x6c\x64\x20" + "\x6c\x69\x6b\x65\x20\x74\x68\x65" + "\x20", + .rlen = 17, + .result = "\xc6\x35\x35\x68\xf2\xbf\x8c\xb4" + "\xd8\xa5\x80\x36\x2d\xa7\xff\x7f" + "\x97", + }, { + .klen = 16, + .key = "\x63\x68\x69\x63\x6b\x65\x6e\x20" + "\x74\x65\x72\x69\x79\x61\x6b\x69", + .ilen = 31, + .input = "\x49\x20\x77\x6f\x75\x6c\x64\x20" + "\x6c\x69\x6b\x65\x20\x74\x68\x65" + "\x20\x47\x65\x6e\x65\x72\x61\x6c" + "\x20\x47\x61\x75\x27\x73\x20", + .rlen = 31, + .result = "\xfc\x00\x78\x3e\x0e\xfd\xb2\xc1" + "\xd4\x45\xd4\xc8\xef\xf7\xed\x22" + "\x97\x68\x72\x68\xd6\xec\xcc\xc0" + "\xc0\x7b\x25\xe2\x5e\xcf\xe5", + }, { + .klen = 16, + .key = "\x63\x68\x69\x63\x6b\x65\x6e\x20" + "\x74\x65\x72\x69\x79\x61\x6b\x69", + .ilen = 32, + .input = "\x49\x20\x77\x6f\x75\x6c\x64\x20" + "\x6c\x69\x6b\x65\x20\x74\x68\x65" + "\x20\x47\x65\x6e\x65\x72\x61\x6c" + "\x20\x47\x61\x75\x27\x73\x20\x43", + .rlen = 32, + .result = "\x39\x31\x25\x23\xa7\x86\x62\xd5" + "\xbe\x7f\xcb\xcc\x98\xeb\xf5\xa8" + "\x97\x68\x72\x68\xd6\xec\xcc\xc0" + "\xc0\x7b\x25\xe2\x5e\xcf\xe5\x84", + }, { + .klen = 16, + .key = "\x63\x68\x69\x63\x6b\x65\x6e\x20" + "\x74\x65\x72\x69\x79\x61\x6b\x69", + .ilen = 47, + .input = "\x49\x20\x77\x6f\x75\x6c\x64\x20" + "\x6c\x69\x6b\x65\x20\x74\x68\x65" + "\x20\x47\x65\x6e\x65\x72\x61\x6c" + "\x20\x47\x61\x75\x27\x73\x20\x43" + "\x68\x69\x63\x6b\x65\x6e\x2c\x20" + "\x70\x6c\x65\x61\x73\x65\x2c", + .rlen = 47, + .result = "\x97\x68\x72\x68\xd6\xec\xcc\xc0" + "\xc0\x7b\x25\xe2\x5e\xcf\xe5\x84" + "\xb3\xff\xfd\x94\x0c\x16\xa1\x8c" + "\x1b\x55\x49\xd2\xf8\x38\x02\x9e" + "\x39\x31\x25\x23\xa7\x86\x62\xd5" + "\xbe\x7f\xcb\xcc\x98\xeb\xf5", + }, { + .klen = 16, + .key = "\x63\x68\x69\x63\x6b\x65\x6e\x20" + "\x74\x65\x72\x69\x79\x61\x6b\x69", + .ilen = 48, + .input = "\x49\x20\x77\x6f\x75\x6c\x64\x20" + "\x6c\x69\x6b\x65\x20\x74\x68\x65" + "\x20\x47\x65\x6e\x65\x72\x61\x6c" + "\x20\x47\x61\x75\x27\x73\x20\x43" + "\x68\x69\x63\x6b\x65\x6e\x2c\x20" + "\x70\x6c\x65\x61\x73\x65\x2c\x20", + .rlen = 48, + .result = "\x97\x68\x72\x68\xd6\xec\xcc\xc0" + "\xc0\x7b\x25\xe2\x5e\xcf\xe5\x84" + "\x9d\xad\x8b\xbb\x96\xc4\xcd\xc0" + "\x3b\xc1\x03\xe1\xa1\x94\xbb\xd8" + "\x39\x31\x25\x23\xa7\x86\x62\xd5" + "\xbe\x7f\xcb\xcc\x98\xeb\xf5\xa8", + }, { + .klen = 16, + .key = "\x63\x68\x69\x63\x6b\x65\x6e\x20" + "\x74\x65\x72\x69\x79\x61\x6b\x69", + .ilen = 64, + .input = "\x49\x20\x77\x6f\x75\x6c\x64\x20" + "\x6c\x69\x6b\x65\x20\x74\x68\x65" + "\x20\x47\x65\x6e\x65\x72\x61\x6c" + "\x20\x47\x61\x75\x27\x73\x20\x43" + "\x68\x69\x63\x6b\x65\x6e\x2c\x20" + "\x70\x6c\x65\x61\x73\x65\x2c\x20" + "\x61\x6e\x64\x20\x77\x6f\x6e\x74" + "\x6f\x6e\x20\x73\x6f\x75\x70\x2e", + .rlen = 64, + .result = "\x97\x68\x72\x68\xd6\xec\xcc\xc0" + "\xc0\x7b\x25\xe2\x5e\xcf\xe5\x84" + "\x39\x31\x25\x23\xa7\x86\x62\xd5" + "\xbe\x7f\xcb\xcc\x98\xeb\xf5\xa8" + "\x48\x07\xef\xe8\x36\xee\x89\xa5" + "\x26\x73\x0d\xbc\x2f\x7b\xc8\x40" + "\x9d\xad\x8b\xbb\x96\xc4\xcd\xc0" + "\x3b\xc1\x03\xe1\xa1\x94\xbb\xd8", + } +}; + +static struct cipher_testvec cts_mode_dec_tv_template[] = { + { /* from rfc3962 */ + .klen = 16, + .key = "\x63\x68\x69\x63\x6b\x65\x6e\x20" + "\x74\x65\x72\x69\x79\x61\x6b\x69", + .rlen = 17, + .result = "\x49\x20\x77\x6f\x75\x6c\x64\x20" + "\x6c\x69\x6b\x65\x20\x74\x68\x65" + "\x20", + .ilen = 17, + .input = "\xc6\x35\x35\x68\xf2\xbf\x8c\xb4" + "\xd8\xa5\x80\x36\x2d\xa7\xff\x7f" + "\x97", + }, { + .klen = 16, + .key = "\x63\x68\x69\x63\x6b\x65\x6e\x20" + "\x74\x65\x72\x69\x79\x61\x6b\x69", + .rlen = 31, + .result = "\x49\x20\x77\x6f\x75\x6c\x64\x20" + "\x6c\x69\x6b\x65\x20\x74\x68\x65" + "\x20\x47\x65\x6e\x65\x72\x61\x6c" + "\x20\x47\x61\x75\x27\x73\x20", + .ilen = 31, + .input = "\xfc\x00\x78\x3e\x0e\xfd\xb2\xc1" + "\xd4\x45\xd4\xc8\xef\xf7\xed\x22" + "\x97\x68\x72\x68\xd6\xec\xcc\xc0" + "\xc0\x7b\x25\xe2\x5e\xcf\xe5", + }, { + .klen = 16, + .key = "\x63\x68\x69\x63\x6b\x65\x6e\x20" + "\x74\x65\x72\x69\x79\x61\x6b\x69", + .rlen = 32, + .result = "\x49\x20\x77\x6f\x75\x6c\x64\x20" + "\x6c\x69\x6b\x65\x20\x74\x68\x65" + "\x20\x47\x65\x6e\x65\x72\x61\x6c" + "\x20\x47\x61\x75\x27\x73\x20\x43", + .ilen = 32, + .input = "\x39\x31\x25\x23\xa7\x86\x62\xd5" + "\xbe\x7f\xcb\xcc\x98\xeb\xf5\xa8" + "\x97\x68\x72\x68\xd6\xec\xcc\xc0" + "\xc0\x7b\x25\xe2\x5e\xcf\xe5\x84", + }, { + .klen = 16, + .key = "\x63\x68\x69\x63\x6b\x65\x6e\x20" + "\x74\x65\x72\x69\x79\x61\x6b\x69", + .rlen = 47, + .result = "\x49\x20\x77\x6f\x75\x6c\x64\x20" + "\x6c\x69\x6b\x65\x20\x74\x68\x65" + "\x20\x47\x65\x6e\x65\x72\x61\x6c" + "\x20\x47\x61\x75\x27\x73\x20\x43" + "\x68\x69\x63\x6b\x65\x6e\x2c\x20" + "\x70\x6c\x65\x61\x73\x65\x2c", + .ilen = 47, + .input = "\x97\x68\x72\x68\xd6\xec\xcc\xc0" + "\xc0\x7b\x25\xe2\x5e\xcf\xe5\x84" + "\xb3\xff\xfd\x94\x0c\x16\xa1\x8c" + "\x1b\x55\x49\xd2\xf8\x38\x02\x9e" + "\x39\x31\x25\x23\xa7\x86\x62\xd5" + "\xbe\x7f\xcb\xcc\x98\xeb\xf5", + }, { + .klen = 16, + .key = "\x63\x68\x69\x63\x6b\x65\x6e\x20" + "\x74\x65\x72\x69\x79\x61\x6b\x69", + .rlen = 48, + .result = "\x49\x20\x77\x6f\x75\x6c\x64\x20" + "\x6c\x69\x6b\x65\x20\x74\x68\x65" + "\x20\x47\x65\x6e\x65\x72\x61\x6c" + "\x20\x47\x61\x75\x27\x73\x20\x43" + "\x68\x69\x63\x6b\x65\x6e\x2c\x20" + "\x70\x6c\x65\x61\x73\x65\x2c\x20", + .ilen = 48, + .input = "\x97\x68\x72\x68\xd6\xec\xcc\xc0" + "\xc0\x7b\x25\xe2\x5e\xcf\xe5\x84" + "\x9d\xad\x8b\xbb\x96\xc4\xcd\xc0" + "\x3b\xc1\x03\xe1\xa1\x94\xbb\xd8" + "\x39\x31\x25\x23\xa7\x86\x62\xd5" + "\xbe\x7f\xcb\xcc\x98\xeb\xf5\xa8", + }, { + .klen = 16, + .key = "\x63\x68\x69\x63\x6b\x65\x6e\x20" + "\x74\x65\x72\x69\x79\x61\x6b\x69", + .rlen = 64, + .result = "\x49\x20\x77\x6f\x75\x6c\x64\x20" + "\x6c\x69\x6b\x65\x20\x74\x68\x65" + "\x20\x47\x65\x6e\x65\x72\x61\x6c" + "\x20\x47\x61\x75\x27\x73\x20\x43" + "\x68\x69\x63\x6b\x65\x6e\x2c\x20" + "\x70\x6c\x65\x61\x73\x65\x2c\x20" + "\x61\x6e\x64\x20\x77\x6f\x6e\x74" + "\x6f\x6e\x20\x73\x6f\x75\x70\x2e", + .ilen = 64, + .input = "\x97\x68\x72\x68\xd6\xec\xcc\xc0" + "\xc0\x7b\x25\xe2\x5e\xcf\xe5\x84" + "\x39\x31\x25\x23\xa7\x86\x62\xd5" + "\xbe\x7f\xcb\xcc\x98\xeb\xf5\xa8" + "\x48\x07\xef\xe8\x36\xee\x89\xa5" + "\x26\x73\x0d\xbc\x2f\x7b\xc8\x40" + "\x9d\xad\x8b\xbb\x96\xc4\xcd\xc0" + "\x3b\xc1\x03\xe1\xa1\x94\xbb\xd8", + } +}; + +/* + * Compression stuff. + */ +#define COMP_BUF_SIZE 512 + +struct comp_testvec { + int inlen, outlen; + char input[COMP_BUF_SIZE]; + char output[COMP_BUF_SIZE]; +}; + +struct pcomp_testvec { + void *params; + unsigned int paramsize; + int inlen, outlen; + char input[COMP_BUF_SIZE]; + char output[COMP_BUF_SIZE]; +}; + +/* + * Deflate test vectors (null-terminated strings). + * Params: winbits=-11, Z_DEFAULT_COMPRESSION, MAX_MEM_LEVEL. + */ + +#define DEFLATE_COMP_TEST_VECTORS 2 +#define DEFLATE_DECOMP_TEST_VECTORS 2 + +static struct comp_testvec deflate_comp_tv_template[] = { + { + .inlen = 70, + .outlen = 38, + .input = "Join us now and share the software " + "Join us now and share the software ", + .output = "\xf3\xca\xcf\xcc\x53\x28\x2d\x56" + "\xc8\xcb\x2f\x57\x48\xcc\x4b\x51" + "\x28\xce\x48\x2c\x4a\x55\x28\xc9" + "\x48\x55\x28\xce\x4f\x2b\x29\x07" + "\x71\xbc\x08\x2b\x01\x00", + }, { + .inlen = 191, + .outlen = 122, + .input = "This document describes a compression method based on the DEFLATE" + "compression algorithm. This document defines the application of " + "the DEFLATE algorithm to the IP Payload Compression Protocol.", + .output = "\x5d\x8d\x31\x0e\xc2\x30\x10\x04" + "\xbf\xb2\x2f\xc8\x1f\x10\x04\x09" + "\x89\xc2\x85\x3f\x70\xb1\x2f\xf8" + "\x24\xdb\x67\xd9\x47\xc1\xef\x49" + "\x68\x12\x51\xae\x76\x67\xd6\x27" + "\x19\x88\x1a\xde\x85\xab\x21\xf2" + "\x08\x5d\x16\x1e\x20\x04\x2d\xad" + "\xf3\x18\xa2\x15\x85\x2d\x69\xc4" + "\x42\x83\x23\xb6\x6c\x89\x71\x9b" + "\xef\xcf\x8b\x9f\xcf\x33\xca\x2f" + "\xed\x62\xa9\x4c\x80\xff\x13\xaf" + "\x52\x37\xed\x0e\x52\x6b\x59\x02" + "\xd9\x4e\xe8\x7a\x76\x1d\x02\x98" + "\xfe\x8a\x87\x83\xa3\x4f\x56\x8a" + "\xb8\x9e\x8e\x5c\x57\xd3\xa0\x79" + "\xfa\x02", + }, +}; + +static struct comp_testvec deflate_decomp_tv_template[] = { + { + .inlen = 122, + .outlen = 191, + .input = "\x5d\x8d\x31\x0e\xc2\x30\x10\x04" + "\xbf\xb2\x2f\xc8\x1f\x10\x04\x09" + "\x89\xc2\x85\x3f\x70\xb1\x2f\xf8" + "\x24\xdb\x67\xd9\x47\xc1\xef\x49" + "\x68\x12\x51\xae\x76\x67\xd6\x27" + "\x19\x88\x1a\xde\x85\xab\x21\xf2" + "\x08\x5d\x16\x1e\x20\x04\x2d\xad" + "\xf3\x18\xa2\x15\x85\x2d\x69\xc4" + "\x42\x83\x23\xb6\x6c\x89\x71\x9b" + "\xef\xcf\x8b\x9f\xcf\x33\xca\x2f" + "\xed\x62\xa9\x4c\x80\xff\x13\xaf" + "\x52\x37\xed\x0e\x52\x6b\x59\x02" + "\xd9\x4e\xe8\x7a\x76\x1d\x02\x98" + "\xfe\x8a\x87\x83\xa3\x4f\x56\x8a" + "\xb8\x9e\x8e\x5c\x57\xd3\xa0\x79" + "\xfa\x02", + .output = "This document describes a compression method based on the DEFLATE" + "compression algorithm. This document defines the application of " + "the DEFLATE algorithm to the IP Payload Compression Protocol.", + }, { + .inlen = 38, + .outlen = 70, + .input = "\xf3\xca\xcf\xcc\x53\x28\x2d\x56" + "\xc8\xcb\x2f\x57\x48\xcc\x4b\x51" + "\x28\xce\x48\x2c\x4a\x55\x28\xc9" + "\x48\x55\x28\xce\x4f\x2b\x29\x07" + "\x71\xbc\x08\x2b\x01\x00", + .output = "Join us now and share the software " + "Join us now and share the software ", + }, +}; + +#define ZLIB_COMP_TEST_VECTORS 2 +#define ZLIB_DECOMP_TEST_VECTORS 2 + +static const struct { + struct nlattr nla; + int val; +} deflate_comp_params[] = { + { + .nla = { + .nla_len = NLA_HDRLEN + sizeof(int), + .nla_type = ZLIB_COMP_LEVEL, + }, + .val = Z_DEFAULT_COMPRESSION, + }, { + .nla = { + .nla_len = NLA_HDRLEN + sizeof(int), + .nla_type = ZLIB_COMP_METHOD, + }, + .val = Z_DEFLATED, + }, { + .nla = { + .nla_len = NLA_HDRLEN + sizeof(int), + .nla_type = ZLIB_COMP_WINDOWBITS, + }, + .val = -11, + }, { + .nla = { + .nla_len = NLA_HDRLEN + sizeof(int), + .nla_type = ZLIB_COMP_MEMLEVEL, + }, + .val = MAX_MEM_LEVEL, + }, { + .nla = { + .nla_len = NLA_HDRLEN + sizeof(int), + .nla_type = ZLIB_COMP_STRATEGY, + }, + .val = Z_DEFAULT_STRATEGY, + } +}; + +static const struct { + struct nlattr nla; + int val; +} deflate_decomp_params[] = { + { + .nla = { + .nla_len = NLA_HDRLEN + sizeof(int), + .nla_type = ZLIB_DECOMP_WINDOWBITS, + }, + .val = -11, + } +}; + +static struct pcomp_testvec zlib_comp_tv_template[] = { + { + .params = &deflate_comp_params, + .paramsize = sizeof(deflate_comp_params), + .inlen = 70, + .outlen = 38, + .input = "Join us now and share the software " + "Join us now and share the software ", + .output = "\xf3\xca\xcf\xcc\x53\x28\x2d\x56" + "\xc8\xcb\x2f\x57\x48\xcc\x4b\x51" + "\x28\xce\x48\x2c\x4a\x55\x28\xc9" + "\x48\x55\x28\xce\x4f\x2b\x29\x07" + "\x71\xbc\x08\x2b\x01\x00", + }, { + .params = &deflate_comp_params, + .paramsize = sizeof(deflate_comp_params), + .inlen = 191, + .outlen = 122, + .input = "This document describes a compression method based on the DEFLATE" + "compression algorithm. This document defines the application of " + "the DEFLATE algorithm to the IP Payload Compression Protocol.", + .output = "\x5d\x8d\x31\x0e\xc2\x30\x10\x04" + "\xbf\xb2\x2f\xc8\x1f\x10\x04\x09" + "\x89\xc2\x85\x3f\x70\xb1\x2f\xf8" + "\x24\xdb\x67\xd9\x47\xc1\xef\x49" + "\x68\x12\x51\xae\x76\x67\xd6\x27" + "\x19\x88\x1a\xde\x85\xab\x21\xf2" + "\x08\x5d\x16\x1e\x20\x04\x2d\xad" + "\xf3\x18\xa2\x15\x85\x2d\x69\xc4" + "\x42\x83\x23\xb6\x6c\x89\x71\x9b" + "\xef\xcf\x8b\x9f\xcf\x33\xca\x2f" + "\xed\x62\xa9\x4c\x80\xff\x13\xaf" + "\x52\x37\xed\x0e\x52\x6b\x59\x02" + "\xd9\x4e\xe8\x7a\x76\x1d\x02\x98" + "\xfe\x8a\x87\x83\xa3\x4f\x56\x8a" + "\xb8\x9e\x8e\x5c\x57\xd3\xa0\x79" + "\xfa\x02", + }, +}; + +static struct pcomp_testvec zlib_decomp_tv_template[] = { + { + .params = &deflate_decomp_params, + .paramsize = sizeof(deflate_decomp_params), + .inlen = 122, + .outlen = 191, + .input = "\x5d\x8d\x31\x0e\xc2\x30\x10\x04" + "\xbf\xb2\x2f\xc8\x1f\x10\x04\x09" + "\x89\xc2\x85\x3f\x70\xb1\x2f\xf8" + "\x24\xdb\x67\xd9\x47\xc1\xef\x49" + "\x68\x12\x51\xae\x76\x67\xd6\x27" + "\x19\x88\x1a\xde\x85\xab\x21\xf2" + "\x08\x5d\x16\x1e\x20\x04\x2d\xad" + "\xf3\x18\xa2\x15\x85\x2d\x69\xc4" + "\x42\x83\x23\xb6\x6c\x89\x71\x9b" + "\xef\xcf\x8b\x9f\xcf\x33\xca\x2f" + "\xed\x62\xa9\x4c\x80\xff\x13\xaf" + "\x52\x37\xed\x0e\x52\x6b\x59\x02" + "\xd9\x4e\xe8\x7a\x76\x1d\x02\x98" + "\xfe\x8a\x87\x83\xa3\x4f\x56\x8a" + "\xb8\x9e\x8e\x5c\x57\xd3\xa0\x79" + "\xfa\x02", + .output = "This document describes a compression method based on the DEFLATE" + "compression algorithm. This document defines the application of " + "the DEFLATE algorithm to the IP Payload Compression Protocol.", + }, { + .params = &deflate_decomp_params, + .paramsize = sizeof(deflate_decomp_params), + .inlen = 38, + .outlen = 70, + .input = "\xf3\xca\xcf\xcc\x53\x28\x2d\x56" + "\xc8\xcb\x2f\x57\x48\xcc\x4b\x51" + "\x28\xce\x48\x2c\x4a\x55\x28\xc9" + "\x48\x55\x28\xce\x4f\x2b\x29\x07" + "\x71\xbc\x08\x2b\x01\x00", + .output = "Join us now and share the software " + "Join us now and share the software ", + }, +}; + +/* + * LZO test vectors (null-terminated strings). + */ +#define LZO_COMP_TEST_VECTORS 2 +#define LZO_DECOMP_TEST_VECTORS 2 + +static struct comp_testvec lzo_comp_tv_template[] = { + { + .inlen = 70, + .outlen = 46, + .input = "Join us now and share the software " + "Join us now and share the software ", + .output = "\x00\x0d\x4a\x6f\x69\x6e\x20\x75" + "\x73\x20\x6e\x6f\x77\x20\x61\x6e" + "\x64\x20\x73\x68\x61\x72\x65\x20" + "\x74\x68\x65\x20\x73\x6f\x66\x74" + "\x77\x70\x01\x01\x4a\x6f\x69\x6e" + "\x3d\x88\x00\x11\x00\x00", + }, { + .inlen = 159, + .outlen = 133, + .input = "This document describes a compression method based on the LZO " + "compression algorithm. This document defines the application of " + "the LZO algorithm used in UBIFS.", + .output = "\x00\x2b\x54\x68\x69\x73\x20\x64" + "\x6f\x63\x75\x6d\x65\x6e\x74\x20" + "\x64\x65\x73\x63\x72\x69\x62\x65" + "\x73\x20\x61\x20\x63\x6f\x6d\x70" + "\x72\x65\x73\x73\x69\x6f\x6e\x20" + "\x6d\x65\x74\x68\x6f\x64\x20\x62" + "\x61\x73\x65\x64\x20\x6f\x6e\x20" + "\x74\x68\x65\x20\x4c\x5a\x4f\x2b" + "\x8c\x00\x0d\x61\x6c\x67\x6f\x72" + "\x69\x74\x68\x6d\x2e\x20\x20\x54" + "\x68\x69\x73\x2a\x54\x01\x02\x66" + "\x69\x6e\x65\x73\x94\x06\x05\x61" + "\x70\x70\x6c\x69\x63\x61\x74\x76" + "\x0a\x6f\x66\x88\x02\x60\x09\x27" + "\xf0\x00\x0c\x20\x75\x73\x65\x64" + "\x20\x69\x6e\x20\x55\x42\x49\x46" + "\x53\x2e\x11\x00\x00", + }, +}; + +static struct comp_testvec lzo_decomp_tv_template[] = { + { + .inlen = 133, + .outlen = 159, + .input = "\x00\x2b\x54\x68\x69\x73\x20\x64" + "\x6f\x63\x75\x6d\x65\x6e\x74\x20" + "\x64\x65\x73\x63\x72\x69\x62\x65" + "\x73\x20\x61\x20\x63\x6f\x6d\x70" + "\x72\x65\x73\x73\x69\x6f\x6e\x20" + "\x6d\x65\x74\x68\x6f\x64\x20\x62" + "\x61\x73\x65\x64\x20\x6f\x6e\x20" + "\x74\x68\x65\x20\x4c\x5a\x4f\x2b" + "\x8c\x00\x0d\x61\x6c\x67\x6f\x72" + "\x69\x74\x68\x6d\x2e\x20\x20\x54" + "\x68\x69\x73\x2a\x54\x01\x02\x66" + "\x69\x6e\x65\x73\x94\x06\x05\x61" + "\x70\x70\x6c\x69\x63\x61\x74\x76" + "\x0a\x6f\x66\x88\x02\x60\x09\x27" + "\xf0\x00\x0c\x20\x75\x73\x65\x64" + "\x20\x69\x6e\x20\x55\x42\x49\x46" + "\x53\x2e\x11\x00\x00", + .output = "This document describes a compression method based on the LZO " + "compression algorithm. This document defines the application of " + "the LZO algorithm used in UBIFS.", + }, { + .inlen = 46, + .outlen = 70, + .input = "\x00\x0d\x4a\x6f\x69\x6e\x20\x75" + "\x73\x20\x6e\x6f\x77\x20\x61\x6e" + "\x64\x20\x73\x68\x61\x72\x65\x20" + "\x74\x68\x65\x20\x73\x6f\x66\x74" + "\x77\x70\x01\x01\x4a\x6f\x69\x6e" + "\x3d\x88\x00\x11\x00\x00", + .output = "Join us now and share the software " + "Join us now and share the software ", + }, +}; + +/* + * Michael MIC test vectors from IEEE 802.11i + */ +#define MICHAEL_MIC_TEST_VECTORS 6 + +static struct hash_testvec michael_mic_tv_template[] = { + { + .key = "\x00\x00\x00\x00\x00\x00\x00\x00", + .ksize = 8, + .plaintext = zeroed_string, + .psize = 0, + .digest = "\x82\x92\x5c\x1c\xa1\xd1\x30\xb8", + }, + { + .key = "\x82\x92\x5c\x1c\xa1\xd1\x30\xb8", + .ksize = 8, + .plaintext = "M", + .psize = 1, + .digest = "\x43\x47\x21\xca\x40\x63\x9b\x3f", + }, + { + .key = "\x43\x47\x21\xca\x40\x63\x9b\x3f", + .ksize = 8, + .plaintext = "Mi", + .psize = 2, + .digest = "\xe8\xf9\xbe\xca\xe9\x7e\x5d\x29", + }, + { + .key = "\xe8\xf9\xbe\xca\xe9\x7e\x5d\x29", + .ksize = 8, + .plaintext = "Mic", + .psize = 3, + .digest = "\x90\x03\x8f\xc6\xcf\x13\xc1\xdb", + }, + { + .key = "\x90\x03\x8f\xc6\xcf\x13\xc1\xdb", + .ksize = 8, + .plaintext = "Mich", + .psize = 4, + .digest = "\xd5\x5e\x10\x05\x10\x12\x89\x86", + }, + { + .key = "\xd5\x5e\x10\x05\x10\x12\x89\x86", + .ksize = 8, + .plaintext = "Michael", + .psize = 7, + .digest = "\x0a\x94\x2b\x12\x4e\xca\xa5\x46", + } +}; + +/* + * CRC32C test vectors + */ +#define CRC32C_TEST_VECTORS 14 + +static struct hash_testvec crc32c_tv_template[] = { + { + .psize = 0, + .digest = "\x00\x00\x00\x00", + }, + { + .key = "\x87\xa9\xcb\xed", + .ksize = 4, + .psize = 0, + .digest = "\x78\x56\x34\x12", + }, + { + .key = "\xff\xff\xff\xff", + .ksize = 4, + .plaintext = "\x01\x02\x03\x04\x05\x06\x07\x08" + "\x09\x0a\x0b\x0c\x0d\x0e\x0f\x10" + "\x11\x12\x13\x14\x15\x16\x17\x18" + "\x19\x1a\x1b\x1c\x1d\x1e\x1f\x20" + "\x21\x22\x23\x24\x25\x26\x27\x28", + .psize = 40, + .digest = "\x7f\x15\x2c\x0e", + }, + { + .key = "\xff\xff\xff\xff", + .ksize = 4, + .plaintext = "\x29\x2a\x2b\x2c\x2d\x2e\x2f\x30" + "\x31\x32\x33\x34\x35\x36\x37\x38" + "\x39\x3a\x3b\x3c\x3d\x3e\x3f\x40" + "\x41\x42\x43\x44\x45\x46\x47\x48" + "\x49\x4a\x4b\x4c\x4d\x4e\x4f\x50", + .psize = 40, + .digest = "\xf6\xeb\x80\xe9", + }, + { + .key = "\xff\xff\xff\xff", + .ksize = 4, + .plaintext = "\x51\x52\x53\x54\x55\x56\x57\x58" + "\x59\x5a\x5b\x5c\x5d\x5e\x5f\x60" + "\x61\x62\x63\x64\x65\x66\x67\x68" + "\x69\x6a\x6b\x6c\x6d\x6e\x6f\x70" + "\x71\x72\x73\x74\x75\x76\x77\x78", + .psize = 40, + .digest = "\xed\xbd\x74\xde", + }, + { + .key = "\xff\xff\xff\xff", + .ksize = 4, + .plaintext = "\x79\x7a\x7b\x7c\x7d\x7e\x7f\x80" + "\x81\x82\x83\x84\x85\x86\x87\x88" + "\x89\x8a\x8b\x8c\x8d\x8e\x8f\x90" + "\x91\x92\x93\x94\x95\x96\x97\x98" + "\x99\x9a\x9b\x9c\x9d\x9e\x9f\xa0", + .psize = 40, + .digest = "\x62\xc8\x79\xd5", + }, + { + .key = "\xff\xff\xff\xff", + .ksize = 4, + .plaintext = "\xa1\xa2\xa3\xa4\xa5\xa6\xa7\xa8" + "\xa9\xaa\xab\xac\xad\xae\xaf\xb0" + "\xb1\xb2\xb3\xb4\xb5\xb6\xb7\xb8" + "\xb9\xba\xbb\xbc\xbd\xbe\xbf\xc0" + "\xc1\xc2\xc3\xc4\xc5\xc6\xc7\xc8", + .psize = 40, + .digest = "\xd0\x9a\x97\xba", + }, + { + .key = "\xff\xff\xff\xff", + .ksize = 4, + .plaintext = "\xc9\xca\xcb\xcc\xcd\xce\xcf\xd0" + "\xd1\xd2\xd3\xd4\xd5\xd6\xd7\xd8" + "\xd9\xda\xdb\xdc\xdd\xde\xdf\xe0" + "\xe1\xe2\xe3\xe4\xe5\xe6\xe7\xe8" + "\xe9\xea\xeb\xec\xed\xee\xef\xf0", + .psize = 40, + .digest = "\x13\xd9\x29\x2b", + }, + { + .key = "\x80\xea\xd3\xf1", + .ksize = 4, + .plaintext = "\x29\x2a\x2b\x2c\x2d\x2e\x2f\x30" + "\x31\x32\x33\x34\x35\x36\x37\x38" + "\x39\x3a\x3b\x3c\x3d\x3e\x3f\x40" + "\x41\x42\x43\x44\x45\x46\x47\x48" + "\x49\x4a\x4b\x4c\x4d\x4e\x4f\x50", + .psize = 40, + .digest = "\x0c\xb5\xe2\xa2", + }, + { + .key = "\xf3\x4a\x1d\x5d", + .ksize = 4, + .plaintext = "\x51\x52\x53\x54\x55\x56\x57\x58" + "\x59\x5a\x5b\x5c\x5d\x5e\x5f\x60" + "\x61\x62\x63\x64\x65\x66\x67\x68" + "\x69\x6a\x6b\x6c\x6d\x6e\x6f\x70" + "\x71\x72\x73\x74\x75\x76\x77\x78", + .psize = 40, + .digest = "\xd1\x7f\xfb\xa6", + }, + { + .key = "\x2e\x80\x04\x59", + .ksize = 4, + .plaintext = "\x79\x7a\x7b\x7c\x7d\x7e\x7f\x80" + "\x81\x82\x83\x84\x85\x86\x87\x88" + "\x89\x8a\x8b\x8c\x8d\x8e\x8f\x90" + "\x91\x92\x93\x94\x95\x96\x97\x98" + "\x99\x9a\x9b\x9c\x9d\x9e\x9f\xa0", + .psize = 40, + .digest = "\x59\x33\xe6\x7a", + }, + { + .key = "\xa6\xcc\x19\x85", + .ksize = 4, + .plaintext = "\xa1\xa2\xa3\xa4\xa5\xa6\xa7\xa8" + "\xa9\xaa\xab\xac\xad\xae\xaf\xb0" + "\xb1\xb2\xb3\xb4\xb5\xb6\xb7\xb8" + "\xb9\xba\xbb\xbc\xbd\xbe\xbf\xc0" + "\xc1\xc2\xc3\xc4\xc5\xc6\xc7\xc8", + .psize = 40, + .digest = "\xbe\x03\x01\xd2", + }, + { + .key = "\x41\xfc\xfe\x2d", + .ksize = 4, + .plaintext = "\xc9\xca\xcb\xcc\xcd\xce\xcf\xd0" + "\xd1\xd2\xd3\xd4\xd5\xd6\xd7\xd8" + "\xd9\xda\xdb\xdc\xdd\xde\xdf\xe0" + "\xe1\xe2\xe3\xe4\xe5\xe6\xe7\xe8" + "\xe9\xea\xeb\xec\xed\xee\xef\xf0", + .psize = 40, + .digest = "\x75\xd3\xc5\x24", + }, + { + .key = "\xff\xff\xff\xff", + .ksize = 4, + .plaintext = "\x01\x02\x03\x04\x05\x06\x07\x08" + "\x09\x0a\x0b\x0c\x0d\x0e\x0f\x10" + "\x11\x12\x13\x14\x15\x16\x17\x18" + "\x19\x1a\x1b\x1c\x1d\x1e\x1f\x20" + "\x21\x22\x23\x24\x25\x26\x27\x28" + "\x29\x2a\x2b\x2c\x2d\x2e\x2f\x30" + "\x31\x32\x33\x34\x35\x36\x37\x38" + "\x39\x3a\x3b\x3c\x3d\x3e\x3f\x40" + "\x41\x42\x43\x44\x45\x46\x47\x48" + "\x49\x4a\x4b\x4c\x4d\x4e\x4f\x50" + "\x51\x52\x53\x54\x55\x56\x57\x58" + "\x59\x5a\x5b\x5c\x5d\x5e\x5f\x60" + "\x61\x62\x63\x64\x65\x66\x67\x68" + "\x69\x6a\x6b\x6c\x6d\x6e\x6f\x70" + "\x71\x72\x73\x74\x75\x76\x77\x78" + "\x79\x7a\x7b\x7c\x7d\x7e\x7f\x80" + "\x81\x82\x83\x84\x85\x86\x87\x88" + "\x89\x8a\x8b\x8c\x8d\x8e\x8f\x90" + "\x91\x92\x93\x94\x95\x96\x97\x98" + "\x99\x9a\x9b\x9c\x9d\x9e\x9f\xa0" + "\xa1\xa2\xa3\xa4\xa5\xa6\xa7\xa8" + "\xa9\xaa\xab\xac\xad\xae\xaf\xb0" + "\xb1\xb2\xb3\xb4\xb5\xb6\xb7\xb8" + "\xb9\xba\xbb\xbc\xbd\xbe\xbf\xc0" + "\xc1\xc2\xc3\xc4\xc5\xc6\xc7\xc8" + "\xc9\xca\xcb\xcc\xcd\xce\xcf\xd0" + "\xd1\xd2\xd3\xd4\xd5\xd6\xd7\xd8" + "\xd9\xda\xdb\xdc\xdd\xde\xdf\xe0" + "\xe1\xe2\xe3\xe4\xe5\xe6\xe7\xe8" + "\xe9\xea\xeb\xec\xed\xee\xef\xf0", + .psize = 240, + .digest = "\x75\xd3\xc5\x24", + .np = 2, + .tap = { 31, 209 } + }, +}; + +#endif /* _IFXMIPS_CRYPTO_TESTMGR_H */ diff --git a/package/kernel/lantiq/ltq-deu/src/internal.h b/package/kernel/lantiq/ltq-deu/src/internal.h new file mode 100644 index 0000000..2d22636 --- /dev/null +++ b/package/kernel/lantiq/ltq-deu/src/internal.h @@ -0,0 +1,141 @@ +/* + * Cryptographic API. + * + * Copyright (c) 2002 James Morris <jmorris@intercode.com.au> + * Copyright (c) 2005 Herbert Xu <herbert@gondor.apana.org.au> + * + * This program is free software; you can redistribute it and/or modify it + * under the terms of the GNU General Public License as published by the Free + * Software Foundation; either version 2 of the License, or (at your option) + * any later version. + * + */ +#ifndef _CRYPTO_INTERNAL_H +#define _CRYPTO_INTERNAL_H + +#include <crypto/algapi.h> +#include <linux/completion.h> +#include <linux/mm.h> +#include <linux/highmem.h> +#include <linux/interrupt.h> +#include <linux/init.h> +#include <linux/list.h> +#include <linux/module.h> +#include <linux/kernel.h> +#include <linux/notifier.h> +#include <linux/rwsem.h> +#include <linux/slab.h> +#include <linux/fips.h> + +/* Crypto notification events. */ +enum { + CRYPTO_MSG_ALG_REQUEST, + CRYPTO_MSG_ALG_REGISTER, + CRYPTO_MSG_ALG_UNREGISTER, + CRYPTO_MSG_TMPL_REGISTER, + CRYPTO_MSG_TMPL_UNREGISTER, +}; + +struct crypto_instance; +struct crypto_template; + +struct crypto_larval { + struct crypto_alg alg; + struct crypto_alg *adult; + struct completion completion; + u32 mask; +}; + +extern struct list_head crypto_alg_list; +extern struct rw_semaphore crypto_alg_sem; +extern struct blocking_notifier_head crypto_chain; + +#ifdef CONFIG_PROC_FS +void __init crypto_init_proc(void); +void __exit crypto_exit_proc(void); +#else +static inline void crypto_init_proc(void) +{ } +static inline void crypto_exit_proc(void) +{ } +#endif + +static inline unsigned int crypto_cipher_ctxsize(struct crypto_alg *alg) +{ + return alg->cra_ctxsize; +} + +static inline unsigned int crypto_compress_ctxsize(struct crypto_alg *alg) +{ + return alg->cra_ctxsize; +} + +struct crypto_alg *crypto_mod_get(struct crypto_alg *alg); +struct crypto_alg *crypto_alg_lookup(const char *name, u32 type, u32 mask); +struct crypto_alg *crypto_alg_mod_lookup(const char *name, u32 type, u32 mask); + +int crypto_init_cipher_ops(struct crypto_tfm *tfm); +int crypto_init_compress_ops(struct crypto_tfm *tfm); + +void crypto_exit_cipher_ops(struct crypto_tfm *tfm); +void crypto_exit_compress_ops(struct crypto_tfm *tfm); + +struct crypto_larval *crypto_larval_alloc(const char *name, u32 type, u32 mask); +void crypto_larval_kill(struct crypto_alg *alg); +struct crypto_alg *crypto_larval_lookup(const char *name, u32 type, u32 mask); +void crypto_larval_error(const char *name, u32 type, u32 mask); +void crypto_alg_tested(const char *name, int err); + +void crypto_shoot_alg(struct crypto_alg *alg); +struct crypto_tfm *__crypto_alloc_tfm(struct crypto_alg *alg, u32 type, + u32 mask); +void *crypto_create_tfm(struct crypto_alg *alg, + const struct crypto_type *frontend); +struct crypto_alg *crypto_find_alg(const char *alg_name, + const struct crypto_type *frontend, + u32 type, u32 mask); +void *crypto_alloc_tfm(const char *alg_name, + const struct crypto_type *frontend, u32 type, u32 mask); + +int crypto_register_notifier(struct notifier_block *nb); +int crypto_unregister_notifier(struct notifier_block *nb); +int crypto_probing_notify(unsigned long val, void *v); + +static inline void crypto_alg_put(struct crypto_alg *alg) +{ + if (atomic_dec_and_test(&alg->cra_refcnt) && alg->cra_destroy) + alg->cra_destroy(alg); +} + +static inline int crypto_tmpl_get(struct crypto_template *tmpl) +{ + return try_module_get(tmpl->module); +} + +static inline void crypto_tmpl_put(struct crypto_template *tmpl) +{ + module_put(tmpl->module); +} + +static inline int crypto_is_larval(struct crypto_alg *alg) +{ + return alg->cra_flags & CRYPTO_ALG_LARVAL; +} + +static inline int crypto_is_dead(struct crypto_alg *alg) +{ + return alg->cra_flags & CRYPTO_ALG_DEAD; +} + +static inline int crypto_is_moribund(struct crypto_alg *alg) +{ + return alg->cra_flags & (CRYPTO_ALG_DEAD | CRYPTO_ALG_DYING); +} + +static inline void crypto_notify(unsigned long val, void *v) +{ + blocking_notifier_call_chain(&crypto_chain, val, v); +} + +#endif /* _CRYPTO_INTERNAL_H */ + diff --git a/package/kernel/lantiq/ltq-deu/src/ltq_deu_testmgr.c b/package/kernel/lantiq/ltq-deu/src/ltq_deu_testmgr.c new file mode 100644 index 0000000..f1b5752 --- /dev/null +++ b/package/kernel/lantiq/ltq-deu/src/ltq_deu_testmgr.c @@ -0,0 +1,3957 @@ +/* + * Algorithm testing framework and tests. + * + * Copyright (c) 2002 James Morris <jmorris@intercode.com.au> + * Copyright (c) 2002 Jean-Francois Dive <jef@linuxbe.org> + * Copyright (c) 2007 Nokia Siemens Networks + * Copyright (c) 2008 Herbert Xu <herbert@gondor.apana.org.au> + * + * This program is free software; you can redistribute it and/or modify it + * under the terms of the GNU General Public License as published by the Free + * Software Foundation; either version 2 of the License, or (at your option) + * any later version. + * + */ + +#include <crypto/hash.h> +#include <linux/err.h> +#include <linux/module.h> +#include <linux/scatterlist.h> +#include <linux/slab.h> +#include <linux/string.h> +#include <crypto/rng.h> +#include <linux/jiffies.h> +#include <linux/init.h> +#include <linux/moduleparam.h> +#include <linux/delay.h> +#include <linux/types.h> +#include <linux/sched.h> + +#include "internal.h" +#include "ifxmips_testmgr.h" +#include "ifxmips_tcrypt.h" +#include "ifxmips_deu.h" + +/* changes for LQ ablkcipher speedtest */ +#include <linux/timex.h> +#include <linux/interrupt.h> +#include <asm/mipsregs.h> + +/* + * Need slab memory for testing (size in number of pages). + */ +#define XBUFSIZE 8 + +/* + * Indexes into the xbuf to simulate cross-page access. + */ +#define IDX1 32 +#define IDX2 32400 +#define IDX3 1 +#define IDX4 8193 +#define IDX5 22222 +#define IDX6 17101 +#define IDX7 27333 +#define IDX8 3000 + +/* +* Used by test_cipher() +*/ +#define ENCRYPT 1 +#define DECRYPT 0 + +/* + * Need slab memory for testing (size in number of pages). + */ +#define TVMEMSIZE 4 + +/* +* Used by test_cipher_speed() +*/ +#define ENCRYPT 1 +#define DECRYPT 0 + +/* + * Used by test_cipher_speed() + */ + + +static unsigned int sec; + +static char *alg = NULL; +static u32 type; +static u32 mask; +static int mode; +static char *tvmem[TVMEMSIZE]; + +static char *check[] = { + "des", "md5", "des3_ede", "rot13", "sha1", "sha224", "sha256", + "blowfish", "twofish", "serpent", "sha384", "sha512", "md4", "aes", + "cast6", "arc4", "michael_mic", "deflate", "crc32c", "tea", "xtea", + "khazad", "wp512", "wp384", "wp256", "tnepres", "xeta", "fcrypt", + "camellia", "seed", "salsa20", "rmd128", "rmd160", "rmd256", "rmd320", + "lzo", "cts", "zlib", NULL +}; +struct tcrypt_result { + struct completion completion; + int err; +}; + +struct aead_test_suite { + struct { + struct aead_testvec *vecs; + unsigned int count; + } enc, dec; +}; + +struct cipher_test_suite { + struct { + struct cipher_testvec *vecs; + unsigned int count; + } enc, dec; +}; + +struct comp_test_suite { + struct { + struct comp_testvec *vecs; + unsigned int count; + } comp, decomp; +}; + +struct pcomp_test_suite { + struct { + struct pcomp_testvec *vecs; + unsigned int count; + } comp, decomp; +}; + +struct hash_test_suite { + struct hash_testvec *vecs; + unsigned int count; +}; + +struct cprng_test_suite { + struct cprng_testvec *vecs; + unsigned int count; +}; + +struct alg_test_desc { + const char *alg; + int (*test)(const struct alg_test_desc *desc, const char *driver, + u32 type, u32 mask); + int fips_allowed; /* set if alg is allowed in fips mode */ + + union { + struct aead_test_suite aead; + struct cipher_test_suite cipher; + struct comp_test_suite comp; + struct pcomp_test_suite pcomp; + struct hash_test_suite hash; + struct cprng_test_suite cprng; + } suite; +}; + +static unsigned int IDX[8] = { IDX1, IDX2, IDX3, IDX4, IDX5, IDX6, IDX7, IDX8 }; + +static void hexdump(unsigned char *buf, unsigned int len) +{ + print_hex_dump(KERN_CONT, "", DUMP_PREFIX_OFFSET, + 16, 1, + buf, len, false); +} + +static void tcrypt_complete(struct crypto_async_request *req, int err) +{ + struct tcrypt_result *res = req->data; + + //printk("Signal done test\n"); + + if (err == -EINPROGRESS) { + printk("********************* Completion didnt go too well **************************** \n"); + return; + } + + res->err = err; + complete_all(&res->completion); +} + +static int testmgr_alloc_buf(char *buf[XBUFSIZE]) +{ + int i; + + for (i = 0; i < XBUFSIZE; i++) { + buf[i] = (void *)__get_free_page(GFP_KERNEL); + if (!buf[i]) + goto err_free_buf; + } + + return 0; + +err_free_buf: + while (i-- > 0) + free_page((unsigned long)buf[i]); + + return -ENOMEM; +} + +static void testmgr_free_buf(char *buf[XBUFSIZE]) +{ + int i; + + for (i = 0; i < XBUFSIZE; i++) + free_page((unsigned long)buf[i]); +} + +static int test_hash(struct crypto_ahash *tfm, struct hash_testvec *template, + unsigned int tcount) +{ + const char *algo = crypto_tfm_alg_driver_name(crypto_ahash_tfm(tfm)); + unsigned int i, j, k, temp; + struct scatterlist sg[8]; + char result[64]; + struct ahash_request *req; + struct tcrypt_result tresult; + void *hash_buff; + char *xbuf[XBUFSIZE]; + int ret = -ENOMEM; + + if (testmgr_alloc_buf(xbuf)) + goto out_nobuf; + + init_completion(&tresult.completion); + + req = ahash_request_alloc(tfm, GFP_KERNEL); + if (!req) { + printk(KERN_ERR "alg: hash: Failed to allocate request for " + "%s\n", algo); + goto out_noreq; + } + ahash_request_set_callback(req, CRYPTO_TFM_REQ_MAY_BACKLOG, + tcrypt_complete, &tresult); + + j = 0; + for (i = 0; i < tcount; i++) { + if (template[i].np) + continue; + + j++; + memset(result, 0, 64); + + hash_buff = xbuf[0]; + + memcpy(hash_buff, template[i].plaintext, template[i].psize); + sg_init_one(&sg[0], hash_buff, template[i].psize); + + if (template[i].ksize) { + crypto_ahash_clear_flags(tfm, ~0); + ret = crypto_ahash_setkey(tfm, template[i].key, + template[i].ksize); + if (ret) { + printk(KERN_ERR "alg: hash: setkey failed on " + "test %d for %s: ret=%d\n", j, algo, + -ret); + goto out; + } + } + + ahash_request_set_crypt(req, sg, result, template[i].psize); + ret = crypto_ahash_digest(req); + switch (ret) { + case 0: + break; + case -EINPROGRESS: + case -EBUSY: + ret = wait_for_completion_interruptible( + &tresult.completion); + if (!ret && !(ret = tresult.err)) { + INIT_COMPLETION(tresult.completion); + break; + } + /* fall through */ + default: + printk(KERN_ERR "alg: hash: digest failed on test %d " + "for %s: ret=%d\n", j, algo, -ret); + goto out; + } + + if (memcmp(result, template[i].digest, + crypto_ahash_digestsize(tfm))) { + printk(KERN_ERR "alg: hash: Test %d failed for %s\n", + j, algo); + hexdump(result, crypto_ahash_digestsize(tfm)); + ret = -EINVAL; + goto out; + } + else { + printk(KERN_ERR "alg: hash: Test %d passed for %s\n", + j, algo); + hexdump(result, crypto_ahash_digestsize(tfm)); + } + } + + j = 0; + for (i = 0; i < tcount; i++) { + if (template[i].np) { + j++; + memset(result, 0, 64); + + temp = 0; + sg_init_table(sg, template[i].np); + ret = -EINVAL; + for (k = 0; k < template[i].np; k++) { + if (WARN_ON(offset_in_page(IDX[k]) + + template[i].tap[k] > PAGE_SIZE)) + goto out; + sg_set_buf(&sg[k], + memcpy(xbuf[IDX[k] >> PAGE_SHIFT] + + offset_in_page(IDX[k]), + template[i].plaintext + temp, + template[i].tap[k]), + template[i].tap[k]); + temp += template[i].tap[k]; + } + + if (template[i].ksize) { + crypto_ahash_clear_flags(tfm, ~0); + ret = crypto_ahash_setkey(tfm, template[i].key, + template[i].ksize); + + if (ret) { + printk(KERN_ERR "alg: hash: setkey " + "failed on chunking test %d " + "for %s: ret=%d\n", j, algo, + -ret); + goto out; + } + } + + ahash_request_set_crypt(req, sg, result, + template[i].psize); + ret = crypto_ahash_digest(req); + switch (ret) { + case 0: + break; + case -EINPROGRESS: + case -EBUSY: + ret = wait_for_completion_interruptible( + &tresult.completion); + if (!ret && !(ret = tresult.err)) { + INIT_COMPLETION(tresult.completion); + break; + } + /* fall through */ + default: + printk(KERN_ERR "alg: hash: digest failed " + "on chunking test %d for %s: " + "ret=%d\n", j, algo, -ret); + goto out; + } + + if (memcmp(result, template[i].digest, + crypto_ahash_digestsize(tfm))) { + printk(KERN_ERR "alg: hash: Chunking test %d " + "failed for %s\n", j, algo); + hexdump(result, crypto_ahash_digestsize(tfm)); + ret = -EINVAL; + goto out; + } + else { + printk(KERN_ERR "alg: hash: Chunking test %d " + "passed for %s\n", j, algo); + hexdump(result, crypto_ahash_digestsize(tfm)); + } + } + } + + ret = 0; + +out: + ahash_request_free(req); +out_noreq: + testmgr_free_buf(xbuf); +out_nobuf: + return ret; +} + +static int test_aead(struct crypto_aead *tfm, int enc, + struct aead_testvec *template, unsigned int tcount) +{ + const char *algo = crypto_tfm_alg_driver_name(crypto_aead_tfm(tfm)); + unsigned int i, j, k, n, temp; + int ret = -ENOMEM; + char *q; + char *key; + struct aead_request *req; + struct scatterlist sg[8]; + struct scatterlist asg[8]; + const char *e; + struct tcrypt_result result; + unsigned int authsize; + void *input; + void *assoc; + char iv[MAX_IVLEN]; + char *xbuf[XBUFSIZE]; + char *axbuf[XBUFSIZE]; + + if (testmgr_alloc_buf(xbuf)) + goto out_noxbuf; + if (testmgr_alloc_buf(axbuf)) + goto out_noaxbuf; + + if (enc == ENCRYPT) + e = "encryption"; + else + e = "decryption"; + + init_completion(&result.completion); + + req = aead_request_alloc(tfm, GFP_KERNEL); + if (!req) { + printk(KERN_ERR "alg: aead: Failed to allocate request for " + "%s\n", algo); + goto out; + } + + aead_request_set_callback(req, CRYPTO_TFM_REQ_MAY_BACKLOG, + tcrypt_complete, &result); + + for (i = 0, j = 0; i < tcount; i++) { + if (!template[i].np) { + j++; + + /* some tepmplates have no input data but they will + * touch input + */ + input = xbuf[0]; + assoc = axbuf[0]; + + ret = -EINVAL; + if (WARN_ON(template[i].ilen > PAGE_SIZE || + template[i].alen > PAGE_SIZE)) + goto out; + + memcpy(input, template[i].input, template[i].ilen); + memcpy(assoc, template[i].assoc, template[i].alen); + if (template[i].iv) + memcpy(iv, template[i].iv, MAX_IVLEN); + else + memset(iv, 0, MAX_IVLEN); + + crypto_aead_clear_flags(tfm, ~0); + if (template[i].wk) + crypto_aead_set_flags( + tfm, CRYPTO_TFM_REQ_WEAK_KEY); + + key = template[i].key; + + ret = crypto_aead_setkey(tfm, key, + template[i].klen); + if (!ret == template[i].fail) { + printk(KERN_ERR "alg: aead: setkey failed on " + "test %d for %s: flags=%x\n", j, algo, + crypto_aead_get_flags(tfm)); + goto out; + } else if (ret) + continue; + + authsize = abs(template[i].rlen - template[i].ilen); + ret = crypto_aead_setauthsize(tfm, authsize); + if (ret) { + printk(KERN_ERR "alg: aead: Failed to set " + "authsize to %u on test %d for %s\n", + authsize, j, algo); + goto out; + } + + sg_init_one(&sg[0], input, + template[i].ilen + (enc ? authsize : 0)); + + sg_init_one(&asg[0], assoc, template[i].alen); + + aead_request_set_crypt(req, sg, sg, + template[i].ilen, iv); + + aead_request_set_assoc(req, asg, template[i].alen); + + ret = enc ? + crypto_aead_encrypt(req) : + crypto_aead_decrypt(req); + + switch (ret) { + case 0: + if (template[i].novrfy) { + /* verification was supposed to fail */ + printk(KERN_ERR "alg: aead: %s failed " + "on test %d for %s: ret was 0, " + "expected -EBADMSG\n", + e, j, algo); + /* so really, we got a bad message */ + ret = -EBADMSG; + goto out; + } + break; + case -EINPROGRESS: + case -EBUSY: + ret = wait_for_completion_interruptible( + &result.completion); + if (!ret && !(ret = result.err)) { + INIT_COMPLETION(result.completion); + break; + } + case -EBADMSG: + if (template[i].novrfy) + /* verification failure was expected */ + continue; + /* fall through */ + default: + printk(KERN_ERR "alg: aead: %s failed on test " + "%d for %s: ret=%d\n", e, j, algo, -ret); + goto out; + } + + q = input; + if (memcmp(q, template[i].result, template[i].rlen)) { + printk(KERN_ERR "alg: aead: Test %d failed on " + "%s for %s\n", j, e, algo); + hexdump(q, template[i].rlen); + ret = -EINVAL; + goto out; + } + else { + printk(KERN_ERR "alg: aead: Test %d passed on " + "%s for %s\n", j, e, algo); + hexdump(q, template[i].rlen); + } + } + } + + for (i = 0, j = 0; i < tcount; i++) { + if (template[i].np) { + j++; + + if (template[i].iv) + memcpy(iv, template[i].iv, MAX_IVLEN); + else + memset(iv, 0, MAX_IVLEN); + + crypto_aead_clear_flags(tfm, ~0); + if (template[i].wk) + crypto_aead_set_flags( + tfm, CRYPTO_TFM_REQ_WEAK_KEY); + key = template[i].key; + + ret = crypto_aead_setkey(tfm, key, template[i].klen); + if (!ret == template[i].fail) { + printk(KERN_ERR "alg: aead: setkey failed on " + "chunk test %d for %s: flags=%x\n", j, + algo, crypto_aead_get_flags(tfm)); + goto out; + } else if (ret) + continue; + + authsize = abs(template[i].rlen - template[i].ilen); + + ret = -EINVAL; + sg_init_table(sg, template[i].np); + for (k = 0, temp = 0; k < template[i].np; k++) { + if (WARN_ON(offset_in_page(IDX[k]) + + template[i].tap[k] > PAGE_SIZE)) + goto out; + + q = xbuf[IDX[k] >> PAGE_SHIFT] + + offset_in_page(IDX[k]); + + memcpy(q, template[i].input + temp, + template[i].tap[k]); + + n = template[i].tap[k]; + if (k == template[i].np - 1 && enc) + n += authsize; + if (offset_in_page(q) + n < PAGE_SIZE) + q[n] = 0; + + sg_set_buf(&sg[k], q, template[i].tap[k]); + temp += template[i].tap[k]; + } + + ret = crypto_aead_setauthsize(tfm, authsize); + if (ret) { + printk(KERN_ERR "alg: aead: Failed to set " + "authsize to %u on chunk test %d for " + "%s\n", authsize, j, algo); + goto out; + } + + if (enc) { + if (WARN_ON(sg[k - 1].offset + + sg[k - 1].length + authsize > + PAGE_SIZE)) { + ret = -EINVAL; + goto out; + } + + sg[k - 1].length += authsize; + } + + sg_init_table(asg, template[i].anp); + ret = -EINVAL; + for (k = 0, temp = 0; k < template[i].anp; k++) { + if (WARN_ON(offset_in_page(IDX[k]) + + template[i].atap[k] > PAGE_SIZE)) + goto out; + sg_set_buf(&asg[k], + memcpy(axbuf[IDX[k] >> PAGE_SHIFT] + + offset_in_page(IDX[k]), + template[i].assoc + temp, + template[i].atap[k]), + template[i].atap[k]); + temp += template[i].atap[k]; + } + + aead_request_set_crypt(req, sg, sg, + template[i].ilen, + iv); + + aead_request_set_assoc(req, asg, template[i].alen); + + ret = enc ? + crypto_aead_encrypt(req) : + crypto_aead_decrypt(req); + + switch (ret) { + case 0: + if (template[i].novrfy) { + /* verification was supposed to fail */ + printk(KERN_ERR "alg: aead: %s failed " + "on chunk test %d for %s: ret " + "was 0, expected -EBADMSG\n", + e, j, algo); + /* so really, we got a bad message */ + ret = -EBADMSG; + goto out; + } + break; + case -EINPROGRESS: + case -EBUSY: + ret = wait_for_completion_interruptible( + &result.completion); + if (!ret && !(ret = result.err)) { + INIT_COMPLETION(result.completion); + break; + } + case -EBADMSG: + if (template[i].novrfy) + /* verification failure was expected */ + continue; + /* fall through */ + default: + printk(KERN_ERR "alg: aead: %s failed on " + "chunk test %d for %s: ret=%d\n", e, j, + algo, -ret); + goto out; + } + + ret = -EINVAL; + for (k = 0, temp = 0; k < template[i].np; k++) { + q = xbuf[IDX[k] >> PAGE_SHIFT] + + offset_in_page(IDX[k]); + + n = template[i].tap[k]; + if (k == template[i].np - 1) + n += enc ? authsize : -authsize; + + if (memcmp(q, template[i].result + temp, n)) { + printk(KERN_ERR "alg: aead: Chunk " + "test %d failed on %s at page " + "%u for %s\n", j, e, k, algo); + hexdump(q, n); + goto out; + } + else { + printk(KERN_ERR "alg: aead: Chunk " + "test %d passed on %s at page " + "%u for %s\n", j, e, k, algo); + hexdump(q, n); + } + + q += n; + if (k == template[i].np - 1 && !enc) { + if (memcmp(q, template[i].input + + temp + n, authsize)) + n = authsize; + else + n = 0; + } else { + for (n = 0; offset_in_page(q + n) && + q[n]; n++) + ; + } + if (n) { + printk(KERN_ERR "alg: aead: Result " + "buffer corruption in chunk " + "test %d on %s at page %u for " + "%s: %u bytes:\n", j, e, k, + algo, n); + hexdump(q, n); + goto out; + } + temp += template[i].tap[k]; + } + } + } + + ret = 0; + +out: + aead_request_free(req); + testmgr_free_buf(axbuf); +out_noaxbuf: + testmgr_free_buf(xbuf); +out_noxbuf: + return ret; +} + +static int test_cipher(struct crypto_cipher *tfm, int enc, + struct cipher_testvec *template, unsigned int tcount) +{ + const char *algo = crypto_tfm_alg_driver_name(crypto_cipher_tfm(tfm)); + unsigned int i, j, k; + char *q; + const char *e; + void *data; + char *xbuf[XBUFSIZE]; + int ret = -ENOMEM; + + if (testmgr_alloc_buf(xbuf)) + goto out_nobuf; + + if (enc == ENCRYPT) + e = "encryption"; + else + e = "decryption"; + + j = 0; + for (i = 0; i < tcount; i++) { + if (template[i].np) + continue; + + j++; + + ret = -EINVAL; + if (WARN_ON(template[i].ilen > PAGE_SIZE)) + goto out; + + data = xbuf[0]; + memcpy(data, template[i].input, template[i].ilen); + + crypto_cipher_clear_flags(tfm, ~0); + if (template[i].wk) + crypto_cipher_set_flags(tfm, CRYPTO_TFM_REQ_WEAK_KEY); + + ret = crypto_cipher_setkey(tfm, template[i].key, + template[i].klen); + if (!ret == template[i].fail) { + printk(KERN_ERR "alg: cipher: setkey failed " + "on test %d for %s: flags=%x\n", j, + algo, crypto_cipher_get_flags(tfm)); + goto out; + } else if (ret) + continue; + + for (k = 0; k < template[i].ilen; + k += crypto_cipher_blocksize(tfm)) { + if (enc) + crypto_cipher_encrypt_one(tfm, data + k, + data + k); + else + crypto_cipher_decrypt_one(tfm, data + k, + data + k); + } + + q = data; + if (memcmp(q, template[i].result, template[i].rlen)) { + printk(KERN_ERR "alg: cipher: Test %d failed " + "on %s for %s\n", j, e, algo); + hexdump(q, template[i].rlen); + ret = -EINVAL; + goto out; + } + else { + printk(KERN_ERR "alg: cipher: Test %d passed " + "on %s for %s\n", j, e, algo); + hexdump(q, template[i].rlen); + } + } + + ret = 0; + +out: + testmgr_free_buf(xbuf); +out_nobuf: + return ret; +} + +static int test_skcipher(struct crypto_ablkcipher *tfm, int enc, + struct cipher_testvec *template, unsigned int tcount) +{ + const char *algo = + crypto_tfm_alg_driver_name(crypto_ablkcipher_tfm(tfm)); + unsigned int i, j, k, n, temp; + char *q; + struct ablkcipher_request *req; + struct scatterlist sg[8]; + const char *e; + struct tcrypt_result result; + void *data; + char iv[MAX_IVLEN]; + char *xbuf[XBUFSIZE]; + int ret = -ENOMEM; + + if (testmgr_alloc_buf(xbuf)) + goto out_nobuf; + + if (enc == ENCRYPT) + e = "encryption"; + else + e = "decryption"; + + init_completion(&result.completion); + + req = ablkcipher_request_alloc(tfm, GFP_KERNEL); + if (!req) { + printk(KERN_ERR "alg: skcipher: Failed to allocate request " + "for %s\n", algo); + goto out; + } + + //printk("tcount: %u\n", tcount); + + ablkcipher_request_set_callback(req, CRYPTO_TFM_REQ_MAY_BACKLOG, + tcrypt_complete, &result); + + j = 0; + for (i = 0; i < tcount; i++) { + if (template[i].iv) + memcpy(iv, template[i].iv, MAX_IVLEN); + else + memset(iv, 0, MAX_IVLEN); + + if (!(template[i].np)) { + //printk("np: %d, i: %d, j: %d\n", template[i].np, i, j); + j++; + + ret = -EINVAL; + if (WARN_ON(template[i].ilen > PAGE_SIZE)) + goto out; + + data = xbuf[0]; + memcpy(data, template[i].input, template[i].ilen); + + crypto_ablkcipher_clear_flags(tfm, ~0); + if (template[i].wk) + crypto_ablkcipher_set_flags( + tfm, CRYPTO_TFM_REQ_WEAK_KEY); + + ret = crypto_ablkcipher_setkey(tfm, template[i].key, + template[i].klen); + if (!ret == template[i].fail) { + printk(KERN_ERR "alg: skcipher: setkey failed " + "on test %d for %s: flags=%x\n", j, + algo, crypto_ablkcipher_get_flags(tfm)); + printk("ERROR\n"); + goto out; + } else if (ret) + continue; + + sg_init_one(&sg[0], data, template[i].ilen); + + ablkcipher_request_set_crypt(req, sg, sg, + template[i].ilen, iv); + ret = enc ? + crypto_ablkcipher_encrypt(req) : + crypto_ablkcipher_decrypt(req); + + switch (ret) { + case 0: + break; + case -EINPROGRESS: + case -EBUSY: + ret = wait_for_completion_interruptible( + &result.completion); + if (!ret && !((ret = result.err))) { + INIT_COMPLETION(result.completion); + break; + } + /* fall through */ + default: + printk(KERN_ERR "alg: skcipher: %s failed on " + "test %d for %s: ret=%d\n", e, j, algo, + -ret); + printk("ERROR\n"); + goto out; + } + q = data; + if (memcmp(q, template[i].result, template[i].rlen)) { + printk(KERN_ERR "alg: skcipher: Test %d " + "failed on %s for %s\n", j, e, algo); + hexdump(q, template[i].rlen); + printk("ERROR\n"); + ret = -EINVAL; + goto out; + } + else { + printk(KERN_ERR "alg: skcipher: Test %d " + "*PASSED* on %s for %s\n", j, e, algo); + hexdump(q, template[i].rlen); + printk("DONE\n"); + } + } + } + printk("Testing %s chunking across pages.\n", algo); + j = 0; + for (i = 0; i < tcount; i++) { + if (template[i].iv) + memcpy(iv, template[i].iv, MAX_IVLEN); + else + memset(iv, 0, MAX_IVLEN); + + if (template[i].np) { + j++; + + crypto_ablkcipher_clear_flags(tfm, ~0); + if (template[i].wk) + crypto_ablkcipher_set_flags( + tfm, CRYPTO_TFM_REQ_WEAK_KEY); + + ret = crypto_ablkcipher_setkey(tfm, template[i].key, + template[i].klen); + if (!ret == template[i].fail) { + printk(KERN_ERR "alg: skcipher: setkey failed " + "on chunk test %d for %s: flags=%x\n", + j, algo, + crypto_ablkcipher_get_flags(tfm)); + printk("ERROR\n"); + goto out; + } else if (ret) + continue; + + temp = 0; + ret = -EINVAL; + sg_init_table(sg, template[i].np); + for (k = 0; k < template[i].np; k++) { + if (WARN_ON(offset_in_page(IDX[k]) + + template[i].tap[k] > PAGE_SIZE)) + goto out; + + q = xbuf[IDX[k] >> PAGE_SHIFT] + + offset_in_page(IDX[k]); + + memcpy(q, template[i].input + temp, + template[i].tap[k]); + + if (offset_in_page(q) + template[i].tap[k] < + PAGE_SIZE) + q[template[i].tap[k]] = 0; + + sg_set_buf(&sg[k], q, template[i].tap[k]); + + temp += template[i].tap[k]; + } + + ablkcipher_request_set_crypt(req, sg, sg, + template[i].ilen, iv); + + ret = enc ? + crypto_ablkcipher_encrypt(req) : + crypto_ablkcipher_decrypt(req); + + switch (ret) { + case 0: + break; + case -EINPROGRESS: + case -EBUSY: + ret = wait_for_completion_interruptible( + &result.completion); + if (!ret && !((ret = result.err))) { + INIT_COMPLETION(result.completion); + break; + } + /* fall through */ + default: + printk(KERN_ERR "alg: skcipher: %s failed on " + "chunk test %d for %s: ret=%d\n", e, j, + algo, -ret); + printk("ERROR\n"); + goto out; + } + + temp = 0; + ret = -EINVAL; + for (k = 0; k < template[i].np; k++) { + q = xbuf[IDX[k] >> PAGE_SHIFT] + + offset_in_page(IDX[k]); + + if (memcmp(q, template[i].result + temp, + template[i].tap[k])) { + printk(KERN_ERR "alg: skcipher: Chunk " + "test %d failed on %s at page " + "%u for %s\n", j, e, k, algo); + hexdump(q, template[i].tap[k]); + printk("ERROR\n"); + goto out; + } + else { + printk(KERN_ERR "alg: skcipher: Chunk " + "test %d *PASSED* on %s at page " + "%u for %s\n", j, e, k, algo); + hexdump(q, template[i].tap[k]); + printk("DONE\n"); + } + + q += template[i].tap[k]; + for (n = 0; offset_in_page(q + n) && q[n]; n++) + ; +#if 1 + if (n) { + printk(KERN_ERR "alg: skcipher: " + "Result buffer corruption in " + "chunk test %d on %s at page " + "%u for %s: %u bytes:\n", j, e, + k, algo, n); + hexdump(q, n); + printk("ERROR\n"); + goto out; + } + else { + printk(KERN_ERR "alg: skcipher: " + "Result buffer clean in " + "chunk test %d on %s at page " + "%u for %s: %u bytes:\n", j, e, + k, algo, n); + hexdump(q, n); + printk("Chunk Buffer clean\n"); + } +#endif + temp += template[i].tap[k]; + } + } + } + + ret = 0; +out: + ablkcipher_request_free(req); + testmgr_free_buf(xbuf); +out_nobuf: + return ret; +} + +static int test_comp(struct crypto_comp *tfm, struct comp_testvec *ctemplate, + struct comp_testvec *dtemplate, int ctcount, int dtcount) +{ + const char *algo = crypto_tfm_alg_driver_name(crypto_comp_tfm(tfm)); + unsigned int i; + char result[COMP_BUF_SIZE]; + int ret; + + for (i = 0; i < ctcount; i++) { + int ilen; + unsigned int dlen = COMP_BUF_SIZE; + + memset(result, 0, sizeof (result)); + + ilen = ctemplate[i].inlen; + ret = crypto_comp_compress(tfm, ctemplate[i].input, + ilen, result, &dlen); + if (ret) { + printk(KERN_ERR "alg: comp: compression failed " + "on test %d for %s: ret=%d\n", i + 1, algo, + -ret); + goto out; + } + + if (dlen != ctemplate[i].outlen) { + printk(KERN_ERR "alg: comp: Compression test %d " + "failed for %s: output len = %d\n", i + 1, algo, + dlen); + ret = -EINVAL; + goto out; + } + + if (memcmp(result, ctemplate[i].output, dlen)) { + printk(KERN_ERR "alg: comp: Compression test %d " + "failed for %s\n", i + 1, algo); + hexdump(result, dlen); + ret = -EINVAL; + goto out; + } + else { + printk(KERN_ERR "alg: comp: Compression test %d " + "passed for %s\n", i + 1, algo); + hexdump(result, dlen); + } + } + + for (i = 0; i < dtcount; i++) { + int ilen; + unsigned int dlen = COMP_BUF_SIZE; + + memset(result, 0, sizeof (result)); + + ilen = dtemplate[i].inlen; + ret = crypto_comp_decompress(tfm, dtemplate[i].input, + ilen, result, &dlen); + if (ret) { + printk(KERN_ERR "alg: comp: decompression failed " + "on test %d for %s: ret=%d\n", i + 1, algo, + -ret); + goto out; + } + + if (dlen != dtemplate[i].outlen) { + printk(KERN_ERR "alg: comp: Decompression test %d " + "failed for %s: output len = %d\n", i + 1, algo, + dlen); + ret = -EINVAL; + goto out; + } + + if (memcmp(result, dtemplate[i].output, dlen)) { + printk(KERN_ERR "alg: comp: Decompression test %d " + "failed for %s\n", i + 1, algo); + hexdump(result, dlen); + ret = -EINVAL; + goto out; + } + else { + printk(KERN_ERR "alg: comp: Decompression test %d " + "passed for %s\n", i + 1, algo); + hexdump(result, dlen); + } + } + + ret = 0; + +out: + return ret; +} + +static int test_pcomp(struct crypto_pcomp *tfm, + struct pcomp_testvec *ctemplate, + struct pcomp_testvec *dtemplate, int ctcount, + int dtcount) +{ + const char *algo = crypto_tfm_alg_driver_name(crypto_pcomp_tfm(tfm)); + unsigned int i; + char result[COMP_BUF_SIZE]; + int res; + + for (i = 0; i < ctcount; i++) { + struct comp_request req; + unsigned int produced = 0; + + res = crypto_compress_setup(tfm, ctemplate[i].params, + ctemplate[i].paramsize); + if (res) { + pr_err("alg: pcomp: compression setup failed on test " + "%d for %s: error=%d\n", i + 1, algo, res); + return res; + } + + res = crypto_compress_init(tfm); + if (res) { + pr_err("alg: pcomp: compression init failed on test " + "%d for %s: error=%d\n", i + 1, algo, res); + return res; + } + + memset(result, 0, sizeof(result)); + + req.next_in = ctemplate[i].input; + req.avail_in = ctemplate[i].inlen / 2; + req.next_out = result; + req.avail_out = ctemplate[i].outlen / 2; + + res = crypto_compress_update(tfm, &req); + if (res < 0 && (res != -EAGAIN || req.avail_in)) { + pr_err("alg: pcomp: compression update failed on test " + "%d for %s: error=%d\n", i + 1, algo, res); + return res; + } + if (res > 0) + produced += res; + + /* Add remaining input data */ + req.avail_in += (ctemplate[i].inlen + 1) / 2; + + res = crypto_compress_update(tfm, &req); + if (res < 0 && (res != -EAGAIN || req.avail_in)) { + pr_err("alg: pcomp: compression update failed on test " + "%d for %s: error=%d\n", i + 1, algo, res); + return res; + } + if (res > 0) + produced += res; + + /* Provide remaining output space */ + req.avail_out += COMP_BUF_SIZE - ctemplate[i].outlen / 2; + + res = crypto_compress_final(tfm, &req); + if (res < 0) { + pr_err("alg: pcomp: compression final failed on test " + "%d for %s: error=%d\n", i + 1, algo, res); + return res; + } + produced += res; + + if (COMP_BUF_SIZE - req.avail_out != ctemplate[i].outlen) { + pr_err("alg: comp: Compression test %d failed for %s: " + "output len = %d (expected %d)\n", i + 1, algo, + COMP_BUF_SIZE - req.avail_out, + ctemplate[i].outlen); + return -EINVAL; + } + + if (produced != ctemplate[i].outlen) { + pr_err("alg: comp: Compression test %d failed for %s: " + "returned len = %u (expected %d)\n", i + 1, + algo, produced, ctemplate[i].outlen); + return -EINVAL; + } + + if (memcmp(result, ctemplate[i].output, ctemplate[i].outlen)) { + pr_err("alg: pcomp: Compression test %d failed for " + "%s\n", i + 1, algo); + hexdump(result, ctemplate[i].outlen); + return -EINVAL; + } + } + + for (i = 0; i < dtcount; i++) { + struct comp_request req; + unsigned int produced = 0; + + res = crypto_decompress_setup(tfm, dtemplate[i].params, + dtemplate[i].paramsize); + if (res) { + pr_err("alg: pcomp: decompression setup failed on " + "test %d for %s: error=%d\n", i + 1, algo, res); + return res; + } + + res = crypto_decompress_init(tfm); + if (res) { + pr_err("alg: pcomp: decompression init failed on test " + "%d for %s: error=%d\n", i + 1, algo, res); + return res; + } + + memset(result, 0, sizeof(result)); + + req.next_in = dtemplate[i].input; + req.avail_in = dtemplate[i].inlen / 2; + req.next_out = result; + req.avail_out = dtemplate[i].outlen / 2; + + res = crypto_decompress_update(tfm, &req); + if (res < 0 && (res != -EAGAIN || req.avail_in)) { + pr_err("alg: pcomp: decompression update failed on " + "test %d for %s: error=%d\n", i + 1, algo, res); + return res; + } + if (res > 0) + produced += res; + + /* Add remaining input data */ + req.avail_in += (dtemplate[i].inlen + 1) / 2; + + res = crypto_decompress_update(tfm, &req); + if (res < 0 && (res != -EAGAIN || req.avail_in)) { + pr_err("alg: pcomp: decompression update failed on " + "test %d for %s: error=%d\n", i + 1, algo, res); + return res; + } + if (res > 0) + produced += res; + + /* Provide remaining output space */ + req.avail_out += COMP_BUF_SIZE - dtemplate[i].outlen / 2; + + res = crypto_decompress_final(tfm, &req); + if (res < 0 && (res != -EAGAIN || req.avail_in)) { + pr_err("alg: pcomp: decompression final failed on " + "test %d for %s: error=%d\n", i + 1, algo, res); + return res; + } + if (res > 0) + produced += res; + + if (COMP_BUF_SIZE - req.avail_out != dtemplate[i].outlen) { + pr_err("alg: comp: Decompression test %d failed for " + "%s: output len = %d (expected %d)\n", i + 1, + algo, COMP_BUF_SIZE - req.avail_out, + dtemplate[i].outlen); + return -EINVAL; + } + + if (produced != dtemplate[i].outlen) { + pr_err("alg: comp: Decompression test %d failed for " + "%s: returned len = %u (expected %d)\n", i + 1, + algo, produced, dtemplate[i].outlen); + return -EINVAL; + } + + if (memcmp(result, dtemplate[i].output, dtemplate[i].outlen)) { + pr_err("alg: pcomp: Decompression test %d failed for " + "%s\n", i + 1, algo); + hexdump(result, dtemplate[i].outlen); + return -EINVAL; + } + } + + return 0; +} + +static int test_ablkcipher_jiffies(struct ablkcipher_request *req, int enc, + int sec, struct tcrypt_result *result, + int blen) +{ + unsigned long start, end; + int bcount; + int ret; + + for (start = jiffies, end = start + sec * HZ, bcount = 0; + time_before(jiffies, end); bcount++) { + + if (enc) + ret = crypto_ablkcipher_encrypt(req); + else + ret = crypto_ablkcipher_decrypt(req); + + switch (ret) { + case 0: + break; + case -EINPROGRESS: + case -EBUSY: + ret = wait_for_completion_interruptible( + &result->completion); + if (!ret && !((ret = result->err))) { + INIT_COMPLETION(result->completion); + break; + } + default: + printk("ERROR\n"); + return ret; + } + } + + printk("%d operations in %d seconds (%ld bytes)\n", + bcount, sec, (long)bcount * blen); + + return 0; +} + +static int test_ablkcipher_cycles(struct ablkcipher_request *req, int enc, + int sec, struct tcrypt_result *result, + int blen) +{ + unsigned long cycles = 0; + int ret = 0; + int i; + unsigned long start, end = 0; + //local_bh_disable(); + //local_irq_disable(); + /* Warm-up run. */ + for (i = 0; i < 4; i++) { + if (enc) + ret = crypto_ablkcipher_encrypt(req); + else + ret = crypto_ablkcipher_decrypt(req); + + switch (ret) { + case 0: + break; + case -EINPROGRESS: + case -EBUSY: +#if 0 + ret = wait_for_completion_interruptible( + &result->completion); + if (!ret && !((ret = result->err))) { + INIT_COMPLETION(result->completion); + break; + } +#else + + wait_for_completion(&result->completion); + INIT_COMPLETION(result->completion); + break; +#endif + default: + printk("ERROR\n"); + return ret; + } + + if (signal_pending(current)) { + printk("Signal caught\n"); + break; + } + + } + + //printk("Debug ln: (%d), fn: %s\n", __LINE__, __func__); + /* The real thing. */ + for (i = 0; i < 8; i++) { + end = 0; + start = 0; + start = read_c0_count(); + if (enc) + ret = crypto_ablkcipher_encrypt(req); + else + ret = crypto_ablkcipher_decrypt(req); + + switch (ret) { + case 0: + break; + case -EINPROGRESS: + case -EBUSY: +#if 0 + ret = wait_for_completion_interruptible( + &result->completion); + end = get_cycles(); + if (!ret && !((ret = result->err))) { + INIT_COMPLETION(result->completion); + break; + } +#else + wait_for_completion(&result->completion); + end = read_c0_count(); + INIT_COMPLETION(result->completion); + break; +#endif + default: + printk("ERROR\n"); + return ret; + } + + if (signal_pending(current)) { + printk("Signal caught\n"); + break; + } + + cycles += end - start; + } + + // local_irq_enable(); + // local_bh_enable(); + + printk("1 operation in %lu cycles (%d bytes)\n", + (cycles + 4) / 8, blen); + + return 0; + +} + +static u32 b_size[] = {16, 64, 256, 1024, 8192, 0}; + +static int test_skcipher_speed(struct crypto_ablkcipher *tfm, int enc, + struct cipher_speed_template *template, + unsigned int tcount, unsigned int sec, + u8* keysize) +{ + const char *algo = + crypto_tfm_alg_driver_name(crypto_ablkcipher_tfm(tfm)); + + unsigned int i = 0, j, iv_len; + struct ablkcipher_request *req; + //struct scatterlist sg[8]; + const char *e; + struct tcrypt_result result; + char iv[MAX_IVLEN]; + static char *xbuf[XBUFSIZE]; + int ret = -ENOMEM; + u32 *block_size; + static char *tvmem_buf[4]; + const char *key; + + if (testmgr_alloc_buf(xbuf)) + goto out_nobuf; + + if (enc == ENCRYPT) + e = "encryption"; + else + e = "decryption"; + + init_completion(&result.completion); + + printk("Start ablkcipher speed test\n"); + + req = ablkcipher_request_alloc(tfm, GFP_KERNEL); + if (!req) { + printk(KERN_ERR "alg: skcipher: Failed to allocate request " + "for %s\n", algo); + goto out; + } + +// ablkcipher_request_set_callback(req, CRYPTO_TFM_REQ_MAY_BACKLOG, + ablkcipher_request_set_callback(req, 0, + tcrypt_complete, &result); + + do { + + block_size = b_size; + + do { + struct scatterlist sg[4]; + if ((*keysize + *block_size) > 4 * PAGE_SIZE) { + printk("template (%u) too big for " + "tvmem_buf (%lu)\n", *keysize + *block_size, + 4 * PAGE_SIZE); + goto out; + } + crypto_ablkcipher_clear_flags(tfm, ~0); + + printk("test %u (%d bit key, %d byte blocks): ", i, + *keysize * 8, *block_size); + + memset(tvmem_buf[0], 0xff, PAGE_SIZE); + key = tvmem_buf[0]; + + for (j = 0; j < tcount; j++) { + if (template[j].klen == *keysize) { + key = template[j].key; + break; + } + } + ret = crypto_ablkcipher_setkey(tfm, key, *keysize); + if (ret) { + printk("Error setting of keys\n"); + goto out; + } + + sg_init_table(sg, 4); + + for (j = 0; j < 4; j++) { + tvmem_buf[j] = xbuf[j]; + memset(tvmem_buf[j], 0xff, PAGE_SIZE); + sg_set_buf(sg + j, tvmem_buf[j], PAGE_SIZE); + } + + iv_len = crypto_ablkcipher_ivsize(tfm); + if (iv_len) { + memset(&iv, 0xff, iv_len); + } + + ablkcipher_request_set_crypt(req, sg, sg, + *block_size, iv); + + //printk("Debug ln: %d, %s\n", __LINE__, __func__); + if (sec) + ret = test_ablkcipher_jiffies(req, enc, sec, + &result, *block_size); + else + ret = test_ablkcipher_cycles(req, enc, sec, + &result, *block_size); + + + if (ret) { + printk(KERN_ERR "alg: skcipher: %s failed on " + "test %d for %s: ret=%d\n", e, j, algo, + -ret); + goto out; + } + + block_size++; + i++; + } while (*block_size); + keysize++; + } while (*keysize); + + ret = 0; +out: + printk("End ablkcipher speed test\n"); + ablkcipher_request_free(req); + testmgr_free_buf(xbuf); +#if 0 + if (!completion_done(&result->completion)) { + printk("There are threads waiting for completion, completing all\n"); + complete_all(&result->completion); + } +#endif + + //testmgr_free_buf(tvbuf); +out_nobuf: + return ret; + +} + +static int test_cprng(struct crypto_rng *tfm, struct cprng_testvec *template, + unsigned int tcount) +{ + const char *algo = crypto_tfm_alg_driver_name(crypto_rng_tfm(tfm)); + int err = 0, i, j, seedsize; + u8 *seed; + char result[32]; + + seedsize = crypto_rng_seedsize(tfm); + + seed = kmalloc(seedsize, GFP_KERNEL); + if (!seed) { + printk(KERN_ERR "alg: cprng: Failed to allocate seed space " + "for %s\n", algo); + return -ENOMEM; + } + + for (i = 0; i < tcount; i++) { + memset(result, 0, 32); + + memcpy(seed, template[i].v, template[i].vlen); + memcpy(seed + template[i].vlen, template[i].key, + template[i].klen); + memcpy(seed + template[i].vlen + template[i].klen, + template[i].dt, template[i].dtlen); + + err = crypto_rng_reset(tfm, seed, seedsize); + if (err) { + printk(KERN_ERR "alg: cprng: Failed to reset rng " + "for %s\n", algo); + goto out; + } + + for (j = 0; j < template[i].loops; j++) { + err = crypto_rng_get_bytes(tfm, result, + template[i].rlen); + if (err != template[i].rlen) { + printk(KERN_ERR "alg: cprng: Failed to obtain " + "the correct amount of random data for " + "%s (requested %d, got %d)\n", algo, + template[i].rlen, err); + goto out; + } + } + + err = memcmp(result, template[i].result, + template[i].rlen); + if (err) { + printk(KERN_ERR "alg: cprng: Test %d failed for %s\n", + i, algo); + hexdump(result, template[i].rlen); + err = -EINVAL; + goto out; + } + } + +out: + kfree(seed); + return err; +} + +static int alg_test_aead(const struct alg_test_desc *desc, const char *driver, + u32 type, u32 mask) +{ + struct crypto_aead *tfm; + int err = 0; + + tfm = crypto_alloc_aead(driver, type, mask); + if (IS_ERR(tfm)) { + printk(KERN_ERR "alg: aead: Failed to load transform for %s: " + "%ld\n", driver, PTR_ERR(tfm)); + return PTR_ERR(tfm); + } + + if (desc->suite.aead.enc.vecs) { + err = test_aead(tfm, ENCRYPT, desc->suite.aead.enc.vecs, + desc->suite.aead.enc.count); + if (err) + goto out; + } + + if (!err && desc->suite.aead.dec.vecs) + err = test_aead(tfm, DECRYPT, desc->suite.aead.dec.vecs, + desc->suite.aead.dec.count); + +out: + crypto_free_aead(tfm); + return err; +} + +static int alg_test_cipher(const struct alg_test_desc *desc, + const char *driver, u32 type, u32 mask) +{ + struct crypto_cipher *tfm; + int err = 0; + + tfm = crypto_alloc_cipher(driver, type, mask); + if (IS_ERR(tfm)) { + printk(KERN_ERR "alg: cipher: Failed to load transform for " + "%s: %ld\n", driver, PTR_ERR(tfm)); + return PTR_ERR(tfm); + } + + if (desc->suite.cipher.enc.vecs) { + err = test_cipher(tfm, ENCRYPT, desc->suite.cipher.enc.vecs, + desc->suite.cipher.enc.count); + if (err) + goto out; + } + + if (desc->suite.cipher.dec.vecs) + err = test_cipher(tfm, DECRYPT, desc->suite.cipher.dec.vecs, + desc->suite.cipher.dec.count); + +out: + crypto_free_cipher(tfm); + return err; +} + +static int alg_test_skcipher(const struct alg_test_desc *desc, + const char *driver, u32 type, u32 mask) +{ + struct crypto_ablkcipher *tfm; + int err = 0; + + tfm = crypto_alloc_ablkcipher(driver, type, mask); + if (IS_ERR(tfm)) { + printk(KERN_ERR "alg: skcipher: Failed to load transform for " + "%s: %ld\n", driver, PTR_ERR(tfm)); + return PTR_ERR(tfm); + } + + if (desc->suite.cipher.enc.vecs) { + err = test_skcipher(tfm, ENCRYPT, desc->suite.cipher.enc.vecs, + desc->suite.cipher.enc.count); + if (err) + goto out; + } + + if (desc->suite.cipher.dec.vecs) + err = test_skcipher(tfm, DECRYPT, desc->suite.cipher.dec.vecs, + desc->suite.cipher.dec.count); + +out: + crypto_free_ablkcipher(tfm); + return err; +} + +static int alg_test_comp(const struct alg_test_desc *desc, const char *driver, + u32 type, u32 mask) +{ + struct crypto_comp *tfm; + int err; + + tfm = crypto_alloc_comp(driver, type, mask); + if (IS_ERR(tfm)) { + printk(KERN_ERR "alg: comp: Failed to load transform for %s: " + "%ld\n", driver, PTR_ERR(tfm)); + return PTR_ERR(tfm); + } + + err = test_comp(tfm, desc->suite.comp.comp.vecs, + desc->suite.comp.decomp.vecs, + desc->suite.comp.comp.count, + desc->suite.comp.decomp.count); + + crypto_free_comp(tfm); + return err; +} + +static int alg_test_pcomp(const struct alg_test_desc *desc, const char *driver, + u32 type, u32 mask) +{ + struct crypto_pcomp *tfm; + int err; + + tfm = crypto_alloc_pcomp(driver, type, mask); + if (IS_ERR(tfm)) { + pr_err("alg: pcomp: Failed to load transform for %s: %ld\n", + driver, PTR_ERR(tfm)); + return PTR_ERR(tfm); + } + + err = test_pcomp(tfm, desc->suite.pcomp.comp.vecs, + desc->suite.pcomp.decomp.vecs, + desc->suite.pcomp.comp.count, + desc->suite.pcomp.decomp.count); + + crypto_free_pcomp(tfm); + return err; +} + +static int alg_test_hash(const struct alg_test_desc *desc, const char *driver, + u32 type, u32 mask) +{ + struct crypto_ahash *tfm; + int err; + + tfm = crypto_alloc_ahash(driver, type, mask); + if (IS_ERR(tfm)) { + printk(KERN_ERR "alg: hash: Failed to load transform for %s: " + "%ld\n", driver, PTR_ERR(tfm)); + return PTR_ERR(tfm); + } + + err = test_hash(tfm, desc->suite.hash.vecs, desc->suite.hash.count); + + crypto_free_ahash(tfm); + return err; +} + +static int alg_test_crc32c(const struct alg_test_desc *desc, + const char *driver, u32 type, u32 mask) +{ + struct crypto_shash *tfm; + u32 val; + int err; + + err = alg_test_hash(desc, driver, type, mask); + if (err) + goto out; + + tfm = crypto_alloc_shash(driver, type, mask); + if (IS_ERR(tfm)) { + printk(KERN_ERR "alg: crc32c: Failed to load transform for %s: " + "%ld\n", driver, PTR_ERR(tfm)); + err = PTR_ERR(tfm); + goto out; + } + + do { + struct { + struct shash_desc shash; + char ctx[crypto_shash_descsize(tfm)]; + } sdesc; + + sdesc.shash.tfm = tfm; + sdesc.shash.flags = 0; + + *(u32 *)sdesc.ctx = le32_to_cpu(420553207); + err = crypto_shash_final(&sdesc.shash, (u8 *)&val); + if (err) { + printk(KERN_ERR "alg: crc32c: Operation failed for " + "%s: %d\n", driver, err); + break; + } + + if (val != ~420553207) { + printk(KERN_ERR "alg: crc32c: Test failed for %s: " + "%d\n", driver, val); + err = -EINVAL; + } + } while (0); + + crypto_free_shash(tfm); + +out: + return err; +} + +static int alg_test_cprng(const struct alg_test_desc *desc, const char *driver, + u32 type, u32 mask) +{ + struct crypto_rng *rng; + int err = 0; + + rng = crypto_alloc_rng(driver, type, mask); + if (IS_ERR(rng)) { + printk(KERN_ERR "alg: cprng: Failed to load transform for %s: " + "%ld\n", driver, PTR_ERR(rng)); + return PTR_ERR(rng); + } + + err = test_cprng(rng, desc->suite.cprng.vecs, desc->suite.cprng.count); + + crypto_free_rng(rng); + + return err; +} + +/* Please keep this list sorted by algorithm name. */ +static const struct alg_test_desc alg_test_descs[] = { + { + .alg = "ansi_cprng", + .test = alg_test_cprng, + .fips_allowed = 1, + .suite = { + .cprng = { + .vecs = ansi_cprng_aes_tv_template, + .count = ANSI_CPRNG_AES_TEST_VECTORS + } + } + }, { + .alg = "cbc(aes)", + .test = alg_test_skcipher, + .fips_allowed = 1, + .suite = { + .cipher = { + .enc = { + .vecs = aes_cbc_enc_tv_template, + .count = AES_CBC_ENC_TEST_VECTORS + }, + .dec = { + .vecs = aes_cbc_dec_tv_template, + .count = AES_CBC_DEC_TEST_VECTORS + } + } + } + }, { + .alg = "cbc(anubis)", + .test = alg_test_skcipher, + .suite = { + .cipher = { + .enc = { + .vecs = anubis_cbc_enc_tv_template, + .count = ANUBIS_CBC_ENC_TEST_VECTORS + }, + .dec = { + .vecs = anubis_cbc_dec_tv_template, + .count = ANUBIS_CBC_DEC_TEST_VECTORS + } + } + } + }, { + .alg = "cbc(blowfish)", + .test = alg_test_skcipher, + .suite = { + .cipher = { + .enc = { + .vecs = bf_cbc_enc_tv_template, + .count = BF_CBC_ENC_TEST_VECTORS + }, + .dec = { + .vecs = bf_cbc_dec_tv_template, + .count = BF_CBC_DEC_TEST_VECTORS + } + } + } + }, { + .alg = "cbc(camellia)", + .test = alg_test_skcipher, + .suite = { + .cipher = { + .enc = { + .vecs = camellia_cbc_enc_tv_template, + .count = CAMELLIA_CBC_ENC_TEST_VECTORS + }, + .dec = { + .vecs = camellia_cbc_dec_tv_template, + .count = CAMELLIA_CBC_DEC_TEST_VECTORS + } + } + } + }, { + .alg = "cbc(des)", + .test = alg_test_skcipher, + .suite = { + .cipher = { + .enc = { + .vecs = des_cbc_enc_tv_template, + .count = DES_CBC_ENC_TEST_VECTORS + }, + .dec = { + .vecs = des_cbc_dec_tv_template, + .count = DES_CBC_DEC_TEST_VECTORS + } + } + } + }, { + .alg = "cbc(des3_ede)", + .test = alg_test_skcipher, + .fips_allowed = 1, + .suite = { + .cipher = { + .enc = { + .vecs = des3_ede_cbc_enc_tv_template, + .count = DES3_EDE_CBC_ENC_TEST_VECTORS + }, + .dec = { + .vecs = des3_ede_cbc_dec_tv_template, + .count = DES3_EDE_CBC_DEC_TEST_VECTORS + } + } + } + }, { + .alg = "cbc(twofish)", + .test = alg_test_skcipher, + .suite = { + .cipher = { + .enc = { + .vecs = tf_cbc_enc_tv_template, + .count = TF_CBC_ENC_TEST_VECTORS + }, + .dec = { + .vecs = tf_cbc_dec_tv_template, + .count = TF_CBC_DEC_TEST_VECTORS + } + } + } + }, { + .alg = "ccm(aes)", + .test = alg_test_aead, + .fips_allowed = 1, + .suite = { + .aead = { + .enc = { + .vecs = aes_ccm_enc_tv_template, + .count = AES_CCM_ENC_TEST_VECTORS + }, + .dec = { + .vecs = aes_ccm_dec_tv_template, + .count = AES_CCM_DEC_TEST_VECTORS + } + } + } + }, { + .alg = "crc32c", + .test = alg_test_crc32c, + .fips_allowed = 1, + .suite = { + .hash = { + .vecs = crc32c_tv_template, + .count = CRC32C_TEST_VECTORS + } + } + }, { + .alg = "ctr(aes)", + .test = alg_test_skcipher, + .fips_allowed = 1, + .suite = { + .cipher = { + .enc = { + .vecs = aes_ctr_enc_tv_template, + .count = AES_CTR_ENC_TEST_VECTORS + }, + .dec = { + .vecs = aes_ctr_dec_tv_template, + .count = AES_CTR_DEC_TEST_VECTORS + } + } + } + }, { + .alg = "cts(cbc(aes))", + .test = alg_test_skcipher, + .suite = { + .cipher = { + .enc = { + .vecs = cts_mode_enc_tv_template, + .count = CTS_MODE_ENC_TEST_VECTORS + }, + .dec = { + .vecs = cts_mode_dec_tv_template, + .count = CTS_MODE_DEC_TEST_VECTORS + } + } + } + }, { + .alg = "deflate", + .test = alg_test_comp, + .suite = { + .comp = { + .comp = { + .vecs = deflate_comp_tv_template, + .count = DEFLATE_COMP_TEST_VECTORS + }, + .decomp = { + .vecs = deflate_decomp_tv_template, + .count = DEFLATE_DECOMP_TEST_VECTORS + } + } + } + }, { + .alg = "ecb(aes)", + .test = alg_test_skcipher, + .fips_allowed = 1, + .suite = { + .cipher = { + .enc = { + .vecs = aes_enc_tv_template, + .count = AES_ENC_TEST_VECTORS + }, + .dec = { + .vecs = aes_dec_tv_template, + .count = AES_DEC_TEST_VECTORS + } + } + } + }, { + .alg = "ecb(anubis)", + .test = alg_test_skcipher, + .suite = { + .cipher = { + .enc = { + .vecs = anubis_enc_tv_template, + .count = ANUBIS_ENC_TEST_VECTORS + }, + .dec = { + .vecs = anubis_dec_tv_template, + .count = ANUBIS_DEC_TEST_VECTORS + } + } + } + }, { + .alg = "ecb(arc4)", + .test = alg_test_skcipher, + .suite = { + .cipher = { + .enc = { + .vecs = arc4_enc_tv_template, + .count = ARC4_ENC_TEST_VECTORS + }, + .dec = { + .vecs = arc4_dec_tv_template, + .count = ARC4_DEC_TEST_VECTORS + } + } + } + }, { + .alg = "ecb(blowfish)", + .test = alg_test_skcipher, + .suite = { + .cipher = { + .enc = { + .vecs = bf_enc_tv_template, + .count = BF_ENC_TEST_VECTORS + }, + .dec = { + .vecs = bf_dec_tv_template, + .count = BF_DEC_TEST_VECTORS + } + } + } + }, { + .alg = "ecb(camellia)", + .test = alg_test_skcipher, + .suite = { + .cipher = { + .enc = { + .vecs = camellia_enc_tv_template, + .count = CAMELLIA_ENC_TEST_VECTORS + }, + .dec = { + .vecs = camellia_dec_tv_template, + .count = CAMELLIA_DEC_TEST_VECTORS + } + } + } + }, { + .alg = "ecb(cast5)", + .test = alg_test_skcipher, + .suite = { + .cipher = { + .enc = { + .vecs = cast5_enc_tv_template, + .count = CAST5_ENC_TEST_VECTORS + }, + .dec = { + .vecs = cast5_dec_tv_template, + .count = CAST5_DEC_TEST_VECTORS + } + } + } + }, { + .alg = "ecb(cast6)", + .test = alg_test_skcipher, + .suite = { + .cipher = { + .enc = { + .vecs = cast6_enc_tv_template, + .count = CAST6_ENC_TEST_VECTORS + }, + .dec = { + .vecs = cast6_dec_tv_template, + .count = CAST6_DEC_TEST_VECTORS + } + } + } + }, { + .alg = "ecb(des)", + .test = alg_test_skcipher, + .fips_allowed = 1, + .suite = { + .cipher = { + .enc = { + .vecs = des_enc_tv_template, + .count = DES_ENC_TEST_VECTORS + }, + .dec = { + .vecs = des_dec_tv_template, + .count = DES_DEC_TEST_VECTORS + } + } + } + }, { + .alg = "ecb(des3_ede)", + .test = alg_test_skcipher, + .fips_allowed = 1, + .suite = { + .cipher = { + .enc = { + .vecs = des3_ede_enc_tv_template, + .count = DES3_EDE_ENC_TEST_VECTORS + }, + .dec = { + .vecs = des3_ede_dec_tv_template, + .count = DES3_EDE_DEC_TEST_VECTORS + } + } + } + }, { + .alg = "ecb(khazad)", + .test = alg_test_skcipher, + .suite = { + .cipher = { + .enc = { + .vecs = khazad_enc_tv_template, + .count = KHAZAD_ENC_TEST_VECTORS + }, + .dec = { + .vecs = khazad_dec_tv_template, + .count = KHAZAD_DEC_TEST_VECTORS + } + } + } + }, { + .alg = "ecb(seed)", + .test = alg_test_skcipher, + .suite = { + .cipher = { + .enc = { + .vecs = seed_enc_tv_template, + .count = SEED_ENC_TEST_VECTORS + }, + .dec = { + .vecs = seed_dec_tv_template, + .count = SEED_DEC_TEST_VECTORS + } + } + } + }, { + .alg = "ecb(serpent)", + .test = alg_test_skcipher, + .suite = { + .cipher = { + .enc = { + .vecs = serpent_enc_tv_template, + .count = SERPENT_ENC_TEST_VECTORS + }, + .dec = { + .vecs = serpent_dec_tv_template, + .count = SERPENT_DEC_TEST_VECTORS + } + } + } + }, { + .alg = "ecb(tea)", + .test = alg_test_skcipher, + .suite = { + .cipher = { + .enc = { + .vecs = tea_enc_tv_template, + .count = TEA_ENC_TEST_VECTORS + }, + .dec = { + .vecs = tea_dec_tv_template, + .count = TEA_DEC_TEST_VECTORS + } + } + } + }, { + .alg = "ecb(tnepres)", + .test = alg_test_skcipher, + .suite = { + .cipher = { + .enc = { + .vecs = tnepres_enc_tv_template, + .count = TNEPRES_ENC_TEST_VECTORS + }, + .dec = { + .vecs = tnepres_dec_tv_template, + .count = TNEPRES_DEC_TEST_VECTORS + } + } + } + }, { + .alg = "ecb(twofish)", + .test = alg_test_skcipher, + .suite = { + .cipher = { + .enc = { + .vecs = tf_enc_tv_template, + .count = TF_ENC_TEST_VECTORS + }, + .dec = { + .vecs = tf_dec_tv_template, + .count = TF_DEC_TEST_VECTORS + } + } + } + }, { + .alg = "ecb(xeta)", + .test = alg_test_skcipher, + .suite = { + .cipher = { + .enc = { + .vecs = xeta_enc_tv_template, + .count = XETA_ENC_TEST_VECTORS + }, + .dec = { + .vecs = xeta_dec_tv_template, + .count = XETA_DEC_TEST_VECTORS + } + } + } + }, { + .alg = "ecb(xtea)", + .test = alg_test_skcipher, + .suite = { + .cipher = { + .enc = { + .vecs = xtea_enc_tv_template, + .count = XTEA_ENC_TEST_VECTORS + }, + .dec = { + .vecs = xtea_dec_tv_template, + .count = XTEA_DEC_TEST_VECTORS + } + } + } + }, { + .alg = "gcm(aes)", + .test = alg_test_aead, + .fips_allowed = 1, + .suite = { + .aead = { + .enc = { + .vecs = aes_gcm_enc_tv_template, + .count = AES_GCM_ENC_TEST_VECTORS + }, + .dec = { + .vecs = aes_gcm_dec_tv_template, + .count = AES_GCM_DEC_TEST_VECTORS + } + } + } + }, { + .alg = "hmac(md5)", + .test = alg_test_hash, + .suite = { + .hash = { + .vecs = hmac_md5_tv_template, + .count = HMAC_MD5_TEST_VECTORS + } + } + }, { + .alg = "hmac(rmd128)", + .test = alg_test_hash, + .suite = { + .hash = { + .vecs = hmac_rmd128_tv_template, + .count = HMAC_RMD128_TEST_VECTORS + } + } + }, { + .alg = "hmac(rmd160)", + .test = alg_test_hash, + .suite = { + .hash = { + .vecs = hmac_rmd160_tv_template, + .count = HMAC_RMD160_TEST_VECTORS + } + } + }, { + .alg = "hmac(sha1)", + .test = alg_test_hash, + .fips_allowed = 1, + .suite = { + .hash = { + .vecs = hmac_sha1_tv_template, + .count = HMAC_SHA1_TEST_VECTORS + } + } + }, { + .alg = "hmac(sha224)", + .test = alg_test_hash, + .fips_allowed = 1, + .suite = { + .hash = { + .vecs = hmac_sha224_tv_template, + .count = HMAC_SHA224_TEST_VECTORS + } + } + }, { + .alg = "hmac(sha256)", + .test = alg_test_hash, + .fips_allowed = 1, + .suite = { + .hash = { + .vecs = hmac_sha256_tv_template, + .count = HMAC_SHA256_TEST_VECTORS + } + } + }, { + .alg = "hmac(sha384)", + .test = alg_test_hash, + .fips_allowed = 1, + .suite = { + .hash = { + .vecs = hmac_sha384_tv_template, + .count = HMAC_SHA384_TEST_VECTORS + } + } + }, { + .alg = "hmac(sha512)", + .test = alg_test_hash, + .fips_allowed = 1, + .suite = { + .hash = { + .vecs = hmac_sha512_tv_template, + .count = HMAC_SHA512_TEST_VECTORS + } + } +#if !defined(CONFIG_CRYPTO_DEV_AES) && !defined(CONFIG_CRYPTO_ASYNC_AES) + }, { + .alg = "lrw(aes)", + .test = alg_test_skcipher, + .suite = { + .cipher = { + .enc = { + .vecs = aes_lrw_enc_tv_template, + .count = AES_LRW_ENC_TEST_VECTORS + }, + .dec = { + .vecs = aes_lrw_dec_tv_template, + .count = AES_LRW_DEC_TEST_VECTORS + } + } + } +#endif + }, { + .alg = "lzo", + .test = alg_test_comp, + .suite = { + .comp = { + .comp = { + .vecs = lzo_comp_tv_template, + .count = LZO_COMP_TEST_VECTORS + }, + .decomp = { + .vecs = lzo_decomp_tv_template, + .count = LZO_DECOMP_TEST_VECTORS + } + } + } + }, { + .alg = "md4", + .test = alg_test_hash, + .suite = { + .hash = { + .vecs = md4_tv_template, + .count = MD4_TEST_VECTORS + } + } + }, { + .alg = "md5", + .test = alg_test_hash, + .suite = { + .hash = { + .vecs = md5_tv_template, + .count = MD5_TEST_VECTORS + } + } + }, { + .alg = "michael_mic", + .test = alg_test_hash, + .suite = { + .hash = { + .vecs = michael_mic_tv_template, + .count = MICHAEL_MIC_TEST_VECTORS + } + } + }, { + .alg = "pcbc(fcrypt)", + .test = alg_test_skcipher, + .suite = { + .cipher = { + .enc = { + .vecs = fcrypt_pcbc_enc_tv_template, + .count = FCRYPT_ENC_TEST_VECTORS + }, + .dec = { + .vecs = fcrypt_pcbc_dec_tv_template, + .count = FCRYPT_DEC_TEST_VECTORS + } + } + } + + }, { + .alg = "rfc3686(ctr(aes))", + .test = alg_test_skcipher, + .fips_allowed = 1, + .suite = { + .cipher = { + .enc = { + .vecs = aes_ctr_rfc3686_enc_tv_template, + .count = AES_CTR_3686_ENC_TEST_VECTORS + }, + .dec = { + .vecs = aes_ctr_rfc3686_dec_tv_template, + .count = AES_CTR_3686_DEC_TEST_VECTORS + } + } + } + }, { + .alg = "rfc4309(ccm(aes))", + .test = alg_test_aead, + .fips_allowed = 1, + .suite = { + .aead = { + .enc = { + .vecs = aes_ccm_rfc4309_enc_tv_template, + .count = AES_CCM_4309_ENC_TEST_VECTORS + }, + .dec = { + .vecs = aes_ccm_rfc4309_dec_tv_template, + .count = AES_CCM_4309_DEC_TEST_VECTORS + } + } + } + }, { + .alg = "rmd128", + .test = alg_test_hash, + .suite = { + .hash = { + .vecs = rmd128_tv_template, + .count = RMD128_TEST_VECTORS + } + } + }, { + .alg = "rmd160", + .test = alg_test_hash, + .suite = { + .hash = { + .vecs = rmd160_tv_template, + .count = RMD160_TEST_VECTORS + } + } + }, { + .alg = "rmd256", + .test = alg_test_hash, + .suite = { + .hash = { + .vecs = rmd256_tv_template, + .count = RMD256_TEST_VECTORS + } + } + }, { + .alg = "rmd320", + .test = alg_test_hash, + .suite = { + .hash = { + .vecs = rmd320_tv_template, + .count = RMD320_TEST_VECTORS + } + } + }, { + .alg = "salsa20", + .test = alg_test_skcipher, + .suite = { + .cipher = { + .enc = { + .vecs = salsa20_stream_enc_tv_template, + .count = SALSA20_STREAM_ENC_TEST_VECTORS + } + } + } + }, { + .alg = "sha1", + .test = alg_test_hash, + .fips_allowed = 1, + .suite = { + .hash = { + .vecs = sha1_tv_template, + .count = SHA1_TEST_VECTORS + } + } + }, { + .alg = "sha224", + .test = alg_test_hash, + .fips_allowed = 1, + .suite = { + .hash = { + .vecs = sha224_tv_template, + .count = SHA224_TEST_VECTORS + } + } + }, { + .alg = "sha256", + .test = alg_test_hash, + .fips_allowed = 1, + .suite = { + .hash = { + .vecs = sha256_tv_template, + .count = SHA256_TEST_VECTORS + } + } + }, { + .alg = "sha384", + .test = alg_test_hash, + .fips_allowed = 1, + .suite = { + .hash = { + .vecs = sha384_tv_template, + .count = SHA384_TEST_VECTORS + } + } + }, { + .alg = "sha512", + .test = alg_test_hash, + .fips_allowed = 1, + .suite = { + .hash = { + .vecs = sha512_tv_template, + .count = SHA512_TEST_VECTORS + } + } + }, { + .alg = "tgr128", + .test = alg_test_hash, + .suite = { + .hash = { + .vecs = tgr128_tv_template, + .count = TGR128_TEST_VECTORS + } + } + }, { + .alg = "tgr160", + .test = alg_test_hash, + .suite = { + .hash = { + .vecs = tgr160_tv_template, + .count = TGR160_TEST_VECTORS + } + } + }, { + .alg = "tgr192", + .test = alg_test_hash, + .suite = { + .hash = { + .vecs = tgr192_tv_template, + .count = TGR192_TEST_VECTORS + } + } + }, { + .alg = "vmac(aes)", + .test = alg_test_hash, + .suite = { + .hash = { + .vecs = aes_vmac128_tv_template, + .count = VMAC_AES_TEST_VECTORS + } + } + }, { + .alg = "wp256", + .test = alg_test_hash, + .suite = { + .hash = { + .vecs = wp256_tv_template, + .count = WP256_TEST_VECTORS + } + } + }, { + .alg = "wp384", + .test = alg_test_hash, + .suite = { + .hash = { + .vecs = wp384_tv_template, + .count = WP384_TEST_VECTORS + } + } + }, { + .alg = "wp512", + .test = alg_test_hash, + .suite = { + .hash = { + .vecs = wp512_tv_template, + .count = WP512_TEST_VECTORS + } + } + }, { + .alg = "xcbc(aes)", + .test = alg_test_hash, + .suite = { + .hash = { + .vecs = aes_xcbc128_tv_template, + .count = XCBC_AES_TEST_VECTORS + } + } +#if 0 + }, { + .alg = "xts(aes)", + .test = alg_test_skcipher, + .suite = { + .cipher = { + .enc = { + .vecs = aes_xts_enc_tv_template, + .count = AES_XTS_ENC_TEST_VECTORS + }, + .dec = { + .vecs = aes_xts_dec_tv_template, + .count = AES_XTS_DEC_TEST_VECTORS + } + } + } +#endif + }, { + .alg = "zlib", + .test = alg_test_pcomp, + .suite = { + .pcomp = { + .comp = { + .vecs = zlib_comp_tv_template, + .count = ZLIB_COMP_TEST_VECTORS + }, + .decomp = { + .vecs = zlib_decomp_tv_template, + .count = ZLIB_DECOMP_TEST_VECTORS + } + } + } + } +}; + +static int alg_find_test(const char *alg) +{ + int start = 0; + int end = ARRAY_SIZE(alg_test_descs); + + while (start < end) { + int i = (start + end) / 2; + int diff = strcmp(alg_test_descs[i].alg, alg); + + if (diff > 0) { + end = i; + continue; + } + + if (diff < 0) { + start = i + 1; + continue; + } + + return i; + } + + return -1; +} + +static int ifx_alg_test(const char *driver, const char *alg, u32 type, u32 mask) +{ + int i; + int j; + int rc; + + if ((type & CRYPTO_ALG_TYPE_MASK) == CRYPTO_ALG_TYPE_CIPHER) { + char nalg[CRYPTO_MAX_ALG_NAME]; + + if (snprintf(nalg, sizeof(nalg), "ecb(%s)", alg) >= + sizeof(nalg)) + return -ENAMETOOLONG; + + i = alg_find_test(nalg); + if (i < 0) + goto notest; + + if (fips_enabled && !alg_test_descs[i].fips_allowed) + goto non_fips_alg; + + rc = alg_test_cipher(alg_test_descs + i, driver, type, mask); + goto test_done; + } + + i = alg_find_test(alg); + j = alg_find_test(driver); + if (i < 0 && j < 0) + goto notest; + + if (fips_enabled && ((i >= 0 && !alg_test_descs[i].fips_allowed) || + (j >= 0 && !alg_test_descs[j].fips_allowed))) + goto non_fips_alg; + + rc = 0; + if (i >= 0) + rc |= alg_test_descs[i].test(alg_test_descs + i, driver, + type, mask); + if (j >= 0) + rc |= alg_test_descs[j].test(alg_test_descs + j, driver, + type, mask); + +test_done: + if (fips_enabled && rc) + panic("%s: %s alg self test failed in fips mode!\n", driver, alg); + + if (fips_enabled && !rc) + printk(KERN_INFO "alg: self-tests for %s (%s) passed\n", + driver, alg); + + return rc; + +notest: + printk(KERN_INFO "alg: No test for %s (%s)\n", alg, driver); + return 0; +non_fips_alg: + return -EINVAL; +} +EXPORT_SYMBOL_GPL(ifx_alg_test); + +/* Modified speed test for async block cipher mode*/ + +static int ifx_alg_speed_test(const char *driver, const char *alg, + unsigned int sec, + struct cipher_speed_template *template, + unsigned int tcount, u8 *keysize) +{ + int i; + int j; + int err; + int type = 0, mask = 0; + struct crypto_ablkcipher *tfm; + + i = alg_find_test(alg); + j = alg_find_test(driver); + + if (i < 0 && j < 0) + goto notest; + + if (fips_enabled && ((i >= 0 && !alg_test_descs[i].fips_allowed) || + (j >= 0 && !alg_test_descs[j].fips_allowed))) + goto non_fips_alg; + + tfm = crypto_alloc_ablkcipher(driver, type, mask); + + if (IS_ERR(tfm)) { + printk(KERN_ERR "alg: skcipher: Failed to load transform for " + "%s: %ld\n", driver, PTR_ERR(tfm)); + return PTR_ERR(tfm); + } + err = test_skcipher_speed(tfm, ENCRYPT, template, + tcount, sec, keysize); + if (err) + goto test_done; + + err = test_skcipher_speed(tfm, DECRYPT, template, + tcount, sec, keysize); + if (!err) + goto test_done; + +notest: + return 0; +non_fips_alg: + return -EINVAL; + +test_done: + if (fips_enabled && err) + panic("%s: %s alg self test failed in fips mode!\n", driver, alg); + + if (fips_enabled && !err) + printk(KERN_INFO "alg: self-tests for %s (%s) passed\n", + driver, alg); + + crypto_free_ablkcipher(tfm); + return err; +} +EXPORT_SYMBOL_GPL(ifx_alg_speed_test); + + +static int test_cipher_jiffies(struct blkcipher_desc *desc, int enc, + struct scatterlist *sg, int blen, int sec) +{ + unsigned long start, end; + int bcount; + int ret; + + for (start = jiffies, end = start + sec * HZ, bcount = 0; + time_before(jiffies, end); bcount++) { + if (enc) + ret = crypto_blkcipher_encrypt(desc, sg, sg, blen); + else + ret = crypto_blkcipher_decrypt(desc, sg, sg, blen); + + if (ret) + return ret; + } + + printk("%d operations in %d seconds (%ld bytes)\n", + bcount, sec, (long)bcount * blen); + return 0; +} + +static int test_cipher_cycles(struct blkcipher_desc *desc, int enc, + struct scatterlist *sg, int blen) +{ + unsigned long cycles = 0; + unsigned long start, end; + int ret = 0; + int i; + + local_bh_disable(); + local_irq_disable(); + + /* Warm-up run. */ + for (i = 0; i < 4; i++) { + if (enc) + ret = crypto_blkcipher_encrypt(desc, sg, sg, blen); + else + ret = crypto_blkcipher_decrypt(desc, sg, sg, blen); + + if (ret) + goto out; + } + + /* The real thing. */ + for (i = 0; i < 8; i++) { + /* Original code to get cycles, does not work with MIPS + * cycles_t start, end; + * start = get_cycles(); + */ + + start = read_c0_count(); // LQ modified tcrypt + + if (enc) + ret = crypto_blkcipher_encrypt(desc, sg, sg, blen); + else + ret = crypto_blkcipher_decrypt(desc, sg, sg, blen); + + /* Original code to get cycles, does not work with MIPS + * end = get_cycles(); + */ + + end = read_c0_count(); //LQ modified tcrypt + + if (ret) + goto out; + + cycles += end - start; + } + +out: + local_irq_enable(); + local_bh_enable(); + + if (ret == 0) + printk("1 operation in %lu cycles (%d bytes)\n", + (cycles + 4) / 8, blen); + + return ret; +} + +static u32 block_sizes[] = { 16, 64, 256, 1024, 8192, 0 }; + +static void test_cipher_speed(const char *algo, int enc, unsigned int sec, + struct cipher_speed_template *template, + unsigned int tcount, u8 *keysize) +{ + unsigned int ret, i, j, iv_len; + const char *key, iv[128]; + struct crypto_blkcipher *tfm; + struct blkcipher_desc desc; + const char *e; + u32 *b_size; + + if (enc == ENCRYPT) + e = "encryption"; + else + e = "decryption"; + + printk("\n ******* testing speed of %s %s ******* \n", algo, e); + + tfm = crypto_alloc_blkcipher(algo, 0, CRYPTO_ALG_ASYNC); + + if (IS_ERR(tfm)) { + printk("failed to load transform for %s: %ld\n", algo, + PTR_ERR(tfm)); + return; + } + desc.tfm = tfm; + desc.flags = 0; + + i = 0; + do { + + b_size = block_sizes; + do { + struct scatterlist sg[TVMEMSIZE]; + + if ((*keysize + *b_size) > TVMEMSIZE * PAGE_SIZE) { + printk("template (%u) too big for " + "tvmem (%lu)\n", *keysize + *b_size, + TVMEMSIZE * PAGE_SIZE); + goto out; + } + + printk("test %u (%d bit key, %d byte blocks): ", i, + *keysize * 8, *b_size); + + memset(tvmem[0], 0xff, PAGE_SIZE); + + /* set key, plain text and IV */ + key = tvmem[0]; + for (j = 0; j < tcount; j++) { + if (template[j].klen == *keysize) { + key = template[j].key; + break; + } + } + + ret = crypto_blkcipher_setkey(tfm, key, *keysize); + if (ret) { + printk("setkey() failed flags=%x\n", + crypto_blkcipher_get_flags(tfm)); + goto out; + } + + sg_init_table(sg, TVMEMSIZE); + sg_set_buf(sg, tvmem[0] + *keysize, + PAGE_SIZE - *keysize); + for (j = 1; j < TVMEMSIZE; j++) { + sg_set_buf(sg + j, tvmem[j], PAGE_SIZE); + memset (tvmem[j], 0xff, PAGE_SIZE); + } + + iv_len = crypto_blkcipher_ivsize(tfm); + if (iv_len) { + memset(&iv, 0xff, iv_len); + crypto_blkcipher_set_iv(tfm, iv, iv_len); + } + + if (sec) + ret = test_cipher_jiffies(&desc, enc, sg, + *b_size, sec); + else + ret = test_cipher_cycles(&desc, enc, sg, + *b_size); + + if (ret) { + printk("%s() failed flags=%x\n", e, desc.flags); + break; + } + b_size++; + i++; + } while (*b_size); + keysize++; + } while (*keysize); + +out: + crypto_free_blkcipher(tfm); +} + +static int test_hash_jiffies_digest(struct hash_desc *desc, + struct scatterlist *sg, int blen, + char *out, int sec) +{ + unsigned long start, end; + int bcount; + int ret; + + for (start = jiffies, end = start + sec * HZ, bcount = 0; + time_before(jiffies, end); bcount++) { + ret = crypto_hash_digest(desc, sg, blen, out); + if (ret) + return ret; + } + + printk("%6u opers/sec, %9lu bytes/sec\n", + bcount / sec, ((long)bcount * blen) / sec); + + return 0; +} + +static int test_hash_jiffies(struct hash_desc *desc, struct scatterlist *sg, + int blen, int plen, char *out, int sec) +{ + unsigned long start, end; + int bcount, pcount; + int ret; + + if (plen == blen) + return test_hash_jiffies_digest(desc, sg, blen, out, sec); + + for (start = jiffies, end = start + sec * HZ, bcount = 0; + time_before(jiffies, end); bcount++) { + ret = crypto_hash_init(desc); + if (ret) + return ret; + for (pcount = 0; pcount < blen; pcount += plen) { + ret = crypto_hash_update(desc, sg, plen); + if (ret) + return ret; + } + /* we assume there is enough space in 'out' for the result */ + ret = crypto_hash_final(desc, out); + if (ret) + return ret; + } + + printk("%6u opers/sec, %9lu bytes/sec\n", + bcount / sec, ((long)bcount * blen) / sec); + + return 0; +} + +static int test_hash_cycles_digest(struct hash_desc *desc, + struct scatterlist *sg, int blen, char *out) +{ + unsigned long cycles = 0; + unsigned long start, end; + int i; + int ret; + + local_bh_disable(); + local_irq_disable(); + + /* Warm-up run. */ + for (i = 0; i < 4; i++) { + ret = crypto_hash_digest(desc, sg, blen, out); + if (ret) + goto out; + } + + /* The real thing. */ + for (i = 0; i < 8; i++) { + + /* Original code to get cycles, does not work with MIPS + * cycles_t start, end; + * start = get_cycles(); + */ + + start = read_c0_count(); // LQ modified tcrypt + + ret = crypto_hash_digest(desc, sg, blen, out); + if (ret) + goto out; + + /* Original code to get cycles, does not work with MIPS + * end = get_cycles(); + */ + + end = read_c0_count(); // LQ modified tcrypt + + cycles += end - start; + } + +out: + local_irq_enable(); + local_bh_enable(); + + if (ret) + return ret; + + printk("%6lu cycles/operation, %4lu cycles/byte\n", + cycles / 8, cycles / (8 * blen)); + + return 0; +} + +static int test_hash_cycles(struct hash_desc *desc, struct scatterlist *sg, + int blen, int plen, char *out) +{ + unsigned long cycles = 0; + unsigned long start, end; + int i, pcount; + int ret; + + if (plen == blen) + return test_hash_cycles_digest(desc, sg, blen, out); + + local_bh_disable(); + local_irq_disable(); + + /* Warm-up run. */ + for (i = 0; i < 4; i++) { + ret = crypto_hash_init(desc); + if (ret) + goto out; + for (pcount = 0; pcount < blen; pcount += plen) { + ret = crypto_hash_update(desc, sg, plen); + if (ret) + goto out; + } + ret = crypto_hash_final(desc, out); + if (ret) + goto out; + } + + /* The real thing. */ + for (i = 0; i < 8; i++) { + + /* Original code for getting cycles, not working for MIPS + * cycle_t start, end; + * end = get_cycles(); + */ + + start = read_c0_count(); // LQ modified tcrypt + + ret = crypto_hash_init(desc); + if (ret) + goto out; + for (pcount = 0; pcount < blen; pcount += plen) { + ret = crypto_hash_update(desc, sg, plen); + if (ret) + goto out; + } + ret = crypto_hash_final(desc, out); + if (ret) + goto out; + + /* Original code for getting cycles, not working for MIPS + * end = get_cycles(); + */ + + end = read_c0_count(); // LQ modified tcrypt + + cycles += end - start; + } + +out: + local_irq_enable(); + local_bh_enable(); + + if (ret) + return ret; + + printk("%6lu cycles/operation, %4lu cycles/byte\n", + cycles / 8, cycles / (8 * blen)); + + return 0; +} + +static void test_hash_speed(const char *algo, unsigned int sec, + struct hash_speed *speed) +{ + struct scatterlist sg[TVMEMSIZE]; + struct crypto_hash *tfm; + struct hash_desc desc; + static char output[1024]; + int i; + int ret; + + printk(KERN_INFO "\ntesting speed of %s\n", algo); + + tfm = crypto_alloc_hash(algo, 0, CRYPTO_ALG_ASYNC); + + if (IS_ERR(tfm)) { + printk(KERN_ERR "failed to load transform for %s: %ld\n", algo, + PTR_ERR(tfm)); + return; + } + + desc.tfm = tfm; + desc.flags = 0; + + if (crypto_hash_digestsize(tfm) > sizeof(output)) { + printk(KERN_ERR "digestsize(%u) > outputbuffer(%zu)\n", + crypto_hash_digestsize(tfm), sizeof(output)); + goto out; + } + + sg_init_table(sg, TVMEMSIZE); + for (i = 0; i < TVMEMSIZE; i++) { + sg_set_buf(sg + i, tvmem[i], PAGE_SIZE); + memset(tvmem[i], 0xff, PAGE_SIZE); + } + + for (i = 0; speed[i].blen != 0; i++) { + if (speed[i].blen > TVMEMSIZE * PAGE_SIZE) { + printk(KERN_ERR + "template (%u) too big for tvmem (%lu)\n", + speed[i].blen, TVMEMSIZE * PAGE_SIZE); + goto out; + } + + printk(KERN_INFO "test%3u " + "(%5u byte blocks,%5u bytes per update,%4u updates): ", + i, speed[i].blen, speed[i].plen, speed[i].blen / speed[i].plen); + + if (sec) + ret = test_hash_jiffies(&desc, sg, speed[i].blen, + speed[i].plen, output, sec); + else + ret = test_hash_cycles(&desc, sg, speed[i].blen, + speed[i].plen, output); + + if (ret) { + printk(KERN_ERR "hashing failed ret=%d\n", ret); + break; + } + } + +out: + crypto_free_hash(tfm); +} + + +static void test_available(void) +{ + char **name = check; + + while (*name) { + printk("alg %s ", *name); + printk(crypto_has_alg(*name, 0, 0) ? + "found\n" : "not found\n"); + name++; + } +} + +static inline int tcrypt_test(const char *alg) +{ + int ret; + + printk("Running test %s\n", alg); + ret = ifx_alg_test(alg, alg, 0, 0); + /* non-fips algs return -EINVAL in fips mode */ + if (fips_enabled && ret == -EINVAL) + ret = 0; + return ret; +} + +static inline int tcrypt_speedtest(const char *alg, + struct cipher_speed_template *template, + unsigned int tcount, u8 *keysize) +{ + int ret; + + printk("[****** Running speedtest %s *******]\n", alg); + ret = ifx_alg_speed_test(alg, alg, sec, template, tcount, keysize); + if (fips_enabled && ret == -EINVAL) + ret = 0; + return ret; +} + + +static int do_test(int m) +{ + int i; + int ret = 0; + + switch (m) { + case 0: + for (i = 1; i < 200; i++) + ret += do_test(i); + break; + + case 1: + ret += tcrypt_test("md5"); + break; + + case 2: + ret += tcrypt_test("sha1"); + break; + + case 3: + ret += tcrypt_test("ecb(des)"); + ret += tcrypt_test("cbc(des)"); + break; + + case 4: + ret += tcrypt_test("ecb(des3_ede)"); + ret += tcrypt_test("cbc(des3_ede)"); + break; + + case 5: + ret += tcrypt_test("md4"); + break; + + case 6: + ret += tcrypt_test("sha256"); + break; + + case 7: + ret += tcrypt_test("ecb(blowfish)"); + ret += tcrypt_test("cbc(blowfish)"); + break; + + case 8: + ret += tcrypt_test("ecb(twofish)"); + ret += tcrypt_test("cbc(twofish)"); + break; + + case 9: + ret += tcrypt_test("ecb(serpent)"); + break; + + case 10: + ret += tcrypt_test("ecb(aes)"); + ret += tcrypt_test("cbc(aes)"); + // ret += tcrypt_test("lrw(aes)"); + // ret += tcrypt_test("xts(aes)"); + ret += tcrypt_test("ctr(aes)"); + ret += tcrypt_test("rfc3686(ctr(aes))"); + break; + + case 11: + ret += tcrypt_test("sha384"); + break; + + case 12: + ret += tcrypt_test("sha512"); + break; + + case 13: + ret += tcrypt_test("deflate"); + break; + + case 14: + ret += tcrypt_test("ecb(cast5)"); + break; + + case 15: + ret += tcrypt_test("ecb(cast6)"); + break; + + case 16: + ret += tcrypt_test("ecb(arc4)"); + break; + + case 17: + ret += tcrypt_test("michael_mic"); + break; + + case 18: + ret += tcrypt_test("crc32c"); + break; + + case 19: + ret += tcrypt_test("ecb(tea)"); + break; + + case 20: + ret += tcrypt_test("ecb(xtea)"); + break; + + case 21: + ret += tcrypt_test("ecb(khazad)"); + break; + + case 22: + ret += tcrypt_test("wp512"); + break; + + case 23: + ret += tcrypt_test("wp384"); + break; + + case 24: + ret += tcrypt_test("wp256"); + break; + + case 25: + ret += tcrypt_test("ecb(tnepres)"); + break; + + case 26: + ret += tcrypt_test("ecb(anubis)"); + ret += tcrypt_test("cbc(anubis)"); + break; + + case 27: + ret += tcrypt_test("tgr192"); + break; + + case 28: + + ret += tcrypt_test("tgr160"); + break; + + case 29: + ret += tcrypt_test("tgr128"); + break; + + case 30: + ret += tcrypt_test("ecb(xeta)"); + break; + + case 31: + ret += tcrypt_test("pcbc(fcrypt)"); + break; + + case 32: + ret += tcrypt_test("ecb(camellia)"); + ret += tcrypt_test("cbc(camellia)"); + break; + case 33: + ret += tcrypt_test("sha224"); + break; + + case 34: + ret += tcrypt_test("salsa20"); + break; + + case 35: + ret += tcrypt_test("gcm(aes)"); + break; + + case 36: + ret += tcrypt_test("lzo"); + break; + + case 37: + ret += tcrypt_test("ccm(aes)"); + break; + + case 38: + ret += tcrypt_test("cts(cbc(aes))"); + break; + + case 39: + ret += tcrypt_test("rmd128"); + break; + + case 40: + ret += tcrypt_test("rmd160"); + break; + + case 41: + ret += tcrypt_test("rmd256"); + break; + + case 42: + ret += tcrypt_test("rmd320"); + break; + + case 43: + ret += tcrypt_test("ecb(seed)"); + break; + + case 44: + ret += tcrypt_test("zlib"); + break; + + case 45: + ret += tcrypt_test("rfc4309(ccm(aes))"); + break; + + case 100: + ret += tcrypt_test("hmac(md5)"); + break; + + case 101: + ret += tcrypt_test("hmac(sha1)"); + break; + + case 102: + ret += tcrypt_test("hmac(sha256)"); + break; + + case 103: + ret += tcrypt_test("hmac(sha384)"); + break; + + case 104: + ret += tcrypt_test("hmac(sha512)"); + break; + + case 105: + ret += tcrypt_test("hmac(sha224)"); + break; + + case 106: + ret += tcrypt_test("xcbc(aes)"); + break; + + case 107: + ret += tcrypt_test("hmac(rmd128)"); + break; + + case 108: + ret += tcrypt_test("hmac(rmd160)"); + break; + + case 109: + ret += tcrypt_test("vmac(aes)"); + break; + + case 150: + ret += tcrypt_test("ansi_cprng"); + break; + + case 200: + test_cipher_speed("ecb(aes)", ENCRYPT, sec, NULL, 0, + speed_template_16_24_32); + test_cipher_speed("ecb(aes)", DECRYPT, sec, NULL, 0, + speed_template_16_24_32); + test_cipher_speed("cbc(aes)", ENCRYPT, sec, NULL, 0, + speed_template_16_24_32); + test_cipher_speed("cbc(aes)", DECRYPT, sec, NULL, 0, + speed_template_16_24_32); +#if !defined(CONFIG_CRYPTO_DEV_AES) && !defined(CONFIG_CRYPTO_ASYNC_AES) + test_cipher_speed("lrw(aes)", ENCRYPT, sec, NULL, 0, + speed_template_32_40_48); + test_cipher_speed("lrw(aes)", DECRYPT, sec, NULL, 0, + speed_template_32_40_48); + test_cipher_speed("xts(aes)", ENCRYPT, sec, NULL, 0, + speed_template_32_48_64); + test_cipher_speed("xts(aes)", DECRYPT, sec, NULL, 0, + speed_template_32_48_64); +#endif + break; + + case 201: + test_cipher_speed("ecb(des3_ede)", ENCRYPT, sec, + des3_speed_template, DES3_SPEED_VECTORS, + speed_template_24); + test_cipher_speed("ecb(des3_ede)", DECRYPT, sec, + des3_speed_template, DES3_SPEED_VECTORS, + speed_template_24); + test_cipher_speed("cbc(des3_ede)", ENCRYPT, sec, + des3_speed_template, DES3_SPEED_VECTORS, + speed_template_24); + test_cipher_speed("cbc(des3_ede)", DECRYPT, sec, + des3_speed_template, DES3_SPEED_VECTORS, + speed_template_24); + break; + + case 202: + test_cipher_speed("ecb(twofish)", ENCRYPT, sec, NULL, 0, + speed_template_16_24_32); + test_cipher_speed("ecb(twofish)", DECRYPT, sec, NULL, 0, + speed_template_16_24_32); + test_cipher_speed("cbc(twofish)", ENCRYPT, sec, NULL, 0, + speed_template_16_24_32); + test_cipher_speed("cbc(twofish)", DECRYPT, sec, NULL, 0, + speed_template_16_24_32); + break; + + case 203: + test_cipher_speed("ecb(blowfish)", ENCRYPT, sec, NULL, 0, + speed_template_8_32); + test_cipher_speed("ecb(blowfish)", DECRYPT, sec, NULL, 0, + speed_template_8_32); + test_cipher_speed("cbc(blowfish)", ENCRYPT, sec, NULL, 0, + speed_template_8_32); + test_cipher_speed("cbc(blowfish)", DECRYPT, sec, NULL, 0, + speed_template_8_32); + break; + + case 204: + test_cipher_speed("ecb(des)", ENCRYPT, sec, NULL, 0, + speed_template_8); + test_cipher_speed("ecb(des)", DECRYPT, sec, NULL, 0, + speed_template_8); + test_cipher_speed("cbc(des)", ENCRYPT, sec, NULL, 0, + speed_template_8); + test_cipher_speed("cbc(des)", DECRYPT, sec, NULL, 0, + speed_template_8); + break; + + case 205: + test_cipher_speed("ecb(camellia)", ENCRYPT, sec, NULL, 0, + speed_template_16_24_32); + test_cipher_speed("ecb(camellia)", DECRYPT, sec, NULL, 0, + speed_template_16_24_32); + test_cipher_speed("cbc(camellia)", ENCRYPT, sec, NULL, 0, + speed_template_16_24_32); + test_cipher_speed("cbc(camellia)", DECRYPT, sec, NULL, 0, + speed_template_16_24_32); + break; + + case 206: + test_cipher_speed("salsa20", ENCRYPT, sec, NULL, 0, + speed_template_16_32); + break; + + case 300: + /* fall through */ + + case 301: + test_hash_speed("md4", sec, generic_hash_speed_template); + if (mode > 300 && mode < 400) break; + + case 302: + test_hash_speed("md5", sec, generic_hash_speed_template); + if (mode > 300 && mode < 400) break; + + case 303: + test_hash_speed("sha1", sec, generic_hash_speed_template); + if (mode > 300 && mode < 400) break; + + case 304: + test_hash_speed("sha256", sec, generic_hash_speed_template); + if (mode > 300 && mode < 400) break; + + case 305: + test_hash_speed("sha384", sec, generic_hash_speed_template); + if (mode > 300 && mode < 400) break; + + case 306: + test_hash_speed("sha512", sec, generic_hash_speed_template); + if (mode > 300 && mode < 400) break; + + case 307: + test_hash_speed("wp256", sec, generic_hash_speed_template); + if (mode > 300 && mode < 400) break; + + case 308: + test_hash_speed("wp384", sec, generic_hash_speed_template); + if (mode > 300 && mode < 400) break; + + case 309: + test_hash_speed("wp512", sec, generic_hash_speed_template); + if (mode > 300 && mode < 400) break; + + case 310: + test_hash_speed("tgr128", sec, generic_hash_speed_template); + if (mode > 300 && mode < 400) break; + + case 311: + test_hash_speed("tgr160", sec, generic_hash_speed_template); + if (mode > 300 && mode < 400) break; + + case 312: + test_hash_speed("tgr192", sec, generic_hash_speed_template); + if (mode > 300 && mode < 400) break; + + case 313: + test_hash_speed("sha224", sec, generic_hash_speed_template); + if (mode > 300 && mode < 400) break; + + case 314: + test_hash_speed("rmd128", sec, generic_hash_speed_template); + if (mode > 300 && mode < 400) break; + + case 315: + test_hash_speed("rmd160", sec, generic_hash_speed_template); + if (mode > 300 && mode < 400) break; + + case 316: + test_hash_speed("rmd256", sec, generic_hash_speed_template); + if (mode > 300 && mode < 400) break; + + case 317: + test_hash_speed("rmd320", sec, generic_hash_speed_template); + if (mode > 300 && mode < 400) break; + + case 399: + break; + + /* Modified speed test for async block cipher mode */ + case 400: + tcrypt_speedtest("ecb(aes)", NULL, 0, + speed_template_16_24_32); + tcrypt_speedtest("cbc(aes)", NULL, 0, + speed_template_16_24_32); + break; + + case 401: + tcrypt_speedtest("ecb(des3_ede)", des3_speed_template, + DES3_SPEED_VECTORS,speed_template_24); + tcrypt_speedtest("cbc(des3_ede)", des3_speed_template, + DES3_SPEED_VECTORS,speed_template_24); + break; + + case 404: + tcrypt_speedtest("ecb(des)", NULL, 0, + speed_template_8); + tcrypt_speedtest("cbc(des)", NULL, 0, + speed_template_8); + break; + + case 1000: + test_available(); + break; + } + + return ret; +} +#if !defined(CONFIG_CRYPTO_DEV_DEU) +static int do_alg_test(const char *alg, u32 type, u32 mask) +{ + return crypto_has_alg(alg, type, mask ?: CRYPTO_ALG_TYPE_MASK) ? + 0 : -ENOENT; +} +#endif + +static int __init tcrypt_mod_init(void) +{ + int err = -ENOMEM; + int i; + + printk("Starting Lantiq DEU Crypto TESTS . . . . . . .\n"); + + for (i = 0; i < TVMEMSIZE; i++) { + tvmem[i] = (void *)__get_free_page(GFP_KERNEL); + if (!tvmem[i]) + goto err_free_tv; + } + +#if defined(CONFIG_CRYPTO_DEV_DEU) +#if defined(CONFIG_CRYPTO_DEV_MD5) + mode = 1; // test md5 only + err = do_test(mode); + if (err) + goto md5_err; + +md5_err: + if (err) { + printk(KERN_ERR "md5: one or more tests failed!\n"); + goto err_free_tv; + } +#endif +#if defined(CONFIG_CRYPTO_DEV_SHA1) + mode = 2; // test sha1 only + err = do_test(mode); + if (err) + goto sha1_err; + +sha1_err: + if (err) { + printk(KERN_ERR "sha1: one or more tests failed!\n"); + goto err_free_tv; + } +#endif +#if defined (CONFIG_CRYPTO_DEV_DES) || defined (CONFIG_CRYPTO_ASYNC_DES) + mode = 3; // test des only + err = do_test(mode); + if (err) + goto des_err; + + mode = 4; // test des3 only + err = do_test(mode); + if (err) + goto des_err; + +des_err: + if (err) { + printk(KERN_ERR "des3: one or more tests failed!\n"); + goto err_free_tv; + } +#endif +#if defined (CONFIG_CRYPTO_ASYNC_AES) || defined (CONFIG_CRYPTO_DEV_AES) + mode = 10; // test aes only + err = do_test(mode); + if (err) + goto aes_err; + +aes_err: + if (err) { + printk(KERN_ERR "aes: one or more tests failed!\n"); + goto err_free_tv; + } +#endif +#if defined(CONFIG_CRYPTO_DEV_ARC4) + mode = 16; + err = do_test(mode); + + if (err) { + printk(KERN_ERR "arc4: one or more tests failed!\n"); + goto err_free_tv; + } +#endif +#if defined (CONFIG_CRYPTO_DEV_MD5_HMAC) + mode = 100; + err = do_test(mode); + + if (err) { + printk(KERN_ERR "tcrypt: one or more tests failed!\n"); + goto err_free_tv; + } +#endif +#if defined (CONFIG_CRYPTO_DEV_SHA1_HMAC) + mode = 101; + err = do_test(mode); + + if (err) { + printk(KERN_ERR "tcrypt: one or more tests failed!\n"); + goto err_free_tv; + } +#endif + +/* Start Speed tests test modes */ +#if defined(CONFIG_CRYPTO_DEV_SPEED_TEST) +#if defined(CONFIG_CRYPTO_DEV_AES) + mode = 200; + err = do_test(mode); + if (err) + goto speed_err; +#endif +#if defined (CONFIG_CRYPTO_DEV_DES) + mode = 201; + err = do_test(mode); + if (err) + goto speed_err; + + mode = 204; + err = do_test(mode); + if (err) + goto speed_err; +#endif +#if defined (CONFIG_CRYPTO_DEV_MD5) + mode = 302; + err = do_test(mode); + if (err) + goto speed_err; +#endif +#if defined (CONFIG_CRYPTO_DEV_SHA1) + mode = 303; + err = do_test(mode); + if (err) + goto speed_err; +#endif + printk("Speed tests finished successfully\n"); + goto fips_check; + +speed_err: + printk(KERN_ERR "tcrypt: one or more tests failed!\n"); + goto err_free_tv; +#endif /* CONFIG_CRYPTO_DEV_SPEED_TEST */ + +#else + if (alg) + err = do_alg_test(alg, type, mask); + else + err = do_test(mode); + + if (err) { + printk(KERN_ERR "tcrypt: one or more tests failed!\n"); + goto err_free_tv; + } +#endif /* CONFIG_CRYPTO_DEV_DEU */ + +fips_check: + /* We intentionaly return -EAGAIN to prevent keeping the module, + * unless we're running in fips mode. It does all its work from + * init() and doesn't offer any runtime functionality, but in + * the fips case, checking for a successful load is helpful. + * => we don't need it in the memory, do we? + * -- mludvig + */ + if (!fips_enabled) + err = -EAGAIN; + +err_free_tv: + for (i = 0; i < TVMEMSIZE && tvmem[i]; i++ ){ + printk("Freeing page: %d\n", i); + free_page((unsigned long)tvmem[i]); + } + + printk("Finished DEU testing . . . . . .\n"); + return err; +} + +/* + * If an init function is provided, an exit function must also be provided + * to allow module unload. + */ +static void __exit tcrypt_mod_fini(void) {} + + +module_init(tcrypt_mod_init); +module_exit(tcrypt_mod_fini); + +module_param(alg, charp, 0); +module_param(type, uint, 0); +module_param(mask, uint, 0); +module_param(mode, int, 0); +module_param(sec, uint, 0); +MODULE_PARM_DESC(sec, "Length in seconds of speed tests " + "(defaults to zero which uses CPU cycles instead)"); + +MODULE_LICENSE("GPL"); +MODULE_DESCRIPTION("Quick & dirty crypto testing module"); +MODULE_AUTHOR("James Morris <jmorris@intercode.com.au>"); + diff --git a/package/kernel/lantiq/ltq-hcd/Makefile b/package/kernel/lantiq/ltq-hcd/Makefile new file mode 100644 index 0000000..74218c8 --- /dev/null +++ b/package/kernel/lantiq/ltq-hcd/Makefile @@ -0,0 +1,53 @@ +# Copyright (C) 2012 OpenWrt.org +# +# This is free software, licensed under the GNU General Public License v2. +# See /LICENSE for more information. + +include $(TOPDIR)/rules.mk +include $(INCLUDE_DIR)/kernel.mk + +PKG_NAME:=ltq-hcd +PKG_RELEASE:=1 +PKG_BUILD_DIR:=$(KERNEL_BUILD_DIR)/ltq-hcd-$(BUILD_VARIANT) + +PKG_MAINTAINER:=John Crispin <blogic@openwrt.org> + +include $(INCLUDE_DIR)/package.mk + +define KernelPackage/ltq-hcd-template + SECTION:=sys + CATEGORY:=Kernel modules + SUBMENU:=USB Support + TITLE:=USB driver for $(1) + URL:=http://www.lantiq.com/ + VARIANT:=$(1) + DEPENDS:=@TARGET_lantiq_$(2) +kmod-usb-core + FILES:=$(PKG_BUILD_DIR)/ltq_hcd_$(1).ko + AUTOLOAD:=$(call AutoLoad,50,ltq_hcd_$(1),1) +endef + +KernelPackage/ltq-hcd-ase=$(call KernelPackage/ltq-hcd-template,ase,ase) +KernelPackage/ltq-hcd-danube=$(call KernelPackage/ltq-hcd-template,danube,xway) +KernelPackage/ltq-hcd-ar9=$(call KernelPackage/ltq-hcd-template,ar9,xway) +KernelPackage/ltq-hcd-vr9=$(call KernelPackage/ltq-hcd-template,vr9,xway) +KernelPackage/ltq-hcd-ar10=$(call KernelPackage/ltq-hcd-template,ar10,xway) + +define Build/Prepare + $(INSTALL_DIR) $(PKG_BUILD_DIR) + $(CP) ./src/* $(PKG_BUILD_DIR) +endef + +define Build/Configure +endef + +define Build/Compile + cd $(LINUX_DIR); \ + ARCH=mips CROSS_COMPILE="$(KERNEL_CROSS)" \ + $(MAKE) BUILD_VARIANT=$(BUILD_VARIANT) M=$(PKG_BUILD_DIR) V=1 modules +endef + +$(eval $(call KernelPackage,ltq-hcd-ase)) +$(eval $(call KernelPackage,ltq-hcd-danube)) +$(eval $(call KernelPackage,ltq-hcd-ar9)) +$(eval $(call KernelPackage,ltq-hcd-vr9)) +$(eval $(call KernelPackage,ltq-hcd-ar10)) diff --git a/package/kernel/lantiq/ltq-hcd/src/Kconfig b/package/kernel/lantiq/ltq-hcd/src/Kconfig new file mode 100644 index 0000000..2a3a38d --- /dev/null +++ b/package/kernel/lantiq/ltq-hcd/src/Kconfig @@ -0,0 +1,104 @@ + +config USB_HOST_IFX + tristate "Infineon USB Host Controller Driver" + depends on USB + default n + help + Infineon USB Host Controller + +choice + prompt "Infineon USB Host Controller Driver Operation mode" + depends on USB_HOST_IFX && ( AMAZON_S || AR9 || VR9 || AR10 || MIPS_AMAZON_S || MIPS_AR9 || MIPS_VR9 || MIPS_AR10 ) + help + The IFX USB core can be configured as dual-host and single host. + The unused core can be set as Device-mode. + +config USB_HOST_IFX_B + boolean "USB host mode on core 1 and 2" + help + Both cores run as host + +config USB_HOST_IFX_1 + boolean "USB host mode on core 1 only" + help + Core #1 runs as host + +config USB_HOST_IFX_2 + boolean "USB host mode on core 2 only" + help + Core #2 runs as host + +endchoice + +config USB_HOST_IFX_FORCE_USB11 + boolean "Forced USB1.1" + depends on USB_HOST_IFX + default n + help + force to be USB 1.1 + +config USB_HOST_IFX_WITH_HS_ELECT_TST + boolean "With HS_Electrical Test" + depends on USB_HOST_IFX + default n + help + With USBIF HSET routines + +config USB_HOST_IFX_WITH_ISO + boolean "With ISO transfer" + depends on USB_HOST_IFX + default n + help + With USBIF ISO transfer + +config USB_HOST_IFX_COC + boolean "CoC in USB Host" + depends on USB_HOST_IFX + default n + help + With CoC on Host + +choice + prompt "IFX unaligned buffer policy" + depends on USB_HOST_IFX + help + IFX unaligned buffer policy + +config USB_HOST_IFX_UNALIGNED_ADJ + boolean "Adjust" + help + USB_HOST_IFX_UNALIGNED_ADJ + +config USB_HOST_IFX_UNALIGNED_CHK + boolean "Check-only" + help + USB_HOST_IFX_UNALIGNED_CHK + +config USB_HOST_IFX_UNALIGNED_NONE + boolean "No process" + help + USB_HOST_IFX_UNALIGNED_NONE + +endchoice + + +config USB_HOST_IFX_XHCI + tristate "xHCI HCD (USB 3.0) support (EXPERIMENTAL)" + depends on USB && PCI && ( VR9 || MIPS_VR9 || AR10 || MIPS_AR10 ) + ---help--- + The eXtensible Host Controller Interface (xHCI) is standard for USB 3.0 + "SuperSpeed" host controller hardware. + + To compile this driver as a module, choose M here: the + module will be called xhci-hcd. + +config USB_HOST_IFX_XHCI_DEBUGGING + bool "Debugging for the xHCI host controller" + depends on USB_HOST_IFX_XHCI + ---help--- + Say 'Y' to turn on debugging for the xHCI host controller driver. + This will spew debugging output, even in interrupt context. + This should only be used for debugging xHCI driver bugs. + + If unsure, say N. + diff --git a/package/kernel/lantiq/ltq-hcd/src/Makefile b/package/kernel/lantiq/ltq-hcd/src/Makefile new file mode 100644 index 0000000..153fd42 --- /dev/null +++ b/package/kernel/lantiq/ltq-hcd/src/Makefile @@ -0,0 +1,74 @@ +ltq_hcd_$(BUILD_VARIANT)-objs := ifxusb_driver.o ifxusb_ctl.o ifxusb_cif.o \ + ifxusb_cif_h.o ifxhcd.o ifxhcd_es.o \ + ifxhcd_intr.o ifxhcd_queue.o +obj-m = ltq_hcd_$(BUILD_VARIANT).o + +ifeq ($(BUILD_VARIANT),danube) + EXTRA_CFLAGS += -D__IS_DANUBE__ +endif + +ifeq ($(BUILD_VARIANT),ase) + EXTRA_CFLAGS += -D__IS_AMAZON_SE__ +endif + +ifeq ($(BUILD_VARIANT),ar9) + EXTRA_CFLAGS += -D__IS_AR9__ + EXTRA_CFLAGS += -D__IS_DUAL__ +endif + +ifeq ($(BUILD_VARIANT),vr9) + EXTRA_CFLAGS += -D__IS_VR9__ + EXTRA_CFLAGS += -D__PHY_LONG_PREEMP__ + EXTRA_CFLAGS += -D__PINGSTOP_CTRL__ + EXTRA_CFLAGS += -D__PINGSTOP_BULK__ + EXTRA_CFLAGS += -D__IS_DUAL__ +endif + +ifeq ($(BUILD_VARIANT),ar10) + EXTRA_CFLAGS += -D__IS_AR10__ + EXTRA_CFLAGS += -D__PHY_LONG_PREEMP__ + EXTRA_CFLAGS += -D__PINGSTOP_CTRL__ + EXTRA_CFLAGS += -D__PINGSTOP_BULK__ +endif + +ifeq ($(CONFIG_USB_HOST_IFX_FORCE_USB11),y) + EXTRA_CFLAGS += -D__FORCE_USB11__ +endif +ifeq ($(CONFIG_USB_HOST_IFX_WITH_HS_ELECT_TST),y) + EXTRA_CFLAGS += -D__WITH_HS_ELECT_TST__ +endif +ifeq ($(CONFIG_USB_HOST_IFX_WITH_ISO),y) + EXTRA_CFLAGS += -D__EN_ISOC__ +endif +#ifeq ($(CONFIG_USB_HOST_IFX_UNALIGNED_ADJ),y) + EXTRA_CFLAGS += -D__UNALIGNED_BUF_ADJ__ +#endif +ifeq ($(CONFIG_USB_HOST_IFX_UNALIGNED_CHK),y) + EXTRA_CFLAGS += -D__UNALIGNED_BUF_CHK__ +endif +ifeq ($(CONFIG_USB_HOST_IFX_COC),y) + EXTRA_CFLAGS += -D__HOST_COC__ +endif + +# EXTRA_CFLAGS += -D__IS_FIRST__ +# EXTRA_CFLAGS += -D__IS_SECOND__ + +# EXTRA_CFLAGS += -D__EN_ISOC__ +# EXTRA_CFLAGS += -D__EN_ISOC_SPLIT__ +# EXTRA_CFLAGS += -D__EPQD_DESTROY_TIMEOUT__ +# EXTRA_CFLAGS += -D__INNAKSTOP_CTRL__ + +EXTRA_CFLAGS += -Dlinux -D__LINUX__ +EXTRA_CFLAGS += -D__IS_HOST__ +EXTRA_CFLAGS += -D__KERNEL__ +#EXTRA_CFLAGS += -D__DEBUG__ +#EXTRA_CFLAGS += -D__ENABLE_DUMP__ + +EXTRA_CFLAGS += -D__DYN_SOF_INTR__ +EXTRA_CFLAGS += -D__UEIP__ +EXTRA_CFLAGS += -D__DO_OC_INT__ +EXTRA_CFLAGS += -D__INNAKSTOP_BULK__ + +EXTRA_CFLAGS += -D__INTRNAKRETRY__ +EXTRA_CFLAGS += -D__INTRINCRETRY__ + diff --git a/package/kernel/lantiq/ltq-hcd/src/ifxhcd.c b/package/kernel/lantiq/ltq-hcd/src/ifxhcd.c new file mode 100644 index 0000000..be0a91d --- /dev/null +++ b/package/kernel/lantiq/ltq-hcd/src/ifxhcd.c @@ -0,0 +1,2141 @@ +/***************************************************************************** + ** FILE NAME : ifxhcd.c + ** PROJECT : IFX USB sub-system V3 + ** MODULES : IFX USB sub-system Host and Device driver + ** SRC VERSION : 3.2 + ** DATE : 1/Jan/2011 + ** AUTHOR : Chen, Howard + ** DESCRIPTION : This file contains the structures, constants, and + ** interfaces for the Host Contoller Driver (HCD). + ** + ** The Host Controller Driver (HCD) is responsible for + ** translating requests from the USB Driver into the + ** appropriate actions on the IFXUSB controller. + ** It isolates the USBD from the specifics of the + ** controller by providing an API to the USBD. + ** FUNCTIONS : + ** COMPILER : gcc + ** REFERENCE : Synopsys DWC-OTG Driver 2.7 + ** COPYRIGHT : Copyright (c) 2010 + ** LANTIQ DEUTSCHLAND GMBH, + ** Am Campeon 3, 85579 Neubiberg, Germany + ** + ** This program is free software; you can redistribute it and/or modify + ** it under the terms of the GNU General Public License as published by + ** the Free Software Foundation; either version 2 of the License, or + ** (at your option) any later version. + ** + ** Version Control Section ** + ** $Author$ + ** $Date$ + ** $Revisions$ + ** $Log$ Revision history + *****************************************************************************/ + +/* + * This file contains code fragments from Synopsys HS OTG Linux Software Driver. + * For this code the following notice is applicable: + * + * ========================================================================== + * + * Synopsys HS OTG Linux Software Driver and documentation (hereinafter, + * "Software") is an Unsupported proprietary work of Synopsys, Inc. unless + * otherwise expressly agreed to in writing between Synopsys and you. + * + * The Software IS NOT an item of Licensed Software or Licensed Product under + * any End User Software License Agreement or Agreement for Licensed Product + * with Synopsys or any supplement thereto. You are permitted to use and + * redistribute this Software in source and binary forms, with or without + * modification, provided that redistributions of source code must retain this + * notice. You may not view, use, disclose, copy or distribute this file or + * any information contained herein except pursuant to this license grant from + * Synopsys. If you do not agree with this notice, including the disclaimer + * below, then you are not authorized to use the Software. + * + * THIS SOFTWARE IS BEING DISTRIBUTED BY SYNOPSYS SOLELY ON AN "AS IS" BASIS + * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE + * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE + * ARE HEREBY DISCLAIMED. IN NO EVENT SHALL SYNOPSYS BE LIABLE FOR ANY DIRECT, + * INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES + * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR + * SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER + * CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT + * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY + * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH + * DAMAGE. + * ========================================================================== */ + +/*! + \file ifxhcd.c + \ingroup IFXUSB_DRIVER_V3 + \brief This file contains the implementation of the HCD. In Linux, + the HCD implements the hc_driver API. +*/ + +#include <linux/version.h> +#include "ifxusb_version.h" + +#include <linux/kernel.h> +#include <linux/module.h> +#include <linux/moduleparam.h> +#include <linux/init.h> + +#include <linux/device.h> + +#include <linux/errno.h> +#include <linux/list.h> +#include <linux/interrupt.h> +#include <linux/string.h> + +#include <linux/dma-mapping.h> + + +#include "ifxusb_plat.h" +#include "ifxusb_regs.h" +#include "ifxusb_cif.h" +#include "ifxhcd.h" + +#include <asm/irq.h> + +#ifdef __DEBUG__ + static void dump_urb_info(struct urb *_urb, char* _fn_name); +#if 0 + static void dump_channel_info(ifxhcd_hcd_t *_ifxhcd, + ifxhcd_epqh_t *_epqh); +#endif +#endif + +static void ifxhcd_complete_urb_sub(ifxhcd_urbd_t *_urbd) +{ + ifxhcd_hcd_t *ifxhcd; + struct urb *urb=NULL; + + if (!list_empty(&_urbd->ql)) + { + list_del_init(&_urbd->ql); + _urbd->epqh->urbd_count--; + } + else + IFX_ERROR("%s: urb(%p) not connect to any epqh\n", + __func__,_urbd); + + ifxhcd=_urbd->epqh->ifxhcd; + urb =_urbd->urb; + if(!urb) + IFX_ERROR("%s: invalid urb\n",__func__); + else if(urb->hcpriv) + { + if(urb->hcpriv != _urbd) + IFX_ERROR("%s: invalid" + " urb(%p)->hcpriv(%p) != _urbd(%p)\n", + __func__, + urb, + urb->hcpriv, + _urbd); + #if defined(__UNALIGNED_BUF_ADJ__) + if(_urbd->is_in && +// _urbd->using_aligned_buf && + _urbd->aligned_buf) + memcpy(_urbd->xfer_buff, + _urbd->aligned_buf, + _urbd->xfer_len); + if(_urbd->aligned_buf) + ifxusb_free_buf_h(_urbd->aligned_buf); + #endif + urb->hcpriv = NULL; + #if LINUX_VERSION_CODE < KERNEL_VERSION(2,6,32) + urb->status=_urbd->status; + usb_hcd_giveback_urb(ifxhcd_to_syshcd(ifxhcd), urb); + #else + usb_hcd_giveback_urb(ifxhcd_to_syshcd(ifxhcd), urb, + _urbd->status); + #endif + } + kfree(_urbd); +} + +#ifdef __STRICT_ORDER__ + static void ifxhcd_complete_urb_func(unsigned long data) + { + unsigned long flags; + ifxhcd_urbd_t *urbd; + ifxhcd_epqh_t *epqh; + struct list_head *item; + + int count=10; + + epqh=((ifxhcd_epqh_t *)data); + + while (!list_empty(&epqh->release_list) && count) + { + item = epqh->release_list.next; + urbd = list_entry(item, ifxhcd_urbd_t, ql); + if (!urbd) + IFX_ERROR("%s: invalid urbd\n",__func__); + else if (!urbd->epqh) + IFX_ERROR("%s: invalid epqd\n",__func__); + else + { + ifxhcd_epqh_t *epqh2; + epqh2=urbd->epqh; + local_irq_save(flags); + LOCK_URBD_LIST(epqh2); + ifxhcd_complete_urb_sub(urbd); + UNLOCK_URBD_LIST(epqh2); + local_irq_restore (flags); + } + count--; + } + if(!list_empty(&epqh->release_list)) + tasklet_schedule(&epqh->complete_urb_sub); + } + + /*! + \brief Sets the final status of an URB and returns it to the device + driver. Any required cleanup of the URB is performed. + */ + void ifxhcd_complete_urb(ifxhcd_hcd_t *_ifxhcd, + ifxhcd_urbd_t *_urbd, + int _status) + { + unsigned long flags; + + if(!_urbd) + { + IFX_ERROR("%s: invalid urbd\n",__func__); + return; + } + if (!_urbd->epqh) + { + IFX_ERROR("%s: invalid epqh\n",__func__); + return; + } + + local_irq_save(flags); + LOCK_URBD_LIST(_urbd->epqh); + #ifdef __DEBUG__ + if (CHK_DEBUG_LEVEL(DBG_HCDV | DBG_HCD_URB)) + { + IFX_PRINT("%s: ehqh %p _urbd %p, urb %p," + " device %d, ep %d %s/%s, status=%d\n", + __func__,_urbd->epqh, + _urbd,_urbd->urb, + (_urbd->urb)?usb_pipedevice(_urbd->urb->pipe):-1, + (_urbd->urb)?usb_pipeendpoint(_urbd->urb->pipe):-1, + (_urbd->urb)?(usb_pipein(_urbd->urb->pipe) ? "IN" : "OUT"):"--", + (_urbd->is_in) ? "IN" : "OUT", + _status); + if ((_urbd->urb)&& _urbd->epqh->ep_type == IFXUSB_EP_TYPE_ISOC) + { + int i; + for (i = 0; i < _urbd->urb->number_of_packets; i++) + IFX_PRINT(" ISO Desc %d status: %d\n", i, _urbd->urb->iso_frame_desc[i].status); + } + } + #endif + _urbd->status = _status; + + if(_urbd->phase!=URBD_FINISHING) + { + if(_urbd->phase!=URBD_DEQUEUEING && _urbd->phase!=URBD_COMPLETING) + printk(KERN_INFO "Warning: %s() Strange URBD PHASE %d\n",__func__,_urbd->phase); + if(_urbd->urb) + { + if( _urbd->status == 0 + && _urbd->phase==URBD_COMPLETING + && in_irq()) + { + list_move_tail(&_urbd->ql,&_urbd->epqh->release_list); + if(!_urbd->epqh->complete_urb_sub.func) + { + _urbd->epqh->complete_urb_sub.next = NULL; + _urbd->epqh->complete_urb_sub.state = 0; + atomic_set( &_urbd->epqh->complete_urb_sub.count, 0); + _urbd->epqh->complete_urb_sub.func = ifxhcd_complete_urb_func; + _urbd->epqh->complete_urb_sub.data = (unsigned long)_urbd->epqh; + } + tasklet_schedule(&_urbd->epqh->complete_urb_sub); + } + else + { + _urbd->phase=URBD_FINISHING; + ifxhcd_complete_urb_sub(_urbd); + } + UNLOCK_URBD_LIST(_urbd->epqh); + } + else + { + UNLOCK_URBD_LIST(_urbd->epqh); + kfree(_urbd); + } + } + else + { + printk(KERN_INFO "Warning: %s() Double Completing \n",__func__); + UNLOCK_URBD_LIST(_urbd->epqh); + } + + local_irq_restore (flags); + } +#else + static void ifxhcd_complete_urb_func(unsigned long data) + { + unsigned long flags; + ifxhcd_urbd_t *urbd; + + urbd=((ifxhcd_urbd_t *)data); + + // local_irq_save(flags); + if (!urbd) + IFX_ERROR("%s: invalid urbd\n",__func__); + else if (!urbd->epqh) + IFX_ERROR("%s: invalid epqd\n",__func__); + else + { + local_irq_save(flags); + LOCK_URBD_LIST(urbd->epqh); + ifxhcd_complete_urb_sub(urbd); + UNLOCK_URBD_LIST(urbd->epqh); + local_irq_restore (flags); + } + // local_irq_restore (flags); + } + + + /*! + \brief Sets the final status of an URB and returns it to the device driver. Any + required cleanup of the URB is performed. + */ + void ifxhcd_complete_urb(ifxhcd_hcd_t *_ifxhcd, ifxhcd_urbd_t *_urbd, int _status) + { + unsigned long flags; + + if(!_urbd) + { + IFX_ERROR("%s: invalid urbd\n",__func__); + return; + } + if (!_urbd->epqh) + { + IFX_ERROR("%s: invalid epqh\n",__func__); + return; + } + + local_irq_save(flags); + LOCK_URBD_LIST(_urbd->epqh); + #ifdef __DEBUG__ + if (CHK_DEBUG_LEVEL(DBG_HCDV | DBG_HCD_URB)) + { + IFX_PRINT("%s: ehqh %p _urbd %p, urb %p, device %d, ep %d %s/%s, status=%d\n", + __func__,_urbd->epqh, _urbd,_urbd->urb, + (_urbd->urb)?usb_pipedevice(_urbd->urb->pipe):-1, + (_urbd->urb)?usb_pipeendpoint(_urbd->urb->pipe):-1, + (_urbd->urb)?(usb_pipein(_urbd->urb->pipe) ? "IN" : "OUT"):"--", + (_urbd->is_in) ? "IN" : "OUT", + _status); + if ((_urbd->urb)&& _urbd->epqh->ep_type == IFXUSB_EP_TYPE_ISOC) + { + int i; + for (i = 0; i < _urbd->urb->number_of_packets; i++) + IFX_PRINT(" ISO Desc %d status: %d\n", i, _urbd->urb->iso_frame_desc[i].status); + } + } + #endif + _urbd->status = _status; + + if(_urbd->phase!=URBD_FINISHING) + { + if(_urbd->phase!=URBD_DEQUEUEING && _urbd->phase!=URBD_COMPLETING) + printk(KERN_INFO "Warning: %s() Strange URBD PHASE %d\n",__func__,_urbd->phase); + if(_urbd->urb) + { + if( _urbd->status == 0 + && _urbd->phase==URBD_COMPLETING + && in_irq()) + { + if(_urbd->complete_urb_sub.func) + printk(KERN_INFO "Warning: %s() URBD Tasklet is on already\n",__func__); + _urbd->phase=URBD_FINISHING; + _urbd->complete_urb_sub.next = NULL; + _urbd->complete_urb_sub.state = 0; + atomic_set( &_urbd->complete_urb_sub.count, 0); + _urbd->complete_urb_sub.func = ifxhcd_complete_urb_func; + _urbd->complete_urb_sub.data = (unsigned long)_urbd; + tasklet_schedule(&_urbd->complete_urb_sub); + } + else + { + _urbd->phase=URBD_FINISHING; + ifxhcd_complete_urb_sub(_urbd); + } + } + else + kfree(_urbd); + } + else + printk(KERN_INFO "Warning: %s() Double Completing \n",__func__); + UNLOCK_URBD_LIST(_urbd->epqh); + local_irq_restore (flags); + } +#endif + +/*! + \brief Processes all the URBs in a single EPQHs. Completes them with + status and frees the URBD. + */ +static +void kill_all_urbs_in_epqh(ifxhcd_hcd_t *_ifxhcd, ifxhcd_epqh_t *_epqh, int _status) +{ + struct list_head *item; + struct list_head *next; + ifxhcd_urbd_t *urbd; + + if(!_epqh) + return; + + IFX_DEBUGPL(DBG_HCDV, "%s %p\n",__func__,_epqh); + LOCK_URBD_LIST(_epqh); + list_for_each(item, &_epqh->urbd_list) + { + urbd = list_entry(item, ifxhcd_urbd_t, ql); + if( urbd->phase==URBD_IDLE + || urbd->phase==URBD_ACTIVE +// || urbd->phase==URBD_STARTING + ) + urbd->phase=URBD_DEQUEUEING; + } + list_for_each_safe(item, next, &_epqh->urbd_list) + { + urbd = list_entry(item, ifxhcd_urbd_t, ql); + if(urbd->phase==URBD_DEQUEUEING) + { + urbd->urb->status = _status; + urbd->phase = URBD_FINISHING; + ifxhcd_complete_urb_sub(urbd); + } + else if( urbd->phase==URBD_STARTED + || urbd->phase==URBD_STARTING +// || urbd->phase==URBD_ACTIVE + ) + { + if(ifxhcd_hc_halt(&_ifxhcd->core_if, _epqh->hc, HC_XFER_URB_DEQUEUE)) + { + urbd->urb->status = _status; + urbd->phase=URBD_FINISHING; + ifxhcd_complete_urb_sub(urbd); + } + } + else + IFX_ERROR("%s: invalid urb phase:%d \n",__func__,urbd->phase); + } + UNLOCK_URBD_LIST(_epqh); + IFX_DEBUGPL(DBG_HCDV, "%s %p finish\n",__func__,_epqh); +} + + +/*! + \brief Free all EPS in one Processes all the URBs in a single list of EPQHs. Completes them with + -ETIMEDOUT and frees the URBD. + */ +static +void epqh_list_free_1(ifxhcd_hcd_t *_ifxhcd, struct list_head *_epqh_list) +{ + ifxhcd_epqh_t *epqh; + struct list_head *item; + if (!_ifxhcd) + return; + if (!_epqh_list) + return; + + IFX_DEBUGPL(DBG_HCDV, "%s %p\n",__func__,_epqh_list); + + item = _epqh_list->next; + while(item != _epqh_list && item != item->next) + { + epqh = list_entry(item, ifxhcd_epqh_t, ql); + epqh->phase=EPQH_DISABLING; + item = item->next; + kill_all_urbs_in_epqh(_ifxhcd, epqh, -ETIMEDOUT); + #ifdef __STRICT_ORDER__ + if(list_empty(&epqh->urbd_list) && list_empty(&epqh->release_list)) + #else + if(list_empty(&epqh->urbd_list)) + #endif + ifxhcd_epqh_free(epqh); + } + IFX_DEBUGPL(DBG_HCDV, "%s %p finish\n",__func__,_epqh_list); + /* Ensure there are no URBDs or URBs left. */ +} + +static +void epqh_list_free_2(ifxhcd_hcd_t *_ifxhcd, struct list_head *_epqh_list) +{ + ifxhcd_epqh_t *epqh; + struct list_head *item; + struct list_head *next; + if (!_ifxhcd) + return; + if (!_epqh_list) + return; + + IFX_DEBUGPL(DBG_HCDV, "%s %p\n",__func__,_epqh_list); + list_for_each_safe(item, next, _epqh_list) + { + epqh = list_entry(item, ifxhcd_epqh_t, ql); + if(item == item->next) + { + ifxhcd_epqh_free(epqh); + } + else + { + uint32_t count=0x80000; + #ifdef __STRICT_ORDER__ + for(;(!list_empty(&epqh->urbd_list) || !list_empty(&epqh->release_list))&& count> 0; count--) udelay(1); + #else + for(;!list_empty(&epqh->urbd_list) && count> 0; count--) udelay(1); + #endif + if(!count) + IFX_ERROR("%s: unable to clear urbd in epqh \n",__func__); + ifxhcd_epqh_free(epqh); + } + } + IFX_DEBUGPL(DBG_HCDV, "%s %p finish\n",__func__,_epqh_list); + /* Ensure there are no URBDs or URBs left. */ +} + +static +void epqh_list_free_all_sub(unsigned long data) +{ + ifxhcd_hcd_t *ifxhcd; + + ifxhcd=(ifxhcd_hcd_t *)data; + epqh_list_free_1(ifxhcd, &ifxhcd->epqh_list_np ); + epqh_list_free_1(ifxhcd, &ifxhcd->epqh_list_intr); + #ifdef __EN_ISOC__ + epqh_list_free_1(ifxhcd, &ifxhcd->epqh_list_isoc); + #endif + + epqh_list_free_2(ifxhcd, &ifxhcd->epqh_list_np ); + epqh_list_free_2(ifxhcd, &ifxhcd->epqh_list_intr); + #ifdef __EN_ISOC__ + epqh_list_free_2(ifxhcd, &ifxhcd->epqh_list_isoc); + #endif +} + +static +void epqh_list_free_all(ifxhcd_hcd_t *_ifxhcd) +{ + _ifxhcd->tasklet_free_epqh_list.next = NULL; + _ifxhcd->tasklet_free_epqh_list.state = 0; + atomic_set( &_ifxhcd->tasklet_free_epqh_list.count, 0); + _ifxhcd->tasklet_free_epqh_list.func=epqh_list_free_all_sub; + _ifxhcd->tasklet_free_epqh_list.data = (unsigned long)_ifxhcd; + tasklet_schedule(&_ifxhcd->tasklet_free_epqh_list); +} + + +/*! + \brief This function is called to handle the disconnection of host port. + */ +int32_t ifxhcd_disconnect(ifxhcd_hcd_t *_ifxhcd) +{ + IFX_DEBUGPL(DBG_HCDV, "%s(%p)\n", __func__, _ifxhcd); + + _ifxhcd->disconnecting=1; + /* Set status flags for the hub driver. */ + _ifxhcd->flags.b.port_connect_status_change = 1; + _ifxhcd->flags.b.port_connect_status = 0; + + /* + * Shutdown any transfers in process by clearing the Tx FIFO Empty + * interrupt mask and status bits and disabling subsequent host + * channel interrupts. + */ + { + gint_data_t intr = { .d32 = 0 }; + intr.b.nptxfempty = 1; + intr.b.ptxfempty = 1; + intr.b.hcintr = 1; + ifxusb_mreg (&_ifxhcd->core_if.core_global_regs->gintmsk, intr.d32, 0); + ifxusb_mreg (&_ifxhcd->core_if.core_global_regs->gintsts, intr.d32, 0); + } + + /* Respond with an error status to all URBs in the schedule. */ + epqh_list_free_all(_ifxhcd); + + /* Clean up any host channels that were in use. */ + { + int num_channels; + ifxhcd_hc_t *channel; + ifxusb_hc_regs_t *hc_regs; + hcchar_data_t hcchar; + int i; + + num_channels = _ifxhcd->core_if.params.host_channels; + + for (i = 0; i < num_channels; i++) + { + channel = &_ifxhcd->ifxhc[i]; + hc_regs = _ifxhcd->core_if.hc_regs[i]; + hcchar.d32 = ifxusb_rreg(&hc_regs->hcchar); + if (hcchar.b.chen) + printk(KERN_INFO "Warning: %s() HC still enabled\n",__func__); + ifxhcd_hc_cleanup(&_ifxhcd->core_if, channel); + } + } + IFX_DEBUGPL(DBG_HCDV, "%s(%p) finish\n", __func__, _ifxhcd); + return 1; +} + + +/*! + \brief Frees secondary storage associated with the ifxhcd_hcd structure contained + in the struct usb_hcd field. + */ +static void ifxhcd_freeextra(struct usb_hcd *_syshcd) +{ + ifxhcd_hcd_t *ifxhcd = syshcd_to_ifxhcd(_syshcd); + + IFX_DEBUGPL(DBG_HCD, "IFXUSB HCD FREE\n"); + + /* Free memory for EPQH/URBD lists */ + epqh_list_free_all(ifxhcd); + + /* Free memory for the host channels. */ + ifxusb_free_buf_h(ifxhcd->status_buf); + return; +} + +/*! + \brief Initializes the HCD. This function allocates memory for and initializes the + static parts of the usb_hcd and ifxhcd_hcd structures. It also registers the + USB bus with the core and calls the hc_driver->start() function. It returns + a negative error on failure. + */ +int ifxhcd_init(ifxhcd_hcd_t *_ifxhcd) +{ + int retval = 0; + struct usb_hcd *syshcd = NULL; + + IFX_DEBUGPL(DBG_HCD, "IFX USB HCD INIT\n"); + + INIT_EPQH_LIST_ALL(_ifxhcd); + INIT_EPQH_LIST(_ifxhcd); + + init_timer(&_ifxhcd->autoprobe_timer); + init_timer(&_ifxhcd->host_probe_timer); + _ifxhcd->probe_sec = 5; + _ifxhcd->autoprobe_sec = 30; + + _ifxhcd->hc_driver.description = _ifxhcd->core_if.core_name; + _ifxhcd->hc_driver.product_desc = "IFX USB Controller"; + //_ifxhcd->hc_driver.hcd_priv_size = sizeof(ifxhcd_hcd_t); + _ifxhcd->hc_driver.hcd_priv_size = sizeof(unsigned long); + _ifxhcd->hc_driver.irq = ifxhcd_irq; + _ifxhcd->hc_driver.flags = HCD_MEMORY | HCD_USB2; + _ifxhcd->hc_driver.start = ifxhcd_start; + _ifxhcd->hc_driver.stop = ifxhcd_stop; + //_ifxhcd->hc_driver.reset = + //_ifxhcd->hc_driver.suspend = + //_ifxhcd->hc_driver.resume = + _ifxhcd->hc_driver.urb_enqueue = ifxhcd_urb_enqueue; + _ifxhcd->hc_driver.urb_dequeue = ifxhcd_urb_dequeue; + _ifxhcd->hc_driver.endpoint_disable = ifxhcd_endpoint_disable; + _ifxhcd->hc_driver.get_frame_number = ifxhcd_get_frame_number; + _ifxhcd->hc_driver.hub_status_data = ifxhcd_hub_status_data; + _ifxhcd->hc_driver.hub_control = ifxhcd_hub_control; + //_ifxhcd->hc_driver.hub_suspend = + //_ifxhcd->hc_driver.hub_resume = + _ifxhcd->pkt_remaining_reload_hs=PKT_REMAINING_RELOAD_HS; + _ifxhcd->pkt_remaining_reload_fs=PKT_REMAINING_RELOAD_FS; + _ifxhcd->pkt_remaining_reload_ls=PKT_REMAINING_RELOAD_LS; + _ifxhcd->pkt_count_limit_bo =8; + _ifxhcd->pkt_count_limit_bi =8; + + /* Allocate memory for and initialize the base HCD and */ + //syshcd = usb_create_hcd(&_ifxhcd->hc_driver, _ifxhcd->dev, _ifxhcd->dev->bus_id); + syshcd = usb_create_hcd(&_ifxhcd->hc_driver, _ifxhcd->dev, _ifxhcd->core_if.core_name); + + if (syshcd == NULL) + { + retval = -ENOMEM; + goto error1; + } + + syshcd->rsrc_start = (unsigned long)_ifxhcd->core_if.core_global_regs; + syshcd->regs = (void *)_ifxhcd->core_if.core_global_regs; + syshcd->self.otg_port = 0; + + //*((unsigned long *)(&(syshcd->hcd_priv)))=(unsigned long)_ifxhcd; + //*((unsigned long *)(&(syshcd->hcd_priv[0])))=(unsigned long)_ifxhcd; + syshcd->hcd_priv[0]=(unsigned long)_ifxhcd; + _ifxhcd->syshcd=syshcd; + INIT_LIST_HEAD(&_ifxhcd->epqh_list_all ); + INIT_LIST_HEAD(&_ifxhcd->epqh_list_np ); + INIT_LIST_HEAD(&_ifxhcd->epqh_list_intr ); + #ifdef __EN_ISOC__ + INIT_LIST_HEAD(&_ifxhcd->epqh_list_isoc); + #endif + + /* + * Create a host channel descriptor for each host channel implemented + * in the controller. Initialize the channel descriptor array. + */ + { + int num_channels = _ifxhcd->core_if.params.host_channels; + int i; + for (i = 0; i < num_channels; i++) + { + _ifxhcd->ifxhc[i].hc_num = i; + IFX_DEBUGPL(DBG_HCDV, "HCD Added channel #%d\n", i); + } + } + + /* Set device flags indicating whether the HCD supports DMA. */ + if(_ifxhcd->dev->dma_mask) + *(_ifxhcd->dev->dma_mask) = ~0; + _ifxhcd->dev->coherent_dma_mask = ~0; + + /* + * Finish generic HCD initialization and start the HCD. This function + * allocates the DMA buffer pool, registers the USB bus, requests the + * IRQ line, and calls ifxusb_hcd_start method. + */ + retval = usb_add_hcd(syshcd, _ifxhcd->core_if.irq, 0 + |IRQF_DISABLED + |IRQF_SHARED + ); + if (retval < 0) + goto error2; + + /* + * Allocate space for storing data on status transactions. Normally no + * data is sent, but this space acts as a bit bucket. This must be + * done after usb_add_hcd since that function allocates the DMA buffer + * pool. + */ + _ifxhcd->status_buf = ifxusb_alloc_buf_h(IFXHCD_STATUS_BUF_SIZE, 1); + + if (_ifxhcd->status_buf) + { + IFX_DEBUGPL(DBG_HCD, "IFX USB HCD Initialized, bus=%s, usbbus=%d\n", _ifxhcd->core_if.core_name, syshcd->self.busnum); + return 0; + } + IFX_ERROR("%s: status_buf allocation failed\n", __func__); + + /* Error conditions */ + usb_remove_hcd(syshcd); +error2: + ifxhcd_freeextra(syshcd); + usb_put_hcd(syshcd); +error1: + return retval; +} + +/*! + \brief Removes the HCD. + Frees memory and resources associated with the HCD and deregisters the bus. + */ +void ifxhcd_remove(ifxhcd_hcd_t *_ifxhcd) +{ + struct usb_hcd *syshcd = ifxhcd_to_syshcd(_ifxhcd); + + IFX_DEBUGPL(DBG_HCD, "IFX USB HCD REMOVE\n"); + + /* Turn off all interrupts */ + ifxusb_wreg (&_ifxhcd->core_if.core_global_regs->gintmsk, 0); + ifxusb_mreg (&_ifxhcd->core_if.core_global_regs->gahbcfg, 1, 0); + + usb_remove_hcd(syshcd); + ifxhcd_freeextra(syshcd); + usb_put_hcd(syshcd); + + return; +} + + +/* ========================================================================= + * Linux HC Driver Functions + * ========================================================================= */ + +/*! + \brief Initializes the IFXUSB controller and its root hub and prepares it for host + mode operation. Activates the root port. Returns 0 on success and a negative + error code on failure. + Called by USB stack. + */ +int ifxhcd_start(struct usb_hcd *_syshcd) +{ + ifxhcd_hcd_t *ifxhcd = syshcd_to_ifxhcd (_syshcd); + ifxusb_core_if_t *core_if = &ifxhcd->core_if; + struct usb_bus *bus; + + IFX_DEBUGPL(DBG_HCD, "IFX USB HCD START\n"); + + bus = hcd_to_bus(_syshcd); + + /* Initialize the bus state. */ + _syshcd->state = HC_STATE_RUNNING; + + /* Initialize and connect root hub if one is not already attached */ + if (bus->root_hub) + { + IFX_DEBUGPL(DBG_HCD, "IFX USB HCD Has Root Hub\n"); + /* Inform the HUB driver to resume. */ + usb_hcd_resume_root_hub(_syshcd); + } + + ifxhcd->flags.d32 = 0; + + /* Put all channels in the free channel list and clean up channel states.*/ + { + int num_channels = ifxhcd->core_if.params.host_channels; + int i; + for (i = 0; i < num_channels; i++) + { + ifxhcd_hc_t *channel; + channel = &ifxhcd->ifxhc[i]; + ifxhcd_hc_cleanup(&ifxhcd->core_if, channel); + } + } + /* Initialize the USB core for host mode operation. */ + + ifxusb_host_enable_interrupts(core_if); + ifxusb_enable_global_interrupts_h(core_if); + ifxusb_phy_power_on_h (core_if); + + ifxusb_vbus_init(core_if); + + /* Turn on the vbus power. */ + { + hprt0_data_t hprt0; + hprt0.d32 = ifxusb_read_hprt0(core_if); + + IFX_PRINT("Init: Power Port (%d)\n", hprt0.b.prtpwr); + if (hprt0.b.prtpwr == 0 ) + { + hprt0.b.prtpwr = 1; + ifxusb_wreg(core_if->hprt0, hprt0.d32); + ifxusb_vbus_on(core_if); + } + } + return 0; +} + +/*! + \brief Halts the IFXUSB host mode operations in a clean manner. USB transfers are + stopped. + */ + #if defined(__IS_AR10__) +void ifxusb_oc_int_free(int port); + #else +void ifxusb_oc_int_free(void); + #endif + +void ifxhcd_stop(struct usb_hcd *_syshcd) +{ + ifxhcd_hcd_t *ifxhcd = syshcd_to_ifxhcd(_syshcd); + hprt0_data_t hprt0 = { .d32=0 }; + + IFX_DEBUGPL(DBG_HCD, "IFX USB HCD STOP\n"); + + /* Turn off all interrupts. */ + ifxusb_disable_global_interrupts_h(&ifxhcd->core_if ); + ifxusb_host_disable_interrupts(&ifxhcd->core_if ); + + /* + * The root hub should be disconnected before this function is called. + * The disconnect will clear the URBD lists (via ..._hcd_urb_dequeue) + * and the EPQH lists (via ..._hcd_endpoint_disable). + */ + + /* Turn off the vbus power */ + IFX_PRINT("PortPower off\n"); + + ifxusb_vbus_off(&ifxhcd->core_if ); + + + #if defined(__IS_AR10__) + ifxusb_oc_int_free(ifxhcd->core_if.core_no); + #else + ifxusb_oc_int_free(); + #endif + + + ifxusb_vbus_free(&ifxhcd->core_if ); + hprt0.b.prtpwr = 0; + ifxusb_wreg(ifxhcd->core_if.hprt0, hprt0.d32); + return; +} + +/*! + \brief Returns the current frame number + */ +int ifxhcd_get_frame_number(struct usb_hcd *_syshcd) +{ + ifxhcd_hcd_t *ifxhcd = syshcd_to_ifxhcd(_syshcd); + hfnum_data_t hfnum; + + hfnum.d32 = ifxusb_rreg(&ifxhcd->core_if.host_global_regs->hfnum); + + return hfnum.b.frnum; +} + +/*! + \brief Starts processing a USB transfer request specified by a USB Request Block + (URB). mem_flags indicates the type of memory allocation to use while + processing this URB. + */ +int ifxhcd_urb_enqueue( struct usb_hcd *_syshcd, +#if LINUX_VERSION_CODE < KERNEL_VERSION(2,6,32) + struct usb_host_endpoint *_sysep, +#endif + struct urb *_urb, + gfp_t _mem_flags) +{ + ifxhcd_hcd_t *ifxhcd = syshcd_to_ifxhcd (_syshcd); + ifxhcd_epqh_t *epqh = NULL; + + #ifdef __DEBUG__ + if (CHK_DEBUG_LEVEL(DBG_HCDV | DBG_HCD_URB)) + dump_urb_info(_urb, "ifxusb_hcd_urb_enqueue"); + #endif //__DEBUG__ + + if (!ifxhcd->flags.b.port_connect_status) /* No longer connected. */ + return -ENODEV; + + #if !defined(__EN_ISOC__) + if(usb_pipetype(_urb->pipe) == PIPE_ISOCHRONOUS) + { + IFX_ERROR("ISOC transfer not supported!!!\n"); + return -ENODEV; + } + #endif + + if(_urb->hcpriv) + { + IFX_WARN("%s() Previous urb->hcpriv exist %p\n",__func__,_urb->hcpriv); + #if 1 + return -ENOSPC; + #endif + } + + epqh=ifxhcd_urbd_create (ifxhcd,_urb); + if (!epqh) + { + IFX_ERROR("IFXUSB HCD URB Enqueue failed creating URBD\n"); + return -ENOSPC; + } + if(epqh->phase==EPQH_DISABLING ) + { + IFX_ERROR("Enqueue to a DISABLING EP!!!\n"); + return -ENODEV; + } + + #ifdef __DYN_SOF_INTR__ + ifxhcd->dyn_sof_count = DYN_SOF_COUNT_DEF; + #endif + //enable_sof(ifxhcd); + { + gint_data_t gintsts; + gintsts.d32=0; + gintsts.b.sofintr = 1; + ifxusb_mreg(&ifxhcd->core_if.core_global_regs->gintmsk, 0,gintsts.d32); + } + + if(epqh->phase==EPQH_IDLE || epqh->phase==EPQH_STDBY ) + { + epqh->phase=EPQH_READY; + #ifdef __EPQD_DESTROY_TIMEOUT__ + del_timer(&epqh->destroy_timer); + #endif + } + select_eps(ifxhcd); + return 0; +} + +/*! + \brief Aborts/cancels a USB transfer request. Always returns 0 to indicate + success. + */ +#if LINUX_VERSION_CODE < KERNEL_VERSION(2,6,32) +int ifxhcd_urb_dequeue(struct usb_hcd *_syshcd, struct urb *_urb) +#else +int ifxhcd_urb_dequeue(struct usb_hcd *_syshcd, struct urb *_urb, int status) +#endif +{ + ifxhcd_hcd_t *ifxhcd; + struct usb_host_endpoint *sysep; + ifxhcd_urbd_t *urbd; + ifxhcd_epqh_t *epqh; + + IFX_DEBUGPL(DBG_HCD, "IFXUSB HCD URB Dequeue\n"); + #if !defined(__EN_ISOC__) + if(usb_pipetype(_urb->pipe) == PIPE_ISOCHRONOUS) + return 0; + #endif + + ifxhcd = syshcd_to_ifxhcd(_syshcd); + + urbd = (ifxhcd_urbd_t *) _urb->hcpriv; + if(!urbd) + { + #if LINUX_VERSION_CODE < KERNEL_VERSION(2,6,32) + _urb->status=-ETIMEDOUT; + usb_hcd_giveback_urb(_syshcd, _urb); + #else +// usb_hcd_giveback_urb(_syshcd, _urb,-ETIMEDOUT); + usb_hcd_giveback_urb(_syshcd, _urb,status); + #endif + return 0; + } + + sysep = ifxhcd_urb_to_endpoint(_urb); + if(sysep) + { + LOCK_EPQH_LIST_ALL(ifxhcd); + epqh = sysep_to_epqh(ifxhcd,sysep); + UNLOCK_EPQH_LIST_ALL(ifxhcd); + if(epqh!=urbd->epqh) + IFX_ERROR("%s inconsistant epqh %p %p\n",__func__,epqh,urbd->epqh); + } + else + epqh = (ifxhcd_epqh_t *) urbd->epqh; + if(!ifxhcd->flags.b.port_connect_status || !epqh) + { + urbd->phase=URBD_DEQUEUEING; + ifxhcd_complete_urb(ifxhcd, urbd, -ENODEV); + } + else + { + LOCK_URBD_LIST(epqh); + if( urbd->phase==URBD_IDLE + || urbd->phase==URBD_ACTIVE +// || urbd->phase==URBD_STARTING + ) + { + urbd->phase=URBD_DEQUEUEING; + #if LINUX_VERSION_CODE < KERNEL_VERSION(2,6,32) + ifxhcd_complete_urb(ifxhcd, urbd, -ETIMEDOUT); + #else + ifxhcd_complete_urb(ifxhcd, urbd, status); + #endif + } + else if( urbd->phase==URBD_STARTED + || urbd->phase==URBD_STARTING +// || urbd->phase==URBD_ACTIVE + ) + { + if(ifxhcd_hc_halt(&ifxhcd->core_if, epqh->hc, HC_XFER_URB_DEQUEUE)) + { + urbd->phase=URBD_DEQUEUEING; + #if LINUX_VERSION_CODE < KERNEL_VERSION(2,6,32) + ifxhcd_complete_urb(ifxhcd, urbd, -ETIMEDOUT); + #else + ifxhcd_complete_urb(ifxhcd, urbd, status); + #endif + ifxhcd_epqh_idle(epqh); + } + } + UNLOCK_URBD_LIST(epqh); + } + return 0; +} + + +/*! + \brief Frees resources in the IFXUSB controller related to a given endpoint. Also + clears state in the HCD related to the endpoint. Any URBs for the endpoint + must already be dequeued. + */ +void ifxhcd_endpoint_disable( struct usb_hcd *_syshcd, + struct usb_host_endpoint *_sysep) +{ + ifxhcd_hcd_t *ifxhcd; + ifxhcd_epqh_t *epqh; + + IFX_DEBUGPL(DBG_HCD, "IFXUSB HCD EP DISABLE: _bEndpointAddress=0x%02x, " + "endpoint=%d\n", _sysep->desc.bEndpointAddress, + ifxhcd_ep_addr_to_endpoint(_sysep->desc.bEndpointAddress)); + + ifxhcd = syshcd_to_ifxhcd(_syshcd); + + LOCK_EPQH_LIST_ALL(ifxhcd); + epqh = sysep_to_epqh(ifxhcd,_sysep); + UNLOCK_EPQH_LIST_ALL(ifxhcd); + + if (!epqh) + { + return; + } + else + { + if (epqh->sysep!=_sysep) + { + IFX_ERROR("%s inconsistant sysep %p %p %p\n",__func__,epqh,epqh->sysep,_sysep); + return; + } + + epqh->phase=EPQH_DISABLING; + kill_all_urbs_in_epqh(ifxhcd, epqh, -ETIMEDOUT); + { + uint32_t count=0x80000; + for(;!list_empty(&epqh->urbd_list) && count> 0; count--) udelay(1); + if(!count) + IFX_ERROR("%s: unable to clear urbd in epqh \n",__func__); + } + ifxhcd_epqh_free(epqh); + } + IFX_DEBUGPL(DBG_HCD, "IFXUSB HCD EP DISABLE: done\n"); +} + + +/*! + \brief Handles host mode interrupts for the IFXUSB controller. Returns IRQ_NONE if + there was no interrupt to handle. Returns IRQ_HANDLED if there was a valid + interrupt. + + This function is called by the USB core when an interrupt occurs + */ +irqreturn_t ifxhcd_irq(struct usb_hcd *_syshcd) +{ + ifxhcd_hcd_t *ifxhcd = syshcd_to_ifxhcd (_syshcd); + int32_t retval=0; + + //mask_and_ack_ifx_irq (ifxhcd->core_if.irq); + retval = ifxhcd_handle_intr(ifxhcd); + return IRQ_RETVAL(retval); +} + + + +/*! + \brief Creates Status Change bitmap for the root hub and root port. The bitmap is + returned in buf. Bit 0 is the status change indicator for the root hub. Bit 1 + is the status change indicator for the single root port. Returns 1 if either + change indicator is 1, otherwise returns 0. + */ +int ifxhcd_hub_status_data(struct usb_hcd *_syshcd, char *_buf) +{ + ifxhcd_hcd_t *ifxhcd = syshcd_to_ifxhcd (_syshcd); + + _buf[0] = 0; + _buf[0] |= (ifxhcd->flags.b.port_connect_status_change || + ifxhcd->flags.b.port_reset_change || + ifxhcd->flags.b.port_enable_change || + ifxhcd->flags.b.port_suspend_change || + ifxhcd->flags.b.port_over_current_change) << 1; + + #ifdef __DEBUG__ + if (_buf[0]) + { + IFX_DEBUGPL(DBG_HCD, "IFXUSB HCD HUB STATUS DATA:" + " Root port status changed\n"); + IFX_DEBUGPL(DBG_HCDV, " port_connect_status_change: %d\n", + ifxhcd->flags.b.port_connect_status_change); + IFX_DEBUGPL(DBG_HCDV, " port_reset_change: %d\n", + ifxhcd->flags.b.port_reset_change); + IFX_DEBUGPL(DBG_HCDV, " port_enable_change: %d\n", + ifxhcd->flags.b.port_enable_change); + IFX_DEBUGPL(DBG_HCDV, " port_suspend_change: %d\n", + ifxhcd->flags.b.port_suspend_change); + IFX_DEBUGPL(DBG_HCDV, " port_over_current_change: %d\n", + ifxhcd->flags.b.port_over_current_change); + { + hprt0_data_t hprt0; + hprt0.d32 = ifxusb_rreg(ifxhcd->core_if.hprt0); + IFX_DEBUGPL(DBG_HCDV, " port reg :%08X\n",hprt0.d32); + IFX_DEBUGPL(DBG_HCDV, " port reg :connect: %d/%d\n",hprt0.b.prtconnsts,hprt0.b.prtconndet); + IFX_DEBUGPL(DBG_HCDV, " port reg :enable: %d/%d\n",hprt0.b.prtena,hprt0.b.prtenchng); + IFX_DEBUGPL(DBG_HCDV, " port reg :OC: %d/%d\n",hprt0.b.prtovrcurract,hprt0.b.prtovrcurrchng); + IFX_DEBUGPL(DBG_HCDV, " port reg :rsume/suspend/reset: %d/%d/%d\n",hprt0.b.prtres,hprt0.b.prtsusp,hprt0.b.prtrst); + IFX_DEBUGPL(DBG_HCDV, " port reg :port power: %d/\n",hprt0.b.prtpwr); + IFX_DEBUGPL(DBG_HCDV, " port reg :speed: %d/\n",hprt0.b.prtspd); + } + } + #endif //__DEBUG__ + return (_buf[0] != 0); +} + +#ifdef __WITH_HS_ELECT_TST__ + extern void do_setup(ifxusb_core_if_t *_core_if) ; + extern void do_in_ack(ifxusb_core_if_t *_core_if); +#endif //__WITH_HS_ELECT_TST__ + +/*! + \brief Handles hub class-specific requests. + */ +int ifxhcd_hub_control( struct usb_hcd *_syshcd, + u16 _typeReq, + u16 _wValue, + u16 _wIndex, + char *_buf, + u16 _wLength) +{ + int retval = 0; + ifxhcd_hcd_t *ifxhcd = syshcd_to_ifxhcd (_syshcd); + ifxusb_core_if_t *core_if = &ifxhcd->core_if; + struct usb_hub_descriptor *desc; + hprt0_data_t hprt0 = {.d32 = 0}; + + uint32_t port_status; + + switch (_typeReq) + { + case ClearHubFeature: + IFX_DEBUGPL (DBG_HCD, "IFXUSB HCD HUB CONTROL - " + "ClearHubFeature 0x%x\n", _wValue); + switch (_wValue) + { + case C_HUB_LOCAL_POWER: + case C_HUB_OVER_CURRENT: + /* Nothing required here */ + break; + default: + retval = -EINVAL; + IFX_ERROR ("IFXUSB HCD - " + "ClearHubFeature request %xh unknown\n", _wValue); + } + break; + case ClearPortFeature: + if (!_wIndex || _wIndex > 1) + goto error; + + switch (_wValue) + { + case USB_PORT_FEAT_ENABLE: + IFX_DEBUGPL (DBG_ANY, "IFXUSB HCD HUB CONTROL - " + "ClearPortFeature USB_PORT_FEAT_ENABLE\n"); + hprt0.d32 = ifxusb_read_hprt0 (core_if); + hprt0.b.prtena = 1; + ifxusb_wreg(core_if->hprt0, hprt0.d32); + break; + case USB_PORT_FEAT_SUSPEND: + IFX_DEBUGPL (DBG_HCD, "IFXUSB HCD HUB CONTROL - " + "ClearPortFeature USB_PORT_FEAT_SUSPEND\n"); + hprt0.d32 = ifxusb_read_hprt0 (core_if); + hprt0.b.prtres = 1; + ifxusb_wreg(core_if->hprt0, hprt0.d32); + /* Clear Resume bit */ + mdelay (100); + hprt0.b.prtres = 0; + ifxusb_wreg(core_if->hprt0, hprt0.d32); + break; + case USB_PORT_FEAT_POWER: + IFX_DEBUGPL (DBG_HCD, "IFXUSB HCD HUB CONTROL - " + "ClearPortFeature USB_PORT_FEAT_POWER\n"); + #ifdef __IS_DUAL__ + ifxusb_vbus_off(core_if); + #else + ifxusb_vbus_off(core_if); + #endif + hprt0.d32 = ifxusb_read_hprt0 (core_if); + hprt0.b.prtpwr = 0; + ifxusb_wreg(core_if->hprt0, hprt0.d32); + break; + case USB_PORT_FEAT_INDICATOR: + IFX_DEBUGPL (DBG_HCD, "IFXUSB HCD HUB CONTROL - " + "ClearPortFeature USB_PORT_FEAT_INDICATOR\n"); + /* Port inidicator not supported */ + break; + case USB_PORT_FEAT_C_CONNECTION: + /* Clears drivers internal connect status change + * flag */ + IFX_DEBUGPL (DBG_HCD, "IFXUSB HCD HUB CONTROL - " + "ClearPortFeature USB_PORT_FEAT_C_CONNECTION\n"); + ifxhcd->flags.b.port_connect_status_change = 0; + break; + case USB_PORT_FEAT_C_RESET: + /* Clears the driver's internal Port Reset Change + * flag */ + IFX_DEBUGPL (DBG_HCD, "IFXUSB HCD HUB CONTROL - " + "ClearPortFeature USB_PORT_FEAT_C_RESET\n"); + ifxhcd->flags.b.port_reset_change = 0; + break; + case USB_PORT_FEAT_C_ENABLE: + /* Clears the driver's internal Port + * Enable/Disable Change flag */ + IFX_DEBUGPL (DBG_HCD, "IFXUSB HCD HUB CONTROL - " + "ClearPortFeature USB_PORT_FEAT_C_ENABLE\n"); + ifxhcd->flags.b.port_enable_change = 0; + break; + case USB_PORT_FEAT_C_SUSPEND: + /* Clears the driver's internal Port Suspend + * Change flag, which is set when resume signaling on + * the host port is complete */ + IFX_DEBUGPL (DBG_HCD, "IFXUSB HCD HUB CONTROL - " + "ClearPortFeature USB_PORT_FEAT_C_SUSPEND\n"); + ifxhcd->flags.b.port_suspend_change = 0; + break; + case USB_PORT_FEAT_C_OVER_CURRENT: + IFX_DEBUGPL (DBG_HCD, "IFXUSB HCD HUB CONTROL - " + "ClearPortFeature USB_PORT_FEAT_C_OVER_CURRENT\n"); + ifxhcd->flags.b.port_over_current_change = 0; + break; + default: + retval = -EINVAL; + IFX_ERROR ("IFXUSB HCD - " + "ClearPortFeature request %xh " + "unknown or unsupported\n", _wValue); + } + break; + case GetHubDescriptor: + IFX_DEBUGPL (DBG_HCD, "IFXUSB HCD HUB CONTROL - " + "GetHubDescriptor\n"); + desc = (struct usb_hub_descriptor *)_buf; + desc->bDescLength = 9; + desc->bDescriptorType = 0x29; + desc->bNbrPorts = 1; + desc->wHubCharacteristics = 0x08; + desc->bPwrOn2PwrGood = 1; + desc->bHubContrCurrent = 0; + + desc->u.hs.DeviceRemovable[0] = 0; + desc->u.hs.DeviceRemovable[1] = 1; + /*desc->bitmap[0] = 0; + desc->bitmap[1] = 0xff;*/ + break; + case GetHubStatus: + IFX_DEBUGPL (DBG_HCD, "IFXUSB HCD HUB CONTROL - " + "GetHubStatus\n"); + memset (_buf, 0, 4); + break; + case GetPortStatus: + IFX_DEBUGPL (DBG_HCD, "IFXUSB HCD HUB CONTROL - " + "GetPortStatus\n"); + if (!_wIndex || _wIndex > 1) + goto error; + port_status = 0; + if (ifxhcd->flags.b.port_connect_status_change) + port_status |= (1 << USB_PORT_FEAT_C_CONNECTION); + if (ifxhcd->flags.b.port_enable_change) + port_status |= (1 << USB_PORT_FEAT_C_ENABLE); + if (ifxhcd->flags.b.port_suspend_change) + port_status |= (1 << USB_PORT_FEAT_C_SUSPEND); + if (ifxhcd->flags.b.port_reset_change) + port_status |= (1 << USB_PORT_FEAT_C_RESET); + if (ifxhcd->flags.b.port_over_current_change) + { + IFX_ERROR("Device Not Supported\n"); + port_status |= (1 << USB_PORT_FEAT_C_OVER_CURRENT); + } + if (!ifxhcd->flags.b.port_connect_status) + { + /* + * The port is disconnected, which means the core is + * either in device mode or it soon will be. Just + * return 0's for the remainder of the port status + * since the port register can't be read if the core + * is in device mode. + */ + *((u32 *) _buf) = cpu_to_le32(port_status); + break; + } + + hprt0.d32 = ifxusb_rreg(core_if->hprt0); + IFX_DEBUGPL(DBG_HCDV, " HPRT0: 0x%08x\n", hprt0.d32); + if (hprt0.b.prtconnsts) + port_status |= (1 << USB_PORT_FEAT_CONNECTION); + if (hprt0.b.prtena) + { + ifxhcd->disconnecting=0; + port_status |= (1 << USB_PORT_FEAT_ENABLE); + } + if (hprt0.b.prtsusp) + port_status |= (1 << USB_PORT_FEAT_SUSPEND); + if (hprt0.b.prtovrcurract) + port_status |= (1 << USB_PORT_FEAT_OVER_CURRENT); + if (hprt0.b.prtrst) + port_status |= (1 << USB_PORT_FEAT_RESET); + if (hprt0.b.prtpwr) + port_status |= (1 << USB_PORT_FEAT_POWER); + if (hprt0.b.prtspd == IFXUSB_HPRT0_PRTSPD_HIGH_SPEED) + port_status |= USB_PORT_STAT_HIGH_SPEED; + else if (hprt0.b.prtspd == IFXUSB_HPRT0_PRTSPD_LOW_SPEED) + port_status |= USB_PORT_STAT_LOW_SPEED; + if (hprt0.b.prttstctl) + port_status |= (1 << USB_PORT_FEAT_TEST); + /* USB_PORT_FEAT_INDICATOR unsupported always 0 */ + *((u32 *) _buf) = cpu_to_le32(port_status); + break; + case SetHubFeature: + IFX_DEBUGPL (DBG_HCD, "IFXUSB HCD HUB CONTROL - " + "SetHubFeature\n"); + /* No HUB features supported */ + break; + case SetPortFeature: + if (_wValue != USB_PORT_FEAT_TEST && (!_wIndex || _wIndex > 1)) + goto error; + /* + * The port is disconnected, which means the core is + * either in device mode or it soon will be. Just + * return without doing anything since the port + * register can't be written if the core is in device + * mode. + */ + if (!ifxhcd->flags.b.port_connect_status) + break; + switch (_wValue) + { + case USB_PORT_FEAT_SUSPEND: + IFX_DEBUGPL (DBG_HCD, "IFXUSB HCD HUB CONTROL - " + "SetPortFeature - USB_PORT_FEAT_SUSPEND\n"); + hprt0.d32 = ifxusb_read_hprt0 (core_if); + hprt0.b.prtsusp = 1; + ifxusb_wreg(core_if->hprt0, hprt0.d32); + //IFX_PRINT( "SUSPEND: HPRT0=%0x\n", hprt0.d32); + /* Suspend the Phy Clock */ + { + pcgcctl_data_t pcgcctl = {.d32=0}; + pcgcctl.b.stoppclk = 1; + ifxusb_wreg(core_if->pcgcctl, pcgcctl.d32); + } + break; + case USB_PORT_FEAT_POWER: + IFX_DEBUGPL (DBG_HCD, "IFXUSB HCD HUB CONTROL - " + "SetPortFeature - USB_PORT_FEAT_POWER\n"); + ifxusb_vbus_on (core_if); + hprt0.d32 = ifxusb_read_hprt0 (core_if); + hprt0.b.prtpwr = 1; + ifxusb_wreg(core_if->hprt0, hprt0.d32); + break; + case USB_PORT_FEAT_RESET: + IFX_DEBUGPL (DBG_HCD, "IFXUSB HCD HUB CONTROL - " + "SetPortFeature - USB_PORT_FEAT_RESET\n"); + hprt0.d32 = ifxusb_read_hprt0 (core_if); + hprt0.b.prtrst = 1; + ifxusb_wreg(core_if->hprt0, hprt0.d32); + /* Clear reset bit in 10ms (FS/LS) or 50ms (HS) */ + MDELAY (60); + hprt0.b.prtrst = 0; + ifxusb_wreg(core_if->hprt0, hprt0.d32); + break; + #ifdef __WITH_HS_ELECT_TST__ + case USB_PORT_FEAT_TEST: + { + uint32_t t; + gint_data_t gintmsk; + t = (_wIndex >> 8); /* MSB wIndex USB */ + IFX_DEBUGPL (DBG_HCD, "IFXUSB HCD HUB CONTROL - " + "SetPortFeature - USB_PORT_FEAT_TEST %d\n", t); + warn("USB_PORT_FEAT_TEST %d\n", t); + if (t < 6) + { + hprt0.d32 = ifxusb_read_hprt0 (core_if); + hprt0.b.prttstctl = t; + ifxusb_wreg(core_if->hprt0, hprt0.d32); + } + else if (t == 6) /* HS_HOST_PORT_SUSPEND_RESUME */ + { + /* Save current interrupt mask */ + gintmsk.d32 = ifxusb_rreg(&core_if->core_global_regs->gintmsk); + + /* Disable all interrupts while we muck with + * the hardware directly + */ + ifxusb_wreg(&core_if->core_global_regs->gintmsk, 0); + + /* 15 second delay per the test spec */ + mdelay(15000); + + /* Drive suspend on the root port */ + hprt0.d32 = ifxusb_read_hprt0 (core_if); + hprt0.b.prtsusp = 1; + hprt0.b.prtres = 0; + ifxusb_wreg(core_if->hprt0, hprt0.d32); + + /* 15 second delay per the test spec */ + mdelay(15000); + + /* Drive resume on the root port */ + hprt0.d32 = ifxusb_read_hprt0 (core_if); + hprt0.b.prtsusp = 0; + hprt0.b.prtres = 1; + ifxusb_wreg(core_if->hprt0, hprt0.d32); + mdelay(100); + + /* Clear the resume bit */ + hprt0.b.prtres = 0; + ifxusb_wreg(core_if->hprt0, hprt0.d32); + + /* Restore interrupts */ + ifxusb_wreg(&core_if->core_global_regs->gintmsk, gintmsk.d32); + } + else if (t == 7) /* SINGLE_STEP_GET_DEVICE_DESCRIPTOR setup */ + { + /* Save current interrupt mask */ + gintmsk.d32 = ifxusb_rreg(&core_if->core_global_regs->gintmsk); + + /* Disable all interrupts while we muck with + * the hardware directly + */ + ifxusb_wreg(&core_if->core_global_regs->gintmsk, 0); + + /* 15 second delay per the test spec */ + mdelay(15000); + + /* Send the Setup packet */ + do_setup(core_if); + + /* 15 second delay so nothing else happens for awhile */ + mdelay(15000); + + /* Restore interrupts */ + ifxusb_wreg(&core_if->core_global_regs->gintmsk, gintmsk.d32); + } + + else if (t == 8) /* SINGLE_STEP_GET_DEVICE_DESCRIPTOR execute */ + { + /* Save current interrupt mask */ + gintmsk.d32 = ifxusb_rreg(&core_if->core_global_regs->gintmsk); + + /* Disable all interrupts while we muck with + * the hardware directly + */ + ifxusb_wreg(&core_if->core_global_regs->gintmsk, 0); + + /* Send the Setup packet */ + do_setup(core_if); + + /* 15 second delay so nothing else happens for awhile */ + mdelay(15000); + + /* Send the In and Ack packets */ + do_in_ack(core_if); + + /* 15 second delay so nothing else happens for awhile */ + mdelay(15000); + + /* Restore interrupts */ + ifxusb_wreg(&core_if->core_global_regs->gintmsk, gintmsk.d32); + } + } + break; + #endif //__WITH_HS_ELECT_TST__ + case USB_PORT_FEAT_INDICATOR: + IFX_DEBUGPL (DBG_HCD, "IFXUSB HCD HUB CONTROL - " + "SetPortFeature - USB_PORT_FEAT_INDICATOR\n"); + /* Not supported */ + break; + default: + retval = -EINVAL; + IFX_ERROR ("IFXUSB HCD - " + "SetPortFeature request %xh " + "unknown or unsupported\n", _wValue); + } + break; + default: + error: + retval = -EINVAL; + IFX_WARN ("IFXUSB HCD - " + "Unknown hub control request type or invalid typeReq: %xh wIndex: %xh wValue: %xh\n", + _typeReq, _wIndex, _wValue); + } + return retval; +} + + + + +/*! + \brief This function trigger a data transfer for a host channel and + starts the transfer. + + For a PING transfer in Slave mode, the Do Ping bit is set in the HCTSIZ + register along with a packet count of 1 and the channel is enabled. This + causes a single PING transaction to occur. Other fields in HCTSIZ are + simply set to 0 since no data transfer occurs in this case. + + For a PING transfer in DMA mode, the HCTSIZ register is initialized with + all the information required to perform the subsequent data transfer. In + addition, the Do Ping bit is set in the HCTSIZ register. In this case, the + controller performs the entire PING protocol, then starts the data + transfer. + \param _core_if Pointer of core_if structure + \param _ifxhc Information needed to initialize the host channel. The xfer_len + value may be reduced to accommodate the max widths of the XferSize and + PktCnt fields in the HCTSIZn register. The multi_count value may be changed + to reflect the final xfer_len value. + */ +void ifxhcd_hc_start(ifxhcd_hcd_t *_ifxhcd, ifxhcd_hc_t *_ifxhc) +{ + ifxusb_core_if_t *core_if = &_ifxhcd->core_if; + uint32_t max_hc_xfer_size = core_if->params.max_transfer_size; + uint16_t max_hc_pkt_count = core_if->params.max_packet_count; + ifxusb_hc_regs_t *hc_regs = core_if->hc_regs[_ifxhc->hc_num]; + hfnum_data_t hfnum; + + hprt0_data_t hprt0; + + if(_ifxhc->epqh->urbd->phase==URBD_DEQUEUEING) + return; + + hprt0.d32 = ifxusb_read_hprt0(core_if); + + if(_ifxhcd->pkt_remaining==0) + return; + +#if 0 + if(_ifxhc->phase!=HC_WAITING) + printk(KERN_INFO "%s() line %d: _ifxhc->phase!=HC_WAITING :%d\n",__func__,__LINE__,_ifxhc->phase); + if(_ifxhc->epqh->urbd->phase==URBD_IDLE ) printk(KERN_INFO "%s() line %d: _ifxhc->epqh->urbd->phase==URBD_IDLE\n",__func__,__LINE__); +// if(_ifxhc->epqh->urbd->phase==URBD_ACTIVE ) printk(KERN_INFO "%s() line %d: _ifxhc->epqh->urbd->phase==URBD_ACTIVE\n",__func__,__LINE__); + if(_ifxhc->epqh->urbd->phase==URBD_STARTING ) printk(KERN_INFO "%s() line %d: _ifxhc->epqh->urbd->phase==URBD_STARTING\n",__func__,__LINE__); + if(_ifxhc->epqh->urbd->phase==URBD_STARTED ) printk(KERN_INFO "%s() line %d: _ifxhc->epqh->urbd->phase==URBD_STARTED\n",__func__,__LINE__); + if(_ifxhc->epqh->urbd->phase==URBD_COMPLETING) printk(KERN_INFO "%s() line %d: _ifxhc->epqh->urbd->phase==URBD_COMPLETING\n",__func__,__LINE__); + if(_ifxhc->epqh->urbd->phase==URBD_DEQUEUEING) printk(KERN_INFO "%s() line %d: _ifxhc->epqh->urbd->phase==URBD_DEQUEUEING\n",__func__,__LINE__); + if(_ifxhc->epqh->urbd->phase==URBD_FINISHING ) printk(KERN_INFO "%s() line %d: _ifxhc->epqh->urbd->phase==URBD_FINISHING\n",__func__,__LINE__); +#endif + + if (hprt0.b.prtspd == IFXUSB_HPRT0_PRTSPD_HIGH_SPEED) + { + if (_ifxhc->split) + { + if(max_hc_pkt_count > _ifxhcd->pkt_remaining) + max_hc_pkt_count = _ifxhcd->pkt_remaining; + } + else if(_ifxhc->ep_type == IFXUSB_EP_TYPE_BULK) + { + if( _ifxhc->is_in && _ifxhcd->pkt_count_limit_bi && max_hc_pkt_count > _ifxhcd->pkt_count_limit_bi) + max_hc_pkt_count = _ifxhcd->pkt_count_limit_bi; + if(!_ifxhc->is_in && _ifxhcd->pkt_count_limit_bo && max_hc_pkt_count > _ifxhcd->pkt_count_limit_bo) + max_hc_pkt_count = _ifxhcd->pkt_count_limit_bo; + if(max_hc_pkt_count*8 > _ifxhcd->pkt_remaining) + max_hc_pkt_count = _ifxhcd->pkt_remaining/8; + } + else + { + if(max_hc_pkt_count > _ifxhcd->pkt_remaining) + max_hc_pkt_count = _ifxhcd->pkt_remaining; + } + } + else if (hprt0.b.prtspd == IFXUSB_HPRT0_PRTSPD_LOW_SPEED) + { + if(max_hc_pkt_count > _ifxhcd->pkt_remaining) + max_hc_pkt_count = _ifxhcd->pkt_remaining; + } + else + { + if(max_hc_pkt_count > _ifxhcd->pkt_remaining) + max_hc_pkt_count = _ifxhcd->pkt_remaining; + } + + if(max_hc_pkt_count==0) + return; + + if(max_hc_pkt_count * _ifxhc->mps < max_hc_xfer_size) + max_hc_xfer_size = max_hc_pkt_count * _ifxhc->mps; + + _ifxhc->epqh->urbd->phase=URBD_STARTING; + + if(_ifxhc->is_in || _ifxhc->speed != IFXUSB_EP_SPEED_HIGH || _ifxhc->xfer_len==0) + _ifxhc->epqh->do_ping=0; + if(_ifxhc->ep_type == IFXUSB_EP_TYPE_INTR || _ifxhc->ep_type == IFXUSB_EP_TYPE_ISOC) + _ifxhc->epqh->do_ping=0; + if(_ifxhc->ep_type == IFXUSB_EP_TYPE_CTRL && _ifxhc->control_phase != IFXHCD_CONTROL_DATA ) + _ifxhc->epqh->do_ping=0; + + if (_ifxhc->split > 0) + { + _ifxhc->start_pkt_count = 1; + if(!_ifxhc->is_in && _ifxhc->split>1) // OUT CSPLIT + _ifxhc->xfer_len = 0; + if (_ifxhc->xfer_len > _ifxhc->mps) + _ifxhc->xfer_len = _ifxhc->mps; + if (_ifxhc->xfer_len > 188) + _ifxhc->xfer_len = 188; + } + else if(_ifxhc->is_in) + { + _ifxhc->short_rw = 0; + if (_ifxhc->xfer_len > 0) + { + if (_ifxhc->xfer_len > max_hc_xfer_size) + _ifxhc->xfer_len = max_hc_xfer_size - _ifxhc->mps + 1; + _ifxhc->start_pkt_count = (_ifxhc->xfer_len + _ifxhc->mps - 1) / _ifxhc->mps; + if (_ifxhc->start_pkt_count > max_hc_pkt_count) + _ifxhc->start_pkt_count = max_hc_pkt_count; + } + else /* Need 1 packet for transfer length of 0. */ + _ifxhc->start_pkt_count = 1; + _ifxhc->xfer_len = _ifxhc->start_pkt_count * _ifxhc->mps; + } + else //non-split out + { + if (_ifxhc->xfer_len == 0) + { + if(_ifxhc->short_rw==0) + printk(KERN_INFO "Info: %s() line %d: ZLP write without short_rw set! xfer_count:%d/%d \n",__func__,__LINE__, + _ifxhc->xfer_count, + _ifxhc->epqh->urbd->xfer_len); + _ifxhc->start_pkt_count = 1; + } + else + { + if (_ifxhc->xfer_len > max_hc_xfer_size) + { + _ifxhc->start_pkt_count = (max_hc_xfer_size / _ifxhc->mps); + _ifxhc->xfer_len = _ifxhc->start_pkt_count * _ifxhc->mps; + } + else + { + _ifxhc->start_pkt_count = (_ifxhc->xfer_len+_ifxhc->mps-1) / _ifxhc->mps; +// if(_ifxhc->start_pkt_count * _ifxhc->mps == _ifxhc->xfer_len ) +// _ifxhc->start_pkt_count += _ifxhc->short_rw; + } + } + } + + if (hprt0.b.prtspd == IFXUSB_HPRT0_PRTSPD_HIGH_SPEED) + { + if (_ifxhc->split) + { + if( _ifxhcd->pkt_remaining > _ifxhc->start_pkt_count) + _ifxhcd->pkt_remaining -= _ifxhc->start_pkt_count; + else + _ifxhcd->pkt_remaining = 0; + } + else if(_ifxhc->ep_type == IFXUSB_EP_TYPE_BULK) + { + if( _ifxhcd->pkt_remaining*8 > _ifxhc->start_pkt_count) + _ifxhcd->pkt_remaining -= (_ifxhc->start_pkt_count*8); + else + _ifxhcd->pkt_remaining = 0; + } + else + { + if( _ifxhcd->pkt_remaining > _ifxhc->start_pkt_count) + _ifxhcd->pkt_remaining -= _ifxhc->start_pkt_count; + else + _ifxhcd->pkt_remaining = 0; + } + } + else if (hprt0.b.prtspd == IFXUSB_HPRT0_PRTSPD_LOW_SPEED) + { + if( _ifxhcd->pkt_remaining > _ifxhc->start_pkt_count) + _ifxhcd->pkt_remaining -= _ifxhc->start_pkt_count; + else + _ifxhcd->pkt_remaining = 0; + } + else + { + if( _ifxhcd->pkt_remaining > _ifxhc->start_pkt_count) + _ifxhcd->pkt_remaining -= _ifxhc->start_pkt_count; + else + _ifxhcd->pkt_remaining = 0; + } + + #ifdef __EN_ISOC__ + if (_ifxhc->ep_type == IFXUSB_EP_TYPE_ISOC) + { + /* Set up the initial PID for the transfer. */ + #if 1 + _ifxhc->data_pid_start = IFXUSB_HC_PID_DATA0; + #else + if (_ifxhc->speed == IFXUSB_EP_SPEED_HIGH) + { + if (_ifxhc->is_in) + { + if (_ifxhc->multi_count == 1) + _ifxhc->data_pid_start = IFXUSB_HC_PID_DATA0; + else if (_ifxhc->multi_count == 2) + _ifxhc->data_pid_start = IFXUSB_HC_PID_DATA1; + else + _ifxhc->data_pid_start = IFXUSB_HC_PID_DATA2; + } + else + { + if (_ifxhc->multi_count == 1) + _ifxhc->data_pid_start = IFXUSB_HC_PID_DATA0; + else + _ifxhc->data_pid_start = IFXUSB_HC_PID_MDATA; + } + } + else + _ifxhc->data_pid_start = IFXUSB_HC_PID_DATA0; + #endif + } + #endif + + IFX_DEBUGPL(DBG_HCDV, "%s: Channel %d\n", __func__, _ifxhc->hc_num); + { + hctsiz_data_t hctsiz= { .d32=0 }; + + hctsiz.b.dopng = _ifxhc->epqh->do_ping; + _ifxhc->epqh->do_ping=0; + + if(_ifxhc->is_in || _ifxhc->speed != IFXUSB_EP_SPEED_HIGH || _ifxhc->xfer_len==0) + hctsiz.b.dopng = 0; + if(_ifxhc->ep_type == IFXUSB_EP_TYPE_INTR || _ifxhc->ep_type == IFXUSB_EP_TYPE_ISOC) + hctsiz.b.dopng = 0; + if(_ifxhc->ep_type == IFXUSB_EP_TYPE_CTRL && _ifxhc->control_phase != IFXHCD_CONTROL_DATA ) + hctsiz.b.dopng = 0; + + hctsiz.b.xfersize = _ifxhc->xfer_len; + hctsiz.b.pktcnt = _ifxhc->start_pkt_count; + hctsiz.b.pid = _ifxhc->data_pid_start; + ifxusb_wreg(&hc_regs->hctsiz, hctsiz.d32); + + IFX_DEBUGPL(DBG_HCDV, " Xfer Size: %d\n", hctsiz.b.xfersize); + IFX_DEBUGPL(DBG_HCDV, " Num Pkts: %d\n" , hctsiz.b.pktcnt); + IFX_DEBUGPL(DBG_HCDV, " Start PID: %d\n", hctsiz.b.pid); + } + IFX_DEBUGPL(DBG_HCDV, " DMA: 0x%08x\n", (uint32_t)(CPHYSADDR( ((uint32_t)(_ifxhc->xfer_buff))+ _ifxhc->xfer_count ))); + ifxusb_wreg(&hc_regs->hcdma, (uint32_t)(CPHYSADDR( ((uint32_t)(_ifxhc->xfer_buff))+ _ifxhc->xfer_count ))); + + /* Start the split */ + if (_ifxhc->split>0) + { + hcsplt_data_t hcsplt; + hcsplt.d32 = ifxusb_rreg (&hc_regs->hcsplt); + hcsplt.b.spltena = 1; + if (_ifxhc->split>1) + hcsplt.b.compsplt = 1; + else + hcsplt.b.compsplt = 0; + + #if defined(__EN_ISOC__) && defined(__EN_ISOC_SPLIT__) + if (_ifxhc->ep_type == IFXUSB_EP_TYPE_ISOC) + hcsplt.b.xactpos = _ifxhc->isoc_xact_pos; + else + #endif + hcsplt.b.xactpos = IFXUSB_HCSPLIT_XACTPOS_ALL;// if not ISO + ifxusb_wreg(&hc_regs->hcsplt, hcsplt.d32); + IFX_DEBUGPL(DBG_HCDV, " SPLIT: XACT_POS:0x%08x\n", hcsplt.d32); + } + + { + hcchar_data_t hcchar; + hcchar.d32 = ifxusb_rreg(&hc_regs->hcchar); +// hcchar.b.multicnt = _ifxhc->multi_count; + hcchar.b.multicnt = 1; + + if (_ifxhc->ep_type == IFXUSB_EP_TYPE_INTR || _ifxhc->ep_type == IFXUSB_EP_TYPE_ISOC) + { + hfnum.d32 = ifxusb_rreg(&core_if->host_global_regs->hfnum); + /* 1 if _next_ frame is odd, 0 if it's even */ + hcchar.b.oddfrm = (hfnum.b.frnum & 0x1) ? 0 : 1; + } + + #ifdef __DEBUG__ + _ifxhc->start_hcchar_val = hcchar.d32; + if (hcchar.b.chdis) + IFX_WARN("%s: chdis set, channel %d, hcchar 0x%08x\n", + __func__, _ifxhc->hc_num, hcchar.d32); + #endif + + /* Set host channel enable after all other setup is complete. */ + hcchar.b.chen = 1; + hcchar.b.chdis = 0; + hcchar.b.epdir = _ifxhc->is_in; + _ifxhc->hcchar=hcchar.d32; + } + + IFX_DEBUGPL(DBG_HCDV, " HCCHART: 0x%08x\n", _ifxhc->hcchar); + + _ifxhc->phase=HC_STARTING; +} + +/*! + \brief Attempts to halt a host channel. This function should only be called + to abort a transfer in DMA mode. Under normal circumstances in DMA mode, the + controller halts the channel when the transfer is complete or a condition + occurs that requires application intervention. + + In DMA mode, always sets the Channel Enable and Channel Disable bits of the + HCCHARn register. The controller ensures there is space in the request + queue before submitting the halt request. + + Some time may elapse before the core flushes any posted requests for this + host channel and halts. The Channel Halted interrupt handler completes the + deactivation of the host channel. + */ +int ifxhcd_hc_halt(ifxusb_core_if_t *_core_if, + ifxhcd_hc_t *_ifxhc, + ifxhcd_halt_status_e _halt_status) +{ + hcchar_data_t hcchar; + ifxusb_hc_regs_t *hc_regs; + hc_regs = _core_if->hc_regs[_ifxhc->hc_num]; + + WARN_ON(_halt_status == HC_XFER_NO_HALT_STATUS); + + { + hprt0_data_t hprt0; + hprt0.d32 = ifxusb_rreg(_core_if->hprt0); + if(hprt0.b.prtena == 0) + return -1; + } + + if (_halt_status == HC_XFER_URB_DEQUEUE || + _halt_status == HC_XFER_AHB_ERR) + { + /* + * Disable all channel interrupts except Ch Halted. The URBD + * and EPQH state associated with this transfer has been cleared + * (in the case of URB_DEQUEUE), so the channel needs to be + * shut down carefully to prevent crashes. + */ + hcint_data_t hcintmsk; + hcintmsk.d32 = 0; + hcintmsk.b.chhltd = 1; + ifxusb_wreg(&hc_regs->hcintmsk, hcintmsk.d32); + + /* + * Make sure no other interrupts besides halt are currently + * pending. Handling another interrupt could cause a crash due + * to the URBD and EPQH state. + */ + ifxusb_wreg(&hc_regs->hcint, ~hcintmsk.d32); + + /* + * Make sure the halt status is set to URB_DEQUEUE or AHB_ERR + * even if the channel was already halted for some other + * reason. + */ + _ifxhc->halt_status = _halt_status; + } + + hcchar.d32 = ifxusb_rreg(&hc_regs->hcchar); + if (hcchar.b.chen == 0) + { + /* + * The channel is either already halted or it hasn't + * started yet. In DMA mode, the transfer may halt if + * it finishes normally or a condition occurs that + * requires driver intervention. Don't want to halt + * the channel again. In either Slave or DMA mode, + * it's possible that the transfer has been assigned + * to a channel, but not started yet when an URB is + * dequeued. Don't want to halt a channel that hasn't + * started yet. + */ + _ifxhc->phase=HC_IDLE; + return -1; + } + + if (_ifxhc->phase==HC_STOPPING) + { + /* + * A halt has already been issued for this channel. This might + * happen when a transfer is aborted by a higher level in + * the stack. + */ + #ifdef __DEBUG__ + IFX_PRINT("*** %s: Channel %d, double halt a channel***\n", + __func__, _ifxhc->hc_num); + #endif + return 0; + } + hcchar.d32 = ifxusb_rreg(&hc_regs->hcchar); + hcchar.b.chen = 1; + hcchar.b.chdis = 1; + + ifxusb_wreg(&hc_regs->hcchar, hcchar.d32); + + _ifxhc->halt_status = _halt_status; + _ifxhc->phase=HC_STOPPING; + + IFX_DEBUGPL(DBG_HCDV, "%s: Channel %d\n" , __func__, _ifxhc->hc_num); + IFX_DEBUGPL(DBG_HCDV, " hcchar: 0x%08x\n" , hcchar.d32); + IFX_DEBUGPL(DBG_HCDV, " halt_status: %d\n" , _ifxhc->halt_status); + + return 0; +} + +/*! + \brief Clears a host channel. + */ +void ifxhcd_hc_cleanup(ifxusb_core_if_t *_core_if, ifxhcd_hc_t *_ifxhc) +{ + ifxusb_hc_regs_t *hc_regs; + + _ifxhc->phase=HC_IDLE; + _ifxhc->epqh=0; + + /* + * Clear channel interrupt enables and any unhandled channel interrupt + * conditions. + */ + hc_regs = _core_if->hc_regs[_ifxhc->hc_num]; + ifxusb_wreg(&hc_regs->hcintmsk, 0); + ifxusb_wreg(&hc_regs->hcint, 0xFFFFFFFF); + + #ifdef __DEBUG__ + { + hcchar_data_t hcchar; + hcchar.d32 = ifxusb_rreg(&hc_regs->hcchar); + if (hcchar.b.chdis) + IFX_WARN("%s: chdis set, channel %d, hcchar 0x%08x\n", __func__, _ifxhc->hc_num, hcchar.d32); + } + #endif +} + + + + + +#ifdef __DEBUG__ + static void dump_urb_info(struct urb *_urb, char* _fn_name) + { + IFX_PRINT("%s, urb %p\n" , _fn_name, _urb); + IFX_PRINT(" Device address: %d\n", usb_pipedevice(_urb->pipe)); + IFX_PRINT(" Endpoint: %d, %s\n" , usb_pipeendpoint(_urb->pipe), + (usb_pipein(_urb->pipe) ? "IN" : "OUT")); + IFX_PRINT(" Endpoint type: %s\n", + ({ char *pipetype; + switch (usb_pipetype(_urb->pipe)) { + case PIPE_CONTROL: pipetype = "CONTROL"; break; + case PIPE_BULK: pipetype = "BULK"; break; + case PIPE_INTERRUPT: pipetype = "INTERRUPT"; break; + case PIPE_ISOCHRONOUS: pipetype = "ISOCHRONOUS"; break; + default: pipetype = "UNKNOWN"; break; + }; + pipetype; + })); + IFX_PRINT(" Speed: %s\n", + ({ char *speed; + switch (_urb->dev->speed) { + case USB_SPEED_HIGH: speed = "HIGH"; break; + case USB_SPEED_FULL: speed = "FULL"; break; + case USB_SPEED_LOW: speed = "LOW"; break; + default: speed = "UNKNOWN"; break; + }; + speed; + })); + IFX_PRINT(" Max packet size: %d\n", + usb_maxpacket(_urb->dev, _urb->pipe, usb_pipeout(_urb->pipe))); + IFX_PRINT(" Data buffer length: %d\n", _urb->transfer_buffer_length); + IFX_PRINT(" Transfer buffer: %p, Transfer DMA: %p\n", + _urb->transfer_buffer, (void *)_urb->transfer_dma); + IFX_PRINT(" Setup buffer: %p, Setup DMA: %p\n", + _urb->setup_packet, (void *)_urb->setup_dma); + IFX_PRINT(" Interval: %d\n", _urb->interval); + if (usb_pipetype(_urb->pipe) == PIPE_ISOCHRONOUS) + { + int i; + for (i = 0; i < _urb->number_of_packets; i++) + { + IFX_PRINT(" ISO Desc %d:\n", i); + IFX_PRINT(" offset: %d, length %d\n", + _urb->iso_frame_desc[i].offset, + _urb->iso_frame_desc[i].length); + } + } + } + +#if 0 + static void dump_channel_info(ifxhcd_hcd_t *_ifxhcd, ifxhcd_epqh_t *_epqh) + { + if (_epqh->hc != NULL) + { + ifxhcd_hc_t *hc = _epqh->hc; + struct list_head *item; + ifxhcd_epqh_t *epqh_item; + + ifxusb_hc_regs_t *hc_regs; + + hcchar_data_t hcchar; + hcsplt_data_t hcsplt; + hctsiz_data_t hctsiz; + uint32_t hcdma; + + hc_regs = _ifxhcd->core_if.hc_regs[hc->hc_num]; + hcchar.d32 = ifxusb_rreg(&hc_regs->hcchar); + hcsplt.d32 = ifxusb_rreg(&hc_regs->hcsplt); + hctsiz.d32 = ifxusb_rreg(&hc_regs->hctsiz); + hcdma = ifxusb_rreg(&hc_regs->hcdma); + + IFX_PRINT(" Assigned to channel %d:\n" , hc->hc_num); + IFX_PRINT(" hcchar 0x%08x, hcsplt 0x%08x\n", hcchar.d32, hcsplt.d32); + IFX_PRINT(" hctsiz 0x%08x, hcdma 0x%08x\n" , hctsiz.d32, hcdma); + IFX_PRINT(" dev_addr: %d, ep_num: %d, is_in: %d\n", + hc->dev_addr, hc->ep_num, hc->is_in); + IFX_PRINT(" ep_type: %d\n" , hc->ep_type); + IFX_PRINT(" max_packet_size: %d\n", hc->mps); + IFX_PRINT(" data_pid_start: %d\n" , hc->data_pid_start); + IFX_PRINT(" halt_status: %d\n" , hc->halt_status); + IFX_PRINT(" xfer_buff: %p\n" , hc->xfer_buff); + IFX_PRINT(" xfer_len: %d\n" , hc->xfer_len); + IFX_PRINT(" epqh: %p\n" , hc->epqh); + IFX_PRINT(" NP :\n"); + list_for_each(item, &_ifxhcd->epqh_list_np) + { + epqh_item = list_entry(item, ifxhcd_epqh_t, ql); + IFX_PRINT(" %p\n", epqh_item); + } + IFX_PRINT(" INTR :\n"); + list_for_each(item, &_ifxhcd->epqh_list_intr) + { + epqh_item = list_entry(item, ifxhcd_epqh_t, ql); + IFX_PRINT(" %p\n", epqh_item); + } + #ifdef __EN_ISOC__ + IFX_PRINT(" ISOC:\n"); + list_for_each(item, &_ifxhcd->epqh_list_isoc) + { + epqh_item = list_entry(item, ifxhcd_epqh_t, ql); + IFX_PRINT(" %p\n", epqh_item); + } + #endif + } + } +#endif +#endif //__DEBUG__ + + +/*! + \brief This function writes a packet into the Tx FIFO associated with the Host + Channel. For a channel associated with a non-periodic EP, the non-periodic + Tx FIFO is written. For a channel associated with a periodic EP, the + periodic Tx FIFO is written. This function should only be called in Slave + mode. + + Upon return the xfer_buff and xfer_count fields in _hc are incremented by + then number of bytes written to the Tx FIFO. + */ + +#ifdef __ENABLE_DUMP__ + void ifxhcd_dump_state(ifxhcd_hcd_t *_ifxhcd) + { + int num_channels; + int i; + num_channels = _ifxhcd->core_if.params.host_channels; + IFX_PRINT("\n"); + IFX_PRINT("************************************************************\n"); + IFX_PRINT("HCD State:\n"); + IFX_PRINT(" Num channels: %d\n", num_channels); + for (i = 0; i < num_channels; i++) { + ifxhcd_hc_t *hc = &_ifxhcd->ifxhc[i]; + IFX_PRINT(" Channel %d:\n", hc->hc_num); + IFX_PRINT(" dev_addr: %d, ep_num: %d, ep_is_in: %d\n", + hc->dev_addr, hc->ep_num, hc->is_in); + IFX_PRINT(" speed: %d\n" , hc->speed); + IFX_PRINT(" ep_type: %d\n" , hc->ep_type); + IFX_PRINT(" mps: %d\n", hc->mps); + IFX_PRINT(" data_pid_start: %d\n" , hc->data_pid_start); + IFX_PRINT(" xfer_buff: %p\n" , hc->xfer_buff); + IFX_PRINT(" xfer_len: %d\n" , hc->xfer_len); + IFX_PRINT(" xfer_count: %d\n" , hc->xfer_count); + IFX_PRINT(" halt_status: %d\n" , hc->halt_status); + IFX_PRINT(" split: %d\n" , hc->split); + IFX_PRINT(" hub_addr: %d\n" , hc->hub_addr); + IFX_PRINT(" port_addr: %d\n" , hc->port_addr); + #if defined(__EN_ISOC__) && defined(__EN_ISOC_SPLIT__) + IFX_PRINT(" isoc_xact_pos: %d\n" , hc->isoc_xact_pos); + #endif + + IFX_PRINT(" epqh: %p\n" , hc->epqh); + IFX_PRINT(" short_rw: %d\n" , hc->short_rw); + IFX_PRINT(" control_phase: %d\n" , hc->control_phase); + if(hc->epqh) + { + IFX_PRINT(" do_ping: %d\n" , hc->epqh->do_ping); + } + IFX_PRINT(" start_pkt_count: %d\n" , hc->start_pkt_count); + } + IFX_PRINT("************************************************************\n"); + IFX_PRINT("\n"); + } +#endif //__ENABLE_DUMP__ + diff --git a/package/kernel/lantiq/ltq-hcd/src/ifxhcd.h b/package/kernel/lantiq/ltq-hcd/src/ifxhcd.h new file mode 100644 index 0000000..243c5f5 --- /dev/null +++ b/package/kernel/lantiq/ltq-hcd/src/ifxhcd.h @@ -0,0 +1,758 @@ +/***************************************************************************** + ** FILE NAME : ifxhcd.h + ** PROJECT : IFX USB sub-system V3 + ** MODULES : IFX USB sub-system Host and Device driver + ** SRC VERSION : 3.2 + ** DATE : 1/Jan/2011 + ** AUTHOR : Chen, Howard + ** DESCRIPTION : This file contains the structures, constants, and interfaces for + ** the Host Contoller Driver (HCD). + ** + ** The Host Controller Driver (HCD) is responsible for translating requests + ** from the USB Driver into the appropriate actions on the IFXUSB controller. + ** It isolates the USBD from the specifics of the controller by providing an + ** API to the USBD. + ** FUNCTIONS : + ** COMPILER : gcc + ** REFERENCE : Synopsys DWC-OTG Driver 2.7 + ** COPYRIGHT : Copyright (c) 2010 + ** LANTIQ DEUTSCHLAND GMBH, + ** Am Campeon 3, 85579 Neubiberg, Germany + ** + ** This program is free software; you can redistribute it and/or modify + ** it under the terms of the GNU General Public License as published by + ** the Free Software Foundation; either version 2 of the License, or + ** (at your option) any later version. + ** + ** Version Control Section ** + ** $Author$ + ** $Date$ + ** $Revisions$ + ** $Log$ Revision history + *****************************************************************************/ + +/* + * This file contains code fragments from Synopsys HS OTG Linux Software Driver. + * For this code the following notice is applicable: + * + * ========================================================================== + * + * Synopsys HS OTG Linux Software Driver and documentation (hereinafter, + * "Software") is an Unsupported proprietary work of Synopsys, Inc. unless + * otherwise expressly agreed to in writing between Synopsys and you. + * + * The Software IS NOT an item of Licensed Software or Licensed Product under + * any End User Software License Agreement or Agreement for Licensed Product + * with Synopsys or any supplement thereto. You are permitted to use and + * redistribute this Software in source and binary forms, with or without + * modification, provided that redistributions of source code must retain this + * notice. You may not view, use, disclose, copy or distribute this file or + * any information contained herein except pursuant to this license grant from + * Synopsys. If you do not agree with this notice, including the disclaimer + * below, then you are not authorized to use the Software. + * + * THIS SOFTWARE IS BEING DISTRIBUTED BY SYNOPSYS SOLELY ON AN "AS IS" BASIS + * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE + * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE + * ARE HEREBY DISCLAIMED. IN NO EVENT SHALL SYNOPSYS BE LIABLE FOR ANY DIRECT, + * INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES + * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR + * SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER + * CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT + * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY + * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH + * DAMAGE. + * ========================================================================== */ + +/*! + \defgroup IFXUSB_HCD HCD Interface + \ingroup IFXUSB_DRIVER_V3 + \brief The Host Controller Driver (HCD) is responsible for translating requests + from the USB Driver into the appropriate actions on the IFXUSB controller. + It isolates the USBD from the specifics of the controller by providing an + API to the USBD. + */ + + +/*! + \file ifxhcd.h + \ingroup IFXUSB_DRIVER_V3 + \brief This file contains the structures, constants, and interfaces for + the Host Contoller Driver (HCD). + */ + +#if !defined(__IFXHCD_H__) +#define __IFXHCD_H__ + + +#define __STRICT_ORDER__ + + +#include <linux/list.h> +#include <linux/usb.h> + +#include <linux/usb/hcd.h> + +#include "ifxusb_cif.h" +#include "ifxusb_plat.h" + + +#undef __INNAKSTOP__ +#if !defined(__INNAKSTOP__) && defined(__INNAKSTOP_CTRL__) + #define __INNAKSTOP__ 1 +#endif +#if !defined(__INNAKSTOP__) && defined(__INNAKSTOP_BULK__) + #define __INNAKSTOP__ 1 +#endif + +#undef __PINGSTOP__ +#if !defined(__PINGSTOP__) && defined(__PINGSTOP_CTRL__) + #define __PINGSTOP__ 1 +#endif +#if !defined(__PINGSTOP__) && defined(__PINGSTOP_BULK__) + #define __PINGSTOP__ 1 +#endif + +#undef __NAKSTOP__ +#if defined(__INNAKSTOP__) || defined(__PINGSTOP__) + #define __NAKSTOP__ 1 +#endif + + +/* Phases for control transfers.*/ +typedef enum ifxhcd_epqh_phase { + EPQH_IDLE=0, + EPQH_DISABLING, +// EPQH_COMPLETING, + EPQH_STDBY, + EPQH_READY, + EPQH_ACTIVE +} ifxhcd_epqh_phase_e; + +/* Phases for control transfers.*/ +typedef enum ifxhcd_urbd_phase { + URBD_IDLE=0, + URBD_ACTIVE, + URBD_STARTING, + URBD_STARTED, + URBD_FINISHING, //URB_Complete already scheduled + URBD_COMPLETING, //To URB_Complete, it's normal finish + URBD_DEQUEUEING, //To URB_Complete, it's abnormal finish +} ifxhcd_urbd_phase_e; + +/* Phases for control transfers.*/ +typedef enum ifxhcd_hc_phase { + HC_IDLE=0, + HC_ASSIGNED, + HC_WAITING, + HC_STARTING, + HC_STARTED, + HC_STOPPING, + HC_STOPPED, +} ifxhcd_hc_phase_e; + +/*! + \addtogroup IFXUSB_HCD + */ +/*@{*/ + +/*! \typedef ifxhcd_control_phase_e + \brief Phases for control transfers. +*/ + +typedef enum ifxhcd_control_phase { + IFXHCD_CONTROL_SETUP, + IFXHCD_CONTROL_DATA, + IFXHCD_CONTROL_STATUS +} ifxhcd_control_phase_e; + +/*! \typedef ifxhcd_halt_status_e + \brief Reasons for halting a host channel. +*/ +typedef enum ifxhcd_halt_status +{ + HC_XFER_NO_HALT_STATUS, // Initial + HC_XFER_COMPLETE, // Xact complete without error, upward + HC_XFER_URB_COMPLETE, // Xfer complete without error, short upward + HC_XFER_STALL, // HC stopped abnormally, upward/downward + HC_XFER_XACT_ERR, // HC stopped abnormally, upward + HC_XFER_FRAME_OVERRUN, // HC stopped abnormally, upward + HC_XFER_BABBLE_ERR, // HC stopped abnormally, upward + HC_XFER_AHB_ERR, // HC stopped abnormally, upward + HC_XFER_DATA_TOGGLE_ERR, + HC_XFER_URB_DEQUEUE, // HC stopper manually, downward + HC_XFER_NO_URB, // HC stopper manually, downward + HC_XFER_NO_EPQH, // HC stopper manually, downward + #ifdef __NAKSTOP__ + HC_XFER_NAK, // HC stopped by nak monitor, downward + #endif + #if defined(__INTRNAKRETRY__) || defined(__INTRINCRETRY__) + HC_XFER_INTR_NAK_RETRY, // HC stopped by nak monitor, downward + #endif +} ifxhcd_halt_status_e; + +struct ifxhcd_urbd; +struct ifxhcd_hc ; +struct ifxhcd_epqh ; +struct ifxhcd_hcd; + +/*! typedef ifxhcd_urbd_t + \brief A URB Descriptor (URBD) holds the state of a bulk, control, + interrupt, or isochronous transfer. A single URBD is created for each URB + (of one of these types) submitted to the HCD. The transfer associated with + a URBD may require one or multiple transactions. + + A URBD is linked to a EP Queue Head, which is entered in either the + isoc, intr or non-periodic schedule for execution. When a URBD is chosen for + execution, some or all of its transactions may be executed. After + execution, the state of the URBD is updated. The URBD may be retired if all + its transactions are complete or if an error occurred. Otherwise, it + remains in the schedule so more transactions can be executed later. + */ +typedef struct ifxhcd_urbd { + ifxhcd_urbd_phase_e phase; + struct list_head ql; // Hook for EPQH->urbd_list + struct urb *urb; /*!< URB for this transfer */ + //struct urb { + // struct list_head urb_list; + // struct list_head anchor_list; + // struct usb_anchor * anchor; + // struct usb_device * dev; + // struct usb_host_endpoint * ep; + // unsigned int pipe; + // int status; + // unsigned int transfer_flags; + // void * transfer_buffer; + // dma_addr_t transfer_dma; + // u32 transfer_buffer_length; + // u32 actual_length; + // unsigned char * setup_packet; + // dma_addr_t setup_dma; + // int start_frame; + // int number_of_packets; + // int interval; + // int error_count; + // void * context; + // usb_complete_t complete; + // struct usb_iso_packet_descriptor iso_frame_desc[0]; + //}; + //urb_list For use by current owner of the URB. + //anchor_list membership in the list of an anchor + //anchor to anchor URBs to a common mooring + //dev Identifies the USB device to perform the request. + //ep Points to the endpoint's data structure. Will + // eventually replace pipe. + //pipe Holds endpoint number, direction, type, and more. + // Create these values with the eight macros available; u + // sb_{snd,rcv}TYPEpipe(dev,endpoint), where the TYPE is + // "ctrl", "bulk", "int" or "iso". For example + // usb_sndbulkpipe or usb_rcvintpipe. Endpoint numbers + // range from zero to fifteen. Note that "in" endpoint two + // is a different endpoint (and pipe) from "out" endpoint + // two. The current configuration controls the existence, + // type, and maximum packet size of any given endpoint. + //status This is read in non-iso completion functions to get + // the status of the particular request. ISO requests + // only use it to tell whether the URB was unlinked; + // detailed status for each frame is in the fields of + // the iso_frame-desc. + //transfer_flags A variety of flags may be used to affect how URB + // submission, unlinking, or operation are handled. + // Different kinds of URB can use different flags. + // URB_SHORT_NOT_OK + // URB_ISO_ASAP + // URB_NO_TRANSFER_DMA_MAP + // URB_NO_SETUP_DMA_MAP + // URB_NO_FSBR + // URB_ZERO_PACKET + // URB_NO_INTERRUPT + //transfer_buffer This identifies the buffer to (or from) which the I/O + // request will be performed (unless URB_NO_TRANSFER_DMA_MAP + // is set). This buffer must be suitable for DMA; allocate it + // with kmalloc or equivalent. For transfers to "in" + // endpoints, contents of this buffer will be modified. This + // buffer is used for the data stage of control transfers. + //transfer_dma When transfer_flags includes URB_NO_TRANSFER_DMA_MAP, the + // device driver is saying that it provided this DMA address, + // which the host controller driver should use in preference + // to the transfer_buffer. + //transfer_buffer_length How big is transfer_buffer. The transfer may be broken + // up into chunks according to the current maximum packet size + // for the endpoint, which is a function of the configuration + // and is encoded in the pipe. When the length is zero, neither + // transfer_buffer nor transfer_dma is used. + //actual_length This is read in non-iso completion functions, and it tells + // how many bytes (out of transfer_buffer_length) were transferred. + // It will normally be the same as requested, unless either an error + // was reported or a short read was performed. The URB_SHORT_NOT_OK + // transfer flag may be used to make such short reads be reported + // as errors. + //setup_packet Only used for control transfers, this points to eight bytes of + // setup data. Control transfers always start by sending this data + // to the device. Then transfer_buffer is read or written, if needed. + //setup_dma For control transfers with URB_NO_SETUP_DMA_MAP set, the device + // driver has provided this DMA address for the setup packet. The + // host controller driver should use this in preference to setup_packet. + //start_frame Returns the initial frame for isochronous transfers. + //number_of_packets Lists the number of ISO transfer buffers. + //interval Specifies the polling interval for interrupt or isochronous transfers. + // The units are frames (milliseconds) for for full and low speed devices, + // and microframes (1/8 millisecond) for highspeed ones. + //error_count Returns the number of ISO transfers that reported errors. + //context For use in completion functions. This normally points to request-specific + // driver context. + //complete Completion handler. This URB is passed as the parameter to the completion + // function. The completion function may then do what it likes with the URB, + // including resubmitting or freeing it. + //iso_frame_desc[0] Used to provide arrays of ISO transfer buffers and to collect the transfer + // status for each buffer. + + struct ifxhcd_epqh *epqh; + // Actual data portion, not SETUP or STATUS in case of CTRL XFER + // DMA adjusted + uint8_t *setup_buff; /*!< Pointer to the entire transfer buffer. (CPU accessable)*/ + uint8_t *xfer_buff; /*!< Pointer to the entire transfer buffer. (CPU accessable)*/ + uint32_t xfer_len; /*!< Total number of bytes to transfer in this xfer. */ + + #if defined(__UNALIGNED_BUF_ADJ__) +// uint8_t using_aligned_setup; + uint8_t *aligned_setup; +// uint8_t using_aligned_buf; + uint8_t *aligned_buf; + unsigned aligned_buf_len : 19; + #endif + #if defined(__UNALIGNED_BUF_ADJ__) || defined(__UNALIGNED_BUF_CHK__) + unsigned aligned_checked : 1; + #endif + unsigned is_in :1; + #ifndef __STRICT_ORDER__ + struct tasklet_struct complete_urb_sub; + #endif + + // For ALL XFER + uint8_t error_count; /*!< Holds the number of bus errors that have occurred for a transaction + within this transfer. + */ + // For ISOC XFER only + #ifdef __EN_ISOC__ + int isoc_frame_index; /*!< Index of the next frame descriptor for an isochronous transfer. A + frame descriptor describes the buffer position and length of the + data to be transferred in the next scheduled (micro)frame of an + isochronous transfer. It also holds status for that transaction. + The frame index starts at 0. + */ + #endif + int status; +} ifxhcd_urbd_t; + +/*! typedef ifxhcd_epqh_t + \brief A EP Queue Head (EPQH) holds the static characteristics of an endpoint and + maintains a list of transfers (URBDs) for that endpoint. A EPQH structure may + be entered in either the isoc, intr or non-periodic schedule. + */ + +typedef struct ifxhcd_epqh { + struct ifxhcd_hcd *ifxhcd; + struct usb_host_endpoint *sysep; + uint8_t devno; + + ifxhcd_epqh_phase_e phase; + struct list_head ql_all; + struct list_head ql; // Hook for EP Queues + struct list_head urbd_list; /*!< List of URBDs for this EPQH. */ + #ifdef __STRICT_ORDER__ + struct list_head release_list; + struct tasklet_struct complete_urb_sub; + #endif + struct ifxhcd_hc *hc; /*!< Host channel currently processing transfers for this EPQH. */ + struct ifxhcd_urbd *urbd; /*!< URBD currently assigned to a host channel for this EPQH. */ + uint8_t ep_type; /*!< Endpoint type. One of the following values: + - IFXUSB_EP_TYPE_CTRL + - IFXUSB_EP_TYPE_ISOC + - IFXUSB_EP_TYPE_BULK + - IFXUSB_EP_TYPE_INTR + */ + uint16_t mps; /*!< wMaxPacketSize Field of Endpoint Descriptor. */ + #ifdef __EPQD_DESTROY_TIMEOUT__ + struct timer_list destroy_timer; + #endif + + unsigned need_split : 1 ; + unsigned do_ping : 1 ; /*!< Set to 1 to indicate that a PING request should be issued on this + channel. If 0, process normally. + */ + unsigned pause : 1; + unsigned period_do : 1; + uint16_t interval; /*!< Interval between transfers in (micro)frames. (for INTR)*/ + uint16_t period_counter; /*!< Interval between transfers in (micro)frames. */ + + #ifdef __EN_ISOC__ + struct tasklet_struct tasklet_next_isoc; + uint8_t isoc_now; + uint32_t isoc_start_frame; + // For SPLITed ISOC XFER only + #ifdef __EN_ISOC_SPLIT__ + uint8_t isoc_split_pos; /*!< Position of the ISOC split on full/low speed */ + uint16_t isoc_split_offset;/*!< Position of the ISOC split in the buffer for the current frame */ + #endif + #endif + spinlock_t urbd_list_lock; + int urbd_count; +} ifxhcd_epqh_t; + + +/*! typedef ifxhcd_hc_t + \brief Host channel descriptor. This structure represents the state of a single + host channel when acting in host mode. It contains the data items needed to + transfer packets to an endpoint via a host channel. + */ +typedef struct ifxhcd_hc +{ + struct ifxhcd_epqh *epqh ; /*!< EP Queue Head for the transfer being processed by this channel. */ + uint8_t hc_num ; /*!< Host channel number used for register address lookup */ + uint8_t *xfer_buff ; /*!< Pointer to the entire transfer buffer. */ + uint32_t xfer_count ; /*!< Number of bytes transferred so far. The offset of the begin of the buf */ + uint32_t xfer_len ; /*!< Total number of bytes to transfer in this xfer. */ + uint16_t start_pkt_count ; /*!< Packet count at start of transfer. Used to calculate the actual xfer size*/ + ifxhcd_halt_status_e halt_status; /*!< Reason for halting the host channel. */ + ifxhcd_hc_phase_e phase; + + unsigned dev_addr : 7; /*!< Device to access */ + unsigned ep_num : 4; /*!< EP to access */ + unsigned is_in : 1; /*!< EP direction. 0: OUT, 1: IN */ + unsigned speed : 2; /*!< EP speed. */ + unsigned ep_type : 2; /*!< Endpoint type. */ + unsigned mps :11; /*!< Max packet size in bytes */ + unsigned data_pid_start : 2; /*!< PID for initial transaction. */ + unsigned short_rw : 1; /*!< When Tx, means termination needed. + When Rx, indicate Short Read */ + /* Split settings for the host channel */ + unsigned split : 2; /*!< Split: 0-Non Split, 1-SSPLIT, 2&3 CSPLIT */ + + unsigned sof_delay :16; + unsigned erron : 1; + + #ifdef __NAKSTOP__ + unsigned stop_on : 1; +// unsigned wait_for_sof_quick : 1; + #endif + + ifxhcd_control_phase_e control_phase; /*!< Current phase for control transfers (Setup, Data, or Status). */ + uint32_t ssplit_out_xfer_count; /*!< How many bytes transferred during SSPLIT OUT */ + #ifdef __DEBUG__ + uint32_t start_hcchar_val; + #endif + uint32_t hcchar; + + /* Split settings for the host channel */ + uint8_t hub_addr; /*!< Address of high speed hub */ + uint8_t port_addr; /*!< Port of the low/full speed device */ + #if defined(__EN_ISOC__) && defined(__EN_ISOC_SPLIT__) + uint8_t isoc_xact_pos; /*!< Split transaction position */ + #endif +} ifxhcd_hc_t; + + +/*! typedef ifxhcd_hcd_t + \brief This structure holds the state of the HCD, including the non-periodic and + periodic schedules. + */ +typedef struct ifxhcd_hcd +{ + struct device *dev; + struct hc_driver hc_driver; + ifxusb_core_if_t core_if; /*!< Pointer to the core interface structure. */ + struct usb_hcd *syshcd; + + volatile union + { + uint32_t d32; + struct + { + unsigned port_connect_status_change : 1; + unsigned port_connect_status : 1; + unsigned port_reset_change : 1; + unsigned port_enable_change : 1; + unsigned port_suspend_change : 1; + unsigned port_over_current_change : 1; + unsigned reserved : 27; + } b; + } flags; /*!< Internal HCD Flags */ + + struct ifxhcd_hc ifxhc[MAX_EPS_CHANNELS]; /*!< Array of pointers to the host channel descriptors. Allows accessing + a host channel descriptor given the host channel number. This is + useful in interrupt handlers. + */ + uint8_t *status_buf; /*!< Buffer to use for any data received during the status phase of a + control transfer. Normally no data is transferred during the status + phase. This buffer is used as a bit bucket. + */ + #define IFXHCD_STATUS_BUF_SIZE 64 /*!< buffer size of status phase in CTRL xfer */ + + struct list_head epqh_list_all; + struct list_head epqh_list_np; + struct list_head epqh_list_intr; + #ifdef __EN_ISOC__ + struct list_head epqh_list_isoc; + #endif + + uint32_t lastframe; + + uint16_t pkt_remaining; + uint16_t pkt_remaining_reload; + uint16_t pkt_remaining_reload_hs; + uint16_t pkt_remaining_reload_fs; + uint16_t pkt_remaining_reload_ls; + #define PKT_REMAINING_RELOAD_HS 88 + #define PKT_REMAINING_RELOAD_FS 10 + #define PKT_REMAINING_RELOAD_LS 20 + #ifdef __EN_ISOC__ + uint8_t isoc_ep_count; + #endif + + spinlock_t epqh_list_lock; + spinlock_t epqh_list_all_lock; + + struct timer_list host_probe_timer; + struct timer_list autoprobe_timer; + + unsigned power_status; + int probe_sec; + int autoprobe_sec; + #ifdef __DYN_SOF_INTR__ + uint32_t dyn_sof_count; + #define DYN_SOF_COUNT_DEF 40000 + #endif + struct tasklet_struct tasklet_select_eps; /*!< Tasket to do a reset */ + struct tasklet_struct tasklet_free_epqh_list ; /*!< Tasket to do a reset */ + unsigned disconnecting : 1 ; + + uint8_t pkt_count_limit_bo; + uint8_t pkt_count_limit_bi; +} ifxhcd_hcd_t; + +/* Gets the ifxhcd_hcd from a struct usb_hcd */ +static inline ifxhcd_hcd_t *syshcd_to_ifxhcd(struct usb_hcd *syshcd) +{ + return (ifxhcd_hcd_t *)(syshcd->hcd_priv[0]); +} + +/* Gets the struct usb_hcd that contains a ifxhcd_hcd_t. */ +static inline struct usb_hcd *ifxhcd_to_syshcd(ifxhcd_hcd_t *ifxhcd) +{ + return (struct usb_hcd *)(ifxhcd->syshcd); +} + + +extern ifxhcd_epqh_t * sysep_to_epqh(ifxhcd_hcd_t *_ifxhcd, struct usb_host_endpoint *_sysep); + +/* HCD Create/Destroy Functions */ + extern int ifxhcd_init (ifxhcd_hcd_t *_ifxhcd); + extern void ifxhcd_remove(ifxhcd_hcd_t *_ifxhcd); + +/*Linux HC Driver API Functions */ + +extern int ifxhcd_start(struct usb_hcd *hcd); +extern void ifxhcd_stop (struct usb_hcd *hcd); +extern int ifxhcd_get_frame_number(struct usb_hcd *hcd); + + +/*! + \brief This function does the setup for a data transfer for a host channel and + starts the transfer. May be called in either Slave mode or DMA mode. In + Slave mode, the caller must ensure that there is sufficient space in the + request queue and Tx Data FIFO. + + For an OUT transfer in Slave mode, it loads a data packet into the + appropriate FIFO. If necessary, additional data packets will be loaded in + the Host ISR. + + For an IN transfer in Slave mode, a data packet is requested. The data + packets are unloaded from the Rx FIFO in the Host ISR. If necessary, + additional data packets are requested in the Host ISR. + + For a PING transfer in Slave mode, the Do Ping bit is set in the HCTSIZ + register along with a packet count of 1 and the channel is enabled. This + causes a single PING transaction to occur. Other fields in HCTSIZ are + simply set to 0 since no data transfer occurs in this case. + + For a PING transfer in DMA mode, the HCTSIZ register is initialized with + all the information required to perform the subsequent data transfer. In + addition, the Do Ping bit is set in the HCTSIZ register. In this case, the + controller performs the entire PING protocol, then starts the data + transfer. + + @param _ifxhc Information needed to initialize the host channel. The xfer_len + value may be reduced to accommodate the max widths of the XferSize and + PktCnt fields in the HCTSIZn register. The multi_count value may be changed + to reflect the final xfer_len value. + */ +extern void ifxhcd_hc_start(ifxhcd_hcd_t *_ifxhcd, ifxhcd_hc_t *_ifxhc); + +#if LINUX_VERSION_CODE < KERNEL_VERSION(2,6,32) +extern int ifxhcd_urb_enqueue(struct usb_hcd *_syshcd, struct usb_host_endpoint *_sysep, struct urb *_urb, gfp_t mem_flags); +extern int ifxhcd_urb_dequeue(struct usb_hcd *_syshcd, struct urb *_urb); +#else +extern int ifxhcd_urb_enqueue(struct usb_hcd *_syshcd, struct urb *_urb, gfp_t mem_flags); +extern int ifxhcd_urb_dequeue(struct usb_hcd *_syshcd, struct urb *_urb, int status); +#endif +extern irqreturn_t ifxhcd_irq(struct usb_hcd *_syshcd); + +extern void ifxhcd_endpoint_disable(struct usb_hcd *_syshcd, struct usb_host_endpoint *_sysep); + +extern int ifxhcd_hub_status_data(struct usb_hcd *_syshcd, char *_buf); +extern int ifxhcd_hub_control( struct usb_hcd *_syshcd, + u16 _typeReq, + u16 _wValue, + u16 _wIndex, + char *_buf, + u16 _wLength); + +/*@}*/ + +/*! \brief Transaction Execution Functions */ +/*@{*/ +extern void ifxhcd_complete_urb (ifxhcd_hcd_t *_ifxhcd, ifxhcd_urbd_t *_urbd, int _status); + +/*! + \brief Clears the transfer state for a host channel. This function is normally + called after a transfer is done and the host channel is being released. + */ +extern void ifxhcd_hc_cleanup(ifxusb_core_if_t *_core_if, ifxhcd_hc_t *_ifxhc); + +/*! + \brief Attempts to halt a host channel. This function should only be called in + Slave mode or to abort a transfer in either Slave mode or DMA mode. Under + normal circumstances in DMA mode, the controller halts the channel when the + transfer is complete or a condition occurs that requires application + intervention. + + In DMA mode, always sets the Channel Enable and Channel Disable bits of the + HCCHARn register. The controller ensures there is space in the request + queue before submitting the halt request. + + Some time may elapse before the core flushes any posted requests for this + host channel and halts. The Channel Halted interrupt handler completes the + deactivation of the host channel. + */ +extern int ifxhcd_hc_halt(ifxusb_core_if_t *_core_if, + ifxhcd_hc_t *_ifxhc, + ifxhcd_halt_status_e _halt_status); + +/*! + \brief Prepares a host channel for transferring packets to/from a specific + endpoint. The HCCHARn register is set up with the characteristics specified + in _ifxhc. Host channel interrupts that may need to be serviced while this + transfer is in progress are enabled. + */ +extern void ifxhcd_hc_init(ifxusb_core_if_t *_core_if, ifxhcd_hc_t *_ifxhc); + +/*! + \brief This function is called to handle the disconnection of host port. + */ +int32_t ifxhcd_disconnect(ifxhcd_hcd_t *_ifxhcd); +/*@}*/ + +/*! \brief Interrupt Handler Functions */ +/*@{*/ +extern irqreturn_t ifxhcd_oc_irq(int _irq, void *_dev); + +extern int32_t ifxhcd_handle_oc_intr(ifxhcd_hcd_t *_ifxhcd); +extern int32_t ifxhcd_handle_intr (ifxhcd_hcd_t *_ifxhcd); +/*@}*/ + + +/*! \brief Schedule Queue Functions */ +/*@{*/ +extern void ifxhcd_epqh_free (ifxhcd_epqh_t *_epqh); +extern void select_eps (ifxhcd_hcd_t *_ifxhcd); +extern void ifxhcd_epqh_idle(ifxhcd_epqh_t *_epqh); +extern void ifxhcd_epqh_idle_periodic(ifxhcd_epqh_t *_epqh); +extern ifxhcd_epqh_t *ifxhcd_urbd_create (ifxhcd_hcd_t *_ifxhcd,struct urb *_urb); +/*@}*/ + +/*! \brief Gets the usb_host_endpoint associated with an URB. */ +static inline struct usb_host_endpoint *ifxhcd_urb_to_endpoint(struct urb *_urb) +{ + struct usb_device *dev = _urb->dev; + int ep_num = usb_pipeendpoint(_urb->pipe); + + return (usb_pipein(_urb->pipe))?(dev->ep_in[ep_num]):(dev->ep_out[ep_num]); +} + +/*! + * \brief Gets the endpoint number from a _bEndpointAddress argument. The endpoint is + * qualified with its direction (possible 32 endpoints per device). + */ +#define ifxhcd_ep_addr_to_endpoint(_bEndpointAddress_) ((_bEndpointAddress_ & USB_ENDPOINT_NUMBER_MASK) | \ + ((_bEndpointAddress_ & USB_DIR_IN) != 0) << 4) + + + +/*! Internal debug function */ +void ifxhcd_dump_state(ifxhcd_hcd_t *_ifxhcd); + +/*@}*//*IFXUSB_HCD*/ + +extern struct usb_device *usb_alloc_dev (struct usb_device *parent, struct usb_bus *, unsigned port); +extern int usb_add_hcd (struct usb_hcd *syshcd, unsigned int irqnum, unsigned long irqflags); +extern void usb_remove_hcd (struct usb_hcd *syshcd); +#if LINUX_VERSION_CODE < KERNEL_VERSION(2,6,32) +extern struct usb_hcd *usb_create_hcd (const struct hc_driver *driver, struct device *dev, char *bus_name); +#else +extern struct usb_hcd *usb_create_hcd (const struct hc_driver *driver, struct device *dev, const char *bus_name); +#endif + +#if LINUX_VERSION_CODE < KERNEL_VERSION(2,6,32) +extern void usb_hcd_giveback_urb (struct usb_hcd *syshcd, struct urb *urb); +#else +extern void usb_hcd_giveback_urb (struct usb_hcd *syshcd, struct urb *urb,int status); +#endif + +extern void usb_put_hcd (struct usb_hcd *syshcd); +extern long usb_calc_bus_time (int speed, int is_input, int isoc, int bytecount); +extern char *syserr(int errno); + + + +static inline void INIT_EPQH_LIST_ALL(ifxhcd_hcd_t *_ifxhcd) +{ + spin_lock_init(&_ifxhcd->epqh_list_all_lock); +} +static inline void LOCK_EPQH_LIST_ALL(ifxhcd_hcd_t *_ifxhcd) +{ + spin_lock(&_ifxhcd->epqh_list_all_lock); +} +static inline void UNLOCK_EPQH_LIST_ALL(ifxhcd_hcd_t *_ifxhcd) +{ + spin_unlock(&_ifxhcd->epqh_list_all_lock); +} + +static inline void INIT_EPQH_LIST(ifxhcd_hcd_t *_ifxhcd) +{ + spin_lock_init(&_ifxhcd->epqh_list_lock); +} +static inline void LOCK_EPQH_LIST(ifxhcd_hcd_t *_ifxhcd) +{ + spin_lock(&_ifxhcd->epqh_list_lock); +} +static inline void UNLOCK_EPQH_LIST(ifxhcd_hcd_t *_ifxhcd) +{ + spin_unlock(&_ifxhcd->epqh_list_lock); +} + +static inline void INIT_URBD_LIST(ifxhcd_epqh_t *_epqh) +{ + spin_lock_init(&_epqh->urbd_list_lock); +} +static inline void LOCK_URBD_LIST(ifxhcd_epqh_t *_epqh) +{ + spin_lock(&_epqh->urbd_list_lock); +} +static inline void UNLOCK_URBD_LIST(ifxhcd_epqh_t *_epqh) +{ + spin_unlock(&_epqh->urbd_list_lock); +} + +#endif // __IFXHCD_H__ + diff --git a/package/kernel/lantiq/ltq-hcd/src/ifxhcd_es.c b/package/kernel/lantiq/ltq-hcd/src/ifxhcd_es.c new file mode 100644 index 0000000..a7d18dd --- /dev/null +++ b/package/kernel/lantiq/ltq-hcd/src/ifxhcd_es.c @@ -0,0 +1,599 @@ +/***************************************************************************** + ** FILE NAME : ifxhcd_es.c + ** PROJECT : IFX USB sub-system V3 + ** MODULES : IFX USB sub-system Host and Device driver + ** SRC VERSION : 1.0 + ** DATE : 1/Jan/2009 + ** AUTHOR : Chen, Howard + ** DESCRIPTION : The file contain function to enable host mode USB-IF Electrical Test function. + ** FUNCTIONS : + ** COMPILER : gcc + ** REFERENCE : Synopsys DWC-OTG Driver 2.7 + ** COPYRIGHT : Copyright (c) 2010 + ** LANTIQ DEUTSCHLAND GMBH, + ** Am Campeon 3, 85579 Neubiberg, Germany + ** + ** This program is free software; you can redistribute it and/or modify + ** it under the terms of the GNU General Public License as published by + ** the Free Software Foundation; either version 2 of the License, or + ** (at your option) any later version. + ** + ** Version Control Section ** + ** $Author$ + ** $Date$ + ** $Revisions$ + ** $Log$ Revision history + *****************************************************************************/ + +/* + * This file contains code fragments from Synopsys HS OTG Linux Software Driver. + * For this code the following notice is applicable: + * + * ========================================================================== + * + * Synopsys HS OTG Linux Software Driver and documentation (hereinafter, + * "Software") is an Unsupported proprietary work of Synopsys, Inc. unless + * otherwise expressly agreed to in writing between Synopsys and you. + * + * The Software IS NOT an item of Licensed Software or Licensed Product under + * any End User Software License Agreement or Agreement for Licensed Product + * with Synopsys or any supplement thereto. You are permitted to use and + * redistribute this Software in source and binary forms, with or without + * modification, provided that redistributions of source code must retain this + * notice. You may not view, use, disclose, copy or distribute this file or + * any information contained herein except pursuant to this license grant from + * Synopsys. If you do not agree with this notice, including the disclaimer + * below, then you are not authorized to use the Software. + * + * THIS SOFTWARE IS BEING DISTRIBUTED BY SYNOPSYS SOLELY ON AN "AS IS" BASIS + * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE + * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE + * ARE HEREBY DISCLAIMED. IN NO EVENT SHALL SYNOPSYS BE LIABLE FOR ANY DIRECT, + * INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES + * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR + * SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER + * CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT + * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY + * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH + * DAMAGE. + * ========================================================================== */ + +/*! + \file ifxhcd_es.c + \ingroup IFXUSB_DRIVER_V3 + \brief The file contain function to enable host mode USB-IF Electrical Test function. +*/ + +#include <linux/version.h> +#include "ifxusb_version.h" + +#include <linux/kernel.h> + +#include <linux/errno.h> + +#include <linux/dma-mapping.h> + +#include "ifxusb_plat.h" +#include "ifxusb_regs.h" +#include "ifxusb_cif.h" +#include "ifxhcd.h" + + +#ifdef __WITH_HS_ELECT_TST__ + /* + * Quick and dirty hack to implement the HS Electrical Test + * SINGLE_STEP_GET_DEVICE_DESCRIPTOR feature. + * + * This code was copied from our userspace app "hset". It sends a + * Get Device Descriptor control sequence in two parts, first the + * Setup packet by itself, followed some time later by the In and + * Ack packets. Rather than trying to figure out how to add this + * functionality to the normal driver code, we just hijack the + * hardware, using these two function to drive the hardware + * directly. + */ + + + void do_setup(ifxusb_core_if_t *_core_if) + { + + ifxusb_core_global_regs_t *global_regs = _core_if->core_global_regs; + ifxusb_host_global_regs_t *hc_global_regs = _core_if->host_global_regs; + ifxusb_hc_regs_t *hc_regs = _core_if->hc_regs[0]; + uint32_t *data_fifo = _core_if->data_fifo[0]; + + gint_data_t gintsts; + hctsiz_data_t hctsiz; + hcchar_data_t hcchar; + haint_data_t haint; + hcint_data_t hcint; + + + /* Enable HAINTs */ + ifxusb_wreg(&hc_global_regs->haintmsk, 0x0001); + + /* Enable HCINTs */ + ifxusb_wreg(&hc_regs->hcintmsk, 0x04a3); + + /* Read GINTSTS */ + gintsts.d32 = ifxusb_rreg(&global_regs->gintsts); + //fprintf(stderr, "GINTSTS: %08x\n", gintsts.d32); + + /* Read HAINT */ + haint.d32 = ifxusb_rreg(&hc_global_regs->haint); + //fprintf(stderr, "HAINT: %08x\n", haint.d32); + + /* Read HCINT */ + hcint.d32 = ifxusb_rreg(&hc_regs->hcint); + //fprintf(stderr, "HCINT: %08x\n", hcint.d32); + + /* Read HCCHAR */ + hcchar.d32 = ifxusb_rreg(&hc_regs->hcchar); + //fprintf(stderr, "HCCHAR: %08x\n", hcchar.d32); + + /* Clear HCINT */ + ifxusb_wreg(&hc_regs->hcint, hcint.d32); + + /* Clear HAINT */ + ifxusb_wreg(&hc_global_regs->haint, haint.d32); + + /* Clear GINTSTS */ + ifxusb_wreg(&global_regs->gintsts, gintsts.d32); + + /* Read GINTSTS */ + gintsts.d32 = ifxusb_rreg(&global_regs->gintsts); + //fprintf(stderr, "GINTSTS: %08x\n", gintsts.d32); + + /* + * Send Setup packet (Get Device Descriptor) + */ + + /* Make sure channel is disabled */ + hcchar.d32 = ifxusb_rreg(&hc_regs->hcchar); + if (hcchar.b.chen) { + //fprintf(stderr, "Channel already enabled 1, HCCHAR = %08x\n", hcchar.d32); + hcchar.b.chdis = 1; + // hcchar.b.chen = 1; + ifxusb_wreg(&hc_regs->hcchar, hcchar.d32); + //sleep(1); + mdelay(1000); + + /* Read GINTSTS */ + gintsts.d32 = ifxusb_rreg(&global_regs->gintsts); + //fprintf(stderr, "GINTSTS: %08x\n", gintsts.d32); + + /* Read HAINT */ + haint.d32 = ifxusb_rreg(&hc_global_regs->haint); + //fprintf(stderr, "HAINT: %08x\n", haint.d32); + + /* Read HCINT */ + hcint.d32 = ifxusb_rreg(&hc_regs->hcint); + //fprintf(stderr, "HCINT: %08x\n", hcint.d32); + + /* Read HCCHAR */ + hcchar.d32 = ifxusb_rreg(&hc_regs->hcchar); + //fprintf(stderr, "HCCHAR: %08x\n", hcchar.d32); + + /* Clear HCINT */ + ifxusb_wreg(&hc_regs->hcint, hcint.d32); + + /* Clear HAINT */ + ifxusb_wreg(&hc_global_regs->haint, haint.d32); + + /* Clear GINTSTS */ + ifxusb_wreg(&global_regs->gintsts, gintsts.d32); + + hcchar.d32 = ifxusb_rreg(&hc_regs->hcchar); + //if (hcchar.b.chen) { + // fprintf(stderr, "** Channel _still_ enabled 1, HCCHAR = %08x **\n", hcchar.d32); + //} + } + + /* Set HCTSIZ */ + hctsiz.d32 = 0; + hctsiz.b.xfersize = 8; + hctsiz.b.pktcnt = 1; + hctsiz.b.pid = IFXUSB_HC_PID_SETUP; + ifxusb_wreg(&hc_regs->hctsiz, hctsiz.d32); + + /* Set HCCHAR */ + hcchar.d32 = ifxusb_rreg(&hc_regs->hcchar); + hcchar.b.eptype = IFXUSB_EP_TYPE_CTRL; + hcchar.b.epdir = 0; + hcchar.b.epnum = 0; + hcchar.b.mps = 8; + hcchar.b.chen = 1; + ifxusb_wreg(&hc_regs->hcchar, hcchar.d32); + + /* Fill FIFO with Setup data for Get Device Descriptor */ + ifxusb_wreg(data_fifo++, 0x01000680); + ifxusb_wreg(data_fifo++, 0x00080000); + + gintsts.d32 = ifxusb_rreg(&global_regs->gintsts); + //fprintf(stderr, "Waiting for HCINTR intr 1, GINTSTS = %08x\n", gintsts.d32); + + /* Wait for host channel interrupt */ + do { + gintsts.d32 = ifxusb_rreg(&global_regs->gintsts); + } while (gintsts.b.hcintr == 0); + + //fprintf(stderr, "Got HCINTR intr 1, GINTSTS = %08x\n", gintsts.d32); + + /* Disable HCINTs */ + ifxusb_wreg(&hc_regs->hcintmsk, 0x0000); + + /* Disable HAINTs */ + ifxusb_wreg(&hc_global_regs->haintmsk, 0x0000); + + /* Read HAINT */ + haint.d32 = ifxusb_rreg(&hc_global_regs->haint); + //fprintf(stderr, "HAINT: %08x\n", haint.d32); + + /* Read HCINT */ + hcint.d32 = ifxusb_rreg(&hc_regs->hcint); + //fprintf(stderr, "HCINT: %08x\n", hcint.d32); + + /* Read HCCHAR */ + hcchar.d32 = ifxusb_rreg(&hc_regs->hcchar); + //fprintf(stderr, "HCCHAR: %08x\n", hcchar.d32); + + /* Clear HCINT */ + ifxusb_wreg(&hc_regs->hcint, hcint.d32); + + /* Clear HAINT */ + ifxusb_wreg(&hc_global_regs->haint, haint.d32); + + /* Clear GINTSTS */ + ifxusb_wreg(&global_regs->gintsts, gintsts.d32); + + /* Read GINTSTS */ + gintsts.d32 = ifxusb_rreg(&global_regs->gintsts); + //fprintf(stderr, "GINTSTS: %08x\n", gintsts.d32); + } + + void do_in_ack(ifxusb_core_if_t *_core_if) + { + + ifxusb_core_global_regs_t *global_regs = _core_if->core_global_regs; + ifxusb_host_global_regs_t *hc_global_regs = _core_if->host_global_regs; + ifxusb_hc_regs_t *hc_regs = _core_if->hc_regs[0]; + uint32_t *data_fifo = _core_if->data_fifo[0]; + + gint_data_t gintsts; + hctsiz_data_t hctsiz; + hcchar_data_t hcchar; + haint_data_t haint; + hcint_data_t hcint; + grxsts_data_t grxsts; + + /* Enable HAINTs */ + ifxusb_wreg(&hc_global_regs->haintmsk, 0x0001); + + /* Enable HCINTs */ + ifxusb_wreg(&hc_regs->hcintmsk, 0x04a3); + + /* Read GINTSTS */ + gintsts.d32 = ifxusb_rreg(&global_regs->gintsts); + //fprintf(stderr, "GINTSTS: %08x\n", gintsts.d32); + + /* Read HAINT */ + haint.d32 = ifxusb_rreg(&hc_global_regs->haint); + //fprintf(stderr, "HAINT: %08x\n", haint.d32); + + /* Read HCINT */ + hcint.d32 = ifxusb_rreg(&hc_regs->hcint); + //fprintf(stderr, "HCINT: %08x\n", hcint.d32); + + /* Read HCCHAR */ + hcchar.d32 = ifxusb_rreg(&hc_regs->hcchar); + //fprintf(stderr, "HCCHAR: %08x\n", hcchar.d32); + + /* Clear HCINT */ + ifxusb_wreg(&hc_regs->hcint, hcint.d32); + + /* Clear HAINT */ + ifxusb_wreg(&hc_global_regs->haint, haint.d32); + + /* Clear GINTSTS */ + ifxusb_wreg(&global_regs->gintsts, gintsts.d32); + + /* Read GINTSTS */ + gintsts.d32 = ifxusb_rreg(&global_regs->gintsts); + //fprintf(stderr, "GINTSTS: %08x\n", gintsts.d32); + + /* + * Receive Control In packet + */ + + /* Make sure channel is disabled */ + hcchar.d32 = ifxusb_rreg(&hc_regs->hcchar); + if (hcchar.b.chen) { + //fprintf(stderr, "Channel already enabled 2, HCCHAR = %08x\n", hcchar.d32); + hcchar.b.chdis = 1; + hcchar.b.chen = 1; + ifxusb_wreg(&hc_regs->hcchar, hcchar.d32); + //sleep(1); + mdelay(1000); + + /* Read GINTSTS */ + gintsts.d32 = ifxusb_rreg(&global_regs->gintsts); + //fprintf(stderr, "GINTSTS: %08x\n", gintsts.d32); + + /* Read HAINT */ + haint.d32 = ifxusb_rreg(&hc_global_regs->haint); + //fprintf(stderr, "HAINT: %08x\n", haint.d32); + + /* Read HCINT */ + hcint.d32 = ifxusb_rreg(&hc_regs->hcint); + //fprintf(stderr, "HCINT: %08x\n", hcint.d32); + + /* Read HCCHAR */ + hcchar.d32 = ifxusb_rreg(&hc_regs->hcchar); + //fprintf(stderr, "HCCHAR: %08x\n", hcchar.d32); + + /* Clear HCINT */ + ifxusb_wreg(&hc_regs->hcint, hcint.d32); + + /* Clear HAINT */ + ifxusb_wreg(&hc_global_regs->haint, haint.d32); + + /* Clear GINTSTS */ + ifxusb_wreg(&global_regs->gintsts, gintsts.d32); + + hcchar.d32 = ifxusb_rreg(&hc_regs->hcchar); + //if (hcchar.b.chen) { + // fprintf(stderr, "** Channel _still_ enabled 2, HCCHAR = %08x **\n", hcchar.d32); + //} + } + + /* Set HCTSIZ */ + hctsiz.d32 = 0; + hctsiz.b.xfersize = 8; + hctsiz.b.pktcnt = 1; + hctsiz.b.pid = IFXUSB_HC_PID_DATA1; + ifxusb_wreg(&hc_regs->hctsiz, hctsiz.d32); + + /* Set HCCHAR */ + hcchar.d32 = ifxusb_rreg(&hc_regs->hcchar); + hcchar.b.eptype = IFXUSB_EP_TYPE_CTRL; + hcchar.b.epdir = 1; + hcchar.b.epnum = 0; + hcchar.b.mps = 8; + hcchar.b.chen = 1; + ifxusb_wreg(&hc_regs->hcchar, hcchar.d32); + + gintsts.d32 = ifxusb_rreg(&global_regs->gintsts); + //fprintf(stderr, "Waiting for RXSTSQLVL intr 1, GINTSTS = %08x\n", gintsts.d32); + + /* Wait for receive status queue interrupt */ + do { + gintsts.d32 = ifxusb_rreg(&global_regs->gintsts); + } while (gintsts.b.rxstsqlvl == 0); + + //fprintf(stderr, "Got RXSTSQLVL intr 1, GINTSTS = %08x\n", gintsts.d32); + + /* Read RXSTS */ + grxsts.d32 = ifxusb_rreg(&global_regs->grxstsp); + //fprintf(stderr, "GRXSTS: %08x\n", grxsts.d32); + + /* Clear RXSTSQLVL in GINTSTS */ + gintsts.d32 = 0; + gintsts.b.rxstsqlvl = 1; + ifxusb_wreg(&global_regs->gintsts, gintsts.d32); + + switch (grxsts.hb.pktsts) { + case IFXUSB_HSTS_DATA_UPDT: + /* Read the data into the host buffer */ + if (grxsts.hb.bcnt > 0) { + int i; + int word_count = (grxsts.hb.bcnt + 3) / 4; + + for (i = 0; i < word_count; i++) { + (void)ifxusb_rreg(data_fifo++); + } + } + + //fprintf(stderr, "Received %u bytes\n", (unsigned)grxsts.hb.bcnt); + break; + + default: + //fprintf(stderr, "** Unexpected GRXSTS packet status 1 **\n"); + break; + } + + gintsts.d32 = ifxusb_rreg(&global_regs->gintsts); + //fprintf(stderr, "Waiting for RXSTSQLVL intr 2, GINTSTS = %08x\n", gintsts.d32); + + /* Wait for receive status queue interrupt */ + do { + gintsts.d32 = ifxusb_rreg(&global_regs->gintsts); + } while (gintsts.b.rxstsqlvl == 0); + + //fprintf(stderr, "Got RXSTSQLVL intr 2, GINTSTS = %08x\n", gintsts.d32); + + /* Read RXSTS */ + grxsts.d32 = ifxusb_rreg(&global_regs->grxstsp); + //fprintf(stderr, "GRXSTS: %08x\n", grxsts.d32); + + /* Clear RXSTSQLVL in GINTSTS */ + gintsts.d32 = 0; + gintsts.b.rxstsqlvl = 1; + ifxusb_wreg(&global_regs->gintsts, gintsts.d32); + + switch (grxsts.hb.pktsts) { + case IFXUSB_HSTS_XFER_COMP: + break; + + default: + //fprintf(stderr, "** Unexpected GRXSTS packet status 2 **\n"); + break; + } + + gintsts.d32 = ifxusb_rreg(&global_regs->gintsts); + //fprintf(stderr, "Waiting for HCINTR intr 2, GINTSTS = %08x\n", gintsts.d32); + + /* Wait for host channel interrupt */ + do { + gintsts.d32 = ifxusb_rreg(&global_regs->gintsts); + } while (gintsts.b.hcintr == 0); + + //fprintf(stderr, "Got HCINTR intr 2, GINTSTS = %08x\n", gintsts.d32); + + /* Read HAINT */ + haint.d32 = ifxusb_rreg(&hc_global_regs->haint); + //fprintf(stderr, "HAINT: %08x\n", haint.d32); + + /* Read HCINT */ + hcint.d32 = ifxusb_rreg(&hc_regs->hcint); + //fprintf(stderr, "HCINT: %08x\n", hcint.d32); + + /* Read HCCHAR */ + hcchar.d32 = ifxusb_rreg(&hc_regs->hcchar); + //fprintf(stderr, "HCCHAR: %08x\n", hcchar.d32); + + /* Clear HCINT */ + ifxusb_wreg(&hc_regs->hcint, hcint.d32); + + /* Clear HAINT */ + ifxusb_wreg(&hc_global_regs->haint, haint.d32); + + /* Clear GINTSTS */ + ifxusb_wreg(&global_regs->gintsts, gintsts.d32); + + /* Read GINTSTS */ + gintsts.d32 = ifxusb_rreg(&global_regs->gintsts); + //fprintf(stderr, "GINTSTS: %08x\n", gintsts.d32); + + // usleep(100000); + // mdelay(100); + mdelay(1); + + /* + * Send handshake packet + */ + + /* Read HAINT */ + haint.d32 = ifxusb_rreg(&hc_global_regs->haint); + //fprintf(stderr, "HAINT: %08x\n", haint.d32); + + /* Read HCINT */ + hcint.d32 = ifxusb_rreg(&hc_regs->hcint); + //fprintf(stderr, "HCINT: %08x\n", hcint.d32); + + /* Read HCCHAR */ + hcchar.d32 = ifxusb_rreg(&hc_regs->hcchar); + //fprintf(stderr, "HCCHAR: %08x\n", hcchar.d32); + + /* Clear HCINT */ + ifxusb_wreg(&hc_regs->hcint, hcint.d32); + + /* Clear HAINT */ + ifxusb_wreg(&hc_global_regs->haint, haint.d32); + + /* Clear GINTSTS */ + ifxusb_wreg(&global_regs->gintsts, gintsts.d32); + + /* Read GINTSTS */ + gintsts.d32 = ifxusb_rreg(&global_regs->gintsts); + //fprintf(stderr, "GINTSTS: %08x\n", gintsts.d32); + + /* Make sure channel is disabled */ + hcchar.d32 = ifxusb_rreg(&hc_regs->hcchar); + if (hcchar.b.chen) { + //fprintf(stderr, "Channel already enabled 3, HCCHAR = %08x\n", hcchar.d32); + hcchar.b.chdis = 1; + hcchar.b.chen = 1; + ifxusb_wreg(&hc_regs->hcchar, hcchar.d32); + //sleep(1); + mdelay(1000); + + /* Read GINTSTS */ + gintsts.d32 = ifxusb_rreg(&global_regs->gintsts); + //fprintf(stderr, "GINTSTS: %08x\n", gintsts.d32); + + /* Read HAINT */ + haint.d32 = ifxusb_rreg(&hc_global_regs->haint); + //fprintf(stderr, "HAINT: %08x\n", haint.d32); + + /* Read HCINT */ + hcint.d32 = ifxusb_rreg(&hc_regs->hcint); + //fprintf(stderr, "HCINT: %08x\n", hcint.d32); + + /* Read HCCHAR */ + hcchar.d32 = ifxusb_rreg(&hc_regs->hcchar); + //fprintf(stderr, "HCCHAR: %08x\n", hcchar.d32); + + /* Clear HCINT */ + ifxusb_wreg(&hc_regs->hcint, hcint.d32); + + /* Clear HAINT */ + ifxusb_wreg(&hc_global_regs->haint, haint.d32); + + /* Clear GINTSTS */ + ifxusb_wreg(&global_regs->gintsts, gintsts.d32); + + hcchar.d32 = ifxusb_rreg(&hc_regs->hcchar); + //if (hcchar.b.chen) { + // fprintf(stderr, "** Channel _still_ enabled 3, HCCHAR = %08x **\n", hcchar.d32); + //} + } + + /* Set HCTSIZ */ + hctsiz.d32 = 0; + hctsiz.b.xfersize = 0; + hctsiz.b.pktcnt = 1; + hctsiz.b.pid = IFXUSB_HC_PID_DATA1; + ifxusb_wreg(&hc_regs->hctsiz, hctsiz.d32); + + /* Set HCCHAR */ + hcchar.d32 = ifxusb_rreg(&hc_regs->hcchar); + hcchar.b.eptype = IFXUSB_EP_TYPE_CTRL; + hcchar.b.epdir = 0; + hcchar.b.epnum = 0; + hcchar.b.mps = 8; + hcchar.b.chen = 1; + ifxusb_wreg(&hc_regs->hcchar, hcchar.d32); + + gintsts.d32 = ifxusb_rreg(&global_regs->gintsts); + //fprintf(stderr, "Waiting for HCINTR intr 3, GINTSTS = %08x\n", gintsts.d32); + + /* Wait for host channel interrupt */ + do { + gintsts.d32 = ifxusb_rreg(&global_regs->gintsts); + } while (gintsts.b.hcintr == 0); + + //fprintf(stderr, "Got HCINTR intr 3, GINTSTS = %08x\n", gintsts.d32); + + /* Disable HCINTs */ + ifxusb_wreg(&hc_regs->hcintmsk, 0x0000); + + /* Disable HAINTs */ + ifxusb_wreg(&hc_global_regs->haintmsk, 0x0000); + + /* Read HAINT */ + haint.d32 = ifxusb_rreg(&hc_global_regs->haint); + //fprintf(stderr, "HAINT: %08x\n", haint.d32); + + /* Read HCINT */ + hcint.d32 = ifxusb_rreg(&hc_regs->hcint); + //fprintf(stderr, "HCINT: %08x\n", hcint.d32); + + /* Read HCCHAR */ + hcchar.d32 = ifxusb_rreg(&hc_regs->hcchar); + //fprintf(stderr, "HCCHAR: %08x\n", hcchar.d32); + + /* Clear HCINT */ + ifxusb_wreg(&hc_regs->hcint, hcint.d32); + + /* Clear HAINT */ + ifxusb_wreg(&hc_global_regs->haint, haint.d32); + + /* Clear GINTSTS */ + ifxusb_wreg(&global_regs->gintsts, gintsts.d32); + + /* Read GINTSTS */ + gintsts.d32 = ifxusb_rreg(&global_regs->gintsts); + //fprintf(stderr, "GINTSTS: %08x\n", gintsts.d32); + } +#endif //__WITH_HS_ELECT_TST__ + diff --git a/package/kernel/lantiq/ltq-hcd/src/ifxhcd_intr.c b/package/kernel/lantiq/ltq-hcd/src/ifxhcd_intr.c new file mode 100644 index 0000000..27885bb --- /dev/null +++ b/package/kernel/lantiq/ltq-hcd/src/ifxhcd_intr.c @@ -0,0 +1,4844 @@ +/***************************************************************************** + ** FILE NAME : ifxhcd_intr.c + ** PROJECT : IFX USB sub-system V3 + ** MODULES : IFX USB sub-system Host and Device driver + ** SRC VERSION : 3.2 + ** DATE : 1/Jan/2011 + ** AUTHOR : Chen, Howard + ** DESCRIPTION : This file contains the implementation of the HCD Interrupt handlers. + ** FUNCTIONS : + ** COMPILER : gcc + ** REFERENCE : Synopsys DWC-OTG Driver 2.7 + ** COPYRIGHT : Copyright (c) 2010 + ** LANTIQ DEUTSCHLAND GMBH, + ** Am Campeon 3, 85579 Neubiberg, Germany + ** + ** This program is free software; you can redistribute it and/or modify + ** it under the terms of the GNU General Public License as published by + ** the Free Software Foundation; either version 2 of the License, or + ** (at your option) any later version. + ** + ** Version Control Section ** + ** $Author$ + ** $Date$ + ** $Revisions$ + ** $Log$ Revision history + *****************************************************************************/ + +/* + * This file contains code fragments from Synopsys HS OTG Linux Software Driver. + * For this code the following notice is applicable: + * + * ========================================================================== + * + * Synopsys HS OTG Linux Software Driver and documentation (hereinafter, + * "Software") is an Unsupported proprietary work of Synopsys, Inc. unless + * otherwise expressly agreed to in writing between Synopsys and you. + * + * The Software IS NOT an item of Licensed Software or Licensed Product under + * any End User Software License Agreement or Agreement for Licensed Product + * with Synopsys or any supplement thereto. You are permitted to use and + * redistribute this Software in source and binary forms, with or without + * modification, provided that redistributions of source code must retain this + * notice. You may not view, use, disclose, copy or distribute this file or + * any information contained herein except pursuant to this license grant from + * Synopsys. If you do not agree with this notice, including the disclaimer + * below, then you are not authorized to use the Software. + * + * THIS SOFTWARE IS BEING DISTRIBUTED BY SYNOPSYS SOLELY ON AN "AS IS" BASIS + * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE + * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE + * ARE HEREBY DISCLAIMED. IN NO EVENT SHALL SYNOPSYS BE LIABLE FOR ANY DIRECT, + * INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES + * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR + * SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER + * CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT + * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY + * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH + * DAMAGE. + * ========================================================================== */ + +/*! + \file ifxhcd_intr.c + \ingroup IFXUSB_DRIVER_V3 + \brief This file contains the implementation of the HCD Interrupt handlers. +*/ + + +#include <linux/version.h> +#include "ifxusb_version.h" + +#include "ifxusb_plat.h" +#include "ifxusb_regs.h" +#include "ifxusb_cif.h" + +#include "ifxhcd.h" + +/* Macro used to clear one channel interrupt */ +#define clear_hc_int(_hc_regs_,_intr_) \ + do { \ + hcint_data_t hcint_clear = {.d32 = 0}; \ + hcint_clear.b._intr_ = 1; \ + ifxusb_wreg(&((_hc_regs_)->hcint), hcint_clear.d32); \ + } while (0) + +/* + * Macro used to disable one channel interrupt. Channel interrupts are + * disabled when the channel is halted or released by the interrupt handler. + * There is no need to handle further interrupts of that type until the + * channel is re-assigned. In fact, subsequent handling may cause crashes + * because the channel structures are cleaned up when the channel is released. + */ +#define disable_hc_int(_hc_regs_,_intr_) \ + do { \ + hcint_data_t hcintmsk = {.d32 = 0}; \ + hcintmsk.b._intr_ = 1; \ + ifxusb_mreg(&((_hc_regs_)->hcintmsk), hcintmsk.d32, 0); \ + } while (0) + +#define enable_hc_int(_hc_regs_,_intr_) \ + do { \ + hcint_data_t hcintmsk = {.d32 = 0}; \ + hcintmsk.b._intr_ = 1; \ + ifxusb_mreg(&((_hc_regs_)->hcintmsk),0, hcintmsk.d32); \ + } while (0) + +/* + * Save the starting data toggle for the next transfer. The data toggle is + * saved in the QH for non-control transfers and it's saved in the QTD for + * control transfers. + */ +uint8_t read_data_toggle(ifxusb_hc_regs_t *_hc_regs) +{ + hctsiz_data_t hctsiz; + hctsiz.d32 = ifxusb_rreg(&_hc_regs->hctsiz); + return(hctsiz.b.pid); +} + + +static void release_channel_dump(ifxhcd_hc_t *ifxhc, + struct urb *urb, + ifxhcd_epqh_t *epqh, + ifxhcd_urbd_t *urbd, + ifxhcd_halt_status_e halt_status) +{ + #ifdef __DEBUG__ + printk(KERN_INFO); + switch (halt_status) + { + case HC_XFER_NO_HALT_STATUS: + printk("HC_XFER_NO_HALT_STATUS");break; + case HC_XFER_URB_COMPLETE: + printk("HC_XFER_URB_COMPLETE");break; + case HC_XFER_AHB_ERR: + printk("HC_XFER_AHB_ERR");break; + case HC_XFER_STALL: + printk("HC_XFER_STALL");break; + case HC_XFER_BABBLE_ERR: + printk("HC_XFER_BABBLE_ERR");break; + case HC_XFER_XACT_ERR: + printk("HC_XFER_XACT_ERR");break; + case HC_XFER_URB_DEQUEUE: + printk("HC_XFER_URB_DEQUEUE");break; + case HC_XFER_FRAME_OVERRUN: + printk("HC_XFER_FRAME_OVERRUN");break; + case HC_XFER_DATA_TOGGLE_ERR: + printk("HC_XFER_DATA_TOGGLE_ERR");break; + #ifdef __NAKSTOP__ + case HC_XFER_NAK: + printk("HC_XFER_NAK");break; + #endif + case HC_XFER_COMPLETE: + printk("HC_XFER_COMPLETE");break; + default: + printk("KNOWN");break; + } + if(ifxhc) + printk("Ch %d %s%s S%d " , ifxhc->hc_num + ,(ifxhc->ep_type == IFXUSB_EP_TYPE_CTRL)?"CTRL-": + ((ifxhc->ep_type == IFXUSB_EP_TYPE_BULK)?"BULK-": + ((ifxhc->ep_type == IFXUSB_EP_TYPE_INTR)?"INTR-": + ((ifxhc->ep_type == IFXUSB_EP_TYPE_ISOC)?"ISOC-":"????" + ) + ) + ) + ,(ifxhc->is_in)?"IN":"OUT" + ,(ifxhc->split) + ); + else + printk(" [NULL HC] "); + printk("urb=%p epqh=%p urbd=%p\n",urb,epqh,urbd); + + if(urb) + { + printk(KERN_INFO " Device address: %d\n", usb_pipedevice(urb->pipe)); + printk(KERN_INFO " Endpoint: %d, %s\n", usb_pipeendpoint(urb->pipe), + (usb_pipein(urb->pipe) ? "IN" : "OUT")); + printk(KERN_INFO " Endpoint type: %s\n", + ({char *pipetype; + switch (usb_pipetype(urb->pipe)) { + case PIPE_CONTROL: pipetype = "CTRL"; break; + case PIPE_BULK: pipetype = "BULK"; break; + case PIPE_INTERRUPT: pipetype = "INTR"; break; + case PIPE_ISOCHRONOUS: pipetype = "ISOC"; break; + default: pipetype = "????"; break; + }; pipetype;})); + printk(KERN_INFO " Speed: %s\n", + ({char *speed; + switch (urb->dev->speed) { + case USB_SPEED_HIGH: speed = "HS"; break; + case USB_SPEED_FULL: speed = "FS"; break; + case USB_SPEED_LOW: speed = "LS"; break; + default: speed = "????"; break; + }; speed;})); + printk(KERN_INFO " Max packet size: %d\n", + usb_maxpacket(urb->dev, urb->pipe, usb_pipeout(urb->pipe))); + printk(KERN_INFO " Data buffer length: %d/%d\n",urb->actual_length, urb->transfer_buffer_length); + printk(KERN_INFO " Transfer buffer: %p, Transfer DMA: %p\n", + urb->transfer_buffer, (void *)urb->transfer_dma); + printk(KERN_INFO " Setup buffer: %p, Setup DMA: %p\n", + urb->setup_packet, (void *)urb->setup_dma); + printk(KERN_INFO " Interval: %d\n", urb->interval); + } + if(urbd) + { + switch (urbd->status) + { + case HC_XFER_NO_HALT_STATUS: + printk(KERN_INFO " STATUS:HC_XFER_NO_HALT_STATUS\n");break; + case HC_XFER_URB_COMPLETE: + printk(KERN_INFO " STATUS:HC_XFER_URB_COMPLETE\n");break; + case HC_XFER_AHB_ERR: + printk(KERN_INFO " STATUS:HC_XFER_AHB_ERR\n");break; + case HC_XFER_STALL: + printk(KERN_INFO " STATUS:HC_XFER_STALL\n");break; + case HC_XFER_BABBLE_ERR: + printk(KERN_INFO " STATUS:HC_XFER_BABBLE_ERR\n");break; + case HC_XFER_XACT_ERR: + printk(KERN_INFO " STATUS:HC_XFER_XACT_ERR\n");break; + case HC_XFER_URB_DEQUEUE: + printk(KERN_INFO " STATUS:HC_XFER_URB_DEQUEUE\n");break; + case HC_XFER_FRAME_OVERRUN: + printk(KERN_INFO " STATUS:HC_XFER_FRAME_OVERRUN\n");break; + case HC_XFER_DATA_TOGGLE_ERR: + printk(KERN_INFO " STATUS:HC_XFER_DATA_TOGGLE_ERR\n");break; + case HC_XFER_COMPLETE: + printk(KERN_INFO " STATUS:HC_XFER_COMPLETE\n");break; + default: + printk(KERN_INFO " STATUS:UNKKNOWN %d\n",urbd->status);break; + } + } + #endif +} + +/*! + \fn static void release_channel(ifxhcd_hcd_t *_ifxhcd, + ifxhcd_hc_t *_ifxhc, + ifxhcd_halt_status_e _halt_status) + \brief Release the halted channel. + \param _ifxhcd Pointer to the sate of HCD structure + \param _ifxhc Pointer to host channel descriptor + \param _halt_status Halt satus + \return None + \ingroup IFXUSB_HCD + */ + +static void release_channel(ifxhcd_hcd_t *_ifxhcd, + ifxhcd_hc_t *_ifxhc, + ifxhcd_halt_status_e _halt_status) +{ + ifxusb_hc_regs_t *hc_regs = _ifxhcd->core_if.hc_regs[_ifxhc->hc_num]; + struct urb *urb = NULL; + ifxhcd_epqh_t *epqh = NULL; + ifxhcd_urbd_t *urbd = NULL; + + IFX_DEBUGPL(DBG_HCDV, " %s: channel %d, halt_status %d\n", + __func__, _ifxhc->hc_num, _halt_status); + + epqh=_ifxhc->epqh; + + if(!epqh) + { + if(_halt_status!=HC_XFER_NO_EPQH) + IFX_ERROR("%s epqh=null\n",__func__); + } + else + { + urbd=epqh->urbd; + if(!urbd) + IFX_ERROR("%s urbd=null\n",__func__); + else + { + urb=urbd->urb; + if(!urb) + { + if(_halt_status!=HC_XFER_NO_URB) + IFX_ERROR("%s urb =null\n",__func__); + } + else + { + if (read_data_toggle(hc_regs) == IFXUSB_HCTSIZ_DATA0) + usb_settoggle (urb->dev,usb_pipeendpoint (urb->pipe), (_ifxhc->is_in)?0:1,0); + else if (read_data_toggle(hc_regs) == IFXUSB_HCTSIZ_DATA1) + usb_settoggle (urb->dev,usb_pipeendpoint (urb->pipe), (_ifxhc->is_in)?0:1,1); + } + } + } + + switch (_halt_status) + { + case HC_XFER_NO_HALT_STATUS: + IFX_ERROR("%s: No halt_status, channel %d\n", __func__, _ifxhc->hc_num); +// return; + break; + case HC_XFER_COMPLETE: + IFX_ERROR("%s: Inavalid halt_status HC_XFER_COMPLETE, channel %d\n", __func__, _ifxhc->hc_num); +// return; + break; + case HC_XFER_NO_URB: + break; + case HC_XFER_NO_EPQH: + break; + case HC_XFER_URB_DEQUEUE: + case HC_XFER_AHB_ERR: + case HC_XFER_XACT_ERR: + case HC_XFER_FRAME_OVERRUN: + if(urbd && urb) + { + urbd->phase=URBD_DEQUEUEING; + ifxhcd_complete_urb(_ifxhcd, urbd, urbd->status); + } + else + { + IFX_WARN("WARNING %s():%d urbd=%p urb=%p\n",__func__,__LINE__,urbd,urb); + release_channel_dump(_ifxhc,urb,epqh,urbd,_halt_status); + } + break; + case HC_XFER_URB_COMPLETE: + if(urbd && urb) + { + urbd->phase=URBD_COMPLETING; + ifxhcd_complete_urb(_ifxhcd, urbd, urbd->status); + } + else + { + IFX_WARN("WARNING %s():%d urbd=%p urb=%p\n",__func__,__LINE__,urbd,urb); + release_channel_dump(_ifxhc,urb,epqh,urbd,_halt_status); + } + break; + case HC_XFER_STALL: + if(urbd) + { + urbd->phase=URBD_DEQUEUEING; + ifxhcd_complete_urb(_ifxhcd, urbd, -EPIPE); + } + else + { + IFX_WARN("WARNING %s():%d urbd=%p urb=%p\n",__func__,__LINE__,urbd,urb); + release_channel_dump(_ifxhc,urb,epqh,urbd,_halt_status); + } + if(epqh && urb && urb->dev && urb->pipe) + usb_settoggle(urb->dev, usb_pipeendpoint (urb->pipe), !usb_pipein(urb->pipe), IFXUSB_HC_PID_DATA0); + break; + case HC_XFER_BABBLE_ERR: + case HC_XFER_DATA_TOGGLE_ERR: + if(urbd) + { + urbd->phase=URBD_DEQUEUEING; + ifxhcd_complete_urb(_ifxhcd, urbd, -EOVERFLOW); + } + else + { + IFX_WARN("WARNING %s():%d urbd=%p urb=%p\n",__func__,__LINE__,urbd,urb); + release_channel_dump(_ifxhc,urb,epqh,urbd,_halt_status); + } + break; + #ifdef __NAKSTOP__ + case HC_XFER_NAK: + if (_ifxhc->is_in) + { + if(urbd && urb) + { + urbd->phase=URBD_COMPLETING; + ifxhcd_complete_urb(_ifxhcd, urbd, 0); + } + else + { + IFX_WARN("WARNING %s():%d urbd=%p urb=%p\n",__func__,__LINE__,urbd,urb); + release_channel_dump(_ifxhc,urb,epqh,urbd,_halt_status); + } + } + else + { + IFX_WARN("WARNING %s():%d urbd=%p urb=%p\n",__func__,__LINE__,urbd,urb); + release_channel_dump(_ifxhc,urb,epqh,urbd,_halt_status); + } + break; + #endif + #if defined(__INTRNAKRETRY__) || defined(__INTRINCRETRY__) + case HC_XFER_INTR_NAK_RETRY: + epqh->phase=EPQH_READY; + urbd->phase=URBD_IDLE; + ifxhcd_hc_cleanup(&_ifxhcd->core_if, _ifxhc); + select_eps(_ifxhcd); + return; + break; + + #endif + } + if(epqh) + { + ifxhcd_epqh_idle(epqh); + } + else if(_halt_status!=HC_XFER_NO_EPQH) + { + IFX_WARN("WARNING %s():%d epqh=%p\n",__func__,__LINE__,epqh); + release_channel_dump(_ifxhc,urb,epqh,urbd,_halt_status); + } + ifxhcd_hc_cleanup(&_ifxhcd->core_if, _ifxhc); + select_eps(_ifxhcd); +} + +/* + * Updates the state of the URB after a Transfer Complete interrupt on the + * host channel. Updates the actual_length field of the URB based on the + * number of bytes transferred via the host channel. Sets the URB status + * if the data transfer is finished. + * + * @return 1 if the data transfer specified by the URB is completely finished, + * 0 otherwise. + */ +static int update_urb_state_xfer_comp(ifxhcd_hc_t *_ifxhc, + ifxusb_hc_regs_t *_hc_regs, + struct urb *_urb, + ifxhcd_urbd_t *_urbd) +{ + int xfer_done = 0; + + #ifdef __EN_ISOC__ + if(_urbd->epqh->ep_type==IFXUSB_EP_TYPE_ISOC) + { + struct usb_iso_packet_descriptor *frame_desc; + frame_desc = &_urb->iso_frame_desc[_urbd->isoc_frame_index]; + if (_ifxhc->is_in) + { + hctsiz_data_t hctsiz; + hctsiz.d32 = ifxusb_rreg(&_hc_regs->hctsiz); + frame_desc->actual_length += (_ifxhc->xfer_len - hctsiz.b.xfersize); + if ((hctsiz.b.xfersize != 0) || (frame_desc->actual_length >= _urbd->xfer_len)) + { + xfer_done = 1; + frame_desc->status = 0; + #if 0 + if (frame_desc->actual_length < frame_desc->length && _urb->transfer_flags & URB_SHORT_NOT_OK) + frame_desc->status = -EREMOTEIO; + #endif + } + } + else + { + if (_ifxhc->split) + frame_desc->actual_length += _ifxhc->ssplit_out_xfer_count; + else + frame_desc->actual_length += _ifxhc->xfer_len; + if (frame_desc->actual_length >= _urbd->xfer_len) + { + xfer_done = 1; + frame_desc->status = 0; + } + } + } + else + #endif + if (_ifxhc->is_in) + { + hctsiz_data_t hctsiz; + hctsiz.d32 = ifxusb_rreg(&_hc_regs->hctsiz); + _urb->actual_length += (_ifxhc->xfer_len - hctsiz.b.xfersize); +#ifdef __INTRINCRETRY__ + if(_urbd->epqh->ep_type==IFXUSB_EP_TYPE_INTR) + { + if(_ifxhc->xfer_len != hctsiz.b.xfersize) + { + xfer_done = 1; + _urbd->status = 0; + } + } + else +#endif + if ((hctsiz.b.xfersize != 0) || (_urb->actual_length >= _urb->transfer_buffer_length)) + { + xfer_done = 1; + _urbd->status = 0; + if(_urb->transfer_flags & URB_SHORT_NOT_OK) + { + if (_urb->actual_length < _urb->transfer_buffer_length) + _urbd->status = -EREMOTEIO; + } + } + } + else if(_urb->transfer_buffer_length%_ifxhc->mps) // OUT without ZLP + { + if (_ifxhc->split) + _urb->actual_length += _ifxhc->ssplit_out_xfer_count; + else + _urb->actual_length += _ifxhc->xfer_len; + if (_urb->actual_length >= _urb->transfer_buffer_length) + { + xfer_done = 1; + _urbd->status = 0; + } + } + else if (_urb->actual_length >= _urb->transfer_buffer_length) //OUT with ZLP + { + xfer_done = 1; + _urbd->status = 0; + } + else //OUT without ZLP, unfinished + { + if (_ifxhc->split) + _urb->actual_length += _ifxhc->ssplit_out_xfer_count; + else + _urb->actual_length += _ifxhc->xfer_len; + if (!_ifxhc->short_rw && _urb->actual_length >= _urb->transfer_buffer_length) + { + xfer_done = 1; + _urbd->status = 0; + } + } + + #ifdef __DEBUG__ + { + hctsiz_data_t hctsiz; + hctsiz.d32 = ifxusb_rreg(&_hc_regs->hctsiz); + IFX_DEBUGPL(DBG_HCDV, "IFXUSB: %s: %s, channel %d\n", + __func__, (_ifxhc->is_in ? "IN" : "OUT"), _ifxhc->hc_num); + IFX_DEBUGPL(DBG_HCDV, " hc->xfer_len %d\n", _ifxhc->xfer_len); + IFX_DEBUGPL(DBG_HCDV, " hctsiz.xfersize %d\n", hctsiz.b.xfersize); + #ifdef __EN_ISOC__ + if(_urbd->epqh->ep_type==IFXUSB_EP_TYPE_ISOC) + { + IFX_DEBUGPL(DBG_HCDV, " descritor # %d\n", _urbd->isoc_frame_index); + IFX_DEBUGPL(DBG_HCDV, " buffer_length %d\n", + _urb->iso_frame_desc[_urbd->isoc_frame_index].length); + IFX_DEBUGPL(DBG_HCDV, " actual_length %d\n", _urb->iso_frame_desc[_urbd->isoc_frame_index].actual_length); + } + else + #endif + { + IFX_DEBUGPL(DBG_HCDV, " urb->transfer_buffer_length %d\n", + _urb->transfer_buffer_length); + IFX_DEBUGPL(DBG_HCDV, " urb->actual_length %d\n", _urb->actual_length); + } + } + #endif + return xfer_done; +} + +#ifdef __EN_ISOC__ + static void next_isoc_sub(unsigned long data) + { + ifxhcd_urbd_t *urbd; + ifxhcd_hcd_t *ifxhcd; + + urbd=((ifxhcd_urbd_t *)data); + ifxhcd=urbd->epqh->ifxhcd; + + if (!urbd->epqh) + IFX_ERROR("%s: invalid epqd\n",__func__); + #if defined(__UNALIGNED_BUF_ADJ__) + else + { + if( urbd->aligned_checked && +// urbd->using_aligned_buf && + urbd->xfer_buff && + urbd->is_in) + { + uint8_t *buf; + + buf=urbd->xfer_buff; + buf+=urbd->urb->iso_frame_desc[urbd->isoc_frame_index].offset; + memcpy(buf,urbd->aligned_buf,urbd->urb->iso_frame_desc[urbd->isoc_frame_index].length); + } +// urbd->using_aligned_buf=0; +// urbd->using_aligned_setup=0; + } + #endif + + urbd->isoc_frame_index++; + if(urbd->isoc_frame_index>=urbd->urb->number_of_packets) + release_channel(ifxhcd,urbd->epqh->hc,HC_XFER_URB_COMPLETE); + else + init_hc(urbd->epqh); + } +#endif + +/*! + \fn static void complete_channel(ifxhcd_hcd_t *_ifxhcd, + ifxhcd_hc_t *_ifxhc, + ifxhcd_urbd_t *_urbd) + \brief Complete the transaction on the channel. + \param _ifxhcd Pointer to the sate of HCD structure + \param _ifxhc Pointer to host channel descriptor + \param _urbd Pointer to URB descriptor + \return None + \ingroup IFXUSB_HCD + */ +static void complete_channel(ifxhcd_hcd_t *_ifxhcd, + ifxhcd_hc_t *_ifxhc, + ifxhcd_urbd_t *_urbd) +{ + ifxusb_hc_regs_t *hc_regs = _ifxhcd->core_if.hc_regs[_ifxhc->hc_num]; + struct urb *urb = NULL; + ifxhcd_epqh_t *epqh = NULL; + int urb_xfer_done; + + IFX_DEBUGPL(DBG_HCD, "--Complete Channel %d : \n", _ifxhc->hc_num); + + if(!_urbd) + { + IFX_ERROR("ERROR %s():%d urbd=%p\n",__func__,__LINE__,_urbd); + return; + } + + urb = _urbd->urb; + epqh = _urbd->epqh; + + if(!epqh) + { + release_channel(_ifxhcd,_ifxhc,HC_XFER_NO_EPQH); + return; + } + if(!urb || (unsigned long)urb->hcpriv!=(unsigned long)_urbd) + { + release_channel(_ifxhcd,_ifxhc,HC_XFER_NO_URB); + return; + } + + if (_ifxhc->split) + _ifxhc->split = 1; + + switch (epqh->ep_type) + { + case IFXUSB_EP_TYPE_CTRL: + switch (_ifxhc->control_phase) + { + case IFXHCD_CONTROL_SETUP: + if (_urbd->xfer_len > 0) + { + _ifxhc->control_phase = IFXHCD_CONTROL_DATA; + IFX_DEBUGPL(DBG_HCDV, " Control setup transaction done Data Stage now\n"); + _ifxhc->is_in = _urbd->is_in; + _ifxhc->xfer_len = _urbd->xfer_len; + #if defined(__UNALIGNED_BUF_ADJ__) + if(_urbd->aligned_buf) + _ifxhc->xfer_buff = _urbd->aligned_buf; + else + #endif + _ifxhc->xfer_buff = _urbd->xfer_buff; + #ifdef __NAKSTOP__ + if(!_ifxhc->split) + { + #ifdef __INNAKSTOP_CTRL__ + if(_ifxhc->is_in) + _ifxhc->stop_on=1; + #endif + #ifdef __PINGSTOP_CTRL__ + if(!_ifxhc->is_in) + _ifxhc->stop_on=1; + #endif + } + #endif + } + else + { + IFX_DEBUGPL(DBG_HCDV, " Control setup transaction done Status Stage now\n"); + _ifxhc->control_phase = IFXHCD_CONTROL_STATUS; + _ifxhc->is_in = 1; + _ifxhc->xfer_len = 0; + _ifxhc->xfer_buff = _ifxhcd->status_buf; + #ifdef __NAKSTOP__ + _ifxhc->stop_on=0; + #endif + } + if(_ifxhc->is_in) + _ifxhc->short_rw =0; + else + _ifxhc->short_rw =(urb->transfer_flags & URB_ZERO_PACKET)?1:0; + _ifxhc->data_pid_start = IFXUSB_HC_PID_DATA1; + _ifxhc->xfer_count = 0; + _ifxhc->halt_status = HC_XFER_NO_HALT_STATUS; + _ifxhc->phase=HC_WAITING; + ifxhcd_hc_start(_ifxhcd, _ifxhc); + break; + case IFXHCD_CONTROL_DATA: + urb_xfer_done = update_urb_state_xfer_comp(_ifxhc, hc_regs, urb, _urbd); + if (urb_xfer_done) + { + _ifxhc->control_phase = IFXHCD_CONTROL_STATUS; + IFX_DEBUGPL(DBG_HCDV, " Control data transaction done Status Stage now\n"); + _ifxhc->is_in = (_urbd->is_in)?0:1; + _ifxhc->xfer_len = 0; + _ifxhc->xfer_count = 0; + _ifxhc->xfer_buff = _ifxhcd->status_buf; + _ifxhc->halt_status = HC_XFER_NO_HALT_STATUS; + _ifxhc->data_pid_start = IFXUSB_HC_PID_DATA1; + if(_ifxhc->is_in) + _ifxhc->short_rw =0; + else + _ifxhc->short_rw =1; + #ifdef __NAKSTOP__ + _ifxhc->stop_on=0; + #endif + } + else // continue + { + IFX_DEBUGPL(DBG_HCDV, " Control data transaction continue\n"); + _ifxhc->xfer_len = _urbd->xfer_len - urb->actual_length; + _ifxhc->xfer_count = urb->actual_length; + _ifxhc->halt_status = HC_XFER_NO_HALT_STATUS; + _ifxhc->data_pid_start = read_data_toggle(hc_regs); + } + _ifxhc->phase=HC_WAITING; + ifxhcd_hc_start(_ifxhcd, _ifxhc); + break; + case IFXHCD_CONTROL_STATUS: + IFX_DEBUGPL(DBG_HCDV, " Control status transaction done\n"); + if (_urbd->status == -EINPROGRESS) + _urbd->status = 0; + release_channel(_ifxhcd,_ifxhc,HC_XFER_URB_COMPLETE); + break; + } + break; + case IFXUSB_EP_TYPE_BULK: + IFX_DEBUGPL(DBG_HCDV, " Bulk transfer complete\n"); + urb_xfer_done = update_urb_state_xfer_comp(_ifxhc, hc_regs, urb, _urbd); + if (urb_xfer_done) + release_channel(_ifxhcd,_ifxhc,HC_XFER_URB_COMPLETE); + else + { + _ifxhc->xfer_len = _urbd->xfer_len - urb->actual_length; + _ifxhc->xfer_count = urb->actual_length; + _ifxhc->halt_status = HC_XFER_NO_HALT_STATUS; + _ifxhc->data_pid_start = read_data_toggle(hc_regs); + _ifxhc->phase=HC_WAITING; + ifxhcd_hc_start(_ifxhcd, _ifxhc); + } + break; + case IFXUSB_EP_TYPE_INTR: + urb_xfer_done = update_urb_state_xfer_comp(_ifxhc, hc_regs, urb, _urbd); + + #ifdef __INTRINCRETRY__ + if(!urb_xfer_done) + release_channel(_ifxhcd,_ifxhc,HC_XFER_INTR_NAK_RETRY); + else + #endif + release_channel(_ifxhcd,_ifxhc,HC_XFER_URB_COMPLETE); + break; + case IFXUSB_EP_TYPE_ISOC: + #ifdef __EN_ISOC__ + urb_xfer_done = update_urb_state_xfer_comp(_ifxhc, hc_regs, urb, _urbd); + if (urb_xfer_done) + { + #if defined(__UNALIGNED_BUF_ADJ__) + if(in_irq()) + { + if(!epqh->tasklet_next_isoc.func) + { + epqh->tasklet_next_isoc.next = NULL; + epqh->tasklet_next_isoc.state = 0; + atomic_set( &epqh->tasklet_next_isoc.count, 0); + epqh->tasklet_next_isoc.func = next_isoc_sub; + epqh->tasklet_next_isoc.data = (unsigned long)_urbd; + } + tasklet_schedule(&epqh->tasklet_next_isoc); + } + else + #endif + { + next_isoc_sub((unsigned long)_urbd); + } + } + else + { + struct usb_iso_packet_descriptor *frame_desc; + frame_desc = &urb->iso_frame_desc[_urbd->isoc_frame_index]; + _ifxhc->xfer_len = _urbd->xfer_len - frame_desc->actual_length; + _ifxhc->xfer_count = frame_desc->actual_length; + _ifxhc->halt_status = HC_XFER_NO_HALT_STATUS; + _ifxhc->data_pid_start = read_data_toggle(hc_regs); + _ifxhc->phase=HC_WAITING; + ifxhcd_hc_start(_ifxhcd, _ifxhc); + } + #endif + break; + } +} + + + +//////////////////////////////////////////////////////////////////////////////////////////////////////////////////// +//////////////////////////////////////////////////////////////////////////////////////////////////////////////////// +//////////////////////////////////////////////////////////////////////////////////////////////////////////////////// +static int32_t chhltd_ctrl_rx_nonsplit(ifxhcd_hcd_t *_ifxhcd, + ifxhcd_hc_t *_ifxhc, + ifxusb_hc_regs_t *_hc_regs, + ifxhcd_urbd_t *_urbd) +{ + hcint_data_t hcint; + hcint_data_t hcintmsk; + hctsiz_data_t hctsiz; + + hcint.d32 = ifxusb_rreg(&_hc_regs->hcint); + hcintmsk.d32 = ifxusb_rreg(&_hc_regs->hcintmsk); + hctsiz.d32 = ifxusb_rreg(&_hc_regs->hctsiz); + + disable_hc_int(_hc_regs,ack); + disable_hc_int(_hc_regs,nak); + disable_hc_int(_hc_regs,nyet); + + #ifdef __INNAKSTOP_CTRL__ + if (_ifxhc->halt_status == HC_XFER_NAK) + { + if(_ifxhc->control_phase == IFXHCD_CONTROL_DATA) + { + u32 actual_length; + actual_length = _urbd->urb->actual_length + (_ifxhc->xfer_len - hctsiz.b.xfersize); + + if(_urbd->xfer_len && actual_length >= _urbd->xfer_len) + { + _urbd->error_count =0; + complete_channel(_ifxhcd, _ifxhc, _urbd); + } + else + { + _ifxhc->xfer_count = + _urbd->urb->actual_length = actual_length; + _ifxhc->xfer_len = _urbd->xfer_len - actual_length; + _ifxhc->data_pid_start = read_data_toggle(_hc_regs); + _ifxhc->halt_status = HC_XFER_NO_HALT_STATUS; + _ifxhc->phase=HC_WAITING; + ifxhcd_hc_start(_ifxhcd, _ifxhc); + } + } + else + { + printk(KERN_INFO "Warning: %s() %d Invalid CTRL Phase:%d\n",__func__,__LINE__,_ifxhc->control_phase); + release_channel(_ifxhcd, _ifxhc, _ifxhc->halt_status); + } + return 1; + } + #endif + + if (hcint.b.xfercomp || hcint.d32 == 0x02) + { + _urbd->error_count =0; + complete_channel(_ifxhcd, _ifxhc, _urbd); + return 1; + } + else if (hcint.b.stall) + { + _urbd->error_count =0; + // ZLP shortcut + #if 0 + if(hctsiz.b.pktcnt==0) + complete_channel(_ifxhcd, _ifxhc, _urbd); + else + #endif + #if 0 + if(_ifxhc->control_phase == IFXHCD_CONTROL_STATUS) + complete_channel(_ifxhcd, _ifxhc, _urbd); + else + #endif + { + if(_ifxhc->control_phase == IFXHCD_CONTROL_DATA) + _urbd->urb->actual_length += (_ifxhc->xfer_len - hctsiz.b.xfersize); +// if( _urbd->urb->actual_length > _ifxhc->xfer_len) _urbd->urb->actual_length = _urbd->xfer_len; + release_channel(_ifxhcd, _ifxhc, HC_XFER_STALL); + } + return 1; + } + else if (hcint.b.bblerr) + { + _urbd->error_count =0; + + // ZLP shortcut + #if 0 + if(hctsiz.b.pktcnt==0) + complete_channel(_ifxhcd, _ifxhc, _urbd); + else + #endif + #if 0 + if(_ifxhc->control_phase == IFXHCD_CONTROL_STATUS) + complete_channel(_ifxhcd, _ifxhc, _urbd); + else + #endif + { + if(_ifxhc->control_phase == IFXHCD_CONTROL_DATA) + _urbd->urb->actual_length += (_ifxhc->xfer_len - hctsiz.b.xfersize); +// if( _urbd->urb->actual_length > _ifxhc->xfer_len) _urbd->urb->actual_length = _urbd->xfer_len; + release_channel(_ifxhcd, _ifxhc, HC_XFER_BABBLE_ERR); + } + return 1; + } + else if (hcint.b.xacterr) + { + // ZLP shortcut + #if 1 + if(hctsiz.b.pktcnt==0) + { + _urbd->error_count =0; + complete_channel(_ifxhcd, _ifxhc, _urbd); + } + else + #endif + #if 1 + if(_ifxhc->control_phase == IFXHCD_CONTROL_STATUS) + { + _urbd->error_count =0; + complete_channel(_ifxhcd, _ifxhc, _urbd); + } + else + #endif + if(_ifxhc->control_phase == IFXHCD_CONTROL_DATA) + { + #if 1 + _urbd->error_count =0; + complete_channel(_ifxhcd, _ifxhc, _urbd); + #else + u32 actual_length; + actual_length = _urbd->urb->actual_length + (_ifxhc->xfer_len - hctsiz.b.xfersize); + if(actual_length >= _urbd->xfer_len) + { + _urbd->error_count =0; + complete_channel(_ifxhcd, _ifxhc, _urbd); + } + else + { + _urbd->error_count++; + _ifxhc->xfer_count = + _urbd->urb->actual_length = actual_length; + _ifxhc->xfer_len = _urbd->xfer_len - actual_length; + _ifxhc->data_pid_start = read_data_toggle(_hc_regs); + if (_urbd->error_count >= 3) + { + _urbd->error_count =0; + release_channel(_ifxhcd, _ifxhc, HC_XFER_XACT_ERR); + } + else + { + _ifxhc->erron=1; + _ifxhc->phase=HC_WAITING; + ifxhcd_hc_start(_ifxhcd, _ifxhc); + } + } + #endif + } + else + { + _urbd->error_count =0; + release_channel(_ifxhcd, _ifxhc, HC_XFER_XACT_ERR); + } + return 1; + } + else if(hcint.b.datatglerr ) + { + #if 0 + #if 1 + _urbd->error_count =0; + complete_channel(_ifxhcd, _ifxhc, _urbd); + #else + u32 actual_length; + actual_length = _urbd->urb->actual_length + (_ifxhc->xfer_len - hctsiz.b.xfersize); + if(actual_length>=_urbd->xfer_len) + { + _urbd->error_count =0; + complete_channel(_ifxhcd, _ifxhc, _urbd); + } + else + { + _urbd->urb->actual_length = actual_length; + _ifxhc->data_pid_start = read_data_toggle(_hc_regs); + _urbd->error_count =0; + release_channel(_ifxhcd, _ifxhc, HC_XFER_DATA_TOGGLE_ERR); + } + #endif + #else + if(_ifxhc->control_phase == IFXHCD_CONTROL_DATA) + _urbd->urb->actual_length += (_ifxhc->xfer_len - hctsiz.b.xfersize); +// if( _urbd->urb->actual_length > _ifxhc->xfer_len) _urbd->urb->actual_length = _urbd->xfer_len; + release_channel(_ifxhcd, _ifxhc, HC_XFER_DATA_TOGGLE_ERR); + #endif + return 1; + } + else if(hcint.b.frmovrun ) + { + if(_ifxhc->control_phase == IFXHCD_CONTROL_DATA) + _urbd->urb->actual_length += (_ifxhc->xfer_len - hctsiz.b.xfersize); +// if( _urbd->urb->actual_length > _ifxhc->xfer_len) _urbd->urb->actual_length = _urbd->xfer_len; + release_channel(_ifxhcd, _ifxhc, HC_XFER_FRAME_OVERRUN); + return 1; + } + else + { + _urbd->error_count =0; + IFX_ERROR("ERROR %s():%d invalid chhlt condition %08X/%08X %d\n",__func__,__LINE__,hcint.d32,hcintmsk.d32,_ifxhc->halt_status); + release_channel(_ifxhcd, _ifxhc, HC_XFER_XACT_ERR); + return 1; + } + + return 0; +} +//////////////////////////////////////////////////////////////////////////////////////////////////////////////////// +static int32_t chhltd_ctrl_tx_nonsplit(ifxhcd_hcd_t *_ifxhcd, + ifxhcd_hc_t *_ifxhc, + ifxusb_hc_regs_t *_hc_regs, + ifxhcd_urbd_t *_urbd) +{ + hcint_data_t hcint; + hcint_data_t hcintmsk; + hctsiz_data_t hctsiz; + + hcint.d32 = ifxusb_rreg(&_hc_regs->hcint); + hcintmsk.d32 = ifxusb_rreg(&_hc_regs->hcintmsk); + hctsiz.d32 = ifxusb_rreg(&_hc_regs->hctsiz); + + disable_hc_int(_hc_regs,ack); + disable_hc_int(_hc_regs,nak); + disable_hc_int(_hc_regs,nyet); + + #ifdef __PINGSTOP_CTRL__ + if (_ifxhc->halt_status == HC_XFER_NAK) + { + if(_ifxhc->control_phase == IFXHCD_CONTROL_DATA) + { + u32 actual_length; + actual_length = _urbd->urb->actual_length + ((_ifxhc->start_pkt_count - hctsiz.b.pktcnt ) * _ifxhc->mps); + + if(_urbd->xfer_len && actual_length >= _urbd->xfer_len) + { + _urbd->error_count =0; + complete_channel(_ifxhcd, _ifxhc, _urbd); + } + else + { + _ifxhc->xfer_count = + _urbd->urb->actual_length = actual_length; + _ifxhc->xfer_len = _urbd->xfer_len - actual_length; + _ifxhc->data_pid_start = read_data_toggle(_hc_regs); + _ifxhc->halt_status = HC_XFER_NO_HALT_STATUS; + _ifxhc->phase=HC_WAITING; + ifxhcd_hc_start(_ifxhcd, _ifxhc); + } + } + else + { + printk(KERN_INFO "Warning: %s() %d Invalid CTRL Phase:%d\n",__func__,__LINE__,_ifxhc->control_phase); + release_channel(_ifxhcd, _ifxhc, _ifxhc->halt_status); + } + return 1; + } + #endif + + + if (hcint.b.xfercomp || hcint.d32 == 0x02) + { + _urbd->error_count =0; + if(_ifxhc->xfer_len==0 && !hcint.b.ack && hcint.b.nak) + { + // Walkaround: When sending ZLP and receive NAK but also issue CMPT intr + // Solution: NoSplit: Resend at next SOF + // Split : Resend at next SOF with SSPLIT + if(hcint.b.nyet) + _ifxhc->epqh->do_ping=1; + + _ifxhc->xfer_len = 0; + _ifxhc->xfer_count = 0; + _ifxhc->halt_status = HC_XFER_NO_HALT_STATUS; + _ifxhc->phase=HC_WAITING; + ifxhcd_hc_start(_ifxhcd, _ifxhc); + } + else + { + if(hcint.b.nyet) + _ifxhc->epqh->do_ping=1; + complete_channel(_ifxhcd, _ifxhc, _urbd); + } + return 1; + } + else if (hcint.b.stall) + { + _urbd->error_count =0; + + // ZLP shortcut + #if 1 + if(hctsiz.b.pktcnt==0) + complete_channel(_ifxhcd, _ifxhc, _urbd); + else + #endif + { + if(_ifxhc->control_phase == IFXHCD_CONTROL_DATA) + { + _urbd->urb->actual_length += ((_ifxhc->start_pkt_count - hctsiz.b.pktcnt ) * _ifxhc->mps); +// if( _urbd->urb->actual_length > _ifxhc->xfer_len) _urbd->urb->actual_length = _urbd->xfer_len; + } + release_channel(_ifxhcd, _ifxhc, HC_XFER_STALL); + } + return 1; + } + else if (hcint.b.xacterr) + { + // ZLP shortcut + #if 1 + if(hctsiz.b.pktcnt==0) + { + _urbd->error_count =0; + complete_channel(_ifxhcd, _ifxhc, _urbd); + } + else + #endif + if(_ifxhc->control_phase == IFXHCD_CONTROL_STATUS) + { + _urbd->error_count =0; + complete_channel(_ifxhcd, _ifxhc, _urbd); + } + else if(_ifxhc->control_phase == IFXHCD_CONTROL_SETUP) + { + _urbd->error_count =0; + release_channel(_ifxhcd, _ifxhc, HC_XFER_XACT_ERR); + } + else if(_ifxhc->control_phase == IFXHCD_CONTROL_DATA) + { + #if 0 + _urbd->error_count =0; + complete_channel(_ifxhcd, _ifxhc, _urbd); + #else + u32 actual_length; + actual_length = _urbd->urb->actual_length + ((_ifxhc->start_pkt_count - hctsiz.b.pktcnt ) * _ifxhc->mps); + if(actual_length>=_urbd->xfer_len) + { + _urbd->error_count =0; + complete_channel(_ifxhcd, _ifxhc, _urbd); + } + else + { + _urbd->error_count++; + _ifxhc->xfer_count = + _urbd->urb->actual_length = actual_length; + _ifxhc->xfer_len = _urbd->xfer_len - actual_length; + _ifxhc->data_pid_start = read_data_toggle(_hc_regs); + if (_urbd->error_count >= 3) + { + _urbd->error_count =0; + release_channel(_ifxhcd, _ifxhc, HC_XFER_XACT_ERR); + } + else + { + _ifxhc->erron=1; + _ifxhc->phase=HC_WAITING; + _ifxhc->epqh->do_ping=1; + ifxhcd_hc_start(_ifxhcd, _ifxhc); + } + } + #endif + } + else + { + _urbd->error_count =0; + release_channel(_ifxhcd, _ifxhc, HC_XFER_XACT_ERR); + } + return 1; + } + else if(hcint.b.bblerr ) + { + if(_ifxhc->control_phase == IFXHCD_CONTROL_DATA) + { + _urbd->urb->actual_length += ((_ifxhc->start_pkt_count - hctsiz.b.pktcnt ) * _ifxhc->mps); +// if( _urbd->urb->actual_length > _ifxhc->xfer_len) _urbd->urb->actual_length = _urbd->xfer_len; + } + release_channel(_ifxhcd, _ifxhc, HC_XFER_BABBLE_ERR); + return 1; + } + else if(hcint.b.nak || hcint.b.nyet) + { + #ifdef __PINGSTOP_CTRL__ + _urbd->error_count =0; + IFX_ERROR("ERROR %s():%d invalid chhlt condition\n",__func__,__LINE__); + release_channel(_ifxhcd, _ifxhc, HC_XFER_XACT_ERR); + #else + // ZLP shortcut + #if 1 + if(hctsiz.b.pktcnt==0) + { + _urbd->error_count =0; + complete_channel(_ifxhcd, _ifxhc, _urbd); + } + else + #endif + if(_ifxhc->control_phase == IFXHCD_CONTROL_STATUS) + { + _urbd->error_count =0; + complete_channel(_ifxhcd, _ifxhc, _urbd); + } + else if(_ifxhc->control_phase == IFXHCD_CONTROL_SETUP) + { + _urbd->error_count =0; + IFX_ERROR("ERROR %s():%d invalid chhlt condition\n",__func__,__LINE__); + release_channel(_ifxhcd, _ifxhc, HC_XFER_XACT_ERR); + } + else if(_ifxhc->control_phase == IFXHCD_CONTROL_DATA) + { + #if 0 + _ifxhc->epqh->do_ping=1; + _urbd->error_count =0; + complete_channel(_ifxhcd, _ifxhc, _urbd); + #else + u32 actual_length; + _ifxhc->epqh->do_ping=1; + actual_length = _urbd->urb->actual_length + ((_ifxhc->start_pkt_count - hctsiz.b.pktcnt ) * _ifxhc->mps); + if(actual_length>=_urbd->xfer_len) + { + _urbd->error_count =0; + complete_channel(_ifxhcd, _ifxhc, _urbd); + } + else + { + _ifxhc->xfer_count = + _urbd->urb->actual_length = actual_length; + _ifxhc->xfer_len = _urbd->xfer_len - actual_length; + _ifxhc->data_pid_start = read_data_toggle(_hc_regs); + _ifxhc->erron=1; + _ifxhc->epqh->do_ping=1; + _ifxhc->phase=HC_WAITING; + ifxhcd_hc_start(_ifxhcd, _ifxhc); + } + #endif + } + #endif + return 1; + } + else if(hcint.b.datatglerr ) + { + if(_ifxhc->control_phase == IFXHCD_CONTROL_DATA) + { + _urbd->urb->actual_length += ((_ifxhc->start_pkt_count - hctsiz.b.pktcnt ) * _ifxhc->mps); +// if( _urbd->urb->actual_length > _ifxhc->xfer_len) _urbd->urb->actual_length = _urbd->xfer_len; + } + _urbd->error_count =0; + release_channel(_ifxhcd, _ifxhc, HC_XFER_DATA_TOGGLE_ERR); + return 1; + } + else if(hcint.b.frmovrun ) + { + if(_ifxhc->control_phase == IFXHCD_CONTROL_DATA) + { + _urbd->urb->actual_length += ((_ifxhc->start_pkt_count - hctsiz.b.pktcnt ) * _ifxhc->mps); +// if( _urbd->urb->actual_length > _ifxhc->xfer_len) _urbd->urb->actual_length = _urbd->xfer_len; + } + _urbd->error_count =0; + release_channel(_ifxhcd, _ifxhc, HC_XFER_FRAME_OVERRUN); + return 1; + } + else + { + _urbd->error_count =0; + IFX_ERROR("ERROR %s():%d invalid chhlt condition %08X/%08X %d\n",__func__,__LINE__,hcint.d32,hcintmsk.d32,_ifxhc->halt_status); + release_channel(_ifxhcd, _ifxhc, HC_XFER_XACT_ERR); + return 1; + } + return 0; +} +//////////////////////////////////////////////////////////////////////////////////////////////////////////////////// +//////////////////////////////////////////////////////////////////////////////////////////////////////////////////// +static int32_t chhltd_bulk_rx_nonsplit(ifxhcd_hcd_t *_ifxhcd, + ifxhcd_hc_t *_ifxhc, + ifxusb_hc_regs_t *_hc_regs, + ifxhcd_urbd_t *_urbd) +{ + hcint_data_t hcint; + hcint_data_t hcintmsk; + hctsiz_data_t hctsiz; + + hcint.d32 = ifxusb_rreg(&_hc_regs->hcint); + hcintmsk.d32 = ifxusb_rreg(&_hc_regs->hcintmsk); + hctsiz.d32 = ifxusb_rreg(&_hc_regs->hctsiz); + + disable_hc_int(_hc_regs,ack); + disable_hc_int(_hc_regs,nak); + disable_hc_int(_hc_regs,nyet); + + #ifdef __INNAKSTOP_BULK__ + if(_ifxhc->halt_status == HC_XFER_NAK) + { + u32 actual_length; + actual_length = _urbd->urb->actual_length + (_ifxhc->xfer_len - hctsiz.b.xfersize); + + if( + (_urbd->xfer_len && actual_length>=_urbd->xfer_len) + || hctsiz.b.pktcnt==0 + || (hctsiz.b.xfersize % _ifxhc->mps)>0 + ) + { + _urbd->error_count =0; + complete_channel(_ifxhcd, _ifxhc, _urbd); + } + else + { + _urbd->urb->actual_length = actual_length; + _ifxhc->xfer_len = _urbd->xfer_len - _urbd->urb->actual_length; + _ifxhc->xfer_count = _urbd->urb->actual_length; + _ifxhc->data_pid_start = read_data_toggle(_hc_regs); + _ifxhc->halt_status = HC_XFER_NO_HALT_STATUS; + _ifxhc->phase=HC_WAITING; + ifxhcd_hc_start(_ifxhcd, _ifxhc); + } + return 1; + } + #endif + + if (hcint.b.xfercomp || hcint.d32 == 0x02) + { + _urbd->error_count =0; + complete_channel(_ifxhcd, _ifxhc, _urbd); + return 1; + } + else if (hcint.b.stall) + { + _urbd->error_count =0; + // ZLP shortcut + #if 0 + if(hctsiz.b.pktcnt==0) + complete_channel(_ifxhcd, _ifxhc, _urbd); + else + #endif + { + _urbd->urb->actual_length += (_ifxhc->xfer_len - hctsiz.b.xfersize); + release_channel(_ifxhcd, _ifxhc, HC_XFER_STALL); + } + return 1; + } + else if (hcint.b.bblerr) + { + _urbd->error_count =0; + + // ZLP shortcut + #if 0 + if(hctsiz.b.pktcnt==0) + complete_channel(_ifxhcd, _ifxhc, _urbd); + else + #endif + { + _urbd->urb->actual_length += (_ifxhc->xfer_len - hctsiz.b.xfersize); + release_channel(_ifxhcd, _ifxhc, HC_XFER_BABBLE_ERR); + } + return 1; + } + else if (hcint.b.xacterr) + { + // ZLP shortcut + #if 1 + if(hctsiz.b.pktcnt==0) + { + _urbd->error_count =0; + complete_channel(_ifxhcd, _ifxhc, _urbd); + } + else + #endif + { + #if 0 + _urbd->error_count =0; + complete_channel(_ifxhcd, _ifxhc, _urbd); + #else + u32 actual_length; + actual_length = _urbd->urb->actual_length + (_ifxhc->xfer_len - hctsiz.b.xfersize); + if(actual_length >= _urbd->xfer_len) + { + _urbd->error_count =0; + complete_channel(_ifxhcd, _ifxhc, _urbd); + } + else + { + _urbd->error_count++; + _ifxhc->xfer_count = + _urbd->urb->actual_length = actual_length; + _ifxhc->xfer_len = _urbd->xfer_len - actual_length; + _ifxhc->data_pid_start = read_data_toggle(_hc_regs); + if (_urbd->error_count >= 3) + { + _urbd->error_count =0; + release_channel(_ifxhcd, _ifxhc, HC_XFER_XACT_ERR); + } + else + { + _ifxhc->erron=1; + _ifxhc->phase=HC_WAITING; + ifxhcd_hc_start(_ifxhcd, _ifxhc); + } + } + #endif + } + return 1; + } + else if(hcint.b.datatglerr ) + { + #if 0 + #if 1 + _urbd->error_count =0; + complete_channel(_ifxhcd, _ifxhc, _urbd); + #else + u32 actual_length; + actual_length = _urbd->urb->actual_length + (_ifxhc->xfer_len - hctsiz.b.xfersize); + if(actual_length >= _urbd->xfer_len) + { + _urbd->error_count =0; + complete_channel(_ifxhcd, _ifxhc, _urbd); + } + else + { + _urbd->urb->actual_length = actual_length; + _ifxhc->data_pid_start = read_data_toggle(_hc_regs); + _urbd->error_count =0; + release_channel(_ifxhcd, _ifxhc, HC_XFER_DATA_TOGGLE_ERR); + } + #endif + #else + _urbd->urb->actual_length += (_ifxhc->xfer_len - hctsiz.b.xfersize); +// if( _urbd->urb->actual_length > _ifxhc->xfer_len) _urbd->urb->actual_length = _urbd->xfer_len; + release_channel(_ifxhcd, _ifxhc, HC_XFER_DATA_TOGGLE_ERR); + #endif + return 1; + } + else if(hcint.b.frmovrun ) + { +// if( _urbd->urb->actual_length > _ifxhc->xfer_len) _urbd->urb->actual_length = _urbd->xfer_len; + release_channel(_ifxhcd, _ifxhc, HC_XFER_FRAME_OVERRUN); + return 1; + } + else + { + _urbd->error_count =0; + IFX_ERROR("ERROR %s():%d invalid chhlt condition %08X/%08X %d sz:%d/%d/%d/%d\n",__func__,__LINE__,hcint.d32,hcintmsk.d32,_ifxhc->halt_status , hctsiz.b.xfersize, _ifxhc->xfer_len-_ifxhc->xfer_len,_ifxhc->xfer_len,_urbd->xfer_len); + release_channel(_ifxhcd, _ifxhc, HC_XFER_XACT_ERR); + return 1; + } + return 0; +} +//////////////////////////////////////////////////////////////////////////////////////////////////////////////////// +static int32_t chhltd_bulk_tx_nonsplit(ifxhcd_hcd_t *_ifxhcd, + ifxhcd_hc_t *_ifxhc, + ifxusb_hc_regs_t *_hc_regs, + ifxhcd_urbd_t *_urbd) +{ + hcint_data_t hcint; + hcint_data_t hcintmsk; + hctsiz_data_t hctsiz; + int out_nak_enh = 0; + + if (_ifxhcd->core_if.snpsid >= 0x4f54271a && _ifxhc->speed == IFXUSB_EP_SPEED_HIGH) + out_nak_enh = 1; + + hcint.d32 = ifxusb_rreg(&_hc_regs->hcint); + hcintmsk.d32 = ifxusb_rreg(&_hc_regs->hcintmsk); + hctsiz.d32 = ifxusb_rreg(&_hc_regs->hctsiz); + disable_hc_int(_hc_regs,ack); + disable_hc_int(_hc_regs,nak); + disable_hc_int(_hc_regs,nyet); + + #ifdef __PINGSTOP_BULK__ + if (_ifxhc->halt_status == HC_XFER_NAK) + { + u32 actual_length; + actual_length = _urbd->urb->actual_length + ((_ifxhc->start_pkt_count - hctsiz.b.pktcnt ) * _ifxhc->mps); + + if(_urbd->xfer_len && actual_length >= _urbd->xfer_len) + { + _urbd->error_count =0; + complete_channel(_ifxhcd, _ifxhc, _urbd); + } + else + { + _ifxhc->xfer_count = + _urbd->urb->actual_length = actual_length; + _ifxhc->xfer_len = _urbd->xfer_len - actual_length; + _ifxhc->data_pid_start = read_data_toggle(_hc_regs); + _ifxhc->halt_status = HC_XFER_NO_HALT_STATUS; + _ifxhc->phase=HC_WAITING; + ifxhcd_hc_start(_ifxhcd, _ifxhc); + } + return 1; + } + #endif + + if (hcint.b.xfercomp || hcint.d32 == 0x02) + { + _urbd->error_count =0; + if(_ifxhc->xfer_len==0 && !hcint.b.ack && hcint.b.nak) + { + // Walkaround: When sending ZLP and receive NAK but also issue CMPT intr + // Solution: NoSplit: Resend at next SOF + // Split : Resend at next SOF with SSPLIT + if(hcint.b.nyet) + _ifxhc->epqh->do_ping=1; + + _ifxhc->xfer_len = 0; + _ifxhc->xfer_count = 0; + _ifxhc->halt_status = HC_XFER_NO_HALT_STATUS; + _ifxhc->phase=HC_WAITING; + ifxhcd_hc_start(_ifxhcd, _ifxhc); + } + else + { + if(hcint.b.nyet) + _ifxhc->epqh->do_ping=1; + complete_channel(_ifxhcd, _ifxhc, _urbd); + } + return 1; + } + else if (hcint.b.stall) + { + _urbd->error_count =0; + + // ZLP shortcut + #if 1 + if(hctsiz.b.pktcnt==0) + complete_channel(_ifxhcd, _ifxhc, _urbd); + else + #endif + { + _urbd->urb->actual_length += ((_ifxhc->start_pkt_count - hctsiz.b.pktcnt ) * _ifxhc->mps); + if(_urbd->urb->actual_length>_urbd->xfer_len) _urbd->urb->actual_length=_urbd->xfer_len; + release_channel(_ifxhcd, _ifxhc, HC_XFER_STALL); + } + return 1; + } + else if (hcint.b.xacterr) + { + // ZLP shortcut + #if 1 + if(hctsiz.b.pktcnt==0) + { + _urbd->error_count =0; + complete_channel(_ifxhcd, _ifxhc, _urbd); + } + else + #endif + { + #if 0 + _urbd->error_count =0; + complete_channel(_ifxhcd, _ifxhc, _urbd); + #else + u32 actual_length; + actual_length = _urbd->urb->actual_length + ((_ifxhc->start_pkt_count - hctsiz.b.pktcnt ) * _ifxhc->mps); + if(actual_length >= _urbd->xfer_len) + { + _urbd->error_count =0; + complete_channel(_ifxhcd, _ifxhc, _urbd); + } + else + { + _urbd->error_count++; + _ifxhc->xfer_count = + _urbd->urb->actual_length = actual_length; + _ifxhc->xfer_len = _urbd->xfer_len - actual_length; + _ifxhc->data_pid_start = read_data_toggle(_hc_regs); + if (_urbd->error_count >= 3) + { + _urbd->error_count =0; + release_channel(_ifxhcd, _ifxhc, HC_XFER_XACT_ERR); + } + else + { + _ifxhc->erron=1; + _ifxhc->phase=HC_WAITING; + _ifxhc->epqh->do_ping=1; + ifxhcd_hc_start(_ifxhcd, _ifxhc); + } + } + #endif + } + return 1; + } + else if(hcint.b.bblerr ) + { + _urbd->urb->actual_length += ((_ifxhc->start_pkt_count - hctsiz.b.pktcnt ) * _ifxhc->mps); + if(_urbd->urb->actual_length>_urbd->xfer_len) _urbd->urb->actual_length=_urbd->xfer_len; + IFX_ERROR("ERROR %s():%d invalid packet babble\n",__func__,__LINE__); + release_channel(_ifxhcd, _ifxhc, HC_XFER_BABBLE_ERR); + return 1; + } + else if(hcint.b.nak || hcint.b.nyet) + { + #ifdef __PINGSTOP_BULK__ + _urbd->error_count =0; + IFX_ERROR("ERROR %s():%d invalid chhlt condition\n",__func__,__LINE__); + release_channel(_ifxhcd, _ifxhc, HC_XFER_XACT_ERR); + #else + // ZLP shortcut + #if 1 + if(hctsiz.b.pktcnt==0) + { + _urbd->error_count =0; + complete_channel(_ifxhcd, _ifxhc, _urbd); + } + else + #endif + { + #if 0 + _ifxhc->epqh->do_ping=1; + _urbd->error_count =0; + complete_channel(_ifxhcd, _ifxhc, _urbd); + #else + u32 actual_length; + _ifxhc->epqh->do_ping=1; + actual_length = _urbd->urb->actual_length + ((_ifxhc->start_pkt_count - hctsiz.b.pktcnt ) * _ifxhc->mps); + if(actual_length>=_urbd->xfer_len) + { + _urbd->error_count =0; + complete_channel(_ifxhcd, _ifxhc, _urbd); + } + else + { + _ifxhc->xfer_count = + _urbd->urb->actual_length = actual_length; + _ifxhc->xfer_len = _urbd->xfer_len - actual_length; + _ifxhc->data_pid_start = read_data_toggle(_hc_regs); + _ifxhc->erron=1; + _ifxhc->epqh->do_ping=1; + _ifxhc->phase=HC_WAITING; + ifxhcd_hc_start(_ifxhcd, _ifxhc); + } + #endif + } + #endif + return 1; + } + else if(hcint.b.datatglerr ) + { + _urbd->urb->actual_length += ((_ifxhc->start_pkt_count - hctsiz.b.pktcnt ) * _ifxhc->mps); +// if( _urbd->urb->actual_length > _ifxhc->xfer_len) _urbd->urb->actual_length = _urbd->xfer_len; + _urbd->error_count =0; + release_channel(_ifxhcd, _ifxhc, HC_XFER_DATA_TOGGLE_ERR); + return 1; + } + else if(hcint.b.frmovrun ) + { + _urbd->urb->actual_length += ((_ifxhc->start_pkt_count - hctsiz.b.pktcnt ) * _ifxhc->mps); +// if( _urbd->urb->actual_length > _ifxhc->xfer_len) _urbd->urb->actual_length = _urbd->xfer_len; + _urbd->error_count =0; + release_channel(_ifxhcd, _ifxhc, HC_XFER_FRAME_OVERRUN); + return 1; + } + else + { + _urbd->error_count =0; + IFX_ERROR("ERROR %s():%d invalid chhlt condition %08X/%08X %d\n",__func__,__LINE__,hcint.d32,hcintmsk.d32,_ifxhc->halt_status); + release_channel(_ifxhcd, _ifxhc, HC_XFER_XACT_ERR); + return 1; + } + return 0; +} +//////////////////////////////////////////////////////////////////////////////////////////////////////////////////// +//////////////////////////////////////////////////////////////////////////////////////////////////////////////////// +static int32_t chhltd_intr_rx_nonsplit(ifxhcd_hcd_t *_ifxhcd, + ifxhcd_hc_t *_ifxhc, + ifxusb_hc_regs_t *_hc_regs, + ifxhcd_urbd_t *_urbd) +{ + hcint_data_t hcint; + hcint_data_t hcintmsk; + hctsiz_data_t hctsiz; + + hcint.d32 = ifxusb_rreg(&_hc_regs->hcint); + hcintmsk.d32 = ifxusb_rreg(&_hc_regs->hcintmsk); + hctsiz.d32 = ifxusb_rreg(&_hc_regs->hctsiz); + disable_hc_int(_hc_regs,ack); + disable_hc_int(_hc_regs,nak); + disable_hc_int(_hc_regs,nyet); + + if (hcint.b.xfercomp || hcint.d32 == 0x02) + { + _urbd->error_count =0; + //restart INTR immediately + complete_channel(_ifxhcd, _ifxhc, _urbd); + return 1; + } + else if (hcint.b.stall) + { + _urbd->error_count =0; + + // Don't care shortcut + #if 0 + if(hctsiz.b.pktcnt==0) + complete_channel(_ifxhcd, _ifxhc, _urbd); + else + #endif + { + _urbd->urb->actual_length += (_ifxhc->xfer_len - hctsiz.b.xfersize); + release_channel(_ifxhcd, _ifxhc, HC_XFER_STALL); + } + return 1; + } + else if (hcint.b.bblerr) + { + _urbd->error_count =0; + + // Don't care shortcut + #if 0 + if(hctsiz.b.pktcnt==0) + complete_channel(_ifxhcd, _ifxhc, _urbd); + else + #endif + { + _urbd->urb->actual_length += (_ifxhc->xfer_len - hctsiz.b.xfersize); + release_channel(_ifxhcd, _ifxhc, HC_XFER_BABBLE_ERR); + } + return 1; + } + else if (hcint.b.datatglerr || hcint.b.frmovrun) + { + _urbd->error_count =0; + //restart INTR immediately + complete_channel(_ifxhcd, _ifxhc, _urbd); + return 1; + } + else if (hcint.b.xacterr) + { + // ZLP shortcut + #if 1 + if(hctsiz.b.pktcnt==0) + { + _urbd->error_count =0; + complete_channel(_ifxhcd, _ifxhc, _urbd); + } + else + #endif + { + _urbd->error_count++; + if(_urbd->error_count>=3) + { + _urbd->error_count =0; + release_channel(_ifxhcd, _ifxhc, HC_XFER_XACT_ERR); + } + else + { + _ifxhc->phase=HC_WAITING; + ifxhcd_hc_start(_ifxhcd, _ifxhc); + } + } + return 1; + } + else if(hcint.b.nyet ) + { + return 1; + } + else if (hcint.b.nak) + { + + #ifdef __INTRNAKRETRY__ + if(hctsiz.b.pktcnt) + { + release_channel(_ifxhcd, _ifxhc, HC_XFER_INTR_NAK_RETRY); + return 1; + } + #endif + _urbd->error_count =0; + //restart INTR immediately + complete_channel(_ifxhcd, _ifxhc, _urbd); + return 1; + } + else + { + _urbd->error_count =0; + //restart INTR immediately + #if 0 + if(hctsiz.b.pktcnt>0) + { + // TODO Re-initialize Channel (in next b_interval - 1 uF/F) + _ifxhc->phase=HC_WAITING; + ifxhcd_hc_start(_ifxhcd, _ifxhc); + } + else + #endif + { + complete_channel(_ifxhcd, _ifxhc, _urbd); + } + return 1; + } + + return 0; +} +//////////////////////////////////////////////////////////////////////////////////////////////////////////////////// +static int32_t chhltd_intr_tx_nonsplit(ifxhcd_hcd_t *_ifxhcd, + ifxhcd_hc_t *_ifxhc, + ifxusb_hc_regs_t *_hc_regs, + ifxhcd_urbd_t *_urbd) +{ + hcint_data_t hcint; + hcint_data_t hcintmsk; + hctsiz_data_t hctsiz; + int out_nak_enh = 0; + + if (_ifxhcd->core_if.snpsid >= 0x4f54271a && _ifxhc->speed == IFXUSB_EP_SPEED_HIGH) + out_nak_enh = 1; + + hcint.d32 = ifxusb_rreg(&_hc_regs->hcint); + hcintmsk.d32 = ifxusb_rreg(&_hc_regs->hcintmsk); + hctsiz.d32 = ifxusb_rreg(&_hc_regs->hctsiz); + + if (hcint.b.xfercomp || hcint.d32 == 0x02) + { + disable_hc_int(_hc_regs,ack); + disable_hc_int(_hc_regs,nak); + disable_hc_int(_hc_regs,nyet); + _urbd->error_count =0; + //restart INTR immediately + complete_channel(_ifxhcd, _ifxhc, _urbd); + return 1; + } + else if (hcint.b.stall) + { + disable_hc_int(_hc_regs,ack); + disable_hc_int(_hc_regs,nyet); + disable_hc_int(_hc_regs,nak); + _urbd->error_count =0; + + // Don't care shortcut + #if 0 + if(hctsiz.b.pktcnt==0) + complete_channel(_ifxhcd, _ifxhc, _urbd); + else + #endif + { + if(_ifxhc->xfer_len!=0)// !_ifxhc->is_in + _urbd->urb->actual_length += ((_ifxhc->start_pkt_count - hctsiz.b.pktcnt ) * _ifxhc->mps); + release_channel(_ifxhcd, _ifxhc, HC_XFER_STALL); + } + return 1; + } + else if(hcint.b.nak || hcint.b.frmovrun ) + { + disable_hc_int(_hc_regs,ack); + disable_hc_int(_hc_regs,nyet); + disable_hc_int(_hc_regs,nak); + _urbd->error_count =0; + //restart INTR immediately + complete_channel(_ifxhcd, _ifxhc, _urbd); + return 1; + } + else if(hcint.b.xacterr ) + { + // ZLP shortcut + #if 1 + if(hctsiz.b.pktcnt==0) + { + _urbd->error_count =0; + complete_channel(_ifxhcd, _ifxhc, _urbd); + } + else + #endif + { + _urbd->error_count++; + if(_urbd->error_count>=3) + { + _urbd->error_count =0; + release_channel(_ifxhcd, _ifxhc, HC_XFER_XACT_ERR); + } + else + { + _ifxhc->phase=HC_WAITING; + ifxhcd_hc_start(_ifxhcd, _ifxhc); + } + } + return 1; + } + else if(hcint.b.bblerr ) + { + _urbd->error_count =0; + release_channel(_ifxhcd, _ifxhc, HC_XFER_BABBLE_ERR); + return 1; + } + else if(hcint.b.datatglerr ) + { + _urbd->error_count =0; + release_channel(_ifxhcd, _ifxhc, HC_XFER_DATA_TOGGLE_ERR); + return 1; + } + return 0; +} +//////////////////////////////////////////////////////////////////////////////////////////////////////////////////// +//////////////////////////////////////////////////////////////////////////////////////////////////////////////////// +static int32_t chhltd_isoc_rx_nonsplit(ifxhcd_hcd_t *_ifxhcd, + ifxhcd_hc_t *_ifxhc, + ifxusb_hc_regs_t *_hc_regs, + ifxhcd_urbd_t *_urbd) +{ + #ifdef __EN_ISOC__ + hcint_data_t hcint; + hcint_data_t hcintmsk; + hctsiz_data_t hctsiz; + + hcint.d32 = ifxusb_rreg(&_hc_regs->hcint); + hcintmsk.d32 = ifxusb_rreg(&_hc_regs->hcintmsk); + hctsiz.d32 = ifxusb_rreg(&_hc_regs->hctsiz); + + if (hcint.b.xfercomp || hcint.b.frmovrun || hcint.d32 == 0x02) + { + _urbd->error_count=0; + disable_hc_int(_hc_regs,ack); + disable_hc_int(_hc_regs,nak); + disable_hc_int(_hc_regs,nyet); + if (hcint.b.xfercomp) + complete_channel(_ifxhcd, _ifxhc, _urbd); + else + release_channel(_ifxhcd, _ifxhc, HC_XFER_FRAME_OVERRUN); + } + else if (hcint.b.xacterr || hcint.b.bblerr) + { + #ifndef VR9Skip + if(hctsiz.b.pktcnt==0) + { + complete_channel(_ifxhcd, _ifxhc, _urbd); + } + else + { + _urbd->urb->actual_length += (_ifxhc->xfer_len - hctsiz.b.xfersize); + _ifxhc->xfer_len = _urbd->xfer_len - _urbd->urb->actual_length; + _ifxhc->xfer_count = _urbd->urb->actual_length; + _ifxhc->data_pid_start = read_data_toggle(_hc_regs); + _urbd->error_count++; + if(_urbd->error_count>=3) + { + _urbd->error_count=0; + if (hcint.b.bblerr) + release_channel(_ifxhcd, _ifxhc, HC_XFER_BABBLE_ERR); + else if (hcint.b.xacterr) + release_channel(_ifxhcd, _ifxhc, HC_XFER_XACT_ERR); + } + else + { + enable_hc_int(_hc_regs,ack); + enable_hc_int(_hc_regs,nak); + enable_hc_int(_hc_regs,nyet); + _ifxhc->phase=HC_WAITING; + ifxhcd_hc_start(_ifxhcd, _ifxhc); + } + } + #endif + } + else if(hcint.b.datatglerr ) + { + return 1; + } + else if(hcint.b.stall ) + { + return 1; + } + #endif + return 0; +} +//////////////////////////////////////////////////////////////////////////////////////////////////////////////////// +static int32_t chhltd_isoc_tx_nonsplit(ifxhcd_hcd_t *_ifxhcd, + ifxhcd_hc_t *_ifxhc, + ifxusb_hc_regs_t *_hc_regs, + ifxhcd_urbd_t *_urbd) +{ + #ifdef __EN_ISOC__ + hcint_data_t hcint; + hcint_data_t hcintmsk; + hctsiz_data_t hctsiz; + int out_nak_enh = 0; + + if (_ifxhcd->core_if.snpsid >= 0x4f54271a && _ifxhc->speed == IFXUSB_EP_SPEED_HIGH) + out_nak_enh = 1; + + hcint.d32 = ifxusb_rreg(&_hc_regs->hcint); + hcintmsk.d32 = ifxusb_rreg(&_hc_regs->hcintmsk); + hctsiz.d32 = ifxusb_rreg(&_hc_regs->hctsiz); + + if (hcint.b.xfercomp || hcint.d32 == 0x02) + { + _urbd->error_count=0; + disable_hc_int(_hc_regs,ack); + disable_hc_int(_hc_regs,nak); + disable_hc_int(_hc_regs,nyet); + complete_channel(_ifxhcd, _ifxhc, _urbd); + return 1; + } + else if (hcint.b.frmovrun) + { + #ifndef VR9Skip + _urbd->error_count=0; + disable_hc_int(_hc_regs,ack); + disable_hc_int(_hc_regs,nak); + disable_hc_int(_hc_regs,nyet); + release_channel(_ifxhcd, _ifxhc, HC_XFER_FRAME_OVERRUN); + #endif + } + else if(hcint.b.datatglerr ) + { + return 1; + } + else if(hcint.b.bblerr ) + { + #ifndef VR9Skip + if(hctsiz.b.pktcnt==0) + { + complete_channel(_ifxhcd, _ifxhc, _urbd); + } + else + { + _urbd->urb->actual_length += (_ifxhc->xfer_len - hctsiz.b.xfersize); + _ifxhc->xfer_len = _urbd->xfer_len - _urbd->urb->actual_length; + _ifxhc->xfer_count = _urbd->urb->actual_length; + _ifxhc->data_pid_start = read_data_toggle(_hc_regs); + _urbd->error_count++; + if(_urbd->error_count>=3) + { + _urbd->error_count=0; + release_channel(_ifxhcd, _ifxhc, HC_XFER_BABBLE_ERR); + } + else + { + enable_hc_int(_hc_regs,ack); + enable_hc_int(_hc_regs,nak); + enable_hc_int(_hc_regs,nyet); + _ifxhc->phase=HC_WAITING; + ifxhcd_hc_start(_ifxhcd, _ifxhc); + } + } + #endif + } + else if(hcint.b.xacterr ) + { + if(hctsiz.b.pktcnt==0) + { + complete_channel(_ifxhcd, _ifxhc, _urbd); + return 1; + } + _urbd->error_count++; + if(_urbd->error_count>=3) + { + _urbd->error_count=0; + release_channel(_ifxhcd, _ifxhc, HC_XFER_XACT_ERR); + } + else + { + _ifxhc->phase=HC_WAITING; + ifxhcd_hc_start(_ifxhcd, _ifxhc); + } + return 1; + } + else if(hcint.b.stall ) + { + return 1; + } + #endif + return 0; +} +//////////////////////////////////////////////////////////////////////////////////////////////////////////////////// +//////////////////////////////////////////////////////////////////////////////////////////////////////////////////// +//////////////////////////////////////////////////////////////////////////////////////////////////////////////////// +static int32_t chhltd_ctrl_rx_ssplit(ifxhcd_hcd_t *_ifxhcd, + ifxhcd_hc_t *_ifxhc, + ifxusb_hc_regs_t *_hc_regs, + ifxhcd_urbd_t *_urbd) +{ + hcint_data_t hcint; + hcint_data_t hcintmsk; + hctsiz_data_t hctsiz; + + hcint.d32 = ifxusb_rreg(&_hc_regs->hcint); + hcintmsk.d32 = ifxusb_rreg(&_hc_regs->hcintmsk); + hctsiz.d32 = ifxusb_rreg(&_hc_regs->hctsiz); + + disable_hc_int(_hc_regs,ack); + disable_hc_int(_hc_regs,nak); + disable_hc_int(_hc_regs,nyet); + + if (hcint.b.ack) + { + _urbd->error_count=0; + _ifxhc->split=2; + _ifxhc->data_pid_start = read_data_toggle(_hc_regs); + _ifxhc->phase=HC_WAITING; + ifxhcd_hc_start(_ifxhcd, _ifxhc); + return 1; + } + else if (hcint.b.nak) + { + _urbd->error_count = 0; + _ifxhc->phase=HC_WAITING; + ifxhcd_hc_start(_ifxhcd, _ifxhc); + return 1; + } + else if (hcint.b.xacterr) + { + _urbd->error_count++; + if(_urbd->error_count>=3) + { + _urbd->error_count=0; + release_channel(_ifxhcd, _ifxhc, HC_XFER_XACT_ERR); + } + else + { + _ifxhc->phase=HC_WAITING; + ifxhcd_hc_start(_ifxhcd, _ifxhc); + } + return 1; + } + else if(hcint.b.bblerr ) + { + _urbd->error_count =0; + release_channel(_ifxhcd, _ifxhc, HC_XFER_BABBLE_ERR); + return 1; + } + else if(hcint.b.stall ) + { + _urbd->error_count =0; + release_channel(_ifxhcd, _ifxhc, HC_XFER_STALL); + return 1; + } + else if(hcint.b.datatglerr ) + { + _urbd->error_count =0; + release_channel(_ifxhcd, _ifxhc, HC_XFER_DATA_TOGGLE_ERR); + return 1; + } + else if(hcint.b.frmovrun ) + { + _urbd->error_count =0; + release_channel(_ifxhcd, _ifxhc, HC_XFER_FRAME_OVERRUN); + return 1; + } + else if(hcint.b.nyet ) + { + } + else if(hcint.b.xfercomp ) + { + } + return 0; +} +//////////////////////////////////////////////////////////////////////////////////////////////////////////////////// +static int32_t chhltd_ctrl_tx_ssplit(ifxhcd_hcd_t *_ifxhcd, + ifxhcd_hc_t *_ifxhc, + ifxusb_hc_regs_t *_hc_regs, + ifxhcd_urbd_t *_urbd) +{ + hcint_data_t hcint; + hcint_data_t hcintmsk; + hctsiz_data_t hctsiz; + int out_nak_enh = 0; + + if (_ifxhcd->core_if.snpsid >= 0x4f54271a && _ifxhc->speed == IFXUSB_EP_SPEED_HIGH) + out_nak_enh = 1; + + hcint.d32 = ifxusb_rreg(&_hc_regs->hcint); + hcintmsk.d32 = ifxusb_rreg(&_hc_regs->hcintmsk); + hctsiz.d32 = ifxusb_rreg(&_hc_regs->hctsiz); + disable_hc_int(_hc_regs,ack); + disable_hc_int(_hc_regs,nak); + disable_hc_int(_hc_regs,nyet); + + if (hcint.b.ack ) + { + _urbd->error_count=0; + if (_ifxhc->control_phase != IFXHCD_CONTROL_SETUP) + _ifxhc->ssplit_out_xfer_count = _ifxhc->xfer_len; + _ifxhc->split=2; + _ifxhc->data_pid_start =read_data_toggle(_hc_regs); + _ifxhc->phase=HC_WAITING; + ifxhcd_hc_start(_ifxhcd, _ifxhc); + return 1; + } + else if(hcint.b.nyet) + { + _urbd->error_count=0; + if (_ifxhc->control_phase != IFXHCD_CONTROL_SETUP) + _ifxhc->ssplit_out_xfer_count = _ifxhc->xfer_len; + _ifxhc->split=2; + _ifxhc->data_pid_start =read_data_toggle(_hc_regs); + _ifxhc->phase=HC_WAITING; + ifxhcd_hc_start(_ifxhcd, _ifxhc); + return 1; + } + else if(hcint.b.nak ) + { + _urbd->error_count =0; + _ifxhc->phase=HC_WAITING; + ifxhcd_hc_start(_ifxhcd, _ifxhc); + return 1; + } + else if(hcint.b.xacterr ) + { + _urbd->error_count++; + if(_urbd->error_count>=3) + { + _urbd->error_count=0; + release_channel(_ifxhcd, _ifxhc, HC_XFER_XACT_ERR); + } + else + { + _ifxhc->phase=HC_WAITING; + ifxhcd_hc_start(_ifxhcd, _ifxhc); + } + return 1; + } + else if(hcint.b.datatglerr ) + { + _urbd->error_count =0; + release_channel(_ifxhcd, _ifxhc, HC_XFER_DATA_TOGGLE_ERR); + return 1; + } + else if(hcint.b.bblerr ) + { + _urbd->error_count =0; + release_channel(_ifxhcd, _ifxhc, HC_XFER_BABBLE_ERR); + return 1; + } + else if(hcint.b.stall ) + { + _urbd->error_count =0; + release_channel(_ifxhcd, _ifxhc, HC_XFER_STALL); + return 1; + } + else if(hcint.b.frmovrun ) + { + _urbd->error_count =0; + release_channel(_ifxhcd, _ifxhc, HC_XFER_FRAME_OVERRUN); + return 1; + } + else if(hcint.b.xfercomp ) + { + printk(KERN_INFO "Warning: %s() %d CTRL OUT SPLIT1 COMPLETE\n",__func__,__LINE__); + } + return 0; +} +//////////////////////////////////////////////////////////////////////////////////////////////////////////////////// +//////////////////////////////////////////////////////////////////////////////////////////////////////////////////// +static int32_t chhltd_bulk_rx_ssplit(ifxhcd_hcd_t *_ifxhcd, + ifxhcd_hc_t *_ifxhc, + ifxusb_hc_regs_t *_hc_regs, + ifxhcd_urbd_t *_urbd) +{ + hcint_data_t hcint; + hcint_data_t hcintmsk; + hctsiz_data_t hctsiz; + + hcint.d32 = ifxusb_rreg(&_hc_regs->hcint); + hcintmsk.d32 = ifxusb_rreg(&_hc_regs->hcintmsk); + hctsiz.d32 = ifxusb_rreg(&_hc_regs->hctsiz); + + disable_hc_int(_hc_regs,ack); + disable_hc_int(_hc_regs,nak); + disable_hc_int(_hc_regs,nyet); + + if (hcint.b.ack) + { + _urbd->error_count=0; + _ifxhc->split=2; + _ifxhc->data_pid_start = read_data_toggle(_hc_regs); + _ifxhc->phase=HC_WAITING; + ifxhcd_hc_start(_ifxhcd, _ifxhc); + return 1; + } + else if (hcint.b.nak) + { + _urbd->error_count = 0; + _ifxhc->phase=HC_WAITING; + ifxhcd_hc_start(_ifxhcd, _ifxhc); + return 1; + } + else if (hcint.b.xacterr) + { + _urbd->error_count++; + if(_urbd->error_count>=3) + { + _urbd->error_count=0; + release_channel(_ifxhcd, _ifxhc, HC_XFER_XACT_ERR); + } + else + { + _ifxhc->phase=HC_WAITING; + ifxhcd_hc_start(_ifxhcd, _ifxhc); + } + return 1; + } + else if(hcint.b.bblerr ) + { + _urbd->error_count =0; + release_channel(_ifxhcd, _ifxhc, HC_XFER_BABBLE_ERR); + return 1; + } + else if(hcint.b.stall ) + { + _urbd->error_count =0; + release_channel(_ifxhcd, _ifxhc, HC_XFER_STALL); + return 1; + } + else if(hcint.b.datatglerr ) + { + _urbd->error_count =0; + release_channel(_ifxhcd, _ifxhc, HC_XFER_DATA_TOGGLE_ERR); + return 1; + } + else if(hcint.b.frmovrun ) + { + _urbd->error_count =0; + release_channel(_ifxhcd, _ifxhc, HC_XFER_FRAME_OVERRUN); + return 1; + } + else if(hcint.b.nyet ) + { + } + else if(hcint.b.xfercomp ) + { + } + return 0; +} +//////////////////////////////////////////////////////////////////////////////////////////////////////////////////// +static int32_t chhltd_bulk_tx_ssplit(ifxhcd_hcd_t *_ifxhcd, + ifxhcd_hc_t *_ifxhc, + ifxusb_hc_regs_t *_hc_regs, + ifxhcd_urbd_t *_urbd) +{ + hcint_data_t hcint; + hcint_data_t hcintmsk; + hctsiz_data_t hctsiz; + int out_nak_enh = 0; + + if (_ifxhcd->core_if.snpsid >= 0x4f54271a && _ifxhc->speed == IFXUSB_EP_SPEED_HIGH) + out_nak_enh = 1; + + hcint.d32 = ifxusb_rreg(&_hc_regs->hcint); + hcintmsk.d32 = ifxusb_rreg(&_hc_regs->hcintmsk); + hctsiz.d32 = ifxusb_rreg(&_hc_regs->hctsiz); + disable_hc_int(_hc_regs,ack); + disable_hc_int(_hc_regs,nak); + disable_hc_int(_hc_regs,nyet); + + if (hcint.b.ack ) + { + _urbd->error_count=0; + _ifxhc->ssplit_out_xfer_count = _ifxhc->xfer_len; + _ifxhc->split=2; + _ifxhc->data_pid_start =read_data_toggle(_hc_regs); + _ifxhc->phase=HC_WAITING; + ifxhcd_hc_start(_ifxhcd, _ifxhc); + return 1; + } + else if(hcint.b.nyet) + { + _urbd->error_count=0; + _ifxhc->ssplit_out_xfer_count = _ifxhc->xfer_len; + _ifxhc->split=2; + _ifxhc->data_pid_start =read_data_toggle(_hc_regs); + _ifxhc->phase=HC_WAITING; + ifxhcd_hc_start(_ifxhcd, _ifxhc); + return 1; + } + else if(hcint.b.nak ) + { + _urbd->error_count =0; + _ifxhc->phase=HC_WAITING; + ifxhcd_hc_start(_ifxhcd, _ifxhc); + return 1; + } + else if(hcint.b.xacterr ) + { + _urbd->error_count++; + if(_urbd->error_count>=3) + { + _urbd->error_count=0; + release_channel(_ifxhcd, _ifxhc, HC_XFER_XACT_ERR); + } + else + { + _ifxhc->phase=HC_WAITING; + ifxhcd_hc_start(_ifxhcd, _ifxhc); + } + return 1; + } + else if(hcint.b.datatglerr ) + { + _urbd->error_count =0; + release_channel(_ifxhcd, _ifxhc, HC_XFER_DATA_TOGGLE_ERR); + return 1; + } + else if(hcint.b.bblerr ) + { + _urbd->error_count =0; + release_channel(_ifxhcd, _ifxhc, HC_XFER_BABBLE_ERR); + return 1; + } + else if(hcint.b.stall ) + { + _urbd->error_count =0; + release_channel(_ifxhcd, _ifxhc, HC_XFER_STALL); + return 1; + } + else if(hcint.b.frmovrun ) + { + _urbd->error_count =0; + release_channel(_ifxhcd, _ifxhc, HC_XFER_FRAME_OVERRUN); + return 1; + } + else if(hcint.b.xfercomp ) + { + printk(KERN_INFO "Warning: %s() %d BULK OUT SPLIT1 COMPLETE\n",__func__,__LINE__); + } + return 0; +} +//////////////////////////////////////////////////////////////////////////////////////////////////////////////////// +//////////////////////////////////////////////////////////////////////////////////////////////////////////////////// +static int32_t chhltd_intr_rx_ssplit(ifxhcd_hcd_t *_ifxhcd, + ifxhcd_hc_t *_ifxhc, + ifxusb_hc_regs_t *_hc_regs, + ifxhcd_urbd_t *_urbd) +{ + hcint_data_t hcint; + hcint_data_t hcintmsk; + hctsiz_data_t hctsiz; + + hcint.d32 = ifxusb_rreg(&_hc_regs->hcint); + hcintmsk.d32 = ifxusb_rreg(&_hc_regs->hcintmsk); + hctsiz.d32 = ifxusb_rreg(&_hc_regs->hctsiz); + + disable_hc_int(_hc_regs,ack); + disable_hc_int(_hc_regs,nak); + disable_hc_int(_hc_regs,nyet); + + if (hcint.b.ack) + { + _urbd->error_count=0; + _ifxhc->split=2; + _ifxhc->data_pid_start = read_data_toggle(_hc_regs); + _ifxhc->phase=HC_WAITING; + ifxhcd_hc_start(_ifxhcd, _ifxhc); + return 1; + } + else if(hcint.b.nak) + { + _urbd->error_count=0; + _ifxhc->phase=HC_WAITING; + ifxhcd_hc_start(_ifxhcd, _ifxhc); + return 1; + } + else if(hcint.b.xacterr) + { + hcchar_data_t hcchar; + hcchar.d32 = ifxusb_rreg(&_hc_regs->hcchar); + _urbd->error_count=hcchar.b.multicnt; + if(_urbd->error_count>=3) + { + _urbd->error_count=0; + release_channel(_ifxhcd, _ifxhc, HC_XFER_XACT_ERR); + } + else + { + _ifxhc->phase=HC_WAITING; + ifxhcd_hc_start(_ifxhcd, _ifxhc); + } + return 1; + } + else if(hcint.b.stall ) + { + _urbd->error_count =0; + release_channel(_ifxhcd, _ifxhc, HC_XFER_STALL); + return 1; + } + else if(hcint.b.bblerr ) + { + _urbd->error_count =0; + release_channel(_ifxhcd, _ifxhc, HC_XFER_BABBLE_ERR); + return 1; + } + else if(hcint.b.frmovrun ) + { + _ifxhc->phase=HC_WAITING; + ifxhcd_hc_start(_ifxhcd, _ifxhc); + return 1; + } + else if(hcint.b.datatglerr ) + { + _urbd->error_count =0; + release_channel(_ifxhcd, _ifxhc, HC_XFER_DATA_TOGGLE_ERR); + return 1; + } + else if(hcint.b.xfercomp ) + { + } + return 0; +} +//////////////////////////////////////////////////////////////////////////////////////////////////////////////////// +static int32_t chhltd_intr_tx_ssplit(ifxhcd_hcd_t *_ifxhcd, + ifxhcd_hc_t *_ifxhc, + ifxusb_hc_regs_t *_hc_regs, + ifxhcd_urbd_t *_urbd) +{ + hcint_data_t hcint; + hcint_data_t hcintmsk; + hctsiz_data_t hctsiz; + int out_nak_enh = 0; + + if (_ifxhcd->core_if.snpsid >= 0x4f54271a && _ifxhc->speed == IFXUSB_EP_SPEED_HIGH) + out_nak_enh = 1; + + hcint.d32 = ifxusb_rreg(&_hc_regs->hcint); + hcintmsk.d32 = ifxusb_rreg(&_hc_regs->hcintmsk); + hctsiz.d32 = ifxusb_rreg(&_hc_regs->hctsiz); + + disable_hc_int(_hc_regs,ack); + disable_hc_int(_hc_regs,nak); + disable_hc_int(_hc_regs,nyet); + + if (hcint.b.ack ) + { + _urbd->error_count=0; + _ifxhc->ssplit_out_xfer_count = _ifxhc->xfer_len; + _ifxhc->split=2; + _ifxhc->data_pid_start = read_data_toggle(_hc_regs); + _ifxhc->phase=HC_WAITING; + ifxhcd_hc_start(_ifxhcd, _ifxhc); + return 1; + } + else if(hcint.b.nyet) + { + _urbd->error_count=0; + _ifxhc->ssplit_out_xfer_count = _ifxhc->xfer_len; + _ifxhc->split=2; + _ifxhc->data_pid_start = read_data_toggle(_hc_regs); + _ifxhc->phase=HC_WAITING; + ifxhcd_hc_start(_ifxhcd, _ifxhc); + return 1; + } + else if(hcint.b.nak ) + { + _urbd->error_count =0; + _ifxhc->phase=HC_WAITING; + ifxhcd_hc_start(_ifxhcd, _ifxhc); + return 1; + } + else if(hcint.b.frmovrun ) + { + _urbd->error_count =0; + _ifxhc->phase=HC_WAITING; + ifxhcd_hc_start(_ifxhcd, _ifxhc); + return 1; + } + else if(hcint.b.xacterr ) + { + hcchar_data_t hcchar; + hcchar.d32 = ifxusb_rreg(&_hc_regs->hcchar); + _urbd->error_count=hcchar.b.multicnt; + if(_urbd->error_count>=3) + { + _urbd->error_count=0; + release_channel(_ifxhcd, _ifxhc, HC_XFER_XACT_ERR); + } + else + { + enable_hc_int(_hc_regs,ack); + enable_hc_int(_hc_regs,nak); + enable_hc_int(_hc_regs,nyet); + _ifxhc->phase=HC_WAITING; + ifxhcd_hc_start(_ifxhcd, _ifxhc); + } + return 1; + } + else if(hcint.b.datatglerr ) + { + _urbd->error_count =0; + release_channel(_ifxhcd, _ifxhc, HC_XFER_DATA_TOGGLE_ERR); + return 1; + } + else if(hcint.b.bblerr ) + { + _urbd->error_count =0; + release_channel(_ifxhcd, _ifxhc, HC_XFER_BABBLE_ERR); + return 1; + } + else if(hcint.b.stall ) + { + _urbd->error_count =0; + release_channel(_ifxhcd, _ifxhc, HC_XFER_STALL); + return 1; + } + else if(hcint.b.xfercomp ) + { + } + return 0; +} +//////////////////////////////////////////////////////////////////////////////////////////////////////////////////// +//////////////////////////////////////////////////////////////////////////////////////////////////////////////////// +static int32_t chhltd_isoc_rx_ssplit(ifxhcd_hcd_t *_ifxhcd, + ifxhcd_hc_t *_ifxhc, + ifxusb_hc_regs_t *_hc_regs, + ifxhcd_urbd_t *_urbd) +{ + #if defined(__EN_ISOC__) && defined(__EN_ISOC_SPLIT__) + hcint_data_t hcint; + hcint_data_t hcintmsk; + hctsiz_data_t hctsiz; + + hcint.d32 = ifxusb_rreg(&_hc_regs->hcint); + hcintmsk.d32 = ifxusb_rreg(&_hc_regs->hcintmsk); + hctsiz.d32 = ifxusb_rreg(&_hc_regs->hctsiz); + if (hcint.b.ack ) + { + Do Complete Split + } + else if(hcint.b.frmovrun ) + { + Rewind Buffer Pointers + Retry Start Split (in next b_interval ¡V 1 uF) + } + else if(hcint.b.datatglerr ) + { + //warning + } + else if(hcint.b.bblerr ) + { + //warning + } + else if(hcint.b.xacterr ) + { + //warning + } + else if(hcint.b.stall ) + { + //warning + } + else if(hcint.b.nak ) + { + //warning + } + else if(hcint.b.xfercomp ) + { + //warning + } + else if(hcint.b.nyet) + { + //warning + } + #endif + return 0; +} +//////////////////////////////////////////////////////////////////////////////////////////////////////////////////// +static int32_t chhltd_isoc_tx_ssplit(ifxhcd_hcd_t *_ifxhcd, + ifxhcd_hc_t *_ifxhc, + ifxusb_hc_regs_t *_hc_regs, + ifxhcd_urbd_t *_urbd) +{ + #if defined(__EN_ISOC__) && defined(__EN_ISOC_SPLIT__) + hcint_data_t hcint; + hcint_data_t hcintmsk; + hctsiz_data_t hctsiz; + int out_nak_enh = 0; + + if (_ifxhcd->core_if.snpsid >= 0x4f54271a && _ifxhc->speed == IFXUSB_EP_SPEED_HIGH) + out_nak_enh = 1; + + hcint.d32 = ifxusb_rreg(&_hc_regs->hcint); + hcintmsk.d32 = ifxusb_rreg(&_hc_regs->hcintmsk); + hctsiz.d32 = ifxusb_rreg(&_hc_regs->hctsiz); + if (hcint.b.ack ) + { + //Do Next Start Split (in next b_interval ¡V 1 uF) + } + else if(hcint.b.frmovrun ) + { + //Do Next Transaction in next frame. + } + else if(hcint.b.datatglerr ) + { + //warning + } + else if(hcint.b.bblerr ) + { + //warning + } + else if(hcint.b.xacterr ) + { + //warning + } + else if(hcint.b.stall ) + { + //warning + } + else if(hcint.b.nak ) + { + //warning + } + else if(hcint.b.xfercomp ) + { + //warning + } + else if(hcint.b.nyet) + { + //warning + } + #endif + return 0; +} +//////////////////////////////////////////////////////////////////////////////////////////////////////////////////// +//////////////////////////////////////////////////////////////////////////////////////////////////////////////////// +//////////////////////////////////////////////////////////////////////////////////////////////////////////////////// +static int32_t chhltd_ctrl_rx_csplit(ifxhcd_hcd_t *_ifxhcd, + ifxhcd_hc_t *_ifxhc, + ifxusb_hc_regs_t *_hc_regs, + ifxhcd_urbd_t *_urbd) +{ + hcint_data_t hcint; + hcint_data_t hcintmsk; + hctsiz_data_t hctsiz; + + hcint.d32 = ifxusb_rreg(&_hc_regs->hcint); + hcintmsk.d32 = ifxusb_rreg(&_hc_regs->hcintmsk); + hctsiz.d32 = ifxusb_rreg(&_hc_regs->hctsiz); + disable_hc_int(_hc_regs,ack); + disable_hc_int(_hc_regs,nak); + disable_hc_int(_hc_regs,nyet); + + if (hcint.b.xfercomp) + { + _urbd->error_count =0; + _ifxhc->split=1; + complete_channel(_ifxhcd, _ifxhc, _urbd); + return 1; + } + else if (hcint.b.nak) + { + _ifxhc->split = 1; + if(_ifxhc->control_phase == IFXHCD_CONTROL_DATA) + { + _ifxhc->xfer_len = _urbd->xfer_len - _urbd->urb->actual_length; + _ifxhc->xfer_count = _urbd->urb->actual_length; + } + _ifxhc->phase=HC_WAITING; + ifxhcd_hc_start(_ifxhcd, _ifxhc); + return 1; + } + else if(hcint.b.nyet) + { + _urbd->error_count=0; + _ifxhc->halt_status = HC_XFER_NO_HALT_STATUS; + _ifxhc->phase=HC_WAITING; + ifxhcd_hc_start(_ifxhcd, _ifxhc); + return 1; + } + else if(hcint.b.stall || hcint.b.bblerr ) + { + _urbd->error_count=0; + if (hcint.b.stall) + release_channel(_ifxhcd, _ifxhc, HC_XFER_STALL); + else if(hcint.b.bblerr ) + release_channel(_ifxhcd, _ifxhc, HC_XFER_BABBLE_ERR); + return 1; + } + else if(hcint.b.xacterr ) + { + _urbd->error_count++; + if(_urbd->error_count>=3) + { + _urbd->error_count=0; + release_channel(_ifxhcd, _ifxhc, HC_XFER_XACT_ERR); + } + else + { + _ifxhc->split=1; + if(_ifxhc->control_phase == IFXHCD_CONTROL_DATA) + { + _ifxhc->xfer_len = _urbd->xfer_len - _urbd->urb->actual_length; + _ifxhc->xfer_count = _urbd->urb->actual_length; + } + _ifxhc->phase=HC_WAITING; + ifxhcd_hc_start(_ifxhcd, _ifxhc); + } + return 1; + } + else if(hcint.b.datatglerr ) + { + if(_ifxhc->data_pid_start == IFXUSB_HC_PID_DATA0) + _ifxhc->data_pid_start = IFXUSB_HC_PID_DATA1; + else + _ifxhc->data_pid_start = IFXUSB_HC_PID_DATA0; + _ifxhc->split=1; + if(_ifxhc->control_phase == IFXHCD_CONTROL_DATA) + { + _ifxhc->xfer_len = _urbd->xfer_len - _urbd->urb->actual_length; + _ifxhc->xfer_count = _urbd->urb->actual_length; + } + _ifxhc->phase=HC_WAITING; + ifxhcd_hc_start(_ifxhcd, _ifxhc); + return 1; + } + else if(hcint.b.frmovrun ) + { + _urbd->error_count=0; + release_channel(_ifxhcd, _ifxhc, HC_XFER_FRAME_OVERRUN); + return 1; + } + return 0; +} +//////////////////////////////////////////////////////////////////////////////////////////////////////////////////// +static int32_t chhltd_ctrl_tx_csplit(ifxhcd_hcd_t *_ifxhcd, + ifxhcd_hc_t *_ifxhc, + ifxusb_hc_regs_t *_hc_regs, + ifxhcd_urbd_t *_urbd) +{ + hcint_data_t hcint; + hcint_data_t hcintmsk; + hctsiz_data_t hctsiz; + int out_nak_enh = 0; + + if (_ifxhcd->core_if.snpsid >= 0x4f54271a && _ifxhc->speed == IFXUSB_EP_SPEED_HIGH) + out_nak_enh = 1; + + hcint.d32 = ifxusb_rreg(&_hc_regs->hcint); + hcintmsk.d32 = ifxusb_rreg(&_hc_regs->hcintmsk); + hctsiz.d32 = ifxusb_rreg(&_hc_regs->hctsiz); + disable_hc_int(_hc_regs,ack); + disable_hc_int(_hc_regs,nak); + disable_hc_int(_hc_regs,nyet); + + if(hcint.b.xfercomp ) + { + _urbd->error_count=0; + _ifxhc->split=1; + #if 0 + if(_ifxhc->xfer_len==0 && !hcint.b.ack && (hcint.b.nak || hcint.b.nyet)) + { + // Walkaround: When sending ZLP and receive NYEY or NAK but also issue CMPT intr + // Solution: NoSplit: Resend at next SOF + // Split : Resend at next SOF with SSPLIT + _ifxhc->xfer_len = 0; + _ifxhc->xfer_count = 0; + _ifxhc->halt_status = HC_XFER_NO_HALT_STATUS; + _ifxhc->phase=HC_WAITING; + ifxhcd_hc_start(_ifxhcd, _ifxhc); + } + else + #endif + { + complete_channel(_ifxhcd, _ifxhc, _urbd); + } + return 1; + } + else if(hcint.b.nak ) + { + _ifxhc->split = 1; + if(_ifxhc->control_phase == IFXHCD_CONTROL_DATA) + { + _ifxhc->xfer_len = _urbd->xfer_len - _urbd->urb->actual_length; + _ifxhc->xfer_count = _urbd->urb->actual_length; + } + _ifxhc->phase=HC_WAITING; + ifxhcd_hc_start(_ifxhcd, _ifxhc); + return 1; + } + else if(hcint.b.nyet) + { + //Retry Complete Split + // Issue Retry instantly on next SOF, without gothrough process_channels + _urbd->error_count=0; + _ifxhc->halt_status = HC_XFER_NO_HALT_STATUS; + _ifxhc->phase=HC_WAITING; + ifxhcd_hc_start(_ifxhcd, _ifxhc); + return 1; + } + else if(hcint.b.stall ) + { + _urbd->error_count=0; + release_channel(_ifxhcd, _ifxhc, HC_XFER_STALL); + return 1; + } + else if(hcint.b.xacterr ) + { + _urbd->error_count++; + if(_urbd->error_count>=3) + { + _urbd->error_count=0; + release_channel(_ifxhcd, _ifxhc, HC_XFER_XACT_ERR); + } + else + { + _ifxhc->split=1; + if(_ifxhc->control_phase == IFXHCD_CONTROL_DATA) + { + _ifxhc->xfer_len = _urbd->xfer_len - _urbd->urb->actual_length; + _ifxhc->xfer_count = _urbd->urb->actual_length; + } + _ifxhc->phase=HC_WAITING; + ifxhcd_hc_start(_ifxhcd, _ifxhc); + } + return 1; + } + else if(hcint.b.datatglerr ) + { + if(_ifxhc->data_pid_start == IFXUSB_HC_PID_DATA0) + _ifxhc->data_pid_start = IFXUSB_HC_PID_DATA1; + else + _ifxhc->data_pid_start = IFXUSB_HC_PID_DATA0; + _ifxhc->split=1; + if(_ifxhc->control_phase == IFXHCD_CONTROL_DATA) + { + _ifxhc->xfer_len = _urbd->xfer_len - _urbd->urb->actual_length; + _ifxhc->xfer_count = _urbd->urb->actual_length; + } + _ifxhc->phase=HC_WAITING; + ifxhcd_hc_start(_ifxhcd, _ifxhc); + return 1; + } + else if(hcint.b.frmovrun ) + { + _urbd->error_count=0; + release_channel(_ifxhcd, _ifxhc, HC_XFER_FRAME_OVERRUN); + return 1; + } + else if(hcint.b.bblerr ) + { + _urbd->error_count=0; + release_channel(_ifxhcd, _ifxhc, HC_XFER_BABBLE_ERR); + return 1; + } + return 0; +} +//////////////////////////////////////////////////////////////////////////////////////////////////////////////////// +//////////////////////////////////////////////////////////////////////////////////////////////////////////////////// +static int32_t chhltd_bulk_rx_csplit(ifxhcd_hcd_t *_ifxhcd, + ifxhcd_hc_t *_ifxhc, + ifxusb_hc_regs_t *_hc_regs, + ifxhcd_urbd_t *_urbd) +{ + hcint_data_t hcint; + hcint_data_t hcintmsk; + hctsiz_data_t hctsiz; + + hcint.d32 = ifxusb_rreg(&_hc_regs->hcint); + hcintmsk.d32 = ifxusb_rreg(&_hc_regs->hcintmsk); + hctsiz.d32 = ifxusb_rreg(&_hc_regs->hctsiz); + disable_hc_int(_hc_regs,ack); + disable_hc_int(_hc_regs,nak); + disable_hc_int(_hc_regs,nyet); + + if (hcint.b.xfercomp) + { + _urbd->error_count =0; + _ifxhc->split=1; + complete_channel(_ifxhcd, _ifxhc, _urbd); + return 1; + } + else if (hcint.b.nak) + { + _ifxhc->split = 1; + _ifxhc->xfer_len = _urbd->xfer_len - _urbd->urb->actual_length; + _ifxhc->xfer_count = _urbd->urb->actual_length; + _ifxhc->phase=HC_WAITING; + ifxhcd_hc_start(_ifxhcd, _ifxhc); + return 1; + } + else if(hcint.b.nyet) + { + _urbd->error_count=0; + _ifxhc->halt_status = HC_XFER_NO_HALT_STATUS; + _ifxhc->phase=HC_WAITING; + ifxhcd_hc_start(_ifxhcd, _ifxhc); + return 1; + } + else if(hcint.b.stall || hcint.b.bblerr ) + { + _urbd->error_count=0; + if (hcint.b.stall) + release_channel(_ifxhcd, _ifxhc, HC_XFER_STALL); + else if(hcint.b.bblerr ) + release_channel(_ifxhcd, _ifxhc, HC_XFER_BABBLE_ERR); + return 1; + } + else if(hcint.b.xacterr ) + { + _urbd->error_count++; + if(_urbd->error_count>=3) + { + _urbd->error_count=0; + release_channel(_ifxhcd, _ifxhc, HC_XFER_XACT_ERR); + } + else + { + _ifxhc->split=1; + _ifxhc->xfer_len = _urbd->xfer_len - _urbd->urb->actual_length; + _ifxhc->xfer_count = _urbd->urb->actual_length; + _ifxhc->phase=HC_WAITING; + ifxhcd_hc_start(_ifxhcd, _ifxhc); + } + return 1; + } + else if(hcint.b.datatglerr ) + { + if(_ifxhc->data_pid_start == IFXUSB_HC_PID_DATA0) + _ifxhc->data_pid_start = IFXUSB_HC_PID_DATA1; + else + _ifxhc->data_pid_start = IFXUSB_HC_PID_DATA0; + _ifxhc->split=1; + _ifxhc->xfer_len = _urbd->xfer_len - _urbd->urb->actual_length; + _ifxhc->xfer_count = _urbd->urb->actual_length; + _ifxhc->phase=HC_WAITING; + ifxhcd_hc_start(_ifxhcd, _ifxhc); + return 1; + } + else if(hcint.b.frmovrun ) + { + _urbd->error_count=0; + release_channel(_ifxhcd, _ifxhc, HC_XFER_FRAME_OVERRUN); + return 1; + } + return 0; +} +//////////////////////////////////////////////////////////////////////////////////////////////////////////////////// +static int32_t chhltd_bulk_tx_csplit(ifxhcd_hcd_t *_ifxhcd, + ifxhcd_hc_t *_ifxhc, + ifxusb_hc_regs_t *_hc_regs, + ifxhcd_urbd_t *_urbd) +{ + hcint_data_t hcint; + hcint_data_t hcintmsk; + hctsiz_data_t hctsiz; + int out_nak_enh = 0; + + if (_ifxhcd->core_if.snpsid >= 0x4f54271a && _ifxhc->speed == IFXUSB_EP_SPEED_HIGH) + out_nak_enh = 1; + + hcint.d32 = ifxusb_rreg(&_hc_regs->hcint); + hcintmsk.d32 = ifxusb_rreg(&_hc_regs->hcintmsk); + hctsiz.d32 = ifxusb_rreg(&_hc_regs->hctsiz); + disable_hc_int(_hc_regs,ack); + disable_hc_int(_hc_regs,nak); + disable_hc_int(_hc_regs,nyet); + + if(hcint.b.xfercomp ) + { + _urbd->error_count=0; + _ifxhc->split=1; + #if 0 + if(_ifxhc->xfer_len==0 && !hcint.b.ack && (hcint.b.nak || hcint.b.nyet)) + { + // Walkaround: When sending ZLP and receive NYEY or NAK but also issue CMPT intr + // Solution: NoSplit: Resend at next SOF + // Split : Resend at next SOF with SSPLIT + _ifxhc->xfer_len = 0; + _ifxhc->xfer_count = 0; + _ifxhc->halt_status = HC_XFER_NO_HALT_STATUS; + _ifxhc->phase=HC_WAITING; + ifxhcd_hc_start(_ifxhcd, _ifxhc); + } + else + #endif + { + complete_channel(_ifxhcd, _ifxhc, _urbd); + } + return 1; + } + else if(hcint.b.nak ) + { + _ifxhc->split = 1; + _ifxhc->xfer_len = _urbd->xfer_len - _urbd->urb->actual_length; + _ifxhc->xfer_count = _urbd->urb->actual_length; + _ifxhc->phase=HC_WAITING; + ifxhcd_hc_start(_ifxhcd, _ifxhc); + return 1; + } + else if(hcint.b.nyet) + { + //Retry Complete Split + // Issue Retry instantly on next SOF, without gothrough process_channels + _urbd->error_count=0; + _ifxhc->halt_status = HC_XFER_NO_HALT_STATUS; + _ifxhc->phase=HC_WAITING; + ifxhcd_hc_start(_ifxhcd, _ifxhc); + return 1; + } + else if(hcint.b.stall ) + { + _urbd->error_count=0; + release_channel(_ifxhcd, _ifxhc, HC_XFER_STALL); + return 1; + } + else if(hcint.b.xacterr ) + { + _urbd->error_count++; + if(_urbd->error_count>=3) + { + _urbd->error_count=0; + release_channel(_ifxhcd, _ifxhc, HC_XFER_XACT_ERR); + } + else + { + _ifxhc->split=1; + _ifxhc->epqh->do_ping=1; + _ifxhc->xfer_len = _urbd->xfer_len - _urbd->urb->actual_length; + _ifxhc->xfer_count = _urbd->urb->actual_length; + _ifxhc->phase=HC_WAITING; + ifxhcd_hc_start(_ifxhcd, _ifxhc); + } + return 1; + } + else if(hcint.b.datatglerr ) + { + if(_ifxhc->data_pid_start == IFXUSB_HC_PID_DATA0) + _ifxhc->data_pid_start = IFXUSB_HC_PID_DATA1; + else + _ifxhc->data_pid_start = IFXUSB_HC_PID_DATA0; + _ifxhc->split=1; + _ifxhc->xfer_len = _urbd->xfer_len - _urbd->urb->actual_length; + _ifxhc->xfer_count = _urbd->urb->actual_length; + _ifxhc->phase=HC_WAITING; + ifxhcd_hc_start(_ifxhcd, _ifxhc); + return 1; + } + else if(hcint.b.frmovrun ) + { + _urbd->error_count=0; + release_channel(_ifxhcd, _ifxhc, HC_XFER_FRAME_OVERRUN); + return 1; + } + else if(hcint.b.bblerr ) + { + _urbd->error_count=0; + release_channel(_ifxhcd, _ifxhc, HC_XFER_BABBLE_ERR); + return 1; + } + return 0; +} +//////////////////////////////////////////////////////////////////////////////////////////////////////////////////// +//////////////////////////////////////////////////////////////////////////////////////////////////////////////////// +static int32_t chhltd_intr_rx_csplit(ifxhcd_hcd_t *_ifxhcd, + ifxhcd_hc_t *_ifxhc, + ifxusb_hc_regs_t *_hc_regs, + ifxhcd_urbd_t *_urbd) +{ + hcint_data_t hcint; + hcint_data_t hcintmsk; + hctsiz_data_t hctsiz; + + hcint.d32 = ifxusb_rreg(&_hc_regs->hcint); + hcintmsk.d32 = ifxusb_rreg(&_hc_regs->hcintmsk); + hctsiz.d32 = ifxusb_rreg(&_hc_regs->hctsiz); + disable_hc_int(_hc_regs,ack); + disable_hc_int(_hc_regs,nak); + disable_hc_int(_hc_regs,nyet); + + if (hcint.b.xfercomp ) + { + _urbd->error_count=0; + _ifxhc->split=1; + complete_channel(_ifxhcd, _ifxhc, _urbd); + return 1; + } + else if(hcint.b.nak ) + { + _ifxhc->split = 1; + _ifxhc->xfer_len = _urbd->xfer_len - _urbd->urb->actual_length; + _ifxhc->xfer_count = _urbd->urb->actual_length; + _ifxhc->phase=HC_WAITING; + ifxhcd_hc_start(_ifxhcd, _ifxhc); + return 1; + } + else if(hcint.b.nyet) + { + _urbd->error_count=0; + _ifxhc->halt_status = HC_XFER_NO_HALT_STATUS; + _ifxhc->phase=HC_WAITING; + ifxhcd_hc_start(_ifxhcd, _ifxhc); + return 1; + } + else if(hcint.b.frmovrun || hcint.b.bblerr || hcint.b.stall ) + { + _urbd->error_count=0; + if (hcint.b.stall) + release_channel(_ifxhcd, _ifxhc, HC_XFER_STALL); + else if(hcint.b.bblerr ) + release_channel(_ifxhcd, _ifxhc, HC_XFER_BABBLE_ERR); + else if(hcint.b.frmovrun ) + release_channel(_ifxhcd, _ifxhc, HC_XFER_FRAME_OVERRUN); + return 1; + } + else if(hcint.b.xacterr ) + { + hcchar_data_t hcchar; + hcchar.d32 = ifxusb_rreg(&_hc_regs->hcchar); + _urbd->error_count=hcchar.b.multicnt; + if(_urbd->error_count>=3) + { + _urbd->error_count=0; + release_channel(_ifxhcd, _ifxhc, HC_XFER_XACT_ERR); + } + else + { + _ifxhc->split=1; + _ifxhc->xfer_len = _urbd->xfer_len - _urbd->urb->actual_length; + _ifxhc->xfer_count = _urbd->urb->actual_length; + _ifxhc->phase=HC_WAITING; + ifxhcd_hc_start(_ifxhcd, _ifxhc); + } + return 1; + } + else if(hcint.b.datatglerr ) + { + if(_ifxhc->data_pid_start == IFXUSB_HC_PID_DATA0) + _ifxhc->data_pid_start = IFXUSB_HC_PID_DATA1; + else + _ifxhc->data_pid_start = IFXUSB_HC_PID_DATA0; + _ifxhc->split=1; + _ifxhc->xfer_len = _urbd->xfer_len - _urbd->urb->actual_length; + _ifxhc->xfer_count = _urbd->urb->actual_length; + _ifxhc->phase=HC_WAITING; + ifxhcd_hc_start(_ifxhcd, _ifxhc); + return 1; + } + return 0; +} +//////////////////////////////////////////////////////////////////////////////////////////////////////////////////// +static int32_t chhltd_intr_tx_csplit(ifxhcd_hcd_t *_ifxhcd, + ifxhcd_hc_t *_ifxhc, + ifxusb_hc_regs_t *_hc_regs, + ifxhcd_urbd_t *_urbd) +{ + hcint_data_t hcint; + hcint_data_t hcintmsk; + hctsiz_data_t hctsiz; + int out_nak_enh = 0; + + if (_ifxhcd->core_if.snpsid >= 0x4f54271a && _ifxhc->speed == IFXUSB_EP_SPEED_HIGH) + out_nak_enh = 1; + + hcint.d32 = ifxusb_rreg(&_hc_regs->hcint); + hcintmsk.d32 = ifxusb_rreg(&_hc_regs->hcintmsk); + hctsiz.d32 = ifxusb_rreg(&_hc_regs->hctsiz); + disable_hc_int(_hc_regs,ack); + disable_hc_int(_hc_regs,nak); + disable_hc_int(_hc_regs,nyet); + + if(hcint.b.xfercomp ) + { + _urbd->error_count=0; + _ifxhc->split=1; + complete_channel(_ifxhcd, _ifxhc, _urbd); + return 1; + } + else if(hcint.b.nak ) + { + _ifxhc->split = 1; + _ifxhc->xfer_len = _urbd->xfer_len - _urbd->urb->actual_length; + _ifxhc->xfer_count = _urbd->urb->actual_length; + _ifxhc->phase=HC_WAITING; + ifxhcd_hc_start(_ifxhcd, _ifxhc); + return 1; + } + else if(hcint.b.nyet) + { + _urbd->error_count=0; + _ifxhc->halt_status = HC_XFER_NO_HALT_STATUS; + _ifxhc->phase=HC_WAITING; + ifxhcd_hc_start(_ifxhcd, _ifxhc); + return 1; + } + else if(hcint.b.stall || hcint.b.frmovrun) + { + _urbd->error_count=0; + if (hcint.b.stall) + release_channel(_ifxhcd, _ifxhc, HC_XFER_STALL); + else if(hcint.b.frmovrun ) + release_channel(_ifxhcd, _ifxhc, HC_XFER_FRAME_OVERRUN); + return 1; + } + else if(hcint.b.xacterr ) + { + hcchar_data_t hcchar; + hcchar.d32 = ifxusb_rreg(&_hc_regs->hcchar); + _urbd->error_count=hcchar.b.multicnt; + if(_urbd->error_count>=3) + { + _urbd->error_count=0; + release_channel(_ifxhcd, _ifxhc, HC_XFER_XACT_ERR); + } + else + { + _ifxhc->split=1; + _ifxhc->epqh->do_ping=1; + _ifxhc->xfer_len = _urbd->xfer_len - _urbd->urb->actual_length; + _ifxhc->xfer_count = _urbd->urb->actual_length; + _ifxhc->phase=HC_WAITING; + ifxhcd_hc_start(_ifxhcd, _ifxhc); + } + return 1; + } + else if(hcint.b.datatglerr ) + { + if(_ifxhc->data_pid_start == IFXUSB_HC_PID_DATA0) + _ifxhc->data_pid_start = IFXUSB_HC_PID_DATA1; + else + _ifxhc->data_pid_start = IFXUSB_HC_PID_DATA0; + _ifxhc->split=1; + _ifxhc->epqh->do_ping=1; + _ifxhc->xfer_len = _urbd->xfer_len - _urbd->urb->actual_length; + _ifxhc->xfer_count = _urbd->urb->actual_length; + _ifxhc->phase=HC_WAITING; + ifxhcd_hc_start(_ifxhcd, _ifxhc); + return 1; + } + else if(hcint.b.bblerr ) + { + _urbd->error_count=0; + release_channel(_ifxhcd, _ifxhc, HC_XFER_BABBLE_ERR); + return 1; + } + return 0; +} +//////////////////////////////////////////////////////////////////////////////////////////////////////////////////// +//////////////////////////////////////////////////////////////////////////////////////////////////////////////////// +static int32_t chhltd_isoc_rx_csplit(ifxhcd_hcd_t *_ifxhcd, + ifxhcd_hc_t *_ifxhc, + ifxusb_hc_regs_t *_hc_regs, + ifxhcd_urbd_t *_urbd) +{ + #if defined(__EN_ISOC__) && defined(__EN_ISOC_SPLIT__) + hcint_data_t hcint; + hcint_data_t hcintmsk; + hctsiz_data_t hctsiz; + + hcint.d32 = ifxusb_rreg(&_hc_regs->hcint); + hcintmsk.d32 = ifxusb_rreg(&_hc_regs->hcintmsk); + hctsiz.d32 = ifxusb_rreg(&_hc_regs->hctsiz); + if(hcint.b.xfercomp ) + { + disable_hc_int(_hc_regs,ack); + disable_hc_int(_hc_regs,nak); + disable_hc_int(_hc_regs,nyet); + _urbd->error_count=0; + _ifxhc->split=1; + complete_channel(_ifxhcd, _ifxhc, _urbd); + return 1; + } + else if(hcint.b.nak ) + { + Retry Start Split (in next b_interval ¡V 1 uF) + } + else if(hcint.b.nyet) + { + //Do Next Complete Split + // Issue Retry instantly on next SOF, without gothrough process_channels + _urbd->error_count=0; + //disable_hc_int(_hc_regs,ack); + //disable_hc_int(_hc_regs,nak); + //disable_hc_int(_hc_regs,datatglerr); + _ifxhc->halt_status = HC_XFER_NO_HALT_STATUS; + _ifxhc->phase=HC_WAITING; + ifxhcd_hc_start(_ifxhcd, _ifxhc); + return 1; + } + else if(hcint.b.frmovrun || hcint.b.stall || hcint.b.bblerr) + { + _urbd->error_count=0; + disable_hc_int(_hc_regs,ack); + disable_hc_int(_hc_regs,nyet); + disable_hc_int(_hc_regs,nak); + _ifxhc->wait_for_sof = 0; + + //if(hctsiz.b.pktcnt==0) + //{ + // complete_channel(_ifxhcd, _ifxhc, _urbd); + // return 1; + //} + //else + // _urbd->urb->actual_length += (_ifxhc->xfer_len - hctsiz.b.xfersize); + if (hcint.b.stall) + release_channel(_ifxhcd, _ifxhc, HC_XFER_STALL); + else if(hcint.b.frmovrun ) + else if(hcint.b.bblerr ) + return 1; + } + else if(hcint.b.xacterr ) + { + Rewind Buffer Pointers + if (HCCHARn.EC = = 3) // ERR response received + { + Record ERR error + Do Next Start Split (in next frame) + } + else + { + De-allocate Channel + } + } + else if(hcint.b.datatglerr ) + { + warning + } + else if(hcint.b.ack ) + { + warning + } + #endif + return 0; +} +//////////////////////////////////////////////////////////////////////////////////////////////////////////////////// +static int32_t chhltd_isoc_tx_csplit(ifxhcd_hcd_t *_ifxhcd, + ifxhcd_hc_t *_ifxhc, + ifxusb_hc_regs_t *_hc_regs, + ifxhcd_urbd_t *_urbd) +{ + #if defined(__EN_ISOC__) && defined(__EN_ISOC_SPLIT__) + hcint_data_t hcint; + hcint_data_t hcintmsk; + hctsiz_data_t hctsiz; + int out_nak_enh = 0; + + if (_ifxhcd->core_if.snpsid >= 0x4f54271a && _ifxhc->speed == IFXUSB_EP_SPEED_HIGH) + out_nak_enh = 1; + + hcint.d32 = ifxusb_rreg(&_hc_regs->hcint); + hcintmsk.d32 = ifxusb_rreg(&_hc_regs->hcintmsk); + hctsiz.d32 = ifxusb_rreg(&_hc_regs->hctsiz); + warning + #endif + return 0; +} +//////////////////////////////////////////////////////////////////////////////////////////////////////////////////// +//////////////////////////////////////////////////////////////////////////////////////////////////////////////////// +//////////////////////////////////////////////////////////////////////////////////////////////////////////////////// + +/*! + \fn static int32_t handle_hc_chhltd_intr(ifxhcd_hcd_t *_ifxhcd, + ifxhcd_hc_t *_ifxhc, + ifxusb_hc_regs_t *_hc_regs, + ifxhcd_urbd_t *_urbd) + \brief This function handles halted interrupts of host channels. + \param _ifxhcd Pointer to the sate of HCD structure + \param _ifxhc Pointer to host channel descriptor + \param _hc_regs Pointer to host channel registers + \param _urbd Pointer to URB descriptor + \return 0 OK + \ingroup IFXUSB_HCD + */ +static +int32_t handle_hc_chhltd_intr(ifxhcd_hcd_t *_ifxhcd, + ifxhcd_hc_t *_ifxhc, + ifxusb_hc_regs_t *_hc_regs, + ifxhcd_urbd_t *_urbd) +{ + IFX_DEBUGPL(DBG_HCD, "--Host Channel %d Interrupt: Channel Halted--\n", _ifxhc->hc_num); + + _ifxhc->phase = HC_STOPPED; + if(_ifxhc->epqh) + if(_ifxhc->epqh->urbd) + _ifxhc->epqh->urbd->phase=URBD_ACTIVE; + + if (_ifxhc->halt_status == HC_XFER_URB_DEQUEUE || + _ifxhc->halt_status == HC_XFER_AHB_ERR) { + /* + * Just release the channel. A dequeue can happen on a + * transfer timeout. In the case of an AHB Error, the channel + * was forced to halt because there's no way to gracefully + * recover. + */ + if(_ifxhc->epqh) + if(_ifxhc->epqh->urbd) + _ifxhc->epqh->urbd->phase=URBD_DEQUEUEING; + release_channel(_ifxhcd, _ifxhc, _ifxhc->halt_status); + return 1; + } + + if (_ifxhc->ep_type == IFXUSB_EP_TYPE_CTRL) + { + if (_ifxhc->split==0) + { + if(_ifxhc->is_in) + return (chhltd_ctrl_rx_nonsplit(_ifxhcd,_ifxhc,_hc_regs,_urbd)); + else + return (chhltd_ctrl_tx_nonsplit(_ifxhcd,_ifxhc,_hc_regs,_urbd)); + } + else if(_ifxhc->split==1) + { + if(_ifxhc->is_in) + return (chhltd_ctrl_rx_ssplit(_ifxhcd,_ifxhc,_hc_regs,_urbd)); + else + return (chhltd_ctrl_tx_ssplit(_ifxhcd,_ifxhc,_hc_regs,_urbd)); + } + else if(_ifxhc->split==2) + { + if(_ifxhc->is_in) + return (chhltd_ctrl_rx_csplit(_ifxhcd,_ifxhc,_hc_regs,_urbd)); + else + return (chhltd_ctrl_tx_csplit(_ifxhcd,_ifxhc,_hc_regs,_urbd)); + } + } + else if(_ifxhc->ep_type == IFXUSB_EP_TYPE_BULK) + { + if (_ifxhc->split==0) + { + if(_ifxhc->is_in) + return (chhltd_bulk_rx_nonsplit(_ifxhcd,_ifxhc,_hc_regs,_urbd)); + else + return (chhltd_bulk_tx_nonsplit(_ifxhcd,_ifxhc,_hc_regs,_urbd)); + } + else if(_ifxhc->split==1) + { + if(_ifxhc->is_in) + return (chhltd_bulk_rx_ssplit(_ifxhcd,_ifxhc,_hc_regs,_urbd)); + else + return (chhltd_bulk_tx_ssplit(_ifxhcd,_ifxhc,_hc_regs,_urbd)); + } + else if(_ifxhc->split==2) + { + if(_ifxhc->is_in) + return (chhltd_bulk_rx_csplit(_ifxhcd,_ifxhc,_hc_regs,_urbd)); + else + return (chhltd_bulk_tx_csplit(_ifxhcd,_ifxhc,_hc_regs,_urbd)); + } + } + else if(_ifxhc->ep_type == IFXUSB_EP_TYPE_INTR) + { + if (_ifxhc->split==0) + { + if(_ifxhc->is_in) + return (chhltd_intr_rx_nonsplit(_ifxhcd,_ifxhc,_hc_regs,_urbd)); + else + return (chhltd_intr_tx_nonsplit(_ifxhcd,_ifxhc,_hc_regs,_urbd)); + } + else if(_ifxhc->split==1) + { + if(_ifxhc->is_in) + return (chhltd_intr_rx_ssplit(_ifxhcd,_ifxhc,_hc_regs,_urbd)); + else + return (chhltd_intr_tx_ssplit(_ifxhcd,_ifxhc,_hc_regs,_urbd)); + } + else if(_ifxhc->split==2) + { + if(_ifxhc->is_in) + return (chhltd_intr_rx_csplit(_ifxhcd,_ifxhc,_hc_regs,_urbd)); + else + return (chhltd_intr_tx_csplit(_ifxhcd,_ifxhc,_hc_regs,_urbd)); + } + } + else if(_ifxhc->ep_type == IFXUSB_EP_TYPE_ISOC) + { + if (_ifxhc->split==0) + { + if(_ifxhc->is_in) + return (chhltd_isoc_rx_nonsplit(_ifxhcd,_ifxhc,_hc_regs,_urbd)); + else + return (chhltd_isoc_tx_nonsplit(_ifxhcd,_ifxhc,_hc_regs,_urbd)); + } + else if(_ifxhc->split==1) + { + if(_ifxhc->is_in) + return (chhltd_isoc_rx_ssplit(_ifxhcd,_ifxhc,_hc_regs,_urbd)); + else + return (chhltd_isoc_tx_ssplit(_ifxhcd,_ifxhc,_hc_regs,_urbd)); + } + else if(_ifxhc->split==2) + { + if(_ifxhc->is_in) + return (chhltd_isoc_rx_csplit(_ifxhcd,_ifxhc,_hc_regs,_urbd)); + else + return (chhltd_isoc_tx_csplit(_ifxhcd,_ifxhc,_hc_regs,_urbd)); + } + } + return 0; +} + +/* + * Handles a host channel AHB error interrupt. This handler is only called in + * DMA mode. + */ +static void hc_other_intr_dump(ifxhcd_hcd_t *_ifxhcd, + ifxhcd_hc_t *_ifxhc, + ifxusb_hc_regs_t *_hc_regs, + ifxhcd_urbd_t *_urbd) +{ + #ifdef __DEBUG__ + hcchar_data_t hcchar; + hcsplt_data_t hcsplt; + hctsiz_data_t hctsiz; + uint32_t hcdma; + struct urb *urb = _urbd->urb; + hcchar.d32 = ifxusb_rreg(&_hc_regs->hcchar); + hcsplt.d32 = ifxusb_rreg(&_hc_regs->hcsplt); + hctsiz.d32 = ifxusb_rreg(&_hc_regs->hctsiz); + hcdma = ifxusb_rreg(&_hc_regs->hcdma); + + IFX_ERROR("Channel %d\n", _ifxhc->hc_num); + IFX_ERROR(" hcchar 0x%08x, hcsplt 0x%08x\n", hcchar.d32, hcsplt.d32); + IFX_ERROR(" hctsiz 0x%08x, hcdma 0x%08x\n", hctsiz.d32, hcdma); + IFX_ERROR(" Device address: %d\n", usb_pipedevice(urb->pipe)); + IFX_ERROR(" Endpoint: %d, %s\n", usb_pipeendpoint(urb->pipe), + (usb_pipein(urb->pipe) ? "IN" : "OUT")); + IFX_ERROR(" Endpoint type: %s\n", + ({char *pipetype; + switch (usb_pipetype(urb->pipe)) { + case PIPE_CONTROL: pipetype = "CTRL"; break; + case PIPE_BULK: pipetype = "BULK"; break; + case PIPE_INTERRUPT: pipetype = "INTR"; break; + case PIPE_ISOCHRONOUS: pipetype = "ISOC"; break; + default: pipetype = "????"; break; + }; pipetype;})); + IFX_ERROR(" Speed: %s\n", + ({char *speed; + switch (urb->dev->speed) { + case USB_SPEED_HIGH: speed = "HS"; break; + case USB_SPEED_FULL: speed = "FS"; break; + case USB_SPEED_LOW: speed = "LS"; break; + default: speed = "????"; break; + }; speed;})); + IFX_ERROR(" Max packet size: %d\n", + usb_maxpacket(urb->dev, urb->pipe, usb_pipeout(urb->pipe))); + IFX_ERROR(" Data buffer length: %d\n", urb->transfer_buffer_length); + IFX_ERROR(" Transfer buffer: %p, Transfer DMA: %p\n", + urb->transfer_buffer, (void *)urb->transfer_dma); + IFX_ERROR(" Setup buffer: %p, Setup DMA: %p\n", + urb->setup_packet, (void *)urb->setup_dma); + IFX_ERROR(" Interval: %d\n", urb->interval); + #endif //__DEBUG__ +} + +/* + * Handles a host channel ACK interrupt. This interrupt is enabled when + * errors occur, and during Start Split transactions. + */ +static +int32_t handle_hc_ack_intr(ifxhcd_hcd_t *_ifxhcd, + ifxhcd_hc_t *_ifxhc, + ifxusb_hc_regs_t *_hc_regs, + ifxhcd_urbd_t *_urbd) +{ + _urbd->error_count=0; + _ifxhc->erron = 0; + + disable_hc_int(_hc_regs,nyet); + + #ifdef __NAKSTOP__ + if(!_ifxhc->stop_on) + { + disable_hc_int(_hc_regs,ack); + disable_hc_int(_hc_regs,nak); + } + #else + disable_hc_int(_hc_regs,ack); + disable_hc_int(_hc_regs,nak); + #endif + return 1; +} + +/* + * Handles a host channel ACK interrupt. This interrupt is enabled when + * errors occur, and during Start Split transactions. + */ +static +int32_t handle_hc_nak_intr(ifxhcd_hcd_t *_ifxhcd, + ifxhcd_hc_t *_ifxhc, + ifxusb_hc_regs_t *_hc_regs, + ifxhcd_urbd_t *_urbd) +{ + _urbd->error_count=0; + _ifxhc->erron=0; + disable_hc_int(_hc_regs,nyet); + disable_hc_int(_hc_regs,ack); + disable_hc_int(_hc_regs,nak); + #ifdef __NAKSTOP__ + if(_ifxhc->stop_on) + { + hcchar_data_t hcchar; + hcchar.d32 = ifxusb_rreg(&_hc_regs->hcchar); + if(hcchar.b.chen) + { + hcchar.b.chdis = 1; + _ifxhc->halt_status = HC_XFER_NAK; + ifxusb_wreg(&_hc_regs->hcchar, hcchar.d32); + } + } + #endif + return 1; +} + +static +int32_t handle_hc_nyet_intr(ifxhcd_hcd_t *_ifxhcd, + ifxhcd_hc_t *_ifxhc, + ifxusb_hc_regs_t *_hc_regs, + ifxhcd_urbd_t *_urbd) +{ + _urbd->error_count=0; + _ifxhc->erron = 0; + + disable_hc_int(_hc_regs,nyet); + #ifdef __NAKSTOP__ + if(!_ifxhc->stop_on) + { + disable_hc_int(_hc_regs,ack); + disable_hc_int(_hc_regs,nak); + } + #else + disable_hc_int(_hc_regs,ack); + disable_hc_int(_hc_regs,nak); + #endif + return 1; +} + +/* + * Handles a host channel AHB error interrupt. This handler is only called in + * DMA mode. + */ +static int32_t handle_hc_ahberr_intr(ifxhcd_hcd_t *_ifxhcd, + ifxhcd_hc_t *_ifxhc, + ifxusb_hc_regs_t *_hc_regs, + ifxhcd_urbd_t *_urbd) +{ + IFX_DEBUGPL(DBG_HCD, "--Host Channel %d Interrupt: " + "AHB Error--\n", _ifxhc->hc_num); + hc_other_intr_dump(_ifxhcd,_ifxhc,_hc_regs,_urbd); + + ifxhcd_hc_halt(&_ifxhcd->core_if, _ifxhc, HC_XFER_AHB_ERR); + return 1; +} + +/* + * Datatoggle + */ +static int32_t handle_hc_datatglerr_intr(ifxhcd_hcd_t *_ifxhcd, + ifxhcd_hc_t *_ifxhc, + ifxusb_hc_regs_t *_hc_regs, + ifxhcd_urbd_t *_urbd) +{ + IFX_ERROR( "--Host Channel %d Interrupt: " + "DATATOGGLE Error--\n", _ifxhc->hc_num); + hc_other_intr_dump(_ifxhcd,_ifxhc,_hc_regs,_urbd); + disable_hc_int(_hc_regs,datatglerr); + return 1; +} + + +/* + * Interrupts which should not been triggered + */ +static int32_t handle_hc_frmovrun_intr(ifxhcd_hcd_t *_ifxhcd, + ifxhcd_hc_t *_ifxhc, + ifxusb_hc_regs_t *_hc_regs, + ifxhcd_urbd_t *_urbd) +{ + IFX_ERROR( "--Host Channel %d Interrupt: " + "FrameOverRun Error--\n", _ifxhc->hc_num); + hc_other_intr_dump(_ifxhcd,_ifxhc,_hc_regs,_urbd); + disable_hc_int(_hc_regs,frmovrun); + return 1; +} + +static int32_t handle_hc_bblerr_intr(ifxhcd_hcd_t *_ifxhcd, + ifxhcd_hc_t *_ifxhc, + ifxusb_hc_regs_t *_hc_regs, + ifxhcd_urbd_t *_urbd) +{ + IFX_ERROR( "--Host Channel %d Interrupt: " + "BBL Error--\n", _ifxhc->hc_num); + hc_other_intr_dump(_ifxhcd,_ifxhc,_hc_regs,_urbd); + disable_hc_int(_hc_regs,bblerr); + return 1; +} + +static int32_t handle_hc_xacterr_intr(ifxhcd_hcd_t *_ifxhcd, + ifxhcd_hc_t *_ifxhc, + ifxusb_hc_regs_t *_hc_regs, + ifxhcd_urbd_t *_urbd) +{ + IFX_ERROR( "--Host Channel %d Interrupt: " + "XACT Error--\n", _ifxhc->hc_num); + hc_other_intr_dump(_ifxhcd,_ifxhc,_hc_regs,_urbd); + disable_hc_int(_hc_regs,xacterr); + return 1; +} + + +static int32_t handle_hc_stall_intr(ifxhcd_hcd_t *_ifxhcd, + ifxhcd_hc_t *_ifxhc, + ifxusb_hc_regs_t *_hc_regs, + ifxhcd_urbd_t *_urbd) +{ + IFX_ERROR( "--Host Channel %d Interrupt: " + "STALL--\n", _ifxhc->hc_num); + hc_other_intr_dump(_ifxhcd,_ifxhc,_hc_regs,_urbd); + disable_hc_int(_hc_regs,stall); + return 1; +} + +static int32_t handle_hc_xfercomp_intr(ifxhcd_hcd_t *_ifxhcd, + ifxhcd_hc_t *_ifxhc, + ifxusb_hc_regs_t *_hc_regs, + ifxhcd_urbd_t *_urbd) +{ + IFX_ERROR( "--Host Channel %d Interrupt: " + "XFERCOMP--\n", _ifxhc->hc_num); + hc_other_intr_dump(_ifxhcd,_ifxhc,_hc_regs,_urbd); + disable_hc_int(_hc_regs,xfercomp); + return 1; +} + +/* This interrupt indicates that the specified host channels has a pending + * interrupt. There are multiple conditions that can cause each host channel + * interrupt. This function determines which conditions have occurred for this + * host channel interrupt and handles them appropriately. */ +static int32_t handle_hc_n_intr (ifxhcd_hcd_t *_ifxhcd, uint32_t _num) +{ + uint32_t hcintval,hcintmsk; + hcint_data_t hcint; + ifxhcd_hc_t *ifxhc; + ifxusb_hc_regs_t *hc_regs; + ifxhcd_urbd_t *urbd; + + int retval = 0; + + IFX_DEBUGPL(DBG_HCDV, "--Host Channel Interrupt--, Channel %d\n", _num); + + ifxhc = &_ifxhcd->ifxhc[_num]; + hc_regs = _ifxhcd->core_if.hc_regs[_num]; + + hcintval = ifxusb_rreg(&hc_regs->hcint); + hcintmsk = ifxusb_rreg(&hc_regs->hcintmsk); + hcint.d32 = hcintval & hcintmsk; + IFX_DEBUGPL(DBG_HCDV, " 0x%08x & 0x%08x = 0x%08x\n", + hcintval, hcintmsk, hcint.d32); + + urbd = ifxhc->epqh->urbd; + + if (hcint.b.ahberr) + retval |= handle_hc_ahberr_intr(_ifxhcd, ifxhc, hc_regs, urbd); + else if (hcint.b.chhltd) + retval |= handle_hc_chhltd_intr(_ifxhcd, ifxhc, hc_regs, urbd); + else + { + if (hcint.b.datatglerr) + retval |= handle_hc_datatglerr_intr(_ifxhcd, ifxhc, hc_regs, urbd); + if (hcint.b.frmovrun) + retval |= handle_hc_frmovrun_intr(_ifxhcd, ifxhc, hc_regs, urbd); + if (hcint.b.bblerr) + retval |= handle_hc_bblerr_intr(_ifxhcd, ifxhc, hc_regs, urbd); + if (hcint.b.xacterr) + retval |= handle_hc_xacterr_intr(_ifxhcd, ifxhc, hc_regs, urbd); + if (hcint.b.nyet) + retval |= handle_hc_nyet_intr(_ifxhcd, ifxhc, hc_regs, urbd); + if (hcint.b.ack) + retval |= handle_hc_ack_intr(_ifxhcd, ifxhc, hc_regs, urbd); + if (hcint.b.nak) + retval |= handle_hc_nak_intr(_ifxhcd, ifxhc, hc_regs, urbd); + if (hcint.b.stall) + retval |= handle_hc_stall_intr(_ifxhcd, ifxhc, hc_regs, urbd); + if (hcint.b.xfercomp) + retval |= handle_hc_xfercomp_intr(_ifxhcd, ifxhc, hc_regs, urbd); + } + + ifxusb_wreg(&hc_regs->hcint,hcintval); + + return retval; +} + + +static uint8_t update_interval_counter(ifxhcd_epqh_t *_epqh,uint32_t _diff) +{ + if(_diff>=_epqh->period_counter) + { + _epqh->period_do=1; + if(_diff>_epqh->interval) + _epqh->period_counter=1; + else + _epqh->period_counter=_epqh->period_counter+_epqh->interval-_diff; + return 1; + } + _epqh->period_counter=_epqh->period_counter-_diff; + return 0; +} + +static +void process_unaligned( ifxhcd_epqh_t *_epqh, ifxusb_core_if_t *_core_if) +{ + ifxhcd_urbd_t *urbd; + urbd =_epqh->urbd; + + #if defined(__UNALIGNED_BUF_ADJ__) || defined(__UNALIGNED_BUF_CHK__) + if(!urbd->aligned_checked) + { + #if defined(__UNALIGNED_BUF_ADJ__) + uint32_t xfer_len; + xfer_len=urbd->xfer_len; + if(urbd->is_in && xfer_len<_epqh->mps) + xfer_len = _epqh->mps; +// urbd->using_aligned_buf=0; + + if(xfer_len > 0 && ((unsigned long)urbd->xfer_buff) & _core_if->unaligned_mask) + { + if( urbd->aligned_buf + && urbd->aligned_buf_len > 0 + && urbd->aligned_buf_len < xfer_len + ) + { + ifxusb_free_buf_h(urbd->aligned_buf); + urbd->aligned_buf=NULL; + urbd->aligned_buf_len=0; + } + if(! urbd->aligned_buf || ! urbd->aligned_buf_len) + { + urbd->aligned_buf = ifxusb_alloc_buf_h(xfer_len, urbd->is_in); + if(urbd->aligned_buf) + urbd->aligned_buf_len = xfer_len; + } + if(urbd->aligned_buf) + { + if(!urbd->is_in) + memcpy(urbd->aligned_buf, urbd->xfer_buff, xfer_len); +// urbd->using_aligned_buf=1; + _epqh->hc->xfer_buff = urbd->aligned_buf; + } + else + IFX_WARN("%s():%d\n",__func__,__LINE__); + } + if(_epqh->ep_type==IFXUSB_EP_TYPE_CTRL) + { +// urbd->using_aligned_setup=0; + if(((unsigned long)urbd->setup_buff) & _core_if->unaligned_mask) + { + if(! urbd->aligned_setup) + urbd->aligned_setup = ifxusb_alloc_buf_h(8,0); + if(urbd->aligned_setup) + { + memcpy(urbd->aligned_setup, urbd->setup_buff, 8); +// urbd->using_aligned_setup=1; + } + else + IFX_WARN("%s():%d\n",__func__,__LINE__); + _epqh->hc->xfer_buff = urbd->aligned_setup; + } + } + #elif defined(__UNALIGNED_BUF_CHK__) + if(_epqh->urbd->is_in) + { + if(_epqh->urbd->xfer_len==0) + IFX_WARN("%s():%d IN xfer while length is zero \n",__func__,__LINE__); + else{ + if(_epqh->urbd->xfer_len < _epqh->mps) + IFX_WARN("%s():%d IN xfer while length < mps \n",__func__,__LINE__); + if(((unsigned long)_epqh->urbd->xfer_buff) & _core_if->unaligned_mask) + IFX_WARN("%s():%d IN xfer Buffer UNALIGNED\n",__func__,__LINE__); + } + } + else + { + if(_epqh->urbd->xfer_len > 0 && (((unsigned long)_epqh->urbd->xfer_buff) & _core_if->unaligned_mask)) + IFX_WARN("%s():%d OUT xfer Buffer UNALIGNED\n",__func__,__LINE__); + } + if(_epqh->ep_type==IFXUSB_EP_TYPE_CTRL) + { + if(((unsigned long)_epqh->urbd->setup_buff) & _core_if->unaligned_mask) + IFX_WARN("%s():%d SETUP xfer Buffer UNALIGNED\n",__func__,__LINE__); + } + #endif + } + urbd->aligned_checked=1; + #endif +} + +/*! + \brief Assigns transactions from a URBD to a free host channel and initializes the + host channel to perform the transactions. The host channel is removed from + the free list. + \param _ifxhcd The HCD state structure. + \param _epqh Transactions from the first URBD for this EPQH are selected and assigned to a free host channel. + */ +static +int assign_hc(ifxhcd_hcd_t *_ifxhcd, ifxhcd_epqh_t *_epqh,ifxhcd_urbd_t *_urbd) +{ + ifxhcd_hc_t *ifxhc; + struct urb *urb; + + IFX_DEBUGPL(DBG_HCDV, "%s(%p,%p)\n", __func__, _ifxhcd, _epqh); + + if(_ifxhcd->disconnecting) + { + printk(KERN_INFO "Warning: %s() Port is in discoonection\n",__func__); + return 0; + } + + if(!_epqh) return 0; + if(!_urbd) return 0; + if(!_urbd->urb) return 0; + + { + int i; + int num_channels = _ifxhcd->core_if.params.host_channels; + for(i=0;i<num_channels ; i++) + { + hcchar_data_t hcchar; + ifxusb_hc_regs_t *hc_regs; + hc_regs = _ifxhcd->core_if.hc_regs[i]; + if(_ifxhcd->ifxhc[i].phase!=HC_IDLE) + { + continue; + } + hcchar.d32 = ifxusb_rreg(&hc_regs->hcchar); + if(hcchar.b.chen || hcchar.b.chdis) + { + continue; + } + break; + } + + if(i<num_channels) + { + ifxhc=&_ifxhcd->ifxhc[i]; + ifxhc->phase=HC_ASSIGNED; + } + else + return 0; + } + + urb = _urbd->urb; + _epqh->hc = ifxhc; + _epqh->urbd = _urbd; + ifxhc->epqh = _epqh; + /* + * Use usb_pipedevice to determine device address. This address is + * 0 before the SET_ADDRESS command and the correct address afterward. + */ + ifxhc->dev_addr = usb_pipedevice(urb->pipe); + ifxhc->ep_num = usb_pipeendpoint(urb->pipe); + + if (urb->dev->speed == USB_SPEED_LOW) ifxhc->speed = IFXUSB_EP_SPEED_LOW; + else if (urb->dev->speed == USB_SPEED_FULL) ifxhc->speed = IFXUSB_EP_SPEED_FULL; + else ifxhc->speed = IFXUSB_EP_SPEED_HIGH; + + ifxhc->mps = _epqh->mps; + ifxhc->halt_status = HC_XFER_NO_HALT_STATUS; + ifxhc->ep_type = _epqh->ep_type; + + ifxhc->split = 0; + if (_epqh->need_split) + { + ifxhc->split = 1; + ifxhc->hub_addr = urb->dev->tt->hub->devnum; + ifxhc->port_addr = urb->dev->ttport; + } + return 1; +} + +/*! + \brief Assigns transactions from a URBD to a free host channel and initializes the + host channel to perform the transactions. The host channel is removed from + the free list. + \param _ifxhcd The HCD state structure. + \param _epqh Transactions from the first URBD for this EPQH are selected and assigned to a free host channel. + */ +static +void init_hc(ifxhcd_epqh_t *_epqh) +{ + ifxhcd_hc_t *ifxhc; + ifxhcd_urbd_t *urbd; + struct urb *urb; + ifxhcd_hcd_t *ifxhcd; + + IFX_DEBUGPL(DBG_HCDV, "%s(%p)\n", __func__, _epqh); + + ifxhc =_epqh->hc; + urbd =_epqh->urbd; + ifxhcd=_epqh->ifxhcd; + urb = urbd->urb; + #if defined(__UNALIGNED_BUF_ADJ__) || defined(__UNALIGNED_BUF_CHK__) + urbd->aligned_checked=0; + #endif + + ifxhc->halt_status = HC_XFER_NO_HALT_STATUS; + + if(_epqh->ep_type==IFXUSB_EP_TYPE_CTRL) + { + ifxhc->control_phase =IFXHCD_CONTROL_SETUP; + ifxhc->is_in = 0; + ifxhc->data_pid_start = IFXUSB_HC_PID_SETUP; + ifxhc->xfer_buff = urbd->setup_buff; + ifxhc->xfer_len = 8; + ifxhc->xfer_count = 0; + ifxhc->short_rw =(urb->transfer_flags & URB_ZERO_PACKET)?1:0; + ifxhc->sof_delay = 0; + _epqh->do_ping=0; + if(!ifxhc->is_in && ifxhc->split==0) + _epqh->do_ping=1; + } + else if(_epqh->ep_type==IFXUSB_EP_TYPE_ISOC) + { + #ifdef __EN_ISOC__ + struct usb_iso_packet_descriptor *frame_desc; + ifxhc->is_in = urbd->is_in; + frame_desc = &urb->iso_frame_desc[urbd->isoc_frame_index]; + urbd->xfer_len = ifxhc->xfer_len = frame_desc->length; + ifxhc->xfer_buff = urbd->xfer_buff; + ifxhc->xfer_buff += frame_desc->offset; + ifxhc->xfer_count = 0; + ifxhc->sof_delay = 0; + if(usb_gettoggle (urb->dev,usb_pipeendpoint (urb->pipe), (ifxhc->is_in)?0:1)) + ifxhc->data_pid_start = IFXUSB_HCTSIZ_DATA1; + else + ifxhc->data_pid_start = IFXUSB_HCTSIZ_DATA0; + + if(ifxhc->is_in) + ifxhc->short_rw =0; + else + ifxhc->short_rw =(urb->transfer_flags & URB_ZERO_PACKET)?1:0; + #ifdef __EN_ISOC_SPLIT__ + ifxhc->isoc_xact_pos = IFXUSB_HCSPLIT_XACTPOS_ALL; + #endif + + _epqh->isoc_frame_index=0; + _epqh->isoc_now=0; + _epqh->isoc_start_frame=0; + if(_urb->transfer_flags && URB_ISO_ASAP) + _epqh->isoc_now=1; + else + _epqh->isoc_start_frame=_urb->start_frame; + #ifdef __EN_ISOC_SPLIT__ + _epqh->isoc_split_pos =0; + _epqh->isoc_split_offset=0; + #endif + _epqh->do_ping=0; + #endif + } + else + { + ifxhc->is_in = urbd->is_in; + ifxhc->xfer_buff = urbd->xfer_buff; + ifxhc->xfer_len = urbd->xfer_len; + ifxhc->xfer_count = 0; + ifxhc->sof_delay = 0; +// if(ifxhc->xfer_len==13 && ifxhc->is_in && _epqh->ep_type==IFXUSB_EP_TYPE_BULK && ifxhc->split==0) +// ifxhc->sof_delay = 8; + if(usb_gettoggle (urb->dev,usb_pipeendpoint (urb->pipe), (ifxhc->is_in)?0:1)) + ifxhc->data_pid_start = IFXUSB_HCTSIZ_DATA1; + else + ifxhc->data_pid_start = IFXUSB_HCTSIZ_DATA0; + if(ifxhc->is_in) + ifxhc->short_rw =0; + else + ifxhc->short_rw =(urb->transfer_flags & URB_ZERO_PACKET)?1:0; + _epqh->do_ping=0; + if(!ifxhc->is_in && ifxhc->split==0) + { + if(_epqh->ep_type==IFXUSB_EP_TYPE_BULK) _epqh->do_ping=1; + } + } + + { + hcint_data_t hc_intr_mask; + uint8_t hc_num = ifxhc->hc_num; + ifxusb_hc_regs_t *hc_regs = ifxhcd->core_if.hc_regs[hc_num]; + + /* Clear old interrupt conditions for this host channel. */ + hc_intr_mask.d32 = 0xFFFFFFFF; + hc_intr_mask.b.reserved = 0; + ifxusb_wreg(&hc_regs->hcint, hc_intr_mask.d32); + + /* Enable channel interrupts required for this transfer. */ + hc_intr_mask.d32 = 0; + hc_intr_mask.b.chhltd = 1; + hc_intr_mask.b.ahberr = 1; + + ifxusb_wreg(&hc_regs->hcintmsk, hc_intr_mask.d32); + + /* Enable the top level host channel interrupt. */ + { + uint32_t intr_enable; + intr_enable = (1 << hc_num); + ifxusb_mreg(&ifxhcd->core_if.host_global_regs->haintmsk, 0, intr_enable); + } + + /* Make sure host channel interrupts are enabled. */ + { + gint_data_t gintmsk ={.d32 = 0}; + gintmsk.b.hcintr = 1; + ifxusb_mreg(&ifxhcd->core_if.core_global_regs->gintmsk, 0, gintmsk.d32); + } + + /* + * Program the HCCHARn register with the endpoint characteristics for + * the current transfer. + */ + { + hcchar_data_t hcchar; + + hcchar.d32 = 0; + hcchar.b.devaddr = ifxhc->dev_addr; + hcchar.b.epnum = ifxhc->ep_num; + hcchar.b.lspddev = (ifxhc->speed == IFXUSB_EP_SPEED_LOW); + hcchar.b.eptype = ifxhc->ep_type; + hcchar.b.mps = ifxhc->mps; + ifxusb_wreg(&hc_regs->hcchar, hcchar.d32); + + IFX_DEBUGPL(DBG_HCDV, "%s: Channel %d\n", __func__, ifxhc->hc_num); + IFX_DEBUGPL(DBG_HCDV, " Dev Addr: %d\n" , hcchar.b.devaddr); + IFX_DEBUGPL(DBG_HCDV, " Ep Num: %d\n" , hcchar.b.epnum); + IFX_DEBUGPL(DBG_HCDV, " Is Low Speed: %d\n", hcchar.b.lspddev); + IFX_DEBUGPL(DBG_HCDV, " Ep Type: %d\n" , hcchar.b.eptype); + IFX_DEBUGPL(DBG_HCDV, " Max Pkt: %d\n" , hcchar.b.mps); + IFX_DEBUGPL(DBG_HCDV, " Multi Cnt: %d\n" , hcchar.b.multicnt); + } + /* Program the HCSPLIT register for SPLITs */ + { + hcsplt_data_t hcsplt; + + hcsplt.d32 = 0; + if (ifxhc->split) + { + IFX_DEBUGPL(DBG_HCDV, "Programming HC %d with split --> %s\n", ifxhc->hc_num, + (ifxhc->split==2) ? "CSPLIT" : "SSPLIT"); + hcsplt.b.spltena = 1; + hcsplt.b.compsplt = (ifxhc->split==2); + #if defined(__EN_ISOC__) && defined(__EN_ISOC_SPLIT__) + if(_epqh->ep_type==IFXUSB_EP_TYPE_ISOC) + hcsplt.b.xactpos = ifxhc->isoc_xact_pos; + else + #endif + hcsplt.b.xactpos = IFXUSB_HCSPLIT_XACTPOS_ALL; + hcsplt.b.hubaddr = ifxhc->hub_addr; + hcsplt.b.prtaddr = ifxhc->port_addr; + IFX_DEBUGPL(DBG_HCDV, " comp split %d\n" , hcsplt.b.compsplt); + IFX_DEBUGPL(DBG_HCDV, " xact pos %d\n" , hcsplt.b.xactpos); + IFX_DEBUGPL(DBG_HCDV, " hub addr %d\n" , hcsplt.b.hubaddr); + IFX_DEBUGPL(DBG_HCDV, " port addr %d\n" , hcsplt.b.prtaddr); + IFX_DEBUGPL(DBG_HCDV, " is_in %d\n" , ifxhc->is_in); + IFX_DEBUGPL(DBG_HCDV, " Max Pkt: %d\n" , ifxhc->mps); + IFX_DEBUGPL(DBG_HCDV, " xferlen: %d\n" , ifxhc->xfer_len); + } + ifxusb_wreg(&hc_regs->hcsplt, hcsplt.d32); + } + } + process_unaligned(_epqh,&ifxhcd->core_if); + + + #ifdef __NAKSTOP__ + ifxhc->stop_on=0; + if (!ifxhc->split && ifxhc->ep_type == IFXUSB_EP_TYPE_BULK) + { + #ifdef __INNAKSTOP_BULK__ + if(ifxhc->is_in) + ifxhc->stop_on=1; + #endif + #ifdef __PINGSTOP_BULK__ + if(!ifxhc->is_in) + ifxhc->stop_on=1; + #endif + } + #endif +} + + +static +void select_eps_sub(ifxhcd_hcd_t *_ifxhcd) +{ + struct list_head *epqh_ptr; + ifxhcd_epqh_t *epqh; + struct list_head *urbd_ptr; + unsigned long flags; + ifxhcd_urbd_t *urbd; + + hfnum_data_t hfnum; + uint32_t fndiff; + + if(_ifxhcd->disconnecting) + { +// printk(KERN_INFO "Warning: %s() Port is in discoonection\n",__func__); + return ; + } + + local_irq_save(flags); + LOCK_EPQH_LIST(_ifxhcd); + + hfnum.d32 = ifxusb_rreg(&_ifxhcd->core_if.host_global_regs->hfnum); + fndiff = hfnum.b.frnum; + fndiff+= 0x00004000; + fndiff-= _ifxhcd->lastframe ; + fndiff&= 0x00003FFF; + if(!fndiff) fndiff =1; + + #ifdef __EN_ISOC__ + epqh_ptr = _ifxhcd->epqh_list_isoc.next; + while (epqh_ptr != &_ifxhcd->epqh_list_isoc) + { + epqh = list_entry(epqh_ptr, ifxhcd_epqh_t, ql); + epqh_ptr = epqh_ptr->next; + + #ifdef __DYN_SOF_INTR__ + if (!list_empty(&epqh->urbd_list)) + _ifxhcd->dyn_sof_count = DYN_SOF_COUNT_DEF; + #endif + + if(epqh->pause) + continue; + if(epqh->phase==EPQH_READY) + { + if(update_interval_counter(epqh,fndiff) || epqh->isoc_now) + { + LOCK_URBD_LIST(epqh); + urbd_ptr = epqh->urbd_list.next; + while (urbd_ptr != &epqh->urbd_list) + { + urbd = list_entry(urbd_ptr, ifxhcd_urbd_t, ql); + urbd_ptr=urbd_ptr->next; + if(urbd->phase==URBD_IDLE) + { + if(assign_hc(_ifxhcd, epqh,urbd)) + { + IFX_DEBUGPL(DBG_HCD, " select_eps ISOC\n"); + #ifdef __EPQD_DESTROY_TIMEOUT__ + del_timer(&epqh->destroy_timer); + #endif + epqh->isoc_now=0; + list_del_init (&epqh->ql); + list_add_tail(&epqh->ql, &_ifxhcd->epqh_list_isoc); + init_hc(epqh); + epqh->phase=EPQH_ACTIVE; + urbd->phase==URBD_ACTIVE; + epqh->hc.phase=HC_WAITING; + ifxhcd_hc_start(_ifxhcd, epqh->hc); + } + break; + } + } + UNLOCK_URBD_LIST(epqh); + } + } + } + #endif //__EN_ISOC__ + + epqh_ptr = _ifxhcd->epqh_list_intr.next; + while (epqh_ptr != &_ifxhcd->epqh_list_intr) + { + epqh = list_entry(epqh_ptr, ifxhcd_epqh_t, ql); + epqh_ptr = epqh_ptr->next; + #ifdef __DYN_SOF_INTR__ + if (!list_empty(&epqh->urbd_list)) + _ifxhcd->dyn_sof_count = DYN_SOF_COUNT_DEF; + #endif + if(epqh->pause) + continue; + if(epqh->phase==EPQH_READY) + { + if(update_interval_counter(epqh,fndiff)) + { + LOCK_URBD_LIST(epqh); + urbd_ptr = epqh->urbd_list.next; + while (urbd_ptr != &epqh->urbd_list) + { + urbd = list_entry(urbd_ptr, ifxhcd_urbd_t, ql); + urbd_ptr=urbd_ptr->next; + if(urbd->phase==URBD_IDLE) + { + if(assign_hc(_ifxhcd, epqh,urbd)) + { + IFX_DEBUGPL(DBG_HCD, " select_eps INTR\n"); + #ifdef __EPQD_DESTROY_TIMEOUT__ + del_timer(&epqh->destroy_timer); + #endif + list_del_init (&epqh->ql); + list_add_tail(&epqh->ql, &_ifxhcd->epqh_list_intr); + init_hc(epqh); + epqh->phase=EPQH_ACTIVE; + urbd->phase=URBD_ACTIVE; + epqh->hc->phase=HC_WAITING; + ifxhcd_hc_start(_ifxhcd, epqh->hc); + } + break; + } + } + UNLOCK_URBD_LIST(epqh); + } + } + else if(epqh->phase==EPQH_STDBY) + { + if(epqh->period_counter > 0 ) + epqh->period_counter --; + if(epqh->period_counter == 0) + ifxhcd_epqh_idle_periodic(epqh); + update_interval_counter(epqh,fndiff); + } + else + update_interval_counter(epqh,fndiff); + } + + epqh_ptr = _ifxhcd->epqh_list_np.next; + while (epqh_ptr != &_ifxhcd->epqh_list_np) // may need to preserve at lease one for period + { + epqh = list_entry(epqh_ptr, ifxhcd_epqh_t, ql); + epqh_ptr = epqh_ptr->next; + #ifdef __DYN_SOF_INTR__ + if (!list_empty(&epqh->urbd_list)) + _ifxhcd->dyn_sof_count = DYN_SOF_COUNT_DEF; + #endif + if(epqh->pause) + continue; + if(epqh->phase==EPQH_READY) + { + LOCK_URBD_LIST(epqh); + urbd_ptr = epqh->urbd_list.next; + while (urbd_ptr != &epqh->urbd_list) + { + urbd = list_entry(urbd_ptr, ifxhcd_urbd_t, ql); + urbd_ptr=urbd_ptr->next; + if(urbd->phase==URBD_IDLE) + { + if(assign_hc(_ifxhcd, epqh,urbd)) + { + IFX_DEBUGPL(DBG_HCD, " select_eps Non-Period\n"); + #ifdef __EPQD_DESTROY_TIMEOUT__ + del_timer(&epqh->destroy_timer); + #endif + list_del_init (&epqh->ql); + list_add_tail(&epqh->ql, &_ifxhcd->epqh_list_np); + init_hc(epqh); + epqh->phase=EPQH_ACTIVE; + urbd->phase=URBD_ACTIVE; + epqh->hc->phase=HC_WAITING; + ifxhcd_hc_start(_ifxhcd, epqh->hc); + } + break; + } + } + UNLOCK_URBD_LIST(epqh); + } + } + + _ifxhcd->lastframe=hfnum.b.frnum; + + UNLOCK_EPQH_LIST(_ifxhcd); + local_irq_restore(flags); +} + +static +void select_eps_func(unsigned long data) +{ + ifxhcd_hcd_t *ifxhcd; + ifxhcd=((ifxhcd_hcd_t *)data); + + select_eps_sub(ifxhcd); +} + +/*! + \fn void select_eps(ifxhcd_hcd_t *_ifxhcd) + \brief This function selects transactions from the HCD transfer schedule and assigns them to available host channels. + \param _ifxhcd Pointer to the sate of HCD structure + \ingroup IFXUSB_HCD + */ +void select_eps(ifxhcd_hcd_t *_ifxhcd) +{ + if(in_irq()) + { + if(!_ifxhcd->tasklet_select_eps.func) + { + _ifxhcd->tasklet_select_eps.next = NULL; + _ifxhcd->tasklet_select_eps.state = 0; + atomic_set( &_ifxhcd->tasklet_select_eps.count, 0); + _ifxhcd->tasklet_select_eps.func = select_eps_func; + _ifxhcd->tasklet_select_eps.data = (unsigned long)_ifxhcd; + } + tasklet_schedule(&_ifxhcd->tasklet_select_eps); + } + else + { + select_eps_sub(_ifxhcd); + } +} + +static +void ifxhcd_hc_kickstart(ifxhcd_hcd_t *_ifxhcd) +{ + int num_channels; + ifxusb_hc_regs_t *hc_regs; + int i; + ifxhcd_hc_t *ifxhc; + num_channels = _ifxhcd->core_if.params.host_channels; + + for (i = 0; i < num_channels; i++) + { + ifxhc=&_ifxhcd->ifxhc[i]; + if(ifxhc->phase==HC_STARTING) + { + if(ifxhc->sof_delay) ifxhc->sof_delay--; + if(!ifxhc->sof_delay) + { + hcint_data_t hcint; +// ifxhc->erron=0; + hc_regs = _ifxhcd->core_if.hc_regs[i]; + hcint.d32 =0xFFFFFFFF; + ifxusb_wreg(&hc_regs->hcint, hcint.d32); + hcint.d32 =ifxusb_rreg(&hc_regs->hcintmsk); + hcint.b.nak =0; + hcint.b.ack =0; + hcint.b.nyet=0; + if(ifxhc->erron) + { + hcint.b.ack =1; + hcint.b.nak =1; + hcint.b.nyet =1; + } + #ifdef __NAKSTOP__ + if(ifxhc->stop_on) + { + hcint.b.ack =1; + hcint.b.nak =1; + } + #endif + ifxusb_wreg(&hc_regs->hcintmsk, hcint.d32); + ifxusb_wreg(&hc_regs->hcchar, ifxhc->hcchar); + ifxhc->phase=HC_STARTED; + } + } + } + + for (i = 0; i < num_channels; i++) + { + ifxhc=&_ifxhcd->ifxhc[i]; + if(ifxhc->phase==HC_WAITING && + (ifxhc->ep_type == IFXUSB_EP_TYPE_INTR || ifxhc->ep_type == IFXUSB_EP_TYPE_ISOC) + ) + { + ifxhcd_hc_start(_ifxhcd, ifxhc); + } + } + + for (i = 0; i < num_channels; i++) + { + ifxhc=&_ifxhcd->ifxhc[i]; + if(ifxhc->phase==HC_WAITING) + { + ifxhcd_hc_start(_ifxhcd, ifxhc); + } + } +} + +/* + * Handles the start-of-frame interrupt in host mode. Non-periodic + * transactions may be queued to the DWC_otg controller for the current + * (micro)frame. Periodic transactions may be queued to the controller for the + * next (micro)frame. + */ +static +int32_t handle_sof_intr (ifxhcd_hcd_t *_ifxhcd) +{ + _ifxhcd->pkt_remaining=_ifxhcd->pkt_remaining_reload; + ifxhcd_hc_kickstart(_ifxhcd); + + select_eps(_ifxhcd); + + /* Clear interrupt */ + { + gint_data_t gintsts; + gintsts.d32=0; + gintsts.b.sofintr = 1; + ifxusb_wreg(&_ifxhcd->core_if.core_global_regs->gintsts, gintsts.d32); + + #ifdef __DYN_SOF_INTR__ + if(_ifxhcd->dyn_sof_count) + _ifxhcd->dyn_sof_count--; + if(!_ifxhcd->dyn_sof_count) + ifxusb_mreg(&_ifxhcd->core_if.core_global_regs->gintmsk, gintsts.d32,0); + #endif + } + return 1; +} + + + +/* There are multiple conditions that can cause a port interrupt. This function + * determines which interrupt conditions have occurred and handles them + * appropriately. */ +static int32_t handle_port_intr (ifxhcd_hcd_t *_ifxhcd) +{ + int retval = 0; + hprt0_data_t hprt0; + hprt0_data_t hprt0_modify; + + hprt0.d32 = + hprt0_modify.d32 = ifxusb_rreg(_ifxhcd->core_if.hprt0); + + /* Clear appropriate bits in HPRT0 to clear the interrupt bit in + * GINTSTS */ + + hprt0_modify.b.prtena = 0; + hprt0_modify.b.prtconndet = 0; + hprt0_modify.b.prtenchng = 0; + hprt0_modify.b.prtovrcurrchng = 0; + + /* Port Connect Detected + * Set flag and clear if detected */ + if (hprt0.b.prtconndet) { + IFX_DEBUGPL(DBG_HCD, "--Port Interrupt HPRT0=0x%08x " + "Port Connect Detected--\n", hprt0.d32); + _ifxhcd->flags.b.port_connect_status_change = 1; + _ifxhcd->flags.b.port_connect_status = 1; + hprt0_modify.b.prtconndet = 1; + + /* The Hub driver asserts a reset when it sees port connect + * status change flag */ + retval |= 1; + } + + /* Port Enable Changed + * Clear if detected - Set internal flag if disabled */ + if (hprt0.b.prtenchng) { + IFX_DEBUGPL(DBG_HCD, " --Port Interrupt HPRT0=0x%08x " + "Port Enable Changed--\n", hprt0.d32); + hprt0_modify.b.prtenchng = 1; + if (hprt0.b.prtena == 1) + { + /* Port has been enabled set the reset change flag */ + _ifxhcd->flags.b.port_reset_change = 1; + if (hprt0.b.prtspd == IFXUSB_HPRT0_PRTSPD_HIGH_SPEED) + _ifxhcd->pkt_remaining_reload=_ifxhcd->pkt_remaining_reload_hs; + else if (hprt0.b.prtspd == IFXUSB_HPRT0_PRTSPD_LOW_SPEED) + _ifxhcd->pkt_remaining_reload=_ifxhcd->pkt_remaining_reload_ls; + else + _ifxhcd->pkt_remaining_reload=_ifxhcd->pkt_remaining_reload_fs; + } + else + _ifxhcd->flags.b.port_enable_change = 1; + retval |= 1; + } + + /* Overcurrent Change Interrupt */ + + if (hprt0.b.prtovrcurrchng) { + IFX_DEBUGPL(DBG_HCD, " --Port Interrupt HPRT0=0x%08x " + "Port Overcurrent Changed--\n", hprt0.d32); + _ifxhcd->flags.b.port_over_current_change = 1; + hprt0_modify.b.prtovrcurrchng = 1; + retval |= 1; + } + + /* Clear Port Interrupts */ + ifxusb_wreg(_ifxhcd->core_if.hprt0, hprt0_modify.d32); + return retval; +} + +/* + * This interrupt indicates that SUSPEND state has been detected on + * the USB. + * No Functioning in Host Mode + */ +static int32_t handle_usb_suspend_intr(ifxhcd_hcd_t *_ifxhcd) +{ + gint_data_t gintsts; + IFX_DEBUGP("USB SUSPEND RECEIVED!\n"); + /* Clear interrupt */ + gintsts.d32 = 0; + gintsts.b.usbsuspend = 1; + ifxusb_wreg(&_ifxhcd->core_if.core_global_regs->gintsts, gintsts.d32); + return 1; +} + +/* + * This interrupt indicates that the IFXUSB controller has detected a + * resume or remote wakeup sequence. If the IFXUSB controller is in + * low power mode, the handler must brings the controller out of low + * power mode. The controller automatically begins resume + * signaling. The handler schedules a time to stop resume signaling. + */ +static int32_t handle_wakeup_detected_intr(ifxhcd_hcd_t *_ifxhcd) +{ + gint_data_t gintsts; + hprt0_data_t hprt0 = {.d32=0}; + pcgcctl_data_t pcgcctl = {.d32=0}; + ifxusb_core_if_t *core_if = &_ifxhcd->core_if; + + IFX_DEBUGPL(DBG_ANY, "++Resume and Remote Wakeup Detected Interrupt++\n"); + + /* + * Clear the Resume after 70ms. (Need 20 ms minimum. Use 70 ms + * so that OPT tests pass with all PHYs). + */ + /* Restart the Phy Clock */ + pcgcctl.b.stoppclk = 1; + ifxusb_mreg(core_if->pcgcctl, pcgcctl.d32, 0); + UDELAY(10); + + /* Now wait for 70 ms. */ + hprt0.d32 = ifxusb_read_hprt0( core_if ); + IFX_DEBUGPL(DBG_ANY,"Resume: HPRT0=%0x\n", hprt0.d32); + MDELAY(70); + hprt0.b.prtres = 0; /* Resume */ + ifxusb_wreg(core_if->hprt0, hprt0.d32); + IFX_DEBUGPL(DBG_ANY,"Clear Resume: HPRT0=%0x\n", ifxusb_rreg(core_if->hprt0)); + + /* Clear interrupt */ + gintsts.d32 = 0; + gintsts.b.wkupintr = 1; + ifxusb_wreg(&core_if->core_global_regs->gintsts, gintsts.d32); + return 1; +} + +/* + * This interrupt indicates that a device is initiating the Session + * Request Protocol to request the host to turn on bus power so a new + * session can begin. The handler responds by turning on bus power. If + * the DWC_otg controller is in low power mode, the handler brings the + * controller out of low power mode before turning on bus power. + */ +static int32_t handle_session_req_intr(ifxhcd_hcd_t *_ifxhcd) +{ + /* Clear interrupt */ + gint_data_t gintsts = { .d32 = 0 }; + gintsts.b.sessreqintr = 1; + ifxusb_wreg(&_ifxhcd->core_if.core_global_regs->gintsts, gintsts.d32); + return 1; +} + +/* + * This interrupt indicates that a device has been disconnected from + * the root port. + */ +static int32_t handle_disconnect_intr(ifxhcd_hcd_t *_ifxhcd) +{ + gint_data_t gintsts; + + ifxhcd_disconnect(_ifxhcd); + + gintsts.d32 = 0; + gintsts.b.disconnect = 1; + ifxusb_wreg(&_ifxhcd->core_if.core_global_regs->gintsts, gintsts.d32); + return 1; +} + +/* + * This function handles the Connector ID Status Change Interrupt. It + * reads the OTG Interrupt Register (GOTCTL) to determine whether this + * is a Device to Host Mode transition or a Host Mode to Device + * Transition. + * This only occurs when the cable is connected/removed from the PHY + * connector. + */ +static int32_t handle_conn_id_status_change_intr(ifxhcd_hcd_t *_ifxhcd) +{ + gint_data_t gintsts; + + IFX_WARN("ID Status Change Interrupt: currently in %s mode\n", + ifxusb_mode(&_ifxhcd->core_if) ? "Host" : "Device"); + + gintsts.d32 = 0; + gintsts.b.conidstschng = 1; + ifxusb_wreg(&_ifxhcd->core_if.core_global_regs->gintsts, gintsts.d32); + return 1; +} + +static int32_t handle_otg_intr(ifxhcd_hcd_t *_ifxhcd) +{ + ifxusb_core_global_regs_t *global_regs = _ifxhcd->core_if.core_global_regs; + gotgint_data_t gotgint; + gotgint.d32 = ifxusb_rreg( &global_regs->gotgint); + /* Clear GOTGINT */ + ifxusb_wreg (&global_regs->gotgint, gotgint.d32); + return 1; +} + +/** This function will log a debug message */ +static int32_t handle_mode_mismatch_intr(ifxhcd_hcd_t *_ifxhcd) +{ + gint_data_t gintsts; + + IFX_WARN("Mode Mismatch Interrupt: currently in %s mode\n", + ifxusb_mode(&_ifxhcd->core_if) ? "Host" : "Device"); + gintsts.d32 = 0; + gintsts.b.modemismatch = 1; + ifxusb_wreg(&_ifxhcd->core_if.core_global_regs->gintsts, gintsts.d32); + return 1; +} + +/** This function handles interrupts for the HCD. */ +int32_t ifxhcd_handle_intr (ifxhcd_hcd_t *_ifxhcd) +{ + int retval = 0; + + ifxusb_core_if_t *core_if = &_ifxhcd->core_if; + gint_data_t gintsts,gintsts2; + + /* Check if HOST Mode */ + if (ifxusb_is_device_mode(core_if)) + { + IFX_ERROR("%s() CRITICAL! IN DEVICE MODE\n", __func__); + return 0; + } + + gintsts.d32 = ifxusb_read_core_intr(core_if); + gintsts2.d32 = 0; + + if (!gintsts.d32) + return 0; + + //Common INT + if (gintsts.b.modemismatch) + { + retval |= handle_mode_mismatch_intr(_ifxhcd); + gintsts.b.modemismatch=0; + gintsts2.b.modemismatch=1; + } + if (gintsts.b.otgintr) + { + retval |= handle_otg_intr(_ifxhcd); + gintsts.b.otgintr=0; + gintsts2.b.otgintr=1; + } + if (gintsts.b.conidstschng) + { + retval |= handle_conn_id_status_change_intr(_ifxhcd); + gintsts.b.conidstschng=0; + gintsts2.b.conidstschng=1; + } + if (gintsts.b.disconnect) + { + retval |= handle_disconnect_intr(_ifxhcd); + gintsts.b.disconnect=0; + gintsts2.b.disconnect=1; + } + if (gintsts.b.sessreqintr) + { + retval |= handle_session_req_intr(_ifxhcd); + gintsts.b.sessreqintr=0; + gintsts2.b.sessreqintr=1; + } + if (gintsts.b.wkupintr) + { + retval |= handle_wakeup_detected_intr(_ifxhcd); + gintsts.b.wkupintr=0; + gintsts2.b.wkupintr=1; + } + if (gintsts.b.usbsuspend) + { + retval |= handle_usb_suspend_intr(_ifxhcd); + gintsts.b.usbsuspend=0; + gintsts2.b.usbsuspend=1; + } + + //Host Int + if (gintsts.b.sofintr) + { + retval |= handle_sof_intr (_ifxhcd); + gintsts.b.sofintr=0; + gintsts2.b.sofintr=1; + } + if (gintsts.b.portintr) + { + retval |= handle_port_intr (_ifxhcd); + gintsts.b.portintr=0; + gintsts2.b.portintr=1; + } + if (gintsts.b.hcintr) + { + int i; + haint_data_t haint; + haint.d32 = ifxusb_read_host_all_channels_intr(core_if); + for (i=0; i<MAX_EPS_CHANNELS && i< core_if->params.host_channels; i++) + if (haint.b2.chint & (1 << i)) + retval |= handle_hc_n_intr (_ifxhcd, i); + gintsts.b.hcintr=0; + gintsts2.b.hcintr=1; + } + return retval; +} + diff --git a/package/kernel/lantiq/ltq-hcd/src/ifxhcd_queue.c b/package/kernel/lantiq/ltq-hcd/src/ifxhcd_queue.c new file mode 100644 index 0000000..a30fcd0 --- /dev/null +++ b/package/kernel/lantiq/ltq-hcd/src/ifxhcd_queue.c @@ -0,0 +1,485 @@ +/***************************************************************************** + ** FILE NAME : ifxhcd_queue.c + ** PROJECT : IFX USB sub-system V3 + ** MODULES : IFX USB sub-system Host and Device driver + ** SRC VERSION : 3.2 + ** DATE : 1/Jan/2011 + ** AUTHOR : Chen, Howard + ** DESCRIPTION : This file contains the functions to manage Queue Heads and Queue + ** Transfer Descriptors. + ** FUNCTIONS : + ** COMPILER : gcc + ** REFERENCE : Synopsys DWC-OTG Driver 2.7 + ** COPYRIGHT : Copyright (c) 2010 + ** LANTIQ DEUTSCHLAND GMBH, + ** Am Campeon 3, 85579 Neubiberg, Germany + ** + ** This program is free software; you can redistribute it and/or modify + ** it under the terms of the GNU General Public License as published by + ** the Free Software Foundation; either version 2 of the License, or + ** (at your option) any later version. + ** + ** Version Control Section ** + ** $Author$ + ** $Date$ + ** $Revisions$ + ** $Log$ Revision history + *****************************************************************************/ + +/* + * This file contains code fragments from Synopsys HS OTG Linux Software Driver. + * For this code the following notice is applicable: + * + * ========================================================================== + * + * Synopsys HS OTG Linux Software Driver and documentation (hereinafter, + * "Software") is an Unsupported proprietary work of Synopsys, Inc. unless + * otherwise expressly agreed to in writing between Synopsys and you. + * + * The Software IS NOT an item of Licensed Software or Licensed Product under + * any End User Software License Agreement or Agreement for Licensed Product + * with Synopsys or any supplement thereto. You are permitted to use and + * redistribute this Software in source and binary forms, with or without + * modification, provided that redistributions of source code must retain this + * notice. You may not view, use, disclose, copy or distribute this file or + * any information contained herein except pursuant to this license grant from + * Synopsys. If you do not agree with this notice, including the disclaimer + * below, then you are not authorized to use the Software. + * + * THIS SOFTWARE IS BEING DISTRIBUTED BY SYNOPSYS SOLELY ON AN "AS IS" BASIS + * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE + * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE + * ARE HEREBY DISCLAIMED. IN NO EVENT SHALL SYNOPSYS BE LIABLE FOR ANY DIRECT, + * INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES + * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR + * SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER + * CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT + * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY + * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH + * DAMAGE. + * ========================================================================== */ + +/*! + \file ifxhcd_queue.c + \ingroup IFXUSB_DRIVER_V3 + \brief This file contains the functions to manage Queue Heads and Queue + Transfer Descriptors. +*/ +#include <linux/version.h> +#include "ifxusb_version.h" + +#include <linux/kernel.h> +#include <linux/module.h> +#include <linux/moduleparam.h> +#include <linux/init.h> +#include <linux/device.h> +#include <linux/errno.h> +#include <linux/list.h> +#include <linux/interrupt.h> +#include <linux/string.h> + +#include "ifxusb_plat.h" +#include "ifxusb_regs.h" +#include "ifxusb_cif.h" +#include "ifxhcd.h" + +#ifdef __EPQD_DESTROY_TIMEOUT__ + #define epqh_self_destroy_timeout 300 + static void eqph_destroy_func(unsigned long _ptr) + { + ifxhcd_epqh_t *epqh=(ifxhcd_epqh_t *)_ptr; + if(epqh) + { + if(epqh->sysep) + { + epqh->sysep->hcpriv=NULL; + } + ifxhcd_epqh_free (epqh); + } + } +#endif + +/*! + \brief This function allocates and initializes a EPQH. + + \param _ifxhcd The HCD state structure for the USB Host controller. + \param[in] _urb Holds the information about the device/endpoint that we need + to initialize the EPQH. + + \return Returns pointer to the newly allocated EPQH, or NULL on error. + */ +static ifxhcd_epqh_t *ifxhcd_epqh_create (ifxhcd_hcd_t *_ifxhcd, struct urb *_urb) +{ + ifxhcd_epqh_t *epqh; + + hprt0_data_t hprt0; + struct usb_host_endpoint *sysep = ifxhcd_urb_to_endpoint(_urb); + + /* Allocate memory */ +// epqh=(ifxhcd_epqh_t *) kmalloc (sizeof(ifxhcd_epqh_t), GFP_KERNEL); + epqh=(ifxhcd_epqh_t *) kmalloc (sizeof(ifxhcd_epqh_t), GFP_ATOMIC); + + if(epqh == NULL) + return NULL; + + memset (epqh, 0, sizeof (ifxhcd_epqh_t)); + + epqh->sysep=sysep; + + epqh->devno=_urb->dev->devnum; + + epqh->ifxhcd=_ifxhcd; + epqh->phase=EPQH_IDLE; + + /* Initialize EPQH */ + switch (usb_pipetype(_urb->pipe)) + { + case PIPE_CONTROL : epqh->ep_type = IFXUSB_EP_TYPE_CTRL; break; + case PIPE_BULK : epqh->ep_type = IFXUSB_EP_TYPE_BULK; break; + case PIPE_ISOCHRONOUS: epqh->ep_type = IFXUSB_EP_TYPE_ISOC; break; + case PIPE_INTERRUPT : epqh->ep_type = IFXUSB_EP_TYPE_INTR; break; + } + + usb_settoggle(_urb->dev, usb_pipeendpoint (_urb->pipe), !usb_pipein(_urb->pipe), IFXUSB_HC_PID_DATA0); + epqh->mps = usb_maxpacket(_urb->dev, _urb->pipe, !(usb_pipein(_urb->pipe))); + + INIT_LIST_HEAD(&epqh->urbd_list); + #ifdef __STRICT_ORDER__ + INIT_LIST_HEAD(&epqh->release_list); + #endif + INIT_LIST_HEAD(&epqh->ql); + INIT_LIST_HEAD(&epqh->ql_all); + INIT_URBD_LIST(epqh); + + epqh->hc = NULL; + + /* FS/LS Enpoint on HS Hub + * NOT virtual root hub */ + epqh->need_split = 0; + hprt0.d32 = ifxusb_read_hprt0 (&_ifxhcd->core_if); + if (hprt0.b.prtspd == IFXUSB_HPRT0_PRTSPD_HIGH_SPEED && + ((_urb->dev->speed == USB_SPEED_LOW) || + (_urb->dev->speed == USB_SPEED_FULL)) && + (_urb->dev->tt) && (_urb->dev->tt->hub) && (_urb->dev->tt->hub->devnum != 1)) + { + IFX_DEBUGPL(DBG_HCD, "QH init: EP %d: TT found at hub addr %d, for port %d\n", + usb_pipeendpoint(_urb->pipe), _urb->dev->tt->hub->devnum, + _urb->dev->ttport); + epqh->need_split = 1; + } + + if (epqh->ep_type == IFXUSB_EP_TYPE_INTR || + epqh->ep_type == IFXUSB_EP_TYPE_ISOC) + { + /* Compute scheduling parameters once and save them. */ + epqh->interval = _urb->interval; + if(epqh->need_split) + epqh->interval *= 8; + } + + #ifdef __EN_ISOC__ + if (epqh->ep_type == IFXUSB_EP_TYPE_ISOC) + _ifxhcd->isoc_ep_count++; + #endif + + epqh->period_counter=0; + + #ifdef __EPQD_DESTROY_TIMEOUT__ + /* Start a timer for this transfer. */ + init_timer(&epqh->destroy_timer); + epqh->destroy_timer.function = eqph_destroy_func; + epqh->destroy_timer.data = (unsigned long)(epqh); + #endif + + #ifdef __DEBUG__ + IFX_DEBUGPL(DBG_HCD , "IFXUSB HCD EPQH Initialized\n"); + IFX_DEBUGPL(DBG_HCDV, "IFXUSB HCD EPQH - epqh = %p\n", epqh); + IFX_DEBUGPL(DBG_HCDV, "IFXUSB HCD EPQH - Device Address = %d EP %d, %s\n", + _urb->dev->devnum, + usb_pipeendpoint(_urb->pipe), + usb_pipein(_urb->pipe) == USB_DIR_IN ? "IN" : "OUT"); + IFX_DEBUGPL(DBG_HCDV, "IFXUSB HCD EPQH - Speed = %s\n", + ({ char *speed; switch (_urb->dev->speed) { + case USB_SPEED_LOW: speed = "low" ; break; + case USB_SPEED_FULL: speed = "full"; break; + case USB_SPEED_HIGH: speed = "high"; break; + default: speed = "?"; break; + }; speed;})); + IFX_DEBUGPL(DBG_HCDV, "IFXUSB HCD EPQH - Type = %s\n", + ({ + char *type; switch (epqh->ep_type) + { + case IFXUSB_EP_TYPE_ISOC: type = "isochronous"; break; + case IFXUSB_EP_TYPE_INTR: type = "interrupt" ; break; + case IFXUSB_EP_TYPE_CTRL: type = "control" ; break; + case IFXUSB_EP_TYPE_BULK: type = "bulk" ; break; + default: type = "?"; break; + }; + type; + })); + if (epqh->ep_type == IFXUSB_EP_TYPE_INTR) + IFX_DEBUGPL(DBG_HCDV, "IFXUSB HCD EPQH - interval = %d\n", epqh->interval); + #endif + + LOCK_EPQH_LIST_ALL(_ifxhcd); + list_add_tail(&epqh->ql_all, &_ifxhcd->epqh_list_all); + UNLOCK_EPQH_LIST_ALL(_ifxhcd); + + LOCK_EPQH_LIST(_ifxhcd); + switch (epqh->ep_type) + { + case IFXUSB_EP_TYPE_CTRL: + case IFXUSB_EP_TYPE_BULK: + + list_add_tail(&epqh->ql, &_ifxhcd->epqh_list_np); + break; + case IFXUSB_EP_TYPE_INTR: + list_add_tail(&epqh->ql, &_ifxhcd->epqh_list_intr); + break; + #ifdef __EN_ISOC__ + case IFXUSB_EP_TYPE_ISOC: + list_add_tail(&epqh->ql, &_ifxhcd->epqh_list_isoc); + + break; + #endif + } + UNLOCK_EPQH_LIST(_ifxhcd); + return epqh; +} + + + + + + +/*! + \brief Free the EPQH. EPQH should already be removed from a list. + URBD list should already be empty if called from URB Dequeue. + + \param[in] _epqh The EPQH to free. + */ +void ifxhcd_epqh_free (ifxhcd_epqh_t *_epqh) +{ + unsigned long flags; + if(!_epqh) + return; + + if(_epqh->sysep) _epqh->sysep->hcpriv=NULL; + _epqh->sysep=NULL; + + local_irq_save (flags); + if (!list_empty(&_epqh->urbd_list)) + IFX_WARN("%s() invalid epqh state\n",__func__); + else + { + LOCK_EPQH_LIST_ALL(_epqh->ifxhcd); + if (!list_empty(&_epqh->ql_all)) + list_del_init (&_epqh->ql_all); + UNLOCK_EPQH_LIST_ALL(_epqh->ifxhcd); + + LOCK_EPQH_LIST(_epqh->ifxhcd); + if (!list_empty(&_epqh->ql)) + list_del_init (&_epqh->ql); + UNLOCK_EPQH_LIST(_epqh->ifxhcd); + + #ifdef __EPQD_DESTROY_TIMEOUT__ + del_timer(&_epqh->destroy_timer); + #endif + kfree (_epqh); + } + local_irq_restore (flags); +} + + +void ifxhcd_epqh_idle(ifxhcd_epqh_t *_epqh) +{ + unsigned long flags; + local_irq_save(flags); + LOCK_URBD_LIST(_epqh); + if (list_empty(&_epqh->urbd_list)) + { + if(_epqh->ep_type == IFXUSB_EP_TYPE_ISOC || _epqh->ep_type == IFXUSB_EP_TYPE_INTR) + _epqh->phase=EPQH_STDBY; + else + { + _epqh->phase=EPQH_IDLE; + #ifdef __EPQD_DESTROY_TIMEOUT__ + del_timer(&_epqh->destroy_timer); + _epqh->destroy_timer.expires = jiffies + (HZ*epqh_self_destroy_timeout); + add_timer(&_epqh->destroy_timer ); + #endif + } + } + else + { + _epqh->phase=EPQH_READY; + #ifdef __EPQD_DESTROY_TIMEOUT__ + del_timer(&_epqh->destroy_timer); + #endif + } + UNLOCK_URBD_LIST(_epqh); + local_irq_restore(flags); +} + + +void ifxhcd_epqh_idle_periodic(ifxhcd_epqh_t *_epqh) +{ + unsigned long flags; + if(_epqh->ep_type != IFXUSB_EP_TYPE_ISOC && _epqh->ep_type != IFXUSB_EP_TYPE_INTR && _epqh->phase!=EPQH_STDBY) + return; + + local_irq_save(flags); + LOCK_URBD_LIST(_epqh); + if (!list_empty(&_epqh->urbd_list)) + IFX_WARN("%s() invalid epqh state(not empty)\n",__func__); + + _epqh->phase=EPQH_IDLE; + + #ifdef __EPQD_DESTROY_TIMEOUT__ + del_timer(&_epqh->destroy_timer); + _epqh->destroy_timer.expires = jiffies + (HZ*epqh_self_destroy_timeout); + add_timer(&_epqh->destroy_timer ); + #endif + + #ifdef __EN_ISOC__ + if (_epqh->ep_type == IFXUSB_EP_TYPE_ISOC) + _epqh->ifxhcd->isoc_ep_count--; + #endif + UNLOCK_URBD_LIST(_epqh); + local_irq_restore(flags); +} + + +ifxhcd_epqh_t *ifxhcd_urbd_create (ifxhcd_hcd_t *_ifxhcd,struct urb *_urb) +{ + ifxhcd_urbd_t *urbd; + struct usb_host_endpoint *sysep; + ifxhcd_epqh_t *epqh=NULL; + unsigned long flags; + + local_irq_save(flags); + + sysep = ifxhcd_urb_to_endpoint(_urb); + + LOCK_EPQH_LIST_ALL(_ifxhcd); + epqh = sysep_to_epqh(_ifxhcd, sysep); + + if (!epqh) + { + sysep->hcpriv = NULL; + epqh = ifxhcd_epqh_create (_ifxhcd, _urb); + } + UNLOCK_EPQH_LIST_ALL(_ifxhcd); + + if (!epqh) + { + IFX_ERROR("EPQH Error alloc\n"); + local_irq_restore (flags); + return (ifxhcd_epqh_t *)NULL; + } + if(epqh->phase==EPQH_DISABLING) + { + IFX_ERROR("EPQH Error alloc while disabling\n"); + local_irq_restore (flags); + return (ifxhcd_epqh_t *)NULL; + } + sysep->hcpriv = epqh; + + if(_urb->hcpriv) + { + IFX_WARN("%s() Previous urb->hcpriv exist %p\n",__func__,_urb->hcpriv); + #if 1 + local_irq_restore (flags); + return (ifxhcd_epqh_t *)NULL; + #else + urbd = _urb->hcpriv; + if(urbd->epqh!=epqh) + IFX_WARN("%s() Previous urb->hcpriv exist %p and epqh not the same %p %p\n",__func__,_urb->hcpriv,urbd->epqh,epqh); + #endif + } + else + { + urbd = (ifxhcd_urbd_t *) kmalloc (sizeof(ifxhcd_urbd_t), GFP_ATOMIC); + if (!urbd) + { + local_irq_restore (flags); + return (ifxhcd_epqh_t *)NULL; + } + memset (urbd, 0, sizeof (ifxhcd_urbd_t)); + INIT_LIST_HEAD(&urbd->ql); + } + + _urb->hcpriv = urbd; + urbd->urb = _urb; + urbd->epqh = epqh; + urbd->status= -EINPROGRESS; + + urbd->is_in=usb_pipein(_urb->pipe) ? 1 : 0; +#define URB_NO_SETUP_DMA_MAP 0 + #ifdef __EN_ISOC__ + if(epqh->ep_type == IFXUSB_EP_TYPE_ISOC) + { + if(_urb->transfer_flags && URB_NO_TRANSFER_DMA_MAP) + urbd->xfer_buff = (uint8_t *) (KSEG1ADDR((uint32_t *)_urb->transfer_dma)); + else + urbd->xfer_buff = (uint8_t *) _urb->transfer_buffer; + } + else + #endif + { + urbd->xfer_len=_urb->transfer_buffer_length; + if(urbd->xfer_len>0) + { + if(_urb->transfer_flags && URB_NO_TRANSFER_DMA_MAP) + urbd->xfer_buff = (uint8_t *) (KSEG1ADDR((uint32_t *)_urb->transfer_dma)); + else + urbd->xfer_buff = (uint8_t *) _urb->transfer_buffer; + } + } + + #if 1 // cache write-back, so DMA engine can get correct content. Precaution + if(urbd->xfer_len) + dma_cache_wback_inv((unsigned long)urbd->xfer_buff, urbd->xfer_len); + #endif + + if(epqh->ep_type == IFXUSB_EP_TYPE_CTRL) + { + if(_urb->transfer_flags && URB_NO_SETUP_DMA_MAP) + urbd->setup_buff = (uint8_t *) (KSEG1ADDR((uint32_t *)_urb->setup_dma)); + else + urbd->setup_buff = (uint8_t *) _urb->setup_packet; + #if 1 // cache write-back, so DMA engine can get correct content. Precaution + dma_cache_wback_inv((unsigned long)urbd->setup_buff, 16); + #endif + } + + LOCK_URBD_LIST(epqh); + if (!list_empty(&urbd->ql)) + list_del_init(&urbd->ql); + list_add_tail(&urbd->ql, &epqh->urbd_list); + epqh->urbd_count++; + UNLOCK_URBD_LIST(epqh); + + local_irq_restore (flags); + return epqh; +} + + + +ifxhcd_epqh_t * sysep_to_epqh(ifxhcd_hcd_t *_ifxhcd, struct usb_host_endpoint *_sysep) +{ + ifxhcd_epqh_t *epqh; + + LOCK_EPQH_LIST_ALL(_ifxhcd); + list_for_each_entry( epqh, &_ifxhcd->epqh_list_all, ql_all) + { + if(epqh->sysep==_sysep) + { + UNLOCK_EPQH_LIST_ALL(_ifxhcd); + return epqh; + } + } + UNLOCK_EPQH_LIST_ALL(_ifxhcd); + return NULL; +} + diff --git a/package/kernel/lantiq/ltq-hcd/src/ifxusb_cif.c b/package/kernel/lantiq/ltq-hcd/src/ifxusb_cif.c new file mode 100644 index 0000000..9f02625 --- /dev/null +++ b/package/kernel/lantiq/ltq-hcd/src/ifxusb_cif.c @@ -0,0 +1,1686 @@ +/***************************************************************************** + ** FILE NAME : ifxusb_cif.c + ** PROJECT : IFX USB sub-system V3 + ** MODULES : IFX USB sub-system Host and Device driver + ** SRC VERSION : 1.0 + ** SRC VERSION : 3.2 + ** DATE : 1/Jan/2011 + ** DESCRIPTION : The Core Interface provides basic services for accessing and + ** managing the IFX USB hardware. These services are used by both the + ** Host Controller Driver and the Peripheral Controller Driver. + ** FUNCTIONS : + ** COMPILER : gcc + ** REFERENCE : Synopsys DWC-OTG Driver 2.7 + ** COPYRIGHT : Copyright (c) 2010 + ** LANTIQ DEUTSCHLAND GMBH, + ** Am Campeon 3, 85579 Neubiberg, Germany + ** + ** This program is free software; you can redistribute it and/or modify + ** it under the terms of the GNU General Public License as published by + ** the Free Software Foundation; either version 2 of the License, or + ** (at your option) any later version. + ** + ** Version Control Section ** + ** $Author$ + ** $Date$ + ** $Revisions$ + ** $Log$ Revision history + *****************************************************************************/ + +/* + * This file contains code fragments from Synopsys HS OTG Linux Software Driver. + * For this code the following notice is applicable: + * + * ========================================================================== + * + * Synopsys HS OTG Linux Software Driver and documentation (hereinafter, + * "Software") is an Unsupported proprietary work of Synopsys, Inc. unless + * otherwise expressly agreed to in writing between Synopsys and you. + * + * The Software IS NOT an item of Licensed Software or Licensed Product under + * any End User Software License Agreement or Agreement for Licensed Product + * with Synopsys or any supplement thereto. You are permitted to use and + * redistribute this Software in source and binary forms, with or without + * modification, provided that redistributions of source code must retain this + * notice. You may not view, use, disclose, copy or distribute this file or + * any information contained herein except pursuant to this license grant from + * Synopsys. If you do not agree with this notice, including the disclaimer + * below, then you are not authorized to use the Software. + * + * THIS SOFTWARE IS BEING DISTRIBUTED BY SYNOPSYS SOLELY ON AN "AS IS" BASIS + * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE + * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE + * ARE HEREBY DISCLAIMED. IN NO EVENT SHALL SYNOPSYS BE LIABLE FOR ANY DIRECT, + * INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES + * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR + * SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER + * CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT + * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY + * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH + * DAMAGE. + * ========================================================================== */ + +/*! + \file ifxusb_cif.c + \ingroup IFXUSB_DRIVER_V3 + \brief This file contains the interface to the IFX USB Core. +*/ + +#include <linux/version.h> +#include "ifxusb_version.h" + +#include <asm/byteorder.h> +#include <asm/unaligned.h> + +#ifdef __DEBUG__ + #include <linux/jiffies.h> +#include <linux/platform_device.h> +#include <linux/kernel.h> +#include <linux/ioport.h> +#endif + + +#include "ifxusb_plat.h" +#include "ifxusb_regs.h" +#include "ifxusb_cif.h" + + +#ifdef __IS_DEVICE__ + #include "ifxpcd.h" +#endif + +#ifdef __IS_HOST__ + #include "ifxhcd.h" +#endif + +#include <linux/mm.h> + +#include <linux/gfp.h> + +#include <lantiq_soc.h> + +#if defined(__UEIP__) + #if defined(__IS_TWINPASS__) || defined(__IS_DANUBE__) || defined(__IS_AMAZON_SE__) + #ifndef USB_CTRL_PMU_SETUP + #define USB_CTRL_PMU_SETUP(__x) USB0_CTRL_PMU_SETUP(__x) + #endif + #ifndef USB_PHY_PMU_SETUP + #define USB_PHY_PMU_SETUP(__x) USB0_PHY_PMU_SETUP(__x) + #endif + #endif //defined(__IS_TWINPASS__) || defined(__IS_DANUBE__) || defined(__IS_AMAZON_SE__) +#endif // defined(__UEIP__) + +/*! + \brief This function is called to allocate buffer of specified size. + The allocated buffer is mapped into DMA accessable address. + \param size Size in BYTE to be allocated + \param clear 0: don't do clear after buffer allocated, other: do clear to zero + \return 0/NULL: Fail; uncached pointer of allocated buffer + */ +#ifdef __IS_HOST__ +void *ifxusb_alloc_buf_h(size_t size, int clear) +#else +void *ifxusb_alloc_buf_d(size_t size, int clear) +#endif +{ + uint32_t *cached,*uncached; + uint32_t totalsize,page; + + if(!size) + return 0; + + size=(size+3)&0xFFFFFFFC; + totalsize=size + 12; + page=get_order(totalsize); + + cached = (void *) __get_free_pages(( GFP_ATOMIC | GFP_DMA), page); + + if(!cached) + { + IFX_PRINT("%s Allocation Failed size:%d\n",__func__,size); + return NULL; + } + + uncached = (uint32_t *)(KSEG1ADDR(cached)); + if(clear) + memset(uncached, 0, totalsize); + + *(uncached+0)=totalsize; + *(uncached+1)=page; + *(uncached+2)=(uint32_t)cached; + return (void *)(uncached+3); +} + + +/*! + \brief This function is called to free allocated buffer. + \param vaddr the uncached pointer of the buffer + */ +#ifdef __IS_HOST__ +void ifxusb_free_buf_h(void *vaddr) +#else +void ifxusb_free_buf_d(void *vaddr) +#endif +{ + uint32_t totalsize,page; + uint32_t *cached,*uncached; + + if(vaddr != NULL) + { + uncached=vaddr; + uncached-=3; + totalsize=*(uncached+0); + page=*(uncached+1); + cached=(uint32_t *)(*(uncached+2)); + if(totalsize && page==get_order(totalsize) && cached==(uint32_t *)(KSEG0ADDR(uncached))) + { + free_pages((unsigned long)cached, page); + return; + } + // the memory is not allocated by ifxusb_alloc_buf. Allowed but must be careful. + return; + } +} + + + +/*! + \brief This function is called to initialize the IFXUSB CSR data + structures. The register addresses in the device and host + structures are initialized from the base address supplied by the + caller. The calling function must make the OS calls to get the + base address of the IFXUSB controller registers. + + \param _core_if Pointer of core_if structure + \param _irq irq number + \param _reg_base_addr Base address of IFXUSB core registers + \param _fifo_base_addr Fifo base address + \param _fifo_dbg_addr Fifo debug address + \return 0: success; + */ +#ifdef __IS_HOST__ +int ifxusb_core_if_init_h(ifxusb_core_if_t *_core_if, +#else +int ifxusb_core_if_init_d(ifxusb_core_if_t *_core_if, +#endif + int _irq, + uint32_t _reg_base_addr, + uint32_t _fifo_base_addr, + uint32_t _fifo_dbg_addr) +{ + int retval = 0; + uint32_t *reg_base =NULL; + uint32_t *fifo_base =NULL; + uint32_t *fifo_dbg =NULL; + + int i; + + IFX_DEBUGPL(DBG_CILV, "%s(%p,%d,0x%08X,0x%08X,0x%08X)\n", __func__, + _core_if, + _irq, + _reg_base_addr, + _fifo_base_addr, + _fifo_dbg_addr); + + if( _core_if == NULL) + { + IFX_ERROR("%s() invalid _core_if\n", __func__); + retval = -ENOMEM; + goto fail; + } + + //memset(_core_if, 0, sizeof(ifxusb_core_if_t)); + + _core_if->irq=_irq; + + reg_base =ioremap_nocache(_reg_base_addr , IFXUSB_IOMEM_SIZE ); + fifo_base =ioremap_nocache(_fifo_base_addr, IFXUSB_FIFOMEM_SIZE); + fifo_dbg =ioremap_nocache(_fifo_dbg_addr , IFXUSB_FIFODBG_SIZE); + if( reg_base == NULL || fifo_base == NULL || fifo_dbg == NULL) + { + IFX_ERROR("%s() usb ioremap() failed\n", __func__); + retval = -ENOMEM; + goto fail; + } + + _core_if->core_global_regs = (ifxusb_core_global_regs_t *)reg_base; + + /* + * Attempt to ensure this device is really a IFXUSB Controller. + * Read and verify the SNPSID register contents. The value should be + * 0x45F42XXX + */ + { + int32_t snpsid; + snpsid = ifxusb_rreg(&_core_if->core_global_regs->gsnpsid); + if ((snpsid & 0xFFFFF000) != 0x4F542000) + { + IFX_ERROR("%s() snpsid error(0x%08x) failed\n", __func__,snpsid); + retval = -EINVAL; + goto fail; + } + _core_if->snpsid=snpsid; + } + + #ifdef __IS_HOST__ + _core_if->host_global_regs = (ifxusb_host_global_regs_t *) + ((uint32_t)reg_base + IFXUSB_HOST_GLOBAL_REG_OFFSET); + _core_if->hprt0 = (uint32_t*)((uint32_t)reg_base + IFXUSB_HOST_PORT_REGS_OFFSET); + + for (i=0; i<MAX_EPS_CHANNELS; i++) + { + _core_if->hc_regs[i] = (ifxusb_hc_regs_t *) + ((uint32_t)reg_base + IFXUSB_HOST_CHAN_REGS_OFFSET + + (i * IFXUSB_CHAN_REGS_OFFSET)); + IFX_DEBUGPL(DBG_CILV, "hc_reg[%d]->hcchar=%p\n", + i, &_core_if->hc_regs[i]->hcchar); + } + #endif //__IS_HOST__ + + #ifdef __IS_DEVICE__ + _core_if->dev_global_regs = + (ifxusb_device_global_regs_t *)((uint32_t)reg_base + IFXUSB_DEV_GLOBAL_REG_OFFSET); + + for (i=0; i<MAX_EPS_CHANNELS; i++) + { + _core_if->in_ep_regs[i] = (ifxusb_dev_in_ep_regs_t *) + ((uint32_t)reg_base + IFXUSB_DEV_IN_EP_REG_OFFSET + + (i * IFXUSB_EP_REG_OFFSET)); + _core_if->out_ep_regs[i] = (ifxusb_dev_out_ep_regs_t *) + ((uint32_t)reg_base + IFXUSB_DEV_OUT_EP_REG_OFFSET + + (i * IFXUSB_EP_REG_OFFSET)); + IFX_DEBUGPL(DBG_CILV, "in_ep_regs[%d]->diepctl=%p/%p %p/0x%08X/0x%08X\n", + i, &_core_if->in_ep_regs[i]->diepctl, _core_if->in_ep_regs[i], + reg_base,IFXUSB_DEV_IN_EP_REG_OFFSET,(i * IFXUSB_EP_REG_OFFSET) + ); + IFX_DEBUGPL(DBG_CILV, "out_ep_regs[%d]->doepctl=%p/%p %p/0x%08X/0x%08X\n", + i, &_core_if->out_ep_regs[i]->doepctl, _core_if->out_ep_regs[i], + reg_base,IFXUSB_DEV_OUT_EP_REG_OFFSET,(i * IFXUSB_EP_REG_OFFSET) + ); + } + #endif //__IS_DEVICE__ + + /* Setting the FIFO and other Address. */ + for (i=0; i<MAX_EPS_CHANNELS; i++) + { + _core_if->data_fifo[i] = fifo_base + (i * IFXUSB_DATA_FIFO_SIZE); + IFX_DEBUGPL(DBG_CILV, "data_fifo[%d]=0x%08x\n", + i, (unsigned)_core_if->data_fifo[i]); + } + + _core_if->data_fifo_dbg = fifo_dbg; + _core_if->pcgcctl = (uint32_t*)(((uint32_t)reg_base) + IFXUSB_PCGCCTL_OFFSET); + + /* + * Store the contents of the hardware configuration registers here for + * easy access later. + */ + _core_if->hwcfg1.d32 = ifxusb_rreg(&_core_if->core_global_regs->ghwcfg1); + _core_if->hwcfg2.d32 = ifxusb_rreg(&_core_if->core_global_regs->ghwcfg2); + _core_if->hwcfg3.d32 = ifxusb_rreg(&_core_if->core_global_regs->ghwcfg3); + _core_if->hwcfg4.d32 = ifxusb_rreg(&_core_if->core_global_regs->ghwcfg4); + + IFX_DEBUGPL(DBG_CILV,"hwcfg1=%08x\n",_core_if->hwcfg1.d32); + IFX_DEBUGPL(DBG_CILV,"hwcfg2=%08x\n",_core_if->hwcfg2.d32); + IFX_DEBUGPL(DBG_CILV,"hwcfg3=%08x\n",_core_if->hwcfg3.d32); + IFX_DEBUGPL(DBG_CILV,"hwcfg4=%08x\n",_core_if->hwcfg4.d32); + + + #ifdef __DED_FIFO__ + { + unsigned int countdown=0xFFFF; + IFX_PRINT("Waiting for PHY Clock Lock!\n"); + while(--countdown && !( ifxusb_rreg(&_core_if->core_global_regs->grxfsiz) & (1<<9))) + { + UDELAY(1); + } + if(countdown) + IFX_PRINT("PHY Clock Locked!\n"); + else + IFX_PRINT("PHY Clock Not Locked! %08X\n",ifxusb_rreg(&_core_if->core_global_regs->grxfsiz)); + } + #endif + + /* Create new workqueue and init works */ +#if 0 + _core_if->wq_usb = create_singlethread_workqueue(_core_if->core_name); + + if(_core_if->wq_usb == 0) + { + IFX_DEBUGPL(DBG_CIL, "Creation of wq_usb failed\n"); + retval = -EINVAL; + goto fail; + } + + #if LINUX_VERSION_CODE < KERNEL_VERSION(2,6,20) + INIT_WORK(&core_if->w_conn_id, w_conn_id_status_change, core_if); + INIT_WORK(&core_if->w_wkp, w_wakeup_detected, core_if); + #else + INIT_WORK(&core_if->w_conn_id, w_conn_id_status_change); + INIT_DELAYED_WORK(&core_if->w_wkp, w_wakeup_detected); + #endif +#endif + return 0; + +fail: + if( reg_base != NULL) iounmap(reg_base ); + if( fifo_base != NULL) iounmap(fifo_base); + if( fifo_dbg != NULL) iounmap(fifo_dbg ); + return retval; +} + +/*! + \brief This function free the mapped address in the IFXUSB CSR data structures. + \param _core_if Pointer of core_if structure + */ +#ifdef __IS_HOST__ +void ifxusb_core_if_remove_h(ifxusb_core_if_t *_core_if) +#else +void ifxusb_core_if_remove_d(ifxusb_core_if_t *_core_if) +#endif +{ + /* Disable all interrupts */ + if( _core_if->core_global_regs != NULL) + { + gusbcfg_data_t usbcfg ={.d32 = 0}; + usbcfg.d32 = ifxusb_rreg( &_core_if->core_global_regs->gusbcfg); + usbcfg.b.ForceDevMode=0; + usbcfg.b.ForceHstMode=0; + ifxusb_wreg( &_core_if->core_global_regs->gusbcfg,usbcfg.d32); + ifxusb_mreg( &_core_if->core_global_regs->gahbcfg, 1, 0); + ifxusb_wreg( &_core_if->core_global_regs->gintmsk, 0); + } + + if( _core_if->core_global_regs != NULL) iounmap(_core_if->core_global_regs ); + if( _core_if->data_fifo[0] != NULL) iounmap(_core_if->data_fifo[0] ); + if( _core_if->data_fifo_dbg != NULL) iounmap(_core_if->data_fifo_dbg ); + +#if 0 + if (_core_if->wq_usb) + destroy_workqueue(_core_if->wq_usb); +#endif + memset(_core_if, 0, sizeof(ifxusb_core_if_t)); +} + + + + +/*! + \brief This function enbles the controller's Global Interrupt in the AHB Config register. + \param _core_if Pointer of core_if structure + */ +#ifdef __IS_HOST__ +void ifxusb_enable_global_interrupts_h( ifxusb_core_if_t *_core_if ) +#else +void ifxusb_enable_global_interrupts_d( ifxusb_core_if_t *_core_if ) +#endif +{ + gahbcfg_data_t ahbcfg ={ .d32 = 0}; + ahbcfg.b.glblintrmsk = 1; /* Enable interrupts */ + ifxusb_mreg(&_core_if->core_global_regs->gahbcfg, 0, ahbcfg.d32); +} + +/*! + \brief This function disables the controller's Global Interrupt in the AHB Config register. + \param _core_if Pointer of core_if structure + */ +#ifdef __IS_HOST__ +void ifxusb_disable_global_interrupts_h( ifxusb_core_if_t *_core_if ) +#else +void ifxusb_disable_global_interrupts_d( ifxusb_core_if_t *_core_if ) +#endif +{ + gahbcfg_data_t ahbcfg ={ .d32 = 0}; + ahbcfg.b.glblintrmsk = 1; /* Enable interrupts */ + ifxusb_mreg(&_core_if->core_global_regs->gahbcfg, ahbcfg.d32, 0); +} + + + + +/*! + \brief Flush Tx and Rx FIFO. + \param _core_if Pointer of core_if structure + */ +#ifdef __IS_HOST__ +void ifxusb_flush_both_fifo_h( ifxusb_core_if_t *_core_if ) +#else +void ifxusb_flush_both_fifo_d( ifxusb_core_if_t *_core_if ) +#endif +{ + ifxusb_core_global_regs_t *global_regs = _core_if->core_global_regs; + volatile grstctl_t greset ={ .d32 = 0}; + int count = 0; + + IFX_DEBUGPL((DBG_CIL|DBG_PCDV), "%s\n", __func__); + greset.b.rxfflsh = 1; + greset.b.txfflsh = 1; + greset.b.txfnum = 0x10; + greset.b.intknqflsh=1; + greset.b.hstfrm=1; + ifxusb_wreg( &global_regs->grstctl, greset.d32 ); + + do + { + greset.d32 = ifxusb_rreg( &global_regs->grstctl); + if (++count > 10000) + { + IFX_WARN("%s() HANG! GRSTCTL=%0x\n", __func__, greset.d32); + break; + } + } while (greset.b.rxfflsh == 1 || greset.b.txfflsh == 1); + /* Wait for 3 PHY Clocks*/ + UDELAY(1); +} + +/*! + \brief Flush a Tx FIFO. + \param _core_if Pointer of core_if structure + \param _num Tx FIFO to flush. ( 0x10 for ALL TX FIFO ) + */ +#ifdef __IS_HOST__ +void ifxusb_flush_tx_fifo_h( ifxusb_core_if_t *_core_if, const int _num ) +#else +void ifxusb_flush_tx_fifo_d( ifxusb_core_if_t *_core_if, const int _num ) +#endif +{ + ifxusb_core_global_regs_t *global_regs = _core_if->core_global_regs; + volatile grstctl_t greset ={ .d32 = 0}; + int count = 0; + + IFX_DEBUGPL((DBG_CIL|DBG_PCDV), "Flush Tx FIFO %d\n", _num); + + greset.b.intknqflsh=1; + greset.b.txfflsh = 1; + greset.b.txfnum = _num; + ifxusb_wreg( &global_regs->grstctl, greset.d32 ); + + do + { + greset.d32 = ifxusb_rreg( &global_regs->grstctl); + if (++count > 10000&&(_num==0 ||_num==0x10)) + { + IFX_WARN("%s() HANG! GRSTCTL=%0x GNPTXSTS=0x%08x\n", + __func__, greset.d32, + ifxusb_rreg( &global_regs->gnptxsts)); + break; + } + } while (greset.b.txfflsh == 1); + /* Wait for 3 PHY Clocks*/ + UDELAY(1); +} + + +/*! + \brief Flush Rx FIFO. + \param _core_if Pointer of core_if structure + */ +#ifdef __IS_HOST__ +void ifxusb_flush_rx_fifo_h( ifxusb_core_if_t *_core_if ) +#else +void ifxusb_flush_rx_fifo_d( ifxusb_core_if_t *_core_if ) +#endif +{ + ifxusb_core_global_regs_t *global_regs = _core_if->core_global_regs; + volatile grstctl_t greset ={ .d32 = 0}; + int count = 0; + + IFX_DEBUGPL((DBG_CIL|DBG_PCDV), "%s\n", __func__); + greset.b.rxfflsh = 1; + ifxusb_wreg( &global_regs->grstctl, greset.d32 ); + + do + { + greset.d32 = ifxusb_rreg( &global_regs->grstctl); + if (++count > 10000) + { + IFX_WARN("%s() HANG! GRSTCTL=%0x\n", __func__, greset.d32); + break; + } + } while (greset.b.rxfflsh == 1); + /* Wait for 3 PHY Clocks*/ + UDELAY(1); +} + + +#define SOFT_RESET_DELAY 100 /*!< Delay in msec of detection after soft-reset of usb core */ + +/*! + \brief Do a soft reset of the core. Be careful with this because it + resets all the internal state machines of the core. + \param _core_if Pointer of core_if structure + */ +#ifdef __IS_HOST__ +int ifxusb_core_soft_reset_h(ifxusb_core_if_t *_core_if) +#else +int ifxusb_core_soft_reset_d(ifxusb_core_if_t *_core_if) +#endif +{ + ifxusb_core_global_regs_t *global_regs = _core_if->core_global_regs; + volatile grstctl_t greset ={ .d32 = 0}; + int count = 0; + + IFX_DEBUGPL(DBG_CILV, "%s\n", __func__); + /* Wait for AHB master IDLE state. */ + do + { + UDELAY(10); + greset.d32 = ifxusb_rreg( &global_regs->grstctl); + if (++count > 100000) + { + IFX_WARN("%s() HANG! AHB Idle GRSTCTL=%0x %x\n", __func__, + greset.d32, greset.b.ahbidle); + break; + } + } while (greset.b.ahbidle == 0); + + UDELAY(1); + + /* Core Soft Reset */ + count = 0; + greset.b.csftrst = 1; + ifxusb_wreg( &global_regs->grstctl, greset.d32 ); + + #ifdef SOFT_RESET_DELAY + MDELAY(SOFT_RESET_DELAY); + #endif + + do + { + UDELAY(10); + greset.d32 = ifxusb_rreg( &global_regs->grstctl); + if (++count > 100000) + { + IFX_WARN("%s() HANG! Soft Reset GRSTCTL=%0x\n", __func__, greset.d32); + return -1; + } + } while (greset.b.csftrst == 1); + + #ifdef SOFT_RESET_DELAY + MDELAY(SOFT_RESET_DELAY); + #endif + + // This is to reset the PHY of VR9 + #if defined(__IS_VR9__) + if(_core_if->core_no==0) + { + set_bit (4, VR9_RCU_USBRESET2); + MDELAY(50); + clear_bit (4, VR9_RCU_USBRESET2); + } + else + { + set_bit (5, VR9_RCU_USBRESET2); + MDELAY(50); + clear_bit (5, VR9_RCU_USBRESET2); + } + MDELAY(50); + #endif //defined(__IS_VR9__) + + IFX_PRINT("USB core #%d soft-reset\n",_core_if->core_no); + + return 0; +} + +/*! + \brief Turn on the USB Core Power + \param _core_if Pointer of core_if structure +*/ +#ifdef __IS_HOST__ +void ifxusb_power_on_h (ifxusb_core_if_t *_core_if) +#else +void ifxusb_power_on_d (ifxusb_core_if_t *_core_if) +#endif +{ + IFX_DEBUGPL(DBG_ENTRY, "%s() %d\n", __func__, __LINE__ ); + #if defined(__UEIP__) + + // set clock gating + #if defined(__IS_TWINPASS) || defined(__IS_DANUBE__) + set_bit (4, (volatile unsigned long *)DANUBE_CGU_IFCCR); + set_bit (5, (volatile unsigned long *)DANUBE_CGU_IFCCR); + #endif //defined(__IS_TWINPASS__) || defined(__IS_DANUBE__) + #if defined(__IS_AMAZON_SE__) + // clear_bit (4, (volatile unsigned long *)AMAZON_SE_CGU_IFCCR); + clear_bit (5, (volatile unsigned long *)AMAZON_SE_CGU_IFCCR); + #endif //defined(__IS_AMAZON_SE__) + #if defined(__IS_AR9__) + set_bit (0, (volatile unsigned long *)AR9_CGU_IFCCR); + set_bit (1, (volatile unsigned long *)AR9_CGU_IFCCR); + #endif //defined(__IS_AR9__) + #if defined(__IS_VR9__) +// set_bit (0, (volatile unsigned long *)VR9_CGU_IFCCR); +// set_bit (1, (volatile unsigned long *)VR9_CGU_IFCCR); + #endif //defined(__IS_VR9__) + #if defined(__IS_AR10__) +// set_bit (0, (volatile unsigned long *)VR9_CGU_IFCCR); +// set_bit (1, (volatile unsigned long *)VR9_CGU_IFCCR); + #endif //defined(__IS_AR10__) + + MDELAY(50); +#define PMU_AHBM BIT(15) +#define PMU_USB0 BIT(6) +#define PMU_USB1 BIT(27) +#define PMU_USB0_P BIT(0) +#define PMU_USB1_P BIT(26) + // set power + ltq_pmu_enable(PMU_AHBM); + #if defined(__IS_TWINPASS__) || defined(__IS_DANUBE__) || defined(__IS_AMAZON_SE__) + ltq_pmu_enable(PMU_USB0); + //#if defined(__IS_TWINPASS__) + // ifxusb_enable_afe_oc(); + //#endif + #endif //defined(__IS_TWINPASS__) || defined(__IS_DANUBE__) || defined(__IS_AMAZON_SE__) + #if defined(__IS_AR9__) || defined(__IS_VR9__) + if(_core_if->core_no==0) + ltq_pmu_enable(PMU_USB0); + else + ltq_pmu_enable(PMU_USB1); + #endif //defined(__IS_AR9__) || defined(__IS_VR9__) + #if defined(__IS_AR10__) + //if(_core_if->core_no==0) + // USB0_CTRL_PMU_SETUP(IFX_PMU_ENABLE); + //else + // USB1_CTRL_PMU_SETUP(IFX_PMU_ENABLE); + #endif //defined(__IS_AR10__) + + MDELAY(50); + + if(_core_if->pcgcctl) + { + pcgcctl_data_t pcgcctl = {.d32=0}; + pcgcctl.b.gatehclk = 1; + ifxusb_mreg(_core_if->pcgcctl, pcgcctl.d32, 0); + } + + + if(_core_if->core_global_regs) + { + // PHY configurations. + #if defined(__IS_TWINPASS__) || defined(__IS_DANUBE__) + ifxusb_wreg (&_core_if->core_global_regs->guid,0x14014); + #endif //defined(__IS_TWINPASS__) || defined(__IS_DANUBE__) + #if defined(__IS_AMAZON_SE__) + ifxusb_wreg (&_core_if->core_global_regs->guid,0x14014); + #endif //defined(__IS_AMAZON_SE__) + #if defined(__IS_AR9__) + ifxusb_wreg (&_core_if->core_global_regs->guid,0x14014); + #endif //defined(__IS_AR9__) + #if defined(__IS_VR9__) + //ifxusb_wreg (&_core_if->core_global_regs->guid,0x14014); + #endif //defined(__IS_VR9__) + #if defined(__IS_AR10__) + //ifxusb_wreg (&_core_if->core_global_regs->guid,0x14014); + #endif //defined(__IS_AR10__) + } + #else //defined(__UEIP__) + // set clock gating + #if defined(__IS_TWINPASS) || defined(__IS_DANUBE__) + set_bit (4, (volatile unsigned long *)DANUBE_CGU_IFCCR); + set_bit (5, (volatile unsigned long *)DANUBE_CGU_IFCCR); + #endif //defined(__IS_TWINPASS__) || defined(__IS_DANUBE__) + #if defined(__IS_AMAZON_SE__) + // clear_bit (4, (volatile unsigned long *)AMAZON_SE_CGU_IFCCR); + clear_bit (5, (volatile unsigned long *)AMAZON_SE_CGU_IFCCR); + #endif //defined(__IS_AMAZON_SE__) + #if defined(__IS_AR9__) + set_bit (0, (volatile unsigned long *)AMAZON_S_CGU_IFCCR); + set_bit (1, (volatile unsigned long *)AMAZON_S_CGU_IFCCR); + #endif //defined(__IS_AR9__) + + MDELAY(50); + + // set power + #if defined(__IS_TWINPASS__) || defined(__IS_DANUBE__) + clear_bit (6, (volatile unsigned long *)DANUBE_PMU_PWDCR);//USB + clear_bit (9, (volatile unsigned long *)DANUBE_PMU_PWDCR);//DSL + clear_bit (15, (volatile unsigned long *)DANUBE_PMU_PWDCR);//AHB + #if defined(__IS_TWINPASS__) + ifxusb_enable_afe_oc(); + #endif + #endif //defined(__IS_TWINPASS__) || defined(__IS_DANUBE__) + #if defined(__IS_AMAZON_SE__) + clear_bit (6, (volatile unsigned long *)AMAZON_SE_PMU_PWDCR); + clear_bit (9, (volatile unsigned long *)AMAZON_SE_PMU_PWDCR); + clear_bit (15, (volatile unsigned long *)AMAZON_SE_PMU_PWDCR); + #endif //defined(__IS_AMAZON_SE__) + #if defined(__IS_AR9__) + if(_core_if->core_no==0) + clear_bit (6, (volatile unsigned long *)AMAZON_S_PMU_PWDCR);//USB + else + clear_bit (27, (volatile unsigned long *)AMAZON_S_PMU_PWDCR);//USB + clear_bit (9, (volatile unsigned long *)AMAZON_S_PMU_PWDCR);//DSL + clear_bit (15, (volatile unsigned long *)AMAZON_S_PMU_PWDCR);//AHB + #endif //defined(__IS_AR9__) + + if(_core_if->core_global_regs) + { + // PHY configurations. + #if defined(__IS_TWINPASS__) || defined(__IS_DANUBE__) + ifxusb_wreg (&_core_if->core_global_regs->guid,0x14014); + #endif //defined(__IS_TWINPASS__) || defined(__IS_DANUBE__) + #if defined(__IS_AMAZON_SE__) + ifxusb_wreg (&_core_if->core_global_regs->guid,0x14014); + #endif //defined(__IS_AMAZON_SE__) + #if defined(__IS_AR9__) + ifxusb_wreg (&_core_if->core_global_regs->guid,0x14014); + #endif //defined(__IS_AR9__) + } + + #endif //defined(__UEIP__) +} + +/*! + \brief Turn off the USB Core Power + \param _core_if Pointer of core_if structure +*/ +#ifdef __IS_HOST__ +void ifxusb_power_off_h (ifxusb_core_if_t *_core_if) +#else +void ifxusb_power_off_d (ifxusb_core_if_t *_core_if) +#endif + +{ + #ifdef __IS_HOST__ + ifxusb_phy_power_off_h (_core_if); + #else + ifxusb_phy_power_off_d (_core_if); + #endif + + #if defined(__UEIP__) + //AHBM_PMU_SETUP(IFX_PMU_DISABLE); + // set power + if(_core_if->pcgcctl) + { + pcgcctl_data_t pcgcctl = {.d32=0}; + pcgcctl.b.gatehclk = 1; + pcgcctl.b.stoppclk = 1; + ifxusb_mreg(_core_if->pcgcctl, 0, pcgcctl.d32); + } + #if defined(__IS_TWINPASS__) || defined(__IS_DANUBE__) || defined(__IS_AMAZON_SE__) + //USB_CTRL_PMU_SETUP(IFX_PMU_DISABLE); + #endif //defined(__IS_TWINPASS__) || defined(__IS_DANUBE__) || defined(__IS_AMAZON_SE__) + #if defined(__IS_AR9__) || defined(__IS_VR9__) + /* if(_core_if->core_no==0) + USB0_CTRL_PMU_SETUP(IFX_PMU_DISABLE); + else + USB1_CTRL_PMU_SETUP(IFX_PMU_DISABLE);*/ + #endif //defined(__IS_AR9__) || defined(__IS_VR9__) + #if defined(__IS_AR10__) + //if(_core_if->core_no==0) + // USB0_CTRL_PMU_SETUP(IFX_PMU_DISABLE); + //else + // USB1_CTRL_PMU_SETUP(IFX_PMU_DISABLE); + #endif //defined(__IS_AR10__) + #else //defined(__UEIP__) + // set power + #if defined(__IS_TWINPASS__) || defined(__IS_DANUBE__) + set_bit (6, (volatile unsigned long *)DANUBE_PMU_PWDCR);//USB + #endif //defined(__IS_TWINPASS__) || defined(__IS_DANUBE__) + #if defined(__IS_AMAZON_SE__) + set_bit (6, (volatile unsigned long *)AMAZON_SE_PMU_PWDCR);//USB + #endif //defined(__IS_AMAZON_SE__) + #if defined(__IS_AR9__) + if(_core_if->core_no==0) + set_bit (6, (volatile unsigned long *)AMAZON_S_PMU_PWDCR);//USB + else + set_bit (27, (volatile unsigned long *)AMAZON_S_PMU_PWDCR);//USB + #endif //defined(__IS_AR9__) + #endif //defined(__UEIP__) +} + +/*! + \brief Turn on the USB PHY Power + \param _core_if Pointer of core_if structure +*/ +#ifdef __IS_HOST__ +void ifxusb_phy_power_on_h (ifxusb_core_if_t *_core_if) +#else +void ifxusb_phy_power_on_d (ifxusb_core_if_t *_core_if) +#endif +{ + #if defined(__UEIP__) + if(_core_if->core_global_regs) + { + #if defined(__IS_TWINPASS__) || defined(__IS_DANUBE__) + ifxusb_wreg (&_core_if->core_global_regs->guid,0x14014); + #endif //defined(__IS_TWINPASS__) || defined(__IS_DANUBE__) + #if defined(__IS_AMAZON_SE__) + ifxusb_wreg (&_core_if->core_global_regs->guid,0x14014); + #endif //defined(__IS_AMAZON_SE__) + #if defined(__IS_AR9__) + ifxusb_wreg (&_core_if->core_global_regs->guid,0x14014); + #endif //defined(__IS_AR9__) + #if ( defined(__IS_VR9__) || defined(__IS_AR10__)) && defined(__PHY_LONG_PREEMP__) + if(_core_if->core_no==0) + set_bit (0, VR9_RCU_USB_ANA_CFG1A); + else + set_bit (0, VR9_RCU_USB_ANA_CFG1B); + #endif //( defined(__IS_VR9__) || defined(__IS_AR10__)) && defined(__PHY_LONG_PREEMP__) + + if(_core_if->pcgcctl) + { + pcgcctl_data_t pcgcctl = {.d32=0}; + pcgcctl.b.stoppclk = 1; + ifxusb_mreg(_core_if->pcgcctl, pcgcctl.d32, 0); + } + } + + #if defined(__IS_TWINPASS__) || defined(__IS_DANUBE__) || defined(__IS_AMAZON_SE__) + ltq_pmu_enable(PMU_USB0_P); + #endif //defined(__IS_TWINPASS__) || defined(__IS_DANUBE__) || defined(__IS_AMAZON_SE__) + #if defined(__IS_AR9__) || defined(__IS_VR9__) || defined(__IS_AR10__) + if(_core_if->core_no==0) + ltq_pmu_enable(PMU_USB0_P); + else + ltq_pmu_enable(PMU_USB1_P); + #endif //defined(__IS_AR9__) || defined(__IS_VR9__) + + // PHY configurations. + if(_core_if->core_global_regs) + { + #if defined(__IS_TWINPASS__) || defined(__IS_DANUBE__) + ifxusb_wreg (&_core_if->core_global_regs->guid,0x14014); + #endif //defined(__IS_TWINPASS__) || defined(__IS_DANUBE__) + #if defined(__IS_AMAZON_SE__) + ifxusb_wreg (&_core_if->core_global_regs->guid,0x14014); + #endif //defined(__IS_AMAZON_SE__) + #if defined(__IS_AR9__) + ifxusb_wreg (&_core_if->core_global_regs->guid,0x14014); + #endif //defined(__IS_AR9__) + #if ( defined(__IS_VR9__) || defined(__IS_AR10__)) && defined(__PHY_LONG_PREEMP__) + if(_core_if->core_no==0) + set_bit (0, VR9_RCU_USB_ANA_CFG1A); + else + set_bit (0, VR9_RCU_USB_ANA_CFG1B); + #endif //( defined(__IS_VR9__) || defined(__IS_AR10__)) && defined(__PHY_LONG_PREEMP__) + } + #else //defined(__UEIP__) + // PHY configurations. + if(_core_if->core_global_regs) + { + #if defined(__IS_TWINPASS__) || defined(__IS_DANUBE__) + ifxusb_wreg (&_core_if->core_global_regs->guid,0x14014); + #endif //defined(__IS_TWINPASS__) || defined(__IS_DANUBE__) + #if defined(__IS_AMAZON_SE__) + ifxusb_wreg (&_core_if->core_global_regs->guid,0x14014); + #endif //defined(__IS_AMAZON_SE__) + #if defined(__IS_AR9__) + ifxusb_wreg (&_core_if->core_global_regs->guid,0x14014); + #endif //defined(__IS_AR9__) + } + + #if defined(__IS_TWINPASS__) || defined(__IS_DANUBE__) + clear_bit (0, (volatile unsigned long *)DANUBE_PMU_PWDCR);//PHY + #endif //defined(__IS_TWINPASS__) || defined(__IS_DANUBE__) + #if defined(__IS_AMAZON_SE__) + clear_bit (0, (volatile unsigned long *)AMAZON_SE_PMU_PWDCR); + #endif //defined(__IS_AMAZON_SE__) + #if defined(__IS_AR9__) + if(_core_if->core_no==0) + clear_bit (0, (volatile unsigned long *)AMAZON_S_PMU_PWDCR);//PHY + else + clear_bit (26, (volatile unsigned long *)AMAZON_S_PMU_PWDCR);//PHY + #endif //defined(__IS_AR9__) + + // PHY configurations. + if(_core_if->core_global_regs) + { + #if defined(__IS_TWINPASS__) || defined(__IS_DANUBE__) + ifxusb_wreg (&_core_if->core_global_regs->guid,0x14014); + #endif //defined(__IS_TWINPASS__) || defined(__IS_DANUBE__) + #if defined(__IS_AMAZON_SE__) + ifxusb_wreg (&_core_if->core_global_regs->guid,0x14014); + #endif //defined(__IS_AMAZON_SE__) + #if defined(__IS_AR9__) + ifxusb_wreg (&_core_if->core_global_regs->guid,0x14014); + #endif //defined(__IS_AR9__) + } + #endif //defined(__UEIP__) +} + + +/*! + \brief Turn off the USB PHY Power + \param _core_if Pointer of core_if structure +*/ +#ifdef __IS_HOST__ +void ifxusb_phy_power_off_h (ifxusb_core_if_t *_core_if) +#else +void ifxusb_phy_power_off_d (ifxusb_core_if_t *_core_if) +#endif +{ + #if defined(__UEIP__) + if(_core_if->pcgcctl) + { + pcgcctl_data_t pcgcctl = {.d32=0}; + pcgcctl.b.stoppclk = 1; + ifxusb_mreg(_core_if->pcgcctl, 0, pcgcctl.d32); + } + #if defined(__IS_TWINPASS__) || defined(__IS_DANUBE__) || defined(__IS_AMAZON_SE__) + //USB_PHY_PMU_SETUP(IFX_PMU_DISABLE); + #endif //defined(__IS_TWINPASS__) || defined(__IS_DANUBE__) || defined(__IS_AMAZON_SE__) + #if defined(__IS_AR9__) || defined(__IS_VR9__) || defined(__IS_AR10__) +/* if(_core_if->core_no==0) + USB0_PHY_PMU_SETUP(IFX_PMU_DISABLE); + else + USB1_PHY_PMU_SETUP(IFX_PMU_DISABLE);*/ + #endif // defined(__IS_AR9__) || defined(__IS_VR9__) + #else //defined(__UEIP__) + #if defined(__IS_TWINPASS__) || defined(__IS_DANUBE__) + set_bit (0, (volatile unsigned long *)DANUBE_PMU_PWDCR);//PHY + #endif //defined(__IS_TWINPASS__) || defined(__IS_DANUBE__) + #if defined(__IS_AMAZON_SE__) + set_bit (0, (volatile unsigned long *)AMAZON_SE_PMU_PWDCR);//PHY + #endif //defined(__IS_AMAZON_SE__) + #if defined(__IS_AR9__) + if(_core_if->core_no==0) + set_bit (0, (volatile unsigned long *)AMAZON_S_PMU_PWDCR);//PHY + else + set_bit (26, (volatile unsigned long *)AMAZON_S_PMU_PWDCR);//PHY + #endif //defined(__IS_AR9__) + #endif //defined(__UEIP__) +} + + +/*! + \brief Reset on the USB Core RCU + \param _core_if Pointer of core_if structure + */ +#if defined(__IS_VR9__) || defined(__IS_AR10__) +static int CheckAlready(void) +{ + gusbcfg_data_t usbcfg ={.d32 = 0}; + usbcfg.d32 = ifxusb_rreg((volatile uint32_t *)0xBE10100C); + if(usbcfg.b.ForceDevMode) + return 1; + if(usbcfg.b.ForceHstMode) + return 1; + usbcfg.d32 = ifxusb_rreg((volatile uint32_t *)0xBE10600C); + if(usbcfg.b.ForceDevMode) + return 1; + if(usbcfg.b.ForceHstMode) + return 1; + return 0; +} +#endif + +#ifdef __IS_HOST__ + void ifxusb_hard_reset_h(ifxusb_core_if_t *_core_if) +#else + void ifxusb_hard_reset_d(ifxusb_core_if_t *_core_if) +#endif +{ + #if defined(__UEIP__) + #if defined(__IS_TWINPASS__) || defined(__IS_DANUBE__) + #if defined (__IS_HOST__) + clear_bit (DANUBE_USBCFG_HDSEL_BIT, (volatile unsigned long *)DANUBE_RCU_USBCFG); + #elif defined (__IS_DEVICE__) + set_bit (DANUBE_USBCFG_HDSEL_BIT, (volatile unsigned long *)DANUBE_RCU_USBCFG); + #endif + #endif //defined(__IS_AMAZON_SE__) + + #if defined(__IS_AMAZON_SE__) + #if defined (__IS_HOST__) + clear_bit (AMAZON_SE_USBCFG_HDSEL_BIT, (volatile unsigned long *)AMAZON_SE_RCU_USBCFG); + #elif defined (__IS_DEVICE__) + set_bit (AMAZON_SE_USBCFG_HDSEL_BIT, (volatile unsigned long *)AMAZON_SE_RCU_USBCFG); + #endif + #endif //defined(__IS_AMAZON_SE__) + + #if defined(__IS_AR9__) + if(_core_if->core_no==0) + { + #if defined (__IS_HOST__) + clear_bit (AR9_USBCFG_HDSEL_BIT, (volatile unsigned long *)AR9_RCU_USB1CFG); + #elif defined (__IS_DEVICE__) + set_bit (AR9_USBCFG_HDSEL_BIT, (volatile unsigned long *)AR9_RCU_USB1CFG); + #endif + } + else + { + #if defined (__IS_HOST__) + clear_bit (AR9_USBCFG_HDSEL_BIT, (volatile unsigned long *)AR9_RCU_USB2CFG); + #elif defined (__IS_DEVICE__) + set_bit (AR9_USBCFG_HDSEL_BIT, (volatile unsigned long *)AR9_RCU_USB2CFG); + #endif + } + #endif //defined(__IS_AR9__) + + #if defined(__IS_VR9__) + if(!CheckAlready()) + { + #if defined (__IS_HOST__) + #if defined (__IS_DUAL__) + clear_bit (VR9_USBCFG_HDSEL_BIT, (volatile unsigned long *)VR9_RCU_USB1CFG); + clear_bit (VR9_USBCFG_HDSEL_BIT, (volatile unsigned long *)VR9_RCU_USB2CFG); + #elif defined (__IS_FIRST__) + clear_bit (VR9_USBCFG_HDSEL_BIT, (volatile unsigned long *)VR9_RCU_USB1CFG); + set_bit (VR9_USBCFG_HDSEL_BIT, (volatile unsigned long *)VR9_RCU_USB2CFG); + #elif defined (__IS_SECOND__) + set_bit (VR9_USBCFG_HDSEL_BIT, (volatile unsigned long *)VR9_RCU_USB1CFG); + clear_bit (VR9_USBCFG_HDSEL_BIT, (volatile unsigned long *)VR9_RCU_USB2CFG); + #endif + #endif + #if defined (__IS_DEVICE__) + #if defined (__IS_FIRST__) + set_bit (VR9_USBCFG_HDSEL_BIT, (volatile unsigned long *)VR9_RCU_USB1CFG); + clear_bit (VR9_USBCFG_HDSEL_BIT, (volatile unsigned long *)VR9_RCU_USB2CFG); + #elif defined (__IS_SECOND__) + clear_bit (VR9_USBCFG_HDSEL_BIT, (volatile unsigned long *)VR9_RCU_USB1CFG); + set_bit (VR9_USBCFG_HDSEL_BIT, (volatile unsigned long *)VR9_RCU_USB2CFG); + #endif + #endif + } + #endif //defined(__IS_VR9__) + + #if defined(__IS_AR10__) + if(!CheckAlready()) + { + #if defined (__IS_HOST__) + #if defined (__IS_DUAL__) + clear_bit (AR10_USBCFG_HDSEL_BIT, (volatile unsigned long *)AR10_RCU_USB1CFG); + clear_bit (AR10_USBCFG_HDSEL_BIT, (volatile unsigned long *)AR10_RCU_USB2CFG); + #elif defined (__IS_FIRST__) + clear_bit (AR10_USBCFG_HDSEL_BIT, (volatile unsigned long *)AR10_RCU_USB1CFG); + set_bit (AR10_USBCFG_HDSEL_BIT, (volatile unsigned long *)AR10_RCU_USB2CFG); + #elif defined (__IS_SECOND__) + set_bit (AR10_USBCFG_HDSEL_BIT, (volatile unsigned long *)AR10_RCU_USB1CFG); + clear_bit (AR10_USBCFG_HDSEL_BIT, (volatile unsigned long *)AR10_RCU_USB2CFG); + #endif + #endif + #if defined (__IS_DEVICE__) + #if defined (__IS_FIRST__) + set_bit (AR10_USBCFG_HDSEL_BIT, (volatile unsigned long *)AR10_RCU_USB1CFG); + clear_bit (AR10_USBCFG_HDSEL_BIT, (volatile unsigned long *)AR10_RCU_USB2CFG); + #elif defined (__IS_SECOND__) + clear_bit (AR10_USBCFG_HDSEL_BIT, (volatile unsigned long *)AR10_RCU_USB1CFG); + set_bit (AR10_USBCFG_HDSEL_BIT, (volatile unsigned long *)AR10_RCU_USB2CFG); + #endif + #endif + } + #endif //defined(__IS_AR10__) + + // set the HC's byte-order to big-endian + #if defined(__IS_TWINPASS__) || defined(__IS_DANUBE__) + set_bit (DANUBE_USBCFG_HOST_END_BIT, (volatile unsigned long *)DANUBE_RCU_USBCFG); + clear_bit (DANUBE_USBCFG_SLV_END_BIT, (volatile unsigned long *)DANUBE_RCU_USBCFG); + #endif //defined(__IS_TWINPASS__) || defined(__IS_DANUBE__) + #if defined(__IS_AMAZON_SE__) + set_bit (AMAZON_SE_USBCFG_HOST_END_BIT, (volatile unsigned long *)AMAZON_SE_RCU_USBCFG); + clear_bit (AMAZON_SE_USBCFG_SLV_END_BIT, (volatile unsigned long *)AMAZON_SE_RCU_USBCFG); + #endif //defined(__IS_AMAZON_SE__) + #if defined(__IS_AR9__) + if(_core_if->core_no==0) + { + set_bit (AR9_USBCFG_HOST_END_BIT, (volatile unsigned long *)AR9_RCU_USB1CFG); + clear_bit (AR9_USBCFG_SLV_END_BIT, (volatile unsigned long *)AR9_RCU_USB1CFG); + } + else + { + set_bit (AR9_USBCFG_HOST_END_BIT, (volatile unsigned long *)AR9_RCU_USB2CFG); + clear_bit (AR9_USBCFG_SLV_END_BIT, (volatile unsigned long *)AR9_RCU_USB2CFG); + } + #endif //defined(__IS_AR9__) + #if defined(__IS_VR9__) + if(_core_if->core_no==0) + { + set_bit (VR9_USBCFG_HOST_END_BIT, (volatile unsigned long *)VR9_RCU_USB1CFG); + clear_bit (VR9_USBCFG_SLV_END_BIT, (volatile unsigned long *)VR9_RCU_USB1CFG); + } + else + { + set_bit (VR9_USBCFG_HOST_END_BIT, (volatile unsigned long *)VR9_RCU_USB2CFG); + clear_bit (VR9_USBCFG_SLV_END_BIT, (volatile unsigned long *)VR9_RCU_USB2CFG); + } + #endif //defined(__IS_VR9__) + #if defined(__IS_AR10__) + if(_core_if->core_no==0) + { + set_bit (AR10_USBCFG_HOST_END_BIT, (volatile unsigned long *)AR10_RCU_USB1CFG); + clear_bit (AR10_USBCFG_SLV_END_BIT, (volatile unsigned long *)AR10_RCU_USB1CFG); + } + else + { + set_bit (AR10_USBCFG_HOST_END_BIT, (volatile unsigned long *)AR10_RCU_USB2CFG); + clear_bit (AR10_USBCFG_SLV_END_BIT, (volatile unsigned long *)AR10_RCU_USB2CFG); + } + #endif //defined(__IS_AR10__) + + #if defined(__IS_TWINPASS__) || defined(__IS_DANUBE__) + set_bit (4, DANUBE_RCU_RESET); + MDELAY(50); + clear_bit (4, DANUBE_RCU_RESET); + MDELAY(50); + #endif //defined(__IS_TWINPASS__) || defined(__IS_DANUBE__) + + #if defined(__IS_AMAZON_SE__) + set_bit (4, AMAZON_SE_RCU_RESET); + MDELAY(50); + clear_bit (4, AMAZON_SE_RCU_RESET); + MDELAY(50); + #endif //defined(__IS_AMAZON_SE__) + + #if defined(__IS_AR9__) + if(_core_if->core_no==0) + { + set_bit (4, AR9_RCU_USBRESET); + MDELAY(50); + clear_bit (4, AR9_RCU_USBRESET); + } + else + { + set_bit (28, AR9_RCU_USBRESET); + MDELAY(50); + clear_bit (28, AR9_RCU_USBRESET); + } + MDELAY(50); + #endif //defined(__IS_AR9__) + #if defined(__IS_VR9__) + if(!CheckAlready()) + { + set_bit (4, VR9_RCU_USBRESET); + MDELAY(50); + clear_bit (4, VR9_RCU_USBRESET); + MDELAY(50); + } + #endif //defined(__IS_VR9__) + #if defined(__IS_AR10__) + if(!CheckAlready()) + { + set_bit (4, AR10_RCU_USBRESET); + MDELAY(50); + clear_bit (4, AR10_RCU_USBRESET); + MDELAY(50); + } + #endif //defined(__IS_AR10__) + + #if defined(__IS_TWINPASS__) + ifxusb_enable_afe_oc(); + #endif + + if(_core_if->core_global_regs) + { + // PHY configurations. + #if defined(__IS_TWINPASS__) || defined(__IS_DANUBE__) + ifxusb_wreg (&_core_if->core_global_regs->guid,0x14014); + #endif //defined(__IS_TWINPASS__) || defined(__IS_DANUBE__) + #if defined(__IS_AMAZON_SE__) + ifxusb_wreg (&_core_if->core_global_regs->guid,0x14014); + #endif //defined(__IS_AMAZON_SE__) + #if defined(__IS_AR9__) + ifxusb_wreg (&_core_if->core_global_regs->guid,0x14014); + #endif //defined(__IS_AR9__) + #if defined(__IS_VR9__) + // ifxusb_wreg (&_core_if->core_global_regs->guid,0x14014); + #endif //defined(__IS_VR9__) + #if defined(__IS_AR10__) + // ifxusb_wreg (&_core_if->core_global_regs->guid,0x14014); + #endif //defined(__IS_AR10__) + } + #else //defined(__UEIP__) + #if defined(__IS_TWINPASS__) || defined(__IS_DANUBE__) + #if defined (__IS_HOST__) + clear_bit (DANUBE_USBCFG_HDSEL_BIT, (volatile unsigned long *)DANUBE_RCU_USBCFG); + #elif defined (__IS_DEVICE__) + set_bit (DANUBE_USBCFG_HDSEL_BIT, (volatile unsigned long *)DANUBE_RCU_USBCFG); + #endif + #endif //defined(__IS_AMAZON_SE__) + + #if defined(__IS_AMAZON_SE__) + #if defined (__IS_HOST__) + clear_bit (AMAZON_SE_USBCFG_HDSEL_BIT, (volatile unsigned long *)AMAZON_SE_RCU_USBCFG); + #elif defined (__IS_DEVICE__) + set_bit (AMAZON_SE_USBCFG_HDSEL_BIT, (volatile unsigned long *)AMAZON_SE_RCU_USBCFG); + #endif + #endif //defined(__IS_AMAZON_SE__) + + #if defined(__IS_AR9__) + if(_core_if->core_no==0) + { + #if defined (__IS_HOST__) + clear_bit (AMAZON_S_USBCFG_HDSEL_BIT, (volatile unsigned long *)AMAZON_S_RCU_USB1CFG); + #elif defined (__IS_DEVICE__) + set_bit (AMAZON_S_USBCFG_HDSEL_BIT, (volatile unsigned long *)AMAZON_S_RCU_USB1CFG); + #endif + } + else + { + #if defined (__IS_HOST__) + clear_bit (AMAZON_S_USBCFG_HDSEL_BIT, (volatile unsigned long *)AMAZON_S_RCU_USB2CFG); + #elif defined (__IS_DEVICE__) + set_bit (AMAZON_S_USBCFG_HDSEL_BIT, (volatile unsigned long *)AMAZON_S_RCU_USB2CFG); + #endif + } + #endif //defined(__IS_AR9__) + + // set the HC's byte-order to big-endian + #if defined(__IS_TWINPASS__) || defined(__IS_DANUBE__) + set_bit (DANUBE_USBCFG_HOST_END_BIT, (volatile unsigned long *)DANUBE_RCU_USBCFG); + clear_bit (DANUBE_USBCFG_SLV_END_BIT, (volatile unsigned long *)DANUBE_RCU_USBCFG); + #endif //defined(__IS_TWINPASS__) || defined(__IS_DANUBE__) + #if defined(__IS_AMAZON_SE__) + set_bit (AMAZON_SE_USBCFG_HOST_END_BIT, (volatile unsigned long *)AMAZON_SE_RCU_USBCFG); + clear_bit (AMAZON_SE_USBCFG_SLV_END_BIT, (volatile unsigned long *)AMAZON_SE_RCU_USBCFG); + #endif //defined(__IS_AMAZON_SE__) + #if defined(__IS_AR9__) + if(_core_if->core_no==0) + { + set_bit (AMAZON_S_USBCFG_HOST_END_BIT, (volatile unsigned long *)AMAZON_S_RCU_USB1CFG); + clear_bit (AMAZON_S_USBCFG_SLV_END_BIT, (volatile unsigned long *)AMAZON_S_RCU_USB1CFG); + } + else + { + set_bit (AMAZON_S_USBCFG_HOST_END_BIT, (volatile unsigned long *)AMAZON_S_RCU_USB2CFG); + clear_bit (AMAZON_S_USBCFG_SLV_END_BIT, (volatile unsigned long *)AMAZON_S_RCU_USB2CFG); + } + #endif //defined(__IS_AR9__) + + #if defined(__IS_TWINPASS__) || defined(__IS_DANUBE__) + set_bit (4, DANUBE_RCU_RESET); + #endif //defined(__IS_TWINPASS__) || defined(__IS_DANUBE__) + #if defined(__IS_AMAZON_SE__) + set_bit (4, AMAZON_SE_RCU_RESET); + #endif //defined(__IS_AMAZON_SE__) + #if defined(__IS_AR9__) + if(_core_if->core_no==0) + { + set_bit (4, AMAZON_S_RCU_USBRESET); + } + else + { + set_bit (28, AMAZON_S_RCU_USBRESET); + } + #endif //defined(__IS_AR9__) + + MDELAY(50); + + #if defined(__IS_TWINPASS__) || defined(__IS_DANUBE__) + clear_bit (4, DANUBE_RCU_RESET); + #endif //defined(__IS_TWINPASS__) || defined(__IS_DANUBE__) + #if defined(__IS_AMAZON_SE__) + clear_bit (4, AMAZON_SE_RCU_RESET); + #endif //defined(__IS_AMAZON_SE__) + #if defined(__IS_AR9__) + if(_core_if->core_no==0) + { + clear_bit (4, AMAZON_S_RCU_USBRESET); + } + else + { + clear_bit (28, AMAZON_S_RCU_USBRESET); + } + #endif //defined(__IS_AR9__) + + MDELAY(50); + + #if defined(__IS_TWINPASS__) + ifxusb_enable_afe_oc(); + #endif + + if(_core_if->core_global_regs) + { + // PHY configurations. + #if defined(__IS_TWINPASS__) || defined(__IS_DANUBE__) + ifxusb_wreg (&_core_if->core_global_regs->guid,0x14014); + #endif //defined(__IS_TWINPASS__) || defined(__IS_DANUBE__) + #if defined(__IS_AMAZON_SE__) + ifxusb_wreg (&_core_if->core_global_regs->guid,0x14014); + #endif //defined(__IS_AMAZON_SE__) + #if defined(__IS_AR9__) + ifxusb_wreg (&_core_if->core_global_regs->guid,0x14014); + #endif //defined(__IS_AR9__) + } + #endif //defined(__UEIP__) +} + +#if defined(__GADGET_LED__) || defined(__HOST_LED__) + #if defined(__UEIP__) + static void *g_usb_led_trigger = NULL; + #endif + + void ifxusb_led_init(ifxusb_core_if_t *_core_if) + { + #if defined(__UEIP__) + #if defined(IFX_LEDGPIO_USB_LED) || defined(IFX_LEDLED_USB_LED) + if ( !g_usb_led_trigger ) + { + ifx_led_trigger_register("usb_link", &g_usb_led_trigger); + if ( g_usb_led_trigger != NULL ) + { + struct ifx_led_trigger_attrib attrib = {0}; + attrib.delay_on = 250; + attrib.delay_off = 250; + attrib.timeout = 2000; + attrib.def_value = 1; + attrib.flags = IFX_LED_TRIGGER_ATTRIB_DELAY_ON | IFX_LED_TRIGGER_ATTRIB_DELAY_OFF | IFX_LED_TRIGGER_ATTRIB_TIMEOUT | IFX_LED_TRIGGER_ATTRIB_DEF_VALUE; + IFX_DEBUGP("Reg USB LED!!\n"); + ifx_led_trigger_set_attrib(g_usb_led_trigger, &attrib); + } + } + #endif + #endif //defined(__UEIP__) + } + + void ifxusb_led_free(ifxusb_core_if_t *_core_if) + { + #if defined(__UEIP__) + if ( g_usb_led_trigger ) + { + ifx_led_trigger_deregister(g_usb_led_trigger); + g_usb_led_trigger = NULL; + } + #endif //defined(__UEIP__) + } + + /*! + \brief Turn off the USB 5V VBus Power + \param _core_if Pointer of core_if structure + */ + void ifxusb_led(ifxusb_core_if_t *_core_if) + { + #if defined(__UEIP__) + if(g_usb_led_trigger) + ifx_led_trigger_activate(g_usb_led_trigger); + #else + #endif //defined(__UEIP__) + } +#endif // defined(__GADGET_LED__) || defined(__HOST_LED__) + + + +/*! + \brief internal routines for debugging + */ +#ifdef __IS_HOST__ +void ifxusb_dump_msg_h(const u8 *buf, unsigned int length) +#else +void ifxusb_dump_msg_d(const u8 *buf, unsigned int length) +#endif +{ +#ifdef __DEBUG__ + unsigned int start, num, i; + char line[52], *p; + + if (length >= 512) + return; + start = 0; + while (length > 0) + { + num = min(length, 16u); + p = line; + for (i = 0; i < num; ++i) + { + if (i == 8) + *p++ = ' '; + sprintf(p, " %02x", buf[i]); + p += 3; + } + *p = 0; + IFX_PRINT( "%6x: %s\n", start, line); + buf += num; + start += num; + length -= num; + } +#endif +} + +/*! + \brief internal routines for debugging, reads the SPRAM and prints its content + */ +#ifdef __IS_HOST__ +void ifxusb_dump_spram_h(ifxusb_core_if_t *_core_if) +#else +void ifxusb_dump_spram_d(ifxusb_core_if_t *_core_if) +#endif +{ +#ifdef __ENABLE_DUMP__ + volatile uint8_t *addr, *start_addr, *end_addr; + uint32_t size; + IFX_PRINT("SPRAM Data:\n"); + start_addr = (void*)_core_if->core_global_regs; + IFX_PRINT("Base Address: 0x%8X\n", (uint32_t)start_addr); + + start_addr = (void*)_core_if->data_fifo_dbg; + IFX_PRINT("Starting Address: 0x%8X\n", (uint32_t)start_addr); + + size=_core_if->hwcfg3.b.dfifo_depth; + size<<=2; + size+=0x200; + size&=0x0003FFFC; + + end_addr = (void*)_core_if->data_fifo_dbg; + end_addr += size; + + for(addr = start_addr; addr < end_addr; addr+=16) + { + IFX_PRINT("0x%8X: %02X %02X %02X %02X %02X %02X %02X %02X %02X %02X %02X %02X %02X %02X %02X %02X \n", (uint32_t)addr, + addr[ 0], addr[ 1], addr[ 2], addr[ 3], + addr[ 4], addr[ 5], addr[ 6], addr[ 7], + addr[ 8], addr[ 9], addr[10], addr[11], + addr[12], addr[13], addr[14], addr[15] + ); + } + return; +#endif //__ENABLE_DUMP__ +} + +/*! + \brief internal routines for debugging, reads the core global registers and prints them + */ +#ifdef __IS_HOST__ +void ifxusb_dump_registers_h(ifxusb_core_if_t *_core_if) +#else +void ifxusb_dump_registers_d(ifxusb_core_if_t *_core_if) +#endif +{ +#ifdef __ENABLE_DUMP__ + int i; + volatile uint32_t *addr; + #ifdef __IS_DEVICE__ + volatile uint32_t *addri,*addro; + #endif + + IFX_PRINT("Core #%d\n",_core_if->core_no); + IFX_PRINT("========================================\n"); + IFX_PRINT("Core Global Registers\n"); + addr=&_core_if->core_global_regs->gotgctl; + IFX_PRINT(" GOTGCTL @0x%08X : 0x%08X\n",(uint32_t)addr,ifxusb_rreg(addr)); + addr=&_core_if->core_global_regs->gotgint; + IFX_PRINT(" GOTGINT @0x%08X : 0x%08X\n",(uint32_t)addr,ifxusb_rreg(addr)); + addr=&_core_if->core_global_regs->gahbcfg; + IFX_PRINT(" GAHBCFG @0x%08X : 0x%08X\n",(uint32_t)addr,ifxusb_rreg(addr)); + addr=&_core_if->core_global_regs->gusbcfg; + IFX_PRINT(" GUSBCFG @0x%08X : 0x%08X\n",(uint32_t)addr,ifxusb_rreg(addr)); + addr=&_core_if->core_global_regs->grstctl; + IFX_PRINT(" GRSTCTL @0x%08X : 0x%08X\n",(uint32_t)addr,ifxusb_rreg(addr)); + addr=&_core_if->core_global_regs->gintsts; + IFX_PRINT(" GINTSTS @0x%08X : 0x%08X\n",(uint32_t)addr,ifxusb_rreg(addr)); + addr=&_core_if->core_global_regs->gintmsk; + IFX_PRINT(" GINTMSK @0x%08X : 0x%08X\n",(uint32_t)addr,ifxusb_rreg(addr)); + addr=&_core_if->core_global_regs->gi2cctl; + IFX_PRINT(" GI2CCTL @0x%08X : 0x%08X\n",(uint32_t)addr,ifxusb_rreg(addr)); + addr=&_core_if->core_global_regs->gpvndctl; + IFX_PRINT(" GPVNDCTL @0x%08X : 0x%08X\n",(uint32_t)addr,ifxusb_rreg(addr)); + addr=&_core_if->core_global_regs->ggpio; + IFX_PRINT(" GGPIO @0x%08X : 0x%08X\n",(uint32_t)addr,ifxusb_rreg(addr)); + addr=&_core_if->core_global_regs->guid; + IFX_PRINT(" GUID @0x%08X : 0x%08X\n",(uint32_t)addr,ifxusb_rreg(addr)); + addr=&_core_if->core_global_regs->gsnpsid; + IFX_PRINT(" GSNPSID @0x%08X : 0x%08X\n",(uint32_t)addr,ifxusb_rreg(addr)); + addr=&_core_if->core_global_regs->ghwcfg1; + IFX_PRINT(" GHWCFG1 @0x%08X : 0x%08X\n",(uint32_t)addr,ifxusb_rreg(addr)); + addr=&_core_if->core_global_regs->ghwcfg2; + IFX_PRINT(" GHWCFG2 @0x%08X : 0x%08X\n",(uint32_t)addr,ifxusb_rreg(addr)); + addr=&_core_if->core_global_regs->ghwcfg3; + IFX_PRINT(" GHWCFG3 @0x%08X : 0x%08X\n",(uint32_t)addr,ifxusb_rreg(addr)); + addr=&_core_if->core_global_regs->ghwcfg4; + IFX_PRINT(" GHWCFG4 @0x%08X : 0x%08X\n",(uint32_t)addr,ifxusb_rreg(addr)); + + addr=_core_if->pcgcctl; + IFX_PRINT(" PCGCCTL @0x%08X : 0x%08X\n",(uint32_t)addr,ifxusb_rreg(addr)); + + addr=&_core_if->core_global_regs->grxfsiz; + IFX_PRINT(" GRXFSIZ @0x%08X : 0x%08X\n",(uint32_t)addr,ifxusb_rreg(addr)); + + #ifdef __IS_HOST__ + addr=&_core_if->core_global_regs->gnptxfsiz; + IFX_PRINT(" GNPTXFSIZ @0x%08X : 0x%08X\n",(uint32_t)addr,ifxusb_rreg(addr)); + addr=&_core_if->core_global_regs->hptxfsiz; + IFX_PRINT(" HPTXFSIZ @0x%08X : 0x%08X\n",(uint32_t)addr,ifxusb_rreg(addr)); + #endif //__IS_HOST__ + + #ifdef __IS_DEVICE__ + #ifdef __DED_FIFO__ + addr=&_core_if->core_global_regs->gnptxfsiz; + IFX_PRINT(" GNPTXFSIZ @0x%08X : 0x%08X\n",(uint32_t)addr,ifxusb_rreg(addr)); + for (i=0; i<= _core_if->hwcfg4.b.num_in_eps; i++) + { + addr=&_core_if->core_global_regs->dptxfsiz_dieptxf[i]; + IFX_PRINT(" DPTXFSIZ[%d] @0x%08X : 0x%08X\n",i,(uint32_t)addr,ifxusb_rreg(addr)); + } + #else + addr=&_core_if->core_global_regs->gnptxfsiz; + IFX_PRINT(" TXFSIZ[00] @0x%08X : 0x%08X\n",(uint32_t)addr,ifxusb_rreg(addr)); + for (i=0; i< _core_if->hwcfg4.b.num_dev_perio_in_ep; i++) + { + addr=&_core_if->core_global_regs->dptxfsiz_dieptxf[i]; + IFX_PRINT(" TXFSIZ[%02d] @0x%08X : 0x%08X\n",i+1,(uint32_t)addr,ifxusb_rreg(addr)); + } + #endif + #endif //__IS_DEVICE__ + + #ifdef __IS_HOST__ + IFX_PRINT(" Host Global Registers\n"); + addr=&_core_if->host_global_regs->hcfg; + IFX_PRINT(" HCFG @0x%08X : 0x%08X\n",(uint32_t)addr,ifxusb_rreg(addr)); + addr=&_core_if->host_global_regs->hfir; + IFX_PRINT(" HFIR @0x%08X : 0x%08X\n",(uint32_t)addr,ifxusb_rreg(addr)); + addr=&_core_if->host_global_regs->hfnum; + IFX_PRINT(" HFNUM @0x%08X : 0x%08X\n",(uint32_t)addr,ifxusb_rreg(addr)); + addr=&_core_if->host_global_regs->hptxsts; + IFX_PRINT(" HPTXSTS @0x%08X : 0x%08X\n",(uint32_t)addr,ifxusb_rreg(addr)); + addr=&_core_if->host_global_regs->haint; + IFX_PRINT(" HAINT @0x%08X : 0x%08X\n",(uint32_t)addr,ifxusb_rreg(addr)); + addr=&_core_if->host_global_regs->haintmsk; + IFX_PRINT(" HAINTMSK @0x%08X : 0x%08X\n",(uint32_t)addr,ifxusb_rreg(addr)); + addr= _core_if->hprt0; + IFX_PRINT(" HPRT0 @0x%08X : 0x%08X\n",(uint32_t)addr,ifxusb_rreg(addr)); + + for (i=0; i<MAX_EPS_CHANNELS; i++) + { + addr=&_core_if->hc_regs[i]->hcchar; + IFX_PRINT(" Host Channel %d Specific Registers\n", i); + IFX_PRINT(" HCCHAR @0x%08X : 0x%08X\n",(uint32_t)addr,ifxusb_rreg(addr)); + addr=&_core_if->hc_regs[i]->hcsplt; + IFX_PRINT(" HCSPLT @0x%08X : 0x%08X\n",(uint32_t)addr,ifxusb_rreg(addr)); + addr=&_core_if->hc_regs[i]->hcint; + IFX_PRINT(" HCINT @0x%08X : 0x%08X\n",(uint32_t)addr,ifxusb_rreg(addr)); + addr=&_core_if->hc_regs[i]->hcintmsk; + IFX_PRINT(" HCINTMSK @0x%08X : 0x%08X\n",(uint32_t)addr,ifxusb_rreg(addr)); + addr=&_core_if->hc_regs[i]->hctsiz; + IFX_PRINT(" HCTSIZ @0x%08X : 0x%08X\n",(uint32_t)addr,ifxusb_rreg(addr)); + addr=&_core_if->hc_regs[i]->hcdma; + IFX_PRINT(" HCDMA @0x%08X : 0x%08X\n",(uint32_t)addr,ifxusb_rreg(addr)); + } + #endif //__IS_HOST__ + + #ifdef __IS_DEVICE__ + IFX_PRINT(" Device Global Registers\n"); + addr=&_core_if->dev_global_regs->dcfg; + IFX_PRINT(" DCFG @0x%08X : 0x%08X\n",(uint32_t)addr,ifxusb_rreg(addr)); + addr=&_core_if->dev_global_regs->dctl; + IFX_PRINT(" DCTL @0x%08X : 0x%08X\n",(uint32_t)addr,ifxusb_rreg(addr)); + addr=&_core_if->dev_global_regs->dsts; + IFX_PRINT(" DSTS @0x%08X : 0x%08X\n",(uint32_t)addr,ifxusb_rreg(addr)); + addr=&_core_if->dev_global_regs->diepmsk; + IFX_PRINT(" DIEPMSK @0x%08X : 0x%08X\n",(uint32_t)addr,ifxusb_rreg(addr)); + addr=&_core_if->dev_global_regs->doepmsk; + IFX_PRINT(" DOEPMSK @0x%08X : 0x%08X\n",(uint32_t)addr,ifxusb_rreg(addr)); + addr=&_core_if->dev_global_regs->daintmsk; + IFX_PRINT(" DAINTMSK @0x%08X : 0x%08X\n",(uint32_t)addr,ifxusb_rreg(addr)); + addr=&_core_if->dev_global_regs->daint; + IFX_PRINT(" DAINT @0x%08X : 0x%08X\n",(uint32_t)addr,ifxusb_rreg(addr)); + addr=&_core_if->dev_global_regs->dvbusdis; + IFX_PRINT(" DVBUSID @0x%08X : 0x%08X\n",(uint32_t)addr,ifxusb_rreg(addr)); + addr=&_core_if->dev_global_regs->dvbuspulse; + IFX_PRINT(" DVBUSPULS @0x%08X : 0x%08X\n", (uint32_t)addr,ifxusb_rreg(addr)); + + addr=&_core_if->dev_global_regs->dtknqr1; + IFX_PRINT(" DTKNQR1 @0x%08X : 0x%08X\n",(uint32_t)addr,ifxusb_rreg(addr)); + if (_core_if->hwcfg2.b.dev_token_q_depth > 6) { + addr=&_core_if->dev_global_regs->dtknqr2; + IFX_PRINT(" DTKNQR2 @0x%08X : 0x%08X\n", (uint32_t)addr,ifxusb_rreg(addr)); + } + + if (_core_if->hwcfg2.b.dev_token_q_depth > 14) + { + addr=&_core_if->dev_global_regs->dtknqr3_dthrctl; + IFX_PRINT(" DTKNQR3_DTHRCTL @0x%08X : 0x%08X\n", (uint32_t)addr, ifxusb_rreg(addr)); + } + + if (_core_if->hwcfg2.b.dev_token_q_depth > 22) + { + addr=&_core_if->dev_global_regs->dtknqr4_fifoemptymsk; + IFX_PRINT(" DTKNQR4 @0x%08X : 0x%08X\n", (uint32_t)addr, ifxusb_rreg(addr)); + } + + //for (i=0; i<= MAX_EPS_CHANNELS; i++) + //for (i=0; i<= 10; i++) + for (i=0; i<= 3; i++) + { + IFX_PRINT(" Device EP %d Registers\n", i); + addri=&_core_if->in_ep_regs[i]->diepctl;addro=&_core_if->out_ep_regs[i]->doepctl; + IFX_PRINT(" DEPCTL I: 0x%08X O: 0x%08X\n",ifxusb_rreg(addri),ifxusb_rreg(addro)); + addro=&_core_if->out_ep_regs[i]->doepfn; + IFX_PRINT(" DEPFN I: O: 0x%08X\n",ifxusb_rreg(addro)); + addri=&_core_if->in_ep_regs[i]->diepint;addro=&_core_if->out_ep_regs[i]->doepint; + IFX_PRINT(" DEPINT I: 0x%08X O: 0x%08X\n",ifxusb_rreg(addri),ifxusb_rreg(addro)); + addri=&_core_if->in_ep_regs[i]->dieptsiz;addro=&_core_if->out_ep_regs[i]->doeptsiz; + IFX_PRINT(" DETSIZ I: 0x%08X O: 0x%08X\n",ifxusb_rreg(addri),ifxusb_rreg(addro)); + addri=&_core_if->in_ep_regs[i]->diepdma;addro=&_core_if->out_ep_regs[i]->doepdma; + IFX_PRINT(" DEPDMA I: 0x%08X O: 0x%08X\n",ifxusb_rreg(addri),ifxusb_rreg(addro)); + addri=&_core_if->in_ep_regs[i]->dtxfsts; + IFX_PRINT(" DTXFSTS I: 0x%08X\n",ifxusb_rreg(addri) ); + addri=&_core_if->in_ep_regs[i]->diepdmab;addro=&_core_if->out_ep_regs[i]->doepdmab; + IFX_PRINT(" DEPDMAB I: 0x%08X O: 0x%08X\n",ifxusb_rreg(addri),ifxusb_rreg(addro)); + } + #endif //__IS_DEVICE__ +#endif //__ENABLE_DUMP__ +} + +#ifdef __IS_HOST__ +void do_suspend_h(ifxusb_core_if_t *core_if) +{ + ifxusb_vbus_off(core_if); + mdelay(100); + ifxusb_power_off_h(core_if); +} +void do_resume_h(ifxusb_core_if_t *core_if) +{ + ifxusb_vbus_on(core_if); + mdelay(100); + ifxusb_power_on_h(core_if); + ifxusb_phy_power_on_h(core_if); +} +#endif +#ifdef __IS_DEVICE__ +void do_suspend_d(ifxusb_core_if_t *core_if) +{ + ifxusb_power_off_d(core_if); +} +void do_resume_d(ifxusb_core_if_t *core_if) +{ + dctl_data_t dctl = {.d32=0}; + + ifxusb_power_on_d(core_if); + ifxusb_phy_power_on_d(core_if); + dctl.d32=ifxusb_rreg(&core_if->dev_global_regs->dctl); + dctl.b.sftdiscon=1; + ifxusb_wreg(&core_if->dev_global_regs->dctl,dctl.d32); + mdelay(50); + dctl.b.sftdiscon=0; + ifxusb_wreg(&core_if->dev_global_regs->dctl,dctl.d32); +} +#endif + diff --git a/package/kernel/lantiq/ltq-hcd/src/ifxusb_cif.h b/package/kernel/lantiq/ltq-hcd/src/ifxusb_cif.h new file mode 100644 index 0000000..5af988f --- /dev/null +++ b/package/kernel/lantiq/ltq-hcd/src/ifxusb_cif.h @@ -0,0 +1,767 @@ +/***************************************************************************** + ** FILE NAME : ifxusb_cif.h + ** PROJECT : IFX USB sub-system V3 + ** MODULES : IFX USB sub-system Host and Device driver + ** SRC VERSION : 3.2 + ** DATE : 1/Jan/2011 + ** AUTHOR : Chen, Howard + ** DESCRIPTION : The Core Interface provides basic services for accessing and + ** managing the IFX USB hardware. These services are used by both the + ** Host Controller Driver and the Peripheral Controller Driver. + ** FUNCTIONS : + ** COMPILER : gcc + ** REFERENCE : Synopsys DWC-OTG Driver 2.7 + ** COPYRIGHT : Copyright (c) 2010 + ** LANTIQ DEUTSCHLAND GMBH, + ** Am Campeon 3, 85579 Neubiberg, Germany + ** + ** This program is free software; you can redistribute it and/or modify + ** it under the terms of the GNU General Public License as published by + ** the Free Software Foundation; either version 2 of the License, or + ** (at your option) any later version. + ** + ** Version Control Section ** + ** $Author$ + ** $Date$ + ** $Revisions$ + ** $Log$ Revision history + *****************************************************************************/ + +/* + * This file contains code fragments from Synopsys HS OTG Linux Software Driver. + * For this code the following notice is applicable: + * + * ========================================================================== + * + * Synopsys HS OTG Linux Software Driver and documentation (hereinafter, + * "Software") is an Unsupported proprietary work of Synopsys, Inc. unless + * otherwise expressly agreed to in writing between Synopsys and you. + * + * The Software IS NOT an item of Licensed Software or Licensed Product under + * any End User Software License Agreement or Agreement for Licensed Product + * with Synopsys or any supplement thereto. You are permitted to use and + * redistribute this Software in source and binary forms, with or without + * modification, provided that redistributions of source code must retain this + * notice. You may not view, use, disclose, copy or distribute this file or + * any information contained herein except pursuant to this license grant from + * Synopsys. If you do not agree with this notice, including the disclaimer + * below, then you are not authorized to use the Software. + * + * THIS SOFTWARE IS BEING DISTRIBUTED BY SYNOPSYS SOLELY ON AN "AS IS" BASIS + * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE + * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE + * ARE HEREBY DISCLAIMED. IN NO EVENT SHALL SYNOPSYS BE LIABLE FOR ANY DIRECT, + * INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES + * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR + * SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER + * CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT + * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY + * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH + * DAMAGE. + * ========================================================================== */ + +/*! + \defgroup IFXUSB_DRIVER_V3 IFX USB SS Project + \brief IFX USB subsystem V3.x + */ + +/*! + \defgroup IFXUSB_CIF Core Interface APIs + \ingroup IFXUSB_DRIVER_V3 + \brief The Core Interface provides basic services for accessing and + managing the IFXUSB hardware. These services are used by both the + Host Controller Driver and the Peripheral Controller Driver. + */ + + +/*! + \file ifxusb_cif.h + \ingroup IFXUSB_DRIVER_V3 + \brief This file contains the interface to the IFX USB Core. + */ + +#if !defined(__IFXUSB_CIF_H__) +#define __IFXUSB_CIF_H__ + +#include <linux/workqueue.h> + +#include <linux/version.h> +#include <asm/param.h> + +#include "ifxusb_plat.h" +#include "ifxusb_regs.h" + +#ifdef __DEBUG__ + #include "linux/timer.h" +#endif + +/////////////////////////////////////////////////////////////////////////////////////////////////////////////////////// + +#define IFXUSB_PARAM_SPEED_HIGH 0 /*!< Build stage parameter: High Speed */ +#define IFXUSB_PARAM_SPEED_FULL 1 /*!< Build stage parameter: Full Speed */ + +#define IFXUSB_EP_SPEED_LOW 0 /*!< Run-Time Status: High Speed */ +#define IFXUSB_EP_SPEED_FULL 1 /*!< Run-Time Status: Full Speed */ +#define IFXUSB_EP_SPEED_HIGH 2 /*!< Run-Time Status: Low Speed */ + +#define IFXUSB_EP_TYPE_CTRL 0 /*!< Run-Time Status: CTRL */ +#define IFXUSB_EP_TYPE_ISOC 1 /*!< Run-Time Status: ISOC */ +#define IFXUSB_EP_TYPE_BULK 2 /*!< Run-Time Status: BULK */ +#define IFXUSB_EP_TYPE_INTR 3 /*!< Run-Time Status: INTR */ + +#define IFXUSB_HC_PID_DATA0 0 /*!< Run-Time Data Toggle: Data 0 */ +#define IFXUSB_HC_PID_DATA2 1 /*!< Run-Time Data Toggle: Data 2 */ +#define IFXUSB_HC_PID_DATA1 2 /*!< Run-Time Data Toggle: Data 1 */ +#define IFXUSB_HC_PID_MDATA 3 /*!< Run-Time Data Toggle: MData */ +#define IFXUSB_HC_PID_SETUP 3 /*!< Run-Time Data Toggle: Setup */ + + +/*! + \addtogroup IFXUSB_CIF + */ +/*@{*/ + +/*! typedef ifxusb_params_t + \brief IFXUSB Parameters structure. + This structure is used for both importing from insmod stage and run-time storage. + These parameters define how the IFXUSB controller should be configured. + */ +typedef struct ifxusb_params +{ + int32_t dma_burst_size; /*!< The DMA Burst size (applicable only for Internal DMA + Mode). 0(for single), 1(incr), 4(incr4), 8(incr8) 16(incr16) + */ + /* Translate this to GAHBCFG values */ + int32_t speed; /*!< Specifies the maximum speed of operation in host and device mode. + The actual speed depends on the speed of the attached device and + the value of phy_type. The actual speed depends on the speed of the + attached device. + 0 - High Speed (default) + 1 - Full Speed + */ + + int32_t data_fifo_size; /*!< Total number of dwords in the data FIFO memory. This + memory includes the Rx FIFO, non-periodic Tx FIFO, and periodic + Tx FIFOs. + 32 to 32768 + */ + #ifdef __IS_DEVICE__ + int32_t rx_fifo_size; /*!< Number of dwords in the Rx FIFO in device mode. + 16 to 32768 + */ + + + int32_t tx_fifo_size[MAX_EPS_CHANNELS]; /*!< Number of dwords in each of the Tx FIFOs in device mode. + 4 to 768 + */ + #ifdef __DED_FIFO__ + int32_t thr_ctl; /*!< Threshold control on/off */ + int32_t tx_thr_length; /*!< Threshold length for Tx */ + int32_t rx_thr_length; /*!< Threshold length for Rx*/ + #endif + #else //__IS_HOST__ + int32_t host_channels; /*!< The number of host channel registers to use. + 1 to 16 + */ + + int32_t rx_fifo_size; /*!< Number of dwords in the Rx FIFO in host mode. + 16 to 32768 + */ + + int32_t nperio_tx_fifo_size;/*!< Number of dwords in the non-periodic Tx FIFO in host mode. + 16 to 32768 + */ + + int32_t perio_tx_fifo_size; /*!< Number of dwords in the host periodic Tx FIFO. + 16 to 32768 + */ + #endif //__IS_HOST__ + + int32_t max_transfer_size; /*!< The maximum transfer size supported in bytes. + 2047 to 65,535 + */ + + int32_t max_packet_count; /*!< The maximum number of packets in a transfer. + 15 to 511 (default 511) + */ + int32_t phy_utmi_width; /*!< Specifies the UTMI+ Data Width. + 8 or 16 bits (default 16) + */ + + int32_t turn_around_time_hs; /*!< Specifies the Turn-Around time at HS*/ + int32_t turn_around_time_fs; /*!< Specifies the Turn-Around time at FS*/ + + int32_t timeout_cal_hs; /*!< Specifies the Timeout_Calibration at HS*/ + int32_t timeout_cal_fs; /*!< Specifies the Timeout_Calibration at FS*/ +} ifxusb_params_t; + +/////////////////////////////////////////////////////////////////////////////////////////////////////////////////////// +/////////////////////////////////////////////////////////////////////////////////////////////////////////////////////// + +/*! typedef ifxusb_core_if_t + \brief The ifx_core_if structure contains information needed to manage + the IFX USB controller acting in either host or device mode. It + represents the programming view of the controller as a whole. + */ +typedef struct ifxusb_core_if +{ + ifxusb_params_t params; /*!< Run-time Parameters */ + + uint8_t core_no; /*!< core number (used as id when multi-core case */ + char *core_name; /*!< core name used for registration and informative purpose*/ + int irq; /*!< irq number this core is hooked */ + + /***************************************************************** + * Structures and pointers to physical register interface. + *****************************************************************/ + /** Core Global registers starting at offset 000h. */ + ifxusb_core_global_regs_t *core_global_regs; /*!< pointer to Core Global Registers, offset at 000h */ + + /** Host-specific registers */ + #ifdef __IS_HOST__ + /** Host Global Registers starting at offset 400h.*/ + ifxusb_host_global_regs_t *host_global_regs; /*!< pointer to Host Global Registers, offset at 400h */ + #define IFXUSB_HOST_GLOBAL_REG_OFFSET 0x400 + /** Host Port 0 Control and Status Register */ + volatile uint32_t *hprt0; /*!< pointer to HPRT0 Registers, offset at 440h */ + #define IFXUSB_HOST_PORT_REGS_OFFSET 0x440 + /** Host Channel Specific Registers at offsets 500h-5FCh. */ + ifxusb_hc_regs_t *hc_regs[MAX_EPS_CHANNELS]; /*!< pointer to Host-Channel n Registers, offset at 500h */ + #define IFXUSB_HOST_CHAN_REGS_OFFSET 0x500 + #define IFXUSB_CHAN_REGS_OFFSET 0x20 + #endif + + /** Device-specific registers */ + #ifdef __IS_DEVICE__ + /** Device Global Registers starting at offset 800h */ + ifxusb_device_global_regs_t *dev_global_regs; /*!< pointer to Device Global Registers, offset at 800h */ + #define IFXUSB_DEV_GLOBAL_REG_OFFSET 0x800 + + /** Device Logical IN Endpoint-Specific Registers 900h-AFCh */ + ifxusb_dev_in_ep_regs_t *in_ep_regs[MAX_EPS_CHANNELS]; /*!< pointer to Device IN-EP Registers, offset at 900h */ + #define IFXUSB_DEV_IN_EP_REG_OFFSET 0x900 + #define IFXUSB_EP_REG_OFFSET 0x20 + /** Device Logical OUT Endpoint-Specific Registers B00h-CFCh */ + ifxusb_dev_out_ep_regs_t *out_ep_regs[MAX_EPS_CHANNELS];/*!< pointer to Device OUT-EP Registers, offset at 900h */ + #define IFXUSB_DEV_OUT_EP_REG_OFFSET 0xB00 + #endif + + /** Power and Clock Gating Control Register */ + volatile uint32_t *pcgcctl; /*!< pointer to Power and Clock Gating Control Registers, offset at E00h */ + #define IFXUSB_PCGCCTL_OFFSET 0xE00 + + /** Push/pop addresses for endpoints or host channels.*/ + uint32_t *data_fifo[MAX_EPS_CHANNELS]; /*!< pointer to FIFO access windows, offset at 1000h */ + #define IFXUSB_DATA_FIFO_OFFSET 0x1000 + #define IFXUSB_DATA_FIFO_SIZE 0x1000 + + uint32_t *data_fifo_dbg; /*!< pointer to FIFO debug windows, offset at 1000h */ + + /** Hardware Configuration -- stored here for convenience.*/ + hwcfg1_data_t hwcfg1; /*!< preserved Hardware Configuration 1 */ + hwcfg2_data_t hwcfg2; /*!< preserved Hardware Configuration 2 */ + hwcfg3_data_t hwcfg3; /*!< preserved Hardware Configuration 3 */ + hwcfg4_data_t hwcfg4; /*!< preserved Hardware Configuration 3 */ + uint32_t snpsid; /*!< preserved SNPSID */ + + /***************************************************************** + * Run-time informations. + *****************************************************************/ + /* Set to 1 if the core PHY interface bits in USBCFG have been initialized. */ + uint8_t phy_init_done; /*!< indicated PHY is initialized. */ + + #ifdef __IS_HOST__ + uint8_t queuing_high_bandwidth; /*!< Host mode, Queueing High Bandwidth. */ + #endif + + #if defined(__UNALIGNED_BUF_ADJ__) || defined(__UNALIGNED_BUF_CHK__) + uint32_t unaligned_mask; + #endif +} ifxusb_core_if_t; + +/*@}*//*IFXUSB_CIF*/ + + +/*! + \fn void *ifxusb_alloc_buf(size_t size, int clear) + \brief This function is called to allocate buffer of specified size. + The allocated buffer is mapped into DMA accessable address. + \param size Size in BYTE to be allocated + \param clear 0: don't do clear after buffer allocated, other: do clear to zero + \return 0/NULL: Fail; uncached pointer of allocated buffer + \ingroup IFXUSB_CIF + */ +#ifdef __IS_HOST__ +extern void *ifxusb_alloc_buf_h(size_t size, int clear); +#else +extern void *ifxusb_alloc_buf_d(size_t size, int clear); +#endif + + +/*! + \fn void ifxusb_free_buf(void *vaddr) + \brief This function is called to free allocated buffer. + \param vaddr the uncached pointer of the buffer + \ingroup IFXUSB_CIF + */ +#ifdef __IS_HOST__ +extern void ifxusb_free_buf_h(void *vaddr); +#else +extern void ifxusb_free_buf_d(void *vaddr); +#endif + +/*! + \fn int ifxusb_core_if_init(ifxusb_core_if_t *_core_if, + int _irq, + uint32_t _reg_base_addr, + uint32_t _fifo_base_addr, + uint32_t _fifo_dbg_addr) + \brief This function is called to initialize the IFXUSB CSR data + structures. The register addresses in the device and host + structures are initialized from the base address supplied by the + caller. The calling function must make the OS calls to get the + base address of the IFXUSB controller registers. + \param _core_if Pointer of core_if structure + \param _irq irq number + \param _reg_base_addr Base address of IFXUSB core registers + \param _fifo_base_addr Fifo base address + \param _fifo_dbg_addr Fifo debug address + \return 0: success; + \ingroup IFXUSB_CIF + */ +#ifdef __IS_HOST__ +extern int ifxusb_core_if_init_h(ifxusb_core_if_t *_core_if, +#else +extern int ifxusb_core_if_init_d(ifxusb_core_if_t *_core_if, +#endif + int _irq, + uint32_t _reg_base_addr, + uint32_t _fifo_base_addr, + uint32_t _fifo_dbg_addr); + + +/*! + \fn void ifxusb_core_if_remove(ifxusb_core_if_t *_core_if) + \brief This function free the mapped address in the IFXUSB CSR data structures. + \param _core_if Pointer of core_if structure + \ingroup IFXUSB_CIF + */ +#ifdef __IS_HOST__ +extern void ifxusb_core_if_remove_h(ifxusb_core_if_t *_core_if); +#else +extern void ifxusb_core_if_remove_d(ifxusb_core_if_t *_core_if); +#endif + +/*! + \fn void ifxusb_enable_global_interrupts( ifxusb_core_if_t *_core_if ) + \brief This function enbles the controller's Global Interrupt in the AHB Config register. + \param _core_if Pointer of core_if structure + */ +#ifdef __IS_HOST__ +extern void ifxusb_enable_global_interrupts_h( ifxusb_core_if_t *_core_if ); +#else +extern void ifxusb_enable_global_interrupts_d( ifxusb_core_if_t *_core_if ); +#endif + +/*! + \fn void ifxusb_disable_global_interrupts( ifxusb_core_if_t *_core_if ) + \brief This function disables the controller's Global Interrupt in the AHB Config register. + \param _core_if Pointer of core_if structure + \ingroup IFXUSB_CIF + */ +#ifdef __IS_HOST__ +extern void ifxusb_disable_global_interrupts_h( ifxusb_core_if_t *_core_if ); +#else +extern void ifxusb_disable_global_interrupts_d( ifxusb_core_if_t *_core_if ); +#endif + +/*! + \fn void ifxusb_flush_tx_fifo( ifxusb_core_if_t *_core_if, const int _num ) + \brief Flush a Tx FIFO. + \param _core_if Pointer of core_if structure + \param _num Tx FIFO to flush. ( 0x10 for ALL TX FIFO ) + \ingroup IFXUSB_CIF + */ +#ifdef __IS_HOST__ +extern void ifxusb_flush_tx_fifo_h( ifxusb_core_if_t *_core_if, const int _num ); +#else +extern void ifxusb_flush_tx_fifo_d( ifxusb_core_if_t *_core_if, const int _num ); +#endif + +/*! + \fn void ifxusb_flush_rx_fifo( ifxusb_core_if_t *_core_if ) + \brief Flush Rx FIFO. + \param _core_if Pointer of core_if structure + \ingroup IFXUSB_CIF + */ +#ifdef __IS_HOST__ +extern void ifxusb_flush_rx_fifo_h( ifxusb_core_if_t *_core_if ); +#else +extern void ifxusb_flush_rx_fifo_d( ifxusb_core_if_t *_core_if ); +#endif + +/*! + \fn void ifxusb_flush_both_fifo( ifxusb_core_if_t *_core_if ) + \brief Flush ALL Rx and Tx FIFO. + \param _core_if Pointer of core_if structure + \ingroup IFXUSB_CIF + */ +#ifdef __IS_HOST__ +extern void ifxusb_flush_both_fifo_h( ifxusb_core_if_t *_core_if ); +#else +extern void ifxusb_flush_both_fifo_d( ifxusb_core_if_t *_core_if ); +#endif + + +/*! + \fn int ifxusb_core_soft_reset(ifxusb_core_if_t *_core_if) + \brief Do core a soft reset of the core. Be careful with this because it + resets all the internal state machines of the core. + \param _core_if Pointer of core_if structure + \ingroup IFXUSB_CIF + */ +#ifdef __IS_HOST__ +extern int ifxusb_core_soft_reset_h(ifxusb_core_if_t *_core_if); +#else +extern int ifxusb_core_soft_reset_d(ifxusb_core_if_t *_core_if); +#endif + + +/*! + \brief Turn on the USB Core Power + \param _core_if Pointer of core_if structure + \ingroup IFXUSB_CIF +*/ +#ifdef __IS_HOST__ + extern void ifxusb_power_on_h (ifxusb_core_if_t *_core_if); +#else + extern void ifxusb_power_on_d (ifxusb_core_if_t *_core_if); +#endif + +/*! + \fn void ifxusb_power_off (ifxusb_core_if_t *_core_if) + \brief Turn off the USB Core Power + \param _core_if Pointer of core_if structure + \ingroup IFXUSB_CIF +*/ +#ifdef __IS_HOST__ + extern void ifxusb_power_off_h (ifxusb_core_if_t *_core_if); +#else + extern void ifxusb_power_off_d (ifxusb_core_if_t *_core_if); +#endif + +/*! + \fn void ifxusb_phy_power_on (ifxusb_core_if_t *_core_if) + \brief Turn on the USB PHY Power + \param _core_if Pointer of core_if structure + \ingroup IFXUSB_CIF +*/ +#ifdef __IS_HOST__ + extern void ifxusb_phy_power_on_h (ifxusb_core_if_t *_core_if); +#else + extern void ifxusb_phy_power_on_d (ifxusb_core_if_t *_core_if); +#endif + + +/*! + \fn void ifxusb_phy_power_off (ifxusb_core_if_t *_core_if) + \brief Turn off the USB PHY Power + \param _core_if Pointer of core_if structure + \ingroup IFXUSB_CIF +*/ +#ifdef __IS_HOST__ + extern void ifxusb_phy_power_off_h (ifxusb_core_if_t *_core_if); +#else + extern void ifxusb_phy_power_off_d (ifxusb_core_if_t *_core_if); +#endif + +/*! + \fn void ifxusb_hard_reset(ifxusb_core_if_t *_core_if) + \brief Reset on the USB Core RCU + \param _core_if Pointer of core_if structure + \ingroup IFXUSB_CIF + */ +#ifdef __IS_HOST__ + extern void ifxusb_hard_reset_h(ifxusb_core_if_t *_core_if); +#else + extern void ifxusb_hard_reset_d(ifxusb_core_if_t *_core_if); +#endif + + +/////////////////////////////////////////////////////////////////////////////////////////////////////////////////////// + + +#ifdef __IS_HOST__ + /*! + \fn void ifxusb_host_core_init(ifxusb_core_if_t *_core_if, ifxusb_params_t *_params) + \brief This function initializes the IFXUSB controller registers for Host mode. + This function flushes the Tx and Rx FIFOs and it flushes any entries in the + request queues. + \param _core_if Pointer of core_if structure + \param _params parameters to be set + \ingroup IFXUSB_CIF + */ + extern void ifxusb_host_core_init(ifxusb_core_if_t *_core_if, ifxusb_params_t *_params); + + /*! + \fn void ifxusb_host_enable_interrupts(ifxusb_core_if_t *_core_if) + \brief This function enables the Host mode interrupts. + \param _core_if Pointer of core_if structure + \ingroup IFXUSB_CIF + */ + extern void ifxusb_host_enable_interrupts(ifxusb_core_if_t *_core_if); + + /*! + \fn void ifxusb_host_disable_interrupts(ifxusb_core_if_t *_core_if) + \brief This function disables the Host mode interrupts. + \param _core_if Pointer of core_if structure + \ingroup IFXUSB_CIF + */ + extern void ifxusb_host_disable_interrupts(ifxusb_core_if_t *_core_if); + + #if defined(__IS_TWINPASS__) + extern void ifxusb_enable_afe_oc(void); + #endif + + /*! + \fn void ifxusb_vbus_init(ifxusb_core_if_t *_core_if) + \brief This function init the VBUS control. + \param _core_if Pointer of core_if structure + \ingroup IFXUSB_CIF + */ + extern void ifxusb_vbus_init(ifxusb_core_if_t *_core_if); + + /*! + \fn void ifxusb_vbus_free(ifxusb_core_if_t *_core_if) + \brief This function free the VBUS control. + \param _core_if Pointer of core_if structure + \ingroup IFXUSB_CIF + */ + extern void ifxusb_vbus_free(ifxusb_core_if_t *_core_if); + + /*! + \fn void ifxusb_vbus_on(ifxusb_core_if_t *_core_if) + \brief Turn on the USB 5V VBus Power + \param _core_if Pointer of core_if structure + \ingroup IFXUSB_CIF + */ + extern void ifxusb_vbus_on(ifxusb_core_if_t *_core_if); + + /*! + \fn void ifxusb_vbus_off(ifxusb_core_if_t *_core_if) + \brief Turn off the USB 5V VBus Power + \param _core_if Pointer of core_if structure + \ingroup IFXUSB_CIF + */ + extern void ifxusb_vbus_off(ifxusb_core_if_t *_core_if); + + /*! + \fn int ifxusb_vbus(ifxusb_core_if_t *_core_if) + \brief Read Current VBus status + \param _core_if Pointer of core_if structure + \ingroup IFXUSB_CIF + */ + extern int ifxusb_vbus(ifxusb_core_if_t *_core_if); +#endif + +/////////////////////////////////////////////////////////////////////////////////////////////////////////////////////// + + +#ifdef __IS_DEVICE__ + /*! + \fn void ifxusb_dev_enable_interrupts(ifxusb_core_if_t *_core_if) + \brief This function enables the Device mode interrupts. + \param _core_if Pointer of core_if structure + \ingroup IFXUSB_CIF + */ + extern void ifxusb_dev_enable_interrupts(ifxusb_core_if_t *_core_if); + + /*! + \fn uint32_t ifxusb_dev_get_frame_number(ifxusb_core_if_t *_core_if) + \brief Gets the current USB frame number. This is the frame number from the last SOF packet. + \param _core_if Pointer of core_if structure + \ingroup IFXUSB_CIF + */ + extern uint32_t ifxusb_dev_get_frame_number(ifxusb_core_if_t *_core_if); + + /*! + \fn void ifxusb_dev_ep_set_stall(ifxusb_core_if_t *_core_if, uint8_t _epno, uint8_t _is_in) + \brief Set the EP STALL. + \param _core_if Pointer of core_if structure + \param _epno EP number + \param _is_in 1: is IN transfer + \ingroup IFXUSB_CIF + */ + extern void ifxusb_dev_ep_set_stall(ifxusb_core_if_t *_core_if, uint8_t _epno, uint8_t _is_in); + + /*! + \fn void ifxusb_dev_ep_clear_stall(ifxusb_core_if_t *_core_if, uint8_t _epno, uint8_t _ep_type, uint8_t _is_in) + \brief Set the EP STALL. + \param _core_if Pointer of core_if structure + \param _epno EP number + \param _ep_type EP Type + \ingroup IFXUSB_CIF + */ + extern void ifxusb_dev_ep_clear_stall(ifxusb_core_if_t *_core_if, uint8_t _epno, uint8_t _ep_type, uint8_t _is_in); + + /*! + \fn void ifxusb_dev_core_init(ifxusb_core_if_t *_core_if, ifxusb_params_t *_params) + \brief This function initializes the IFXUSB controller registers for Device mode. + This function flushes the Tx and Rx FIFOs and it flushes any entries in the + request queues. + This function validate the imported parameters and store the result in the CIF structure. + After + \param _core_if Pointer of core_if structure + \param _params structure of inported parameters + \ingroup IFXUSB_CIF + */ + extern void ifxusb_dev_core_init(ifxusb_core_if_t *_core_if, ifxusb_params_t *_params); +#endif + +/////////////////////////////////////////////////////////////////////////////////////////////////////////////////////// + +#if defined(__GADGET_LED__) || defined(__HOST_LED__) + /*! + \fn void ifxusb_led_init(ifxusb_core_if_t *_core_if) + \brief This function init the LED control. + \param _core_if Pointer of core_if structure + \ingroup IFXUSB_CIF + */ + extern void ifxusb_led_init(ifxusb_core_if_t *_core_if); + + /*! + \fn void ifxusb_led_free(ifxusb_core_if_t *_core_if) + \brief This function free the LED control. + \param _core_if Pointer of core_if structure + \ingroup IFXUSB_CIF + */ + extern void ifxusb_led_free(ifxusb_core_if_t *_core_if); + + /*! + \fn void ifxusb_led(ifxusb_core_if_t *_core_if) + \brief This function trigger the LED access. + \param _core_if Pointer of core_if structure + \ingroup IFXUSB_CIF + */ + extern void ifxusb_led(ifxusb_core_if_t *_core_if); +#endif + +/////////////////////////////////////////////////////////////////////////////////////////////////////////////////////// + +/* internal routines for debugging */ +#ifdef __IS_HOST__ + extern void ifxusb_dump_msg_h(const u8 *buf, unsigned int length); + extern void ifxusb_dump_spram_h(ifxusb_core_if_t *_core_if); + extern void ifxusb_dump_registers_h(ifxusb_core_if_t *_core_if); +#else + extern void ifxusb_dump_msg_d(const u8 *buf, unsigned int length); + extern void ifxusb_dump_spram_d(ifxusb_core_if_t *_core_if); + extern void ifxusb_dump_registers_d(ifxusb_core_if_t *_core_if); +#endif + +/////////////////////////////////////////////////////////////////////////////////////////////////////////////////////// + +static inline uint32_t ifxusb_read_core_intr(ifxusb_core_if_t *_core_if) +{ + return (ifxusb_rreg(&_core_if->core_global_regs->gintsts) & + ifxusb_rreg(&_core_if->core_global_regs->gintmsk)); +} + +static inline uint32_t ifxusb_read_otg_intr (ifxusb_core_if_t *_core_if) +{ + return (ifxusb_rreg (&_core_if->core_global_regs->gotgint)); +} + +static inline uint32_t ifxusb_mode(ifxusb_core_if_t *_core_if) +{ + return (ifxusb_rreg( &_core_if->core_global_regs->gintsts ) & 0x1); +} +static inline uint8_t ifxusb_is_device_mode(ifxusb_core_if_t *_core_if) +{ + return (ifxusb_mode(_core_if) != 1); +} +static inline uint8_t ifxusb_is_host_mode(ifxusb_core_if_t *_core_if) +{ + return (ifxusb_mode(_core_if) == 1); +} + +/////////////////////////////////////////////////////////////////////////////////////////////////////////////////////// + +#ifdef __IS_HOST__ + static inline uint32_t ifxusb_read_hprt0(ifxusb_core_if_t *_core_if) + { + hprt0_data_t hprt0; + hprt0.d32 = ifxusb_rreg(_core_if->hprt0); + hprt0.b.prtena = 0; + hprt0.b.prtconndet = 0; + hprt0.b.prtenchng = 0; + hprt0.b.prtovrcurrchng = 0; + return hprt0.d32; + } + + static inline uint32_t ifxusb_read_host_all_channels_intr (ifxusb_core_if_t *_core_if) + { + return (ifxusb_rreg (&_core_if->host_global_regs->haint)); + } + + static inline uint32_t ifxusb_read_host_channel_intr (ifxusb_core_if_t *_core_if, int hc_num) + { + return (ifxusb_rreg (&_core_if->hc_regs[hc_num]->hcint)); + } +#endif + +#ifdef __IS_DEVICE__ + static inline uint32_t ifxusb_read_dev_all_in_ep_intr(ifxusb_core_if_t *_core_if) + { + uint32_t v; + v = ifxusb_rreg(&_core_if->dev_global_regs->daint) & + ifxusb_rreg(&_core_if->dev_global_regs->daintmsk); + return (v & 0xffff); + } + + static inline uint32_t ifxusb_read_dev_all_out_ep_intr(ifxusb_core_if_t *_core_if) + { + uint32_t v; + v = ifxusb_rreg(&_core_if->dev_global_regs->daint) & + ifxusb_rreg(&_core_if->dev_global_regs->daintmsk); + return ((v & 0xffff0000) >> 16); + } + + static inline uint32_t ifxusb_read_dev_in_ep_intr(ifxusb_core_if_t *_core_if, int _ep_num) + { + uint32_t v; + v = ifxusb_rreg(&_core_if->in_ep_regs[_ep_num]->diepint) & + ifxusb_rreg(&_core_if->dev_global_regs->diepmsk); + return v; + } + + static inline uint32_t ifxusb_read_dev_out_ep_intr(ifxusb_core_if_t *_core_if, int _ep_num) + { + uint32_t v; + v = ifxusb_rreg(&_core_if->out_ep_regs[_ep_num]->doepint) & + ifxusb_rreg(&_core_if->dev_global_regs->doepmsk); + return v; + } + +#endif + +#ifdef __IS_HOST__ +extern void ifxusb_attr_create_h (void *_dev); +extern void ifxusb_attr_remove_h (void *_dev); +#else +extern void ifxusb_attr_create_d (void *_dev); +extern void ifxusb_attr_remove_d (void *_dev); +#endif + +#ifdef __IS_HOST__ +extern void do_suspend_h(ifxusb_core_if_t *core_if); +extern void do_resume_h(ifxusb_core_if_t *_core_if); +#else +extern void do_suspend_d(ifxusb_core_if_t *core_if); +extern void do_resume_d(ifxusb_core_if_t *_core_if); +#endif + +/////////////////////////////////////////////////////////////////////////////////////////////////////////////////////// + +#endif // !defined(__IFXUSB_CIF_H__) + diff --git a/package/kernel/lantiq/ltq-hcd/src/ifxusb_cif_d.c b/package/kernel/lantiq/ltq-hcd/src/ifxusb_cif_d.c new file mode 100644 index 0000000..19f7650 --- /dev/null +++ b/package/kernel/lantiq/ltq-hcd/src/ifxusb_cif_d.c @@ -0,0 +1,535 @@ +/***************************************************************************** + ** FILE NAME : ifxusb_cif_d.c + ** PROJECT : IFX USB sub-system V3 + ** MODULES : IFX USB sub-system Host and Device driver + ** SRC VERSION : 3.2 + ** DATE : 1/Jan/2011 + ** AUTHOR : Chen, Howard + ** DESCRIPTION : The Core Interface provides basic services for accessing and + ** managing the IFX USB hardware. These services are used by the + ** Peripheral Controller Driver only. + ** FUNCTIONS : + ** COMPILER : gcc + ** REFERENCE : Synopsys DWC-OTG Driver 2.7 + ** COPYRIGHT : Copyright (c) 2010 + ** LANTIQ DEUTSCHLAND GMBH, + ** Am Campeon 3, 85579 Neubiberg, Germany + ** + ** This program is free software; you can redistribute it and/or modify + ** it under the terms of the GNU General Public License as published by + ** the Free Software Foundation; either version 2 of the License, or + ** (at your option) any later version. + ** + ** Version Control Section ** + ** $Author$ + ** $Date$ + ** $Revisions$ + ** $Log$ Revision history + *****************************************************************************/ + +/* + * This file contains code fragments from Synopsys HS OTG Linux Software Driver. + * For this code the following notice is applicable: + * + * ========================================================================== + * + * Synopsys HS OTG Linux Software Driver and documentation (hereinafter, + * "Software") is an Unsupported proprietary work of Synopsys, Inc. unless + * otherwise expressly agreed to in writing between Synopsys and you. + * + * The Software IS NOT an item of Licensed Software or Licensed Product under + * any End User Software License Agreement or Agreement for Licensed Product + * with Synopsys or any supplement thereto. You are permitted to use and + * redistribute this Software in source and binary forms, with or without + * modification, provided that redistributions of source code must retain this + * notice. You may not view, use, disclose, copy or distribute this file or + * any information contained herein except pursuant to this license grant from + * Synopsys. If you do not agree with this notice, including the disclaimer + * below, then you are not authorized to use the Software. + * + * THIS SOFTWARE IS BEING DISTRIBUTED BY SYNOPSYS SOLELY ON AN "AS IS" BASIS + * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE + * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE + * ARE HEREBY DISCLAIMED. IN NO EVENT SHALL SYNOPSYS BE LIABLE FOR ANY DIRECT, + * INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES + * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR + * SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER + * CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT + * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY + * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH + * DAMAGE. + * ========================================================================== */ + +/*! + \file ifxusb_cif_d.c + \ingroup IFXUSB_DRIVER_V3 + \brief This file contains the interface to the IFX USB Core. +*/ + +#include <linux/version.h> +#include "ifxusb_version.h" + + +#include <asm/byteorder.h> +#include <asm/unaligned.h> + +#ifdef __DEBUG__ + #include <linux/jiffies.h> +#endif + +#include "ifxusb_plat.h" +#include "ifxusb_regs.h" +#include "ifxusb_cif.h" + +#include "ifxpcd.h" + + + +/*! + \brief Initializes the DevSpd field of the DCFG register depending on the PHY type + and the enumeration speed of the device. + \param _core_if Pointer of core_if structure + */ +void ifxusb_dev_init_spd(ifxusb_core_if_t *_core_if) +{ + uint32_t val; + dcfg_data_t dcfg; + + IFX_DEBUGPL(DBG_ENTRY, "%s() %d\n", __func__, __LINE__ ); + if (_core_if->params.speed == IFXUSB_PARAM_SPEED_FULL) + /* High speed PHY running at full speed */ + val = 0x1; + else + /* High speed PHY running at high speed and full speed*/ + val = 0x0; + + IFX_DEBUGPL(DBG_CIL, "Initializing DCFG.DevSpd to 0x%1x\n", val); + dcfg.d32 = ifxusb_rreg(&_core_if->dev_global_regs->dcfg); + dcfg.b.devspd = val; + ifxusb_wreg(&_core_if->dev_global_regs->dcfg, dcfg.d32); +} + + +/*! + \brief This function enables the Device mode interrupts. + \param _core_if Pointer of core_if structure + */ +void ifxusb_dev_enable_interrupts(ifxusb_core_if_t *_core_if) +{ + gint_data_t intr_mask ={ .d32 = 0}; + ifxusb_core_global_regs_t *global_regs = _core_if->core_global_regs; + + IFX_DEBUGPL(DBG_ENTRY, "%s() %d\n", __func__, __LINE__ ); + IFX_DEBUGPL(DBG_CIL, "%s()\n", __func__); + + /* Clear any pending OTG Interrupts */ + ifxusb_wreg( &global_regs->gotgint, 0xFFFFFFFF); + + /* Clear any pending interrupts */ + ifxusb_wreg( &global_regs->gintsts, 0xFFFFFFFF); + + /* Enable the interrupts in the GINTMSK.*/ + intr_mask.b.modemismatch = 1; + intr_mask.b.conidstschng = 1; + intr_mask.b.wkupintr = 1; + intr_mask.b.disconnect = 1; + intr_mask.b.usbsuspend = 1; + + intr_mask.b.usbreset = 1; + intr_mask.b.enumdone = 1; + intr_mask.b.inepintr = 1; + intr_mask.b.outepintr = 1; + intr_mask.b.erlysuspend = 1; + #ifndef __DED_FIFO__ + #ifndef __DED_INTR__ + intr_mask.b.epmismatch = 1; + #endif + #endif + + ifxusb_mreg( &global_regs->gintmsk, intr_mask.d32, intr_mask.d32); + IFX_DEBUGPL(DBG_CIL, "%s() gintmsk=%0x\n", __func__, ifxusb_rreg( &global_regs->gintmsk)); +} + +/*! + \brief Gets the current USB frame number. This is the frame number from the last SOF packet. + \param _core_if Pointer of core_if structure + */ +uint32_t ifxusb_dev_get_frame_number(ifxusb_core_if_t *_core_if) +{ + dsts_data_t dsts; + IFX_DEBUGPL(DBG_ENTRY, "%s() %d\n", __func__, __LINE__ ); + dsts.d32 = ifxusb_rreg(&_core_if->dev_global_regs->dsts); + /* read current frame/microfreme number from DSTS register */ + return dsts.b.soffn; +} + + +/*! + \brief Set the EP STALL. + */ +void ifxusb_dev_ep_set_stall(ifxusb_core_if_t *_core_if, uint8_t _epno, uint8_t _is_in) +{ + depctl_data_t depctl; + volatile uint32_t *depctl_addr; + + IFX_DEBUGPL(DBG_PCD, "%s ep%d-%s\n", __func__, _epno, (_is_in?"IN":"OUT")); + + depctl_addr = (_is_in)? (&(_core_if->in_ep_regs [_epno]->diepctl)): + (&(_core_if->out_ep_regs[_epno]->doepctl)); + depctl.d32 = ifxusb_rreg(depctl_addr); + depctl.b.stall = 1; + + if (_is_in && depctl.b.epena) + depctl.b.epdis = 1; + + ifxusb_wreg(depctl_addr, depctl.d32); + IFX_DEBUGPL(DBG_PCD,"DEPCTL=%0x\n",ifxusb_rreg(depctl_addr)); + return; +} + +/*! +\brief Clear the EP STALL. + */ +void ifxusb_dev_ep_clear_stall(ifxusb_core_if_t *_core_if, uint8_t _epno, uint8_t _ep_type, uint8_t _is_in) +{ + depctl_data_t depctl; + volatile uint32_t *depctl_addr; + + IFX_DEBUGPL(DBG_PCD, "%s ep%d-%s\n", __func__, _epno, (_is_in?"IN":"OUT")); + + depctl_addr = (_is_in)? (&(_core_if->in_ep_regs [_epno]->diepctl)): + (&(_core_if->out_ep_regs[_epno]->doepctl)); + + depctl.d32 = ifxusb_rreg(depctl_addr); + /* clear the stall bits */ + depctl.b.stall = 0; + + /* + * USB Spec 9.4.5: For endpoints using data toggle, regardless + * of whether an endpoint has the Halt feature set, a + * ClearFeature(ENDPOINT_HALT) request always results in the + * data toggle being reinitialized to DATA0. + */ + if (_ep_type == IFXUSB_EP_TYPE_INTR || _ep_type == IFXUSB_EP_TYPE_BULK) + depctl.b.setd0pid = 1; /* DATA0 */ + + ifxusb_wreg(depctl_addr, depctl.d32); + IFX_DEBUGPL(DBG_PCD,"DEPCTL=%0x\n",ifxusb_rreg(depctl_addr)); + return; +} + +/*! + \brief This function initializes the IFXUSB controller registers for Device mode. + This function flushes the Tx and Rx FIFOs and it flushes any entries in the + request queues. + \param _core_if Pointer of core_if structure + \param _params parameters to be set + */ +void ifxusb_dev_core_init(ifxusb_core_if_t *_core_if, ifxusb_params_t *_params) +{ + ifxusb_core_global_regs_t *global_regs = _core_if->core_global_regs; + + gusbcfg_data_t usbcfg ={.d32 = 0}; + gahbcfg_data_t ahbcfg ={.d32 = 0}; + dcfg_data_t dcfg ={.d32 = 0}; + grstctl_t resetctl ={.d32 = 0}; + gotgctl_data_t gotgctl ={.d32 = 0}; + + uint32_t dir; + int i; + + IFX_DEBUGPL(DBG_ENTRY, "%s() %d\n", __func__, __LINE__ ); + IFX_DEBUGPL(DBG_CILV, "%s(%p)\n",__func__,_core_if); + + /* Copy Params */ + _core_if->params.dma_burst_size = _params->dma_burst_size; + _core_if->params.speed = _params->speed; + if(_params->max_transfer_size < 2048 || _params->max_transfer_size > ((1 << (_core_if->hwcfg3.b.xfer_size_cntr_width + 11)) - 1) ) + _core_if->params.max_transfer_size = ((1 << (_core_if->hwcfg3.b.xfer_size_cntr_width + 11)) - 1); + else + _core_if->params.max_transfer_size = _params->max_transfer_size; + + if(_params->max_packet_count < 16 || _params->max_packet_count > ((1 << (_core_if->hwcfg3.b.packet_size_cntr_width + 4)) - 1) ) + _core_if->params.max_packet_count= ((1 << (_core_if->hwcfg3.b.packet_size_cntr_width + 4)) - 1); + else + _core_if->params.max_packet_count= _params->max_packet_count; + _core_if->params.phy_utmi_width = _params->phy_utmi_width; + _core_if->params.turn_around_time_hs = _params->turn_around_time_hs; + _core_if->params.turn_around_time_fs = _params->turn_around_time_fs; + _core_if->params.timeout_cal_hs = _params->timeout_cal_hs; + _core_if->params.timeout_cal_fs = _params->timeout_cal_fs; + + #ifdef __DED_FIFO__ + _core_if->params.thr_ctl = _params->thr_ctl; + _core_if->params.tx_thr_length = _params->tx_thr_length; + _core_if->params.rx_thr_length = _params->rx_thr_length; + #endif + + /* Reset the Controller */ + do + { + while(ifxusb_core_soft_reset_d( _core_if )) + ifxusb_hard_reset_d(_core_if); + } while (ifxusb_is_host_mode(_core_if)); + + usbcfg.d32 = ifxusb_rreg(&global_regs->gusbcfg); + + usbcfg.b.ForceDevMode = 1; + usbcfg.b.ForceHstMode = 0; + + usbcfg.b.term_sel_dl_pulse = 0; + ifxusb_wreg (&global_regs->gusbcfg, usbcfg.d32); + + /* This programming sequence needs to happen in FS mode before any other + * programming occurs */ + /* High speed PHY. */ + if (!_core_if->phy_init_done) + { + _core_if->phy_init_done = 1; + /* HS PHY parameters. These parameters are preserved + * during soft reset so only program the first time. Do + * a soft reset immediately after setting phyif. */ + usbcfg.b.ulpi_utmi_sel = 0; //UTMI+ + usbcfg.b.phyif = ( _core_if->params.phy_utmi_width == 16)?1:0; + ifxusb_wreg( &global_regs->gusbcfg, usbcfg.d32); + /* Reset after setting the PHY parameters */ + ifxusb_core_soft_reset_d( _core_if ); + } + + /* Program the GAHBCFG Register.*/ + switch (_core_if->params.dma_burst_size) + { + case 0 : + ahbcfg.b.hburstlen = IFXUSB_GAHBCFG_INT_DMA_BURST_SINGLE; + break; + case 1 : + ahbcfg.b.hburstlen = IFXUSB_GAHBCFG_INT_DMA_BURST_INCR; + break; + case 4 : + ahbcfg.b.hburstlen = IFXUSB_GAHBCFG_INT_DMA_BURST_INCR4; + break; + case 8 : + ahbcfg.b.hburstlen = IFXUSB_GAHBCFG_INT_DMA_BURST_INCR8; + break; + case 16: + ahbcfg.b.hburstlen = IFXUSB_GAHBCFG_INT_DMA_BURST_INCR16; + break; + } + #if defined(__UNALIGNED_BUF_ADJ__) || defined(__UNALIGNED_BUF_CHK__) + _core_if->unaligned_mask=3; + #if defined(__UNALIGNED_BUF_BURST__) + switch (_core_if->params.dma_burst_size) + { + case 4 : + _core_if->unaligned_mask=15; + break; + case 8 : + _core_if->unaligned_mask=31; + break; + case 16: + _core_if->unaligned_mask=63; + break; + case 0 : + case 1 : + break; + } + #endif //defined(__UNALIGNED_BUF_BURST__) + #endif //defined(__UNALIGNED_BUF_ADJ__) || defined(__UNALIGNED_BUF_CHK__) + ahbcfg.b.dmaenable = 1; + ifxusb_wreg(&global_regs->gahbcfg, ahbcfg.d32); + + /* Program the GUSBCFG register. */ + usbcfg.d32 = ifxusb_rreg( &global_regs->gusbcfg ); + usbcfg.b.hnpcap = 0; + usbcfg.b.srpcap = 0; + ifxusb_wreg( &global_regs->gusbcfg, usbcfg.d32); + + { + dctl_data_t dctl = {.d32=0}; + dctl.d32=ifxusb_rreg(&_core_if->dev_global_regs->dctl); + dctl.b.sftdiscon=1; + ifxusb_wreg(&_core_if->dev_global_regs->dctl,dctl.d32); + } + + /* Restart the Phy Clock */ + ifxusb_wreg(_core_if->pcgcctl, 0); + + /* Device configuration register */ + ifxusb_dev_init_spd(_core_if); + dcfg.d32 = ifxusb_rreg( &_core_if->dev_global_regs->dcfg); + dcfg.b.perfrint = IFXUSB_DCFG_FRAME_INTERVAL_80; + #if defined(__DED_FIFO__) + #if defined(__DESC_DMA__) + dcfg.b.descdma = 1; + #else + dcfg.b.descdma = 0; + #endif + #endif + + ifxusb_wreg( &_core_if->dev_global_regs->dcfg, dcfg.d32 ); + + /* Configure data FIFO sizes */ + _core_if->params.data_fifo_size = _core_if->hwcfg3.b.dfifo_depth; + _core_if->params.rx_fifo_size = ifxusb_rreg(&global_regs->grxfsiz); + IFX_DEBUGPL(DBG_CIL, "Initial: FIFO Size=0x%06X\n" , _core_if->params.data_fifo_size); + IFX_DEBUGPL(DBG_CIL, " Rx FIFO Size=0x%06X\n", _core_if->params.rx_fifo_size); + + _core_if->params.tx_fifo_size[0]= ifxusb_rreg(&global_regs->gnptxfsiz) >> 16; + + #ifdef __DED_FIFO__ + for (i=1; i <= _core_if->hwcfg4.b.num_in_eps; i++) + _core_if->params.tx_fifo_size[i] = + ifxusb_rreg(&global_regs->dptxfsiz_dieptxf[i-1]) >> 16; + #else + for (i=0; i < _core_if->hwcfg4.b.num_dev_perio_in_ep; i++) + _core_if->params.tx_fifo_size[i+1] = + ifxusb_rreg(&global_regs->dptxfsiz_dieptxf[i]) >> 16; + #endif + + #ifdef __DEBUG__ + #ifdef __DED_FIFO__ + for (i=0; i <= _core_if->hwcfg4.b.num_in_eps; i++) + IFX_DEBUGPL(DBG_CIL, " Tx[%02d] FIFO Size=0x%06X\n",i, _core_if->params.tx_fifo_size[i]); + #else + IFX_DEBUGPL(DBG_CIL, " NPTx FIFO Size=0x%06X\n", _core_if->params.tx_fifo_size[0]); + for (i=0; i < _core_if->hwcfg4.b.num_dev_perio_in_ep; i++) + IFX_DEBUGPL(DBG_CIL, " PTx[%02d] FIFO Size=0x%06X\n",i, _core_if->params.tx_fifo_size[i+1]); + #endif + #endif + + { + fifosize_data_t txfifosize; + if(_params->data_fifo_size >=0 && _params->data_fifo_size < _core_if->params.data_fifo_size) + _core_if->params.data_fifo_size = _params->data_fifo_size; + + + if(_params->rx_fifo_size >=0 && _params->rx_fifo_size < _core_if->params.rx_fifo_size) + _core_if->params.rx_fifo_size = _params->rx_fifo_size; + if(_core_if->params.data_fifo_size < _core_if->params.rx_fifo_size) + _core_if->params.rx_fifo_size = _core_if->params.data_fifo_size; + ifxusb_wreg( &global_regs->grxfsiz, _core_if->params.rx_fifo_size); + + for (i=0; i < MAX_EPS_CHANNELS; i++) + if(_params->tx_fifo_size[i] >=0 && _params->tx_fifo_size[i] < _core_if->params.tx_fifo_size[i]) + _core_if->params.tx_fifo_size[i] = _params->tx_fifo_size[i]; + + txfifosize.b.startaddr = _core_if->params.rx_fifo_size; + #ifdef __DED_FIFO__ + if(txfifosize.b.startaddr + _core_if->params.tx_fifo_size[0] > _core_if->params.data_fifo_size) + _core_if->params.tx_fifo_size[0]= _core_if->params.data_fifo_size - txfifosize.b.startaddr; + txfifosize.b.depth=_core_if->params.tx_fifo_size[0]; + ifxusb_wreg( &global_regs->gnptxfsiz, txfifosize.d32); + txfifosize.b.startaddr += _core_if->params.tx_fifo_size[0]; + for (i=1; i <= _core_if->hwcfg4.b.num_in_eps; i++) + { + if(txfifosize.b.startaddr + _core_if->params.tx_fifo_size[i] > _core_if->params.data_fifo_size) + _core_if->params.tx_fifo_size[i]= _core_if->params.data_fifo_size - txfifosize.b.startaddr; + txfifosize.b.depth=_core_if->params.tx_fifo_size[i]; + ifxusb_wreg( &global_regs->dptxfsiz_dieptxf[i-1], txfifosize.d32); + txfifosize.b.startaddr += _core_if->params.tx_fifo_size[i]; + } + #else + if(txfifosize.b.startaddr + _core_if->params.tx_fifo_size[0] > _core_if->params.data_fifo_size) + _core_if->params.tx_fifo_size[0]= _core_if->params.data_fifo_size - txfifosize.b.startaddr; + txfifosize.b.depth=_core_if->params.tx_fifo_size[0]; + ifxusb_wreg( &global_regs->gnptxfsiz, txfifosize.d32); + txfifosize.b.startaddr += _core_if->params.tx_fifo_size[0]; + for (i=0; i < _core_if->hwcfg4.b.num_dev_perio_in_ep; i++) + { + if(txfifosize.b.startaddr + _core_if->params.tx_fifo_size[i+1] > _core_if->params.data_fifo_size) + _core_if->params.tx_fifo_size[i+1]= _core_if->params.data_fifo_size - txfifosize.b.startaddr; + //txfifosize.b.depth=_core_if->params.tx_fifo_size[i+1]; + ifxusb_wreg( &global_regs->dptxfsiz_dieptxf[i], txfifosize.d32); + txfifosize.b.startaddr += _core_if->params.tx_fifo_size[i+1]; + } + #endif + } + + #ifdef __DEBUG__ + { + fifosize_data_t fifosize; + IFX_DEBUGPL(DBG_CIL, "Result : FIFO Size=0x%06X\n" , _core_if->params.data_fifo_size); + + IFX_DEBUGPL(DBG_CIL, " Rx FIFO =0x%06X Sz=0x%06X\n", 0,ifxusb_rreg(&global_regs->grxfsiz)); + #ifdef __DED_FIFO__ + fifosize.d32=ifxusb_rreg(&global_regs->gnptxfsiz); + IFX_DEBUGPL(DBG_CIL, " Tx[00] FIFO =0x%06X Sz=0x%06X\n", fifosize.b.startaddr,fifosize.b.depth); + for (i=1; i <= _core_if->hwcfg4.b.num_in_eps; i++) + { + fifosize.d32=ifxusb_rreg(&global_regs->dptxfsiz_dieptxf[i-1]); + IFX_DEBUGPL(DBG_CIL, " Tx[%02d] FIFO 0x%06X Sz=0x%06X\n",i, fifosize.b.startaddr,fifosize.b.depth); + } + #else + fifosize.d32=ifxusb_rreg(&global_regs->gnptxfsiz); + IFX_DEBUGPL(DBG_CIL, " NPTx FIFO =0x%06X Sz=0x%06X\n", fifosize.b.startaddr,fifosize.b.depth); + for (i=0; i < _core_if->hwcfg4.b.num_dev_perio_in_ep; i++) + { + fifosize.d32=ifxusb_rreg(&global_regs->dptxfsiz_dieptxf[i]); + IFX_DEBUGPL(DBG_CIL, " PTx[%02d] FIFO 0x%06X Sz=0x%06X\n",i, fifosize.b.startaddr,fifosize.b.depth); + } + #endif + } + #endif + + /* Clear Host Set HNP Enable in the OTG Control Register */ + gotgctl.b.hstsethnpen = 1; + ifxusb_mreg( &global_regs->gotgctl, gotgctl.d32, 0); + + /* Flush the FIFOs */ + ifxusb_flush_tx_fifo_d(_core_if, 0x10); /* all Tx FIFOs */ + ifxusb_flush_rx_fifo_d(_core_if); + + /* Flush the Learning Queue. */ + resetctl.b.intknqflsh = 1; + ifxusb_wreg( &global_regs->grstctl, resetctl.d32); + + /* Clear all pending Device Interrupts */ + ifxusb_wreg( &_core_if->dev_global_regs->diepmsk , 0 ); + ifxusb_wreg( &_core_if->dev_global_regs->doepmsk , 0 ); + ifxusb_wreg( &_core_if->dev_global_regs->daint , 0xFFFFFFFF ); + ifxusb_wreg( &_core_if->dev_global_regs->daintmsk, 0 ); + + dir=_core_if->hwcfg1.d32; + for (i=0; i <= _core_if->hwcfg2.b.num_dev_ep ; i++,dir>>=2) + { + depctl_data_t depctl; + if((dir&0x03)==0 || (dir&0x03) ==1) + { + depctl.d32 = ifxusb_rreg(&_core_if->in_ep_regs[i]->diepctl); + if (depctl.b.epena) + { + depctl.d32 = 0; + depctl.b.epdis = 1; + depctl.b.snak = 1; + } + else + depctl.d32 = 0; + ifxusb_wreg( &_core_if->in_ep_regs[i]->diepctl, depctl.d32); + #ifndef __DESC_DMA__ + ifxusb_wreg( &_core_if->in_ep_regs[i]->dieptsiz, 0); + #endif + ifxusb_wreg( &_core_if->in_ep_regs[i]->diepdma, 0); + ifxusb_wreg( &_core_if->in_ep_regs[i]->diepint, 0xFF); + } + + if((dir&0x03)==0 || (dir&0x03) ==2) + { + depctl.d32 = ifxusb_rreg(&_core_if->out_ep_regs[i]->doepctl); + if (depctl.b.epena) + { + depctl.d32 = 0; + depctl.b.epdis = 1; + depctl.b.snak = 1; + } + else + depctl.d32 = 0; + ifxusb_wreg( &_core_if->out_ep_regs[i]->doepctl, depctl.d32); + #ifndef __DESC_DMA__ + ifxusb_wreg( &_core_if->out_ep_regs[i]->doeptsiz, 0); + #endif + ifxusb_wreg( &_core_if->out_ep_regs[i]->doepdma, 0); + ifxusb_wreg( &_core_if->out_ep_regs[i]->doepint, 0xFF); + } + } +} + diff --git a/package/kernel/lantiq/ltq-hcd/src/ifxusb_cif_h.c b/package/kernel/lantiq/ltq-hcd/src/ifxusb_cif_h.c new file mode 100644 index 0000000..e9e67bf --- /dev/null +++ b/package/kernel/lantiq/ltq-hcd/src/ifxusb_cif_h.c @@ -0,0 +1,1599 @@ +/***************************************************************************** + ** FILE NAME : ifxusb_cif_h.c + ** PROJECT : IFX USB sub-system V3 + ** MODULES : IFX USB sub-system Host and Device driver + ** SRC VERSION : 3.2 + ** DATE : 1/Jan/2011 + ** AUTHOR : Chen, Howard + ** DESCRIPTION : The Core Interface provides basic services for accessing and + ** managing the IFX USB hardware. These services are used by the + ** Host Controller Driver only. + ** FUNCTIONS : + ** COMPILER : gcc + ** REFERENCE : Synopsys DWC-OTG Driver 2.7 + ** COPYRIGHT : Copyright (c) 2010 + ** LANTIQ DEUTSCHLAND GMBH, + ** Am Campeon 3, 85579 Neubiberg, Germany + ** + ** This program is free software; you can redistribute it and/or modify + ** it under the terms of the GNU General Public License as published by + ** the Free Software Foundation; either version 2 of the License, or + ** (at your option) any later version. + ** + ** Version Control Section ** + ** $Author$ + ** $Date$ + ** $Revisions$ + ** $Log$ Revision history + *****************************************************************************/ + +/* + * This file contains code fragments from Synopsys HS OTG Linux Software Driver. + * For this code the following notice is applicable: + * + * ========================================================================== + * + * Synopsys HS OTG Linux Software Driver and documentation (hereinafter, + * "Software") is an Unsupported proprietary work of Synopsys, Inc. unless + * otherwise expressly agreed to in writing between Synopsys and you. + * + * The Software IS NOT an item of Licensed Software or Licensed Product under + * any End User Software License Agreement or Agreement for Licensed Product + * with Synopsys or any supplement thereto. You are permitted to use and + * redistribute this Software in source and binary forms, with or without + * modification, provided that redistributions of source code must retain this + * notice. You may not view, use, disclose, copy or distribute this file or + * any information contained herein except pursuant to this license grant from + * Synopsys. If you do not agree with this notice, including the disclaimer + * below, then you are not authorized to use the Software. + * + * THIS SOFTWARE IS BEING DISTRIBUTED BY SYNOPSYS SOLELY ON AN "AS IS" BASIS + * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE + * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE + * ARE HEREBY DISCLAIMED. IN NO EVENT SHALL SYNOPSYS BE LIABLE FOR ANY DIRECT, + * INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES + * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR + * SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER + * CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT + * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY + * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH + * DAMAGE. + * ========================================================================== */ + +/*! + \file ifxusb_cif_h.c + \ingroup IFXUSB_DRIVER_V3 + \brief This file contains the interface to the IFX USB Core. +*/ +#include <linux/version.h> +#include "ifxusb_version.h" + +#include <asm/byteorder.h> +#include <asm/unaligned.h> + +#ifdef __DEBUG__ + #include <linux/jiffies.h> +#endif +#include <linux/platform_device.h> +#include <linux/kernel.h> +#include <linux/ioport.h> + +#include "ifxusb_plat.h" +#include "ifxusb_regs.h" +#include "ifxusb_cif.h" + +#include "ifxhcd.h" + +#if !defined(__UEIP__) + #undef __USING_LED_AS_GPIO__ +#endif + + +/*! + \brief This function enables the Host mode interrupts. + \param _core_if Pointer of core_if structure + */ +void ifxusb_host_enable_interrupts(ifxusb_core_if_t *_core_if) +{ + gint_data_t intr_mask ={ .d32 = 0}; + ifxusb_core_global_regs_t *global_regs = _core_if->core_global_regs; + + IFX_DEBUGPL(DBG_CIL, "%s()\n", __func__); + + /* Clear any pending OTG Interrupts */ + ifxusb_wreg( &global_regs->gotgint, 0xFFFFFFFF); + + /* Clear any pending interrupts */ + ifxusb_wreg( &global_regs->gintsts, 0xFFFFFFFF); + + /* Enable the interrupts in the GINTMSK.*/ + + /* Common interrupts */ + intr_mask.b.modemismatch = 1; + intr_mask.b.conidstschng = 1; + intr_mask.b.wkupintr = 1; + intr_mask.b.disconnect = 1; + intr_mask.b.usbsuspend = 1; + + /* Host interrupts */ + intr_mask.b.sofintr = 1; + intr_mask.b.portintr = 1; + intr_mask.b.hcintr = 1; + + ifxusb_mreg( &global_regs->gintmsk, intr_mask.d32, intr_mask.d32); + IFX_DEBUGPL(DBG_CIL, "%s() gintmsk=%0x\n", __func__, ifxusb_rreg( &global_regs->gintmsk)); +} + +/*! + \brief This function disables the Host mode interrupts. + \param _core_if Pointer of core_if structure + */ +void ifxusb_host_disable_interrupts(ifxusb_core_if_t *_core_if) +{ + ifxusb_core_global_regs_t *global_regs = _core_if->core_global_regs; + + IFX_DEBUGPL(DBG_CILV, "%s()\n", __func__); + + #if 1 + ifxusb_wreg( &global_regs->gintmsk, 0); + #else + /* Common interrupts */ + { + gint_data_t intr_mask ={.d32 = 0}; + intr_mask.b.modemismatch = 1; + intr_mask.b.rxstsqlvl = 1; + intr_mask.b.conidstschng = 1; + intr_mask.b.wkupintr = 1; + intr_mask.b.disconnect = 1; + intr_mask.b.usbsuspend = 1; + + /* Host interrupts */ + intr_mask.b.sofintr = 1; + intr_mask.b.portintr = 1; + intr_mask.b.hcintr = 1; + intr_mask.b.ptxfempty = 1; + intr_mask.b.nptxfempty = 1; + ifxusb_mreg(&global_regs->gintmsk, intr_mask.d32, 0); + } + #endif +} + +/*! + \brief This function initializes the IFXUSB controller registers for Host mode. + This function flushes the Tx and Rx FIFOs and it flushes any entries in the + request queues. + \param _core_if Pointer of core_if structure + \param _params parameters to be set + */ +void ifxusb_host_core_init(ifxusb_core_if_t *_core_if, ifxusb_params_t *_params) +{ + ifxusb_core_global_regs_t *global_regs = _core_if->core_global_regs; + + gusbcfg_data_t usbcfg ={.d32 = 0}; + gahbcfg_data_t ahbcfg ={.d32 = 0}; + gotgctl_data_t gotgctl ={.d32 = 0}; + + int i; + + IFX_DEBUGPL(DBG_CILV, "%s(%p)\n",__func__,_core_if); + + /* Copy Params */ + + _core_if->params.dma_burst_size = _params->dma_burst_size; + _core_if->params.speed = _params->speed; + if(_params->max_transfer_size < 2048 || _params->max_transfer_size > ((1 << (_core_if->hwcfg3.b.xfer_size_cntr_width + 11)) - 1) ) + _core_if->params.max_transfer_size = ((1 << (_core_if->hwcfg3.b.xfer_size_cntr_width + 11)) - 1); + else + _core_if->params.max_transfer_size = _params->max_transfer_size; + + if(_params->max_packet_count < 16 || _params->max_packet_count > ((1 << (_core_if->hwcfg3.b.packet_size_cntr_width + 4)) - 1) ) + _core_if->params.max_packet_count= ((1 << (_core_if->hwcfg3.b.packet_size_cntr_width + 4)) - 1); + else + _core_if->params.max_packet_count= _params->max_packet_count; + _core_if->params.phy_utmi_width = _params->phy_utmi_width; + _core_if->params.turn_around_time_hs = _params->turn_around_time_hs; + _core_if->params.turn_around_time_fs = _params->turn_around_time_fs; + _core_if->params.timeout_cal_hs = _params->timeout_cal_hs; + _core_if->params.timeout_cal_fs = _params->timeout_cal_fs; + usbcfg.d32 = ifxusb_rreg(&global_regs->gusbcfg); +// usbcfg.b.ulpi_ext_vbus_drv = 1; + usbcfg.b.term_sel_dl_pulse = 0; + usbcfg.b.ForceDevMode = 0; + usbcfg.b.ForceHstMode = 1; + ifxusb_wreg (&global_regs->gusbcfg, usbcfg.d32); + /* Reset the Controller */ + do + { + while(ifxusb_core_soft_reset_h( _core_if )) + ifxusb_hard_reset_h(_core_if); + } while (ifxusb_is_device_mode(_core_if)); + + usbcfg.d32 = ifxusb_rreg(&global_regs->gusbcfg); +// usbcfg.b.ulpi_ext_vbus_drv = 1; + usbcfg.b.term_sel_dl_pulse = 0; + ifxusb_wreg (&global_regs->gusbcfg, usbcfg.d32); + + /* This programming sequence needs to happen in FS mode before any other + * programming occurs */ + /* High speed PHY. */ + if (!_core_if->phy_init_done) + { + _core_if->phy_init_done = 1; + /* HS PHY parameters. These parameters are preserved + * during soft reset so only program the first time. Do + * a soft reset immediately after setting phyif. */ + usbcfg.b.ulpi_utmi_sel = 0; //UTMI+ + usbcfg.b.phyif = ( _core_if->params.phy_utmi_width == 16)?1:0; + ifxusb_wreg( &global_regs->gusbcfg, usbcfg.d32); + /* Reset after setting the PHY parameters */ + ifxusb_core_soft_reset_h( _core_if ); + } + + usbcfg.d32 = ifxusb_rreg(&global_regs->gusbcfg); +// usbcfg.b.ulpi_fsls = 0; +// usbcfg.b.ulpi_clk_sus_m = 0; + usbcfg.b.term_sel_dl_pulse = 0; + usbcfg.b.ForceDevMode = 0; + usbcfg.b.ForceHstMode = 1; + ifxusb_wreg(&global_regs->gusbcfg, usbcfg.d32); + + /* Program the GAHBCFG Register.*/ + switch (_core_if->params.dma_burst_size) + { + case 0 : + ahbcfg.b.hburstlen = IFXUSB_GAHBCFG_INT_DMA_BURST_SINGLE; + break; + case 1 : + ahbcfg.b.hburstlen = IFXUSB_GAHBCFG_INT_DMA_BURST_INCR; + break; + case 4 : + ahbcfg.b.hburstlen = IFXUSB_GAHBCFG_INT_DMA_BURST_INCR4; + break; + case 8 : + ahbcfg.b.hburstlen = IFXUSB_GAHBCFG_INT_DMA_BURST_INCR8; + break; + case 16: + ahbcfg.b.hburstlen = IFXUSB_GAHBCFG_INT_DMA_BURST_INCR16; + break; + } + #if defined(__UNALIGNED_BUF_ADJ__) || defined(__UNALIGNED_BUF_CHK__) + _core_if->unaligned_mask=3; + #if defined(__UNALIGNED_BUF_BURST__) + switch(_core_if->params.dma_burst_size) + { + case 4 : + _core_if->unaligned_mask=15; + break; + case 8 : + _core_if->unaligned_mask=31; + break; + case 16: + _core_if->unaligned_mask=63; + break; + case 0 : + case 1 : + break; + default: + break; + } + #endif //defined(__UNALIGNED_BUF_BURST__) + #endif //defined(__UNALIGNED_BUF_ADJ__) || defined(__UNALIGNED_BUF_CHK__) + ahbcfg.b.dmaenable = 1; + ifxusb_wreg(&global_regs->gahbcfg, ahbcfg.d32); + + /* Program the GUSBCFG register. */ + usbcfg.d32 = ifxusb_rreg( &global_regs->gusbcfg ); + usbcfg.b.hnpcap = 0; + usbcfg.b.srpcap = 0; + ifxusb_wreg( &global_regs->gusbcfg, usbcfg.d32); + + /* Restart the Phy Clock */ + ifxusb_wreg(_core_if->pcgcctl, 0); + + /* Initialize Host Configuration Register */ + { + hcfg_data_t hcfg; + hcfg.d32 = ifxusb_rreg(&_core_if->host_global_regs->hcfg); + hcfg.b.fslspclksel = IFXUSB_HCFG_30_60_MHZ; + if (_params->speed == IFXUSB_PARAM_SPEED_FULL) + hcfg.b.fslssupp = 1; + ifxusb_wreg(&_core_if->host_global_regs->hcfg, hcfg.d32); + } + + _core_if->params.host_channels=(_core_if->hwcfg2.b.num_host_chan + 1); + + if(_params->host_channels>0 && _params->host_channels < _core_if->params.host_channels) + _core_if->params.host_channels = _params->host_channels; + + /* Configure data FIFO sizes */ + _core_if->params.data_fifo_size = _core_if->hwcfg3.b.dfifo_depth; + _core_if->params.rx_fifo_size = ifxusb_rreg(&global_regs->grxfsiz); + _core_if->params.nperio_tx_fifo_size= ifxusb_rreg(&global_regs->gnptxfsiz) >> 16; + _core_if->params.perio_tx_fifo_size = ifxusb_rreg(&global_regs->hptxfsiz) >> 16; + IFX_DEBUGPL(DBG_CIL, "Initial: FIFO Size=0x%06X\n" , _core_if->params.data_fifo_size); + IFX_DEBUGPL(DBG_CIL, " Rx FIFO Size=0x%06X\n", _core_if->params.rx_fifo_size); + IFX_DEBUGPL(DBG_CIL, " NPTx FIFO Size=0x%06X\n", _core_if->params.nperio_tx_fifo_size); + IFX_DEBUGPL(DBG_CIL, " PTx FIFO Size=0x%06X\n", _core_if->params.perio_tx_fifo_size); + + { + fifosize_data_t txfifosize; + if(_params->data_fifo_size >=0 && _params->data_fifo_size < _core_if->params.data_fifo_size) + _core_if->params.data_fifo_size = _params->data_fifo_size; + + if( _params->rx_fifo_size >= 0 && _params->rx_fifo_size < _core_if->params.rx_fifo_size) + _core_if->params.rx_fifo_size = _params->rx_fifo_size; + if( _params->nperio_tx_fifo_size >=0 && _params->nperio_tx_fifo_size < _core_if->params.nperio_tx_fifo_size) + _core_if->params.nperio_tx_fifo_size = _params->nperio_tx_fifo_size; + if( _params->perio_tx_fifo_size >=0 && _params->perio_tx_fifo_size < _core_if->params.perio_tx_fifo_size) + _core_if->params.perio_tx_fifo_size = _params->perio_tx_fifo_size; + + if(_core_if->params.data_fifo_size < _core_if->params.rx_fifo_size) + _core_if->params.rx_fifo_size = _core_if->params.data_fifo_size; + ifxusb_wreg( &global_regs->grxfsiz, _core_if->params.rx_fifo_size); + txfifosize.b.startaddr = _core_if->params.rx_fifo_size; + + if(txfifosize.b.startaddr + _core_if->params.nperio_tx_fifo_size > _core_if->params.data_fifo_size) + _core_if->params.nperio_tx_fifo_size = _core_if->params.data_fifo_size - txfifosize.b.startaddr; + txfifosize.b.depth=_core_if->params.nperio_tx_fifo_size; + ifxusb_wreg( &global_regs->gnptxfsiz, txfifosize.d32); + txfifosize.b.startaddr += _core_if->params.nperio_tx_fifo_size; + + if(txfifosize.b.startaddr + _core_if->params.perio_tx_fifo_size > _core_if->params.data_fifo_size) + _core_if->params.perio_tx_fifo_size = _core_if->params.data_fifo_size - txfifosize.b.startaddr; + txfifosize.b.depth=_core_if->params.perio_tx_fifo_size; + ifxusb_wreg( &global_regs->hptxfsiz, txfifosize.d32); + txfifosize.b.startaddr += _core_if->params.perio_tx_fifo_size; + } + + #ifdef __DEBUG__ + { + fifosize_data_t fifosize; + IFX_DEBUGPL(DBG_CIL, "Result : FIFO Size=0x%06X\n" , _core_if->params.data_fifo_size); + + fifosize.d32=ifxusb_rreg(&global_regs->grxfsiz); + IFX_DEBUGPL(DBG_CIL, " Rx FIFO =0x%06X 0x%06X\n", fifosize.b.startaddr,fifosize.b.depth); + fifosize.d32=ifxusb_rreg(&global_regs->gnptxfsiz); + IFX_DEBUGPL(DBG_CIL, " NPTx FIFO =0x%06X 0x%06X\n", fifosize.b.startaddr,fifosize.b.depth); + fifosize.d32=ifxusb_rreg(&global_regs->hptxfsiz); + IFX_DEBUGPL(DBG_CIL, " PTx FIFO =0x%06X 0x%06X\n", fifosize.b.startaddr,fifosize.b.depth); + } + #endif + + /* Clear Host Set HNP Enable in the OTG Control Register */ + gotgctl.b.hstsethnpen = 1; + ifxusb_mreg( &global_regs->gotgctl, gotgctl.d32, 0); + + /* Flush the FIFOs */ + ifxusb_flush_tx_fifo_h(_core_if, 0x10); /* all Tx FIFOs */ + ifxusb_flush_rx_fifo_h(_core_if); + + for (i = 0; i < _core_if->hwcfg2.b.num_host_chan + 1; i++) + { + hcchar_data_t hcchar; + hcchar.d32 = ifxusb_rreg(&_core_if->hc_regs[i]->hcchar); + hcchar.b.chen = 0; + hcchar.b.chdis = 1; + hcchar.b.epdir = 0; + ifxusb_wreg(&_core_if->hc_regs[i]->hcchar, hcchar.d32); + } + /* Halt all channels to put them into a known state. */ + for (i = 0; i < _core_if->hwcfg2.b.num_host_chan + 1; i++) + { + hcchar_data_t hcchar; + int count = 0; + + hcchar.d32 = ifxusb_rreg(&_core_if->hc_regs[i]->hcchar); + hcchar.b.chen = 1; + hcchar.b.chdis = 1; + hcchar.b.epdir = 0; + ifxusb_wreg(&_core_if->hc_regs[i]->hcchar, hcchar.d32); + + IFX_DEBUGPL(DBG_HCDV, "%s: Halt channel %d\n", __func__, i); + do{ + hcchar.d32 = ifxusb_rreg(&_core_if->hc_regs[i]->hcchar); + if (++count > 1000) + { + IFX_ERROR("%s: Unable to clear halt on channel %d\n", __func__, i); + break; + } + } while (hcchar.b.chen); + } +} + +////////////////////////////////////////////////////////////////////////////////////////////////////////////////// + +#if defined(__UEIP__) + #if defined(IFX_GPIO_USB_VBUS) || defined(IFX_LEDGPIO_USB_VBUS) || defined(IFX_LEDLED_USB_VBUS) + int ifxusb_vbus_status =-1; + #endif + + #if defined(IFX_GPIO_USB_VBUS1) || defined(IFX_LEDGPIO_USB_VBUS1) || defined(IFX_LEDLED_USB_VBUS1) + int ifxusb_vbus1_status =-1; + #endif + + #if defined(IFX_GPIO_USB_VBUS2) || defined(IFX_LEDGPIO_USB_VBUS2) || defined(IFX_LEDLED_USB_VBUS2) + int ifxusb_vbus2_status =-1; + #endif + + #if defined(IFX_LEDGPIO_USB_VBUS) || defined(IFX_LEDLED_USB_VBUS) + static void *g_usb_vbus_trigger = NULL; + #endif + #if defined(IFX_LEDGPIO_USB_VBUS1) || defined(IFX_LEDLED_USB_VBUS1) + static void *g_usb_vbus1_trigger = NULL; + #endif + #if defined(IFX_LEDGPIO_USB_VBUS2) || defined(IFX_LEDLED_USB_VBUS2) + static void *g_usb_vbus2_trigger = NULL; + #endif + + #if defined(IFX_GPIO_USB_VBUS) || defined(IFX_GPIO_USB_VBUS1) || defined(IFX_GPIO_USB_VBUS2) + int ifxusb_vbus_gpio_inited=0; + #endif + +#else //defined(__UEIP__) + int ifxusb_vbus_status =-1; + int ifxusb_vbus1_status =-1; + int ifxusb_vbus2_status =-1; + int ifxusb_vbus_gpio_inited=0; +#endif + +////////////////////////////////////////////////////////////////////////////////////////////////////////////////// + +/*! + \fn void ifxusb_vbus_init(ifxusb_core_if_t *_core_if) + \brief This function init the VBUS control. + \param _core_if Pointer of core_if structure + \ingroup IFXUSB_CIF + */ +void ifxusb_vbus_init(ifxusb_core_if_t *_core_if) +{ + #if defined(__UEIP__) + #if defined(IFX_LEDGPIO_USB_VBUS) || defined(IFX_LEDLED_USB_VBUS) + if ( !g_usb_vbus_trigger ) + { + ifx_led_trigger_register("USB_VBUS", &g_usb_vbus_trigger); + if ( g_usb_vbus_trigger != NULL ) + { + struct ifx_led_trigger_attrib attrib = {0}; + attrib.delay_on = 0; + attrib.delay_off = 0; + attrib.timeout = 0; + attrib.def_value = 0; + attrib.flags = IFX_LED_TRIGGER_ATTRIB_DELAY_ON | IFX_LED_TRIGGER_ATTRIB_DELAY_OFF | IFX_LED_TRIGGER_ATTRIB_TIMEOUT | IFX_LED_TRIGGER_ATTRIB_DEF_VALUE; + IFX_DEBUGP("Reg USB power!!\n"); + ifx_led_trigger_set_attrib(g_usb_vbus_trigger, &attrib); + ifxusb_vbus_status =0; + } + } + #endif + #if defined(IFX_LEDGPIO_USB_VBUS1) || defined(IFX_LEDLED_USB_VBUS1) + if(_core_if->core_no==0 && !g_usb_vbus1_trigger ) + { + ifx_led_trigger_register("USB_VBUS1", &g_usb_vbus1_trigger); + if ( g_usb_vbus1_trigger != NULL ) + { + struct ifx_led_trigger_attrib attrib = {0}; + attrib.delay_on = 0; + attrib.delay_off = 0; + attrib.timeout = 0; + attrib.def_value = 0; + attrib.flags = IFX_LED_TRIGGER_ATTRIB_DELAY_ON | IFX_LED_TRIGGER_ATTRIB_DELAY_OFF | IFX_LED_TRIGGER_ATTRIB_TIMEOUT | IFX_LED_TRIGGER_ATTRIB_DEF_VALUE; + IFX_DEBUGP("Reg USB1 power!!\n"); + ifx_led_trigger_set_attrib(g_usb_vbus1_trigger, &attrib); + ifxusb_vbus1_status =0; + } + } + #endif + #if defined(IFX_LEDGPIO_USB_VBUS2) || defined(IFX_LEDLED_USB_VBUS2) + if(_core_if->core_no==1 && !g_usb_vbus2_trigger ) + { + ifx_led_trigger_register("USB_VBUS2", &g_usb_vbus2_trigger); + if ( g_usb_vbus2_trigger != NULL ) + { + struct ifx_led_trigger_attrib attrib = {0}; + attrib.delay_on = 0; + attrib.delay_off = 0; + attrib.timeout = 0; + attrib.def_value = 0; + attrib.flags = IFX_LED_TRIGGER_ATTRIB_DELAY_ON | IFX_LED_TRIGGER_ATTRIB_DELAY_OFF | IFX_LED_TRIGGER_ATTRIB_TIMEOUT | IFX_LED_TRIGGER_ATTRIB_DEF_VALUE; + IFX_DEBUGP("Reg USB2 power!!\n"); + ifx_led_trigger_set_attrib(g_usb_vbus2_trigger, &attrib); + ifxusb_vbus2_status =0; + } + } + #endif + + #if defined(IFX_GPIO_USB_VBUS) || defined(IFX_GPIO_USB_VBUS1) || defined(IFX_GPIO_USB_VBUS2) + if(!ifxusb_vbus_gpio_inited) + { + if(!ifx_gpio_register(IFX_GPIO_MODULE_USB)) + { + IFX_DEBUGP("Register USB VBus through GPIO OK!!\n"); + #ifdef IFX_GPIO_USB_VBUS + ifxusb_vbus_status =0; + #endif //IFX_GPIO_USB_VBUS + #ifdef IFX_GPIO_USB_VBUS1 + ifxusb_vbus1_status=0; + #endif //IFX_GPIO_USB_VBUS1 + #ifdef IFX_GPIO_USB_VBUS2 + ifxusb_vbus2_status=0; + #endif //IFX_GPIO_USB_VBUS2 + } + else + IFX_PRINT("Register USB VBus Failed!!\n"); + ifxusb_vbus_gpio_inited=1; + } + #endif //defined(IFX_GPIO_USB_VBUS) || defined(IFX_GPIO_USB_VBUS1) || defined(IFX_GPIO_USB_VBUS2) + #endif //defined(__UEIP__) +} + +/*! + \fn void ifxusb_vbus_free(ifxusb_core_if_t *_core_if) + \brief This function free the VBUS control. + \param _core_if Pointer of core_if structure + \ingroup IFXUSB_CIF + */ +void ifxusb_vbus_free(ifxusb_core_if_t *_core_if) +{ + #if defined(__UEIP__) + #if defined(IFX_LEDGPIO_USB_VBUS) || defined(IFX_LEDLED_USB_VBUS) + if ( g_usb_vbus_trigger ) + { + ifx_led_trigger_deregister(g_usb_vbus_trigger); + g_usb_vbus_trigger = NULL; + ifxusb_vbus_status =-1; + } + #endif + #if defined(IFX_LEDGPIO_USB_VBUS1) || defined(IFX_LEDLED_USB_VBUS1) + if(_core_if->core_no==0 && g_usb_vbus1_trigger ) + { + ifx_led_trigger_deregister(g_usb_vbus1_trigger); + g_usb_vbus1_trigger = NULL; + ifxusb_vbus1_status =-1; + } + #endif + #if defined(IFX_LEDGPIO_USB_VBUS2) || defined(IFX_LEDLED_USB_VBUS2) + if(_core_if->core_no==1 && g_usb_vbus2_trigger ) + { + ifx_led_trigger_deregister(g_usb_vbus2_trigger); + g_usb_vbus2_trigger = NULL; + ifxusb_vbus2_status =-1; + } + #endif + + #if defined(IFX_GPIO_USB_VBUS) || defined(IFX_GPIO_USB_VBUS1) || defined(IFX_GPIO_USB_VBUS2) + if(ifxusb_vbus_gpio_inited) + { + ifx_gpio_deregister(IFX_GPIO_MODULE_USB); + #ifdef IFX_GPIO_USB_VBUS + ifxusb_vbus_status =-1; + #endif //IFX_GPIO_USB_VBUS + #ifdef IFX_GPIO_USB_VBUS1 + ifxusb_vbus1_status=-1; + #endif //IFX_GPIO_USB_VBUS1 + #ifdef IFX_GPIO_USB_VBUS2 + ifxusb_vbus2_status=-1; + #endif //IFX_GPIO_USB_VBUS2 + ifxusb_vbus_gpio_inited=0; + } + #endif //defined(IFX_GPIO_USB_VBUS) || defined(IFX_GPIO_USB_VBUS1) || defined(IFX_GPIO_USB_VBUS2) + #endif //defined(__UEIP__) +} + + +#if defined(__DO_OC_INT__) + +#define OC_Timer_Stable 3 +#define OC_Timer_Sleep 200 +#define OC_Timer_Max 3 + + + #if defined(__IS_AR10__) + #if defined(__IS_DUAL__) + unsigned int oc1_int_installed=0; + unsigned int oc2_int_installed=0; + unsigned int oc1_int_count=0; + unsigned int oc2_int_count=0; + extern ifxhcd_hcd_t *oc1_int_id; + extern ifxhcd_hcd_t *oc2_int_id; + + /*! + \brief Handles host mode Over Current Interrupt + */ + struct timer_list oc1_retry_timer; + struct timer_list oc2_retry_timer; + + void oc_retry_timer_func(unsigned long arg) + { + if(arg==1) + { + if(oc1_int_installed==0) //not installed + { + } + else if(oc1_int_installed==1) //disabled + { + } + else if(oc1_int_installed==2) //stablizing + { + oc1_int_installed=4; + oc1_int_count=0; + } + else if(oc1_int_installed==3) // sleeping + { + mod_timer(&oc1_retry_timer,jiffies + HZ*OC_Timer_Stable); + oc1_int_installed=2; + enable_irq(IFXUSB1_OC_IRQ); + } + else if(oc1_int_installed==4) // + { + oc1_int_count=0; + } + else if(oc1_int_installed==5) // Stable sleeping + { + mod_timer(&oc1_retry_timer,jiffies + HZ*OC_Timer_Stable); + oc1_int_installed=4; + enable_irq(IFXUSB1_OC_IRQ); + } + else + { + } + } + else + { + if(oc2_int_installed==0) //not installed + { + } + else if(oc2_int_installed==1) //disabled + { + } + else if(oc2_int_installed==2) //stablizing + { + oc2_int_installed=4; + oc2_int_count=0; + } + else if(oc2_int_installed==3) // sleeping + { + mod_timer(&oc2_retry_timer,jiffies + HZ*OC_Timer_Stable); + oc2_int_installed=2; + enable_irq(IFXUSB2_OC_IRQ); + } + else if(oc2_int_installed==4) // + { + oc2_int_count=0; + } + else if(oc2_int_installed==5) // Stable sleeping + { + mod_timer(&oc2_retry_timer,jiffies + HZ*OC_Timer_Stable); + oc2_int_installed=4; + enable_irq(IFXUSB2_OC_IRQ); + } + else + { + } + } + } + + irqreturn_t ifxhcd_oc_irq(int _irq , void *_dev) + { + //ifxhcd_hcd_t *ifxhcd= _dev; + int32_t retval=1; + if(_irq==IFXUSB1_OC_IRQ) + { + if(oc1_int_installed==0) //not installed + { + } + else if(oc1_int_installed==1) //disabled + { + } + else if(oc1_int_installed==2) //stablizing + { + disable_irq_nosync(IFXUSB1_OC_IRQ); + mod_timer(&oc1_retry_timer,jiffies + HZ/OC_Timer_Sleep); + oc1_int_installed=3; + } + else if(oc1_int_installed==3) // sleeping + { + } + else if(oc1_int_installed==4) // + { + oc1_int_count++; + if(oc1_int_count>=OC_Timer_Max) + { + IFX_DEBUGP("OC INTERRUPT port #1\n"); + oc1_int_id->flags.b.port_over_current_change = 1; + ifxusb_vbus_off(&oc1_int_id->core_if); + IFX_DEBUGP("Turning off port #1\n"); + } + else + { + disable_irq_nosync(IFXUSB1_OC_IRQ); + mod_timer(&oc1_retry_timer,jiffies + HZ/OC_Timer_Sleep); + oc1_int_installed=5; + } + } + else if(oc1_int_installed==5) // Stable sleeping + { + } + } + else + { + if(oc2_int_installed==0) //not installed + { + } + else if(oc2_int_installed==1) //disabled + { + } + else if(oc2_int_installed==2) //stablizing + { + disable_irq_nosync(IFXUSB2_OC_IRQ); + mod_timer(&oc2_retry_timer,jiffies + HZ/OC_Timer_Sleep); + oc2_int_installed=3; + } + else if(oc2_int_installed==3) // sleeping + { + } + else if(oc2_int_installed==4) // + { + oc2_int_count++; + if(oc2_int_count>=OC_Timer_Max) + { + IFX_DEBUGP("OC INTERRUPT port #2\n"); + oc2_int_id->flags.b.port_over_current_change = 1; + ifxusb_vbus_off(&oc2_int_id->core_if); + IFX_DEBUGP("Turning off port #2\n"); + } + else + { + disable_irq_nosync(IFXUSB2_OC_IRQ); + mod_timer(&oc2_retry_timer,jiffies + HZ/OC_Timer_Sleep); + oc2_int_installed=5; + } + } + else if(oc2_int_installed==5) // Stable sleeping + { + } + } + return IRQ_RETVAL(retval); + } + + void ifxusb_oc_int_on(int port) + { + if(port==1) + IFX_DEBUGPL( DBG_CIL, "registering (overcurrent) handler for port #1 irq%d\n", IFXUSB1_OC_IRQ); + else + IFX_DEBUGPL( DBG_CIL, "registering (overcurrent) handler for port #2 irq%d\n", IFXUSB2_OC_IRQ); + if((port==1&&oc1_int_id) || (port==2&&oc2_int_id) + { + if((port==1&&oc1_int_installed==0)||(port==2&&oc2_int_installed==0)) + { + if(port==1) + { + oc1_int_installed=2; + init_timer(&oc1_retry_timer); + oc1_retry_timer.function = oc_retry_timer_func; + oc1_retry_timer.data=1; + if(request_irq((unsigned int)IFXUSB1_OC_IRQ, &ifxhcd_oc_irq, + IRQF_TRIGGER_NONE + // | IRQF_TRIGGER_RISING + // | IRQF_TRIGGER_FALLING + // | IRQF_TRIGGER_HIGH + // | IRQF_TRIGGER_LOW + // | IRQF_TRIGGER_PROBE + | IRQF_DISABLED + // | IRQF_SAMPLE_RANDOM + // | IRQF_SHARED + | IRQF_PROBE_SHARED + // | IRQF_TIMER + // | IRQF_PERCPU + // | IRQF_NOBALANCING + // | IRQF_IRQPOLL + // | IRQF_ONESHOT + , + "ifxusb1_oc", (void *)oc1_int_id)) + oc1_int_installed=0; + else + mod_timer(&oc1_retry_timer,jiffies + HZ*OC_Timer_Stable); + } + else + { + oc2_int_installed=2; + init_timer(&oc2_retry_timer); + oc2_retry_timer.function = oc_retry_timer_func; + oc2_retry_timer.data=2; + if(request_irq((unsigned int)IFXUSB2_OC_IRQ, &ifxhcd_oc_irq, + IRQF_TRIGGER_NONE + // | IRQF_TRIGGER_RISING + // | IRQF_TRIGGER_FALLING + // | IRQF_TRIGGER_HIGH + // | IRQF_TRIGGER_LOW + // | IRQF_TRIGGER_PROBE + | IRQF_DISABLED + // | IRQF_SAMPLE_RANDOM + // | IRQF_SHARED + | IRQF_PROBE_SHARED + // | IRQF_TIMER + // | IRQF_PERCPU + // | IRQF_NOBALANCING + // | IRQF_IRQPOLL + // | IRQF_ONESHOT + , + "ifxusb2_oc", (void *)oc2_int_id)) + oc2_int_installed=0; + else + mod_timer(&oc2_retry_timer,jiffies + HZ*OC_Timer_Stable); + } + /* Poll the event ring */ + } + else if(port==1 && oc1_int_installed!=2 && oc1_int_installed!=4 ) + { + oc1_int_installed=2; + enable_irq(IFXUSB1_OC_IRQ); + mod_timer(&oc1_retry_timer,jiffies + HZ*OC_Timer_Stable); + } + else if(port==2 && oc2_int_installed!=2 && oc2_int_installed!=4 ) + { + oc2_int_installed=2; + enable_irq(IFXUSB2_OC_IRQ); + mod_timer(&oc2_retry_timer,jiffies + HZ*OC_Timer_Stable); + } + } + } + + void ifxusb_oc_int_off(int port) + { + if(port==1) + { + disable_irq_nosync(IFXUSB1_OC_IRQ); + if(oc1_int_installed) + oc1_int_installed=1; + } + else + { + disable_irq_nosync(IFXUSB2_OC_IRQ); + if(oc2_int_installed) + oc2_int_installed=1; + } + } + + + void ifxusb_oc_int_free(int port) + { + if(port==1) + { + del_timer(&oc1_retry_timer); + disable_irq_nosync(IFXUSB1_OC_IRQ); + free_irq(IFXUSB1_OC_IRQ, (void *)oc1_int_id); + oc1_int_installed=0; + } + else + { + del_timer(&oc1_retry_timer); + disable_irq_nosync(IFXUSB1_OC_IRQ); + free_irq(IFXUSB2_OC_IRQ, (void *)oc2_int_id); + oc2_int_installed=0; + } + } + + #elif defined(__IS_FIRST__) || defined(__IS_SECOND__) + unsigned int oc_int_installed=0; + unsigned int oc_int_count=0; + extern ifxhcd_hcd_t *oc_int_id; + + /*! + \brief Handles host mode Over Current Interrupt + */ + struct timer_list oc_retry_timer; + + void oc_retry_timer_func(void) + { + if(oc_int_installed==0) //not installed + { + } + else if(oc_int_installed==1) //disabled + { + } + else if(oc_int_installed==2) //stablizing + { + oc_int_installed=4; + oc_int_count=0; + } + else if(oc_int_installed==3) // sleeping + { + mod_timer(&oc_retry_timer,jiffies + HZ*OC_Timer_Stable); + oc_int_installed=2; + #if defined(__IS_FIRST__) + enable_irq(IFXUSB1_OC_IRQ); + #else + enable_irq(IFXUSB2_OC_IRQ); + #endif + } + else if(oc_int_installed==4) // + { + oc_int_count=0; + } + else if(oc_int_installed==5) // Stable sleeping + { + mod_timer(&oc_retry_timer,jiffies + HZ*OC_Timer_Stable); + oc_int_installed=4; + #if defined(__IS_FIRST__) + enable_irq(IFXUSB1_OC_IRQ); + #else + enable_irq(IFXUSB2_OC_IRQ); + #endif + } + else + { + } + } + + irqreturn_t ifxhcd_oc_irq(int _irq , void *_dev) + { + //ifxhcd_hcd_t *ifxhcd= _dev; + int32_t retval=1; + if(oc_int_installed==0) //not installed + { + } + else if(oc_int_installed==1) //disabled + { + } + else if(oc_int_installed==2) //stablizing + { + #if defined(__IS_FIRST__) + disable_irq_nosync(IFXUSB1_OC_IRQ); + #else + disable_irq_nosync(IFXUSB2_OC_IRQ); + #endif + mod_timer(&oc_retry_timer,jiffies + HZ/OC_Timer_Sleep); + oc_int_installed=3; + } + else if(oc_int_installed==3) // sleeping + { + } + else if(oc_int_installed==4) // + { + oc_int_count++; + if(oc_int_count>=OC_Timer_Max) + { + #if defined(__IS_FIRST__) + IFX_DEBUGP("OC INTERRUPT port #1\n"); + #else + IFX_DEBUGP("OC INTERRUPT port #2\n"); + #endif + oc_int_id->flags.b.port_over_current_change = 1; + ifxusb_vbus_off(&oc_int_id->core_if); + #if defined(__IS_FIRST__) + IFX_DEBUGP("Turning off port #1\n"); + #else + IFX_DEBUGP("Turning off port #2\n"); + #endif + } + else + { + #if defined(__IS_FIRST__) + disable_irq_nosync(IFXUSB1_OC_IRQ); + #else + disable_irq_nosync(IFXUSB2_OC_IRQ); + #endif + mod_timer(&oc_retry_timer,jiffies + HZ/OC_Timer_Sleep); + oc_int_installed=5; + } + } + else if(oc_int_installed==5) // Stable sleeping + { + } + return IRQ_RETVAL(retval); + } + + void ifxusb_oc_int_on(void) + { + #if defined(__IS_FIRST__) + IFX_DEBUGPL( DBG_CIL, "registering (overcurrent) handler for port #1 irq%d\n", IFXUSB1_OC_IRQ); + #else + IFX_DEBUGPL( DBG_CIL, "registering (overcurrent) handler for port #2 irq%d\n", IFXUSB2_OC_IRQ); + #endif + if(oc_int_id) + { + if(oc_int_installed==0) + { + oc_int_installed=2; + init_timer(&oc_retry_timer); + oc_retry_timer.function = oc_retry_timer_func; + oc_retry_timer.data=1; + #if defined(__IS_FIRST__) + if(request_irq((unsigned int)IFXUSB1_OC_IRQ, &ifxhcd_oc_irq, + #else + if(request_irq((unsigned int)IFXUSB2_OC_IRQ, &ifxhcd_oc_irq, + #endif + IRQF_TRIGGER_NONE + // | IRQF_TRIGGER_RISING + // | IRQF_TRIGGER_FALLING + // | IRQF_TRIGGER_HIGH + // | IRQF_TRIGGER_LOW + // | IRQF_TRIGGER_PROBE + | IRQF_DISABLED + // | IRQF_SAMPLE_RANDOM + // | IRQF_SHARED + | IRQF_PROBE_SHARED + // | IRQF_TIMER + // | IRQF_PERCPU + // | IRQF_NOBALANCING + // | IRQF_IRQPOLL + // | IRQF_ONESHOT + , + "ifxusb_oc", (void *)oc_int_id)) + oc_int_installed=0; + else + mod_timer(&oc1_retry_timer,jiffies + HZ*OC_Timer_Stable); + } + else if(oc_int_installed!=2 && oc_int_installed!=4 ) + { + oc_int_installed=2; + #if defined(__IS_FIRST__) + enable_irq(IFXUSB1_OC_IRQ); + #else + enable_irq(IFXUSB2_OC_IRQ); + #endif + mod_timer(&oc_retry_timer,jiffies + HZ*OC_Timer_Stable); + } + } + } + + void ifxusb_oc_int_off(int port) + { + #if defined(__IS_FIRST__) + disable_irq_nosync(IFXUSB1_OC_IRQ); + #else + disable_irq_nosync(IFXUSB2_OC_IRQ); + #endif + } + void ifxusb_oc_int_free(int port) + { + #if defined(__IS_FIRST__) + free_irq(IFXUSB1_OC_IRQ, (void *)oc_int_id); + #else + free_irq(IFXUSB2_OC_IRQ, (void *)oc_int_id); + #endif + } + #endif + #else //!defined(__IS_AR10__) + unsigned int oc_int_installed=0; + unsigned int oc_int_count=0; + extern ifxhcd_hcd_t *oc_int_id; + #ifdef __IS_DUAL__ + extern ifxhcd_hcd_t *oc_int_id_1; + extern ifxhcd_hcd_t *oc_int_id_2; + #endif + + /*! + \brief Handles host mode Over Current Interrupt + */ + struct timer_list oc_retry_timer; + + void oc_retry_timer_func(unsigned long arg) + { + if(oc_int_installed==0) //not installed + { + } + else if(oc_int_installed==1) //disabled + { + } + else if(oc_int_installed==2) //stablizing + { + oc_int_installed=4; + oc_int_count=0; + } + else if(oc_int_installed==3) // sleeping + { + mod_timer(&oc_retry_timer,jiffies + HZ*OC_Timer_Stable); + oc_int_installed=2; + enable_irq(IFXUSB_OC_IRQ); + } + else if(oc_int_installed==4) // + { + oc_int_count=0; + } + else if(oc_int_installed==5) // Stable sleeping + { + mod_timer(&oc_retry_timer,jiffies + HZ*OC_Timer_Stable); + oc_int_installed=4; + enable_irq(IFXUSB_OC_IRQ); + } + else + { + } + } + + irqreturn_t ifxhcd_oc_irq(int _irq , void *_dev) + { + //ifxhcd_hcd_t *ifxhcd= _dev; + int32_t retval=1; + + if(oc_int_installed==0) //not installed + { + } + else if(oc_int_installed==1) //disabled + { + } + else if(oc_int_installed==2) //stablizing + { + disable_irq_nosync(IFXUSB_OC_IRQ); + mod_timer(&oc_retry_timer,jiffies + HZ/OC_Timer_Sleep); + oc_int_installed=3; + } + else if(oc_int_installed==3) // sleeping + { + } + else if(oc_int_installed==4) // + { + oc_int_count++; + if(oc_int_count>=OC_Timer_Max) + { + IFX_DEBUGP("OC INTERRUPT port #%d\n",oc_int_id->core_if.core_no); + #ifdef __IS_DUAL__ + oc_int_id_1->flags.b.port_over_current_change = 1; + oc_int_id_2->flags.b.port_over_current_change = 1; + ifxusb_vbus_off(&oc_int_id_1->core_if); + IFX_DEBUGP("Turning off port #%d\n",oc_int_id_1->core_if.core_no); + ifxusb_vbus_off(&oc_int_id_2->core_if); + IFX_DEBUGP("Turning off port #%d\n",oc_int_id_2->core_if.core_no); + #else + oc_int_id->flags.b.port_over_current_change = 1; + ifxusb_vbus_off(&oc_int_id->core_if); + IFX_DEBUGP("Turning off port #%d\n",oc_int_id->core_if.core_no); + #endif + } + else + { + disable_irq_nosync(IFXUSB_OC_IRQ); + mod_timer(&oc_retry_timer,jiffies + HZ/OC_Timer_Sleep); + oc_int_installed=5; + } + } + else if(oc_int_installed==5) // Stable sleeping + { + } + + return IRQ_RETVAL(retval); + } + + void ifxusb_oc_int_on(void) + { + IFX_DEBUGPL( DBG_CIL, "registering (overcurrent) handler for irq%d\n", IFXUSB_OC_IRQ); + if(oc_int_id) + { + if(oc_int_installed==0) + { + oc_int_installed=2; + init_timer(&oc_retry_timer); + oc_retry_timer.function = oc_retry_timer_func; + /* Poll the event ring */ + + if(request_irq((unsigned int)IFXUSB_OC_IRQ, &ifxhcd_oc_irq, + IRQF_TRIGGER_NONE + // | IRQF_TRIGGER_RISING + // | IRQF_TRIGGER_FALLING + // | IRQF_TRIGGER_HIGH + // | IRQF_TRIGGER_LOW + // | IRQF_TRIGGER_PROBE + | IRQF_DISABLED + // | IRQF_SAMPLE_RANDOM + // | IRQF_SHARED + // | IRQF_PROBE_SHARED + // | IRQF_TIMER + // | IRQF_PERCPU + // | IRQF_NOBALANCING + // | IRQF_IRQPOLL + // | IRQF_ONESHOT + , + "ifxusb_oc", (void *)oc_int_id)) + oc_int_installed=0; + else + mod_timer(&oc_retry_timer,jiffies + HZ*OC_Timer_Stable); + } + else if(oc_int_installed!=2 && oc_int_installed!=4 ) + { + oc_int_installed=2; + enable_irq(IFXUSB_OC_IRQ); + mod_timer(&oc_retry_timer,jiffies + HZ*OC_Timer_Stable); + } + } + } + + void ifxusb_oc_int_off(void) + { + disable_irq_nosync(IFXUSB_OC_IRQ); + if(oc_int_installed) + oc_int_installed=1; + } + + void ifxusb_oc_int_free(void) + { + del_timer(&oc_retry_timer); + disable_irq_nosync(IFXUSB_OC_IRQ); + if(oc_int_installed) + free_irq(IFXUSB_OC_IRQ, (void *)oc_int_id); + oc_int_installed=0; + } + #endif +#endif + + +/*! + \fn void ifxusb_vbus_on(ifxusb_core_if_t *_core_if) + \brief Turn on the USB 5V VBus Power + \param _core_if Pointer of core_if structure + \ingroup IFXUSB_CIF + */ +void ifxusb_vbus_on(ifxusb_core_if_t *_core_if) +{ + IFX_DEBUGP("SENDING VBus POWER UP\n"); + #if defined(__UEIP__) + #if defined(IFX_LEDGPIO_USB_VBUS) || defined(IFX_LEDLED_USB_VBUS) + if ( g_usb_vbus_trigger && ifxusb_vbus_status==0) + { + ifx_led_trigger_activate(g_usb_vbus_trigger); + IFX_DEBUGP("Enable USB power!!\n"); + ifxusb_vbus_status=1; + } + #endif + #if defined(IFX_LEDGPIO_USB_VBUS1) || defined(IFX_LEDLED_USB_VBUS1) + if(_core_if->core_no==0 && g_usb_vbus1_trigger && ifxusb_vbus1_status==0) + { + ifx_led_trigger_activate(g_usb_vbus1_trigger); + IFX_DEBUGP("Enable USB1 power!!\n"); + ifxusb_vbus1_status=1; + } + #endif + #if defined(IFX_LEDGPIO_USB_VBUS2) || defined(IFX_LEDLED_USB_VBUS2) + if(_core_if->core_no==1 && g_usb_vbus2_trigger && ifxusb_vbus2_status==0) + { + ifx_led_trigger_activate(g_usb_vbus2_trigger); + IFX_DEBUGP("Enable USB2 power!!\n"); + ifxusb_vbus2_status=1; + } + #endif + + #if defined(IFX_GPIO_USB_VBUS) || defined(IFX_GPIO_USB_VBUS1) || defined(IFX_GPIO_USB_VBUS2) + if(ifxusb_vbus_gpio_inited) + { + #if defined(IFX_GPIO_USB_VBUS) + if(ifxusb_vbus_status==0) + { + ifx_gpio_output_set(IFX_GPIO_USB_VBUS,IFX_GPIO_MODULE_USB); + ifxusb_vbus_status=1; + } + #endif + #if defined(IFX_GPIO_USB_VBUS1) + if(_core_if->core_no==0 && ifxusb_vbus1_status==0) + { + ifx_gpio_output_set(IFX_GPIO_USB_VBUS1,IFX_GPIO_MODULE_USB); + ifxusb_vbus1_status=1; + } + #endif + #if defined(IFX_GPIO_USB_VBUS2) + if(_core_if->core_no==1 && ifxusb_vbus2_status==0) + { + ifx_gpio_output_set(IFX_GPIO_USB_VBUS2,IFX_GPIO_MODULE_USB); + ifxusb_vbus2_status=1; + } + #endif + } + #endif //defined(IFX_GPIO_USB_VBUS) || defined(IFX_GPIO_USB_VBUS1) || defined(IFX_GPIO_USB_VBUS2) + #else + #if defined(__IS_TWINPASS__) || defined(__IS_DANUBE__) + ifxusb_vbus_status=1; + //usb_set_vbus_on(); + #endif //defined(__IS_TWINPASS__) || defined(__IS_DANUBE__) + #if defined(__IS_AMAZON_SE__) + set_bit (4, (volatile unsigned long *)AMAZON_SE_GPIO_P0_OUT); + ifxusb_vbus_status=1; + #endif //defined(__IS_AMAZON_SE__) + #if defined(__IS_AR9__) + if(_core_if->core_no==0) + { + if (bsp_port_reserve_pin(1, 13, PORT_MODULE_USB) != 0) + { + IFX_PRINT("Can't enable USB1 5.5V power!!\n"); + return; + } + bsp_port_clear_altsel0(1, 13, PORT_MODULE_USB); + bsp_port_clear_altsel1(1, 13, PORT_MODULE_USB); + bsp_port_set_dir_out(1, 13, PORT_MODULE_USB); + bsp_port_set_pudsel(1, 13, PORT_MODULE_USB); + bsp_port_set_puden(1, 13, PORT_MODULE_USB); + bsp_port_set_output(1, 13, PORT_MODULE_USB); + IFX_DEBUGP("Enable USB1 power!!\n"); + ifxusb_vbus1_status=1; + } + else + { + if (bsp_port_reserve_pin(3, 4, PORT_MODULE_USB) != 0) + { + IFX_PRINT("Can't enable USB2 5.5V power!!\n"); + return; + } + bsp_port_clear_altsel0(3, 4, PORT_MODULE_USB); + bsp_port_clear_altsel1(3, 4, PORT_MODULE_USB); + bsp_port_set_dir_out(3, 4, PORT_MODULE_USB); + bsp_port_set_pudsel(3, 4, PORT_MODULE_USB); + bsp_port_set_puden(3, 4, PORT_MODULE_USB); + bsp_port_set_output(3, 4, PORT_MODULE_USB); + IFX_DEBUGP("Enable USB2 power!!\n"); + ifxusb_vbus2_status=1; + } + #endif //defined(__IS_AR9__) + #if defined(__IS_VR9__) + if(_core_if->core_no==0) + { + ifxusb_vbus1_status=1; + } + else + { + ifxusb_vbus2_status=1; + } + #endif //defined(__IS_VR9__) + #endif //defined(__UEIP__) + + #if defined(__DO_OC_INT__) + #if defined(__IS_AR10__) && defined(__IS_DUAL__) + if(_core_if->core_no==0) + ifxusb_oc_int_on(1); + else + ifxusb_oc_int_on(2); + #else + ifxusb_oc_int_on(); + #endif + #endif + +} + + +/*! + \fn void ifxusb_vbus_off(ifxusb_core_if_t *_core_if) + \brief Turn off the USB 5V VBus Power + \param _core_if Pointer of core_if structure + \ingroup IFXUSB_CIF + */ +void ifxusb_vbus_off(ifxusb_core_if_t *_core_if) +{ + IFX_DEBUGP("SENDING VBus POWER OFF\n"); + + #if defined(__UEIP__) + #if defined(IFX_LEDGPIO_USB_VBUS) || defined(IFX_LEDLED_USB_VBUS) + if ( g_usb_vbus_trigger && ifxusb_vbus_status==1) + { + ifx_led_trigger_deactivate(g_usb_vbus_trigger); + IFX_DEBUGP("Disable USB power!!\n"); + ifxusb_vbus_status=0; + } + #endif + #if defined(IFX_LEDGPIO_USB_VBUS1) || defined(IFX_LEDLED_USB_VBUS1) + if(_core_if->core_no==0 && g_usb_vbus1_trigger && ifxusb_vbus1_status==1) + { + ifx_led_trigger_deactivate(g_usb_vbus1_trigger); + IFX_DEBUGP("Disable USB1 power!!\n"); + ifxusb_vbus1_status=0; + } + #endif + #if defined(IFX_LEDGPIO_USB_VBUS2) || defined(IFX_LEDLED_USB_VBUS2) + if(_core_if->core_no==1 && g_usb_vbus2_trigger && ifxusb_vbus2_status==1) + { + ifx_led_trigger_deactivate(g_usb_vbus2_trigger); + IFX_DEBUGP("Disable USB2 power!!\n"); + ifxusb_vbus2_status=0; + } + #endif + + #if defined(IFX_GPIO_USB_VBUS) || defined(IFX_GPIO_USB_VBUS1) || defined(IFX_GPIO_USB_VBUS2) + if(ifxusb_vbus_gpio_inited) + { + #if defined(IFX_GPIO_USB_VBUS) + if(ifxusb_vbus_status==1) + { + ifx_gpio_output_clear(IFX_GPIO_USB_VBUS,IFX_GPIO_MODULE_USB); + ifxusb_vbus_status=0; + } + #endif + #if defined(IFX_GPIO_USB_VBUS1) + if(_core_if->core_no==0 && ifxusb_vbus1_status==1) + { + ifx_gpio_output_clear(IFX_GPIO_USB_VBUS1,IFX_GPIO_MODULE_USB); + ifxusb_vbus1_status=0; + } + #endif + #if defined(IFX_GPIO_USB_VBUS2) + if(_core_if->core_no==1 && ifxusb_vbus2_status==1) + { + ifx_gpio_output_clear(IFX_GPIO_USB_VBUS2,IFX_GPIO_MODULE_USB); + ifxusb_vbus2_status=0; + } + #endif + } + #endif //defined(IFX_GPIO_USB_VBUS) || defined(IFX_GPIO_USB_VBUS1) || defined(IFX_GPIO_USB_VBUS2) + #else + #if defined(__IS_TWINPASS__) || defined(__IS_DANUBE__) + ifxusb_vbus_status=0; + //usb_set_vbus_on(); + #endif //defined(__IS_TWINPASS__) || defined(__IS_DANUBE__) + #if defined(__IS_AMAZON_SE__) + clear_bit (4, (volatile unsigned long *)AMAZON_SE_GPIO_P0_OUT); + ifxusb_vbus_status=0; + #endif //defined(__IS_AMAZON_SE__) + #if defined(__IS_AR9__) + if(_core_if->core_no==0) + { + if (bsp_port_reserve_pin(1, 13, PORT_MODULE_USB) != 0) { + IFX_PRINT("Can't Disable USB1 5.5V power!!\n"); + return; + } + bsp_port_clear_altsel0(1, 13, PORT_MODULE_USB); + bsp_port_clear_altsel1(1, 13, PORT_MODULE_USB); + bsp_port_set_dir_out(1, 13, PORT_MODULE_USB); + bsp_port_set_pudsel(1, 13, PORT_MODULE_USB); + bsp_port_set_puden(1, 13, PORT_MODULE_USB); + bsp_port_clear_output(1, 13, PORT_MODULE_USB); + IFX_DEBUGP("Disable USB1 power!!\n"); + ifxusb_vbus1_status=0; + } + else + { + if (bsp_port_reserve_pin(3, 4, PORT_MODULE_USB) != 0) { + IFX_PRINT("Can't Disable USB2 5.5V power!!\n"); + return; + } + bsp_port_clear_altsel0(3, 4, PORT_MODULE_USB); + bsp_port_clear_altsel1(3, 4, PORT_MODULE_USB); + bsp_port_set_dir_out(3, 4, PORT_MODULE_USB); + bsp_port_set_pudsel(3, 4, PORT_MODULE_USB); + bsp_port_set_puden(3, 4, PORT_MODULE_USB); + bsp_port_clear_output(3, 4, PORT_MODULE_USB); + IFX_DEBUGP("Disable USB2 power!!\n"); + + ifxusb_vbus2_status=0; + } + #endif //defined(__IS_AR9__) + #if defined(__IS_VR9__) + if(_core_if->core_no==0) + { + ifxusb_vbus1_status=0; + } + else + { + ifxusb_vbus2_status=0; + } + #endif //defined(__IS_VR9__) + #endif //defined(__UEIP__) + #if defined(__DO_OC_INT__) + #if defined(__IS_AR10__) && defined(__IS_DUAL__) + if(_core_if->core_no==0) + ifxusb_oc_int_off(1); + else + ifxusb_oc_int_off(2); + #else + ifxusb_oc_int_off(); + #endif + #endif +} + + +/*! + \fn int ifxusb_vbus(ifxusb_core_if_t *_core_if) + \brief Read Current VBus status + \param _core_if Pointer of core_if structure + \ingroup IFXUSB_CIF + */ +int ifxusb_vbus(ifxusb_core_if_t *_core_if) +{ +#if defined(__UEIP__) + #if defined(IFX_GPIO_USB_VBUS) || defined(IFX_LEDGPIO_USB_VBUS) || defined(IFX_LEDLED_USB_VBUS) + return (ifxusb_vbus_status); + #endif + + #if defined(IFX_GPIO_USB_VBUS1) || defined(IFX_LEDGPIO_USB_VBUS1) || defined(IFX_LEDLED_USB_VBUS1) + if(_core_if->core_no==0) + return (ifxusb_vbus1_status); + #endif + + #if defined(IFX_GPIO_USB_VBUS2) || defined(IFX_LEDGPIO_USB_VBUS2) || defined(IFX_LEDLED_USB_VBUS2) + if(_core_if->core_no==1) + return (ifxusb_vbus2_status); + #endif +#else //defined(__UEIP__) +#endif + return -1; +} + +#if defined(__UEIP__) +#else + #if defined(__IS_TWINPASS__) + #define ADSL_BASE 0x20000 + #define CRI_BASE 0x31F00 + #define CRI_CCR0 CRI_BASE + 0x00 + #define CRI_CCR1 CRI_BASE + 0x01*4 + #define CRI_CDC0 CRI_BASE + 0x02*4 + #define CRI_CDC1 CRI_BASE + 0x03*4 + #define CRI_RST CRI_BASE + 0x04*4 + #define CRI_MASK0 CRI_BASE + 0x05*4 + #define CRI_MASK1 CRI_BASE + 0x06*4 + #define CRI_MASK2 CRI_BASE + 0x07*4 + #define CRI_STATUS0 CRI_BASE + 0x08*4 + #define CRI_STATUS1 CRI_BASE + 0x09*4 + #define CRI_STATUS2 CRI_BASE + 0x0A*4 + #define CRI_AMASK0 CRI_BASE + 0x0B*4 + #define CRI_AMASK1 CRI_BASE + 0x0C*4 + #define CRI_UPDCTL CRI_BASE + 0x0D*4 + #define CRI_MADST CRI_BASE + 0x0E*4 + // 0x0f is missing + #define CRI_EVENT0 CRI_BASE + 0x10*4 + #define CRI_EVENT1 CRI_BASE + 0x11*4 + #define CRI_EVENT2 CRI_BASE + 0x12*4 + + #define IRI_I_ENABLE 0x32000 + #define STY_SMODE 0x3c004 + #define AFE_TCR_0 0x3c0dc + #define AFE_ADDR_ADDR 0x3c0e8 + #define AFE_RDATA_ADDR 0x3c0ec + #define AFE_WDATA_ADDR 0x3c0f0 + #define AFE_CONFIG 0x3c0f4 + #define AFE_SERIAL_CFG 0x3c0fc + + #define DFE_BASE_ADDR 0xBE116000 + //#define DFE_BASE_ADDR 0x9E116000 + + #define MEI_FR_ARCINT_C (DFE_BASE_ADDR + 0x0000001C) + #define MEI_DBG_WADDR_C (DFE_BASE_ADDR + 0x00000024) + #define MEI_DBG_RADDR_C (DFE_BASE_ADDR + 0x00000028) + #define MEI_DBG_DATA_C (DFE_BASE_ADDR + 0x0000002C) + #define MEI_DBG_DECO_C (DFE_BASE_ADDR + 0x00000030) + #define MEI_DBG_MASTER_C (DFE_BASE_ADDR + 0x0000003C) + + static void WriteARCmem(uint32_t addr, uint32_t data) + { + writel(1 ,(volatile uint32_t *)MEI_DBG_MASTER_C); + writel(1 ,(volatile uint32_t *)MEI_DBG_DECO_C ); + writel(addr ,(volatile uint32_t *)MEI_DBG_WADDR_C ); + writel(data ,(volatile uint32_t *)MEI_DBG_DATA_C ); + while( (ifxusb_rreg((volatile uint32_t *)MEI_FR_ARCINT_C) & 0x20) != 0x20 ){}; + writel(0 ,(volatile uint32_t *)MEI_DBG_MASTER_C); + IFX_DEBUGP("WriteARCmem %08x %08x\n",addr,data); + }; + + static uint32_t ReadARCmem(uint32_t addr) + { + u32 data; + writel(1 ,(volatile uint32_t *)MEI_DBG_MASTER_C); + writel(1 ,(volatile uint32_t *)MEI_DBG_DECO_C ); + writel(addr ,(volatile uint32_t *)MEI_DBG_RADDR_C ); + while( (ifxusb_rreg((volatile uint32_t *)MEI_FR_ARCINT_C) & 0x20) != 0x20 ){}; + data = ifxusb_rreg((volatile uint32_t *)MEI_DBG_DATA_C ); + writel(0 ,(volatile uint32_t *)MEI_DBG_MASTER_C); + IFX_DEBUGP("ReadARCmem %08x %08x\n",addr,data); + return data; + }; + + void ifxusb_enable_afe_oc(void) + { + /* Start the clock */ + WriteARCmem(CRI_UPDCTL ,0x00000008); + WriteARCmem(CRI_CCR0 ,0x00000014); + WriteARCmem(CRI_CCR1 ,0x00000500); + WriteARCmem(AFE_CONFIG ,0x000001c8); + WriteARCmem(AFE_SERIAL_CFG,0x00000016); // (DANUBE_PCI_CFG_BASE+(1<<addrline))AFE serial interface clock & data latch edge + WriteARCmem(AFE_TCR_0 ,0x00000002); + //Take afe out of reset + WriteARCmem(AFE_CONFIG ,0x000000c0); + WriteARCmem(IRI_I_ENABLE ,0x00000101); + WriteARCmem(STY_SMODE ,0x00001980); + + ReadARCmem(CRI_UPDCTL ); + ReadARCmem(CRI_CCR0 ); + ReadARCmem(CRI_CCR1 ); + ReadARCmem(AFE_CONFIG ); + ReadARCmem(AFE_SERIAL_CFG); // (DANUBE_PCI_CFG_BASE+(1<<addrline))AFE serial interface clock & data latch edge + ReadARCmem(AFE_TCR_0 ); + ReadARCmem(AFE_CONFIG ); + ReadARCmem(IRI_I_ENABLE ); + ReadARCmem(STY_SMODE ); + } + #endif //defined(__IS_TWINPASS__) +#endif //defined(__UEIP__) + diff --git a/package/kernel/lantiq/ltq-hcd/src/ifxusb_ctl.c b/package/kernel/lantiq/ltq-hcd/src/ifxusb_ctl.c new file mode 100644 index 0000000..32878e3 --- /dev/null +++ b/package/kernel/lantiq/ltq-hcd/src/ifxusb_ctl.c @@ -0,0 +1,3825 @@ +/***************************************************************************** + ** FILE NAME : ifxusb_ctl.c + ** PROJECT : IFX USB sub-system V3 + ** MODULES : IFX USB sub-system Host and Device driver + ** SRC VERSION : 1.0 + ** SRC VERSION : 3.2 + ** DATE : 1/Jan/2011 + ** DESCRIPTION : Implementing the procfs and sysfs for IFX USB driver + ** FUNCTIONS : + ** COMPILER : gcc + ** REFERENCE : Synopsys DWC-OTG Driver 2.7 + ** COPYRIGHT : Copyright (c) 2010 + ** LANTIQ DEUTSCHLAND GMBH, + ** Am Campeon 3, 85579 Neubiberg, Germany + ** + ** This program is free software; you can redistribute it and/or modify + ** it under the terms of the GNU General Public License as published by + ** the Free Software Foundation; either version 2 of the License, or + ** (at your option) any later version. + ** + ** Version Control Section ** + ** $Author$ + ** $Date$ + ** $Revisions$ + ** $Log$ Revision history + *****************************************************************************/ + +/* + * This file contains code fragments from Synopsys HS OTG Linux Software Driver. + * For this code the following notice is applicable: + * + * ========================================================================== + * + * Synopsys HS OTG Linux Software Driver and documentation (hereinafter, + * "Software") is an Unsupported proprietary work of Synopsys, Inc. unless + * otherwise expressly agreed to in writing between Synopsys and you. + * + * The Software IS NOT an item of Licensed Software or Licensed Product under + * any End User Software License Agreement or Agreement for Licensed Product + * with Synopsys or any supplement thereto. You are permitted to use and + * redistribute this Software in source and binary forms, with or without + * modification, provided that redistributions of source code must retain this + * notice. You may not view, use, disclose, copy or distribute this file or + * any information contained herein except pursuant to this license grant from + * Synopsys. If you do not agree with this notice, including the disclaimer + * below, then you are not authorized to use the Software. + * + * THIS SOFTWARE IS BEING DISTRIBUTED BY SYNOPSYS SOLELY ON AN "AS IS" BASIS + * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE + * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE + * ARE HEREBY DISCLAIMED. IN NO EVENT SHALL SYNOPSYS BE LIABLE FOR ANY DIRECT, + * INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES + * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR + * SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER + * CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT + * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY + * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH + * DAMAGE. + * ========================================================================== */ + +/*! \file ifxusb_ctl.c + \ingroup IFXUSB_DRIVER_V3 + \brief Implementing the procfs and sysfs for IFX USB driver +*/ + +#include <linux/version.h> +#include "ifxusb_version.h" + + +#include <linux/proc_fs.h> +#include <asm/byteorder.h> +#include <asm/unaligned.h> +#include <asm/uaccess.h> + +#include "ifxusb_plat.h" +#include "ifxusb_regs.h" +#include "ifxusb_cif.h" + +#ifdef __IS_DEVICE__ + #include "ifxpcd.h" + #ifdef __GADGET_COC__ + #include <asm/ifx/ifx_types.h> + #include <asm/ifx/ifx_pmcu.h> + IFX_PMCU_REGISTER_t pmcuRegisterUSBGadget; + #endif +#endif + +#ifdef __IS_HOST__ + #include "ifxhcd.h" + #ifdef __HOST_COC__ + #include <asm/ifx/ifx_types.h> + #include <asm/ifx/ifx_pmcu.h> + #ifdef __IS_DUAL__ + IFX_PMCU_REGISTER_t pmcuRegisterUSBHost_1; + IFX_PMCU_REGISTER_t pmcuRegisterUSBHost_2; + #else + IFX_PMCU_REGISTER_t pmcuRegisterUSBHost; + #endif + #endif +#endif + +#include <linux/device.h> +#include <linux/platform_device.h> +#include <linux/gfp.h> + +#ifdef __IS_HOST__ + extern char ifxusb_hcd_driver_name[]; + + #ifdef __IS_DUAL__ + extern ifxhcd_hcd_t ifxusb_hcd_1; + extern ifxhcd_hcd_t ifxusb_hcd_2; + extern char ifxusb_hcd_name_1[]; + extern char ifxusb_hcd_name_2[]; + #else + extern ifxhcd_hcd_t ifxusb_hcd; + extern char ifxusb_hcd_name[]; + #endif + +#endif + +#ifdef __IS_DEVICE__ + extern char ifxusb_pcd_driver_name[]; + + extern ifxpcd_pcd_t ifxusb_pcd; + extern char ifxusb_pcd_name[]; +#endif + + +//Attributes for sysfs (for 2.6 only) + +#ifdef __IS_HOST__ +extern struct device_attribute dev_attr_version_h; +#else +extern struct device_attribute dev_attr_version_d; +#endif +#ifdef __IS_HOST__ +extern struct device_attribute dev_attr_dbglevel_h; +#else +extern struct device_attribute dev_attr_dbglevel_d; +#endif +#ifdef __IS_HOST__ + #ifdef __IS_DUAL__ + extern struct device_attribute dev_attr_suspend_host_1; + extern struct device_attribute dev_attr_suspend_host_2; + extern struct device_attribute dev_attr_probe_host_1; + extern struct device_attribute dev_attr_probe_host_2; + extern struct device_attribute dev_attr_probe_timer1_val_h; + extern struct device_attribute dev_attr_probe_timer2_val_h; + extern struct device_attribute dev_attr_autoprobe_timer1_val_h; + extern struct device_attribute dev_attr_autoprobe_timer2_val_h; + #else + extern struct device_attribute dev_attr_suspend_host; + extern struct device_attribute dev_attr_probe_host; + extern struct device_attribute dev_attr_probe_timer_val_h; + extern struct device_attribute dev_attr_autoprobe_timer_val_h; + #endif +#endif + +#ifdef __IS_DEVICE__ + extern struct device_attribute dev_attr_suspend_device; + extern struct device_attribute dev_attr_probe_device; + extern struct device_attribute dev_attr_probe_timer_val_d; + extern struct device_attribute dev_attr_autoprobe_timer_val_d; +#endif + +#ifdef __IS_HOST__ + #ifdef __IS_DUAL__ + extern struct device_attribute dev_attr_dump_params_h_1; + extern struct device_attribute dev_attr_dump_params_h_2; + extern struct device_attribute dev_attr_mode_h_1; + extern struct device_attribute dev_attr_mode_h_2; + #else + extern struct device_attribute dev_attr_dump_params_h; + extern struct device_attribute dev_attr_mode_h; + #endif +#else + extern struct device_attribute dev_attr_dump_params_d; + extern struct device_attribute dev_attr_mode_d; +#endif + +#ifdef __IS_HOST__ + #ifdef __IS_DUAL__ + extern struct device_attribute dev_attr_pkt_count_limit_bi_1; + extern struct device_attribute dev_attr_pkt_count_limit_bo_1; + extern struct device_attribute dev_attr_pkt_count_limit_bi_2; + extern struct device_attribute dev_attr_pkt_count_limit_bo_2; + extern struct device_attribute dev_attr_bandwidth_fs_1; + extern struct device_attribute dev_attr_bandwidth_ls_1; + extern struct device_attribute dev_attr_bandwidth_hs_2; + extern struct device_attribute dev_attr_bandwidth_fs_2; + extern struct device_attribute dev_attr_bandwidth_ls_2; + extern struct device_attribute dev_attr_buspower_1; + extern struct device_attribute dev_attr_buspower_2; + extern struct device_attribute dev_attr_bussuspend_1; + extern struct device_attribute dev_attr_bussuspend_2; + extern struct device_attribute dev_attr_busconnected_1; + extern struct device_attribute dev_attr_busconnected_2; + extern struct device_attribute dev_attr_connectspeed_1; + extern struct device_attribute dev_attr_connectspeed_1; + #else + extern struct device_attribute dev_attr_pkt_count_limit_bi; + extern struct device_attribute dev_attr_pkt_count_limit_bo; + extern struct device_attribute dev_attr_bandwidth_hs; + extern struct device_attribute dev_attr_bandwidth_fs; + extern struct device_attribute dev_attr_bandwidth_ls; + extern struct device_attribute dev_attr_buspower; + extern struct device_attribute dev_attr_bussuspend; + extern struct device_attribute dev_attr_busconnected; + extern struct device_attribute dev_attr_connectspeed; + #endif +#endif //__IS_HOST__ + +#ifdef __IS_DEVICE__ + extern struct device_attribute dev_attr_devspeed; + extern struct device_attribute dev_attr_enumspeed; +#endif //__IS_DEVICE__ + +#ifdef __ENABLE_DUMP__ + #ifdef __IS_HOST__ + #ifdef __IS_DUAL__ + extern struct device_attribute dev_attr_dump_reg_h_1; + extern struct device_attribute dev_attr_dump_reg_h_2; + extern struct device_attribute dev_attr_dump_spram_h_1; + extern struct device_attribute dev_attr_dump_spram_h_2; + extern struct device_attribute dev_attr_dump_host_state_1; + extern struct device_attribute dev_attr_dump_host_state_2; + #else + extern struct device_attribute dev_attr_dump_reg_h; + extern struct device_attribute dev_attr_dump_spram_h; + extern struct device_attribute dev_attr_dump_host_state; + #endif + #else + extern struct device_attribute dev_attr_dump_reg_d; + extern struct device_attribute dev_attr_dump_spram_d; + #endif +#endif //__ENABLE_DUMP__ + + +///////////////////////////////////////////////////////////////////////////////////////////////////// +///////////////////////////////////////////////////////////////////////////////////////////////////// +///////////////////////////////////////////////////////////////////////////////////////////////////// + +static ssize_t procfs_version_show(char *buf, char **start, off_t offset, int count, int *eof, void *data) +{ + return sprintf( buf, "%s\n",IFXUSB_VERSION ); +} + +#if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_version_show( struct device *_dev, struct device_attribute *attr,char *buf) +#else + static ssize_t sysfs_version_show( struct device *_dev, char *buf) +#endif +{ + return sprintf( buf, "%s\n",IFXUSB_VERSION ); +} + +#ifdef __IS_HOST__ +DEVICE_ATTR(version_h, S_IRUGO|S_IWUSR, sysfs_version_show, NULL); +#else +DEVICE_ATTR(version_d, S_IRUGO|S_IWUSR, sysfs_version_show, NULL); +#endif + + +///////////////////////////////////////////////////////////////////////////////////////////////////// +///////////////////////////////////////////////////////////////////////////////////////////////////// +///////////////////////////////////////////////////////////////////////////////////////////////////// +///////////////////////////////////////////////////////////////////////////////////////////////////// +///////////////////////////////////////////////////////////////////////////////////////////////////// +///////////////////////////////////////////////////////////////////////////////////////////////////// + +static ssize_t procfs_dbglevel_show(char *buf, char **start, off_t offset, int count, int *eof, void *data) +{ + #ifdef __IS_HOST__ + return sprintf( buf, "%08X\n",h_dbg_lvl ); + #else + return sprintf( buf, "%08X\n",d_dbg_lvl ); + #endif +} + +static ssize_t procfs_dbglevel_store(struct file *file, const char *buffer, unsigned long count, void *data) +{ + char buf[10]; + int i = 0; + uint32_t value; + if (copy_from_user(buf, &buffer[i], sizeof("0xFFFFFFFF\n")+1)) + return -EFAULT; + value = simple_strtoul(buf, NULL, 16); + #ifdef __IS_HOST__ + h_dbg_lvl =value; + #else + d_dbg_lvl =value; + #endif + //turn on and off power + return count; +} + +#if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_dbglevel_show( struct device *_dev, struct device_attribute *attr,char *buf) +#else + static ssize_t sysfs_dbglevel_show( struct device *_dev, char *buf) +#endif +{ + #ifdef __IS_HOST__ + return sprintf( buf, "%08X\n",h_dbg_lvl ); + #else + return sprintf( buf, "%08X\n",d_dbg_lvl ); + #endif +} + +#if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_dbglevel_store( struct device *_dev, struct device_attribute *attr,const char *buffer, size_t count ) +#else + static ssize_t sysfs_dbglevel_store( struct device *_dev, const char *buffer, size_t count ) +#endif +{ + char buf[10]; + int i = 0; + uint32_t value; + if (copy_from_user(buf, &buffer[i], sizeof("0xFFFFFFFF\n")+1)) + return -EFAULT; + value = simple_strtoul(buf, NULL, 16); + #ifdef __IS_HOST__ + h_dbg_lvl =value; + #else + d_dbg_lvl =value; + #endif + //turn on and off power + return count; +} + +#ifdef __IS_HOST__ +DEVICE_ATTR(dbglevel_h, S_IRUGO|S_IWUSR, sysfs_dbglevel_show, sysfs_dbglevel_store); +#else +DEVICE_ATTR(dbglevel_d, S_IRUGO|S_IWUSR, sysfs_dbglevel_show, sysfs_dbglevel_store); +#endif + + +///////////////////////////////////////////////////////////////////////////////////////////////////// +///////////////////////////////////////////////////////////////////////////////////////////////////// +///////////////////////////////////////////////////////////////////////////////////////////////////// + +static void ifxusb_dump_params(ifxusb_core_if_t *_core_if); + +#ifdef __IS_DUAL__ + static void dump_params_1(void) + { + ifxusb_dump_params(&ifxusb_hcd_1.core_if); + } + static void dump_params_2(void) + { + ifxusb_dump_params(&ifxusb_hcd_2.core_if); + } + + static ssize_t procfs_dump_params_show_1(char *buf, char **start, off_t offset, int count, int *eof, void *data) + { + dump_params_1(); + return 0; + } + static ssize_t procfs_dump_params_show_2(char *buf, char **start, off_t offset, int count, int *eof, void *data) + { + dump_params_2(); + return 0; + } + + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_dump_params_show_1( struct device *_dev, struct device_attribute *attr,char *buf) + #else + static ssize_t sysfs_dump_params_show_1( struct device *_dev,char *buf) + #endif + { + dump_params_1(); + return 0; + } + DEVICE_ATTR(dump_params_h_1, S_IRUGO|S_IWUSR, sysfs_dump_params_show_1, NULL); + + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_dump_params_show_2( struct device *_dev, struct device_attribute *attr,char *buf) + #else + static ssize_t sysfs_dump_params_show_2( struct device *_dev,char *buf) + #endif + { + dump_params_2(); + return 0; + } + + DEVICE_ATTR(dump_params_h_2, S_IRUGO|S_IWUSR, sysfs_dump_params_show_2, NULL); +#else + static void dump_params(void) + { + #ifdef __IS_HOST__ + ifxusb_dump_params(&ifxusb_hcd.core_if); + #else + ifxusb_dump_params(&ifxusb_pcd.core_if); + #endif + } + + static ssize_t procfs_dump_params_show(char *buf, char **start, off_t offset, int count, int *eof, void *data) + { + dump_params(); + return 0; + } + + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_dump_params_show( struct device *_dev, struct device_attribute *attr,char *buf) + #else + static ssize_t sysfs_dump_params_show( struct device *_dev,char *buf) + #endif + { + dump_params(); + return 0; + } + + #ifdef __IS_HOST__ + DEVICE_ATTR(dump_params_h, S_IRUGO|S_IWUSR, sysfs_dump_params_show, NULL); + #else + DEVICE_ATTR(dump_params_d, S_IRUGO|S_IWUSR, sysfs_dump_params_show, NULL); + #endif +#endif + +///////////////////////////////////////////////////////////////////////////////////////////////////// +///////////////////////////////////////////////////////////////////////////////////////////////////// +///////////////////////////////////////////////////////////////////////////////////////////////////// + +#ifdef __IS_DUAL__ + static ssize_t mode_show_1(char *buf) + { + if((ifxusb_rreg(&ifxusb_hcd_1.core_if.core_global_regs->gintsts ) & 0x1) == 1) + return sprintf( buf, "HOST\n" ); + else + return sprintf( buf, "DEVICE(INCORRECT!)\n" ); + } + + static ssize_t mode_show_2(char *buf) + { + if((ifxusb_rreg(&ifxusb_hcd_2.core_if.core_global_regs->gintsts ) & 0x1) == 1) + return sprintf( buf, "HOST\n" ); + else + return sprintf( buf, "DEVICE(INCORRECT!)\n" ); + } + + static ssize_t procfs_mode_show_1(char *buf, char **start, off_t offset, int count, int *eof, void *data) + { + return mode_show_1(buf); + } + static ssize_t procfs_mode_show_2(char *buf, char **start, off_t offset, int count, int *eof, void *data) + { + return mode_show_2(buf); + } + + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_mode_show_1( struct device *_dev, struct device_attribute *attr,char *buf) + #else + static ssize_t sysfs_mode_show_1( struct device *_dev,char *buf) + #endif + { + return mode_show_1(buf); + } + + DEVICE_ATTR(mode_h_1, S_IRUGO|S_IWUSR, sysfs_mode_show_1, 0); + + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_mode_show_2( struct device *_dev, struct device_attribute *attr,char *buf) + #else + static ssize_t sysfs_mode_show_2( struct device *_dev,char *buf) + #endif + { + return mode_show_2(buf); + } + DEVICE_ATTR(mode_h_2, S_IRUGO|S_IWUSR, sysfs_mode_show_2, NULL); +#else + static ssize_t mode_show(char *buf) + { + #ifdef __IS_HOST__ + if((ifxusb_rreg(&ifxusb_hcd.core_if.core_global_regs->gintsts ) & 0x1) == 1) + return sprintf( buf, "HOST\n" ); + else + return sprintf( buf, "DEVICE(INCORRECT!)\n" ); + #else + if((ifxusb_rreg(&ifxusb_pcd.core_if.core_global_regs->gintsts ) & 0x1) != 1) + return sprintf( buf, "DEVICE\n" ); + else + return sprintf( buf, "HOST(INCORRECT!)\n" ); + #endif + } + static ssize_t procfs_mode_show(char *buf, char **start, off_t offset, int count, int *eof, void *data) + { + return mode_show(buf); + } + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_mode_show( struct device *_dev, struct device_attribute *attr,char *buf) + #else + static ssize_t sysfs_mode_show( struct device *_dev, char *buf) + #endif + { + return mode_show(buf); + } + #ifdef __IS_HOST__ + DEVICE_ATTR(mode_h, S_IRUGO|S_IWUSR, sysfs_mode_show, NULL); + #else + DEVICE_ATTR(mode_d, S_IRUGO|S_IWUSR, sysfs_mode_show, NULL); + #endif +#endif + +///////////////////////////////////////////////////////////////////////////////////////////////////// +///////////////////////////////////////////////////////////////////////////////////////////////////// +///////////////////////////////////////////////////////////////////////////////////////////////////// + +#ifdef __IS_HOST__ +///////////////////////////////////////////////////////////////////////////////////////////////////// +///////////////////////////////////////////////////////////////////////////////////////////////////// +///////////////////////////////////////////////////////////////////////////////////////////////////// + #ifdef __IS_DUAL__ + static ssize_t bandwidth_hs_show_1(char *buf) + { + return sprintf( buf, "%d\n",ifxusb_hcd_1.pkt_remaining_reload_hs ); + } + static ssize_t bandwidth_fs_show_1(char *buf) + { + return sprintf( buf, "%d\n",ifxusb_hcd_1.pkt_remaining_reload_fs ); + } + static ssize_t bandwidth_ls_show_1(char *buf) + { + return sprintf( buf, "%d\n",ifxusb_hcd_1.pkt_remaining_reload_ls ); + } + static void bandwidth_hs_store_1(uint32_t value) + { + if(value>16 && value<120) + { + hprt0_data_t hprt0; + ifxusb_hcd_1.pkt_remaining_reload_hs = value; + hprt0.d32 = ifxusb_rreg(ifxusb_hcd_1.core_if.hprt0); + if(hprt0.b.prtspd == IFXUSB_HPRT0_PRTSPD_HIGH_SPEED) + ifxusb_hcd_1.pkt_remaining_reload=value; + } + } + static void bandwidth_fs_store_1(uint32_t value) + { + if (value>2 && value<30) + { + hprt0_data_t hprt0; + ifxusb_hcd_1.pkt_remaining_reload_fs = value; + hprt0.d32 = ifxusb_rreg(ifxusb_hcd_1.core_if.hprt0); + if(hprt0.b.prtspd != IFXUSB_HPRT0_PRTSPD_LOW_SPEED && hprt0.b.prtspd != IFXUSB_HPRT0_PRTSPD_HIGH_SPEED) + ifxusb_hcd_1.pkt_remaining_reload=value; + } + } + static void bandwidth_ls_store_1(uint32_t value) + { + if (value>2 && value<30) + { + hprt0_data_t hprt0; + ifxusb_hcd_1.pkt_remaining_reload_ls = value; + hprt0.d32 = ifxusb_rreg(ifxusb_hcd_1.core_if.hprt0); + if(hprt0.b.prtspd == IFXUSB_HPRT0_PRTSPD_LOW_SPEED) + ifxusb_hcd_1.pkt_remaining_reload=value; + } + } + static ssize_t bandwidth_hs_show_2(char *buf) + { + return sprintf( buf, "%d\n",ifxusb_hcd_2.pkt_remaining_reload_hs ); + } + static ssize_t bandwidth_fs_show_2(char *buf) + { + return sprintf( buf, "%d\n",ifxusb_hcd_2.pkt_remaining_reload_fs ); + } + static ssize_t bandwidth_ls_show_2(char *buf) + { + return sprintf( buf, "%d\n",ifxusb_hcd_2.pkt_remaining_reload_ls ); + } + static void bandwidth_hs_store_2(uint32_t value) + { + if(value>16 && value<120) + { + hprt0_data_t hprt0; + ifxusb_hcd_2.pkt_remaining_reload_hs = value; + hprt0.d32 = ifxusb_rreg(ifxusb_hcd_2.core_if.hprt0); + if(hprt0.b.prtspd == IFXUSB_HPRT0_PRTSPD_HIGH_SPEED) + ifxusb_hcd_2.pkt_remaining_reload=value; + } + } + static void bandwidth_fs_store_2(uint32_t value) + { + if (value>2 && value<30) + { + hprt0_data_t hprt0; + ifxusb_hcd_2.pkt_remaining_reload_fs = value; + hprt0.d32 = ifxusb_rreg(ifxusb_hcd_2.core_if.hprt0); + if(hprt0.b.prtspd != IFXUSB_HPRT0_PRTSPD_LOW_SPEED && hprt0.b.prtspd != IFXUSB_HPRT0_PRTSPD_HIGH_SPEED) + ifxusb_hcd_2.pkt_remaining_reload=value; + } + } + static void bandwidth_ls_store_2(uint32_t value) + { + if (value>2 && value<30) + { + hprt0_data_t hprt0; + ifxusb_hcd_2.pkt_remaining_reload_ls = value; + hprt0.d32 = ifxusb_rreg(ifxusb_hcd_2.core_if.hprt0); + if(hprt0.b.prtspd == IFXUSB_HPRT0_PRTSPD_LOW_SPEED) + ifxusb_hcd_2.pkt_remaining_reload=value; + } + } + static ssize_t procfs_bandwidth_hs_show_1(char *buf, char **start, off_t offset, int count, int *eof, void *data) + { + return bandwidth_hs_show_1(buf); + } + static ssize_t procfs_bandwidth_fs_show_1(char *buf, char **start, off_t offset, int count, int *eof, void *data) + { + return bandwidth_fs_show_1(buf); + } + static ssize_t procfs_bandwidth_ls_show_1(char *buf, char **start, off_t offset, int count, int *eof, void *data) + { + return bandwidth_ls_show_1(buf); + } + static ssize_t procfs_bandwidth_hs_store_1(struct file *file, const char *buffer, unsigned long count, void *data) + { + char buf[10]; + int i = 0; + uint32_t value; + if (copy_from_user(buf, &buffer[i], sizeof("0xFFFFFFFF\n")+1)) + return -EFAULT; + value = simple_strtoul(buf, NULL, 10); + bandwidth_hs_store_1(value); + return count; + } + static ssize_t procfs_bandwidth_fs_store_1(struct file *file, const char *buffer, unsigned long count, void *data) + { + char buf[10]; + int i = 0; + uint32_t value; + if (copy_from_user(buf, &buffer[i], sizeof("0xFFFFFFFF\n")+1)) + return -EFAULT; + value = simple_strtoul(buf, NULL, 10); + bandwidth_fs_store_1(value); + return count; + } + static ssize_t procfs_bandwidth_ls_store_1(struct file *file, const char *buffer, unsigned long count, void *data) + { + char buf[10]; + int i = 0; + uint32_t value; + if (copy_from_user(buf, &buffer[i], sizeof("0xFFFFFFFF\n")+1)) + return -EFAULT; + value = simple_strtoul(buf, NULL, 10); + bandwidth_ls_store_1(value); + return count; + } + static ssize_t procfs_bandwidth_hs_show_2(char *buf, char **start, off_t offset, int count, int *eof, void *data) + { + return bandwidth_hs_show_2(buf); + } + static ssize_t procfs_bandwidth_fs_show_2(char *buf, char **start, off_t offset, int count, int *eof, void *data) + { + return bandwidth_fs_show_2(buf); + } + static ssize_t procfs_bandwidth_ls_show_2(char *buf, char **start, off_t offset, int count, int *eof, void *data) + { + return bandwidth_ls_show_2(buf); + } + static ssize_t procfs_bandwidth_hs_store_2(struct file *file, const char *buffer, unsigned long count, void *data) + { + char buf[10]; + int i = 0; + uint32_t value; + if (copy_from_user(buf, &buffer[i], sizeof("0xFFFFFFFF\n")+1)) + return -EFAULT; + value = simple_strtoul(buf, NULL, 10); + bandwidth_hs_store_2(value); + return count; + } + static ssize_t procfs_bandwidth_fs_store_2(struct file *file, const char *buffer, unsigned long count, void *data) + { + char buf[10]; + int i = 0; + uint32_t value; + if (copy_from_user(buf, &buffer[i], sizeof("0xFFFFFFFF\n")+1)) + return -EFAULT; + value = simple_strtoul(buf, NULL, 10); + bandwidth_fs_store_2(value); + return count; + } + static ssize_t procfs_bandwidth_ls_store_2(struct file *file, const char *buffer, unsigned long count, void *data) + { + char buf[10]; + int i = 0; + uint32_t value; + if (copy_from_user(buf, &buffer[i], sizeof("0xFFFFFFFF\n")+1)) + return -EFAULT; + value = simple_strtoul(buf, NULL, 10); + bandwidth_ls_store_2(value); + return count; + } + + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_bandwidth_hs_show_1( struct device *_dev, struct device_attribute *attr,char *buf) + #else + static ssize_t sysfs_bandwidth_hs_show_1( struct device *_dev,char *buf) + #endif + { + return bandwidth_hs_show_1(buf); + } + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_bandwidth_hs_store_1( struct device *_dev, struct device_attribute *attr,const char *buffer, size_t count ) + #else + static ssize_t sysfs_bandwidth_hs_store_1( struct device *_dev, const char *buffer, size_t count ) + #endif + { + char buf[10]; + int i = 0; + uint32_t value; + if (copy_from_user(buf, &buffer[i], sizeof("0xFFFFFFFF\n")+1)) + return -EFAULT; + value = simple_strtoul(buf, NULL, 10); + bandwidth_hs_store_1(value); + return count; + } + DEVICE_ATTR(bandwidth_hs_1, S_IRUGO|S_IWUSR, sysfs_bandwidth_hs_show_1, sysfs_bandwidth_hs_store_1); + + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_bandwidth_fs_show_1( struct device *_dev, struct device_attribute *attr,char *buf) + #else + static ssize_t sysfs_bandwidth_fs_show_1( struct device *_dev,char *buf) + #endif + { + return bandwidth_fs_show_1(buf); + } + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_bandwidth_fs_store_1( struct device *_dev, struct device_attribute *attr,const char *buffer, size_t count ) + #else + static ssize_t sysfs_bandwidth_fs_store_1( struct device *_dev, const char *buffer, size_t count ) + #endif + { + char buf[10]; + int i = 0; + uint32_t value; + if (copy_from_user(buf, &buffer[i], sizeof("0xFFFFFFFF\n")+1)) + return -EFAULT; + value = simple_strtoul(buf, NULL, 10); + bandwidth_fs_store_1(value); + return count; + } + DEVICE_ATTR(bandwidth_fs_1, S_IRUGO|S_IWUSR, sysfs_bandwidth_fs_show_1, sysfs_bandwidth_fs_store_1); + + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_bandwidth_ls_show_1( struct device *_dev, struct device_attribute *attr,char *buf) + #else + static ssize_t sysfs_bandwidth_ls_show_1( struct device *_dev,char *buf) + #endif + { + return bandwidth_ls_show_1(buf); + } + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_bandwidth_ls_store_1( struct device *_dev, struct device_attribute *attr,const char *buffer, size_t count ) + #else + static ssize_t sysfs_bandwidth_ls_store_1( struct device *_dev, const char *buffer, size_t count ) + #endif + { + char buf[10]; + int i = 0; + uint32_t value; + if (copy_from_user(buf, &buffer[i], sizeof("0xFFFFFFFF\n")+1)) + return -EFAULT; + value = simple_strtoul(buf, NULL, 10); + bandwidth_ls_store_1(value); + return count; + } + DEVICE_ATTR(bandwidth_ls_1, S_IRUGO|S_IWUSR, sysfs_bandwidth_ls_show_1, sysfs_bandwidth_ls_store_1); + + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_bandwidth_hs_show_2( struct device *_dev, struct device_attribute *attr,char *buf) + #else + static ssize_t sysfs_bandwidth_hs_show_2( struct device *_dev,char *buf) + #endif + { + return bandwidth_hs_show_2(buf); + } + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_bandwidth_hs_store_2( struct device *_dev, struct device_attribute *attr,const char *buffer, size_t count ) + #else + static ssize_t sysfs_bandwidth_hs_store_2( struct device *_dev, const char *buffer, size_t count ) + #endif + { + char buf[10]; + int i = 0; + uint32_t value; + if (copy_from_user(buf, &buffer[i], sizeof("0xFFFFFFFF\n")+1)) + return -EFAULT; + value = simple_strtoul(buf, NULL, 10); + bandwidth_hs_store_2(value); + return count; + } + DEVICE_ATTR(bandwidth_hs_2, S_IRUGO|S_IWUSR, sysfs_bandwidth_hs_show_2, sysfs_bandwidth_hs_store_2); + + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_bandwidth_fs_show_2( struct device *_dev, struct device_attribute *attr,char *buf) + #else + static ssize_t sysfs_bandwidth_fs_show_2( struct device *_dev,char *buf) + #endif + { + return bandwidth_fs_show_2(buf); + } + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_bandwidth_fs_store_2( struct device *_dev, struct device_attribute *attr,const char *buffer, size_t count ) + #else + static ssize_t sysfs_bandwidth_fs_store_2( struct device *_dev, const char *buffer, size_t count ) + #endif + { + char buf[10]; + int i = 0; + uint32_t value; + if (copy_from_user(buf, &buffer[i], sizeof("0xFFFFFFFF\n")+1)) + return -EFAULT; + value = simple_strtoul(buf, NULL, 10); + bandwidth_fs_store_2(value); + return count; + } + DEVICE_ATTR(bandwidth_fs_2, S_IRUGO|S_IWUSR, sysfs_bandwidth_fs_show_2, sysfs_bandwidth_fs_store_2); + + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_bandwidth_ls_show_2( struct device *_dev, struct device_attribute *attr,char *buf) + #else + static ssize_t sysfs_bandwidth_ls_show_2( struct device *_dev,char *buf) + #endif + { + return bandwidth_ls_show_2(buf); + } + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_bandwidth_ls_store_2( struct device *_dev, struct device_attribute *attr,const char *buffer, size_t count ) + #else + static ssize_t sysfs_bandwidth_ls_store_2( struct device *_dev, const char *buffer, size_t count ) + #endif + { + char buf[10]; + int i = 0; + uint32_t value; + if (copy_from_user(buf, &buffer[i], sizeof("0xFFFFFFFF\n")+1)) + return -EFAULT; + value = simple_strtoul(buf, NULL, 10); + bandwidth_ls_store_2(value); + return count; + } + DEVICE_ATTR(bandwidth_ls_2, S_IRUGO|S_IWUSR, sysfs_bandwidth_ls_show_2, sysfs_bandwidth_ls_store_2); + #else + static ssize_t bandwidth_hs_show(char *buf) + { + return sprintf( buf, "%d\n",ifxusb_hcd.pkt_remaining_reload_hs ); + } + static ssize_t bandwidth_fs_show(char *buf) + { + return sprintf( buf, "%d\n",ifxusb_hcd.pkt_remaining_reload_fs ); + } + static ssize_t bandwidth_ls_show(char *buf) + { + return sprintf( buf, "%d\n",ifxusb_hcd.pkt_remaining_reload_ls ); + } + static void bandwidth_hs_store(uint32_t value) + { + if (value>16 && value<120) + { + hprt0_data_t hprt0; + ifxusb_hcd.pkt_remaining_reload_hs = value; + hprt0.d32 = ifxusb_rreg(ifxusb_hcd.core_if.hprt0); + if(hprt0.b.prtspd == IFXUSB_HPRT0_PRTSPD_HIGH_SPEED) + ifxusb_hcd.pkt_remaining_reload=value; + } + } + static void bandwidth_fs_store(uint32_t value) + { + if (value>2 && value<30) + { + hprt0_data_t hprt0; + ifxusb_hcd.pkt_remaining_reload_fs = value; + hprt0.d32 = ifxusb_rreg(ifxusb_hcd.core_if.hprt0); + if(hprt0.b.prtspd != IFXUSB_HPRT0_PRTSPD_LOW_SPEED && hprt0.b.prtspd != IFXUSB_HPRT0_PRTSPD_HIGH_SPEED) + ifxusb_hcd.pkt_remaining_reload=value; + } + } + static void bandwidth_ls_store(uint32_t value) + { + if (value>2 && value<30) + { + hprt0_data_t hprt0; + ifxusb_hcd.pkt_remaining_reload_hs = value; + hprt0.d32 = ifxusb_rreg(ifxusb_hcd.core_if.hprt0); + if(hprt0.b.prtspd == IFXUSB_HPRT0_PRTSPD_LOW_SPEED) + ifxusb_hcd.pkt_remaining_reload=value; + } + } + static ssize_t procfs_bandwidth_hs_show(char *buf, char **start, off_t offset, int count, int *eof, void *data) + { + return bandwidth_hs_show(buf); + } + static ssize_t procfs_bandwidth_fs_show(char *buf, char **start, off_t offset, int count, int *eof, void *data) + { + return bandwidth_fs_show(buf); + } + static ssize_t procfs_bandwidth_ls_show(char *buf, char **start, off_t offset, int count, int *eof, void *data) + { + return bandwidth_ls_show(buf); + } + static ssize_t procfs_bandwidth_hs_store(struct file *file, const char *buffer, unsigned long count, void *data) + { + char buf[10]; + int i = 0; + uint32_t value; + if (copy_from_user(buf, &buffer[i], sizeof("0xFFFFFFFF\n")+1)) + return -EFAULT; + value = simple_strtoul(buf, NULL, 10); + bandwidth_hs_store(value); + return count; + } + static ssize_t procfs_bandwidth_fs_store(struct file *file, const char *buffer, unsigned long count, void *data) + { + char buf[10]; + int i = 0; + uint32_t value; + if (copy_from_user(buf, &buffer[i], sizeof("0xFFFFFFFF\n")+1)) + return -EFAULT; + value = simple_strtoul(buf, NULL, 10); + bandwidth_fs_store(value); + return count; + } + static ssize_t procfs_bandwidth_ls_store(struct file *file, const char *buffer, unsigned long count, void *data) + { + char buf[10]; + int i = 0; + uint32_t value; + if (copy_from_user(buf, &buffer[i], sizeof("0xFFFFFFFF\n")+1)) + return -EFAULT; + value = simple_strtoul(buf, NULL, 10); + bandwidth_ls_store(value); + return count; + } + + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_bandwidth_hs_show( struct device *_dev, struct device_attribute *attr,char *buf) + #else + static ssize_t sysfs_bandwidth_hs_show( struct device *_dev,char *buf) + #endif + { + return bandwidth_hs_show(buf); + } + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_bandwidth_hs_store( struct device *_dev, struct device_attribute *attr,const char *buffer, size_t count ) + #else + static ssize_t sysfs_bandwidth_hs_store( struct device *_dev, const char *buffer, size_t count ) + #endif + { + char buf[10]; + int i = 0; + uint32_t value; + if (copy_from_user(buf, &buffer[i], sizeof("0xFFFFFFFF\n")+1)) + return -EFAULT; + value = simple_strtoul(buf, NULL, 10); + bandwidth_hs_store(value); + return count; + } + DEVICE_ATTR(bandwidth_hs, S_IRUGO|S_IWUSR, sysfs_bandwidth_hs_show, sysfs_bandwidth_hs_store); + + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_bandwidth_fs_show( struct device *_dev, struct device_attribute *attr,char *buf) + #else + static ssize_t sysfs_bandwidth_fs_show( struct device *_dev,char *buf) + #endif + { + return bandwidth_fs_show(buf); + } + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_bandwidth_fs_store( struct device *_dev, struct device_attribute *attr,const char *buffer, size_t count ) + #else + static ssize_t sysfs_bandwidth_fs_store( struct device *_dev, const char *buffer, size_t count ) + #endif + { + char buf[10]; + int i = 0; + uint32_t value; + if (copy_from_user(buf, &buffer[i], sizeof("0xFFFFFFFF\n")+1)) + return -EFAULT; + value = simple_strtoul(buf, NULL, 10); + bandwidth_fs_store(value); + return count; + } + DEVICE_ATTR(bandwidth_fs, S_IRUGO|S_IWUSR, sysfs_bandwidth_fs_show, sysfs_bandwidth_fs_store); + + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_bandwidth_ls_show( struct device *_dev, struct device_attribute *attr,char *buf) + #else + static ssize_t sysfs_bandwidth_ls_show( struct device *_dev,char *buf) + #endif + { + return bandwidth_ls_show(buf); + } + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_bandwidth_ls_store( struct device *_dev, struct device_attribute *attr,const char *buffer, size_t count ) + #else + static ssize_t sysfs_bandwidth_ls_store( struct device *_dev, const char *buffer, size_t count ) + #endif + { + char buf[10]; + int i = 0; + uint32_t value; + if (copy_from_user(buf, &buffer[i], sizeof("0xFFFFFFFF\n")+1)) + return -EFAULT; + value = simple_strtoul(buf, NULL, 10); + bandwidth_ls_store(value); + return count; + } + DEVICE_ATTR(bandwidth_ls, S_IRUGO|S_IWUSR, sysfs_bandwidth_ls_show, sysfs_bandwidth_ls_store); + #endif + +///////////////////////////////////////////////////////////////////////////////////////////////////// +///////////////////////////////////////////////////////////////////////////////////////////////////// + #ifdef __IS_DUAL__ + static ssize_t pkt_count_limit_bi_show_1(char *buf) + { + return sprintf( buf, "%d\n",ifxusb_hcd_1.pkt_count_limit_bi ); + } + static ssize_t pkt_count_limit_bo_show_1(char *buf) + { + return sprintf( buf, "%d\n",ifxusb_hcd_1.pkt_count_limit_bo ); + } + static void pkt_count_limit_bi_store_1(uint32_t value) + { + if(value<=13) + ifxusb_hcd_1.pkt_count_limit_bi = value; + } + static void pkt_count_limit_bo_store_1(uint32_t value) + { + if (value<=13) + ifxusb_hcd_1.pkt_count_limit_bo = value; + } + static ssize_t pkt_count_limit_bi_show_2(char *buf) + { + return sprintf( buf, "%d\n",ifxusb_hcd_2.pkt_count_limit_bi ); + } + static ssize_t pkt_count_limit_bo_show_2(char *buf) + { + return sprintf( buf, "%d\n",ifxusb_hcd_2.pkt_count_limit_bo ); + } + static void pkt_count_limit_bi_store_2(uint32_t value) + { + if(value<=13) + ifxusb_hcd_2.pkt_count_limit_bi = value; + } + static void pkt_count_limit_bo_store_2(uint32_t value) + { + if(value<=13) + ifxusb_hcd_2.pkt_count_limit_bo = value; + } + static ssize_t procfs_pkt_count_limit_bi_show_1(char *buf, char **start, off_t offset, int count, int *eof, void *data) + { + return pkt_count_limit_bi_show_1(buf); + } + static ssize_t procfs_pkt_count_limit_bo_show_1(char *buf, char **start, off_t offset, int count, int *eof, void *data) + { + return pkt_count_limit_bo_show_1(buf); + } + static ssize_t procfs_pkt_count_limit_bi_store_1(struct file *file, const char *buffer, unsigned long count, void *data) + { + char buf[10]; + int i = 0; + uint32_t value; + if (copy_from_user(buf, &buffer[i], sizeof("0xFFFFFFFF\n")+1)) + return -EFAULT; + value = simple_strtoul(buf, NULL, 10); + pkt_count_limit_bi_store_1(value); + return count; + } + static ssize_t procfs_pkt_count_limit_bo_store_1(struct file *file, const char *buffer, unsigned long count, void *data) + { + char buf[10]; + int i = 0; + uint32_t value; + if (copy_from_user(buf, &buffer[i], sizeof("0xFFFFFFFF\n")+1)) + return -EFAULT; + value = simple_strtoul(buf, NULL, 10); + pkt_count_limit_bo_store_1(value); + return count; + } + static ssize_t procfs_pkt_count_limit_bi_show_2(char *buf, char **start, off_t offset, int count, int *eof, void *data) + { + return pkt_count_limit_bi_show_2(buf); + } + static ssize_t procfs_pkt_count_limit_bo_show_2(char *buf, char **start, off_t offset, int count, int *eof, void *data) + { + return pkt_count_limit_bo_show_2(buf); + } + static ssize_t procfs_pkt_count_limit_bi_store_2(struct file *file, const char *buffer, unsigned long count, void *data) + { + char buf[10]; + int i = 0; + uint32_t value; + if (copy_from_user(buf, &buffer[i], sizeof("0xFFFFFFFF\n")+1)) + return -EFAULT; + value = simple_strtoul(buf, NULL, 10); + pkt_count_limit_bi_store_2(value); + return count; + } + static ssize_t procfs_pkt_count_limit_bo_store_2(struct file *file, const char *buffer, unsigned long count, void *data) + { + char buf[10]; + int i = 0; + uint32_t value; + if (copy_from_user(buf, &buffer[i], sizeof("0xFFFFFFFF\n")+1)) + return -EFAULT; + value = simple_strtoul(buf, NULL, 10); + pkt_count_limit_bo_store_2(value); + return count; + } + + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_pkt_count_limit_bi_show_1( struct device *_dev, struct device_attribute *attr,char *buf) + #else + static ssize_t sysfs_pkt_count_limit_bi_show_1( struct device *_dev,char *buf) + #endif + { + return pkt_count_limit_bi_show_1(buf); + } + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_pkt_count_limit_bi_store_1( struct device *_dev, struct device_attribute *attr,const char *buffer, size_t count ) + #else + static ssize_t sysfs_pkt_count_limit_bi_store_1( struct device *_dev, const char *buffer, size_t count ) + #endif + { + char buf[10]; + int i = 0; + uint32_t value; + if (copy_from_user(buf, &buffer[i], sizeof("0xFFFFFFFF\n")+1)) + return -EFAULT; + value = simple_strtoul(buf, NULL, 10); + pkt_count_limit_bi_store_1(value); + return count; + } + DEVICE_ATTR(pkt_count_limit_bi_1, S_IRUGO|S_IWUSR, sysfs_pkt_count_limit_bi_show_1, sysfs_pkt_count_limit_bi_store_1); + + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_pkt_count_limit_bo_show_1( struct device *_dev, struct device_attribute *attr,char *buf) + #else + static ssize_t sysfs_pkt_count_limit_bo_show_1( struct device *_dev,char *buf) + #endif + { + return pkt_count_limit_bo_show_1(buf); + } + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_pkt_count_limit_bo_store_1( struct device *_dev, struct device_attribute *attr,const char *buffer, size_t count ) + #else + static ssize_t sysfs_pkt_count_limit_bo_store_1( struct device *_dev, const char *buffer, size_t count ) + #endif + { + char buf[10]; + int i = 0; + uint32_t value; + if (copy_from_user(buf, &buffer[i], sizeof("0xFFFFFFFF\n")+1)) + return -EFAULT; + value = simple_strtoul(buf, NULL, 10); + pkt_count_limit_bo_store_1(value); + return count; + } + DEVICE_ATTR(pkt_count_limit_bo_1, S_IRUGO|S_IWUSR, sysfs_pkt_count_limit_bo_show_1, sysfs_pkt_count_limit_bo_store_1); + + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_pkt_count_limit_bi_show_2( struct device *_dev, struct device_attribute *attr,char *buf) + #else + static ssize_t sysfs_pkt_count_limit_bi_show_2( struct device *_dev,char *buf) + #endif + { + return pkt_count_limit_bi_show_2(buf); + } + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_pkt_count_limit_bi_store_2( struct device *_dev, struct device_attribute *attr,const char *buffer, size_t count ) + #else + static ssize_t sysfs_pkt_count_limit_bi_2( struct device *_dev, const char *buffer, size_t count ) + #endif + { + char buf[10]; + int i = 0; + uint32_t value; + if (copy_from_user(buf, &buffer[i], sizeof("0xFFFFFFFF\n")+1)) + return -EFAULT; + value = simple_strtoul(buf, NULL, 10); + pkt_count_limit_bi_store_2(value); + return count; + } + DEVICE_ATTR(pkt_count_limit_bi_2, S_IRUGO|S_IWUSR, sysfs_pkt_count_limit_bi_show_2, sysfs_pkt_count_limit_bi_store_2); + + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_pkt_count_limit_bo_show_2( struct device *_dev, struct device_attribute *attr,char *buf) + #else + static ssize_t sysfs_pkt_count_limit_bo_show_2( struct device *_dev,char *buf) + #endif + { + return pkt_count_limit_bo_show_2(buf); + } + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_pkt_count_limit_bo_store_2( struct device *_dev, struct device_attribute *attr,const char *buffer, size_t count ) + #else + static ssize_t sysfs_pkt_count_limit_bo_store_2( struct device *_dev, const char *buffer, size_t count ) + #endif + { + char buf[10]; + int i = 0; + uint32_t value; + if (copy_from_user(buf, &buffer[i], sizeof("0xFFFFFFFF\n")+1)) + return -EFAULT; + value = simple_strtoul(buf, NULL, 10); + pkt_count_limit_bo_store_2(value); + return count; + } + DEVICE_ATTR(pkt_count_limit_bo_2, S_IRUGO|S_IWUSR, sysfs_pkt_count_limit_bo_show_2, sysfs_pkt_count_limit_bo_store_2); + #else + static ssize_t pkt_count_limit_bi_show(char *buf) + { + return sprintf( buf, "%d\n",ifxusb_hcd.pkt_count_limit_bi ); + } + static ssize_t pkt_count_limit_bo_show(char *buf) + { + return sprintf( buf, "%d\n",ifxusb_hcd.pkt_count_limit_bo ); + } + static void pkt_count_limit_bi_store(uint32_t value) + { + if (value<=13) + ifxusb_hcd.pkt_count_limit_bi = value; + } + static void pkt_count_limit_bo_store(uint32_t value) + { + if (value<=13) + ifxusb_hcd.pkt_count_limit_bo = value; + } + static ssize_t procfs_pkt_count_limit_bi_show(char *buf, char **start, off_t offset, int count, int *eof, void *data) + { + return pkt_count_limit_bi_show(buf); + } + static ssize_t procfs_pkt_count_limit_bo_show(char *buf, char **start, off_t offset, int count, int *eof, void *data) + { + return pkt_count_limit_bo_show(buf); + } + static ssize_t procfs_pkt_count_limit_bi_store(struct file *file, const char *buffer, unsigned long count, void *data) + { + char buf[10]; + int i = 0; + uint32_t value; + if (copy_from_user(buf, &buffer[i], sizeof("0xFFFFFFFF\n")+1)) + return -EFAULT; + value = simple_strtoul(buf, NULL, 10); + pkt_count_limit_bi_store(value); + return count; + } + static ssize_t procfs_pkt_count_limit_bo_store(struct file *file, const char *buffer, unsigned long count, void *data) + { + char buf[10]; + int i = 0; + uint32_t value; + if (copy_from_user(buf, &buffer[i], sizeof("0xFFFFFFFF\n")+1)) + return -EFAULT; + value = simple_strtoul(buf, NULL, 10); + pkt_count_limit_bo_store(value); + return count; + } + + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_pkt_count_limit_bi_show( struct device *_dev, struct device_attribute *attr,char *buf) + #else + static ssize_t sysfs_pkt_count_limit_bi_show( struct device *_dev,char *buf) + #endif + { + return pkt_count_limit_bi_show(buf); + } + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_pkt_count_limit_bi_store( struct device *_dev, struct device_attribute *attr,const char *buffer, size_t count ) + #else + static ssize_t sysfs_pkt_count_limit_bi_store( struct device *_dev, const char *buffer, size_t count ) + #endif + { + char buf[10]; + int i = 0; + uint32_t value; + if (copy_from_user(buf, &buffer[i], sizeof("0xFFFFFFFF\n")+1)) + return -EFAULT; + value = simple_strtoul(buf, NULL, 10); + pkt_count_limit_bi_store(value); + return count; + } + DEVICE_ATTR(pkt_count_limit_bi, S_IRUGO|S_IWUSR, sysfs_pkt_count_limit_bi_show, sysfs_pkt_count_limit_bi_store); + + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_pkt_count_limit_bo_show( struct device *_dev, struct device_attribute *attr,char *buf) + #else + static ssize_t sysfs_pkt_count_limit_bo_show( struct device *_dev,char *buf) + #endif + { + return pkt_count_limit_bo_show(buf); + } + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_pkt_count_limit_bo_store( struct device *_dev, struct device_attribute *attr,const char *buffer, size_t count ) + #else + static ssize_t sysfs_pkt_count_limit_bo_store( struct device *_dev, const char *buffer, size_t count ) + #endif + { + char buf[10]; + int i = 0; + uint32_t value; + if (copy_from_user(buf, &buffer[i], sizeof("0xFFFFFFFF\n")+1)) + return -EFAULT; + value = simple_strtoul(buf, NULL, 10); + pkt_count_limit_bo_store(value); + return count; + } + DEVICE_ATTR(pkt_count_limit_bo, S_IRUGO|S_IWUSR, sysfs_pkt_count_limit_bo_show, sysfs_pkt_count_limit_bo_store); + #endif + +///////////////////////////////////////////////////////////////////////////////////////////////////// +///////////////////////////////////////////////////////////////////////////////////////////////////// +///////////////////////////////////////////////////////////////////////////////////////////////////// + + #ifdef __IS_DUAL__ + static ssize_t buspower_show_1(char *buf) + { + if(ifxusb_vbus (&ifxusb_hcd_1.core_if)==1) return sprintf( buf, "1\n" ); + if(ifxusb_vbus (&ifxusb_hcd_1.core_if)==0) return sprintf( buf, "0\n" ); + return sprintf( buf, "UNKNOWN\n" ); + } + static void buspower_store_1(uint32_t value) + { + if (value==1) ifxusb_vbus_on (&ifxusb_hcd_1.core_if); + else if(value==0) ifxusb_vbus_off(&ifxusb_hcd_1.core_if); + } + static ssize_t buspower_show_2(char *buf) + { + if(ifxusb_vbus (&ifxusb_hcd_2.core_if)==1) return sprintf( buf, "1\n" ); + if(ifxusb_vbus (&ifxusb_hcd_2.core_if)==0) return sprintf( buf, "0\n" ); + return sprintf( buf, "UNKNOWN\n" ); + } + static void buspower_store_2(uint32_t value) + { + if (value==1) ifxusb_vbus_on (&ifxusb_hcd_2.core_if); + else if(value==0) ifxusb_vbus_off(&ifxusb_hcd_2.core_if); + } + static ssize_t procfs_buspower_show_1(char *buf, char **start, off_t offset, int count, int *eof, void *data) + { + return buspower_show_1(buf); + } + static ssize_t procfs_buspower_store_1(struct file *file, const char *buffer, unsigned long count, void *data) + { + char buf[10]; + int i = 0; + uint32_t value; + if (copy_from_user(buf, &buffer[i], sizeof("0xFFFFFFFF\n")+1)) + return -EFAULT; + value = simple_strtoul(buf, NULL, 10); + buspower_store_1(value); + return count; + } + static ssize_t procfs_buspower_show_2(char *buf, char **start, off_t offset, int count, int *eof, void *data) + { + return buspower_show_2(buf); + } + static ssize_t procfs_buspower_store_2(struct file *file, const char *buffer, unsigned long count, void *data) + { + char buf[10]; + int i = 0; + uint32_t value; + if (copy_from_user(buf, &buffer[i], sizeof("0xFFFFFFFF\n")+1)) + return -EFAULT; + value = simple_strtoul(buf, NULL, 10); + buspower_store_2(value); + return count; + } + + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_buspower_show_1( struct device *_dev, struct device_attribute *attr,char *buf) + #else + static ssize_t sysfs_buspower_show_1( struct device *_dev,char *buf) + #endif + { + return buspower_show_1(buf); + } + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_buspower_store_1( struct device *_dev, struct device_attribute *attr,const char *buffer, size_t count ) + #else + static ssize_t sysfs_buspower_store_1( struct device *_dev, const char *buffer, size_t count ) + #endif + { + char buf[10]; + int i = 0; + uint32_t value; + if (copy_from_user(buf, &buffer[i], sizeof("0xFFFFFFFF\n")+1)) + return -EFAULT; + value = simple_strtoul(buf, NULL, 10); + buspower_store_1(value); + return count; + } + DEVICE_ATTR(buspower_1, S_IRUGO|S_IWUSR, sysfs_buspower_show_1, sysfs_buspower_store_1); + + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_buspower_show_2( struct device *_dev, struct device_attribute *attr,char *buf) + #else + static ssize_t sysfs_buspower_show_2( struct device *_dev,char *buf) + #endif + { + return buspower_show_2(buf); + } + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_buspower_store_2( struct device *_dev, struct device_attribute *attr,const char *buffer, size_t count ) + #else + static ssize_t sysfs_buspower_store_2( struct device *_dev, const char *buffer, size_t count ) + #endif + { + char buf[10]; + int i = 0; + uint32_t value; + if (copy_from_user(buf, &buffer[i], sizeof("0xFFFFFFFF\n")+1)) + return -EFAULT; + value = simple_strtoul(buf, NULL, 10); + buspower_store_2(value); + return count; + } + DEVICE_ATTR(buspower_2, S_IRUGO|S_IWUSR, sysfs_buspower_show_2, sysfs_buspower_store_2); + #else + static ssize_t buspower_show(char *buf) + { + if(ifxusb_vbus (&ifxusb_hcd.core_if)==1) return sprintf( buf, "1\n" ); + if(ifxusb_vbus (&ifxusb_hcd.core_if)==0) return sprintf( buf, "0\n" ); + return sprintf( buf, "UNKNOWN\n" ); + } + static void buspower_store(uint32_t value) + { + if (value==1) ifxusb_vbus_on (&ifxusb_hcd.core_if); + else if(value==0) ifxusb_vbus_off(&ifxusb_hcd.core_if); + } + static ssize_t procfs_buspower_show(char *buf, char **start, off_t offset, int count, int *eof, void *data) + { + return buspower_show(buf); + } + static ssize_t procfs_buspower_store(struct file *file, const char *buffer, unsigned long count, void *data) + { + char buf[10]; + int i = 0; + uint32_t value; + if (copy_from_user(buf, &buffer[i], sizeof("0xFFFFFFFF\n")+1)) + return -EFAULT; + value = simple_strtoul(buf, NULL, 10); + buspower_store(value); + return count; + } + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_buspower_show( struct device *_dev, struct device_attribute *attr,char *buf) + #else + static ssize_t sysfs_buspower_show( struct device *_dev, char *buf) + #endif + { + return buspower_show(buf); + } + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_buspower_store( struct device *_dev, struct device_attribute *attr,const char *buffer, size_t count ) + #else + static ssize_t sysfs_buspower_store( struct device *_dev, const char *buffer, size_t count ) + #endif + { + char buf[10]; + int i = 0; + uint32_t value; + if (copy_from_user(buf, &buffer[i], sizeof("0xFFFFFFFF\n")+1)) + return -EFAULT; + value = simple_strtoul(buf, NULL, 10); + buspower_store(value); + return count; + } + DEVICE_ATTR(buspower, S_IRUGO|S_IWUSR, sysfs_buspower_show, sysfs_buspower_store); + #endif + +///////////////////////////////////////////////////////////////////////////////////////////////////// +///////////////////////////////////////////////////////////////////////////////////////////////////// +///////////////////////////////////////////////////////////////////////////////////////////////////// + + + #ifdef __IS_DUAL__ + static ssize_t bussuspend_show_1(char *buf) + { + hprt0_data_t val; + val.d32 = ifxusb_rreg(ifxusb_hcd_1.core_if.hprt0); + return sprintf (buf, "Bus Suspend = 0x%x\n", val.b.prtsusp); + } + static ssize_t bussuspend_show_2(char *buf) + { + hprt0_data_t val; + val.d32 = ifxusb_rreg(ifxusb_hcd_2.core_if.hprt0); + return sprintf (buf, "Bus Suspend = 0x%x\n", val.b.prtsusp); + } + + static ssize_t procfs_bussuspend_show_1(char *buf, char **start, off_t offset, int count, int *eof, void *data) + { + return bussuspend_show_1(buf); + } + static ssize_t procfs_bussuspend_show_2(char *buf, char **start, off_t offset, int count, int *eof, void *data) + { + return bussuspend_show_2(buf); + } + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_bussuspend_show_1( struct device *_dev, struct device_attribute *attr,char *buf) + #else + static ssize_t sysfs_bussuspend_show_1( struct device *_dev,char *buf) + #endif + { + return bussuspend_show_1(buf); + } + DEVICE_ATTR(bussuspend_1, S_IRUGO|S_IWUSR, sysfs_bussuspend_show_1, 0); + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_bussuspend_show_2( struct device *_dev, struct device_attribute *attr,char *buf) + #else + static ssize_t sysfs_bussuspend_show_2( struct device *_dev,char *buf) + #endif + { + return bussuspend_show_2(buf); + } + DEVICE_ATTR(bussuspend_2, S_IRUGO|S_IWUSR, sysfs_bussuspend_show_2, 0); + #else + static ssize_t bussuspend_show(char *buf) + { + hprt0_data_t val; + val.d32 = ifxusb_rreg(ifxusb_hcd.core_if.hprt0); + return sprintf (buf, "Bus Suspend = 0x%x\n", val.b.prtsusp); + } + static ssize_t procfs_bussuspend_show(char *buf, char **start, off_t offset, int count, int *eof, void *data) + { + return bussuspend_show(buf); + } + + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_bussuspend_show( struct device *_dev, struct device_attribute *attr,char *buf) + #else + static ssize_t sysfs_bussuspend_show( struct device *_dev, char *buf) + #endif + { + return bussuspend_show(buf); + } + DEVICE_ATTR(bussuspend, S_IRUGO|S_IWUSR, sysfs_bussuspend_show, 0); + #endif + +///////////////////////////////////////////////////////////////////////////////////////////////////// +///////////////////////////////////////////////////////////////////////////////////////////////////// +///////////////////////////////////////////////////////////////////////////////////////////////////// + + #ifdef __IS_DUAL__ + static ssize_t busconnected_show_1(char *buf) + { + hprt0_data_t val; + val.d32 = ifxusb_rreg(ifxusb_hcd_1.core_if.hprt0); + return sprintf (buf, "Bus Connected = 0x%x\n", val.b.prtconnsts); + } + static ssize_t busconnected_show_2(char *buf) + { + hprt0_data_t val; + val.d32 = ifxusb_rreg(ifxusb_hcd_2.core_if.hprt0); + return sprintf (buf, "Bus Connected = 0x%x\n", val.b.prtconnsts); + } + + static ssize_t procfs_busconnected_show_1(char *buf, char **start, off_t offset, int count, int *eof, void *data) + { + return busconnected_show_1(buf); + } + static ssize_t procfs_busconnected_show_2(char *buf, char **start, off_t offset, int count, int *eof, void *data) + { + return busconnected_show_2(buf); + } + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_busconnected_show_1( struct device *_dev, struct device_attribute *attr,char *buf) + #else + static ssize_t sysfs_busconnected_show_1( struct device *_dev,char *buf) + #endif + { + return busconnected_show_1(buf); + } + DEVICE_ATTR(busconnected_1, S_IRUGO|S_IWUSR, sysfs_busconnected_show_1, 0); + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_busconnected_show_2( struct device *_dev, struct device_attribute *attr,char *buf) + #else + static ssize_t sysfs_busconnected_show_2( struct device *_dev,char *buf) + #endif + { + return busconnected_show_2(buf); + } + DEVICE_ATTR(busconnected_2, S_IRUGO|S_IWUSR, sysfs_busconnected_show_2, 0); + #else + static ssize_t busconnected_show(char *buf) + { + hprt0_data_t val; + val.d32 = ifxusb_rreg(ifxusb_hcd.core_if.hprt0); + return sprintf (buf, "Bus Connected = 0x%x\n", val.b.prtconnsts); + } + static ssize_t procfs_busconnected_show(char *buf, char **start, off_t offset, int count, int *eof, void *data) + { + return busconnected_show(buf); + } + + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_busconnected_show( struct device *_dev, struct device_attribute *attr,char *buf) + #else + static ssize_t sysfs_busconnected_show( struct device *_dev, char *buf) + #endif + { + return busconnected_show(buf); + } + DEVICE_ATTR(busconnected, S_IRUGO|S_IWUSR, sysfs_busconnected_show, 0); + #endif + +///////////////////////////////////////////////////////////////////////////////////////////////////// +///////////////////////////////////////////////////////////////////////////////////////////////////// +///////////////////////////////////////////////////////////////////////////////////////////////////// + + #ifdef __IS_DUAL__ + static ssize_t connectspeed_show_1(char *buf) + { + hprt0_data_t val; + val.d32 = ifxusb_rreg(ifxusb_hcd_1.core_if.hprt0); + if( val.b.prtspd ==0) return sprintf (buf, "Bus Speed = High (%d)\n", val.b.prtspd); + if( val.b.prtspd ==1) return sprintf (buf, "Bus Speed = Full (%d)\n", val.b.prtspd); + if( val.b.prtspd ==2) return sprintf (buf, "Bus Speed = Low (%d)\n", val.b.prtspd); + return sprintf (buf, "Bus Speed = Unknown (%d)\n", val.b.prtspd); + } + static ssize_t connectspeed_show_2(char *buf) + { + hprt0_data_t val; + val.d32 = ifxusb_rreg(ifxusb_hcd_2.core_if.hprt0); + if( val.b.prtspd ==0) return sprintf (buf, "Bus Speed = High (%d)\n", val.b.prtspd); + if( val.b.prtspd ==1) return sprintf (buf, "Bus Speed = Full (%d)\n", val.b.prtspd); + if( val.b.prtspd ==2) return sprintf (buf, "Bus Speed = Low (%d)\n", val.b.prtspd); + return sprintf (buf, "Bus Speed = Unknown (%d)\n", val.b.prtspd); + } + + static ssize_t procfs_connectspeed_show_1(char *buf, char **start, off_t offset, int count, int *eof, void *data) + { + return connectspeed_show_1(buf); + } + static ssize_t procfs_connectspeed_show_2(char *buf, char **start, off_t offset, int count, int *eof, void *data) + { + return connectspeed_show_2(buf); + } + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_connectspeed_show_1( struct device *_dev, struct device_attribute *attr,char *buf) + #else + static ssize_t sysfs_connectspeed_show_1( struct device *_dev,char *buf) + #endif + { + return connectspeed_show_1(buf); + } + DEVICE_ATTR(connectspeed_1, S_IRUGO|S_IWUSR, sysfs_connectspeed_show_1, 0); + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_connectspeed_show_2( struct device *_dev, struct device_attribute *attr,char *buf) + #else + static ssize_t sysfs_connectspeed_show_2( struct device *_dev,char *buf) + #endif + { + return connectspeed_show_2(buf); + } + DEVICE_ATTR(connectspeed_2, S_IRUGO|S_IWUSR, sysfs_connectspeed_show_2, 0); + #else + static ssize_t connectspeed_show(char *buf) + { + hprt0_data_t val; + val.d32 = ifxusb_rreg(ifxusb_hcd.core_if.hprt0); + if( val.b.prtspd ==0) return sprintf (buf, "Bus Speed = High (%d)\n", val.b.prtspd); + if( val.b.prtspd ==1) return sprintf (buf, "Bus Speed = Full (%d)\n", val.b.prtspd); + if( val.b.prtspd ==2) return sprintf (buf, "Bus Speed = Low (%d)\n", val.b.prtspd); + return sprintf (buf, "Bus Speed = Unknown (%d)\n", val.b.prtspd); + } + + static ssize_t procfs_connectspeed_show(char *buf, char **start, off_t offset, int count, int *eof, void *data) + { + return connectspeed_show(buf); + } + + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_connectspeed_show( struct device *_dev, struct device_attribute *attr,char *buf) + #else + static ssize_t sysfs_connectspeed_show( struct device *_dev, char *buf) + #endif + { + return connectspeed_show(buf); + } + DEVICE_ATTR(connectspeed, S_IRUGO|S_IWUSR, sysfs_connectspeed_show, 0); + #endif +///////////////////////////////////////////////////////////////////////////////////////////////////// +///////////////////////////////////////////////////////////////////////////////////////////////////// +///////////////////////////////////////////////////////////////////////////////////////////////////// +#endif + + +#ifdef __IS_DEVICE__ +///////////////////////////////////////////////////////////////////////////////////////////////////// +///////////////////////////////////////////////////////////////////////////////////////////////////// +///////////////////////////////////////////////////////////////////////////////////////////////////// + static ssize_t devspeed_show(char *buf) + { + dcfg_data_t val; + val.d32 = ifxusb_rreg(&ifxusb_pcd.core_if.dev_global_regs->dcfg); + if( val.b.devspd ==0) return sprintf (buf, "Dev Speed = High (%d)\n", val.b.devspd); + if( val.b.devspd ==1) return sprintf (buf, "Dev Speed = Full (%d)\n", val.b.devspd); + if( val.b.devspd ==3) return sprintf (buf, "Dev Speed = Full (%d)\n", val.b.devspd); + return sprintf (buf, "Dev Speed = Unknown (%d)\n", val.b.devspd); + } + + static ssize_t procfs_devspeed_show(char *buf, char **start, off_t offset, int count, int *eof, void *data) + { + return devspeed_show(buf); + } + + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_devspeed_show( struct device *_dev, struct device_attribute *attr,char *buf) + #else + static ssize_t sysfs_devspeed_show( struct device *_dev, char *buf) + #endif + { + return devspeed_show(buf); + } + DEVICE_ATTR(devspeed, S_IRUGO|S_IWUSR, sysfs_devspeed_show, 0); + + static ssize_t enumspeed_show(char *buf) + { + dsts_data_t val; + val.d32 = ifxusb_rreg(&ifxusb_pcd.core_if.dev_global_regs->dsts); + if( val.b.enumspd ==0) return sprintf (buf, "Enum Speed = High (%d)\n", val.b.enumspd); + if( val.b.enumspd ==1) return sprintf (buf, "Enum Speed = Full (%d)\n", val.b.enumspd); + if( val.b.enumspd ==2) return sprintf (buf, "Enum Speed = Low (%d)\n", val.b.enumspd); + return sprintf (buf, "Enum Speed = invalid(%d)\n", val.b.enumspd); + } + + static ssize_t procfs_enumspeed_show(char *buf, char **start, off_t offset, int count, int *eof, void *data) + { + return enumspeed_show(buf); + } + + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_enumspeed_show( struct device *_dev, struct device_attribute *attr,char *buf) + #else + static ssize_t sysfs_enumspeed_show( struct device *_dev, char *buf) + #endif + { + return enumspeed_show(buf); + } + DEVICE_ATTR(enumspeed, S_IRUGO|S_IWUSR, sysfs_enumspeed_show, 0); +///////////////////////////////////////////////////////////////////////////////////////////////////// +///////////////////////////////////////////////////////////////////////////////////////////////////// +///////////////////////////////////////////////////////////////////////////////////////////////////// +#endif + + +////////////////////////////////////////////////////////////////////////////////// +#ifdef __ENABLE_DUMP__ + + #ifdef __IS_DUAL__ + static void dump_reg_1(void) + { + ifxusb_dump_registers_h(&ifxusb_hcd_1.core_if); + } + static void dump_reg_2(void) + { + ifxusb_dump_registers_h(&ifxusb_hcd_2.core_if); + } + + static ssize_t procfs_dump_reg_show_1(char *buf, char **start, off_t offset, int count, int *eof, void *data) + { + dump_reg_1(); + return 0; + } + static ssize_t procfs_dump_reg_show_2(char *buf, char **start, off_t offset, int count, int *eof, void *data) + { + dump_reg_2(); + return 0; + } + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_dump_reg_show_1( struct device *_dev, struct device_attribute *attr,char *buf) + #else + static ssize_t sysfs_dump_reg_show_1( struct device *_dev,char *buf) + #endif + { + dump_reg_1(); + return 0; + } + DEVICE_ATTR(dump_reg_h_1, S_IRUGO|S_IWUSR, sysfs_dump_reg_show_1, 0); + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_dump_reg_show_2( struct device *_dev, struct device_attribute *attr,char *buf) + #else + static ssize_t sysfs_dump_reg_show_2( struct device *_dev,char *buf) + #endif + { + dump_reg_2(); + return 0; + } + DEVICE_ATTR(dump_reg_h_2, S_IRUGO|S_IWUSR, sysfs_dump_reg_show_2, 0); + #else + static void dump_reg(void) + { + #ifdef __IS_HOST__ + ifxusb_dump_registers_h(&ifxusb_hcd.core_if); + #endif + #ifdef __IS_DEVICE__ + ifxusb_dump_registers_d(&ifxusb_pcd.core_if); + #endif + } + static ssize_t procfs_dump_reg_show(char *buf, char **start, off_t offset, int count, int *eof, void *data) + { + dump_reg(); + return 0; + } + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_dump_reg_show( struct device *_dev, struct device_attribute *attr,char *buf) + #else + static ssize_t sysfs_dump_reg_show( struct device *_dev,char *buf) + #endif + { + dump_reg(); + return 0; + } + #ifdef __IS_HOST__ + DEVICE_ATTR(dump_reg_h, S_IRUGO|S_IWUSR, sysfs_dump_reg_show, 0); + #else + DEVICE_ATTR(dump_reg_d, S_IRUGO|S_IWUSR, sysfs_dump_reg_show, 0); + #endif + #endif + + +///////////////////////////////////////////////////////////////////////////////////////////////////// +///////////////////////////////////////////////////////////////////////////////////////////////////// +///////////////////////////////////////////////////////////////////////////////////////////////////// + + #ifdef __IS_DUAL__ + static void dump_spram_1(void) + { + ifxusb_dump_spram_h(&ifxusb_hcd_1.core_if); + } + static void dump_spram_2(void) + { + ifxusb_dump_spram_h(&ifxusb_hcd_2.core_if); + } + + static ssize_t procfs_dump_spram_show_1(char *buf, char **start, off_t offset, int count, int *eof, void *data) + { + dump_spram_1(); + return 0; + } + static ssize_t procfs_dump_spram_show_2(char *buf, char **start, off_t offset, int count, int *eof, void *data) + { + dump_spram_2(); + return 0; + } + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_dump_spram_show_1( struct device *_dev, struct device_attribute *attr,char *buf) + #else + static ssize_t sysfs_dump_spram_show_1( struct device *_dev,char *buf) + #endif + { + dump_spram_1(); + return 0; + } + DEVICE_ATTR(dump_spram_h_1, S_IRUGO|S_IWUSR, sysfs_dump_spram_show_1, 0); + + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_dump_spram_show_2( struct device *_dev, struct device_attribute *attr,char *buf) + #else + static ssize_t sysfs_dump_spram_show_2( struct device *_dev,char *buf) + #endif + { + dump_spram_2(); + return 0; + } + DEVICE_ATTR(dump_spram_h_2, S_IRUGO|S_IWUSR, sysfs_dump_spram_show_2, 0); + #else + static void dump_spram(void) + { + #ifdef __IS_HOST__ + ifxusb_dump_spram_h(&ifxusb_hcd.core_if); + #endif + #ifdef __IS_DEVICE__ + ifxusb_dump_spram_d(&ifxusb_pcd.core_if); + #endif + } + static ssize_t procfs_dump_spram_show(char *buf, char **start, off_t offset, int count, int *eof, void *data) + { + dump_spram(); + return 0; + } + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_dump_spram_show( struct device *_dev, struct device_attribute *attr,char *buf) + #else + static ssize_t sysfs_dump_spram_show( struct device *_dev,char *buf) + #endif + { + dump_spram(); + return 0; + } + #ifdef __IS_HOST__ + DEVICE_ATTR(dump_spram_h, S_IRUGO|S_IWUSR, sysfs_dump_spram_show, 0); + #else + DEVICE_ATTR(dump_spram_d, S_IRUGO|S_IWUSR, sysfs_dump_spram_show, 0); + #endif + + #endif +///////////////////////////////////////////////////////////////////////////////////////////////////// +///////////////////////////////////////////////////////////////////////////////////////////////////// +///////////////////////////////////////////////////////////////////////////////////////////////////// + + #ifdef __IS_HOST__ + #ifdef __IS_DUAL__ + static ssize_t procfs_dump_host_state_show_1(char *buf, char **start, off_t offset, int count, int *eof, void *data) + { + ifxhcd_dump_state(&ifxusb_hcd_1); + return 0; + } + static ssize_t procfs_dump_host_state_show_2(char *buf, char **start, off_t offset, int count, int *eof, void *data) + { + ifxhcd_dump_state(&ifxusb_hcd_2); + return 0; + } + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_dump_host_state_show_1( struct device *_dev, struct device_attribute *attr,char *buf) + #else + static ssize_t sysfs_dump_host_state_show_1( struct device *_dev,char *buf) + #endif + { + ifxhcd_dump_state(&ifxusb_hcd_1); + return 0; + } + DEVICE_ATTR(dump_host_state_1, S_IRUGO|S_IWUSR, sysfs_dump_host_state_show_1, 0); + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_dump_host_state_show_2( struct device *_dev, struct device_attribute *attr,char *buf) + #else + static ssize_t sysfs_dump_host_state_show_2( struct device *_dev,char *buf) + #endif + { + ifxhcd_dump_state(&ifxusb_hcd_2); + return 0; + } + DEVICE_ATTR(dump_host_state_2, S_IRUGO|S_IWUSR, sysfs_dump_host_state_show_2, 0); + #else + static ssize_t procfs_dump_host_state_show(char *buf, char **start, off_t offset, int count, int *eof, void *data) + { + ifxhcd_dump_state(&ifxusb_hcd); + return 0; + } + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_dump_host_state_show( struct device *_dev, struct device_attribute *attr,char *buf) + #else + static ssize_t sysfs_dump_host_state_show( struct device *_dev,char *buf) + #endif + { + ifxhcd_dump_state(&ifxusb_hcd); + return 0; + } + DEVICE_ATTR(dump_host_state, S_IRUGO|S_IWUSR, sysfs_dump_host_state_show, 0); + #endif + +///////////////////////////////////////////////////////////////////////////////////////////////////// +///////////////////////////////////////////////////////////////////////////////////////////////////// +///////////////////////////////////////////////////////////////////////////////////////////////////// + + #endif //IS_HOST_ + +#endif //__ENABLE_DUMP__ +///////////////////////////////////////////////////////////////////////////////////////////////////// +///////////////////////////////////////////////////////////////////////////////////////////////////// +#ifdef __IS_HOST__ + static void host_probe(unsigned long _ptr) + { + ifxhcd_hcd_t *ifxhcd = (ifxhcd_hcd_t *)_ptr; + + if(ifxhcd->flags.b.port_connect_status) + { + del_timer(&ifxhcd->host_probe_timer); + del_timer(&ifxhcd->autoprobe_timer); + ifxhcd->power_status = 0; + } + else + { + del_timer(&ifxhcd->autoprobe_timer); + ifxhcd->autoprobe_timer.expires = jiffies + (HZ*ifxhcd->autoprobe_sec); + add_timer(&ifxhcd->autoprobe_timer); + ifxhcd->power_status = 2; + del_timer(&ifxhcd->host_probe_timer); + do_suspend_h(&ifxhcd->core_if); + } + } + + static void host_autoprobe(unsigned long _ptr) + { + ifxhcd_hcd_t *ifxhcd = (ifxhcd_hcd_t *)_ptr; + del_timer(&ifxhcd->host_probe_timer); + ifxhcd->host_probe_timer.function = host_probe; + ifxhcd->host_probe_timer.expires = jiffies + (HZ*ifxhcd->probe_sec); + ifxhcd->host_probe_timer.data = (unsigned long)ifxhcd; + add_timer(&ifxhcd->host_probe_timer); + do_resume_h(&ifxhcd->core_if); + } + + static void suspend_host_store(ifxhcd_hcd_t *ifxhcd , uint32_t value) + { + if(value==2) + { + del_timer(&ifxhcd->autoprobe_timer); + ifxhcd->autoprobe_timer.function = host_autoprobe; + ifxhcd->autoprobe_timer.expires = jiffies + (HZ*ifxhcd->autoprobe_sec); + ifxhcd->autoprobe_timer.data = (unsigned long)ifxhcd; + add_timer(&ifxhcd->autoprobe_timer); + ifxhcd->power_status = 2; + } + else if(value==1) + { + do_suspend_h(&ifxhcd->core_if); + ifxhcd->power_status = 1; + del_timer(&ifxhcd->host_probe_timer); + del_timer(&ifxhcd->autoprobe_timer); + } + else if(value==0) + { + do_resume_h(&ifxhcd->core_if); + ifxhcd->power_status = 0; + del_timer(&ifxhcd->host_probe_timer); + del_timer(&ifxhcd->autoprobe_timer); + } + } + #ifdef __IS_DUAL__ + static ssize_t procfs_suspend_host_2_store(struct file *file, const char *buffer, unsigned long count, void *data) + { + char buf[10]; + int i = 0; + uint32_t value; + if (copy_from_user(buf, &buffer[i], sizeof("0xFFFFFFFF\n")+1)) + return -EFAULT; + value = simple_strtoul(buf, NULL, 10); + suspend_host_store(&ifxusb_hcd_2,value); + return count; + } + + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_suspend_host_2_store( struct device *_dev, struct device_attribute *attr,const char *buffer, size_t count ) + #else + static ssize_t sysfs_suspend_host_2_store( struct device *_dev, const char *buffer, size_t count ) + #endif + { + char buf[10]; + int i = 0; + uint32_t value; + if (copy_from_user(buf, &buffer[i], sizeof("0xFFFFFFFF\n")+1)) + return -EFAULT; + value = simple_strtoul(buf, NULL, 10); + suspend_host_store(&ifxusb_hcd_2,value); + return count; + } + + static ssize_t procfs_suspend_host_1_store(struct file *file, const char *buffer, unsigned long count, void *data) + { + char buf[10]; + int i = 0; + uint32_t value; + if (copy_from_user(buf, &buffer[i], sizeof("0xFFFFFFFF\n")+1)) + return -EFAULT; + value = simple_strtoul(buf, NULL, 10); + suspend_host_store(&ifxusb_hcd_1,value); + return count; + } + + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_suspend_host_1_store( struct device *_dev, struct device_attribute *attr,const char *buffer, size_t count ) + #else + static ssize_t sysfs_suspend_host_1_store( struct device *_dev, const char *buffer, size_t count ) + #endif + { + char buf[10]; + int i = 0; + uint32_t value; + if (copy_from_user(buf, &buffer[i], sizeof("0xFFFFFFFF\n")+1)) + return -EFAULT; + value = simple_strtoul(buf, NULL, 10); + suspend_host_store(&ifxusb_hcd_1,value); + return count; + } + DEVICE_ATTR(suspend_host_2, S_IWUSR,NULL, sysfs_suspend_host_2_store); + DEVICE_ATTR(suspend_host_1, S_IWUSR,NULL, sysfs_suspend_host_1_store); +///////////////////////////////////////////////////////////////////////////////////////////////////// + #else + static ssize_t procfs_suspend_host_store(struct file *file, const char *buffer, unsigned long count, void *data) + { + char buf[10]; + int i = 0; + uint32_t value; + if (copy_from_user(buf, &buffer[i], sizeof("0xFFFFFFFF\n")+1)) + return -EFAULT; + value = simple_strtoul(buf, NULL, 10); + suspend_host_store(&ifxusb_hcd,value); + return count; + } + + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_suspend_host_store( struct device *_dev, struct device_attribute *attr,const char *buffer, size_t count ) + #else + static ssize_t sysfs_suspend_host_store( struct device *_dev, const char *buffer, size_t count ) + #endif + { + char buf[10]; + int i = 0; + uint32_t value; + if (copy_from_user(buf, &buffer[i], sizeof("0xFFFFFFFF\n")+1)) + return -EFAULT; + value = simple_strtoul(buf, NULL, 10); + suspend_host_store(&ifxusb_hcd,value); + return count; + } + DEVICE_ATTR(suspend_host, S_IWUSR,NULL, sysfs_suspend_host_store); + #endif +#endif + +///////////////////////////////////////////////////////////////////////////////////////////////////// +///////////////////////////////////////////////////////////////////////////////////////////////////// +#ifdef __IS_HOST__ + static void probe_host_store(ifxhcd_hcd_t *ifxhcd, uint32_t value) + { + if(ifxhcd->power_status == 1) + { + del_timer(&ifxhcd->host_probe_timer); + ifxhcd->host_probe_timer.function = host_probe; + ifxhcd->host_probe_timer.expires = jiffies + (HZ*ifxhcd->probe_sec); + ifxhcd->host_probe_timer.data = (unsigned long) ifxhcd; + add_timer(&ifxhcd->host_probe_timer); + do_resume_h(&ifxhcd->core_if); + } + } + #ifdef __IS_DUAL__ + static ssize_t probe_host_2_show(char *buf) + { + if(ifxusb_hcd_2.power_status == 0) + return sprintf (buf,"Host 2 power status is ON\n"); + else if(ifxusb_hcd_2.power_status == 1) + return sprintf (buf,"Host 2 power status is Suspend\n"); + else + return sprintf (buf,"Host 2 power status is Auto-probing\n"); + } + static ssize_t probe_host_1_show(char *buf) + { + if(ifxusb_hcd_1.power_status == 0) + return sprintf (buf,"Host 1 power status is ON\n"); + else if(ifxusb_hcd_1.power_status == 1) + return sprintf (buf,"Host 1 power status is Suspend\n"); + else + return sprintf (buf,"Host 1 power status is Auto-probing\n"); + } + static ssize_t procfs_probe_host_2_store(struct file *file, const char *buffer, unsigned long count, void *data) + { + char buf[10]; + int i = 0; + uint32_t value; + if (copy_from_user(buf, &buffer[i], sizeof("0xFFFFFFFF\n")+1)) + return -EFAULT; + value = simple_strtoul(buf, NULL, 10); + probe_host_store(&ifxusb_hcd_2,value); + return count; + } + static ssize_t procfs_probe_host_2_show(char *buf, char **start, off_t offset, int count, int *eof, void *data) + { + return probe_host_2_show(buf); + } + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_probe_host_2_show( struct device *_dev, struct device_attribute *attr,char *buf) + #else + static ssize_t sysfs_probe_host_2_show( struct device *_dev, char *buf) + #endif + { + return probe_host_2_show(buf); + } + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_probe_host_2_store( struct device *_dev, struct device_attribute *attr,const char *buffer, size_t count ) + #else + static ssize_t sysfs_probe_host_2_store( struct device *_dev, const char *buffer, size_t count ) + #endif + { + char buf[10]; + int i = 0; + uint32_t value; + if (copy_from_user(buf, &buffer[i], sizeof("0xFFFFFFFF\n")+1)) + return -EFAULT; + value = simple_strtoul(buf, NULL, 10); + probe_host_store(&ifxusb_hcd_2,value); + return count; + } + + static ssize_t procfs_probe_host_1_store(struct file *file, const char *buffer, unsigned long count, void *data) + { + char buf[10]; + int i = 0; + uint32_t value; + if (copy_from_user(buf, &buffer[i], sizeof("0xFFFFFFFF\n")+1)) + return -EFAULT; + value = simple_strtoul(buf, NULL, 10); + probe_host_store(&ifxusb_hcd_1,value); + return count; + } + static ssize_t procfs_probe_host_1_show(char *buf, char **start, off_t offset, int count, int *eof, void *data) + { + return probe_host_1_show(buf); + } + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_probe_host_1_show( struct device *_dev, struct device_attribute *attr,char *buf) + #else + static ssize_t sysfs_probe_host_1_show( struct device *_dev, char *buf) + #endif + { + return probe_host_1_show(buf); + } + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_probe_host_1_store( struct device *_dev, struct device_attribute *attr,const char *buffer, size_t count ) + #else + static ssize_t sysfs_probe_host_1_store( struct device *_dev, const char *buffer, size_t count ) + #endif + { + char buf[10]; + int i = 0; + uint32_t value; + if (copy_from_user(buf, &buffer[i], sizeof("0xFFFFFFFF\n")+1)) + return -EFAULT; + value = simple_strtoul(buf, NULL, 10); + probe_host_store(&ifxusb_hcd_1,value); + return count; + } + DEVICE_ATTR(probe_host_2, S_IRUGO|S_IWUSR, sysfs_probe_host_2_show, sysfs_probe_host_2_store); + DEVICE_ATTR(probe_host_1, S_IRUGO|S_IWUSR, sysfs_probe_host_1_show, sysfs_probe_host_1_store); +///////////////////////////////////////////////////////////////////////////////////////////////////// + #else + static ssize_t probe_host_show(char *buf) + { + if(ifxusb_hcd.power_status == 0) + return sprintf (buf,"Host power status is ON\n"); + else if(ifxusb_hcd.power_status == 1) + return sprintf (buf,"Host power status is Suspend\n"); + else + return sprintf (buf,"Host power status is Auto-probing\n"); + } + static ssize_t procfs_probe_host_store(struct file *file, const char *buffer, unsigned long count, void *data) + { + char buf[10]; + int i = 0; + uint32_t value; + if (copy_from_user(buf, &buffer[i], sizeof("0xFFFFFFFF\n")+1)) + return -EFAULT; + value = simple_strtoul(buf, NULL, 10); + probe_host_store(&ifxusb_hcd,value); + return count; + } + static ssize_t procfs_probe_host_show(char *buf, char **start, off_t offset, int count, int *eof, void *data) + { + return probe_host_show(buf); + } + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_probe_host_show( struct device *_dev, struct device_attribute *attr,char *buf) + #else + static ssize_t sysfs_probe_host_show( struct device *_dev, char *buf) + #endif + { + return probe_host_show(buf); + } + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_probe_host_store( struct device *_dev, struct device_attribute *attr,const char *buffer, size_t count ) + #else + static ssize_t sysfs_probe_host_store( struct device *_dev, const char *buffer, size_t count ) + #endif + { + char buf[10]; + int i = 0; + uint32_t value; + if (copy_from_user(buf, &buffer[i], sizeof("0xFFFFFFFF\n")+1)) + return -EFAULT; + value = simple_strtoul(buf, NULL, 10); + probe_host_store(&ifxusb_hcd,value); + return count; + } + DEVICE_ATTR(probe_host, S_IRUGO|S_IWUSR, sysfs_probe_host_show, sysfs_probe_host_store); + #endif +#endif +///////////////////////////////////////////////////////////////////////////////////////////////////// +///////////////////////////////////////////////////////////////////////////////////////////////////// +#ifdef __IS_DEVICE__ + static void device_probe(unsigned long _ptr) + { + if(ifxusb_pcd.power_status == 2) + { + del_timer(&ifxusb_pcd.device_autoprobe_timer); + ifxusb_pcd.device_autoprobe_timer.expires = jiffies + (HZ*ifxusb_pcd.autoprobe_sec); + add_timer(&ifxusb_pcd.device_autoprobe_timer); + ifxusb_pcd.power_status = 2; + do_suspend_d(&ifxusb_pcd.core_if); + } + else if(ifxusb_pcd.power_status == 1) + { + do_suspend_d(&ifxusb_pcd.core_if); + ifxusb_pcd.power_status = 1; + } + } + static void device_autoprobe(unsigned long _ptr) + { + init_timer(&ifxusb_pcd.device_probe_timer); + ifxusb_pcd.device_probe_timer.function = device_probe; + ifxusb_pcd.device_probe_timer.expires = jiffies + (HZ*ifxusb_pcd.probe_sec); + add_timer(&ifxusb_pcd.device_probe_timer); + do_resume_d(&ifxusb_pcd.core_if); + } + static void suspend_device_store(uint32_t value) + { + if(value==2) + { + del_timer(&ifxusb_pcd.device_autoprobe_timer); + ifxusb_pcd.device_autoprobe_timer.function = device_autoprobe; + ifxusb_pcd.device_autoprobe_timer.expires = jiffies + (HZ*ifxusb_pcd.autoprobe_sec); + add_timer(&ifxusb_pcd.device_autoprobe_timer); + ifxusb_pcd.power_status = 2; + } + else if(value==1) + { + do_suspend_d(&ifxusb_pcd.core_if); + ifxusb_pcd.power_status = 1; + del_timer(&ifxusb_pcd.device_autoprobe_timer); + del_timer(&ifxusb_pcd.device_probe_timer); + } + else if(value==0) + { + do_resume_d(&ifxusb_pcd.core_if); + ifxusb_pcd.power_status = 0; + del_timer(&ifxusb_pcd.device_autoprobe_timer); + del_timer(&ifxusb_pcd.device_probe_timer); + } + } + static ssize_t procfs_suspend_device_store(struct file *file, const char *buffer, unsigned long count, void *data) + { + char buf[10]; + int i = 0; + uint32_t value; + if (copy_from_user(buf, &buffer[i], sizeof("0xFFFFFFFF\n")+1)) + return -EFAULT; + value = simple_strtoul(buf, NULL, 10); + suspend_device_store(value); + return count; + } + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_suspend_device_store( struct device *_dev, struct device_attribute *attr,const char *buffer, size_t count ) + #else + static ssize_t sysfs_suspend_device_store( struct device *_dev, const char *buffer, size_t count ) + #endif + { + char buf[10]; + int i = 0; + uint32_t value; + if (copy_from_user(buf, &buffer[i], sizeof("0xFFFFFFFF\n")+1)) + return -EFAULT; + value = simple_strtoul(buf, NULL, 10); + suspend_device_store(value); + return count; + } + DEVICE_ATTR(suspend_device, S_IWUSR,NULL,sysfs_suspend_device_store); +#endif +///////////////////////////////////////////////////////////////////////////////////////////////////// +#ifdef __IS_DEVICE__ + static ssize_t probe_device_show(char *buf) + { + if(ifxusb_pcd.power_status == 0) + return sprintf (buf,"Device power status is ON\n"); + else if(ifxusb_pcd.power_status == 1) + return sprintf (buf,"Device power status is Suspend\n"); + else + return printk(buf,"Device power status is Auto-probing\n"); + } + static void probe_device_store(uint32_t value) + { + + if(ifxusb_pcd.power_status == 1) + { + del_timer(&ifxusb_pcd.device_probe_timer); + ifxusb_pcd.device_probe_timer.function = device_probe; + ifxusb_pcd.device_probe_timer.expires = jiffies + (HZ*ifxusb_pcd.probe_sec); + add_timer(&ifxusb_pcd.device_probe_timer); + do_resume_d(&ifxusb_pcd.core_if); + } + } + static ssize_t procfs_probe_device_store(struct file *file, const char *buffer, unsigned long count, void *data) + { + char buf[10]; + int i = 0; + uint32_t value; + if (copy_from_user(buf, &buffer[i], sizeof("0xFFFFFFFF\n")+1)) + return -EFAULT; + value = simple_strtoul(buf, NULL, 10); + probe_device_store(value); + return count; + } + static ssize_t procfs_probe_device_show(char *buf, char **start, off_t offset, int count, int *eof, void *data) + { + return probe_device_show(buf); + } + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_probe_device_show( struct device *_dev, struct device_attribute *attr,char *buf) + #else + static ssize_t sysfs_probe_device_show( struct device *_dev, char *buf) + #endif + { + return probe_device_show(buf); + } + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_probe_device_store( struct device *_dev, struct device_attribute *attr,const char *buffer, size_t count ) + #else + static ssize_t sysfs_probe_device_store( struct device *_dev, const char *buffer, size_t count ) + #endif + { + char buf[10]; + int i = 0; + uint32_t value; + if (copy_from_user(buf, &buffer[i], sizeof("0xFFFFFFFF\n")+1)) + return -EFAULT; + value = simple_strtoul(buf, NULL, 10); + probe_device_store(value); + return count; + } + DEVICE_ATTR(probe_device, S_IRUGO|S_IWUSR, sysfs_probe_device_show, sysfs_probe_device_store); +#endif +///////////////////////////////////////////////////////////////////////////////////////////////////// +///////////////////////////////////////////////////////////////////////////////////////////////////// +#ifdef __IS_HOST__ + #ifdef __IS_DUAL__ + static ssize_t autoprobe_timer2_val_show(char *buf) + { + return sprintf (buf,"Host 2 auto-probe timer is %d second\n",ifxusb_hcd_2.autoprobe_sec); + } + static ssize_t procfs_autoprobe_timer2_val_store(struct file *file, const char *buffer, unsigned long count, void *data) + { + char buf[10]; + int i = 0; + uint32_t value; + if (copy_from_user(buf, &buffer[i], sizeof("0xFFFFFFFF\n")+1)) + return -EFAULT; + value = simple_strtoul(buf, NULL, 10); + if((value > 0)&&(value < 300)) + ifxusb_hcd_2.autoprobe_sec = value; + return count; + } + static ssize_t procfs_autoprobe_timer2_val_show(char *buf, char **start, off_t offset, int count, int *eof, void *data) + { + return autoprobe_timer2_val_show(buf); + } + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_autoprobe_timer2_val_show( struct device *_dev, struct device_attribute *attr,char *buf) + #else + static ssize_t sysfs_autoprobe_timer2_val_show( struct device *_dev, char *buf) + #endif + { + return autoprobe_timer2_val_show(buf); + } + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_autoprobe_timer2_val_store( struct device *_dev, struct device_attribute *attr,const char *buffer, size_t count ) + #else + static ssize_t sysfs_autoprobe_timer2_val_store( struct device *_dev, const char *buffer, size_t count ) + #endif + { + char buf[10]; + int i = 0; + uint32_t value; + if (copy_from_user(buf, &buffer[i], sizeof("0xFFFFFFFF\n")+1)) + return -EFAULT; + value = simple_strtoul(buf, NULL, 10); + if((value > 0)&&(value < 300)) + ifxusb_hcd_2.autoprobe_sec = value; + return count; + } + + static ssize_t autoprobe_timer1_val_show(char *buf) + { + return sprintf (buf,"Host 1 auto-probe timer is %d second\n",ifxusb_hcd_1.autoprobe_sec); + } + static ssize_t procfs_autoprobe_timer1_val_store(struct file *file, const char *buffer, unsigned long count, void *data) + { + char buf[10]; + int i = 0; + uint32_t value; + if (copy_from_user(buf, &buffer[i], sizeof("0xFFFFFFFF\n")+1)) + return -EFAULT; + value = simple_strtoul(buf, NULL, 10); + if((value > 0)&&(value < 300)) + ifxusb_hcd_1.autoprobe_sec = value; + return count; + } + static ssize_t procfs_autoprobe_timer1_val_show(char *buf, char **start, off_t offset, int count, int *eof, void *data) + { + return autoprobe_timer1_val_show(buf); + } + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_autoprobe_timer1_val_show( struct device *_dev, struct device_attribute *attr,char *buf) + #else + static ssize_t sysfs_autoprobe_timer1_val_show( struct device *_dev, char *buf) + #endif + { + return autoprobe_timer1_val_show(buf); + } + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_autoprobe_timer1_val_store( struct device *_dev, struct device_attribute *attr,const char *buffer, size_t count ) + #else + static ssize_t sysfs_autoautoprobe_timer1_val_store( struct device *_dev, const char *buffer, size_t count ) + #endif + { + char buf[10]; + int i = 0; + uint32_t value; + if (copy_from_user(buf, &buffer[i], sizeof("0xFFFFFFFF\n")+1)) + return -EFAULT; + value = simple_strtoul(buf, NULL, 10); + if((value > 0)&&(value < 300)) + ifxusb_hcd_1.autoprobe_sec = value; + return count; + } + + static ssize_t probe_timer2_val_show(char *buf) + { + return sprintf (buf,"Host 2 probe timer is %d second\n",ifxusb_hcd_2.probe_sec); + } + static ssize_t procfs_probe_timer2_val_store(struct file *file, const char *buffer, unsigned long count, void *data) + { + char buf[10]; + int i = 0; + uint32_t value; + if (copy_from_user(buf, &buffer[i], sizeof("0xFFFFFFFF\n")+1)) + return -EFAULT; + value = simple_strtoul(buf, NULL, 10); + if((value > 0)&&(value < 10)) + ifxusb_hcd_2.probe_sec = value; + return count; + } + static ssize_t procfs_probe_timer2_val_show(char *buf, char **start, off_t offset, int count, int *eof, void *data) + { + return probe_timer2_val_show(buf); + } + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_probe_timer2_val_show( struct device *_dev, struct device_attribute *attr,char *buf) + #else + static ssize_t sysfs_probe_timer2_val_show( struct device *_dev, char *buf) + #endif + { + return probe_timer2_val_show(buf); + } + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_probe_timer2_val_store( struct device *_dev, struct device_attribute *attr,const char *buffer, size_t count ) + #else + static ssize_t sysfs_probe_timer2_val_store( struct device *_dev, const char *buffer, size_t count ) + #endif + { + char buf[10]; + int i = 0; + uint32_t value; + if (copy_from_user(buf, &buffer[i], sizeof("0xFFFFFFFF\n")+1)) + return -EFAULT; + value = simple_strtoul(buf, NULL, 10); + if((value > 0)&&(value < 10)) + ifxusb_hcd_2.probe_sec = value; + return count; + } + + static ssize_t probe_timer1_val_show(char *buf) + { + return sprintf (buf,"Host 1 probe timer is %d second\n",ifxusb_hcd_1.probe_sec); + } + static ssize_t procfs_probe_timer1_val_store(struct file *file, const char *buffer, unsigned long count, void *data) + { + char buf[10]; + int i = 0; + uint32_t value; + if (copy_from_user(buf, &buffer[i], sizeof("0xFFFFFFFF\n")+1)) + return -EFAULT; + value = simple_strtoul(buf, NULL, 10); + if((value > 0)&&(value < 10)) + ifxusb_hcd_1.probe_sec = value; + return count; + } + static ssize_t procfs_probe_timer1_val_show(char *buf, char **start, off_t offset, int count, int *eof, void *data) + { + return probe_timer1_val_show(buf); + } + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_probe_timer1_val_show( struct device *_dev, struct device_attribute *attr,char *buf) + #else + static ssize_t sysfs_probe_timer1_val_show( struct device *_dev, char *buf) + #endif + { + return probe_timer1_val_show(buf); + } + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_probe_timer1_val_store( struct device *_dev, struct device_attribute *attr,const char *buffer, size_t count ) + #else + static ssize_t sysfs_probe_timer1_val_store( struct device *_dev, const char *buffer, size_t count ) + #endif + { + char buf[10]; + int i = 0; + uint32_t value; + if (copy_from_user(buf, &buffer[i], sizeof("0xFFFFFFFF\n")+1)) + return -EFAULT; + value = simple_strtoul(buf, NULL, 10); + if((value > 0)&&(value < 10)) + ifxusb_hcd_1.probe_sec = value; + return count; + } + DEVICE_ATTR(probe_timer1_val_h, S_IRUGO|S_IWUSR, sysfs_probe_timer1_val_show, sysfs_probe_timer1_val_store); + DEVICE_ATTR(probe_timer2_val_h, S_IRUGO|S_IWUSR, sysfs_probe_timer2_val_show, sysfs_probe_timer2_val_store); + DEVICE_ATTR(autoprobe_timer1_val_h, S_IRUGO|S_IWUSR, sysfs_autoprobe_timer1_val_show, sysfs_autoprobe_timer1_val_store); + DEVICE_ATTR(autoprobe_timer2_val_h, S_IRUGO|S_IWUSR, sysfs_autoprobe_timer2_val_show, sysfs_autoprobe_timer2_val_store); + #else + static ssize_t autoprobe_timer_val_show(char *buf) + { + return sprintf (buf,"Host auto-probe timer is %d second\n",ifxusb_hcd.autoprobe_sec); + } + static ssize_t procfs_autoprobe_timer_val_store(struct file *file, const char *buffer, unsigned long count, void *data) + { + char buf[10]; + int i = 0; + uint32_t value; + if (copy_from_user(buf, &buffer[i], sizeof("0xFFFFFFFF\n")+1)) + return -EFAULT; + value = simple_strtoul(buf, NULL, 10); + if((value > 0)&&(value < 300)) + ifxusb_hcd.autoprobe_sec = value; + return count; + } + static ssize_t procfs_autoprobe_timer_val_show(char *buf, char **start, off_t offset, int count, int *eof, void *data) + { + return autoprobe_timer_val_show(buf); + } + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_autoprobe_timer_val_show( struct device *_dev, struct device_attribute *attr,char *buf) + #else + static ssize_t sysfs_autoprobe_timer_val_show( struct device *_dev, char *buf) + #endif + { + return autoprobe_timer_val_show(buf); + } + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_autoprobe_timer_val_store( struct device *_dev, struct device_attribute *attr,const char *buffer, size_t count ) + #else + static ssize_t sysfs_autoautoprobe_timer_val_store( struct device *_dev, const char *buffer, size_t count ) + #endif + { + char buf[10]; + int i = 0; + uint32_t value; + if (copy_from_user(buf, &buffer[i], sizeof("0xFFFFFFFF\n")+1)) + return -EFAULT; + value = simple_strtoul(buf, NULL, 10); + if((value > 0)&&(value < 300)) + ifxusb_hcd.autoprobe_sec = value; + return count; + } + static ssize_t probe_timer_val_show(char *buf) + { + return sprintf (buf,"Host probe timer is %d second\n",ifxusb_hcd.probe_sec); + } + static ssize_t procfs_probe_timer_val_store(struct file *file, const char *buffer, unsigned long count, void *data) + { + char buf[10]; + int i = 0; + uint32_t value; + if (copy_from_user(buf, &buffer[i], sizeof("0xFFFFFFFF\n")+1)) + return -EFAULT; + value = simple_strtoul(buf, NULL, 10); + if((value > 0)&&(value < 10)) + ifxusb_hcd.probe_sec = value; + return count; + } + static ssize_t procfs_probe_timer_val_show(char *buf, char **start, off_t offset, int count, int *eof, void *data) + { + return probe_timer_val_show(buf); + } + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_probe_timer_val_show( struct device *_dev, struct device_attribute *attr,char *buf) + #else + static ssize_t sysfs_probe_timer_val_show( struct device *_dev, char *buf) + #endif + { + return probe_timer_val_show(buf); + } + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_probe_timer_val_store( struct device *_dev, struct device_attribute *attr,const char *buffer, size_t count ) + #else + static ssize_t sysfs_probe_timer_val_store( struct device *_dev, const char *buffer, size_t count ) + #endif + { + char buf[10]; + int i = 0; + uint32_t value; + if (copy_from_user(buf, &buffer[i], sizeof("0xFFFFFFFF\n")+1)) + return -EFAULT; + value = simple_strtoul(buf, NULL, 10); + if((value > 0)&&(value < 10)) + ifxusb_hcd.probe_sec = value; + return count; + } + DEVICE_ATTR(probe_timer_val_h, S_IRUGO|S_IWUSR, sysfs_probe_timer_val_show, sysfs_probe_timer_val_store); + DEVICE_ATTR(autoprobe_timer_val_h, S_IRUGO|S_IWUSR, sysfs_autoprobe_timer_val_show, sysfs_autoprobe_timer_val_store); + #endif +#endif +///////////////////////////////////////////////////////////////////////////////////////////////////// +///////////////////////////////////////////////////////////////////////////////////////////////////// +#ifdef __IS_DEVICE__ + static ssize_t autoprobe_timer_val_show(char *buf) + { + return sprintf (buf,"Device auto-probe timer is %d second\n",ifxusb_pcd.autoprobe_sec); + } + static ssize_t procfs_autoprobe_timer_val_store(struct file *file, const char *buffer, unsigned long count, void *data) + { + char buf[10]; + int i = 0; + uint32_t value; + if (copy_from_user(buf, &buffer[i], sizeof("0xFFFFFFFF\n")+1)) + return -EFAULT; + value = simple_strtoul(buf, NULL, 10); + if((value > 0)&&(value < 300)) + ifxusb_pcd.autoprobe_sec = value; + return count; + } + static ssize_t procfs_autoprobe_timer_val_show(char *buf, char **start, off_t offset, int count, int *eof, void *data) + { + return autoprobe_timer_val_show(buf); + } + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_autoprobe_timer_val_show( struct device *_dev, struct device_attribute *attr,char *buf) + #else + static ssize_t sysfs_autoprobe_timer_val_show( struct device *_dev, char *buf) + #endif + { + return autoprobe_timer_val_show(buf); + } + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_autoprobe_timer_val_store( struct device *_dev, struct device_attribute *attr,const char *buffer, size_t count ) + #else + static ssize_t sysfs_autoautoprobe_timer_val_store( struct device *_dev, const char *buffer, size_t count ) + #endif + { + char buf[10]; + int i = 0; + uint32_t value; + if (copy_from_user(buf, &buffer[i], sizeof("0xFFFFFFFF\n")+1)) + return -EFAULT; + value = simple_strtoul(buf, NULL, 10); + if((value > 0)&&(value < 300)) + ifxusb_pcd.autoprobe_sec = value; + return count; + } + static ssize_t probe_timer_val_show(char *buf) + { + return sprintf (buf,"Device probe timer is %d second\n",ifxusb_pcd.probe_sec); + } + static ssize_t procfs_probe_timer_val_store(struct file *file, const char *buffer, unsigned long count, void *data) + { + char buf[10]; + int i = 0; + uint32_t value; + if (copy_from_user(buf, &buffer[i], sizeof("0xFFFFFFFF\n")+1)) + return -EFAULT; + value = simple_strtoul(buf, NULL, 10); + if((value > 0)&&(value < 10)) + ifxusb_pcd.probe_sec = value; + return count; + } + static ssize_t procfs_probe_timer_val_show(char *buf, char **start, off_t offset, int count, int *eof, void *data) + { + return probe_timer_val_show(buf); + } + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_probe_timer_val_show( struct device *_dev, struct device_attribute *attr,char *buf) + #else + static ssize_t sysfs_probe_timer_val_show( struct device *_dev, char *buf) + #endif + { + return probe_timer_val_show(buf); + } + #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + static ssize_t sysfs_probe_timer_val_store( struct device *_dev, struct device_attribute *attr,const char *buffer, size_t count ) + #else + static ssize_t sysfs_probe_timer_val_store( struct device *_dev, const char *buffer, size_t count ) + #endif + { + char buf[10]; + int i = 0; + uint32_t value; + if (copy_from_user(buf, &buffer[i], sizeof("0xFFFFFFFF\n")+1)) + return -EFAULT; + value = simple_strtoul(buf, NULL, 10); + if((value > 0)&&(value < 10)) + ifxusb_pcd.probe_sec = value; + return count; + } + DEVICE_ATTR(probe_timer_val_d, S_IRUGO|S_IWUSR, sysfs_probe_timer_val_show, sysfs_probe_timer_val_store); + DEVICE_ATTR(autoprobe_timer_val_d, S_IRUGO|S_IWUSR, sysfs_autoprobe_timer_val_show, sysfs_autoprobe_timer_val_store); +#endif +////////////////////////////////////////////////////////////////////////////////// +////////////////////////////////////////////////////////////////////////////////// + +static int ifx_proc_addproc(char *funcname, read_proc_t *hookfuncr, write_proc_t *hookfuncw); +static void ifx_proc_delproc(char *funcname); + +////////////////////////////////////////////////////////////////////////////////// + +#if defined(__IS_HOST__) && defined(__HOST_COC__) + #ifdef __IS_DUAL__ + static IFX_PMCU_MODULE_DEP_t depListUSBHost_1= + { + 1, + { + {IFX_PMCU_MODULE_CPU, IFX_PMCU_STATE_D0, IFX_PMCU_STATE_D0D3, IFX_PMCU_STATE_D0D3, IFX_PMCU_STATE_D0D3} + } + }; + static IFX_PMCU_MODULE_DEP_t depListUSBHost_2= + { + 1, + { + {IFX_PMCU_MODULE_CPU, IFX_PMCU_STATE_D0, IFX_PMCU_STATE_D0D3, IFX_PMCU_STATE_D0D3, IFX_PMCU_STATE_D0D3} + } + }; + // This functions returns the current power state of the module + static IFX_PMCU_RETURN_t + ifx_usbhost_stateGet_1(IFX_PMCU_STATE_t *pmcuModState) { + printk(KERN_DEBUG "ifx_usbhost_stateGet_1 is called\n"); + if(ifxusb_hcd_1.power_status == 0){ + printk(KERN_DEBUG "current power state of USB Host #1 is D0\n"); + *pmcuModState = IFX_PMCU_STATE_D0; // set here the right value + } + else if(ifxusb_hcd_1.power_status == 1){ + printk(KERN_DEBUG "current power state of USB Host #1 is D3 (Suspend)\n"); + *pmcuModState = IFX_PMCU_STATE_D3; // set here the right value + } + else if(ifxusb_hcd_1.power_status == 2){ + printk(KERN_DEBUG "current power state of USB Host #1 is D3 (Auto-Probing)\n"); + *pmcuModState = IFX_PMCU_STATE_D3; // set here the right value + } + else{ + printk(KERN_DEBUG "current power state of USB Host #1 is unknown (%d)\n",ifxusb_hcd_1.power_status); + *pmcuModState = IFX_PMCU_STATE_INVALID; // must be set to INVALID + } + return IFX_PMCU_RETURN_SUCCESS; + } + static IFX_PMCU_RETURN_t + ifx_usbhost_stateGet_2(IFX_PMCU_STATE_t *pmcuModState) { + printk(KERN_DEBUG "ifx_usbhost_stateGet_2 is called\n"); + if(ifxusb_hcd_2.power_status == 0){ + printk(KERN_DEBUG "current power state of USB Host #2 is D0\n"); + *pmcuModState = IFX_PMCU_STATE_D0; // set here the right value + } + else if(ifxusb_hcd_2.power_status == 1){ + printk(KERN_DEBUG "current power state of USB Host #2 is D3 (Suspend)\n"); + *pmcuModState = IFX_PMCU_STATE_D3; // set here the right value + } + else if(ifxusb_hcd_2.power_status == 2){ + printk(KERN_DEBUG "current power state of USB Host #2 is D3 (Auto-Probing)\n"); + *pmcuModState = IFX_PMCU_STATE_D3; // set here the right value + } + else{ + printk(KERN_DEBUG "current power state of USB Host #2 is unknown (%d)\n",ifxusb_hcd_2.power_status); + *pmcuModState = IFX_PMCU_STATE_INVALID; // must be set to INVALID + } + return IFX_PMCU_RETURN_SUCCESS; + } + + + // The function should be used to enable/disable the module specific power saving methods + static IFX_PMCU_RETURN_t + ifx_usbhost_pwrFeatureSwitch_1(IFX_PMCU_PWR_STATE_ENA_t pmcuPwrStateEna) + { + if (pmcuPwrStateEna == IFX_PMCU_PWR_STATE_ON) { + suspend_host_store(&ifxusb_hcd_1, 0); + return IFX_PMCU_RETURN_SUCCESS; + } + if (pmcuPwrStateEna == IFX_PMCU_PWR_STATE_OFF) { + suspend_host_store(&ifxusb_hcd_1, 1); + return IFX_PMCU_RETURN_SUCCESS; + } + return IFX_PMCU_RETURN_SUCCESS; + } + static IFX_PMCU_RETURN_t + ifx_usbhost_pwrFeatureSwitch_2(IFX_PMCU_PWR_STATE_ENA_t pmcuPwrStateEna) + { + if (pmcuPwrStateEna == IFX_PMCU_PWR_STATE_ON) { + suspend_host_store(&ifxusb_hcd_2, 0); + return IFX_PMCU_RETURN_SUCCESS; + } + if (pmcuPwrStateEna == IFX_PMCU_PWR_STATE_OFF) { + suspend_host_store(&ifxusb_hcd_2, 1); + return IFX_PMCU_RETURN_SUCCESS; + } + return IFX_PMCU_RETURN_SUCCESS; + } + + // This function should be used to do all the necessary clean-up's before a the real + // power state change is initiated; e.g. flush all serial buffers inside the UART before + // the frequency will be changed. + static IFX_PMCU_RETURN_t + ifx_usbhost_preChange_1(IFX_PMCU_MODULE_t pmcuModule, IFX_PMCU_STATE_t newState, IFX_PMCU_STATE_t oldState) + { + printk(KERN_DEBUG "ifx_usbhost_preChange_1 is called\n"); + return IFX_PMCU_RETURN_SUCCESS; + } + static IFX_PMCU_RETURN_t + ifx_usbhost_preChange_2(IFX_PMCU_MODULE_t pmcuModule, IFX_PMCU_STATE_t newState, IFX_PMCU_STATE_t oldState) + { + printk(KERN_DEBUG "ifx_usbhost_preChange_2 is called\n"); + return IFX_PMCU_RETURN_SUCCESS; + } + + + // This function initiate the real power state change. The module should do all the necessary + // adpations to the new state. + static IFX_PMCU_RETURN_t + ifx_usbhost_stateChange_1(IFX_PMCU_STATE_t newState) + { + printk(KERN_DEBUG "ifx_usbhost_stateChange_1 is called\n"); + if (newState == IFX_PMCU_STATE_D0) { + suspend_host_store(&ifxusb_hcd_1, 0); + return IFX_PMCU_RETURN_SUCCESS; + } + if (newState == IFX_PMCU_STATE_D1) { + suspend_host_store(&ifxusb_hcd_1, 1); + return IFX_PMCU_RETURN_SUCCESS; + } + if (newState == IFX_PMCU_STATE_D2) { + suspend_host_store(&ifxusb_hcd_1, 1); + return IFX_PMCU_RETURN_SUCCESS; + } + if (newState == IFX_PMCU_STATE_D3) { + suspend_host_store(&ifxusb_hcd_1, 1); + return IFX_PMCU_RETURN_SUCCESS; + } + return IFX_PMCU_RETURN_SUCCESS; + } + static IFX_PMCU_RETURN_t + ifx_usbhost_stateChange_2(IFX_PMCU_STATE_t newState) + { + printk(KERN_DEBUG "ifx_usbhost_stateChange_2 is called\n"); + if (newState == IFX_PMCU_STATE_D0) { + suspend_host_store(&ifxusb_hcd_2, 0); + return IFX_PMCU_RETURN_SUCCESS; + } + if (newState == IFX_PMCU_STATE_D1) { + suspend_host_store(&ifxusb_hcd_2, 1); + return IFX_PMCU_RETURN_SUCCESS; + } + if (newState == IFX_PMCU_STATE_D2) { + suspend_host_store(&ifxusb_hcd_2, 1); + return IFX_PMCU_RETURN_SUCCESS; + } + if (newState == IFX_PMCU_STATE_D3) { + suspend_host_store(&ifxusb_hcd_2, 1); + return IFX_PMCU_RETURN_SUCCESS; + } + return IFX_PMCU_RETURN_SUCCESS; + } + + // This function should be used to do all the necessary post processing after a the real + // power state change was initiated. + static IFX_PMCU_RETURN_t + ifx_usbhost_postChange_1(IFX_PMCU_MODULE_t pmcuModule, IFX_PMCU_STATE_t newState, IFX_PMCU_STATE_t oldState) + { + printk(KERN_DEBUG "ifx_usbhost_postChange_1 is called\n"); + return IFX_PMCU_RETURN_SUCCESS; + } + static IFX_PMCU_RETURN_t + ifx_usbhost_postChange_2(IFX_PMCU_MODULE_t pmcuModule, IFX_PMCU_STATE_t newState, IFX_PMCU_STATE_t oldState) + { + printk(KERN_DEBUG "ifx_usbhost_postChange_2 is called\n"); + return IFX_PMCU_RETURN_SUCCESS; + } + #else + static IFX_PMCU_MODULE_DEP_t depListUSBHost= + { + 1, + { + {IFX_PMCU_MODULE_CPU, IFX_PMCU_STATE_D0, IFX_PMCU_STATE_D0D3, IFX_PMCU_STATE_D0D3, IFX_PMCU_STATE_D0D3} + } + }; + // This functions returns the current power state of the module + static IFX_PMCU_RETURN_t + ifx_usbhost_stateGet(IFX_PMCU_STATE_t *pmcuModState) { + printk(KERN_DEBUG "ifx_usbhost_stateGet is called\n"); + if(ifxusb_hcd.power_status == 0){ + printk(KERN_DEBUG "current power state of USB Host is D0\n"); + *pmcuModState = IFX_PMCU_STATE_D0; // set here the right value + } + else if(ifxusb_hcd.power_status == 1){ + printk(KERN_DEBUG "current power state of USB Host is D3 (Suspend)\n"); + *pmcuModState = IFX_PMCU_STATE_D3; // set here the right value + } + else if(ifxusb_hcd.power_status == 2){ + printk(KERN_DEBUG "current power state of USB Host is D3 (Auto-Probing)\n"); + *pmcuModState = IFX_PMCU_STATE_D3; // set here the right value + } + else{ + printk(KERN_DEBUG "current power state of USB Host is unknown (%d)\n",ifxusb_hcd.power_status); + *pmcuModState = IFX_PMCU_STATE_INVALID; // must be set to INVALID + } + return IFX_PMCU_RETURN_SUCCESS; + } + // The function should be used to enable/disable the module specific power saving methods + static IFX_PMCU_RETURN_t + ifx_usbhost_pwrFeatureSwitch(IFX_PMCU_PWR_STATE_ENA_t pmcuPwrStateEna) + { + if (pmcuPwrStateEna == IFX_PMCU_PWR_STATE_ON) { + suspend_host_store(&ifxusb_hcd, 0); + return IFX_PMCU_RETURN_SUCCESS; + } + if (pmcuPwrStateEna == IFX_PMCU_PWR_STATE_OFF) { + suspend_host_store(&ifxusb_hcd, 1); + return IFX_PMCU_RETURN_SUCCESS; + } + return IFX_PMCU_RETURN_SUCCESS; + } + + // This function should be used to do all the necessary clean-up's before a the real + // power state change is initiated; e.g. flush all serial buffers inside the UART before + // the frequency will be changed. + static IFX_PMCU_RETURN_t + ifx_usbhost_preChange(IFX_PMCU_MODULE_t pmcuModule, IFX_PMCU_STATE_t newState, IFX_PMCU_STATE_t oldState) + { + printk(KERN_DEBUG "ifx_usbhost_preChange is called\n"); + return IFX_PMCU_RETURN_SUCCESS; + } + + + // This function initiate the real power state change. The module should do all the necessary + // adpations to the new state. + static IFX_PMCU_RETURN_t + ifx_usbhost_stateChange(IFX_PMCU_STATE_t newState) + { + printk(KERN_DEBUG "ifx_usbhost_stateChange is called\n"); + if (newState == IFX_PMCU_STATE_D0) { + suspend_host_store(&ifxusb_hcd, 0); + return IFX_PMCU_RETURN_SUCCESS; + } + if (newState == IFX_PMCU_STATE_D1) { + suspend_host_store(&ifxusb_hcd, 1); + return IFX_PMCU_RETURN_SUCCESS; + } + if (newState == IFX_PMCU_STATE_D2) { + suspend_host_store(&ifxusb_hcd, 1); + return IFX_PMCU_RETURN_SUCCESS; + } + if (newState == IFX_PMCU_STATE_D3) { + suspend_host_store(&ifxusb_hcd, 1); + return IFX_PMCU_RETURN_SUCCESS; + } + return IFX_PMCU_RETURN_SUCCESS; + } + + // This function should be used to do all the necessary post processing after a the real + // power state change was initiated. + static IFX_PMCU_RETURN_t + ifx_usbhost_postChange(IFX_PMCU_MODULE_t pmcuModule, IFX_PMCU_STATE_t newState, IFX_PMCU_STATE_t oldState) + { + printk(KERN_DEBUG "ifx_usbhost_postChange is called\n"); + return IFX_PMCU_RETURN_SUCCESS; + } + #endif +#endif +#if defined(__IS_DEVICE__) && defined(__GADGET_COC__) + static IFX_PMCU_MODULE_DEP_t depListUSBGadget= + { + 1, + { + {IFX_PMCU_MODULE_CPU, IFX_PMCU_STATE_D0, IFX_PMCU_STATE_D0D3, IFX_PMCU_STATE_D0D3, IFX_PMCU_STATE_D0D3} + } + }; + // This functions returns the current power state of the module + static IFX_PMCU_RETURN_t + ifx_usbgadget_stateGet(IFX_PMCU_STATE_t *pmcuModState) { + printk(KERN_DEBUG "ifx_usbgadget_stateGet is called\n"); + if(ifxusb_pcd.power_status == 0){ + printk(KERN_DEBUG "current power state of USB Gadget is D0\n"); + *pmcuModState = IFX_PMCU_STATE_D0; // set here the right value + } + else if(ifxusb_pcd.power_status == 1){ + printk(KERN_DEBUG "current power state of USB Gadget is D3 (Suspend)\n"); + *pmcuModState = IFX_PMCU_STATE_D3; // set here the right value + } + else if(ifxusb_pcd.power_status == 2){ + printk(KERN_DEBUG "current power state of USB Gadget is D3 (Auto-Probing)\n"); + *pmcuModState = IFX_PMCU_STATE_D3; // set here the right value + } + else{ + printk(KERN_DEBUG "current power state of USB Gadget is unknown (%d)\n",ifxusb_pcd.power_status); + *pmcuModState = IFX_PMCU_STATE_INVALID; // must be set to INVALID + } + return IFX_PMCU_RETURN_SUCCESS; + } + // The function should be used to enable/disable the module specific power saving methods + static IFX_PMCU_RETURN_t + ifx_usbgadget_pwrFeatureSwitch(IFX_PMCU_PWR_STATE_ENA_t pmcuPwrStateEna) + { + if (pmcuPwrStateEna == IFX_PMCU_PWR_STATE_ON) { + suspend_device_store(0); + return IFX_PMCU_RETURN_SUCCESS; + } + if (pmcuPwrStateEna == IFX_PMCU_PWR_STATE_OFF) { + suspend_device_store(1); + return IFX_PMCU_RETURN_SUCCESS; + } + return IFX_PMCU_RETURN_SUCCESS; + } + + // This function should be used to do all the necessary clean-up's before a the real + // power state change is initiated; e.g. flush all serial buffers inside the UART before + // the frequency will be changed. + static IFX_PMCU_RETURN_t + ifx_usbgadget_preChange(IFX_PMCU_MODULE_t pmcuModule, IFX_PMCU_STATE_t newState, IFX_PMCU_STATE_t oldState) + { + printk(KERN_DEBUG "ifx_usbgadget_preChange is called\n"); + return IFX_PMCU_RETURN_SUCCESS; + } + + + // This function initiate the real power state change. The module should do all the necessary + // adpations to the new state. + static IFX_PMCU_RETURN_t + ifx_usbgadget_stateChange(IFX_PMCU_STATE_t newState) + { + printk(KERN_DEBUG "ifx_usbgadget_stateChange is called\n"); + if (newState == IFX_PMCU_STATE_D0) { + suspend_device_store(0); + return IFX_PMCU_RETURN_SUCCESS; + } + if (newState == IFX_PMCU_STATE_D1) { + suspend_device_store(1); + return IFX_PMCU_RETURN_SUCCESS; + } + if (newState == IFX_PMCU_STATE_D2) { + suspend_device_store(1); + return IFX_PMCU_RETURN_SUCCESS; + } + if (newState == IFX_PMCU_STATE_D3) { + suspend_device_store(1); + return IFX_PMCU_RETURN_SUCCESS; + } + return IFX_PMCU_RETURN_SUCCESS; + } + + // This function should be used to do all the necessary post processing after a the real + // power state change was initiated. + static IFX_PMCU_RETURN_t + ifx_usbgadget_postChange(IFX_PMCU_MODULE_t pmcuModule, IFX_PMCU_STATE_t newState, IFX_PMCU_STATE_t oldState) + { + printk(KERN_DEBUG "ifx_usbgadget_postChange is called\n"); + return IFX_PMCU_RETURN_SUCCESS; + } +#endif + + +/*! + \brief This function create the sysfs and procfs entries + \param[in] _dev Pointer of device structure, if applied + */ +#ifdef __IS_HOST__ +void ifxusb_attr_create_h (void *_dev) +#else +void ifxusb_attr_create_d (void *_dev) +#endif +{ + int error; + + struct device *dev = (struct device *) _dev; + + IFX_DEBUGPL(DBG_ENTRY, "%s() %d\n", __func__, __LINE__ ); + + error = ifx_proc_addproc("dbglevel", procfs_dbglevel_show, procfs_dbglevel_store); + #ifdef __IS_HOST__ + error = device_create_file(dev, &dev_attr_dbglevel_h); + #else + error = device_create_file(dev, &dev_attr_dbglevel_d); + #endif + + #ifdef __IS_HOST__ + #ifdef __IS_DUAL__ + error = ifx_proc_addproc("dump_params_1", procfs_dump_params_show_1, NULL); + error = ifx_proc_addproc("dump_params_2", procfs_dump_params_show_2, NULL); + error = device_create_file(dev, &dev_attr_dump_params_h_1); + error = device_create_file(dev, &dev_attr_dump_params_h_2); + + error = ifx_proc_addproc("mode_1", procfs_mode_show_1, NULL); + error = ifx_proc_addproc("mode_2", procfs_mode_show_2, NULL); + error = device_create_file(dev, &dev_attr_mode_h_1); + error = device_create_file(dev, &dev_attr_mode_h_2); + #else + error = ifx_proc_addproc("dump_params", procfs_dump_params_show, NULL); + error = device_create_file(dev, &dev_attr_dump_params_h); + error = ifx_proc_addproc("mode", procfs_mode_show, NULL); + error = device_create_file(dev, &dev_attr_mode_h); + #endif + #else + error = ifx_proc_addproc("dump_params", procfs_dump_params_show, NULL); + error = device_create_file(dev, &dev_attr_dump_params_d); + + error = ifx_proc_addproc("mode", procfs_mode_show, NULL); + error = device_create_file(dev, &dev_attr_mode_d); + #endif + + #ifdef __IS_HOST__ + error = ifx_proc_addproc("version", procfs_version_show, NULL); + error = device_create_file(dev, &dev_attr_version_h); + #else + error = ifx_proc_addproc("version", procfs_version_show, NULL); + error = device_create_file(dev, &dev_attr_version_d); + #endif + + + #ifdef __IS_HOST__ + #ifdef __IS_DUAL__ + error = ifx_proc_addproc("pkt_count_limit_bi_1", procfs_pkt_count_limit_bi_show_1, procfs_pkt_count_limit_bi_store_1); + error = ifx_proc_addproc("pkt_count_limit_bo_1", procfs_pkt_count_limit_bo_show_1, procfs_pkt_count_limit_bo_store_1); + error = ifx_proc_addproc("pkt_count_limit_bi_2", procfs_pkt_count_limit_bi_show_2, procfs_pkt_count_limit_bi_store_2); + error = ifx_proc_addproc("pkt_count_limit_bo_2", procfs_pkt_count_limit_bo_show_2, procfs_pkt_count_limit_bo_store_2); + error = ifx_proc_addproc("bandwidth_hs_1", procfs_bandwidth_hs_show_1, procfs_bandwidth_hs_store_1); + error = ifx_proc_addproc("bandwidth_fs_1", procfs_bandwidth_fs_show_1, procfs_bandwidth_fs_store_1); + error = ifx_proc_addproc("bandwidth_ls_1", procfs_bandwidth_ls_show_1, procfs_bandwidth_ls_store_1); + error = ifx_proc_addproc("bandwidth_hs_2", procfs_bandwidth_hs_show_2, procfs_bandwidth_hs_store_2); + error = ifx_proc_addproc("bandwidth_fs_2", procfs_bandwidth_fs_show_2, procfs_bandwidth_fs_store_2); + error = ifx_proc_addproc("bandwidth_ls_2", procfs_bandwidth_ls_show_2, procfs_bandwidth_ls_store_2); + error = device_create_file(dev, &dev_attr_pkt_count_limit_bi_1); + error = device_create_file(dev, &dev_attr_pkt_count_limit_bo_1); + error = device_create_file(dev, &dev_attr_pkt_count_limit_bi_2); + error = device_create_file(dev, &dev_attr_pkt_count_limit_bo_2); + error = device_create_file(dev, &dev_attr_bandwidth_hs_1); + error = device_create_file(dev, &dev_attr_bandwidth_fs_1); + error = device_create_file(dev, &dev_attr_bandwidth_ls_1); + error = device_create_file(dev, &dev_attr_bandwidth_hs_2); + error = device_create_file(dev, &dev_attr_bandwidth_fs_2); + error = device_create_file(dev, &dev_attr_bandwidth_ls_2); + #else + error = ifx_proc_addproc("pkt_count_limit_bi", procfs_pkt_count_limit_bi_show, procfs_pkt_count_limit_bi_store); + error = ifx_proc_addproc("pkt_count_limit_bo", procfs_pkt_count_limit_bo_show, procfs_pkt_count_limit_bo_store); + error = ifx_proc_addproc("bandwidth_hs", procfs_bandwidth_hs_show, procfs_bandwidth_hs_store); + error = ifx_proc_addproc("bandwidth_fs", procfs_bandwidth_fs_show, procfs_bandwidth_fs_store); + error = ifx_proc_addproc("bandwidth_ls", procfs_bandwidth_ls_show, procfs_bandwidth_ls_store); + error = device_create_file(dev, &dev_attr_pkt_count_limit_bi); + error = device_create_file(dev, &dev_attr_pkt_count_limit_bo); + error = device_create_file(dev, &dev_attr_bandwidth_hs); + error = device_create_file(dev, &dev_attr_bandwidth_fs); + error = device_create_file(dev, &dev_attr_bandwidth_ls); + #endif + + #ifdef __IS_DUAL__ + error = ifx_proc_addproc("buspower_1", procfs_buspower_show_1, procfs_buspower_store_1); + error = ifx_proc_addproc("buspower_2", procfs_buspower_show_2, procfs_buspower_store_2); + error = device_create_file(dev, &dev_attr_buspower_1); + error = device_create_file(dev, &dev_attr_buspower_2); + #else + error = ifx_proc_addproc("buspower", procfs_buspower_show, procfs_buspower_store); + error = device_create_file(dev, &dev_attr_buspower); + #endif + + #ifdef __IS_DUAL__ + error = ifx_proc_addproc("bussuspend_1", procfs_bussuspend_show_1, NULL); + error = ifx_proc_addproc("bussuspend_2", procfs_bussuspend_show_2, NULL); + error = device_create_file(dev, &dev_attr_bussuspend_1); + error = device_create_file(dev, &dev_attr_bussuspend_2); + #else + error = ifx_proc_addproc("bussuspend", procfs_bussuspend_show, NULL); + error = device_create_file(dev, &dev_attr_bussuspend); + #endif + + #ifdef __IS_DUAL__ + error = ifx_proc_addproc("busconnected_1", procfs_busconnected_show_1, NULL); + error = ifx_proc_addproc("busconnected_2", procfs_busconnected_show_2, NULL); + error = device_create_file(dev, &dev_attr_busconnected_1); + error = device_create_file(dev, &dev_attr_busconnected_2); + #else + error = ifx_proc_addproc("busconnected", procfs_busconnected_show, NULL); + error = device_create_file(dev, &dev_attr_busconnected); + #endif + + #ifdef __IS_DUAL__ + error = ifx_proc_addproc("connectspeed_1", procfs_connectspeed_show_1, NULL); + error = ifx_proc_addproc("connectspeed_2", procfs_connectspeed_show_2, NULL); + error = device_create_file(dev, &dev_attr_connectspeed_1); + error = device_create_file(dev, &dev_attr_connectspeed_2); + #else + error = ifx_proc_addproc("connectspeed", procfs_connectspeed_show, NULL); + error = device_create_file(dev, &dev_attr_connectspeed); + #endif + #endif + + #ifdef __IS_DEVICE__ + error = ifx_proc_addproc("devspeed", procfs_devspeed_show, NULL); + error = device_create_file(dev, &dev_attr_devspeed); + error = ifx_proc_addproc("enumspeed", procfs_enumspeed_show, NULL); + error = device_create_file(dev, &dev_attr_enumspeed); + #endif + + ////////////////////////////////////////////////////// + #ifdef __ENABLE_DUMP__ + + #ifdef __IS_HOST__ + #ifdef __IS_DUAL__ + error = ifx_proc_addproc("dump_reg_1", procfs_dump_reg_show_1, NULL); + error = ifx_proc_addproc("dump_reg_2", procfs_dump_reg_show_2, NULL); + error = device_create_file(dev, &dev_attr_dump_reg_h_1); + error = device_create_file(dev, &dev_attr_dump_reg_h_2); + #else + error = ifx_proc_addproc("dump_reg", procfs_dump_reg_show, NULL); + error = device_create_file(dev, &dev_attr_dump_reg_h); + #endif + + #ifdef __IS_DUAL__ + error = ifx_proc_addproc("dump_spram_1", procfs_dump_spram_show_1, NULL); + error = ifx_proc_addproc("dump_spram_2", procfs_dump_spram_show_2, NULL); + error = device_create_file(dev, &dev_attr_dump_spram_h_1); + error = device_create_file(dev, &dev_attr_dump_spram_h_2); + #else + error = ifx_proc_addproc("dump_spram", procfs_dump_spram_show, NULL); + error = device_create_file(dev, &dev_attr_dump_spram_h); + #endif + + #ifdef __IS_DUAL__ + error = ifx_proc_addproc("dump_host_state_1", procfs_dump_host_state_show_1, NULL); + error = ifx_proc_addproc("dump_host_state_2", procfs_dump_host_state_show_2, NULL); + error = device_create_file(dev, &dev_attr_dump_host_state_1); + error = device_create_file(dev, &dev_attr_dump_host_state_2); + #else + error = ifx_proc_addproc("dump_host_state", procfs_dump_host_state_show, NULL); + error = device_create_file(dev, &dev_attr_dump_host_state); + #endif + #else + error = ifx_proc_addproc("dump_reg", procfs_dump_reg_show, NULL); + error = device_create_file(dev, &dev_attr_dump_reg_d); + error = ifx_proc_addproc("dump_spram", procfs_dump_spram_show, NULL); + error = device_create_file(dev, &dev_attr_dump_spram_d); + #endif + #endif //__ENABLE_DUMP__ + ////////////////////////////////////////////////////// +#ifdef __IS_HOST__ + #ifdef __IS_DUAL__ + error = ifx_proc_addproc("suspend_host_1",NULL, procfs_suspend_host_1_store); + error = device_create_file(dev, &dev_attr_suspend_host_1); + + error = ifx_proc_addproc("probe_host_1", procfs_probe_host_1_show, procfs_probe_host_1_store); + error = device_create_file(dev, &dev_attr_probe_host_1); + + error = ifx_proc_addproc("suspend_host_2",NULL, procfs_suspend_host_2_store); + error = device_create_file(dev, &dev_attr_suspend_host_2); + + error = ifx_proc_addproc("probe_host_2", procfs_probe_host_2_show, procfs_probe_host_2_store); + error = device_create_file(dev, &dev_attr_probe_host_2); + + error = ifx_proc_addproc("probe_timer1", procfs_probe_timer1_val_show, procfs_probe_timer1_val_store); + error = device_create_file(dev, &dev_attr_probe_timer1_val_h); + + error = ifx_proc_addproc("probe_timer2", procfs_probe_timer2_val_show, procfs_probe_timer2_val_store); + error = device_create_file(dev, &dev_attr_probe_timer2_val_h); + + error = ifx_proc_addproc("autoprobe_timer1", procfs_autoprobe_timer1_val_show, procfs_autoprobe_timer1_val_store); + error = device_create_file(dev, &dev_attr_autoprobe_timer1_val_h); + + error = ifx_proc_addproc("autoprobe_timer2", procfs_autoprobe_timer2_val_show, procfs_autoprobe_timer2_val_store); + error = device_create_file(dev, &dev_attr_autoprobe_timer2_val_h); + #else + error = ifx_proc_addproc("suspend_host",NULL, procfs_suspend_host_store); + error = device_create_file(dev, &dev_attr_suspend_host); + + error = ifx_proc_addproc("probe_host", procfs_probe_host_show, procfs_probe_host_store); + error = device_create_file(dev, &dev_attr_probe_host); + + error = ifx_proc_addproc("probe_timer", procfs_probe_timer_val_show, procfs_probe_timer_val_store); + error = device_create_file(dev, &dev_attr_probe_timer_val_h); + + error = ifx_proc_addproc("autoprobe_timer", procfs_autoprobe_timer_val_show, procfs_autoprobe_timer_val_store); + error = device_create_file(dev, &dev_attr_autoprobe_timer_val_h); + #endif +#endif + +#ifdef __IS_DEVICE__ + error = ifx_proc_addproc("suspend_device",NULL, procfs_suspend_device_store); + error = device_create_file(dev, &dev_attr_suspend_device); + + error = ifx_proc_addproc("probe_device", procfs_probe_device_show, procfs_probe_device_store); + error = device_create_file(dev, &dev_attr_probe_device); + + error = ifx_proc_addproc("probe_timer", procfs_probe_timer_val_show, procfs_probe_timer_val_store); + error = device_create_file(dev, &dev_attr_probe_timer_val_d); + + error = ifx_proc_addproc("autoprobe_timer", procfs_autoprobe_timer_val_show, procfs_autoprobe_timer_val_store); + error = device_create_file(dev, &dev_attr_autoprobe_timer_val_d); +#endif +#if defined(__IS_HOST__) && defined(__HOST_COC__) + #ifdef __IS_DUAL__ + memset (&pmcuRegisterUSBHost_1, 0, sizeof(pmcuRegisterUSBHost_1)); + memset (&pmcuRegisterUSBHost_2, 0, sizeof(pmcuRegisterUSBHost_2)); + pmcuRegisterUSBHost_1.pmcuModule= + pmcuRegisterUSBHost_2.pmcuModule=IFX_PMCU_MODULE_USB; + pmcuRegisterUSBHost_1.pmcuModuleNr=1; + pmcuRegisterUSBHost_2.pmcuModuleNr=2; + pmcuRegisterUSBHost_1.pmcuModuleDep = &depListUSBHost_1; + pmcuRegisterUSBHost_2.pmcuModuleDep = &depListUSBHost_2; + pmcuRegisterUSBHost_1.pre = ifx_usbhost_preChange_1; + pmcuRegisterUSBHost_2.pre = ifx_usbhost_preChange_2; + pmcuRegisterUSBHost_1.post = ifx_usbhost_postChange_1; + pmcuRegisterUSBHost_2.post = ifx_usbhost_postChange_2; + pmcuRegisterUSBHost_1.ifx_pmcu_state_change = ifx_usbhost_stateChange_1; + pmcuRegisterUSBHost_2.ifx_pmcu_state_change = ifx_usbhost_stateChange_2; + pmcuRegisterUSBHost_1.ifx_pmcu_state_get = ifx_usbhost_stateGet_1; + pmcuRegisterUSBHost_2.ifx_pmcu_state_get = ifx_usbhost_stateGet_2; + pmcuRegisterUSBHost_1.ifx_pmcu_pwr_feature_switch = ifx_usbhost_pwrFeatureSwitch_1; + pmcuRegisterUSBHost_2.ifx_pmcu_pwr_feature_switch = ifx_usbhost_pwrFeatureSwitch_2; + ifx_pmcu_register ( &pmcuRegisterUSBHost_1 ); + ifx_pmcu_register ( &pmcuRegisterUSBHost_2 ); + #else + memset (&pmcuRegisterUSBHost, 0, sizeof(pmcuRegisterUSBHost)); + pmcuRegisterUSBHost.pmcuModule=IFX_PMCU_MODULE_USB; + pmcuRegisterUSBHost.pmcuModuleNr=1; + pmcuRegisterUSBHost.pmcuModuleDep = &depListUSBHost; + pmcuRegisterUSBHost.pre = ifx_usbhost_preChange; + pmcuRegisterUSBHost.post = ifx_usbhost_postChange; + pmcuRegisterUSBHost.ifx_pmcu_state_change = ifx_usbhost_stateChange; + pmcuRegisterUSBHost.ifx_pmcu_state_get = ifx_usbhost_stateGet; + pmcuRegisterUSBHost.ifx_pmcu_pwr_feature_switch = ifx_usbhost_pwrFeatureSwitch; + ifx_pmcu_register ( &pmcuRegisterUSBHost ); + #endif +#endif +#if defined(__IS_DEVICE__) && defined(__GADGET_COC__) + memset (&pmcuRegisterUSBGadget, 0, sizeof(pmcuRegisterUSBGadget)); + pmcuRegisterUSBGadget.pmcuModule=IFX_PMCU_MODULE_USB; + pmcuRegisterUSBGadget.pmcuModuleNr=0; + pmcuRegisterUSBGadget.pmcuModuleDep = &depListUSBGadget; + pmcuRegisterUSBGadget.pre = ifx_usbgadget_preChange; + pmcuRegisterUSBGadget.post = ifx_usbgadget_postChange; + pmcuRegisterUSBGadget.ifx_pmcu_state_change = ifx_usbgadget_stateChange; + pmcuRegisterUSBGadget.ifx_pmcu_state_get = ifx_usbgadget_stateGet; + pmcuRegisterUSBGadget.ifx_pmcu_pwr_feature_switch = ifx_usbgadget_pwrFeatureSwitch; + ifx_pmcu_register ( &pmcuRegisterUSBGadget ); +#endif +} + + +/*! + \brief This function remove the sysfs and procfs entries + \param[in] _dev Pointer of device structure, if applied + */ +#ifdef __IS_HOST__ +void ifxusb_attr_remove_h (void *_dev) +#else +void ifxusb_attr_remove_d (void *_dev) +#endif +{ + struct device *dev = (struct device *) _dev; + + IFX_DEBUGPL(DBG_ENTRY, "%s() %d\n", __func__, __LINE__ ); + ifx_proc_delproc("dbglevel"); + #ifdef __IS_HOST__ + device_remove_file(dev, &dev_attr_dbglevel_h); + #else + device_remove_file(dev, &dev_attr_dbglevel_d); + #endif + + #ifdef __IS_HOST__ + #ifdef __IS_DUAL__ + ifx_proc_delproc("dump_params_1"); + ifx_proc_delproc("dump_params_2"); + device_remove_file(dev, &dev_attr_dump_params_h_1); + device_remove_file(dev, &dev_attr_dump_params_h_2); + #else + ifx_proc_delproc("dump_params"); + device_remove_file(dev, &dev_attr_dump_params_h); + #endif + + #ifdef __IS_DUAL__ + ifx_proc_delproc("mode_1"); + ifx_proc_delproc("mode_2"); + device_remove_file(dev, &dev_attr_mode_h_1); + device_remove_file(dev, &dev_attr_mode_h_2); + #else + ifx_proc_delproc("mode"); + device_remove_file(dev, &dev_attr_mode_h); + #endif + #else + ifx_proc_delproc("dump_params"); + device_remove_file(dev, &dev_attr_dump_params_d); + ifx_proc_delproc("mode"); + device_remove_file(dev, &dev_attr_mode_d); + #endif + + #ifdef __IS_HOST__ + ifx_proc_delproc("version"); + device_remove_file(dev, &dev_attr_version_h); + #else + ifx_proc_delproc("version"); + device_remove_file(dev, &dev_attr_version_d); + #endif + + + #ifdef __IS_HOST__ + #ifdef __IS_DUAL__ + ifx_proc_delproc("pkt_count_limit_bi_1"); + ifx_proc_delproc("pkt_count_limit_bo_1"); + ifx_proc_delproc("pkt_count_limit_bi_2"); + ifx_proc_delproc("pkt_count_limit_bo_2"); + ifx_proc_delproc("bandwidth_hs_1"); + ifx_proc_delproc("bandwidth_fs_1"); + ifx_proc_delproc("bandwidth_ls_1"); + ifx_proc_delproc("bandwidth_hs_2"); + ifx_proc_delproc("bandwidth_fs_2"); + ifx_proc_delproc("bandwidth_ls_2"); + device_remove_file(dev, &dev_attr_pkt_count_limit_bi_1); + device_remove_file(dev, &dev_attr_pkt_count_limit_bo_1); + device_remove_file(dev, &dev_attr_pkt_count_limit_bi_2); + device_remove_file(dev, &dev_attr_pkt_count_limit_bo_2); + device_remove_file(dev, &dev_attr_bandwidth_hs_1); + device_remove_file(dev, &dev_attr_bandwidth_fs_1); + device_remove_file(dev, &dev_attr_bandwidth_ls_1); + device_remove_file(dev, &dev_attr_bandwidth_hs_2); + device_remove_file(dev, &dev_attr_bandwidth_fs_2); + device_remove_file(dev, &dev_attr_bandwidth_ls_2); + #else + ifx_proc_delproc("pkt_count_limit_bi"); + ifx_proc_delproc("pkt_count_limit_bo"); + ifx_proc_delproc("bandwidth_hs"); + ifx_proc_delproc("bandwidth_fs"); + ifx_proc_delproc("bandwidth_ls"); + device_remove_file(dev, &dev_attr_pkt_count_limit_bi); + device_remove_file(dev, &dev_attr_pkt_count_limit_bo); + device_remove_file(dev, &dev_attr_bandwidth_hs); + device_remove_file(dev, &dev_attr_bandwidth_fs); + device_remove_file(dev, &dev_attr_bandwidth_ls); + #endif + #endif + + #ifdef __IS_HOST__ + #ifdef __IS_DUAL__ + ifx_proc_delproc("buspower_1"); + ifx_proc_delproc("buspower_2"); + device_remove_file(dev, &dev_attr_buspower_1); + device_remove_file(dev, &dev_attr_buspower_2); + #else + ifx_proc_delproc("buspower"); + device_remove_file(dev, &dev_attr_buspower); + #endif + + #ifdef __IS_DUAL__ + ifx_proc_delproc("bussuspend_1"); + ifx_proc_delproc("bussuspend_2"); + device_remove_file(dev, &dev_attr_bussuspend_1); + device_remove_file(dev, &dev_attr_bussuspend_2); + #else + ifx_proc_delproc("bussuspend"); + device_remove_file(dev, &dev_attr_bussuspend); + #endif + + #ifdef __IS_DUAL__ + ifx_proc_delproc("busconnected_1"); + ifx_proc_delproc("busconnected_2"); + device_remove_file(dev, &dev_attr_busconnected_1); + device_remove_file(dev, &dev_attr_busconnected_2); + #else + ifx_proc_delproc("busconnected"); + device_remove_file(dev, &dev_attr_busconnected); + #endif + + #ifdef __IS_DUAL__ + ifx_proc_delproc("connectspeed_1"); + ifx_proc_delproc("connectspeed_2"); + device_remove_file(dev, &dev_attr_connectspeed_1); + device_remove_file(dev, &dev_attr_connectspeed_2); + #else + ifx_proc_delproc("connectspeed"); + device_remove_file(dev, &dev_attr_connectspeed); + #endif + #endif + + #ifdef __IS_DEVICE__ + ifx_proc_delproc("devspeed"); + device_remove_file(dev, &dev_attr_devspeed); + ifx_proc_delproc("enumspeed"); + device_remove_file(dev, &dev_attr_enumspeed); + #endif + + #ifdef __ENABLE_DUMP__ + #ifdef __IS_HOST__ + #ifdef __IS_DUAL__ + ifx_proc_delproc("dump_reg_1"); + ifx_proc_delproc("dump_reg_2"); + device_remove_file(dev, &dev_attr_dump_reg_h_1); + device_remove_file(dev, &dev_attr_dump_reg_h_2); + #else + ifx_proc_delproc("dump_reg"); + device_remove_file(dev, &dev_attr_dump_reg_h); + #endif + + #ifdef __IS_DUAL__ + ifx_proc_delproc("dump_spram_1"); + ifx_proc_delproc("dump_spram_2"); + device_remove_file(dev, &dev_attr_dump_spram_h_1); + device_remove_file(dev, &dev_attr_dump_spram_h_2); + #else + ifx_proc_delproc("dump_spram"); + device_remove_file(dev, &dev_attr_dump_spram_h); + #endif + + #ifdef __IS_DUAL__ + ifx_proc_delproc("dump_host_state_1"); + ifx_proc_delproc("dump_host_state_2"); + device_remove_file(dev, &dev_attr_dump_host_state_1); + device_remove_file(dev, &dev_attr_dump_host_state_2); + #else + ifx_proc_delproc("dump_host_state"); + device_remove_file(dev, &dev_attr_dump_host_state); + #endif + #else + ifx_proc_delproc("dump_reg"); + device_remove_file(dev, &dev_attr_dump_reg_d); + ifx_proc_delproc("dump_spram"); + device_remove_file(dev, &dev_attr_dump_spram_d); + #endif + + #ifdef __IS_HOST__ + #endif + #endif //__ENABLE_DUMP__ +#ifdef __IS_HOST__ + #ifdef __IS_DUAL__ + ifx_proc_delproc("suspend_host_1"); + ifx_proc_delproc("probe_host_1"); + device_remove_file(dev, &dev_attr_suspend_host_1); + device_remove_file(dev, &dev_attr_probe_host_1); + ifx_proc_delproc("suspend_host_2"); + ifx_proc_delproc("probe_host_2"); + device_remove_file(dev, &dev_attr_suspend_host_2); + device_remove_file(dev, &dev_attr_probe_host_2); + ifx_proc_delproc("probe_timer1"); + ifx_proc_delproc("autoprobe_timer1"); + device_remove_file(dev, &dev_attr_probe_timer1_val_h); + device_remove_file(dev, &dev_attr_autoprobe_timer1_val_h); + ifx_proc_delproc("probe_timer2"); + ifx_proc_delproc("autoprobe_timer2"); + device_remove_file(dev, &dev_attr_probe_timer2_val_h); + device_remove_file(dev, &dev_attr_autoprobe_timer2_val_h); + #else + ifx_proc_delproc("suspend_host"); + ifx_proc_delproc("probe_host"); + device_remove_file(dev, &dev_attr_suspend_host); + device_remove_file(dev, &dev_attr_probe_host); + ifx_proc_delproc("probe_timer"); + ifx_proc_delproc("autoprobe_timer"); + device_remove_file(dev, &dev_attr_probe_timer_val_h); + device_remove_file(dev, &dev_attr_autoprobe_timer_val_h); + #endif + remove_proc_entry(ifxusb_hcd_driver_name, (void *)0); +#endif + +#ifdef __IS_DEVICE__ + ifx_proc_delproc("suspend_device"); + ifx_proc_delproc("probe_device"); + device_remove_file(dev, &dev_attr_suspend_device); + device_remove_file(dev, &dev_attr_probe_device); + ifx_proc_delproc("probe_timer"); + ifx_proc_delproc("autoprobe_timer"); + device_remove_file(dev, &dev_attr_probe_timer_val_d); + device_remove_file(dev, &dev_attr_autoprobe_timer_val_d); + remove_proc_entry(ifxusb_pcd_driver_name, (void *)0); +#endif +#if defined(__IS_HOST__) && defined(__HOST_COC__) + #ifdef __IS_DUAL__ + ifx_pmcu_unregister ( &pmcuRegisterUSBHost_1 ); + ifx_pmcu_unregister ( &pmcuRegisterUSBHost_2 ); + #else + ifx_pmcu_unregister ( &pmcuRegisterUSBHost ); + #endif +#endif +#if defined(__IS_DEVICE__) && defined(__GADGET_COC__) + ifx_pmcu_unregister ( &pmcuRegisterUSBGadget ); +#endif + +} + +static struct proc_dir_entry * proc_ifx_root = NULL; + +/* initialize the proc file system and make a dir named /proc/[name] */ +static void ifx_proc_init(void) +{ + IFX_DEBUGPL(DBG_ENTRY, "%s() %d\n", __func__, __LINE__ ); +#ifdef __IS_HOST__ + proc_ifx_root = proc_mkdir(ifxusb_hcd_driver_name, (void *)0); + if (!proc_ifx_root){ + IFX_PRINT("%s proc initialization failed! \n", ifxusb_hcd_driver_name); + return; + } +#else + proc_ifx_root = proc_mkdir(ifxusb_pcd_driver_name, (void *)0); + if (!proc_ifx_root){ + IFX_PRINT("%s proc initialization failed! \n", ifxusb_pcd_driver_name); + return; + } +#endif +} + +/* proc file system add function for debugging. */ +static int ifx_proc_addproc(char *funcname, read_proc_t *hookfuncr, write_proc_t *hookfuncw) +{ + struct proc_dir_entry *pe; + IFX_DEBUGPL(DBG_ENTRY, "%s() %d\n", __func__, __LINE__ ); + if (!proc_ifx_root) + ifx_proc_init(); + + if (hookfuncw == NULL) + { + pe = create_proc_read_entry(funcname, S_IRUGO, proc_ifx_root, hookfuncr, NULL); + if (!pe) + { + IFX_PRINT("ERROR in creating read proc entry (%s)! \n", funcname); + return -1; + } + } + else + { + pe = create_proc_entry(funcname, S_IRUGO | S_IWUGO, proc_ifx_root); + if (pe) + { + pe->read_proc = hookfuncr; + pe->write_proc = hookfuncw; + } + else + { + IFX_PRINT("ERROR in creating proc entry (%s)! \n", funcname); + return -1; + } + } + return 0; +} + + +/* proc file system del function for removing module. */ +static void ifx_proc_delproc(char *funcname) +{ + char pname[30]; + IFX_DEBUGPL(DBG_ENTRY, "%s() %d\n", __func__, __LINE__ ); + sprintf(pname, "%s", funcname); + + remove_proc_entry(pname, proc_ifx_root); + +} + +static void ifxusb_dump_params(ifxusb_core_if_t *_core_if) +{ + ifxusb_params_t *params=&_core_if->params; + + #ifdef __IS_HOST__ + IFX_PRINT("IFXUSB Dump Parameters ( Host Mode) \n"); + #endif //__IS_HOST__ + #ifdef __IS_DEVICE__ + IFX_PRINT("IFXUSB Dump Parameters ( Device Mode) \n"); + #endif //__IS_DEVICE__ + + #ifdef __DESC_DMA__ + IFX_PRINT("DMA: Hermes DMA\n"); + #else + IFX_PRINT("DMA: Non-Desc DMA\n"); + #endif + IFX_PRINT(" Burst size: %d\n",params->dma_burst_size); + + if (params->speed==1) + IFX_PRINT("Full Speed only\n"); + else if(params->speed==0) + IFX_PRINT("Full/Hign Speed\n"); + else + IFX_PRINT("Unkonwn setting (%d) for Speed\n",params->speed); + + IFX_PRINT("Total Data FIFO size: %d(0x%06X) DWord, %d(0x%06X) Bytes\n", + params->data_fifo_size,params->data_fifo_size, + params->data_fifo_size*4, params->data_fifo_size*4 + ); + + #ifdef __IS_DEVICE__ + IFX_PRINT("Rx FIFO size: %d(0x%06X) DWord, %d(0x%06X) Bytes\n", + params->rx_fifo_size,params->rx_fifo_size, + params->rx_fifo_size*4, params->rx_fifo_size*4 + ); + { + int i; + for(i=0;i<MAX_EPS_CHANNELS;i++) + { + IFX_PRINT("Tx FIFO #%d size: %d(0x%06X) DWord, %d(0x%06X) Bytes\n",i, + params->tx_fifo_size[i],params->tx_fifo_size[i], + params->tx_fifo_size[i]*4, params->tx_fifo_size[i]*4 + ); + } + } + #ifdef __DED_FIFO__ + IFX_PRINT("Treshold : %s Rx:%d Tx:%d \n", + (params->thr_ctl)?"On":"Off",params->tx_thr_length,params->rx_thr_length); + #endif + #else //__IS_HOST__ + IFX_PRINT("Host Channels: %d\n",params->host_channels); + + IFX_PRINT("Rx FIFO size: %d(0x%06X) DWord, %d(0x%06X) Bytes\n", + params->data_fifo_size,params->data_fifo_size, + params->data_fifo_size*4, params->data_fifo_size*4 + ); + + IFX_PRINT("NP Tx FIFO size: %d(0x%06X) DWord, %d(0x%06X) Bytes\n", + params->nperio_tx_fifo_size,params->nperio_tx_fifo_size, + params->nperio_tx_fifo_size*4, params->nperio_tx_fifo_size*4 + ); + + IFX_PRINT(" P Tx FIFO size: %d(0x%06X) DWord, %d(0x%06X) Bytes\n", + params->perio_tx_fifo_size,params->perio_tx_fifo_size, + params->perio_tx_fifo_size*4, params->perio_tx_fifo_size*4 + ); + #endif //__IS_HOST__ + + IFX_PRINT("Max Transfer size: %d(0x%06X) Bytes\n", + params->max_transfer_size,params->max_transfer_size + ); + IFX_PRINT("Max Packet Count: %d(0x%06X)\n", + params->max_packet_count,params->max_packet_count + ); + + IFX_PRINT("PHY UTMI Width: %d\n",params->phy_utmi_width); + + IFX_PRINT("Turn Around Time: HS:%d FS:%d\n",params->turn_around_time_hs,params->turn_around_time_fs); + IFX_PRINT("Timeout Calibration: HS:%d FS:%d\n",params->timeout_cal_hs,params->timeout_cal_fs); + + + IFX_PRINT("==================================================\n"); + IFX_PRINT("End of Parameters Dump\n"); + IFX_PRINT("==================================================\n"); +} + diff --git a/package/kernel/lantiq/ltq-hcd/src/ifxusb_driver.c b/package/kernel/lantiq/ltq-hcd/src/ifxusb_driver.c new file mode 100644 index 0000000..04346b9 --- /dev/null +++ b/package/kernel/lantiq/ltq-hcd/src/ifxusb_driver.c @@ -0,0 +1,1286 @@ +/***************************************************************************** + ** FILE NAME : ifxusb_driver.c + ** PROJECT : IFX USB sub-system V3 + ** MODULES : IFX USB sub-system Host and Device driver + ** SRC VERSION : 3.2 + ** DATE : 1/Jan/2011 + ** AUTHOR : Chen, Howard + ** DESCRIPTION : The provides the initialization and cleanup entry + ** points for the IFX USB driver. This module can be + ** dynamically loaded with insmod command or built-in + ** with kernel. When loaded or executed the ifxusb_driver_init + ** function is called. When the module is removed (using rmmod), + ** the ifxusb_driver_cleanup function is called. + ** FUNCTIONS : + ** COMPILER : gcc + ** REFERENCE : Synopsys DWC-OTG Driver 2.7 + ** COPYRIGHT : Copyright (c) 2010 + ** LANTIQ DEUTSCHLAND GMBH, + ** Am Campeon 3, 85579 Neubiberg, Germany + ** + ** This program is free software; you can redistribute it and/or modify + ** it under the terms of the GNU General Public License as published by + ** the Free Software Foundation; either version 2 of the License, or + ** (at your option) any later version. + ** + ** Version Control Section ** + ** $Author$ + ** $Date$ + ** $Revisions$ + ** $Log$ Revision history + *****************************************************************************/ + +/* + * This file contains code fragments from Synopsys HS OTG Linux Software Driver. + * For this code the following notice is applicable: + * + * ========================================================================== + * + * Synopsys HS OTG Linux Software Driver and documentation (hereinafter, + * "Software") is an Unsupported proprietary work of Synopsys, Inc. unless + * otherwise expressly agreed to in writing between Synopsys and you. + * + * The Software IS NOT an item of Licensed Software or Licensed Product under + * any End User Software License Agreement or Agreement for Licensed Product + * with Synopsys or any supplement thereto. You are permitted to use and + * redistribute this Software in source and binary forms, with or without + * modification, provided that redistributions of source code must retain this + * notice. You may not view, use, disclose, copy or distribute this file or + * any information contained herein except pursuant to this license grant from + * Synopsys. If you do not agree with this notice, including the disclaimer + * below, then you are not authorized to use the Software. + * + * THIS SOFTWARE IS BEING DISTRIBUTED BY SYNOPSYS SOLELY ON AN "AS IS" BASIS + * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE + * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE + * ARE HEREBY DISCLAIMED. IN NO EVENT SHALL SYNOPSYS BE LIABLE FOR ANY DIRECT, + * INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES + * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR + * SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER + * CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT + * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY + * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH + * DAMAGE. + * ========================================================================== */ + +/*! + \file ifxusb_driver.c + \brief This file contains the loading/unloading interface to the Linux driver. +*/ + +#include <linux/version.h> +#include "ifxusb_version.h" + +#include <linux/kernel.h> +#include <linux/module.h> +#include <linux/moduleparam.h> +#include <linux/init.h> + +#include <linux/device.h> +#include <linux/of_platform.h> +#include <linux/of_gpio.h> + +#include <linux/errno.h> +#include <linux/types.h> +#include <linux/stat.h> /* permission constants */ + +#if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,20) + #include <linux/irq.h> +#endif + +#include <asm/io.h> + +#if LINUX_VERSION_CODE < KERNEL_VERSION(2,6,20) + #include <asm/irq.h> +#endif + +#include "ifxusb_plat.h" + +#include "ifxusb_cif.h" + +#ifdef __IS_HOST__ + #include "ifxhcd.h" + + #define USB_DRIVER_DESC "IFX USB HCD driver" + const char ifxusb_hcd_driver_name[] = "ifxusb_hcd"; + #ifdef __IS_DUAL__ + ifxhcd_hcd_t ifxusb_hcd_1; + ifxhcd_hcd_t ifxusb_hcd_2; + const char ifxusb_hcd_name_1[] = "ifxusb_hcd_1"; + const char ifxusb_hcd_name_2[] = "ifxusb_hcd_2"; + #else + ifxhcd_hcd_t ifxusb_hcd; + const char ifxusb_hcd_name[] = "ifxusb_hcd"; + #endif + + #if defined(__DO_OC_INT__) + ifxhcd_hcd_t *oc_int_id=NULL; + #ifdef __IS_DUAL__ + ifxhcd_hcd_t *oc_int_id_1=NULL; + ifxhcd_hcd_t *oc_int_id_2=NULL; + #endif + #endif +#endif + +#ifdef __IS_DEVICE__ + #include "ifxpcd.h" + + #define USB_DRIVER_DESC "IFX USB PCD driver" + const char ifxusb_pcd_driver_name[] = "ifxusb_pcd"; + ifxpcd_pcd_t ifxusb_pcd; + const char ifxusb_pcd_name[] = "ifxusb_pcd"; +#endif + +/* Global Debug Level Mask. */ +#ifdef __IS_HOST__ + uint32_t h_dbg_lvl = 0xff; +#endif + +#ifdef __IS_DEVICE__ + uint32_t d_dbg_lvl = 0x00; +#endif + +#ifdef __IS_HOST__ +ifxusb_params_t ifxusb_module_params_h; +#else +ifxusb_params_t ifxusb_module_params_d; +#endif + +static void parse_parms(void); + + +#if defined(__IS_TWINPASS__) +#warning "Compiled as TWINPASS" +#elif defined(__IS_DANUBE__) +#warning "Compiled as DANUBE" +#elif defined(__IS_AMAZON_SE__) +#warning "Compiled as AMAZON_SE" +#elif defined(__IS_AR9__) +#warning "Compiled as AR9" +#elif defined(__IS_VR9__) +#warning "Compiled as VR9" +#elif defined(__IS_AR10__) +#warning "Compiled as AR10" +#else +#error "No Platform defined" +#endif + + +/* Function to setup the structures to control one usb core running as host*/ +#ifdef __IS_HOST__ +/*! + \brief inlined by ifxusb_driver_probe(), handling host mode probing. Run at each host core. +*/ + static inline int ifxusb_driver_probe_h(ifxhcd_hcd_t *_hcd, + int _irq, + uint32_t _iobase, + uint32_t _fifomem, + uint32_t _fifodbg + ) + { + int retval = 0; + + IFX_DEBUGPL(DBG_ENTRY, "%s() %d\n", __func__, __LINE__ ); + + ifxusb_power_on_h (&_hcd->core_if); + mdelay(50); + ifxusb_phy_power_on_h (&_hcd->core_if); // Test + mdelay(50); + ifxusb_hard_reset_h(&_hcd->core_if); + retval =ifxusb_core_if_init_h(&_hcd->core_if, + _irq, + _iobase, + _fifomem, + _fifodbg); + if(retval) + return retval; + + ifxusb_host_core_init(&_hcd->core_if,&ifxusb_module_params_h); + + ifxusb_disable_global_interrupts_h( &_hcd->core_if); + + /* The driver is now initialized and need to be registered into Linux USB sub-system */ + + retval = ifxhcd_init(_hcd); // hook the hcd into usb ss + + if (retval != 0) + { + IFX_ERROR("_hcd_init failed\n"); + return retval; + } + + //ifxusb_enable_global_interrupts_h( _hcd->core_if ); // this should be done at hcd_start , including hcd_interrupt + return 0; + } +#endif //__IS_HOST__ + +#ifdef __IS_DEVICE__ +/*! + \brief inlined by ifxusb_driver_probe(), handling device mode probing. +*/ + static inline int ifxusb_driver_probe_d(ifxpcd_pcd_t *_pcd, + int _irq, + uint32_t _iobase, + uint32_t _fifomem, + uint32_t _fifodbg + ) + { + int retval = 0; + + IFX_DEBUGPL(DBG_ENTRY, "%s() %d\n", __func__, __LINE__ ); + ifxusb_power_on_d (&_pcd->core_if); + mdelay(50); + ifxusb_phy_power_on_d (&_pcd->core_if); // Test + mdelay(50); + ifxusb_hard_reset_d(&_pcd->core_if); + retval =ifxusb_core_if_init_d(&_pcd->core_if, + _irq, + _iobase, + _fifomem, + _fifodbg); + if(retval) + return retval; + + IFX_DEBUGPL(DBG_ENTRY, "%s() %d\n", __func__, __LINE__ ); + ifxusb_dev_core_init(&_pcd->core_if,&ifxusb_module_params_d); + + IFX_DEBUGPL(DBG_ENTRY, "%s() %d\n", __func__, __LINE__ ); + ifxusb_disable_global_interrupts_d( &_pcd->core_if); + + /* The driver is now initialized and need to be registered into + Linux USB Gadget sub-system + */ + retval = ifxpcd_init(); + IFX_DEBUGPL(DBG_ENTRY, "%s() %d\n", __func__, __LINE__ ); + + if (retval != 0) + { + IFX_ERROR("_pcd_init failed\n"); + return retval; + } + //ifxusb_enable_global_interrupts_d( _pcd->core_if ); // this should be done at gadget bind or start + return 0; + } +#endif //__IS_DEVICE__ + +/*! + \brief This function is called when a driver is unregistered. This happens when + the rmmod command is executed. The device may or may not be electrically + present. If it is present, the driver stops device processing. Any resources + used on behalf of this device are freed. +*/ +static int ifxusb_driver_remove(struct platform_device *_pdev) +{ + IFX_DEBUGPL(DBG_ENTRY, "%s() %d\n", __func__, __LINE__ ); + #ifdef __IS_HOST__ + #if defined(__IS_DUAL__) + ifxhcd_remove(&ifxusb_hcd_1); + ifxusb_core_if_remove_h(&ifxusb_hcd_1.core_if ); + ifxhcd_remove(&ifxusb_hcd_2); + ifxusb_core_if_remove_h(&ifxusb_hcd_2.core_if ); + #else + ifxhcd_remove(&ifxusb_hcd); + ifxusb_core_if_remove_h(&ifxusb_hcd.core_if ); + #endif + #endif + #ifdef __IS_DEVICE__ + ifxpcd_remove(); + ifxusb_core_if_remove_d(&ifxusb_pcd.core_if ); + #endif + /* Remove the device attributes */ + #ifdef __IS_HOST__ + ifxusb_attr_remove_h(&_pdev->dev); + #else + ifxusb_attr_remove_d(&_pdev->dev); + #endif + return 0; +} + +/*! + \brief This function is called by module management in 2.6 kernel or by ifxusb_driver_init with 2.4 kernel + It is to probe and setup IFXUSB core(s). +*/ +static int ifxusb_driver_probe(struct platform_device *_pdev) +{ + int retval = 0; + struct device_node *np; + int gpio_count; + u32 port_mask = 0x1; + +#ifdef __IS_DANUBE__ + np = of_find_compatible_node(NULL, NULL, "lantiq,ifxhcd-danube"); +#elif defined __IS_AMAZON_SE__ + np = of_find_compatible_node(NULL, NULL, "lantiq,ifxhcd-ase"); +#elif defined __IS_AR9__ + np = of_find_compatible_node(NULL, NULL, "lantiq,ifxhcd-arx100"); +#elif defined __IS_VR9__ + np = of_find_compatible_node(NULL, NULL, "lantiq,ifxhcd-xrx200"); +#elif defined __IS_AR10__ + np = of_find_compatible_node(NULL, NULL, "lantiq,ifxhcd-arx300"); +#endif + if (!np) { + dev_err(&_pdev->dev, "failed to find hcd device node\n"); + return -ENODEV; + } + of_property_read_u32(np, "lantiq,portmask", &port_mask); + // Parsing and store the parameters + IFX_DEBUGPL(DBG_ENTRY, "%s() %d\n", __func__, __LINE__ ); + parse_parms(); + + #ifdef __IS_HOST__ + #if defined(__DO_OC_INT__) + if(!oc_int_id) + { + #if defined(__IS_DUAL__) + oc_int_id=&ifxusb_hcd_1; + oc_int_id_1=&ifxusb_hcd_1; + oc_int_id_2=&ifxusb_hcd_2; + #else + oc_int_id=&ifxusb_hcd; + #endif + } + #endif + + #if defined(__IS_DUAL__) + memset(&ifxusb_hcd_1, 0, sizeof(ifxhcd_hcd_t)); + memset(&ifxusb_hcd_2, 0, sizeof(ifxhcd_hcd_t)); + + ifxusb_hcd_1.core_if.core_no=0; + ifxusb_hcd_2.core_if.core_no=1; + ifxusb_hcd_1.core_if.core_name=(char *)ifxusb_hcd_name_1; + ifxusb_hcd_2.core_if.core_name=(char *)ifxusb_hcd_name_2; + + ifxusb_hcd_1.dev=&_pdev->dev; + ifxusb_hcd_2.dev=&_pdev->dev; + + if (port_mask & 0x1) { + retval = ifxusb_driver_probe_h(&ifxusb_hcd_1, + IFXUSB1_IRQ, + IFXUSB1_IOMEM_BASE, + IFXUSB1_FIFOMEM_BASE, + IFXUSB1_FIFODBG_BASE + ); + if(retval) + goto ifxusb_driver_probe_fail; + } + + if (port_mask & 0x2) { + retval = ifxusb_driver_probe_h(&ifxusb_hcd_2, + IFXUSB2_IRQ, + IFXUSB2_IOMEM_BASE, + IFXUSB2_FIFOMEM_BASE, + IFXUSB2_FIFODBG_BASE + ); + if(retval) + goto ifxusb_driver_probe_fail; + } + #elif defined(__IS_FIRST__) + memset(&ifxusb_hcd, 0, sizeof(ifxhcd_hcd_t)); + + ifxusb_hcd.core_if.core_no=0; + ifxusb_hcd.core_if.core_name=(char *)ifxusb_hcd_name; + + ifxusb_hcd.dev=&_pdev->dev; + + retval = ifxusb_driver_probe_h(&ifxusb_hcd, + IFXUSB1_IRQ, + IFXUSB1_IOMEM_BASE, + IFXUSB1_FIFOMEM_BASE, + IFXUSB1_FIFODBG_BASE + ); + if(retval) + goto ifxusb_driver_probe_fail; + + #elif defined(__IS_SECOND__) + memset(&ifxusb_hcd, 0, sizeof(ifxhcd_hcd_t)); + + ifxusb_hcd.core_if.core_no=1; + ifxusb_hcd.core_if.core_name=(char *)ifxusb_hcd_name; + + ifxusb_hcd.dev=&_pdev->dev; + + retval = ifxusb_driver_probe_h(&ifxusb_hcd, + IFXUSB2_IRQ, + IFXUSB2_IOMEM_BASE, + IFXUSB2_FIFOMEM_BASE, + IFXUSB2_FIFODBG_BASE + ); + if(retval) + goto ifxusb_driver_probe_fail; + + #else + memset(&ifxusb_hcd, 0, sizeof(ifxhcd_hcd_t)); + + ifxusb_hcd.core_if.core_no=0; + ifxusb_hcd.core_if.core_name=(char *)ifxusb_hcd_name; + + ifxusb_hcd.dev=&_pdev->dev; + + retval = ifxusb_driver_probe_h(&ifxusb_hcd, + IFXUSB_IRQ, + IFXUSB_IOMEM_BASE, + IFXUSB_FIFOMEM_BASE, + IFXUSB_FIFODBG_BASE + ); + if(retval) + goto ifxusb_driver_probe_fail; + #endif + #endif + + #ifdef __IS_DEVICE__ + memset(&ifxusb_pcd, 0, sizeof(ifxpcd_pcd_t)); + ifxusb_pcd.core_if.core_name=(char *)&ifxusb_pcd_name[0]; + + ifxusb_pcd.dev=&_pdev->dev; + + #if defined(__IS_FIRST__) + ifxusb_pcd.core_if.core_no=0; + retval = ifxusb_driver_probe_d(&ifxusb_pcd, + IFXUSB1_IRQ, + IFXUSB1_IOMEM_BASE, + IFXUSB1_FIFOMEM_BASE, + IFXUSB1_FIFODBG_BASE + ); + #elif defined(__IS_SECOND__) + ifxusb_pcd.core_if.core_no=1; + retval = ifxusb_driver_probe_d(&ifxusb_pcd, + IFXUSB2_IRQ, + IFXUSB2_IOMEM_BASE, + IFXUSB2_FIFOMEM_BASE, + IFXUSB2_FIFODBG_BASE + ); + #else + ifxusb_pcd.core_if.core_no=0; + retval = ifxusb_driver_probe_d(&ifxusb_pcd, + IFXUSB_IRQ, + IFXUSB_IOMEM_BASE, + IFXUSB_FIFOMEM_BASE, + IFXUSB_FIFODBG_BASE + ); + #endif + if(retval) + goto ifxusb_driver_probe_fail; + #endif + + #ifdef __IS_HOST__ + ifxusb_attr_create_h(&_pdev->dev); + #else + ifxusb_attr_create_d(&_pdev->dev); + #endif + + gpio_count = of_gpio_count(np); + while (gpio_count) { + enum of_gpio_flags flags; + int gpio = of_get_gpio_flags(np, --gpio_count, &flags); + if (gpio_request(gpio, "usb")) + continue; + dev_info(&_pdev->dev, "requested GPIO %d\n", gpio); + gpio_direction_output(gpio, (flags & OF_GPIO_ACTIVE_LOW) ? (0) : (1)); + } + + + return 0; + +ifxusb_driver_probe_fail: + ifxusb_driver_remove(_pdev); + return retval; +} + +static struct resource ifxusb_device_resources[] = +{ + #if defined(__IS_DUAL__) + [0] = { .start = IFXUSB1_IRQ, + .flags = IORESOURCE_IRQ, + }, + [1] = { .start = IFXUSB1_IOMEM_BASE, + .end = IFXUSB1_IOMEM_BASE + IFXUSB_IOMEM_SIZE-1, + .flags = IORESOURCE_MEM, + }, + [2] = { .start = IFXUSB2_IRQ, + .flags = IORESOURCE_IRQ, + }, + [3] = { .start = IFXUSB2_IOMEM_BASE, + .end = IFXUSB2_IOMEM_BASE + IFXUSB_IOMEM_SIZE-1, + .flags = IORESOURCE_MEM, + }, + [4] = { .start = IFXUSB1_FIFOMEM_BASE, + .end = IFXUSB1_FIFOMEM_BASE + IFXUSB_FIFOMEM_SIZE-1, + .flags = IORESOURCE_MEM, + }, + [5] = { .start = IFXUSB2_FIFOMEM_BASE, + .end = IFXUSB2_FIFOMEM_BASE + IFXUSB_FIFOMEM_SIZE-1, + .flags = IORESOURCE_MEM, + }, + [6] = { .start = IFXUSB1_FIFODBG_BASE, + .end = IFXUSB1_FIFODBG_BASE + IFXUSB_FIFODBG_SIZE-1, + .flags = IORESOURCE_MEM, + }, + [7] = { .start = IFXUSB2_FIFODBG_BASE, + .end = IFXUSB2_FIFODBG_BASE + IFXUSB_FIFODBG_SIZE-1, + .flags = IORESOURCE_MEM, + }, + #elif defined(__IS_FIRST__) + [0] = { .start = IFXUSB1_IRQ, + .flags = IORESOURCE_IRQ, + }, + [1] = { .start = IFXUSB1_IOMEM_BASE, + .end = IFXUSB1_IOMEM_BASE + IFXUSB_IOMEM_SIZE-1, + .flags = IORESOURCE_MEM, + }, + [2] = { .start = IFXUSB1_FIFOMEM_BASE, + .end = IFXUSB1_FIFOMEM_BASE + IFXUSB_FIFOMEM_SIZE-1, + .flags = IORESOURCE_MEM, + }, + [3] = { .start = IFXUSB1_FIFODBG_BASE, + .end = IFXUSB1_FIFODBG_BASE + IFXUSB_FIFODBG_SIZE-1, + .flags = IORESOURCE_MEM, + }, + #elif defined(__IS_SECOND__) + [0] = { .start = IFXUSB2_IRQ, + .flags = IORESOURCE_IRQ, + }, + [1] = { .start = IFXUSB2_IOMEM_BASE, + .end = IFXUSB2_IOMEM_BASE + IFXUSB_IOMEM_SIZE-1, + .flags = IORESOURCE_MEM, + }, + [2] = { .start = IFXUSB2_FIFOMEM_BASE, + .end = IFXUSB2_FIFOMEM_BASE + IFXUSB_FIFOMEM_SIZE-1, + .flags = IORESOURCE_MEM, + }, + [3] = { .start = IFXUSB2_FIFODBG_BASE, + .end = IFXUSB2_FIFODBG_BASE + IFXUSB_FIFODBG_SIZE-1, + .flags = IORESOURCE_MEM, + }, + #else + [0] = { .start = IFXUSB_IRQ, + .flags = IORESOURCE_IRQ, + }, + [1] = { .start = IFXUSB_IOMEM_BASE, + .end = IFXUSB_IOMEM_BASE + IFXUSB_IOMEM_SIZE-1, + .flags = IORESOURCE_MEM, + }, + [2] = { .start = IFXUSB_FIFOMEM_BASE, + .end = IFXUSB_FIFOMEM_BASE+IFXUSB_FIFOMEM_SIZE-1, + .flags = IORESOURCE_MEM, + }, + [3] = { .start = IFXUSB_FIFODBG_BASE, + .end = IFXUSB_FIFODBG_BASE+IFXUSB_FIFODBG_SIZE-1, + .flags = IORESOURCE_MEM, + }, + #endif //__IS_DUAL__ +}; + +static u64 ifxusb_dmamask = (u32)0x1fffffff; + +static void ifxusb_device_release(struct device * dev) +{ + IFX_PRINT("IFX USB platform_dev release\n"); + dev->parent = NULL; +} + +static struct platform_device ifxusb_device = +{ + .id = -1, + .dev = + { + .release = ifxusb_device_release, + .dma_mask = &ifxusb_dmamask, + }, + .resource = ifxusb_device_resources, + .num_resources = ARRAY_SIZE(ifxusb_device_resources), +}; + + +/*! + \brief This function is called when the ifxusb_driver is installed with the insmod command. +*/ +static struct platform_driver ifxusb_driver = { + .probe = ifxusb_driver_probe, + .remove = ifxusb_driver_remove, + .driver ={ + .owner = THIS_MODULE, + #ifdef __IS_HOST__ + .name = ifxusb_hcd_driver_name, + #else + .name = ifxusb_pcd_driver_name, + #endif + }, +}; + +#ifdef __IS_HOST__ + int __init ifxusb_hcd_driver_init(void) +#else + int __init ifxusb_pcd_driver_init(void) +#endif +{ + int retval = 0; + IFX_DEBUGPL(DBG_ENTRY, "%s() %d\n", __func__, __LINE__ ); + #if defined(__IS_HOST__) + IFX_PRINT("%s: version %s\n", ifxusb_hcd_driver_name, IFXUSB_VERSION); + #else + IFX_PRINT("%s: version %s\n", ifxusb_pcd_driver_name, IFXUSB_VERSION); + #endif + + #if 0 + #if defined(__IS_TWINPASS__) + IFX_PRINT(" OPTION: __IS_TWINPASS__\n"); + #elif defined(__IS_DANUBE__) + IFX_PRINT(" OPTION: __IS_DANUBE__\n"); + #elif defined(__IS_AMAZON_SE__) + IFX_PRINT(" OPTION: __IS_AMAZON_SE__\n"); + #elif defined(__IS_AR9__) + IFX_PRINT(" OPTION: __IS_AR9__\n"); + #elif defined(__IS_VR9__) + IFX_PRINT(" OPTION: __IS_VR9__\n"); + #elif defined(__IS_AR10__) + IFX_PRINT(" OPTION: __IS_AR10__\n"); + #else + IFX_PRINT(" OPTION: NO PLATFORM DEFINED\n"); + #endif + + #ifdef __UEIP__ + IFX_PRINT(" OPTION: __UEIP__\n"); + #endif + + #ifdef __PHY_LONG_PREEMP__ + IFX_PRINT(" OPTION: __PHY_LONG_PREEMP__\n"); + #endif + #ifdef __FORCE_USB11__ + IFX_PRINT(" OPTION: __FORCE_USB11__\n"); + #endif + #ifdef __UNALIGNED_BUF_ADJ__ + IFX_PRINT(" OPTION: __UNALIGNED_BUF_ADJ__\n"); + #endif + #ifdef __UNALIGNED_BUF_CHK__ + IFX_PRINT(" OPTION: __UNALIGNED_BUF_CHK__\n"); + #endif + #ifdef __UNALIGNED_BUF_BURST__ + IFX_PRINT(" OPTION: __UNALIGNED_BUF_BURST__\n"); + #endif + #ifdef __DEBUG__ + IFX_PRINT(" OPTION: __DEBUG__\n"); + #endif + #ifdef __ENABLE_DUMP__ + IFX_PRINT(" OPTION: __ENABLE_DUMP__\n"); + #endif + + #ifdef __IS_HOST__ + IFX_PRINT(" OPTION: __IS_HOST__\n"); + #ifdef __IS_DUAL__ + IFX_PRINT(" __IS_DUAL__\n"); + #endif + #ifdef __IS_FIRST__ + IFX_PRINT(" __IS_FIRST__\n"); + #endif + #ifdef __IS_SECOND__ + IFX_PRINT(" __IS_SECOND__\n"); + #endif + #ifdef __WITH_HS_ELECT_TST__ + IFX_PRINT(" __WITH_HS_ELECT_TST__\n"); + #endif + #ifdef __EN_ISOC__ + IFX_PRINT(" __EN_ISOC__\n"); + #endif + #ifdef __EN_ISOC_SPLIT__ + IFX_PRINT(" __EN_ISOC_SPLIT__\n"); + #endif + #ifdef __EPQD_DESTROY_TIMEOUT__ + IFX_PRINT(" __EPQD_DESTROY_TIMEOUT__\n"); + #endif + #ifdef __DYN_SOF_INTR__ + IFX_PRINT(" __DYN_SOF_INTR__\n"); + #endif + #else + IFX_PRINT(" OPTION: __IS_DEVICE__\n"); + #ifdef __DED_INTR__ + IFX_PRINT(" __DED_INTR__\n"); + #endif + #ifdef __DED_FIFO__ + IFX_PRINT(" __DED_FIFO__\n"); + #endif + #ifdef __DESC_DMA__ + IFX_PRINT(" __DESC_DMA__\n"); + #endif + #ifdef __IS_FIRST__ + IFX_PRINT(" __IS_FIRST__\n"); + #endif + #ifdef __IS_SECOND__ + IFX_PRINT(" __IS_SECOND__\n"); + #endif + #ifdef __GADGET_TASKLET_TX__ + IFX_PRINT(" __GADGET_TASKLET_TX__\n"); + #endif + #ifdef __GADGET_TASKLET_RX__ + IFX_PRINT(" __GADGET_TASKLET_RX__\n"); + #endif + #ifdef __GADGET_TASKLET_HIGH__ + IFX_PRINT(" __GADGET_TASKLET_HIGH__\n"); + #endif + #ifdef __DO_PCD_UNLOCK__ + IFX_PRINT(" __DO_PCD_UNLOCK__\n"); + #endif + #ifdef __GADGET_LED__ + IFX_PRINT(" __GADGET_LED__\n"); + #endif + + #ifdef __ECM_NO_INTR__ + IFX_PRINT(" __ECM_NO_INTR__\n"); + #endif + #ifdef __NOSWAPINCTRL__ + IFX_PRINT(" __NOSWAPINCTRL__\n"); + #endif + #ifdef __MAC_ECM_FIX__ + IFX_PRINT(" __MAC_ECM_FIX__\n"); + #endif + #ifdef __RETAIN_BUF_TX__ + IFX_PRINT(" __RETAIN_BUF_TX__\n"); + #endif + #ifdef __RETAIN_BUF_RX__ + IFX_PRINT(" __RETAIN_BUF_RX__\n"); + #endif + #ifdef __QUICKNAK__ + IFX_PRINT(" __QUICKNAK__\n"); + #endif + #endif + #endif + + retval = platform_driver_register(&ifxusb_driver); + + if (retval < 0) { + IFX_ERROR("%s retval=%d\n", __func__, retval); + return retval; + } + + #ifdef __IS_HOST__ + ifxusb_device.name = ifxusb_hcd_driver_name; + #else + ifxusb_device.name = ifxusb_pcd_driver_name; + #endif + + if (ifxusb_device.dev.parent) + retval = -EBUSY; + else + retval = platform_device_register(&ifxusb_device); + + if (retval < 0) + { + IFX_ERROR("%s retval=%d\n", __func__, retval); + platform_driver_unregister(&ifxusb_driver); + return retval; + } + return retval; +} + +#ifdef __IS_HOST__ + module_init(ifxusb_hcd_driver_init); +#else + module_init(ifxusb_pcd_driver_init); +#endif + +/*! + \brief This function is called when the driver is removed from the kernel + with the rmmod command. The driver unregisters itself with its bus + driver. +*/ +#ifdef __IS_HOST__ + void __exit ifxusb_hcd_driver_cleanup(void) + { + IFX_DEBUGPL(DBG_ENTRY, "%s() %d\n", __func__, __LINE__ ); + platform_device_unregister(&ifxusb_device); + platform_driver_unregister(&ifxusb_driver); + IFX_PRINT("%s module removed\n", ifxusb_hcd_driver_name); + } + module_exit(ifxusb_hcd_driver_cleanup); +#else + void __exit ifxusb_pcd_driver_cleanup(void) + { + IFX_DEBUGPL(DBG_ENTRY, "%s() %d\n", __func__, __LINE__ ); + platform_device_unregister(&ifxusb_device); + platform_driver_unregister(&ifxusb_driver); + IFX_PRINT("%s module removed\n", ifxusb_pcd_driver_name); + } + module_exit(ifxusb_pcd_driver_cleanup); +#endif +MODULE_DESCRIPTION(USB_DRIVER_DESC); +MODULE_AUTHOR("Lantiq"); +MODULE_LICENSE("GPL"); + + + +// Parameters set when loaded +//static long dbg_lvl =0xFFFFFFFF; +static long dbg_lvl =0; +static short dma_burst_size =-1; +static short speed =-1; +static long data_fifo_size =-1; +#ifdef __IS_DEVICE__ + static long rx_fifo_size =-1; + #ifdef __DED_FIFO__ + static long tx_fifo_size_00 =-1; + static long tx_fifo_size_01 =-1; + static long tx_fifo_size_02 =-1; + static long tx_fifo_size_03 =-1; + static long tx_fifo_size_04 =-1; + static long tx_fifo_size_05 =-1; + static long tx_fifo_size_06 =-1; + static long tx_fifo_size_07 =-1; + static long tx_fifo_size_08 =-1; + static long tx_fifo_size_09 =-1; + static long tx_fifo_size_10 =-1; + static long tx_fifo_size_11 =-1; + static long tx_fifo_size_12 =-1; + static long tx_fifo_size_13 =-1; + static long tx_fifo_size_14 =-1; + static long tx_fifo_size_15 =-1; + static short thr_ctl=-1; + static long tx_thr_length =-1; + static long rx_thr_length =-1; + #else + static long nperio_tx_fifo_size =-1; + static long perio_tx_fifo_size_01 =-1; + static long perio_tx_fifo_size_02 =-1; + static long perio_tx_fifo_size_03 =-1; + static long perio_tx_fifo_size_04 =-1; + static long perio_tx_fifo_size_05 =-1; + static long perio_tx_fifo_size_06 =-1; + static long perio_tx_fifo_size_07 =-1; + static long perio_tx_fifo_size_08 =-1; + static long perio_tx_fifo_size_09 =-1; + static long perio_tx_fifo_size_10 =-1; + static long perio_tx_fifo_size_11 =-1; + static long perio_tx_fifo_size_12 =-1; + static long perio_tx_fifo_size_13 =-1; + static long perio_tx_fifo_size_14 =-1; + static long perio_tx_fifo_size_15 =-1; + #endif + static short dev_endpoints =-1; +#endif + +#ifdef __IS_HOST__ + static long rx_fifo_size =-1; + static long nperio_tx_fifo_size =-1; + static long perio_tx_fifo_size =-1; + static short host_channels =-1; +#endif + +static long max_transfer_size =-1; +static long max_packet_count =-1; +static long phy_utmi_width =-1; +static long turn_around_time_hs =-1; +static long turn_around_time_fs =-1; +static long timeout_cal_hs =-1; +static long timeout_cal_fs =-1; + +/*! + \brief Parsing the parameters taken when module load +*/ +static void parse_parms(void) +{ + + ifxusb_params_t *params; + IFX_DEBUGPL(DBG_ENTRY, "%s() %d\n", __func__, __LINE__ ); + #ifdef __IS_HOST__ + h_dbg_lvl=dbg_lvl; + params=&ifxusb_module_params_h; + #endif + #ifdef __IS_DEVICE__ + d_dbg_lvl=dbg_lvl; + params=&ifxusb_module_params_d; + #endif + + switch(dma_burst_size) + { + case 0: + case 1: + case 4: + case 8: + case 16: + params->dma_burst_size=dma_burst_size; + break; + default: + #if defined(__IS_VR9__) + { + unsigned int chipid; + unsigned int partnum; + chipid=*((volatile uint32_t *)IFX_MPS_CHIPID); + partnum=(chipid&0x0FFFF000)>>12; + switch(partnum) + { + case 0x000B: //VRX288_A2x + case 0x000E: //VRX282_A2x + case 0x000C: //VRX268_A2x + case 0x000D: //GRX288_A2x + params->dma_burst_size=default_param_dma_burst_size_n; + break; + default: + params->dma_burst_size=default_param_dma_burst_size; + } + printk(KERN_INFO "Chip Version :%04x BurstSize=%d\n",partnum,params->dma_burst_size); + } + #else + params->dma_burst_size=default_param_dma_burst_size; + #endif + } + + if(speed==0 || speed==1) + params->speed=speed; + else + params->speed=default_param_speed; + + if(max_transfer_size>=2048 && max_transfer_size<=65535) + params->max_transfer_size=max_transfer_size; + else + params->max_transfer_size=default_param_max_transfer_size; + + if(max_packet_count>=15 && max_packet_count<=511) + params->max_packet_count=max_packet_count; + else + params->max_packet_count=default_param_max_packet_count; + + switch(phy_utmi_width) + { + case 8: + case 16: + params->phy_utmi_width=phy_utmi_width; + break; + default: + params->phy_utmi_width=default_param_phy_utmi_width; + } + + if(turn_around_time_hs>=0 && turn_around_time_hs<=7) + params->turn_around_time_hs=turn_around_time_hs; + else + params->turn_around_time_hs=default_param_turn_around_time_hs; + + if(turn_around_time_fs>=0 && turn_around_time_fs<=7) + params->turn_around_time_fs=turn_around_time_fs; + else + params->turn_around_time_fs=default_param_turn_around_time_fs; + + if(timeout_cal_hs>=0 && timeout_cal_hs<=7) + params->timeout_cal_hs=timeout_cal_hs; + else + params->timeout_cal_hs=default_param_timeout_cal_hs; + + if(timeout_cal_fs>=0 && timeout_cal_fs<=7) + params->timeout_cal_fs=timeout_cal_fs; + else + params->timeout_cal_fs=default_param_timeout_cal_fs; + + if(data_fifo_size>=32 && data_fifo_size<=32768) + params->data_fifo_size=data_fifo_size; + else + params->data_fifo_size=default_param_data_fifo_size; + + #ifdef __IS_HOST__ + if(host_channels>=1 && host_channels<=16) + params->host_channels=host_channels; + else + params->host_channels=default_param_host_channels; + + if(rx_fifo_size>=16 && rx_fifo_size<=32768) + params->rx_fifo_size=rx_fifo_size; + else + params->rx_fifo_size=default_param_rx_fifo_size; + + if(nperio_tx_fifo_size>=16 && nperio_tx_fifo_size<=32768) + params->nperio_tx_fifo_size=nperio_tx_fifo_size; + else + params->nperio_tx_fifo_size=default_param_nperio_tx_fifo_size; + + if(perio_tx_fifo_size>=16 && perio_tx_fifo_size<=32768) + params->perio_tx_fifo_size=perio_tx_fifo_size; + else + params->perio_tx_fifo_size=default_param_perio_tx_fifo_size; + #endif //__IS_HOST__ + + #ifdef __IS_DEVICE__ + if(rx_fifo_size>=16 && rx_fifo_size<=32768) + params->rx_fifo_size=rx_fifo_size; + else + params->rx_fifo_size=default_param_rx_fifo_size; + #ifdef __DED_FIFO__ + if(tx_fifo_size_00>=16 && tx_fifo_size_00<=32768) + params->tx_fifo_size[ 0]=tx_fifo_size_00; + else + params->tx_fifo_size[ 0]=default_param_tx_fifo_size_00; + if(tx_fifo_size_01>=0 && tx_fifo_size_01<=32768) + params->tx_fifo_size[ 1]=tx_fifo_size_01; + else + params->tx_fifo_size[ 1]=default_param_tx_fifo_size_01; + if(tx_fifo_size_02>=0 && tx_fifo_size_02<=32768) + params->tx_fifo_size[ 2]=tx_fifo_size_02; + else + params->tx_fifo_size[ 2]=default_param_tx_fifo_size_02; + if(tx_fifo_size_03>=0 && tx_fifo_size_03<=32768) + params->tx_fifo_size[ 3]=tx_fifo_size_03; + else + params->tx_fifo_size[ 3]=default_param_tx_fifo_size_03; + if(tx_fifo_size_04>=0 && tx_fifo_size_04<=32768) + params->tx_fifo_size[ 4]=tx_fifo_size_04; + else + params->tx_fifo_size[ 4]=default_param_tx_fifo_size_04; + if(tx_fifo_size_05>=0 && tx_fifo_size_05<=32768) + params->tx_fifo_size[ 5]=tx_fifo_size_05; + else + params->tx_fifo_size[ 5]=default_param_tx_fifo_size_05; + if(tx_fifo_size_06>=0 && tx_fifo_size_06<=32768) + params->tx_fifo_size[ 6]=tx_fifo_size_06; + else + params->tx_fifo_size[ 6]=default_param_tx_fifo_size_06; + if(tx_fifo_size_07>=0 && tx_fifo_size_07<=32768) + params->tx_fifo_size[ 7]=tx_fifo_size_07; + else + params->tx_fifo_size[ 7]=default_param_tx_fifo_size_07; + if(tx_fifo_size_08>=0 && tx_fifo_size_08<=32768) + params->tx_fifo_size[ 8]=tx_fifo_size_08; + else + params->tx_fifo_size[ 8]=default_param_tx_fifo_size_08; + if(tx_fifo_size_09>=0 && tx_fifo_size_09<=32768) + params->tx_fifo_size[ 9]=tx_fifo_size_09; + else + params->tx_fifo_size[ 9]=default_param_tx_fifo_size_09; + if(tx_fifo_size_10>=0 && tx_fifo_size_10<=32768) + params->tx_fifo_size[10]=tx_fifo_size_10; + else + params->tx_fifo_size[10]=default_param_tx_fifo_size_10; + if(tx_fifo_size_11>=0 && tx_fifo_size_11<=32768) + params->tx_fifo_size[11]=tx_fifo_size_11; + else + params->tx_fifo_size[11]=default_param_tx_fifo_size_11; + if(tx_fifo_size_12>=0 && tx_fifo_size_12<=32768) + params->tx_fifo_size[12]=tx_fifo_size_12; + else + params->tx_fifo_size[12]=default_param_tx_fifo_size_12; + if(tx_fifo_size_13>=0 && tx_fifo_size_13<=32768) + params->tx_fifo_size[13]=tx_fifo_size_13; + else + params->tx_fifo_size[13]=default_param_tx_fifo_size_13; + if(tx_fifo_size_14>=0 && tx_fifo_size_14<=32768) + params->tx_fifo_size[14]=tx_fifo_size_14; + else + params->tx_fifo_size[14]=default_param_tx_fifo_size_14; + if(tx_fifo_size_15>=0 && tx_fifo_size_15<=32768) + params->tx_fifo_size[15]=tx_fifo_size_15; + else + params->tx_fifo_size[15]=default_param_tx_fifo_size_15; + if(thr_ctl==0 || thr_ctl==1) + params->thr_ctl=thr_ctl; + else + params->thr_ctl=default_param_thr_ctl; + if(tx_thr_length>=16 && tx_thr_length<=511) + params->tx_thr_length=tx_thr_length; + else + params->tx_thr_length=default_param_tx_thr_length; + if(rx_thr_length>=16 && rx_thr_length<=511) + params->rx_thr_length=rx_thr_length; + else + params->rx_thr_length=default_param_rx_thr_length; + #else //__DED_FIFO__ + if(nperio_tx_fifo_size>=16 && nperio_tx_fifo_size<=32768) + params->tx_fifo_size[ 0]=nperio_tx_fifo_size; + else + params->tx_fifo_size[ 0]=default_param_nperio_tx_fifo_size; + if(perio_tx_fifo_size_01>=0 && perio_tx_fifo_size_01<=32768) + params->tx_fifo_size[ 1]=perio_tx_fifo_size_01; + else + params->tx_fifo_size[ 1]=default_param_perio_tx_fifo_size_01; + if(perio_tx_fifo_size_02>=0 && perio_tx_fifo_size_02<=32768) + params->tx_fifo_size[ 2]=perio_tx_fifo_size_02; + else + params->tx_fifo_size[ 2]=default_param_perio_tx_fifo_size_02; + if(perio_tx_fifo_size_03>=0 && perio_tx_fifo_size_03<=32768) + params->tx_fifo_size[ 3]=perio_tx_fifo_size_03; + else + params->tx_fifo_size[ 3]=default_param_perio_tx_fifo_size_03; + if(perio_tx_fifo_size_04>=0 && perio_tx_fifo_size_04<=32768) + params->tx_fifo_size[ 4]=perio_tx_fifo_size_04; + else + params->tx_fifo_size[ 4]=default_param_perio_tx_fifo_size_04; + if(perio_tx_fifo_size_05>=0 && perio_tx_fifo_size_05<=32768) + params->tx_fifo_size[ 5]=perio_tx_fifo_size_05; + else + params->tx_fifo_size[ 5]=default_param_perio_tx_fifo_size_05; + if(perio_tx_fifo_size_06>=0 && perio_tx_fifo_size_06<=32768) + params->tx_fifo_size[ 6]=perio_tx_fifo_size_06; + else + params->tx_fifo_size[ 6]=default_param_perio_tx_fifo_size_06; + if(perio_tx_fifo_size_07>=0 && perio_tx_fifo_size_07<=32768) + params->tx_fifo_size[ 7]=perio_tx_fifo_size_07; + else + params->tx_fifo_size[ 7]=default_param_perio_tx_fifo_size_07; + if(perio_tx_fifo_size_08>=0 && perio_tx_fifo_size_08<=32768) + params->tx_fifo_size[ 8]=perio_tx_fifo_size_08; + else + params->tx_fifo_size[ 8]=default_param_perio_tx_fifo_size_08; + if(perio_tx_fifo_size_09>=0 && perio_tx_fifo_size_09<=32768) + params->tx_fifo_size[ 9]=perio_tx_fifo_size_09; + else + params->tx_fifo_size[ 9]=default_param_perio_tx_fifo_size_09; + if(perio_tx_fifo_size_10>=0 && perio_tx_fifo_size_10<=32768) + params->tx_fifo_size[10]=perio_tx_fifo_size_10; + else + params->tx_fifo_size[10]=default_param_perio_tx_fifo_size_10; + if(perio_tx_fifo_size_11>=0 && perio_tx_fifo_size_11<=32768) + params->tx_fifo_size[11]=perio_tx_fifo_size_11; + else + params->tx_fifo_size[11]=default_param_perio_tx_fifo_size_11; + if(perio_tx_fifo_size_12>=0 && perio_tx_fifo_size_12<=32768) + params->tx_fifo_size[12]=perio_tx_fifo_size_12; + else + params->tx_fifo_size[12]=default_param_perio_tx_fifo_size_12; + if(perio_tx_fifo_size_13>=0 && perio_tx_fifo_size_13<=32768) + params->tx_fifo_size[13]=perio_tx_fifo_size_13; + else + params->tx_fifo_size[13]=default_param_perio_tx_fifo_size_13; + if(perio_tx_fifo_size_14>=0 && perio_tx_fifo_size_14<=32768) + params->tx_fifo_size[14]=perio_tx_fifo_size_14; + else + params->tx_fifo_size[14]=default_param_perio_tx_fifo_size_14; + if(perio_tx_fifo_size_15>=0 && perio_tx_fifo_size_15<=32768) + params->tx_fifo_size[15]=perio_tx_fifo_size_15; + else + params->tx_fifo_size[15]=default_param_perio_tx_fifo_size_15; + #endif //__DED_FIFO__ + #endif //__IS_DEVICE__ +} + + + + + + + +module_param(dbg_lvl, long, 0444); +MODULE_PARM_DESC(dbg_lvl, "Debug level."); + +module_param(dma_burst_size, short, 0444); +MODULE_PARM_DESC(dma_burst_size, "DMA Burst Size 0, 1, 4, 8, 16"); + +module_param(speed, short, 0444); +MODULE_PARM_DESC(speed, "Speed 0=High Speed 1=Full Speed"); + +module_param(data_fifo_size, long, 0444); +MODULE_PARM_DESC(data_fifo_size, "Total number of words in the data FIFO memory 32-32768"); + +#ifdef __IS_DEVICE__ + module_param(rx_fifo_size, long, 0444); + MODULE_PARM_DESC(rx_fifo_size, "Number of words in the Rx FIFO 16-32768"); + + #ifdef __DED_FIFO__ + module_param(tx_fifo_size_00, long, 0444); + MODULE_PARM_DESC(tx_fifo_size_00, "Number of words in the Tx FIFO #00 16-32768"); + module_param(tx_fifo_size_01, long, 0444); + MODULE_PARM_DESC(tx_fifo_size_01, "Number of words in the Tx FIFO #01 0-32768"); + module_param(tx_fifo_size_02, long, 0444); + MODULE_PARM_DESC(tx_fifo_size_02, "Number of words in the Tx FIFO #02 0-32768"); + module_param(tx_fifo_size_03, long, 0444); + MODULE_PARM_DESC(tx_fifo_size_03, "Number of words in the Tx FIFO #03 0-32768"); + module_param(tx_fifo_size_04, long, 0444); + MODULE_PARM_DESC(tx_fifo_size_04, "Number of words in the Tx FIFO #04 0-32768"); + module_param(tx_fifo_size_05, long, 0444); + MODULE_PARM_DESC(tx_fifo_size_05, "Number of words in the Tx FIFO #05 0-32768"); + module_param(tx_fifo_size_06, long, 0444); + MODULE_PARM_DESC(tx_fifo_size_06, "Number of words in the Tx FIFO #06 0-32768"); + module_param(tx_fifo_size_07, long, 0444); + MODULE_PARM_DESC(tx_fifo_size_07, "Number of words in the Tx FIFO #07 0-32768"); + module_param(tx_fifo_size_08, long, 0444); + MODULE_PARM_DESC(tx_fifo_size_08, "Number of words in the Tx FIFO #08 0-32768"); + module_param(tx_fifo_size_09, long, 0444); + MODULE_PARM_DESC(tx_fifo_size_09, "Number of words in the Tx FIFO #09 0-32768"); + module_param(tx_fifo_size_10, long, 0444); + MODULE_PARM_DESC(tx_fifo_size_10, "Number of words in the Tx FIFO #10 0-32768"); + module_param(tx_fifo_size_11, long, 0444); + MODULE_PARM_DESC(tx_fifo_size_11, "Number of words in the Tx FIFO #11 0-32768"); + module_param(tx_fifo_size_12, long, 0444); + MODULE_PARM_DESC(tx_fifo_size_12, "Number of words in the Tx FIFO #12 0-32768"); + module_param(tx_fifo_size_13, long, 0444); + MODULE_PARM_DESC(tx_fifo_size_13, "Number of words in the Tx FIFO #13 0-32768"); + module_param(tx_fifo_size_14, long, 0444); + MODULE_PARM_DESC(tx_fifo_size_14, "Number of words in the Tx FIFO #14 0-32768"); + module_param(tx_fifo_size_15, long, 0444); + MODULE_PARM_DESC(tx_fifo_size_15, "Number of words in the Tx FIFO #15 0-32768"); + + module_param(thr_ctl, short, 0444); + MODULE_PARM_DESC(thr_ctl, "0=Without 1=With Theshold Ctrl"); + + module_param(tx_thr_length, long, 0444); + MODULE_PARM_DESC(tx_thr_length, "TX Threshold length"); + + module_param(rx_thr_length, long, 0444); + MODULE_PARM_DESC(rx_thr_length, "RX Threshold length"); + + #else + module_param(nperio_tx_fifo_size, long, 0444); + MODULE_PARM_DESC(nperio_tx_fifo_size, "Number of words in the non-periodic Tx FIFO 16-32768"); + + module_param(perio_tx_fifo_size_01, long, 0444); + MODULE_PARM_DESC(perio_tx_fifo_size_01, "Number of words in the periodic Tx FIFO #01 0-32768"); + module_param(perio_tx_fifo_size_02, long, 0444); + MODULE_PARM_DESC(perio_tx_fifo_size_02, "Number of words in the periodic Tx FIFO #02 0-32768"); + module_param(perio_tx_fifo_size_03, long, 0444); + MODULE_PARM_DESC(perio_tx_fifo_size_03, "Number of words in the periodic Tx FIFO #03 0-32768"); + module_param(perio_tx_fifo_size_04, long, 0444); + MODULE_PARM_DESC(perio_tx_fifo_size_04, "Number of words in the periodic Tx FIFO #04 0-32768"); + module_param(perio_tx_fifo_size_05, long, 0444); + MODULE_PARM_DESC(perio_tx_fifo_size_05, "Number of words in the periodic Tx FIFO #05 0-32768"); + module_param(perio_tx_fifo_size_06, long, 0444); + MODULE_PARM_DESC(perio_tx_fifo_size_06, "Number of words in the periodic Tx FIFO #06 0-32768"); + module_param(perio_tx_fifo_size_07, long, 0444); + MODULE_PARM_DESC(perio_tx_fifo_size_07, "Number of words in the periodic Tx FIFO #07 0-32768"); + module_param(perio_tx_fifo_size_08, long, 0444); + MODULE_PARM_DESC(perio_tx_fifo_size_08, "Number of words in the periodic Tx FIFO #08 0-32768"); + module_param(perio_tx_fifo_size_09, long, 0444); + MODULE_PARM_DESC(perio_tx_fifo_size_09, "Number of words in the periodic Tx FIFO #09 0-32768"); + module_param(perio_tx_fifo_size_10, long, 0444); + MODULE_PARM_DESC(perio_tx_fifo_size_10, "Number of words in the periodic Tx FIFO #10 0-32768"); + module_param(perio_tx_fifo_size_11, long, 0444); + MODULE_PARM_DESC(perio_tx_fifo_size_11, "Number of words in the periodic Tx FIFO #11 0-32768"); + module_param(perio_tx_fifo_size_12, long, 0444); + MODULE_PARM_DESC(perio_tx_fifo_size_12, "Number of words in the periodic Tx FIFO #12 0-32768"); + module_param(perio_tx_fifo_size_13, long, 0444); + MODULE_PARM_DESC(perio_tx_fifo_size_13, "Number of words in the periodic Tx FIFO #13 0-32768"); + module_param(perio_tx_fifo_size_14, long, 0444); + MODULE_PARM_DESC(perio_tx_fifo_size_14, "Number of words in the periodic Tx FIFO #14 0-32768"); + module_param(perio_tx_fifo_size_15, long, 0444); + MODULE_PARM_DESC(perio_tx_fifo_size_15, "Number of words in the periodic Tx FIFO #15 0-32768"); + #endif//__DED_FIFO__ + module_param(dev_endpoints, short, 0444); + MODULE_PARM_DESC(dev_endpoints, "The number of endpoints in addition to EP0 available for device mode 1-15"); +#endif + +#ifdef __IS_HOST__ + module_param(rx_fifo_size, long, 0444); + MODULE_PARM_DESC(rx_fifo_size, "Number of words in the Rx FIFO 16-32768"); + + module_param(nperio_tx_fifo_size, long, 0444); + MODULE_PARM_DESC(nperio_tx_fifo_size, "Number of words in the non-periodic Tx FIFO 16-32768"); + + module_param(perio_tx_fifo_size, long, 0444); + MODULE_PARM_DESC(perio_tx_fifo_size, "Number of words in the host periodic Tx FIFO 16-32768"); + + module_param(host_channels, short, 0444); + MODULE_PARM_DESC(host_channels, "The number of host channel registers to use 1-16"); +#endif + +module_param(max_transfer_size, long, 0444); +MODULE_PARM_DESC(max_transfer_size, "The maximum transfer size supported in bytes 2047-65535"); + +module_param(max_packet_count, long, 0444); +MODULE_PARM_DESC(max_packet_count, "The maximum number of packets in a transfer 15-511"); + +module_param(phy_utmi_width, long, 0444); +MODULE_PARM_DESC(phy_utmi_width, "Specifies the UTMI+ Data Width 8 or 16 bits"); + +module_param(turn_around_time_hs, long, 0444); +MODULE_PARM_DESC(turn_around_time_hs, "Turn-Around time for HS"); + +module_param(turn_around_time_fs, long, 0444); +MODULE_PARM_DESC(turn_around_time_fs, "Turn-Around time for FS"); + +module_param(timeout_cal_hs, long, 0444); +MODULE_PARM_DESC(timeout_cal_hs, "Timeout Cal for HS"); + +module_param(timeout_cal_fs, long, 0444); +MODULE_PARM_DESC(timeout_cal_fs, "Timeout Cal for FS"); + diff --git a/package/kernel/lantiq/ltq-hcd/src/ifxusb_host.ko b/package/kernel/lantiq/ltq-hcd/src/ifxusb_host.ko Binary files differnew file mode 100644 index 0000000..1dd25ca --- /dev/null +++ b/package/kernel/lantiq/ltq-hcd/src/ifxusb_host.ko diff --git a/package/kernel/lantiq/ltq-hcd/src/ifxusb_plat.h b/package/kernel/lantiq/ltq-hcd/src/ifxusb_plat.h new file mode 100644 index 0000000..df959cf --- /dev/null +++ b/package/kernel/lantiq/ltq-hcd/src/ifxusb_plat.h @@ -0,0 +1,1184 @@ +/***************************************************************************** + ** FILE NAME : ifxusb_plat.h + ** PROJECT : IFX USB sub-system V3 + ** MODULES : IFX USB sub-system Host and Device driver + ** SRC VERSION : 3.2 + ** DATE : 1/Jan/2011 + ** AUTHOR : Chen, Howard + ** DESCRIPTION : This file contains the Platform Specific constants, interfaces + ** (functions and macros). + ** FUNCTIONS : + ** COMPILER : gcc + ** REFERENCE : Synopsys DWC-OTG Driver 2.7 + ** COPYRIGHT : Copyright (c) 2010 + ** LANTIQ DEUTSCHLAND GMBH, + ** Am Campeon 3, 85579 Neubiberg, Germany + ** + ** This program is free software; you can redistribute it and/or modify + ** it under the terms of the GNU General Public License as published by + ** the Free Software Foundation; either version 2 of the License, or + ** (at your option) any later version. + ** + ** Version Control Section ** + ** $Author$ + ** $Date$ + ** $Revisions$ + ** $Log$ Revision history + *****************************************************************************/ + +/* + * This file contains code fragments from Synopsys HS OTG Linux Software Driver. + * For this code the following notice is applicable: + * + * ========================================================================== + * + * Synopsys HS OTG Linux Software Driver and documentation (hereinafter, + * "Software") is an Unsupported proprietary work of Synopsys, Inc. unless + * otherwise expressly agreed to in writing between Synopsys and you. + * + * The Software IS NOT an item of Licensed Software or Licensed Product under + * any End User Software License Agreement or Agreement for Licensed Product + * with Synopsys or any supplement thereto. You are permitted to use and + * redistribute this Software in source and binary forms, with or without + * modification, provided that redistributions of source code must retain this + * notice. You may not view, use, disclose, copy or distribute this file or + * any information contained herein except pursuant to this license grant from + * Synopsys. If you do not agree with this notice, including the disclaimer + * below, then you are not authorized to use the Software. + * + * THIS SOFTWARE IS BEING DISTRIBUTED BY SYNOPSYS SOLELY ON AN "AS IS" BASIS + * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE + * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE + * ARE HEREBY DISCLAIMED. IN NO EVENT SHALL SYNOPSYS BE LIABLE FOR ANY DIRECT, + * INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES + * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR + * SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER + * CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT + * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY + * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH + * DAMAGE. + * ========================================================================== */ + + +/*! + \defgroup IFXUSB_PLATEFORM_DEFINITION Platform Specific constants, interfaces (functions and macros). + \ingroup IFXUSB_DRIVER_V3 + \brief Maintain plateform specific definitions and macros in this file. + Each plateform has its own definition zone. + */ + +/*! + \defgroup IFXUSB_PLATEFORM_MEM_ADDR Definition of memory address and size and default parameters + \ingroup IFXUSB_PLATEFORM_DEFINITION + */ + +/*! + \defgroup IFXUSB_DBG_ROUTINE Routines for debug message + \ingroup IFXUSB_PLATEFORM_DEFINITION + */ + + +/*! \file ifxusb_plat.h + \ingroup IFXUSB_DRIVER_V3 + \brief This file contains the Platform Specific constants, interfaces (functions and macros). +*/ + +#if !defined(__IFXUSB_PLAT_H__) +#define __IFXUSB_PLAT_H__ + + +#include <linux/types.h> +#include <linux/slab.h> +#include <linux/list.h> +#include <linux/delay.h> +#include <asm/io.h> + + +#define IFXUSB_IOMEM_SIZE 0x00001000 +#define IFXUSB_FIFOMEM_SIZE 0x00010000 +#define IFXUSB_FIFODBG_SIZE 0x00020000 + + + +/*! + \addtogroup IFXUSB_PLATEFORM_MEM_ADDR + */ +/*@{*/ +#if defined(__UEIP__) + #if defined(__IS_TWINPASS__) || defined(__IS_DANUBE__) + #define IFXUSB_IRQ 62 + #define IFXUSB_IOMEM_BASE 0x1e101000 + #define IFXUSB_FIFOMEM_BASE 0x1e120000 + #define IFXUSB_FIFODBG_BASE 0x1e140000 + #define IFXUSB_OC_IRQ 159 + + #ifndef DANUBE_RCU_BASE_ADDR + #define DANUBE_RCU_BASE_ADDR (0xBF203000) + #endif + + #ifndef DANUBE_CGU + #define DANUBE_CGU (0xBF103000) + #endif + #ifndef DANUBE_CGU_IFCCR + #define DANUBE_CGU_IFCCR ((volatile unsigned long *)(DANUBE_CGU+ 0x0018)) + #endif + #ifndef DANUBE_PMU + #define DANUBE_PMU (KSEG1+0x1F102000) + #endif + #ifndef DANUBE_PMU_PWDCR + #define DANUBE_PMU_PWDCR ((volatile unsigned long *)(DANUBE_PMU+0x001C)) + #endif + + #ifndef DANUBE_GPIO_P0_OUT + #define DANUBE_GPIO_P0_OUT (0xBF103000+0x10) + #define DANUBE_GPIO_P0_DIR (0xBF103000+0x18) + #define DANUBE_GPIO_P0_ALTSEL0 (0xBF103000+0x1C) + #define DANUBE_GPIO_P0_ALTSEL1 (0xBF103000+0x20) + #define DANUBE_GPIO_P0_OD (0xBF103000+0x24) + #define DANUBE_GPIO_P0_PUDSEL (0xBF103000+0x2C) + #define DANUBE_GPIO_P0_PUDEN (0xBF103000+0x30) + #define DANUBE_GPIO_P1_OUT (0xBF103000+0x40) + #define DANUBE_GPIO_P1_DIR (0xBF103000+0x48) + #define DANUBE_GPIO_P1_ALTSEL0 (0xBF103000+0x4C) + #define DANUBE_GPIO_P1_ALTSEL1 (0xBF103000+0x50) + #define DANUBE_GPIO_P1_OD (0xBF103000+0x54) + #define DANUBE_GPIO_P1_PUDSEL (0xBF103000+0x5C) + #define DANUBE_GPIO_P1_PUDEN (0xBF103000+0x60) + #endif + + #define DANUBE_RCU_USBCFG ((volatile unsigned long *)(DANUBE_RCU_BASE_ADDR + 0x18)) + #define DANUBE_RCU_RESET ((volatile unsigned long *)(DANUBE_RCU_BASE_ADDR + 0x10)) + #define DANUBE_USBCFG_HDSEL_BIT 11 // 0:host, 1:device + #define DANUBE_USBCFG_HOST_END_BIT 10 // 0:little_end, 1:big_end + #define DANUBE_USBCFG_SLV_END_BIT 9 // 0:little_end, 1:big_end + + #define default_param_dma_burst_size 4 + + #define default_param_speed IFXUSB_PARAM_SPEED_HIGH + + #define default_param_max_transfer_size -1 //(Max, hwcfg) + #define default_param_max_packet_count -1 //(Max, hwcfg) + #define default_param_phy_utmi_width 16 + + #define default_param_turn_around_time_hs 4 + #define default_param_turn_around_time_fs 4 + #define default_param_timeout_cal_hs -1 //(NoChange) + #define default_param_timeout_cal_fs -1 //(NoChange) + + #define default_param_data_fifo_size -1 //(Max, hwcfg) + + #ifdef __IS_HOST__ + #define default_param_host_channels -1 //(Max, hwcfg) + #define default_param_rx_fifo_size 640 + #define default_param_nperio_tx_fifo_size 640 + #define default_param_perio_tx_fifo_size 768 + #endif //__IS_HOST__ + + #ifdef __IS_DEVICE__ + #ifdef __DED_INTR__ +// #define default_param_rx_fifo_size 1024 +// #define default_param_nperio_tx_fifo_size 1016 +// #define default_param_perio_tx_fifo_size_01 8 + #define default_param_rx_fifo_size 1008 + #define default_param_nperio_tx_fifo_size 1008 + #define default_param_perio_tx_fifo_size_01 32 + #else + #define default_param_rx_fifo_size 1024 + #define default_param_nperio_tx_fifo_size 1024 + #define default_param_perio_tx_fifo_size_01 0 + #endif + #define default_param_perio_tx_fifo_size_02 0 + #define default_param_perio_tx_fifo_size_03 0 + #define default_param_perio_tx_fifo_size_04 0 + #define default_param_perio_tx_fifo_size_05 0 + #define default_param_perio_tx_fifo_size_06 0 + #define default_param_perio_tx_fifo_size_07 0 + #define default_param_perio_tx_fifo_size_08 0 + #define default_param_perio_tx_fifo_size_09 0 + #define default_param_perio_tx_fifo_size_10 0 + #define default_param_perio_tx_fifo_size_11 0 + #define default_param_perio_tx_fifo_size_12 0 + #define default_param_perio_tx_fifo_size_13 0 + #define default_param_perio_tx_fifo_size_14 0 + #define default_param_perio_tx_fifo_size_15 0 + #endif //__IS_DEVICE__ + + #elif defined(__IS_AMAZON_SE__) + //#include <asm/amazon_se/amazon_se.h> + //#include <asm/amazon_se/irq.h> + + #define IFXUSB_IRQ 39 + #define IFXUSB_IOMEM_BASE 0x1e101000 + #define IFXUSB_FIFOMEM_BASE 0x1e120000 + #define IFXUSB_FIFODBG_BASE 0x1e140000 + #define IFXUSB_OC_IRQ 20 + + #ifndef AMAZON_SE_RCU_BASE_ADDR + #define AMAZON_SE_RCU_BASE_ADDR (0xBF203000) + #endif + #define AMAZON_SE_RCU_USBCFG ((volatile unsigned long *)(AMAZON_SE_RCU_BASE_ADDR + 0x18)) + #define AMAZON_SE_RCU_RESET ((volatile unsigned long *)(AMAZON_SE_RCU_BASE_ADDR + 0x10)) + #define AMAZON_SE_USBCFG_HDSEL_BIT 11 // 0:host, 1:device + #define AMAZON_SE_USBCFG_HOST_END_BIT 10 // 0:little_end, 1:big_end + #define AMAZON_SE_USBCFG_SLV_END_BIT 9 // 0:little_end, 1:big_end + + #ifndef AMAZON_SE_GPIO_P0_OUT + #define AMAZON_SE_GPIO_P0_OUT (0xBF103000+0x10) + #define AMAZON_SE_GPIO_P0_DIR (0xBF103000+0x18) + #define AMAZON_SE_GPIO_P0_ALTSEL0 (0xBF103000+0x1C) + #define AMAZON_SE_GPIO_P0_ALTSEL1 (0xBF103000+0x20) + #define AMAZON_SE_GPIO_P0_OD (0xBF103000+0x24) + #define AMAZON_SE_GPIO_P0_PUDSEL (0xBF103000+0x2C) + #define AMAZON_SE_GPIO_P0_PUDEN (0xBF103000+0x30) + #define AMAZON_SE_GPIO_P1_OUT (0xBF103000+0x40) + #define AMAZON_SE_GPIO_P1_DIR (0xBF103000+0x48) + #define AMAZON_SE_GPIO_P1_ALTSEL0 (0xBF103000+0x4C) + #define AMAZON_SE_GPIO_P1_ALTSEL1 (0xBF103000+0x50) + #define AMAZON_SE_GPIO_P1_OD (0xBF103000+0x54) + #define AMAZON_SE_GPIO_P1_PUDSEL (0xBF103000+0x5C) + #define AMAZON_SE_GPIO_P1_PUDEN (0xBF103000+0x60) + #endif + + #ifndef AMAZON_SE_CGU + #define AMAZON_SE_CGU (0xBF103000) + #endif + #ifndef AMAZON_SE_CGU_IFCCR + #define AMAZON_SE_CGU_IFCCR ((volatile unsigned long *)(AMAZON_SE_CGU+ 0x0018)) + #endif + #ifndef AMAZON_SE_PMU + #define AMAZON_SE_PMU (KSEG1+0x1F102000) + #endif + #ifndef AMAZON_SE_PMU_PWDCR + #define AMAZON_SE_PMU_PWDCR ((volatile unsigned long *)(AMAZON_SE_PMU+0x001C)) + #endif + + #define default_param_dma_burst_size 4 + + #define default_param_speed IFXUSB_PARAM_SPEED_HIGH + + #define default_param_max_transfer_size -1 //(Max, hwcfg) + #define default_param_max_packet_count -1 //(Max, hwcfg) + #define default_param_phy_utmi_width 16 + + #define default_param_turn_around_time_hs 4 //(NoChange) + #define default_param_turn_around_time_fs 4 //(NoChange) + #define default_param_timeout_cal_hs -1 //(NoChange) + #define default_param_timeout_cal_fs -1 //(NoChange) + + #define default_param_data_fifo_size -1 //(Max, hwcfg) + + #ifdef __IS_HOST__ + #define default_param_host_channels -1 //(Max, hwcfg) + #define default_param_rx_fifo_size 240 + #define default_param_nperio_tx_fifo_size 240 + #define default_param_perio_tx_fifo_size 32 + #endif //__IS_HOST__ + #ifdef __IS_DEVICE__ + #ifdef __DED_INTR__ +// #define default_param_rx_fifo_size 256 +// #define default_param_nperio_tx_fifo_size 248 +// #define default_param_perio_tx_fifo_size_01 8 + #define default_param_rx_fifo_size 240 + #define default_param_nperio_tx_fifo_size 240 + #define default_param_perio_tx_fifo_size_01 32 + #else + #define default_param_rx_fifo_size 256 + #define default_param_nperio_tx_fifo_size 256 + #define default_param_perio_tx_fifo_size_01 0 + #endif + #define default_param_perio_tx_fifo_size_02 0 + #define default_param_perio_tx_fifo_size_03 0 + #define default_param_perio_tx_fifo_size_04 0 + #define default_param_perio_tx_fifo_size_05 0 + #define default_param_perio_tx_fifo_size_06 0 + #define default_param_perio_tx_fifo_size_07 0 + #define default_param_perio_tx_fifo_size_08 0 + #define default_param_perio_tx_fifo_size_09 0 + #define default_param_perio_tx_fifo_size_10 0 + #define default_param_perio_tx_fifo_size_11 0 + #define default_param_perio_tx_fifo_size_12 0 + #define default_param_perio_tx_fifo_size_13 0 + #define default_param_perio_tx_fifo_size_14 0 + #define default_param_perio_tx_fifo_size_15 0 + #endif //__IS_DEVICE__ + + #elif defined(__IS_AR9__) + #define IFXUSB1_IRQ 62 + #define IFXUSB1_IOMEM_BASE 0x1E101000 + #define IFXUSB1_FIFOMEM_BASE 0x1E120000 + #define IFXUSB1_FIFODBG_BASE 0x1E140000 + + #define IFXUSB2_IRQ 91 + #define IFXUSB2_IOMEM_BASE 0x1E106000 + #define IFXUSB2_FIFOMEM_BASE 0x1E1E0000 + #define IFXUSB2_FIFODBG_BASE 0x1E1C0000 + + #define IFXUSB_OC_IRQ 68 + + #ifndef AR9_RCU_BASE_ADDR + #define AR9_RCU_BASE_ADDR (0xBF203000) + #endif + + #ifndef AR9_CGU + #define AR9_CGU (0xBF103000) + #endif + #ifndef AR9_CGU_IFCCR + #define AR9_CGU_IFCCR ((volatile unsigned long *)(AR9_CGU+ 0x0018)) + #endif + + #ifndef AR9_PMU + #define AR9_PMU (KSEG1+0x1F102000) + #endif + #ifndef AR9_PMU_PWDCR + #define AR9_PMU_PWDCR ((volatile unsigned long *)(AR9_PMU+0x001C)) + #endif + + #ifndef AR9_GPIO_P0_OUT + #define AR9_GPIO_P0_OUT (0xBF103000+0x10) + #define AR9_GPIO_P0_DIR (0xBF103000+0x18) + #define AR9_GPIO_P0_ALTSEL0 (0xBF103000+0x1C) + #define AR9_GPIO_P0_ALTSEL1 (0xBF103000+0x20) + #define AR9_GPIO_P0_OD (0xBF103000+0x24) + #define AR9_GPIO_P0_PUDSEL (0xBF103000+0x2C) + #define AR9_GPIO_P0_PUDEN (0xBF103000+0x30) + #define AR9_GPIO_P1_OUT (0xBF103000+0x40) + #define AR9_GPIO_P1_DIR (0xBF103000+0x48) + #define AR9_GPIO_P1_ALTSEL0 (0xBF103000+0x4C) + #define AR9_GPIO_P1_ALTSEL1 (0xBF103000+0x50) + #define AR9_GPIO_P1_OD (0xBF103000+0x54) + #define AR9_GPIO_P1_PUDSEL (0xBF103000+0x5C) + #define AR9_GPIO_P1_PUDEN (0xBF103000+0x60) + #endif + + #define AR9_RCU_USB1CFG ((volatile unsigned long *)(AR9_RCU_BASE_ADDR + 0x18)) + #define AR9_RCU_USB2CFG ((volatile unsigned long *)(AR9_RCU_BASE_ADDR + 0x34)) + #define AR9_RCU_USBRESET ((volatile unsigned long *)(AR9_RCU_BASE_ADDR + 0x10)) + #define AR9_USBCFG_ARB 7 // + #define AR9_USBCFG_HDSEL_BIT 11 // 0:host, 1:device + #define AR9_USBCFG_HOST_END_BIT 10 // 0:little_end, 1:big_end + #define AR9_USBCFG_SLV_END_BIT 17 // 0:little_end, 1:big_end + + #define default_param_dma_burst_size 4 + + #define default_param_speed IFXUSB_PARAM_SPEED_HIGH + + #define default_param_max_transfer_size -1 //(Max, hwcfg) + #define default_param_max_packet_count -1 //(Max, hwcfg) + #define default_param_phy_utmi_width 16 + + #define default_param_turn_around_time_hs 4 //(NoChange) + #define default_param_turn_around_time_fs 4 //(NoChange) + #define default_param_timeout_cal_hs -1 //(NoChange) + #define default_param_timeout_cal_fs -1 //(NoChange) + + #define default_param_data_fifo_size -1 //(Max, hwcfg) + + #ifdef __IS_HOST__ + #define default_param_host_channels -1 //(Max, hwcfg) + #define default_param_rx_fifo_size 240 + #define default_param_nperio_tx_fifo_size 240 + #define default_param_perio_tx_fifo_size 32 + #endif //__IS_HOST__ + #ifdef __IS_DEVICE__ + #ifdef __DED_INTR__ +// #define default_param_rx_fifo_size 256 +// #define default_param_nperio_tx_fifo_size 248 +// #define default_param_perio_tx_fifo_size_01 8 + #define default_param_rx_fifo_size 240 + #define default_param_nperio_tx_fifo_size 240 + #define default_param_perio_tx_fifo_size_01 32 + #else + #define default_param_rx_fifo_size 256 + #define default_param_nperio_tx_fifo_size 256 + #define default_param_perio_tx_fifo_size_01 0 + #endif + #define default_param_perio_tx_fifo_size_02 0 + #define default_param_perio_tx_fifo_size_03 0 + #define default_param_perio_tx_fifo_size_04 0 + #define default_param_perio_tx_fifo_size_05 0 + #define default_param_perio_tx_fifo_size_06 0 + #define default_param_perio_tx_fifo_size_07 0 + #define default_param_perio_tx_fifo_size_08 0 + #define default_param_perio_tx_fifo_size_09 0 + #define default_param_perio_tx_fifo_size_10 0 + #define default_param_perio_tx_fifo_size_11 0 + #define default_param_perio_tx_fifo_size_12 0 + #define default_param_perio_tx_fifo_size_13 0 + #define default_param_perio_tx_fifo_size_14 0 + #define default_param_perio_tx_fifo_size_15 0 + #endif //__IS_DEVICE__ + + #elif defined(__IS_VR9__) + #define IFXUSB1_IRQ 62 + #define IFXUSB1_IOMEM_BASE 0x1E101000 + #define IFXUSB1_FIFOMEM_BASE 0x1E120000 + #define IFXUSB1_FIFODBG_BASE 0x1E140000 + + #define IFXUSB2_IRQ 91 + #define IFXUSB2_IOMEM_BASE 0x1E106000 + #define IFXUSB2_FIFOMEM_BASE 0x1E1E0000 + #define IFXUSB2_FIFODBG_BASE 0x1E1C0000 + #define IFXUSB_OC_IRQ 60 + + #ifndef IFX_MPS + #define IFX_MPS (KSEG1+0x1F107000) + #endif + #ifndef IFX_MPS_CHIPID + #define IFX_MPS_CHIPID ((volatile unsigned long *)(IFX_MPS + 0x0344)) + #endif + + #ifndef VR9_RCU_BASE_ADDR + #define VR9_RCU_BASE_ADDR (0xBF203000) + #endif + + #ifndef VR9_CGU + #define VR9_CGU (0xBF103000) + #endif + #ifndef VR9_CGU_IFCCR + #define VR9_CGU_IFCCR ((volatile unsigned long *)(VR9_CGU+ 0x0018)) + #endif + + #ifndef VR9_PMU + #define VR9_PMU (KSEG1+0x1F102000) + #endif + #ifndef VR9_PMU_PWDCR + #define VR9_PMU_PWDCR ((volatile unsigned long *)(VR9_PMU+0x001C)) + #endif + + #ifndef VR9_GPIO_P0_OUT + #define VR9_GPIO_P0_OUT (0xBF103000+0x10) + #define VR9_GPIO_P0_DIR (0xBF103000+0x18) + #define VR9_GPIO_P0_ALTSEL0 (0xBF103000+0x1C) + #define VR9_GPIO_P0_ALTSEL1 (0xBF103000+0x20) + #define VR9_GPIO_P0_OD (0xBF103000+0x24) + #define VR9_GPIO_P0_PUDSEL (0xBF103000+0x2C) + #define VR9_GPIO_P0_PUDEN (0xBF103000+0x30) + #define VR9_GPIO_P1_OUT (0xBF103000+0x40) + #define VR9_GPIO_P1_DIR (0xBF103000+0x48) + #define VR9_GPIO_P1_ALTSEL0 (0xBF103000+0x4C) + #define VR9_GPIO_P1_ALTSEL1 (0xBF103000+0x50) + #define VR9_GPIO_P1_OD (0xBF103000+0x54) + #define VR9_GPIO_P1_PUDSEL (0xBF103000+0x5C) + #define VR9_GPIO_P1_PUDEN (0xBF103000+0x60) + #endif + + #define VR9_RCU_USB1CFG ((volatile unsigned long *)(VR9_RCU_BASE_ADDR + 0x18)) + #define VR9_RCU_USB2CFG ((volatile unsigned long *)(VR9_RCU_BASE_ADDR + 0x34)) + #define VR9_RCU_USB_ANA_CFG1A ((volatile unsigned long *)(VR9_RCU_BASE_ADDR + 0x38)) + #define VR9_RCU_USB_ANA_CFG1B ((volatile unsigned long *)(VR9_RCU_BASE_ADDR + 0x3C)) + #define VR9_RCU_USBRESET ((volatile unsigned long *)(VR9_RCU_BASE_ADDR + 0x10)) + #define VR9_RCU_USBRESET2 ((volatile unsigned long *)(VR9_RCU_BASE_ADDR + 0x48)) + #define VR9_USBCFG_ARB 7 // + #define VR9_USBCFG_HDSEL_BIT 11 // 0:host, 1:device + #define VR9_USBCFG_HOST_END_BIT 10 // 0:little_end, 1:big_end + #define VR9_USBCFG_SLV_END_BIT 9 // 0:little_end, 1:big_end + +// #define default_param_dma_burst_size 4 //(ALL) + //WA for AHB + #define default_param_dma_burst_size 0 //(ALL) + #define default_param_dma_burst_size_n 4 //(ALL) + + #define default_param_speed IFXUSB_PARAM_SPEED_HIGH + + #define default_param_max_transfer_size -1 //(Max, hwcfg) + #define default_param_max_packet_count -1 //(Max, hwcfg) + #define default_param_phy_utmi_width 16 + + #define default_param_turn_around_time_hs 6 //(NoChange) snpsid >= 0x4f54260a + #define default_param_turn_around_time_fs 6 //(NoChange) snpsid >= 0x4f54260a + #define default_param_timeout_cal_hs -1 //(NoChange) + #define default_param_timeout_cal_fs -1 //(NoChange) + + #define default_param_data_fifo_size -1 //(Max, hwcfg) + + #ifdef __IS_HOST__ + #define default_param_host_channels -1 //(Max, hwcfg) + #define default_param_rx_fifo_size 240 + #define default_param_nperio_tx_fifo_size 240 + #define default_param_perio_tx_fifo_size 32 + #endif //__IS_HOST__ + #ifdef __IS_DEVICE__ +#if 0 + #define default_param_rx_fifo_size 256 + #define default_param_tx_fifo_size_00 -1 + #define default_param_tx_fifo_size_01 -1 + #define default_param_tx_fifo_size_02 -1 +#else + #define default_param_rx_fifo_size 256 + #define default_param_tx_fifo_size_00 32 + #define default_param_tx_fifo_size_01 200 + #define default_param_tx_fifo_size_02 8 +#endif + #define default_param_tx_fifo_size_03 -1 + #define default_param_tx_fifo_size_04 -1 + #define default_param_tx_fifo_size_05 -1 + #define default_param_tx_fifo_size_06 -1 + #define default_param_tx_fifo_size_07 -1 + #define default_param_tx_fifo_size_08 -1 + #define default_param_tx_fifo_size_09 -1 + #define default_param_tx_fifo_size_10 -1 + #define default_param_tx_fifo_size_11 -1 + #define default_param_tx_fifo_size_12 -1 + #define default_param_tx_fifo_size_13 -1 + #define default_param_tx_fifo_size_14 -1 + #define default_param_tx_fifo_size_15 -1 + #define default_param_dma_unalgned_tx -1 + #define default_param_dma_unalgned_rx -1 + #define default_param_thr_ctl -1 + #define default_param_tx_thr_length -1 + #define default_param_rx_thr_length -1 + #endif //__IS_DEVICE__ + + #elif defined(__IS_AR10__) + #define IFXUSB1_IRQ 54 + #define IFXUSB1_IOMEM_BASE 0x1E101000 + #define IFXUSB1_FIFOMEM_BASE 0x1E120000 + #define IFXUSB1_FIFODBG_BASE 0x1E140000 + #define IFXUSB1_OC_IRQ 60 + + #define IFXUSB2_IRQ 83 + #define IFXUSB2_IOMEM_BASE 0x1E106000 + #define IFXUSB2_FIFOMEM_BASE 0x1E1E0000 + #define IFXUSB2_FIFODBG_BASE 0x1E1C0000 + #define IFXUSB2_OC_IRQ 56 + + #ifndef AR10_RCU_BASE_ADDR + #define AR10_RCU_BASE_ADDR (0xBF203000) + #endif + #ifndef AR10_CGU + #define AR10_CGU (0xBF103000) + #endif + + #ifndef AR10_CGU_IFCCR + #define AR10_CGU_IFCCR ((volatile unsigned long *)(AR10_CGU+ 0x0018)) + #endif + #ifndef AR10_PMU + #define AR10_PMU (KSEG1+0x1F102000) + #endif + #ifndef AR10_PMU_PWDCR + #define AR10_PMU_PWDCR ((volatile unsigned long *)(AR10_PMU+0x0044)) + #endif + + #ifndef AR10_GPIO_P0_OUT + #define AR10_GPIO_P0_OUT (0xBF103000+0x10) + #define AR10_GPIO_P0_DIR (0xBF103000+0x18) + #define AR10_GPIO_P0_ALTSEL0 (0xBF103000+0x1C) + #define AR10_GPIO_P0_ALTSEL1 (0xBF103000+0x20) + #define AR10_GPIO_P0_OD (0xBF103000+0x24) + #define AR10_GPIO_P0_PUDSEL (0xBF103000+0x2C) + #define AR10_GPIO_P0_PUDEN (0xBF103000+0x30) + #define AR10_GPIO_P1_OUT (0xBF103000+0x40) + #define AR10_GPIO_P1_DIR (0xBF103000+0x48) + #define AR10_GPIO_P1_ALTSEL0 (0xBF103000+0x4C) + #define AR10_GPIO_P1_ALTSEL1 (0xBF103000+0x50) + #define AR10_GPIO_P1_OD (0xBF103000+0x54) + #define AR10_GPIO_P1_PUDSEL (0xBF103000+0x5C) + #define AR10_GPIO_P1_PUDEN (0xBF103000+0x60) + #endif + + #define AR10_RCU_USB1CFG ((volatile unsigned long *)(AR10_RCU_BASE_ADDR + 0x18)) + #define AR10_RCU_USB2CFG ((volatile unsigned long *)(AR10_RCU_BASE_ADDR + 0x34)) + #define AR10_RCU_USB_ANA_CFG1A ((volatile unsigned long *)(AR10_RCU_BASE_ADDR + 0x38)) + #define AR10_RCU_USB_ANA_CFG1B ((volatile unsigned long *)(AR10_RCU_BASE_ADDR + 0x3C)) + + #define AR10_RCU_USBRESET ((volatile unsigned long *)(AR10_RCU_BASE_ADDR + 0x10)) + + #define AR10_USBCFG_ARB 7 // + #define AR10_USBCFG_HDSEL_BIT 11 // 0:host, 1:device + #define AR10_USBCFG_HOST_END_BIT 10 // 0:little_end, 1:big_end + #define AR10_USBCFG_SLV_END_BIT 9 // 0:little_end, 1:big_end + +// #define default_param_dma_burst_size 4 //(ALL) + //WA for AHB + #define default_param_dma_burst_size 0 //(ALL) + + #define default_param_speed IFXUSB_PARAM_SPEED_HIGH + + #define default_param_max_transfer_size -1 //(Max, hwcfg) + #define default_param_max_packet_count -1 //(Max, hwcfg) + #define default_param_phy_utmi_width 16 + + #define default_param_turn_around_time_hs 6 //(NoChange) snpsid >= 0x4f54260a + #define default_param_turn_around_time_fs 6 //(NoChange) snpsid >= 0x4f54260a + #define default_param_timeout_cal_hs -1 //(NoChange) + #define default_param_timeout_cal_fs -1 //(NoChange) + + #define default_param_data_fifo_size -1 //(Max, hwcfg) + + #ifdef __IS_HOST__ + #define default_param_host_channels -1 //(Max, hwcfg) + #define default_param_rx_fifo_size 240 + #define default_param_nperio_tx_fifo_size 240 + #define default_param_perio_tx_fifo_size 32 + #endif //__IS_HOST__ + #ifdef __IS_DEVICE__ +#if 0 + #define default_param_rx_fifo_size 256 + #define default_param_tx_fifo_size_00 -1 + #define default_param_tx_fifo_size_01 -1 + #define default_param_tx_fifo_size_02 -1 +#else + #define default_param_rx_fifo_size 256 + #define default_param_tx_fifo_size_00 32 + #define default_param_tx_fifo_size_01 200 + #define default_param_tx_fifo_size_02 8 +#endif + #define default_param_tx_fifo_size_03 -1 + #define default_param_tx_fifo_size_04 -1 + #define default_param_tx_fifo_size_05 -1 + #define default_param_tx_fifo_size_06 -1 + #define default_param_tx_fifo_size_07 -1 + #define default_param_tx_fifo_size_08 -1 + #define default_param_tx_fifo_size_09 -1 + #define default_param_tx_fifo_size_10 -1 + #define default_param_tx_fifo_size_11 -1 + #define default_param_tx_fifo_size_12 -1 + #define default_param_tx_fifo_size_13 -1 + #define default_param_tx_fifo_size_14 -1 + #define default_param_tx_fifo_size_15 -1 + #define default_param_dma_unalgned_tx -1 + #define default_param_dma_unalgned_rx -1 + #define default_param_thr_ctl -1 + #define default_param_tx_thr_length -1 + #define default_param_rx_thr_length -1 + #endif //__IS_DEVICE__ + #else // __IS_AR10__ + #error "Please choose one platform!!" + #endif // __IS_VR9__ + +#else //UEIP + #if defined(__IS_TWINPASS__) || defined(__IS_DANUBE__) + #define IFXUSB_IRQ 54 + #define IFXUSB_IOMEM_BASE 0x1e101000 + #define IFXUSB_FIFOMEM_BASE 0x1e120000 + #define IFXUSB_FIFODBG_BASE 0x1e140000 + #define IFXUSB_OC_IRQ 151 + + + #ifndef DANUBE_RCU_BASE_ADDR + #define DANUBE_RCU_BASE_ADDR (0xBF203000) + #endif + + #ifndef DANUBE_CGU + #define DANUBE_CGU (0xBF103000) + #endif + #ifndef DANUBE_CGU_IFCCR + #define DANUBE_CGU_IFCCR ((volatile unsigned long *)(DANUBE_CGU+ 0x0018)) + #endif + #ifndef DANUBE_PMU + #define DANUBE_PMU (KSEG1+0x1F102000) + #endif + #ifndef DANUBE_PMU_PWDCR + #define DANUBE_PMU_PWDCR ((volatile unsigned long *)(DANUBE_PMU+0x001C)) + #endif + + #ifndef DANUBE_GPIO_P0_OUT + #define DANUBE_GPIO_P0_OUT (0xBF103000+0x10) + #define DANUBE_GPIO_P0_DIR (0xBF103000+0x18) + #define DANUBE_GPIO_P0_ALTSEL0 (0xBF103000+0x1C) + #define DANUBE_GPIO_P0_ALTSEL1 (0xBF103000+0x20) + #define DANUBE_GPIO_P0_OD (0xBF103000+0x24) + #define DANUBE_GPIO_P0_PUDSEL (0xBF103000+0x2C) + #define DANUBE_GPIO_P0_PUDEN (0xBF103000+0x30) + #define DANUBE_GPIO_P1_OUT (0xBF103000+0x40) + #define DANUBE_GPIO_P1_DIR (0xBF103000+0x48) + #define DANUBE_GPIO_P1_ALTSEL0 (0xBF103000+0x4C) + #define DANUBE_GPIO_P1_ALTSEL1 (0xBF103000+0x50) + #define DANUBE_GPIO_P1_OD (0xBF103000+0x54) + #define DANUBE_GPIO_P1_PUDSEL (0xBF103000+0x5C) + #define DANUBE_GPIO_P1_PUDEN (0xBF103000+0x60) + #endif + + + #define DANUBE_RCU_USBCFG ((volatile unsigned long *)(DANUBE_RCU_BASE_ADDR + 0x18)) + #define DANUBE_RCU_RESET ((volatile unsigned long *)(DANUBE_RCU_BASE_ADDR + 0x10)) + #define DANUBE_USBCFG_HDSEL_BIT 11 // 0:host, 1:device + #define DANUBE_USBCFG_HOST_END_BIT 10 // 0:little_end, 1:big_end + #define DANUBE_USBCFG_SLV_END_BIT 9 // 0:little_end, 1:big_end + + #define default_param_dma_burst_size 4 + + #define default_param_speed IFXUSB_PARAM_SPEED_HIGH + + #define default_param_max_transfer_size -1 //(Max, hwcfg) + #define default_param_max_packet_count -1 //(Max, hwcfg) + #define default_param_phy_utmi_width 16 + + #define default_param_turn_around_time_hs 4 //(NoChange) + #define default_param_turn_around_time_fs 4 //(NoChange) + #define default_param_timeout_cal_hs -1 //(NoChange) + #define default_param_timeout_cal_fs -1 //(NoChange) + + #define default_param_data_fifo_size -1 //(Max, hwcfg) + #ifdef __IS_HOST__ + #define default_param_host_channels -1 //(Max, hwcfg) + #define default_param_rx_fifo_size 640 + #define default_param_nperio_tx_fifo_size 640 + #define default_param_perio_tx_fifo_size 768 + #endif //__IS_HOST__ + + #ifdef __IS_DEVICE__ + #ifdef __DED_INTR__ + #define default_param_rx_fifo_size 1024 + #define default_param_nperio_tx_fifo_size 1016 + #define default_param_perio_tx_fifo_size_01 8 + #else + #define default_param_rx_fifo_size 1024 + #define default_param_nperio_tx_fifo_size 1024 + #define default_param_perio_tx_fifo_size_01 0 + #endif + #define default_param_perio_tx_fifo_size_02 0 + #define default_param_perio_tx_fifo_size_03 0 + #define default_param_perio_tx_fifo_size_04 0 + #define default_param_perio_tx_fifo_size_05 0 + #define default_param_perio_tx_fifo_size_06 0 + #define default_param_perio_tx_fifo_size_07 0 + #define default_param_perio_tx_fifo_size_08 0 + #define default_param_perio_tx_fifo_size_09 0 + #define default_param_perio_tx_fifo_size_10 0 + #define default_param_perio_tx_fifo_size_11 0 + #define default_param_perio_tx_fifo_size_12 0 + #define default_param_perio_tx_fifo_size_13 0 + #define default_param_perio_tx_fifo_size_14 0 + #define default_param_perio_tx_fifo_size_15 0 + #endif //__IS_DEVICE__ + + #elif defined(__IS_AMAZON_SE__) + #include <asm/amazon_se/amazon_se.h> + //#include <asm/amazon_se/irq.h> + + #define IFXUSB_IRQ 31 + #define IFXUSB_IOMEM_BASE 0x1e101000 + #define IFXUSB_FIFOMEM_BASE 0x1e120000 + #define IFXUSB_FIFODBG_BASE 0x1e140000 + #define IFXUSB_OC_IRQ 20 + + #define AMAZON_SE_RCU_USBCFG ((volatile unsigned long *)(AMAZON_SE_RCU_BASE_ADDR + 0x18)) + #define AMAZON_SE_RCU_RESET ((volatile unsigned long *)(AMAZON_SE_RCU_BASE_ADDR + 0x10)) + #define AMAZON_SE_USBCFG_HDSEL_BIT 11 // 0:host, 1:device + #define AMAZON_SE_USBCFG_HOST_END_BIT 10 // 0:little_end, 1:big_end + #define AMAZON_SE_USBCFG_SLV_END_BIT 9 // 0:little_end, 1:big_end + + #ifndef AMAZON_SE_GPIO_P0_OUT + #define AMAZON_SE_GPIO_P0_OUT (0xBF103000+0x10) + #define AMAZON_SE_GPIO_P0_DIR (0xBF103000+0x18) + #define AMAZON_SE_GPIO_P0_ALTSEL0 (0xBF103000+0x1C) + #define AMAZON_SE_GPIO_P0_ALTSEL1 (0xBF103000+0x20) + #define AMAZON_SE_GPIO_P0_OD (0xBF103000+0x24) + #define AMAZON_SE_GPIO_P0_PUDSEL (0xBF103000+0x2C) + #define AMAZON_SE_GPIO_P0_PUDEN (0xBF103000+0x30) + #define AMAZON_SE_GPIO_P1_OUT (0xBF103000+0x40) + #define AMAZON_SE_GPIO_P1_DIR (0xBF103000+0x48) + #define AMAZON_SE_GPIO_P1_ALTSEL0 (0xBF103000+0x4C) + #define AMAZON_SE_GPIO_P1_ALTSEL1 (0xBF103000+0x50) + #define AMAZON_SE_GPIO_P1_OD (0xBF103000+0x54) + #define AMAZON_SE_GPIO_P1_PUDSEL (0xBF103000+0x5C) + #define AMAZON_SE_GPIO_P1_PUDEN (0xBF103000+0x60) + #endif + + + #ifndef AMAZON_SE_CGU + #define AMAZON_SE_CGU (0xBF103000) + #endif + #ifndef AMAZON_SE_CGU_IFCCR + #define AMAZON_SE_CGU_IFCCR ((volatile unsigned long *)(AMAZON_SE_CGU+ 0x0018)) + #endif + #ifndef AMAZON_SE_PMU + #define AMAZON_SE_PMU (KSEG1+0x1F102000) + #endif + #ifndef AMAZON_SE_PMU_PWDCR + #define AMAZON_SE_PMU_PWDCR ((volatile unsigned long *)(AMAZON_SE_PMU+0x001C)) + #endif + + #define default_param_dma_burst_size 4 + + #define default_param_speed IFXUSB_PARAM_SPEED_HIGH + + #define default_param_max_transfer_size -1 //(Max, hwcfg) + #define default_param_max_packet_count -1 //(Max, hwcfg) + #define default_param_phy_utmi_width 16 + + #define default_param_turn_around_time_hs 4 //(NoChange) + #define default_param_turn_around_time_fs 4 //(NoChange) + #define default_param_timeout_cal_hs -1 //(NoChange) + #define default_param_timeout_cal_fs -1 //(NoChange) + + #define default_param_data_fifo_size -1 //(Max, hwcfg) + + #ifdef __IS_HOST__ + #define default_param_host_channels -1 //(Max, hwcfg) + #define default_param_rx_fifo_size 240 + #define default_param_nperio_tx_fifo_size 240 + #define default_param_perio_tx_fifo_size 32 + #endif //__IS_HOST__ + #ifdef __IS_DEVICE__ + #ifdef __DED_INTR__ + #define default_param_rx_fifo_size 256 + #define default_param_nperio_tx_fifo_size 248 + #define default_param_perio_tx_fifo_size_01 8 + #else + #define default_param_rx_fifo_size 256 + #define default_param_nperio_tx_fifo_size 256 + #define default_param_perio_tx_fifo_size_01 0 + #endif + #define default_param_perio_tx_fifo_size_02 0 + #define default_param_perio_tx_fifo_size_03 0 + #define default_param_perio_tx_fifo_size_04 0 + #define default_param_perio_tx_fifo_size_05 0 + #define default_param_perio_tx_fifo_size_06 0 + #define default_param_perio_tx_fifo_size_07 0 + #define default_param_perio_tx_fifo_size_08 0 + #define default_param_perio_tx_fifo_size_09 0 + #define default_param_perio_tx_fifo_size_10 0 + #define default_param_perio_tx_fifo_size_11 0 + #define default_param_perio_tx_fifo_size_12 0 + #define default_param_perio_tx_fifo_size_13 0 + #define default_param_perio_tx_fifo_size_14 0 + #define default_param_perio_tx_fifo_size_15 0 + #endif //__IS_DEVICE__ + + #elif defined(__IS_AR9__) + #define IFXUSB1_IRQ 54 + #define IFXUSB1_IOMEM_BASE 0x1E101000 + #define IFXUSB1_FIFOMEM_BASE 0x1E120000 + #define IFXUSB1_FIFODBG_BASE 0x1E140000 + + #define IFXUSB2_IRQ 83 + #define IFXUSB2_IOMEM_BASE 0x1E106000 + #define IFXUSB2_FIFOMEM_BASE 0x1E1E0000 + #define IFXUSB2_FIFODBG_BASE 0x1E1C0000 + + #define IFXUSB_OC_IRQ 60 + + #ifndef AMAZON_S_RCU_BASE_ADDR + #define AMAZON_S_RCU_BASE_ADDR (0xBF203000) + #endif + + #ifndef AMAZON_S_CGU + #define AMAZON_S_CGU (0xBF103000) + #endif + #ifndef AMAZON_S_CGU_IFCCR + #define AMAZON_S_CGU_IFCCR ((volatile unsigned long *)(AMAZON_S_CGU+ 0x0018)) + #endif + + #ifndef AMAZON_S_PMU + #define AMAZON_S_PMU (KSEG1+0x1F102000) + #endif + #ifndef AMAZON_S_PMU_PWDCR + #define AMAZON_S_PMU_PWDCR ((volatile unsigned long *)(AMAZON_S_PMU+0x001C)) + #endif + + #ifndef AMAZON_S_GPIO_P0_OUT + #define AMAZON_S_GPIO_P0_OUT (0xBF103000+0x10) + #define AMAZON_S_GPIO_P0_DIR (0xBF103000+0x18) + #define AMAZON_S_GPIO_P0_ALTSEL0 (0xBF103000+0x1C) + #define AMAZON_S_GPIO_P0_ALTSEL1 (0xBF103000+0x20) + #define AMAZON_S_GPIO_P0_OD (0xBF103000+0x24) + #define AMAZON_S_GPIO_P0_PUDSEL (0xBF103000+0x2C) + #define AMAZON_S_GPIO_P0_PUDEN (0xBF103000+0x30) + #define AMAZON_S_GPIO_P1_OUT (0xBF103000+0x40) + #define AMAZON_S_GPIO_P1_DIR (0xBF103000+0x48) + #define AMAZON_S_GPIO_P1_ALTSEL0 (0xBF103000+0x4C) + #define AMAZON_S_GPIO_P1_ALTSEL1 (0xBF103000+0x50) + #define AMAZON_S_GPIO_P1_OD (0xBF103000+0x54) + #define AMAZON_S_GPIO_P1_PUDSEL (0xBF103000+0x5C) + #define AMAZON_S_GPIO_P1_PUDEN (0xBF103000+0x60) + #endif + + #define AMAZON_S_RCU_USB1CFG ((volatile unsigned long *)(AMAZON_S_RCU_BASE_ADDR + 0x18)) + #define AMAZON_S_RCU_USB2CFG ((volatile unsigned long *)(AMAZON_S_RCU_BASE_ADDR + 0x34)) + #define AMAZON_S_RCU_USBRESET ((volatile unsigned long *)(AMAZON_S_RCU_BASE_ADDR + 0x10)) + #define AMAZON_S_USBCFG_ARB 7 // + #define AMAZON_S_USBCFG_HDSEL_BIT 11 // 0:host, 1:device + #define AMAZON_S_USBCFG_HOST_END_BIT 10 // 0:little_end, 1:big_end + #define AMAZON_S_USBCFG_SLV_END_BIT 17 // 0:little_end, 1:big_end + + #define default_param_dma_burst_size 4 + + #define default_param_speed IFXUSB_PARAM_SPEED_HIGH + + #define default_param_max_transfer_size -1 //(Max, hwcfg) + #define default_param_max_packet_count -1 //(Max, hwcfg) + #define default_param_phy_utmi_width 16 + + #define default_param_turn_around_time_hs 4 //(NoChange) + #define default_param_turn_around_time_fs 4 //(NoChange) + #define default_param_timeout_cal_hs -1 //(NoChange) + #define default_param_timeout_cal_fs -1 //(NoChange) + + #define default_param_data_fifo_size -1 //(Max, hwcfg) + + #ifdef __IS_HOST__ + #define default_param_host_channels -1 //(Max, hwcfg) + #define default_param_rx_fifo_size 240 + #define default_param_nperio_tx_fifo_size 240 + #define default_param_perio_tx_fifo_size 32 + #endif //__IS_HOST__ + #ifdef __IS_DEVICE__ + #ifdef __DED_INTR__ + #define default_param_rx_fifo_size 256 + #define default_param_nperio_tx_fifo_size 248 + #define default_param_perio_tx_fifo_size_01 8 + #else + #define default_param_rx_fifo_size 256 + #define default_param_nperio_tx_fifo_size 256 + #define default_param_perio_tx_fifo_size_01 0 + #endif + #define default_param_perio_tx_fifo_size_02 0 + #define default_param_perio_tx_fifo_size_03 0 + #define default_param_perio_tx_fifo_size_04 0 + #define default_param_perio_tx_fifo_size_05 0 + #define default_param_perio_tx_fifo_size_06 0 + #define default_param_perio_tx_fifo_size_07 0 + #define default_param_perio_tx_fifo_size_08 0 + #define default_param_perio_tx_fifo_size_09 0 + #define default_param_perio_tx_fifo_size_10 0 + #define default_param_perio_tx_fifo_size_11 0 + #define default_param_perio_tx_fifo_size_12 0 + #define default_param_perio_tx_fifo_size_13 0 + #define default_param_perio_tx_fifo_size_14 0 + #define default_param_perio_tx_fifo_size_15 0 + #endif //__IS_DEVICE__ + + #elif defined(__IS_VR9__) + #define IFXUSB1_IRQ 54 + #define IFXUSB1_IOMEM_BASE 0x1E101000 + #define IFXUSB1_FIFOMEM_BASE 0x1E120000 + #define IFXUSB1_FIFODBG_BASE 0x1E140000 + + #define IFXUSB2_IRQ 83 + #define IFXUSB2_IOMEM_BASE 0x1E106000 + #define IFXUSB2_FIFOMEM_BASE 0x1E1E0000 + #define IFXUSB2_FIFODBG_BASE 0x1E1C0000 + #define IFXUSB_OC_IRQ 68 + + #ifndef AMAZON_S_RCU_BASE_ADDR + #define AMAZON_S_RCU_BASE_ADDR (0xBF203000) + #endif + + #ifndef AMAZON_S_CGU + #define AMAZON_S_CGU (0xBF103000) + #endif + #ifndef AMAZON_S_CGU_IFCCR + #define AMAZON_S_CGU_IFCCR ((volatile unsigned long *)(AMAZON_S_CGU+ 0x0018)) + #endif + + #ifndef AMAZON_S_PMU + #define AMAZON_S_PMU (KSEG1+0x1F102000) + #endif + #ifndef AMAZON_S_PMU_PWDCR + #define AMAZON_S_PMU_PWDCR ((volatile unsigned long *)(AMAZON_S_PMU+0x001C)) + #endif + + #ifndef AMAZON_S_GPIO_P0_OUT + #define AMAZON_S_GPIO_P0_OUT (0xBF103000+0x10) + #define AMAZON_S_GPIO_P0_DIR (0xBF103000+0x18) + #define AMAZON_S_GPIO_P0_ALTSEL0 (0xBF103000+0x1C) + #define AMAZON_S_GPIO_P0_ALTSEL1 (0xBF103000+0x20) + #define AMAZON_S_GPIO_P0_OD (0xBF103000+0x24) + #define AMAZON_S_GPIO_P0_PUDSEL (0xBF103000+0x2C) + #define AMAZON_S_GPIO_P0_PUDEN (0xBF103000+0x30) + #define AMAZON_S_GPIO_P1_OUT (0xBF103000+0x40) + #define AMAZON_S_GPIO_P1_DIR (0xBF103000+0x48) + #define AMAZON_S_GPIO_P1_ALTSEL0 (0xBF103000+0x4C) + #define AMAZON_S_GPIO_P1_ALTSEL1 (0xBF103000+0x50) + #define AMAZON_S_GPIO_P1_OD (0xBF103000+0x54) + #define AMAZON_S_GPIO_P1_PUDSEL (0xBF103000+0x5C) + #define AMAZON_S_GPIO_P1_PUDEN (0xBF103000+0x60) + #endif + + #define AMAZON_S_RCU_USB1CFG ((volatile unsigned long *)(AMAZON_S_RCU_BASE_ADDR + 0x18)) + #define AMAZON_S_RCU_USB2CFG ((volatile unsigned long *)(AMAZON_S_RCU_BASE_ADDR + 0x34)) + #define AMAZON_S_RCU_USBRESET ((volatile unsigned long *)(AMAZON_S_RCU_BASE_ADDR + 0x10)) + #define AMAZON_S_USBCFG_ARB 7 // + #define AMAZON_S_USBCFG_HDSEL_BIT 11 // 0:host, 1:device + #define AMAZON_S_USBCFG_HOST_END_BIT 10 // 0:little_end, 1:big_end + #define AMAZON_S_USBCFG_SLV_END_BIT 17 // 0:little_end, 1:big_end + + #define default_param_dma_burst_size 4 //(ALL) + + #define default_param_speed IFXUSB_PARAM_SPEED_HIGH + + #define default_param_max_transfer_size -1 //(Max, hwcfg) + #define default_param_max_packet_count -1 //(Max, hwcfg) + #define default_param_phy_utmi_width 16 + + #define default_param_turn_around_time_hs 6 //(NoChange) snpsid >= 0x4f54260a + #define default_param_turn_around_time_fs 6 //(NoChange) snpsid >= 0x4f54260a + #define default_param_timeout_cal_hs -1 //(NoChange) + #define default_param_timeout_cal_fs -1 //(NoChange) + + #define default_param_data_fifo_size -1 //(Max, hwcfg) + + #ifdef __IS_HOST__ + #define default_param_host_channels -1 //(Max, hwcfg) + #define default_param_rx_fifo_size 240 + #define default_param_nperio_tx_fifo_size 240 + #define default_param_perio_tx_fifo_size 32 + #endif //__IS_HOST__ + #ifdef __IS_DEVICE__ + #define default_param_rx_fifo_size 256 + #define default_param_tx_fifo_size_00 -1 + #define default_param_tx_fifo_size_01 -1 + #define default_param_tx_fifo_size_02 -1 + #define default_param_tx_fifo_size_03 -1 + #define default_param_tx_fifo_size_04 -1 + #define default_param_tx_fifo_size_05 -1 + #define default_param_tx_fifo_size_06 -1 + #define default_param_tx_fifo_size_07 -1 + #define default_param_tx_fifo_size_08 -1 + #define default_param_tx_fifo_size_09 -1 + #define default_param_tx_fifo_size_10 -1 + #define default_param_tx_fifo_size_11 -1 + #define default_param_tx_fifo_size_12 -1 + #define default_param_tx_fifo_size_13 -1 + #define default_param_tx_fifo_size_14 -1 + #define default_param_tx_fifo_size_15 -1 + #define default_param_dma_unalgned_tx -1 + #define default_param_dma_unalgned_rx -1 + #define default_param_thr_ctl -1 + #define default_param_tx_thr_length -1 + #define default_param_rx_thr_length -1 + #endif //__IS_DEVICE__ + #else // __IS_VR9__ + #error "Please choose one platform!!" + #endif // __IS_VR9__ +#endif //UEIP + +/*@}*//*IFXUSB_PLATEFORM_MEM_ADDR*/ + +///////////////////////////////////////////////////////////////////////// + +#ifdef __IS_HOST__ + #if defined(CONFIG_USB_HOST_IFX_FORCE_USB11) || defined(__FORCE_USB11__) + #undef default_param_speed + #define default_param_speed IFXUSB_PARAM_SPEED_FULL + #endif +#endif +#ifdef __IS_DEVICE__ + #if !defined(CONFIG_USB_GADGET_DUALSPEED) || defined(__FORCE_USB11__) + #undef default_param_speed + #define default_param_speed IFXUSB_PARAM_SPEED_FULL + #endif +#endif + +///////////////////////////////////////////////////////////////////////// + +static __inline__ void UDELAY( const uint32_t _usecs ) +{ + udelay( _usecs ); +} + +static __inline__ void MDELAY( const uint32_t _msecs ) +{ + mdelay( _msecs ); +} + +static __inline__ void SPIN_LOCK( spinlock_t *_lock ) +{ + spin_lock(_lock); +} + +static __inline__ void SPIN_UNLOCK( spinlock_t *_lock ) +{ + spin_unlock(_lock); +} + +#define SPIN_LOCK_IRQSAVE( _l, _f ) \ + { \ + spin_lock_irqsave(_l,_f); \ + } + +#define SPIN_UNLOCK_IRQRESTORE( _l,_f ) \ + { \ + spin_unlock_irqrestore(_l,_f); \ + } + +///////////////////////////////////////////////////////////////////////// +/*! + \addtogroup IFXUSB_DBG_ROUTINE + */ +/*@{*/ +#ifdef __IS_HOST__ + extern uint32_t h_dbg_lvl; +#endif + +#ifdef __IS_DEVICE__ + extern uint32_t d_dbg_lvl; +#endif + +/*! \brief When debug level has the DBG_CIL bit set, display CIL Debug messages. */ +#define DBG_CIL (0x2) +/*! \brief When debug level has the DBG_CILV bit set, display CIL Verbose debug messages */ +#define DBG_CILV (0x20) +/*! \brief When debug level has the DBG_PCD bit set, display PCD (Device) debug messages */ +#define DBG_PCD (0x4) +/*! \brief When debug level has the DBG_PCDV set, display PCD (Device) Verbose debug messages */ +#define DBG_PCDV (0x40) +/*! \brief When debug level has the DBG_HCD bit set, display Host debug messages */ +#define DBG_HCD (0x8) +/*! \brief When debug level has the DBG_HCDV bit set, display Verbose Host debug messages */ +#define DBG_HCDV (0x80) +/*! \brief When debug level has the DBG_HCD_URB bit set, display enqueued URBs in host mode. */ +#define DBG_HCD_URB (0x800) +/*! \brief When debug level has any bit set, display debug messages */ +#define DBG_ANY (0xFF) +/*! \brief All debug messages off */ +#define DBG_OFF 0 + +#define DBG_ENTRY (0x8000) + +#define IFXUSB "IFXUSB: " + +/*! + \fn inline uint32_t SET_DEBUG_LEVEL( const uint32_t _new ) + \brief Set the Debug Level variable. + \param _new 32-bit mask of debug level. + \return previous debug level + */ +static inline uint32_t SET_DEBUG_LEVEL( const uint32_t _new ) +{ + #ifdef __IS_HOST__ + uint32_t old = h_dbg_lvl; + h_dbg_lvl = _new; + #endif + + #ifdef __IS_DEVICE__ + uint32_t old = d_dbg_lvl; + d_dbg_lvl = _new; + #endif + return old; +} + +#ifdef __DEBUG__ + #ifdef __IS_HOST__ + # define IFX_DEBUGPL(lvl, x...) do{ if ((lvl)&h_dbg_lvl)printk( KERN_DEBUG IFXUSB x ); }while(0) + # define CHK_DEBUG_LEVEL(level) ((level) & h_dbg_lvl) + #endif + + #ifdef __IS_DEVICE__ + # define IFX_DEBUGPL(lvl, x...) do{ if ((lvl)&d_dbg_lvl)printk( KERN_DEBUG IFXUSB x ); }while(0) + # define CHK_DEBUG_LEVEL(level) ((level) & d_dbg_lvl) + #endif + + # define IFX_DEBUGP(x...) IFX_DEBUGPL(DBG_ANY, x ) +#else + # define IFX_DEBUGPL(lvl, x...) do{}while(0) + # define IFX_DEBUGP(x...) + # define CHK_DEBUG_LEVEL(level) (0) +#endif //__DEBUG__ + +/* Print an Error message. */ +#define IFX_ERROR(x...) printk( KERN_ERR IFXUSB x ) +/* Print a Warning message. */ +#define IFX_WARN(x...) printk( KERN_WARNING IFXUSB x ) +/* Print a notice (normal but significant message). */ +#define IFX_NOTICE(x...) printk( KERN_NOTICE IFXUSB x ) +/* Basic message printing. */ +#define IFX_PRINT(x...) printk( KERN_INFO IFXUSB x ) + +/*@}*//*IFXUSB_DBG_ROUTINE*/ + + +#endif //__IFXUSB_PLAT_H__ + diff --git a/package/kernel/lantiq/ltq-hcd/src/ifxusb_regs.h b/package/kernel/lantiq/ltq-hcd/src/ifxusb_regs.h new file mode 100644 index 0000000..4b43821 --- /dev/null +++ b/package/kernel/lantiq/ltq-hcd/src/ifxusb_regs.h @@ -0,0 +1,1471 @@ +/***************************************************************************** + ** FILE NAME : ifxusb_regs.h + ** PROJECT : IFX USB sub-system V3 + ** MODULES : IFX USB sub-system Host and Device driver + ** SRC VERSION : 3.2 + ** DATE : 1/Jan/2011 + ** AUTHOR : Chen, Howard + ** DESCRIPTION : This file contains the data structures for accessing the IFXUSB core + ** registers. + ** The application interfaces with the USB core by reading from and + ** writing to the Control and Status Register (CSR) space through the + ** AHB Slave interface. These registers are 32 bits wide, and the + ** addresses are 32-bit-block aligned. + ** CSRs are classified as follows: + ** - Core Global Registers + ** - Device Mode Registers + ** - Device Global Registers + ** - Device Endpoint Specific Registers + ** - Host Mode Registers + ** - Host Global Registers + ** - Host Port CSRs + ** - Host Channel Specific Registers + ** + ** Only the Core Global registers can be accessed in both Device and + ** Host modes. When the USB core is operating in one mode, either + ** Device or Host, the application must not access registers from the + ** other mode. When the core switches from one mode to another, the + ** registers in the new mode of operation must be reprogrammed as they + ** would be after a power-on reset. + ** FUNCTIONS : + ** COMPILER : gcc + ** REFERENCE : Synopsys DWC-OTG Driver 2.7 + ** COPYRIGHT : Copyright (c) 2010 + ** LANTIQ DEUTSCHLAND GMBH, + ** Am Campeon 3, 85579 Neubiberg, Germany + ** + ** This program is free software; you can redistribute it and/or modify + ** it under the terms of the GNU General Public License as published by + ** the Free Software Foundation; either version 2 of the License, or + ** (at your option) any later version. + ** + ** Version Control Section ** + ** $Author$ + ** $Date$ + ** $Revisions$ + ** $Log$ Revision history +*****************************************************************************/ +/****************************************************************************** +** COPYRIGHT : Copyright (c) 2006 +** Infineon Technologies AG +** Am Campeon 1-12, 85579 Neubiberg, Germany +** +** This program is free software; you can redistribute it and/or modify +** it under the terms of the GNU General Public License as published by +** the Free Software Foundation; either version 2 of the License, or +** (at your option) any later version. +** +** HISTORY +** $Date $Author $Comment +** 10 NOV 2008 Wu Qi Ming Initial Version, to comply with COC +*******************************************************************************/ + + +/* + * This file contains code fragments from Synopsys HS OTG Linux Software Driver. + * For this code the following notice is applicable: + * + * ========================================================================== + * + * Synopsys HS OTG Linux Software Driver and documentation (hereinafter, + * "Software") is an Unsupported proprietary work of Synopsys, Inc. unless + * otherwise expressly agreed to in writing between Synopsys and you. + * + * The Software IS NOT an item of Licensed Software or Licensed Product under + * any End User Software License Agreement or Agreement for Licensed Product + * with Synopsys or any supplement thereto. You are permitted to use and + * redistribute this Software in source and binary forms, with or without + * modification, provided that redistributions of source code must retain this + * notice. You may not view, use, disclose, copy or distribute this file or + * any information contained herein except pursuant to this license grant from + * Synopsys. If you do not agree with this notice, including the disclaimer + * below, then you are not authorized to use the Software. + * + * THIS SOFTWARE IS BEING DISTRIBUTED BY SYNOPSYS SOLELY ON AN "AS IS" BASIS + * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE + * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE + * ARE HEREBY DISCLAIMED. IN NO EVENT SHALL SYNOPSYS BE LIABLE FOR ANY DIRECT, + * INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES + * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR + * SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER + * CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT + * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY + * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH + * DAMAGE. + * ========================================================================== */ + + +/*! + \defgroup IFXUSB_CSR_DEFINITION Control and Status Register bit-map definition + \ingroup IFXUSB_DRIVER_V3 + \brief Data structures for accessing the IFXUSB core registers. + The application interfaces with the USB core by reading from and + writing to the Control and Status Register (CSR) space through the + AHB Slave interface. These registers are 32 bits wide, and the + addresses are 32-bit-block aligned. + CSRs are classified as follows: + - Core Global Registers + - Device Mode Registers + - Device Global Registers + - Device Endpoint Specific Registers + - Host Mode Registers + - Host Global Registers + - Host Port CSRs + - Host Channel Specific Registers + + Only the Core Global registers can be accessed in both Device andHost modes. + When the USB core is operating in one mode, either Device or Host, the + application must not access registers from the other mode. When the core + switches from one mode to another, the registers in the new mode of operation + must be reprogrammed as they would be after a power-on reset. + */ + +/*! + \defgroup IFXUSB_CSR_DEVICE_GLOBAL_REG Device Mode Registers + \ingroup IFXUSB_CSR_DEFINITION + \brief Bit-mapped structure to access Device Mode Global Registers + */ + +/*! + \defgroup IFXUSB_CSR_DEVICE_EP_REG Device Mode EP Registers + \ingroup IFXUSB_CSR_DEFINITION + \brief Bit-mapped structure to access Device Mode EP Registers + There will be one set of endpoint registers per logical endpoint + implemented. + These registers are visible only in Device mode and must not be + accessed in Host mode, as the results are unknown. + */ + +/*! + \defgroup IFXUSB_CSR_DEVICE_DMA_DESC Device mode scatter dma descriptor strusture + \ingroup IFXUSB_CSR_DEFINITION + \brief Bit-mapped structure to DMA descriptor + */ + + +/*! + \defgroup IFXUSB_CSR_HOST_GLOBAL_REG Host Mode Registers + \ingroup IFXUSB_CSR_DEFINITION + \brief Bit-mapped structure to access Host Mode Global Registers + */ + +/*! + \defgroup IFXUSB_CSR_HOST_HC_REG Host Mode HC Registers + \ingroup IFXUSB_CSR_DEFINITION + \brief Bit-mapped structure to access Host Mode Host Channel Registers + There will be one set of endpoint registers per host channel + implemented. + These registers are visible only in Host mode and must not be + accessed in Device mode, as the results are unknown. + */ + +/*! + \defgroup IFXUSB_CSR_PWR_CLK_GATING_REG Power and Clock Gating Control Register + \ingroup IFXUSB_CSR_DEFINITION + \brief Bit-mapped structure to Power and Clock Gating Control Register + */ + +/*! + \defgroup IFXUSB_CSR_CORE_GLOBAL_REG Core Global Registers + \ingroup IFXUSB_CSR_DEFINITION + \brief Bit-mapped structure to access Core Global Registers + */ + +/*! + \defgroup IFXUSB_CSR_CORE_GLOBAL_REG Core Global Registers + \ingroup IFXUSB_CSR_DEFINITION + \brief Bit-mapped structure to access Core Global Registers + */ + + + +/*! + \defgroup IFXUSB_CSR_ACCESS_MACROS Macros to manipulate CSRs + \ingroup IFXUSB_CSR_DEFINITION + \brief Macros to manipulate CSRs + */ + + + + + + +/*! + \file ifxusb_regs.h + \ingroup IFXUSB_DRIVER_V3 + \brief This file contains the data structures for accessing the IFXUSB core registers. + */ + + +#ifndef __IFXUSB_REGS_H__ +#define __IFXUSB_REGS_H__ + +/****************************************************************************/ + +#define MAX_PERIO_FIFOS 15 /** Maximum number of Periodic FIFOs */ +#define MAX_TX_FIFOS 15 /** Maximum number of Periodic FIFOs */ +#define MAX_EPS_CHANNELS 16 /** Maximum number of Endpoints/HostChannels */ + +/****************************************************************************/ + +//#define __RecordRegRW__ + +/*! + \fn static __inline__ uint32_t ifxusb_rreg( volatile uint32_t *_reg) + \brief Reads the content of a register. + \param _reg address of register to read. + \return contents of the register. + \ingroup IFXUSB_CSR_ACCESS_MACROS + */ +static __inline__ uint32_t ifxusb_rreg( volatile uint32_t *_reg) +{ + #ifdef __RecordRegRW__ + uint32_t r; + r=*(_reg); + return (r); + #else + return (*(_reg)); + #endif +}; + + +/*! + \fn static __inline__ void ifxusb_wreg( volatile uint32_t *_reg, const uint32_t _value) + \brief Writes a register with a 32 bit value. + \param _reg address of register to write. + \param _value value to write to _reg. + \ingroup IFXUSB_CSR_ACCESS_MACROS + */ +static __inline__ void ifxusb_wreg( volatile uint32_t *_reg, const uint32_t _value) +{ + #ifdef __RecordRegRW__ + printk(KERN_INFO "[W %p<-%08X]\n",_reg,_value); + #else + *(_reg)=_value; + #endif +}; + +/*! + \fn static __inline__ void ifxusb_mreg( volatile uint32_t *_reg, const uint32_t _clear_mask, const uint32_t _set_mask) + \brief Modifies bit values in a register. Using the + algorithm: (reg_contents & ~clear_mask) | set_mask. + \param _reg address of register to modify. + \param _clear_mask bit mask to be cleared. + \param _set_mask bit mask to be set. + \ingroup IFXUSB_CSR_ACCESS_MACROS + */ +static __inline__ void ifxusb_mreg( volatile uint32_t *_reg, const uint32_t _clear_mask, const uint32_t _set_mask) +{ + uint32_t v; + #ifdef __RecordRegRW__ + uint32_t r; + v= *(_reg); + r=v; + r&=(~_clear_mask); + r|= _set_mask; + *(_reg)=r ; + printk(KERN_INFO "[M %p->%08X+%08X/%08X<-%08X]\n",_reg,r,_clear_mask,_set_mask,r); + #else + v= *(_reg); + v&=(~_clear_mask); + v|= _set_mask; + *(_reg)=v ; + #endif +}; + +/****************************************************************************/ + +/*! + \addtogroup IFXUSB_CSR_CORE_GLOBAL_REG + */ +/*@{*/ + +/*! typedef ifxusb_core_global_regs_t + \brief IFXUSB Core registers . + The ifxusb_core_global_regs structure defines the size + and relative field offsets for the Core Global registers. + */ +typedef struct ifxusb_core_global_regs +{ + volatile uint32_t gotgctl; /*!< 000h OTG Control and Status Register. */ + volatile uint32_t gotgint; /*!< 004h OTG Interrupt Register. */ + volatile uint32_t gahbcfg; /*!< 008h Core AHB Configuration Register. */ + volatile uint32_t gusbcfg; /*!< 00Ch Core USB Configuration Register. */ + volatile uint32_t grstctl; /*!< 010h Core Reset Register. */ + volatile uint32_t gintsts; /*!< 014h Core Interrupt Register. */ + volatile uint32_t gintmsk; /*!< 018h Core Interrupt Mask Register. */ + volatile uint32_t grxstsr; /*!< 01Ch Receive Status Queue Read Register (Read Only). */ + volatile uint32_t grxstsp; /*!< 020h Receive Status Queue Read & POP Register (Read Only). */ + volatile uint32_t grxfsiz; /*!< 024h Receive FIFO Size Register. */ + volatile uint32_t gnptxfsiz; /*!< 028h Non Periodic Transmit FIFO Size Register. */ + volatile uint32_t gnptxsts; /*!< 02Ch Non Periodic Transmit FIFO/Queue Status Register (Read Only). */ + volatile uint32_t gi2cctl; /*!< 030h I2C Access Register. */ + volatile uint32_t gpvndctl; /*!< 034h PHY Vendor Control Register. */ + volatile uint32_t ggpio; /*!< 038h General Purpose Input/Output Register. */ + volatile uint32_t guid; /*!< 03Ch User ID Register. */ + volatile uint32_t gsnpsid; /*!< 040h Synopsys ID Register (Read Only). */ + volatile uint32_t ghwcfg1; /*!< 044h User HW Config1 Register (Read Only). */ + volatile uint32_t ghwcfg2; /*!< 048h User HW Config2 Register (Read Only). */ + volatile uint32_t ghwcfg3; /*!< 04Ch User HW Config3 Register (Read Only). */ + volatile uint32_t ghwcfg4; /*!< 050h User HW Config4 Register (Read Only). */ + volatile uint32_t reserved[43]; /*!< 054h Reserved 054h-0FFh */ + volatile uint32_t hptxfsiz; /*!< 100h Host Periodic Transmit FIFO Size Register. */ + volatile uint32_t dptxfsiz_dieptxf[15];/*!< 104h + (FIFO_Number-1)*04h, 1 <= FIFO Number <= 15. + Device Periodic Transmit FIFO#n Register if dedicated + fifos are disabled, otherwise Device Transmit FIFO#n + Register. + */ +} ifxusb_core_global_regs_t; + +/*! + \brief Bits of the Core OTG Control and Status Register (GOTGCTL). + */ +typedef union gotgctl_data +{ + uint32_t d32; + struct{ + unsigned reserved21_31 : 11; + unsigned currmod : 1 ; /*!< 20 */ + unsigned bsesvld : 1 ; /*!< 19 */ + unsigned asesvld : 1 ; /*!< 18 */ + unsigned reserved17 : 1 ; + unsigned conidsts : 1 ; /*!< 16 */ + unsigned reserved12_15 : 4 ; + unsigned devhnpen : 1 ; /*!< 11 */ + unsigned hstsethnpen : 1 ; /*!< 10 */ + unsigned hnpreq : 1 ; /*!< 09 */ + unsigned hstnegscs : 1 ; /*!< 08 */ + unsigned reserved2_7 : 6 ; + unsigned sesreq : 1 ; /*!< 01 */ + unsigned sesreqscs : 1 ; /*!< 00 */ + } b; +} gotgctl_data_t; + +/*! + \brief Bit fields of the Core OTG Interrupt Register (GOTGINT). + */ +typedef union gotgint_data +{ + uint32_t d32; + struct + { + unsigned reserved31_20 : 12; + unsigned debdone : 1 ; /*!< 19 Debounce Done */ + unsigned adevtoutchng : 1 ; /*!< 18 A-Device Timeout Change */ + unsigned hstnegdet : 1 ; /*!< 17 Host Negotiation Detected */ + unsigned reserver10_16 : 7 ; + unsigned hstnegsucstschng : 1 ; /*!< 09 Host Negotiation Success Status Change */ + unsigned sesreqsucstschng : 1 ; /*!< 08 Session Request Success Status Change */ + unsigned reserved3_7 : 5 ; + unsigned sesenddet : 1 ; /*!< 02 Session End Detected */ + unsigned reserved0_1 : 2 ; + } b; +} gotgint_data_t; + +/*! + \brief Bit fields of the Core AHB Configuration Register (GAHBCFG). + */ +typedef union gahbcfg_data +{ + uint32_t d32; + struct + { + unsigned reserved9_31 : 23; + unsigned ptxfemplvl : 1 ; /*!< 08 Periodic FIFO empty level trigger condition*/ + unsigned nptxfemplvl : 1 ; /*!< 07 Non-Periodic FIFO empty level trigger condition*/ + #define IFXUSB_GAHBCFG_TXFEMPTYLVL_EMPTY 1 + #define IFXUSB_GAHBCFG_TXFEMPTYLVL_HALFEMPTY 0 + unsigned reserved : 1 ; + unsigned dmaenable : 1 ; /*!< 05 DMA enable*/ + #define IFXUSB_GAHBCFG_DMAENABLE 1 + unsigned hburstlen : 4 ; /*!< 01-04 DMA Burst-length*/ + #define IFXUSB_GAHBCFG_INT_DMA_BURST_SINGLE 0 + #define IFXUSB_GAHBCFG_INT_DMA_BURST_INCR 1 + #define IFXUSB_GAHBCFG_INT_DMA_BURST_INCR4 3 + #define IFXUSB_GAHBCFG_INT_DMA_BURST_INCR8 5 + #define IFXUSB_GAHBCFG_INT_DMA_BURST_INCR16 7 + unsigned glblintrmsk : 1 ; /*!< 00 USB Global Interrupt Enable */ + #define IFXUSB_GAHBCFG_GLBINT_ENABLE 1 + } b; +} gahbcfg_data_t; + +/*! + \brief Bit fields of the Core USB Configuration Register (GUSBCFG). +*/ +typedef union gusbcfg_data +{ + uint32_t d32; + struct + { + unsigned reserved31 : 1; + unsigned ForceDevMode : 1; /*!< 30 Force Device Mode */ + unsigned ForceHstMode : 1; /*!< 29 Force Host Mode */ + unsigned TxEndDelay : 1; /*!< 28 Tx End Delay */ + unsigned reserved2723 : 5; + unsigned term_sel_dl_pulse : 1; /*!< 22 TermSel DLine Pulsing Selection */ + unsigned reserved2117 : 5; + unsigned otgutmifssel : 1; /*!< 16 UTMIFS Select */ + unsigned phylpwrclksel : 1; /*!< 15 PHY Low-Power Clock Select */ + unsigned reserved14 : 1; + unsigned usbtrdtim : 4; /*!< 13-10 USB Turnaround Time */ + unsigned hnpcap : 1; /*!< 09 HNP-Capable */ + unsigned srpcap : 1; /*!< 08 SRP-Capable */ + unsigned reserved07 : 1; + unsigned physel : 1; /*!< 06 USB 2.0 High-Speed PHY or + USB 1.1 Full-Speed Serial + Transceiver Select */ + unsigned fsintf : 1; /*!< 05 Full-Speed Serial Interface Select */ + unsigned ulpi_utmi_sel : 1; /*!< 04 ULPI or UTMI+ Select */ + unsigned phyif : 1; /*!< 03 PHY Interface */ + unsigned toutcal : 3; /*!< 00-02 HS/FS Timeout Calibration */ + }b; +} gusbcfg_data_t; + +/*! + \brief Bit fields of the Core Reset Register (GRSTCTL). + */ +typedef union grstctl_data +{ + uint32_t d32; + struct + { + unsigned ahbidle : 1; /*!< 31 AHB Master Idle. Indicates the AHB Master State + Machine is in IDLE condition. */ + unsigned dmareq : 1; /*!< 30 DMA Request Signal. Indicated DMA request is in + probress. Used for debug purpose. */ + unsigned reserved11_29 :19; + unsigned txfnum : 5; /*!< 10-06 TxFIFO Number (TxFNum) to be flushed. + 0x00: Non Periodic TxFIFO Flush or TxFIFO 0 + 0x01-0x0F: Periodic TxFIFO Flush or TxFIFO n + 0x10: Flush all TxFIFO + */ + unsigned txfflsh : 1; /*!< 05 TxFIFO Flush */ + unsigned rxfflsh : 1; /*!< 04 RxFIFO Flush */ + unsigned intknqflsh : 1; /*!< 03 In Token Sequence Learning Queue Flush (Device Only) */ + unsigned hstfrm : 1; /*!< 02 Host Frame Counter Reset (Host Only) */ + unsigned hsftrst : 1; /*!< 01 Hclk Soft Reset */ + + unsigned csftrst : 1; /*!< 00 Core Soft Reset + The application can flush the control logic in the + entire core using this bit. This bit resets the + pipelines in the AHB Clock domain as well as the + PHY Clock domain. + The state machines are reset to an IDLE state, the + control bits in the CSRs are cleared, all the + transmit FIFOs and the receive FIFO are flushed. + The status mask bits that control the generation of + the interrupt, are cleared, to clear the + interrupt. The interrupt status bits are not + cleared, so the application can get the status of + any events that occurred in the core after it has + set this bit. + Any transactions on the AHB are terminated as soon + as possible following the protocol. Any + transactions on the USB are terminated immediately. + The configuration settings in the CSRs are + unchanged, so the software doesn't have to + reprogram these registers (Device + Configuration/Host Configuration/Core System + Configuration/Core PHY Configuration). + The application can write to this bit, any time it + wants to reset the core. This is a self clearing + bit and the core clears this bit after all the + necessary logic is reset in the core, which may + take several clocks, depending on the current state + of the core. + */ + }b; +} grstctl_t; + +/*! + \brief Bit fields of the Core Interrupt Mask Register (GINTMSK) and + Core Interrupt Register (GINTSTS). + */ +typedef union gint_data +{ + uint32_t d32; + #define IFXUSB_SOF_INTR_MASK 0x0008 + struct + { + unsigned wkupintr : 1; /*!< 31 Resume/Remote Wakeup Detected Interrupt */ + unsigned sessreqintr : 1; /*!< 30 Session Request/New Session Detected Interrupt */ + unsigned disconnect : 1; /*!< 29 Disconnect Detected Interrupt */ + unsigned conidstschng : 1; /*!< 28 Connector ID Status Change */ + unsigned reserved27 : 1; + unsigned ptxfempty : 1; /*!< 26 Periodic TxFIFO Empty */ + unsigned hcintr : 1; /*!< 25 Host Channels Interrupt */ + unsigned portintr : 1; /*!< 24 Host Port Interrupt */ + unsigned reserved23 : 1; + unsigned fetsuspmsk : 1; /*!< 22 Data Fetch Suspended */ + unsigned incomplisoout : 1; /*!< 21 Incomplete IsochronousOUT/Period Transfer */ + unsigned incomplisoin : 1; /*!< 20 Incomplete Isochronous IN Transfer */ + unsigned outepintr : 1; /*!< 19 OUT Endpoints Interrupt */ + unsigned inepintr : 1; /*!< 18 IN Endpoints Interrupt */ + unsigned epmismatch : 1; /*!< 17 Endpoint Mismatch Interrupt */ + unsigned reserved16 : 1; + unsigned eopframe : 1; /*!< 15 End of Periodic Frame Interrupt */ + unsigned isooutdrop : 1; /*!< 14 Isochronous OUT Packet Dropped Interrupt */ + unsigned enumdone : 1; /*!< 13 Enumeration Done */ + unsigned usbreset : 1; /*!< 12 USB Reset */ + unsigned usbsuspend : 1; /*!< 11 USB Suspend */ + unsigned erlysuspend : 1; /*!< 10 Early Suspend */ + unsigned i2cintr : 1; /*!< 09 I2C Interrupt */ + unsigned reserved8 : 1; + unsigned goutnakeff : 1; /*!< 07 Global OUT NAK Effective */ + unsigned ginnakeff : 1; /*!< 06 Global Non-periodic IN NAK Effective */ + unsigned nptxfempty : 1; /*!< 05 Non-periodic TxFIFO Empty */ + unsigned rxstsqlvl : 1; /*!< 04 Receive FIFO Non-Empty */ + unsigned sofintr : 1; /*!< 03 Start of (u)Frame */ + unsigned otgintr : 1; /*!< 02 OTG Interrupt */ + unsigned modemismatch : 1; /*!< 01 Mode Mismatch Interrupt */ + unsigned reserved0 : 1; + } b; +} gint_data_t; + +/*! + \brief Bit fields in the Receive Status Read and Pop Registers (GRXSTSR, GRXSTSP) + */ +typedef union grxsts_data +{ + uint32_t d32; + struct + { + unsigned reserved : 7; + unsigned fn : 4; /*!< 24-21 Frame Number */ + unsigned pktsts : 4; /*!< 20-17 Packet Status */ + #define IFXUSB_DSTS_DATA_UPDT 0x2 // OUT Data Packet + #define IFXUSB_DSTS_XFER_COMP 0x3 // OUT Data Transfer Complete + #define IFXUSB_DSTS_GOUT_NAK 0x1 // Global OUT NAK + #define IFXUSB_DSTS_SETUP_COMP 0x4 // Setup Phase Complete + #define IFXUSB_DSTS_SETUP_UPDT 0x6 // SETUP Packet + unsigned dpid : 2; /*!< 16-15 Data PID */ + unsigned bcnt :11; /*!< 14-04 Byte Count */ + unsigned epnum : 4; /*!< 03-00 Endpoint Number */ + } db; + struct + { + unsigned reserved :11; + unsigned pktsts : 4; /*!< 20-17 Packet Status */ + #define IFXUSB_HSTS_DATA_UPDT 0x2 // OUT Data Packet + #define IFXUSB_HSTS_XFER_COMP 0x3 // OUT Data Transfer Complete + #define IFXUSB_HSTS_DATA_TOGGLE_ERR 0x5 // DATA TOGGLE Error + #define IFXUSB_HSTS_CH_HALTED 0x7 // Channel Halted + unsigned dpid : 2; /*!< 16-15 Data PID */ + unsigned bcnt :11; /*!< 14-04 Byte Count */ + unsigned chnum : 4; /*!< 03-00 Channel Number */ + } hb; +} grxsts_data_t; + +/*! + \brief Bit fields in the FIFO Size Registers (HPTXFSIZ, GNPTXFSIZ, DPTXFSIZn). + */ +typedef union fifosize_data +{ + uint32_t d32; + struct + { + unsigned depth : 16; /*!< 31-16 TxFIFO Depth (in DWord)*/ + unsigned startaddr : 16; /*!< 15-00 RAM Starting address */ + } b; +} fifosize_data_t; + +/*! + \brief Bit fields in the Non-Periodic Transmit FIFO/Queue Status Register (GNPTXSTS). + */ + +typedef union gnptxsts_data +{ + uint32_t d32; + struct + { + unsigned reserved : 1; + unsigned nptxqtop_chnep : 4; /*!< 30-27 Channel/EP Number of top of the Non-Periodic + Transmit Request Queue + */ + unsigned nptxqtop_token : 2; /*!< 26-25 Token Type top of the Non-Periodic + Transmit Request Queue + 0 - IN/OUT + 1 - Zero Length OUT + 2 - PING/Complete Split + 3 - Channel Halt + */ + unsigned nptxqtop_terminate : 1; /*!< 24 Terminate (Last entry for the selected + channel/EP)*/ + unsigned nptxqspcavail : 8; /*!< 23-16 Transmit Request Queue Space Available */ + unsigned nptxfspcavail :16; /*!< 15-00 TxFIFO Space Avail (in DWord)*/ + }b; +} gnptxsts_data_t; + + +/*! + \brief Bit fields in the Transmit FIFO Status Register (DTXFSTS). + */ +typedef union dtxfsts_data +{ + uint32_t d32; + struct + { + unsigned reserved : 16; + unsigned txfspcavail : 16; /*!< 15-00 TxFIFO Space Avail (in DWord)*/ + }b; +} dtxfsts_data_t; + + +/*! + \brief Bit fields in the I2C Control Register (I2CCTL). + */ +typedef union gi2cctl_data +{ + uint32_t d32; + struct + { + unsigned bsydne : 1; /*!< 31 I2C Busy/Done*/ + unsigned rw : 1; /*!< 30 Read/Write Indicator */ + unsigned reserved : 2; + unsigned i2cdevaddr : 2; /*!< 27-26 I2C Device Address */ + unsigned i2csuspctl : 1; /*!< 25 I2C Suspend Control */ + unsigned ack : 1; /*!< 24 I2C ACK */ + unsigned i2cen : 1; /*!< 23 I2C Enable */ + unsigned addr : 7; /*!< 22-16 I2C Address */ + unsigned regaddr : 8; /*!< 15-08 I2C Register Addr */ + unsigned rwdata : 8; /*!< I2C Read/Write Data */ + } b; +} gi2cctl_data_t; + + +/*! + \brief Bit fields in the User HW Config1 Register. + */ +typedef union hwcfg1_data +{ + uint32_t d32; + struct + { + unsigned ep_dir15 : 2; /*!< Direction of each EP + 0: BIDIR (IN and OUT) endpoint + 1: IN endpoint + 2: OUT endpoint + 3: Reserved + */ + unsigned ep_dir14 : 2; + unsigned ep_dir13 : 2; + unsigned ep_dir12 : 2; + unsigned ep_dir11 : 2; + unsigned ep_dir10 : 2; + unsigned ep_dir09 : 2; + unsigned ep_dir08 : 2; + unsigned ep_dir07 : 2; + unsigned ep_dir06 : 2; + unsigned ep_dir05 : 2; + unsigned ep_dir04 : 2; + unsigned ep_dir03 : 2; + unsigned ep_dir02 : 2; + unsigned ep_dir01 : 2; + unsigned ep_dir00 : 2; + }b; +} hwcfg1_data_t; + +/*! + \brief Bit fields in the User HW Config2 Register. + */ +typedef union hwcfg2_data +{ + uint32_t d32; + struct + { + unsigned reserved31 : 1; + unsigned dev_token_q_depth : 5; /*!< 30-26 Device Mode IN Token Sequence Learning Queue Depth */ + unsigned host_perio_tx_q_depth : 2; /*!< 25-24 Host Mode Periodic Request Queue Depth */ + unsigned nonperio_tx_q_depth : 2; /*!< 23-22 Non-periodic Request Queue Depth */ + unsigned rx_status_q_depth : 2; /*!< 21-20 Multi Processor Interrupt Enabled */ + unsigned dynamic_fifo : 1; /*!< 19 Dynamic FIFO Sizing Enabled */ + unsigned perio_ep_supported : 1; /*!< 18 Periodic OUT Channels Supported in Host Mode */ + unsigned num_host_chan : 4; /*!< 17-14 Number of Host Channels */ + unsigned num_dev_ep : 4; /*!< 13-10 Number of Device Endpoints */ + unsigned fs_phy_type : 2; /*!< 09-08 Full-Speed PHY Interface Type */ + #define IFXUSB_HWCFG2_FS_PHY_TYPE_NOT_SUPPORTED 0 + #define IFXUSB_HWCFG2_FS_PHY_TYPE_DEDICATE 1 + #define IFXUSB_HWCFG2_FS_PHY_TYPE_UTMI 2 + #define IFXUSB_HWCFG2_FS_PHY_TYPE_ULPI 3 + unsigned hs_phy_type : 2; /*!< 07-06 High-Speed PHY Interface Type */ + #define IFXUSB_HWCFG2_HS_PHY_TYPE_NOT_SUPPORTED 0 + #define IFXUSB_HWCFG2_HS_PHY_TYPE_UTMI 1 + #define IFXUSB_HWCFG2_HS_PHY_TYPE_ULPI 2 + #define IFXUSB_HWCFG2_HS_PHY_TYPE_UTMI_ULPI 3 + unsigned point2point : 1; /*!< 05 Point-to-Point */ + unsigned architecture : 2; /*!< 04-03 Architecture */ + #define IFXUSB_HWCFG2_ARCH_SLAVE_ONLY 0 + #define IFXUSB_HWCFG2_ARCH_EXT_DMA 1 + #define IFXUSB_HWCFG2_ARCH_INT_DMA 2 + unsigned op_mode : 3; /*!< 02-00 Mode of Operation */ + #define IFXUSB_HWCFG2_OP_MODE_HNP_SRP_CAPABLE_OTG 0 + #define IFXUSB_HWCFG2_OP_MODE_SRP_ONLY_CAPABLE_OTG 1 + #define IFXUSB_HWCFG2_OP_MODE_NO_HNP_SRP_CAPABLE_OTG 2 + #define IFXUSB_HWCFG2_OP_MODE_SRP_CAPABLE_DEVICE 3 + #define IFXUSB_HWCFG2_OP_MODE_NO_SRP_CAPABLE_DEVICE 4 + #define IFXUSB_HWCFG2_OP_MODE_SRP_CAPABLE_HOST 5 + #define IFXUSB_HWCFG2_OP_MODE_NO_SRP_CAPABLE_HOST 6 + } b; +} hwcfg2_data_t; + +/*! + \brief Bit fields in the User HW Config3 Register. + */ +typedef union hwcfg3_data +{ + uint32_t d32; + struct + { + unsigned dfifo_depth :16; /*!< 31-16 DFIFO Depth */ + unsigned reserved15_12 : 4; + unsigned synch_reset_type : 1; /*!< 11 Reset Style for Clocked always Blocks in RTL */ + unsigned optional_features : 1; /*!< 10 Optional Features Removed */ + unsigned vendor_ctrl_if : 1; /*!< 09 Vendor Control Interface Support */ + unsigned i2c : 1; /*!< 08 I2C Selection */ + unsigned otg_func : 1; /*!< 07 OTG Function Enabled */ + unsigned packet_size_cntr_width : 3; /*!< 06-04 Width of Packet Size Counters */ + unsigned xfer_size_cntr_width : 4; /*!< 03-00 Width of Transfer Size Counters */ + } b; +} hwcfg3_data_t; + +/*! + \brief Bit fields in the User HW Config4 + * Register. Read the register into the <i>d32</i> element then read + * out the bits using the <i>b</i>it elements. + */ +typedef union hwcfg4_data +{ + uint32_t d32; + struct + { + unsigned desc_dma_dyn : 1; /*!< 31 Scatter/Gather DMA */ + unsigned desc_dma : 1; /*!< 30 Scatter/Gather DMA configuration */ + unsigned num_in_eps : 4; /*!< 29-26 Number of Device Mode IN Endpoints Including Control Endpoints */ + unsigned ded_fifo_en : 1; /*!< 25 Enable Dedicated Transmit FIFO for device IN Endpoints */ + unsigned session_end_filt_en : 1; /*!< 24 session_end Filter Enabled */ + unsigned b_valid_filt_en : 1; /*!< 23 b_valid Filter Enabled */ + unsigned a_valid_filt_en : 1; /*!< 22 a_valid Filter Enabled */ + unsigned vbus_valid_filt_en : 1; /*!< 21 vbus_valid Filter Enabled */ + unsigned iddig_filt_en : 1; /*!< 20 iddig Filter Enable */ + unsigned num_dev_mode_ctrl_ep : 4; /*!< 19-16 Number of Device Mode Control Endpoints in Addition to Endpoint 0 */ + unsigned utmi_phy_data_width : 2; /*!< 15-14 UTMI+ PHY/ULPI-to-Internal UTMI+ Wrapper Data Width */ + unsigned reserved13_06 : 8; + unsigned min_ahb_freq : 1; /*!< 05 Minimum AHB Frequency Less Than 60 MHz */ + unsigned power_optimiz : 1; /*!< 04 Enable Power Optimization? */ + unsigned num_dev_perio_in_ep : 4; /*!< 03-00 Number of Device Mode Periodic IN Endpoints */ + } b; +} hwcfg4_data_t; + +/*@}*//*IFXUSB_CSR_CORE_GLOBAL_REG*/ + +/****************************************************************************/ +/*! + \addtogroup IFXUSB_CSR_DEVICE_GLOBAL_REG + */ +/*@{*/ + +/*! typedef ifxusb_dev_global_regs_t + \brief IFXUSB Device Mode Global registers. Offsets 800h-BFFh + The ifxusb_dev_global_regs structure defines the size + and relative field offsets for the Device Global registers. + These registers are visible only in Device mode and must not be + accessed in Host mode, as the results are unknown. + */ +typedef struct ifxusb_dev_global_regs +{ + volatile uint32_t dcfg; /*!< 800h Device Configuration Register. */ + volatile uint32_t dctl; /*!< 804h Device Control Register. */ + volatile uint32_t dsts; /*!< 808h Device Status Register (Read Only). */ + uint32_t unused; + volatile uint32_t diepmsk; /*!< 810h Device IN Endpoint Common Interrupt Mask Register. */ + volatile uint32_t doepmsk; /*!< 814h Device OUT Endpoint Common Interrupt Mask Register. */ + volatile uint32_t daint; /*!< 818h Device All Endpoints Interrupt Register. */ + volatile uint32_t daintmsk; /*!< 81Ch Device All Endpoints Interrupt Mask Register. */ + volatile uint32_t dtknqr1; /*!< 820h Device IN Token Queue Read Register-1 (Read Only). */ + volatile uint32_t dtknqr2; /*!< 824h Device IN Token Queue Read Register-2 (Read Only). */ + volatile uint32_t dvbusdis; /*!< 828h Device VBUS discharge Register.*/ + volatile uint32_t dvbuspulse; /*!< 82Ch Device VBUS Pulse Register. */ + volatile uint32_t dtknqr3_dthrctl; /*!< 830h Device IN Token Queue Read Register-3 (Read Only). + Device Thresholding control register (Read/Write) + */ + volatile uint32_t dtknqr4_fifoemptymsk; /*!< 834h Device IN Token Queue Read Register-4 (Read Only). + Device IN EPs empty Inr. Mask Register (Read/Write) + */ +} ifxusb_device_global_regs_t; + +/*! + \brief Bit fields in the Device Configuration Register. + */ + +typedef union dcfg_data +{ + uint32_t d32; + struct + { + unsigned reserved31_26 : 6; + unsigned perschintvl : 2; /*!< 25-24 Periodic Scheduling Interval */ + unsigned descdma : 1; /*!< 23 Enable Descriptor DMA in Device mode */ + unsigned epmscnt : 5; /*!< 22-18 In Endpoint Mis-match count */ + unsigned reserved13_17 : 5; + unsigned perfrint : 2; /*!< 12-11 Periodic Frame Interval */ + #define IFXUSB_DCFG_FRAME_INTERVAL_80 0 + #define IFXUSB_DCFG_FRAME_INTERVAL_85 1 + #define IFXUSB_DCFG_FRAME_INTERVAL_90 2 + #define IFXUSB_DCFG_FRAME_INTERVAL_95 3 + unsigned devaddr : 7; /*!< 10-04 Device Addresses */ + unsigned reserved3 : 1; + unsigned nzstsouthshk : 1; /*!< 02 Non Zero Length Status OUT Handshake */ + #define IFXUSB_DCFG_SEND_STALL 1 + unsigned devspd : 2; /*!< 01-00 Device Speed */ + } b; +} dcfg_data_t; + +/*! + \brief Bit fields in the Device Control Register. + */ +typedef union dctl_data +{ + uint32_t d32; + struct + { + unsigned reserved16_31 :16; + unsigned ifrmnum : 1; /*!< 15 Ignore Frame Number for ISOC EPs */ + unsigned gmc : 2; /*!< 14-13 Global Multi Count */ + unsigned gcontbna : 1; /*!< 12 Global Continue on BNA */ + unsigned pwronprgdone : 1; /*!< 11 Power-On Programming Done */ + unsigned cgoutnak : 1; /*!< 10 Clear Global OUT NAK */ + unsigned sgoutnak : 1; /*!< 09 Set Global OUT NAK */ + unsigned cgnpinnak : 1; /*!< 08 Clear Global Non-Periodic IN NAK */ + unsigned sgnpinnak : 1; /*!< 07 Set Global Non-Periodic IN NAK */ + unsigned tstctl : 3; /*!< 06-04 Test Control */ + unsigned goutnaksts : 1; /*!< 03 Global OUT NAK Status */ + unsigned gnpinnaksts : 1; /*!< 02 Global Non-Periodic IN NAK Status */ + unsigned sftdiscon : 1; /*!< 01 Soft Disconnect */ + unsigned rmtwkupsig : 1; /*!< 00 Remote Wakeup */ + } b; +} dctl_data_t; + + +/*! + \brief Bit fields in the Device Status Register. + */ +typedef union dsts_data +{ + uint32_t d32; + struct + { + unsigned reserved22_31 :10; + unsigned soffn :14; /*!< 21-08 Frame or Microframe Number of the received SOF */ + unsigned reserved4_7 : 4; + unsigned errticerr : 1; /*!< 03 Erratic Error */ + unsigned enumspd : 2; /*!< 02-01 Enumerated Speed */ + #define IFXUSB_DSTS_ENUMSPD_HS_PHY_30MHZ_OR_60MHZ 0 + #define IFXUSB_DSTS_ENUMSPD_FS_PHY_30MHZ_OR_60MHZ 1 + #define IFXUSB_DSTS_ENUMSPD_LS_PHY_6MHZ 2 + #define IFXUSB_DSTS_ENUMSPD_FS_PHY_48MHZ 3 + unsigned suspsts : 1; /*!< 00 Suspend Status */ + } b; +} dsts_data_t; + +/*! + \brief Bit fields in the Device IN EP Interrupt Register + and the Device IN EP Common Mask Register. + */ +typedef union diepint_data +{ + uint32_t d32; + struct + { + unsigned reserved14_31 :18; + unsigned nakmsk : 1; /*!< 13 NAK interrupt Mask */ + unsigned reserved10_12 : 3; + unsigned bna : 1; /*!< 09 BNA Interrupt mask */ + unsigned txfifoundrn : 1; /*!< 08 Fifo Underrun Mask */ + unsigned emptyintr : 1; /*!< 07 IN Endpoint HAK Effective mask */ + unsigned inepnakeff : 1; /*!< 06 IN Endpoint HAK Effective mask */ + unsigned intknepmis : 1; /*!< 05 IN Token Received with EP mismatch mask */ + unsigned intktxfemp : 1; /*!< 04 IN Token received with TxF Empty mask */ + unsigned timeout : 1; /*!< 03 TimeOUT Handshake mask (non-ISOC EPs) */ + unsigned ahberr : 1; /*!< 02 AHB Error mask */ + unsigned epdisabled : 1; /*!< 01 Endpoint disable mask */ + unsigned xfercompl : 1; /*!< 00 Transfer complete mask */ + } b; +} diepint_data_t; + + +/*! + \brief Bit fields in the Device OUT EP Interrupt Register and + Device OUT EP Common Interrupt Mask Register. + */ +typedef union doepint_data +{ + uint32_t d32; + struct + { + unsigned reserved15_31 :17; + unsigned nyetmsk : 1; /*!< 14 NYET Interrupt */ + unsigned nakmsk : 1; /*!< 13 NAK Interrupt */ + unsigned bbleerrmsk : 1; /*!< 12 Babble Interrupt */ + unsigned reserved10_11 : 2; + unsigned bna : 1; /*!< 09 BNA Interrupt */ + unsigned outpkterr : 1; /*!< 08 OUT packet Error */ + unsigned reserved07 : 1; + unsigned back2backsetup : 1; /*!< 06 Back-to-Back SETUP Packets Received */ + unsigned stsphsercvd : 1; /*!< 05 */ + unsigned outtknepdis : 1; /*!< 04 OUT Token Received when Endpoint Disabled */ + unsigned setup : 1; /*!< 03 Setup Phase Done (contorl EPs) */ + unsigned ahberr : 1; /*!< 02 AHB Error */ + unsigned epdisabled : 1; /*!< 01 Endpoint disable */ + unsigned xfercompl : 1; /*!< 00 Transfer complete */ + } b; +} doepint_data_t; + + +/*! + \brief Bit fields in the Device All EP Interrupt Registers. + */ +typedef union daint_data +{ + uint32_t d32; + struct + { + unsigned out : 16; /*!< 31-16 OUT Endpoint bits */ + unsigned in : 16; /*!< 15-00 IN Endpoint bits */ + } eps; + struct + { + /** OUT Endpoint bits */ + unsigned outep15 : 1; + unsigned outep14 : 1; + unsigned outep13 : 1; + unsigned outep12 : 1; + unsigned outep11 : 1; + unsigned outep10 : 1; + unsigned outep09 : 1; + unsigned outep08 : 1; + unsigned outep07 : 1; + unsigned outep06 : 1; + unsigned outep05 : 1; + unsigned outep04 : 1; + unsigned outep03 : 1; + unsigned outep02 : 1; + unsigned outep01 : 1; + unsigned outep00 : 1; + /** IN Endpoint bits */ + unsigned inep15 : 1; + unsigned inep14 : 1; + unsigned inep13 : 1; + unsigned inep12 : 1; + unsigned inep11 : 1; + unsigned inep10 : 1; + unsigned inep09 : 1; + unsigned inep08 : 1; + unsigned inep07 : 1; + unsigned inep06 : 1; + unsigned inep05 : 1; + unsigned inep04 : 1; + unsigned inep03 : 1; + unsigned inep02 : 1; + unsigned inep01 : 1; + unsigned inep00 : 1; + } ep; +} daint_data_t; + + +/*! + \brief Bit fields in the Device IN Token Queue Read Registers. + */ +typedef union dtknq1_data +{ + uint32_t d32; + struct + { + unsigned epnums0_5 :24; /*!< 31-08 EP Numbers of IN Tokens 0 ... 4 */ + unsigned wrap_bit : 1; /*!< 07 write pointer has wrapped */ + unsigned reserved05_06 : 2; + unsigned intknwptr : 5; /*!< 04-00 In Token Queue Write Pointer */ + }b; +} dtknq1_data_t; + + +/*! + \brief Bit fields in Threshold control Register + */ +typedef union dthrctl_data +{ + uint32_t d32; + struct + { + unsigned reserved26_31 : 6; + unsigned rx_thr_len : 9; /*!< 25-17 Rx Thr. Length */ + unsigned rx_thr_en : 1; /*!< 16 Rx Thr. Enable */ + unsigned reserved11_15 : 5; + unsigned tx_thr_len : 9; /*!< 10-02 Tx Thr. Length */ + unsigned iso_thr_en : 1; /*!< 01 ISO Tx Thr. Enable */ + unsigned non_iso_thr_en : 1; /*!< 00 non ISO Tx Thr. Enable */ + } b; +} dthrctl_data_t; + +/*@}*//*IFXUSB_CSR_DEVICE_GLOBAL_REG*/ + +/****************************************************************************/ + +/*! + \addtogroup IFXUSB_CSR_DEVICE_EP_REG + */ +/*@{*/ + +/*! typedef ifxusb_dev_in_ep_regs_t + \brief Device Logical IN Endpoint-Specific Registers. + There will be one set of endpoint registers per logical endpoint + implemented. + each EP's IN EP Register are offset at : + 900h + * (ep_num * 20h) + */ + +typedef struct ifxusb_dev_in_ep_regs +{ + volatile uint32_t diepctl; /*!< 00h: Endpoint Control Register */ + uint32_t reserved04; /*!< 04h: */ + volatile uint32_t diepint; /*!< 08h: Endpoint Interrupt Register */ + uint32_t reserved0C; /*!< 0Ch: */ + volatile uint32_t dieptsiz; /*!< 10h: Endpoint Transfer Size Register.*/ + volatile uint32_t diepdma; /*!< 14h: Endpoint DMA Address Register. */ + volatile uint32_t dtxfsts; /*!< 18h: Endpoint Transmit FIFO Status Register. */ + volatile uint32_t diepdmab; /*!< 1Ch: Endpoint DMA Buffer Register. */ +} ifxusb_dev_in_ep_regs_t; + +/*! typedef ifxusb_dev_out_ep_regs_t + \brief Device Logical OUT Endpoint-Specific Registers. + There will be one set of endpoint registers per logical endpoint + implemented. + each EP's OUT EP Register are offset at : + B00h + * (ep_num * 20h) + 00h + */ +typedef struct ifxusb_dev_out_ep_regs +{ + volatile uint32_t doepctl; /*!< 00h: Endpoint Control Register */ + volatile uint32_t doepfn; /*!< 04h: Endpoint Frame number Register */ + volatile uint32_t doepint; /*!< 08h: Endpoint Interrupt Register */ + uint32_t reserved0C; /*!< 0Ch: */ + volatile uint32_t doeptsiz; /*!< 10h: Endpoint Transfer Size Register.*/ + volatile uint32_t doepdma; /*!< 14h: Endpoint DMA Address Register. */ + uint32_t reserved18; /*!< 18h: */ + volatile uint32_t doepdmab; /*!< 1Ch: Endpoint DMA Buffer Register. */ +} ifxusb_dev_out_ep_regs_t; + + +/*! + \brief Bit fields in the Device EP Control + Register. + */ +typedef union depctl_data +{ + uint32_t d32; + struct + { + unsigned epena : 1; /*!< 31 Endpoint Enable */ + unsigned epdis : 1; /*!< 30 Endpoint Disable */ + unsigned setd1pid : 1; /*!< 29 Set DATA1 PID (INTR/Bulk IN and OUT endpoints) */ + unsigned setd0pid : 1; /*!< 28 Set DATA0 PID (INTR/Bulk IN and OUT endpoints) */ + unsigned snak : 1; /*!< 27 Set NAK */ + unsigned cnak : 1; /*!< 26 Clear NAK */ + unsigned txfnum : 4; /*!< 25-22 Tx Fifo Number */ + unsigned stall : 1; /*!< 21 Stall Handshake */ + unsigned snp : 1; /*!< 20 Snoop Mode */ + unsigned eptype : 2; /*!< 19-18 Endpoint Type + 0: Control + 1: Isochronous + 2: Bulk + 3: Interrupt + */ + unsigned naksts : 1; /*!< 17 NAK Status */ + unsigned dpid : 1; /*!< 16 Endpoint DPID (INTR/Bulk IN and OUT endpoints) */ + unsigned usbactep : 1; /*!< 15 USB Active Endpoint */ + unsigned nextep : 4; /*!< 14-11 Next Endpoint */ + unsigned mps :11; /*!< 10-00 Maximum Packet Size */ + #define IFXUSB_DEP0CTL_MPS_64 0 + #define IFXUSB_DEP0CTL_MPS_32 1 + #define IFXUSB_DEP0CTL_MPS_16 2 + #define IFXUSB_DEP0CTL_MPS_8 3 + } b; +} depctl_data_t; + + +/*! + \brief Bit fields in the Device EP Transfer Size Register. (EP0 and EPn) + */ +typedef union deptsiz_data +{ + uint32_t d32; + struct + { + unsigned reserved31 : 1; + unsigned supcnt : 2; /*!< 30-29 Setup Packet Count */ + #ifdef __DED_FIFO__ + unsigned reserved21_28 : 8; + unsigned pktcnt : 2; /*!< 19-20 Packet Count */ + #else + unsigned reserved20_28 : 9; + unsigned pktcnt : 1; /*!< 19 Packet Count */ + #endif + unsigned reserved7_18 :12; + unsigned xfersize : 7; /*!< 06-00 Transfer size */ + }b0; + struct + { + unsigned reserved : 1; + unsigned mc : 2; /*!< 30-29 Multi Count */ + unsigned pktcnt :10; /*!< 28-19 Packet Count */ + unsigned xfersize :19; /*!< 18-00 Transfer size */ + } b; +} deptsiz_data_t; + +/*@}*//*IFXUSB_CSR_DEVICE_EP_REG*/ +/****************************************************************************/ + +/*! + \addtogroup IFXUSB_CSR_DEVICE_DMA_DESC + */ +/*@{*/ +/*! + \brief Bit fields in the DMA Descriptor status quadlet. + */ +typedef union desc_sts_data +{ + struct + { + unsigned bs : 2; /*!< 31-30 Buffer Status */ + #define BS_HOST_READY 0x0 + #define BS_DMA_BUSY 0x1 + #define BS_DMA_DONE 0x2 + #define BS_HOST_BUSY 0x3 + unsigned sts : 2; /*!< 29-28 Receive/Trasmit Status */ + #define RTS_SUCCESS 0x0 + #define RTS_BUFFLUSH 0x1 + #define RTS_RESERVED 0x2 + #define RTS_BUFERR 0x3 + unsigned l : 1; /*!< 27 Last */ + unsigned sp : 1; /*!< 26 Short Packet */ + unsigned ioc : 1; /*!< 25 Interrupt On Complete */ + unsigned sr : 1; /*!< 24 Setup Packet received */ + unsigned mtrf : 1; /*!< 23 Multiple Transfer */ + unsigned reserved16_22 : 7; + unsigned bytes :16; /*!< 15-00 Transfer size in bytes */ + } b; + uint32_t d32; /*!< DMA Descriptor data buffer pointer */ +} desc_sts_data_t; + +/*@}*//*IFXUSB_CSR_DEVICE_DMA_DESC*/ +/****************************************************************************/ + +/*! + \addtogroup IFXUSB_CSR_HOST_GLOBAL_REG + */ +/*@{*/ +/*! typedef ifxusb_host_global_regs_t + \brief IFXUSB Host Mode Global registers. Offsets 400h-7FFh + The ifxusb_host_global_regs structure defines the size + and relative field offsets for the Host Global registers. + These registers are visible only in Host mode and must not be + accessed in Device mode, as the results are unknown. + */ +typedef struct ifxusb_host_global_regs +{ + volatile uint32_t hcfg; /*!< 400h Host Configuration Register. */ + volatile uint32_t hfir; /*!< 404h Host Frame Interval Register. */ + volatile uint32_t hfnum; /*!< 408h Host Frame Number / Frame Remaining Register. */ + uint32_t reserved40C; + volatile uint32_t hptxsts; /*!< 410h Host Periodic Transmit FIFO/ Queue Status Register. */ + volatile uint32_t haint; /*!< 414h Host All Channels Interrupt Register. */ + volatile uint32_t haintmsk; /*!< 418h Host All Channels Interrupt Mask Register. */ +} ifxusb_host_global_regs_t; + +/*! + \brief Bit fields in the Host Configuration Register. + */ +typedef union hcfg_data +{ + uint32_t d32; + struct + { + unsigned reserved31_03 :29; + unsigned fslssupp : 1; /*!< 02 FS/LS Only Support */ + unsigned fslspclksel : 2; /*!< 01-00 FS/LS Phy Clock Select */ + #define IFXUSB_HCFG_30_60_MHZ 0 + #define IFXUSB_HCFG_48_MHZ 1 + #define IFXUSB_HCFG_6_MHZ 2 + } b; +} hcfg_data_t; + +/*! + \brief Bit fields in the Host Frame Interval Register. + */ +typedef union hfir_data +{ + uint32_t d32; + struct + { + unsigned reserved : 16; + unsigned frint : 16; /*!< 15-00 Frame Interval */ + } b; +} hfir_data_t; + +/*! + \brief Bit fields in the Host Frame Time Remaing/Number Register. + */ +typedef union hfnum_data +{ + uint32_t d32; + struct + { + unsigned frrem : 16; /*!< 31-16 Frame Time Remaining */ + unsigned frnum : 16; /*!< 15-00 Frame Number*/ + #define IFXUSB_HFNUM_MAX_FRNUM 0x3FFF + } b; +} hfnum_data_t; + +/*! + \brief Bit fields in the Host Periodic Transmit FIFO/Queue Status Register + */ +typedef union hptxsts_data +{ + /** raw register data */ + uint32_t d32; + struct + { + /** Top of the Periodic Transmit Request Queue + * - bit 24 - Terminate (last entry for the selected channel) + */ + unsigned ptxqtop_odd : 1; /*!< 31 Top of the Periodic Transmit Request + Queue Odd/even microframe*/ + unsigned ptxqtop_chnum : 4; /*!< 30-27 Top of the Periodic Transmit Request + Channel Number */ + unsigned ptxqtop_token : 2; /*!< 26-25 Top of the Periodic Transmit Request + Token Type + 0 - Zero length + 1 - Ping + 2 - Disable + */ + unsigned ptxqtop_terminate : 1; /*!< 24 Top of the Periodic Transmit Request + Terminate (last entry for the selected channel)*/ + unsigned ptxqspcavail : 8; /*!< 23-16 Periodic Transmit Request Queue Space Available */ + unsigned ptxfspcavail :16; /*!< 15-00 Periodic Transmit Data FIFO Space Available */ + } b; +} hptxsts_data_t; + +/*! + \brief Bit fields in the Host Port Control and Status Register. + */ +typedef union hprt0_data +{ + uint32_t d32; + struct + { + unsigned reserved19_31 :13; + unsigned prtspd : 2; /*!< 18-17 Port Speed */ + #define IFXUSB_HPRT0_PRTSPD_HIGH_SPEED 0 + #define IFXUSB_HPRT0_PRTSPD_FULL_SPEED 1 + #define IFXUSB_HPRT0_PRTSPD_LOW_SPEED 2 + unsigned prttstctl : 4; /*!< 16-13 Port Test Control */ + unsigned prtpwr : 1; /*!< 12 Port Power */ + unsigned prtlnsts : 2; /*!< 11-10 Port Line Status */ + unsigned reserved9 : 1; + unsigned prtrst : 1; /*!< 08 Port Reset */ + unsigned prtsusp : 1; /*!< 07 Port Suspend */ + unsigned prtres : 1; /*!< 06 Port Resume */ + unsigned prtovrcurrchng : 1; /*!< 05 Port Overcurrent Change */ + unsigned prtovrcurract : 1; /*!< 04 Port Overcurrent Active */ + unsigned prtenchng : 1; /*!< 03 Port Enable/Disable Change */ + unsigned prtena : 1; /*!< 02 Port Enable */ + unsigned prtconndet : 1; /*!< 01 Port Connect Detected */ + unsigned prtconnsts : 1; /*!< 00 Port Connect Status */ + }b; +} hprt0_data_t; + +/*! + \brief Bit fields in the Host All Interrupt Register. + */ +typedef union haint_data +{ + uint32_t d32; + struct + { + unsigned reserved : 16; + unsigned ch15 : 1; + unsigned ch14 : 1; + unsigned ch13 : 1; + unsigned ch12 : 1; + unsigned ch11 : 1; + unsigned ch10 : 1; + unsigned ch09 : 1; + unsigned ch08 : 1; + unsigned ch07 : 1; + unsigned ch06 : 1; + unsigned ch05 : 1; + unsigned ch04 : 1; + unsigned ch03 : 1; + unsigned ch02 : 1; + unsigned ch01 : 1; + unsigned ch00 : 1; + } b; + struct + { + unsigned reserved : 16; + unsigned chint : 16; + } b2; +} haint_data_t; +/*@}*//*IFXUSB_CSR_HOST_GLOBAL_REG*/ +/****************************************************************************/ +/*! + \addtogroup IFXUSB_CSR_HOST_HC_REG + */ +/*@{*/ +/*! typedef ifxusb_hc_regs_t + \brief Host Channel Specific Registers + There will be one set of hc registers per host channelimplemented. + each HC's Register are offset at : + 500h + * (hc_num * 20h) + */ +typedef struct ifxusb_hc_regs +{ + volatile uint32_t hcchar; /*!< 00h Host Channel Characteristic Register.*/ + volatile uint32_t hcsplt; /*!< 04h Host Channel Split Control Register.*/ + volatile uint32_t hcint; /*!< 08h Host Channel Interrupt Register. */ + volatile uint32_t hcintmsk; /*!< 0Ch Host Channel Interrupt Mask Register. */ + volatile uint32_t hctsiz; /*!< 10h Host Channel Transfer Size Register. */ + volatile uint32_t hcdma; /*!< 14h Host Channel DMA Address Register. */ + uint32_t reserved[2]; /*!< 18h Reserved. */ +} ifxusb_hc_regs_t; + + +/*! + \brief Bit fields in the Host Channel Characteristics Register. + */ +typedef union hcchar_data +{ + uint32_t d32; + struct + { + unsigned chen : 1; /*!< 31 Channel enable */ + unsigned chdis : 1; /*!< 30 Channel disable */ + unsigned oddfrm : 1; /*!< 29 Frame to transmit periodic transaction */ + unsigned devaddr : 7; /*!< 28-22 Device address */ + unsigned multicnt : 2; /*!< 21-20 Packets per frame for periodic transfers */ + unsigned eptype : 2; /*!< 19-18 0: Control, 1: Isoc, 2: Bulk, 3: Intr */ + unsigned lspddev : 1; /*!< 17 0: Full/high speed device, 1: Low speed device */ + unsigned reserved : 1; + unsigned epdir : 1; /*!< 15 0: OUT, 1: IN */ + unsigned epnum : 4; /*!< 14-11 Endpoint number */ + unsigned mps :11; /*!< 10-00 Maximum packet size in bytes */ + } b; +} hcchar_data_t; + +/*! + \brief Bit fields in the Host Channel Split Control Register + */ +typedef union hcsplt_data +{ + uint32_t d32; + struct + { + unsigned spltena : 1; /*!< 31 Split Enble */ + unsigned reserved :14; + unsigned compsplt : 1; /*!< 16 Do Complete Split */ + unsigned xactpos : 2; /*!< 15-14 Transaction Position */ + #define IFXUSB_HCSPLIT_XACTPOS_MID 0 + #define IFXUSB_HCSPLIT_XACTPOS_END 1 + #define IFXUSB_HCSPLIT_XACTPOS_BEGIN 2 + #define IFXUSB_HCSPLIT_XACTPOS_ALL 3 + unsigned hubaddr : 7; /*!< 13-07 Hub Address */ + unsigned prtaddr : 7; /*!< 06-00 Port Address */ + } b; +} hcsplt_data_t; + +/*! + \brief Bit fields in the Host Interrupt Register. + */ +typedef union hcint_data +{ + uint32_t d32; + struct + { + unsigned reserved :21; + unsigned datatglerr : 1; /*!< 10 Data Toggle Error */ + unsigned frmovrun : 1; /*!< 09 Frame Overrun */ + unsigned bblerr : 1; /*!< 08 Babble Error */ + unsigned xacterr : 1; /*!< 07 Transaction Err */ + unsigned nyet : 1; /*!< 06 NYET Response Received */ + unsigned ack : 1; /*!< 05 ACK Response Received */ + unsigned nak : 1; /*!< 04 NAK Response Received */ + unsigned stall : 1; /*!< 03 STALL Response Received */ + unsigned ahberr : 1; /*!< 02 AHB Error */ + unsigned chhltd : 1; /*!< 01 Channel Halted */ + unsigned xfercomp : 1; /*!< 00 Channel Halted */ + }b; +} hcint_data_t; + + +/*! + \brief Bit fields in the Host Channel Transfer Size + Register. + */ +typedef union hctsiz_data +{ + uint32_t d32; + struct + { + /** */ + unsigned dopng : 1; /*!< 31 Do PING protocol when 1 */ + /** + * Packet ID for next data packet + * 0: DATA0 + * 1: DATA2 + * 2: DATA1 + * 3: MDATA (non-Control), SETUP (Control) + */ + unsigned pid : 2; /*!< 30-29 Packet ID for next data packet + 0: DATA0 + 1: DATA2 + 2: DATA1 + 3: MDATA (non-Control), SETUP (Control) + */ + #define IFXUSB_HCTSIZ_DATA0 0 + #define IFXUSB_HCTSIZ_DATA1 2 + #define IFXUSB_HCTSIZ_DATA2 1 + #define IFXUSB_HCTSIZ_MDATA 3 + #define IFXUSB_HCTSIZ_SETUP 3 + unsigned pktcnt :10; /*!< 28-19 Data packets to transfer */ + unsigned xfersize :19; /*!< 18-00 Total transfer size in bytes */ + }b; +} hctsiz_data_t; + +/*@}*//*IFXUSB_CSR_HOST_HC_REG*/ + +/****************************************************************************/ + +/*! + \addtogroup IFXUSB_CSR_PWR_CLK_GATING_REG + */ +/*@{*/ +/*! + \brief Bit fields in the Power and Clock Gating Control Register + */ +typedef union pcgcctl_data +{ + uint32_t d32; + struct + { + unsigned reserved : 27; + unsigned physuspended : 1; /*!< 04 PHY Suspended */ + unsigned rstpdwnmodule : 1; /*!< 03 Reset Power Down Modules */ + unsigned pwrclmp : 1; /*!< 02 Power Clamp */ + unsigned gatehclk : 1; /*!< 01 Gate Hclk */ + unsigned stoppclk : 1; /*!< 00 Stop Pclk */ + } b; +} pcgcctl_data_t; +/*@}*//*IFXUSB_CSR_PWR_CLK_GATING_REG*/ + +/****************************************************************************/ + +#endif //__IFXUSB_REGS_H__ diff --git a/package/kernel/lantiq/ltq-hcd/src/ifxusb_version.h b/package/kernel/lantiq/ltq-hcd/src/ifxusb_version.h new file mode 100644 index 0000000..11e346e --- /dev/null +++ b/package/kernel/lantiq/ltq-hcd/src/ifxusb_version.h @@ -0,0 +1,5 @@ + +#ifndef IFXUSB_VERSION +#define IFXUSB_VERSION "3.2 B110801" +#endif + diff --git a/package/kernel/lantiq/ltq-ifxos/Makefile b/package/kernel/lantiq/ltq-ifxos/Makefile new file mode 100644 index 0000000..1364849 --- /dev/null +++ b/package/kernel/lantiq/ltq-ifxos/Makefile @@ -0,0 +1,51 @@ +# Copyright (C) 2009-2012 OpenWrt.org +# +# This is free software, licensed under the GNU General Public License v2. +# See /LICENSE for more information. + +include $(TOPDIR)/rules.mk +include $(INCLUDE_DIR)/kernel.mk + +PKG_NAME:=lib_ifxos +PKG_VERSION:=1.5.14 +PKG_SOURCE:=$(PKG_NAME)-$(PKG_VERSION).tar.gz +PKG_RELEASE:=3 +PKG_SOURCE_URL:=http://mirror2.openwrt.org/sources +PKG_MD5SUM:=bc107f9d8ff6bed4c2760a2817bbb029 +PKG_MAINTAINER:=John Crispin <blogic@openwrt.org> + +include $(INCLUDE_DIR)/package.mk + +define KernelPackage/ltq-ifxos + SECTION:=sys + CATEGORY:=Kernel modules + SUBMENU:=Libraries + TITLE:=Lantiq OS abstraction library + URL:=http://www.lantiq.com/ + DEPENDS:=@TARGET_lantiq + FILES:=$(PKG_BUILD_DIR)/src/drv_ifxos.ko + AUTOLOAD:=$(call AutoLoad,10,drv_ifxos) +endef + +CONFIGURE_ARGS += \ + ARCH=$(LINUX_KARCH) \ + --enable-linux-26 \ + --enable-kernelbuild="$(LINUX_DIR)" \ + --enable-kernelincl="$(LINUX_DIR)/include" \ + --enable-add_drv_cflags="-fno-pic -mno-abicalls -mlong-calls -G 0" + +define Build/Configure + (cd $(PKG_BUILD_DIR); aclocal && autoconf && automake) + $(call Build/Configure/Default) +endef + +ifdef CONFIG_TARGET_lantiq + define Build/InstallDev + $(INSTALL_DIR) $(1)/usr/{lib,include/ifxos} + $(CP) $(PKG_BUILD_DIR)/src/include/* $(1)/usr/include/ifxos + mkdir -p $(1)/usr/lib + $(CP) $(PKG_BUILD_DIR)/src/libifxos.a $(1)/usr/lib/libifxos.a + endef +endif + +$(eval $(call KernelPackage,ltq-ifxos)) diff --git a/package/kernel/lantiq/ltq-ifxos/patches/100-compat.patch b/package/kernel/lantiq/ltq-ifxos/patches/100-compat.patch new file mode 100644 index 0000000..2fd7cd3 --- /dev/null +++ b/package/kernel/lantiq/ltq-ifxos/patches/100-compat.patch @@ -0,0 +1,96 @@ +Index: lib_ifxos-1.5.14/configure.in +=================================================================== +--- lib_ifxos-1.5.14.orig/configure.in 2010-07-22 18:34:07.000000000 +0200 ++++ lib_ifxos-1.5.14/configure.in 2013-03-14 08:23:57.481810836 +0100 +@@ -64,7 +64,7 @@ + AC_ARG_ENABLE(kernelbuild, + AS_HELP_STRING(--enable-kernelbuild=x,Set the target kernel build path (only for kernel 2.6.x)), + [ +- if test -e $enableval/include/linux/autoconf.h; then ++ if test -e $enableval/include/linux/autoconf.h -o -e $enableval/include/generated/autoconf.h; then + AC_SUBST([KERNEL_BUILD_PATH],[$enableval]) + else + AC_MSG_ERROR([The kernel build directory is not valid or not configured!]) +Index: lib_ifxos-1.5.14/src/linux/ifxos_linux_thread_drv.c +=================================================================== +--- lib_ifxos-1.5.14.orig/src/linux/ifxos_linux_thread_drv.c 2010-01-08 18:10:47.000000000 +0100 ++++ lib_ifxos-1.5.14/src/linux/ifxos_linux_thread_drv.c 2013-03-14 08:23:57.481810836 +0100 +@@ -34,8 +34,8 @@ + #include <linux/sched.h> + #include <linux/version.h> + #include <linux/completion.h> +-#include <linux/smp_lock.h> + #include <linux/signal.h> ++#include <linux/kthread.h> + + + #include "ifx_types.h" +@@ -68,10 +68,6 @@ + #if ( defined(IFXOS_HAVE_THREAD) && (IFXOS_HAVE_THREAD == 1) ) + + +-IFXOS_STATIC IFX_int32_t IFXOS_KernelThreadStartup( +- IFXOS_ThreadCtrl_t *pThrCntrl); +- +- + /* ============================================================================ + IFX Linux adaptation - Kernel Thread handling + ========================================================================= */ +@@ -96,9 +92,9 @@ + - IFX_SUCCESS on success + - IFX_ERROR on error + */ +-IFXOS_STATIC IFX_int32_t IFXOS_KernelThreadStartup( +- IFXOS_ThreadCtrl_t *pThrCntrl) ++int IFXOS_KernelThreadStartup(void *data) + { ++ IFXOS_ThreadCtrl_t *pThrCntrl = (IFXOS_ThreadCtrl_t*) data; + IFX_int32_t retVal = IFX_ERROR; + #if (LINUX_VERSION_CODE < KERNEL_VERSION(2,6,0)) + struct task_struct *kthread = current; +@@ -139,7 +135,7 @@ + /* let others run */ + unlock_kernel(); + #else +- daemonize(pThrCntrl->thrParams.pName); ++ //daemonize(pThrCntrl->thrParams.pName); + + /* Enable signals in Kernel >= 2.6 */ + allow_signal(SIGKILL); +@@ -218,9 +214,7 @@ + init_completion(&pThrCntrl->thrCompletion); + + /* start kernel thread via the wrapper function */ +- pThrCntrl->tid = kernel_thread( (IFXOS_KERNEL_THREAD_StartRoutine)IFXOS_KernelThreadStartup, +- (void *)pThrCntrl, +- IFXOS_DRV_THREAD_OPTIONS); ++ pThrCntrl->tid = kthread_run(IFXOS_KernelThreadStartup, (void *)pThrCntrl, "ifxos"); + + pThrCntrl->bValid = IFX_TRUE; + +Index: lib_ifxos-1.5.14/src/include/ifxos_thread.h +=================================================================== +--- lib_ifxos-1.5.14.orig/src/include/ifxos_thread.h 2010-01-14 10:59:13.000000000 +0100 ++++ lib_ifxos-1.5.14/src/include/ifxos_thread.h 2013-03-14 08:24:43.577812806 +0100 +@@ -111,7 +111,7 @@ + /** + Function type of the user thread/task function. + */ +-typedef IFX_int32_t (*IFXOS_ThreadFunction_t)(IFXOS_ThreadParams_t *); ++typedef int (*IFXOS_ThreadFunction_t)(void*); + + /** @} */ + +Index: lib_ifxos-1.5.14/src/include/linux/ifxos_linux_thread.h +=================================================================== +--- lib_ifxos-1.5.14.orig/src/include/linux/ifxos_linux_thread.h 2010-01-08 18:10:27.000000000 +0100 ++++ lib_ifxos-1.5.14/src/include/linux/ifxos_linux_thread.h 2013-03-14 08:25:13.193814073 +0100 +@@ -152,7 +152,7 @@ + IFXOS_ThreadFunction_t pThrFct; + + /** Kernel thread process ID */ +- IFX_int32_t tid; ++ struct task_struct *tid; + + /** requested kernel thread priority */ + IFX_int32_t nPriority; diff --git a/package/kernel/lantiq/ltq-ptm/Makefile b/package/kernel/lantiq/ltq-ptm/Makefile new file mode 100644 index 0000000..f0fb25a --- /dev/null +++ b/package/kernel/lantiq/ltq-ptm/Makefile @@ -0,0 +1,52 @@ +# Copyright (C) 2012 OpenWrt.org +# +# This is free software, licensed under the GNU General Public License v2. +# See /LICENSE for more information. +# + +include $(TOPDIR)/rules.mk +include $(INCLUDE_DIR)/kernel.mk + +PKG_NAME:=ltq-ptm +PKG_RELEASE:=1 +PKG_BUILD_DIR:=$(KERNEL_BUILD_DIR)/ltq-ptm-$(BUILD_VARIANT) + +PKG_MAINTAINER:=John Crispin <blogic@openwrt.org> + +include $(INCLUDE_DIR)/package.mk + +define KernelPackage/ltq-ptm-template + SECTION:=sys + CATEGORY:=Kernel modules + SUBMENU:=Network Devices + TITLE:=ptm driver for $(1) + URL:=http://www.lantiq.com/ + VARIANT:=$(1) + DEPENDS:=@TARGET_lantiq_$(2) + FILES:=$(PKG_BUILD_DIR)/ltq_ptm_$(1).ko + AUTOLOAD:=$(call AutoLoad,52,ltq_ptm_$(1)) +endef + +KernelPackage/ltq-ptm-danube=$(call KernelPackage/ltq-ptm-template,danube,xway) +KernelPackage/ltq-ptm-ar9=$(call KernelPackage/ltq-ptm-template,ar9,xway) +KernelPackage/ltq-ptm-ase=$(call KernelPackage/ltq-ptm-template,ase,ase) +KernelPackage/ltq-ptm-vr9=$(call KernelPackage/ltq-ptm-template,vr9,xway) + +define Build/Prepare + $(INSTALL_DIR) $(PKG_BUILD_DIR) + $(CP) ./src/* $(PKG_BUILD_DIR) +endef + +define Build/Configure +endef + +define Build/Compile + cd $(LINUX_DIR); \ + ARCH=mips CROSS_COMPILE="$(KERNEL_CROSS)" \ + $(MAKE) BUILD_VARIANT=$(BUILD_VARIANT) M=$(PKG_BUILD_DIR) V=1 modules +endef + +$(eval $(call KernelPackage,ltq-ptm-danube)) +$(eval $(call KernelPackage,ltq-ptm-ase)) +$(eval $(call KernelPackage,ltq-ptm-ar9)) +$(eval $(call KernelPackage,ltq-ptm-vr9)) diff --git a/package/kernel/lantiq/ltq-ptm/src/Makefile b/package/kernel/lantiq/ltq-ptm/src/Makefile new file mode 100644 index 0000000..0d0bda5 --- /dev/null +++ b/package/kernel/lantiq/ltq-ptm/src/Makefile @@ -0,0 +1,23 @@ +ifeq ($(BUILD_VARIANT),danube) + CFLAGS_MODULE+=-DCONFIG_DANUBE + obj-m = ltq_ptm_danube.o + ltq_ptm_danube-objs = ifxmips_ptm_adsl.o ifxmips_ptm_danube.o +endif + +ifeq ($(BUILD_VARIANT),ase) + CFLAGS_MODULE+=-DCONFIG_AMAZON_SE + obj-m = ltq_ptm_ase.o + ltq_ptm_ase-objs = ifxmips_ptm_adsl.o ifxmips_ptm_amazon_se.o +endif + +ifeq ($(BUILD_VARIANT),ar9) + CFLAGS_MODULE+=-DCONFIG_AR9 + obj-m = ltq_ptm_ar9.o + ltq_ptm_ar9-objs = ifxmips_ptm_adsl.o ifxmips_ptm_ar9.o +endif + +ifeq ($(BUILD_VARIANT),vr9) + CFLAGS_MODULE+=-DCONFIG_VR9 + obj-m = ltq_ptm_vr9.o + ltq_ptm_vr9-objs = ifxmips_ptm_vdsl.o ifxmips_ptm_vr9.o +endif diff --git a/package/kernel/lantiq/ltq-ptm/src/ifxmips_ptm_adsl.c b/package/kernel/lantiq/ltq-ptm/src/ifxmips_ptm_adsl.c new file mode 100644 index 0000000..391d56c --- /dev/null +++ b/package/kernel/lantiq/ltq-ptm/src/ifxmips_ptm_adsl.c @@ -0,0 +1,1551 @@ +/****************************************************************************** +** +** FILE NAME : ifxmips_ptm_adsl.c +** PROJECT : UEIP +** MODULES : PTM +** +** DATE : 7 Jul 2009 +** AUTHOR : Xu Liang +** DESCRIPTION : PTM driver common source file (core functions for Danube/ +** Amazon-SE/AR9) +** COPYRIGHT : Copyright (c) 2006 +** Infineon Technologies AG +** Am Campeon 1-12, 85579 Neubiberg, Germany +** +** This program is free software; you can redistribute it and/or modify +** it under the terms of the GNU General Public License as published by +** the Free Software Foundation; either version 2 of the License, or +** (at your option) any later version. +** +** HISTORY +** $Date $Author $Comment +** 07 JUL 2009 Xu Liang Init Version +*******************************************************************************/ + + + +/* + * #################################### + * Head File + * #################################### + */ + +/* + * Common Head File + */ +#include <linux/version.h> +#include <linux/kernel.h> +#include <linux/module.h> +#include <linux/types.h> +#include <linux/errno.h> +#include <linux/proc_fs.h> +#include <linux/init.h> +#include <linux/ioctl.h> +#include <linux/etherdevice.h> +#include <linux/interrupt.h> +#include <asm/io.h> + +/* + * Chip Specific Head File + */ +#include "ifxmips_ptm_adsl.h" + + +#include <lantiq_soc.h> + +/* + * #################################### + * Kernel Version Adaption + * #################################### + */ +#if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,11) + #define MODULE_PARM_ARRAY(a, b) module_param_array(a, int, NULL, 0) + #define MODULE_PARM(a, b) module_param(a, int, 0) +#else + #define MODULE_PARM_ARRAY(a, b) MODULE_PARM(a, b) +#endif + + + +/* + * #################################### + * Parameters to Configure PPE + * #################################### + */ + +static int write_desc_delay = 0x20; /* Write descriptor delay */ + +static int rx_max_packet_size = ETH_MAX_FRAME_LENGTH; + /* Max packet size for RX */ + +static int dma_rx_descriptor_length = 24; /* Number of descriptors per DMA RX channel */ +static int dma_tx_descriptor_length = 24; /* Number of descriptors per DMA TX channel */ + +static int eth_efmtc_crc_cfg = 0x03100710; /* default: tx_eth_crc_check: 1, tx_tc_crc_check: 1, tx_tc_crc_len = 16 */ + /* rx_eth_crc_present: 1, rx_eth_crc_check: 1, rx_tc_crc_check: 1, rx_tc_crc_len = 16 */ + +MODULE_PARM(write_desc_delay, "i"); +MODULE_PARM_DESC(write_desc_delay, "PPE core clock cycles between descriptor write and effectiveness in external RAM"); + +MODULE_PARM(rx_max_packet_size, "i"); +MODULE_PARM_DESC(rx_max_packet_size, "Max packet size in byte for downstream ethernet frames"); + +MODULE_PARM(dma_rx_descriptor_length, "i"); +MODULE_PARM_DESC(dma_rx_descriptor_length, "Number of descriptor assigned to DMA RX channel (>16)"); +MODULE_PARM(dma_tx_descriptor_length, "i"); +MODULE_PARM_DESC(dma_tx_descriptor_length, "Number of descriptor assigned to DMA TX channel (>16)"); + +MODULE_PARM(eth_efmtc_crc_cfg, "i"); +MODULE_PARM_DESC(eth_efmtc_crc_cfg, "Configuration for PTM TX/RX ethernet/efm-tc CRC"); + + + +/* + * #################################### + * Definition + * #################################### + */ + + +#define DUMP_SKB_LEN ~0 + + + +/* + * #################################### + * Declaration + * #################################### + */ + +/* + * Network Operations + */ +static void ptm_setup(struct net_device *, int); +static struct net_device_stats *ptm_get_stats(struct net_device *); +static int ptm_open(struct net_device *); +static int ptm_stop(struct net_device *); + static unsigned int ptm_poll(int, unsigned int); + static int ptm_napi_poll(struct napi_struct *, int); +static int ptm_hard_start_xmit(struct sk_buff *, struct net_device *); +static int ptm_ioctl(struct net_device *, struct ifreq *, int); +static void ptm_tx_timeout(struct net_device *); + +/* + * DSL Data LED + */ +static INLINE void adsl_led_flash(void); + +/* + * buffer manage functions + */ +static INLINE struct sk_buff* alloc_skb_rx(void); +//static INLINE struct sk_buff* alloc_skb_tx(unsigned int); +static INLINE struct sk_buff *get_skb_rx_pointer(unsigned int); +static INLINE int get_tx_desc(unsigned int, unsigned int *); + +/* + * Mailbox handler and signal function + */ +static INLINE int mailbox_rx_irq_handler(unsigned int); +static irqreturn_t mailbox_irq_handler(int, void *); +static INLINE void mailbox_signal(unsigned int, int); +#ifdef CONFIG_IFX_PTM_RX_TASKLET + static void do_ptm_tasklet(unsigned long); +#endif + +/* + * Debug Functions + */ +#if defined(DEBUG_DUMP_SKB) && DEBUG_DUMP_SKB + static void dump_skb(struct sk_buff *, u32, char *, int, int, int); +#else + #define dump_skb(skb, len, title, port, ch, is_tx) do {} while (0) +#endif +#if defined(ENABLE_DBG_PROC) && ENABLE_DBG_PROC + static void skb_swap(struct sk_buff *); +#else + #define skb_swap(skb) do {} while (0) +#endif + +/* + * Proc File Functions + */ +static INLINE void proc_file_create(void); +static INLINE void proc_file_delete(void); +static int proc_read_version(char *, char **, off_t, int, int *, void *); +static int proc_read_wanmib(char *, char **, off_t, int, int *, void *); +static int proc_write_wanmib(struct file *, const char *, unsigned long, void *); +#if defined(ENABLE_FW_PROC) && ENABLE_FW_PROC + static int proc_read_genconf(char *, char **, off_t, int, int *, void *); +#endif +#if defined(ENABLE_DBG_PROC) && ENABLE_DBG_PROC + static int proc_read_dbg(char *, char **, off_t, int, int *, void *); + static int proc_write_dbg(struct file *, const char *, unsigned long, void *); +#endif + +/* + * Proc Help Functions + */ +static INLINE int stricmp(const char *, const char *); +#if defined(ENABLE_DBG_PROC) && ENABLE_DBG_PROC + static INLINE int strincmp(const char *, const char *, int); +#endif +static INLINE int ifx_ptm_version(char *); + +/* + * Init & clean-up functions + */ +static INLINE void check_parameters(void); +static INLINE int init_priv_data(void); +static INLINE void clear_priv_data(void); +static INLINE void init_tables(void); + +/* + * Exteranl Function + */ +#if defined(CONFIG_IFXMIPS_DSL_CPE_MEI) || defined(CONFIG_IFXMIPS_DSL_CPE_MEI_MODULE) + extern int ifx_mei_atm_showtime_check(int *is_showtime, struct port_cell_info *port_cell, void **xdata_addr); +#else + static inline int ifx_mei_atm_showtime_check(int *is_showtime, struct port_cell_info *port_cell, void **xdata_addr) + { + if ( is_showtime != NULL ) + *is_showtime = 0; + return 0; + } +#endif + +/* + * External variable + */ +#if defined(CONFIG_IFXMIPS_DSL_CPE_MEI) || defined(CONFIG_IFXMIPS_DSL_CPE_MEI_MODULE) + extern int (*ifx_mei_atm_showtime_enter)(struct port_cell_info *, void *); + extern int (*ifx_mei_atm_showtime_exit)(void); +#else + int (*ifx_mei_atm_showtime_enter)(struct port_cell_info *, void *) = NULL; + EXPORT_SYMBOL(ifx_mei_atm_showtime_enter); + int (*ifx_mei_atm_showtime_exit)(void) = NULL; + EXPORT_SYMBOL(ifx_mei_atm_showtime_exit); +#endif + + + +/* + * #################################### + * Local Variable + * #################################### + */ + +static struct ptm_priv_data g_ptm_priv_data; + +#if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,32) +static struct net_device_ops g_ptm_netdev_ops = { + .ndo_get_stats = ptm_get_stats, + .ndo_open = ptm_open, + .ndo_stop = ptm_stop, + .ndo_start_xmit = ptm_hard_start_xmit, + .ndo_validate_addr = eth_validate_addr, + .ndo_set_mac_address = eth_mac_addr, + .ndo_change_mtu = eth_change_mtu, + .ndo_do_ioctl = ptm_ioctl, + .ndo_tx_timeout = ptm_tx_timeout, +}; +#endif + +static struct net_device *g_net_dev[2] = {0}; +static char *g_net_dev_name[2] = {"ptm0", "ptmfast0"}; + +#ifdef CONFIG_IFX_PTM_RX_TASKLET + static struct tasklet_struct g_ptm_tasklet[] = { + {NULL, 0, ATOMIC_INIT(0), do_ptm_tasklet, 0}, + {NULL, 0, ATOMIC_INIT(0), do_ptm_tasklet, 1}, + }; +#endif + +unsigned int ifx_ptm_dbg_enable = DBG_ENABLE_MASK_ERR; + +static struct proc_dir_entry* g_ptm_dir = NULL; + +static int g_showtime = 0; + + + +/* + * #################################### + * Local Function + * #################################### + */ + +static void ptm_setup(struct net_device *dev, int ndev) +{ + /* hook network operations */ + dev->netdev_ops = &g_ptm_netdev_ops; + netif_napi_add(dev, &g_ptm_priv_data.itf[ndev].napi, ptm_napi_poll, 25); + dev->watchdog_timeo = ETH_WATCHDOG_TIMEOUT; + + dev->dev_addr[0] = 0x00; + dev->dev_addr[1] = 0x20; + dev->dev_addr[2] = 0xda; + dev->dev_addr[3] = 0x86; + dev->dev_addr[4] = 0x23; + dev->dev_addr[5] = 0x75 + ndev; +} + +static struct net_device_stats *ptm_get_stats(struct net_device *dev) +{ + int ndev; + + for ( ndev = 0; ndev < ARRAY_SIZE(g_net_dev) && g_net_dev[ndev] != dev; ndev++ ); + ASSERT(ndev >= 0 && ndev < ARRAY_SIZE(g_net_dev), "ndev = %d (wrong value)", ndev); + + g_ptm_priv_data.itf[ndev].stats.rx_errors = WAN_MIB_TABLE[ndev].wrx_tccrc_err_pdu + WAN_MIB_TABLE[ndev].wrx_ethcrc_err_pdu; + g_ptm_priv_data.itf[ndev].stats.rx_dropped = WAN_MIB_TABLE[ndev].wrx_nodesc_drop_pdu + WAN_MIB_TABLE[ndev].wrx_len_violation_drop_pdu + (WAN_MIB_TABLE[ndev].wrx_correct_pdu - g_ptm_priv_data.itf[ndev].stats.rx_packets); + + return &g_ptm_priv_data.itf[ndev].stats; +} + +static int ptm_open(struct net_device *dev) +{ + int ndev; + + for ( ndev = 0; ndev < ARRAY_SIZE(g_net_dev) && g_net_dev[ndev] != dev; ndev++ ); + ASSERT(ndev >= 0 && ndev < ARRAY_SIZE(g_net_dev), "ndev = %d (wrong value)", ndev); + + napi_enable(&g_ptm_priv_data.itf[ndev].napi); + + IFX_REG_W32_MASK(0, 1 << ndev, MBOX_IGU1_IER); + + netif_start_queue(dev); + + return 0; +} + +static int ptm_stop(struct net_device *dev) +{ + int ndev; + + for ( ndev = 0; ndev < ARRAY_SIZE(g_net_dev) && g_net_dev[ndev] != dev; ndev++ ); + ASSERT(ndev >= 0 && ndev < ARRAY_SIZE(g_net_dev), "ndev = %d (wrong value)", ndev); + + IFX_REG_W32_MASK((1 << ndev) | (1 << (ndev + 16)), 0, MBOX_IGU1_IER); + + napi_disable(&g_ptm_priv_data.itf[ndev].napi); + + netif_stop_queue(dev); + + return 0; +} + +static unsigned int ptm_poll(int ndev, unsigned int work_to_do) +{ + unsigned int work_done = 0; + + ASSERT(ndev >= 0 && ndev < ARRAY_SIZE(g_net_dev), "ndev = %d (wrong value)", ndev); + + while ( work_done < work_to_do && WRX_DMA_CHANNEL_CONFIG(ndev)->vlddes > 0 ) { + if ( mailbox_rx_irq_handler(ndev) < 0 ) + break; + + work_done++; + } + + return work_done; +} +static int ptm_napi_poll(struct napi_struct *napi, int budget) +{ + int ndev; + unsigned int work_done; + + for ( ndev = 0; ndev < ARRAY_SIZE(g_net_dev) && g_net_dev[ndev] != napi->dev; ndev++ ); + + work_done = ptm_poll(ndev, budget); + + // interface down + if ( !netif_running(napi->dev) ) { + napi_complete(napi); + return work_done; + } + + // no more traffic + if ( WRX_DMA_CHANNEL_CONFIG(ndev)->vlddes == 0 ) { + // clear interrupt + IFX_REG_W32_MASK(0, 1 << ndev, MBOX_IGU1_ISRC); + // double check + if ( WRX_DMA_CHANNEL_CONFIG(ndev)->vlddes == 0 ) { + napi_complete(napi); + IFX_REG_W32_MASK(0, 1 << ndev, MBOX_IGU1_IER); + return work_done; + } + } + + // next round + return work_done; +} + +static int ptm_hard_start_xmit(struct sk_buff *skb, struct net_device *dev) +{ + int ndev; + unsigned int f_full; + int desc_base; + register struct tx_descriptor reg_desc = {0}; + + for ( ndev = 0; ndev < ARRAY_SIZE(g_net_dev) && g_net_dev[ndev] != dev; ndev++ ); + ASSERT(ndev >= 0 && ndev < ARRAY_SIZE(g_net_dev), "ndev = %d (wrong value)", ndev); + + if ( !g_showtime ) { + err("not in showtime"); + goto PTM_HARD_START_XMIT_FAIL; + } + + /* allocate descriptor */ + desc_base = get_tx_desc(ndev, &f_full); + if ( f_full ) { + dev->trans_start = jiffies; + netif_stop_queue(dev); + + IFX_REG_W32_MASK(0, 1 << (ndev + 16), MBOX_IGU1_ISRC); + IFX_REG_W32_MASK(0, 1 << (ndev + 16), MBOX_IGU1_IER); + } + if ( desc_base < 0 ) + goto PTM_HARD_START_XMIT_FAIL; + + if ( g_ptm_priv_data.itf[ndev].tx_skb[desc_base] != NULL ) + dev_kfree_skb_any(g_ptm_priv_data.itf[ndev].tx_skb[desc_base]); + g_ptm_priv_data.itf[ndev].tx_skb[desc_base] = skb; + + reg_desc.dataptr = (unsigned int)skb->data >> 2; + reg_desc.datalen = skb->len < ETH_ZLEN ? ETH_ZLEN : skb->len; + reg_desc.byteoff = (unsigned int)skb->data & (DATA_BUFFER_ALIGNMENT - 1); + reg_desc.own = 1; + reg_desc.c = 1; + reg_desc.sop = reg_desc.eop = 1; + + /* write discriptor to memory and write back cache */ + g_ptm_priv_data.itf[ndev].tx_desc[desc_base] = reg_desc; + dma_cache_wback((unsigned long)skb->data, skb->len); + wmb(); + + dump_skb(skb, DUMP_SKB_LEN, (char *)__func__, ndev, ndev, 1); + + if ( (ifx_ptm_dbg_enable & DBG_ENABLE_MASK_MAC_SWAP) ) { + skb_swap(skb); + } + + g_ptm_priv_data.itf[ndev].stats.tx_packets++; + g_ptm_priv_data.itf[ndev].stats.tx_bytes += reg_desc.datalen; + + dev->trans_start = jiffies; + mailbox_signal(ndev, 1); + + adsl_led_flash(); + + return NETDEV_TX_OK; + +PTM_HARD_START_XMIT_FAIL: + dev_kfree_skb_any(skb); + g_ptm_priv_data.itf[ndev].stats.tx_dropped++; + return NETDEV_TX_OK; +} + +static int ptm_ioctl(struct net_device *dev, struct ifreq *ifr, int cmd) +{ + int ndev; + + for ( ndev = 0; ndev < ARRAY_SIZE(g_net_dev) && g_net_dev[ndev] != dev; ndev++ ); + ASSERT(ndev >= 0 && ndev < ARRAY_SIZE(g_net_dev), "ndev = %d (wrong value)", ndev); + + switch ( cmd ) + { + case IFX_PTM_MIB_CW_GET: + ((PTM_CW_IF_ENTRY_T *)ifr->ifr_data)->ifRxNoIdleCodewords = WAN_MIB_TABLE[ndev].wrx_nonidle_cw; + ((PTM_CW_IF_ENTRY_T *)ifr->ifr_data)->ifRxIdleCodewords = WAN_MIB_TABLE[ndev].wrx_idle_cw; + ((PTM_CW_IF_ENTRY_T *)ifr->ifr_data)->ifRxCodingViolation = WAN_MIB_TABLE[ndev].wrx_err_cw; + ((PTM_CW_IF_ENTRY_T *)ifr->ifr_data)->ifTxNoIdleCodewords = 0; + ((PTM_CW_IF_ENTRY_T *)ifr->ifr_data)->ifTxIdleCodewords = 0; + break; + case IFX_PTM_MIB_FRAME_GET: + ((PTM_FRAME_MIB_T *)ifr->ifr_data)->RxCorrect = WAN_MIB_TABLE[ndev].wrx_correct_pdu; + ((PTM_FRAME_MIB_T *)ifr->ifr_data)->TC_CrcError = WAN_MIB_TABLE[ndev].wrx_tccrc_err_pdu; + ((PTM_FRAME_MIB_T *)ifr->ifr_data)->RxDropped = WAN_MIB_TABLE[ndev].wrx_nodesc_drop_pdu + WAN_MIB_TABLE[ndev].wrx_len_violation_drop_pdu; + ((PTM_FRAME_MIB_T *)ifr->ifr_data)->TxSend = WAN_MIB_TABLE[ndev].wtx_total_pdu; + break; + case IFX_PTM_CFG_GET: + ((IFX_PTM_CFG_T *)ifr->ifr_data)->RxEthCrcPresent = CFG_ETH_EFMTC_CRC->rx_eth_crc_present; + ((IFX_PTM_CFG_T *)ifr->ifr_data)->RxEthCrcCheck = CFG_ETH_EFMTC_CRC->rx_eth_crc_check; + ((IFX_PTM_CFG_T *)ifr->ifr_data)->RxTcCrcCheck = CFG_ETH_EFMTC_CRC->rx_tc_crc_check; + ((IFX_PTM_CFG_T *)ifr->ifr_data)->RxTcCrcLen = CFG_ETH_EFMTC_CRC->rx_tc_crc_len; + ((IFX_PTM_CFG_T *)ifr->ifr_data)->TxEthCrcGen = CFG_ETH_EFMTC_CRC->tx_eth_crc_gen; + ((IFX_PTM_CFG_T *)ifr->ifr_data)->TxTcCrcGen = CFG_ETH_EFMTC_CRC->tx_tc_crc_gen; + ((IFX_PTM_CFG_T *)ifr->ifr_data)->TxTcCrcLen = CFG_ETH_EFMTC_CRC->tx_tc_crc_len; + break; + case IFX_PTM_CFG_SET: + CFG_ETH_EFMTC_CRC->rx_eth_crc_present = ((IFX_PTM_CFG_T *)ifr->ifr_data)->RxEthCrcPresent ? 1 : 0; + CFG_ETH_EFMTC_CRC->rx_eth_crc_check = ((IFX_PTM_CFG_T *)ifr->ifr_data)->RxEthCrcCheck ? 1 : 0; + if ( ((IFX_PTM_CFG_T *)ifr->ifr_data)->RxTcCrcCheck && (((IFX_PTM_CFG_T *)ifr->ifr_data)->RxTcCrcLen == 16 || ((IFX_PTM_CFG_T *)ifr->ifr_data)->RxTcCrcLen == 32) ) + { + CFG_ETH_EFMTC_CRC->rx_tc_crc_check = 1; + CFG_ETH_EFMTC_CRC->rx_tc_crc_len = ((IFX_PTM_CFG_T *)ifr->ifr_data)->RxTcCrcLen; + } + else + { + CFG_ETH_EFMTC_CRC->rx_tc_crc_check = 0; + CFG_ETH_EFMTC_CRC->rx_tc_crc_len = 0; + } + CFG_ETH_EFMTC_CRC->tx_eth_crc_gen = ((IFX_PTM_CFG_T *)ifr->ifr_data)->TxEthCrcGen ? 1 : 0; + if ( ((IFX_PTM_CFG_T *)ifr->ifr_data)->TxTcCrcGen && (((IFX_PTM_CFG_T *)ifr->ifr_data)->TxTcCrcLen == 16 || ((IFX_PTM_CFG_T *)ifr->ifr_data)->TxTcCrcLen == 32) ) + { + CFG_ETH_EFMTC_CRC->tx_tc_crc_gen = 1; + CFG_ETH_EFMTC_CRC->tx_tc_crc_len = ((IFX_PTM_CFG_T *)ifr->ifr_data)->TxTcCrcLen; + } + else + { + CFG_ETH_EFMTC_CRC->tx_tc_crc_gen = 0; + CFG_ETH_EFMTC_CRC->tx_tc_crc_len = 0; + } + break; + default: + return -EOPNOTSUPP; + } + + return 0; +} + +static void ptm_tx_timeout(struct net_device *dev) +{ + int ndev; + + for ( ndev = 0; ndev < ARRAY_SIZE(g_net_dev) && g_net_dev[ndev] != dev; ndev++ ); + ASSERT(ndev >= 0 && ndev < ARRAY_SIZE(g_net_dev), "ndev = %d (wrong value)", ndev); + + /* disable TX irq, release skb when sending new packet */ + IFX_REG_W32_MASK(1 << (ndev + 16), 0, MBOX_IGU1_IER); + + /* wake up TX queue */ + netif_wake_queue(dev); + + return; +} + +static INLINE void adsl_led_flash(void) +{ +} + +static INLINE struct sk_buff* alloc_skb_rx(void) +{ + struct sk_buff *skb; + + /* allocate memroy including trailer and padding */ + skb = dev_alloc_skb(rx_max_packet_size + RX_HEAD_MAC_ADDR_ALIGNMENT + DATA_BUFFER_ALIGNMENT); + if ( skb != NULL ) { + /* must be burst length alignment and reserve two more bytes for MAC address alignment */ + if ( ((unsigned int)skb->data & (DATA_BUFFER_ALIGNMENT - 1)) != 0 ) + skb_reserve(skb, ~((unsigned int)skb->data + (DATA_BUFFER_ALIGNMENT - 1)) & (DATA_BUFFER_ALIGNMENT - 1)); + /* pub skb in reserved area "skb->data - 4" */ + *((struct sk_buff **)skb->data - 1) = skb; + wmb(); + /* write back and invalidate cache */ + dma_cache_wback_inv((unsigned long)skb->data - sizeof(skb), sizeof(skb)); + /* invalidate cache */ + dma_cache_inv((unsigned long)skb->data, (unsigned int)skb->end - (unsigned int)skb->data); + } + + return skb; +} + +#if 0 +static INLINE struct sk_buff* alloc_skb_tx(unsigned int size) +{ + struct sk_buff *skb; + + /* allocate memory including padding */ + size = (size + DATA_BUFFER_ALIGNMENT - 1) & ~(DATA_BUFFER_ALIGNMENT - 1); + skb = dev_alloc_skb(size + DATA_BUFFER_ALIGNMENT); + /* must be burst length alignment */ + if ( skb != NULL ) + skb_reserve(skb, ~((unsigned int)skb->data + (DATA_BUFFER_ALIGNMENT - 1)) & (DATA_BUFFER_ALIGNMENT - 1)); + return skb; +} +#endif + +static INLINE struct sk_buff *get_skb_rx_pointer(unsigned int dataptr) +{ + unsigned int skb_dataptr; + struct sk_buff *skb; + + skb_dataptr = ((dataptr - 1) << 2) | KSEG1; + skb = *(struct sk_buff **)skb_dataptr; + + ASSERT((unsigned int)skb >= KSEG0, "invalid skb - skb = %#08x, dataptr = %#08x", (unsigned int)skb, dataptr); + ASSERT(((unsigned int)skb->data | KSEG1) == ((dataptr << 2) | KSEG1), "invalid skb - skb = %#08x, skb->data = %#08x, dataptr = %#08x", (unsigned int)skb, (unsigned int)skb->data, dataptr); + + return skb; +} + +static INLINE int get_tx_desc(unsigned int itf, unsigned int *f_full) +{ + int desc_base = -1; + struct ptm_itf *p_itf = &g_ptm_priv_data.itf[itf]; + + // assume TX is serial operation + // no protection provided + + *f_full = 1; + + if ( p_itf->tx_desc[p_itf->tx_desc_pos].own == 0 ) { + desc_base = p_itf->tx_desc_pos; + if ( ++(p_itf->tx_desc_pos) == dma_tx_descriptor_length ) + p_itf->tx_desc_pos = 0; + if ( p_itf->tx_desc[p_itf->tx_desc_pos].own == 0 ) + *f_full = 0; + } + + return desc_base; +} + +static INLINE int mailbox_rx_irq_handler(unsigned int ch) // return: < 0 - descriptor not available, 0 - received one packet +{ + unsigned int ndev = ch; + struct sk_buff *skb; + struct sk_buff *new_skb; + volatile struct rx_descriptor *desc; + struct rx_descriptor reg_desc; + int netif_rx_ret; + + desc = &g_ptm_priv_data.itf[ndev].rx_desc[g_ptm_priv_data.itf[ndev].rx_desc_pos]; + if ( desc->own || !desc->c ) // if PP32 hold descriptor or descriptor not completed + return -EAGAIN; + if ( ++g_ptm_priv_data.itf[ndev].rx_desc_pos == dma_rx_descriptor_length ) + g_ptm_priv_data.itf[ndev].rx_desc_pos = 0; + + reg_desc = *desc; + skb = get_skb_rx_pointer(reg_desc.dataptr); + + if ( !reg_desc.err ) { + new_skb = alloc_skb_rx(); + if ( new_skb != NULL ) { + skb_reserve(skb, reg_desc.byteoff); + skb_put(skb, reg_desc.datalen); + + dump_skb(skb, DUMP_SKB_LEN, (char *)__func__, ndev, ndev, 0); + + // parse protocol header + skb->dev = g_net_dev[ndev]; + skb->protocol = eth_type_trans(skb, skb->dev); + + g_net_dev[ndev]->last_rx = jiffies; + + netif_rx_ret = netif_receive_skb(skb); + + if ( netif_rx_ret != NET_RX_DROP ) { + g_ptm_priv_data.itf[ndev].stats.rx_packets++; + g_ptm_priv_data.itf[ndev].stats.rx_bytes += reg_desc.datalen; + } + + reg_desc.dataptr = ((unsigned int)new_skb->data >> 2) & 0x0FFFFFFF; + reg_desc.byteoff = RX_HEAD_MAC_ADDR_ALIGNMENT; + } + } + else + reg_desc.err = 0; + + reg_desc.datalen = rx_max_packet_size; + reg_desc.own = 1; + reg_desc.c = 0; + + // update descriptor + *desc = reg_desc; + wmb(); + + mailbox_signal(ndev, 0); + + adsl_led_flash(); + + return 0; +} + +static irqreturn_t mailbox_irq_handler(int irq, void *dev_id) +{ + unsigned int isr; + int i; + + isr = IFX_REG_R32(MBOX_IGU1_ISR); + IFX_REG_W32(isr, MBOX_IGU1_ISRC); + isr &= IFX_REG_R32(MBOX_IGU1_IER); + + while ( (i = __fls(isr)) >= 0 ) { + isr ^= 1 << i; + + if ( i >= 16 ) { + // TX + IFX_REG_W32_MASK(1 << i, 0, MBOX_IGU1_IER); + i -= 16; + if ( i < MAX_ITF_NUMBER ) + netif_wake_queue(g_net_dev[i]); + } + else { + // RX +#ifdef CONFIG_IFX_PTM_RX_INTERRUPT + while ( WRX_DMA_CHANNEL_CONFIG(i)->vlddes > 0 ) + mailbox_rx_irq_handler(i); +#else + IFX_REG_W32_MASK(1 << i, 0, MBOX_IGU1_IER); + napi_schedule(&g_ptm_priv_data.itf[i].napi); +#endif + } + } + + return IRQ_HANDLED; +} + +static INLINE void mailbox_signal(unsigned int itf, int is_tx) +{ + int count = 1000; + + if ( is_tx ) { + while ( MBOX_IGU3_ISR_ISR(itf + 16) && count > 0 ) + count--; + IFX_REG_W32(MBOX_IGU3_ISRS_SET(itf + 16), MBOX_IGU3_ISRS); + } + else { + while ( MBOX_IGU3_ISR_ISR(itf) && count > 0 ) + count--; + IFX_REG_W32(MBOX_IGU3_ISRS_SET(itf), MBOX_IGU3_ISRS); + } + + ASSERT(count != 0, "MBOX_IGU3_ISR = 0x%08x", IFX_REG_R32(MBOX_IGU3_ISR)); +} + +#ifdef CONFIG_IFX_PTM_RX_TASKLET +static void do_ptm_tasklet(unsigned long arg) +{ + unsigned int work_to_do = 25; + unsigned int work_done = 0; + + ASSERT(arg >= 0 && arg < ARRAY_SIZE(g_net_dev), "arg = %lu (wrong value)", arg); + + while ( work_done < work_to_do && WRX_DMA_CHANNEL_CONFIG(arg)->vlddes > 0 ) { + if ( mailbox_rx_irq_handler(arg) < 0 ) + break; + + work_done++; + } + + // interface down + if ( !netif_running(g_net_dev[arg]) ) + return; + + // no more traffic + if ( WRX_DMA_CHANNEL_CONFIG(arg)->vlddes == 0 ) { + // clear interrupt + IFX_REG_W32_MASK(0, 1 << arg, MBOX_IGU1_ISRC); + // double check + if ( WRX_DMA_CHANNEL_CONFIG(arg)->vlddes == 0 ) { + IFX_REG_W32_MASK(0, 1 << arg, MBOX_IGU1_IER); + return; + } + } + + // next round + tasklet_schedule(&g_ptm_tasklet[arg]); +} +#endif + +#if defined(DEBUG_DUMP_SKB) && DEBUG_DUMP_SKB +static void dump_skb(struct sk_buff *skb, u32 len, char *title, int port, int ch, int is_tx) +{ + int i; + + if ( !(ifx_ptm_dbg_enable & (is_tx ? DBG_ENABLE_MASK_DUMP_SKB_TX : DBG_ENABLE_MASK_DUMP_SKB_RX)) ) + return; + + if ( skb->len < len ) + len = skb->len; + + if ( len > rx_max_packet_size ) { + printk("too big data length: skb = %08x, skb->data = %08x, skb->len = %d\n", (u32)skb, (u32)skb->data, skb->len); + return; + } + + if ( ch >= 0 ) + printk("%s (port %d, ch %d)\n", title, port, ch); + else + printk("%s\n", title); + printk(" skb->data = %08X, skb->tail = %08X, skb->len = %d\n", (u32)skb->data, (u32)skb->tail, (int)skb->len); + for ( i = 1; i <= len; i++ ) { + if ( i % 16 == 1 ) + printk(" %4d:", i - 1); + printk(" %02X", (int)(*((char*)skb->data + i - 1) & 0xFF)); + if ( i % 16 == 0 ) + printk("\n"); + } + if ( (i - 1) % 16 != 0 ) + printk("\n"); +} +#endif + +#if defined(ENABLE_DBG_PROC) && ENABLE_DBG_PROC +static void skb_swap(struct sk_buff *skb) +{ + unsigned char tmp[8]; + unsigned char *p = skb->data; + + if ( !(p[0] & 0x01) ) { // bypass broadcast/multicast + // swap MAC + memcpy(tmp, p, 6); + memcpy(p, p + 6, 6); + memcpy(p + 6, tmp, 6); + p += 12; + + // bypass VLAN + while ( p[0] == 0x81 && p[1] == 0x00 ) + p += 4; + + // IP + if ( p[0] == 0x08 && p[1] == 0x00 ) { + p += 14; + memcpy(tmp, p, 4); + memcpy(p, p + 4, 4); + memcpy(p + 4, tmp, 4); + p += 8; + } + + dma_cache_wback((unsigned long)skb->data, (unsigned long)p - (unsigned long)skb->data); + } +} +#endif + +static INLINE void proc_file_create(void) +{ + struct proc_dir_entry *res; + + g_ptm_dir = proc_mkdir("driver/ifx_ptm", NULL); + + create_proc_read_entry("version", + 0, + g_ptm_dir, + proc_read_version, + NULL); + + res = create_proc_entry("wanmib", + 0, + g_ptm_dir); + if ( res != NULL ) { + res->read_proc = proc_read_wanmib; + res->write_proc = proc_write_wanmib; + } + +#if defined(ENABLE_FW_PROC) && ENABLE_FW_PROC + create_proc_read_entry("genconf", + 0, + g_ptm_dir, + proc_read_genconf, + NULL); + + #ifdef CONFIG_AR9 + create_proc_read_entry("regs", + 0, + g_ptm_dir, + ifx_ptm_proc_read_regs, + NULL); + #endif +#endif + +#if defined(ENABLE_DBG_PROC) && ENABLE_DBG_PROC + res = create_proc_entry("dbg", + 0, + g_ptm_dir); + if ( res != NULL ) { + res->read_proc = proc_read_dbg; + res->write_proc = proc_write_dbg; + } +#endif +} + +static INLINE void proc_file_delete(void) +{ +#if defined(ENABLE_DBG_PROC) && ENABLE_DBG_PROC + remove_proc_entry("dbg", g_ptm_dir); +#endif + +#if defined(ENABLE_FW_PROC) && ENABLE_FW_PROC + #ifdef CONFIG_AR9 + remove_proc_entry("regs", g_ptm_dir); + #endif + + remove_proc_entry("genconf", g_ptm_dir); +#endif + + remove_proc_entry("wanmib", g_ptm_dir); + + remove_proc_entry("version", g_ptm_dir); + + remove_proc_entry("driver/ifx_ptm", NULL); +} + +static int proc_read_version(char *buf, char **start, off_t offset, int count, int *eof, void *data) +{ + int len = 0; + + len += ifx_ptm_version(buf + len); + + if ( offset >= len ) { + *start = buf; + *eof = 1; + return 0; + } + *start = buf + offset; + if ( (len -= offset) > count ) + return count; + *eof = 1; + return len; +} + +static int proc_read_wanmib(char *page, char **start, off_t off, int count, int *eof, void *data) +{ + int len = 0; + int i; + char *title[] = { + "ptm0\n", + "ptmfast0\n" + }; + + for ( i = 0; i < ARRAY_SIZE(title); i++ ) { + len += sprintf(page + off + len, title[i]); + len += sprintf(page + off + len, " wrx_correct_pdu = %d\n", WAN_MIB_TABLE[i].wrx_correct_pdu); + len += sprintf(page + off + len, " wrx_correct_pdu_bytes = %d\n", WAN_MIB_TABLE[i].wrx_correct_pdu_bytes); + len += sprintf(page + off + len, " wrx_tccrc_err_pdu = %d\n", WAN_MIB_TABLE[i].wrx_tccrc_err_pdu); + len += sprintf(page + off + len, " wrx_tccrc_err_pdu_bytes = %d\n", WAN_MIB_TABLE[i].wrx_tccrc_err_pdu_bytes); + len += sprintf(page + off + len, " wrx_ethcrc_err_pdu = %d\n", WAN_MIB_TABLE[i].wrx_ethcrc_err_pdu); + len += sprintf(page + off + len, " wrx_ethcrc_err_pdu_bytes = %d\n", WAN_MIB_TABLE[i].wrx_ethcrc_err_pdu_bytes); + len += sprintf(page + off + len, " wrx_nodesc_drop_pdu = %d\n", WAN_MIB_TABLE[i].wrx_nodesc_drop_pdu); + len += sprintf(page + off + len, " wrx_len_violation_drop_pdu = %d\n", WAN_MIB_TABLE[i].wrx_len_violation_drop_pdu); + len += sprintf(page + off + len, " wrx_idle_bytes = %d\n", WAN_MIB_TABLE[i].wrx_idle_bytes); + len += sprintf(page + off + len, " wrx_nonidle_cw = %d\n", WAN_MIB_TABLE[i].wrx_nonidle_cw); + len += sprintf(page + off + len, " wrx_idle_cw = %d\n", WAN_MIB_TABLE[i].wrx_idle_cw); + len += sprintf(page + off + len, " wrx_err_cw = %d\n", WAN_MIB_TABLE[i].wrx_err_cw); + len += sprintf(page + off + len, " wtx_total_pdu = %d\n", WAN_MIB_TABLE[i].wtx_total_pdu); + len += sprintf(page + off + len, " wtx_total_bytes = %d\n", WAN_MIB_TABLE[i].wtx_total_bytes); + } + + *eof = 1; + + return len; +} + +static int proc_write_wanmib(struct file *file, const char *buf, unsigned long count, void *data) +{ + char str[2048]; + char *p; + int len, rlen; + + int i; + + len = count < sizeof(str) ? count : sizeof(str) - 1; + rlen = len - copy_from_user(str, buf, len); + while ( rlen && str[rlen - 1] <= ' ' ) + rlen--; + str[rlen] = 0; + for ( p = str; *p && *p <= ' '; p++, rlen-- ); + if ( !*p ) + return count; + + if ( stricmp(p, "clear") == 0 || stricmp(p, "clean") == 0 ) { + for ( i = 0; i < 2; i++ ) + memset((void*)&WAN_MIB_TABLE[i], 0, sizeof(WAN_MIB_TABLE[i])); + } + + return count; +} + +#if defined(ENABLE_FW_PROC) && ENABLE_FW_PROC + +static int proc_read_genconf(char *page, char **start, off_t off, int count, int *eof, void *data) +{ + int len = 0; + int len_max = off + count; + char *pstr; + char str[2048]; + int llen = 0; + int i; + unsigned long bit; + + pstr = *start = page; + + __sync(); + + llen += sprintf(str + llen, "CFG_WAN_WRDES_DELAY (0x%08X): %d\n", (unsigned int)CFG_WAN_WRDES_DELAY, IFX_REG_R32(CFG_WAN_WRDES_DELAY)); + llen += sprintf(str + llen, "CFG_WRX_DMACH_ON (0x%08X):", (unsigned int)CFG_WRX_DMACH_ON); + for ( i = 0, bit = 1; i < MAX_RX_DMA_CHANNEL_NUMBER; i++, bit <<= 1 ) + llen += sprintf(str + llen, " %d - %s", i, (IFX_REG_R32(CFG_WRX_DMACH_ON) & bit) ? "on " : "off"); + llen += sprintf(str + llen, "\n"); + llen += sprintf(str + llen, "CFG_WTX_DMACH_ON (0x%08X):", (unsigned int)CFG_WTX_DMACH_ON); + for ( i = 0, bit = 1; i < MAX_TX_DMA_CHANNEL_NUMBER; i++, bit <<= 1 ) + llen += sprintf(str + llen, " %d - %s", i, (IFX_REG_R32(CFG_WTX_DMACH_ON) & bit) ? "on " : "off"); + llen += sprintf(str + llen, "\n"); + llen += sprintf(str + llen, "CFG_WRX_LOOK_BITTH (0x%08X): %d\n", (unsigned int)CFG_WRX_LOOK_BITTH, IFX_REG_R32(CFG_WRX_LOOK_BITTH)); + llen += sprintf(str + llen, "CFG_ETH_EFMTC_CRC (0x%08X): rx_tc_crc_len - %2d, rx_tc_crc_check - %s\n", (unsigned int)CFG_ETH_EFMTC_CRC, CFG_ETH_EFMTC_CRC->rx_tc_crc_len, CFG_ETH_EFMTC_CRC->rx_tc_crc_check ? " on" : "off"); + llen += sprintf(str + llen, " rx_eth_crc_check - %s, rx_eth_crc_present - %s\n", CFG_ETH_EFMTC_CRC->rx_eth_crc_check ? " on" : "off", CFG_ETH_EFMTC_CRC->rx_eth_crc_present ? " on" : "off"); + llen += sprintf(str + llen, " tx_tc_crc_len - %2d, tx_tc_crc_gen - %s\n", CFG_ETH_EFMTC_CRC->tx_tc_crc_len, CFG_ETH_EFMTC_CRC->tx_tc_crc_gen ? " on" : "off"); + llen += sprintf(str + llen, " tx_eth_crc_gen - %s\n", CFG_ETH_EFMTC_CRC->tx_eth_crc_gen ? " on" : "off"); + + llen += sprintf(str + llen, "RX Port:\n"); + for ( i = 0; i < MAX_RX_DMA_CHANNEL_NUMBER; i++ ) + llen += sprintf(str + llen, " %d (0x%08X). mfs - %5d, dmach - %d, local_state - %d, partner_state - %d\n", i, (unsigned int)WRX_PORT_CONFIG(i), WRX_PORT_CONFIG(i)->mfs, WRX_PORT_CONFIG(i)->dmach, WRX_PORT_CONFIG(i)->local_state, WRX_PORT_CONFIG(i)->partner_state); + llen += sprintf(str + llen, "RX DMA Channel:\n"); + for ( i = 0; i < MAX_RX_DMA_CHANNEL_NUMBER; i++ ) + llen += sprintf(str + llen, " %d (0x%08X). desba - 0x%08X (0x%08X), deslen - %d, vlddes - %d\n", i, (unsigned int)WRX_DMA_CHANNEL_CONFIG(i), WRX_DMA_CHANNEL_CONFIG(i)->desba, ((unsigned int)WRX_DMA_CHANNEL_CONFIG(i)->desba << 2) | KSEG1, WRX_DMA_CHANNEL_CONFIG(i)->deslen, WRX_DMA_CHANNEL_CONFIG(i)->vlddes); + + llen += sprintf(str + llen, "TX Port:\n"); + for ( i = 0; i < MAX_TX_DMA_CHANNEL_NUMBER; i++ ) + llen += sprintf(str + llen, " %d (0x%08X). tx_cwth2 - %d, tx_cwth1 - %d\n", i, (unsigned int)WTX_PORT_CONFIG(i), WTX_PORT_CONFIG(i)->tx_cwth2, WTX_PORT_CONFIG(i)->tx_cwth1); + llen += sprintf(str + llen, "TX DMA Channel:\n"); + for ( i = 0; i < MAX_TX_DMA_CHANNEL_NUMBER; i++ ) + llen += sprintf(str + llen, " %d (0x%08X). desba - 0x%08X (0x%08X), deslen - %d, vlddes - %d\n", i, (unsigned int)WTX_DMA_CHANNEL_CONFIG(i), WTX_DMA_CHANNEL_CONFIG(i)->desba, ((unsigned int)WTX_DMA_CHANNEL_CONFIG(i)->desba << 2) | KSEG1, WTX_DMA_CHANNEL_CONFIG(i)->deslen, WTX_DMA_CHANNEL_CONFIG(i)->vlddes); + + if ( len <= off && len + llen > off ) + { + memcpy(pstr, str + off - len, len + llen - off); + pstr += len + llen - off; + } + else if ( len > off ) + { + memcpy(pstr, str, llen); + pstr += llen; + } + len += llen; + if ( len >= len_max ) + goto PROC_READ_GENCONF_OVERRUN_END; + + *eof = 1; + + return len - off; + +PROC_READ_GENCONF_OVERRUN_END: + return len - llen - off; +} + +#endif // defined(ENABLE_FW_PROC) && ENABLE_FW_PROC + +#if defined(ENABLE_DBG_PROC) && ENABLE_DBG_PROC + +static int proc_read_dbg(char *page, char **start, off_t off, int count, int *eof, void *data) +{ + int len = 0; + + len += sprintf(page + off + len, "error print - %s\n", (ifx_ptm_dbg_enable & DBG_ENABLE_MASK_ERR) ? "enabled" : "disabled"); + len += sprintf(page + off + len, "debug print - %s\n", (ifx_ptm_dbg_enable & DBG_ENABLE_MASK_DEBUG_PRINT) ? "enabled" : "disabled"); + len += sprintf(page + off + len, "assert - %s\n", (ifx_ptm_dbg_enable & DBG_ENABLE_MASK_ASSERT) ? "enabled" : "disabled"); + len += sprintf(page + off + len, "dump rx skb - %s\n", (ifx_ptm_dbg_enable & DBG_ENABLE_MASK_DUMP_SKB_RX) ? "enabled" : "disabled"); + len += sprintf(page + off + len, "dump tx skb - %s\n", (ifx_ptm_dbg_enable & DBG_ENABLE_MASK_DUMP_SKB_TX) ? "enabled" : "disabled"); + len += sprintf(page + off + len, "mac swap - %s\n", (ifx_ptm_dbg_enable & DBG_ENABLE_MASK_MAC_SWAP) ? "enabled" : "disabled"); + + *eof = 1; + + return len; +} + +static int proc_write_dbg(struct file *file, const char *buf, unsigned long count, void *data) +{ + static const char *dbg_enable_mask_str[] = { + " error print", + " err", + " debug print", + " dbg", + " assert", + " assert", + " dump rx skb", + " rx", + " dump tx skb", + " tx", + " dump init", + " init", + " dump qos", + " qos", + " mac swap", + " swap", + " all" + }; + static const int dbg_enable_mask_str_len[] = { + 12, 4, + 12, 4, + 7, 7, + 12, 3, + 12, 3, + 10, 5, + 9, 4, + 9, 5, + 4 + }; + unsigned int dbg_enable_mask[] = { + DBG_ENABLE_MASK_ERR, + DBG_ENABLE_MASK_DEBUG_PRINT, + DBG_ENABLE_MASK_ASSERT, + DBG_ENABLE_MASK_DUMP_SKB_RX, + DBG_ENABLE_MASK_DUMP_SKB_TX, + DBG_ENABLE_MASK_DUMP_INIT, + DBG_ENABLE_MASK_DUMP_QOS, + DBG_ENABLE_MASK_MAC_SWAP, + DBG_ENABLE_MASK_ALL + }; + + char str[2048]; + char *p; + + int len, rlen; + + int f_enable = 0; + int i; + + len = count < sizeof(str) ? count : sizeof(str) - 1; + rlen = len - copy_from_user(str, buf, len); + while ( rlen && str[rlen - 1] <= ' ' ) + rlen--; + str[rlen] = 0; + for ( p = str; *p && *p <= ' '; p++, rlen-- ); + if ( !*p ) + return 0; + + // debugging feature for enter/leave showtime + if ( strincmp(p, "enter", 5) == 0 && ifx_mei_atm_showtime_enter != NULL ) + ifx_mei_atm_showtime_enter(NULL, NULL); + else if ( strincmp(p, "leave", 5) == 0 && ifx_mei_atm_showtime_exit != NULL ) + ifx_mei_atm_showtime_exit(); + + if ( strincmp(p, "enable", 6) == 0 ) { + p += 6; + f_enable = 1; + } + else if ( strincmp(p, "disable", 7) == 0 ) { + p += 7; + f_enable = -1; + } + else if ( strincmp(p, "help", 4) == 0 || *p == '?' ) { + printk("echo <enable/disable> [err/dbg/assert/rx/tx/init/qos/swap/all] > /proc/driver/ifx_ptm/dbg\n"); + } + + if ( f_enable ) { + if ( *p == 0 ) { + if ( f_enable > 0 ) + ifx_ptm_dbg_enable |= DBG_ENABLE_MASK_ALL & ~DBG_ENABLE_MASK_MAC_SWAP; + else + ifx_ptm_dbg_enable &= ~DBG_ENABLE_MASK_ALL | DBG_ENABLE_MASK_MAC_SWAP; + } + else { + do { + for ( i = 0; i < ARRAY_SIZE(dbg_enable_mask_str); i++ ) + if ( strincmp(p, dbg_enable_mask_str[i], dbg_enable_mask_str_len[i]) == 0 ) { + if ( f_enable > 0 ) + ifx_ptm_dbg_enable |= dbg_enable_mask[i >> 1]; + else + ifx_ptm_dbg_enable &= ~dbg_enable_mask[i >> 1]; + p += dbg_enable_mask_str_len[i]; + break; + } + } while ( i < ARRAY_SIZE(dbg_enable_mask_str) ); + } + } + + return count; +} + +#endif // defined(ENABLE_DBG_PROC) && ENABLE_DBG_PROC + +static INLINE int stricmp(const char *p1, const char *p2) +{ + int c1, c2; + + while ( *p1 && *p2 ) + { + c1 = *p1 >= 'A' && *p1 <= 'Z' ? *p1 + 'a' - 'A' : *p1; + c2 = *p2 >= 'A' && *p2 <= 'Z' ? *p2 + 'a' - 'A' : *p2; + if ( (c1 -= c2) ) + return c1; + p1++; + p2++; + } + + return *p1 - *p2; +} + +#if defined(ENABLE_DBG_PROC) && ENABLE_DBG_PROC +static INLINE int strincmp(const char *p1, const char *p2, int n) +{ + int c1 = 0, c2; + + while ( n && *p1 && *p2 ) + { + c1 = *p1 >= 'A' && *p1 <= 'Z' ? *p1 + 'a' - 'A' : *p1; + c2 = *p2 >= 'A' && *p2 <= 'Z' ? *p2 + 'a' - 'A' : *p2; + if ( (c1 -= c2) ) + return c1; + p1++; + p2++; + n--; + } + + return n ? *p1 - *p2 : c1; +} +#endif + +static INLINE int ifx_ptm_version(char *buf) +{ + int len = 0; + unsigned int major, minor; + + ifx_ptm_get_fw_ver(&major, &minor); + + len += sprintf(buf + len, "PTM %d.%d.%d", IFX_PTM_VER_MAJOR, IFX_PTM_VER_MID, IFX_PTM_VER_MINOR); + len += sprintf(buf + len, " PTM (E1) firmware version %d.%d\n", major, minor); + + return len; +} + +static INLINE void check_parameters(void) +{ + /* There is a delay between PPE write descriptor and descriptor is */ + /* really stored in memory. Host also has this delay when writing */ + /* descriptor. So PPE will use this value to determine if the write */ + /* operation makes effect. */ + if ( write_desc_delay < 0 ) + write_desc_delay = 0; + + /* Because of the limitation of length field in descriptors, the packet */ + /* size could not be larger than 64K minus overhead size. */ + if ( rx_max_packet_size < ETH_MIN_FRAME_LENGTH ) + rx_max_packet_size = ETH_MIN_FRAME_LENGTH; + else if ( rx_max_packet_size > 65536 - 1 ) + rx_max_packet_size = 65536 - 1; + + if ( dma_rx_descriptor_length < 2 ) + dma_rx_descriptor_length = 2; + if ( dma_tx_descriptor_length < 2 ) + dma_tx_descriptor_length = 2; +} + +static INLINE int init_priv_data(void) +{ + void *p; + int i; + struct rx_descriptor rx_desc = {0}; + struct sk_buff *skb; + volatile struct rx_descriptor *p_rx_desc; + volatile struct tx_descriptor *p_tx_desc; + struct sk_buff **ppskb; + + // clear ptm private data structure + memset(&g_ptm_priv_data, 0, sizeof(g_ptm_priv_data)); + + // allocate memory for RX descriptors + p = kzalloc(MAX_ITF_NUMBER * dma_rx_descriptor_length * sizeof(struct rx_descriptor) + DESC_ALIGNMENT, GFP_KERNEL); + if ( p == NULL ) + return -1; + dma_cache_inv((unsigned long)p, MAX_ITF_NUMBER * dma_rx_descriptor_length * sizeof(struct rx_descriptor) + DESC_ALIGNMENT); + g_ptm_priv_data.rx_desc_base = p; + //p = (void *)((((unsigned int)p + DESC_ALIGNMENT - 1) & ~(DESC_ALIGNMENT - 1)) | KSEG1); + + // allocate memory for TX descriptors + p = kzalloc(MAX_ITF_NUMBER * dma_tx_descriptor_length * sizeof(struct tx_descriptor) + DESC_ALIGNMENT, GFP_KERNEL); + if ( p == NULL ) + return -1; + dma_cache_inv((unsigned long)p, MAX_ITF_NUMBER * dma_tx_descriptor_length * sizeof(struct tx_descriptor) + DESC_ALIGNMENT); + g_ptm_priv_data.tx_desc_base = p; + + // allocate memroy for TX skb pointers + p = kzalloc(MAX_ITF_NUMBER * dma_tx_descriptor_length * sizeof(struct sk_buff *) + 4, GFP_KERNEL); + if ( p == NULL ) + return -1; + dma_cache_wback_inv((unsigned long)p, MAX_ITF_NUMBER * dma_tx_descriptor_length * sizeof(struct sk_buff *) + 4); + g_ptm_priv_data.tx_skb_base = p; + + p_rx_desc = (volatile struct rx_descriptor *)((((unsigned int)g_ptm_priv_data.rx_desc_base + DESC_ALIGNMENT - 1) & ~(DESC_ALIGNMENT - 1)) | KSEG1); + p_tx_desc = (volatile struct tx_descriptor *)((((unsigned int)g_ptm_priv_data.tx_desc_base + DESC_ALIGNMENT - 1) & ~(DESC_ALIGNMENT - 1)) | KSEG1); + ppskb = (struct sk_buff **)(((unsigned int)g_ptm_priv_data.tx_skb_base + 3) & ~3); + for ( i = 0; i < MAX_ITF_NUMBER; i++ ) { + g_ptm_priv_data.itf[i].rx_desc = &p_rx_desc[i * dma_rx_descriptor_length]; + g_ptm_priv_data.itf[i].tx_desc = &p_tx_desc[i * dma_tx_descriptor_length]; + g_ptm_priv_data.itf[i].tx_skb = &ppskb[i * dma_tx_descriptor_length]; + } + + rx_desc.own = 1; + rx_desc.c = 0; + rx_desc.sop = 1; + rx_desc.eop = 1; + rx_desc.byteoff = RX_HEAD_MAC_ADDR_ALIGNMENT; + rx_desc.id = 0; + rx_desc.err = 0; + rx_desc.datalen = rx_max_packet_size; + for ( i = 0; i < MAX_ITF_NUMBER * dma_rx_descriptor_length; i++ ) { + skb = alloc_skb_rx(); + if ( skb == NULL ) + return -1; + rx_desc.dataptr = ((unsigned int)skb->data >> 2) & 0x0FFFFFFF; + p_rx_desc[i] = rx_desc; + } + + return 0; +} + +static INLINE void clear_priv_data(void) +{ + int i, j; + struct sk_buff *skb; + + for ( i = 0; i < MAX_ITF_NUMBER; i++ ) { + if ( g_ptm_priv_data.itf[i].tx_skb != NULL ) { + for ( j = 0; j < dma_tx_descriptor_length; j++ ) + if ( g_ptm_priv_data.itf[i].tx_skb[j] != NULL ) + dev_kfree_skb_any(g_ptm_priv_data.itf[i].tx_skb[j]); + } + if ( g_ptm_priv_data.itf[i].rx_desc != NULL ) { + for ( j = 0; j < dma_rx_descriptor_length; j++ ) { + if ( g_ptm_priv_data.itf[i].rx_desc[j].sop || g_ptm_priv_data.itf[i].rx_desc[j].eop ) { // descriptor initialized + skb = get_skb_rx_pointer(g_ptm_priv_data.itf[i].rx_desc[j].dataptr); + dev_kfree_skb_any(skb); + } + } + } + } + + if ( g_ptm_priv_data.rx_desc_base != NULL ) + kfree(g_ptm_priv_data.rx_desc_base); + + if ( g_ptm_priv_data.tx_desc_base != NULL ) + kfree(g_ptm_priv_data.tx_desc_base); + + if ( g_ptm_priv_data.tx_skb_base != NULL ) + kfree(g_ptm_priv_data.tx_skb_base); +} + +static INLINE void init_tables(void) +{ + int i; + volatile unsigned int *p; + struct wrx_dma_channel_config rx_config = {0}; + struct wtx_dma_channel_config tx_config = {0}; + struct wrx_port_cfg_status rx_port_cfg = { 0 }; + struct wtx_port_cfg tx_port_cfg = { 0 }; + + /* + * CDM Block 1 + */ + IFX_REG_W32(CDM_CFG_RAM1_SET(0x00) | CDM_CFG_RAM0_SET(0x00), CDM_CFG); // CDM block 1 must be data memory and mapped to 0x5000 (dword addr) + p = CDM_DATA_MEMORY(0, 0); // Clear CDM block 1 + for ( i = 0; i < CDM_DATA_MEMORY_DWLEN; i++, p++ ) + IFX_REG_W32(0, p); + + /* + * General Registers + */ + IFX_REG_W32(write_desc_delay, CFG_WAN_WRDES_DELAY); + IFX_REG_W32((1 << MAX_RX_DMA_CHANNEL_NUMBER) - 1, CFG_WRX_DMACH_ON); + IFX_REG_W32((1 << MAX_TX_DMA_CHANNEL_NUMBER) - 1, CFG_WTX_DMACH_ON); + + IFX_REG_W32(8, CFG_WRX_LOOK_BITTH); // WAN RX EFM-TC Looking Threshold + + IFX_REG_W32(eth_efmtc_crc_cfg, CFG_ETH_EFMTC_CRC); + + /* + * WRX DMA Channel Configuration Table + */ + rx_config.deslen = dma_rx_descriptor_length; + rx_port_cfg.mfs = ETH_MAX_FRAME_LENGTH; + rx_port_cfg.local_state = 0; // looking for sync + rx_port_cfg.partner_state = 0; // parter receiver is out of sync + + for ( i = 0; i < MAX_RX_DMA_CHANNEL_NUMBER; i++ ) { + rx_config.desba = ((unsigned int)g_ptm_priv_data.itf[i].rx_desc >> 2) & 0x0FFFFFFF; + *WRX_DMA_CHANNEL_CONFIG(i) = rx_config; + + rx_port_cfg.dmach = i; + *WRX_PORT_CONFIG(i) = rx_port_cfg; + } + + /* + * WTX DMA Channel Configuration Table + */ + tx_config.deslen = dma_tx_descriptor_length; + tx_port_cfg.tx_cwth1 = 5; + tx_port_cfg.tx_cwth2 = 4; + + for ( i = 0; i < MAX_TX_DMA_CHANNEL_NUMBER; i++ ) { + tx_config.desba = ((unsigned int)g_ptm_priv_data.itf[i].tx_desc >> 2) & 0x0FFFFFFF; + *WTX_DMA_CHANNEL_CONFIG(i) = tx_config; + + *WTX_PORT_CONFIG(i) = tx_port_cfg; + } +} + + + +/* + * #################################### + * Global Function + * #################################### + */ + +static int ptm_showtime_enter(struct port_cell_info *port_cell, void *xdata_addr) +{ + + g_showtime = 1; + + printk("enter showtime\n"); + + return 0; +} + +static int ptm_showtime_exit(void) +{ + if ( !g_showtime ) + return -1; + + g_showtime = 0; + + printk("leave showtime\n"); + + return 0; +} + + + +/* + * #################################### + * Init/Cleanup API + * #################################### + */ + +/* + * Description: + * Initialize global variables, PP32, comunication structures, register IRQ + * and register device. + * Input: + * none + * Output: + * 0 --- successful + * else --- failure, usually it is negative value of error code + */ +static int ifx_ptm_init(void) +{ + int ret; + struct port_cell_info port_cell = {0}; + void *xdata_addr = NULL; + int i; + char ver_str[256]; + + check_parameters(); + + ret = init_priv_data(); + if ( ret != 0 ) { + err("INIT_PRIV_DATA_FAIL"); + goto INIT_PRIV_DATA_FAIL; + } + + ifx_ptm_init_chip(); + init_tables(); + + for ( i = 0; i < ARRAY_SIZE(g_net_dev); i++ ) { + g_net_dev[i] = alloc_netdev(0, g_net_dev_name[i], ether_setup); + if ( g_net_dev[i] == NULL ) + goto ALLOC_NETDEV_FAIL; + ptm_setup(g_net_dev[i], i); + } + + for ( i = 0; i < ARRAY_SIZE(g_net_dev); i++ ) { + ret = register_netdev(g_net_dev[i]); + if ( ret != 0 ) + goto REGISTER_NETDEV_FAIL; + } + + /* register interrupt handler */ + ret = request_irq(PPE_MAILBOX_IGU1_INT, mailbox_irq_handler, IRQF_DISABLED, "ptm_mailbox_isr", &g_ptm_priv_data); + if ( ret ) { + if ( ret == -EBUSY ) { + err("IRQ may be occupied by other driver, please reconfig to disable it."); + } + else { + err("request_irq fail"); + } + goto REQUEST_IRQ_PPE_MAILBOX_IGU1_INT_FAIL; + } + disable_irq(PPE_MAILBOX_IGU1_INT); + + ret = ifx_pp32_start(0); + if ( ret ) { + err("ifx_pp32_start fail!"); + goto PP32_START_FAIL; + } + IFX_REG_W32(0, MBOX_IGU1_IER); + IFX_REG_W32(~0, MBOX_IGU1_ISRC); + + enable_irq(PPE_MAILBOX_IGU1_INT); + + + proc_file_create(); + + port_cell.port_num = 1; + ifx_mei_atm_showtime_check(&g_showtime, &port_cell, &xdata_addr); + + ifx_mei_atm_showtime_enter = ptm_showtime_enter; + ifx_mei_atm_showtime_exit = ptm_showtime_exit; + + ifx_ptm_version(ver_str); + printk(KERN_INFO "%s", ver_str); + + printk("ifxmips_ptm: PTM init succeed\n"); + + return 0; + +PP32_START_FAIL: + free_irq(PPE_MAILBOX_IGU1_INT, &g_ptm_priv_data); +REQUEST_IRQ_PPE_MAILBOX_IGU1_INT_FAIL: + i = ARRAY_SIZE(g_net_dev); +REGISTER_NETDEV_FAIL: + while ( i-- ) + unregister_netdev(g_net_dev[i]); + i = ARRAY_SIZE(g_net_dev); +ALLOC_NETDEV_FAIL: + while ( i-- ) { + free_netdev(g_net_dev[i]); + g_net_dev[i] = NULL; + } +INIT_PRIV_DATA_FAIL: + clear_priv_data(); + printk("ifxmips_ptm: PTM init failed\n"); + return ret; +} + +/* + * Description: + * Release memory, free IRQ, and deregister device. + * Input: + * none + * Output: + * none + */ +static void __exit ifx_ptm_exit(void) +{ + int i; + + ifx_mei_atm_showtime_enter = NULL; + ifx_mei_atm_showtime_exit = NULL; + + proc_file_delete(); + + + ifx_pp32_stop(0); + + free_irq(PPE_MAILBOX_IGU1_INT, &g_ptm_priv_data); + + for ( i = 0; i < ARRAY_SIZE(g_net_dev); i++ ) + unregister_netdev(g_net_dev[i]); + + for ( i = 0; i < ARRAY_SIZE(g_net_dev); i++ ) { + free_netdev(g_net_dev[i]); + g_net_dev[i] = NULL; + } + + ifx_ptm_uninit_chip(); + + clear_priv_data(); +} + +module_init(ifx_ptm_init); +module_exit(ifx_ptm_exit); diff --git a/package/kernel/lantiq/ltq-ptm/src/ifxmips_ptm_adsl.h b/package/kernel/lantiq/ltq-ptm/src/ifxmips_ptm_adsl.h new file mode 100644 index 0000000..de307bf --- /dev/null +++ b/package/kernel/lantiq/ltq-ptm/src/ifxmips_ptm_adsl.h @@ -0,0 +1,137 @@ +/****************************************************************************** +** +** FILE NAME : ifxmips_ptm_adsl.h +** PROJECT : UEIP +** MODULES : PTM +** +** DATE : 7 Jul 2009 +** AUTHOR : Xu Liang +** DESCRIPTION : PTM driver header file (core functions for Danube/Amazon-SE/ +** AR9) +** COPYRIGHT : Copyright (c) 2006 +** Infineon Technologies AG +** Am Campeon 1-12, 85579 Neubiberg, Germany +** +** This program is free software; you can redistribute it and/or modify +** it under the terms of the GNU General Public License as published by +** the Free Software Foundation; either version 2 of the License, or +** (at your option) any later version. +** +** HISTORY +** $Date $Author $Comment +** 17 JUN 2009 Xu Liang Init Version +*******************************************************************************/ + +#ifndef IFXMIPS_PTM_ADSL_H +#define IFXMIPS_PTM_ADSL_H + + + +#include <linux/version.h> +#include <linux/netdevice.h> +#include <lantiq_ptm.h> +#include "ifxmips_ptm_common.h" +#include "ifxmips_ptm_ppe_common.h" +#include "ifxmips_ptm_fw_regs_adsl.h" + +#define CONFIG_IFXMIPS_DSL_CPE_MEI +#define INT_NUM_IM2_IRL24 (INT_NUM_IM2_IRL0 + 24) + +#define IFX_REG_W32(_v, _r) __raw_writel((_v), (volatile unsigned int *)(_r)) +#define IFX_REG_R32(_r) __raw_readl((volatile unsigned int *)(_r)) +#define IFX_REG_W32_MASK(_clr, _set, _r) IFX_REG_W32((IFX_REG_R32((_r)) & ~(_clr)) | (_set), (_r)) +#define SET_BITS(x, msb, lsb, value) (((x) & ~(((1 << ((msb) + 1)) - 1) ^ ((1 << (lsb)) - 1))) | (((value) & ((1 << (1 + (msb) - (lsb))) - 1)) << (lsb))) + + + + +/* + * #################################### + * Definition + * #################################### + */ + +/* + * Constant Definition + */ +#define ETH_WATCHDOG_TIMEOUT (2 * HZ) + +/* + * DMA RX/TX Channel Parameters + */ +#define MAX_ITF_NUMBER 2 +#define MAX_RX_DMA_CHANNEL_NUMBER MAX_ITF_NUMBER +#define MAX_TX_DMA_CHANNEL_NUMBER MAX_ITF_NUMBER +#define DATA_BUFFER_ALIGNMENT EMA_ALIGNMENT +#define DESC_ALIGNMENT 8 + +/* + * Ethernet Frame Definitions + */ +#define ETH_MAC_HEADER_LENGTH 14 +#define ETH_CRC_LENGTH 4 +#define ETH_MIN_FRAME_LENGTH 64 +#define ETH_MAX_FRAME_LENGTH (1518 + 4 * 2) + +/* + * RX Frame Definitions + */ +#define RX_HEAD_MAC_ADDR_ALIGNMENT 2 +#define RX_TAIL_CRC_LENGTH 0 // PTM firmware does not have ethernet frame CRC + // The len in descriptor doesn't include ETH_CRC + // because ETH_CRC may not present in some configuration + + + +/* + * #################################### + * Data Type + * #################################### + */ + +struct ptm_itf { + volatile struct rx_descriptor *rx_desc; + unsigned int rx_desc_pos; + + volatile struct tx_descriptor *tx_desc; + unsigned int tx_desc_pos; + struct sk_buff **tx_skb; + + struct net_device_stats stats; + + struct napi_struct napi; +}; + +struct ptm_priv_data { + struct ptm_itf itf[MAX_ITF_NUMBER]; + + void *rx_desc_base; + void *tx_desc_base; + void *tx_skb_base; +}; + + + +/* + * #################################### + * Declaration + * #################################### + */ + +extern unsigned int ifx_ptm_dbg_enable; + +extern void ifx_ptm_get_fw_ver(unsigned int *major, unsigned int *minor); + +extern void ifx_ptm_init_chip(void); +extern void ifx_ptm_uninit_chip(void); + +extern int ifx_pp32_start(int pp32); +extern void ifx_pp32_stop(int pp32); + +extern void ifx_reset_ppe(void); + +extern int ifx_ptm_proc_read_regs(char *page, char **start, off_t off, int count, int *eof, void *data); + + + +#endif // IFXMIPS_PTM_ADSL_H diff --git a/package/kernel/lantiq/ltq-ptm/src/ifxmips_ptm_amazon_se.c b/package/kernel/lantiq/ltq-ptm/src/ifxmips_ptm_amazon_se.c new file mode 100644 index 0000000..077c900 --- /dev/null +++ b/package/kernel/lantiq/ltq-ptm/src/ifxmips_ptm_amazon_se.c @@ -0,0 +1,322 @@ +/****************************************************************************** +** +** FILE NAME : ifxmips_ptm_amazon_se.c +** PROJECT : UEIP +** MODULES : PTM +** +** DATE : 7 Jul 2009 +** AUTHOR : Xu Liang +** DESCRIPTION : PTM driver common source file (core functions) +** COPYRIGHT : Copyright (c) 2006 +** Infineon Technologies AG +** Am Campeon 1-12, 85579 Neubiberg, Germany +** +** This program is free software; you can redistribute it and/or modify +** it under the terms of the GNU General Public License as published by +** the Free Software Foundation; either version 2 of the License, or +** (at your option) any later version. +** +** HISTORY +** $Date $Author $Comment +** 07 JUL 2009 Xu Liang Init Version +*******************************************************************************/ + + + +/* + * #################################### + * Head File + * #################################### + */ + +/* + * Common Head File + */ +#include <linux/kernel.h> +#include <linux/module.h> +#include <linux/version.h> +#include <linux/types.h> +#include <linux/errno.h> +#include <linux/proc_fs.h> +#include <linux/init.h> +#include <linux/ioctl.h> +#include <asm/delay.h> + +/* + * Chip Specific Head File + */ +#include <asm/ifx/ifx_types.h> +#include <asm/ifx/ifx_regs.h> +#include <asm/ifx/common_routines.h> +#include <asm/ifx/ifx_pmu.h> +#include <asm/ifx/ifx_rcu.h> +#include "ifxmips_ptm_adsl.h" +#include "ifxmips_ptm_fw_amazon_se.h" + + + +/* + * #################################### + * Definition + * #################################### + */ + +/* + * EMA Settings + */ +#define EMA_CMD_BUF_LEN 0x0040 +#define EMA_CMD_BASE_ADDR (0x00001580 << 2) +#define EMA_DATA_BUF_LEN 0x0100 +#define EMA_DATA_BASE_ADDR (0x00000B00 << 2) +#define EMA_WRITE_BURST 0x2 +#define EMA_READ_BURST 0x2 + + + +/* + * #################################### + * Declaration + * #################################### + */ + +/* + * Hardware Init/Uninit Functions + */ +static inline void init_pmu(void); +static inline void uninit_pmu(void); +static inline void reset_ppe(void); +static inline void init_ema(void); +static inline void init_mailbox(void); +static inline void init_atm_tc(void); +static inline void clear_share_buffer(void); + + + +/* + * #################################### + * Local Variable + * #################################### + */ + + + +/* + * #################################### + * Local Function + * #################################### + */ + +static inline void init_pmu(void) +{ + //*(unsigned long *)0xBF10201C &= ~((1 << 15) | (1 << 13) | (1 << 9)); + //PPE_TOP_PMU_SETUP(IFX_PMU_ENABLE); + PPE_SLL01_PMU_SETUP(IFX_PMU_ENABLE); + PPE_TC_PMU_SETUP(IFX_PMU_ENABLE); + PPE_EMA_PMU_SETUP(IFX_PMU_ENABLE); + //PPE_QSB_PMU_SETUP(IFX_PMU_ENABLE); + PPE_TPE_PMU_SETUP(IFX_PMU_ENABLE); + DSL_DFE_PMU_SETUP(IFX_PMU_ENABLE); +} + +static inline void uninit_pmu(void) +{ + PPE_SLL01_PMU_SETUP(IFX_PMU_DISABLE); + PPE_TC_PMU_SETUP(IFX_PMU_DISABLE); + PPE_EMA_PMU_SETUP(IFX_PMU_DISABLE); + //PPE_QSB_PMU_SETUP(IFX_PMU_DISABLE); + PPE_TPE_PMU_SETUP(IFX_PMU_DISABLE); + DSL_DFE_PMU_SETUP(IFX_PMU_DISABLE); + //PPE_TOP_PMU_SETUP(IFX_PMU_DISABLE); +} + +static inline void reset_ppe(void) +{ +#ifdef MODULE + unsigned int etop_cfg; + unsigned int etop_mdio_cfg; + unsigned int etop_ig_plen_ctrl; + unsigned int enet_mac_cfg; + + etop_cfg = *IFX_PP32_ETOP_CFG; + etop_mdio_cfg = *IFX_PP32_ETOP_MDIO_CFG; + etop_ig_plen_ctrl = *IFX_PP32_ETOP_IG_PLEN_CTRL; + enet_mac_cfg = *IFX_PP32_ENET_MAC_CFG; + + *IFX_PP32_ETOP_CFG = (*IFX_PP32_ETOP_CFG & ~0x03C0) | 0x0001; + + // reset PPE + ifx_rcu_rst(IFX_RCU_DOMAIN_PPE, IFX_RCU_MODULE_PTM); + + *IFX_PP32_ETOP_MDIO_CFG = etop_mdio_cfg; + *IFX_PP32_ETOP_IG_PLEN_CTRL = etop_ig_plen_ctrl; + *IFX_PP32_ENET_MAC_CFG = enet_mac_cfg; + *IFX_PP32_ETOP_CFG = etop_cfg; +#endif +} + +static inline void init_ema(void) +{ + // Configure share buffer master selection + *SB_MST_PRI0 = 1; + *SB_MST_PRI1 = 1; + + // EMA Settings + IFX_REG_W32((EMA_CMD_BUF_LEN << 16) | (EMA_CMD_BASE_ADDR >> 2), EMA_CMDCFG); + IFX_REG_W32((EMA_DATA_BUF_LEN << 16) | (EMA_DATA_BASE_ADDR >> 2), EMA_DATACFG); + IFX_REG_W32(0x000000FF, EMA_IER); + IFX_REG_W32(EMA_READ_BURST | (EMA_WRITE_BURST << 2), EMA_CFG); +} + +static inline void init_mailbox(void) +{ + IFX_REG_W32(0xFFFFFFFF, MBOX_IGU1_ISRC); + IFX_REG_W32(0x00000000, MBOX_IGU1_IER); + IFX_REG_W32(0xFFFFFFFF, MBOX_IGU3_ISRC); + IFX_REG_W32(0x00000000, MBOX_IGU3_IER); +} + +static inline void init_atm_tc(void) +{ + IFX_REG_W32(0x0F00, DREG_AT_CTRL); + IFX_REG_W32(0x3C00, DREG_AR_CTRL); + IFX_REG_W32(0x0, DREG_AT_IDLE0); + IFX_REG_W32(0x0, DREG_AT_IDLE1); + IFX_REG_W32(0x0, DREG_AR_IDLE0); + IFX_REG_W32(0x0, DREG_AR_IDLE1); + IFX_REG_W32(0x0, RFBI_CFG); + IFX_REG_W32(0x0200, SFSM_DBA0); + IFX_REG_W32(0x0800, SFSM_DBA1); + IFX_REG_W32(0x0321, SFSM_CBA0); + IFX_REG_W32(0x0921, SFSM_CBA1); + IFX_REG_W32(0x14011, SFSM_CFG0); + IFX_REG_W32(0x14011, SFSM_CFG1); + IFX_REG_W32(0x0332, FFSM_DBA0); + IFX_REG_W32(0x0932, FFSM_DBA1); + IFX_REG_W32(0x3000C, FFSM_CFG0); + IFX_REG_W32(0x3000C, FFSM_CFG1); + IFX_REG_W32(0xF0D10000, FFSM_IDLE_HEAD_BC0); + IFX_REG_W32(0xF0D10000, FFSM_IDLE_HEAD_BC1); +} + +static inline void clear_share_buffer(void) +{ + volatile u32 *p = SB_RAM0_ADDR(0); + unsigned int i; + + for ( i = 0; i < SB_RAM0_DWLEN + SB_RAM1_DWLEN; i++ ) + IFX_REG_W32(0, p++); +} + +/* + * Description: + * Download PPE firmware binary code. + * Input: + * src --- u32 *, binary code buffer + * dword_len --- unsigned int, binary code length in DWORD (32-bit) + * Output: + * int --- 0: Success + * else: Error Code + */ +static inline int pp32_download_code(u32 *code_src, unsigned int code_dword_len, u32 *data_src, unsigned int data_dword_len) +{ + volatile u32 *dest; + + if ( code_src == 0 || ((unsigned long)code_src & 0x03) != 0 + || data_src == 0 || ((unsigned long)data_src & 0x03) != 0 ) + return -1; + + if ( code_dword_len <= CDM_CODE_MEMORYn_DWLEN(0) ) + IFX_REG_W32(0x00, CDM_CFG); + else + IFX_REG_W32(0x04, CDM_CFG); + + /* copy code */ + dest = CDM_CODE_MEMORY(0, 0); + while ( code_dword_len-- > 0 ) + IFX_REG_W32(*code_src++, dest++); + + /* copy data */ + dest = CDM_DATA_MEMORY(0, 0); + while ( data_dword_len-- > 0 ) + IFX_REG_W32(*data_src++, dest++); + + return 0; +} + + + +/* + * #################################### + * Global Function + * #################################### + */ + +extern void ifx_ptm_get_fw_ver(unsigned int *major, unsigned int *minor) +{ + ASSERT(major != NULL, "pointer is NULL"); + ASSERT(minor != NULL, "pointer is NULL"); + + *major = FW_VER_ID->major; + *minor = FW_VER_ID->minor; +} + +void ifx_ptm_init_chip(void) +{ + init_pmu(); + + reset_ppe(); + + init_ema(); + + init_mailbox(); + + init_atm_tc(); + + clear_share_buffer(); +} + +void ifx_ptm_uninit_chip(void) +{ + uninit_pmu(); +} + +/* + * Description: + * Initialize and start up PP32. + * Input: + * none + * Output: + * int --- 0: Success + * else: Error Code + */ +int ifx_pp32_start(int pp32) +{ + int ret; + + /* download firmware */ + ret = pp32_download_code(firmware_binary_code, sizeof(firmware_binary_code) / sizeof(*firmware_binary_code), firmware_binary_data, sizeof(firmware_binary_data) / sizeof(*firmware_binary_data)); + if ( ret != 0 ) + return ret; + + /* run PP32 */ + IFX_REG_W32(DBG_CTRL_RESTART, PP32_DBG_CTRL(pp32)); + + /* idle for a while to let PP32 init itself */ + udelay(10); + + return 0; +} + +/* + * Description: + * Halt PP32. + * Input: + * none + * Output: + * none + */ +void ifx_pp32_stop(int pp32) +{ + /* halt PP32 */ + IFX_REG_W32(DBG_CTRL_STOP, PP32_DBG_CTRL(pp32)); +} diff --git a/package/kernel/lantiq/ltq-ptm/src/ifxmips_ptm_ar9.c b/package/kernel/lantiq/ltq-ptm/src/ifxmips_ptm_ar9.c new file mode 100644 index 0000000..777d5cf --- /dev/null +++ b/package/kernel/lantiq/ltq-ptm/src/ifxmips_ptm_ar9.c @@ -0,0 +1,376 @@ +/****************************************************************************** +** +** FILE NAME : ifxmips_ptm_ar9.c +** PROJECT : UEIP +** MODULES : PTM +** +** DATE : 7 Jul 2009 +** AUTHOR : Xu Liang +** DESCRIPTION : PTM driver common source file (core functions) +** COPYRIGHT : Copyright (c) 2006 +** Infineon Technologies AG +** Am Campeon 1-12, 85579 Neubiberg, Germany +** +** This program is free software; you can redistribute it and/or modify +** it under the terms of the GNU General Public License as published by +** the Free Software Foundation; either version 2 of the License, or +** (at your option) any later version. +** +** HISTORY +** $Date $Author $Comment +** 07 JUL 2009 Xu Liang Init Version +*******************************************************************************/ + + + +/* + * #################################### + * Head File + * #################################### + */ + +/* + * Common Head File + */ +#include <linux/kernel.h> +#include <linux/module.h> +#include <linux/version.h> +#include <linux/types.h> +#include <linux/errno.h> +#include <linux/proc_fs.h> +#include <linux/init.h> +#include <linux/ioctl.h> +#include <asm/delay.h> + +/* + * Chip Specific Head File + */ +#include "ifxmips_ptm_adsl.h" +#include "ifxmips_ptm_fw_ar9.h" + +#include <lantiq_soc.h> + + +/* + * #################################### + * Definition + * #################################### + */ + +/* + * EMA Settings + */ +#define EMA_CMD_BUF_LEN 0x0040 +#define EMA_CMD_BASE_ADDR (0x00001B80 << 2) +#define EMA_DATA_BUF_LEN 0x0100 +#define EMA_DATA_BASE_ADDR (0x00001C00 << 2) +#define EMA_WRITE_BURST 0x2 +#define EMA_READ_BURST 0x2 + + + +/* + * #################################### + * Declaration + * #################################### + */ + +/* + * Hardware Init/Uninit Functions + */ +static inline void init_pmu(void); +static inline void uninit_pmu(void); +static inline void reset_ppe(void); +static inline void init_ema(void); +static inline void init_mailbox(void); +static inline void init_atm_tc(void); +static inline void clear_share_buffer(void); + + + +/* + * #################################### + * Local Variable + * #################################### + */ + + + +/* + * #################################### + * Local Function + * #################################### + */ + +#define IFX_PMU_MODULE_PPE_SLL01 BIT(19) +#define IFX_PMU_MODULE_PPE_TC BIT(21) +#define IFX_PMU_MODULE_PPE_EMA BIT(22) +#define IFX_PMU_MODULE_PPE_QSB BIT(18) +#define IFX_PMU_MODULE_TPE BIT(13) +#define IFX_PMU_MODULE_DSL_DFE BIT(9) + + +static inline void init_pmu(void) +{ + ltq_pmu_enable(IFX_PMU_MODULE_PPE_SLL01 | + IFX_PMU_MODULE_PPE_TC | + IFX_PMU_MODULE_PPE_EMA | + IFX_PMU_MODULE_TPE | + IFX_PMU_MODULE_DSL_DFE); + +} + +static inline void uninit_pmu(void) +{ + ltq_pmu_disable(IFX_PMU_MODULE_PPE_SLL01 | + IFX_PMU_MODULE_PPE_TC | + IFX_PMU_MODULE_PPE_EMA | + IFX_PMU_MODULE_TPE | + IFX_PMU_MODULE_DSL_DFE); + +} + +static inline void reset_ppe(void) +{ +#ifdef MODULE + // reset PPE +// ifx_rcu_rst(IFX_RCU_DOMAIN_PPE, IFX_RCU_MODULE_PTM); +#endif +} + +static inline void init_ema(void) +{ + // Configure share buffer master selection + IFX_REG_W32(1, SB_MST_PRI0); + IFX_REG_W32(1, SB_MST_PRI1); + + // EMA Settings + IFX_REG_W32((EMA_CMD_BUF_LEN << 16) | (EMA_CMD_BASE_ADDR >> 2), EMA_CMDCFG); + IFX_REG_W32((EMA_DATA_BUF_LEN << 16) | (EMA_DATA_BASE_ADDR >> 2), EMA_DATACFG); + IFX_REG_W32(0x000000FF, EMA_IER); + IFX_REG_W32(EMA_READ_BURST | (EMA_WRITE_BURST << 2), EMA_CFG); +} + +static inline void init_mailbox(void) +{ + IFX_REG_W32(0xFFFFFFFF, MBOX_IGU1_ISRC); + IFX_REG_W32(0x00000000, MBOX_IGU1_IER); + IFX_REG_W32(0xFFFFFFFF, MBOX_IGU3_ISRC); + IFX_REG_W32(0x00000000, MBOX_IGU3_IER); +} + +static inline void init_atm_tc(void) +{ + IFX_REG_W32(0x0, RFBI_CFG); + IFX_REG_W32(0x1800, SFSM_DBA0); + IFX_REG_W32(0x1921, SFSM_DBA1); + IFX_REG_W32(0x1A42, SFSM_CBA0); + IFX_REG_W32(0x1A53, SFSM_CBA1); + IFX_REG_W32(0x14011, SFSM_CFG0); + IFX_REG_W32(0x14011, SFSM_CFG1); + IFX_REG_W32(0x1000, FFSM_DBA0); + IFX_REG_W32(0x1700, FFSM_DBA1); + IFX_REG_W32(0x3000C, FFSM_CFG0); + IFX_REG_W32(0x3000C, FFSM_CFG1); + IFX_REG_W32(0xF0D10000, FFSM_IDLE_HEAD_BC0); + IFX_REG_W32(0xF0D10000, FFSM_IDLE_HEAD_BC1); + + /* + * 0. Backup port2 value to temp + * 1. Disable CPU port2 in switch (link and learning) + * 2. wait for a while + * 3. Configure DM register and counter + * 4. restore temp to CPU port2 in switch + * This code will cause network to stop working if there are heavy + * traffic during bootup. This part should be moved to switch and use + * the same code as ATM + */ + { + int i; + u32 temp; + + temp = IFX_REG_R32(SW_P2_CTL); + + IFX_REG_W32(0x40020000, SW_P2_CTL); + for (i = 0; i < 200; i++) + udelay(2000); + + IFX_REG_W32(0x00007028, DM_RXCFG); + IFX_REG_W32(0x00007028, DS_RXCFG); + + IFX_REG_W32(0x00001100, DM_RXDB); + IFX_REG_W32(0x00001100, DS_RXDB); + + IFX_REG_W32(0x00001600, DM_RXCB); + IFX_REG_W32(0x00001600, DS_RXCB); + + /* + * For dynamic, must reset these counters, + * For once initialization, don't need to reset these counters + */ + IFX_REG_W32(0x0, DM_RXPGCNT); + IFX_REG_W32(0x0, DS_RXPGCNT); + IFX_REG_W32(0x0, DM_RXPKTCNT); + + IFX_REG_W32_MASK(0, 0x80000000, DM_RXCFG); + IFX_REG_W32_MASK(0, 0x8000, DS_RXCFG); + + udelay(2000); + IFX_REG_W32(temp, SW_P2_CTL); + udelay(2000); + } +} + +static inline void clear_share_buffer(void) +{ + volatile u32 *p = SB_RAM0_ADDR(0); + unsigned int i; + + for ( i = 0; i < SB_RAM0_DWLEN + SB_RAM1_DWLEN + SB_RAM2_DWLEN + SB_RAM3_DWLEN + SB_RAM4_DWLEN; i++ ) + IFX_REG_W32(0, p++); +} + +/* + * Description: + * Download PPE firmware binary code. + * Input: + * src --- u32 *, binary code buffer + * dword_len --- unsigned int, binary code length in DWORD (32-bit) + * Output: + * int --- 0: Success + * else: Error Code + */ +static inline int pp32_download_code(u32 *code_src, unsigned int code_dword_len, u32 *data_src, unsigned int data_dword_len) +{ + volatile u32 *dest; + + if ( code_src == 0 || ((unsigned long)code_src & 0x03) != 0 + || data_src == 0 || ((unsigned long)data_src & 0x03) != 0 ) + return -1; + + if ( code_dword_len <= CDM_CODE_MEMORYn_DWLEN(0) ) + IFX_REG_W32(0x00, CDM_CFG); + else + IFX_REG_W32(0x04, CDM_CFG); + + /* copy code */ + dest = CDM_CODE_MEMORY(0, 0); + while ( code_dword_len-- > 0 ) + IFX_REG_W32(*code_src++, dest++); + + /* copy data */ + dest = CDM_DATA_MEMORY(0, 0); + while ( data_dword_len-- > 0 ) + IFX_REG_W32(*data_src++, dest++); + + return 0; +} + + + +/* + * #################################### + * Global Function + * #################################### + */ + +void ifx_ptm_get_fw_ver(unsigned int *major, unsigned int *minor) +{ + ASSERT(major != NULL, "pointer is NULL"); + ASSERT(minor != NULL, "pointer is NULL"); + + *major = FW_VER_ID->major; + *minor = FW_VER_ID->minor; +} + +void ifx_ptm_init_chip(void) +{ + init_pmu(); + + reset_ppe(); + + init_ema(); + + init_mailbox(); + + init_atm_tc(); + + clear_share_buffer(); +} + +void ifx_ptm_uninit_chip(void) +{ + uninit_pmu(); +} + +/* + * Description: + * Initialize and start up PP32. + * Input: + * none + * Output: + * int --- 0: Success + * else: Error Code + */ +int ifx_pp32_start(int pp32) +{ + int ret; + + /* download firmware */ + ret = pp32_download_code(firmware_binary_code, sizeof(firmware_binary_code) / sizeof(*firmware_binary_code), firmware_binary_data, sizeof(firmware_binary_data) / sizeof(*firmware_binary_data)); + if ( ret != 0 ) + return ret; + + /* run PP32 */ + IFX_REG_W32(DBG_CTRL_RESTART, PP32_DBG_CTRL(0)); + + /* idle for a while to let PP32 init itself */ + udelay(10); + + return 0; +} + +/* + * Description: + * Halt PP32. + * Input: + * none + * Output: + * none + */ +void ifx_pp32_stop(int pp32) +{ + /* halt PP32 */ + IFX_REG_W32(DBG_CTRL_STOP, PP32_DBG_CTRL(0)); +} + +int ifx_ptm_proc_read_regs(char *page, char **start, off_t off, int count, int *eof, void *data) +{ + int len = 0; + + len += sprintf(page + off + len, "EMA:\n"); + len += sprintf(page + off + len, " SB_MST_PRI0 - 0x%08X, SB_MST_PRI1 - 0x%08X\n", IFX_REG_R32(SB_MST_PRI0), IFX_REG_R32(SB_MST_PRI1)); + len += sprintf(page + off + len, " EMA_CMDCFG - 0x%08X, EMA_DATACFG - 0x%08X\n", IFX_REG_R32(EMA_CMDCFG), IFX_REG_R32(EMA_DATACFG)); + len += sprintf(page + off + len, " EMA_IER - 0x%08X, EMA_CFG - 0x%08X\n", IFX_REG_R32(EMA_IER), IFX_REG_R32(EMA_CFG)); + + len += sprintf(page + off + len, "Mailbox:\n"); + len += sprintf(page + off + len, " MBOX_IGU1_IER - 0x%08X, MBOX_IGU1_ISR - 0x%08X\n", IFX_REG_R32(MBOX_IGU1_IER), IFX_REG_R32(MBOX_IGU1_ISR)); + len += sprintf(page + off + len, " MBOX_IGU3_IER - 0x%08X, MBOX_IGU3_ISR - 0x%08X\n", IFX_REG_R32(MBOX_IGU3_IER), IFX_REG_R32(MBOX_IGU3_ISR)); + + len += sprintf(page + off + len, "TC:\n"); + len += sprintf(page + off + len, " RFBI_CFG - 0x%08X\n", IFX_REG_R32(RFBI_CFG)); + len += sprintf(page + off + len, " SFSM_DBA0 - 0x%08X, SFSM_CBA0 - 0x%08X, SFSM_CFG0 - 0x%08X\n", IFX_REG_R32(SFSM_DBA0), IFX_REG_R32(SFSM_CBA0), IFX_REG_R32(SFSM_CFG0)); + len += sprintf(page + off + len, " SFSM_DBA1 - 0x%08X, SFSM_CBA1 - 0x%08X, SFSM_CFG1 - 0x%08X\n", IFX_REG_R32(SFSM_DBA1), IFX_REG_R32(SFSM_CBA1), IFX_REG_R32(SFSM_CFG1)); + len += sprintf(page + off + len, " FFSM_DBA0 - 0x%08X, FFSM_CFG0 - 0x%08X, IDLE_HEAD - 0x%08X\n", IFX_REG_R32(FFSM_DBA0), IFX_REG_R32(FFSM_CFG0), IFX_REG_R32(FFSM_IDLE_HEAD_BC0)); + len += sprintf(page + off + len, " FFSM_DBA1 - 0x%08X, FFSM_CFG1 - 0x%08X, IDLE_HEAD - 0x%08X\n", IFX_REG_R32(FFSM_DBA1), IFX_REG_R32(FFSM_CFG1), IFX_REG_R32(FFSM_IDLE_HEAD_BC1)); + + len += sprintf(page + off + len, "DPlus:\n"); + len += sprintf(page + off + len, " DM_RXDB - 0x%08X, DM_RXCB - 0x%08X, DM_RXCFG - 0x%08X\n", IFX_REG_R32(DM_RXDB), IFX_REG_R32(DM_RXCB), IFX_REG_R32(DM_RXCFG)); + len += sprintf(page + off + len, " DM_RXPGCNT - 0x%08X, DM_RXPKTCNT - 0x%08X\n", IFX_REG_R32(DM_RXPGCNT), IFX_REG_R32(DM_RXPKTCNT)); + len += sprintf(page + off + len, " DS_RXDB - 0x%08X, DS_RXCB - 0x%08X, DS_RXCFG - 0x%08X\n", IFX_REG_R32(DS_RXDB), IFX_REG_R32(DS_RXCB), IFX_REG_R32(DS_RXCFG)); + len += sprintf(page + off + len, " DS_RXPGCNT - 0x%08X\n", IFX_REG_R32(DS_RXPGCNT)); + + *eof = 1; + + return len; +} diff --git a/package/kernel/lantiq/ltq-ptm/src/ifxmips_ptm_common.h b/package/kernel/lantiq/ltq-ptm/src/ifxmips_ptm_common.h new file mode 100644 index 0000000..ccd19b1 --- /dev/null +++ b/package/kernel/lantiq/ltq-ptm/src/ifxmips_ptm_common.h @@ -0,0 +1,102 @@ +/****************************************************************************** +** +** FILE NAME : ifxmips_ptm_common.h +** PROJECT : UEIP +** MODULES : PTM +** +** DATE : 7 Jul 2009 +** AUTHOR : Xu Liang +** DESCRIPTION : PTM driver header file (common definitions) +** COPYRIGHT : Copyright (c) 2006 +** Infineon Technologies AG +** Am Campeon 1-12, 85579 Neubiberg, Germany +** +** This program is free software; you can redistribute it and/or modify +** it under the terms of the GNU General Public License as published by +** the Free Software Foundation; either version 2 of the License, or +** (at your option) any later version. +** +** HISTORY +** $Date $Author $Comment +** 17 JUN 2009 Xu Liang Init Version +*******************************************************************************/ + +#ifndef IFXMIPS_PTM_COMMON_H +#define IFXMIPS_PTM_COMMON_H + + + +/* + * #################################### + * Version No. + * #################################### + */ + +#define IFX_PTM_VER_MAJOR 1 +#define IFX_PTM_VER_MID 0 +#define IFX_PTM_VER_MINOR 27 + + + +/* + * #################################### + * Definition + * #################################### + */ + +/* + * Compile Options + */ + +#define ENABLE_DEBUG 1 + +#define ENABLE_ASSERT 1 + +#define INLINE + +#define DEBUG_DUMP_SKB 1 + +#define DEBUG_QOS 1 + +#define ENABLE_DBG_PROC 1 + +#define ENABLE_FW_PROC 1 + +#if defined(CONFIG_DSL_MEI_CPE_DRV) && !defined(CONFIG_IFXMIPS_DSL_CPE_MEI) + #define CONFIG_IFXMIPS_DSL_CPE_MEI 1 +#endif + +/* + * Debug/Assert/Error Message + */ + +#define DBG_ENABLE_MASK_ERR (1 << 0) +#define DBG_ENABLE_MASK_DEBUG_PRINT (1 << 1) +#define DBG_ENABLE_MASK_ASSERT (1 << 2) +#define DBG_ENABLE_MASK_DUMP_SKB_RX (1 << 8) +#define DBG_ENABLE_MASK_DUMP_SKB_TX (1 << 9) +#define DBG_ENABLE_MASK_DUMP_QOS (1 << 10) +#define DBG_ENABLE_MASK_DUMP_INIT (1 << 11) +#define DBG_ENABLE_MASK_MAC_SWAP (1 << 12) +#define DBG_ENABLE_MASK_ALL (DBG_ENABLE_MASK_ERR | DBG_ENABLE_MASK_DEBUG_PRINT | DBG_ENABLE_MASK_ASSERT | DBG_ENABLE_MASK_DUMP_SKB_RX | DBG_ENABLE_MASK_DUMP_SKB_TX | DBG_ENABLE_MASK_DUMP_QOS | DBG_ENABLE_MASK_DUMP_INIT | DBG_ENABLE_MASK_MAC_SWAP) + +#define err(format, arg...) do { if ( (ifx_ptm_dbg_enable & DBG_ENABLE_MASK_ERR) ) printk(KERN_ERR __FILE__ ":%d:%s: " format "\n", __LINE__, __FUNCTION__, ##arg); } while ( 0 ) + +#if defined(ENABLE_DEBUG) && ENABLE_DEBUG + #undef dbg + #define dbg(format, arg...) do { if ( (ifx_ptm_dbg_enable & DBG_ENABLE_MASK_DEBUG_PRINT) ) printk(KERN_WARNING __FILE__ ":%d:%s: " format "\n", __LINE__, __FUNCTION__, ##arg); } while ( 0 ) +#else + #if !defined(dbg) + #define dbg(format, arg...) + #endif +#endif + +#if defined(ENABLE_ASSERT) && ENABLE_ASSERT + #define ASSERT(cond, format, arg...) do { if ( (ifx_ptm_dbg_enable & DBG_ENABLE_MASK_ASSERT) && !(cond) ) printk(KERN_ERR __FILE__ ":%d:%s: " format "\n", __LINE__, __FUNCTION__, ##arg); } while ( 0 ) +#else + #define ASSERT(cond, format, arg...) +#endif + + + +#endif // IFXMIPS_PTM_COMMON_H diff --git a/package/kernel/lantiq/ltq-ptm/src/ifxmips_ptm_danube.c b/package/kernel/lantiq/ltq-ptm/src/ifxmips_ptm_danube.c new file mode 100644 index 0000000..279b03b --- /dev/null +++ b/package/kernel/lantiq/ltq-ptm/src/ifxmips_ptm_danube.c @@ -0,0 +1,317 @@ +/****************************************************************************** +** +** FILE NAME : ifxmips_ptm_danube.c +** PROJECT : UEIP +** MODULES : PTM +** +** DATE : 7 Jul 2009 +** AUTHOR : Xu Liang +** DESCRIPTION : PTM driver common source file (core functions) +** COPYRIGHT : Copyright (c) 2006 +** Infineon Technologies AG +** Am Campeon 1-12, 85579 Neubiberg, Germany +** +** This program is free software; you can redistribute it and/or modify +** it under the terms of the GNU General Public License as published by +** the Free Software Foundation; either version 2 of the License, or +** (at your option) any later version. +** +** HISTORY +** $Date $Author $Comment +** 07 JUL 2009 Xu Liang Init Version +*******************************************************************************/ + + + +/* + * #################################### + * Head File + * #################################### + */ + +/* + * Common Head File + */ +#include <linux/kernel.h> +#include <linux/module.h> +#include <linux/version.h> +#include <linux/types.h> +#include <linux/errno.h> +#include <linux/proc_fs.h> +#include <linux/init.h> +#include <linux/ioctl.h> +#include <linux/delay.h> + +/* + * Chip Specific Head File + */ +#include "ifxmips_ptm_adsl.h" +#include "ifxmips_ptm_fw_danube.h" + +#include <lantiq_soc.h> + +/* + * #################################### + * Definition + * #################################### + */ + +/* + * EMA Settings + */ +#define EMA_CMD_BUF_LEN 0x0040 +#define EMA_CMD_BASE_ADDR (0x00001580 << 2) +#define EMA_DATA_BUF_LEN 0x0100 +#define EMA_DATA_BASE_ADDR (0x00000B00 << 2) +#define EMA_WRITE_BURST 0x2 +#define EMA_READ_BURST 0x2 + + + +/* + * #################################### + * Declaration + * #################################### + */ + +/* + * Hardware Init/Uninit Functions + */ +static inline void init_pmu(void); +static inline void uninit_pmu(void); +static inline void reset_ppe(void); +static inline void init_ema(void); +static inline void init_mailbox(void); +static inline void init_atm_tc(void); +static inline void clear_share_buffer(void); + + + +/* + * #################################### + * Local Variable + * #################################### + */ + + +#define IFX_PMU_MODULE_PPE_SLL01 BIT(19) +#define IFX_PMU_MODULE_PPE_TC BIT(21) +#define IFX_PMU_MODULE_PPE_EMA BIT(22) +#define IFX_PMU_MODULE_PPE_QSB BIT(18) +#define IFX_PMU_MODULE_TPE BIT(13) +#define IFX_PMU_MODULE_DSL_DFE BIT(9) + +/* + * #################################### + * Local Function + * #################################### + */ + +static inline void init_pmu(void) +{ + ltq_pmu_enable(IFX_PMU_MODULE_PPE_SLL01 | + IFX_PMU_MODULE_PPE_TC | + IFX_PMU_MODULE_PPE_EMA | + IFX_PMU_MODULE_TPE | + IFX_PMU_MODULE_DSL_DFE); +} + +static inline void uninit_pmu(void) +{ + ltq_pmu_disable(IFX_PMU_MODULE_PPE_SLL01 | + IFX_PMU_MODULE_PPE_TC | + IFX_PMU_MODULE_PPE_EMA | + IFX_PMU_MODULE_TPE | + IFX_PMU_MODULE_DSL_DFE); +} + +static inline void reset_ppe(void) +{ +#ifdef MODULE + /*unsigned int etop_cfg; + unsigned int etop_mdio_cfg; + unsigned int etop_ig_plen_ctrl; + unsigned int enet_mac_cfg; + + etop_cfg = *IFX_PP32_ETOP_CFG; + etop_mdio_cfg = *IFX_PP32_ETOP_MDIO_CFG; + etop_ig_plen_ctrl = *IFX_PP32_ETOP_IG_PLEN_CTRL; + enet_mac_cfg = *IFX_PP32_ENET_MAC_CFG; + + *IFX_PP32_ETOP_CFG &= ~0x03C0; + + // reset PPE + ifx_rcu_rst(IFX_RCU_DOMAIN_PPE, IFX_RCU_MODULE_PTM); + + *IFX_PP32_ETOP_MDIO_CFG = etop_mdio_cfg; + *IFX_PP32_ETOP_IG_PLEN_CTRL = etop_ig_plen_ctrl; + *IFX_PP32_ENET_MAC_CFG = enet_mac_cfg; + *IFX_PP32_ETOP_CFG = etop_cfg;*/ +#endif +} + +static inline void init_ema(void) +{ + // Configure share buffer master selection + *SB_MST_SEL |= 0x03; + + // EMA Settings + IFX_REG_W32((EMA_CMD_BUF_LEN << 16) | (EMA_CMD_BASE_ADDR >> 2), EMA_CMDCFG); + IFX_REG_W32((EMA_DATA_BUF_LEN << 16) | (EMA_DATA_BASE_ADDR >> 2), EMA_DATACFG); + IFX_REG_W32(0x000000FF, EMA_IER); + IFX_REG_W32(EMA_READ_BURST | (EMA_WRITE_BURST << 2), EMA_CFG); +} + +static inline void init_mailbox(void) +{ + IFX_REG_W32(0xFFFFFFFF, MBOX_IGU1_ISRC); + IFX_REG_W32(0x00000000, MBOX_IGU1_IER); + IFX_REG_W32(0xFFFFFFFF, MBOX_IGU3_ISRC); + IFX_REG_W32(0x00000000, MBOX_IGU3_IER); +} + +static inline void init_atm_tc(void) +{ + IFX_REG_W32(0x0F00, DREG_AT_CTRL); + IFX_REG_W32(0x3C00, DREG_AR_CTRL); + IFX_REG_W32(0x0, DREG_AT_IDLE0); + IFX_REG_W32(0x0, DREG_AT_IDLE1); + IFX_REG_W32(0x0, DREG_AR_IDLE0); + IFX_REG_W32(0x0, DREG_AR_IDLE1); + IFX_REG_W32(0x0, RFBI_CFG); + IFX_REG_W32(0x1600, SFSM_DBA0); + IFX_REG_W32(0x1721, SFSM_DBA1); + IFX_REG_W32(0x1842, SFSM_CBA0); + IFX_REG_W32(0x1853, SFSM_CBA1); + IFX_REG_W32(0x14011, SFSM_CFG0); + IFX_REG_W32(0x14011, SFSM_CFG1); + IFX_REG_W32(0x1864, FFSM_DBA0); + IFX_REG_W32(0x1930, FFSM_DBA1); + IFX_REG_W32(0x3000C, FFSM_CFG0); + IFX_REG_W32(0x3000C, FFSM_CFG1); + IFX_REG_W32(0xF0D10000, FFSM_IDLE_HEAD_BC0); + IFX_REG_W32(0xF0D10000, FFSM_IDLE_HEAD_BC1); +} + +static inline void clear_share_buffer(void) +{ + volatile u32 *p = SB_RAM0_ADDR(0); + unsigned int i; + + for ( i = 0; i < SB_RAM0_DWLEN + SB_RAM1_DWLEN + SB_RAM2_DWLEN + SB_RAM3_DWLEN; i++ ) + IFX_REG_W32(0, p++); +} + +/* + * Description: + * Download PPE firmware binary code. + * Input: + * src --- u32 *, binary code buffer + * dword_len --- unsigned int, binary code length in DWORD (32-bit) + * Output: + * int --- 0: Success + * else: Error Code + */ +static inline int pp32_download_code(u32 *code_src, unsigned int code_dword_len, u32 *data_src, unsigned int data_dword_len) +{ + volatile u32 *dest; + + if ( code_src == 0 || ((unsigned long)code_src & 0x03) != 0 + || data_src == 0 || ((unsigned long)data_src & 0x03) != 0 ) + return -1; + + if ( code_dword_len <= CDM_CODE_MEMORYn_DWLEN(0) ) + IFX_REG_W32(0x00, CDM_CFG); + else + IFX_REG_W32(0x04, CDM_CFG); + + /* copy code */ + dest = CDM_CODE_MEMORY(0, 0); + while ( code_dword_len-- > 0 ) + IFX_REG_W32(*code_src++, dest++); + + /* copy data */ + dest = CDM_DATA_MEMORY(0, 0); + while ( data_dword_len-- > 0 ) + IFX_REG_W32(*data_src++, dest++); + + return 0; +} + + + +/* + * #################################### + * Global Function + * #################################### + */ + +extern void ifx_ptm_get_fw_ver(unsigned int *major, unsigned int *minor) +{ + ASSERT(major != NULL, "pointer is NULL"); + ASSERT(minor != NULL, "pointer is NULL"); + + *major = FW_VER_ID->major; + *minor = FW_VER_ID->minor; +} + +void ifx_ptm_init_chip(void) +{ + init_pmu(); + + reset_ppe(); + + init_ema(); + + init_mailbox(); + + init_atm_tc(); + + clear_share_buffer(); +} + +void ifx_ptm_uninit_chip(void) +{ + uninit_pmu(); +} + +/* + * Description: + * Initialize and start up PP32. + * Input: + * none + * Output: + * int --- 0: Success + * else: Error Code + */ +int ifx_pp32_start(int pp32) +{ + int ret; + + /* download firmware */ + ret = pp32_download_code(firmware_binary_code, sizeof(firmware_binary_code) / sizeof(*firmware_binary_code), firmware_binary_data, sizeof(firmware_binary_data) / sizeof(*firmware_binary_data)); + if ( ret != 0 ) + return ret; + + /* run PP32 */ + IFX_REG_W32(DBG_CTRL_START_SET(1), PP32_DBG_CTRL); + + /* idle for a while to let PP32 init itself */ + udelay(10); + + return 0; +} + +/* + * Description: + * Halt PP32. + * Input: + * none + * Output: + * none + */ +void ifx_pp32_stop(int pp32) +{ + /* halt PP32 */ + IFX_REG_W32(DBG_CTRL_STOP_SET(1), PP32_DBG_CTRL); +} diff --git a/package/kernel/lantiq/ltq-ptm/src/ifxmips_ptm_fw_amazon_se.h b/package/kernel/lantiq/ltq-ptm/src/ifxmips_ptm_fw_amazon_se.h new file mode 100644 index 0000000..ae33bcc --- /dev/null +++ b/package/kernel/lantiq/ltq-ptm/src/ifxmips_ptm_fw_amazon_se.h @@ -0,0 +1,493 @@ +#ifndef IFXMIPS_PTM_FW_AMAZON_SE_H +#define IFXMIPS_PTM_FW_AMAZON_SE_H + + +/****************************************************************************** +** +** FILE NAME : ifxmips_ptm_fw_amazon_se.h +** PROJECT : UEIP +** MODULES : PTM (ADSL) +** +** DATE : 1 AUG 2005 +** AUTHOR : Xu Liang +** DESCRIPTION : PTM Driver (PP32 Firmware) +** COPYRIGHT : Copyright (c) 2006 +** Infineon Technologies AG +** Am Campeon 1-12, 85579 Neubiberg, Germany +** +** This program is free software; you can redistribute it and/or modify +** it under the terms of the GNU General Public License as published by +** the Free Software Foundation; either version 2 of the License, or +** (at your option) any later version. +** +** HISTORY +** $Date $Author $Comment +** 4 AUG 2005 Xu Liang Initiate Version +** 23 OCT 2006 Xu Liang Add GPL header. +** 9 JAN 2007 Xu Liang First version got from Anand (IC designer) +*******************************************************************************/ + + +#define PTM_FW_VER_MAJOR 0 +#define PTM_FW_VER_MINOR 17 + + +static unsigned int firmware_binary_code[] = { + 0x800004b8, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x8000ffe0, 0x00000000, 0x00000000, 0x00000000, + 0xc1000002, 0xd90c00f8, 0xc2000002, 0xda0800f9, 0x800055e0, 0xc2000000, 0xda0800f9, 0x80005580, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x94000001, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x80005e58, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x94000001, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x94000001, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x94000001, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x94000001, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0xc10e0002, 0xd90c00f8, 0xc0004808, 0xc84000f8, 0x80005250, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0xc3e1fffe, 0x597dfffe, 0x593dfef4, 0x900004d9, 0x00000000, 0x00000000, 0x00000000, 0x90cc0481, + 0x00000000, 0x00000000, 0x00000000, 0xc3e06262, 0x5bfc0022, 0xc0004802, 0xcfc000f8, 0xc0004810, + 0xcbc000f8, 0x00000000, 0xc3800000, 0xc7f80038, 0x5fb80000, 0xc7fa0038, 0xc7bfe802, 0x5fb80000, + 0x00000000, 0xc7bff802, 0xdbd400f9, 0xc00049a0, 0xc3800002, 0xa7ca006a, 0xc1200000, 0x5911fffe, + 0xcd0000f9, 0xc1200000, 0x59102042, 0xcd0000f9, 0xc1000004, 0xcd0000f9, 0xc1200000, 0x59103a1e, + 0xcd0000f9, 0x80000060, 0xc121fffe, 0x5911fffe, 0xcd0000f9, 0xc1203db8, 0x5910de82, 0xcd0000f9, + 0xc1000006, 0xcd0000f9, 0xc120385a, 0x591033da, 0xcd0000f9, 0x5fb80002, 0x8800001a, 0x6ffe0010, + 0x8000ff28, 0xdd7c00f9, 0xc3800000, 0xc7f86010, 0x5bb80008, 0xc3540002, 0x777da000, 0xc1000008, + 0x4791c002, 0xcf8000f9, 0xdb900038, 0xc3800008, 0xc3720002, 0x777da000, 0xa7f00028, 0x47b9c002, + 0xc1000000, 0xc7d26010, 0x4391c000, 0xcf8000f8, 0xdb900838, 0xc3c00000, 0xdbc800f9, 0xc0400000, + 0xc11c0000, 0xc000082c, 0xcd05ce00, 0xc11c0002, 0xc000082c, 0xcd05ce00, 0xc0400002, 0xc11c0000, + 0xc000082c, 0xcd05ce00, 0xc11c0002, 0xc000082c, 0xcd05ce00, 0xc0000824, 0x00000000, 0xcbc000f9, + 0xcb8000f9, 0xcb4000f9, 0xcb0000f8, 0xc0004878, 0x5bfc4000, 0xcfc000f9, 0x5bb84000, 0xcf8000f9, + 0x5b744000, 0xcf4000f9, 0x5b304000, 0xcf0000f8, 0xc0000a10, 0x00000000, 0xcbc000f9, 0xcb8000f8, + 0xc0004874, 0x5bfc4000, 0xcfc000f9, 0x5bb84000, 0xcf8000f8, 0xc30001fe, 0xc000140a, 0xcf0000f8, + 0xc3000000, 0x7f018000, 0xc000042e, 0xcf0000f8, 0xc000040e, 0xcf0000f8, 0xc3c1fffe, 0xc000490e, + 0xcfc00078, 0xc000492c, 0xcfc00078, 0xc0004924, 0xcfc00038, 0xc0004912, 0xcfc00038, 0xc000498c, + 0xcfc00038, 0xc000498e, 0xcfc00078, 0xc0004990, 0xcfc00078, 0xc3c00000, 0xc2800004, 0xc3000000, + 0x7f018000, 0x6ff88000, 0x6fd44000, 0x4395c000, 0x5bb84a00, 0xc00049a0, 0xcb0000f8, 0x00000000, + 0x58380006, 0xcf0000f8, 0xc321fffe, 0x5b31fffe, 0x58380024, 0xcf0000f8, 0x5bfc0002, 0xb7e8ff90, + 0x00000000, 0xc3c00000, 0xc2800010, 0x6ff86000, 0x47bdc000, 0x5bb84c80, 0xc3400000, 0x58380004, + 0xcb420078, 0x00000000, 0x58380008, 0xcf400078, 0x5bfc0002, 0xb7e8ffb0, 0x00000000, 0xc3c00000, + 0xc2800004, 0xc3400022, 0xc3000000, 0x7f018000, 0xc2c00016, 0x6ff8a000, 0x47bdc000, 0x5bb84e20, + 0x58380008, 0xcf400038, 0xc00049a8, 0xcb0000f8, 0x00000000, 0x5838000a, 0xcf0000f8, 0xc321fffe, + 0x5b31fffe, 0x5838000c, 0xcf0000f8, 0x58380034, 0xcec00038, 0x5bfc0002, 0xb7e8ff78, 0x00000000, + 0x00000000, 0xc0004840, 0xc3e12624, 0x5bfc2320, 0xcfc000f9, 0xc3e02f2c, 0x5bfd2a28, 0xcfc000f9, + 0xc3e03734, 0x5bfd3230, 0xcfc000f9, 0xc3e13e3c, 0x5bfc3b38, 0xcfc000f9, 0xc3e14644, 0x5bfc4340, + 0xcfc000f9, 0xc3e04f4c, 0x5bfd4a48, 0xcfc000f9, 0xc3e05754, 0x5bfd5250, 0xcfc000f9, 0xc3e15e5c, + 0x5bfc5b58, 0xcfc000f9, 0xc3e06764, 0x5bfd6260, 0xcfc000f9, 0xc3e16e6c, 0x5bfc6b68, 0xcfc000f9, + 0xc3e17674, 0x5bfc7370, 0xcfc000f9, 0xc3e07f7c, 0x5bfd7a78, 0xcfc000f9, 0xc3e18684, 0x5bfc8380, + 0xcfc000f9, 0xc3e08f8c, 0x5bfd8a88, 0xcfc000f9, 0xc3e09794, 0x5bfd9290, 0xcfc000f9, 0xc3e19e9c, + 0x5bfc9b98, 0xcfc000f9, 0xc161fffe, 0x5955fffe, 0x14140000, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0xc1000000, 0xd91c00f8, 0xc3e01002, 0x5bfd88c0, 0xc3a00f88, + 0x5bb839a2, 0x990068d8, 0xdbd800f8, 0xdb9800f9, 0x00000000, 0xc3c00000, 0xdf7f0038, 0xa7ccfff0, + 0xc3800000, 0xc00048c0, 0xcb818078, 0xc0001408, 0xcfc000f8, 0xc10e0002, 0xd90c00f8, 0x5d3802a6, + 0xc1000002, 0xd91c1f02, 0xc121fffe, 0x5911fef4, 0x14100000, 0xa9fe0270, 0xc3c00000, 0xddfc00f0, + 0x5d3c0000, 0x84000100, 0xc0000c04, 0xcb8000f8, 0xc11c0002, 0x00000000, 0x7391c000, 0xcf8000f8, + 0xc3800000, 0xc3400080, 0xdf780038, 0xb7b4ffea, 0xc3203002, 0x5b3188c4, 0xc2e00f88, 0x5aec100e, + 0x990068d8, 0xdb1800f8, 0xdad800f9, 0x00000000, 0xc3800000, 0xc3400080, 0xdf780038, 0xb7b4ffea, + 0xc3205002, 0x5b3188c8, 0xc2e00f90, 0x5aec180c, 0x990068d8, 0xdb1800f8, 0xdad800f9, 0x00000000, + 0x80000128, 0xc00048cc, 0xca8000f8, 0x00000000, 0xc1000006, 0x76914000, 0x840000fa, 0x00000000, + 0xa6800070, 0xc3800000, 0xc3400080, 0xdf780038, 0xb7b4ffea, 0xc3202002, 0x5b31c8c6, 0xc2e00f88, + 0x5aec100e, 0x990068d8, 0xdb1800f8, 0xdad800f9, 0x00000000, 0xa6820068, 0xc3800000, 0xc3400080, + 0xdf780038, 0xb7b4ffea, 0xc3204002, 0x5b31c8ca, 0xc2e00f90, 0x5aec180c, 0x990068d8, 0xdb1800f8, + 0xdad800f9, 0x00000000, 0xc00048cc, 0xc2800000, 0xce8000f8, 0xc3a00140, 0x5bfc0002, 0x47bc8000, + 0xc1000000, 0xc53c00fe, 0xdbdc00f0, 0x80000028, 0x00000000, 0x800004e8, 0x00000000, 0x8000fd70, + 0xc0004918, 0xd28000f8, 0xc2000000, 0xdf600038, 0x5e600080, 0x840002b2, 0x00000000, 0xc161fffe, + 0x5955fffe, 0x14140000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0xc000480a, 0xca0000f8, 0xc0004912, 0xca4000f8, 0xc0004924, 0xca8000f8, 0xc000498c, 0xcac000f8, + 0xc121fffe, 0x5911fef4, 0x14100000, 0x76250000, 0x76290000, 0x762d0000, 0x840001ea, 0xc0004918, + 0xca4000f8, 0xc28001fe, 0x76290000, 0x5a640002, 0x6a254010, 0x5ee80000, 0x8400001a, 0x6aa54000, + 0x80000010, 0xc62800f8, 0x62818008, 0xc0004918, 0xcf0000f8, 0xc161fffe, 0x5955fffe, 0x14140000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0xc000498c, 0xca4000f8, + 0xc2000002, 0x6a310000, 0x7e010000, 0x76612000, 0xce4000f8, 0xc121fffe, 0x5911fef4, 0x14100000, + 0x6f346000, 0x4771a000, 0x5b744c80, 0xc2800000, 0x58340006, 0xca800078, 0xc2c00000, 0x58340000, + 0xcac000d8, 0xc2400000, 0x5834000a, 0xca420078, 0x6ea82000, 0x42e9e000, 0x6f2ca000, 0x42e56000, + 0x5aec1400, 0xc3990040, 0xc7381c18, 0xc6f80060, 0x990068d8, 0xdb9800f8, 0xdbd800f9, 0x00000000, + 0xdea000f8, 0x46310000, 0x8400fd40, 0xc000495a, 0xc84000f8, 0x00000000, 0xc3c00002, 0x787c2000, + 0xcc4000f8, 0xc0000838, 0xc3800000, 0xcb840028, 0x6c748000, 0x6c544000, 0x4355a000, 0x5b744a00, + 0x5ef80000, 0x8400fca2, 0x58340004, 0xcb0000f8, 0x00000000, 0x00000000, 0xa7060020, 0x00000000, + 0x5ef80002, 0x8400fc62, 0x5834000c, 0xc8800038, 0xc2000000, 0xc000082c, 0xca040028, 0x5a880002, + 0xc2400000, 0xc0004958, 0xce4000f8, 0xb6280018, 0x00000000, 0xc2800000, 0x58340002, 0xc2000000, + 0xca020008, 0xc0004956, 0xce8000f8, 0x5e600000, 0x84001ca2, 0x5e600002, 0x84004062, 0x00000000, + 0x800021d0, 0xc0004958, 0xca0000f8, 0xc0004956, 0xca8000f8, 0x5e200000, 0x84000020, 0xc2500002, + 0xc0000838, 0xce450800, 0x6c748000, 0x6c544000, 0x4355a000, 0x5b744a00, 0x5834000c, 0xc6900038, + 0xcd000038, 0x8000fb38, 0xc2000000, 0xdf600038, 0x5e200080, 0x8400028a, 0x00000000, 0xc161fffe, + 0x5955fffe, 0x14140000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0xc000480c, 0xca0000f8, 0xc0004910, 0xca4000f8, 0xc000492c, 0xca8000f8, 0xc000498e, 0xcac000f8, + 0xc121fffe, 0x5911fef4, 0x14100000, 0x76250000, 0x76290000, 0x76e16000, 0x840001c2, 0xc0004926, + 0xca4000f8, 0xc201fffe, 0x76e16000, 0x5a640002, 0x6ae50010, 0x5f200000, 0x8400001a, 0x6a250000, + 0x80000010, 0xc6e000f8, 0x62014008, 0xc0004926, 0xce8000f8, 0xc161fffe, 0x5955fffe, 0x14140000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0xc000498e, 0xca4000f8, + 0xc2000002, 0x6a290000, 0x7e010000, 0x76612000, 0xce4000f8, 0xc121fffe, 0x5911fef4, 0x14100000, + 0x6eb4a000, 0x4769a000, 0x5b744e20, 0x58340002, 0xc2000000, 0xca0000d8, 0x58340036, 0xc2400000, + 0xca400078, 0x6eb0a000, 0x47298000, 0x5b300e56, 0x5b300004, 0x6e642000, 0x4225e000, 0xc39a8024, + 0xc7380060, 0xc6b81c18, 0x990068d8, 0xdb9800f8, 0xdbd800f9, 0x00000000, 0xc2000000, 0xdf600038, + 0x5e200080, 0x840002da, 0x00000000, 0xc161fffe, 0x5955fffe, 0x14140000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0xc000490e, 0xca0000f8, 0xc000492a, 0xca4000f8, + 0xc0004990, 0xcb0000f8, 0xc000498a, 0xcac000f8, 0xc121fffe, 0x5911fef4, 0x14100000, 0x77218000, + 0x77258000, 0x8400021a, 0xc201fffe, 0x77218000, 0x5aec0002, 0x6b2d0010, 0x5ea00000, 0x8400001a, + 0x6a2d0000, 0x80000010, 0xc72000f8, 0x62016008, 0xc000498a, 0xcec000f8, 0xc161fffe, 0x5955fffe, + 0x14140000, 0x00000000, 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0xc1400000, 0xcd4000f9, 0xcd4000f9, 0xcd4000f9, 0xcd4000f9, 0xcd4000f9, + 0xcd4000f9, 0xcd4000f9, 0xcd4000f9, 0xcd400018, 0x8000be68, 0xc2200004, 0x582c0002, 0xce021008, + 0x582c000c, 0xcfc10838, 0x99007000, 0x582c0002, 0xc94000f8, 0xc1a20000, 0x8000be18, 0xc3e1fffe, + 0x597dfffe, 0x593dfef4, 0x94000001, 0x00000000, 0x00000000, 0x00000000, 0xc0800000, 0xdf4b0038, + 0xc0004900, 0xcb8000f8, 0xc2000000, 0xc000490a, 0xa78000d0, 0xcbc000f8, 0xc1000000, 0xd90000f9, + 0xc1000002, 0xd90c00f8, 0x6ff46000, 0x477da000, 0x5b744c80, 0xc2400000, 0x58340004, 0xca400078, + 0xc0004900, 0xce000000, 0x5a640002, 0x58340004, 0xc6500078, 0xcd000078, 0xc0004914, 0xca4000f8, + 0xc2000002, 0x6a3d0000, 0x72612000, 0xce4000f8, 0xc0000408, 0xce0000f8, 0xa78200c8, 0xc0004908, + 0xcbc000f8, 0xc1000000, 0xd90000f9, 0xc1000002, 0xd90c00f8, 0x6ff4a000, 0x477da000, 0x5b744e20, + 0xc2800000, 0x58340006, 0xca800078, 0xc2000000, 0xc0004900, 0xce002100, 0x5ea80002, 0x58340006, + 0xc6900078, 0xcd000078, 0x5a7c0020, 0xc2000002, 0x6a250000, 0xc0000408, 0xce0000f8, 0xdca800f9, + 0x5ea80000, 0x8400a860, 0x00000000, 0xa4800230, 0x00000000, 0xc3c00000, 0xc000140e, 0xcbc00018, + 0xc3400000, 0xc2400000, 0x6ff86000, 0x47bdc000, 0x5bb84c80, 0x58380008, 0xcb400078, 0x58380006, + 0xca400078, 0x5f740002, 0x58380008, 0xc7500078, 0xcd000078, 0xc2000000, 0x58380004, 0xca020078, + 0xc3000000, 0x5838000c, 0xcb000020, 0x5a640002, 0x46610000, 0x84000010, 0xc2400000, 0x58380006, + 0xc6500078, 0xcd000078, 0xc2000000, 0x5838000a, 0xca020078, 0x5b300002, 0x5838000c, 0xc7100020, + 0xcd000020, 0xc2420020, 0x5a200004, 0x46252000, 0x84000010, 0xc2000000, 0x5838000a, 0xc6101078, + 0xcd021078, 0xc000498c, 0xca4000f8, 0xc2000002, 0x6a3d0000, 0x72612000, 0xce4000f8, 0x5f740000, + 0x84000040, 0xc0004912, 0xca0000f8, 0xc2c00002, 0x6afd6000, 0x7ec16000, 0x762d0000, 0xce0000f8, + 0x5f300020, 0x84000040, 0xc0004924, 0xca0000f8, 0xc2c00002, 0x6afd6000, 0x7ec16000, 0x762d0000, + 0xce0000f8, 0xa4820070, 0xc2400000, 0xc000140e, 0xca408018, 0xc2000002, 0xc0004900, 0xce000000, + 0xc000490a, 0xce4000f8, 0xc1000000, 0xd90000f9, 0xd8400078, 0xc1000004, 0xd90000f9, 0xa48402d8, + 0x00000000, 0xc3c00000, 0xc000140e, 0xcbc10018, 0xc2800000, 0xc2000000, 0x6ff8a000, 0x47bdc000, + 0x5bb84e20, 0x58380036, 0xca800078, 0x58380006, 0xca020078, 0xc3400000, 0x58380036, 0xcb420078, + 0x5aa80002, 0x46a10000, 0x84000010, 0xc2800000, 0x58380036, 0xc6900078, 0xcd000078, 0x5f740002, + 0x58380036, 0xc7501078, 0xcd021078, 0xc000498e, 0xca4000f8, 0xc2000002, 0x6a3d0000, 0x72612000, + 0xce4000f8, 0xc000492a, 0xca8000f8, 0x5e740000, 0x84000040, 0xc0004910, 0xca0000f8, 0xc2c00002, + 0x6afd6000, 0x7ec16000, 0x762d0000, 0xce0000f8, 0x6abd4010, 0xa6800132, 0x00000000, 0x5838003a, + 0xca0000f8, 0x58000002, 0xca4000f8, 0x5838000e, 0x00000000, 0xce0000f9, 0xce4000f8, 0xc2400000, + 0xdd250038, 0xc1000080, 0x45248000, 0xc2400000, 0xc6240078, 0x46510000, 0x00000000, 0xc52400fc, + 0x5d240078, 0xc1000078, 0xc52400fc, 0xc6600078, 0x5c000002, 0xce000078, 0xc000492a, 0xca0000f8, + 0xc2c00002, 0x6afd6000, 0x722d0000, 0xce0000f8, 0xc000492c, 0xca0000f8, 0xc2c00002, 0x6afd6000, + 0x722d0000, 0xce0000f8, 0x80000040, 0xc000492c, 0xca0000f8, 0xc2c00002, 0x6afd6000, 0x7ec16000, + 0x762d0000, 0xce0000f8, 0xa4880088, 0xc2c00000, 0xc000140e, 0xcac20018, 0xc000490e, 0xca4000f8, + 0xc2000002, 0x6a2d0000, 0x7e010000, 0x76612000, 0xce4000f8, 0xc0004990, 0xca4000f8, 0xc2000002, + 0x6a2d0000, 0x72612000, 0xce4000f8, 0xa4860070, 0xc2400000, 0xc000140e, 0xca418018, 0xc2020002, + 0xc0004900, 0xce002100, 0xc0004908, 0xce4000f8, 0xc1000000, 0xd90000f9, 0xd8400078, 0xc1000004, + 0xd90000f9, 0xa48c00e8, 0xc2400000, 0xc000140e, 0xca430018, 0x00000000, 0x00000000, 0x5d240002, + 0x84000058, 0xc00048c4, 0xca0000f8, 0xc00048c6, 0xc1040002, 0x72110000, 0xce0000f8, 0xc1000002, + 0xc00048cc, 0xcd000000, 0x80000060, 0x5d240004, 0x84000050, 0xc00048c8, 0xca0000f8, 0xc00048ca, + 0xc1160002, 0x72110000, 0xce0000f8, 0xc1020002, 0xc00048cc, 0xcd002100, 0xc0001408, 0xcc8000f8, + 0xc10e0002, 0xd90c00f8, 0x8000f668, 0xdfbc00f9, 0xc0004992, 0x99007040, 0xc94000f8, 0xc7d800f8, + 0x00000000, 0xc57000f8, 0x5ef00020, 0x88000158, 0x6f346000, 0x4771a000, 0x5b744c80, 0x58340008, + 0xc2400000, 0xca400078, 0x00000000, 0xc2000000, 0x5a640002, 0xc6500078, 0xcd000078, 0x58340004, + 0xca000078, 0x00000000, 0x00000000, 0x5e200002, 0xc6100078, 0xcd000078, 0xc0004912, 0xca8000f8, + 0xc2400002, 0x6a712000, 0x72a54000, 0xce8000f8, 0x5e200000, 0x84000052, 0xc000480a, 0xca0000f8, + 0xc0000408, 0xca8000f8, 0x76250000, 0x00000000, 0x72a14000, 0xce8000f8, 0x80000038, 0xc0004914, + 0xca0000f8, 0x7e412000, 0x00000000, 0x76250000, 0xce0000f8, 0x800000c8, 0x6ef4a000, 0x476da000, + 0x5b744e20, 0x58340036, 0xc2400000, 0xca420078, 0x00000000, 0xc2000000, 0x5a640002, 0xc6501078, + 0xcd021078, 0x58340006, 0xca000078, 0x00000000, 0x00000000, 0x5a200002, 0xc6100078, 0xcd000078, + 0xc0004910, 0xca4000f8, 0xc2000002, 0x6a2d0000, 0x72612000, 0xce4000f8, 0xc2000002, 0x6a310000, + 0xc000042a, 0xce0000f8, 0xc1040002, 0xd90c00f8, 0x00000000, 0x8000f3d0, 0x00000000, 0xc4980928, + 0x9d000000, 0xc5580028, 0xc0000838, 0xcd8400f8, 0xc1440200, 0xc1c01600, 0xc55c1070, 0xc000100e, + 0x9d000000, 0xcd8000f8, 0xc000100c, 0xcdc000f8, 0xc0004862, 0xc9c000f8, 0x00000000, 0x00000000, + 0xd9d800f9, 0xc0005600, 0x401c0000, 0x5dc05800, 0x88000012, 0x5c000200, 0xcd8000f8, 0xc1f0000a, + 0x715ca000, 0xdd9800f8, 0xdd9c00f9, 0x41d8e000, 0xc5d40260, 0xc0001010, 0xcd4000f8, 0x6c9c8000, + 0x45c8e000, 0x45c8e000, 0x59dc0004, 0xc1601260, 0xc5d40260, 0x9d000000, 0xc0001012, 0xcd4000f8, + 0x00000000, 0x00000000, 0xd95800f8, 0x6d586000, 0x4594c000, 0x59984c80, 0xd99800f9, 0x5818000a, + 0xc1800000, 0xc9800078, 0xc0005400, 0x6d5ca000, 0x401c0000, 0x40180000, 0xc94000f8, 0x58000002, + 0x00000000, 0xc9c000f8, 0xc0004930, 0xcd4000f8, 0xc0004932, 0xcdc000f8, 0x59980004, 0xc1c20020, + 0xb59c0018, 0x00000000, 0xc1800000, 0xdd9c00f9, 0x581c000a, 0xcd800078, 0x581c000c, 0xc1800000, + 0xc9800020, 0xc1c00002, 0xdd9400f8, 0x69d4e000, 0x5d980002, 0xcd800020, 0xc0004924, 0xc98000f8, + 0x00000000, 0x9d000000, 0x00000000, 0x719cc000, 0xcd8000f8, 0xc000492a, 0xc94000f8, 0xc1c00002, + 0x69d8e000, 0x7dc0c000, 0x7558a000, 0xcd4000f8, 0xc000492c, 0xc94000f8, 0xdd8000f9, 0x5800003a, + 0x755ca000, 0x84000108, 0xc94000f9, 0xc98000f8, 0xdd8000f9, 0x5800000e, 0x00000000, 0xcd4000f9, + 0xcd8000f8, 0xc1800000, 0xdd190038, 0xc1000080, 0x45188000, 0xc1800000, 0xc5580078, 0x4590a000, + 0x00000000, 0xc51800fc, 0x5d180078, 0xc1000078, 0xc51800fc, 0xc5940078, 0x5c000002, 0xcd400078, + 0xc000492c, 0xc94000f8, 0xc000492a, 0xc98000f8, 0x715ca000, 0xc000492c, 0xcd4000f8, 0x719cc000, + 0xc000492a, 0xcd8000f8, 0x9cc00000, 0x00000000, 0x00000000, 0x00000000, 0xc0004862, 0xc98000f8, + 0x00000000, 0xc1c00200, 0x4194c000, 0x459ce000, 0x88000012, 0xc5d800f8, 0xc0004862, 0xcd8000f8, + 0xc0001406, 0xc98000f8, 0xc1c00002, 0x9d000000, 0xc5d80a00, 0xc5581048, 0xcd8000f8, 0xc0004930, + 0xc98000f8, 0xc0004932, 0xc9c000f8, 0xc140000e, 0xc5581c18, 0xdd9400f8, 0xc0005600, 0x40140000, + 0x5d405800, 0x88000012, 0x5c000200, 0xcd8000f8, 0x58000002, 0x5d405800, 0x88000012, 0x5c000200, + 0xcdc000f8, 0xdd5400f8, 0xc1c00000, 0x58140006, 0xc9c20078, 0xc1800000, 0x58140000, 0xc98000d8, + 0x6ddc2000, 0xc000491e, 0x41d8e000, 0xcdc000f8, 0xdd9800f8, 0xc1c00022, 0xc5d80d70, 0xdd9400f9, + 0xc5581c18, 0xc000491c, 0xcd8000f8, 0xdd5400f8, 0xc1c00000, 0x58140006, 0xc9c20078, 0xc1800000, + 0x58140004, 0xc9820078, 0x00000000, 0x59dc0002, 0x45d8c000, 0x84000010, 0xc1c00000, 0x9d000000, + 0x58140006, 0xc5d81078, 0xcd821078, 0xc0004860, 0xc94000f8, 0xc1820080, 0xc1d00002, 0x58146b00, + 0xd58000f8, 0x58000002, 0xd58000f9, 0x59540004, 0xb5580018, 0xc0004860, 0xc1400000, 0xcd4000f8, + 0xdd9800f9, 0x9d000000, 0xdd9400f8, 0xc0001404, 0xcdc10800, 0xc1c00000, 0xc1800200, 0x5d980004, + 0xdf5d0048, 0x459ca000, 0x8800fff2, 0xdd8000f9, 0x5800000e, 0x00000000, 0xc94000f9, 0xc98000f8, + 0xc1c00002, 0xc5d43f00, 0xc5d81e00, 0xc0004862, 0xc9c000f8, 0x00000000, 0x00000000, 0x581c5600, + 0x5dc05800, 0x88000012, 0x5c000200, 0xcd4000f8, 0x58000002, 0x5dc05800, 0x88000012, 0x5c000200, + 0xcd8000f8, 0xc0004862, 0xc9c000f8, 0x00000000, 0xc15004c0, 0xc5d40060, 0xdd9c00f8, 0xc5d41c18, + 0xc1c00000, 0xdd8000f9, 0x58000038, 0xc9c00078, 0xdd8000f9, 0xc1800000, 0x58000002, 0xc98000d8, + 0x6ddc2000, 0xc000491c, 0x41d8e000, 0xcd4000f9, 0xcdc000f8, 0xdd9400f9, 0xc1c00000, 0x58140038, + 0xc9c00078, 0xc1800000, 0x58140006, 0xc9820078, 0x00000000, 0x59dc0002, 0x45d8c000, 0x84000010, + 0xc1c00000, 0x9d000000, 0x58140038, 0xc5d80078, 0xcd800078, 0xc1c00000, 0xdf5c0038, 0x5ddc0080, + 0x8400ffea, 0x00000000, 0x9d000000, 0x00000000, 0x00000000, 0x00000000, 0xc160fffe, 0xc0000a10, + 0xc9440060, 0xc1a0fffe, 0x59980e28, 0xc000100c, 0xcd4000f8, 0xc000100e, 0xcd8000f8, 0xc0004962, + 0xc98000f8, 0x00000000, 0xc170000a, 0x7158a000, 0x6c988000, 0x4588c000, 0x4588c000, 0x59980004, + 0xc5940270, 0xc0001010, 0xcd4000f8, 0xc0004946, 0xc94000f8, 0x00000000, 0x00000000, 0x6d58a000, + 0x6d5c4000, 0x459cc000, 0x4594c000, 0xc000494a, 0xc94000f8, 0xc0004948, 0xc9c000f8, 0x4194c000, + 0xc1400012, 0xc55c1818, 0x9d000000, 0xc59c0268, 0xc0001012, 0xcdc000f8, 0xc1400000, 0x58000014, + 0xc9410038, 0xc0004950, 0xc9c000f8, 0xc55800f8, 0xc5940838, 0xc5581078, 0xd99400f8, 0xc000493c, + 0xc94000f8, 0xc0004954, 0xc98000f8, 0x59dc00a8, 0x45d4e000, 0x41d8e000, 0x5d5c0030, 0x88000010, + 0xc1c00030, 0xc1800000, 0xc5d84028, 0xc1400000, 0xc5d40008, 0x5dd40002, 0x84000072, 0x5dd40004, + 0x8400009a, 0x5dd40006, 0x840000c2, 0x5dd80026, 0x840000ea, 0xdd5400f8, 0xdd8000f9, 0x58000008, + 0x40180000, 0xcd4000f8, 0x59980002, 0x8000ffc0, 0xdd5400f8, 0xdd8000f9, 0x58000008, 0x40180000, + 0xcd4000b8, 0x59980002, 0x8000ff88, 0xdd5400f8, 0xdd8000f9, 0x58000008, 0x40180000, 0xcd400078, + 0x59980002, 0x8000ff50, 0xdd5400f8, 0xdd8000f9, 0x58000008, 0x40180000, 0xcd400038, 0x59980002, + 0x8000ff18, 0x00000000, 0x9d000000, 0x00000000, 0x00000000, 0x00000000, 0x58000014, 0xc94000f8, + 0xc0004954, 0xc9c000f8, 0xc0004950, 0xc9400078, 0xdd8000f9, 0x5800002a, 0x5d9c0000, 0x84000052, + 0x5d9c0002, 0x84000052, 0x5d9c0004, 0x8400006a, 0xc55b0038, 0xc55c08b8, 0xcd800039, 0xcdc108b8, + 0x80000060, 0xcd4000f8, 0x80000050, 0xc55900b8, 0xc55c1838, 0xcd8000b9, 0xcdc31838, 0x80000028, + 0xc55a0078, 0xc55c1078, 0xcd800079, 0xcdc21078, 0x9d000000, 0x00000000, 0x00000000, 0x00000000, + 0xc1e00000, 0xa540001a, 0xc0000a14, 0xc1a20002, 0x9d000000, 0xcd863100, 0xc0000a1c, 0xcdc61038, + 0x59540002, 0x6994e018, 0x61c0c008, 0x4194a000, 0x5d940040, 0x88000012, 0xc59400f8, 0x9d000000, + 0xcd4000f8, 0x00000000, 0x00000000, +}; + +static unsigned int firmware_binary_data[] = { +}; + + +#endif // IFXMIPS_PTM_FW_AMAZON_SE_H diff --git a/package/kernel/lantiq/ltq-ptm/src/ifxmips_ptm_fw_ar9.h b/package/kernel/lantiq/ltq-ptm/src/ifxmips_ptm_fw_ar9.h new file mode 100644 index 0000000..a61d313 --- /dev/null +++ b/package/kernel/lantiq/ltq-ptm/src/ifxmips_ptm_fw_ar9.h @@ -0,0 +1,473 @@ +#ifndef IFXMIPS_PTM_FW_AR9_H +#define IFXMIPS_PTM_FW_AR9_H + + +/****************************************************************************** +** +** FILE NAME : ifxmips_ptm_fw_ar9.h +** PROJECT : UEIP +** MODULES : PTM (ADSL) +** +** DATE : 22 OCT 2007 +** AUTHOR : Xu Liang +** DESCRIPTION : PTM Driver (PP32 Firmware) +** COPYRIGHT : Copyright (c) 2006 +** Infineon Technologies AG +** Am Campeon 1-12, 85579 Neubiberg, Germany +** +** This program is free software; you can redistribute it and/or modify +** it under the terms of the GNU General Public License as published by +** the Free Software Foundation; either version 2 of the License, or +** (at your option) any later version. +** +** HISTORY +** $Date $Author $Comment +** 22 OCT 2007 Xu Liang Initiate Version, v00.01 +*******************************************************************************/ + + +#define PTM_FW_VER_MAJOR 0 +#define PTM_FW_VER_MINOR 17 + + +static unsigned int firmware_binary_code[] = { + 0x800004b8, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x8000ffe0, 0x00000000, 0x00000000, 0x00000000, + 0xc1000002, 0xd90c00f8, 0xc2000002, 0xda0800f9, 0x80005270, 0xc2000000, 0xda0800f9, 0x80005210, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x94000001, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x80005a00, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x94000001, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x94000001, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x94000001, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x94000001, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0xc10e0002, 0xd90c00f8, 0xc0004808, 0xc84000f8, 0x80004ee0, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0xc3e1fffe, 0x597dfffe, 0x593dfef4, 0x900004d9, 0x00000000, 0x00000000, 0x00000000, 0x90cc0481, + 0x00000000, 0x00000000, 0x00000000, 0xc3e0a262, 0x5bfc0022, 0xc0004002, 0xcfc000f8, 0xc0004810, + 0xcbc000f8, 0x00000000, 0xc3800000, 0xc7f80038, 0x5fb80000, 0xc7fa0038, 0xc7bfe802, 0x5fb80000, + 0x00000000, 0xc7bff802, 0xdbd400f9, 0xc00049a0, 0xc3800002, 0xa7ca006a, 0xc1200000, 0x5911fffe, + 0xcd0000f9, 0xc1200000, 0x59102042, 0xcd0000f9, 0xc1000004, 0xcd0000f9, 0xc1200000, 0x59103a1e, + 0xcd0000f9, 0x80000060, 0xc121fffe, 0x5911fffe, 0xcd0000f9, 0xc1203db8, 0x5910de82, 0xcd0000f9, + 0xc1000006, 0xcd0000f9, 0xc120385a, 0x591033da, 0xcd0000f9, 0x5fb80002, 0x8800001a, 0x6ffe0010, + 0x8000ff28, 0xdd7c00f9, 0xc3800000, 0xc7f86010, 0x5bb80008, 0xc3540002, 0x777da000, 0xc1000008, + 0x4791c002, 0xcf8000f9, 0xdb900038, 0xc3800008, 0xc3720002, 0x777da000, 0xa7f00028, 0x47b9c002, + 0xc1000000, 0xc7d26010, 0x4391c000, 0xcf8000f8, 0xdb900838, 0xc3c00000, 0xdbc800f9, 0xc0400000, + 0xc11c0000, 0xc000082c, 0xcd05ce00, 0xc11c0002, 0xc000082c, 0xcd05ce00, 0xc0400002, 0xc11c0000, + 0xc000082c, 0xcd05ce00, 0xc11c0002, 0xc000082c, 0xcd05ce00, 0xc0000824, 0x00000000, 0xcbc000f9, + 0xcb8000f9, 0xcb4000f9, 0xcb0000f8, 0xc0004878, 0x5bfc4000, 0xcfc000f9, 0x5bb84000, 0xcf8000f9, + 0x5b744000, 0xcf4000f9, 0x5b304000, 0xcf0000f8, 0xc0000a10, 0x00000000, 0xcbc000f9, 0xcb8000f8, + 0xc0004874, 0x5bfc4000, 0xcfc000f9, 0x5bb84000, 0xcf8000f8, 0xc30001fe, 0xc000140a, 0xcf0000f8, + 0xc3000000, 0x7f018000, 0xc000042e, 0xcf0000f8, 0xc000040e, 0xcf0000f8, 0xc3c1fffe, 0xc000490e, + 0xcfc00078, 0xc000492c, 0xcfc00078, 0xc0004924, 0xcfc00038, 0xc0004912, 0xcfc00038, 0xc000498c, + 0xcfc00038, 0xc000498e, 0xcfc00078, 0xc0004990, 0xcfc00078, 0xc3c00000, 0xc2800004, 0xc3000000, + 0x7f018000, 0x6ff88000, 0x6fd44000, 0x4395c000, 0x5bb87e00, 0xc00049a0, 0xcb0000f8, 0x00000000, + 0x58380006, 0xcf0000f8, 0xc321fffe, 0x5b31fffe, 0x58380024, 0xcf0000f8, 0x5bfc0002, 0xb7e8ff90, + 0x00000000, 0xc3c00000, 0xc2800010, 0x6ff86000, 0x47bdc000, 0x5bb84c80, 0xc3400000, 0x58380004, + 0xcb420078, 0x00000000, 0x58380008, 0xcf400078, 0x5bfc0002, 0xb7e8ffb0, 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0x6c708000, 0x6c544000, + 0x43158000, 0x5b307e00, 0xc2800002, 0x58300004, 0xce800000, 0x6c508000, 0xc0004880, 0x40100000, + 0x5800000e, 0xc90000f8, 0x00000000, 0x00000000, 0x59100002, 0xcd0000f8, 0x00000000, 0x00000000, + 0x00000000, 0xa8e2ffe8, 0x00000000, 0xc1220002, 0xd90c00f8, 0x80000920, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0xa8e2ffe8, 0x00000000, 0xc1220002, 0xd90c00f8, 0xc0004964, 0xca0000f8, + 0x6c7c8000, 0x6c544000, 0x43d5e000, 0x5bfc7e00, 0xdfe400f8, 0x5e200002, 0x84000608, 0x00000000, + 0x583c0004, 0xc2800000, 0xca820078, 0xc0004930, 0xcac000f8, 0x00000000, 0x00000000, 0x6eece000, + 0x6eefc010, 0x46aca000, 0xc1000000, 0xdd500039, 0x6d106010, 0x4550a000, 0xc1000000, 0xdd514201, + 0x4550c000, 0xa95000f1, 0xc00049a6, 0xca0000f8, 0xa94a0023, 0x00000000, 0x6e660000, 0x6e660010, + 0x46612000, 0x840000b2, 0x00000000, 0x6c508000, 0xc0004880, 0x40100000, 0x58000004, 0xc90000f8, + 0x00000000, 0x00000000, 0x59100002, 0xcd0000f8, 0x6c508000, 0xc0004880, 0x40100000, 0x58000006, + 0xc90000f8, 0x00000000, 0x00000000, 0x41148000, 0xcd0000f8, 0x80000720, 0x00000000, 0xa95203c1, + 0xc0001004, 0xcb8000f8, 0xc3400000, 0xdd740039, 0x5f740000, 0x840000d0, 0xc1218e08, 0x5911baf6, + 0x45388000, 0x84000372, 0x00000000, 0x6c508000, 0xc0004880, 0x40100000, 0x58000008, 0xc90000f8, + 0x00000000, 0x00000000, 0x59100002, 0xcd0000f8, 0x6c508000, 0xc0004880, 0x40100000, 0x5800000a, + 0xc90000f8, 0x00000000, 0x00000000, 0x41148000, 0xcd0000f8, 0x80000620, 0x00000000, 0xc000496c, + 0xcb0000f8, 0x583c0026, 0xcac000f8, 0xc0004878, 0xc80400f8, 0x6c908000, 0x41088000, 0x40100000, + 0x58000002, 0xca8000f8, 0x00000000, 0x00000000, 0x6ea90000, 0x5d300008, 0x8800004a, 0x59300002, + 0xc3000000, 0xc5300008, 0x6d104010, 0x40100000, 0xca8000f8, 0x5c000002, 0xcac000f8, 0x5d300000, + 0x8400003a, 0x6f246000, 0x6ae56000, 0xc1000040, 0x45252000, 0x6aa54010, 0x42e96000, 0x583c0026, + 0xcec000f8, 0xc1218e08, 0x5911baf6, 0xc0001004, 0xcd0000f8, 0x593c0026, 0xc000100e, 0xcd000060, + 0xc1340000, 0xc0001010, 0xcd035a00, 0xc1200008, 0xa94a0023, 0xc0001012, 0xc1200004, 0x59100004, + 0xcd0000b8, 0xc1360002, 0xcd037b00, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0xa8e2ffe8, 0x00000000, 0xc1220002, 0xd90c00f8, 0xc0001004, 0xc90000f8, 0x00000000, 0x00000000, + 0x45388000, 0x840000b2, 0x00000000, 0x6c508000, 0xc0004880, 0x40100000, 0x58000008, 0xc90000f8, + 0x00000000, 0x00000000, 0x59100002, 0xcd0000f8, 0x6c508000, 0xc0004880, 0x40100000, 0x5800000a, + 0xc90000f8, 0x00000000, 0x00000000, 0x41148000, 0xcd0000f8, 0x80000360, 0x00000000, 0x6c508000, + 0xc0004880, 0x40100000, 0x58000000, 0xc90000f8, 0x00000000, 0x00000000, 0x59100002, 0xcd0000f8, + 0x6c508000, 0xc0004880, 0x40100000, 0x58000002, 0xc90000f8, 0x00000000, 0x00000000, 0x41148000, + 0xcd0000f8, 0xc0004930, 0xcd800078, 0xc3000000, 0x583c0008, 0xcf0000f8, 0x80000038, 0xc0001004, + 0xca0000f8, 0x583c0006, 0xce4000f8, 0x583c0024, 0xce0000f8, 0xc0004862, 0xc2000000, 0xca000078, + 0xc000493a, 0xca4000f8, 0x00000000, 0x00000000, 0x42254000, 0x5ee80200, 0x88000012, 0xc6e800f8, + 0xc0004000, 0x58003800, 0x40280000, 0xcb8000f8, 0x00000000, 0x583c0022, 0xcf8000f8, 0xc0004862, + 0xce800078, 0xc0001406, 0xcac000f8, 0xc2800002, 0x00000000, 0xc66c1048, 0xc6ac0a00, 0xcec000f8, + 0xc2000000, 0xdf600038, 0x5e600080, 0x8400ffea, 0xc000491c, 0xca4000f8, 0xc000491e, 0xca8000f8, + 0x99006480, 0xda5800f8, 0xda9800f9, 0x00000000, 0xc0004964, 0xcbc000f8, 0x00000000, 0x00000000, + 0x5ffc0000, 0x84000102, 0xc2000000, 0xdf610048, 0x5e6001fe, 0x8800ffe8, 0xc000491a, 0xc98000f8, + 0xc0004862, 0xc94000f8, 0x6d9c6000, 0x45d8e000, 0x59dc4c80, 0x990062e0, 0xd95800f8, 0xd99800f9, + 0xd9d400f8, 0x99006258, 0xc000491c, 0xc1400000, 0xc9420048, 0xc2000000, 0xdf600038, 0x5e600080, + 0x8400ffea, 0xc000491c, 0xca4000f8, 0xc000491e, 0xca8000f8, 0x99006480, 0xda5800f8, 0xda9800f9, + 0x00000000, 0xc0004970, 0xcb4000f8, 0x00000000, 0x00000000, 0x5e740082, 0x8400e6d8, 0x00000000, + 0x8000c018, 0x00000000, 0x6c508000, 0xc0004880, 0x40100000, 0x58000016, 0xc90000f8, 0x00000000, + 0x00000000, 0x59100002, 0xcd0000f8, 0x8000e308, 0x6c6c8000, 0x6c544000, 0x42d56000, 0x5aec7e00, + 0xc000487c, 0xc80400f8, 0x00000000, 0x00000000, 0x40080000, 0xca0000f8, 0xc42400f8, 0x00000000, + 0xa60600f8, 0xc3c00000, 0xc2000000, 0x582c000c, 0xca010038, 0x00000000, 0x00000000, 0x5a200002, + 0xc6100838, 0xcd010838, 0x5e60000e, 0x8400bf00, 0xc2200000, 0x582c0002, 0xce021008, 0x582c000c, + 0xcfc10838, 0x582c0020, 0xcfc21078, 0x582c0010, 0xc1400000, 0xcd4000f9, 0xcd4000f9, 0xcd4000f9, + 0xcd4000f9, 0xcd4000f9, 0xcd4000f9, 0xcd4000f9, 0xcd4000f9, 0xcd400018, 0x8000be68, 0xc2200004, + 0x582c0002, 0xce021008, 0x582c000c, 0xcfc10838, 0x99006ba8, 0x582c0002, 0xc94000f8, 0xc1a20000, + 0x8000be18, 0xc3e1fffe, 0x597dfffe, 0x593dfef4, 0x94000001, 0x00000000, 0x00000000, 0x00000000, + 0xc0800000, 0xdf4b0038, 0xc0004900, 0xcb8000f8, 0xc2000000, 0xc000490a, 0xa78000d0, 0xcbc000f8, + 0xc1000000, 0xd90000f9, 0xc1000002, 0xd90c00f8, 0x6ff46000, 0x477da000, 0x5b744c80, 0xc2400000, + 0x58340004, 0xca400078, 0xc0004900, 0xce000000, 0x5a640002, 0x58340004, 0xc6500078, 0xcd000078, + 0xc0004914, 0xca4000f8, 0xc2000002, 0x6a3d0000, 0x72612000, 0xce4000f8, 0xc0000408, 0xce0000f8, + 0xa78200c8, 0xc0004908, 0xcbc000f8, 0xc1000000, 0xd90000f9, 0xc1000002, 0xd90c00f8, 0x6ff4a000, + 0x477da000, 0x5b747600, 0xc2800000, 0x58340006, 0xca800078, 0xc2000000, 0xc0004900, 0xce002100, + 0x5ea80002, 0x58340006, 0xc6900078, 0xcd000078, 0x5a7c0020, 0xc2000002, 0x6a250000, 0xc0000408, + 0xce0000f8, 0xdca800f9, 0x5ea80000, 0x8400abd0, 0x00000000, 0xa4800230, 0x00000000, 0xc3c00000, + 0xc000140e, 0xcbc00018, 0xc3400000, 0xc2400000, 0x6ff86000, 0x47bdc000, 0x5bb84c80, 0x58380008, + 0xcb400078, 0x58380006, 0xca400078, 0x5f740002, 0x58380008, 0xc7500078, 0xcd000078, 0xc2000000, + 0x58380004, 0xca020078, 0xc3000000, 0x5838000c, 0xcb000020, 0x5a640002, 0x46610000, 0x84000010, + 0xc2400000, 0x58380006, 0xc6500078, 0xcd000078, 0xc2000000, 0x5838000a, 0xca020078, 0x5b300002, + 0x5838000c, 0xc7100020, 0xcd000020, 0xc2420020, 0x5a200004, 0x46252000, 0x84000010, 0xc2000000, + 0x5838000a, 0xc6101078, 0xcd021078, 0xc000498c, 0xca4000f8, 0xc2000002, 0x6a3d0000, 0x72612000, + 0xce4000f8, 0x5f740000, 0x84000040, 0xc0004912, 0xca0000f8, 0xc2c00002, 0x6afd6000, 0x7ec16000, + 0x762d0000, 0xce0000f8, 0x5f300020, 0x84000040, 0xc0004924, 0xca0000f8, 0xc2c00002, 0x6afd6000, + 0x7ec16000, 0x762d0000, 0xce0000f8, 0xa4820070, 0xc2400000, 0xc000140e, 0xca408018, 0xc2000002, + 0xc0004900, 0xce000000, 0xc000490a, 0xce4000f8, 0xc1000000, 0xd90000f9, 0xd8400078, 0xc1000004, + 0xd90000f9, 0xa48402d8, 0x00000000, 0xc3c00000, 0xc000140e, 0xcbc10018, 0xc2800000, 0xc2000000, + 0x6ff8a000, 0x47bdc000, 0x5bb87600, 0x58380036, 0xca800078, 0x58380006, 0xca020078, 0xc3400000, + 0x58380036, 0xcb420078, 0x5aa80002, 0x46a10000, 0x84000010, 0xc2800000, 0x58380036, 0xc6900078, + 0xcd000078, 0x5f740002, 0x58380036, 0xc7501078, 0xcd021078, 0xc000498e, 0xca4000f8, 0xc2000002, + 0x6a3d0000, 0x72612000, 0xce4000f8, 0xc000492a, 0xca8000f8, 0x5e740000, 0x84000040, 0xc0004910, + 0xca0000f8, 0xc2c00002, 0x6afd6000, 0x7ec16000, 0x762d0000, 0xce0000f8, 0x6abd4010, 0xa6800132, + 0x00000000, 0x5838003a, 0xca0000f8, 0x58000002, 0xca4000f8, 0x5838000e, 0x00000000, 0xce0000f9, + 0xce4000f8, 0xc2400000, 0xdd250038, 0xc1000080, 0x45248000, 0xc2400000, 0xc6240078, 0x46510000, + 0x00000000, 0xc52400fc, 0x5d240078, 0xc1000078, 0xc52400fc, 0xc6600078, 0x5c000002, 0xce000078, + 0xc000492a, 0xca0000f8, 0xc2c00002, 0x6afd6000, 0x722d0000, 0xce0000f8, 0xc000492c, 0xca0000f8, + 0xc2c00002, 0x6afd6000, 0x722d0000, 0xce0000f8, 0x80000040, 0xc000492c, 0xca0000f8, 0xc2c00002, + 0x6afd6000, 0x7ec16000, 0x762d0000, 0xce0000f8, 0xa4880088, 0xc2c00000, 0xc000140e, 0xcac20018, + 0xc000490e, 0xca4000f8, 0xc2000002, 0x6a2d0000, 0x7e010000, 0x76612000, 0xce4000f8, 0xc0004990, + 0xca4000f8, 0xc2000002, 0x6a2d0000, 0x72612000, 0xce4000f8, 0xa4860070, 0xc2400000, 0xc000140e, + 0xca418018, 0xc2020002, 0xc0004900, 0xce002100, 0xc0004908, 0xce4000f8, 0xc1000000, 0xd90000f9, + 0xd8400078, 0xc1000004, 0xd90000f9, 0xc0001408, 0xcc8000f8, 0xc10e0002, 0xd90c00f8, 0x8000f750, + 0xdfbc00f9, 0xc0004992, 0x99006be8, 0xc94000f8, 0xc7d800f8, 0x00000000, 0xc57000f8, 0x5ef00020, + 0x88000158, 0x6f346000, 0x4771a000, 0x5b744c80, 0x58340008, 0xc2400000, 0xca400078, 0x00000000, + 0xc2000000, 0x5a640002, 0xc6500078, 0xcd000078, 0x58340004, 0xca000078, 0x00000000, 0x00000000, + 0x5e200002, 0xc6100078, 0xcd000078, 0xc0004912, 0xca8000f8, 0xc2400002, 0x6a712000, 0x72a54000, + 0xce8000f8, 0x5e200000, 0x84000052, 0xc000480a, 0xca0000f8, 0xc0000408, 0xca8000f8, 0x76250000, + 0x00000000, 0x72a14000, 0xce8000f8, 0x80000038, 0xc0004914, 0xca0000f8, 0x7e412000, 0x00000000, + 0x76250000, 0xce0000f8, 0x800000c8, 0x6ef4a000, 0x476da000, 0x5b747600, 0x58340036, 0xc2400000, + 0xca420078, 0x00000000, 0xc2000000, 0x5a640002, 0xc6501078, 0xcd021078, 0x58340006, 0xca000078, + 0x00000000, 0x00000000, 0x5a200002, 0xc6100078, 0xcd000078, 0xc0004910, 0xca4000f8, 0xc2000002, + 0x6a2d0000, 0x72612000, 0xce4000f8, 0xc2000002, 0x6a310000, 0xc000042a, 0xce0000f8, 0xc1040002, + 0xd90c00f8, 0x00000000, 0x8000f4b8, 0x00000000, 0xc4980928, 0x9d000000, 0xc5580028, 0xc0000838, + 0xcd8400f8, 0xc1440200, 0xc1c03800, 0xc55c1070, 0xc000100e, 0x9d000000, 0xcd8000f8, 0xc000100c, + 0xcdc000f8, 0xc0004862, 0xc9c000f8, 0x00000000, 0x00000000, 0xd9d800f9, 0xc0007800, 0x401c0000, + 0x5dc07a00, 0x88000012, 0x5c000200, 0xcd8000f8, 0xc1f0000a, 0x715ca000, 0xdd9800f8, 0xdd9c00f9, + 0x41d8e000, 0xc5d40260, 0xc0001010, 0xcd4000f8, 0x6c9c8000, 0x45c8e000, 0x45c8e000, 0x59dc0004, + 0xc1601260, 0xc5d40260, 0x9d000000, 0xc0001012, 0xcd4000f8, 0x00000000, 0x00000000, 0xd95800f8, + 0x6d586000, 0x4594c000, 0x59984c80, 0xd99800f9, 0x5818000a, 0xc1800000, 0xc9800078, 0xc0007680, + 0x6d5ca000, 0x401c0000, 0x40180000, 0xc94000f8, 0x58000002, 0x00000000, 0xc9c000f8, 0xc0004930, + 0xcd4000f8, 0xc0004932, 0xcdc000f8, 0x59980004, 0xc1c20020, 0xb59c0018, 0x00000000, 0xc1800000, + 0xdd9c00f9, 0x581c000a, 0xcd800078, 0x581c000c, 0xc1800000, 0xc9800020, 0xc1c00002, 0xdd9400f8, + 0x69d4e000, 0x5d980002, 0xcd800020, 0xc0004924, 0xc98000f8, 0x00000000, 0x9d000000, 0x00000000, + 0x719cc000, 0xcd8000f8, 0xc000492a, 0xc94000f8, 0xc1c00002, 0x69d8e000, 0x7dc0c000, 0x7558a000, + 0xcd4000f8, 0xc000492c, 0xc94000f8, 0xdd8000f9, 0x5800003a, 0x755ca000, 0x84000108, 0xc94000f9, + 0xc98000f8, 0xdd8000f9, 0x5800000e, 0x00000000, 0xcd4000f9, 0xcd8000f8, 0xc1800000, 0xdd190038, + 0xc1000080, 0x45188000, 0xc1800000, 0xc5580078, 0x4590a000, 0x00000000, 0xc51800fc, 0x5d180078, + 0xc1000078, 0xc51800fc, 0xc5940078, 0x5c000002, 0xcd400078, 0xc000492c, 0xc94000f8, 0xc000492a, + 0xc98000f8, 0x715ca000, 0xc000492c, 0xcd4000f8, 0x719cc000, 0xc000492a, 0xcd8000f8, 0x9cc00000, + 0x00000000, 0x00000000, 0x00000000, 0xc0004862, 0xc98000f8, 0x00000000, 0xc1c00200, 0x4194c000, + 0x459ce000, 0x88000012, 0xc5d800f8, 0xc0004862, 0xcd8000f8, 0xc0001406, 0xc98000f8, 0xc1c00002, + 0x9d000000, 0xc5d80a00, 0xc5581048, 0xcd8000f8, 0xc0004930, 0xc98000f8, 0xc0004932, 0xc9c000f8, + 0xc140000e, 0xc5581c18, 0xdd9400f8, 0xc0007800, 0x40140000, 0x5d407a00, 0x88000012, 0x5c000200, + 0xcd8000f8, 0x58000002, 0x5d407a00, 0x88000012, 0x5c000200, 0xcdc000f8, 0xdd5400f8, 0xc1c00000, + 0x58140006, 0xc9c20078, 0xc1800000, 0x58140000, 0xc98000d8, 0x6ddc2000, 0xc000491e, 0x41d8e000, + 0xcdc000f8, 0xdd9800f8, 0xc1c00022, 0xc5d80d70, 0xdd9400f9, 0xc5581c18, 0xc000491c, 0xcd8000f8, + 0xdd5400f8, 0xc1c00000, 0x58140006, 0xc9c20078, 0xc1800000, 0x58140004, 0xc9820078, 0x00000000, + 0x59dc0002, 0x45d8c000, 0x84000010, 0xc1c00000, 0x9d000000, 0x58140006, 0xc5d81078, 0xcd821078, + 0xc0004860, 0xc94000f8, 0xc1820080, 0xc1d00002, 0x58147700, 0xd58000f8, 0x58000002, 0xd58000f9, + 0x59540004, 0xb5580018, 0xc0004860, 0xc1400000, 0xcd4000f8, 0xdd9800f9, 0x9d000000, 0xdd9400f8, + 0xc0001404, 0xcdc10800, 0xc1c00000, 0xc1800200, 0x5d980004, 0xdf5d0048, 0x459ca000, 0x8800fff2, + 0xdd8000f9, 0x5800000e, 0x00000000, 0xc94000f9, 0xc98000f8, 0xc1c00002, 0xc5d43f00, 0xc5d81e00, + 0xc0004862, 0xc9c000f8, 0x00000000, 0x00000000, 0x581c7800, 0x5dc07a00, 0x88000012, 0x5c000200, + 0xcd4000f8, 0x58000002, 0x5dc07a00, 0x88000012, 0x5c000200, 0xcd8000f8, 0xc0004862, 0xc9c000f8, + 0x00000000, 0xc15004c0, 0xc5d40060, 0xdd9c00f8, 0xc5d41c18, 0xc1c00000, 0xdd8000f9, 0x58000038, + 0xc9c00078, 0xdd8000f9, 0xc1800000, 0x58000002, 0xc98000d8, 0x6ddc2000, 0xc000491c, 0x41d8e000, + 0xcd4000f9, 0xcdc000f8, 0xdd9400f9, 0xc1c00000, 0x58140038, 0xc9c00078, 0xc1800000, 0x58140006, + 0xc9820078, 0x00000000, 0x59dc0002, 0x45d8c000, 0x84000010, 0xc1c00000, 0x9d000000, 0x58140038, + 0xc5d80078, 0xcd800078, 0xc1c00000, 0xdf5c0038, 0x5ddc0080, 0x8400ffea, 0x00000000, 0x9d000000, + 0x00000000, 0x00000000, 0x00000000, 0xc160fffe, 0xc0000a10, 0xc9440060, 0xc1a0fffe, 0x59983608, + 0xc000100c, 0xcd4000f8, 0xc000100e, 0xcd8000f8, 0xc0004962, 0xc98000f8, 0x00000000, 0xc170000a, + 0x7158a000, 0x6c988000, 0x4588c000, 0x4588c000, 0x59980004, 0xc5940270, 0xc0001010, 0xcd4000f8, + 0xc0004946, 0xc94000f8, 0x00000000, 0x00000000, 0x6d58a000, 0x6d5c4000, 0x459cc000, 0x4594c000, + 0xc000494a, 0xc94000f8, 0xc0004948, 0xc9c000f8, 0x4194c000, 0xc1400012, 0xc55c1818, 0x9d000000, + 0xc59c0268, 0xc0001012, 0xcdc000f8, 0xc1400000, 0x58000014, 0xc9410038, 0xc0004950, 0xc9c000f8, + 0xc55800f8, 0xc5940838, 0xc5581078, 0xd99400f8, 0xc000493c, 0xc94000f8, 0xc0004954, 0xc98000f8, + 0x59dc00a8, 0x45d4e000, 0x41d8e000, 0x5d5c0030, 0x88000010, 0xc1c00030, 0xc1800000, 0xc5d84028, + 0xc1400000, 0xc5d40008, 0x5dd40002, 0x84000072, 0x5dd40004, 0x8400009a, 0x5dd40006, 0x840000c2, + 0x5dd80026, 0x840000ea, 0xdd5400f8, 0xdd8000f9, 0x58000008, 0x40180000, 0xcd4000f8, 0x59980002, + 0x8000ffc0, 0xdd5400f8, 0xdd8000f9, 0x58000008, 0x40180000, 0xcd4000b8, 0x59980002, 0x8000ff88, + 0xdd5400f8, 0xdd8000f9, 0x58000008, 0x40180000, 0xcd400078, 0x59980002, 0x8000ff50, 0xdd5400f8, + 0xdd8000f9, 0x58000008, 0x40180000, 0xcd400038, 0x59980002, 0x8000ff18, 0x00000000, 0x9d000000, + 0x00000000, 0x00000000, 0x00000000, 0x58000014, 0xc94000f8, 0xc0004954, 0xc9c000f8, 0xc0004950, + 0xc9400078, 0xdd8000f9, 0x5800002a, 0x5d9c0000, 0x84000052, 0x5d9c0002, 0x84000052, 0x5d9c0004, + 0x8400006a, 0xc55b0038, 0xc55c08b8, 0xcd800039, 0xcdc108b8, 0x80000060, 0xcd4000f8, 0x80000050, + 0xc55900b8, 0xc55c1838, 0xcd8000b9, 0xcdc31838, 0x80000028, 0xc55a0078, 0xc55c1078, 0xcd800079, + 0xcdc21078, 0x9d000000, 0x00000000, 0x00000000, 0x00000000, 0xc1e00000, 0xa540001a, 0xc0000a14, + 0xc1a20002, 0x9d000000, 0xcd863100, 0xc0000a1c, 0xcdc61038, 0x59540002, 0x6994e018, 0x61c0c008, + 0x4194a000, 0x5d940040, 0x88000012, 0xc59400f8, 0x9d000000, 0xcd4000f8, 0x00000000, 0x00000000, +}; + +static unsigned int firmware_binary_data[] = { +}; + + +#endif // IFXMIPS_PTM_FW_AR9_H diff --git a/package/kernel/lantiq/ltq-ptm/src/ifxmips_ptm_fw_danube.h b/package/kernel/lantiq/ltq-ptm/src/ifxmips_ptm_fw_danube.h new file mode 100644 index 0000000..3451682 --- /dev/null +++ b/package/kernel/lantiq/ltq-ptm/src/ifxmips_ptm_fw_danube.h @@ -0,0 +1,489 @@ +#ifndef IFXMIPS_PTM_FW_DANUBE_H +#define IFXMIPS_PTM_FW_DANUBE_H + + +/****************************************************************************** +** +** FILE NAME : ifxmips_ptm_fw_danube.h +** PROJECT : Danube +** MODULES : PTM (ADSL) +** +** DATE : 1 AUG 2005 +** AUTHOR : Xu Liang +** DESCRIPTION : PTM Driver (PP32 Firmware) +** COPYRIGHT : Copyright (c) 2006 +** Infineon Technologies AG +** Am Campeon 1-12, 85579 Neubiberg, Germany +** +** This program is free software; you can redistribute it and/or modify +** it under the terms of the GNU General Public License as published by +** the Free Software Foundation; either version 2 of the License, or +** (at your option) any later version. +** +** HISTORY +** $Date $Author $Comment +** 4 AUG 2005 Xu Liang Initiate Version +** 23 OCT 2006 Xu Liang Add GPL header. +*******************************************************************************/ + + +#define PTM_FW_VER_MAJOR 0 +#define PTM_FW_VER_MINOR 17 + + +static unsigned int firmware_binary_code[] = { + 0x800004a0, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x8000ffc8, 0x00000000, 0x00000000, 0x00000000, + 0xc1000002, 0xd90c0000, 0xc2000002, 0xda080001, 0x80005618, 0xc2000000, 0xda080001, 0x800055b8, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x94000001, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x80005da8, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x94000001, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x94000001, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x94000001, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x94000001, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0xc10e0002, 0xd90c0000, 0xc0004808, 0xc8400000, 0x80005288, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0xc3e1fffe, 0x597dfffe, 0x593dfef4, 0x900004d9, 0x00000000, 0x00000000, 0x00000000, 0x90cc0481, + 0x00000000, 0x00000000, 0x00000000, 0xc3e02262, 0x5bfc0022, 0xc0004002, 0xcfc00000, 0xc0004810, + 0xcbc00000, 0x00000000, 0xc3800000, 0xc7f80040, 0x5fb80000, 0xc7fa0040, 0xc7bfe80a, 0x5fb80000, + 0x00000000, 0xc7bff80a, 0xdbd40001, 0xc00049a0, 0xc3800002, 0xa7ca004a, 0xc1200000, 0x5911fffe, + 0xcd000001, 0xc1200000, 0x59102042, 0xcd000001, 0xc1000004, 0xcd000001, 0xc1200000, 0x59103a1e, + 0xcd000001, 0x80000048, 0xc121fffe, 0x5911fffe, 0xcd000001, 0xc1203db8, 0x5910de82, 0xcd000001, + 0xc1000006, 0xcd000001, 0xc120385a, 0x591033da, 0xcd000001, 0x5fb80002, 0x88000002, 0x6ffe0010, + 0x8000ff10, 0xdd7c0001, 0xc3800000, 0xc7f86018, 0x5bb80008, 0xc3540002, 0x77f5a000, 0xc1000008, + 0x4539c002, 0xcf800001, 0xdb900040, 0xc3800008, 0xc3720002, 0x77f5a000, 0xa7f00008, 0x47b9c002, + 0xc1000000, 0xc7d26018, 0x4391c000, 0xcf800000, 0xdb900840, 0xc3c00000, 0xdbc80001, 0xc0400000, + 0xc11c0000, 0xc000082c, 0xcd040e08, 0xc11c0002, 0xc000082c, 0xcd040e08, 0xc0400002, 0xc11c0000, + 0xc000082c, 0xcd040e08, 0xc11c0002, 0xc000082c, 0xcd040e08, 0xc0000824, 0x00000000, 0xcbc00001, + 0xcb800001, 0xcb400001, 0xcb000000, 0xc0004878, 0x5bfc4000, 0xcfc00001, 0x5bb84000, 0xcf800001, + 0x5b744000, 0xcf400001, 0x5b304000, 0xcf000000, 0xc0000a10, 0x00000000, 0xcbc00001, 0xcb800000, + 0xc0004874, 0x5bfc4000, 0xcfc00001, 0x5bb84000, 0xcf800000, 0xc30001fe, 0xc000140a, 0xcf000000, + 0xc3000000, 0x7f018000, 0xc000042e, 0xcf000000, 0xc000040e, 0xcf000000, 0xc3c1fffe, 0xc000490e, + 0xcfc00080, 0xc000492c, 0xcfc00080, 0xc0004924, 0xcfc00040, 0xc0004912, 0xcfc00040, 0xc000498c, + 0xcfc00040, 0xc000498e, 0xcfc00080, 0xc0004990, 0xcfc00080, 0xc3c00000, 0xc2800004, 0xc3000000, + 0x7f018000, 0x6ff88000, 0x6fd44000, 0x4395c000, 0x5bb84a00, 0xc00049a0, 0xcb000000, 0x00000000, + 0x58380006, 0xcf000000, 0xc321fffe, 0x5b31fffe, 0x58380024, 0xcf000000, 0x5bfc0002, 0xb7e8ff70, + 0x00000000, 0xc3c00000, 0xc2800010, 0x6ff86000, 0x47f9c000, 0x5bb84c80, 0xc3400000, 0x58380004, + 0xcb420080, 0x00000000, 0x58380008, 0xcf400080, 0x5bfc0002, 0xb7e8ff90, 0x00000000, 0xc3c00000, + 0xc2800004, 0xc3400022, 0xc3000000, 0x7f018000, 0xc2c00016, 0x6ff8a000, 0x47f9c000, 0x5bb84e20, + 0x58380008, 0xcf400040, 0xc00049a8, 0xcb000000, 0x00000000, 0x5838000a, 0xcf000000, 0xc321fffe, + 0x5b31fffe, 0x5838000c, 0xcf000000, 0x58380034, 0xcec00040, 0x5bfc0002, 0xb7e8ff58, 0x00000000, + 0x00000000, 0xc0004840, 0xc3e12624, 0x5bfc2320, 0xcfc00001, 0xc3e02f2c, 0x5bfd2a28, 0xcfc00001, + 0xc3e03734, 0x5bfd3230, 0xcfc00001, 0xc3e13e3c, 0x5bfc3b38, 0xcfc00001, 0xc3e14644, 0x5bfc4340, + 0xcfc00001, 0xc3e04f4c, 0x5bfd4a48, 0xcfc00001, 0xc3e05754, 0x5bfd5250, 0xcfc00001, 0xc3e15e5c, + 0x5bfc5b58, 0xcfc00001, 0xc3e06764, 0x5bfd6260, 0xcfc00001, 0xc3e16e6c, 0x5bfc6b68, 0xcfc00001, + 0xc3e17674, 0x5bfc7370, 0xcfc00001, 0xc3e07f7c, 0x5bfd7a78, 0xcfc00001, 0xc3e18684, 0x5bfc8380, + 0xcfc00001, 0xc3e08f8c, 0x5bfd8a88, 0xcfc00001, 0xc3e09794, 0x5bfd9290, 0xcfc00001, 0xc3e19e9c, + 0x5bfc9b98, 0xcfc00001, 0xc121fffe, 0x5911fef4, 0x15000000, 0x80000010, 0x00000000, 0x80000638, + 0x00000000, 0x8000ffc8, 0xc0004918, 0xd2800000, 0xc2000000, 0xdf600040, 0x5e600080, 0x8400029a, + 0x00000000, 0xc161fffe, 0x5955fffe, 0x15400000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0xc000480a, 0xca000000, 0xc0004912, 0xca400000, 0xc0004924, 0xca800000, + 0xc000498c, 0xcac00000, 0xc121fffe, 0x5911fef4, 0x15000000, 0x76610000, 0x76a10000, 0x76e10000, + 0x840001d2, 0xc0004918, 0xca400000, 0xc28001fe, 0x76a10000, 0x5a640002, 0x6a254010, 0x5ee80000, + 0x84000002, 0x6aa54000, 0x8000fff8, 0xc6280000, 0x62818008, 0xc0004918, 0xcf000000, 0xc161fffe, + 0x5955fffe, 0x15400000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0xc000498c, 0xca400000, 0xc2000002, 0x6a310000, 0x7e010000, 0x76252000, 0xce400000, 0xc121fffe, + 0x5911fef4, 0x15000000, 0x6f346000, 0x4735a000, 0x5b744c80, 0xc2800000, 0x58340006, 0xca800080, + 0xc2c00000, 0x58340000, 0xcac000e0, 0xc2400000, 0x5834000a, 0xca420080, 0x6ea82000, 0x42e9e000, + 0x6f2ca000, 0x42e56000, 0x5aec1400, 0xc3990040, 0xc7381c20, 0xc6f80068, 0x99006840, 0xdb980000, + 0xdbd80001, 0x00000000, 0xdea00000, 0x47210000, 0x8400fd28, 0xc000495a, 0xc8400000, 0x00000000, + 0xc3c00002, 0x7bc42000, 0xcc400000, 0xc0000838, 0xc3800000, 0xcb840030, 0x6c748000, 0x6c544000, + 0x4355a000, 0x5b744a00, 0x5ef80000, 0x8400fc8a, 0x58340004, 0xcb000000, 0x00000000, 0x00000000, + 0xa7060000, 0x00000000, 0x5ef80002, 0x8400fc4a, 0x5834000c, 0xc8800040, 0xc2000000, 0xc000082c, + 0xca040030, 0x5a880002, 0xc2400000, 0xc0004958, 0xce400000, 0xb628fff8, 0x00000000, 0xc2800000, + 0x58340002, 0xc2000000, 0xca020010, 0xc0004956, 0xce800000, 0x5e600000, 0x84001df2, 0x5e600002, + 0x840043da, 0x00000000, 0x80002320, 0xc0004958, 0xca000000, 0xc0004956, 0xca800000, 0x5e200000, + 0x84000008, 0xc2500002, 0xc0000838, 0xce440808, 0x6c748000, 0x6c544000, 0x4355a000, 0x5b744a00, + 0x5834000c, 0xc6900040, 0xcd000040, 0x58340002, 0xc2000000, 0xca020010, 0x00000000, 0x00000000, + 0x5f600000, 0x84000122, 0xc0004818, 0xc8000000, 0x00000000, 0x00000000, 0x5c000000, 0x840000f2, + 0xc11c0000, 0xc000082c, 0xcd040e08, 0xc0000838, 0xc3800000, 0xc2400000, 0xcb840030, 0xca452030, + 0x00000000, 0x42b9a000, 0x5e340022, 0x88000012, 0xc200001e, 0x7635a000, 0x5f740002, 0x8000fff0, + 0x6e642010, 0x4675a000, 0x84000042, 0xc0004818, 0xc8000000, 0x00000000, 0x00000000, 0x5c000000, + 0x84000012, 0x00000000, 0x00000000, 0x00000000, 0x8000ffa0, 0xc11c0002, 0xc000082c, 0xcd040e08, + 0x8000f9b8, 0xc2000000, 0xdf600040, 0x5e200080, 0x84000272, 0x00000000, 0xc161fffe, 0x5955fffe, + 0x15400000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0xc000480c, + 0xca000000, 0xc0004910, 0xca400000, 0xc000492c, 0xca800000, 0xc000498e, 0xcac00000, 0xc121fffe, + 0x5911fef4, 0x15000000, 0x76610000, 0x76a10000, 0x762d6000, 0x840001aa, 0xc0004926, 0xca400000, + 0xc201fffe, 0x762d6000, 0x5a640002, 0x6ae50010, 0x5f200000, 0x84000002, 0x6a250000, 0x8000fff8, + 0xc6e00000, 0x62014008, 0xc0004926, 0xce800000, 0xc161fffe, 0x5955fffe, 0x15400000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0xc000498e, 0xca400000, 0xc2000002, + 0x6a290000, 0x7e010000, 0x76252000, 0xce400000, 0xc121fffe, 0x5911fef4, 0x15000000, 0x6eb4a000, + 0x46b5a000, 0x5b744e20, 0x58340002, 0xc2000000, 0xca0000e0, 0x58340036, 0xc2400000, 0xca400080, + 0x6eb0a000, 0x46b18000, 0x5b300e56, 0x5b300004, 0x6e642000, 0x4225e000, 0xc39a8024, 0xc7380068, + 0xc6b81c20, 0x99006840, 0xdb980000, 0xdbd80001, 0x00000000, 0xc2000000, 0xdf600040, 0x5e200080, + 0x840002c2, 0x00000000, 0xc161fffe, 0x5955fffe, 0x15400000, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0xc000490e, 0xca000000, 0xc000492a, 0xca400000, 0xc0004990, + 0xcb000000, 0xc000498a, 0xcac00000, 0xc121fffe, 0x5911fef4, 0x15000000, 0x76318000, 0x76718000, + 0x84000202, 0xc201fffe, 0x76318000, 0x5aec0002, 0x6b2d0010, 0x5ea00000, 0x84000002, 0x6a2d0000, + 0x8000fff8, 0xc7200000, 0x62016008, 0xc000498a, 0xcec00000, 0xc161fffe, 0x5955fffe, 0x15400000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0xc0004990, 0xca400000, + 0xc2000002, 0x6a2d0000, 0x7e010000, 0x76252000, 0xce400000, 0xc121fffe, 0x5911fef4, 0x15000000, + 0x6ef4a000, 0x46f5a000, 0x5b744e20, 0x58340010, 0xc2000000, 0xca0000e0, 0x58340008, 0xc2400000, + 0xca420080, 0x5834000e, 0xc2800000, 0xca832018, 0xc3c00000, 0x467c8000, 0x6e644010, 0xc7e80004, + 0x42250000, 0x4229e000, 0xc39a8008, 0x58340008, 0xcb801040, 0x58340008, 0xc2800000, 0xca810018, + 0x6ee0a000, 0x46e10000, 0x5a20000a, 0x5a200e28, 0x42290000, 0xc6380068, 0xc6f81c20, 0x99006840, + 0xdb980000, 0xdbd80001, 0x00000000, 0xc000495c, 0xc8400000, 0xc3400000, 0xc3c00002, 0x7bc42000, + 0xcc400000, 0x6c78a000, 0x4479c000, 0x5bb84e20, 0x58380034, 0xcb410040, 0xc0000a28, 0xc3000000, + 0xcb040030, 0xc0000a14, 0xc2c00000, 0x43358000, 0xcac40030, 0xc000490e, 0xca800000, 0x5eec0002, + 0x46f18000, 0x8800f348, 0x6bc5e000, 0x77e94000, 0x8400f330, 0x6c7ca000, 0x447de000, 0x5bfc4e20, + 0x583c0008, 0xc2000000, 0xca020080, 0xc00049aa, 0x00000000, 0xca800001, 0xca400000, 0xc0001008, + 0xce800000, 0xc0001006, 0xce400000, 0x583c000a, 0xca400000, 0x00000000, 0xc000100a, 0xce400000, + 0xc2400006, 0xc0001000, 0xce400000, 0xc2600982, 0x5a643b6e, 0xc0001002, 0xce400000, 0x583c000c, + 0xca400000, 0x00000000, 0xc0001004, 0xce400000, 0x583c000e, 0xcb800000, 0x00000000, 0xc2400000, + 0xc7a40080, 0xc2800000, 0xc7aae028, 0xdaa00001, 0x583c0034, 0xcb800000, 0x00000000, 0xc2c00000, + 0xc7ad0040, 0xc0004978, 0xcec00000, 0xc0800000, 0xc7880040, 0xc3400000, 0xc7b60040, 0xc0004980, + 0xcf400000, 0x4625c000, 0x43a9c000, 0xc2400000, 0xc000497c, 0xce400000, 0xac2c0001, 0xc2800000, + 0x00000000, 0x8000fff8, 0xc2800002, 0xc0004976, 0xce800000, 0xc2c00000, 0xc34000a0, 0xdb5c0001, + 0xc3400002, 0xc000497a, 0xcf400000, 0x5f600000, 0x84000168, 0xde280001, 0xc6a00000, 0x46b9c000, + 0x583c0000, 0xc2800000, 0xca830040, 0xc0000a28, 0xc3000000, 0xcb040030, 0xc3400000, 0xc0004976, + 0x47298000, 0x88000052, 0xcf400000, 0x58880002, 0xc3000000, 0xc0000a14, 0xcb040030, 0x00000000, + 0x00000000, 0xb4b00188, 0x00000000, 0xc0800000, 0x00000000, 0x80000170, 0xc0004980, 0xcb400000, + 0x00000000, 0x00000000, 0x5af40002, 0xafec0080, 0x00000000, 0xc2c00000, 0xc000497a, 0xacec0001, + 0x00000000, 0x00000000, 0xac2c007f, 0xc2800000, 0xce800000, 0x80000000, 0xc2800002, 0xce800000, + 0x5f6c0000, 0x840000d0, 0x00000000, 0x8000fee8, 0x5f780082, 0x88000240, 0xc3000002, 0xc000497c, + 0xcf000000, 0xc2800080, 0xc1000000, 0xdd110040, 0x45294000, 0x46b94000, 0x880001c0, 0x4391a000, + 0xc0004980, 0xcf400000, 0x6f684010, 0x6f77c000, 0x6f77c010, 0xc0004840, 0x40280000, 0xca800000, + 0xc3000000, 0x6f506000, 0x6a908010, 0xc5300040, 0xdb1c0001, 0x8000fe18, 0xc3400000, 0xc0000a10, + 0xcb440068, 0x6cb04000, 0x6f288000, 0x6f744000, 0x42b14000, 0x43694000, 0xc3400000, 0xc6b44068, + 0xc0004000, 0x40340000, 0xc321e000, 0xcf000000, 0x5aa80008, 0x42ad4000, 0xc3400000, 0xc6b44068, + 0xc0004000, 0x40340000, 0xca400000, 0xc3000000, 0xc6f00010, 0xc1400000, 0xddd40041, 0x6f306000, + 0xc13001fe, 0x69308010, 0x7d008000, 0x75252000, 0x6d570000, 0x6970a010, 0x42552000, 0xce400000, + 0x5aa80002, 0x5aec0002, 0xafec0080, 0x00000000, 0xc2c00000, 0x5f6c0000, 0x84000100, 0x00000000, + 0x80000028, 0x4391a000, 0x5f740080, 0xc0004980, 0xcf400000, 0xc3000004, 0xc000497a, 0xcf000000, + 0x58880002, 0xc3400000, 0xc0000a14, 0xcb440030, 0x00000000, 0x00000000, 0xb4b4fff8, 0x00000000, + 0xc0800000, 0xc3400000, 0xc0000a10, 0xcb440068, 0x6cb04000, 0x6f248000, 0x6f744000, 0x42712000, + 0x43654000, 0xc3400000, 0xc6b44068, 0xc0004000, 0x40340000, 0xc3201e00, 0xcf000000, 0x5aa80008, + 0x42ad4000, 0xc000100c, 0xcb400000, 0xc3000000, 0x00000000, 0xc7340068, 0xc300fffe, 0xc7341078, + 0xcf400000, 0xc000100e, 0xcb400000, 0xc3000e28, 0x00000000, 0xc7340068, 0xc300fffe, 0xc7341078, + 0xcf400000, 0xc0001010, 0xcb400000, 0xc3000002, 0x00000000, 0xc7341a08, 0xc7341808, 0xc3000000, + 0xc7341908, 0xc6b40078, 0xcf400000, 0xc0004982, 0xce800000, 0x6c64a000, 0x44652000, 0x5a64000a, + 0xc0001012, 0xcb400000, 0xc2800002, 0x00000000, 0xc6740268, 0xc6340010, 0xc000497c, 0xcb000000, + 0xc6b41808, 0xc6b41b08, 0xc6b41c08, 0xc6b41d08, 0xc7341e08, 0xdd680001, 0x7e814000, 0x6eab2010, + 0x77294000, 0xc6b41f08, 0xc2800000, 0xc6b41908, 0xc3000080, 0x46f18000, 0xc0004982, 0xc9000000, + 0x47b14000, 0x880000ea, 0x41388000, 0xcd000000, 0xc7b41040, 0xc0004994, 0xce800000, 0xde100001, + 0x46108000, 0x84000098, 0xc1000000, 0xdd110040, 0x41388000, 0x412c8000, 0x5d100080, 0xc0004980, + 0xcd000000, 0xc1000002, 0xc000497c, 0xcd000000, 0xc5341e08, 0xdd500001, 0x7d008000, 0xc5373f08, + 0xc000497a, 0xc9000000, 0x42390000, 0x43adc000, 0x59100002, 0xcd000000, 0x80000038, 0x42390000, + 0x80000028, 0xc7341040, 0x41308000, 0xcd000000, 0x42310000, 0xc1000000, 0xc0004994, 0xcd000000, + 0xc0001012, 0xcf400000, 0xc000493c, 0xce000000, 0xc0004984, 0xcf800000, 0xc000497a, 0xca400000, + 0xc000497c, 0xca800000, 0x6c7ca000, 0x447de000, 0x5bfc4e20, 0xc0004976, 0xcac00000, 0xc0004978, + 0xca000000, 0x5eec0002, 0x84000072, 0x42250000, 0xc2400000, 0xc000497a, 0xce400000, 0x583c0000, + 0xc2c00000, 0xcac30040, 0x00000000, 0x00000000, 0x462d6000, 0x88000002, 0x00000000, 0xac280002, + 0xc000497a, 0xce000000, 0xc2000000, 0x5fa80000, 0x840001c2, 0x00000000, 0x6c508000, 0xc0004880, + 0x40100000, 0x58000018, 0xc9000000, 0x00000000, 0x00000000, 0x59100002, 0xcd000000, 0x583c000e, + 0xc2c00000, 0xcac00080, 0xc1000000, 0xdd532209, 0x42d16000, 0x6c508000, 0xc0004880, 0x40100000, + 0x5800001a, 0xc9000000, 0x00000000, 0x00000000, 0x412c8000, 0xcd000000, 0x990068d0, 0xd8580000, + 0xdbd80001, 0x00000000, 0x99006618, 0xc000491c, 0xc1400000, 0xc9420050, 0xc000491c, 0x99006ad0, + 0xc9400001, 0xc9800000, 0x00000000, 0x99006840, 0xd9580000, 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0xc1c00000, + 0x58140006, 0xc9c20080, 0xc1800000, 0x58140000, 0xc98000e0, 0x6ddc2000, 0xc000491e, 0x41d8e000, + 0xcdc00000, 0xdd980000, 0xc1c00022, 0xc5d80d78, 0xdd940001, 0xc5581c20, 0xc000491c, 0xcd800000, + 0xdd540000, 0xc1c00000, 0x58140006, 0xc9c20080, 0xc1800000, 0x58140004, 0xc9820080, 0x00000000, + 0x59dc0002, 0x459cc000, 0x8400fff8, 0xc1c00000, 0x9d000000, 0x58140006, 0xc5d81080, 0xcd801080, + 0xc0004860, 0xc9400000, 0xc1820080, 0xc1d00002, 0x58146b00, 0xd5800000, 0x58000002, 0xd5800001, + 0x59540004, 0xb558fff8, 0xc0004860, 0xc1400000, 0xcd400000, 0xdd980001, 0x9d000000, 0xdd940000, + 0xc0001404, 0xcdc00808, 0xc1c00000, 0xc1800200, 0x5d980004, 0xdf5d0050, 0x45d8a000, 0x8800ffda, + 0xdd800001, 0x5800000e, 0x00000000, 0xc9400001, 0xc9800000, 0xc1c00002, 0xc5d43f08, 0xc5d81e08, + 0xc0004862, 0xc9c00000, 0x00000000, 0x00000000, 0x581c5600, 0x5dc05800, 0x8800fffa, 0x5c000200, + 0xcd400000, 0x58000002, 0x5dc05800, 0x8800fffa, 0x5c000200, 0xcd800000, 0xc0004862, 0xc9c00000, + 0x00000000, 0xc15004c0, 0xc5d40068, 0xdd9c0000, 0xc5d41c20, 0xc1c00000, 0xdd800001, 0x58000038, + 0xc9c00080, 0xdd800001, 0xc1800000, 0x58000002, 0xc98000e0, 0x6ddc2000, 0xc000491c, 0x41d8e000, + 0xcd400001, 0xcdc00000, 0xdd940001, 0xc1c00000, 0x58140038, 0xc9c00080, 0xc1800000, 0x58140006, + 0xc9820080, 0x00000000, 0x59dc0002, 0x459cc000, 0x8400fff8, 0xc1c00000, 0x9d000000, 0x58140038, + 0xc5d80080, 0xcd800080, 0xc1c00000, 0xdf5c0040, 0x5ddc0080, 0x8400ffd2, 0x00000000, 0x9d000000, + 0x00000000, 0x00000000, 0x00000000, 0xc160fffe, 0xc0000a10, 0xc9440068, 0xc1a0fffe, 0x59980e28, + 0xc000100c, 0xcd400000, 0xc000100e, 0xcd800000, 0xc0004962, 0xc9800000, 0x00000000, 0xc170000a, + 0x7194a000, 0x6c988000, 0x4498c000, 0x4498c000, 0x59980004, 0xc5940278, 0xc0001010, 0xcd400000, + 0xc0004946, 0xc9400000, 0x00000000, 0x00000000, 0x6d58a000, 0x6d5c4000, 0x45d8c000, 0x4558c000, + 0xc000494a, 0xc9400000, 0xc0004948, 0xc9c00000, 0x4194c000, 0xc1400012, 0xc55c1820, 0x9d000000, + 0xc59c0270, 0xc0001012, 0xcdc00000, 0xc1400000, 0x58000014, 0xc9410040, 0xc0004950, 0xc9c00000, + 0xc5580000, 0xc5940840, 0xc5581080, 0xd9940000, 0xc000493c, 0xc9400000, 0xc0004954, 0xc9800000, + 0x59dc00a8, 0x455ce000, 0x41d8e000, 0x5d5c0030, 0x8800fff8, 0xc1c00030, 0xc1800000, 0xc5d84030, + 0xc1400000, 0xc5d40010, 0x5dd40002, 0x8400005a, 0x5dd40004, 0x84000082, 0x5dd40006, 0x840000aa, + 0x5dd80026, 0x840000d2, 0xdd540000, 0xdd800001, 0x58000008, 0x40180000, 0xcd400000, 0x59980002, + 0x8000ffa8, 0xdd540000, 0xdd800001, 0x58000008, 0x40180000, 0xcd4000c0, 0x59980002, 0x8000ff70, + 0xdd540000, 0xdd800001, 0x58000008, 0x40180000, 0xcd400080, 0x59980002, 0x8000ff38, 0xdd540000, + 0xdd800001, 0x58000008, 0x40180000, 0xcd400040, 0x59980002, 0x8000ff00, 0x00000000, 0x9d000000, + 0x00000000, 0x00000000, 0x00000000, 0x58000014, 0xc9400000, 0xc0004954, 0xc9c00000, 0xc0004950, + 0xc9400080, 0xdd800001, 0x5800002a, 0x5d9c0000, 0x8400003a, 0x5d9c0002, 0x8400003a, 0x5d9c0004, + 0x84000052, 0xc55b0040, 0xc55c08c0, 0xcd800041, 0xcdc008c0, 0x80000048, 0xcd400000, 0x80000038, + 0xc55900c0, 0xc55c1840, 0xcd8000c1, 0xcdc01840, 0x80000010, 0xc55a0080, 0xc55c1080, 0xcd800081, + 0xcdc01080, 0x9d000000, 0x00000000, 0x00000000, 0x00000000, 0xc1e00000, 0xa540fffa, 0xc0000a14, + 0xc1a20002, 0x9d000000, 0xcd841108, 0xc0000a1c, 0xcdc41040, 0x59540002, 0x6994e018, 0x61c0c008, + 0x4194a000, 0x5d940040, 0x8800fffa, 0xc5940000, 0x9d000000, 0xcd400000, 0x00000000, 0x00000000, +}; + +static unsigned int firmware_binary_data[] = { +}; + + +#endif // IFXMIPS_PTM_FW_DANUBE_H diff --git a/package/kernel/lantiq/ltq-ptm/src/ifxmips_ptm_fw_regs_adsl.h b/package/kernel/lantiq/ltq-ptm/src/ifxmips_ptm_fw_regs_adsl.h new file mode 100644 index 0000000..d6bdfd9 --- /dev/null +++ b/package/kernel/lantiq/ltq-ptm/src/ifxmips_ptm_fw_regs_adsl.h @@ -0,0 +1,284 @@ +/****************************************************************************** +** +** FILE NAME : ifxmips_ptm_fw_regs_adsl.h +** PROJECT : UEIP +** MODULES : PTM +** +** DATE : 7 Jul 2009 +** AUTHOR : Xu Liang +** DESCRIPTION : PTM driver header file (firmware register for ADSL) +** COPYRIGHT : Copyright (c) 2006 +** Infineon Technologies AG +** Am Campeon 1-12, 85579 Neubiberg, Germany +** +** This program is free software; you can redistribute it and/or modify +** it under the terms of the GNU General Public License as published by +** the Free Software Foundation; either version 2 of the License, or +** (at your option) any later version. +** +** HISTORY +** $Date $Author $Comment +** 07 JUL 2009 Xu Liang Init Version +*******************************************************************************/ + + + +#ifndef IFXMIPS_PTM_FW_REGS_ADSL_H +#define IFXMIPS_PTM_FW_REGS_ADSL_H + + + +#if defined(CONFIG_DANUBE) + #include "ifxmips_ptm_fw_regs_danube.h" +#elif defined(CONFIG_AMAZON_SE) + #include "ifxmips_ptm_fw_regs_amazon_se.h" +#elif defined(CONFIG_AR9) + #include "ifxmips_ptm_fw_regs_ar9.h" +#elif defined(CONFIG_VR9) + #error VR9 is not ADSL PTM mode! +#else + #error Platform is not specified! +#endif + + + +/* + * MIB Table Maintained by Firmware + */ + +struct wan_mib_table { + unsigned int wrx_correct_pdu; /* 0 */ + unsigned int wrx_correct_pdu_bytes; /* 1 */ + unsigned int wrx_tccrc_err_pdu; /* 2 */ + unsigned int wrx_tccrc_err_pdu_bytes; /* 3 */ + unsigned int wrx_ethcrc_err_pdu; /* 4 */ + unsigned int wrx_ethcrc_err_pdu_bytes; /* 5 */ + unsigned int wrx_nodesc_drop_pdu; /* 6 */ + unsigned int wrx_len_violation_drop_pdu; /* 7 */ + unsigned int wrx_idle_bytes; /* 8 */ + unsigned int wrx_nonidle_cw; /* 9 */ + unsigned int wrx_idle_cw; /* A */ + unsigned int wrx_err_cw; /* B */ + unsigned int wtx_total_pdu; /* C */ + unsigned int wtx_total_bytes; /* D */ + unsigned int res0; /* E */ + unsigned int res1; /* F */ +}; + + +/* + * Host-PPE Communication Data Structure + */ + +#if defined(__BIG_ENDIAN) + + struct fw_ver_id { + unsigned int family :4; + unsigned int fwtype :4; + unsigned int interface :4; + unsigned int fwmode :4; + unsigned int major :8; + unsigned int minor :8; + }; + + struct wrx_port_cfg_status { + /* 0h */ + unsigned int mfs :16; + unsigned int res0 :12; + unsigned int dmach :3; + unsigned int res1 :1; + + /* 1h */ + unsigned int res2 :14; + unsigned int local_state :2; // init with 0, written by firmware only + unsigned int res3 :15; + unsigned int partner_state :1; // init with 0, written by firmware only + + }; + + struct wrx_dma_channel_config { + /* 0h */ + unsigned int res3 :1; + unsigned int res4 :2; + unsigned int res5 :1; + unsigned int desba :28; + /* 1h */ + unsigned int res1 :16; + unsigned int res2 :16; + /* 2h */ + unsigned int deslen :16; + unsigned int vlddes :16; + }; + + struct wtx_port_cfg { + /* 0h */ + unsigned int tx_cwth2 :8; + unsigned int tx_cwth1 :8; + unsigned int res0 :16; + }; + + struct wtx_dma_channel_config { + /* 0h */ + unsigned int res3 :1; + unsigned int res4 :2; + unsigned int res5 :1; + unsigned int desba :28; + + /* 1h */ + unsigned int res1 :16; + unsigned int res2 :16; + + /* 2h */ + unsigned int deslen :16; + unsigned int vlddes :16; + }; + + struct eth_efmtc_crc_cfg { + /* 0h */ + unsigned int res0 :6; + unsigned int tx_eth_crc_gen :1; + unsigned int tx_tc_crc_gen :1; + unsigned int tx_tc_crc_len :8; + unsigned int res1 :5; + unsigned int rx_eth_crc_present :1; + unsigned int rx_eth_crc_check :1; + unsigned int rx_tc_crc_check :1; + unsigned int rx_tc_crc_len :8; + }; + + /* DMA descriptor */ + struct rx_descriptor { + /* 0 - 3h */ + unsigned int own :1; + unsigned int c :1; + unsigned int sop :1; + unsigned int eop :1; + unsigned int res1 :3; + unsigned int byteoff :2; + unsigned int res2 :2; + unsigned int id :4; + unsigned int err :1; + unsigned int datalen :16; + /* 4 - 7h */ + unsigned int res3 :4; + unsigned int dataptr :28; + }; + + struct tx_descriptor { + /* 0 - 3h */ + unsigned int own :1; + unsigned int c :1; + unsigned int sop :1; + unsigned int eop :1; + unsigned int byteoff :5; + unsigned int res1 :5; + unsigned int iscell :1; + unsigned int clp :1; + unsigned int datalen :16; + /* 4 - 7h */ + unsigned int res2 :4; + unsigned int dataptr :28; + }; + +#else /* defined(__BIG_ENDIAN) */ + + struct wrx_port_cfg_status { + /* 0h */ + unsigned int res1 :1; + unsigned int dmach :3; + unsigned int res0 :12; + unsigned int mfs :16; + + /* 1h */ + unsigned int partner_state :1; + unsigned int res3 :15; + unsigned int local_state :2; + unsigned int res2 :14; + }; + + struct wrx_dma_channel_config { + /* 0h */ + unsigned int desba :28; + unsigned int res5 :1; + unsigned int res4 :2; + unsigned int res3 :1; + /* 1h */ + unsigned int res2 :16; + unsigned int res1 :16; + /* 2h */ + unsigned int vlddes :16; + unsigned int deslen :16; + }; + + struct wtx_port_cfg { + /* 0h */ + unsigned int res0 :16; + unsigned int tx_cwth1 :8; + unsigned int tx_cwth2 :8; + }; + + struct wtx_dma_channel_config { + /* 0h */ + unsigned int desba :28; + unsigned int res5 :1; + unsigned int res4 :2; + unsigned int res3 :1; + /* 1h */ + unsigned int res2 :16; + unsigned int res1 :16; + /* 2h */ + unsigned int vlddes :16; + unsigned int deslen :16; + }; + + struct eth_efmtc_crc_cfg { + /* 0h */ + unsigned int rx_tc_crc_len :8; + unsigned int rx_tc_crc_check :1; + unsigned int rx_eth_crc_check :1; + unsigned int rx_eth_crc_present :1; + unsigned int res1 :5; + unsigned int tx_tc_crc_len :8; + unsigned int tx_tc_crc_gen :1; + unsigned int tx_eth_crc_gen :1; + unsigned int res0 :6; + }; + + /* DMA descriptor */ + struct rx_descriptor { + /* 4 - 7h */ + unsigned int dataptr :28; + unsigned int res3 :4; + /* 0 - 3h */ + unsigned int datalen :16; + unsigned int err :1; + unsigned int id :4; + unsigned int res2 :2; + unsigned int byteoff :2; + unsigned int res1 :3; + unsigned int eop :1; + unsigned int sop :1; + unsigned int c :1; + unsigned int own :1; + }; + + struct tx_descriptor { + /* 4 - 7h */ + unsigned int dataptr :28; + unsigned int res2 :4; + /* 0 - 3h */ + unsigned int datalen :16; + unsigned int clp :1; + unsigned int iscell :1; + unsigned int res1 :5; + unsigned int byteoff :5; + unsigned int eop :1; + unsigned int sop :1; + unsigned int c :1; + unsigned int own :1; + }; +#endif /* defined(__BIG_ENDIAN) */ + + + +#endif // IFXMIPS_PTM_FW_REGS_ADSL_H diff --git a/package/kernel/lantiq/ltq-ptm/src/ifxmips_ptm_fw_regs_amazon_se.h b/package/kernel/lantiq/ltq-ptm/src/ifxmips_ptm_fw_regs_amazon_se.h new file mode 100644 index 0000000..1219b6b --- /dev/null +++ b/package/kernel/lantiq/ltq-ptm/src/ifxmips_ptm_fw_regs_amazon_se.h @@ -0,0 +1,48 @@ +/****************************************************************************** +** +** FILE NAME : ifxmips_ptm_fw_regs_amazon_se.h +** PROJECT : UEIP +** MODULES : PTM +** +** DATE : 7 Jul 2009 +** AUTHOR : Xu Liang +** DESCRIPTION : PTM driver header file (firmware register for Amazon-SE) +** COPYRIGHT : Copyright (c) 2006 +** Infineon Technologies AG +** Am Campeon 1-12, 85579 Neubiberg, Germany +** +** This program is free software; you can redistribute it and/or modify +** it under the terms of the GNU General Public License as published by +** the Free Software Foundation; either version 2 of the License, or +** (at your option) any later version. +** +** HISTORY +** $Date $Author $Comment +** 07 JUL 2009 Xu Liang Init Version +*******************************************************************************/ + + + +#ifndef IFXMIPS_PTM_FW_REGS_AMAZON_SE_H +#define IFXMIPS_PTM_FW_REGS_AMAZON_SE_H + + + +/* + * Host-PPE Communication Data Address Mapping + */ +#define FW_VER_ID ((volatile struct fw_ver_id *) SB_BUFFER(0x2401)) +#define CFG_WAN_WRDES_DELAY SB_BUFFER(0x2404) +#define CFG_WRX_DMACH_ON SB_BUFFER(0x2405) +#define CFG_WTX_DMACH_ON SB_BUFFER(0x2406) +#define CFG_WRX_LOOK_BITTH SB_BUFFER(0x2407) +#define CFG_ETH_EFMTC_CRC ((volatile struct eth_efmtc_crc_cfg *) SB_BUFFER(0x2408)) +#define WAN_MIB_TABLE ((volatile struct wan_mib_table*) SB_BUFFER(0x2440)) +#define WRX_PORT_CONFIG(i) ((volatile struct wrx_port_cfg_status*) SB_BUFFER(0x2500 + (i) * 20)) +#define WRX_DMA_CHANNEL_CONFIG(i) ((volatile struct wrx_dma_channel_config*) SB_BUFFER(0x2640 + (i) * 7)) +#define WTX_PORT_CONFIG(i) ((volatile struct wtx_port_cfg*) SB_BUFFER(0x2710 + (i) * 31)) +#define WTX_DMA_CHANNEL_CONFIG(i) ((volatile struct wtx_dma_channel_config*) SB_BUFFER(0x2711 + (i) * 31)) + + + +#endif // IFXMIPS_PTM_FW_REGS_AMAZON_SE_H diff --git a/package/kernel/lantiq/ltq-ptm/src/ifxmips_ptm_fw_regs_ar9.h b/package/kernel/lantiq/ltq-ptm/src/ifxmips_ptm_fw_regs_ar9.h new file mode 100644 index 0000000..43f4da9 --- /dev/null +++ b/package/kernel/lantiq/ltq-ptm/src/ifxmips_ptm_fw_regs_ar9.h @@ -0,0 +1,48 @@ +/****************************************************************************** +** +** FILE NAME : ifxmips_ptm_fw_regs_ar9.h +** PROJECT : UEIP +** MODULES : PTM +** +** DATE : 7 Jul 2009 +** AUTHOR : Xu Liang +** DESCRIPTION : PTM driver header file (firmware register for AR9) +** COPYRIGHT : Copyright (c) 2006 +** Infineon Technologies AG +** Am Campeon 1-12, 85579 Neubiberg, Germany +** +** This program is free software; you can redistribute it and/or modify +** it under the terms of the GNU General Public License as published by +** the Free Software Foundation; either version 2 of the License, or +** (at your option) any later version. +** +** HISTORY +** $Date $Author $Comment +** 07 JUL 2009 Xu Liang Init Version +*******************************************************************************/ + + + +#ifndef IFXMIPS_PTM_FW_REGS_AR9_H +#define IFXMIPS_PTM_FW_REGS_AR9_H + + + +/* + * Host-PPE Communication Data Address Mapping + */ +#define FW_VER_ID ((volatile struct fw_ver_id *) SB_BUFFER(0x2001)) +#define CFG_WAN_WRDES_DELAY SB_BUFFER(0x2404) +#define CFG_WRX_DMACH_ON SB_BUFFER(0x2405) +#define CFG_WTX_DMACH_ON SB_BUFFER(0x2406) +#define CFG_WRX_LOOK_BITTH SB_BUFFER(0x2407) +#define CFG_ETH_EFMTC_CRC ((volatile struct eth_efmtc_crc_cfg *) SB_BUFFER(0x2408)) +#define WAN_MIB_TABLE ((volatile struct wan_mib_table*) SB_BUFFER(0x2440)) +#define WRX_PORT_CONFIG(i) ((volatile struct wrx_port_cfg_status*) SB_BUFFER(0x3F00 + (i) * 20)) +#define WRX_DMA_CHANNEL_CONFIG(i) ((volatile struct wrx_dma_channel_config*) SB_BUFFER(0x2640 + (i) * 7)) +#define WTX_PORT_CONFIG(i) ((volatile struct wtx_port_cfg*) SB_BUFFER(0x3B00 + (i) * 31)) +#define WTX_DMA_CHANNEL_CONFIG(i) ((volatile struct wtx_dma_channel_config*) SB_BUFFER(0x3B01 + (i) * 31)) + + + +#endif // IFXMIPS_PTM_FW_REGS_AR9_H diff --git a/package/kernel/lantiq/ltq-ptm/src/ifxmips_ptm_fw_regs_danube.h b/package/kernel/lantiq/ltq-ptm/src/ifxmips_ptm_fw_regs_danube.h new file mode 100644 index 0000000..d8685f3 --- /dev/null +++ b/package/kernel/lantiq/ltq-ptm/src/ifxmips_ptm_fw_regs_danube.h @@ -0,0 +1,48 @@ +/****************************************************************************** +** +** FILE NAME : ifxmips_ptm_fw_regs_danube.h +** PROJECT : UEIP +** MODULES : PTM +** +** DATE : 7 Jul 2009 +** AUTHOR : Xu Liang +** DESCRIPTION : PTM driver header file (firmware register for Danube) +** COPYRIGHT : Copyright (c) 2006 +** Infineon Technologies AG +** Am Campeon 1-12, 85579 Neubiberg, Germany +** +** This program is free software; you can redistribute it and/or modify +** it under the terms of the GNU General Public License as published by +** the Free Software Foundation; either version 2 of the License, or +** (at your option) any later version. +** +** HISTORY +** $Date $Author $Comment +** 07 JUL 2009 Xu Liang Init Version +*******************************************************************************/ + + + +#ifndef IFXMIPS_PTM_FW_REGS_DANUBE_H +#define IFXMIPS_PTM_FW_REGS_DANUBE_H + + + +/* + * Host-PPE Communication Data Address Mapping + */ +#define FW_VER_ID ((volatile struct fw_ver_id *) SB_BUFFER(0x2001)) +#define CFG_WAN_WRDES_DELAY SB_BUFFER(0x2404) +#define CFG_WRX_DMACH_ON SB_BUFFER(0x2405) +#define CFG_WTX_DMACH_ON SB_BUFFER(0x2406) +#define CFG_WRX_LOOK_BITTH SB_BUFFER(0x2407) +#define CFG_ETH_EFMTC_CRC ((volatile struct eth_efmtc_crc_cfg *) SB_BUFFER(0x2408)) +#define WAN_MIB_TABLE ((volatile struct wan_mib_table*) SB_BUFFER(0x2440)) +#define WRX_PORT_CONFIG(i) ((volatile struct wrx_port_cfg_status*) SB_BUFFER(0x2500 + (i) * 20)) +#define WRX_DMA_CHANNEL_CONFIG(i) ((volatile struct wrx_dma_channel_config*) SB_BUFFER(0x2640 + (i) * 7)) +#define WTX_PORT_CONFIG(i) ((volatile struct wtx_port_cfg*) SB_BUFFER(0x2710 + (i) * 31)) +#define WTX_DMA_CHANNEL_CONFIG(i) ((volatile struct wtx_dma_channel_config*) SB_BUFFER(0x2711 + (i) * 31)) + + + +#endif // IFXMIPS_PTM_FW_REGS_DANUBE_H diff --git a/package/kernel/lantiq/ltq-ptm/src/ifxmips_ptm_fw_regs_vdsl.h b/package/kernel/lantiq/ltq-ptm/src/ifxmips_ptm_fw_regs_vdsl.h new file mode 100644 index 0000000..e357197 --- /dev/null +++ b/package/kernel/lantiq/ltq-ptm/src/ifxmips_ptm_fw_regs_vdsl.h @@ -0,0 +1,278 @@ +/****************************************************************************** +** +** FILE NAME : ifxmips_ptm_fw_regs_vdsl.h +** PROJECT : UEIP +** MODULES : PTM +** +** DATE : 7 Jul 2009 +** AUTHOR : Xu Liang +** DESCRIPTION : PTM driver header file (firmware register for VDSL) +** COPYRIGHT : Copyright (c) 2006 +** Infineon Technologies AG +** Am Campeon 1-12, 85579 Neubiberg, Germany +** +** This program is free software; you can redistribute it and/or modify +** it under the terms of the GNU General Public License as published by +** the Free Software Foundation; either version 2 of the License, or +** (at your option) any later version. +** +** HISTORY +** $Date $Author $Comment +** 07 JUL 2009 Xu Liang Init Version +*******************************************************************************/ + + + +#ifndef IFXMIPS_PTM_FW_REGS_VDSL_H +#define IFXMIPS_PTM_FW_REGS_VDSL_H + + + +#if defined(CONFIG_DANUBE) + #error Danube is not VDSL PTM mode! +#elif defined(CONFIG_AMAZON_SE) + #error Amazon-SE is not VDSL PTM mode! +#elif defined(CONFIG_AR9) + #error AR9 is not VDSL PTM mode! +#elif defined(CONFIG_VR9) + #include "ifxmips_ptm_fw_regs_vr9.h" +#else + #error Platform is not specified! +#endif + + + +/* + * MIB Table Maintained by Firmware + */ + +struct wan_rx_mib_table { + unsigned int res1[2]; + unsigned int wrx_dropdes_pdu; + unsigned int wrx_total_bytes; + unsigned int res2[4]; + // wrx_total_pdu is implemented with hardware counter (not used by PTM TC) + // check register "TC_RX_MIB_CMD" + // "HEC_INC" used to increase preemption Gamma interface (wrx_total_pdu) + // "AIIDLE_INC" used to increase normal Gamma interface (wrx_total_pdu) +}; + +struct wan_tx_mib_table { + //unsigned int wtx_total_pdu; // version before 0.26 + //unsigned int small_pkt_drop_cnt; + //unsigned int total_pkt_drop_cnt; + unsigned int wrx_total_pdu; // version 0.26 and onwards + unsigned int wrx_total_bytes; + unsigned int wtx_total_pdu; + unsigned int wtx_total_bytes; + + unsigned int wtx_cpu_dropsmall_pdu; + unsigned int wtx_cpu_dropdes_pdu; + unsigned int wtx_fast_dropsmall_pdu; + unsigned int wtx_fast_dropdes_pdu; +}; + + +/* + * Host-PPE Communication Data Structure + */ + +#if defined(__BIG_ENDIAN) + + struct fw_ver_id { + unsigned int family :4; + unsigned int fwtype :4; + unsigned int interface :4; + unsigned int fwmode :4; + unsigned int major :8; + unsigned int minor :8; + }; + + struct cfg_std_data_len { + unsigned int res1 :14; + unsigned int byte_off :2; // byte offset in RX DMA channel + unsigned int data_len :16; // data length for standard size packet buffer + }; + + struct tx_qos_cfg { + unsigned int time_tick :16; // number of PP32 cycles per basic time tick + unsigned int overhd_bytes :8; // number of overhead bytes per packet in rate shaping + unsigned int eth1_eg_qnum :4; // number of egress QoS queues (< 8); + unsigned int eth1_burst_chk :1; // always 1, more accurate WFQ + unsigned int eth1_qss :1; // 1: FW QoS, 0: HW QoS + unsigned int shape_en :1; // 1: enable rate shaping, 0: disable + unsigned int wfq_en :1; // 1: WFQ enabled, 0: strict priority enabled + }; + + struct psave_cfg { + unsigned int res1 :15; + unsigned int start_state :1; // 1: start from partial PPE reset, 0: start from full PPE reset + unsigned int res2 :15; + unsigned int sleep_en :1; // 1: enable sleep mode, 0: disable sleep mode + }; + + struct eg_bwctrl_cfg { + unsigned int fdesc_wm :16; // if free descriptors in QoS/Swap channel is less than this watermark, large size packets are discarded + unsigned int class_len :16; // if packet length is not less than this value, the packet is recognized as large packet + }; + + struct test_mode { + unsigned int res1 :30; + unsigned int mib_clear_mode :1; // 1: MIB counter is cleared with TPS-TC software reset, 0: MIB counter not cleared + unsigned int test_mode :1; // 1: test mode, 0: normal mode + }; + + struct gpio_mode { + unsigned int res1 :3; + unsigned int gpio_bit_bc1 :5; + unsigned int res2 :3; + unsigned int gpio_bit_bc0 :5; + + unsigned int res3 :7; + unsigned int gpio_bc1_en :1; + + unsigned int res4 :7; + unsigned int gpio_bc0_en :1; + }; + + struct gpio_wm_cfg { + unsigned int stop_wm_bc1 :8; + unsigned int start_wm_bc1 :8; + unsigned int stop_wm_bc0 :8; + unsigned int start_wm_bc0 :8; + }; + + struct rx_bc_cfg { + unsigned int res1 :14; + unsigned int local_state :2; // 0: local receiver is "Looking", 1: local receiver is "Freewheel Sync False", 2: local receiver is "Synced", 3: local receiver is "Freewheel Sync Truee" + unsigned int res2 :15; + unsigned int remote_state :1; // 0: remote receiver is "Out-of-Sync", 1: remote receiver is "Synced" + unsigned int to_false_th :16; // the number of consecutive "Miss Sync" for leaving "Freewheel Sync False" to "Looking" (default 3) + unsigned int to_looking_th :16; // the number of consecutive "Miss Sync" for leaving "Freewheel Sync True" to "Freewheel Sync False" (default 7) + unsigned int res_word[30]; + }; + + struct rx_gamma_itf_cfg { + unsigned int res1 :31; + unsigned int receive_state :1; // 0: "Out-of-Fragment", 1: "In-Fragment" + unsigned int res2 :16; + unsigned int rx_min_len :8; // min length of packet, padding if packet length is smaller than this value + unsigned int rx_pad_en :1; // 0: padding disabled, 1: padding enabled + unsigned int res3 :2; + unsigned int rx_eth_fcs_ver_dis :1; // 0: ETH FCS verification is enabled, 1: disabled + unsigned int rx_rm_eth_fcs :1; // 0: ETH FCS field is not removed, 1: ETH FCS field is removed + unsigned int rx_tc_crc_ver_dis :1; // 0: TC CRC verification enabled, 1: disabled + unsigned int rx_tc_crc_size :2; // 0: 0-bit, 1: 16-bit, 2: 32-bit + unsigned int rx_eth_fcs_result; // if the ETH FCS result matches this magic number, then the packet is valid packet + unsigned int rx_tc_crc_result; // if the TC CRC result matches this magic number, then the packet is valid packet + unsigned int rx_crc_cfg :16; // TC CRC config, please check the description of SAR context data structure in the hardware spec + unsigned int res4 :16; + unsigned int rx_eth_fcs_init_value; // ETH FCS initialization value + unsigned int rx_tc_crc_init_value; // TC CRC initialization value + unsigned int res_word1; + unsigned int rx_max_len_sel :1; // 0: normal, the max length is given by MAX_LEN_NORMAL, 1: fragment, the max length is given by MAX_LEN_FRAG + unsigned int res5 :2; + unsigned int rx_edit_num2 :4; // number of bytes to be inserted/removed + unsigned int rx_edit_pos2 :7; // first byte position to be edited + unsigned int rx_edit_type2 :1; // 0: remove, 1: insert + unsigned int rx_edit_en2 :1; // 0: disable insertion or removal of data, 1: enable + unsigned int res6 :3; + unsigned int rx_edit_num1 :4; // number of bytes to be inserted/removed + unsigned int rx_edit_pos1 :7; // first byte position to be edited + unsigned int rx_edit_type1 :1; // 0: remove, 1: insert + unsigned int rx_edit_en1 :1; // 0: disable insertion or removal of data, 1: enable + unsigned int res_word2[2]; + unsigned int rx_inserted_bytes_1l; + unsigned int rx_inserted_bytes_1h; + unsigned int rx_inserted_bytes_2l; + unsigned int rx_inserted_bytes_2h; + int rx_len_adj; // the packet length adjustment, it is sign integer + unsigned int res_word3[16]; + }; + + struct tx_bc_cfg { + unsigned int fill_wm :16; // default 2 + unsigned int uflw_wm :16; // default 2 + unsigned int res_word[31]; + }; + + struct tx_gamma_itf_cfg { + unsigned int res_word1; + unsigned int res1 :8; + unsigned int tx_len_adj :4; // 4 * (not TX_ETH_FCS_GEN_DIS) + TX_TC_CRC_SIZE + unsigned int tx_crc_off_adj :4; // 4 + TX_TC_CRC_SIZE + unsigned int tx_min_len :8; // min length of packet, if length is less than this value, packet is padded + unsigned int res2 :3; + unsigned int tx_eth_fcs_gen_dis :1; // 0: ETH FCS generation enabled, 1: disabled + unsigned int res3 :2; + unsigned int tx_tc_crc_size :2; // 0: 0-bit, 1: 16-bit, 2: 32-bit + unsigned int res4 :24; + unsigned int queue_mapping :8; // TX queue attached to this Gamma interface + unsigned int res_word2; + unsigned int tx_crc_cfg :16; // TC CRC config, please check the description of SAR context data structure in the hardware spec + unsigned int res5 :16; + unsigned int tx_eth_fcs_init_value; // ETH FCS initialization value + unsigned int tx_tc_crc_init_value; // TC CRC initialization value + unsigned int res_word3[25]; + }; + + struct wtx_qos_q_desc_cfg { + unsigned int threshold :8; + unsigned int length :8; + unsigned int addr :16; + unsigned int rd_ptr :16; + unsigned int wr_ptr :16; + }; + + struct wtx_eg_q_shaping_cfg { + unsigned int t :8; + unsigned int w :24; + unsigned int s :16; + unsigned int r :16; + unsigned int res1 :8; + unsigned int d :24; // ppe internal variable + unsigned int res2 :8; + unsigned int tick_cnt :8; // ppe internal variable + unsigned int b :16; // ppe internal variable + }; + + /* DMA descriptor */ + struct rx_descriptor { + /* 0 - 3h */ + unsigned int own :1; // 0: Central DMA TX or MIPS, 1: PPE + unsigned int c :1; // PPE tells current descriptor is complete + unsigned int sop :1; + unsigned int eop :1; + unsigned int res1 :3; + unsigned int byteoff :2; + unsigned int res2 :7; + unsigned int datalen :16; + /* 4 - 7h */ + unsigned int res3 :4; + unsigned int dataptr :28; // byte address + }; + + struct tx_descriptor { + /* 0 - 3h */ + unsigned int own :1; // CPU path - 0: MIPS, 1: PPE Dispatcher, Fastpath - 0: PPE Dispatcher, 1: Central DMA, QoS Queue - 0: PPE Dispatcher, 1: PPE DMA, SWAP Channel - 0: MIPS, 1: PPE Dispatcher + unsigned int c :1; // MIPS or central DMA tells PPE the current descriptor is complete + unsigned int sop :1; + unsigned int eop :1; + unsigned int byteoff :5; + unsigned int qid :4; // TX Queue ID, bit 3 is reserved + unsigned int res1 :3; + unsigned int datalen :16; + /* 4 - 7h */ + unsigned int small :1; // 0: standard size, 1: less than standard size + unsigned int res2 :3; + unsigned int dataptr :28; // byte address + }; + +#else /* defined(__BIG_ENDIAN) */ + #error structures are defined in big endian +#endif /* defined(__BIG_ENDIAN) */ + + + +#endif // IFXMIPS_PTM_FW_REGS_VDSL_H + diff --git a/package/kernel/lantiq/ltq-ptm/src/ifxmips_ptm_fw_regs_vr9.h b/package/kernel/lantiq/ltq-ptm/src/ifxmips_ptm_fw_regs_vr9.h new file mode 100644 index 0000000..a640cfb --- /dev/null +++ b/package/kernel/lantiq/ltq-ptm/src/ifxmips_ptm_fw_regs_vr9.h @@ -0,0 +1,90 @@ +/****************************************************************************** +** +** FILE NAME : ifxmips_ptm_fw_regs_vr9.h +** PROJECT : UEIP +** MODULES : PTM +** +** DATE : 7 Jul 2009 +** AUTHOR : Xu Liang +** DESCRIPTION : PTM driver header file (firmware register for VR9) +** COPYRIGHT : Copyright (c) 2006 +** Infineon Technologies AG +** Am Campeon 1-12, 85579 Neubiberg, Germany +** +** This program is free software; you can redistribute it and/or modify +** it under the terms of the GNU General Public License as published by +** the Free Software Foundation; either version 2 of the License, or +** (at your option) any later version. +** +** HISTORY +** $Date $Author $Comment +** 07 JUL 2009 Xu Liang Init Version +*******************************************************************************/ + + + +#ifndef IFXMIPS_PTM_FW_REGS_VR9_H +#define IFXMIPS_PTM_FW_REGS_VR9_H + + + +/* + * Host-PPE Communication Data Address Mapping + */ +#define FW_VER_ID ((volatile struct fw_ver_id *) SB_BUFFER(0x2001)) +#define CFG_STD_DATA_LEN ((volatile struct cfg_std_data_len *) SB_BUFFER(0x2011)) +#define TX_QOS_CFG ((volatile struct tx_qos_cfg *) SB_BUFFER(0x2012)) +#define EG_BWCTRL_CFG ((volatile struct eg_bwctrl_cfg *) SB_BUFFER(0x2013)) +#define PSAVE_CFG ((volatile struct psave_cfg *) SB_BUFFER(0x2014)) +#define GPIO_ADDR SB_BUFFER(0x2019) +#define GPIO_MODE ((volatile struct gpio_mode *) SB_BUFFER(0x201C)) +#define GPIO_WM_CFG ((volatile struct gpio_wm_cfg *) SB_BUFFER(0x201D)) +#define TEST_MODE ((volatile struct test_mode *) SB_BUFFER(0x201F)) +#define WTX_QOS_Q_DESC_CFG(i) ((volatile struct wtx_qos_q_desc_cfg *) SB_BUFFER(0x2FF0 + (i) * 2)) /* i < 8 */ +#define WTX_EG_Q_PORT_SHAPING_CFG(i) ((volatile struct wtx_eg_q_shaping_cfg *) SB_BUFFER(0x2680 + (i) * 4)) /* i < 1 */ +#define WTX_EG_Q_SHAPING_CFG(i) ((volatile struct wtx_eg_q_shaping_cfg *) SB_BUFFER(0x2684 + (i) * 4)) /* i < 8 */ +#define TX_QUEUE_CFG(i) WTX_EG_Q_PORT_SHAPING_CFG(i) // i < 9 +#define RX_BC_CFG(i) ((volatile struct rx_bc_cfg *) SB_BUFFER(0x3E80 + (i) * 0x20)) // i < 2 +#define TX_BC_CFG(i) ((volatile struct tx_bc_cfg *) SB_BUFFER(0x3EC0 + (i) * 0x20)) // i < 2 +#define RX_GAMMA_ITF_CFG(i) ((volatile struct rx_gamma_itf_cfg *) SB_BUFFER(0x3D80 + (i) * 0x20)) // i < 4 +#define TX_GAMMA_ITF_CFG(i) ((volatile struct tx_gamma_itf_cfg *) SB_BUFFER(0x3E00 + (i) * 0x20)) // i < 4 +#define WAN_RX_MIB_TABLE(i) ((volatile struct wan_rx_mib_table *) SB_BUFFER(0x5B00 + (i) * 8)) // i < 4 +#define WAN_TX_MIB_TABLE(i) ((volatile struct wan_tx_mib_table *) SB_BUFFER(0x5B20 + (i) * 8)) // i < 8 +#define TX_CTRL_K_TABLE(i) SB_BUFFER(0x47F0 + (i)) // i < 16 +// following MIB for debugging purpose +#define RECEIVE_NON_IDLE_CELL_CNT(i) SB_BUFFER(5020 + (i)) +#define RECEIVE_IDLE_CELL_CNT(i) SB_BUFFER(5022 + (i)) +#define TRANSMIT_CELL_CNT(i) SB_BUFFER(5024 + (i)) +#define FP_RECEIVE_PKT_CNT SB_BUFFER(5026) + +#define UTP_CFG SB_BUFFER(0x2018) // bit 0~3 - 0x0F: in showtime, 0x00: not in showtime + +/* + * Descriptor Base Address + */ +#define CPU_TO_WAN_TX_DESC_BASE ((volatile struct tx_descriptor *)SB_BUFFER(0x3D00)) +#define __ETH_WAN_TX_QUEUE_NUM g_wanqos_en +#define __ETH_WAN_TX_QUEUE_LEN ((WAN_TX_DESC_NUM_TOTAL / __ETH_WAN_TX_QUEUE_NUM) < 256 ? (WAN_TX_DESC_NUM_TOTAL / __ETH_WAN_TX_QUEUE_NUM) : 255) +#define __ETH_WAN_TX_DESC_BASE(i) (0x5C00 + (i) * 2 * __ETH_WAN_TX_QUEUE_LEN) +#define WAN_TX_DESC_BASE(i) ((volatile struct tx_descriptor *)SB_BUFFER(__ETH_WAN_TX_DESC_BASE(i))) // i < __ETH_WAN_TX_QUEUE_NUM, __ETH_WAN_TX_QUEUE_LEN each queue +#define WAN_SWAP_DESC_BASE ((volatile struct tx_descriptor *)SB_BUFFER(0x2E80)) +#define FASTPATH_TO_WAN_TX_DESC_BASE ((volatile struct tx_descriptor *)SB_BUFFER(0x2580)) +#define DMA_RX_CH1_DESC_BASE FASTPATH_TO_WAN_TX_DESC_BASE +#define WAN_RX_DESC_BASE ((volatile struct rx_descriptor *)SB_BUFFER(0x2600)) +#define DMA_TX_CH1_DESC_BASE WAN_RX_DESC_BASE + +/* + * Descriptor Number + */ +#define CPU_TO_WAN_TX_DESC_NUM 64 +#define WAN_TX_DESC_NUM __ETH_WAN_TX_QUEUE_LEN +#define WAN_SWAP_DESC_NUM 64 +#define WAN_TX_DESC_NUM_TOTAL 512 +#define FASTPATH_TO_WAN_TX_DESC_NUM 64 +#define DMA_RX_CH1_DESC_NUM FASTPATH_TO_WAN_TX_DESC_NUM +#define WAN_RX_DESC_NUM 64 +#define DMA_TX_CH1_DESC_NUM WAN_RX_DESC_NUM + + + +#endif // IFXMIPS_PTM_FW_REGS_VR9_H diff --git a/package/kernel/lantiq/ltq-ptm/src/ifxmips_ptm_fw_vr9.h b/package/kernel/lantiq/ltq-ptm/src/ifxmips_ptm_fw_vr9.h new file mode 100644 index 0000000..b895ee8 --- /dev/null +++ b/package/kernel/lantiq/ltq-ptm/src/ifxmips_ptm_fw_vr9.h @@ -0,0 +1,380 @@ +#ifndef IFXMIPS_PTM_FW_VR9_H +#define IFXMIPS_PTM_FW_VR9_H + + +/****************************************************************************** +** +** FILE NAME : ifxmips_ptm_fw_vr9.h +** PROJECT : UEIP +** MODULES : PTM (VDSL) +** +** DATE : 22 OCT 2007 +** AUTHOR : Xu Liang +** DESCRIPTION : PTM Driver (PP32 Firmware) +** COPYRIGHT : Copyright (c) 2006 +** Infineon Technologies AG +** Am Campeon 1-12, 85579 Neubiberg, Germany +** +** This program is free software; you can redistribute it and/or modify +** it under the terms of the GNU General Public License as published by +** the Free Software Foundation; either version 2 of the License, or +** (at your option) any later version. +** +** HISTORY +** $Date $Author $Comment +** 22 OCT 2007 Xu Liang Initiate Version, v00.01 +*******************************************************************************/ + + +#define PTM_FW_VER_MAJOR 0 +#define PTM_FW_VER_MINOR 30 + + +static unsigned int firmware_binary_code[] = { + 0x80000980, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x8000ffe0, 0x00000000, 0x00000000, 0x00000000, + 0x94000001, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0xc1c20002, 0xd9cc00f8, 0xc0006950, 0xcbc000f8, 0xc0004024, 0xc8c000f8, 0xc0006950, 0x5bfc0002, + 0xcfc000f8, 0xa4c252a2, 0x00000000, 0x00000000, 0x800007a0, 0x00000000, 0x00000000, 0x00000000, + 0x94000001, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x94000001, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x94000001, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x94000001, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x94000001, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x94000001, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x94000001, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x94000001, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x94000001, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x94000001, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x94000001, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x94000001, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x94000001, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x94000001, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x94000001, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0xc0e1fffe, 0x58cdfffe, 0xc1e1fffa, 0x59ddfffe, 0x94000001, 0x00000000, 0x00000000, 0x00000000, + 0xc0e1fffe, 0x58cdfffe, 0xc1e1fffa, 0x59ddfffe, 0x900009a1, 0x00000000, 0x00000000, 0x00000000, + 0x90cc0941, 0x00000000, 0x00000000, 0x00000000, 0xc3e0e2a2, 0x5bfc003c, 0xc0004002, 0xcfc000f8, + 0xc3c00000, 0xc0004024, 0xcbc20078, 0x00000000, 0x00000000, 0xc1c00000, 0xd9c400f9, 0xdbc40078, + 0xc1c00006, 0xd9c400f9, 0xc3c0fc10, 0xc0006952, 0xcfc000f8, 0xc3c00000, 0xc3400000, 0xc3000040, + 0xc2c00080, 0x6ff8a000, 0x5bb87d00, 0x5838001c, 0xcf4000f8, 0x5838001e, 0xcec000f8, 0x58380020, + 0xcf4000f8, 0x58380022, 0xcf0000f8, 0x5bfc0002, 0x5ebc0004, 0x8400ffa0, 0x00000000, 0xc1e1fffe, + 0x59ddfffa, 0x141c0000, 0xc1c00000, 0xc000691c, 0xcdc000f8, 0xab64002a, 0xc3c00000, 0xab66001a, + 0xc3c00002, 0x80001130, 0xc1c00002, 0xc000691c, 0xcdc000f8, 0x6ff8a000, 0x5bb87d00, 0x58380004, + 0xcb4000f8, 0xc2800000, 0x58380000, 0xca820008, 0xc000e824, 0xc3000000, 0xcb3c0070, 0x6f5c8000, + 0x41f4e000, 0x431d8000, 0x5b304000, 0xc000e828, 0xc1c00000, 0xc9fc0070, 0x00000000, 0xc0004000, + 0x41f4e000, 0x401c0000, 0xcac000f8, 0x5de80004, 0x84000880, 0xa6c607ea, 0x00000000, 0x6fe42000, + 0xc6e4a000, 0x6e60a000, 0x5a207b00, 0xc1800000, 0x58200000, 0xc9800000, 0xc2800000, 0xc6e80010, + 0x5dd80000, 0x8400003a, 0x5de80008, 0xc6a82012, 0xc1c00004, 0x45e8e000, 0x88000030, 0x80000558, + 0x5de80004, 0xc6a8010a, 0x5de80008, 0x84000538, 0x58380000, 0xc1c00002, 0xcdc00000, 0x58200000, + 0xc1c00002, 0xcdc00000, 0x5de80002, 0xcdc00002, 0xc000ea14, 0xc1e20000, 0xcdfe3100, 0xc000fb60, + 0xc1c00002, 0xcdfc0000, 0xc0006940, 0xc9c000f8, 0x403c0000, 0x00000000, 0x59dc0002, 0xcdc000f8, + 0xc1c00004, 0x45e8e000, 0x880000fa, 0x58200020, 0xc9c000f8, 0xc0c00018, 0xc1000000, 0xa5c0002a, + 0xc1400080, 0x5de80000, 0xc6ccf930, 0xc54c1932, 0x5de80000, 0xc1c0000a, 0xc5cc1230, 0xc5cc3202, + 0x58200022, 0xc9c000f8, 0xc74c0b30, 0xc7cc0008, 0xc5cc0528, 0xc1800000, 0xc6982000, 0xc1c00000, + 0xc69c0000, 0x71d8e000, 0xc5cc0400, 0x98404c78, 0xc5d00000, 0x7d80e000, 0xc5d00100, 0x5dd80002, + 0x84000388, 0xc1c00000, 0xc6ddc030, 0x59dc0006, 0xc5ec0e30, 0xc0c00018, 0xc1000004, 0x59dc0002, + 0xc5cc1230, 0xc74c0b30, 0xc7cc0008, 0xc0000088, 0x441ce000, 0xc5cc1930, 0xa6cc02b0, 0xc1c80002, + 0x70dc6000, 0xc1400000, 0xc6d5c030, 0x5d540002, 0x6d5c4010, 0x431c0000, 0xc88000f8, 0xc1c00000, + 0xc55c0008, 0xc0000006, 0x441ce000, 0x6ddc6000, 0x689c4010, 0xc1c001fe, 0x749c4000, 0x59540002, + 0xc1c000fe, 0x749c4000, 0x5c880020, 0xc48c1930, 0x4148c000, 0x59980002, 0x5dd80088, 0x8800002a, + 0x58200000, 0xc1c00000, 0xcdc00000, 0x800000c8, 0xc1400000, 0x6d9c4010, 0x431c0000, 0xc94000f8, + 0xc1c00000, 0xc59c0008, 0xc0000006, 0x441ce000, 0x6ddc6000, 0x695ca010, 0xc1c001fe, 0x755ca000, + 0x00000000, 0x00000000, 0x5dd40000, 0x84000018, 0x59980002, 0x8000ff48, 0x59980002, 0xc0800002, + 0x5dd400a0, 0xc4902100, 0xc4ac2602, 0x4588c002, 0xdbc800f9, 0xda4800f8, 0xda1000f9, 0x90404391, + 0x58200020, 0xc9c000f8, 0x58200022, 0xc94000f8, 0x5ddc0002, 0xc1c00000, 0xc5cc1932, 0xc6ddc030, + 0x59dc0002, 0x98404c78, 0xc5cc1230, 0xc54c0528, 0xc4d08000, 0xa5020072, 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0xc0006906, 0xcd4000f8, + 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x8000ff60, 0xc08000a0, 0x74d0c000, 0x84000090, + 0x78d0c000, 0x8400006a, 0x61800018, 0x6180e008, 0x441cc000, 0x84000060, 0x5d940000, 0x84000050, + 0x60c04008, 0xa48a0040, 0x9c400000, 0x61004008, 0x58880040, 0x00000000, 0xa5400018, 0x00000000, + 0xc0800080, 0x9c400000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, + 0xc000f412, 0xc9c000f8, 0xc1800000, 0xc0800000, 0xa5c004e8, 0xc5d82028, 0x6d886000, 0x59089800, + 0x5810000e, 0xc9c3c000, 0x59489400, 0xd9b800f8, 0xa5c0044a, 0x58140008, 0xc98000f8, 0xc0c07b00, + 0xc0800000, 0x6d9ca000, 0x40dc6000, 0xd9b800f8, 0x580c0002, 0xc8808000, 0x00000000, 0x00000000, + 0xa480004a, 0x580c0004, 0xc98000f8, 0x58140002, 0xc88000f8, 0x00000000, 0x00000000, 0x4498e000, + 0x84000110, 0xc1c00000, 0x580c0002, 0xc9c04000, 0x00000000, 0x00000000, 0xa5c0004a, 0x580c0006, + 0xc98000f8, 0x58140004, 0xc88000f8, 0x00000000, 0x00000000, 0x4498e000, 0x840000a0, 0xc0800000, + 0x58100002, 0xc8800078, 0x580c001e, 0xc94000f8, 0xc1800000, 0x580c0002, 0xc9810038, 0x40944000, + 0xa4be0052, 0xc1400000, 0x4498e000, 0x88000118, 0x580c0002, 0xc940e000, 0x00000000, 0x00000000, + 0xa54000ca, 0xc1c00000, 0x00000000, 0x00000000, 0x00000000, 0xdf9400f8, 0x00000000, 0x00000000, + 0xc1800000, 0xc5582000, 0xa5400042, 0xc000fb64, 0xc1c00002, 0xcdd80000, 0xc000facc, 0xc1c40002, + 0xcdd84200, 0x80000220, 0xc000fb64, 0xc1c20002, 0xcdd82100, 0xc000facc, 0xc1c60002, 0xcdd86300, + 0x800001e8, 0x580c0002, 0xc9c10038, 0x00000000, 0x00000000, 0x589c0000, 0xc000690a, 0xc94000f8, + 0xc1c00000, 0x5810000e, 0xc9c000e0, 0x59944c00, 0x58180000, 0xcc800078, 0x58180002, 0xcdc000e0, + 0x58180000, 0xc1fa0002, 0xcdc3bd00, 0x58180000, 0xc1f80002, 0xcdc39c00, 0x58180000, 0xc1fe0000, + 0xcdc3ff00, 0x59540004, 0xc1c00100, 0x45d4e000, 0xc1c00000, 0xc5d400fe, 0xc000690a, 0xcd4000f8, + 0xc000e408, 0xc1c00002, 0xcdc000f8, 0x5810000e, 0xc1fe0000, 0xcdc3ff00, 0xdf9400f8, 0xc1800000, + 0x58100002, 0xc9800078, 0x6d486000, 0x5888b600, 0x58080006, 0xc9c000f8, 0x00000000, 0x00000000, + 0x419cc000, 0x58080006, 0xcd8000f8, 0xc1800000, 0xc5582000, 0xa540002a, 0xc000fb60, 0xc1c40002, + 0xcdd84200, 0x80000020, 0xc000fb60, 0xc1c60002, 0xcdd86300, 0xdf9400f8, 0xc1800002, 0x00000000, + 0x00000000, 0x5dd40040, 0xc000690e, 0x44180004, 0xc88000f8, 0x6994e000, 0x7dc0e000, 0x749c4000, + 0xcc8000f8, 0x9c400000, 0x00000000, 0x00000000, 0x00000000, 0xc3c00000, 0xc4fc8018, 0xc3800000, + 0x6fb44000, 0x5b744d08, 0xc3000000, 0x58340006, 0xcb020038, 0xc2c00000, 0xc2800000, 0x5f300002, + 0x84000080, 0x58340006, 0xcac00078, 0x58340002, 0xca800078, 0xc2000000, 0x58340002, 0xca020078, + 0x42e92000, 0x00000000, 0x4624e000, 0xc62400fc, 0x58340000, 0xcb030038, 0x58340006, 0xce400078, + 0x58340006, 0x6f1e0000, 0xcdc21038, 0x5bb80002, 0x47bce000, 0x8800ff1a, 0x8000b410, 0x00000000, + 0x00000000, 0x00000000,}; + +static unsigned int firmware_binary_data[] = { +}; + + +#endif // IFXMIPS_PTM_FW_VR9_H diff --git a/package/kernel/lantiq/ltq-ptm/src/ifxmips_ptm_ppe_amazon_se.h b/package/kernel/lantiq/ltq-ptm/src/ifxmips_ptm_ppe_amazon_se.h new file mode 100644 index 0000000..f912039 --- /dev/null +++ b/package/kernel/lantiq/ltq-ptm/src/ifxmips_ptm_ppe_amazon_se.h @@ -0,0 +1,186 @@ +/****************************************************************************** +** +** FILE NAME : ifxmips_ptm_ppe_amazon_se.h +** PROJECT : UEIP +** MODULES : PTM +** +** DATE : 7 Jul 2009 +** AUTHOR : Xu Liang +** DESCRIPTION : PTM driver header file (PPE register for Amazon-SE) +** COPYRIGHT : Copyright (c) 2006 +** Infineon Technologies AG +** Am Campeon 1-12, 85579 Neubiberg, Germany +** +** This program is free software; you can redistribute it and/or modify +** it under the terms of the GNU General Public License as published by +** the Free Software Foundation; either version 2 of the License, or +** (at your option) any later version. +** +** HISTORY +** $Date $Author $Comment +** 07 JUL 2009 Xu Liang Init Version +*******************************************************************************/ + + + +#ifndef IFXMIPS_PTM_PPE_AMAZON_SE_H +#define IFXMIPS_PTM_PPE_AMAZON_SE_H + + + +/* + * FPI Configuration Bus Register and Memory Address Mapping + */ +#define IFX_PPE (KSEG1 | 0x1E180000) +#define PP32_DEBUG_REG_ADDR(i, x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x0000) << 2))) +#define PPM_INT_REG_ADDR(i, x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x0030) << 2))) +#define PP32_INTERNAL_RES_ADDR(i, x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x0040) << 2))) +#define CDM_CODE_MEMORY(i, x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x1000) << 2))) +#define PPE_REG_ADDR(x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x4000) << 2))) +#define CDM_DATA_MEMORY(i, x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x5000) << 2))) +#define PPM_INT_UNIT_ADDR(x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x6000) << 2))) +#define PPM_TIMER0_ADDR(x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x6100) << 2))) +#define PPM_TASK_IND_REG_ADDR(x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x6200) << 2))) +#define PPS_BRK_ADDR(x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x6300) << 2))) +#define PPM_TIMER1_ADDR(x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x6400) << 2))) +#define SB_RAM0_ADDR(x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x8200) << 2))) +#define SB_RAM1_ADDR(x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x8C00) << 2))) +#define QSB_CONF_REG_ADDR(x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0xC000) << 2))) + +/* + * DWORD-Length of Memory Blocks + */ +#define PP32_DEBUG_REG_DWLEN 0x0030 +#define PPM_INT_REG_DWLEN 0x0010 +#define PP32_INTERNAL_RES_DWLEN 0x00C0 +#define CDM_CODE_MEMORYn_DWLEN(n) ((n) == 0 ? 0x1000 : 0x0800) +#define PPE_REG_DWLEN 0x1000 +#define CDM_DATA_MEMORY_DWLEN CDM_CODE_MEMORYn_DWLEN(1) +#define PPM_INT_UNIT_DWLEN 0x0100 +#define PPM_TIMER0_DWLEN 0x0100 +#define PPM_TASK_IND_REG_DWLEN 0x0100 +#define PPS_BRK_DWLEN 0x0100 +#define PPM_TIMER1_DWLEN 0x0100 +#define SB_RAM0_DWLEN 0x0A00 +#define SB_RAM1_DWLEN 0x0A00 +#define QSB_CONF_REG_DWLEN 0x0100 + +/* + * PP32 to FPI Address Mapping + */ +#define SB_BUFFER(__sb_addr) ((volatile unsigned int *)((((__sb_addr) >= 0x0000) && ((__sb_addr) <= 0x0FFF)) ? PPE_REG_ADDR((__sb_addr) - 0x0000) : \ + (((__sb_addr) >= 0x2200) && ((__sb_addr) <= 0x2BFF)) ? SB_RAM0_ADDR((__sb_addr) - 0x2200) : \ + (((__sb_addr) >= 0x2C00) && ((__sb_addr) <= 0x35FF)) ? SB_RAM1_ADDR((__sb_addr) - 0x2C00) : \ + 0)) + +/* + * PP32 Debug Control Register + */ +#define NUM_OF_PP32 1 + +#define PP32_DBG_CTRL(n) PP32_DEBUG_REG_ADDR(n, 0x0000) + +#define DBG_CTRL_RESTART 0 +#define DBG_CTRL_STOP 1 + +#define PP32_CTRL_CMD(n) PP32_DEBUG_REG_ADDR(n, 0x0B00) + #define PP32_CTRL_CMD_RESTART (1 << 0) + #define PP32_CTRL_CMD_STOP (1 << 1) + #define PP32_CTRL_CMD_STEP (1 << 2) + #define PP32_CTRL_CMD_BREAKOUT (1 << 3) + +#define PP32_CTRL_OPT(n) PP32_DEBUG_REG_ADDR(n, 0x0C00) + #define PP32_CTRL_OPT_BREAKOUT_ON_STOP_ON (3 << 0) + #define PP32_CTRL_OPT_BREAKOUT_ON_STOP_OFF (2 << 0) + #define PP32_CTRL_OPT_BREAKOUT_ON_BREAKIN_ON (3 << 2) + #define PP32_CTRL_OPT_BREAKOUT_ON_BREAKIN_OFF (2 << 2) + #define PP32_CTRL_OPT_STOP_ON_BREAKIN_ON (3 << 4) + #define PP32_CTRL_OPT_STOP_ON_BREAKIN_OFF (2 << 4) + #define PP32_CTRL_OPT_STOP_ON_BREAKPOINT_ON (3 << 6) + #define PP32_CTRL_OPT_STOP_ON_BREAKPOINT_OFF (2 << 6) + #define PP32_CTRL_OPT_BREAKOUT_ON_STOP(n) (*PP32_CTRL_OPT(n) & (1 << 0)) + #define PP32_CTRL_OPT_BREAKOUT_ON_BREAKIN(n) (*PP32_CTRL_OPT(n) & (1 << 2)) + #define PP32_CTRL_OPT_STOP_ON_BREAKIN(n) (*PP32_CTRL_OPT(n) & (1 << 4)) + #define PP32_CTRL_OPT_STOP_ON_BREAKPOINT(n) (*PP32_CTRL_OPT(n) & (1 << 6)) + +#define PP32_BRK_PC(n, i) PP32_DEBUG_REG_ADDR(n, 0x0900 + (i) * 2) +#define PP32_BRK_PC_MASK(n, i) PP32_DEBUG_REG_ADDR(n, 0x0901 + (i) * 2) +#define PP32_BRK_DATA_ADDR(n, i) PP32_DEBUG_REG_ADDR(n, 0x0904 + (i) * 2) +#define PP32_BRK_DATA_ADDR_MASK(n, i) PP32_DEBUG_REG_ADDR(n, 0x0905 + (i) * 2) +#define PP32_BRK_DATA_VALUE_RD(n, i) PP32_DEBUG_REG_ADDR(n, 0x0908 + (i) * 2) +#define PP32_BRK_DATA_VALUE_RD_MASK(n, i) PP32_DEBUG_REG_ADDR(n, 0x0909 + (i) * 2) +#define PP32_BRK_DATA_VALUE_WR(n, i) PP32_DEBUG_REG_ADDR(n, 0x090C + (i) * 2) +#define PP32_BRK_DATA_VALUE_WR_MASK(n, i) PP32_DEBUG_REG_ADDR(n, 0x090D + (i) * 2) + #define PP32_BRK_CONTEXT_MASK(i) (1 << (i)) + #define PP32_BRK_CONTEXT_MASK_EN (1 << 4) + #define PP32_BRK_COMPARE_GREATER_EQUAL (1 << 5) // valid for break data value rd/wr only + #define PP32_BRK_COMPARE_LOWER_EQUAL (1 << 6) + #define PP32_BRK_COMPARE_EN (1 << 7) + +#define PP32_BRK_SRC(n) PP32_DEBUG_REG_ADDR(n, 0x0F00) +#define PP32_BRK_TRIG(n) PP32_BRK_SRC(n) + #define PP32_BRK_GRPi_PCn_ON(i, n) ((3 << ((n) * 2)) << ((i) * 16)) + #define PP32_BRK_GRPi_PCn_OFF(i, n) ((2 << ((n) * 2)) << ((i) * 16)) + #define PP32_BRK_GRPi_DATA_ADDRn_ON(i, n) ((3 << ((n) * 2 + 4)) << ((i) * 16)) + #define PP32_BRK_GRPi_DATA_ADDRn_OFF(i, n) ((2 << ((n) * 2 + 4)) << ((i) * 16)) + #define PP32_BRK_GRPi_DATA_VALUE_RDn_ON(i, n) ((3 << ((n) * 2 + 8)) << ((i) * 16)) + #define PP32_BRK_GRPi_DATA_VALUE_RDn_OFF(i, n)((2 << ((n) * 2 + 8)) << ((i) * 16)) + #define PP32_BRK_GRPi_DATA_VALUE_WRn_ON(i, n) ((3 << ((n) * 2 + 12)) << ((i) * 16)) + #define PP32_BRK_GRPi_DATA_VALUE_WRn_OFF(i, n)((2 << ((n) * 2 + 12)) << ((i) * 16)) + #define PP32_BRK_GRPi_PCn(k, i, n) (*PP32_BRK_TRIG(k) & ((1 << ((n))) << ((i) * 8))) + #define PP32_BRK_GRPi_DATA_ADDRn(k, i, n) (*PP32_BRK_TRIG(k) & ((1 << ((n) + 2)) << ((i) * 8))) + #define PP32_BRK_GRPi_DATA_VALUE_RDn(k, i, n) (*PP32_BRK_TRIG(k) & ((1 << ((n) + 4)) << ((i) * 8))) + #define PP32_BRK_GRPi_DATA_VALUE_WRn(k, i, n) (*PP32_BRK_TRIG(k) & ((1 << ((n) + 6)) << ((i) * 8))) + +#define PP32_CPU_STATUS(n) PP32_DEBUG_REG_ADDR(n, 0x0D00) +#define PP32_HALT_STAT(n) PP32_CPU_STATUS(n) +#define PP32_DBG_CUR_PC(n) PP32_DEBUG_REG_ADDR(n, 0x0F80) + #define PP32_CPU_USER_STOPPED(n) (*PP32_CPU_STATUS(n) & (1 << 0)) + #define PP32_CPU_USER_BREAKIN_RCV(n) (*PP32_CPU_STATUS(n) & (1 << 1)) + #define PP32_CPU_USER_BREAKPOINT_MET(n) (*PP32_CPU_STATUS(n) & (1 << 2)) + #define PP32_CPU_CUR_PC(n) (*PP32_DBG_CUR_PC(n) & 0xFFFF) + +#define PP32_BREAKPOINT_REASONS(n) PP32_DEBUG_REG_ADDR(n, 0x0A00) + #define PP32_BRK_PC_MET(n, i) (*PP32_BREAKPOINT_REASONS(n) & (1 << (i))) + #define PP32_BRK_DATA_ADDR_MET(n, i) (*PP32_BREAKPOINT_REASONS(n) & (1 << ((i) + 2))) + #define PP32_BRK_DATA_VALUE_RD_MET(n, i) (*PP32_BREAKPOINT_REASONS(n) & (1 << ((i) + 4))) + #define PP32_BRK_DATA_VALUE_WR_MET(n, i) (*PP32_BREAKPOINT_REASONS(n) & (1 << ((i) + 6))) + #define PP32_BRK_DATA_VALUE_RD_LO_EQ(n, i) (*PP32_BREAKPOINT_REASONS(n) & (1 << ((i) * 2 + 8))) + #define PP32_BRK_DATA_VALUE_RD_GT_EQ(n, i) (*PP32_BREAKPOINT_REASONS(n) & (1 << ((i) * 2 + 9))) + #define PP32_BRK_DATA_VALUE_WR_LO_EQ(n, i) (*PP32_BREAKPOINT_REASONS(n) & (1 << ((i) * 2 + 12))) + #define PP32_BRK_DATA_VALUE_WR_GT_EQ(n, i) (*PP32_BREAKPOINT_REASONS(n) & (1 << ((i) * 2 + 13))) +// #define PP32_BRK_CUR_CONTEXT(n) ((*PP32_BREAKPOINT_REASONS(n) >> 16) & 0x03) +#define PP32_DBG_TASK_NO(n) PP32_DEBUG_REG_ADDR(n, 0x0F81) + #define PP32_BRK_CUR_CONTEXT(n) (*PP32_DBG_TASK_NO(n) & 0x03) + +#define PP32_GP_REG_BASE(n) PP32_DEBUG_REG_ADDR(n, 0x0E00) +#define PP32_GP_CONTEXTi_REGn(n, i, j) PP32_DEBUG_REG_ADDR(n, 0x0E00 + (i) * 16 + (j)) + +/* + * Share Buffer + */ +#define SB_MST_PRI0 PPE_REG_ADDR(0x0300) +#define SB_MST_PRI1 PPE_REG_ADDR(0x0301) + +/* + * EMA Registers + */ +#define EMA_CMDCFG PPE_REG_ADDR(0x0A00) +#define EMA_DATACFG PPE_REG_ADDR(0x0A01) +#define EMA_CMDCNT PPE_REG_ADDR(0x0A02) +#define EMA_DATACNT PPE_REG_ADDR(0x0A03) +#define EMA_ISR PPE_REG_ADDR(0x0A04) +#define EMA_IER PPE_REG_ADDR(0x0A05) +#define EMA_CFG PPE_REG_ADDR(0x0A06) +#define EMA_SUBID PPE_REG_ADDR(0x0A07) + +#define EMA_ALIGNMENT 4 + +/* + * Mailbox IGU1 Interrupt + */ +#define PPE_MAILBOX_IGU1_INT INT_NUM_IM2_IRL13 + + + +#endif // IFXMIPS_PTM_PPE_AMAZON_SE_H diff --git a/package/kernel/lantiq/ltq-ptm/src/ifxmips_ptm_ppe_ar9.h b/package/kernel/lantiq/ltq-ptm/src/ifxmips_ptm_ppe_ar9.h new file mode 100644 index 0000000..9355747 --- /dev/null +++ b/package/kernel/lantiq/ltq-ptm/src/ifxmips_ptm_ppe_ar9.h @@ -0,0 +1,213 @@ +/****************************************************************************** +** +** FILE NAME : ifxmips_ptm_ppe_ar9.h +** PROJECT : UEIP +** MODULES : PTM +** +** DATE : 7 Jul 2009 +** AUTHOR : Xu Liang +** DESCRIPTION : PTM driver header file (PPE register for AR9) +** COPYRIGHT : Copyright (c) 2006 +** Infineon Technologies AG +** Am Campeon 1-12, 85579 Neubiberg, Germany +** +** This program is free software; you can redistribute it and/or modify +** it under the terms of the GNU General Public License as published by +** the Free Software Foundation; either version 2 of the License, or +** (at your option) any later version. +** +** HISTORY +** $Date $Author $Comment +** 07 JUL 2009 Xu Liang Init Version +*******************************************************************************/ + + + +#ifndef IFXMIPS_PTM_PPE_AR9_H +#define IFXMIPS_PTM_PPE_AR9_H + + + +/* + * FPI Configuration Bus Register and Memory Address Mapping + */ +#define IFX_PPE (KSEG1 | 0x1E180000) +#define PP32_DEBUG_REG_ADDR(i, x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x0000) << 2))) +#define PPM_INT_REG_ADDR(i, x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x0030) << 2))) +#define PP32_INTERNAL_RES_ADDR(i, x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x0040) << 2))) +#define CDM_CODE_MEMORY(i, x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x1000) << 2))) +#define PPE_REG_ADDR(x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x4000) << 2))) +#define CDM_DATA_MEMORY(i, x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x5000) << 2))) +#define PPM_INT_UNIT_ADDR(x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x6000) << 2))) +#define PPM_TIMER0_ADDR(x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x6100) << 2))) +#define PPM_TASK_IND_REG_ADDR(x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x6200) << 2))) +#define PPS_BRK_ADDR(x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x6300) << 2))) +#define PPM_TIMER1_ADDR(x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x6400) << 2))) +#define SB_RAM0_ADDR(x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x8000) << 2))) +#define SB_RAM1_ADDR(x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x8800) << 2))) +#define SB_RAM2_ADDR(x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x9000) << 2))) +#define SB_RAM3_ADDR(x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x9800) << 2))) +#define SB_RAM4_ADDR(x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0xA000) << 2))) +#define QSB_CONF_REG_ADDR(x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0xC000) << 2))) + +/* + * DWORD-Length of Memory Blocks + */ +#define PP32_DEBUG_REG_DWLEN 0x0030 +#define PPM_INT_REG_DWLEN 0x0010 +#define PP32_INTERNAL_RES_DWLEN 0x00C0 +#define CDM_CODE_MEMORYn_DWLEN(n) 0x1000 +#define PPE_REG_DWLEN 0x1000 +#define CDM_DATA_MEMORY_DWLEN CDM_CODE_MEMORYn_DWLEN(1) +#define PPM_INT_UNIT_DWLEN 0x0100 +#define PPM_TIMER0_DWLEN 0x0100 +#define PPM_TASK_IND_REG_DWLEN 0x0100 +#define PPS_BRK_DWLEN 0x0100 +#define PPM_TIMER1_DWLEN 0x0100 +#define SB_RAM0_DWLEN 0x0800 +#define SB_RAM1_DWLEN 0x0800 +#define SB_RAM2_DWLEN 0x0800 +#define SB_RAM3_DWLEN 0x0800 +#define SB_RAM4_DWLEN 0x0C00 +#define QSB_CONF_REG_DWLEN 0x0100 + +/* + * PP32 to FPI Address Mapping + */ +#define SB_BUFFER(__sb_addr) ((volatile unsigned int *)((((__sb_addr) >= 0x0000) && ((__sb_addr) <= 0x0FFF)) ? PP32_DEBUG_REG_ADDR(0, (__sb_addr)): \ + (((__sb_addr) >= 0x2000) && ((__sb_addr) <= 0x27FF)) ? SB_RAM0_ADDR((__sb_addr) - 0x2000) : \ + (((__sb_addr) >= 0x2800) && ((__sb_addr) <= 0x2FFF)) ? SB_RAM1_ADDR((__sb_addr) - 0x2800) : \ + (((__sb_addr) >= 0x3000) && ((__sb_addr) <= 0x37FF)) ? SB_RAM2_ADDR((__sb_addr) - 0x3000) : \ + (((__sb_addr) >= 0x3800) && ((__sb_addr) <= 0x3FFF)) ? SB_RAM3_ADDR((__sb_addr) - 0x3800) : \ + (((__sb_addr) >= 0x4000) && ((__sb_addr) <= 0x4BFF)) ? SB_RAM4_ADDR((__sb_addr) - 0x4000) : \ + 0)) + +/* + * PP32 Debug Control Register + */ +#define NUM_OF_PP32 1 + +#define PP32_DBG_CTRL(n) PP32_DEBUG_REG_ADDR(n, 0x0000) + +#define DBG_CTRL_RESTART 0 +#define DBG_CTRL_STOP 1 + +#define PP32_CTRL_CMD(n) PP32_DEBUG_REG_ADDR(n, 0x0B00) + #define PP32_CTRL_CMD_RESTART (1 << 0) + #define PP32_CTRL_CMD_STOP (1 << 1) + #define PP32_CTRL_CMD_STEP (1 << 2) + #define PP32_CTRL_CMD_BREAKOUT (1 << 3) + +#define PP32_CTRL_OPT(n) PP32_DEBUG_REG_ADDR(n, 0x0C00) + #define PP32_CTRL_OPT_BREAKOUT_ON_STOP_ON (3 << 0) + #define PP32_CTRL_OPT_BREAKOUT_ON_STOP_OFF (2 << 0) + #define PP32_CTRL_OPT_BREAKOUT_ON_BREAKIN_ON (3 << 2) + #define PP32_CTRL_OPT_BREAKOUT_ON_BREAKIN_OFF (2 << 2) + #define PP32_CTRL_OPT_STOP_ON_BREAKIN_ON (3 << 4) + #define PP32_CTRL_OPT_STOP_ON_BREAKIN_OFF (2 << 4) + #define PP32_CTRL_OPT_STOP_ON_BREAKPOINT_ON (3 << 6) + #define PP32_CTRL_OPT_STOP_ON_BREAKPOINT_OFF (2 << 6) + #define PP32_CTRL_OPT_BREAKOUT_ON_STOP(n) (*PP32_CTRL_OPT(n) & (1 << 0)) + #define PP32_CTRL_OPT_BREAKOUT_ON_BREAKIN(n) (*PP32_CTRL_OPT(n) & (1 << 2)) + #define PP32_CTRL_OPT_STOP_ON_BREAKIN(n) (*PP32_CTRL_OPT(n) & (1 << 4)) + #define PP32_CTRL_OPT_STOP_ON_BREAKPOINT(n) (*PP32_CTRL_OPT(n) & (1 << 6)) + +#define PP32_BRK_PC(n, i) PP32_DEBUG_REG_ADDR(n, 0x0900 + (i) * 2) +#define PP32_BRK_PC_MASK(n, i) PP32_DEBUG_REG_ADDR(n, 0x0901 + (i) * 2) +#define PP32_BRK_DATA_ADDR(n, i) PP32_DEBUG_REG_ADDR(n, 0x0904 + (i) * 2) +#define PP32_BRK_DATA_ADDR_MASK(n, i) PP32_DEBUG_REG_ADDR(n, 0x0905 + (i) * 2) +#define PP32_BRK_DATA_VALUE_RD(n, i) PP32_DEBUG_REG_ADDR(n, 0x0908 + (i) * 2) +#define PP32_BRK_DATA_VALUE_RD_MASK(n, i) PP32_DEBUG_REG_ADDR(n, 0x0909 + (i) * 2) +#define PP32_BRK_DATA_VALUE_WR(n, i) PP32_DEBUG_REG_ADDR(n, 0x090C + (i) * 2) +#define PP32_BRK_DATA_VALUE_WR_MASK(n, i) PP32_DEBUG_REG_ADDR(n, 0x090D + (i) * 2) + #define PP32_BRK_CONTEXT_MASK(i) (1 << (i)) + #define PP32_BRK_CONTEXT_MASK_EN (1 << 4) + #define PP32_BRK_COMPARE_GREATER_EQUAL (1 << 5) // valid for break data value rd/wr only + #define PP32_BRK_COMPARE_LOWER_EQUAL (1 << 6) + #define PP32_BRK_COMPARE_EN (1 << 7) + +#define PP32_BRK_TRIG(n) PP32_DEBUG_REG_ADDR(n, 0x0F00) + #define PP32_BRK_GRPi_PCn_ON(i, n) ((3 << ((n) * 2)) << ((i) * 16)) + #define PP32_BRK_GRPi_PCn_OFF(i, n) ((2 << ((n) * 2)) << ((i) * 16)) + #define PP32_BRK_GRPi_DATA_ADDRn_ON(i, n) ((3 << ((n) * 2 + 4)) << ((i) * 16)) + #define PP32_BRK_GRPi_DATA_ADDRn_OFF(i, n) ((2 << ((n) * 2 + 4)) << ((i) * 16)) + #define PP32_BRK_GRPi_DATA_VALUE_RDn_ON(i, n) ((3 << ((n) * 2 + 8)) << ((i) * 16)) + #define PP32_BRK_GRPi_DATA_VALUE_RDn_OFF(i, n)((2 << ((n) * 2 + 8)) << ((i) * 16)) + #define PP32_BRK_GRPi_DATA_VALUE_WRn_ON(i, n) ((3 << ((n) * 2 + 12)) << ((i) * 16)) + #define PP32_BRK_GRPi_DATA_VALUE_WRn_OFF(i, n)((2 << ((n) * 2 + 12)) << ((i) * 16)) + #define PP32_BRK_GRPi_PCn(k, i, n) (*PP32_BRK_TRIG(k) & ((1 << ((n))) << ((i) * 8))) + #define PP32_BRK_GRPi_DATA_ADDRn(k, i, n) (*PP32_BRK_TRIG(k) & ((1 << ((n) + 2)) << ((i) * 8))) + #define PP32_BRK_GRPi_DATA_VALUE_RDn(k, i, n) (*PP32_BRK_TRIG(k) & ((1 << ((n) + 4)) << ((i) * 8))) + #define PP32_BRK_GRPi_DATA_VALUE_WRn(k, i, n) (*PP32_BRK_TRIG(k) & ((1 << ((n) + 6)) << ((i) * 8))) + +#define PP32_CPU_STATUS(n) PP32_DEBUG_REG_ADDR(n, 0x0D00) +#define PP32_HALT_STAT(n) PP32_CPU_STATUS(n) +#define PP32_DBG_CUR_PC(n) PP32_CPU_STATUS(n) + #define PP32_CPU_USER_STOPPED(n) (*PP32_CPU_STATUS(n) & (1 << 0)) + #define PP32_CPU_USER_BREAKIN_RCV(n) (*PP32_CPU_STATUS(n) & (1 << 1)) + #define PP32_CPU_USER_BREAKPOINT_MET(n) (*PP32_CPU_STATUS(n) & (1 << 2)) + #define PP32_CPU_CUR_PC(n) (*PP32_CPU_STATUS(n) >> 16) + +#define PP32_BREAKPOINT_REASONS(n) PP32_DEBUG_REG_ADDR(n, 0x0A00) + #define PP32_BRK_PC_MET(n, i) (*PP32_BREAKPOINT_REASONS(n) & (1 << (i))) + #define PP32_BRK_DATA_ADDR_MET(n, i) (*PP32_BREAKPOINT_REASONS(n) & (1 << ((i) + 2))) + #define PP32_BRK_DATA_VALUE_RD_MET(n, i) (*PP32_BREAKPOINT_REASONS(n) & (1 << ((i) + 4))) + #define PP32_BRK_DATA_VALUE_WR_MET(n, i) (*PP32_BREAKPOINT_REASONS(n) & (1 << ((i) + 6))) + #define PP32_BRK_DATA_VALUE_RD_LO_EQ(n, i) (*PP32_BREAKPOINT_REASONS(n) & (1 << ((i) * 2 + 8))) + #define PP32_BRK_DATA_VALUE_RD_GT_EQ(n, i) (*PP32_BREAKPOINT_REASONS(n) & (1 << ((i) * 2 + 9))) + #define PP32_BRK_DATA_VALUE_WR_LO_EQ(n, i) (*PP32_BREAKPOINT_REASONS(n) & (1 << ((i) * 2 + 12))) + #define PP32_BRK_DATA_VALUE_WR_GT_EQ(n, i) (*PP32_BREAKPOINT_REASONS(n) & (1 << ((i) * 2 + 13))) + #define PP32_BRK_CUR_CONTEXT(n) ((*PP32_BREAKPOINT_REASONS(n) >> 16) & 0x03) + +#define PP32_GP_REG_BASE(n) PP32_DEBUG_REG_ADDR(n, 0x0E00) +#define PP32_GP_CONTEXTi_REGn(n, i, j) PP32_DEBUG_REG_ADDR(n, 0x0E00 + (i) * 16 + (j)) + +/* + * Share Buffer Registers + */ +#define SB_MST_PRI0 PPE_REG_ADDR(0x0300) +#define SB_MST_PRI1 PPE_REG_ADDR(0x0301) + +/* + * EMA Registers + */ +#define EMA_CMDCFG PPE_REG_ADDR(0x0A00) +#define EMA_DATACFG PPE_REG_ADDR(0x0A01) +#define EMA_CMDCNT PPE_REG_ADDR(0x0A02) +#define EMA_DATACNT PPE_REG_ADDR(0x0A03) +#define EMA_ISR PPE_REG_ADDR(0x0A04) +#define EMA_IER PPE_REG_ADDR(0x0A05) +#define EMA_CFG PPE_REG_ADDR(0x0A06) +#define EMA_SUBID PPE_REG_ADDR(0x0A07) + +#define EMA_ALIGNMENT 4 + +/* + * DPlus Registers + */ +#define DM_RXDB PPE_REG_ADDR(0x0612) +#define DM_RXCB PPE_REG_ADDR(0x0613) +#define DM_RXCFG PPE_REG_ADDR(0x0614) +#define DM_RXPGCNT PPE_REG_ADDR(0x0615) +#define DM_RXPKTCNT PPE_REG_ADDR(0x0616) +#define DS_RXDB PPE_REG_ADDR(0x0710) +#define DS_RXCB PPE_REG_ADDR(0x0711) +#define DS_RXCFG PPE_REG_ADDR(0x0712) +#define DS_RXPGCNT PPE_REG_ADDR(0x0713) + +/* + * 3-Port Switch Registers (partial) + */ +#define IFX_SW (KSEG1 | 0x1E108000) +#define SW_REG(off) ((volatile unsigned int*)(IFX_SW + (off))) +#define SW_P2_CTL SW_REG(0x00C) + + +/* + * Mailbox IGU1 Interrupt + */ +#define PPE_MAILBOX_IGU1_INT INT_NUM_IM2_IRL24 + + + +#endif // IFXMIPS_PTM_PPE_AR9_H diff --git a/package/kernel/lantiq/ltq-ptm/src/ifxmips_ptm_ppe_common.h b/package/kernel/lantiq/ltq-ptm/src/ifxmips_ptm_ppe_common.h new file mode 100644 index 0000000..63a5a37 --- /dev/null +++ b/package/kernel/lantiq/ltq-ptm/src/ifxmips_ptm_ppe_common.h @@ -0,0 +1,311 @@ +/****************************************************************************** +** +** FILE NAME : ifxmips_ptm_ppe_common.h +** PROJECT : UEIP +** MODULES : PTM +** +** DATE : 7 Jul 2009 +** AUTHOR : Xu Liang +** DESCRIPTION : PTM driver header file (PPE register for all platform) +** COPYRIGHT : Copyright (c) 2006 +** Infineon Technologies AG +** Am Campeon 1-12, 85579 Neubiberg, Germany +** +** This program is free software; you can redistribute it and/or modify +** it under the terms of the GNU General Public License as published by +** the Free Software Foundation; either version 2 of the License, or +** (at your option) any later version. +** +** HISTORY +** $Date $Author $Comment +** 07 JUL 2009 Xu Liang Init Version +*******************************************************************************/ + + + +#ifndef IFXMIPS_PTM_PPE_COMMON_H +#define IFXMIPS_PTM_PPE_COMMON_H + + + +#if defined(CONFIG_DANUBE) + #include "ifxmips_ptm_ppe_danube.h" +#elif defined(CONFIG_AMAZON_SE) + #include "ifxmips_ptm_ppe_amazon_se.h" +#elif defined(CONFIG_AR9) + #include "ifxmips_ptm_ppe_ar9.h" +#elif defined(CONFIG_VR9) + #include "ifxmips_ptm_ppe_vr9.h" +#else + #error Platform is not specified! +#endif + + + +/* + * Code/Data Memory (CDM) Interface Configuration Register + */ +#define CDM_CFG PPE_REG_ADDR(0x0100) + +#define CDM_CFG_RAM1 GET_BITS(*CDM_CFG, 3, 2) +#define CDM_CFG_RAM0 (*CDM_CFG & (1 << 1)) + +#define CDM_CFG_RAM1_SET(value) SET_BITS(0, 3, 2, value) +#define CDM_CFG_RAM0_SET(value) ((value) ? (1 << 1) : 0) + +/* + * QSB Internal Cell Delay Variation Register + */ +#define QSB_ICDV QSB_CONF_REG_ADDR(0x0007) + +#define QSB_ICDV_TAU GET_BITS(*QSB_ICDV, 5, 0) + +#define QSB_ICDV_TAU_SET(value) SET_BITS(0, 5, 0, value) + +/* + * QSB Scheduler Burst Limit Register + */ +#define QSB_SBL QSB_CONF_REG_ADDR(0x0009) + +#define QSB_SBL_SBL GET_BITS(*QSB_SBL, 3, 0) + +#define QSB_SBL_SBL_SET(value) SET_BITS(0, 3, 0, value) + +/* + * QSB Configuration Register + */ +#define QSB_CFG QSB_CONF_REG_ADDR(0x000A) + +#define QSB_CFG_TSTEPC GET_BITS(*QSB_CFG, 1, 0) + +#define QSB_CFG_TSTEPC_SET(value) SET_BITS(0, 1, 0, value) + +/* + * QSB RAM Transfer Table Register + */ +#define QSB_RTM QSB_CONF_REG_ADDR(0x000B) + +#define QSB_RTM_DM (*QSB_RTM) + +#define QSB_RTM_DM_SET(value) ((value) & 0xFFFFFFFF) + +/* + * QSB RAM Transfer Data Register + */ +#define QSB_RTD QSB_CONF_REG_ADDR(0x000C) + +#define QSB_RTD_TTV (*QSB_RTD) + +#define QSB_RTD_TTV_SET(value) ((value) & 0xFFFFFFFF) + +/* + * QSB RAM Access Register + */ +#define QSB_RAMAC QSB_CONF_REG_ADDR(0x000D) + +#define QSB_RAMAC_RW (*QSB_RAMAC & (1 << 31)) +#define QSB_RAMAC_TSEL GET_BITS(*QSB_RAMAC, 27, 24) +#define QSB_RAMAC_LH (*QSB_RAMAC & (1 << 16)) +#define QSB_RAMAC_TESEL GET_BITS(*QSB_RAMAC, 9, 0) + +#define QSB_RAMAC_RW_SET(value) ((value) ? (1 << 31) : 0) +#define QSB_RAMAC_TSEL_SET(value) SET_BITS(0, 27, 24, value) +#define QSB_RAMAC_LH_SET(value) ((value) ? (1 << 16) : 0) +#define QSB_RAMAC_TESEL_SET(value) SET_BITS(0, 9, 0, value) + +/* + * QSB Queue Scheduling and Shaping Definitions + */ +#define QSB_WFQ_NONUBR_MAX 0x3f00 +#define QSB_WFQ_UBR_BYPASS 0x3fff +#define QSB_TP_TS_MAX 65472 +#define QSB_TAUS_MAX 64512 +#define QSB_GCR_MIN 18 + +/* + * QSB Constant + */ +#define QSB_RAMAC_RW_READ 0 +#define QSB_RAMAC_RW_WRITE 1 + +#define QSB_RAMAC_TSEL_QPT 0x01 +#define QSB_RAMAC_TSEL_SCT 0x02 +#define QSB_RAMAC_TSEL_SPT 0x03 +#define QSB_RAMAC_TSEL_VBR 0x08 + +#define QSB_RAMAC_LH_LOW 0 +#define QSB_RAMAC_LH_HIGH 1 + +#define QSB_QPT_SET_MASK 0x0 +#define QSB_QVPT_SET_MASK 0x0 +#define QSB_SET_SCT_MASK 0x0 +#define QSB_SET_SPT_MASK 0x0 +#define QSB_SET_SPT_SBVALID_MASK 0x7FFFFFFF + +#define QSB_SPT_SBV_VALID (1 << 31) +#define QSB_SPT_PN_SET(value) (((value) & 0x01) ? (1 << 16) : 0) +#define QSB_SPT_INTRATE_SET(value) SET_BITS(0, 13, 0, value) + +/* + * QSB Queue Parameter Table Entry and Queue VBR Parameter Table Entry + */ +#if defined(__BIG_ENDIAN) + union qsb_queue_parameter_table { + struct { + unsigned int res1 :1; + unsigned int vbr :1; + unsigned int wfqf :14; + unsigned int tp :16; + } bit; + u32 dword; + }; + + union qsb_queue_vbr_parameter_table { + struct { + unsigned int taus :16; + unsigned int ts :16; + } bit; + u32 dword; + }; +#else + union qsb_queue_parameter_table { + struct { + unsigned int tp :16; + unsigned int wfqf :14; + unsigned int vbr :1; + unsigned int res1 :1; + } bit; + u32 dword; + }; + + union qsb_queue_vbr_parameter_table { + struct { + unsigned int ts :16; + unsigned int taus :16; + } bit; + u32 dword; + }; +#endif // defined(__BIG_ENDIAN) + +/* + * Mailbox IGU0 Registers + */ +#define MBOX_IGU0_ISRS PPE_REG_ADDR(0x0200) +#define MBOX_IGU0_ISRC PPE_REG_ADDR(0x0201) +#define MBOX_IGU0_ISR PPE_REG_ADDR(0x0202) +#define MBOX_IGU0_IER PPE_REG_ADDR(0x0203) + +#define MBOX_IGU0_ISRS_SET(n) (1 << (n)) +#define MBOX_IGU0_ISRC_CLEAR(n) (1 << (n)) +#define MBOX_IGU0_ISR_ISR(n) (*MBOX_IGU0_ISR & (1 << (n))) +#define MBOX_IGU0_IER_EN(n) (*MBOX_IGU0_IER & (1 << (n))) +#define MBOX_IGU0_IER_EN_SET(n) (1 << (n)) + +/* + * Mailbox IGU1 Registers + */ +#define MBOX_IGU1_ISRS PPE_REG_ADDR(0x0204) +#define MBOX_IGU1_ISRC PPE_REG_ADDR(0x0205) +#define MBOX_IGU1_ISR PPE_REG_ADDR(0x0206) +#define MBOX_IGU1_IER PPE_REG_ADDR(0x0207) + +#define MBOX_IGU1_ISRS_SET(n) (1 << (n)) +#define MBOX_IGU1_ISRC_CLEAR(n) (1 << (n)) +#define MBOX_IGU1_ISR_ISR(n) (*MBOX_IGU1_ISR & (1 << (n))) +#define MBOX_IGU1_IER_EN(n) (*MBOX_IGU1_IER & (1 << (n))) +#define MBOX_IGU1_IER_EN_SET(n) (1 << (n)) + +/* + * Mailbox IGU3 Registers + */ +#define MBOX_IGU3_ISRS PPE_REG_ADDR(0x0214) +#define MBOX_IGU3_ISRC PPE_REG_ADDR(0x0215) +#define MBOX_IGU3_ISR PPE_REG_ADDR(0x0216) +#define MBOX_IGU3_IER PPE_REG_ADDR(0x0217) + +#define MBOX_IGU3_ISRS_SET(n) (1 << (n)) +#define MBOX_IGU3_ISRC_CLEAR(n) (1 << (n)) +#define MBOX_IGU3_ISR_ISR(n) (*MBOX_IGU3_ISR & (1 << (n))) +#define MBOX_IGU3_IER_EN(n) (*MBOX_IGU3_IER & (1 << (n))) +#define MBOX_IGU3_IER_EN_SET(n) (1 << (n)) + +/* + * RTHA/TTHA Registers + */ +#define RFBI_CFG PPE_REG_ADDR(0x0400) +#define RBA_CFG0 PPE_REG_ADDR(0x0404) +#define RBA_CFG1 PPE_REG_ADDR(0x0405) +#define RCA_CFG0 PPE_REG_ADDR(0x0408) +#define RCA_CFG1 PPE_REG_ADDR(0x0409) +#define RDES_CFG0 PPE_REG_ADDR(0x040C) +#define RDES_CFG1 PPE_REG_ADDR(0x040D) +#define SFSM_STATE0 PPE_REG_ADDR(0x0410) +#define SFSM_STATE1 PPE_REG_ADDR(0x0411) +#define SFSM_DBA0 PPE_REG_ADDR(0x0412) +#define SFSM_DBA1 PPE_REG_ADDR(0x0413) +#define SFSM_CBA0 PPE_REG_ADDR(0x0414) +#define SFSM_CBA1 PPE_REG_ADDR(0x0415) +#define SFSM_CFG0 PPE_REG_ADDR(0x0416) +#define SFSM_CFG1 PPE_REG_ADDR(0x0417) +#define SFSM_PGCNT0 PPE_REG_ADDR(0x041C) +#define SFSM_PGCNT1 PPE_REG_ADDR(0x041D) +#define FFSM_DBA0 PPE_REG_ADDR(0x0508) +#define FFSM_DBA1 PPE_REG_ADDR(0x0509) +#define FFSM_CFG0 PPE_REG_ADDR(0x050A) +#define FFSM_CFG1 PPE_REG_ADDR(0x050B) +#define FFSM_IDLE_HEAD_BC0 PPE_REG_ADDR(0x050E) +#define FFSM_IDLE_HEAD_BC1 PPE_REG_ADDR(0x050F) +#define FFSM_PGCNT0 PPE_REG_ADDR(0x0514) +#define FFSM_PGCNT1 PPE_REG_ADDR(0x0515) + +/* + * PPE TC Logic Registers (partial) + */ +#define DREG_A_VERSION PPE_REG_ADDR(0x0D00) +#define DREG_A_CFG PPE_REG_ADDR(0x0D01) +#define DREG_AT_CTRL PPE_REG_ADDR(0x0D02) +#define DREG_AT_CB_CFG0 PPE_REG_ADDR(0x0D03) +#define DREG_AT_CB_CFG1 PPE_REG_ADDR(0x0D04) +#define DREG_AR_CTRL PPE_REG_ADDR(0x0D08) +#define DREG_AR_CB_CFG0 PPE_REG_ADDR(0x0D09) +#define DREG_AR_CB_CFG1 PPE_REG_ADDR(0x0D0A) +#define DREG_A_UTPCFG PPE_REG_ADDR(0x0D0E) +#define DREG_A_STATUS PPE_REG_ADDR(0x0D0F) +#define DREG_AT_CFG0 PPE_REG_ADDR(0x0D20) +#define DREG_AT_CFG1 PPE_REG_ADDR(0x0D21) +#define DREG_AT_FB_SIZE0 PPE_REG_ADDR(0x0D22) +#define DREG_AT_FB_SIZE1 PPE_REG_ADDR(0x0D23) +#define DREG_AT_CELL0 PPE_REG_ADDR(0x0D24) +#define DREG_AT_CELL1 PPE_REG_ADDR(0x0D25) +#define DREG_AT_IDLE_CNT0 PPE_REG_ADDR(0x0D26) +#define DREG_AT_IDLE_CNT1 PPE_REG_ADDR(0x0D27) +#define DREG_AT_IDLE0 PPE_REG_ADDR(0x0D28) +#define DREG_AT_IDLE1 PPE_REG_ADDR(0x0D29) +#define DREG_AR_CFG0 PPE_REG_ADDR(0x0D60) +#define DREG_AR_CFG1 PPE_REG_ADDR(0x0D61) +#define DREG_AR_CELL0 PPE_REG_ADDR(0x0D68) +#define DREG_AR_CELL1 PPE_REG_ADDR(0x0D69) +#define DREG_AR_IDLE_CNT0 PPE_REG_ADDR(0x0D6A) +#define DREG_AR_IDLE_CNT1 PPE_REG_ADDR(0x0D6B) +#define DREG_AR_AIIDLE_CNT0 PPE_REG_ADDR(0x0D6C) +#define DREG_AR_AIIDLE_CNT1 PPE_REG_ADDR(0x0D6D) +#define DREG_AR_BE_CNT0 PPE_REG_ADDR(0x0D6E) +#define DREG_AR_BE_CNT1 PPE_REG_ADDR(0x0D6F) +#define DREG_AR_HEC_CNT0 PPE_REG_ADDR(0x0D70) +#define DREG_AR_HEC_CNT1 PPE_REG_ADDR(0x0D71) +#define DREG_AR_IDLE0 PPE_REG_ADDR(0x0D74) +#define DREG_AR_IDLE1 PPE_REG_ADDR(0x0D75) +#define DREG_AR_CERRN_CNT0 PPE_REG_ADDR(0x0DA0) +#define DREG_AR_CERRN_CNT1 PPE_REG_ADDR(0x0DA1) +#define DREG_AR_CERRNP_CNT0 PPE_REG_ADDR(0x0DA2) +#define DREG_AR_CERRNP_CNT1 PPE_REG_ADDR(0x0DA3) +#define DREG_AR_CVN_CNT0 PPE_REG_ADDR(0x0DA4) +#define DREG_AR_CVN_CNT1 PPE_REG_ADDR(0x0DA5) +#define DREG_AR_CVNP_CNT0 PPE_REG_ADDR(0x0DA6) +#define DREG_AR_CVNP_CNT1 PPE_REG_ADDR(0x0DA7) +#define DREG_B0_LADR PPE_REG_ADDR(0x0DA8) +#define DREG_B1_LADR PPE_REG_ADDR(0x0DA9) + + + +#endif // IFXMIPS_PTM_PPE_COMMON_H diff --git a/package/kernel/lantiq/ltq-ptm/src/ifxmips_ptm_ppe_danube.h b/package/kernel/lantiq/ltq-ptm/src/ifxmips_ptm_ppe_danube.h new file mode 100644 index 0000000..5f896e6 --- /dev/null +++ b/package/kernel/lantiq/ltq-ptm/src/ifxmips_ptm_ppe_danube.h @@ -0,0 +1,135 @@ +/****************************************************************************** +** +** FILE NAME : ifxmips_ptm_ppe_danube.h +** PROJECT : UEIP +** MODULES : PTM +** +** DATE : 7 Jul 2009 +** AUTHOR : Xu Liang +** DESCRIPTION : PTM driver header file (PPE register for Danube) +** COPYRIGHT : Copyright (c) 2006 +** Infineon Technologies AG +** Am Campeon 1-12, 85579 Neubiberg, Germany +** +** This program is free software; you can redistribute it and/or modify +** it under the terms of the GNU General Public License as published by +** the Free Software Foundation; either version 2 of the License, or +** (at your option) any later version. +** +** HISTORY +** $Date $Author $Comment +** 07 JUL 2009 Xu Liang Init Version +*******************************************************************************/ + + + +#ifndef IFXMIPS_PTM_PPE_DANUBE_H +#define IFXMIPS_PTM_PPE_DANUBE_H + + + +/* + * FPI Configuration Bus Register and Memory Address Mapping + */ +#define IFX_PPE (KSEG1 | 0x1E180000) +#define PP32_DEBUG_REG_ADDR(i, x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x0000) << 2))) +#define PPM_INT_REG_ADDR(i, x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x0030) << 2))) +#define PP32_INTERNAL_RES_ADDR(i, x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x0040) << 2))) +#define CDM_CODE_MEMORY(i, x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x1000) << 2))) +#define PPE_REG_ADDR(x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x4000) << 2))) +#define CDM_DATA_MEMORY(i, x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x5000) << 2))) +#define PPM_INT_UNIT_ADDR(x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x6000) << 2))) +#define PPM_TIMER0_ADDR(x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x6100) << 2))) +#define PPM_TASK_IND_REG_ADDR(x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x6200) << 2))) +#define PPS_BRK_ADDR(x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x6300) << 2))) +#define PPM_TIMER1_ADDR(x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x6400) << 2))) +#define SB_RAM0_ADDR(x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x8000) << 2))) +#define SB_RAM1_ADDR(x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x8400) << 2))) +#define SB_RAM2_ADDR(x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x8C00) << 2))) +#define SB_RAM3_ADDR(x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x9600) << 2))) +#define QSB_CONF_REG_ADDR(x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0xC000) << 2))) + +/* + * DWORD-Length of Memory Blocks + */ +#define PP32_DEBUG_REG_DWLEN 0x0030 +#define PPM_INT_REG_DWLEN 0x0010 +#define PP32_INTERNAL_RES_DWLEN 0x00C0 +#define CDM_CODE_MEMORYn_DWLEN(n) ((n) == 0 ? 0x1000 : 0x0800) +#define PPE_REG_DWLEN 0x1000 +#define CDM_DATA_MEMORY_DWLEN CDM_CODE_MEMORYn_DWLEN(1) +#define PPM_INT_UNIT_DWLEN 0x0100 +#define PPM_TIMER0_DWLEN 0x0100 +#define PPM_TASK_IND_REG_DWLEN 0x0100 +#define PPS_BRK_DWLEN 0x0100 +#define PPM_TIMER1_DWLEN 0x0100 +#define SB_RAM0_DWLEN 0x0400 +#define SB_RAM1_DWLEN 0x0800 +#define SB_RAM2_DWLEN 0x0A00 +#define SB_RAM3_DWLEN 0x0400 +#define QSB_CONF_REG_DWLEN 0x0100 + +/* + * PP32 to FPI Address Mapping + */ +#define SB_BUFFER(__sb_addr) ((volatile unsigned int *)((((__sb_addr) >= 0x2000) && ((__sb_addr) <= 0x23FF)) ? SB_RAM0_ADDR((__sb_addr) - 0x2000) : \ + (((__sb_addr) >= 0x2400) && ((__sb_addr) <= 0x2BFF)) ? SB_RAM1_ADDR((__sb_addr) - 0x2400) : \ + (((__sb_addr) >= 0x2C00) && ((__sb_addr) <= 0x35FF)) ? SB_RAM2_ADDR((__sb_addr) - 0x2C00) : \ + (((__sb_addr) >= 0x3600) && ((__sb_addr) <= 0x39FF)) ? SB_RAM3_ADDR((__sb_addr) - 0x3600) : \ + 0)) + +/* + * PP32 Debug Control Register + */ +#define PP32_DBG_CTRL PP32_DEBUG_REG_ADDR(0, 0x0000) + +#define DBG_CTRL_START_SET(value) ((value) ? (1 << 0) : 0) +#define DBG_CTRL_STOP_SET(value) ((value) ? (1 << 1) : 0) +#define DBG_CTRL_STEP_SET(value) ((value) ? (1 << 2) : 0) + +#define PP32_HALT_STAT PP32_DEBUG_REG_ADDR(0, 0x0001) + +#define PP32_BRK_SRC PP32_DEBUG_REG_ADDR(0, 0x0002) + #define PP32_BRK_SRC_PC(i) (1 << (i)) + #define PP32_BRK_SRC_DATA(i, cmd) ((cmd) << ((i) * 3 + 8)) + +#define PP32_DBG_PC_MIN(i) PP32_DEBUG_REG_ADDR(0, 0x0010 + (i)) +#define PP32_DBG_PC_MAX(i) PP32_DEBUG_REG_ADDR(0, 0x0014 + (i)) +#define PP32_DBG_DATA_MIN(i) PP32_DEBUG_REG_ADDR(0, 0x0018 + (i)) +#define PP32_DBG_DATA_MAX(i) PP32_DEBUG_REG_ADDR(0, 0x001A + (i)) +#define PP32_DBG_DATA_VAL(i) PP32_DEBUG_REG_ADDR(0, 0x001C + (i)) + +#define PP32_DBG_TASK_GPR(task, i) PP32_DEBUG_REG_ADDR(0, 0x0040 + (task) * 0x0010 + (i)) + +#define PP32_DBG_CUR_PC PP32_DEBUG_REG_ADDR(0, 0x0080) +#define PP32_DBG_TASK_NO PP32_DEBUG_REG_ADDR(0, 0x0081) +#define PP32_DBG_TASK_PRIO PP32_DEBUG_REG_ADDR(0, 0x0086) +#define PP32_DBG_PC_OF_TASK(i) PP32_DEBUG_REG_ADDR(0, 0x0087 + (i)) + +/* + * Share Buffer Registers + */ +#define SB_MST_SEL PPE_REG_ADDR(0x0304) + +/* + * EMA Registers + */ +#define EMA_CMDCFG PPE_REG_ADDR(0x0A00) +#define EMA_DATACFG PPE_REG_ADDR(0x0A01) +#define EMA_CMDCNT PPE_REG_ADDR(0x0A02) +#define EMA_DATACNT PPE_REG_ADDR(0x0A03) +#define EMA_ISR PPE_REG_ADDR(0x0A04) +#define EMA_IER PPE_REG_ADDR(0x0A05) +#define EMA_CFG PPE_REG_ADDR(0x0A06) +#define EMA_SUBID PPE_REG_ADDR(0x0A07) + +#define EMA_ALIGNMENT 4 + +/* + * Mailbox IGU1 Interrupt + */ +#define PPE_MAILBOX_IGU1_INT INT_NUM_IM2_IRL24 + + + +#endif // IFXMIPS_PTM_PPE_DANUBE_H diff --git a/package/kernel/lantiq/ltq-ptm/src/ifxmips_ptm_ppe_vr9.h b/package/kernel/lantiq/ltq-ptm/src/ifxmips_ptm_ppe_vr9.h new file mode 100644 index 0000000..4a8c2f7 --- /dev/null +++ b/package/kernel/lantiq/ltq-ptm/src/ifxmips_ptm_ppe_vr9.h @@ -0,0 +1,205 @@ +/****************************************************************************** +** +** FILE NAME : ifxmips_ptm_ppe_vr9.h +** PROJECT : UEIP +** MODULES : PTM +** +** DATE : 7 Jul 2009 +** AUTHOR : Xu Liang +** DESCRIPTION : PTM driver header file (PPE register for VR9) +** COPYRIGHT : Copyright (c) 2006 +** Infineon Technologies AG +** Am Campeon 1-12, 85579 Neubiberg, Germany +** +** This program is free software; you can redistribute it and/or modify +** it under the terms of the GNU General Public License as published by +** the Free Software Foundation; either version 2 of the License, or +** (at your option) any later version. +** +** HISTORY +** $Date $Author $Comment +** 07 JUL 2009 Xu Liang Init Version +*******************************************************************************/ + + + +#ifndef IFXMIPS_PTM_PPE_VR9_H +#define IFXMIPS_PTM_PPE_VR9_H + + + +/* + * FPI Configuration Bus Register and Memory Address Mapping + */ +#define IFX_PPE (KSEG1 | 0x1E200000) +#define PP32_DEBUG_REG_ADDR(i, x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x000000 + (i) * 0x00010000) << 2))) +#define CDM_CODE_MEMORY(i, x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x001000 + (i) * 0x00010000) << 2))) +#define CDM_DATA_MEMORY(i, x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x004000 + (i) * 0x00010000) << 2))) +#define SB_RAM0_ADDR(x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x008000) << 2))) +#define SB_RAM1_ADDR(x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x009000) << 2))) +#define SB_RAM2_ADDR(x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x00A000) << 2))) +#define SB_RAM3_ADDR(x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x00B000) << 2))) +#define PPE_REG_ADDR(x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x00D000) << 2))) +#define QSB_CONF_REG_ADDR(x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x00E000) << 2))) +#define SB_RAM6_ADDR(x) ((volatile unsigned int*)(IFX_PPE + (((x) + 0x018000) << 2))) + +/* + * DWORD-Length of Memory Blocks + */ +#define PP32_DEBUG_REG_DWLEN 0x0030 +#define CDM_CODE_MEMORYn_DWLEN(n) ((n) == 0 ? 0x1000 : 0x0800) +#define CDM_DATA_MEMORY_DWLEN CDM_CODE_MEMORYn_DWLEN(1) +#define SB_RAM0_DWLEN 0x1000 +#define SB_RAM1_DWLEN 0x1000 +#define SB_RAM2_DWLEN 0x1000 +#define SB_RAM3_DWLEN 0x1000 +#define SB_RAM6_DWLEN 0x8000 +#define QSB_CONF_REG_DWLEN 0x0100 + +/* + * PP32 to FPI Address Mapping + */ +#define SB_BUFFER(__sb_addr) ((volatile unsigned int *)((((__sb_addr) >= 0x0000) && ((__sb_addr) <= 0x1FFF)) ? PPE_REG_ADDR((__sb_addr)) : \ + (((__sb_addr) >= 0x2000) && ((__sb_addr) <= 0x2FFF)) ? SB_RAM0_ADDR((__sb_addr) - 0x2000) : \ + (((__sb_addr) >= 0x3000) && ((__sb_addr) <= 0x3FFF)) ? SB_RAM1_ADDR((__sb_addr) - 0x3000) : \ + (((__sb_addr) >= 0x4000) && ((__sb_addr) <= 0x4FFF)) ? SB_RAM2_ADDR((__sb_addr) - 0x4000) : \ + (((__sb_addr) >= 0x5000) && ((__sb_addr) <= 0x5FFF)) ? SB_RAM3_ADDR((__sb_addr) - 0x5000) : \ + (((__sb_addr) >= 0x7000) && ((__sb_addr) <= 0x7FFF)) ? PPE_REG_ADDR((__sb_addr) - 0x7000) : \ + (((__sb_addr) >= 0x8000) && ((__sb_addr) <= 0xFFFF)) ? SB_RAM6_ADDR((__sb_addr) - 0x8000) : \ + 0)) + +/* + * PP32 Debug Control Register + */ +#define NUM_OF_PP32 2 + +#define PP32_FREEZE PPE_REG_ADDR(0x0000) +#define PP32_SRST PPE_REG_ADDR(0x0020) + +#define PP32_DBG_CTRL(n) PP32_DEBUG_REG_ADDR(n, 0x0000) + +#define DBG_CTRL_RESTART 0 +#define DBG_CTRL_STOP 1 + +#define PP32_CTRL_CMD(n) PP32_DEBUG_REG_ADDR(n, 0x0B00) + #define PP32_CTRL_CMD_RESTART (1 << 0) + #define PP32_CTRL_CMD_STOP (1 << 1) + #define PP32_CTRL_CMD_STEP (1 << 2) + #define PP32_CTRL_CMD_BREAKOUT (1 << 3) + +#define PP32_CTRL_OPT(n) PP32_DEBUG_REG_ADDR(n, 0x0C00) + #define PP32_CTRL_OPT_BREAKOUT_ON_STOP_ON (3 << 0) + #define PP32_CTRL_OPT_BREAKOUT_ON_STOP_OFF (2 << 0) + #define PP32_CTRL_OPT_BREAKOUT_ON_BREAKIN_ON (3 << 2) + #define PP32_CTRL_OPT_BREAKOUT_ON_BREAKIN_OFF (2 << 2) + #define PP32_CTRL_OPT_STOP_ON_BREAKIN_ON (3 << 4) + #define PP32_CTRL_OPT_STOP_ON_BREAKIN_OFF (2 << 4) + #define PP32_CTRL_OPT_STOP_ON_BREAKPOINT_ON (3 << 6) + #define PP32_CTRL_OPT_STOP_ON_BREAKPOINT_OFF (2 << 6) + #define PP32_CTRL_OPT_BREAKOUT_ON_STOP(n) (*PP32_CTRL_OPT(n) & (1 << 0)) + #define PP32_CTRL_OPT_BREAKOUT_ON_BREAKIN(n) (*PP32_CTRL_OPT(n) & (1 << 2)) + #define PP32_CTRL_OPT_STOP_ON_BREAKIN(n) (*PP32_CTRL_OPT(n) & (1 << 4)) + #define PP32_CTRL_OPT_STOP_ON_BREAKPOINT(n) (*PP32_CTRL_OPT(n) & (1 << 6)) + +#define PP32_BRK_PC(n, i) PP32_DEBUG_REG_ADDR(n, 0x0900 + (i) * 2) +#define PP32_BRK_PC_MASK(n, i) PP32_DEBUG_REG_ADDR(n, 0x0901 + (i) * 2) +#define PP32_BRK_DATA_ADDR(n, i) PP32_DEBUG_REG_ADDR(n, 0x0904 + (i) * 2) +#define PP32_BRK_DATA_ADDR_MASK(n, i) PP32_DEBUG_REG_ADDR(n, 0x0905 + (i) * 2) +#define PP32_BRK_DATA_VALUE_RD(n, i) PP32_DEBUG_REG_ADDR(n, 0x0908 + (i) * 2) +#define PP32_BRK_DATA_VALUE_RD_MASK(n, i) PP32_DEBUG_REG_ADDR(n, 0x0909 + (i) * 2) +#define PP32_BRK_DATA_VALUE_WR(n, i) PP32_DEBUG_REG_ADDR(n, 0x090C + (i) * 2) +#define PP32_BRK_DATA_VALUE_WR_MASK(n, i) PP32_DEBUG_REG_ADDR(n, 0x090D + (i) * 2) + #define PP32_BRK_CONTEXT_MASK(i) (1 << (i)) + #define PP32_BRK_CONTEXT_MASK_EN (1 << 4) + #define PP32_BRK_COMPARE_GREATER_EQUAL (1 << 5) // valid for break data value rd/wr only + #define PP32_BRK_COMPARE_LOWER_EQUAL (1 << 6) + #define PP32_BRK_COMPARE_EN (1 << 7) + +#define PP32_BRK_TRIG(n) PP32_DEBUG_REG_ADDR(n, 0x0F00) + #define PP32_BRK_GRPi_PCn_ON(i, n) ((3 << ((n) * 2)) << ((i) * 16)) + #define PP32_BRK_GRPi_PCn_OFF(i, n) ((2 << ((n) * 2)) << ((i) * 16)) + #define PP32_BRK_GRPi_DATA_ADDRn_ON(i, n) ((3 << ((n) * 2 + 4)) << ((i) * 16)) + #define PP32_BRK_GRPi_DATA_ADDRn_OFF(i, n) ((2 << ((n) * 2 + 4)) << ((i) * 16)) + #define PP32_BRK_GRPi_DATA_VALUE_RDn_ON(i, n) ((3 << ((n) * 2 + 8)) << ((i) * 16)) + #define PP32_BRK_GRPi_DATA_VALUE_RDn_OFF(i, n)((2 << ((n) * 2 + 8)) << ((i) * 16)) + #define PP32_BRK_GRPi_DATA_VALUE_WRn_ON(i, n) ((3 << ((n) * 2 + 12)) << ((i) * 16)) + #define PP32_BRK_GRPi_DATA_VALUE_WRn_OFF(i, n)((2 << ((n) * 2 + 12)) << ((i) * 16)) + #define PP32_BRK_GRPi_PCn(k, i, n) (*PP32_BRK_TRIG(k) & ((1 << ((n))) << ((i) * 8))) + #define PP32_BRK_GRPi_DATA_ADDRn(k, i, n) (*PP32_BRK_TRIG(k) & ((1 << ((n) + 2)) << ((i) * 8))) + #define PP32_BRK_GRPi_DATA_VALUE_RDn(k, i, n) (*PP32_BRK_TRIG(k) & ((1 << ((n) + 4)) << ((i) * 8))) + #define PP32_BRK_GRPi_DATA_VALUE_WRn(k, i, n) (*PP32_BRK_TRIG(k) & ((1 << ((n) + 6)) << ((i) * 8))) + +#define PP32_CPU_STATUS(n) PP32_DEBUG_REG_ADDR(n, 0x0D00) +#define PP32_HALT_STAT(n) PP32_CPU_STATUS(n) +#define PP32_DBG_CUR_PC(n) PP32_CPU_STATUS(n) + #define PP32_CPU_USER_STOPPED(n) (*PP32_CPU_STATUS(n) & (1 << 0)) + #define PP32_CPU_USER_BREAKIN_RCV(n) (*PP32_CPU_STATUS(n) & (1 << 1)) + #define PP32_CPU_USER_BREAKPOINT_MET(n) (*PP32_CPU_STATUS(n) & (1 << 2)) + #define PP32_CPU_CUR_PC(n) (*PP32_CPU_STATUS(n) >> 16) + +#define PP32_BREAKPOINT_REASONS(n) PP32_DEBUG_REG_ADDR(n, 0x0A00) + #define PP32_BRK_PC_MET(n, i) (*PP32_BREAKPOINT_REASONS(n) & (1 << (i))) + #define PP32_BRK_DATA_ADDR_MET(n, i) (*PP32_BREAKPOINT_REASONS(n) & (1 << ((i) + 2))) + #define PP32_BRK_DATA_VALUE_RD_MET(n, i) (*PP32_BREAKPOINT_REASONS(n) & (1 << ((i) + 4))) + #define PP32_BRK_DATA_VALUE_WR_MET(n, i) (*PP32_BREAKPOINT_REASONS(n) & (1 << ((i) + 6))) + #define PP32_BRK_DATA_VALUE_RD_LO_EQ(n, i) (*PP32_BREAKPOINT_REASONS(n) & (1 << ((i) * 2 + 8))) + #define PP32_BRK_DATA_VALUE_RD_GT_EQ(n, i) (*PP32_BREAKPOINT_REASONS(n) & (1 << ((i) * 2 + 9))) + #define PP32_BRK_DATA_VALUE_WR_LO_EQ(n, i) (*PP32_BREAKPOINT_REASONS(n) & (1 << ((i) * 2 + 12))) + #define PP32_BRK_DATA_VALUE_WR_GT_EQ(n, i) (*PP32_BREAKPOINT_REASONS(n) & (1 << ((i) * 2 + 13))) + #define PP32_BRK_CUR_CONTEXT(n) ((*PP32_BREAKPOINT_REASONS(n) >> 16) & 0x03) + +#define PP32_GP_REG_BASE(n) PP32_DEBUG_REG_ADDR(n, 0x0E00) +#define PP32_GP_CONTEXTi_REGn(n, i, j) PP32_DEBUG_REG_ADDR(n, 0x0E00 + (i) * 16 + (j)) + +/* + * SAR Registers + */ +#define SAR_MODE_CFG PPE_REG_ADDR(0x080A) +#define SAR_RX_CMD_CNT PPE_REG_ADDR(0x080B) +#define SAR_TX_CMD_CNT PPE_REG_ADDR(0x080C) +#define SAR_RX_CTX_CFG PPE_REG_ADDR(0x080D) +#define SAR_TX_CTX_CFG PPE_REG_ADDR(0x080E) +#define SAR_TX_CMD_DONE_CNT PPE_REG_ADDR(0x080F) +#define SAR_POLY_CFG_SET0 PPE_REG_ADDR(0x0812) +#define SAR_POLY_CFG_SET1 PPE_REG_ADDR(0x0813) +#define SAR_POLY_CFG_SET2 PPE_REG_ADDR(0x0814) +#define SAR_POLY_CFG_SET3 PPE_REG_ADDR(0x0815) +#define SAR_CRC_SIZE_CFG PPE_REG_ADDR(0x0816) + +/* + * PDMA/EMA Registers + */ +#define PDMA_CFG PPE_REG_ADDR(0x0A00) +#define PDMA_RX_CMDCNT PPE_REG_ADDR(0x0A01) +#define PDMA_TX_CMDCNT PPE_REG_ADDR(0x0A02) +#define PDMA_RX_FWDATACNT PPE_REG_ADDR(0x0A03) +#define PDMA_TX_FWDATACNT PPE_REG_ADDR(0x0A04) +#define PDMA_RX_CTX_CFG PPE_REG_ADDR(0x0A05) +#define PDMA_TX_CTX_CFG PPE_REG_ADDR(0x0A06) +#define PDMA_RX_MAX_LEN_REG PPE_REG_ADDR(0x0A07) +#define PDMA_RX_DELAY_CFG PPE_REG_ADDR(0x0A08) +#define PDMA_INT_FIFO_RD PPE_REG_ADDR(0x0A09) +#define PDMA_ISR PPE_REG_ADDR(0x0A0A) +#define PDMA_IER PPE_REG_ADDR(0x0A0B) +#define PDMA_SUBID PPE_REG_ADDR(0x0A0C) +#define PDMA_BAR0 PPE_REG_ADDR(0x0A0D) +#define PDMA_BAR1 PPE_REG_ADDR(0x0A0E) + +#define SAR_PDMA_RX_CMDBUF_CFG PPE_REG_ADDR(0x0F00) +#define SAR_PDMA_TX_CMDBUF_CFG PPE_REG_ADDR(0x0F01) +#define SAR_PDMA_RX_FW_CMDBUF_CFG PPE_REG_ADDR(0x0F02) +#define SAR_PDMA_TX_FW_CMDBUF_CFG PPE_REG_ADDR(0x0F03) +#define SAR_PDMA_RX_CMDBUF_STATUS PPE_REG_ADDR(0x0F04) +#define SAR_PDMA_TX_CMDBUF_STATUS PPE_REG_ADDR(0x0F05) + +#define PDMA_ALIGNMENT 32 // same as Central DMA because of descriptor swap +#define EMA_ALIGNMENT PDMA_ALIGNMENT + +/* + * Mailbox IGU1 Interrupt + */ +#define PPE_MAILBOX_IGU1_INT INT_NUM_IM2_IRL24 + + + +#endif // IFXMIPS_PTM_PPE_VR9_H diff --git a/package/kernel/lantiq/ltq-ptm/src/ifxmips_ptm_test.c b/package/kernel/lantiq/ltq-ptm/src/ifxmips_ptm_test.c new file mode 100644 index 0000000..15d8352 --- /dev/null +++ b/package/kernel/lantiq/ltq-ptm/src/ifxmips_ptm_test.c @@ -0,0 +1,943 @@ +/****************************************************************************** +** +** FILE NAME : ifxmips_ptm_vdsl.c +** PROJECT : UEIP +** MODULES : PTM +** +** DATE : 7 Jul 2009 +** AUTHOR : Xu Liang +** DESCRIPTION : PTM driver common source file (core functions for VR9) +** COPYRIGHT : Copyright (c) 2006 +** Infineon Technologies AG +** Am Campeon 1-12, 85579 Neubiberg, Germany +** +** This program is free software; you can redistribute it and/or modify +** it under the terms of the GNU General Public License as published by +** the Free Software Foundation; either version 2 of the License, or +** (at your option) any later version. +** +** HISTORY +** $Date $Author $Comment +** 07 JUL 2009 Xu Liang Init Version +*******************************************************************************/ + + + +#ifdef CONFIG_IFX_PTM_TEST_PROC + +/* + * #################################### + * Head File + * #################################### + */ + +/* + * Common Head File + */ +#include <linux/kernel.h> +#include <linux/module.h> +#include <linux/version.h> +#include <linux/types.h> +#include <linux/errno.h> +#include <linux/proc_fs.h> +#include <linux/init.h> +#include <linux/ioctl.h> +#include <linux/etherdevice.h> + +/* + * Chip Specific Head File + */ +#include <asm/ifx/ifx_types.h> +#include <asm/ifx/ifx_regs.h> +#include <asm/ifx/common_routines.h> +#include "ifxmips_ptm_common.h" +#include "ifxmips_ptm_ppe_common.h" + + + +/* + * #################################### + * Definition + * #################################### + */ + + + +/* + * #################################### + * Declaration + * #################################### + */ + +/* + * Proc File Functions + */ +static inline void proc_file_create(void); +static inline void proc_file_delete(void); + +/* + * Proc Help Functions + */ +static int proc_write_mem(struct file *, const char *, unsigned long, void *); +static int proc_read_pp32(char *, char **, off_t, int, int *, void *); +static int proc_write_pp32(struct file *, const char *, unsigned long, void *); +static int stricmp(const char *, const char *); +static int strincmp(const char *, const char *, int); +static int get_token(char **, char **, int *, int *); +static int get_number(char **, int *, int); +static inline void ignore_space(char **, int *); + + + +/* + * #################################### + * Local Variable + * #################################### + */ + + + +/* + * #################################### + * Local Function + * #################################### + */ + +static inline void proc_file_create(void) +{ + struct proc_dir_entry *res; + + res = create_proc_entry("driver/ifx_ptm/mem", + 0, + NULL); + if ( res != NULL ) + res->write_proc = proc_write_mem; + else + printk("%s:%s:%d: failed to create proc mem!", __FILE__, __func__, __LINE__); + + res = create_proc_entry("driver/ifx_ptm/pp32", + 0, + NULL); + if ( res != NULL ) { + res->read_proc = proc_read_pp32; + res->write_proc = proc_write_pp32; + } + else + printk("%s:%s:%d: failed to create proc pp32!", __FILE__, __func__, __LINE__); +} + +static inline void proc_file_delete(void) +{ + remove_proc_entry("driver/ifx_ptm/pp32", NULL); + + remove_proc_entry("driver/ifx_ptm/mem", NULL); +} + +static inline unsigned long sb_addr_to_fpi_addr_convert(unsigned long sb_addr) +{ +#define PP32_SB_ADDR_END 0xFFFF + + if ( sb_addr < PP32_SB_ADDR_END) { + return (unsigned long ) SB_BUFFER(sb_addr); + } + else { + return sb_addr; + } +} + +static int proc_write_mem(struct file *file, const char *buf, unsigned long count, void *data) +{ + char *p1, *p2; + int len; + int colon; + unsigned long *p; + char local_buf[1024]; + int i, n, l; + + len = sizeof(local_buf) < count ? sizeof(local_buf) - 1 : count; + len = len - copy_from_user(local_buf, buf, len); + local_buf[len] = 0; + + p1 = local_buf; + colon = 1; + while ( get_token(&p1, &p2, &len, &colon) ) + { + if ( stricmp(p1, "w") == 0 || stricmp(p1, "write") == 0 || stricmp(p1, "r") == 0 || stricmp(p1, "read") == 0 ) + break; + + p1 = p2; + colon = 1; + } + + if ( *p1 == 'w' ) + { + ignore_space(&p2, &len); + p = (unsigned long *)get_number(&p2, &len, 1); + p = (unsigned long *)sb_addr_to_fpi_addr_convert( (unsigned long) p); + + if ( (u32)p >= KSEG0 ) + while ( 1 ) + { + ignore_space(&p2, &len); + if ( !len || !((*p2 >= '0' && *p2 <= '9') || (*p2 >= 'a' && *p2 <= 'f') || (*p2 >= 'A' && *p2 <= 'F')) ) + break; + + *p++ = (u32)get_number(&p2, &len, 1); + } + } + else if ( *p1 == 'r' ) + { + ignore_space(&p2, &len); + p = (unsigned long *)get_number(&p2, &len, 1); + p = (unsigned long *)sb_addr_to_fpi_addr_convert( (unsigned long) p); + + if ( (u32)p >= KSEG0 ) + { + ignore_space(&p2, &len); + n = (int)get_number(&p2, &len, 0); + if ( n ) + { + char str[32] = {0}; + char *pch = str; + int k; + u32 data; + char c; + + n += (l = ((int)p >> 2) & 0x03); + p = (unsigned long *)((u32)p & ~0x0F); + for ( i = 0; i < n; i++ ) + { + if ( (i & 0x03) == 0 ) + { + printk("%08X:", (u32)p); + pch = str; + } + if ( i < l ) + { + printk(" "); + sprintf(pch, " "); + } + else + { + data = (u32)*p; + printk(" %08X", data); + for ( k = 0; k < 4; k++ ) + { + c = ((char*)&data)[k]; + pch[k] = c < ' ' ? '.' : c; + } + } + p++; + pch += 4; + if ( (i & 0x03) == 0x03 ) + { + pch[0] = 0; + printk(" ; %s\n", str); + } + } + if ( (n & 0x03) != 0x00 ) + { + for ( k = 4 - (n & 0x03); k > 0; k-- ) + printk(" "); + pch[0] = 0; + printk(" ; %s\n", str); + } + } + } + } + + return count; +} + +#ifdef CONFIG_DANUBE + +static int proc_read_pp32(char *page, char **start, off_t off, int count, int *eof, void *data) +{ + static const char *halt_stat[] = { + "reset", + "break in line", + "stop", + "step", + "code", + "data0", + "data1" + }; + static const char *brk_src_data[] = { + "off", + "read", + "write", + "read/write", + "write_equal", + "N/A", + "N/A", + "N/A" + }; + static const char *brk_src_code[] = { + "off", + "on" + }; + + int len = 0; + int cur_task; + int i, j; + int k; + unsigned long bit; + + len += sprintf(page + off + len, "Task No %d, PC %04x\n", *PP32_DBG_TASK_NO & 0x03, *PP32_DBG_CUR_PC & 0xFFFF); + + if ( !(*PP32_HALT_STAT & 0x01) ) + len += sprintf(page + off + len, " Halt State: Running\n"); + else + { + len += sprintf(page + off + len, " Halt State: Stopped"); + k = 0; + for ( bit = 2, i = 0; bit <= (1 << 7); bit <<= 1, i++ ) + if ( (*PP32_HALT_STAT & bit) ) + { + if ( !k ) + { + len += sprintf(page + off + len, ", "); + k++; + } + else + len += sprintf(page + off + len, " | "); + len += sprintf(page + off + len, halt_stat[i]); + } + + len += sprintf(page + off + len, "\n"); + + cur_task = *PP32_DBG_TASK_NO & 0x03; + len += sprintf(page + off + len, "General Purpose Register (Task %d):\n", cur_task); + for ( i = 0; i < 4; i++ ) + { + for ( j = 0; j < 4; j++ ) + len += sprintf(page + off + len, " %2d: %08x", i + j * 4, *PP32_DBG_TASK_GPR(cur_task, i + j * 4)); + len += sprintf(page + off + len, "\n"); + } + } + + len += sprintf(page + off + len, " Break Src: data1 - %s, data0 - %s, pc3 - %s, pc2 - %s, pc1 - %s, pc0 - %s\n", + brk_src_data[(*PP32_BRK_SRC >> 11) & 0x07], brk_src_data[(*PP32_BRK_SRC >> 8) & 0x07], brk_src_code[(*PP32_BRK_SRC >> 3) & 0x01], brk_src_code[(*PP32_BRK_SRC >> 2) & 0x01], brk_src_code[(*PP32_BRK_SRC >> 1) & 0x01], brk_src_code[*PP32_BRK_SRC & 0x01]); + + for ( i = 0; i < 4; i++ ) + len += sprintf(page + off + len, " pc%d: %04x - %04x\n", i, *PP32_DBG_PC_MIN(i), *PP32_DBG_PC_MAX(i)); + + for ( i = 0; i < 2; i++ ) + len += sprintf(page + off + len, " data%d: %04x - %04x (%08x)\n", i, *PP32_DBG_DATA_MIN(i), *PP32_DBG_DATA_MAX(i), *PP32_DBG_DATA_VAL(i)); + + *eof = 1; + + return len; +} + +static int proc_write_pp32(struct file *file, const char *buf, unsigned long count, void *data) +{ + char str[2048]; + char *p; + int len, rlen; + + int id; + u32 addr; + u32 cmd; + + len = count < sizeof(str) ? count : sizeof(str) - 1; + rlen = len - copy_from_user(str, buf, len); + while ( rlen && str[rlen - 1] <= ' ' ) + rlen--; + str[rlen] = 0; + for ( p = str; *p && *p <= ' '; p++, rlen-- ); + if ( !*p ) + { + return 0; + } + + if ( stricmp(str, "start") == 0 ) + *PP32_DBG_CTRL = DBG_CTRL_START_SET(1); + else if ( stricmp(str, "stop") == 0 ) + *PP32_DBG_CTRL = DBG_CTRL_STOP_SET(1); + else if ( stricmp(str, "step") == 0 ) + *PP32_DBG_CTRL = DBG_CTRL_STEP_SET(1); + else if ( strincmp(p, "pc", 2) == 0 && p[2] >= '0' && p[2] <= '3' && p[3] == ' ' ) + { + id = (int)(p[2] - '0'); + p += 4; + rlen -= 4; + *PP32_BRK_SRC &= ~PP32_BRK_SRC_PC(id); + if ( stricmp(p, "off") != 0 ) + { + ignore_space(&p, &rlen); + *PP32_DBG_PC_MIN(id) = *PP32_DBG_PC_MAX(id) = get_number(&p, &rlen, 1); + ignore_space(&p, &rlen); + if ( rlen > 0 ) + { + addr = get_number(&p, &rlen, 1); + if ( addr >= *PP32_DBG_PC_MIN(id) ) + *PP32_DBG_PC_MAX(id) = addr; + else + *PP32_DBG_PC_MIN(id) = addr; + } + *PP32_BRK_SRC |= PP32_BRK_SRC_PC(id); + } + } + else if ( strincmp(p, "daddr", 5) == 0 && p[5] >= '0' && p[5] <= '1' && p[6] == ' ' ) + { + id = (int)(p[5] - '0'); + p += 7; + rlen -= 7; + *PP32_BRK_SRC &= ~PP32_BRK_SRC_DATA(id, 7); + if ( stricmp(p, "off") != 0 ) + { + ignore_space(&p, &rlen); + *PP32_DBG_DATA_MIN(id) = *PP32_DBG_DATA_MAX(id) = get_number(&p, &rlen, 1); + cmd = 1; + ignore_space(&p, &rlen); + if ( rlen > 0 && ((*p >= '0' && *p <= '9') || (*p >= 'a' && *p <= 'f') || (*p >= 'A' && *p <= 'F')) ) + { + addr = get_number(&p, &rlen, 1); + if ( addr >= *PP32_DBG_PC_MIN(id) ) + *PP32_DBG_DATA_MAX(id) = addr; + else + *PP32_DBG_DATA_MIN(id) = addr; + ignore_space(&p, &rlen); + } + if ( *p == 'w' ) + cmd = 2; + else if ( *p == 'r' && p[1] == 'w' ) + { + cmd = 3; + p++; + rlen--; + } + p++; + rlen--; + if ( rlen > 0 ) + { + ignore_space(&p, &rlen); + if ( (*p >= '0' && *p <= '9') || (*p >= 'a' && *p <= 'f') || (*p >= 'A' && *p <= 'F')) + { + *PP32_DBG_DATA_VAL(id) = get_number(&p, &rlen, 1); + cmd = 4; + } + } + *PP32_BRK_SRC |= PP32_BRK_SRC_DATA(id, cmd); + } + } + else + { + printk("echo \"<command>\" > /proc/driver/ifx_ptm/pp32\n"); + printk(" command:\n"); + printk(" start - run pp32\n"); + printk(" stop - stop pp32\n"); + printk(" step - run pp32 with one step only\n"); + printk(" pc0 - pc0 <addr_min [addr_max]>/off, set break point PC0\n"); + printk(" pc1 - pc1 <addr_min [addr_max]>/off, set break point PC1\n"); + printk(" pc2 - pc2 <addr_min [addr_max]>/off, set break point PC2\n"); + printk(" pc3 - pc3 <addr_min [addr_max]>/off, set break point PC3\n"); + printk(" daddr0 - daddr0 <addr_min [addr_max] r/w/rw [value]>/off, set break point data address 0\n"); + printk(" daddr1 - daddr1 <addr_min [addr_max] r/w/rw [value]>/off, set break point data address 1\n"); + printk(" help - print this screen\n"); + } + + return count; +} + +#else + +static int proc_read_pp32(char *page, char **start, off_t off, int count, int *eof, void *data) +{ + static const char *stron = " on"; + static const char *stroff = "off"; + + int len = 0; + int cur_context; + int f_stopped; + char str[256]; + char strlength; + int i, j; + + int pp32; + + for ( pp32 = 0; pp32 < NUM_OF_PP32; pp32++ ) + { + f_stopped = 0; + + len += sprintf(page + off + len, "===== pp32 core %d =====\n", pp32); + + #ifdef CONFIG_VR9 + if ( (*PP32_FREEZE & (1 << (pp32 << 4))) != 0 ) + { + sprintf(str, "freezed"); + f_stopped = 1; + } + #else + if ( 0 ) + { + } + #endif + else if ( PP32_CPU_USER_STOPPED(pp32) || PP32_CPU_USER_BREAKIN_RCV(pp32) || PP32_CPU_USER_BREAKPOINT_MET(pp32) ) + { + strlength = 0; + if ( PP32_CPU_USER_STOPPED(pp32) ) + strlength += sprintf(str + strlength, "stopped"); + if ( PP32_CPU_USER_BREAKPOINT_MET(pp32) ) + strlength += sprintf(str + strlength, strlength ? " | breakpoint" : "breakpoint"); + if ( PP32_CPU_USER_BREAKIN_RCV(pp32) ) + strlength += sprintf(str + strlength, strlength ? " | breakin" : "breakin"); + f_stopped = 1; + } + else if ( PP32_CPU_CUR_PC(pp32) == PP32_CPU_CUR_PC(pp32) ) + { + unsigned int pc_value[64] = {0}; + + f_stopped = 1; + for ( i = 0; f_stopped && i < NUM_ENTITY(pc_value); i++ ) + { + pc_value[i] = PP32_CPU_CUR_PC(pp32); + for ( j = 0; j < i; j++ ) + if ( pc_value[j] != pc_value[i] ) + { + f_stopped = 0; + break; + } + } + if ( f_stopped ) + sprintf(str, "hang"); + } + if ( !f_stopped ) + sprintf(str, "running"); + cur_context = PP32_BRK_CUR_CONTEXT(pp32); + len += sprintf(page + off + len, "Context: %d, PC: 0x%04x, %s\n", cur_context, PP32_CPU_CUR_PC(pp32), str); + + if ( PP32_CPU_USER_BREAKPOINT_MET(pp32) ) + { + strlength = 0; + if ( PP32_BRK_PC_MET(pp32, 0) ) + strlength += sprintf(str + strlength, "pc0"); + if ( PP32_BRK_PC_MET(pp32, 1) ) + strlength += sprintf(str + strlength, strlength ? " | pc1" : "pc1"); + if ( PP32_BRK_DATA_ADDR_MET(pp32, 0) ) + strlength += sprintf(str + strlength, strlength ? " | daddr0" : "daddr0"); + if ( PP32_BRK_DATA_ADDR_MET(pp32, 1) ) + strlength += sprintf(str + strlength, strlength ? " | daddr1" : "daddr1"); + if ( PP32_BRK_DATA_VALUE_RD_MET(pp32, 0) ) + { + strlength += sprintf(str + strlength, strlength ? " | rdval0" : "rdval0"); + if ( PP32_BRK_DATA_VALUE_RD_LO_EQ(pp32, 0) ) + { + if ( PP32_BRK_DATA_VALUE_RD_GT_EQ(pp32, 0) ) + strlength += sprintf(str + strlength, " =="); + else + strlength += sprintf(str + strlength, " <="); + } + else if ( PP32_BRK_DATA_VALUE_RD_GT_EQ(pp32, 0) ) + strlength += sprintf(str + strlength, " >="); + } + if ( PP32_BRK_DATA_VALUE_RD_MET(pp32, 1) ) + { + strlength += sprintf(str + strlength, strlength ? " | rdval1" : "rdval1"); + if ( PP32_BRK_DATA_VALUE_RD_LO_EQ(pp32, 1) ) + { + if ( PP32_BRK_DATA_VALUE_RD_GT_EQ(pp32, 1) ) + strlength += sprintf(str + strlength, " =="); + else + strlength += sprintf(str + strlength, " <="); + } + else if ( PP32_BRK_DATA_VALUE_RD_GT_EQ(pp32, 1) ) + strlength += sprintf(str + strlength, " >="); + } + if ( PP32_BRK_DATA_VALUE_WR_MET(pp32, 0) ) + { + strlength += sprintf(str + strlength, strlength ? " | wtval0" : "wtval0"); + if ( PP32_BRK_DATA_VALUE_WR_LO_EQ(pp32, 0) ) + { + if ( PP32_BRK_DATA_VALUE_WR_GT_EQ(pp32, 0) ) + strlength += sprintf(str + strlength, " =="); + else + strlength += sprintf(str + strlength, " <="); + } + else if ( PP32_BRK_DATA_VALUE_WR_GT_EQ(pp32, 0) ) + strlength += sprintf(str + strlength, " >="); + } + if ( PP32_BRK_DATA_VALUE_WR_MET(pp32, 1) ) + { + strlength += sprintf(str + strlength, strlength ? " | wtval1" : "wtval1"); + if ( PP32_BRK_DATA_VALUE_WR_LO_EQ(pp32, 1) ) + { + if ( PP32_BRK_DATA_VALUE_WR_GT_EQ(pp32, 1) ) + strlength += sprintf(str + strlength, " =="); + else + strlength += sprintf(str + strlength, " <="); + } + else if ( PP32_BRK_DATA_VALUE_WR_GT_EQ(pp32, 1) ) + strlength += sprintf(str + strlength, " >="); + } + len += sprintf(page + off + len, "break reason: %s\n", str); + } + + if ( f_stopped ) + { + len += sprintf(page + off + len, "General Purpose Register (Context %d):\n", cur_context); + for ( i = 0; i < 4; i++ ) + { + for ( j = 0; j < 4; j++ ) + len += sprintf(page + off + len, " %2d: %08x", i + j * 4, *PP32_GP_CONTEXTi_REGn(pp32, cur_context, i + j * 4)); + len += sprintf(page + off + len, "\n"); + } + } + + len += sprintf(page + off + len, "break out on: break in - %s, stop - %s\n", + PP32_CTRL_OPT_BREAKOUT_ON_BREAKIN(pp32) ? stron : stroff, + PP32_CTRL_OPT_BREAKOUT_ON_STOP(pp32) ? stron : stroff); + len += sprintf(page + off + len, " stop on: break in - %s, break point - %s\n", + PP32_CTRL_OPT_STOP_ON_BREAKIN(pp32) ? stron : stroff, + PP32_CTRL_OPT_STOP_ON_BREAKPOINT(pp32) ? stron : stroff); + len += sprintf(page + off + len, "breakpoint:\n"); + len += sprintf(page + off + len, " pc0: 0x%08x, %s\n", *PP32_BRK_PC(pp32, 0), PP32_BRK_GRPi_PCn(pp32, 0, 0) ? "group 0" : "off"); + len += sprintf(page + off + len, " pc1: 0x%08x, %s\n", *PP32_BRK_PC(pp32, 1), PP32_BRK_GRPi_PCn(pp32, 1, 1) ? "group 1" : "off"); + len += sprintf(page + off + len, " daddr0: 0x%08x, %s\n", *PP32_BRK_DATA_ADDR(pp32, 0), PP32_BRK_GRPi_DATA_ADDRn(pp32, 0, 0) ? "group 0" : "off"); + len += sprintf(page + off + len, " daddr1: 0x%08x, %s\n", *PP32_BRK_DATA_ADDR(pp32, 1), PP32_BRK_GRPi_DATA_ADDRn(pp32, 1, 1) ? "group 1" : "off"); + len += sprintf(page + off + len, " rdval0: 0x%08x\n", *PP32_BRK_DATA_VALUE_RD(pp32, 0)); + len += sprintf(page + off + len, " rdval1: 0x%08x\n", *PP32_BRK_DATA_VALUE_RD(pp32, 1)); + len += sprintf(page + off + len, " wrval0: 0x%08x\n", *PP32_BRK_DATA_VALUE_WR(pp32, 0)); + len += sprintf(page + off + len, " wrval1: 0x%08x\n", *PP32_BRK_DATA_VALUE_WR(pp32, 1)); + } + + *eof = 1; + + return len; +} + +static int proc_write_pp32(struct file *file, const char *buf, unsigned long count, void *data) +{ + char str[2048]; + char *p; + int len, rlen; + + int pp32 = 0; + u32 addr; + + len = count < sizeof(str) ? count : sizeof(str) - 1; + rlen = len - copy_from_user(str, buf, len); + while ( rlen && str[rlen - 1] <= ' ' ) + rlen--; + str[rlen] = 0; + for ( p = str; *p && *p <= ' '; p++, rlen-- ); + if ( !*p ) + return 0; + + if ( strincmp(p, "pp32 ", 5) == 0 ) + { + p += 5; + rlen -= 5; + + while ( rlen > 0 && *p >= '0' && *p <= '9' ) + { + pp32 += *p - '0'; + p++; + rlen--; + } + while ( rlen > 0 && *p && *p <= ' ' ) + { + p++; + rlen--; + } + + if ( pp32 >= NUM_OF_PP32 ) + { + printk(KERN_ERR __FILE__ ":%d:%s: incorrect pp32 index - %d\n", __LINE__, __FUNCTION__, pp32); + return count; + } + } + + if ( stricmp(p, "start") == 0 ) + { + #ifdef CONFIG_AMAZON_SE + *PP32_CTRL_CMD(pp32) = 0; + #endif + *PP32_CTRL_CMD(pp32) = PP32_CTRL_CMD_RESTART; + } + else if ( stricmp(p, "stop") == 0 ) + { + #ifdef CONFIG_AMAZON_SE + *PP32_CTRL_CMD(pp32) = 0; + #endif + *PP32_CTRL_CMD(pp32) = PP32_CTRL_CMD_STOP; + } + else if ( stricmp(p, "step") == 0 ) + { + #ifdef CONFIG_AMAZON_SE + *PP32_CTRL_CMD(pp32) = 0; + #endif + *PP32_CTRL_CMD(pp32) = PP32_CTRL_CMD_STEP; + } + #ifdef CONFIG_VR9 + else if ( stricmp(p, "unfreeze") == 0 ) + *PP32_FREEZE &= ~(1 << (pp32 << 4)); + else if ( stricmp(p, "freeze") == 0 ) + *PP32_FREEZE |= 1 << (pp32 << 4); + #else + else if ( stricmp(p, "unfreeze") == 0 ) + *PP32_DBG_CTRL(pp32) = DBG_CTRL_RESTART; + else if ( stricmp(p, "freeze") == 0 ) + *PP32_DBG_CTRL(pp32) = DBG_CTRL_STOP; + #endif + else if ( strincmp(p, "pc0 ", 4) == 0 ) + { + p += 4; + rlen -= 4; + if ( stricmp(p, "off") == 0 ) + { + *PP32_BRK_TRIG(pp32) = PP32_BRK_GRPi_PCn_OFF(0, 0); + *PP32_BRK_PC_MASK(pp32, 0) = PP32_BRK_CONTEXT_MASK_EN; + *PP32_BRK_PC(pp32, 0) = 0; + } + else + { + addr = get_number(&p, &rlen, 1); + *PP32_BRK_PC(pp32, 0) = addr; + *PP32_BRK_PC_MASK(pp32, 0) = PP32_BRK_CONTEXT_MASK_EN | PP32_BRK_CONTEXT_MASK(0) | PP32_BRK_CONTEXT_MASK(1) | PP32_BRK_CONTEXT_MASK(2) | PP32_BRK_CONTEXT_MASK(3); + *PP32_BRK_TRIG(pp32) = PP32_BRK_GRPi_PCn_ON(0, 0); + } + } + else if ( strincmp(p, "pc1 ", 4) == 0 ) + { + p += 4; + rlen -= 4; + if ( stricmp(p, "off") == 0 ) + { + *PP32_BRK_TRIG(pp32) = PP32_BRK_GRPi_PCn_OFF(1, 1); + *PP32_BRK_PC_MASK(pp32, 1) = PP32_BRK_CONTEXT_MASK_EN; + *PP32_BRK_PC(pp32, 1) = 0; + } + else + { + addr = get_number(&p, &rlen, 1); + *PP32_BRK_PC(pp32, 1) = addr; + *PP32_BRK_PC_MASK(pp32, 1) = PP32_BRK_CONTEXT_MASK_EN | PP32_BRK_CONTEXT_MASK(0) | PP32_BRK_CONTEXT_MASK(1) | PP32_BRK_CONTEXT_MASK(2) | PP32_BRK_CONTEXT_MASK(3); + *PP32_BRK_TRIG(pp32) = PP32_BRK_GRPi_PCn_ON(1, 1); + } + } + else if ( strincmp(p, "daddr0 ", 7) == 0 ) + { + p += 7; + rlen -= 7; + if ( stricmp(p, "off") == 0 ) + { + *PP32_BRK_TRIG(pp32) = PP32_BRK_GRPi_DATA_ADDRn_OFF(0, 0); + *PP32_BRK_DATA_ADDR_MASK(pp32, 0) = PP32_BRK_CONTEXT_MASK_EN; + *PP32_BRK_DATA_ADDR(pp32, 0) = 0; + } + else + { + addr = get_number(&p, &rlen, 1); + *PP32_BRK_DATA_ADDR(pp32, 0) = addr; + *PP32_BRK_DATA_ADDR_MASK(pp32, 0) = PP32_BRK_CONTEXT_MASK_EN | PP32_BRK_CONTEXT_MASK(0) | PP32_BRK_CONTEXT_MASK(1) | PP32_BRK_CONTEXT_MASK(2) | PP32_BRK_CONTEXT_MASK(3); + *PP32_BRK_TRIG(pp32) = PP32_BRK_GRPi_DATA_ADDRn_ON(0, 0); + } + } + else if ( strincmp(p, "daddr1 ", 7) == 0 ) + { + p += 7; + rlen -= 7; + if ( stricmp(p, "off") == 0 ) + { + *PP32_BRK_TRIG(pp32) = PP32_BRK_GRPi_DATA_ADDRn_OFF(1, 1); + *PP32_BRK_DATA_ADDR_MASK(pp32, 1) = PP32_BRK_CONTEXT_MASK_EN; + *PP32_BRK_DATA_ADDR(pp32, 1) = 0; + } + else + { + addr = get_number(&p, &rlen, 1); + *PP32_BRK_DATA_ADDR(pp32, 1) = addr; + *PP32_BRK_DATA_ADDR_MASK(pp32, 1) = PP32_BRK_CONTEXT_MASK_EN | PP32_BRK_CONTEXT_MASK(0) | PP32_BRK_CONTEXT_MASK(1) | PP32_BRK_CONTEXT_MASK(2) | PP32_BRK_CONTEXT_MASK(3); + *PP32_BRK_TRIG(pp32) = PP32_BRK_GRPi_DATA_ADDRn_ON(1, 1); + } + } + else + { + + printk("echo \"<command>\" > /proc/driver/ifx_ptm/pp32\n"); + printk(" command:\n"); + printk(" unfreeze - unfreeze pp32\n"); + printk(" freeze - freeze pp32\n"); + printk(" start - run pp32\n"); + printk(" stop - stop pp32\n"); + printk(" step - run pp32 with one step only\n"); + printk(" pc0 - pc0 <addr>/off, set break point PC0\n"); + printk(" pc1 - pc1 <addr>/off, set break point PC1\n"); + printk(" daddr0 - daddr0 <addr>/off, set break point data address 0\n"); + printk(" daddr1 - daddr1 <addr>/off, set break point data address 1\n"); + printk(" help - print this screen\n"); + } + + if ( *PP32_BRK_TRIG(pp32) ) + *PP32_CTRL_OPT(pp32) = PP32_CTRL_OPT_STOP_ON_BREAKPOINT_ON; + else + *PP32_CTRL_OPT(pp32) = PP32_CTRL_OPT_STOP_ON_BREAKPOINT_OFF; + + return count; +} + +#endif + +static int stricmp(const char *p1, const char *p2) +{ + int c1, c2; + + while ( *p1 && *p2 ) + { + c1 = *p1 >= 'A' && *p1 <= 'Z' ? *p1 + 'a' - 'A' : *p1; + c2 = *p2 >= 'A' && *p2 <= 'Z' ? *p2 + 'a' - 'A' : *p2; + if ( (c1 -= c2) ) + return c1; + p1++; + p2++; + } + + return *p1 - *p2; +} + +static int strincmp(const char *p1, const char *p2, int n) +{ + int c1 = 0, c2; + + while ( n && *p1 && *p2 ) + { + c1 = *p1 >= 'A' && *p1 <= 'Z' ? *p1 + 'a' - 'A' : *p1; + c2 = *p2 >= 'A' && *p2 <= 'Z' ? *p2 + 'a' - 'A' : *p2; + if ( (c1 -= c2) ) + return c1; + p1++; + p2++; + n--; + } + + return n ? *p1 - *p2 : c1; +} + +static int get_token(char **p1, char **p2, int *len, int *colon) +{ + int tlen = 0; + + while ( *len && !((**p1 >= 'A' && **p1 <= 'Z') || (**p1 >= 'a' && **p1<= 'z')) ) + { + (*p1)++; + (*len)--; + } + if ( !*len ) + return 0; + + if ( *colon ) + { + *colon = 0; + *p2 = *p1; + while ( *len && **p2 > ' ' && **p2 != ',' ) + { + if ( **p2 == ':' ) + { + *colon = 1; + break; + } + (*p2)++; + (*len)--; + tlen++; + } + **p2 = 0; + } + else + { + *p2 = *p1; + while ( *len && **p2 > ' ' && **p2 != ',' ) + { + (*p2)++; + (*len)--; + tlen++; + } + **p2 = 0; + } + + return tlen; +} + +static int get_number(char **p, int *len, int is_hex) +{ + int ret = 0; + int n = 0; + + if ( (*p)[0] == '0' && (*p)[1] == 'x' ) + { + is_hex = 1; + (*p) += 2; + (*len) -= 2; + } + + if ( is_hex ) + { + while ( *len && ((**p >= '0' && **p <= '9') || (**p >= 'a' && **p <= 'f') || (**p >= 'A' && **p <= 'F')) ) + { + if ( **p >= '0' && **p <= '9' ) + n = **p - '0'; + else if ( **p >= 'a' && **p <= 'f' ) + n = **p - 'a' + 10; + else if ( **p >= 'A' && **p <= 'F' ) + n = **p - 'A' + 10; + ret = (ret << 4) | n; + (*p)++; + (*len)--; + } + } + else + { + while ( *len && **p >= '0' && **p <= '9' ) + { + n = **p - '0'; + ret = ret * 10 + n; + (*p)++; + (*len)--; + } + } + + return ret; +} + +static inline void ignore_space(char **p, int *len) +{ + while ( *len && (**p <= ' ' || **p == ':' || **p == '.' || **p == ',') ) + { + (*p)++; + (*len)--; + } +} + + + +/* + * #################################### + * Global Function + * #################################### + */ + + + +/* + * #################################### + * Init/Cleanup API + * #################################### + */ + +static int __init ifx_ptm_test_init(void) +{ + proc_file_create(); + + return 0; +} + +static void __exit ifx_ptm_test_exit(void) +{ + proc_file_delete(); +} + +module_init(ifx_ptm_test_init); +module_exit(ifx_ptm_test_exit); + +#endif diff --git a/package/kernel/lantiq/ltq-ptm/src/ifxmips_ptm_vdsl.c b/package/kernel/lantiq/ltq-ptm/src/ifxmips_ptm_vdsl.c new file mode 100644 index 0000000..745eb03 --- /dev/null +++ b/package/kernel/lantiq/ltq-ptm/src/ifxmips_ptm_vdsl.c @@ -0,0 +1,1080 @@ +/****************************************************************************** +** +** FILE NAME : ifxmips_ptm_vdsl.c +** PROJECT : UEIP +** MODULES : PTM +** +** DATE : 7 Jul 2009 +** AUTHOR : Xu Liang +** DESCRIPTION : PTM driver common source file (core functions for VR9) +** COPYRIGHT : Copyright (c) 2006 +** Infineon Technologies AG +** Am Campeon 1-12, 85579 Neubiberg, Germany +** +** This program is free software; you can redistribute it and/or modify +** it under the terms of the GNU General Public License as published by +** the Free Software Foundation; either version 2 of the License, or +** (at your option) any later version. +** +** HISTORY +** $Date $Author $Comment +** 07 JUL 2009 Xu Liang Init Version +*******************************************************************************/ + +#include <linux/version.h> +#include <linux/kernel.h> +#include <linux/module.h> +#include <linux/types.h> +#include <linux/ctype.h> +#include <linux/errno.h> +#include <linux/proc_fs.h> +#include <linux/init.h> +#include <linux/ioctl.h> +#include <linux/etherdevice.h> +#include <linux/interrupt.h> + +#include "ifxmips_ptm_vdsl.h" +#include <lantiq_soc.h> + +#define MODULE_PARM_ARRAY(a, b) module_param_array(a, int, NULL, 0) +#define MODULE_PARM(a, b) module_param(a, int, 0) + +static int wanqos_en = 0; +static int queue_gamma_map[4] = {0xFE, 0x01, 0x00, 0x00}; + +MODULE_PARM(wanqos_en, "i"); +MODULE_PARM_DESC(wanqos_en, "WAN QoS support, 1 - enabled, 0 - disabled."); + +MODULE_PARM_ARRAY(queue_gamma_map, "4-4i"); +MODULE_PARM_DESC(queue_gamma_map, "TX QoS queues mapping to 4 TX Gamma interfaces."); + +extern int (*ifx_mei_atm_showtime_enter)(struct port_cell_info *, void *); +extern int (*ifx_mei_atm_showtime_exit)(void); +extern int ifx_mei_atm_showtime_check(int *is_showtime, struct port_cell_info *port_cell, void **xdata_addr); + +static int g_showtime = 0; +static void *g_xdata_addr = NULL; + + +#define ENABLE_TMP_DBG 0 + +unsigned long cgu_get_pp32_clock(void) +{ + struct clk *c = clk_get_ppe(); + unsigned long rate = clk_get_rate(c); + clk_put(c); + return rate; +} + +static void ptm_setup(struct net_device *, int); +static struct net_device_stats *ptm_get_stats(struct net_device *); +static int ptm_open(struct net_device *); +static int ptm_stop(struct net_device *); + static unsigned int ptm_poll(int, unsigned int); + static int ptm_napi_poll(struct napi_struct *, int); +static int ptm_hard_start_xmit(struct sk_buff *, struct net_device *); +static int ptm_ioctl(struct net_device *, struct ifreq *, int); +static void ptm_tx_timeout(struct net_device *); + +static inline struct sk_buff* alloc_skb_rx(void); +static inline struct sk_buff* alloc_skb_tx(unsigned int); +static inline struct sk_buff *get_skb_pointer(unsigned int); +static inline int get_tx_desc(unsigned int, unsigned int *); + +/* + * Mailbox handler and signal function + */ +static irqreturn_t mailbox_irq_handler(int, void *); + +/* + * Tasklet to Handle Swap Descriptors + */ +static void do_swap_desc_tasklet(unsigned long); + + +/* + * Init & clean-up functions + */ +static inline int init_priv_data(void); +static inline void clear_priv_data(void); +static inline int init_tables(void); +static inline void clear_tables(void); + +static int g_wanqos_en = 0; + +static int g_queue_gamma_map[4]; + +static struct ptm_priv_data g_ptm_priv_data; + +static struct net_device_ops g_ptm_netdev_ops = { + .ndo_get_stats = ptm_get_stats, + .ndo_open = ptm_open, + .ndo_stop = ptm_stop, + .ndo_start_xmit = ptm_hard_start_xmit, + .ndo_validate_addr = eth_validate_addr, + .ndo_set_mac_address = eth_mac_addr, + .ndo_change_mtu = eth_change_mtu, + .ndo_do_ioctl = ptm_ioctl, + .ndo_tx_timeout = ptm_tx_timeout, +}; + +static struct net_device *g_net_dev[1] = {0}; +static char *g_net_dev_name[1] = {"ptm0"}; + +static int g_ptm_prio_queue_map[8]; + +static DECLARE_TASKLET(g_swap_desc_tasklet, do_swap_desc_tasklet, 0); + + +unsigned int ifx_ptm_dbg_enable = DBG_ENABLE_MASK_ERR; + +/* + * #################################### + * Local Function + * #################################### + */ + +static void ptm_setup(struct net_device *dev, int ndev) +{ + dev->netdev_ops = &g_ptm_netdev_ops; + netif_napi_add(dev, &g_ptm_priv_data.itf[ndev].napi, ptm_napi_poll, 16); + dev->watchdog_timeo = ETH_WATCHDOG_TIMEOUT; + + dev->dev_addr[0] = 0x00; + dev->dev_addr[1] = 0x20; + dev->dev_addr[2] = 0xda; + dev->dev_addr[3] = 0x86; + dev->dev_addr[4] = 0x23; + dev->dev_addr[5] = 0x75 + ndev; +} + +static struct net_device_stats *ptm_get_stats(struct net_device *dev) +{ + struct net_device_stats *s; + + if ( dev != g_net_dev[0] ) + return NULL; +s = &g_ptm_priv_data.itf[0].stats; + + return s; +} + +static int ptm_open(struct net_device *dev) +{ + ASSERT(dev == g_net_dev[0], "incorrect device"); + + napi_enable(&g_ptm_priv_data.itf[0].napi); + + IFX_REG_W32_MASK(0, 1, MBOX_IGU1_IER); + + netif_start_queue(dev); + + return 0; +} + +static int ptm_stop(struct net_device *dev) +{ + ASSERT(dev == g_net_dev[0], "incorrect device"); + + IFX_REG_W32_MASK(1 | (1 << 17), 0, MBOX_IGU1_IER); + + napi_disable(&g_ptm_priv_data.itf[0].napi); + + netif_stop_queue(dev); + + return 0; +} + +static unsigned int ptm_poll(int ndev, unsigned int work_to_do) +{ + unsigned int work_done = 0; + volatile struct rx_descriptor *desc; + struct rx_descriptor reg_desc; + struct sk_buff *skb, *new_skb; + + ASSERT(ndev >= 0 && ndev < ARRAY_SIZE(g_net_dev), "ndev = %d (wrong value)", ndev); + + while ( work_done < work_to_do ) { + desc = &WAN_RX_DESC_BASE[g_ptm_priv_data.itf[0].rx_desc_pos]; + if ( desc->own /* || !desc->c */ ) // if PP32 hold descriptor or descriptor not completed + break; + if ( ++g_ptm_priv_data.itf[0].rx_desc_pos == WAN_RX_DESC_NUM ) + g_ptm_priv_data.itf[0].rx_desc_pos = 0; + + reg_desc = *desc; + skb = get_skb_pointer(reg_desc.dataptr); + ASSERT(skb != NULL, "invalid pointer skb == NULL"); + + new_skb = alloc_skb_rx(); + if ( new_skb != NULL ) { + skb_reserve(skb, reg_desc.byteoff); + skb_put(skb, reg_desc.datalen); + + // parse protocol header + skb->dev = g_net_dev[0]; + skb->protocol = eth_type_trans(skb, skb->dev); + + g_net_dev[0]->last_rx = jiffies; + + netif_receive_skb(skb); + + g_ptm_priv_data.itf[0].stats.rx_packets++; + g_ptm_priv_data.itf[0].stats.rx_bytes += reg_desc.datalen; + + reg_desc.dataptr = (unsigned int)new_skb->data & 0x0FFFFFFF; + reg_desc.byteoff = RX_HEAD_MAC_ADDR_ALIGNMENT; + } + + reg_desc.datalen = RX_MAX_BUFFER_SIZE - RX_HEAD_MAC_ADDR_ALIGNMENT; + reg_desc.own = 1; + reg_desc.c = 0; + + /* write discriptor to memory */ + *((volatile unsigned int *)desc + 1) = *((unsigned int *)®_desc + 1); + wmb(); + *(volatile unsigned int *)desc = *(unsigned int *)®_desc; + + work_done++; + } + + return work_done; +} + +static int ptm_napi_poll(struct napi_struct *napi, int budget) +{ + int ndev = 0; + unsigned int work_done; + + work_done = ptm_poll(ndev, budget); + + // interface down + if ( !netif_running(napi->dev) ) { + napi_complete(napi); + return work_done; + } + + // clear interrupt + IFX_REG_W32_MASK(0, 1, MBOX_IGU1_ISRC); + // no more traffic + if ( WAN_RX_DESC_BASE[g_ptm_priv_data.itf[0].rx_desc_pos].own ) { // if PP32 hold descriptor + napi_complete(napi); + IFX_REG_W32_MASK(0, 1, MBOX_IGU1_IER); + return work_done; + } + + // next round + return work_done; +} + +static int ptm_hard_start_xmit(struct sk_buff *skb, struct net_device *dev) +{ + unsigned int f_full; + int desc_base; + volatile struct tx_descriptor *desc; + struct tx_descriptor reg_desc = {0}; + struct sk_buff *skb_to_free; + unsigned int byteoff; + + ASSERT(dev == g_net_dev[0], "incorrect device"); + + if ( !g_showtime ) { + err("not in showtime"); + goto PTM_HARD_START_XMIT_FAIL; + } + + /* allocate descriptor */ + desc_base = get_tx_desc(0, &f_full); + if ( f_full ) { + dev->trans_start = jiffies; + netif_stop_queue(dev); + + IFX_REG_W32_MASK(0, 1 << 17, MBOX_IGU1_ISRC); + IFX_REG_W32_MASK(0, 1 << 17, MBOX_IGU1_IER); + } + if ( desc_base < 0 ) + goto PTM_HARD_START_XMIT_FAIL; + desc = &CPU_TO_WAN_TX_DESC_BASE[desc_base]; + + byteoff = (unsigned int)skb->data & (DATA_BUFFER_ALIGNMENT - 1); + if ( skb_headroom(skb) < sizeof(struct sk_buff *) + byteoff || skb_cloned(skb) ) { + struct sk_buff *new_skb; + + ASSERT(skb_headroom(skb) >= sizeof(struct sk_buff *) + byteoff, "skb_headroom(skb) < sizeof(struct sk_buff *) + byteoff"); + ASSERT(!skb_cloned(skb), "skb is cloned"); + + new_skb = alloc_skb_tx(skb->len); + if ( new_skb == NULL ) { + dbg("no memory"); + goto ALLOC_SKB_TX_FAIL; + } + skb_put(new_skb, skb->len); + memcpy(new_skb->data, skb->data, skb->len); + dev_kfree_skb_any(skb); + skb = new_skb; + byteoff = (unsigned int)skb->data & (DATA_BUFFER_ALIGNMENT - 1); + /* write back to physical memory */ + dma_cache_wback((unsigned long)skb->data, skb->len); + } + + *(struct sk_buff **)((unsigned int)skb->data - byteoff - sizeof(struct sk_buff *)) = skb; + /* write back to physical memory */ + dma_cache_wback((unsigned long)skb->data - byteoff - sizeof(struct sk_buff *), skb->len + byteoff + sizeof(struct sk_buff *)); + + /* free previous skb */ + skb_to_free = get_skb_pointer(desc->dataptr); + if ( skb_to_free != NULL ) + dev_kfree_skb_any(skb_to_free); + + /* update descriptor */ + reg_desc.small = 0; + reg_desc.dataptr = (unsigned int)skb->data & (0x0FFFFFFF ^ (DATA_BUFFER_ALIGNMENT - 1)); + reg_desc.datalen = skb->len < ETH_ZLEN ? ETH_ZLEN : skb->len; + reg_desc.qid = g_ptm_prio_queue_map[skb->priority > 7 ? 7 : skb->priority]; + reg_desc.byteoff = byteoff; + reg_desc.own = 1; + reg_desc.c = 1; + reg_desc.sop = reg_desc.eop = 1; + + /* update MIB */ + g_ptm_priv_data.itf[0].stats.tx_packets++; + g_ptm_priv_data.itf[0].stats.tx_bytes += reg_desc.datalen; + + /* write discriptor to memory */ + *((volatile unsigned int *)desc + 1) = *((unsigned int *)®_desc + 1); + wmb(); + *(volatile unsigned int *)desc = *(unsigned int *)®_desc; + + dev->trans_start = jiffies; + + return 0; + +ALLOC_SKB_TX_FAIL: +PTM_HARD_START_XMIT_FAIL: + dev_kfree_skb_any(skb); + g_ptm_priv_data.itf[0].stats.tx_dropped++; + return 0; +} + +static int ptm_ioctl(struct net_device *dev, struct ifreq *ifr, int cmd) +{ + ASSERT(dev == g_net_dev[0], "incorrect device"); + + switch ( cmd ) + { + case IFX_PTM_MIB_CW_GET: + ((PTM_CW_IF_ENTRY_T *)ifr->ifr_data)->ifRxNoIdleCodewords = IFX_REG_R32(DREG_AR_CELL0) + IFX_REG_R32(DREG_AR_CELL1); + ((PTM_CW_IF_ENTRY_T *)ifr->ifr_data)->ifRxIdleCodewords = IFX_REG_R32(DREG_AR_IDLE_CNT0) + IFX_REG_R32(DREG_AR_IDLE_CNT1); + ((PTM_CW_IF_ENTRY_T *)ifr->ifr_data)->ifRxCodingViolation = IFX_REG_R32(DREG_AR_CVN_CNT0) + IFX_REG_R32(DREG_AR_CVN_CNT1) + IFX_REG_R32(DREG_AR_CVNP_CNT0) + IFX_REG_R32(DREG_AR_CVNP_CNT1); + ((PTM_CW_IF_ENTRY_T *)ifr->ifr_data)->ifTxNoIdleCodewords = IFX_REG_R32(DREG_AT_CELL0) + IFX_REG_R32(DREG_AT_CELL1); + ((PTM_CW_IF_ENTRY_T *)ifr->ifr_data)->ifTxIdleCodewords = IFX_REG_R32(DREG_AT_IDLE_CNT0) + IFX_REG_R32(DREG_AT_IDLE_CNT1); + break; + case IFX_PTM_MIB_FRAME_GET: + { + PTM_FRAME_MIB_T data = {0}; + int i; + + data.RxCorrect = IFX_REG_R32(DREG_AR_HEC_CNT0) + IFX_REG_R32(DREG_AR_HEC_CNT1) + IFX_REG_R32(DREG_AR_AIIDLE_CNT0) + IFX_REG_R32(DREG_AR_AIIDLE_CNT1); + for ( i = 0; i < 4; i++ ) + data.RxDropped += WAN_RX_MIB_TABLE(i)->wrx_dropdes_pdu; + for ( i = 0; i < 8; i++ ) + data.TxSend += WAN_TX_MIB_TABLE(i)->wtx_total_pdu; + + *((PTM_FRAME_MIB_T *)ifr->ifr_data) = data; + } + break; + case IFX_PTM_CFG_GET: + // use bear channel 0 preemption gamma interface settings + ((IFX_PTM_CFG_T *)ifr->ifr_data)->RxEthCrcPresent = 1; + ((IFX_PTM_CFG_T *)ifr->ifr_data)->RxEthCrcCheck = RX_GAMMA_ITF_CFG(0)->rx_eth_fcs_ver_dis == 0 ? 1 : 0; + ((IFX_PTM_CFG_T *)ifr->ifr_data)->RxTcCrcCheck = RX_GAMMA_ITF_CFG(0)->rx_tc_crc_ver_dis == 0 ? 1 : 0;; + ((IFX_PTM_CFG_T *)ifr->ifr_data)->RxTcCrcLen = RX_GAMMA_ITF_CFG(0)->rx_tc_crc_size == 0 ? 0 : (RX_GAMMA_ITF_CFG(0)->rx_tc_crc_size * 16); + ((IFX_PTM_CFG_T *)ifr->ifr_data)->TxEthCrcGen = TX_GAMMA_ITF_CFG(0)->tx_eth_fcs_gen_dis == 0 ? 1 : 0; + ((IFX_PTM_CFG_T *)ifr->ifr_data)->TxTcCrcGen = TX_GAMMA_ITF_CFG(0)->tx_tc_crc_size == 0 ? 0 : 1; + ((IFX_PTM_CFG_T *)ifr->ifr_data)->TxTcCrcLen = TX_GAMMA_ITF_CFG(0)->tx_tc_crc_size == 0 ? 0 : (TX_GAMMA_ITF_CFG(0)->tx_tc_crc_size * 16); + break; + case IFX_PTM_CFG_SET: + { + int i; + + for ( i = 0; i < 4; i++ ) { + RX_GAMMA_ITF_CFG(i)->rx_eth_fcs_ver_dis = ((IFX_PTM_CFG_T *)ifr->ifr_data)->RxEthCrcCheck ? 0 : 1; + + RX_GAMMA_ITF_CFG(0)->rx_tc_crc_ver_dis = ((IFX_PTM_CFG_T *)ifr->ifr_data)->RxTcCrcCheck ? 0 : 1; + + switch ( ((IFX_PTM_CFG_T *)ifr->ifr_data)->RxTcCrcLen ) { + case 16: RX_GAMMA_ITF_CFG(0)->rx_tc_crc_size = 1; break; + case 32: RX_GAMMA_ITF_CFG(0)->rx_tc_crc_size = 2; break; + default: RX_GAMMA_ITF_CFG(0)->rx_tc_crc_size = 0; + } + + TX_GAMMA_ITF_CFG(0)->tx_eth_fcs_gen_dis = ((IFX_PTM_CFG_T *)ifr->ifr_data)->TxEthCrcGen ? 0 : 1; + + if ( ((IFX_PTM_CFG_T *)ifr->ifr_data)->TxTcCrcGen ) { + switch ( ((IFX_PTM_CFG_T *)ifr->ifr_data)->TxTcCrcLen ) { + case 16: TX_GAMMA_ITF_CFG(0)->tx_tc_crc_size = 1; break; + case 32: TX_GAMMA_ITF_CFG(0)->tx_tc_crc_size = 2; break; + default: TX_GAMMA_ITF_CFG(0)->tx_tc_crc_size = 0; + } + } + else + TX_GAMMA_ITF_CFG(0)->tx_tc_crc_size = 0; + } + } + break; + case IFX_PTM_MAP_PKT_PRIO_TO_Q: + { + struct ppe_prio_q_map cmd; + + if ( copy_from_user(&cmd, ifr->ifr_data, sizeof(cmd)) ) + return -EFAULT; + + if ( cmd.pkt_prio < 0 || cmd.pkt_prio >= ARRAY_SIZE(g_ptm_prio_queue_map) ) + return -EINVAL; + + if ( cmd.qid < 0 || cmd.qid >= g_wanqos_en ) + return -EINVAL; + + g_ptm_prio_queue_map[cmd.pkt_prio] = cmd.qid; + } + break; + default: + return -EOPNOTSUPP; + } + + return 0; +} + +static void ptm_tx_timeout(struct net_device *dev) +{ + ASSERT(dev == g_net_dev[0], "incorrect device"); + + /* disable TX irq, release skb when sending new packet */ + IFX_REG_W32_MASK(1 << 17, 0, MBOX_IGU1_IER); + + /* wake up TX queue */ + netif_wake_queue(dev); + + return; +} + +static inline struct sk_buff* alloc_skb_rx(void) +{ + struct sk_buff *skb; + + /* allocate memroy including trailer and padding */ + skb = dev_alloc_skb(RX_MAX_BUFFER_SIZE + DATA_BUFFER_ALIGNMENT); + if ( skb != NULL ) { + /* must be burst length alignment and reserve two more bytes for MAC address alignment */ + if ( ((unsigned int)skb->data & (DATA_BUFFER_ALIGNMENT - 1)) != 0 ) + skb_reserve(skb, ~((unsigned int)skb->data + (DATA_BUFFER_ALIGNMENT - 1)) & (DATA_BUFFER_ALIGNMENT - 1)); + /* pub skb in reserved area "skb->data - 4" */ + *((struct sk_buff **)skb->data - 1) = skb; + wmb(); + /* write back and invalidate cache */ + dma_cache_wback_inv((unsigned long)skb->data - sizeof(skb), sizeof(skb)); + /* invalidate cache */ + dma_cache_inv((unsigned long)skb->data, (unsigned int)skb->end - (unsigned int)skb->data); + } + + return skb; +} + +static inline struct sk_buff* alloc_skb_tx(unsigned int size) +{ + struct sk_buff *skb; + + /* allocate memory including padding */ + size = RX_MAX_BUFFER_SIZE; + size = (size + DATA_BUFFER_ALIGNMENT - 1) & ~(DATA_BUFFER_ALIGNMENT - 1); + skb = dev_alloc_skb(size + DATA_BUFFER_ALIGNMENT); + /* must be burst length alignment */ + if ( skb != NULL ) + skb_reserve(skb, ~((unsigned int)skb->data + (DATA_BUFFER_ALIGNMENT - 1)) & (DATA_BUFFER_ALIGNMENT - 1)); + return skb; +} + +static inline struct sk_buff *get_skb_pointer(unsigned int dataptr) +{ + unsigned int skb_dataptr; + struct sk_buff *skb; + + // usually, CPE memory is less than 256M bytes + // so NULL means invalid pointer + if ( dataptr == 0 ) { + dbg("dataptr is 0, it's supposed to be invalid pointer"); + return NULL; + } + + skb_dataptr = (dataptr - 4) | KSEG1; + skb = *(struct sk_buff **)skb_dataptr; + + ASSERT((unsigned int)skb >= KSEG0, "invalid skb - skb = %#08x, dataptr = %#08x", (unsigned int)skb, dataptr); + ASSERT((((unsigned int)skb->data & (0x0FFFFFFF ^ (DATA_BUFFER_ALIGNMENT - 1))) | KSEG1) == (dataptr | KSEG1), "invalid skb - skb = %#08x, skb->data = %#08x, dataptr = %#08x", (unsigned int)skb, (unsigned int)skb->data, dataptr); + + return skb; +} + +static inline int get_tx_desc(unsigned int itf, unsigned int *f_full) +{ + int desc_base = -1; + struct ptm_itf *p_itf = &g_ptm_priv_data.itf[0]; + + // assume TX is serial operation + // no protection provided + + *f_full = 1; + + if ( CPU_TO_WAN_TX_DESC_BASE[p_itf->tx_desc_pos].own == 0 ) { + desc_base = p_itf->tx_desc_pos; + if ( ++(p_itf->tx_desc_pos) == CPU_TO_WAN_TX_DESC_NUM ) + p_itf->tx_desc_pos = 0; + if ( CPU_TO_WAN_TX_DESC_BASE[p_itf->tx_desc_pos].own == 0 ) + *f_full = 0; + } + + return desc_base; +} + +static irqreturn_t mailbox_irq_handler(int irq, void *dev_id) +{ + unsigned int isr; + int i; + + isr = IFX_REG_R32(MBOX_IGU1_ISR); + IFX_REG_W32(isr, MBOX_IGU1_ISRC); + isr &= IFX_REG_R32(MBOX_IGU1_IER); + + if (isr & BIT(0)) { + IFX_REG_W32_MASK(1, 0, MBOX_IGU1_IER); + napi_schedule(&g_ptm_priv_data.itf[0].napi); +#if defined(ENABLE_TMP_DBG) && ENABLE_TMP_DBG + { + volatile struct rx_descriptor *desc = &WAN_RX_DESC_BASE[g_ptm_priv_data.itf[0].rx_desc_pos]; + + if ( desc->own ) { // PP32 hold + err("invalid interrupt"); + } + } +#endif + } + if (isr & BIT(16)) { + IFX_REG_W32_MASK(1 << 16, 0, MBOX_IGU1_IER); + tasklet_hi_schedule(&g_swap_desc_tasklet); + } + if (isr & BIT(17)) { + IFX_REG_W32_MASK(1 << 17, 0, MBOX_IGU1_IER); + netif_wake_queue(g_net_dev[0]); + } + + return IRQ_HANDLED; +} + +static void do_swap_desc_tasklet(unsigned long arg) +{ + int budget = 32; + volatile struct tx_descriptor *desc; + struct sk_buff *skb; + unsigned int byteoff; + + while ( budget-- > 0 ) { + if ( WAN_SWAP_DESC_BASE[g_ptm_priv_data.itf[0].tx_swap_desc_pos].own ) // if PP32 hold descriptor + break; + + desc = &WAN_SWAP_DESC_BASE[g_ptm_priv_data.itf[0].tx_swap_desc_pos]; + if ( ++g_ptm_priv_data.itf[0].tx_swap_desc_pos == WAN_SWAP_DESC_NUM ) + g_ptm_priv_data.itf[0].tx_swap_desc_pos = 0; + + skb = get_skb_pointer(desc->dataptr); + if ( skb != NULL ) + dev_kfree_skb_any(skb); + + skb = alloc_skb_tx(RX_MAX_BUFFER_SIZE); + if ( skb == NULL ) + panic("can't allocate swap buffer for PPE firmware use\n"); + byteoff = (unsigned int)skb->data & (DATA_BUFFER_ALIGNMENT - 1); + *(struct sk_buff **)((unsigned int)skb->data - byteoff - sizeof(struct sk_buff *)) = skb; + + desc->dataptr = (unsigned int)skb->data & 0x0FFFFFFF; + desc->own = 1; + } + + // clear interrupt + IFX_REG_W32_MASK(0, 16, MBOX_IGU1_ISRC); + // no more skb to be replaced + if ( WAN_SWAP_DESC_BASE[g_ptm_priv_data.itf[0].tx_swap_desc_pos].own ) { // if PP32 hold descriptor + IFX_REG_W32_MASK(0, 1 << 16, MBOX_IGU1_IER); + return; + } + + tasklet_hi_schedule(&g_swap_desc_tasklet); + return; +} + + +static inline int ifx_ptm_version(char *buf) +{ + int len = 0; + unsigned int major, minor; + + ifx_ptm_get_fw_ver(&major, &minor); + + len += sprintf(buf + len, "PTM %d.%d.%d", IFX_PTM_VER_MAJOR, IFX_PTM_VER_MID, IFX_PTM_VER_MINOR); + len += sprintf(buf + len, " PTM (E1) firmware version %d.%d\n", major, minor); + + return len; +} + +static inline int init_priv_data(void) +{ + int i, j; + + g_wanqos_en = wanqos_en ? wanqos_en : 8; + if ( g_wanqos_en > 8 ) + g_wanqos_en = 8; + + for ( i = 0; i < ARRAY_SIZE(g_queue_gamma_map); i++ ) + { + g_queue_gamma_map[i] = queue_gamma_map[i] & ((1 << g_wanqos_en) - 1); + for ( j = 0; j < i; j++ ) + g_queue_gamma_map[i] &= ~g_queue_gamma_map[j]; + } + + memset(&g_ptm_priv_data, 0, sizeof(g_ptm_priv_data)); + + { + int max_packet_priority = ARRAY_SIZE(g_ptm_prio_queue_map); + int tx_num_q; + int q_step, q_accum, p_step; + + tx_num_q = __ETH_WAN_TX_QUEUE_NUM; + q_step = tx_num_q - 1; + p_step = max_packet_priority - 1; + for ( j = 0, q_accum = 0; j < max_packet_priority; j++, q_accum += q_step ) + g_ptm_prio_queue_map[j] = q_step - (q_accum + (p_step >> 1)) / p_step; + } + + return 0; +} + +static inline void clear_priv_data(void) +{ +} + +static inline int init_tables(void) +{ + struct sk_buff *skb_pool[WAN_RX_DESC_NUM] = {0}; + struct cfg_std_data_len cfg_std_data_len = {0}; + struct tx_qos_cfg tx_qos_cfg = {0}; + struct psave_cfg psave_cfg = {0}; + struct eg_bwctrl_cfg eg_bwctrl_cfg = {0}; + struct test_mode test_mode = {0}; + struct rx_bc_cfg rx_bc_cfg = {0}; + struct tx_bc_cfg tx_bc_cfg = {0}; + struct gpio_mode gpio_mode = {0}; + struct gpio_wm_cfg gpio_wm_cfg = {0}; + struct rx_gamma_itf_cfg rx_gamma_itf_cfg = {0}; + struct tx_gamma_itf_cfg tx_gamma_itf_cfg = {0}; + struct wtx_qos_q_desc_cfg wtx_qos_q_desc_cfg = {0}; + struct rx_descriptor rx_desc = {0}; + struct tx_descriptor tx_desc = {0}; + int i; + + for ( i = 0; i < WAN_RX_DESC_NUM; i++ ) { + skb_pool[i] = alloc_skb_rx(); + if ( skb_pool[i] == NULL ) + goto ALLOC_SKB_RX_FAIL; + } + + cfg_std_data_len.byte_off = RX_HEAD_MAC_ADDR_ALIGNMENT; // this field replaces byte_off in rx descriptor of VDSL ingress + cfg_std_data_len.data_len = 1600; + *CFG_STD_DATA_LEN = cfg_std_data_len; + + tx_qos_cfg.time_tick = cgu_get_pp32_clock() / 62500; // 16 * (cgu_get_pp32_clock() / 1000000) + tx_qos_cfg.overhd_bytes = 0; + tx_qos_cfg.eth1_eg_qnum = __ETH_WAN_TX_QUEUE_NUM; + tx_qos_cfg.eth1_burst_chk = 1; + tx_qos_cfg.eth1_qss = 0; + tx_qos_cfg.shape_en = 0; // disable + tx_qos_cfg.wfq_en = 0; // strict priority + *TX_QOS_CFG = tx_qos_cfg; + + psave_cfg.start_state = 0; + psave_cfg.sleep_en = 1; // enable sleep mode + *PSAVE_CFG = psave_cfg; + + eg_bwctrl_cfg.fdesc_wm = 16; + eg_bwctrl_cfg.class_len = 128; + *EG_BWCTRL_CFG = eg_bwctrl_cfg; + + //*GPIO_ADDR = (unsigned int)IFX_GPIO_P0_OUT; + *GPIO_ADDR = (unsigned int)0x00000000; // disabled by default + + gpio_mode.gpio_bit_bc1 = 2; + gpio_mode.gpio_bit_bc0 = 1; + gpio_mode.gpio_bc1_en = 0; + gpio_mode.gpio_bc0_en = 0; + *GPIO_MODE = gpio_mode; + + gpio_wm_cfg.stop_wm_bc1 = 2; + gpio_wm_cfg.start_wm_bc1 = 4; + gpio_wm_cfg.stop_wm_bc0 = 2; + gpio_wm_cfg.start_wm_bc0 = 4; + *GPIO_WM_CFG = gpio_wm_cfg; + + test_mode.mib_clear_mode = 0; + test_mode.test_mode = 0; + *TEST_MODE = test_mode; + + rx_bc_cfg.local_state = 0; + rx_bc_cfg.remote_state = 0; + rx_bc_cfg.to_false_th = 7; + rx_bc_cfg.to_looking_th = 3; + *RX_BC_CFG(0) = rx_bc_cfg; + *RX_BC_CFG(1) = rx_bc_cfg; + + tx_bc_cfg.fill_wm = 2; + tx_bc_cfg.uflw_wm = 2; + *TX_BC_CFG(0) = tx_bc_cfg; + *TX_BC_CFG(1) = tx_bc_cfg; + + rx_gamma_itf_cfg.receive_state = 0; + rx_gamma_itf_cfg.rx_min_len = 60; + rx_gamma_itf_cfg.rx_pad_en = 1; + rx_gamma_itf_cfg.rx_eth_fcs_ver_dis = 0; + rx_gamma_itf_cfg.rx_rm_eth_fcs = 1; + rx_gamma_itf_cfg.rx_tc_crc_ver_dis = 0; + rx_gamma_itf_cfg.rx_tc_crc_size = 1; + rx_gamma_itf_cfg.rx_eth_fcs_result = 0xC704DD7B; + rx_gamma_itf_cfg.rx_tc_crc_result = 0x1D0F1D0F; + rx_gamma_itf_cfg.rx_crc_cfg = 0x2500; + rx_gamma_itf_cfg.rx_eth_fcs_init_value = 0xFFFFFFFF; + rx_gamma_itf_cfg.rx_tc_crc_init_value = 0x0000FFFF; + rx_gamma_itf_cfg.rx_max_len_sel = 0; + rx_gamma_itf_cfg.rx_edit_num2 = 0; + rx_gamma_itf_cfg.rx_edit_pos2 = 0; + rx_gamma_itf_cfg.rx_edit_type2 = 0; + rx_gamma_itf_cfg.rx_edit_en2 = 0; + rx_gamma_itf_cfg.rx_edit_num1 = 0; + rx_gamma_itf_cfg.rx_edit_pos1 = 0; + rx_gamma_itf_cfg.rx_edit_type1 = 0; + rx_gamma_itf_cfg.rx_edit_en1 = 0; + rx_gamma_itf_cfg.rx_inserted_bytes_1l = 0; + rx_gamma_itf_cfg.rx_inserted_bytes_1h = 0; + rx_gamma_itf_cfg.rx_inserted_bytes_2l = 0; + rx_gamma_itf_cfg.rx_inserted_bytes_2h = 0; + rx_gamma_itf_cfg.rx_len_adj = -6; + for ( i = 0; i < 4; i++ ) + *RX_GAMMA_ITF_CFG(i) = rx_gamma_itf_cfg; + + tx_gamma_itf_cfg.tx_len_adj = 6; + tx_gamma_itf_cfg.tx_crc_off_adj = 6; + tx_gamma_itf_cfg.tx_min_len = 0; + tx_gamma_itf_cfg.tx_eth_fcs_gen_dis = 0; + tx_gamma_itf_cfg.tx_tc_crc_size = 1; + tx_gamma_itf_cfg.tx_crc_cfg = 0x2F00; + tx_gamma_itf_cfg.tx_eth_fcs_init_value = 0xFFFFFFFF; + tx_gamma_itf_cfg.tx_tc_crc_init_value = 0x0000FFFF; + for ( i = 0; i < ARRAY_SIZE(g_queue_gamma_map); i++ ) { + tx_gamma_itf_cfg.queue_mapping = g_queue_gamma_map[i]; + *TX_GAMMA_ITF_CFG(i) = tx_gamma_itf_cfg; + } + + for ( i = 0; i < __ETH_WAN_TX_QUEUE_NUM; i++ ) { + wtx_qos_q_desc_cfg.length = WAN_TX_DESC_NUM; + wtx_qos_q_desc_cfg.addr = __ETH_WAN_TX_DESC_BASE(i); + *WTX_QOS_Q_DESC_CFG(i) = wtx_qos_q_desc_cfg; + } + + // default TX queue QoS config is all ZERO + + // TX Ctrl K Table + IFX_REG_W32(0x90111293, TX_CTRL_K_TABLE(0)); + IFX_REG_W32(0x14959617, TX_CTRL_K_TABLE(1)); + IFX_REG_W32(0x18999A1B, TX_CTRL_K_TABLE(2)); + IFX_REG_W32(0x9C1D1E9F, TX_CTRL_K_TABLE(3)); + IFX_REG_W32(0xA02122A3, TX_CTRL_K_TABLE(4)); + IFX_REG_W32(0x24A5A627, TX_CTRL_K_TABLE(5)); + IFX_REG_W32(0x28A9AA2B, TX_CTRL_K_TABLE(6)); + IFX_REG_W32(0xAC2D2EAF, TX_CTRL_K_TABLE(7)); + IFX_REG_W32(0x30B1B233, TX_CTRL_K_TABLE(8)); + IFX_REG_W32(0xB43536B7, TX_CTRL_K_TABLE(9)); + IFX_REG_W32(0xB8393ABB, TX_CTRL_K_TABLE(10)); + IFX_REG_W32(0x3CBDBE3F, TX_CTRL_K_TABLE(11)); + IFX_REG_W32(0xC04142C3, TX_CTRL_K_TABLE(12)); + IFX_REG_W32(0x44C5C647, TX_CTRL_K_TABLE(13)); + IFX_REG_W32(0x48C9CA4B, TX_CTRL_K_TABLE(14)); + IFX_REG_W32(0xCC4D4ECF, TX_CTRL_K_TABLE(15)); + + // init RX descriptor + rx_desc.own = 1; + rx_desc.c = 0; + rx_desc.sop = 1; + rx_desc.eop = 1; + rx_desc.byteoff = RX_HEAD_MAC_ADDR_ALIGNMENT; + rx_desc.datalen = RX_MAX_BUFFER_SIZE - RX_HEAD_MAC_ADDR_ALIGNMENT; + for ( i = 0; i < WAN_RX_DESC_NUM; i++ ) { + rx_desc.dataptr = (unsigned int)skb_pool[i]->data & 0x0FFFFFFF; + WAN_RX_DESC_BASE[i] = rx_desc; + } + + // init TX descriptor + tx_desc.own = 0; + tx_desc.c = 0; + tx_desc.sop = 1; + tx_desc.eop = 1; + tx_desc.byteoff = 0; + tx_desc.qid = 0; + tx_desc.datalen = 0; + tx_desc.small = 0; + tx_desc.dataptr = 0; + for ( i = 0; i < CPU_TO_WAN_TX_DESC_NUM; i++ ) + CPU_TO_WAN_TX_DESC_BASE[i] = tx_desc; + for ( i = 0; i < WAN_TX_DESC_NUM_TOTAL; i++ ) + WAN_TX_DESC_BASE(0)[i] = tx_desc; + + // init Swap descriptor + for ( i = 0; i < WAN_SWAP_DESC_NUM; i++ ) + WAN_SWAP_DESC_BASE[i] = tx_desc; + + // init fastpath TX descriptor + tx_desc.own = 1; + for ( i = 0; i < FASTPATH_TO_WAN_TX_DESC_NUM; i++ ) + FASTPATH_TO_WAN_TX_DESC_BASE[i] = tx_desc; + + return 0; + +ALLOC_SKB_RX_FAIL: + while ( i-- > 0 ) + dev_kfree_skb_any(skb_pool[i]); + return -1; +} + +static inline void clear_tables(void) +{ + struct sk_buff *skb; + int i, j; + + for ( i = 0; i < WAN_RX_DESC_NUM; i++ ) { + skb = get_skb_pointer(WAN_RX_DESC_BASE[i].dataptr); + if ( skb != NULL ) + dev_kfree_skb_any(skb); + } + + for ( i = 0; i < CPU_TO_WAN_TX_DESC_NUM; i++ ) { + skb = get_skb_pointer(CPU_TO_WAN_TX_DESC_BASE[i].dataptr); + if ( skb != NULL ) + dev_kfree_skb_any(skb); + } + + for ( j = 0; j < 8; j++ ) + for ( i = 0; i < WAN_TX_DESC_NUM; i++ ) { + skb = get_skb_pointer(WAN_TX_DESC_BASE(j)[i].dataptr); + if ( skb != NULL ) + dev_kfree_skb_any(skb); + } + + for ( i = 0; i < WAN_SWAP_DESC_NUM; i++ ) { + skb = get_skb_pointer(WAN_SWAP_DESC_BASE[i].dataptr); + if ( skb != NULL ) + dev_kfree_skb_any(skb); + } + + for ( i = 0; i < FASTPATH_TO_WAN_TX_DESC_NUM; i++ ) { + skb = get_skb_pointer(FASTPATH_TO_WAN_TX_DESC_BASE[i].dataptr); + if ( skb != NULL ) + dev_kfree_skb_any(skb); + } +} + +static int ptm_showtime_enter(struct port_cell_info *port_cell, void *xdata_addr) +{ + ASSERT(port_cell != NULL, "port_cell is NULL"); + ASSERT(xdata_addr != NULL, "xdata_addr is NULL"); + + // TODO: ReTX set xdata_addr + g_xdata_addr = xdata_addr; + + g_showtime = 1; + + IFX_REG_W32(0x0F, UTP_CFG); + + //#ifdef CONFIG_VR9 + // IFX_REG_W32_MASK(1 << 17, 0, FFSM_CFG0); + //#endif + + printk("enter showtime\n"); + + return 0; +} + +static int ptm_showtime_exit(void) +{ + if ( !g_showtime ) + return -1; + + //#ifdef CONFIG_VR9 + // IFX_REG_W32_MASK(0, 1 << 17, FFSM_CFG0); + //#endif + + IFX_REG_W32(0x00, UTP_CFG); + + g_showtime = 0; + + // TODO: ReTX clean state + g_xdata_addr = NULL; + + printk("leave showtime\n"); + + return 0; +} + + + +static int ifx_ptm_init(void) +{ + int ret; + int i; + char ver_str[128]; + struct port_cell_info port_cell = {0}; + + ret = init_priv_data(); + if ( ret != 0 ) { + err("INIT_PRIV_DATA_FAIL"); + goto INIT_PRIV_DATA_FAIL; + } + + ifx_ptm_init_chip(); + ret = init_tables(); + if ( ret != 0 ) { + err("INIT_TABLES_FAIL"); + goto INIT_TABLES_FAIL; + } + + for ( i = 0; i < ARRAY_SIZE(g_net_dev); i++ ) { + g_net_dev[i] = alloc_netdev(0, g_net_dev_name[i], ether_setup); + if ( g_net_dev[i] == NULL ) + goto ALLOC_NETDEV_FAIL; + ptm_setup(g_net_dev[i], i); + } + + for ( i = 0; i < ARRAY_SIZE(g_net_dev); i++ ) { + ret = register_netdev(g_net_dev[i]); + if ( ret != 0 ) + goto REGISTER_NETDEV_FAIL; + } + + /* register interrupt handler */ + ret = request_irq(PPE_MAILBOX_IGU1_INT, mailbox_irq_handler, IRQF_DISABLED, "ptm_mailbox_isr", &g_ptm_priv_data); + if ( ret ) { + if ( ret == -EBUSY ) { + err("IRQ may be occupied by other driver, please reconfig to disable it."); + } + else { + err("request_irq fail"); + } + goto REQUEST_IRQ_PPE_MAILBOX_IGU1_INT_FAIL; + } + disable_irq(PPE_MAILBOX_IGU1_INT); + + ret = ifx_pp32_start(0); + if ( ret ) { + err("ifx_pp32_start fail!"); + goto PP32_START_FAIL; + } + IFX_REG_W32(1 << 16, MBOX_IGU1_IER); // enable SWAP interrupt + IFX_REG_W32(~0, MBOX_IGU1_ISRC); + + enable_irq(PPE_MAILBOX_IGU1_INT); + + ifx_mei_atm_showtime_check(&g_showtime, &port_cell, &g_xdata_addr); + + ifx_mei_atm_showtime_enter = ptm_showtime_enter; + ifx_mei_atm_showtime_exit = ptm_showtime_exit; + + ifx_ptm_version(ver_str); + printk(KERN_INFO "%s", ver_str); + + printk("ifxmips_ptm: PTM init succeed\n"); + + return 0; + +PP32_START_FAIL: + free_irq(PPE_MAILBOX_IGU1_INT, &g_ptm_priv_data); +REQUEST_IRQ_PPE_MAILBOX_IGU1_INT_FAIL: + i = ARRAY_SIZE(g_net_dev); +REGISTER_NETDEV_FAIL: + while ( i-- ) + unregister_netdev(g_net_dev[i]); + i = ARRAY_SIZE(g_net_dev); +ALLOC_NETDEV_FAIL: + while ( i-- ) { + free_netdev(g_net_dev[i]); + g_net_dev[i] = NULL; + } +INIT_TABLES_FAIL: +INIT_PRIV_DATA_FAIL: + clear_priv_data(); + printk("ifxmips_ptm: PTM init failed\n"); + return ret; +} + +static void __exit ifx_ptm_exit(void) +{ + int i; + ifx_mei_atm_showtime_enter = NULL; + ifx_mei_atm_showtime_exit = NULL; + + + ifx_pp32_stop(0); + + free_irq(PPE_MAILBOX_IGU1_INT, &g_ptm_priv_data); + + for ( i = 0; i < ARRAY_SIZE(g_net_dev); i++ ) + unregister_netdev(g_net_dev[i]); + + for ( i = 0; i < ARRAY_SIZE(g_net_dev); i++ ) { + free_netdev(g_net_dev[i]); + g_net_dev[i] = NULL; + } + + clear_tables(); + + ifx_ptm_uninit_chip(); + + clear_priv_data(); +} + +#ifndef MODULE +static int __init wanqos_en_setup(char *line) +{ + wanqos_en = simple_strtoul(line, NULL, 0); + + if ( wanqos_en < 1 || wanqos_en > 8 ) + wanqos_en = 0; + + return 0; +} + +static int __init queue_gamma_map_setup(char *line) +{ + char *p; + int i; + + for ( i = 0, p = line; i < ARRAY_SIZE(queue_gamma_map) && isxdigit(*p); i++ ) + { + queue_gamma_map[i] = simple_strtoul(p, &p, 0); + if ( *p == ',' || *p == ';' || *p == ':' ) + p++; + } + + return 0; +} +#endif +module_init(ifx_ptm_init); +module_exit(ifx_ptm_exit); +#ifndef MODULE + __setup("wanqos_en=", wanqos_en_setup); + __setup("queue_gamma_map=", queue_gamma_map_setup); +#endif + +MODULE_LICENSE("GPL"); diff --git a/package/kernel/lantiq/ltq-ptm/src/ifxmips_ptm_vdsl.h b/package/kernel/lantiq/ltq-ptm/src/ifxmips_ptm_vdsl.h new file mode 100644 index 0000000..b06232d --- /dev/null +++ b/package/kernel/lantiq/ltq-ptm/src/ifxmips_ptm_vdsl.h @@ -0,0 +1,126 @@ +/****************************************************************************** +** +** FILE NAME : ifxmips_ptm_vdsl.h +** PROJECT : UEIP +** MODULES : PTM +** +** DATE : 7 Jul 2009 +** AUTHOR : Xu Liang +** DESCRIPTION : PTM driver header file (core functions for VR9) +** COPYRIGHT : Copyright (c) 2006 +** Infineon Technologies AG +** Am Campeon 1-12, 85579 Neubiberg, Germany +** +** This program is free software; you can redistribute it and/or modify +** it under the terms of the GNU General Public License as published by +** the Free Software Foundation; either version 2 of the License, or +** (at your option) any later version. +** +** HISTORY +** $Date $Author $Comment +** 07 JUL 2009 Xu Liang Init Version +*******************************************************************************/ + +#ifndef IFXMIPS_PTM_VDSL_H +#define IFXMIPS_PTM_VDSL_H + +#include <linux/version.h> +#include <linux/netdevice.h> +#include <lantiq_ptm.h> +#include "ifxmips_ptm_common.h" +#include "ifxmips_ptm_ppe_common.h" +#include "ifxmips_ptm_fw_regs_vdsl.h" + +#define INT_NUM_IM2_IRL24 (INT_NUM_IM2_IRL0 + 24) + +#define IFX_REG_W32(_v, _r) __raw_writel((_v), (volatile unsigned int *)(_r)) +#define IFX_REG_R32(_r) __raw_readl((volatile unsigned int *)(_r)) +#define IFX_REG_W32_MASK(_clr, _set, _r) IFX_REG_W32((IFX_REG_R32((_r)) & ~(_clr)) | (_set), (_r)) +#define SET_BITS(x, msb, lsb, value) (((x) & ~(((1 << ((msb) + 1)) - 1) ^ ((1 << (lsb)) - 1))) | (((value) & ((1 << (1 + (msb) - (lsb))) - 1)) << (lsb))) + + + +/* + * #################################### + * Definition + * #################################### + */ + +/* + * Constant Definition + */ +#define ETH_WATCHDOG_TIMEOUT (10 * HZ) + +/* + * DMA RX/TX Channel Parameters + */ +#define MAX_ITF_NUMBER 1 +#define MAX_RX_DMA_CHANNEL_NUMBER 1 +#define MAX_TX_DMA_CHANNEL_NUMBER 1 +#define DATA_BUFFER_ALIGNMENT EMA_ALIGNMENT +#define DESC_ALIGNMENT 8 + +/* + * Ethernet Frame Definitions + */ +#define ETH_MAC_HEADER_LENGTH 14 +#define ETH_CRC_LENGTH 4 +#define ETH_MIN_FRAME_LENGTH 64 +#define ETH_MAX_FRAME_LENGTH (1518 + 4 * 2) + +/* + * RX Frame Definitions + */ +#define RX_MAX_BUFFER_SIZE (1600 + RX_HEAD_MAC_ADDR_ALIGNMENT) +#define RX_HEAD_MAC_ADDR_ALIGNMENT 2 +#define RX_TAIL_CRC_LENGTH 0 // PTM firmware does not have ethernet frame CRC + // The len in descriptor doesn't include ETH_CRC + // because ETH_CRC may not present in some configuration + + + +/* + * #################################### + * Data Type + * #################################### + */ + +struct ptm_itf { + unsigned int rx_desc_pos; + + unsigned int tx_desc_pos; + + unsigned int tx_swap_desc_pos; + + struct net_device_stats stats; + + struct napi_struct napi; +}; + +struct ptm_priv_data { + struct ptm_itf itf[MAX_ITF_NUMBER]; +}; + + + +/* + * #################################### + * Declaration + * #################################### + */ + +extern unsigned int ifx_ptm_dbg_enable; + +extern void ifx_ptm_get_fw_ver(unsigned int *major, unsigned int *minor); + +extern void ifx_ptm_init_chip(void); +extern void ifx_ptm_uninit_chip(void); + +extern int ifx_pp32_start(int pp32); +extern void ifx_pp32_stop(int pp32); + +extern void ifx_reset_ppe(void); + + + +#endif // IFXMIPS_PTM_VDSL_H diff --git a/package/kernel/lantiq/ltq-ptm/src/ifxmips_ptm_vr9.c b/package/kernel/lantiq/ltq-ptm/src/ifxmips_ptm_vr9.c new file mode 100644 index 0000000..0a02569 --- /dev/null +++ b/package/kernel/lantiq/ltq-ptm/src/ifxmips_ptm_vr9.c @@ -0,0 +1,295 @@ +/****************************************************************************** +** +** FILE NAME : ifxmips_ptm_vr9.c +** PROJECT : UEIP +** MODULES : PTM +** +** DATE : 7 Jul 2009 +** AUTHOR : Xu Liang +** DESCRIPTION : PTM driver common source file (core functions) +** COPYRIGHT : Copyright (c) 2006 +** Infineon Technologies AG +** Am Campeon 1-12, 85579 Neubiberg, Germany +** +** This program is free software; you can redistribute it and/or modify +** it under the terms of the GNU General Public License as published by +** the Free Software Foundation; either version 2 of the License, or +** (at your option) any later version. +** +** HISTORY +** $Date $Author $Comment +** 07 JUL 2009 Xu Liang Init Version +*******************************************************************************/ + + + +/* + * #################################### + * Head File + * #################################### + */ + +/* + * Common Head File + */ +#include <linux/kernel.h> +#include <linux/module.h> +#include <linux/version.h> +#include <linux/types.h> +#include <linux/errno.h> +#include <linux/proc_fs.h> +#include <linux/init.h> +#include <linux/ioctl.h> +#include <asm/delay.h> + +/* + * Chip Specific Head File + */ +#include "ifxmips_ptm_vdsl.h" +#include "ifxmips_ptm_fw_vr9.h" + +#include <lantiq_soc.h> + +static inline void init_pmu(void); +static inline void uninit_pmu(void); +static inline void reset_ppe(void); +static inline void init_pdma(void); +static inline void init_mailbox(void); +static inline void init_atm_tc(void); +static inline void clear_share_buffer(void); + +#define IFX_PMU_MODULE_PPE_SLL01 BIT(19) +#define IFX_PMU_MODULE_PPE_TC BIT(21) +#define IFX_PMU_MODULE_PPE_EMA BIT(22) +#define IFX_PMU_MODULE_PPE_QSB BIT(18) +#define IFX_PMU_MODULE_AHBS BIT(13) +#define IFX_PMU_MODULE_DSL_DFE BIT(9) + + +static inline void init_pmu(void) +{ + ltq_pmu_enable(IFX_PMU_MODULE_PPE_SLL01 | + IFX_PMU_MODULE_PPE_TC | + IFX_PMU_MODULE_PPE_EMA | + IFX_PMU_MODULE_AHBS | + IFX_PMU_MODULE_DSL_DFE); + +} + +static inline void uninit_pmu(void) +{ +} + +static inline void reset_ppe(void) +{ +/*#ifdef MODULE + // reset PPE + ifx_rcu_rst(IFX_RCU_DOMAIN_DSLDFE, IFX_RCU_MODULE_PTM); + udelay(1000); + ifx_rcu_rst(IFX_RCU_DOMAIN_DSLTC, IFX_RCU_MODULE_PTM); + udelay(1000); + ifx_rcu_rst(IFX_RCU_DOMAIN_PPE, IFX_RCU_MODULE_PTM); + udelay(1000); + *PP32_SRST &= ~0x000303CF; + udelay(1000); + *PP32_SRST |= 0x000303CF; + udelay(1000); +#endif*/ +} + +static inline void init_pdma(void) +{ + IFX_REG_W32(0x00000001, PDMA_CFG); + IFX_REG_W32(0x00082C00, PDMA_RX_CTX_CFG); + IFX_REG_W32(0x00081B00, PDMA_TX_CTX_CFG); + IFX_REG_W32(0x02040604, PDMA_RX_MAX_LEN_REG); + IFX_REG_W32(0x000F003F, PDMA_RX_DELAY_CFG); + + IFX_REG_W32(0x00000011, SAR_MODE_CFG); + IFX_REG_W32(0x00082A00, SAR_RX_CTX_CFG); + IFX_REG_W32(0x00082E00, SAR_TX_CTX_CFG); + IFX_REG_W32(0x00001021, SAR_POLY_CFG_SET0); + IFX_REG_W32(0x1EDC6F41, SAR_POLY_CFG_SET1); + IFX_REG_W32(0x04C11DB7, SAR_POLY_CFG_SET2); + IFX_REG_W32(0x00000F3E, SAR_CRC_SIZE_CFG); + + IFX_REG_W32(0x01001900, SAR_PDMA_RX_CMDBUF_CFG); + IFX_REG_W32(0x01001A00, SAR_PDMA_TX_CMDBUF_CFG); +} + +static inline void init_mailbox(void) +{ + IFX_REG_W32(0xFFFFFFFF, MBOX_IGU1_ISRC); + IFX_REG_W32(0x00000000, MBOX_IGU1_IER); + IFX_REG_W32(0xFFFFFFFF, MBOX_IGU3_ISRC); + IFX_REG_W32(0x00000000, MBOX_IGU3_IER); +} + +static inline void init_atm_tc(void) +{ + IFX_REG_W32(0x00010040, SFSM_CFG0); + IFX_REG_W32(0x00010040, SFSM_CFG1); + IFX_REG_W32(0x00020000, SFSM_PGCNT0); + IFX_REG_W32(0x00020000, SFSM_PGCNT1); + IFX_REG_W32(0x00000000, DREG_AT_IDLE0); + IFX_REG_W32(0x00000000, DREG_AT_IDLE1); + IFX_REG_W32(0x00000000, DREG_AR_IDLE0); + IFX_REG_W32(0x00000000, DREG_AR_IDLE1); + IFX_REG_W32(0x0000080C, DREG_B0_LADR); + IFX_REG_W32(0x0000080C, DREG_B1_LADR); + + IFX_REG_W32(0x000001F0, DREG_AR_CFG0); + IFX_REG_W32(0x000001F0, DREG_AR_CFG1); + IFX_REG_W32(0x000001E0, DREG_AT_CFG0); + IFX_REG_W32(0x000001E0, DREG_AT_CFG1); + + /* clear sync state */ + //IFX_REG_W32(0, SFSM_STATE0); + //IFX_REG_W32(0, SFSM_STATE1); + + IFX_REG_W32_MASK(0, 1 << 14, SFSM_CFG0); // enable SFSM storing + IFX_REG_W32_MASK(0, 1 << 14, SFSM_CFG1); + + IFX_REG_W32_MASK(0, 1 << 15, SFSM_CFG0); // HW keep the IDLE cells in RTHA buffer + IFX_REG_W32_MASK(0, 1 << 15, SFSM_CFG1); + + IFX_REG_W32(0xF0D10000, FFSM_IDLE_HEAD_BC0); + IFX_REG_W32(0xF0D10000, FFSM_IDLE_HEAD_BC1); + IFX_REG_W32(0x00030028, FFSM_CFG0); // Force_idle + IFX_REG_W32(0x00030028, FFSM_CFG1); +} + +static inline void clear_share_buffer(void) +{ + volatile u32 *p; + unsigned int i; + + p = SB_RAM0_ADDR(0); + for ( i = 0; i < SB_RAM0_DWLEN + SB_RAM1_DWLEN + SB_RAM2_DWLEN + SB_RAM3_DWLEN; i++ ) + IFX_REG_W32(0, p++); + + p = SB_RAM6_ADDR(0); + for ( i = 0; i < SB_RAM6_DWLEN; i++ ) + IFX_REG_W32(0, p++); +} + +/* + * Description: + * Download PPE firmware binary code. + * Input: + * pp32 --- int, which pp32 core + * src --- u32 *, binary code buffer + * dword_len --- unsigned int, binary code length in DWORD (32-bit) + * Output: + * int --- 0: Success + * else: Error Code + */ +static inline int pp32_download_code(int pp32, u32 *code_src, unsigned int code_dword_len, u32 *data_src, unsigned int data_dword_len) +{ + unsigned int clr, set; + volatile u32 *dest; + + if ( code_src == 0 || ((unsigned long)code_src & 0x03) != 0 + || data_src == 0 || ((unsigned long)data_src & 0x03) != 0 ) + return -1; + + clr = pp32 ? 0xF0 : 0x0F; + if ( code_dword_len <= CDM_CODE_MEMORYn_DWLEN(0) ) + set = pp32 ? (3 << 6): (2 << 2); + else + set = 0x00; + IFX_REG_W32_MASK(clr, set, CDM_CFG); + + /* copy code */ + dest = CDM_CODE_MEMORY(pp32, 0); + while ( code_dword_len-- > 0 ) + IFX_REG_W32(*code_src++, dest++); + + /* copy data */ + dest = CDM_DATA_MEMORY(pp32, 0); + while ( data_dword_len-- > 0 ) + IFX_REG_W32(*data_src++, dest++); + + return 0; +} + + + +/* + * #################################### + * Global Function + * #################################### + */ + +extern void ifx_ptm_get_fw_ver(unsigned int *major, unsigned int *minor) +{ + ASSERT(major != NULL, "pointer is NULL"); + ASSERT(minor != NULL, "pointer is NULL"); + + *major = FW_VER_ID->major; + *minor = FW_VER_ID->minor; +} + +void ifx_ptm_init_chip(void) +{ + init_pmu(); + + reset_ppe(); + + init_pdma(); + + init_mailbox(); + + init_atm_tc(); + + clear_share_buffer(); +} + +void ifx_ptm_uninit_chip(void) +{ + uninit_pmu(); +} + +/* + * Description: + * Initialize and start up PP32. + * Input: + * none + * Output: + * int --- 0: Success + * else: Error Code + */ +int ifx_pp32_start(int pp32) +{ + unsigned int mask = 1 << (pp32 << 4); + int ret; + + /* download firmware */ + ret = pp32_download_code(pp32, firmware_binary_code, sizeof(firmware_binary_code) / sizeof(*firmware_binary_code), firmware_binary_data, sizeof(firmware_binary_data) / sizeof(*firmware_binary_data)); + if ( ret != 0 ) + return ret; + + /* run PP32 */ + IFX_REG_W32_MASK(mask, 0, PP32_FREEZE); + + /* idle for a while to let PP32 init itself */ + udelay(10); + + return 0; +} + +/* + * Description: + * Halt PP32. + * Input: + * none + * Output: + * none + */ +void ifx_pp32_stop(int pp32) +{ + unsigned int mask = 1 << (pp32 << 4); + + /* halt PP32 */ + IFX_REG_W32_MASK(0, mask, PP32_FREEZE); +} diff --git a/package/kernel/lantiq/ltq-tapi/Config.in b/package/kernel/lantiq/ltq-tapi/Config.in new file mode 100644 index 0000000..84dbef2 --- /dev/null +++ b/package/kernel/lantiq/ltq-tapi/Config.in @@ -0,0 +1,88 @@ +config VOICE_CPE_TAPI_FAX + bool "fax relay and modem support" + depends on PACKAGE_kmod-ltq-tapi + default n + help + Option to enable fax/modem support in TAPI. + Note: Newer platforms as AR9 and VR9 support a T.38 fax relay stack + in FW while older platforms like Danube or VINETIC-CPE require a + separate SW stack executed as an application. + +config VOICE_CPE_TAPI_CID + bool "CID support" + depends on PACKAGE_kmod-ltq-tapi + default y + help + Option to enable Caller ID support. + +config VOICE_CPE_TAPI_LT_GR909 + bool "Linetesting GR-909 support" + depends on PACKAGE_kmod-ltq-tapi + default y + help + Option to enable linetesting GR-909. + +config VOICE_CPE_TAPI_DECT + bool "DECT encoding for COSIC modem" + depends on PACKAGE_kmod-ltq-tapi + default n + help + Option to enable DECT encoding for COSIC modem. + +config VOICE_CPE_TAPI_KPI + bool "KPI (Kernel Packet Interface)" + depends on PACKAGE_kmod-ltq-tapi + default y + help + Option to enable the generic kernel level packet interface + which allows accelerated packet transfer for various purposes. + The most important example is the QOS option, which allows + to redirect RTP packets directly into the IP stack. + Other options relying on KPI are DECT and HDLC. + +config VOICE_CPE_TAPI_QOS + bool "QOS for accelerated RTP packet handling" + depends on PACKAGE_kmod-ltq-tapi + default y + help + Option to enable an accelerated RTP packet transfer inside + the LINUX kernel space. This option requires the KPI2UDP + packet, which actually provides the OS specific hooks in + the IP stack. + +config VOICE_CPE_TAPI_STATISTICS + bool "TAPI statistics via /proc fs" + depends on PACKAGE_kmod-ltq-tapi + default y + help + Option to enable /proc fs statistics for packet counts etc. + +config VOICE_CPE_TAPI_METERING + bool "Metering (TTX) support" + depends on PACKAGE_kmod-ltq-tapi + default n + help + Option to enable metering (TTX) support. + +config VOICE_CPE_TAPI_HDLC + bool "PCM HDLC support, evaluation" + depends on PACKAGE_kmod-ltq-tapi + default n + help + Option to enable PCM HDLC framing inside the firmware, e.g. for + ISDN D-Channel access. + +config VOICE_CPE_TAPI_TRACES + bool "enable driver traces" + depends on PACKAGE_kmod-ltq-tapi + default y + help + enable driver traces with different trace levels to be + configured dynamically from the application or during insmod + +config VOICE_CPE_TAPI_LINUX_HOTPLUG + bool "enable driver Linux hotplug events" + depends on PACKAGE_kmod-ltq-tapi + default y + help + enable driver Linux hotplug events generation diff --git a/package/kernel/lantiq/ltq-tapi/Makefile b/package/kernel/lantiq/ltq-tapi/Makefile new file mode 100644 index 0000000..2582235 --- /dev/null +++ b/package/kernel/lantiq/ltq-tapi/Makefile @@ -0,0 +1,70 @@ +# +# Copyright (C) 2011 OpenWrt.org +# +# This is free software, licensed under the GNU General Public License v2. +# See /LICENSE for more information. +# + +include $(TOPDIR)/rules.mk +include $(INCLUDE_DIR)/kernel.mk + +PKG_NAME:=drv_tapi +PKG_VERSION:=3.13.0 +PKG_RELEASE:=3 + +PKG_SOURCE:=drv_tapi-$(PKG_VERSION).tar.bz2 +PKG_SOURCE_URL:=http://mirror2.openwrt.org/sources +PKG_MD5SUM:=edb43b494832c540cc035493d18db58f +PKG_MAINTAINER:=John Crispin <blogic@openwrt.org> + +include $(INCLUDE_DIR)/ltqtapi.mk +include $(INCLUDE_DIR)/package.mk + +define KernelPackage/ltq-tapi + SUBMENU:=Voice over IP + TITLE:=Lantiq TAPI subsystem + URL:=http://www.lantiq.com/ + DEPENDS:=$(LTQ_TAPI_TARGET) +kmod-ltq-ifxos + FILES:=$(PKG_BUILD_DIR)/src/drv_tapi.ko + AUTOLOAD:=$(call AutoLoad,20,drv_tapi) +endef + +define KernelPackage/ltq-tapi/description + Voice Subsystem Telephony API High Level Driver +endef + +define KernelPackage/ltq-tapi/config + source "$(SOURCE)/Config.in" +endef + +CONFIGURE_ARGS += \ + ARCH=$(LINUX_KARCH) \ + --enable-linux-26 \ + --enable-kernelbuild="$(LINUX_DIR)" \ + --enable-kernelincl="$(LINUX_DIR)/include" \ + --with-ifxos-incl=$(STAGING_DIR)/usr/include/ifxos \ + $(call autoconf_bool,CONFIG_IFX_DRV_TAPI_EVENT_LOGGER,el-debug) \ + $(call autoconf_bool,CONFIG_VOICE_CPE_TAPI_FAX,fax t38) \ + $(call autoconf_bool,CONFIG_VOICE_CPE_TAPI_CID,cid) \ + $(call autoconf_bool,CONFIG_VOICE_CPE_TAPI_DECT,dect) \ + $(call autoconf_bool,CONFIG_VOICE_CPE_TAPI_KPI,kpi) \ + $(call autoconf_bool,CONFIG_VOICE_CPE_TAPI_QOS,qos) \ + $(call autoconf_bool,CONFIG_VOICE_CPE_TAPI_LT_GR909,lt) \ + $(call autoconf_bool,CONFIG_VOICE_CPE_TAPI_STATISTICS,statistics) \ + $(call autoconf_bool,CONFIG_VOICE_CPE_TAPI_METERING,metering) \ + $(call autoconf_bool,CONFIG_VOICE_CPE_TAPI_HDLC,hdlc) \ + $(call autoconf_bool,CONFIG_VOICE_CPE_TAPI_TRACES,trace) \ + $(call autoconf_bool,CONFIG_VOICE_CPE_TAPI_LINUX_HOTPLUG,hotplug) + +define Build/Configure + (cd $(PKG_BUILD_DIR); aclocal && autoconf && automake) + $(call Build/Configure/Default) +endef + +define Build/InstallDev + $(INSTALL_DIR) $(1)/usr/include/drv_tapi + $(CP) --dereference $(PKG_BUILD_DIR)/include/* $(1)/usr/include/drv_tapi + (cd $(1)/usr/include/drv_tapi && ln -s . include && ln -s ../ifxos/ifx_types.h .) +endef + +$(eval $(call KernelPackage,ltq-tapi)) diff --git a/package/kernel/lantiq/ltq-tapi/patches/000-portability.patch b/package/kernel/lantiq/ltq-tapi/patches/000-portability.patch new file mode 100644 index 0000000..78fcbad --- /dev/null +++ b/package/kernel/lantiq/ltq-tapi/patches/000-portability.patch @@ -0,0 +1,82 @@ +--- a/src/Makefile.am ++++ b/src/Makefile.am +@@ -154,7 +154,7 @@ if KERNEL_2_6 + drv_tapi_OBJS = "$(subst .c,.o, $(drv_tapi_SOURCES))" + + drv_tapi.ko: $(drv_tapi_SOURCES) $(EXTRA_DIST) +- @echo -e "Making Linux 2.6.x kernel object" ++ @echo "Making Linux 2.6.x kernel object" + @for f in $(drv_tapi_SOURCES) ; do \ + if test ! -e $(PWD)/$$f; then \ + echo " LN $$f" ; \ +@@ -162,10 +162,10 @@ drv_tapi.ko: $(drv_tapi_SOURCES) $(EXTRA + ln -s @abs_srcdir@/$$f $(PWD)/$$f; \ + fi; \ + done; +- @echo -e "# drv_tapi: Generated to build Linux 2.6.x kernel object" > $(PWD)/Kbuild +- @echo -e "obj-m := $(subst .ko,.o,$@)" >> $(PWD)/Kbuild +- @echo -e "$(subst .ko,,$@)-y := $(drv_tapi_OBJS)" >> $(PWD)/Kbuild +- @echo -e "EXTRA_CFLAGS := -DHAVE_CONFIG_H $(CFLAGS) $(drv_tapi_CFLAGS) $(INCLUDES)" >> $(PWD)/Kbuild ++ @echo "# drv_tapi: Generated to build Linux 2.6.x kernel object" > $(PWD)/Kbuild ++ @echo "obj-m := $(subst .ko,.o,$@)" >> $(PWD)/Kbuild ++ @echo "$(subst .ko,,$@)-y := $(drv_tapi_OBJS)" >> $(PWD)/Kbuild ++ @echo "EXTRA_CFLAGS := -DHAVE_CONFIG_H $(CFLAGS) $(drv_tapi_CFLAGS) $(INCLUDES)" >> $(PWD)/Kbuild + $(MAKE) ARCH=@KERNEL_ARCH@ -C @KERNEL_BUILD_PATH@ O=@KERNEL_BUILD_PATH@ M=$(PWD) modules + + clean-generic: +--- a/configure.in ++++ b/configure.in +@@ -128,7 +128,7 @@ dnl Set kernel build path + AC_ARG_ENABLE(kernelbuild, + AS_HELP_STRING(--enable-kernelbuild=x,Set the target kernel build path), + [ +- if test -r $enableval/include/linux/autoconf.h; then ++ if test -e $enableval/include/linux/autoconf.h -o -e $enableval/include/generated/autoconf.h; then + AC_SUBST([KERNEL_BUILD_PATH],[$enableval]) + else + AC_MSG_ERROR([The kernel build directory is not valid or not configured!]) +--- a/src/drv_tapi_linux.h ++++ b/src/drv_tapi_linux.h +@@ -24,6 +24,7 @@ + #include <linux/version.h> + #include <linux/interrupt.h> /* in_interrupt() */ + #include <linux/delay.h> /* mdelay - udelay */ ++#include <linux/workqueue.h> /* work_struct */ + #include <asm/poll.h> /* POLLIN, POLLOUT */ + + #include "ifx_types.h" /* ifx type definitions */ +--- a/src/drv_tapi_linux.c ++++ b/src/drv_tapi_linux.c +@@ -47,6 +47,7 @@ + #include <linux/errno.h> + #include <asm/uaccess.h> /* copy_from_user(), ... */ + #include <asm/byteorder.h> ++#include <linux/smp_lock.h> /* lock_kernel() */ + #include <asm/io.h> + + #ifdef LINUX_2_6 +@@ -55,7 +56,11 @@ + #include <linux/sched.h> + #undef CONFIG_DEVFS_FS + #ifndef UTS_RELEASE +- #include "linux/utsrelease.h" ++#if (LINUX_VERSION_CODE < KERNEL_VERSION(2,6,33)) ++# include <linux/utsrelease.h> ++#else ++# include <generated/utsrelease.h> ++#endif + #endif /* UTC_RELEASE */ + #else + #include <linux/tqueue.h> +@@ -3718,7 +3723,11 @@ IFX_void_t TAPI_OS_ThreadKill(IFXOS_Thre + flag and released after the down() call. */ + lock_kernel(); + mb(); ++#if LINUX_VERSION_CODE < KERNEL_VERSION(2,6,28) + kill_proc(pThrCntrl->tid, SIGKILL, 1); ++#else ++ kill_pid(find_vpid(pThrCntrl->tid), SIGKILL, 1); ++#endif + /* release the big kernel lock */ + unlock_kernel(); + wait_for_completion (&pThrCntrl->thrCompletion); diff --git a/package/kernel/lantiq/ltq-tapi/patches/100-ifxmips.patch b/package/kernel/lantiq/ltq-tapi/patches/100-ifxmips.patch new file mode 100644 index 0000000..a9c0d81 --- /dev/null +++ b/package/kernel/lantiq/ltq-tapi/patches/100-ifxmips.patch @@ -0,0 +1,96 @@ +--- a/src/drv_tapi_linux.c ++++ b/src/drv_tapi_linux.c +@@ -552,7 +552,7 @@ static ssize_t ifx_tapi_write (struct fi + IFX_uint8_t *pData; + IFX_size_t buf_size; + #endif /* TAPI_PACKET */ +- IFX_ssize_t size = 0; ++ ssize_t size = 0; + + #ifdef TAPI_PACKET + if (pTapiDev->bInitialized == IFX_FALSE) +--- a/src/drv_tapi_osmap.h ++++ b/src/drv_tapi_osmap.h +@@ -17,39 +17,6 @@ + */ + + #include "ifx_types.h" /* ifx type definitions */ +- +-#ifndef HAVE_IFX_ULONG_T +- #warning please update your ifx_types.h, using local definition of IFX_ulong_t +- /* unsigned long type - valid for 32bit systems only */ +- typedef unsigned long IFX_ulong_t; +- #define HAVE_IFX_ULONG_T +-#endif /* HAVE_IFX_ULONG_T */ +- +-#ifndef HAVE_IFX_LONG_T +- #warning please update your ifx_types.h, using local definition of IFX_long_t +- /* long type - valid for 32bit systems only */ +- typedef long IFX_long_t; +- #define HAVE_IFX_LONG_T +-#endif /* HAVE_IFX_LONG_T */ +- +-#ifndef HAVE_IFX_INTPTR_T +- #warning please update your ifx_types.h, using local definition of IFX_intptr_t +- typedef IFX_long_t IFX_intptr_t; +- #define HAVE_IFX_INTPTR_T +-#endif /* HAVE_IFX_INTPTR_T */ +- +-#ifndef HAVE_IFX_SIZE_T +- #warning please update your ifx_types.h, using local definition of IFX_size_t +- typedef IFX_ulong_t IFX_size_t; +- #define HAVE_IFX_SIZE_T +-#endif /* HAVE_IFX_SIZE_T */ +- +-#ifndef HAVE_IFX_SSIZE_T +- #warning please update your ifx_types.h, using local definition of IFX_ssize_t +- typedef IFX_long_t IFX_ssize_t; +- #define HAVE_IFX_SSIZE_T +-#endif /* HAVE_IFX_SSIZE_T */ +- + #include "ifxos_interrupt.h" + #include "ifxos_memory_alloc.h" + #include "ifxos_copy_user_space.h" +--- a/include/drv_tapi_ll_interface.h ++++ b/include/drv_tapi_ll_interface.h +@@ -40,13 +40,6 @@ + #include "ifxos_select.h" + #endif /* TAPI_PACKET */ + +-#ifndef HAVE_IFX_ULONG_T +- #warning please update your ifx_types.h, using local definition of IFX_ulong_t +- /* unsigned long type - valid for 32bit systems only */ +- typedef unsigned long IFX_ulong_t; +- #define HAVE_IFX_ULONG_T +-#endif /* HAVE_IFX_ULONG_T */ +- + /* ============================= */ + /* Local Macros Definitions */ + /* ============================= */ +--- a/src/lib/lib_bufferpool/lib_bufferpool.c ++++ b/src/lib/lib_bufferpool/lib_bufferpool.c +@@ -85,24 +85,6 @@ + #include <stdlib.h> + #endif /*VXWORKS*/ + +- +-/* ============================= */ +-/* Extra type definitions */ +-/* ============================= */ +-#ifndef HAVE_IFX_ULONG_T +- #warning please update your ifx_types.h, using local definition of IFX_ulong_t +- /* unsigned long type - valid for 32bit systems only */ +- typedef unsigned long IFX_ulong_t; +- #define HAVE_IFX_ULONG_T +-#endif /* HAVE_IFX_ULONG_T */ +- +-#ifndef HAVE_IFX_UINTPTR_T +- #warning please update your ifx_types.h, using local definition of IFX_uintptr_t +- typedef IFX_ulong_t IFX_uintptr_t; +- #define HAVE_IFX_UINTPTR_T +-#endif /* HAVE_IFX_UINTPTR_T */ +- +- + /* ============================= */ + /* Local Macros & Definitions */ + /* ============================= */ diff --git a/package/kernel/lantiq/ltq-tapi/patches/200-linux-37.patch b/package/kernel/lantiq/ltq-tapi/patches/200-linux-37.patch new file mode 100644 index 0000000..9d7428d --- /dev/null +++ b/package/kernel/lantiq/ltq-tapi/patches/200-linux-37.patch @@ -0,0 +1,108 @@ +--- a/src/drv_tapi_linux.c ++++ b/src/drv_tapi_linux.c +@@ -47,7 +47,9 @@ + #include <linux/errno.h> + #include <asm/uaccess.h> /* copy_from_user(), ... */ + #include <asm/byteorder.h> ++#if (LINUX_VERSION_CODE < KERNEL_VERSION(2,6,33)) + #include <linux/smp_lock.h> /* lock_kernel() */ ++#endif + #include <asm/io.h> + + #ifdef LINUX_2_6 +@@ -65,7 +67,9 @@ + #else + #include <linux/tqueue.h> + #include <linux/sched.h> ++#if (LINUX_VERSION_CODE < KERNEL_VERSION(2,6,33)) + #include <linux/smp_lock.h> /* lock_kernel() */ ++#endif + #endif /* LINUX_2_6 */ + + #include "drv_tapi.h" +@@ -133,8 +137,13 @@ + size_t count, loff_t * ppos); + static ssize_t ifx_tapi_read(struct file * filp, char *buf, + size_t length, loff_t * ppos); ++#if (LINUX_VERSION_CODE < KERNEL_VERSION(2,6,36)) + static int ifx_tapi_ioctl(struct inode *inode, struct file *filp, + unsigned int nCmd, unsigned long nArgument); ++#else ++static long ifx_tapi_ioctl(struct file *filp, ++ unsigned int nCmd, unsigned long nArgument); ++#endif + static unsigned int ifx_tapi_poll (struct file *filp, poll_table *table); + + #ifdef CONFIG_PROC_FS +@@ -218,7 +227,11 @@ + IFX_char_t *pRegDrvName = IFX_NULL; + IFX_int32_t ret = 0; + ++#if (LINUX_VERSION_CODE < KERNEL_VERSION(2,6,36)) + if (tapi_fops.ioctl == IFX_NULL) ++#else ++ if (tapi_fops.unlocked_ioctl == IFX_NULL) ++#endif + { + #ifdef MODULE + tapi_fops.owner = THIS_MODULE; +@@ -226,7 +239,11 @@ + tapi_fops.read = ifx_tapi_read; + tapi_fops.write = ifx_tapi_write; + tapi_fops.poll = ifx_tapi_poll; ++#if (LINUX_VERSION_CODE < KERNEL_VERSION(2,6,36)) + tapi_fops.ioctl = ifx_tapi_ioctl; ++#else ++ tapi_fops.unlocked_ioctl = ifx_tapi_ioctl; ++#endif + tapi_fops.open = ifx_tapi_open; + tapi_fops.release = ifx_tapi_release; + } +@@ -881,8 +898,13 @@ + - 0 and positive values - success + - negative value - ioctl failed + */ ++#if (LINUX_VERSION_CODE < KERNEL_VERSION(2,6,36)) + static int ifx_tapi_ioctl(struct inode *inode, struct file *filp, + unsigned int nCmd, unsigned long nArg) ++#else ++static long ifx_tapi_ioctl(struct file *filp, ++ unsigned int nCmd, unsigned long nArg) ++#endif + { + TAPI_FD_PRIV_DATA_t *pTapiPriv; + IFX_TAPI_ioctlCtx_t ctx; +@@ -3721,7 +3743,9 @@ + kernel lock (lock_kernel()). The lock must be + grabbed before changing the terminate + flag and released after the down() call. */ +- lock_kernel(); ++#if LINUX_VERSION_CODE < KERNEL_VERSION(2,6,33) ++ lock_kernel(); ++#endif + mb(); + #if LINUX_VERSION_CODE < KERNEL_VERSION(2,6,28) + kill_proc(pThrCntrl->tid, SIGKILL, 1); +@@ -3729,8 +3753,10 @@ + kill_pid(find_vpid(pThrCntrl->tid), SIGKILL, 1); + #endif + /* release the big kernel lock */ ++#if LINUX_VERSION_CODE < KERNEL_VERSION(2,6,33) + unlock_kernel(); +- wait_for_completion (&pThrCntrl->thrCompletion); ++#endif ++ wait_for_completion (&pThrCntrl->thrCompletion); + + #if LINUX_VERSION_CODE < KERNEL_VERSION(2,6,23) + /* Now we are sure the thread is in zombie state. +--- a/src/lib/lib_fifo/lib_fifo.c ++++ b/src/lib/lib_fifo/lib_fifo.c +@@ -41,7 +41,7 @@ + #ifdef LINUX + /* if linux/slab.h is not available, use the precessor linux/malloc.h */ + #include <linux/slab.h> +-#elif VXWORKS ++#elif defined(VXWORKS) + #include <sys_drv_debug.h> + #endif /* LINUX */ + diff --git a/package/kernel/lantiq/ltq-vdsl-app/Makefile b/package/kernel/lantiq/ltq-vdsl-app/Makefile new file mode 100644 index 0000000..3de29d5 --- /dev/null +++ b/package/kernel/lantiq/ltq-vdsl-app/Makefile @@ -0,0 +1,75 @@ +# Copyright (C) 2010 OpenWrt.org +# +# This is free software, licensed under the GNU General Public License v2. +# See /LICENSE for more information. + +include $(TOPDIR)/rules.mk +include $(INCLUDE_DIR)/kernel.mk + +PKG_NAME:=ltq-vdsl-app +PKG_VERSION:=4.11.4 +PKG_RELEASE:=1 +PKG_BASE_NAME:=dsl_cpe_control_vrx +PKG_SOURCE:=$(PKG_BASE_NAME)-$(PKG_VERSION).tar.gz +PKG_BUILD_DIR:=$(KERNEL_BUILD_DIR)/dsl_cpe_control-$(PKG_VERSION) + +PKG_BUILD_DEPENDS:=kmod-ltq-vdsl-vr9 + +include $(INCLUDE_DIR)/package.mk + +define Package/ltq-vdsl-app + SECTION:=net + CATEGORY:=Network + TITLE:=Lantiq VDSL userland tool + URL:=http://www.lantiq.com/ + DEPENDS:=@TARGET_lantiq_xway +libpthread +endef + +define Package/ltq-vdsl-app/description + Userland tool needed to control Lantiq VDSL CPE +endef + +CONFIGURE_ARGS += \ + --with-max-device="1" \ + --with-lines-per-device="1" \ + --with-channels-per-line="1" \ + --enable-vrx \ + --enable-driver-include="-I$(STAGING_DIR)/usr/include/drv_vdsl_cpe_api" \ + --enable-device-driver-include="-I$(STAGING_DIR)/usr/include/vdsl/" \ + --enable-add-appl-cflags="-DMAX_CLI_PIPES=2" \ + --enable-ifxos \ + --enable-ifxos-include="-I$(STAGING_DIR)/usr/include/ifxos" \ + --enable-ifxos-library="-I$(STAGING_DIR)/usr/lib" \ + --enable-dsl-ceoc \ + --enable-dsl-pm-total \ + --enable-dsl-pm-showtime \ + --enable-dsl-pm-line-counters \ + --enable-dsl-pm-line-failure-counters \ + --enable-dsl-pm-datapath-counters \ + --enable-dsl-pm-datapath-failure-counters \ + --enable-deprecated \ + --disable-soap-support \ + --enable-dsl-bonding=no \ + --disable-dti + +ifeq ($(CONFIG_IFX_CLI),y) +CONFIGURE_ARGS += \ + --enable-cli-support +endif + +CONFIGURE_ARGS += --enable-model=full +#CONFIGURE_ARGS += --enable-model=lite +#CONFIGURE_ARGS += --enable-model=footprint +#CONFIGURE_ARGS += --enable-model=typical +#CONFIGURE_ARGS += --enable-model=debug + +define Package/ltq-vdsl-app/install + $(INSTALL_DIR) $(1)/etc/init.d + $(INSTALL_BIN) ./files/dsl_control $(1)/etc/init.d/ + + $(INSTALL_DIR) $(1)/sbin + $(INSTALL_BIN) $(PKG_BUILD_DIR)/src/dsl_cpe_control $(1)/sbin/vdsl_cpe_control + $(INSTALL_BIN) ./files/dsl_notify.sh $(1)/sbin +endef + +$(eval $(call BuildPackage,ltq-vdsl-app)) diff --git a/package/kernel/lantiq/ltq-vdsl-app/files/dsl_control b/package/kernel/lantiq/ltq-vdsl-app/files/dsl_control new file mode 100644 index 0000000..0d7d32c --- /dev/null +++ b/package/kernel/lantiq/ltq-vdsl-app/files/dsl_control @@ -0,0 +1,311 @@ +#!/bin/sh /etc/rc.common +# Copyright (C) 2012 OpenWrt.org + +START=99 + +EXTRA_COMMANDS="status lucistat" +EXTRA_HELP=" status Get DSL status information + lucistat Get status information if lua friendly format" + +SERVICE_DAEMONIZE=1 +SERVICE_WRITE_PID=1 + +# +# Basic functions to send CLI commands to the vdsl_cpe_control daemon +# +dsl_cmd() { + killall -0 vdsl_cpe_control && ( + echo "$@" > /tmp/pipe/dsl_cpe0_cmd + cat /tmp/pipe/dsl_cpe0_ack + ) +} +dsl_val() { + echo $(expr "$1" : '.*'$2'=\([-\.[:alnum:]]*\).*') +} + +# +# Simple divide by 10 routine to cope with one decimal place +# +dbt() { + local a=$(expr $1 / 10) + local b=$(expr $1 % 10) + echo "${a}.${b}" +} +# +# Take a number and convert to k or meg +# +scale() { + local val=$1 + local a + local b + + if [ "$val" -gt 1000000 ]; then + a=$(expr $val / 1000) + b=$(expr $a % 1000) + a=$(expr $a / 1000) + printf "%d.%03d Mb" ${a} ${b} + elif [ "$val" -gt 1000 ]; then + a=$(expr $val / 1000) + printf "%d Kb" ${a} + else + echo "${val} b" + fi +} + +# +# Read the data rates for both directions +# +data_rates() { + local csg + local dru + local drd + local sdru + local sdrd + + csg=$(dsl_cmd g997csg 0 1) + drd=$(dsl_val "$csg" ActualDataRate) + + csg=$(dsl_cmd g997csg 0 0) + dru=$(dsl_val "$csg" ActualDataRate) + + [ -z "$drd" ] && drd=0 + [ -z "$dru" ] && dru=0 + + sdrd=$(scale $drd) + sdru=$(scale $dru) + + if [ "$action" = "lucistat" ]; then + echo "dsl.data_rate_down=$drd" + echo "dsl.data_rate_up=$dru" + echo "dsl.data_rate_down_s=\"$sdrd\"" + echo "dsl.data_rate_up_s=\"$sdru\"" + else + echo "Data Rate: ${sdrd}/s / ${sdru}/s" + fi +} + +# +# Chipset +# +chipset() { + local vig + local cs + local csv + + vig=$(dsl_cmd vig) + cs=$(dsl_val "$vig" DSL_ChipSetType) + csv=$(dsl_val "$vig" DSL_ChipSetHWVersion) + + if [ "$action" = "lucistat" ]; then + echo "dsl.chipset=\"${cs} ${csv}\"" + else + echo "Chipset: ${cs} ${csv}" + fi +} + +# +# Work out how long the line has been up +# +line_uptime() { + local ccsg + local et + local etr + local d + local h + local m + local s + local rc="" + + ccsg=$(dsl_cmd pmccsg 0 0 0) + et=$(dsl_val "$ccsg" nElapsedTime) + + [ -z "$et" ] && et=0 + + if [ "$action" = "lucistat" ]; then + echo "dsl.line_uptime=${et}" + return + fi + + d=$(expr $et / 86400) + etr=$(expr $et % 86400) + h=$(expr $etr / 3600) + etr=$(expr $etr % 3600) + m=$(expr $etr / 60) + s=$(expr $etr % 60) + + + [ "${d}${h}${m}${s}" -ne 0 ] && rc="${s}s" + [ "${d}${h}${m}" -ne 0 ] && rc="${m}m ${rc}" + [ "${d}${h}" -ne 0 ] && rc="${h}h ${rc}" + [ "${d}" -ne 0 ] && rc="${d}d ${rc}" + + [ -z "$rc" ] && rc="down" + echo "Line Uptime: ${rc}" +} + +# +# Get noise and attenuation figures +# +line_data() { + local lsg + local latnu + local latnd + local snru + local snrd + + lsg=$(dsl_cmd g997lsg 1 1) + latnd=$(dsl_val "$lsg" LATN) + snrd=$(dsl_val "$lsg" SNR) + + lsg=$(dsl_cmd g997lsg 0 1) + latnu=$(dsl_val "$lsg" LATN) + snru=$(dsl_val "$lsg" SNR) + + [ -z "$latnd" ] && latnd=0 + [ -z "$latnu" ] && latnu=0 + [ -z "$snrd" ] && snrd=0 + [ -z "$snru" ] && snru=0 + + latnd=$(dbt $latnd) + latnu=$(dbt $latnu) + snrd=$(dbt $snrd) + snru=$(dbt $snru) + + if [ "$action" = "lucistat" ]; then + echo "dsl.line_attenuation_down=$latnd" + echo "dsl.line_attenuation_up=$latnu" + echo "dsl.noise_margin_down=$snrd" + echo "dsl.noise_margin_up=$snru" + else + echo "Line Attenuation: ${latnd}dB / ${latnu}dB" + echo "Noise Margin: ${snrd}dB / ${snru}dB" + fi +} + +# +# Is the line up? Or what state is it in? +# +line_state() { + local lsg=$(dsl_cmd lsg) + local ls=$(dsl_val "$lsg" nLineState); + local s; + + case "$ls" in + "0x0") s="not initialized" ;; + "0x1") s="exception" ;; + "0x10") s="not updated" ;; + "0xff") s="idle request" ;; + "0x100") s="idle" ;; + "0x1ff") s="silent request" ;; + "0x200") s="silent" ;; + "0x300") s="handshake" ;; + "0x380") s="full_init" ;; + "0x400") s="discovery" ;; + "0x500") s="training" ;; + "0x600") s="analysis" ;; + "0x700") s="exchange" ;; + "0x800") s="showtime_no_sync" ;; + "0x801") s="showtime_tc_sync" ;; + "0x900") s="fastretrain" ;; + "0xa00") s="lowpower_l2" ;; + "0xb00") s="loopdiagnostic active" ;; + "0xb10") s="loopdiagnostic data exchange" ;; + "0xb20") s="loopdiagnostic data request" ;; + "0xc00") s="loopdiagnostic complete" ;; + "0x1000000") s="test" ;; + "0xd00") s="resync" ;; + "0x3c0") s="short init entry" ;; + "") s="not running daemon"; ls="0xfff" ;; + *) s="unknown" ;; + esac + + if [ $action = "lucistat" ]; then + echo "dsl.line_state_num=$ls" + echo "dsl.line_state_detail=\"$s\"" + if [ "$ls" = "0x801" ]; then + echo "dsl.line_state=\"UP\"" + else + echo "dsl.line_state=\"DOWN\"" + fi + else + if [ "$ls" = "0x801" ]; then + echo "Line State: UP [$ls: $s]" + else + echo "Line State: DOWN [$ls: $s]" + fi + fi +} + +# +# Main status routine +# +status() { + chipset + line_state + data_rates + line_data + line_uptime +} + +# +# Luci (lua) compatible version that's easy to parse +# +lucistat() { + echo "local dsl={}" + status + echo "return dsl" +} + + +annex_b=10_00_10_00_00_04_00_00 +annex_bdmt=10_00_00_00_00_00_00_00 +annex_b2=00_00_10_00_00_00_00_00 +annex_b2p=00_00_00_00_00_04_00_00 +annex_a=04_01_04_00_00_01_00_00 +annex_at1=01_00_00_00_00_00_00_00 +annex_alite=00_01_00_00_00_00_00_00 +annex_admt=04_00_00_00_00_00_00_00 +annex_a2=00_00_04_00_00_00_00_00 +annex_a2p=00_00_00_00_00_01_00_00 +annex_l=00_00_00_00_04_00_00_00 +annex_m=00_00_00_00_40_00_04_00 +annex_m2=00_00_00_00_40_00_00_00 +annex_m2p=00_00_00_00_00_00_04_00 + +# +# Simple start routine +# +start() { + local annex + local firmware + local xtu + config_load network + config_get annex wan annex + config_get firmware wan firmware + + # get xtu + eval "xtu=\"\${annex_$annex}\"" + + # check for firmware + [ -z "${firmware}" ] && + firmware=vdsl.bin + + # start CPE dsl daemon in the background + service_start /sbin/vdsl_cpe_control -i${xtu} \ + -n /sbin/dsl_notify.sh \ + -f /lib/firmware/${firmware} +} + +# +# For stop we want to simulate the notification call for when +# the line goes down, so that we can stop the ppp link before +# we die. +# +stop() { + DSL_NOTIFICATION_TYPE="DSL_INTERFACE_STATUS" \ + DSL_INTERFACE_STATUS="DOWN" \ + /sbin/dsl_notify.sh + + service_stop /sbin/vdsl_cpe_control +} + diff --git a/package/kernel/lantiq/ltq-vdsl-app/files/dsl_notify.sh b/package/kernel/lantiq/ltq-vdsl-app/files/dsl_notify.sh new file mode 100644 index 0000000..5e9f396 --- /dev/null +++ b/package/kernel/lantiq/ltq-vdsl-app/files/dsl_notify.sh @@ -0,0 +1,44 @@ +#!/bin/sh +# +# This script is called by dsl_cpe_control whenever there is a DSL event, +# we only actually care about the DSL_INTERFACE_STATUS events as these +# tell us the line has either come up or gone down. +# +# The rest of the code is basically the same at the atm hotplug code +# + +[ "$DSL_NOTIFICATION_TYPE" = "DSL_INTERFACE_STATUS" ] || exit 0 + +. /lib/functions.sh + +include /lib/network +scan_interfaces + +local found=0 +local ifc +for ifc in $interfaces; do + local up + config_get_bool up "$ifc" up 0 + + local auto + config_get_bool auto "$ifc" auto 1 + + local proto + config_get proto "$ifc" proto + + if [ "$DSL_INTERFACE_STATUS" = "UP" ]; then + if [ "$proto" = "pppoa" ] && [ "$up" != 1 ] && [ "$auto" = 1 ]; then + found=1 + ( sleep 1; ifup "$ifc" ) & + fi + else + if [ "$proto" = "pppoa" ] && [ "$up" = 1 ] && [ "$auto" = 1 ]; then + found=1 + ( sleep 1; ifdown "$ifc" ) & + fi + fi +done + +if [ "$found" != 1 ]; then + logger "Found no matching interface for DSL notification ($DSL_INTERFACE_STATUS)" +fi diff --git a/package/kernel/lantiq/ltq-vdsl-app/patches/100-compat.patch b/package/kernel/lantiq/ltq-vdsl-app/patches/100-compat.patch new file mode 100644 index 0000000..da56232 --- /dev/null +++ b/package/kernel/lantiq/ltq-vdsl-app/patches/100-compat.patch @@ -0,0 +1,26 @@ +Index: dsl_cpe_control-4.11.4/src/dsl_cpe_init_cfg.c +=================================================================== +--- dsl_cpe_control-4.11.4.orig/src/dsl_cpe_init_cfg.c 2011-10-26 00:35:26.000000000 +0200 ++++ dsl_cpe_control-4.11.4/src/dsl_cpe_init_cfg.c 2012-11-28 15:53:10.857692092 +0100 +@@ -43,7 +43,7 @@ + { + DSL_CPE_LL_CFG_SET(-1, -1, DSL_DEV_HS_TONE_GROUP_VDSL2_B43, \ + DSL_DEV_HS_TONE_GROUP_VDSL2_B43, DSL_DEV_HS_TONE_GROUP_VDSL2_B43, \ +- 0x1E116000, 0x37, -1), ++ 0x1E116000, 0x3f, -1), + #endif + + #if defined(INCLUDE_DSL_CPE_API_VINAX) +Index: dsl_cpe_control-4.11.4/src/dsl_cpe_control.c +=================================================================== +--- dsl_cpe_control-4.11.4.orig/src/dsl_cpe_control.c 2012-01-13 15:15:34.000000000 +0100 ++++ dsl_cpe_control-4.11.4/src/dsl_cpe_control.c 2012-11-28 15:53:23.465692408 +0100 +@@ -6432,7 +6432,7 @@ + for (nDevice = 0; nDevice < DSL_CPE_MAX_DEVICE_NUMBER; nDevice++) + { + #if defined(INCLUDE_DSL_CPE_API_VINAX) || defined(INCLUDE_DSL_CPE_API_VRX) +- sprintf (device, "%s/%d", DSL_CPE_DEVICE_NAME, nDevice); ++ sprintf (device, "%s%d", DSL_CPE_DEVICE_NAME, nDevice); + #else + sprintf (device, "%s", DSL_CPE_DEVICE_NAME); + #endif /* defined(INCLUDE_DSL_CPE_API_VINAX) || defined(INCLUDE_DSL_CPE_API_VRX)*/ diff --git a/package/kernel/lantiq/ltq-vdsl-fw/Makefile b/package/kernel/lantiq/ltq-vdsl-fw/Makefile new file mode 100644 index 0000000..d4e0023 --- /dev/null +++ b/package/kernel/lantiq/ltq-vdsl-fw/Makefile @@ -0,0 +1,40 @@ +# Copyright (C) 2012 OpenWrt.org +# +# This is free software, licensed under the GNU General Public License v2. +# See /LICENSE for more information. + +include $(TOPDIR)/rules.mk + +PKG_NAME:=ltq-vdsl-fw +PKG_VERSION:=1 +PKG_RELEASE:=1 + +PKG_MAINTAINER:=John Crispin <blogic@openwrt.org> + +include $(INCLUDE_DIR)/package.mk + +define Package/ltq-vdsl-vr9-fw-installer + TITLE:=Firmware installer + SECTION:=net + CATEGORY:=Network + DEPENDS:=@TARGET_lantiq_xway +kmod-ltq-vdsl-vr9 +endef + +define Build/Prepare + $(INSTALL_DIR) $(PKG_BUILD_DIR) + $(CP) ./src/* $(PKG_BUILD_DIR) +endef + +define Build/Compile + $(TARGET_CONFIGURE_OPTS) \ + CFLAGS="$(TARGET_CFLAGS)" \ + LDFLAGS="$(TARGET_LDFLAGS)" \ + $(MAKE) -C $(PKG_BUILD_DIR) +endef + +define Package/ltq-vdsl-vr9-fw-installer/install + $(INSTALL_DIR) $(1)/sbin + $(CP) $(PKG_BUILD_DIR)/w921v_fw_cutter $(PKG_BUILD_DIR)/vdsl_fw_install.sh $(1)/sbin/ +endef + +$(eval $(call BuildPackage,ltq-vdsl-vr9-fw-installer)) diff --git a/package/kernel/lantiq/ltq-vdsl-fw/src/LzmaDecode.c b/package/kernel/lantiq/ltq-vdsl-fw/src/LzmaDecode.c new file mode 100644 index 0000000..cb83453 --- /dev/null +++ b/package/kernel/lantiq/ltq-vdsl-fw/src/LzmaDecode.c @@ -0,0 +1,584 @@ +/* + LzmaDecode.c + LZMA Decoder (optimized for Speed version) + + LZMA SDK 4.40 Copyright (c) 1999-2006 Igor Pavlov (2006-05-01) + http://www.7-zip.org/ + + LZMA SDK is licensed under two licenses: + 1) GNU Lesser General Public License (GNU LGPL) + 2) Common Public License (CPL) + It means that you can select one of these two licenses and + follow rules of that license. + + SPECIAL EXCEPTION: + Igor Pavlov, as the author of this Code, expressly permits you to + statically or dynamically link your Code (or bind by name) to the + interfaces of this file without subjecting your linked Code to the + terms of the CPL or GNU LGPL. Any modifications or additions + to this file, however, are subject to the LGPL or CPL terms. +*/ + +#include "LzmaDecode.h" + +#define kNumTopBits 24 +#define kTopValue ((UInt32)1 << kNumTopBits) + +#define kNumBitModelTotalBits 11 +#define kBitModelTotal (1 << kNumBitModelTotalBits) +#define kNumMoveBits 5 + +#define RC_READ_BYTE (*Buffer++) + +#define RC_INIT2 Code = 0; Range = 0xFFFFFFFF; \ + { int i; for(i = 0; i < 5; i++) { RC_TEST; Code = (Code << 8) | RC_READ_BYTE; }} + +#ifdef _LZMA_IN_CB + +#define RC_TEST { if (Buffer == BufferLim) \ + { SizeT size; int result = InCallback->Read(InCallback, &Buffer, &size); if (result != LZMA_RESULT_OK) return result; \ + BufferLim = Buffer + size; if (size == 0) return LZMA_RESULT_DATA_ERROR; }} + +#define RC_INIT Buffer = BufferLim = 0; RC_INIT2 + +#else + +#define RC_TEST { if (Buffer == BufferLim) return LZMA_RESULT_DATA_ERROR; } + +#define RC_INIT(buffer, bufferSize) Buffer = buffer; BufferLim = buffer + bufferSize; RC_INIT2 + +#endif + +#define RC_NORMALIZE if (Range < kTopValue) { RC_TEST; Range <<= 8; Code = (Code << 8) | RC_READ_BYTE; } + +#define IfBit0(p) RC_NORMALIZE; bound = (Range >> kNumBitModelTotalBits) * *(p); if (Code < bound) +#define UpdateBit0(p) Range = bound; *(p) += (kBitModelTotal - *(p)) >> kNumMoveBits; +#define UpdateBit1(p) Range -= bound; Code -= bound; *(p) -= (*(p)) >> kNumMoveBits; + +#define RC_GET_BIT2(p, mi, A0, A1) IfBit0(p) \ + { UpdateBit0(p); mi <<= 1; A0; } else \ + { UpdateBit1(p); mi = (mi + mi) + 1; A1; } + +#define RC_GET_BIT(p, mi) RC_GET_BIT2(p, mi, ; , ;) + +#define RangeDecoderBitTreeDecode(probs, numLevels, res) \ + { int i = numLevels; res = 1; \ + do { CProb *p = probs + res; RC_GET_BIT(p, res) } while(--i != 0); \ + res -= (1 << numLevels); } + + +#define kNumPosBitsMax 4 +#define kNumPosStatesMax (1 << kNumPosBitsMax) + +#define kLenNumLowBits 3 +#define kLenNumLowSymbols (1 << kLenNumLowBits) +#define kLenNumMidBits 3 +#define kLenNumMidSymbols (1 << kLenNumMidBits) +#define kLenNumHighBits 8 +#define kLenNumHighSymbols (1 << kLenNumHighBits) + +#define LenChoice 0 +#define LenChoice2 (LenChoice + 1) +#define LenLow (LenChoice2 + 1) +#define LenMid (LenLow + (kNumPosStatesMax << kLenNumLowBits)) +#define LenHigh (LenMid + (kNumPosStatesMax << kLenNumMidBits)) +#define kNumLenProbs (LenHigh + kLenNumHighSymbols) + + +#define kNumStates 12 +#define kNumLitStates 7 + +#define kStartPosModelIndex 4 +#define kEndPosModelIndex 14 +#define kNumFullDistances (1 << (kEndPosModelIndex >> 1)) + +#define kNumPosSlotBits 6 +#define kNumLenToPosStates 4 + +#define kNumAlignBits 4 +#define kAlignTableSize (1 << kNumAlignBits) + +#define kMatchMinLen 2 + +#define IsMatch 0 +#define IsRep (IsMatch + (kNumStates << kNumPosBitsMax)) +#define IsRepG0 (IsRep + kNumStates) +#define IsRepG1 (IsRepG0 + kNumStates) +#define IsRepG2 (IsRepG1 + kNumStates) +#define IsRep0Long (IsRepG2 + kNumStates) +#define PosSlot (IsRep0Long + (kNumStates << kNumPosBitsMax)) +#define SpecPos (PosSlot + (kNumLenToPosStates << kNumPosSlotBits)) +#define Align (SpecPos + kNumFullDistances - kEndPosModelIndex) +#define LenCoder (Align + kAlignTableSize) +#define RepLenCoder (LenCoder + kNumLenProbs) +#define Literal (RepLenCoder + kNumLenProbs) + +#if Literal != LZMA_BASE_SIZE +StopCompilingDueBUG +#endif + +int LzmaDecodeProperties(CLzmaProperties *propsRes, const unsigned char *propsData, int size) +{ + unsigned char prop0; + if (size < LZMA_PROPERTIES_SIZE) + return LZMA_RESULT_DATA_ERROR; + prop0 = propsData[0]; + if (prop0 >= (9 * 5 * 5)) + return LZMA_RESULT_DATA_ERROR; + { + for (propsRes->pb = 0; prop0 >= (9 * 5); propsRes->pb++, prop0 -= (9 * 5)); + for (propsRes->lp = 0; prop0 >= 9; propsRes->lp++, prop0 -= 9); + propsRes->lc = prop0; + /* + unsigned char remainder = (unsigned char)(prop0 / 9); + propsRes->lc = prop0 % 9; + propsRes->pb = remainder / 5; + propsRes->lp = remainder % 5; + */ + } + + #ifdef _LZMA_OUT_READ + { + int i; + propsRes->DictionarySize = 0; + for (i = 0; i < 4; i++) + propsRes->DictionarySize += (UInt32)(propsData[1 + i]) << (i * 8); + if (propsRes->DictionarySize == 0) + propsRes->DictionarySize = 1; + } + #endif + return LZMA_RESULT_OK; +} + +#define kLzmaStreamWasFinishedId (-1) + +int LzmaDecode(CLzmaDecoderState *vs, + #ifdef _LZMA_IN_CB + ILzmaInCallback *InCallback, + #else + const unsigned char *inStream, SizeT inSize, SizeT *inSizeProcessed, + #endif + unsigned char *outStream, SizeT outSize, SizeT *outSizeProcessed) +{ + CProb *p = vs->Probs; + SizeT nowPos = 0; + Byte previousByte = 0; + UInt32 posStateMask = (1 << (vs->Properties.pb)) - 1; + UInt32 literalPosMask = (1 << (vs->Properties.lp)) - 1; + int lc = vs->Properties.lc; + + #ifdef _LZMA_OUT_READ + + UInt32 Range = vs->Range; + UInt32 Code = vs->Code; + #ifdef _LZMA_IN_CB + const Byte *Buffer = vs->Buffer; + const Byte *BufferLim = vs->BufferLim; + #else + const Byte *Buffer = inStream; + const Byte *BufferLim = inStream + inSize; + #endif + int state = vs->State; + UInt32 rep0 = vs->Reps[0], rep1 = vs->Reps[1], rep2 = vs->Reps[2], rep3 = vs->Reps[3]; + int len = vs->RemainLen; + UInt32 globalPos = vs->GlobalPos; + UInt32 distanceLimit = vs->DistanceLimit; + + Byte *dictionary = vs->Dictionary; + UInt32 dictionarySize = vs->Properties.DictionarySize; + UInt32 dictionaryPos = vs->DictionaryPos; + + Byte tempDictionary[4]; + + #ifndef _LZMA_IN_CB + *inSizeProcessed = 0; + #endif + *outSizeProcessed = 0; + if (len == kLzmaStreamWasFinishedId) + return LZMA_RESULT_OK; + + if (dictionarySize == 0) + { + dictionary = tempDictionary; + dictionarySize = 1; + tempDictionary[0] = vs->TempDictionary[0]; + } + + if (len == kLzmaNeedInitId) + { + { + UInt32 numProbs = Literal + ((UInt32)LZMA_LIT_SIZE << (lc + vs->Properties.lp)); + UInt32 i; + for (i = 0; i < numProbs; i++) + p[i] = kBitModelTotal >> 1; + rep0 = rep1 = rep2 = rep3 = 1; + state = 0; + globalPos = 0; + distanceLimit = 0; + dictionaryPos = 0; + dictionary[dictionarySize - 1] = 0; + #ifdef _LZMA_IN_CB + RC_INIT; + #else + RC_INIT(inStream, inSize); + #endif + } + len = 0; + } + while(len != 0 && nowPos < outSize) + { + UInt32 pos = dictionaryPos - rep0; + if (pos >= dictionarySize) + pos += dictionarySize; + outStream[nowPos++] = dictionary[dictionaryPos] = dictionary[pos]; + if (++dictionaryPos == dictionarySize) + dictionaryPos = 0; + len--; + } + if (dictionaryPos == 0) + previousByte = dictionary[dictionarySize - 1]; + else + previousByte = dictionary[dictionaryPos - 1]; + + #else /* if !_LZMA_OUT_READ */ + + int state = 0; + UInt32 rep0 = 1, rep1 = 1, rep2 = 1, rep3 = 1; + int len = 0; + const Byte *Buffer; + const Byte *BufferLim; + UInt32 Range; + UInt32 Code; + + #ifndef _LZMA_IN_CB + *inSizeProcessed = 0; + #endif + *outSizeProcessed = 0; + + { + UInt32 i; + UInt32 numProbs = Literal + ((UInt32)LZMA_LIT_SIZE << (lc + vs->Properties.lp)); + for (i = 0; i < numProbs; i++) + p[i] = kBitModelTotal >> 1; + } + + #ifdef _LZMA_IN_CB + RC_INIT; + #else + RC_INIT(inStream, inSize); + #endif + + #endif /* _LZMA_OUT_READ */ + + while(nowPos < outSize) + { + CProb *prob; + UInt32 bound; + int posState = (int)( + (nowPos + #ifdef _LZMA_OUT_READ + + globalPos + #endif + ) + & posStateMask); + + prob = p + IsMatch + (state << kNumPosBitsMax) + posState; + IfBit0(prob) + { + int symbol = 1; + UpdateBit0(prob) + prob = p + Literal + (LZMA_LIT_SIZE * + ((( + (nowPos + #ifdef _LZMA_OUT_READ + + globalPos + #endif + ) + & literalPosMask) << lc) + (previousByte >> (8 - lc)))); + + if (state >= kNumLitStates) + { + int matchByte; + #ifdef _LZMA_OUT_READ + UInt32 pos = dictionaryPos - rep0; + if (pos >= dictionarySize) + pos += dictionarySize; + matchByte = dictionary[pos]; + #else + matchByte = outStream[nowPos - rep0]; + #endif + do + { + int bit; + CProb *probLit; + matchByte <<= 1; + bit = (matchByte & 0x100); + probLit = prob + 0x100 + bit + symbol; + RC_GET_BIT2(probLit, symbol, if (bit != 0) break, if (bit == 0) break) + } + while (symbol < 0x100); + } + while (symbol < 0x100) + { + CProb *probLit = prob + symbol; + RC_GET_BIT(probLit, symbol) + } + previousByte = (Byte)symbol; + + outStream[nowPos++] = previousByte; + #ifdef _LZMA_OUT_READ + if (distanceLimit < dictionarySize) + distanceLimit++; + + dictionary[dictionaryPos] = previousByte; + if (++dictionaryPos == dictionarySize) + dictionaryPos = 0; + #endif + if (state < 4) state = 0; + else if (state < 10) state -= 3; + else state -= 6; + } + else + { + UpdateBit1(prob); + prob = p + IsRep + state; + IfBit0(prob) + { + UpdateBit0(prob); + rep3 = rep2; + rep2 = rep1; + rep1 = rep0; + state = state < kNumLitStates ? 0 : 3; + prob = p + LenCoder; + } + else + { + UpdateBit1(prob); + prob = p + IsRepG0 + state; + IfBit0(prob) + { + UpdateBit0(prob); + prob = p + IsRep0Long + (state << kNumPosBitsMax) + posState; + IfBit0(prob) + { + #ifdef _LZMA_OUT_READ + UInt32 pos; + #endif + UpdateBit0(prob); + + #ifdef _LZMA_OUT_READ + if (distanceLimit == 0) + #else + if (nowPos == 0) + #endif + return LZMA_RESULT_DATA_ERROR; + + state = state < kNumLitStates ? 9 : 11; + #ifdef _LZMA_OUT_READ + pos = dictionaryPos - rep0; + if (pos >= dictionarySize) + pos += dictionarySize; + previousByte = dictionary[pos]; + dictionary[dictionaryPos] = previousByte; + if (++dictionaryPos == dictionarySize) + dictionaryPos = 0; + #else + previousByte = outStream[nowPos - rep0]; + #endif + outStream[nowPos++] = previousByte; + #ifdef _LZMA_OUT_READ + if (distanceLimit < dictionarySize) + distanceLimit++; + #endif + + continue; + } + else + { + UpdateBit1(prob); + } + } + else + { + UInt32 distance; + UpdateBit1(prob); + prob = p + IsRepG1 + state; + IfBit0(prob) + { + UpdateBit0(prob); + distance = rep1; + } + else + { + UpdateBit1(prob); + prob = p + IsRepG2 + state; + IfBit0(prob) + { + UpdateBit0(prob); + distance = rep2; + } + else + { + UpdateBit1(prob); + distance = rep3; + rep3 = rep2; + } + rep2 = rep1; + } + rep1 = rep0; + rep0 = distance; + } + state = state < kNumLitStates ? 8 : 11; + prob = p + RepLenCoder; + } + { + int numBits, offset; + CProb *probLen = prob + LenChoice; + IfBit0(probLen) + { + UpdateBit0(probLen); + probLen = prob + LenLow + (posState << kLenNumLowBits); + offset = 0; + numBits = kLenNumLowBits; + } + else + { + UpdateBit1(probLen); + probLen = prob + LenChoice2; + IfBit0(probLen) + { + UpdateBit0(probLen); + probLen = prob + LenMid + (posState << kLenNumMidBits); + offset = kLenNumLowSymbols; + numBits = kLenNumMidBits; + } + else + { + UpdateBit1(probLen); + probLen = prob + LenHigh; + offset = kLenNumLowSymbols + kLenNumMidSymbols; + numBits = kLenNumHighBits; + } + } + RangeDecoderBitTreeDecode(probLen, numBits, len); + len += offset; + } + + if (state < 4) + { + int posSlot; + state += kNumLitStates; + prob = p + PosSlot + + ((len < kNumLenToPosStates ? len : kNumLenToPosStates - 1) << + kNumPosSlotBits); + RangeDecoderBitTreeDecode(prob, kNumPosSlotBits, posSlot); + if (posSlot >= kStartPosModelIndex) + { + int numDirectBits = ((posSlot >> 1) - 1); + rep0 = (2 | ((UInt32)posSlot & 1)); + if (posSlot < kEndPosModelIndex) + { + rep0 <<= numDirectBits; + prob = p + SpecPos + rep0 - posSlot - 1; + } + else + { + numDirectBits -= kNumAlignBits; + do + { + RC_NORMALIZE + Range >>= 1; + rep0 <<= 1; + if (Code >= Range) + { + Code -= Range; + rep0 |= 1; + } + } + while (--numDirectBits != 0); + prob = p + Align; + rep0 <<= kNumAlignBits; + numDirectBits = kNumAlignBits; + } + { + int i = 1; + int mi = 1; + do + { + CProb *prob3 = prob + mi; + RC_GET_BIT2(prob3, mi, ; , rep0 |= i); + i <<= 1; + } + while(--numDirectBits != 0); + } + } + else + rep0 = posSlot; + if (++rep0 == (UInt32)(0)) + { + /* it's for stream version */ + len = kLzmaStreamWasFinishedId; + break; + } + } + + len += kMatchMinLen; + #ifdef _LZMA_OUT_READ + if (rep0 > distanceLimit) + #else + if (rep0 > nowPos) + #endif + return LZMA_RESULT_DATA_ERROR; + + #ifdef _LZMA_OUT_READ + if (dictionarySize - distanceLimit > (UInt32)len) + distanceLimit += len; + else + distanceLimit = dictionarySize; + #endif + + do + { + #ifdef _LZMA_OUT_READ + UInt32 pos = dictionaryPos - rep0; + if (pos >= dictionarySize) + pos += dictionarySize; + previousByte = dictionary[pos]; + dictionary[dictionaryPos] = previousByte; + if (++dictionaryPos == dictionarySize) + dictionaryPos = 0; + #else + previousByte = outStream[nowPos - rep0]; + #endif + len--; + outStream[nowPos++] = previousByte; + } + while(len != 0 && nowPos < outSize); + } + } + RC_NORMALIZE; + + #ifdef _LZMA_OUT_READ + vs->Range = Range; + vs->Code = Code; + vs->DictionaryPos = dictionaryPos; + vs->GlobalPos = globalPos + (UInt32)nowPos; + vs->DistanceLimit = distanceLimit; + vs->Reps[0] = rep0; + vs->Reps[1] = rep1; + vs->Reps[2] = rep2; + vs->Reps[3] = rep3; + vs->State = state; + vs->RemainLen = len; + vs->TempDictionary[0] = tempDictionary[0]; + #endif + + #ifdef _LZMA_IN_CB + vs->Buffer = Buffer; + vs->BufferLim = BufferLim; + #else + *inSizeProcessed = (SizeT)(Buffer - inStream); + #endif + *outSizeProcessed = nowPos; + return LZMA_RESULT_OK; +} diff --git a/package/kernel/lantiq/ltq-vdsl-fw/src/LzmaDecode.h b/package/kernel/lantiq/ltq-vdsl-fw/src/LzmaDecode.h new file mode 100644 index 0000000..2870eeb --- /dev/null +++ b/package/kernel/lantiq/ltq-vdsl-fw/src/LzmaDecode.h @@ -0,0 +1,113 @@ +/* + LzmaDecode.h + LZMA Decoder interface + + LZMA SDK 4.40 Copyright (c) 1999-2006 Igor Pavlov (2006-05-01) + http://www.7-zip.org/ + + LZMA SDK is licensed under two licenses: + 1) GNU Lesser General Public License (GNU LGPL) + 2) Common Public License (CPL) + It means that you can select one of these two licenses and + follow rules of that license. + + SPECIAL EXCEPTION: + Igor Pavlov, as the author of this code, expressly permits you to + statically or dynamically link your code (or bind by name) to the + interfaces of this file without subjecting your linked code to the + terms of the CPL or GNU LGPL. Any modifications or additions + to this file, however, are subject to the LGPL or CPL terms. +*/ + +#ifndef __LZMADECODE_H +#define __LZMADECODE_H + +#include "LzmaTypes.h" + +/* #define _LZMA_IN_CB */ +/* Use callback for input data */ + +/* #define _LZMA_OUT_READ */ +/* Use read function for output data */ + +/* #define _LZMA_PROB32 */ +/* It can increase speed on some 32-bit CPUs, + but memory usage will be doubled in that case */ + +/* #define _LZMA_LOC_OPT */ +/* Enable local speed optimizations inside code */ + +#ifdef _LZMA_PROB32 +#define CProb UInt32 +#else +#define CProb UInt16 +#endif + +#define LZMA_RESULT_OK 0 +#define LZMA_RESULT_DATA_ERROR 1 + +#ifdef _LZMA_IN_CB +typedef struct _ILzmaInCallback +{ + int (*Read)(void *object, const unsigned char **buffer, SizeT *bufferSize); +} ILzmaInCallback; +#endif + +#define LZMA_BASE_SIZE 1846 +#define LZMA_LIT_SIZE 768 + +#define LZMA_PROPERTIES_SIZE 5 + +typedef struct _CLzmaProperties +{ + int lc; + int lp; + int pb; + #ifdef _LZMA_OUT_READ + UInt32 DictionarySize; + #endif +}CLzmaProperties; + +int LzmaDecodeProperties(CLzmaProperties *propsRes, const unsigned char *propsData, int size); + +#define LzmaGetNumProbs(Properties) (LZMA_BASE_SIZE + (LZMA_LIT_SIZE << ((Properties)->lc + (Properties)->lp))) + +#define kLzmaNeedInitId (-2) + +typedef struct _CLzmaDecoderState +{ + CLzmaProperties Properties; + CProb *Probs; + + #ifdef _LZMA_IN_CB + const unsigned char *Buffer; + const unsigned char *BufferLim; + #endif + + #ifdef _LZMA_OUT_READ + unsigned char *Dictionary; + UInt32 Range; + UInt32 Code; + UInt32 DictionaryPos; + UInt32 GlobalPos; + UInt32 DistanceLimit; + UInt32 Reps[4]; + int State; + int RemainLen; + unsigned char TempDictionary[4]; + #endif +} CLzmaDecoderState; + +#ifdef _LZMA_OUT_READ +#define LzmaDecoderInit(vs) { (vs)->RemainLen = kLzmaNeedInitId; } +#endif + +int LzmaDecode(CLzmaDecoderState *vs, + #ifdef _LZMA_IN_CB + ILzmaInCallback *inCallback, + #else + const unsigned char *inStream, SizeT inSize, SizeT *inSizeProcessed, + #endif + unsigned char *outStream, SizeT outSize, SizeT *outSizeProcessed); + +#endif diff --git a/package/kernel/lantiq/ltq-vdsl-fw/src/LzmaTypes.h b/package/kernel/lantiq/ltq-vdsl-fw/src/LzmaTypes.h new file mode 100644 index 0000000..9c27290 --- /dev/null +++ b/package/kernel/lantiq/ltq-vdsl-fw/src/LzmaTypes.h @@ -0,0 +1,45 @@ +/* +LzmaTypes.h + +Types for LZMA Decoder + +This file written and distributed to public domain by Igor Pavlov. +This file is part of LZMA SDK 4.40 (2006-05-01) +*/ + +#ifndef __LZMATYPES_H +#define __LZMATYPES_H + +#ifndef _7ZIP_BYTE_DEFINED +#define _7ZIP_BYTE_DEFINED +typedef unsigned char Byte; +#endif + +#ifndef _7ZIP_UINT16_DEFINED +#define _7ZIP_UINT16_DEFINED +typedef unsigned short UInt16; +#endif + +#ifndef _7ZIP_UINT32_DEFINED +#define _7ZIP_UINT32_DEFINED +#ifdef _LZMA_UINT32_IS_ULONG +typedef unsigned long UInt32; +#else +typedef unsigned int UInt32; +#endif +#endif + +/* #define _LZMA_NO_SYSTEM_SIZE_T */ +/* You can use it, if you don't want <stddef.h> */ + +#ifndef _7ZIP_SIZET_DEFINED +#define _7ZIP_SIZET_DEFINED +#ifdef _LZMA_NO_SYSTEM_SIZE_T +typedef UInt32 SizeT; +#else +#include <stddef.h> +typedef size_t SizeT; +#endif +#endif + +#endif diff --git a/package/kernel/lantiq/ltq-vdsl-fw/src/LzmaWrapper.c b/package/kernel/lantiq/ltq-vdsl-fw/src/LzmaWrapper.c new file mode 100644 index 0000000..7dce056 --- /dev/null +++ b/package/kernel/lantiq/ltq-vdsl-fw/src/LzmaWrapper.c @@ -0,0 +1,206 @@ +/****************************************************************************** +** +** FILE NAME : LzmaWrapper.c +** PROJECT : bootloader +** MODULES : U-boot +** +** DATE : 2 Nov 2006 +** AUTHOR : Lin Mars +** DESCRIPTION : LZMA decoder support for U-boot 1.1.5 +** COPYRIGHT : Copyright (c) 2006 +** Infineon Technologies AG +** Am Campeon 1-12, 85579 Neubiberg, Germany +** +** This program is free software; you can redistribute it and/or modify +** it under the terms of the GNU General Public License as published by +** the Free Software Foundation; either version 2 of the License, or +** (at your option) any later version. +** +** HISTORY +** $Date $Author $Comment +** 2 Nov 2006 Lin Mars init version which derived from LzmaTest.c from +** LZMA v4.43 SDK +** 24 May 2007 Lin Mars Fix issue for multiple lzma_inflate involved +*******************************************************************************/ +#include <stdio.h> +#include <stdlib.h> +#include <string.h> + +#include "LzmaDecode.h" +#include "LzmaWrapper.h" + +#if defined(DEBUG_ENABLE_BOOTSTRAP_PRINTF) || !defined(CFG_BOOTSTRAP_CODE) +static const char *kCantReadMessage = "Can not read from source buffer"; +static const char *kCantAllocateMessage = "Not enough buffer for decompression"; +#endif + +static size_t rpos=0, dpos=0; + +static int MyReadFileAndCheck(unsigned char *src, void *dest, size_t size) +{ + if (size == 0) + return 0; + memcpy(dest, src + rpos, size); + rpos += size; + return 1; +} + +int lzma_inflate(unsigned char *source, int s_len, unsigned char *dest, int *d_len) +{ + /* We use two 32-bit integers to construct 64-bit integer for file size. + You can remove outSizeHigh, if you don't need >= 4GB supporting, + or you can use UInt64 outSize, if your compiler supports 64-bit integers*/ + UInt32 outSize = 0; + UInt32 outSizeHigh = 0; + SizeT outSizeFull; + unsigned char *outStream; + + int waitEOS = 1; + /* waitEOS = 1, if there is no uncompressed size in headers, + so decoder will wait EOS (End of Stream Marker) in compressed stream */ + + SizeT compressedSize; + unsigned char *inStream; + + CLzmaDecoderState state; /* it's about 24-80 bytes structure, if int is 32-bit */ + unsigned char properties[LZMA_PROPERTIES_SIZE]; + + int res; + + rpos=0; dpos=0; + + if (sizeof(UInt32) < 4) + { +#if defined(DEBUG_ENABLE_BOOTSTRAP_PRINTF) || !defined(CFG_BOOTSTRAP_CODE) + printf("LZMA decoder needs correct UInt32\n"); +#endif + return LZMA_RESULT_DATA_ERROR; + } + + { + long length=s_len; + if ((long)(SizeT)length != length) + { +#if defined(DEBUG_ENABLE_BOOTSTRAP_PRINTF) || !defined(CFG_BOOTSTRAP_CODE) + printf("Too big compressed stream\n"); +#endif + return LZMA_RESULT_DATA_ERROR; + } + compressedSize = (SizeT)(length - (LZMA_PROPERTIES_SIZE + 8)); + } + + /* Read LZMA properties for compressed stream */ + + if (!MyReadFileAndCheck(source, properties, sizeof(properties))) + { +#if defined(DEBUG_ENABLE_BOOTSTRAP_PRINTF) || !defined(CFG_BOOTSTRAP_CODE) + printf("%s\n", kCantReadMessage); +#endif + return LZMA_RESULT_DATA_ERROR; + } + + /* Read uncompressed size */ + { + int i; + for (i = 0; i < 8; i++) + { + unsigned char b; + if (!MyReadFileAndCheck(source, &b, 1)) + { +#if defined(DEBUG_ENABLE_BOOTSTRAP_PRINTF) || !defined(CFG_BOOTSTRAP_CODE) + printf("%s\n", kCantReadMessage); +#endif + return LZMA_RESULT_DATA_ERROR; + } + if (b != 0xFF) + waitEOS = 0; + if (i < 4) + outSize += (UInt32)(b) << (i * 8); + else + outSizeHigh += (UInt32)(b) << ((i - 4) * 8); + } + + if (waitEOS) + { +#if defined(DEBUG_ENABLE_BOOTSTRAP_PRINTF) || !defined(CFG_BOOTSTRAP_CODE) + printf("Stream with EOS marker is not supported"); +#endif + return LZMA_RESULT_DATA_ERROR; + } + outSizeFull = (SizeT)outSize; + if (sizeof(SizeT) >= 8) + outSizeFull |= (((SizeT)outSizeHigh << 16) << 16); + else if (outSizeHigh != 0 || (UInt32)(SizeT)outSize != outSize) + { +#if defined(DEBUG_ENABLE_BOOTSTRAP_PRINTF) || !defined(CFG_BOOTSTRAP_CODE) + printf("Too big uncompressed stream"); +#endif + return LZMA_RESULT_DATA_ERROR; + } + } + + /* Decode LZMA properties and allocate memory */ + if (LzmaDecodeProperties(&state.Properties, properties, LZMA_PROPERTIES_SIZE) != LZMA_RESULT_OK) + { +#if defined(DEBUG_ENABLE_BOOTSTRAP_PRINTF) || !defined(CFG_BOOTSTRAP_CODE) + printf("Incorrect stream properties"); +#endif + return LZMA_RESULT_DATA_ERROR; + } + state.Probs = (CProb *)malloc(LzmaGetNumProbs(&state.Properties) * sizeof(CProb)); + + if (outSizeFull == 0) + outStream = 0; + else + { + if (outSizeFull > d_len) + outStream = 0; + else + outStream = dest; + } + + if (compressedSize == 0) + inStream = 0; + else + { + if ((compressedSize+rpos) > s_len ) + inStream = 0; + else + inStream = source + rpos; + } + + if (state.Probs == 0 + || (outStream == 0 && outSizeFull != 0) + || (inStream == 0 && compressedSize != 0) + ) + { + free(state.Probs); +#if defined(DEBUG_ENABLE_BOOTSTRAP_PRINTF) || !defined(CFG_BOOTSTRAP_CODE) + printf("%s\n", kCantAllocateMessage); +#endif + return LZMA_RESULT_DATA_ERROR; + } + + /* Decompress */ + { + SizeT inProcessed; + SizeT outProcessed; + res = LzmaDecode(&state, + inStream, compressedSize, &inProcessed, + outStream, outSizeFull, &outProcessed); + if (res != 0) + { +#if defined(DEBUG_ENABLE_BOOTSTRAP_PRINTF) || !defined(CFG_BOOTSTRAP_CODE) + printf("\nDecoding error = %d\n", res); +#endif + res = 1; + } + else + { + *d_len = outProcessed; + } + } + + free(state.Probs); + return res; +} diff --git a/package/kernel/lantiq/ltq-vdsl-fw/src/LzmaWrapper.h b/package/kernel/lantiq/ltq-vdsl-fw/src/LzmaWrapper.h new file mode 100644 index 0000000..2f9a3ff --- /dev/null +++ b/package/kernel/lantiq/ltq-vdsl-fw/src/LzmaWrapper.h @@ -0,0 +1,36 @@ +/****************************************************************************** +** +** FILE NAME : LzmaWrapper.h +** PROJECT : bootloader +** MODULES : U-boot +** +** DATE : 2 Nov 2006 +** AUTHOR : Lin Mars +** DESCRIPTION : LZMA decoder support for U-boot 1.1.5 +** COPYRIGHT : Copyright (c) 2006 +** Infineon Technologies AG +** Am Campeon 1-12, 85579 Neubiberg, Germany +** +** This program is free software; you can redistribute it and/or modify +** it under the terms of the GNU General Public License as published by +** the Free Software Foundation; either version 2 of the License, or +** (at your option) any later version. +** +** HISTORY +** $Date $Author $Comment +** 2 Nov 2006 Lin Mars init version which derived from LzmaTest.c from +** LZMA v4.43 SDK +*******************************************************************************/ +#ifndef __LZMA_WRAPPER_H__ +#define __LZMA_WRAPPER_H__ + +#ifndef LZMA_RESULT_OK +#define LZMA_RESULT_OK 0 +#endif +#ifndef LZMA_RESULT_DATA_ERROR +#define LZMA_RESULT_DATA_ERROR 1 +#endif + +extern int lzma_inflate(unsigned char *source, int s_len, unsigned char *dest, int *d_len); + +#endif /*__LZMA_WRAPPER_H__*/ diff --git a/package/kernel/lantiq/ltq-vdsl-fw/src/Makefile b/package/kernel/lantiq/ltq-vdsl-fw/src/Makefile new file mode 100644 index 0000000..2d50aaf --- /dev/null +++ b/package/kernel/lantiq/ltq-vdsl-fw/src/Makefile @@ -0,0 +1,13 @@ +PROG=w921v_fw_cutter +OBJS=w921v_fw_cutter.c LzmaDecode.c LzmaWrapper.c + +all: $(PROG) + +$(PROG): $(OBJS) + $(CC) $(CFLAGS) $(LDFLAGS) $^ -o $@ + +clean: + rm *.o $(PROG) + +%.o: %.c + $(CC) $(CFLAGS) -c $^ -o $@ diff --git a/package/kernel/lantiq/ltq-vdsl-fw/src/vdsl_fw_install.sh b/package/kernel/lantiq/ltq-vdsl-fw/src/vdsl_fw_install.sh new file mode 100755 index 0000000..4d40756 --- /dev/null +++ b/package/kernel/lantiq/ltq-vdsl-fw/src/vdsl_fw_install.sh @@ -0,0 +1,48 @@ +#!/bin/sh + +FW="/tmp/Firmware_Speedport_W921V_1.20.000.bin" +URL="http://hilfe.telekom.de/dlp/eki/downloads/Speedport/Speedport%20W%20921V/Firmware_Speedport_W921V_1.20.000.bin" +FW_TAPI="/tmp/vr9_tapi_fw.bin" +FW_DSL="/tmp/vr9_dsl_fw_annex_b.bin" +FW_TGZ="/tmp/vr9_fw.tgz" +MD5_FW="4d812f2c3476dadd738b022c4767c491" +MD5_TAPI="06b6ab3481b8d3eb7e8bf6131f7f6b7f" +MD5_DSL="59dd9dc81195c6854433c691b163f757" + +[ -f /lib/firmware/vdsl.bin] && exit 0 + +[ -z "$1" ] || URL=$1 + +[ -f "${FW}" ] || { + echo "${FW} does not exist. Try to Download it ? (y/N)" + read -n 1 R + echo "" + [ "$R" = "y" ] || { + echo "Please manually download the firmware from ${URL} and copy the file to ${FW}" + exit 1 + } + echo "Download w921v Firmware" + wget "${URL}" -O "${FW}" + [ $? -eq 0 -a -f "${FW}" ] || exit 1 +} + +F=`md5sum -b ${FW} | cut -d" " -f1` +[ "$F" = "${MD5_FW}" ] || { + echo "Failed to verify Firmware MD5" + exit 1 +} + +echo "Unpack and decompress w921v Firmware" +w921v_fw_cutter +[ $? -eq 0 ] || exit 1 + +T=`md5sum -b ${FW_TAPI} | cut -d" " -f1` +D=`md5sum -b ${FW_DSL} | cut -d" " -f1` + +[ "$T" = "${MD5_TAPI}" -a "$D" = "${MD5_DSL}" ] || { + echo "Failed to verify MD5" + exit 1 +} + +cp ${FW_TAPI} ${FW_DSL} /lib/firmware/ +ln -s /lib/firmware/vr9_dsl_fw_annex_b.bin /lib/firmware/vdsl.bin diff --git a/package/kernel/lantiq/ltq-vdsl-fw/src/w921v_fw_cutter.c b/package/kernel/lantiq/ltq-vdsl-fw/src/w921v_fw_cutter.c new file mode 100644 index 0000000..b26c91e --- /dev/null +++ b/package/kernel/lantiq/ltq-vdsl-fw/src/w921v_fw_cutter.c @@ -0,0 +1,164 @@ +/* + * This program is free software; you can redistribute it and/or modify + * it under the terms of the GNU General Public License as published by + * the Free Software Foundation; version 2 of the License + * + * This program is distributed in the hope that it will be useful, + * but WITHOUT ANY WARRANTY; without even the implied warranty of + * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the + * GNU General Public License for more details. + * + * You should have received a copy of the GNU General Public License + * along with this program; if not, write to the Free Software + * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307, USA. + * + * Copyright (C) 2012 John Crispin <blogic@openwrt.org> + */ + +#include <sys/types.h> +#include <sys/stat.h> +#include <unistd.h> +#include <stdlib.h> +#include <stdio.h> +#include <string.h> +#include <errno.h> +#include <fcntl.h> + +#include "LzmaWrapper.h" + +#define FW_NAME "/tmp/Firmware_Speedport_W921V_1.20.000.bin" + +#define MAGIC 0x50 +#define MAGIC_SZ 0x3FFC00 +#if __BYTE_ORDER == __LITTLE_ENDIAN +#define MAGIC_PART 0x12345678 +#define MAGIC_LZMA 0x8000005D +#define MAGIC_ANNEX_B 0x3C +#define MAGIC_TAPI 0x5A +#else +#define MAGIC_PART 0x78563412 +#define MAGIC_LZMA 0x5D000080 +#define MAGIC_ANNEX_B 0x3C000000 +#define MAGIC_TAPI 0x5A000000 +#endif + + +const char* part_type(u_int32_t id) +{ + switch(id) { + case MAGIC_ANNEX_B: + return "/tmp/vr9_dsl_fw_annex_b.bin"; + case MAGIC_TAPI: + return "/tmp/vr9_tapi_fw.bin"; + } + printf("\tUnknown lzma type 0x%02X\n", id); + return "/tmp/unknown.lzma"; +} + +int main(int argc, char **argv) +{ + struct stat s; + u_int8_t *buf_orig; + u_int32_t *buf; + int buflen; + int fd; + int i; + int err; + int start = 0, end = 0; + + printf("Arcadyan Firmware cutter v0.1\n"); + printf("-----------------------------\n"); + printf("This tool extracts the different parts of an arcadyan firmware update file\n"); + printf("This tool is for private use only. The Firmware that gets extracted has a license that forbids redistribution\n"); + printf("Please only run this if you understand the risks\n\n"); + printf("I understand the risks ? (y/N)\n"); + + if (getchar() != 'y') + return -1; + + if (stat(FW_NAME, &s) != 0) { + printf("Failed to find %s\n", FW_NAME); + printf("Ask Google or try http://hilfe.telekom.de/dlp/eki/downloads/Speedport/Speedport%20W%20921V/Firmware_Speedport_W921V_1.20.000.bin\n"); + return -1; + } + + buf_orig = malloc(s.st_size); + if (!buf_orig) { + printf("Failed to alloc %d bytes\n", s.st_size); + return -1; + } + + fd = open(FW_NAME, O_RDONLY); + if (fd < 0) { + printf("Unable to open %s\n", FW_NAME); + return -1; + } + + buflen = read(fd, buf_orig, s.st_size); + close(fd); + if (buflen != s.st_size) { + printf("Loaded %d instead of %d bytes inside %s\n", buflen, s.st_size, FW_NAME); + return -1; + } + + /* <magic> */ + buf_orig++; + buflen -= 1; + for (i = 0; i < MAGIC_SZ; i++) { + if ((i % 16) < 3) + buf_orig[i] = buf_orig[i + 16] ^ MAGIC; + else + buf_orig[i] = buf_orig[i] ^ MAGIC; + } + buflen -= 3; + memmove(&buf_orig[MAGIC_SZ], &buf_orig[MAGIC_SZ + 3], buflen - MAGIC_SZ); + /* </magic> */ + + buf = (u_int32_t*) buf_orig; + + do { + if (buf[end] == MAGIC_PART) { + end += 2; + printf("Found partition at 0x%08X with size %d\n", + start * sizeof(u_int32_t), + (end - start) * sizeof(u_int32_t)); + if (buf[start] == MAGIC_LZMA) { + int dest_len = 1024 * 1024; + int len = buf[end - 3]; + u_int32_t id = buf[end - 6]; + const char *type = part_type(id); + u_int8_t *dest; + + dest = malloc(dest_len); + if (!dest) { + printf("Failed to alloc dest buffer\n"); + return -1; + } + + if (lzma_inflate((u_int8_t*)&buf[start], len, dest, &dest_len)) { + printf("Failed to decompress data\n"); + return -1; + } + + fd = creat(type, S_IRUSR | S_IWUSR); + if (fd != -1) { + if (write(fd, dest, dest_len) != dest_len) + printf("\tFailed to write %d bytes\n", dest_len); + else + printf("\tWrote %d bytes to %s\n", dest_len, type); + close(fd); + } else { + printf("\tFailed to open %s\n", type); + } + free(dest); + } else { + printf("\tThis is not lzma\n"); + } + start = end; + } else { + end++; + } + } while(end < buflen / sizeof(u_int32_t)); + + return 0; +} diff --git a/package/kernel/lantiq/ltq-vdsl-mei/Makefile b/package/kernel/lantiq/ltq-vdsl-mei/Makefile new file mode 100644 index 0000000..8561573 --- /dev/null +++ b/package/kernel/lantiq/ltq-vdsl-mei/Makefile @@ -0,0 +1,60 @@ +# Copyright (C) 2012 OpenWrt.org +# +# This is free software, licensed under the GNU General Public License v2. +# See /LICENSE for more information. + +include $(TOPDIR)/rules.mk +include $(INCLUDE_DIR)/kernel.mk + +PKG_NAME:=ltq-vdsl-vr9-mei +PKG_VERSION:=1.2.0 +PKG_RELEASE:=1 + +PKG_BASE_NAME:=drv_mei_cpe +PKG_SOURCE:=$(PKG_BASE_NAME)-$(PKG_VERSION).tar.gz +PKG_BUILD_DIR:=$(KERNEL_BUILD_DIR)/$(PKG_BASE_NAME)-$(PKG_VERSION) +PKG_MD5SUM:=cf2fccc1bc72390b2aec46650abf2f20 +PKG_FIXUP:=autoreconf +PKG_MAINTAINER:=John Crispin <blogic@openwrt.org> + +include $(INCLUDE_DIR)/package.mk + +define KernelPackage/ltq-vdsl-vr9-mei + TITLE:=mei driver for vdsl + SECTION:=sys + SUBMENU:=Network Devices + DEPENDS:=@TARGET_lantiq_xway +kmod-ltq-ifxos + FILES:=$(PKG_BUILD_DIR)/src/drv_mei_cpe.ko + AUTOLOAD:=$(call AutoLoad,50,drv_mei_cpe) +endef + +define KernelPackage/ltq-vdsl-vr9-mei/description + Lantiq MEI CPE Kernel Module Driver +endef + +#DEBUG=-DDEBUG_PRINT=1 + +CONFIGURE_ARGS += \ + --enable-kernelincl="$(LINUX_DIR)/include" \ + --enable-device=vr9 \ + --with-max-device=1 \ + --with-lines-per-device=1 \ + --enable-debug \ + --enable-error_print \ + --enable-ifxos-include="-I$(STAGING_DIR)/usr/include/ifxos/" \ + --enable-ifxos-library="-L$(STAGING_DIR)/usr/lib" \ + --enable-add_drv_cflags="$(DEBUG) -DMEI_DRV_ATM_PTM_INTERFACE_ENABLE=1 -fno-pic -mno-abicalls -mlong-calls -O2 -g0" \ + --enable-linux-26 \ + --enable-kernelbuild="$(LINUX_DIR)" \ + ARCH=$(LINUX_KARCH) + +define Build/InstallDev + $(INSTALL_DIR) $(1)/usr/include/vdsl + $(CP) $(PKG_BUILD_DIR)/src/drv_mei_cpe_api_intern.h $(1)/usr/include/vdsl/ + $(CP) $(PKG_BUILD_DIR)/src/drv_mei_cpe_api_atm_ptm_intern.h $(1)/usr/include/vdsl/ + $(CP) $(PKG_BUILD_DIR)/src/drv_mei_cpe_interface.h $(1)/usr/include/vdsl + $(CP) $(PKG_BUILD_DIR)/src/drv_mei_cpe_config.h $(1)/usr/include/vdsl/ + $(CP) $(PKG_BUILD_DIR)/src/cmv_message_format.h $(1)/usr/include/vdsl/ +endef + +$(eval $(call KernelPackage,ltq-vdsl-vr9-mei)) diff --git a/package/kernel/lantiq/ltq-vdsl-mei/patches/100-compat.patch b/package/kernel/lantiq/ltq-vdsl-mei/patches/100-compat.patch new file mode 100644 index 0000000..5822e74 --- /dev/null +++ b/package/kernel/lantiq/ltq-vdsl-mei/patches/100-compat.patch @@ -0,0 +1,298 @@ +Index: drv_mei_cpe-1.2.0/src/drv_mei_cpe_common.c +=================================================================== +--- drv_mei_cpe-1.2.0.orig/src/drv_mei_cpe_common.c 2011-10-26 00:49:51.000000000 +0200 ++++ drv_mei_cpe-1.2.0/src/drv_mei_cpe_common.c 2012-11-28 15:14:10.421633418 +0100 +@@ -20,7 +20,6 @@ + /* get at first the driver configuration */ + #include "drv_mei_cpe_config.h" + +-#include "ifx_types.h" + #include "drv_mei_cpe_os.h" + #include "drv_mei_cpe_dbg.h" + +Index: drv_mei_cpe-1.2.0/configure.in +=================================================================== +--- drv_mei_cpe-1.2.0.orig/configure.in 2012-01-20 17:41:07.000000000 +0100 ++++ drv_mei_cpe-1.2.0/configure.in 2012-11-28 15:14:10.421633418 +0100 +@@ -140,7 +140,7 @@ + AC_ARG_ENABLE(kernelbuild, + AC_HELP_STRING([--enable-kernelbuild=x],[Set the target kernel build path]), + [ +- if test -e $enableval/include/linux/autoconf.h; then ++ if test -e $enableval/include/generated/autoconf.h; then + AC_SUBST([KERNEL_BUILD_PATH],[$enableval]) + else + AC_MSG_ERROR([The kernel build directory is not valid or not configured!]) +Index: drv_mei_cpe-1.2.0/configure +=================================================================== +--- drv_mei_cpe-1.2.0.orig/configure 2012-01-20 17:50:02.000000000 +0100 ++++ drv_mei_cpe-1.2.0/configure 2012-11-28 15:14:56.637634577 +0100 +@@ -617,6 +617,7 @@ + am__fastdepCC_FALSE + am__fastdepCC_TRUE + CCDEPMODE ++am__nodep + AMDEPBACKSLASH + AMDEP_FALSE + AMDEP_TRUE +@@ -2367,11 +2368,11 @@ + + # We need awk for the "check" target. The system "awk" is bad on + # some platforms. +-# Always define AMTAR for backward compatibility. ++# Always define AMTAR for backward compatibility. Yes, it's still used ++# in the wild :-( We should find a proper way to deprecate it ... ++AMTAR='$${TAR-tar}' + +-AMTAR=${AMTAR-"${am_missing_run}tar"} +- +-am__tar='${AMTAR} chof - "$$tardir"'; am__untar='${AMTAR} xf -' ++am__tar='$${TAR-tar} chof - "$$tardir"' am__untar='$${TAR-tar} xf -' + + + +@@ -3219,6 +3220,7 @@ + if test "x$enable_dependency_tracking" != xno; then + am_depcomp="$ac_aux_dir/depcomp" + AMDEPBACKSLASH='\' ++ am__nodep='_no' + fi + if test "x$enable_dependency_tracking" != xno; then + AMDEP_TRUE= +@@ -3243,6 +3245,7 @@ + # instance it was reported that on HP-UX the gcc test will end up + # making a dummy file named `D' -- because `-MD' means `put the output + # in D'. ++ rm -rf conftest.dir + mkdir conftest.dir + # Copy depcomp to subdir because otherwise we won't find it if we're + # using a relative directory. +@@ -3302,7 +3305,7 @@ + break + fi + ;; +- msvisualcpp | msvcmsys) ++ msvc7 | msvc7msys | msvisualcpp | msvcmsys) + # This compiler won't grok `-c -o', but also, the minuso test has + # not run yet. These depmodes are late enough in the game, and + # so weak that their functioning should not be impacted. +@@ -3656,7 +3659,7 @@ + # Check whether --enable-kernelbuild was given. + if test "${enable_kernelbuild+set}" = set; then : + enableval=$enable_kernelbuild; +- if test -e $enableval/include/linux/autoconf.h; then ++ if test -e $enableval/include/generated/autoconf.h; then + KERNEL_BUILD_PATH=$enableval + + else +Index: drv_mei_cpe-1.2.0/src/drv_mei_cpe_linux.h +=================================================================== +--- drv_mei_cpe-1.2.0.orig/src/drv_mei_cpe_linux.h 2011-07-25 20:41:02.000000000 +0200 ++++ drv_mei_cpe-1.2.0/src/drv_mei_cpe_linux.h 2012-11-28 15:14:10.429633419 +0100 +@@ -34,8 +34,6 @@ + #include <linux/sched.h> + #include <linux/interrupt.h> + +-#include <asm/ifx/irq.h> +- + #if (MEI_DRV_IFXOS_ENABLE == 0) + + #include <linux/version.h> +@@ -44,8 +42,6 @@ + #include <linux/poll.h> + #include <linux/types.h> + +-#include <asm/ifx/ifx_types.h> +- + #endif /* #if (MEI_DRV_IFXOS_ENABLE == 0)*/ + + /* ============================================================================ +Index: drv_mei_cpe-1.2.0/src/drv_mei_cpe_mei_vr9.h +=================================================================== +--- drv_mei_cpe-1.2.0.orig/src/drv_mei_cpe_mei_vr9.h 2011-07-25 20:41:02.000000000 +0200 ++++ drv_mei_cpe-1.2.0/src/drv_mei_cpe_mei_vr9.h 2012-11-28 15:14:10.429633419 +0100 +@@ -40,12 +40,6 @@ + #endif + #endif + +-#ifdef LINUX +- #include <asm/ifx/ifx_pmu.h> +-#else +- #error "Please check PMU driver path!" +-#endif +- + /* ============================================================================ + Module : RCU register address and bits + ========================================================================= */ +Index: drv_mei_cpe-1.2.0/src/drv_mei_cpe_api_atm_ptm_intern.c +=================================================================== +--- drv_mei_cpe-1.2.0.orig/src/drv_mei_cpe_api_atm_ptm_intern.c 2011-07-25 20:41:02.000000000 +0200 ++++ drv_mei_cpe-1.2.0/src/drv_mei_cpe_api_atm_ptm_intern.c 2012-11-28 15:14:10.429633419 +0100 +@@ -25,11 +25,7 @@ + #include "ifx_types.h" + #include "drv_mei_cpe_os.h" + +-#ifdef LINUX +- #include <asm/ifx/ifx_atm.h> +-#else +- #error "ATM/PTM internal interface is only supported for Linux!" +-#endif ++#include <lantiq_atm.h> + + /** get interface and configuration */ + #include "drv_mei_cpe_interface.h" +Index: drv_mei_cpe-1.2.0/src/drv_mei_cpe_linux.c +=================================================================== +--- drv_mei_cpe-1.2.0.orig/src/drv_mei_cpe_linux.c 2011-07-25 20:41:02.000000000 +0200 ++++ drv_mei_cpe-1.2.0/src/drv_mei_cpe_linux.c 2012-11-28 15:24:56.269649609 +0100 +@@ -32,11 +32,9 @@ + #include <linux/module.h> + #include <linux/version.h> + +-#if (LINUX_VERSION_CODE > KERNEL_VERSION(2,6,17)) +-#include <linux/utsrelease.h> +-#endif +-#include <linux/init.h> ++#include <generated/utsrelease.h> + ++#include <linux/device.h> + #include <linux/ioport.h> + #include <linux/irq.h> + #include <asm/io.h> +@@ -87,6 +85,8 @@ + #include "drv_mei_cpe_device_cntrl.h" + #endif + ++#define INT_NUM_IM4_IRL30 (INT_NUM_IM4_IRL0 + 30) ++ + /* =================================== + extern function declarations + =================================== */ +@@ -122,7 +122,7 @@ + size_t length, + loff_t * ppos); + +-static int MEI_Ioctl( struct inode *inode, struct file *filp, ++static long MEI_Ioctl(struct file *filp, + unsigned int nCmd, unsigned long nArgument); + + static unsigned int MEI_Poll (struct file *filp, poll_table *table); +@@ -137,7 +137,7 @@ + + static void MEI_IfxFreeIrq(unsigned int usedIrq, void *pUsedDevId); + +-static irqreturn_t MEI_InterruptLinux(int irq, void *dev_id, struct pt_regs *regs); ++static irqreturn_t MEI_InterruptLinux(int irq, void *dev_id); + #endif + + #if CONFIG_PROC_FS +@@ -194,7 +194,9 @@ + /* =================================== */ + /* Local variables (LINUX) */ + /* =================================== */ +-static IFX_uint8_t major_number = 0; ++#define MEI_MAJOR 105 ++ ++static IFX_uint8_t major_number = MEI_MAJOR; + #ifdef MODULE + #if (LINUX_VERSION_CODE < KERNEL_VERSION(2,6,0)) + MODULE_PARM(major_number, "b"); +@@ -242,7 +244,7 @@ + MEI_Write, + poll: + MEI_Poll, +- ioctl: ++ unlocked_ioctl: + MEI_Ioctl, + open: + MEI_OpenOS, +@@ -457,7 +459,7 @@ + 0 and positive values - success, + negative value - ioctl failed + */ +-static int MEI_Ioctl( struct inode *inode, struct file *filp, ++static long MEI_Ioctl(struct file *filp, + unsigned int nCmd, unsigned long nArgument) + { + int ret = 0, retSize = sizeof(IOCTL_MEI_ioctl_t); +@@ -1242,7 +1246,7 @@ + \remark + None. + */ +-static irqreturn_t MEI_InterruptLinux(int irq, void *dev_id, struct pt_regs *regs) ++static irqreturn_t MEI_InterruptLinux(int irq, void *dev_id) + { + IFX_int32_t meiIntCnt = 0; + MEIX_CNTRL_T *pMeiXCntrlList = (MEIX_CNTRL_T*)dev_id; +@@ -1691,6 +1695,7 @@ + static int __init MEI_module_init (void) + { + int result; ++ static struct class *dsl_class; + + printk(KERN_INFO "%s" MEI_DRV_CRLF, &MEI_WHATVERSION[4]); + printk(KERN_INFO "(c) Copyright 2009, Infineon Technologies AG" MEI_DRV_CRLF); +@@ -1730,6 +1735,8 @@ + return (result); + } + ++ dsl_class = class_create(THIS_MODULE, "ifx_mei"); ++ device_create(dsl_class, NULL, MKDEV(MEI_MAJOR, 0), NULL, "ifx_mei"); + return 0; + } + +Index: drv_mei_cpe-1.2.0/src/drv_mei_cpe_mei_access_vr9.c +=================================================================== +--- drv_mei_cpe-1.2.0.orig/src/drv_mei_cpe_mei_access_vr9.c 2011-07-25 20:41:02.000000000 +0200 ++++ drv_mei_cpe-1.2.0/src/drv_mei_cpe_mei_access_vr9.c 2012-11-28 15:14:10.433633419 +0100 +@@ -37,6 +37,7 @@ + + #include "cmv_message_format.h" + ++#include <lantiq_soc.h> + + /* ============================================================================ + Local macro definition +@@ -1527,32 +1528,35 @@ + return IFX_ERROR; + } + ++#define PMU_DFE BIT(9) ++ + IFX_int32_t MEI_BasicChipInit(IFX_void_t) + { + /* Power up MEI */ +- DSL_DFE_PMU_SETUP(IFX_PMU_ENABLE); +- +- if (ifx_pmu_pg_dsl_dfe_enable() != 0) ++// DSL_DFE_PMU_SETUP(IFX_PMU_ENABLE); ++ltq_pmu_enable(PMU_DFE); ++ /* if (ifx_pmu_pg_dsl_dfe_enable() != 0) + { + PRN_ERR_USR_NL( MEI_MEI_ACCESS, MEI_DRV_PRN_LEVEL_ERR, + ("MEI: ERROR - DSL DFE PG enable failed!" MEI_DRV_CRLF)); + return IFX_ERROR; +- } ++ }*/ + + return IFX_SUCCESS; + } + + IFX_int32_t MEI_BasicChipExit(IFX_void_t) + { +- if (ifx_pmu_pg_dsl_dfe_disable() != 0) ++/* if (ifx_pmu_pg_dsl_dfe_disable() != 0) + { + PRN_ERR_USR_NL( MEI_MEI_ACCESS, MEI_DRV_PRN_LEVEL_ERR, + ("MEI: ERROR - DSL DFE PG disable failed!" MEI_DRV_CRLF)); + return IFX_ERROR; + } +- ++*/ + /* Power down MEI */ +- DSL_DFE_PMU_SETUP(IFX_PMU_DISABLE); ++// DSL_DFE_PMU_SETUP(IFX_PMU_DISABLE); ++ltq_pmu_disable(PMU_DFE); + + return IFX_SUCCESS; + } diff --git a/package/kernel/lantiq/ltq-vdsl/Makefile b/package/kernel/lantiq/ltq-vdsl/Makefile new file mode 100644 index 0000000..9f1e268 --- /dev/null +++ b/package/kernel/lantiq/ltq-vdsl/Makefile @@ -0,0 +1,69 @@ +# Copyright (C) 2012 OpenWrt.org +# +# This is free software, licensed under the GNU General Public License v2. +# See /LICENSE for more information. + +include $(TOPDIR)/rules.mk +include $(INCLUDE_DIR)/kernel.mk + +PKG_NAME:=ltq-vdsl-vr9 +PKG_VERSION:=4.11.4 +PKG_RELEASE:=1 + +PKG_BASE_NAME:=drv_dsl_cpe_api_vrx +PKG_SOURCE:=$(PKG_BASE_NAME)-$(PKG_VERSION).tar.gz +PKG_BUILD_DIR:=$(KERNEL_BUILD_DIR)/drv_dsl_cpe_api-$(PKG_VERSION) +PKG_SOURCE_URL:=http://mirror2.openwrt.org/sources/ +PKG_MD5SUM:=b6d9c1e3c5db1bfcd6e81bb2f582cadb + +PKG_MAINTAINER:=John Crispin <blogic@openwrt.org> + +include $(INCLUDE_DIR)/package.mk + +define KernelPackage/ltq-vdsl-vr9 + TITLE:=vdsl driver + SECTION:=sys + SUBMENU:=Network Devices + DEPENDS:=@TARGET_lantiq_xway +kmod-ltq-vdsl-vr9-mei + FILES:=$(PKG_BUILD_DIR)/src/drv_dsl_cpe_api.ko + AUTOLOAD:=$(call AutoLoad,51,drv_dsl_cpe_api) +endef + +define Package/ltq-vdsl-vr9/description + This package contains the Lantiq DSL CPE API driver. + + Supported Devices: + - VRX200 Family +endef + +EXTRA_CFLAGS = -fno-pic -mno-abicalls -mlong-calls -G 0 + +CONFIGURE_ARGS += --enable-kernel-include="$(LINUX_DIR)/include" \ + --with-max-device="1" \ + --with-lines-per-device="1" \ + --with-channels-per-line="1" \ + --enable-vrx \ + --enable-ifxos \ + --enable-ifxos-include="-I$(STAGING_DIR)/usr/include/ifxos" \ + --enable-driver-include="-I$(STAGING_DIR)/usr/include/vdsl" \ + --enable-add-drv-cflags="-DMODULE -DINCLUDE_DSL_ATM_PTM_INTERFACE_SUPPORT -DDSL_DEBUG_DISABLE" \ + --enable-adsl-led=no \ + --enable-adsl-mib=no \ + --enable-dsl-ceoc=no \ + --enable-dsl-bonding=no \ + --enable-linux-26 \ + --enable-kernelbuild="$(LINUX_DIR)" \ + KERNEL_ARCH=mips + +CONFIGURE_ARGS += --enable-model=full +#CONFIGURE_ARGS += --enable-model=lite +#CONFIGURE_ARGS += --enable-model=footprint +#CONFIGURE_ARGS += --enable-model=typical +#CONFIGURE_ARGS += --enable-model=debug + +define Build/InstallDev + $(INSTALL_DIR) $(1)/usr/include/drv_vdsl_cpe_api + $(CP) $(PKG_BUILD_DIR)/src/include/drv_dsl_cpe*.h $(1)/usr/include/drv_vdsl_cpe_api/ +endef + +$(eval $(call KernelPackage,ltq-vdsl-vr9)) diff --git a/package/kernel/lantiq/ltq-vdsl/patches/100-compat.patch b/package/kernel/lantiq/ltq-vdsl/patches/100-compat.patch new file mode 100644 index 0000000..5abe4b2 --- /dev/null +++ b/package/kernel/lantiq/ltq-vdsl/patches/100-compat.patch @@ -0,0 +1,148 @@ +Index: drv_dsl_cpe_api-4.11.4/src/include/drv_dsl_cpe_os_linux.h +=================================================================== +--- drv_dsl_cpe_api-4.11.4.orig/src/include/drv_dsl_cpe_os_linux.h 2011-10-26 00:35:29.000000000 +0200 ++++ drv_dsl_cpe_api-4.11.4/src/include/drv_dsl_cpe_os_linux.h 2012-11-28 23:05:38.766342592 +0100 +@@ -17,7 +17,7 @@ + #endif + + #include <asm/ioctl.h> +-#include <linux/autoconf.h> ++#include <generated/autoconf.h> + #include <linux/module.h> + #include <linux/kernel.h> + #include <linux/init.h> +@@ -28,7 +28,7 @@ + #include <linux/sched.h> + + #if (LINUX_VERSION_CODE > KERNEL_VERSION(2,6,17)) +- #include <linux/utsrelease.h> ++ #include <generated/utsrelease.h> + #endif + + #include <linux/types.h> +@@ -40,7 +40,6 @@ + #include <linux/delay.h> + #include <linux/poll.h> + #include <asm/uaccess.h> +-#include <linux/smp_lock.h> + + #ifdef INCLUDE_DSL_CPE_API_IFXOS_SUPPORT + /** IFXOS includes*/ +Index: drv_dsl_cpe_api-4.11.4/src/Makefile.in +=================================================================== +--- drv_dsl_cpe_api-4.11.4.orig/src/Makefile.in 2012-03-05 15:24:31.000000000 +0100 ++++ drv_dsl_cpe_api-4.11.4/src/Makefile.in 2012-11-28 23:05:38.770342592 +0100 +@@ -72,7 +72,7 @@ + + # the headerfile of linux kernels 2.6.x contain to much arithmetic + # with void pointers (which is allowed for gcc!) +-@KERNEL_2_6_FALSE@am__append_8 = -Wpointer-arith ++@KERNEL_2_6_FALSE@am__append_8 = + subdir = src + DIST_COMMON = $(srcdir)/Makefile.am $(srcdir)/Makefile.in + ACLOCAL_M4 = $(top_srcdir)/aclocal.m4 +Index: drv_dsl_cpe_api-4.11.4/src/common/drv_dsl_cpe_os_linux.c +=================================================================== +--- drv_dsl_cpe_api-4.11.4.orig/src/common/drv_dsl_cpe_os_linux.c 2011-10-26 00:35:28.000000000 +0200 ++++ drv_dsl_cpe_api-4.11.4/src/common/drv_dsl_cpe_os_linux.c 2012-11-28 23:05:38.770342592 +0100 +@@ -12,6 +12,7 @@ + + #define DSL_INTERN + ++#include <linux/device.h> + #include "drv_dsl_cpe_api.h" + #include "drv_dsl_cpe_api_ioctl.h" + +@@ -34,7 +35,7 @@ + static DSL_ssize_t DSL_DRV_Write(DSL_DRV_file_t *pFile, const DSL_char_t * pBuf, + DSL_DRV_size_t nSize, DSL_DRV_offset_t * pLoff); + +-static DSL_int_t DSL_DRV_Ioctls(DSL_DRV_inode_t * pINode, DSL_DRV_file_t * pFile, ++static long DSL_DRV_Ioctls(DSL_DRV_file_t * pFile, + DSL_uint_t nCommand, unsigned long nArg); + + static int DSL_DRV_Open(DSL_DRV_inode_t * ino, DSL_DRV_file_t * fil); +@@ -71,7 +72,7 @@ + open: DSL_DRV_Open, + release: DSL_DRV_Release, + write: DSL_DRV_Write, +- ioctl: DSL_DRV_Ioctls, ++ unlocked_ioctl: DSL_DRV_Ioctls, + poll: DSL_DRV_Poll + }; + #else +@@ -172,7 +173,7 @@ + \return Success or failure. + \ingroup Internal + */ +-static DSL_int_t DSL_DRV_Ioctls(DSL_DRV_inode_t * pINode, ++static long DSL_DRV_Ioctls( + DSL_DRV_file_t * pFile, + DSL_uint_t nCommand, + unsigned long nArg) +@@ -222,14 +223,7 @@ + } + } + +- if (pINode == DSL_NULL) +- { +- bIsInKernel = DSL_TRUE; +- } +- else +- { + bIsInKernel = DSL_FALSE; +- } + + if ( (_IOC_TYPE(nCommand) == DSL_IOC_MAGIC_CPE_API) || + (_IOC_TYPE(nCommand) == DSL_IOC_MAGIC_CPE_API_G997) || +@@ -1082,6 +1076,7 @@ + int __init DSL_ModuleInit(void) + { + DSL_int_t i; ++ static struct class *dsl_class; + + printk(DSL_DRV_CRLF DSL_DRV_CRLF "Lantiq CPE API Driver version: %s" DSL_DRV_CRLF, + &(dsl_cpe_api_version[4])); +@@ -1127,6 +1122,10 @@ + + DSL_DRV_DevNodeInit(); + ++ dsl_class = class_create(THIS_MODULE, "dsl_cpe_api0"); ++ device_create(dsl_class, NULL, MKDEV(DRV_DSL_CPE_API_DEV_MAJOR, 0), NULL, "dsl_cpe_api0"); ++ ++ + return 0; + } + +Index: drv_dsl_cpe_api-4.11.4/src/device/drv_dsl_cpe_msg_vrx.c +=================================================================== +--- drv_dsl_cpe_api-4.11.4.orig/src/device/drv_dsl_cpe_msg_vrx.c 2012-03-05 11:25:21.000000000 +0100 ++++ drv_dsl_cpe_api-4.11.4/src/device/drv_dsl_cpe_msg_vrx.c 2012-11-28 23:06:46.418344288 +0100 +@@ -685,6 +685,7 @@ + DSL_ProfileType_t nProfile = DSL_PROFILE_LAST; + DSL_G997_XTUSystemEnablingData_t data = {{0,0,0,0,0,0,0,0}}; + ++ //printk("%s:%s[%d]\n", __FILE__, __func__, __LINE__); + DSL_DEBUG( DSL_DBG_MSG, + (pContext, SYS_DBG_MSG"DSL[%02d]: IN - DSL_DRV_VXX_SendMsgSelectedProfileVdsl2Get" + DSL_DRV_CRLF, DSL_DEV_NUM(pContext))); +@@ -985,8 +988,10 @@ + + /* Check consistency of XTSE status setting - Only one bit should be set at + a time */ ++ //printk("XTSE (%d) - ", DSL_G997_NUM_XTSE_OCTETS); + for (i = 0, nBitCount = 0; i < DSL_G997_NUM_XTSE_OCTETS; i++) + { ++ //printk("%02X ", data.XTSE[i]); + for (j = 0; j < 8; j++) + { + if ( ((data.XTSE[i] >> j) & 0x01) != 0) +@@ -996,6 +1001,8 @@ + } + } + ++ //printk("\n"); ++ + if (nBitCount > 1) + { + DSL_DEBUG( DSL_DBG_ERR, diff --git a/package/kernel/lantiq/ltq-vmmc/Config.in b/package/kernel/lantiq/ltq-vmmc/Config.in new file mode 100644 index 0000000..89e1bc5 --- /dev/null +++ b/package/kernel/lantiq/ltq-vmmc/Config.in @@ -0,0 +1,95 @@ +choice + prompt "device selection" + depends on PACKAGE_kmod-ltq-vmmc + default VOICE_CPE_VMMC_WITH_DEVICE_DANUBE + help + Select the target device. + + config VOICE_CPE_VMMC_WITH_DEVICE_DANUBE + bool "Danube, Twinpass, Vinax" + depends on TARGET_lantiq_xway + +# config VOICE_CPE_VMMC_WITH_DEVICE_AR9 +# bool "AR9 family" +# depends on TARGET_lantiq_ar9 + +# config VOICE_CPE_VMMC_WITH_DEVICE_VR9 +# bool "VR9 family" +# depends on TARGET_lantiq_vr9 +# + config VOICE_VMMC_WITH_DEVICE_FALCON + bool "FALC-ON" + depends on (TARGET_lantiq_falcon||TARGET_lantiq_falcon_stable) + +endchoice + +choice + depends on PACKAGE_kmod-ltq-vmmc + prompt "FXS coefficients" + default LTQ_VOICE_CPE_VMMC_COEF_FALCON_ETSI + help + Select country specific FXS coefficient file. + + config LTQ_VOICE_CPE_VMMC_COEF_FALCON_ETSI + bool "ETSI_T3R10: Vl:40V, Ic:25mA, Vid:25V, Vri:45Vrms, f:25Hz" + help + These coefficents contains a parameter set with line impedance Zr according to ETSI. + + T: gain in transmit direction (attenuation 3dBr) [dBr] + R: gain in receive direction (attenuation 10dBr) [dBr] + Vl: on-hook voltage limit [V] + Ic: off-hook loop current [mA] + Vid: low-power-standby voltage [V] + Vri: ring voltage [v] + f: ring frequency [V] + + config LTQ_VOICE_CPE_VMMC_COEF_FALCON_US600R + bool "USA_600R_T3R10: Vl:40V, Ic:25mA, Vid:25V, Vri:45V, f:20Hz" + help + These coefficents contains a parameter set with line impedance e.g. for USA. + + T: gain in transmit direction (attenuation 3dBr) [dBr] + R: gain in receive direction (attenuation 10dBr) [dBr] + Vl: on-hook voltage limit [V] + Ic: off-hook loop current [mA] + Vid: low-power-standby voltage [V] + Vri: ring voltage [v] + f: ring frequency [V] + + config LTQ_VOICE_CPE_VMMC_COEF_FALCON_USE_CUSTOM_FILE + bool "Select own FXS coefficient file" +endchoice + +config VOICE_CPE_VMMC_PMC + depends on (VOICE_CPE_VMMC_WITH_DEVICE_AR9 || VOICE_CPE_VMMC_WITH_DEVICE_VR9) + bool "Power Management Control support" + default n + help + Option to enable Power Management Control on AR9, VR9. Not supported for Danube. + +config VOICE_CPE_VMMC_DISABLE_DECT_NIBBLE_SWAP + bool "Disable DECT nibble swap" + depends on PACKAGE_kmod-ltq-vmmc + default n + help + Option to disable DECT nibble swap for COSIC modem (for backward compatibility only). + +config VOICE_CPE_VMMC_EVENT_LOGGER + depends on BROKEN + bool "Event logger support" + depends on PACKAGE_kmod-ltq-vmmc + default n + help + Option to enable details traces between drv_vmmc and the voice FW + - for debugging only + - requires package ifx-evtlog + +config VOICE_CPE_VMMC_MPS_HISTORY_SIZE + int "MPS history buffer in words (0<=size<=512)" + depends on PACKAGE_kmod-ltq-vmmc + default "128" + help + MPS history buffer (default=128 words, maximum=512 words, 0=disable) + To opimize the memory footprint in RAM, you might want to set the + buffer size to 0. + diff --git a/package/kernel/lantiq/ltq-vmmc/Makefile b/package/kernel/lantiq/ltq-vmmc/Makefile new file mode 100644 index 0000000..98355b1 --- /dev/null +++ b/package/kernel/lantiq/ltq-vmmc/Makefile @@ -0,0 +1,166 @@ +# +# Copyright (C) 2011 OpenWrt.org +# +# This is free software, licensed under the GNU General Public License v2. +# See /LICENSE for more information. +# + +include $(TOPDIR)/rules.mk +include $(INCLUDE_DIR)/kernel.mk + +PKG_NAME:=drv_vmmc +PKG_VERSION:=1.9.0 +PKG_RELEASE:=2 + +PKG_SOURCE:=$(PKG_NAME)-$(PKG_VERSION).tar.bz2 +PKG_MD5SUM:=d8eee8cba0edb28974cc1f8532e3bd18 +PKG_SOURCE_URL:=http://mirror2.openwrt.org/sources +PKG_MAINTAINER:=John Crispin <blogic@openwrt.org> + +include $(INCLUDE_DIR)/ltqtapi.mk +include $(INCLUDE_DIR)/package.mk + +define KernelPackage/ltq-vmmc + SUBMENU:=Voice over IP + TITLE:=TAPI LL driver for Voice Macro + URL:=http://www.lantiq.com/ + DEPENDS:=$(LTQ_TAPI_TARGET) +kmod-ltq-tapi + FILES:=$(PKG_BUILD_DIR)/src/drv_vmmc.ko + AUTOLOAD:=$(call AutoLoad,25,drv_vmmc) +endef + +define KernelPackage/ltq-vmmc/description + Voice Subsystem Low Level Driver for Danube, AR9, VR9 device families +endef + +define KernelPackage/ltq-vmmc/config + source "$(SOURCE)/Config.in" +endef + +CONFIGURE_ARGS += \ + ARCH=$(LINUX_KARCH) \ + --enable-linux-26 \ + --enable-kernelbuild="$(LINUX_DIR)" \ + --enable-kernelincl="$(LINUX_DIR)/include" \ + --enable-tapiincl="$(STAGING_DIR)/usr/include/drv_tapi" \ + --with-ifxos-incl=$(STAGING_DIR)/usr/include/ifxos \ + $(call autoconf_bool,CONFIG_VOICE_CPE_VMMC_EVENT_LOGGER,el-debug) \ + $(call autoconf_bool,CONFIG_VOICE_CPE_VMMC_PMC,pmc) \ + $(call autoconf_bool,CONFIG_VOICE_CPE_VMMC_DISABLE_DECT_NIBBLE_SWAP,dect-nibble-swap) \ + $(call autoconf_bool,CONFIG_VOICE_CPE_TAPI_FAX,fax t38) \ + $(call autoconf_bool,CONFIG_VOICE_CPE_TAPI_CID,cid) \ + $(call autoconf_bool,CONFIG_VOICE_CPE_TAPI_DECT,dect) \ + $(call autoconf_bool,CONFIG_VOICE_CPE_TAPI_KPI,kpi) \ + $(call autoconf_bool,CONFIG_VOICE_CPE_TAPI_LT_GR909,lt calibration) \ + $(call autoconf_bool,CONFIG_VOICE_CPE_TAPI_HDLC,hdlc) \ + $(call autoconf_bool,CONFIG_VOICE_CPE_TAPI_TRACES,trace) + +ifneq ($(CONFIG_VOICE_CPE_VMMC_MPS_HISTORY_SIZE),128) + CONFIGURE_ARGS += --enable-history-buf=$(CONFIG_VOICE_CPE_VMMC_MPS_HISTORY_SIZE) +endif + +#defaults +FW_URL:=http://localhost/ +FW_TARGET:=ifx_firmware.bin +FW_FILE:=fw_voip_ifx.tar.gz +COEF_TARGET:=ifx_bbd_fxs.bin +COEF_FILE:=coef_voip_ifx.tar.gz + +FW_DIR:=lib/firmware + +FW_TARGET_GENERIC:=$(FW_TARGET) +COEF_TARGET_GENERIC:=$(COEF_TARGET) + +ifeq ($(CONFIG_VOICE_CPE_VMMC_WITH_DEVICE_DANUBE)$(CONFIG_LTQ_VOICE_CPE_VMMC_WITH_DEVICE_DANUBE),y) + CONFIGURE_ARGS += --with-device=DANUBE + FW_SOURCE:=voip_R12.1.0.1.0-enc.bin + FW_TARGET:=danube_firmware.bin + FW_FILE=fw_voip_danube-12.1.0.1.0.tar.gz + FW_MD5SUM:=51868b88dee9dbc65d3dbba355ded91c + FW_DOWNLOAD:=1 + COEF_SRC:=danube_bbd_fxs.bin + COEF_TARGET:=danube_bbd_fxs.bin + COEF_FILE:=coef_voip_danube-0.9.0.tar.gz + COEF_MD5SUM:=c8ac6592b304b03829a8123560e15710 + COEF_DOWNLOAD:=1 +endif + +ifeq ($(CONFIG_VOICE_CPE_VMMC_WITH_DEVICE_AR9),y) + CONFIGURE_ARGS += --with-device=AR9 + # TODO: add fw/coef +endif + +COEF_SRC:=$(COEF_TARGET) + +ifeq ($(CONFIG_VOICE_VMMC_WITH_DEVICE_FALCON),y) + CONFIGURE_ARGS += --with-device=FALCON + FW_SOURCE:=voip_R1.1.0.6.0-enc.bin + FW_MD5SUM:=cd4366a52a8010b76793e3810a4f14b3 + FW_TARGET:=falcon_voip_fw.bin + FW_FILE=fw_voip_falcon-1.1.0.6.0.tar.gz + FW_DOWNLOAD:=1 + COEF_TARGET:=falcon_bbd.bin +# FXS part +ifeq ($(CONFIG_LTQ_VOICE_CPE_VMMC_COEF_FALCON_ETSI),y) + COEF_SRC:=ETSI_3_10.BIN +endif +ifeq ($(CONFIG_LTQ_VOICE_CPE_VMMC_COEF_FALCON_US600R),y) + COEF_SRC:=R600_3_10.BIN +endif +ifeq ($(CONFIG_LTQ_VOICE_CPE_VMMC_COEF_FALCON_USE_CUSTOM_FILE),y) + COEF_SRC:=$(CONFIG_LTQ_VOICE_CPE_VMMC_COEF_FALCON_CUSTOM_FILE) +endif + COEF_FILE:=coef_voip_falcon.tar.gz + COEF_MD5SUM:=56c5a838f2bb9bd87d0e8dce271f810b + COEF_DOWNLOAD:=1 +endif + +ifeq ($(CONFIG_VOICE_CPE_VMMC_WITH_DEVICE_VR9),y) + CONFIGURE_ARGS += --with-device=VR9 + # TODO: add fw/coef +endif + +define Download/firmware + FILE:=$(FW_FILE) + URL:=$(FW_URL) + MD5SUM:=$(FW_MD5SUM) +endef +$(eval $(if $(FW_DOWNLOAD),$(call Download,firmware))) + +define Download/coef + FILE:=$(COEF_FILE) + URL:=$(FW_URL) + MD5SUM:=$(COEF_MD5SUM) +endef +$(eval $(if $(COEF_DOWNLOAD),$(call Download,coef))) + +define Build/Configure + rm -rf \ + $(PKG_BUILD_DIR)/coef \ + $(PKG_BUILD_DIR)/firmware + mkdir -p \ + $(PKG_BUILD_DIR)/coef \ + $(PKG_BUILD_DIR)/firmware + $(TAR) -C $(PKG_BUILD_DIR)/firmware -xvzf $(DL_DIR)/$(FW_FILE) + $(TAR) -C $(PKG_BUILD_DIR)/coef -xvzf $(DL_DIR)/$(COEF_FILE) + (cd $(PKG_BUILD_DIR); aclocal && autoconf && automake) + $(call Build/Configure/Default) +endef + +define Build/InstallDev + $(INSTALL_DIR) $(1)/usr/include + mkdir -p $(1)/usr/include/drv_vmmc + $(CP) -v --dereference $(PKG_BUILD_DIR)/include/* $(1)/usr/include/drv_vmmc + (cd $(1)/usr/include/drv_vmmc && ln -snf . include) +endef + +define KernelPackage/ltq-vmmc/install + $(INSTALL_DIR) $(1)/etc/init.d $(1)/$(FW_DIR) + $(INSTALL_BIN) ./files/vmmc.init $(1)/etc/init.d/vmmc + $(CP) $(PKG_BUILD_DIR)/firmware/$(FW_SOURCE) $(1)/$(FW_DIR)/$(FW_TARGET) + ln -s /$(FW_DIR)/$(FW_TARGET) $(1)/$(FW_DIR)/$(FW_TARGET_GENERIC) + $(CP) $(PKG_BUILD_DIR)/coef/$(COEF_SRC) $(1)/$(FW_DIR)/$(COEF_TARGET) + ln -s /$(FW_DIR)/$(COEF_TARGET) $(1)/$(FW_DIR)/$(COEF_TARGET_GENERIC) +endef + +$(eval $(call KernelPackage,ltq-vmmc)) diff --git a/package/kernel/lantiq/ltq-vmmc/files/vmmc.init b/package/kernel/lantiq/ltq-vmmc/files/vmmc.init new file mode 100644 index 0000000..100a97d --- /dev/null +++ b/package/kernel/lantiq/ltq-vmmc/files/vmmc.init @@ -0,0 +1,19 @@ +#!/bin/sh /etc/rc.common +# +# Activate Voice CPE TAPI subsystem LL driver for VMMC + +START=31 + +start() { + [ ! -c /dev/vmmc10 ] && { + mknod /dev/vmmc10 c 122 10 + mknod /dev/vmmc11 c 122 11 + mknod /dev/vmmc12 c 122 12 + mknod /dev/vmmc13 c 122 13 + mknod /dev/vmmc14 c 122 14 + mknod /dev/vmmc15 c 122 15 + mknod /dev/vmmc16 c 122 16 + mknod /dev/vmmc17 c 122 17 + mknod /dev/vmmc18 c 122 18 + } +} diff --git a/package/kernel/lantiq/ltq-vmmc/patches/000-portability.patch b/package/kernel/lantiq/ltq-vmmc/patches/000-portability.patch new file mode 100644 index 0000000..4860247 --- /dev/null +++ b/package/kernel/lantiq/ltq-vmmc/patches/000-portability.patch @@ -0,0 +1,287 @@ +--- a/src/Makefile.am ++++ b/src/Makefile.am +@@ -228,7 +228,7 @@ drv_vmmc_CFLAGS += -fno-common + drv_vmmc_OBJS = "$(subst .c,.o, $(drv_vmmc_SOURCES) $(nodist_drv_vmmc_SOURCES))" + + drv_vmmc.ko: $(drv_vmmc_SOURCES) $(EXTRA_DIST) +- @echo -e "Making Linux 2.6.x kernel object" ++ @echo "Making Linux 2.6.x kernel object" + @for f in $(drv_vmmc_SOURCES) $(nodist_drv_vmmc_SOURCES) ; do \ + if test ! -e $(PWD)/$$f; then \ + echo " LN $$f" ; \ +@@ -236,10 +236,10 @@ drv_vmmc.ko: $(drv_vmmc_SOURCES) $(EXTRA + ln -s @abs_srcdir@/$$f $(PWD)/$$f; \ + fi; \ + done; +- @echo -e "# drv_vmmc: Generated to build Linux 2.6.x kernel object" > $(PWD)/Kbuild +- @echo -e "obj-m := $(subst .ko,.o,$@)" >> $(PWD)/Kbuild +- @echo -e "$(subst .ko,,$@)-y := $(drv_vmmc_OBJS)" >> $(PWD)/Kbuild +- @echo -e "EXTRA_CFLAGS := -DHAVE_CONFIG_H $(CFLAGS) $(drv_vmmc_CFLAGS) $(INCLUDES)" >> $(PWD)/Kbuild ++ @echo "# drv_vmmc: Generated to build Linux 2.6.x kernel object" > $(PWD)/Kbuild ++ @echo "obj-m := $(subst .ko,.o,$@)" >> $(PWD)/Kbuild ++ @echo "$(subst .ko,,$@)-y := $(drv_vmmc_OBJS)" >> $(PWD)/Kbuild ++ @echo "EXTRA_CFLAGS := -DHAVE_CONFIG_H $(CFLAGS) $(drv_vmmc_CFLAGS) $(INCLUDES)" >> $(PWD)/Kbuild + $(MAKE) ARCH=@KERNEL_ARCH@ -C @KERNEL_BUILD_PATH@ O=@KERNEL_BUILD_PATH@ M=$(PWD) modules + + clean-generic: +--- a/src/drv_vmmc_linux.c ++++ b/src/drv_vmmc_linux.c +@@ -27,11 +27,18 @@ + #include <linux/proc_fs.h> + #include <linux/wait.h> + #include <linux/vmalloc.h> ++#include <linux/sched.h> + + #ifdef LINUX_2_6 + #include <linux/version.h> + #ifndef UTS_RELEASE ++#if (LINUX_VERSION_CODE < KERNEL_VERSION(2,6,33)) ++#include <linux/autoconf.h> + #include <linux/utsrelease.h> ++#else ++#include <generated/autoconf.h> ++#include <generated/utsrelease.h> ++#endif + #endif /* UTC_RELEASE */ + #undef CONFIG_DEVFS_FS + #endif /* LINUX_2_6 */ +--- a/src/mps/drv_mps_vmmc_linux.c ++++ b/src/mps/drv_mps_vmmc_linux.c +@@ -19,11 +19,22 @@ + #include "drv_config.h" + + #include "drv_mps_version.h" ++#include <linux/version.h> + + #ifdef CONFIG_DEBUG_MINI_BOOT + #define IKOS_MINI_BOOT + #endif /* */ ++#if (LINUX_VERSION_CODE < KERNEL_VERSION(2,6,33)) + #include <linux/autoconf.h> ++#ifndef UTS_RELEASE ++#include <linux/utsrelease.h> ++#endif ++#else ++#include <generated/autoconf.h> ++#ifndef UTS_RELEASE ++#include <generated/utsrelease.h> ++#endif ++#endif + #include <linux/module.h> + #include <linux/init.h> + #include <linux/poll.h> +@@ -34,7 +45,13 @@ + #include <linux/delay.h> + #include <linux/interrupt.h> + #ifdef LINUX_2_6 ++#ifndef UTS_RELEASE ++#if LINUX_VERSION_CODE < KERNEL_VERSION(2, 6, 33) + #include <linux/utsrelease.h> ++#else ++#include <generated/utsrelease.h> ++#endif ++#endif /* UTC_RELEASE */ + #else /* */ + #include <linux/uts.h> + #include <linux/moduleparam.h> +@@ -94,8 +111,13 @@ IFX_int32_t ifx_mps_get_status_proc (IFX + #ifndef __KERNEL__ + IFX_int32_t ifx_mps_open (struct inode *inode, struct file *file_p); + IFX_int32_t ifx_mps_close (struct inode *inode, struct file *file_p); ++#if LINUX_VERSION_CODE < KERNEL_VERSION(2, 6, 37) + IFX_int32_t ifx_mps_ioctl (struct inode *inode, struct file *file_p, + IFX_uint32_t nCmd, IFX_ulong_t arg); ++#else ++long ifx_mps_ioctl (struct file *file_p, ++ IFX_uint32_t nCmd, IFX_ulong_t arg); ++#endif + IFX_int32_t ifx_mps_read_mailbox (mps_devices type, mps_message * rw); + IFX_int32_t ifx_mps_write_mailbox (mps_devices type, mps_message * rw); + IFX_int32_t ifx_mps_register_data_callback (mps_devices type, IFX_uint32_t dir, +@@ -155,7 +177,11 @@ IFX_char_t voice_channel_int_name[NUM_VO + static struct file_operations ifx_mps_fops = { + owner:THIS_MODULE, + poll:ifx_mps_poll, ++#if LINUX_VERSION_CODE < KERNEL_VERSION(2, 6, 37) + ioctl:ifx_mps_ioctl, ++#else ++ unlocked_ioctl:ifx_mps_ioctl, ++#endif + open:ifx_mps_open, + release:ifx_mps_close + }; +@@ -598,8 +624,13 @@ static IFX_uint32_t ifx_mps_poll (struct + * \return -ENOIOCTLCMD Invalid command + * \ingroup API + */ ++#if LINUX_VERSION_CODE < KERNEL_VERSION(2, 6, 37) + IFX_int32_t ifx_mps_ioctl (struct inode * inode, struct file * file_p, + IFX_uint32_t nCmd, IFX_ulong_t arg) ++#else ++long ifx_mps_ioctl (struct file *file_p, ++ IFX_uint32_t nCmd, IFX_ulong_t arg) ++#endif + { + IFX_int32_t retvalue = -EINVAL; + mps_message rw_struct; +@@ -613,17 +644,30 @@ IFX_int32_t ifx_mps_ioctl (struct inode + 'mps_devices' enum type, which in fact is [0..8]; So, if inode value is + [0..NUM_VOICE_CHANNEL+1], then we make sure that we are calling from + kernel space. */ ++#if LINUX_VERSION_CODE < KERNEL_VERSION(2, 6, 37) + if (((IFX_int32_t) inode >= 0) && + ((IFX_int32_t) inode < NUM_VOICE_CHANNEL + 1)) ++#else ++ if (((IFX_int32_t) file_p >= 0) && ++ ((IFX_int32_t) file_p < NUM_VOICE_CHANNEL + 1)) ++#endif + { + from_kernel = 1; + + /* Get corresponding mailbox device structure */ + if ((pMBDev = ++#if LINUX_VERSION_CODE < KERNEL_VERSION(2, 6, 37) + ifx_mps_get_device ((mps_devices) ((IFX_int32_t) inode))) == 0) ++#else ++ ifx_mps_get_device ((mps_devices) ((IFX_int32_t) file_p))) == 0) ++#endif + { + return (-EINVAL); + } ++#if LINUX_VERSION_CODE < KERNEL_VERSION(2, 6, 37) ++#else ++ file_p = NULL; ++#endif + } + else + { +--- a/src/mps/drv_mps_vmmc_common.c ++++ b/src/mps/drv_mps_vmmc_common.c +@@ -21,7 +21,11 @@ + #undef USE_PLAIN_VOICE_FIRMWARE + #undef PRINT_ON_ERR_INTERRUPT + #undef FAIL_ON_ERR_INTERRUPT ++#if (LINUX_VERSION_CODE < KERNEL_VERSION(2,6,33)) + #include <linux/autoconf.h> ++#else ++#include <generated/autoconf.h> ++#endif + #include <linux/interrupt.h> + #include <linux/delay.h> + +@@ -92,7 +96,9 @@ extern IFX_uint32_t danube_get_cpu_ver ( + extern mps_mbx_dev *ifx_mps_get_device (mps_devices type); + + #ifdef LINUX_2_6 ++#if (LINUX_VERSION_CODE < KERNEL_VERSION(2,6,39)) + extern IFX_void_t bsp_mask_and_ack_irq (IFX_uint32_t irq_nr); ++#endif + + #else /* */ + extern IFX_void_t mask_and_ack_danube_irq (IFX_uint32_t irq_nr); +--- a/src/mps/drv_mps_vmmc_danube.c ++++ b/src/mps/drv_mps_vmmc_danube.c +@@ -20,7 +20,11 @@ + + #ifdef SYSTEM_DANUBE /* defined in drv_mps_vmmc_config.h */ + ++#if (LINUX_VERSION_CODE < KERNEL_VERSION(2,6,33)) + #include <linux/autoconf.h> ++#else ++#include <generated/autoconf.h> ++#endif + + /* lib_ifxos headers */ + #include "ifx_types.h" +--- a/configure.in ++++ b/configure.in +@@ -112,7 +112,7 @@ dnl Set kernel build path + AC_ARG_ENABLE(kernelbuild, + AS_HELP_STRING(--enable-kernelbuild=x,Set the target kernel build path), + [ +- if test -r $enableval/include/linux/autoconf.h; then ++ if test -e $enableval/include/linux/autoconf.h -o -e $enableval/include/generated/autoconf.h; then + AC_SUBST([KERNEL_BUILD_PATH],[$enableval]) + else + AC_MSG_ERROR([The kernel build directory is not valid or not configured!]) +--- a/src/drv_vmmc_bbd.c ++++ b/src/drv_vmmc_bbd.c +@@ -1072,7 +1072,11 @@ static IFX_int32_t vmmc_BBD_DownloadChCr + IFX_uint8_t padBytes = 0; + #endif + IFX_uint16_t cram_offset, cram_crc, +- pCmd [MAX_CMD_WORD] = {0}; ++ pCmd [MAX_CMD_WORD] ++#if defined (__GNUC__) || defined (__GNUG__) ++ __attribute__ ((aligned(4))) ++#endif ++ = {0}; + + /* read offset */ + cpb2w (&cram_offset, &bbd_cram->pData[0], sizeof (IFX_uint16_t)); +--- a/src/drv_vmmc_init.c ++++ b/src/drv_vmmc_init.c +@@ -776,8 +776,13 @@ IFX_int32_t VMMC_TAPI_LL_FW_Start(IFX_TA + dwld.fwDwld.length = IoInit.pram_size; + + /* download firmware */ ++#if LINUX_VERSION_CODE < KERNEL_VERSION(2, 6, 37) + ret = ifx_mps_ioctl((IFX_void_t *) command, IFX_NULL, FIO_MPS_DOWNLOAD, + (IFX_uint32_t) &dwld.fwDwld); ++#else ++ ret = ifx_mps_ioctl((IFX_void_t *) command, FIO_MPS_DOWNLOAD, ++ (IFX_uint32_t) &dwld.fwDwld); ++#endif + } + + if (VMMC_SUCCESS(ret)) +--- a/src/drv_vmmc_ioctl.c ++++ b/src/drv_vmmc_ioctl.c +@@ -426,18 +426,31 @@ IFX_int32_t VMMC_Dev_Spec_Ioctl (IFX_TAP + /* MPS driver will do the USR2KERN so just pass on the pointer. */ + dwnld_struct.data = (IFX_void_t *)IoInit.pPRAMfw; + ++#if LINUX_VERSION_CODE < KERNEL_VERSION(2, 6, 37) + ret = ifx_mps_ioctl((IFX_void_t *)command, IFX_NULL, + FIO_MPS_DOWNLOAD, (IFX_uint32_t) &dwnld_struct); ++#else ++ ret = ifx_mps_ioctl((IFX_void_t *)command, ++ FIO_MPS_DOWNLOAD, (IFX_uint32_t) &dwnld_struct); ++#endif + break; + } + case FIO_DEV_RESET: + { ++#if LINUX_VERSION_CODE < KERNEL_VERSION(2, 6, 37) + ret = ifx_mps_ioctl((IFX_void_t *)command, IFX_NULL, FIO_MPS_RESET, 0); ++#else ++ ret = ifx_mps_ioctl((IFX_void_t *)command, FIO_MPS_RESET, 0); ++#endif + break; + } + case FIO_DEV_RESTART: + { ++#if LINUX_VERSION_CODE < KERNEL_VERSION(2, 6, 37) + ret = ifx_mps_ioctl((IFX_void_t *)command, IFX_NULL, FIO_MPS_RESTART, 0); ++#else ++ ret = ifx_mps_ioctl((IFX_void_t *)command, FIO_MPS_RESTART, 0); ++#endif + break; + } + case FIO_LASTERR: +--- a/src/mps/drv_mps_vmmc.h ++++ b/src/mps/drv_mps_vmmc.h +@@ -279,8 +279,13 @@ typedef struct + #include <linux/fs.h> + IFX_int32_t ifx_mps_open (struct inode *inode, struct file *file_p); + IFX_int32_t ifx_mps_close (struct inode *inode, struct file *filp); ++#if LINUX_VERSION_CODE < KERNEL_VERSION(2, 6, 37) + IFX_int32_t ifx_mps_ioctl (struct inode *inode, struct file *file_p, + IFX_uint32_t nCmd, unsigned long arg); ++#else ++long ifx_mps_ioctl (struct file *filp, ++ IFX_uint32_t nCmd, unsigned long arg); ++#endif + IFX_int32_t ifx_mps_register_data_callback (mps_devices type, IFX_uint32_t dir, + IFX_void_t (*callback) (mps_devices + type)); diff --git a/package/kernel/lantiq/ltq-vmmc/patches/100-target.patch b/package/kernel/lantiq/ltq-vmmc/patches/100-target.patch new file mode 100644 index 0000000..cabd2d1 --- /dev/null +++ b/package/kernel/lantiq/ltq-vmmc/patches/100-target.patch @@ -0,0 +1,751 @@ +--- a/src/drv_vmmc_access.h ++++ b/src/drv_vmmc_access.h +@@ -24,6 +24,10 @@ + #include "drv_mps_vmmc.h" + #endif + ++#if (LINUX_VERSION_CODE > KERNEL_VERSION(2,6,28)) ++# define IFX_MPS IFXMIPS_MPS_BASE_ADDR ++#endif ++ + /* ============================= */ + /* Global Defines */ + /* ============================= */ +--- a/src/drv_vmmc_danube.h ++++ b/src/drv_vmmc_danube.h +@@ -15,56 +15,18 @@ + */ + + #if defined SYSTEM_DANUBE +-#include <asm/ifx/ifx_gpio.h> ++#include <lantiq_soc.h> ++ + #else + #error no system selected + #endif + +-#define VMMC_TAPI_GPIO_MODULE_ID IFX_GPIO_MODULE_TAPI_VMMC ++#define VMMC_TAPI_GPIO_MODULE_ID IFX_GPIO_MODULE_TAPI_VMMC + /** + + */ + #define VMMC_PCM_IF_CFG_HOOK(mode, GPIOreserved, ret) \ + do { \ +- ret = VMMC_statusOk; \ +- /* Reserve P0.0 as TDM/FSC */ \ +- if (!GPIOreserved) \ +- ret |= ifx_gpio_pin_reserve(IFX_GPIO_PIN_ID(0, 0), VMMC_TAPI_GPIO_MODULE_ID); \ +- ret |= ifx_gpio_altsel0_set(IFX_GPIO_PIN_ID(0, 0), VMMC_TAPI_GPIO_MODULE_ID); \ +- ret |= ifx_gpio_altsel1_set(IFX_GPIO_PIN_ID(0, 0), VMMC_TAPI_GPIO_MODULE_ID); \ +- ret |= ifx_gpio_open_drain_set(IFX_GPIO_PIN_ID(0, 0), VMMC_TAPI_GPIO_MODULE_ID);\ +- \ +- /* Reserve P1.9 as TDM/DO */ \ +- if (!GPIOreserved) \ +- ret |= ifx_gpio_pin_reserve(IFX_GPIO_PIN_ID(1, 9), VMMC_TAPI_GPIO_MODULE_ID); \ +- ret |= ifx_gpio_altsel0_set(IFX_GPIO_PIN_ID(1, 9), VMMC_TAPI_GPIO_MODULE_ID); \ +- ret |= ifx_gpio_altsel1_clear(IFX_GPIO_PIN_ID(1, 9), VMMC_TAPI_GPIO_MODULE_ID); \ +- ret |= ifx_gpio_dir_out_set(IFX_GPIO_PIN_ID(1, 9), VMMC_TAPI_GPIO_MODULE_ID); \ +- ret |= ifx_gpio_open_drain_set(IFX_GPIO_PIN_ID(1, 9), VMMC_TAPI_GPIO_MODULE_ID); \ +- \ +- /* Reserve P1.10 as TDM/DI */ \ +- if (!GPIOreserved) \ +- ret |= ifx_gpio_pin_reserve(IFX_GPIO_PIN_ID(1,10), VMMC_TAPI_GPIO_MODULE_ID); \ +- ret |= ifx_gpio_altsel0_clear(IFX_GPIO_PIN_ID(1,10), VMMC_TAPI_GPIO_MODULE_ID); \ +- ret |= ifx_gpio_altsel1_set(IFX_GPIO_PIN_ID(1,10), VMMC_TAPI_GPIO_MODULE_ID);\ +- ret |= ifx_gpio_dir_in_set(IFX_GPIO_PIN_ID(1,10), VMMC_TAPI_GPIO_MODULE_ID); \ +- \ +- /* Reserve P1.11 as TDM/DCL */ \ +- if (!GPIOreserved) \ +- ret |= ifx_gpio_pin_reserve(IFX_GPIO_PIN_ID(1,11), VMMC_TAPI_GPIO_MODULE_ID); \ +- ret |= ifx_gpio_altsel0_set(IFX_GPIO_PIN_ID(1,11), VMMC_TAPI_GPIO_MODULE_ID); \ +- ret |= ifx_gpio_altsel1_clear(IFX_GPIO_PIN_ID(1,11), VMMC_TAPI_GPIO_MODULE_ID); \ +- ret |= ifx_gpio_open_drain_set(IFX_GPIO_PIN_ID(1,11), VMMC_TAPI_GPIO_MODULE_ID); \ +- \ +- if (mode == 2) { \ +- /* TDM/FSC+DCL Master */ \ +- ret |= ifx_gpio_dir_out_set(IFX_GPIO_PIN_ID(0, 0), VMMC_TAPI_GPIO_MODULE_ID); \ +- ret |= ifx_gpio_dir_out_set(IFX_GPIO_PIN_ID(1,11), VMMC_TAPI_GPIO_MODULE_ID); \ +- } else { \ +- /* TDM/FSC+DCL Slave */ \ +- ret |= ifx_gpio_dir_in_set(IFX_GPIO_PIN_ID(0, 0), VMMC_TAPI_GPIO_MODULE_ID); \ +- ret |= ifx_gpio_dir_in_set(IFX_GPIO_PIN_ID(1,11), VMMC_TAPI_GPIO_MODULE_ID); \ +- } \ + } while(0); + + /** +@@ -72,11 +34,6 @@ + */ + #define VMMC_DRIVER_UNLOAD_HOOK(ret) \ + do { \ +- ret = VMMC_statusOk; \ +- ret |= ifx_gpio_pin_free(IFX_GPIO_PIN_ID(0, 0), VMMC_TAPI_GPIO_MODULE_ID); \ +- ret |= ifx_gpio_pin_free(IFX_GPIO_PIN_ID(1, 9), VMMC_TAPI_GPIO_MODULE_ID); \ +- ret |= ifx_gpio_pin_free(IFX_GPIO_PIN_ID(1,10), VMMC_TAPI_GPIO_MODULE_ID); \ +- ret |= ifx_gpio_pin_free(IFX_GPIO_PIN_ID(1,11), VMMC_TAPI_GPIO_MODULE_ID); \ + } while (0) + + #endif /* _DRV_VMMC_AMAZON_S_H */ +--- a/src/drv_vmmc_init.c ++++ b/src/drv_vmmc_init.c +@@ -52,6 +52,14 @@ + #include "ifx_pmu.h" + #endif /* PMU_SUPPORTED */ + ++#if (LINUX_VERSION_CODE > KERNEL_VERSION(2,6,28)) ++# define IFX_MPS_CAD0SR IFXMIPS_MPS_CAD0SR ++# define IFX_MPS_CAD1SR IFXMIPS_MPS_CAD1SR ++# define IFX_MPS_CVC0SR IFXMIPS_MPS_CVC0SR ++# define IFX_MPS_CVC1SR IFXMIPS_MPS_CVC1SR ++# define IFX_MPS_CVC2SR IFXMIPS_MPS_CVC2SR ++# define IFX_MPS_CVC3SR IFXMIPS_MPS_CVC3SR ++#endif + + /* ============================= */ + /* Local Macros & Definitions */ +@@ -1591,7 +1599,7 @@ + #ifdef VMMC_DRIVER_UNLOAD_HOOK + if (VDevices[0].nDevState & DS_GPIO_RESERVED) + { +- IFX_int32_t ret; ++ IFX_int32_t ret = 0; + VMMC_DRIVER_UNLOAD_HOOK(ret); + if (!VMMC_SUCCESS(ret)) + { +--- a/src/drv_vmmc_init_cap.c ++++ b/src/drv_vmmc_init_cap.c +@@ -22,6 +22,11 @@ + #include "drv_mps_vmmc.h" + #include "drv_mps_vmmc_device.h" + ++#if (LINUX_VERSION_CODE > KERNEL_VERSION(2,6,28)) ++# define IFX_MPS_CHIPID_VERSION_GET IFXMIPS_MPS_CHIPID_VERSION_GET ++# define IFX_MPS_CHIPID IFXMIPS_MPS_CHIPID ++#endif ++ + /* ============================= */ + /* Configuration defintions */ + /* ============================= */ +--- a/src/mps/drv_mps_vmmc_common.c ++++ b/src/mps/drv_mps_vmmc_common.c +@@ -17,6 +17,7 @@ + /* Includes */ + /* ============================= */ + #include "drv_config.h" ++#include "drv_vmmc_init.h" + + #undef USE_PLAIN_VOICE_FIRMWARE + #undef PRINT_ON_ERR_INTERRUPT +@@ -39,8 +40,32 @@ + #include "ifxos_interrupt.h" + #include "ifxos_time.h" + +-#include <asm/ifx/ifx_regs.h> +-#include <asm/ifx/ifx_gptu.h> ++#if (LINUX_VERSION_CODE > KERNEL_VERSION(2,6,28)) ++# include <lantiq.h> ++# include <irq.h> ++# include <lantiq_timer.h> ++ ++# define ifx_gptu_timer_request lq_request_timer ++# define ifx_gptu_timer_start lq_start_timer ++# define ifx_gptu_countvalue_get lq_get_count_value ++# define ifx_gptu_timer_free lq_free_timer ++ ++ ++#if (LINUX_VERSION_CODE < KERNEL_VERSION(2,6,39)) ++# define bsp_mask_and_ack_irq ltq_mask_and_ack_irq ++#else ++extern void ltq_mask_and_ack_irq(struct irq_data *d); ++static void inline bsp_mask_and_ack_irq(int x) ++{ ++ struct irq_data d; ++ d.hwirq = x; ++ ltq_mask_and_ack_irq(&d); ++} ++#endif ++#else ++# include <asm/ifx/ifx_regs.h> ++# include <asm/ifx/ifx_gptu.h> ++#endif + + #include "drv_mps_vmmc.h" + #include "drv_mps_vmmc_dbg.h" +@@ -104,6 +129,9 @@ + extern IFX_void_t mask_and_ack_danube_irq (IFX_uint32_t irq_nr); + + #endif /* */ ++ ++extern void sys_hw_setup (void); ++ + extern IFXOS_event_t fw_ready_evt; + /* callback function to free all data buffers currently used by voice FW */ + IFX_void_t (*ifx_mps_bufman_freeall)(IFX_void_t) = IFX_NULL; +@@ -207,7 +235,8 @@ + */ + IFX_void_t *ifx_mps_fastbuf_malloc (IFX_size_t size, IFX_int32_t priority) + { +- IFX_uint32_t ptr, flags; ++ IFXOS_INTSTAT flags; ++ IFX_uint32_t ptr; + IFX_int32_t index = fastbuf_index; + + if (fastbuf_initialized == 0) +@@ -261,7 +290,7 @@ + */ + IFX_void_t ifx_mps_fastbuf_free (const IFX_void_t * ptr) + { +- IFX_uint32_t flags; ++ IFXOS_INTSTAT flags; + IFX_int32_t index = fastbuf_index; + + IFXOS_LOCKINT (flags); +@@ -457,7 +486,7 @@ + */ + static IFX_int32_t ifx_mps_bufman_inc_level (IFX_uint32_t value) + { +- IFX_uint32_t flags; ++ IFXOS_INTSTAT flags; + + if (mps_buffer.buf_level + value > MPS_BUFFER_MAX_LEVEL) + { +@@ -484,7 +513,7 @@ + */ + static IFX_int32_t ifx_mps_bufman_dec_level (IFX_uint32_t value) + { +- IFX_uint32_t flags; ++ IFXOS_INTSTAT flags; + + if (mps_buffer.buf_level < value) + { +@@ -636,7 +665,7 @@ + mem_seg_ptr[i] = + (IFX_uint32_t *) CPHYSADDR ((IFX_uint32_t) mps_buffer. + malloc (segment_size, FASTBUF_FW_OWNED)); +- if (mem_seg_ptr[i] == CPHYSADDR (IFX_NULL)) ++ if (mem_seg_ptr[i] == (IFX_uint32_t *)CPHYSADDR (IFX_NULL)) + { + TRACE (MPS, DBG_LEVEL_HIGH, + ("%s(): cannot allocate buffer\n", __FUNCTION__)); +@@ -952,7 +981,7 @@ + mps_mbx_dev * pMBDev, IFX_int32_t bcommand, + IFX_boolean_t from_kernel) + { +- IFX_uint32_t flags; ++ IFXOS_INTSTAT flags; + + IFXOS_LOCKINT (flags); + +@@ -1068,7 +1097,7 @@ + IFX_void_t ifx_mps_release_structures (mps_comm_dev * pDev) + { + IFX_int32_t count; +- IFX_uint32_t flags; ++ IFXOS_INTSTAT flags; + + IFXOS_LOCKINT (flags); + IFXOS_BlockFree (pFW_img_data); +@@ -1117,7 +1146,7 @@ + + /* Initialize MPS main structure */ + memset ((IFX_void_t *) pDev, 0, sizeof (mps_comm_dev)); +- pDev->base_global = (mps_mbx_reg *) IFX_MPS_SRAM; ++ pDev->base_global = (mps_mbx_reg *) IFXMIPS_MPS_SRAM; + pDev->flags = 0x00000000; + MBX_Memory = pDev->base_global; + +@@ -1125,9 +1154,11 @@ + for MBX communication. These are: mailbox base address, mailbox size, * + mailbox read index and mailbox write index. for command and voice + mailbox, * upstream and downstream direction. */ +- memset ((IFX_void_t *) MBX_Memory, /* avoid to overwrite CPU boot +- registers */ +- 0, sizeof (mps_mbx_reg) - 2 * sizeof (mps_boot_cfg_reg)); ++ memset ( ++ /* avoid to overwrite CPU boot registers */ ++ (IFX_void_t *) MBX_Memory, ++ 0, ++ sizeof (mps_mbx_reg) - 2 * sizeof (mps_boot_cfg_reg)); + MBX_Memory->MBX_UPSTR_CMD_BASE = + (IFX_uint32_t *) CPHYSADDR ((IFX_uint32_t) MBX_UPSTRM_CMD_FIFO_BASE); + MBX_Memory->MBX_UPSTR_CMD_SIZE = MBX_CMD_FIFO_SIZE; +@@ -1564,7 +1595,7 @@ + IFX_uint32_t * bytes) + { + IFX_int32_t i, ret; +- IFX_uint32_t flags; ++ IFXOS_INTSTAT flags; + + IFXOS_LOCKINT (flags); + +@@ -1774,7 +1805,7 @@ + { + mps_fifo *mbx; + IFX_uint32_t i; +- IFX_uint32_t flags; ++ IFXOS_INTSTAT flags; + IFX_int32_t retval = -EAGAIN; + IFX_int32_t retries = 0; + IFX_uint32_t word = 0; +@@ -2169,6 +2200,7 @@ + TRACE (MPS, DBG_LEVEL_HIGH, + ("%s(): Invalid device ID %d !\n", __FUNCTION__, pMBDev->devID)); + } ++ + return retval; + } + +@@ -2192,7 +2224,7 @@ + mps_mbx_dev *mbx_dev; + MbxMsg_s msg; + IFX_uint32_t bytes_read = 0; +- IFX_uint32_t flags; ++ IFXOS_INTSTAT flags; + IFX_int32_t ret; + + /* set pointer to data upstream mailbox, no matter if 0,1,2 or 3 because +@@ -2283,7 +2315,7 @@ + { + ifx_mps_bufman_dec_level (1); + if ((ifx_mps_bufman_get_level () <= mps_buffer.buf_threshold) && +- (atomic_read (&pMPSDev->provide_buffer->object.count) == 0)) ++ ((volatile unsigned int)pMPSDev->provide_buffer->object.count == 0)) + { + IFXOS_LockRelease (pMPSDev->provide_buffer); + } +@@ -2326,7 +2358,7 @@ + #endif /* CONFIG_PROC_FS */ + ifx_mps_bufman_dec_level (1); + if ((ifx_mps_bufman_get_level () <= mps_buffer.buf_threshold) && +- (atomic_read (&pMPSDev->provide_buffer->object.count) == 0)) ++ ((volatile unsigned int)pMPSDev->provide_buffer->object.count == 0)) + { + IFXOS_LockRelease (pMPSDev->provide_buffer); + } +@@ -2356,7 +2388,7 @@ + IFX_void_t ifx_mps_mbx_cmd_upstream (IFX_ulong_t dummy) + { + mps_fifo *mbx; +- IFX_uint32_t flags; ++ IFXOS_INTSTAT flags; + + /* set pointer to upstream command mailbox */ + mbx = &(pMPSDev->cmd_upstrm_fifo); +@@ -2404,7 +2436,7 @@ + mps_event_msg msg; + IFX_int32_t length = 0; + IFX_int32_t read_length = 0; +- IFX_uint32_t flags; ++ IFXOS_INTSTAT flags; + + /* set pointer to upstream event mailbox */ + mbx = &(pMPSDev->event_upstrm_fifo); +@@ -2619,6 +2651,7 @@ + #endif + + *IFX_MPS_AD0ENR = Ad0Reg.val; ++ + } + + /** +@@ -2647,7 +2680,7 @@ + */ + IFX_void_t ifx_mps_dd_mbx_int_enable (IFX_void_t) + { +- IFX_uint32_t flags; ++ IFXOS_INTSTAT flags; + MPS_Ad0Reg_u Ad0Reg; + + IFXOS_LOCKINT (flags); +@@ -2673,7 +2706,7 @@ + */ + IFX_void_t ifx_mps_dd_mbx_int_disable (IFX_void_t) + { +- IFX_uint32_t flags; ++ IFXOS_INTSTAT flags; + MPS_Ad0Reg_u Ad0Reg; + + IFXOS_LOCKINT (flags); +@@ -2738,7 +2771,6 @@ + #else /* */ + mask_and_ack_danube_irq (irq); + #endif /* */ +- + /* FW is up and ready to process commands */ + if (MPS_Ad0StatusReg.fld.dl_end) + { +@@ -2800,6 +2832,7 @@ + } + } + ++ + if (MPS_Ad0StatusReg.fld.du_mbx) + { + #ifdef CONFIG_PROC_FS +@@ -2944,12 +2977,12 @@ + IFX_MPS_CVC0SR[chan] = MPS_VCStatusReg.val; + /* handle only enabled interrupts */ + MPS_VCStatusReg.val &= IFX_MPS_VC0ENR[chan]; +- + #ifdef LINUX_2_6 + bsp_mask_and_ack_irq (irq); + #else /* */ + mask_and_ack_danube_irq (irq); + #endif /* */ ++ + pMPSDev->event.MPS_VCStatReg[chan].val = MPS_VCStatusReg.val; + #ifdef PRINT_ON_ERR_INTERRUPT + if (MPS_VCStatusReg.fld.rcv_ov) +@@ -3093,7 +3126,8 @@ + */ + IFX_return_t ifx_mps_init_gpt () + { +- IFX_uint32_t flags, timer_flags, timer, loops = 0; ++ unsigned long flags; ++ IFX_uint32_t timer_flags, timer, loops = 0; + IFX_ulong_t count; + #if defined(SYSTEM_AR9) || defined(SYSTEM_VR9) + timer = TIMER1A; +@@ -3166,6 +3200,7 @@ + #else /* Danube */ + timer = TIMER1B; + #endif /* SYSTEM_AR9 || SYSTEM_VR9 */ ++ + ifx_gptu_timer_free (timer); + } + +--- a/src/mps/drv_mps_vmmc_danube.c ++++ b/src/mps/drv_mps_vmmc_danube.c +@@ -16,6 +16,7 @@ + /* ============================= */ + /* Includes */ + /* ============================= */ ++#include "linux/version.h" + #include "drv_config.h" + + #ifdef SYSTEM_DANUBE /* defined in drv_mps_vmmc_config.h */ +@@ -36,9 +37,22 @@ + #include "ifxos_select.h" + #include "ifxos_interrupt.h" + +-#include <asm/ifx/ifx_regs.h> +-#include <asm/ifx/ifx_gpio.h> +-#include <asm/ifx/common_routines.h> ++#if (LINUX_VERSION_CODE > KERNEL_VERSION(2,6,28)) ++# include <lantiq.h> ++# include <irq.h> ++# include <lantiq_timer.h> ++# include <linux/dma-mapping.h> ++ ++ ++#define LQ_RCU_BASE_ADDR (KSEG1 + LTQ_RCU_BASE_ADDR) ++# define LQ_RCU_RST ((u32 *)(LQ_RCU_BASE_ADDR + 0x0010)) ++#define IFX_RCU_RST_REQ_CPU1 (1 << 3) ++# define IFX_RCU_RST_REQ LQ_RCU_RST ++#else ++# include <asm/ifx/ifx_regs.h> ++# include <asm/ifx_vpe.h> ++# include <asm/ifx/ifx_gpio.h> ++#endif + + #include "drv_mps_vmmc.h" + #include "drv_mps_vmmc_dbg.h" +@@ -75,6 +89,20 @@ + /* Local function definition */ + /* ============================= */ + ++#if (LINUX_VERSION_CODE > KERNEL_VERSION(2,6,28)) ++IFX_uint32_t ifx_get_cp1_size(IFX_void_t) ++{ ++ return 1; ++} ++ ++unsigned int *ltq_get_cp1_base(void); ++ ++IFX_uint32_t *ifx_get_cp1_base(IFX_void_t) ++{ ++ return ltq_get_cp1_base(); ++} ++#endif ++ + /****************************************************************************** + * DANUBE Specific Routines + ******************************************************************************/ +@@ -134,6 +162,15 @@ + } + + /* check if FW image fits in available memory space */ ++#if (LINUX_VERSION_CODE > KERNEL_VERSION(2,6,28)) ++ if (mem > ifx_get_cp1_size()<<20) ++ { ++ TRACE (MPS, DBG_LEVEL_HIGH, ++ ("[%s %s %d]: error, firmware memory exceeds reserved space (%i > %i)!\n", ++ __FILE__, __func__, __LINE__, mem, ifx_get_cp1_size()<<20)); ++ return IFX_ERROR; ++ } ++#else + if (mem > ifx_get_cp1_size()) + { + TRACE (MPS, DBG_LEVEL_HIGH, +@@ -141,6 +178,7 @@ + __FILE__, __func__, __LINE__, mem, ifx_get_cp1_size())); + return IFX_ERROR; + } ++#endif + + /* reset the driver */ + ifx_mps_reset (); +@@ -361,7 +399,7 @@ + */ + IFX_void_t ifx_mps_wdog_expiry() + { +- IFX_uint32_t flags; ++ unsigned long flags; + + IFXOS_LOCKINT (flags); + /* recalculate and compare the firmware checksum */ +--- a/src/mps/drv_mps_vmmc_device.h ++++ b/src/mps/drv_mps_vmmc_device.h +@@ -16,8 +16,58 @@ + declarations. + *******************************************************************************/ + +-#include <asm/ifx/ifx_regs.h> +-#include <asm/ifx_vpe.h> ++#if (LINUX_VERSION_CODE > KERNEL_VERSION(2,6,28)) ++# include <lantiq.h> ++# include <irq.h> ++# include <lantiq_soc.h> ++# include <gpio.h> ++#define IFXMIPS_MPS_SRAM ((u32 *)(KSEG1 + 0x1F200000)) ++#define IFXMIPS_MPS_BASE_ADDR (KSEG1 + 0x1F107000) ++#define IFXMIPS_MPS_CHIPID ((u32 *)(IFXMIPS_MPS_BASE_ADDR + 0x0344)) ++#define IFXMIPS_MPS_VC0ENR ((u32 *)(IFXMIPS_MPS_BASE_ADDR + 0x0000)) ++#define IFXMIPS_MPS_RVC0SR ((u32 *)(IFXMIPS_MPS_BASE_ADDR + 0x0010)) ++#define IFXMIPS_MPS_CVC0SR ((u32 *)(IFXMIPS_MPS_BASE_ADDR + 0x0030)) ++#define IFXMIPS_MPS_CVC1SR ((u32 *)(IFXMIPS_MPS_BASE_ADDR + 0x0034)) ++#define IFXMIPS_MPS_CVC2SR ((u32 *)(IFXMIPS_MPS_BASE_ADDR + 0x0038)) ++#define IFXMIPS_MPS_CVC3SR ((u32 *)(IFXMIPS_MPS_BASE_ADDR + 0x003C)) ++#define IFXMIPS_MPS_RAD0SR ((u32 *)(IFXMIPS_MPS_BASE_ADDR + 0x0040)) ++#define IFXMIPS_MPS_RAD1SR ((u32 *)(IFXMIPS_MPS_BASE_ADDR + 0x0044)) ++#define IFXMIPS_MPS_SAD0SR ((u32 *)(IFXMIPS_MPS_BASE_ADDR + 0x0048)) ++#define IFXMIPS_MPS_SAD1SR ((u32 *)(IFXMIPS_MPS_BASE_ADDR + 0x004C)) ++#define IFXMIPS_MPS_CAD0SR ((u32 *)(IFXMIPS_MPS_BASE_ADDR + 0x0050)) ++#define IFXMIPS_MPS_CAD1SR ((u32 *)(IFXMIPS_MPS_BASE_ADDR + 0x0054)) ++#define IFXMIPS_MPS_AD0ENR ((u32 *)(IFXMIPS_MPS_BASE_ADDR + 0x0058)) ++#define IFXMIPS_MPS_AD1ENR ((u32 *)(IFXMIPS_MPS_BASE_ADDR + 0x005C)) ++ ++#define IFXMIPS_MPS_CHIPID_VERSION_GET(value) (((value) >> 28) & ((1 << 4) - 1)) ++#define IFXMIPS_MPS_CHIPID_VERSION_SET(value) ((((1 << 4) - 1) & (value)) << 28) ++#define IFXMIPS_MPS_CHIPID_PARTNUM_GET(value) (((value) >> 12) & ((1 << 16) - 1)) ++#define IFXMIPS_MPS_CHIPID_PARTNUM_SET(value) ((((1 << 16) - 1) & (value)) << 12) ++#define IFXMIPS_MPS_CHIPID_MANID_GET(value) (((value) >> 1) & ((1 << 10) - 1)) ++#define IFXMIPS_MPS_CHIPID_MANID_SET(value) ((((1 << 10) - 1) & (value)) << 1) ++#else ++# include <asm/ifx/ifx_regs.h> ++# include <asm/ifx_vpe.h> ++#endif ++/* MPS register */ ++# define IFX_MPS_AD0ENR IFXMIPS_MPS_AD0ENR ++# define IFX_MPS_AD1ENR IFXMIPS_MPS_AD1ENR ++# define IFX_MPS_RAD0SR IFXMIPS_MPS_RAD0SR ++# define IFX_MPS_RAD1SR IFXMIPS_MPS_RAD1SR ++# define IFX_MPS_VC0ENR IFXMIPS_MPS_VC0ENR ++# define IFX_MPS_RVC0SR IFXMIPS_MPS_RVC0SR ++# define IFX_MPS_CVC0SR IFXMIPS_MPS_CVC0SR ++# define IFX_MPS_CAD0SR IFXMIPS_MPS_CAD0SR ++# define IFX_MPS_CAD1SR IFXMIPS_MPS_CAD1SR ++# define IFX_MPS_CVC1SR IFXMIPS_MPS_CVC1SR ++# define IFX_MPS_CVC2SR IFXMIPS_MPS_CVC2SR ++# define IFX_MPS_CVC3SR IFXMIPS_MPS_CVC3SR ++# define IFX_MPS_SAD0SR IFXMIPS_MPS_SAD0SR ++/* interrupt vectors */ ++# define INT_NUM_IM4_IRL14 (INT_NUM_IM4_IRL0 + 14) ++# define INT_NUM_IM4_IRL18 (INT_NUM_IM4_IRL0 + 18) ++# define INT_NUM_IM4_IRL19 (INT_NUM_IM4_IRL0 + 19) ++# define IFX_ICU_IM4_IER IFXMIPS_ICU_IM4_IER + + /* ============================= */ + /* MPS Common defines */ +@@ -26,32 +76,28 @@ + #define MPS_BASEADDRESS 0xBF107000 + #define MPS_RAD0SR MPS_BASEADDRESS + 0x0004 + +-#define MPS_RAD0SR_DU (1<<0) +-#define MPS_RAD0SR_CU (1<<1) +- + #define MBX_BASEADDRESS 0xBF200000 + #define VCPU_BASEADDRESS 0xBF208000 /* 0xBF108000 */ + /*---------------------------------------------------------------------------*/ ++#if !defined(CONFIG_LANTIQ) ++/* enabling interrupts is done with request_irq by the BSP ++ The related code should not be needed anymore */ + #if defined(SYSTEM_AR9) || defined(SYSTEM_VR9) + /* TODO: doublecheck - IM4 or different! */ + #define MPS_INTERRUPTS_ENABLE(X) *((volatile IFX_uint32_t*) IFX_ICU_IM4_IER) |= X; + #define MPS_INTERRUPTS_DISABLE(X) *((volatile IFX_uint32_t*) IFX_ICU_IM4_IER) &= ~X; +-#define MPS_INTERRUPTS_CLEAR(X) *((volatile IFX_uint32_t*) IFX_ICU_IM4_ISR) = X; +-#define MPS_INTERRUPTS_SET(X) *((volatile IFX_uint32_t*) IFX_ICU_IM4_IRSR) = X;/* |= ? */ + #else /* Danube */ + /* TODO: possibly needs to be changed to IM4 !!!!!! */ + #ifdef LINUX_2_6 + #define MPS_INTERRUPTS_ENABLE(X) *((volatile IFX_uint32_t*) IFX_ICU_IM4_IER) |= X; + #define MPS_INTERRUPTS_DISABLE(X) *((volatile IFX_uint32_t*) IFX_ICU_IM4_IER) &= ~X; +-#define MPS_INTERRUPTS_CLEAR(X) *((volatile IFX_uint32_t*) IFX_ICU_IM4_ISR) = X; +-#define MPS_INTERRUPTS_SET(X) *((volatile IFX_uint32_t*) IFX_ICU_IM4_IRSR) = X;/* |= ? */ + #else /* */ + #define MPS_INTERRUPTS_ENABLE(X) *((volatile IFX_uint32_t*) DANUBE_ICU_IM5_IER) |= X; + #define MPS_INTERRUPTS_DISABLE(X) *((volatile IFX_uint32_t*) DANUBE_ICU_IM5_IER) &= ~X; +-#define MPS_INTERRUPTS_CLEAR(X) *((volatile IFX_uint32_t*) DANUBE_ICU_IM5_ISR) = X; +-#define MPS_INTERRUPTS_SET(X) *((volatile IFX_uint32_t*) DANUBE_ICU_IM5_IRSR) = X;/* |= ? */ + #endif /* LINUX_2_6 */ + #endif /* SYSTEM_AR9 || SYSTEM_VR9 */ ++#endif /* !defined(CONFIG_LANTIQ) */ ++ + /*---------------------------------------------------------------------------*/ + + /*---------------------------------------------------------------------------*/ +@@ -142,53 +188,9 @@ + #if defined(SYSTEM_AR9) || defined(SYSTEM_VR9) + /* ***** Amazon-S specific defines ***** */ + #define IFX_MPS_Base AMAZON_S_MPS +- +-//#define IFX_MPS_CHIPID AMAZON_S_MPS_CHIPID +-//#define IFX_MPS_CHIPID_VERSION_GET AMAZON_S_MPS_CHIPID_VERSION_GET +- +-//#define IFX_MPS_AD0ENR AMAZON_S_MPS_AD0ENR +-//#define IFX_MPS_AD1ENR AMAZON_S_MPS_AD1ENR +-//#define IFX_MPS_VC0ENR AMAZON_S_MPS_VC0ENR +-//#define IFX_MPS_SAD0SR AMAZON_S_MPS_SAD0SR +-//#define IFX_MPS_RAD0SR AMAZON_S_MPS_RAD0SR +-//#define IFX_MPS_CAD0SR AMAZON_S_MPS_CAD0SR +-//#define IFX_MPS_RAD1SR AMAZON_S_MPS_RAD1SR +-//#define IFX_MPS_CAD1SR AMAZON_S_MPS_CAD1SR +-//#define IFX_MPS_RVC0SR AMAZON_S_MPS_RVC0SR +-//#define IFX_MPS_CVC0SR AMAZON_S_MPS_CVC0SR +-//#define IFX_MPS_CVC1SR AMAZON_S_MPS_CVC1SR +-//#define IFX_MPS_CVC2SR AMAZON_S_MPS_CVC2SR +-//#define IFX_MPS_CVC3SR AMAZON_S_MPS_CVC3SR +- +-//#define IFX_MPS_SRAM AMAZON_S_MPS_SRAM + #else /* */ + /* ***** DANUBE specific defines ***** */ + #define IFX_MPS_Base DANUBE_MPS +- +-//#define IFX_MPS_CHIPID DANUBE_MPS_CHIPID +-//#define IFX_MPS_CHIPID_VERSION_GET DANUBE_MPS_CHIPID_VERSION_GET +-//#define IFX_MPS_CHIPID_VERSION_SET DANUBE_MPS_CHIPID_VERSION_SET +-//#define IFX_MPS_CHIPID_PARTNUM_GET DANUBE_MPS_CHIPID_PARTNUM_GET +-//#define IFX_MPS_CHIPID_PARTNUM_SET DANUBE_MPS_CHIPID_PARTNUM_SET +-//#define IFX_MPS_CHIPID_MANID_GET DANUBE_MPS_CHIPID_MANID_GET +-//#define IFX_MPS_CHIPID_MANID_SET DANUBE_MPS_CHIPID_MANID_SET +-//#define IFX_MPS_SUBVER DANUBE_MPS_SUBVER +- +-//#define IFX_MPS_AD0ENR DANUBE_MPS_AD0ENR +-//#define IFX_MPS_AD1ENR DANUBE_MPS_AD1ENR +-//#define IFX_MPS_VC0ENR DANUBE_MPS_VC0ENR +-//#define IFX_MPS_SAD0SR DANUBE_MPS_SAD0SR +-//#define IFX_MPS_RAD0SR DANUBE_MPS_RAD0SR +-//#define IFX_MPS_CAD0SR DANUBE_MPS_CAD0SR +-//#define IFX_MPS_RAD1SR DANUBE_MPS_RAD1SR +-//#define IFX_MPS_CAD1SR DANUBE_MPS_CAD1SR +-//#define IFX_MPS_RVC0SR DANUBE_MPS_RVC0SR +-//#define IFX_MPS_CVC0SR DANUBE_MPS_CVC0SR +-//#define IFX_MPS_CVC1SR DANUBE_MPS_CVC1SR +-//#define IFX_MPS_CVC2SR DANUBE_MPS_CVC2SR +-//#define IFX_MPS_CVC3SR DANUBE_MPS_CVC3SR +- +-//#define IFX_MPS_SRAM DANUBE_MPS_SRAM + #endif /* SYSTEM_AR9 || SYSTEM_VR9 */ + typedef enum + { +--- a/src/mps/drv_mps_vmmc_linux.c ++++ b/src/mps/drv_mps_vmmc_linux.c +@@ -57,10 +57,11 @@ + #include <linux/moduleparam.h> + #endif /* */ + +- ++#if !defined CONFIG_LANTIQ + #include <asm/ifx/irq.h> + #include <asm/ifx/ifx_regs.h> + #include <asm/ifx_vpe.h> ++#endif + + /* lib_ifxos headers */ + #include "ifx_types.h" +@@ -959,7 +960,7 @@ + #endif /* MPS_FIFO_BLOCKING_WRITE */ + case FIO_MPS_GET_STATUS: + { +- IFX_uint32_t flags; ++ unsigned long flags; + + /* get the status of the channel */ + if (!from_kernel) +@@ -993,7 +994,7 @@ + #if CONFIG_MPS_HISTORY_SIZE > 0 + case FIO_MPS_GET_CMD_HISTORY: + { +- IFX_uint32_t flags; ++ unsigned long flags; + + if (from_kernel) + { +@@ -1685,6 +1686,7 @@ + sprintf (buf + len, " minLv: \t %8d\n", + ifx_mps_dev.voice_mb[i].upstrm_fifo->min_space); + } ++ + return len; + } + +@@ -2291,9 +2293,11 @@ + return result; + } + ++#if !defined(CONFIG_LANTIQ) ++ /** \todo This is handled already with request_irq, remove */ + /* Enable all MPS Interrupts at ICU0 */ + MPS_INTERRUPTS_ENABLE (0x0000FF80); +- ++#endif + /* enable mailbox interrupts */ + ifx_mps_enable_mailbox_int (); + /* init FW ready event */ +@@ -2421,9 +2425,11 @@ + /* disable mailbox interrupts */ + ifx_mps_disable_mailbox_int (); + ++#if !defined(CONFIG_LANTIQ) + /* disable Interrupts at ICU0 */ +- MPS_INTERRUPTS_DISABLE (DANUBE_MPS_AD0_IR4); /* Disable DFE/AFE 0 Interrupts +- */ ++ /* Disable DFE/AFE 0 Interrupts*/ ++ MPS_INTERRUPTS_DISABLE (DANUBE_MPS_AD0_IR4); ++#endif + + /* disable all MPS interrupts */ + ifx_mps_disable_all_int (); +--- a/src/drv_vmmc_ioctl.c ++++ b/src/drv_vmmc_ioctl.c +@@ -18,6 +18,7 @@ + /* Includes */ + /* ============================= */ + #include "drv_api.h" ++#include "drv_vmmc_init.h" + #include "drv_vmmc_api.h" + #include "drv_vmmc_bbd.h" + +Index: drv_vmmc-1.9.0/src/mps/drv_mps_vmmc_danube.c +=================================================================== +--- drv_vmmc-1.9.0.orig/src/mps/drv_mps_vmmc_danube.c 2012-12-13 08:43:16.080109377 +0100 ++++ drv_vmmc-1.9.0/src/mps/drv_mps_vmmc_danube.c 2012-12-13 08:43:48.584110192 +0100 +@@ -44,7 +44,7 @@ + # include <linux/dma-mapping.h> + + +-#define LQ_RCU_BASE_ADDR (KSEG1 + LTQ_RCU_BASE_ADDR) ++#define LQ_RCU_BASE_ADDR (KSEG1 + 0x1F203000) + # define LQ_RCU_RST ((u32 *)(LQ_RCU_BASE_ADDR + 0x0010)) + #define IFX_RCU_RST_REQ_CPU1 (1 << 3) + # define IFX_RCU_RST_REQ LQ_RCU_RST diff --git a/package/kernel/lantiq/ltq-vmmc/patches/400-falcon.patch b/package/kernel/lantiq/ltq-vmmc/patches/400-falcon.patch new file mode 100644 index 0000000..490d6e5 --- /dev/null +++ b/package/kernel/lantiq/ltq-vmmc/patches/400-falcon.patch @@ -0,0 +1,968 @@ +--- a/configure.in ++++ b/configure.in +@@ -956,14 +956,15 @@ AC_DEFINE([VMMC],[1],[enable VMMC suppor + AM_CONDITIONAL(DANUBE, false) + AM_CONDITIONAL(AR9, false) + AM_CONDITIONAL(VR9, false) ++AM_CONDITIONAL(FALCON, false) + AC_ARG_WITH(device, + AC_HELP_STRING( +- [--with-device=DANUBE|TWINPASS|AR9|VR9], ++ [--with-device=DANUBE|TWINPASS|AR9|VR9|FALCON], + [Set device type, default is DANUBE] + ), + [ + if test "$withval" = yes; then +- AC_MSG_ERROR([Set device type! Valid choices are DANUBE|TWINPASS|AR9|VR9]); ++ AC_MSG_ERROR([Set device type! Valid choices are DANUBE|TWINPASS|AR9|VR9|FALCON]); + else + case $withval in + DANUBE) +@@ -986,8 +987,13 @@ AC_ARG_WITH(device, + AC_DEFINE([SYSTEM_VR9],[1],[enable VR9 specific code]) + AM_CONDITIONAL(VR9, true) + ;; ++ FALCON) ++ AC_MSG_RESULT(FALCON device is used); ++ AC_DEFINE([SYSTEM_FALCON],[1],[enable FALCON specific code]) ++ AM_CONDITIONAL(FALCON, true) ++ ;; + *) +- AC_MSG_ERROR([Set device type! Valid choices are DANUBE|TWINPASS|AR9|VR9]); ++ AC_MSG_ERROR([Set device type! Valid choices are DANUBE|TWINPASS|AR9|VR9|FALCON]); + ;; + esac + fi +--- a/src/Makefile.am ++++ b/src/Makefile.am +@@ -70,6 +70,11 @@ drv_vmmc_SOURCES +=\ + mps/drv_mps_vmmc_ar9.c + endif + ++if FALCON ++drv_vmmc_SOURCES +=\ ++ mps/drv_mps_vmmc_falcon.c ++endif ++ + endif + + if PMC_SUPPORT +--- a/drv_version.h ++++ b/drv_version.h +@@ -36,6 +36,10 @@ + #define MIN_FW_MAJORSTEP 2 + #define MIN_FW_MINORSTEP 1 + #define MIN_FW_HOTFIXSTEP 0 ++#elif defined(SYSTEM_FALCON) ++#define MIN_FW_MAJORSTEP 0 ++#define MIN_FW_MINORSTEP 1 ++#define MIN_FW_HOTFIXSTEP 0 + #else + #error unknown system + #endif +--- a/src/drv_vmmc_bbd.c ++++ b/src/drv_vmmc_bbd.c +@@ -34,6 +34,7 @@ + #define VMMC_WL_SDD_BASIC_CFG 0x04000400 + #define VMMC_WL_SDD_RING_CFG 0x04000500 + #define VMMC_WL_SDD_DCDC_CFG 0x04000C00 ++#define VMMC_WL_SDD_MWI_CFG 0x04000600 + + #define IDLE_EXT_TOGGLE_SLEEP_MS 5 + +@@ -52,6 +53,8 @@ + #define BBD_VMMC_MAGIC 0x41523921 /* "AR9" */ + #elif defined(SYSTEM_VR9) + #define BBD_VMMC_MAGIC 0x56523921 /* "VR9" */ ++#elif defined(SYSTEM_FALCON) ++#define BBD_VMMC_MAGIC 0x46414C43 /* "FALC" */ + #else + #error system undefined + #endif +@@ -525,9 +528,6 @@ static IFX_int32_t VMMC_BBD_BlockHandler + IFX_uint16_t slic_val; + IFX_int32_t ret = IFX_SUCCESS; + +- TRACE(VMMC, DBG_LEVEL_LOW, +- ("bbd block with tag 0x%04X passed\n", pBBDblock->tag)); +- + /* for FXO line allowed blocks are FXO_CRAM and TRANSPARENT */ + if (pCh->pALM->line_type_fxs != IFX_TRUE) + { +@@ -686,6 +686,7 @@ static IFX_int32_t VMMC_BBD_BlockHandler + break; + } + } /* if */ ++ + return ret; + } + +@@ -1026,6 +1027,7 @@ static IFX_int32_t vmmc_BBD_WhiteListedC + } + case VMMC_WL_SDD_RING_CFG: + case VMMC_WL_SDD_DCDC_CFG: ++ case VMMC_WL_SDD_MWI_CFG: + ret = CmdWrite (pCh->pParent, Msg.val, Msg.cmd.LENGTH); + break; + +@@ -1068,7 +1070,7 @@ static IFX_int32_t vmmc_BBD_DownloadChCr + IFX_uint32_t countWords; + IFX_uint32_t posBytes = 0; + IFX_uint8_t lenBytes, *pByte; +-#if defined(SYSTEM_AR9) || defined(SYSTEM_VR9) ++#if defined(SYSTEM_AR9) || defined(SYSTEM_VR9) || defined(SYSTEM_FALCON) + IFX_uint8_t padBytes = 0; + #endif + IFX_uint16_t cram_offset, cram_crc, +@@ -1088,7 +1090,7 @@ static IFX_int32_t vmmc_BBD_DownloadChCr + #ifdef SYSTEM_DANUBE + /* CMD1 is a COP command */ + pCmd[0] = (0x0200) | (pCh->nChannel - 1); +-#elif defined(SYSTEM_AR9) || defined(SYSTEM_VR9) ++#elif defined(SYSTEM_AR9) || defined(SYSTEM_VR9) || defined(SYSTEM_FALCON) + /* SDD_Coef command */ + pCmd[0] = (0x0400) | (pCh->nChannel - 1); + pCmd[1] = (0x0D00); +@@ -1111,7 +1113,7 @@ static IFX_int32_t vmmc_BBD_DownloadChCr + pCmd[1] = ((cram_offset + (posBytes >> 1)) << 8); + /* set CRAM data while taking care of endianess */ + cpb2w (&pCmd[2], &pByte[posBytes], lenBytes); +-#elif defined(SYSTEM_AR9) || defined(SYSTEM_VR9) ++#elif defined(SYSTEM_AR9) || defined(SYSTEM_VR9) || defined(SYSTEM_FALCON) + /* calculate length to download (in words = 16bit), + maximum allowed length for this message is 56 Bytes = 28 Words */ + if (countWords > ((MAX_CMD_WORD - CMD_HDR_CNT - 1))) +@@ -1140,7 +1142,7 @@ static IFX_int32_t vmmc_BBD_DownloadChCr + /* write Data */ + #if defined SYSTEM_DANUBE + ret = CmdWrite (pCh->pParent, (IFX_uint32_t *) pCmd, lenBytes); +-#elif defined(SYSTEM_AR9) || defined(SYSTEM_VR9) ++#elif defined(SYSTEM_AR9) || defined(SYSTEM_VR9) || defined(SYSTEM_FALCON) + #if 1 + /* lenBytes + 2 bytes for block offset/length which are not calculated + in the download progress */ +--- a/src/mps/drv_mps_version.h ++++ b/src/mps/drv_mps_version.h +@@ -17,7 +17,7 @@ + #define VERSIONSTEP 2 + #define VERS_TYPE 5 + +-#if defined(SYSTEM_AR9) || defined(SYSTEM_VR9) ++#if defined(SYSTEM_AR9) || defined(SYSTEM_VR9) || defined(SYSTEM_FALCON) + #define IFX_MPS_PLATFORM_NAME "MIPS34KEc" + #elif defined(SYSTEM_DANUBE) + #define IFX_MPS_PLATFORM_NAME "MIPS24KEc" +--- a/src/mps/drv_mps_vmmc_linux.c ++++ b/src/mps/drv_mps_vmmc_linux.c +@@ -2225,7 +2225,7 @@ IFX_int32_t __init ifx_mps_init_module ( + #if defined(CONFIG_MIPS) && !defined(CONFIG_MIPS_UNCACHED) + #if defined(SYSTEM_DANUBE) + bDoCacheOps = IFX_TRUE; /* on Danube always perform cache ops */ +-#elif defined(SYSTEM_AR9) || defined(SYSTEM_VR9) ++#elif defined(SYSTEM_AR9) || defined(SYSTEM_VR9) || defined(SYSTEM_FALCON) + /* on AR9/VR9 cache is configured by BSP; + here we check whether the D-cache is shared or partitioned; + 1) in case of shared D-cache all cache operations are omitted; +@@ -2255,7 +2255,8 @@ IFX_int32_t __init ifx_mps_init_module ( + + /* reset the device before initializing the device driver */ + ifx_mps_reset (); +- result = request_irq (INT_NUM_IM4_IRL18, ++ ++ result = request_irq (INT_NUM_IM4_IRL18, + #ifdef LINUX_2_6 + ifx_mps_ad0_irq, IRQF_DISABLED + #else /* */ +@@ -2396,7 +2397,7 @@ IFX_int32_t __init ifx_mps_init_module ( + if (result = ifx_mps_init_gpt_danube ()) + return result; + #endif /*DANUBE*/ +- TRACE (MPS, DBG_LEVEL_HIGH, ("Downloading Firmware...\n")); ++ TRACE (MPS, DBG_LEVEL_HIGH, ("Downloading Firmware...\n")); + ifx_mps_download_firmware (IFX_NULL, (mps_fw *) 0xa0a00000); + udelay (500); + TRACE (MPS, DBG_LEVEL_HIGH, ("Providing Buffers...\n")); +--- /dev/null ++++ b/src/mps/drv_mps_vmmc_falcon.c +@@ -0,0 +1,463 @@ ++/****************************************************************************** ++ ++ Copyright (c) 2009 ++ Lantiq Deutschland GmbH ++ Am Campeon 3; 85579 Neubiberg, Germany ++ ++ For licensing information, see the file 'LICENSE' in the root folder of ++ this software module. ++ ++**************************************************************************** ++ Module : drv_mps_vmmc_falcon.c ++ Description : This file contains the implementation of the FALC-ON specific ++ driver functions. ++*******************************************************************************/ ++ ++/* ============================= */ ++/* Includes */ ++/* ============================= */ ++#include "drv_config.h" ++ ++#if defined(SYSTEM_FALCON) /* defined in drv_config.h */ ++ ++/* lib_ifxos headers */ ++#include "ifx_types.h" ++#include "ifxos_linux_drv.h" ++#include "ifxos_copy_user_space.h" ++#include "ifxos_event.h" ++#include "ifxos_lock.h" ++#include "ifxos_select.h" ++#include "ifxos_interrupt.h" ++#include <linux/gpio.h> ++#include <sys1_reg.h> ++#include <falcon.h> ++#include <falcon_irq.h> ++#include <vpe.h> ++#include <sysctrl.h> ++void (*ifx_bsp_basic_mps_decrypt)(unsigned int addr, int n) = (void (*)(unsigned int, int))0xbf000290; ++ ++#define IFX_MPS_SRAM IFXMIPS_MPS_SRAM ++ ++/*#define USE_PLAIN_VOICE_FIRMWARE*/ ++/* board specific headers */ ++ ++/* device specific headers */ ++#include "drv_mps_vmmc.h" ++#include "drv_mps_vmmc_dbg.h" ++#include "drv_mps_vmmc_device.h" ++ ++/* ============================= */ ++/* Local Macros & Definitions */ ++/* ============================= */ ++/* Firmware watchdog timer counter address */ ++#define VPE1_WDOG_CTR_ADDR ((IFX_uint32_t)((IFX_uint8_t* )IFX_MPS_SRAM + 432)) ++ ++/* Firmware watchdog timeout range, values in ms */ ++#define VPE1_WDOG_TMOUT_MIN 20 ++#define VPE1_WDOG_TMOUT_MAX 5000 ++ ++/* ============================= */ ++/* Global variable definition */ ++/* ============================= */ ++extern mps_comm_dev *pMPSDev; ++ ++/* ============================= */ ++/* Global function declaration */ ++/* ============================= */ ++IFX_void_t ifx_mps_release (IFX_void_t); ++extern IFX_uint32_t ifx_mps_reset_structures (mps_comm_dev * pMPSDev); ++extern IFX_int32_t ifx_mps_bufman_close (IFX_void_t); ++IFX_int32_t ifx_mps_wdog_callback (IFX_uint32_t wdog_cleared_ok_count); ++extern IFXOS_event_t fw_ready_evt; ++/* ============================= */ ++/* Local function declaration */ ++/* ============================= */ ++static IFX_int32_t ifx_mps_fw_wdog_start_ar9(IFX_void_t); ++ ++/* ============================= */ ++/* Local variable definition */ ++/* ============================= */ ++static IFX_int32_t vpe1_started = 0; ++/* VMMC watchdog timer callback */ ++IFX_int32_t (*ifx_wdog_callback) (IFX_uint32_t flags) = IFX_NULL; ++ ++/* ============================= */ ++/* Local function definition */ ++/* ============================= */ ++ ++/****************************************************************************** ++ * AR9 Specific Routines ++ ******************************************************************************/ ++ ++/** ++ * Start AR9 EDSP firmware watchdog mechanism. ++ * Called after download and startup of VPE1. ++ * ++ * \param none ++ * \return 0 IFX_SUCCESS ++ * \return -1 IFX_ERROR ++ * \ingroup Internal ++ */ ++IFX_int32_t ifx_mps_fw_wdog_start_ar9() ++{ ++ return IFX_SUCCESS; ++} ++ ++/** ++ * Firmware download to Voice CPU ++ * This function performs a firmware download to the coprocessor. ++ * ++ * \param pMBDev Pointer to mailbox device structure ++ * \param pFWDwnld Pointer to firmware structure ++ * \return 0 IFX_SUCCESS, firmware ready ++ * \return -1 IFX_ERROR, firmware not downloaded. ++ * \ingroup Internal ++ */ ++IFX_int32_t ifx_mps_download_firmware (mps_mbx_dev *pMBDev, mps_fw *pFWDwnld) ++{ ++ IFX_uint32_t mem, cksum; ++ IFX_uint8_t crc; ++ IFX_boolean_t bMemReqNotPresent = IFX_FALSE; ++ ++ /* VCC register */ ++ /* dummy accesss on GTC for GPONC-55, otherwise upper bits are random on read */ ++ ltq_r32 ((u32 *)((KSEG1 | 0x1DC000B0))); ++ /* NTR Frequency Select 1536 kHz per default or take existing, ++ NTR Output Enable and NTR8K Output Enable */ ++ if ((ltq_r32 ((u32 *)(GPON_SYS_BASE + 0xBC)) & 7) == 0) ++ ltq_w32_mask (0x10187, 0x183, (u32 *)(GPON_SYS_BASE + 0xBC)); ++ else ++ ltq_w32_mask (0x10180, 0x180, (u32 *)(GPON_SYS_BASE + 0xBC)); ++#if 0 ++ /* BIU-ICU1-IM1_ISR - IM1:FSCT_CMP1=1 and FSC_ROOT=1 ++ (0x1f880328 = 0x00002800) */ ++ ltq_w32 (0x00002800, (u32 *)(GPON_ICU1_BASE + 0x30)); ++#endif ++ /* copy FW footer from user space */ ++ if (IFX_NULL == IFXOS_CpyFromUser(pFW_img_data, ++ pFWDwnld->data+pFWDwnld->length/4-sizeof(*pFW_img_data)/4, ++ sizeof(*pFW_img_data))) ++ { ++ TRACE (MPS, DBG_LEVEL_HIGH, ++ (KERN_ERR "[%s %s %d]: copy_from_user error\r\n", ++ __FILE__, __func__, __LINE__)); ++ return IFX_ERROR; ++ } ++ ++ mem = pFW_img_data->mem; ++ ++ /* memory requirement sanity check */ ++ if ((crc = ~((mem >> 16) + (mem >> 8) + mem)) != (mem >> 24)) ++ { ++ TRACE (MPS, DBG_LEVEL_HIGH, ++ ("[%s %s %d]: warning, image does not contain size - assuming 1MB!\n", ++ __FILE__, __func__, __LINE__)); ++ mem = 1 * 1024 * 1024; ++ bMemReqNotPresent = IFX_TRUE; ++ } ++ else ++ { ++ mem &= 0x00FFFFFF; ++ } ++ ++ /* check if FW image fits in available memory space */ ++ if (mem > vpe1_get_max_mem(0)) ++ { ++ TRACE (MPS, DBG_LEVEL_HIGH, ++ ("[%s %s %d]: error, firmware memory exceeds reserved space (%i > %i)!\n", ++ __FILE__, __func__, __LINE__, mem, vpe1_get_max_mem(0))); ++ return IFX_ERROR; ++ } ++ ++ /* reset the driver */ ++ ifx_mps_reset (); ++ ++ /* call BSP to get cpu1 base address */ ++ cpu1_base_addr = (IFX_uint32_t *)vpe1_get_load_addr(0); ++ ++ /* check if CPU1 base address is sane ++ \todo: check if address is 1MB aligned, ++ also make it visible in a /proc fs */ ++ if (!cpu1_base_addr) ++ { ++ TRACE (MPS, DBG_LEVEL_HIGH, ++ (KERN_ERR "IFX_MPS: CPU1 base address is invalid!\r\n")); ++ return IFX_ERROR; ++ } ++ /* further use uncached value */ ++ cpu1_base_addr = (IFX_uint32_t *)KSEG1ADDR(cpu1_base_addr); ++ ++ /* free all data buffers that might be currently used by FW */ ++ if (IFX_NULL != ifx_mps_bufman_freeall) ++ { ++ ifx_mps_bufman_freeall(); ++ } ++ ++ if(FW_FORMAT_NEW) ++ { ++ /* adjust download length */ ++ pFWDwnld->length -= (sizeof(*pFW_img_data)-sizeof(IFX_uint32_t)); ++ } ++ else ++ { ++ pFWDwnld->length -= sizeof(IFX_uint32_t); ++ ++ /* handle unlikely case if FW image does not contain memory requirement - ++ assumed for old format only */ ++ if (IFX_TRUE == bMemReqNotPresent) ++ pFWDwnld->length += sizeof(IFX_uint32_t); ++ ++ /* in case of old FW format always assume that FW is encrypted; ++ use compile switch USE_PLAIN_VOICE_FIRMWARE for plain FW */ ++#ifndef USE_PLAIN_VOICE_FIRMWARE ++ pFW_img_data->enc = 1; ++#else ++#warning Using unencrypted firmware! ++ pFW_img_data->enc = 0; ++#endif /* USE_PLAIN_VOICE_FIRMWARE */ ++ /* initializations for the old format */ ++ pFW_img_data->st_addr_crc = 2*sizeof(IFX_uint32_t) + ++ FW_AR9_OLD_FMT_XCPT_AREA_SZ; ++ pFW_img_data->en_addr_crc = pFWDwnld->length; ++ pFW_img_data->fw_vers = 0; ++ pFW_img_data->magic = 0; ++ } ++ ++ /* copy FW image to base address of CPU1 */ ++ if (IFX_NULL == ++ IFXOS_CpyFromUser ((IFX_void_t *)cpu1_base_addr, ++ (IFX_void_t *)pFWDwnld->data, pFWDwnld->length)) ++ { ++ TRACE (MPS, DBG_LEVEL_HIGH, ++ (KERN_ERR "[%s %s %d]: copy_from_user error\r\n", __FILE__, ++ __func__, __LINE__)); ++ return IFX_ERROR; ++ } ++ ++ /* process firmware decryption */ ++ if (pFW_img_data->enc == 1) ++ { ++ if(FW_FORMAT_NEW) ++ { ++ /* adjust decryption length (avoid decrypting CRC32 checksum) */ ++ pFWDwnld->length -= sizeof(IFX_uint32_t); ++ } ++ /* BootROM actually decrypts n+4 bytes if n bytes were passed for ++ decryption. Subtract sizeof(u32) from length to avoid decryption ++ of data beyond the FW image code */ ++ pFWDwnld->length -= sizeof(IFX_uint32_t); ++ ifx_bsp_basic_mps_decrypt((unsigned int)cpu1_base_addr, pFWDwnld->length); ++ } ++ ++ /* calculate CRC32 checksum over downloaded image */ ++ cksum = ifx_mps_fw_crc32(cpu1_base_addr, pFW_img_data); ++ ++ /* verify the checksum */ ++ if(FW_FORMAT_NEW) ++ { ++ if (cksum != pFW_img_data->crc32) ++ { ++ TRACE (MPS, DBG_LEVEL_HIGH, ++ ("MPS: FW checksum error: img=0x%08x calc=0x%08x\r\n", ++ pFW_img_data->crc32, cksum)); ++ /*return IFX_ERROR;*/ ++ } ++ } ++ else ++ { ++ /* just store self-calculated checksum */ ++ pFW_img_data->crc32 = cksum; ++ } ++ ++ /* start VPE1 */ ++ ifx_mps_release (); ++#if 0 ++ /* start FW watchdog mechanism */ ++ ifx_mps_fw_wdog_start_ar9(); ++#endif ++ /* get FW version */ ++ return ifx_mps_get_fw_version (0); ++} ++ ++ ++/** ++ * Restart CPU1 ++ * This function restarts CPU1 by accessing the reset request register and ++ * reinitializes the mailbox. ++ * ++ * \return 0 IFX_SUCCESS, successful restart ++ * \return -1 IFX_ERROR, if reset failed ++ * \ingroup Internal ++ */ ++IFX_int32_t ifx_mps_restart (IFX_void_t) ++{ ++ /* raise reset request for CPU1 and reset driver structures */ ++ ifx_mps_reset (); ++ /* Disable GPTC Interrupt to CPU1 */ ++ ifx_mps_shutdown_gpt (); ++ /* re-configure GPTC */ ++ ifx_mps_init_gpt (); ++ /* let CPU1 run */ ++ ifx_mps_release (); ++ /* start FW watchdog mechanism */ ++ ifx_mps_fw_wdog_start_ar9(); ++ TRACE (MPS, DBG_LEVEL_HIGH, ("IFX_MPS: Restarting firmware...")); ++ return ifx_mps_get_fw_version (0); ++} ++ ++/** ++ * Shutdown MPS - stop VPE1 ++ * This function stops VPE1 ++ * ++ * \ingroup Internal ++ */ ++IFX_void_t ifx_mps_shutdown (IFX_void_t) ++{ ++ if (vpe1_started) ++ { ++ /* stop software watchdog timer */ ++ vpe1_sw_wdog_stop (0); ++ /* clean up the BSP callback function */ ++ vpe1_sw_wdog_register_reset_handler (IFX_NULL); ++ /* stop VPE1 */ ++ vpe1_sw_stop (0); ++ vpe1_started = 0; ++ } ++ /* free GPTC */ ++ ifx_mps_shutdown_gpt (); ++} ++ ++/** ++ * Reset CPU1 ++ * This function causes a reset of CPU1 by clearing the CPU0 boot ready bit ++ * in the reset request register RCU_RST_REQ. ++ * It does not change the boot configuration registers for CPU0 or CPU1. ++ * ++ * \return 0 IFX_SUCCESS, cannot fail ++ * \ingroup Internal ++ */ ++IFX_void_t ifx_mps_reset (IFX_void_t) ++{ ++ /* if VPE1 is already started, stop it */ ++ if (vpe1_started) ++ { ++ /* stop software watchdog timer first */ ++ vpe1_sw_wdog_stop (0); ++ vpe1_sw_stop (0); ++ vpe1_started = 0; ++ } ++ ++ /* reset driver */ ++ ifx_mps_reset_structures (pMPSDev); ++ ifx_mps_bufman_close (); ++ return; ++} ++ ++/** ++ * Let CPU1 run ++ * This function starts VPE1 ++ * ++ * \return none ++ * \ingroup Internal ++ */ ++IFX_void_t ifx_mps_release (IFX_void_t) ++{ ++ IFX_int_t ret; ++ IFX_int32_t RetCode = 0; ++ ++ /* Start VPE1 */ ++ if (IFX_SUCCESS != ++ vpe1_sw_start ((IFX_void_t *)cpu1_base_addr, 0, 0)) ++ { ++ TRACE (MPS, DBG_LEVEL_HIGH, (KERN_ERR "Error starting VPE1\r\n")); ++ return; ++ } ++ vpe1_started = 1; ++ ++ /* sleep 3 seconds until FW is ready */ ++ ret = IFXOS_EventWait (&fw_ready_evt, 3000, &RetCode); ++ if ((ret == IFX_ERROR) && (RetCode == 1)) ++ { ++ /* timeout */ ++ TRACE (MPS, DBG_LEVEL_HIGH, ++ (KERN_ERR "[%s %s %d]: Timeout waiting for firmware ready.\r\n", ++ __FILE__, __func__, __LINE__)); ++ /* recalculate and compare the firmware checksum */ ++ ifx_mps_fw_crc_compare(cpu1_base_addr, pFW_img_data); ++ /* dump exception area on a console */ ++ ifx_mps_dump_fw_xcpt(cpu1_base_addr, pFW_img_data); ++ } ++} ++ ++/** ++ * WDT callback. ++ * This function is called by BSP (module softdog_vpe) in case if software ++ * watchdog timer expiration is detected by BSP. ++ * This function needs to be registered at BSP as WDT callback using ++ * vpe1_sw_wdog_register_reset_handler() API. ++ * ++ * \return 0 IFX_SUCCESS, cannot fail ++ * \ingroup Internal ++ */ ++IFX_int32_t ifx_mps_wdog_callback (IFX_uint32_t wdog_cleared_ok_count) ++{ ++#ifdef DEBUG ++ TRACE (MPS, DBG_LEVEL_HIGH, ++ ("MPS: watchdog callback! arg=0x%08x\r\n", wdog_cleared_ok_count)); ++#endif /* DEBUG */ ++ ++ /* reset SmartSLIC is done by FW */ ++ /* recalculate and compare the firmware checksum */ ++ ifx_mps_fw_crc_compare(cpu1_base_addr, pFW_img_data); ++ ++ /* dump exception area on a console */ ++ ifx_mps_dump_fw_xcpt(cpu1_base_addr, pFW_img_data); ++ ++ if (IFX_NULL != ifx_wdog_callback) ++ { ++ /* call VMMC driver */ ++ ifx_wdog_callback (wdog_cleared_ok_count); ++ } ++ else ++ { ++ TRACE (MPS, DBG_LEVEL_HIGH, ++ (KERN_WARNING "MPS: VMMC watchdog timer callback is NULL.\r\n")); ++ } ++ return 0; ++} ++ ++/** ++ * Register WDT callback. ++ * This function is called by VMMC driver to register its callback in ++ * the MPS driver. ++ * ++ * \return 0 IFX_SUCCESS, cannot fail ++ * \ingroup Internal ++ */ ++IFX_int32_t ++ifx_mps_register_wdog_callback (IFX_int32_t (*pfn) (IFX_uint32_t flags)) ++{ ++ ifx_wdog_callback = pfn; ++ return 0; ++} ++ ++/** ++ Hardware setup on FALC ON ++*/ ++void sys_hw_setup (void) ++{ ++ /* Set INFRAC register bit 1: clock enable of the GPE primary clock. */ ++ sys_gpe_hw_activate (0); ++ /* enable 1.5 V */ ++ ltq_w32_mask (0xf, 0x0b, (u32 *)(GPON_SYS1_BASE | 0xbc)); ++ /* SYS1-CLKEN:GPTC = 1 and MPS, no longer FSCT = 1 */ ++ sys1_hw_activate (ACTS_MPS | ACTS_GPTC); ++ /* GPTC:CLC:RMC = 1 */ ++ ltq_w32 (0x00000100, (u32 *)(KSEG1 | 0x1E100E00)); ++} ++ ++#ifndef VMMC_WITH_MPS ++EXPORT_SYMBOL (ifx_mps_register_wdog_callback); ++#endif /* !VMMC_WITH_MPS */ ++ ++#endif /* SYSTEM_FALCON */ +--- a/src/mps/drv_mps_vmmc_common.c ++++ b/src/mps/drv_mps_vmmc_common.c +@@ -66,6 +66,10 @@ static void inline bsp_mask_and_ack_irq( + # include <asm/ifx/ifx_regs.h> + # include <asm/ifx/ifx_gptu.h> + #endif ++#if defined(SYSTEM_FALCON) ++#include <sys1_reg.h> ++#include <sysctrl.h> ++#endif + + #include "drv_mps_vmmc.h" + #include "drv_mps_vmmc_dbg.h" +@@ -1156,7 +1160,12 @@ IFX_uint32_t ifx_mps_init_structures (mp + mailbox, * upstream and downstream direction. */ + memset ( + /* avoid to overwrite CPU boot registers */ ++#if defined(SYSTEM_FALCON) ++ (IFX_void_t *) MBX_Memory + ++ 2 * sizeof (mps_boot_cfg_reg), ++#else + (IFX_void_t *) MBX_Memory, ++#endif + 0, + sizeof (mps_mbx_reg) - 2 * sizeof (mps_boot_cfg_reg)); + MBX_Memory->MBX_UPSTR_CMD_BASE = +@@ -2651,7 +2660,6 @@ IFX_void_t ifx_mps_enable_mailbox_int () + #endif + + *IFX_MPS_AD0ENR = Ad0Reg.val; +- + } + + /** +@@ -2669,6 +2677,7 @@ IFX_void_t ifx_mps_disable_mailbox_int ( + Ad0Reg.fld.cu_mbx = 0; + Ad0Reg.fld.du_mbx = 0; + *IFX_MPS_AD0ENR = Ad0Reg.val; ++ + } + + /** +@@ -2766,11 +2775,13 @@ irqreturn_t ifx_mps_ad0_irq (IFX_int32_t + /* handle only enabled interrupts */ + MPS_Ad0StatusReg.val &= *IFX_MPS_AD0ENR; + ++#if !defined(SYSTEM_FALCON) + #ifdef LINUX_2_6 + bsp_mask_and_ack_irq (irq); + #else /* */ + mask_and_ack_danube_irq (irq); + #endif /* */ ++#endif /* !defined(SYSTEM_FALCON) */ + /* FW is up and ready to process commands */ + if (MPS_Ad0StatusReg.fld.dl_end) + { +@@ -2919,11 +2930,13 @@ irqreturn_t ifx_mps_ad1_irq (IFX_int32_t + /* handle only enabled interrupts */ + MPS_Ad1StatusReg.val &= *IFX_MPS_AD1ENR; + ++#if !defined(SYSTEM_FALCON) + #ifdef LINUX_2_6 + bsp_mask_and_ack_irq (irq); + #else /* */ + mask_and_ack_danube_irq (irq); + #endif /* */ ++#endif /* !defined(SYSTEM_FALCON) */ + pMPSDev->event.MPS_Ad1Reg.val = MPS_Ad1StatusReg.val; + + /* use callback function or queue wake up to notify about data reception */ +@@ -2977,11 +2990,13 @@ irqreturn_t ifx_mps_vc_irq (IFX_int32_t + IFX_MPS_CVC0SR[chan] = MPS_VCStatusReg.val; + /* handle only enabled interrupts */ + MPS_VCStatusReg.val &= IFX_MPS_VC0ENR[chan]; ++#if !defined(SYSTEM_FALCON) + #ifdef LINUX_2_6 + bsp_mask_and_ack_irq (irq); + #else /* */ + mask_and_ack_danube_irq (irq); + #endif /* */ ++#endif /* !defined(SYSTEM_FALCON) */ + + pMPSDev->event.MPS_VCStatReg[chan].val = MPS_VCStatusReg.val; + #ifdef PRINT_ON_ERR_INTERRUPT +@@ -3126,6 +3141,7 @@ IFX_int32_t ifx_mps_get_fw_version (IFX_ + */ + IFX_return_t ifx_mps_init_gpt () + { ++#if !defined(SYSTEM_FALCON) + unsigned long flags; + IFX_uint32_t timer_flags, timer, loops = 0; + IFX_ulong_t count; +@@ -3134,7 +3150,11 @@ IFX_return_t ifx_mps_init_gpt () + #else /* Danube */ + timer = TIMER1B; + #endif /* SYSTEM_AR9 || SYSTEM_VR9 */ ++#endif + ++#if defined(SYSTEM_FALCON) ++ sys_hw_setup (); ++#else + /* calibration loop - required to syncronize GPTC interrupt with falling + edge of FSC clock */ + timer_flags = +@@ -3179,7 +3199,7 @@ Probably already in use.\r\n", __FILE__, + #endif /* DEBUG */ + + IFXOS_UNLOCKINT (flags); +- ++#endif + return IFX_SUCCESS; + } + +@@ -3194,6 +3214,9 @@ Probably already in use.\r\n", __FILE__, + */ + IFX_void_t ifx_mps_shutdown_gpt (IFX_void_t) + { ++#if defined(SYSTEM_FALCON) ++ sys1_hw_deactivate (ACTS_MPS); ++#else + IFX_uint32_t timer; + #if defined(SYSTEM_AR9) || defined(SYSTEM_VR9) + timer = TIMER1A; +@@ -3202,6 +3225,7 @@ IFX_void_t ifx_mps_shutdown_gpt (IFX_voi + #endif /* SYSTEM_AR9 || SYSTEM_VR9 */ + + ifx_gptu_timer_free (timer); ++#endif + } + + /** +--- a/src/mps/drv_mps_vmmc_device.h ++++ b/src/mps/drv_mps_vmmc_device.h +@@ -22,7 +22,12 @@ + # include <lantiq_soc.h> + # include <gpio.h> + #define IFXMIPS_MPS_SRAM ((u32 *)(KSEG1 + 0x1F200000)) ++#if defined(SYSTEM_FALCON) ++#define IFXMIPS_MPS_BASE_ADDR (KSEG1 + 0x1D004000) ++#else + #define IFXMIPS_MPS_BASE_ADDR (KSEG1 + 0x1F107000) ++#endif ++ + #define IFXMIPS_MPS_CHIPID ((u32 *)(IFXMIPS_MPS_BASE_ADDR + 0x0344)) + #define IFXMIPS_MPS_VC0ENR ((u32 *)(IFXMIPS_MPS_BASE_ADDR + 0x0000)) + #define IFXMIPS_MPS_RVC0SR ((u32 *)(IFXMIPS_MPS_BASE_ADDR + 0x0010)) +@@ -73,10 +78,11 @@ + /* MPS Common defines */ + /* ============================= */ + +-#define MPS_BASEADDRESS 0xBF107000 +-#define MPS_RAD0SR MPS_BASEADDRESS + 0x0004 +- ++#if defined(SYSTEM_FALCON) ++#define MBX_BASEADDRESS 0xBF200040 ++#else + #define MBX_BASEADDRESS 0xBF200000 ++#endif + #define VCPU_BASEADDRESS 0xBF208000 /* 0xBF108000 */ + /*---------------------------------------------------------------------------*/ + #if !defined(CONFIG_LANTIQ) +@@ -118,7 +124,6 @@ + /*---------------------------------------------------------------------------*/ + + #ifdef CONFIG_MPS_EVENT_MBX +- + #define MBX_CMD_FIFO_SIZE 64 /**< Size of command FIFO in bytes */ + #define MBX_DATA_UPSTRM_FIFO_SIZE 64 + #define MBX_DATA_DNSTRM_FIFO_SIZE 128 +@@ -294,6 +299,10 @@ typedef struct + #ifdef CONFIG_MPS_EVENT_MBX + typedef struct + { ++#if defined(SYSTEM_FALCON) ++ mps_boot_cfg_reg MBX_CPU0_BOOT_CFG; /**< CPU0 Boot Configuration */ ++ mps_boot_cfg_reg MBX_CPU1_BOOT_CFG; /**< CPU1 Boot Configuration */ ++#endif + volatile IFX_uint32_t *MBX_UPSTR_CMD_BASE; /**< Upstream Command FIFO Base Address */ + volatile IFX_uint32_t MBX_UPSTR_CMD_SIZE; /**< Upstream Command FIFO size in byte */ + volatile IFX_uint32_t *MBX_DNSTR_CMD_BASE; /**< Downstream Command FIFO Base Address */ +@@ -317,13 +326,19 @@ typedef struct + volatile IFX_uint32_t MBX_UPSTR_EVENT_WRITE; /**< Upstream Event FIFO Write Index */ + volatile IFX_uint32_t MBX_EVENT[MBX_EVENT_DATA_WORDS]; + volatile IFX_uint32_t reserved[4]; ++#if !defined(SYSTEM_FALCON) + mps_boot_cfg_reg MBX_CPU0_BOOT_CFG; /**< CPU0 Boot Configuration */ + mps_boot_cfg_reg MBX_CPU1_BOOT_CFG; /**< CPU1 Boot Configuration */ ++#endif + } mps_mbx_reg; + + #else /* */ + typedef struct + { ++#if defined(SYSTEM_FALCON) ++ mps_boot_cfg_reg MBX_CPU0_BOOT_CFG; /**< CPU0 Boot Configuration */ ++ mps_boot_cfg_reg MBX_CPU1_BOOT_CFG; /**< CPU1 Boot Configuration */ ++#endif + volatile IFX_uint32_t *MBX_UPSTR_CMD_BASE; /**< Upstream Command FIFO Base Address */ + volatile IFX_uint32_t MBX_UPSTR_CMD_SIZE; /**< Upstream Command FIFO size in byte */ + volatile IFX_uint32_t *MBX_DNSTR_CMD_BASE; /**< Downstream Command FIFO Base Address */ +@@ -341,8 +356,10 @@ typedef struct + volatile IFX_uint32_t MBX_DNSTR_DATA_READ; /**< Downstream Data FIFO Read Index */ + volatile IFX_uint32_t MBX_DNSTR_DATA_WRITE; /**< Downstream Data FIFO Write Index */ + volatile IFX_uint32_t MBX_DATA[MBX_DATA_WORDS]; ++#if !defined(SYSTEM_FALCON) + mps_boot_cfg_reg MBX_CPU0_BOOT_CFG; /**< CPU0 Boot Configuration */ + mps_boot_cfg_reg MBX_CPU1_BOOT_CFG; /**< CPU1 Boot Configuration */ ++#endif + } mps_mbx_reg; + #endif /* CONFIG_MPS_EVENT_MBX */ + +--- a/src/drv_api.h ++++ b/src/drv_api.h +@@ -183,7 +183,7 @@ + #endif + + /* TAPI FXS Phone Detection feature is not available for Danube platform */ +-#if defined(TAPI_PHONE_DETECTION) && (defined(SYSTEM_AR9) || defined(SYSTEM_VR9)) ++#if defined(TAPI_PHONE_DETECTION) && (defined(SYSTEM_AR9) || defined(SYSTEM_VR9) || defined(SYSTEM_FALCON)) + #define VMMC_CFG_ADD_FEAT_PHONE_DETECTION VMMC_FEAT_PHONE_DETECTION + #else + #define VMMC_CFG_ADD_FEAT_PHONE_DETECTION 0 +--- a/src/drv_vmmc_alm.c ++++ b/src/drv_vmmc_alm.c +@@ -800,7 +800,7 @@ IFX_void_t VMMC_ALM_Free_Ch_Structures ( + } + + +-#if defined(SYSTEM_AR9) || defined(SYSTEM_VR9) ++#if defined(SYSTEM_AR9) || defined(SYSTEM_VR9) || defined(SYSTEM_FALCON) + /** + Check whether SmartSLIC is connected + +@@ -836,7 +836,7 @@ IFX_boolean_t VMMC_ALM_SmartSLIC_IsConne + #endif /*SYSTEM_AR9 || SYSTEM_VR9*/ + + +-#if defined(SYSTEM_AR9) || defined(SYSTEM_VR9) ++#if defined(SYSTEM_AR9) || defined(SYSTEM_VR9) || defined(SYSTEM_FALCON) + /** + Read the number of channels on the SmartSLIC. + +@@ -1876,7 +1876,7 @@ IFX_int32_t VMMC_TAPI_LL_ALM_VMMC_Test_L + /* write updated message contents */ + ret = CmdWrite (pDev, (IFX_uint32_t *)((IFX_void_t *)&debugCfg), + DCCTL_CMD_LEN); +-#elif defined(SYSTEM_AR9) || defined(SYSTEM_VR9) ++#elif defined(SYSTEM_AR9) || defined(SYSTEM_VR9) || defined(SYSTEM_FALCON) + IFX_uint32_t dcctrlLoop[2]; + IFX_uint32_t ch = (IFX_uint32_t)(pCh->nChannel - 1); + +--- a/src/drv_vmmc_alm.h ++++ b/src/drv_vmmc_alm.h +@@ -65,7 +65,7 @@ extern IFX_void_t irq_VMMC_ALM_LineDisab + extern IFX_void_t VMMC_ALM_CorrectLinemodeCache (VMMC_CHANNEL *pCh, + IFX_uint16_t lm); + +-#if defined(SYSTEM_AR9) || defined(SYSTEM_VR9) ++#if defined(SYSTEM_AR9) || defined(SYSTEM_VR9) || defined(SYSTEM_FALCON) + extern IFX_boolean_t VMMC_ALM_SmartSLIC_IsConnected ( + VMMC_DEVICE *pDev); + +--- a/src/drv_vmmc_init.c ++++ b/src/drv_vmmc_init.c +@@ -52,15 +52,6 @@ + #include "ifx_pmu.h" + #endif /* PMU_SUPPORTED */ + +-#if (LINUX_VERSION_CODE > KERNEL_VERSION(2,6,28)) +-# define IFX_MPS_CAD0SR IFXMIPS_MPS_CAD0SR +-# define IFX_MPS_CAD1SR IFXMIPS_MPS_CAD1SR +-# define IFX_MPS_CVC0SR IFXMIPS_MPS_CVC0SR +-# define IFX_MPS_CVC1SR IFXMIPS_MPS_CVC1SR +-# define IFX_MPS_CVC2SR IFXMIPS_MPS_CVC2SR +-# define IFX_MPS_CVC3SR IFXMIPS_MPS_CVC3SR +-#endif +- + /* ============================= */ + /* Local Macros & Definitions */ + /* ============================= */ +@@ -820,7 +811,7 @@ static IFX_int32_t VMMC_TAPI_LL_FW_Init( + MIN_FW_HOTFIXSTEP}; + IFX_uint8_t tmp1, tmp2; + IFX_TAPI_RESOURCE nResource; +-#if defined(SYSTEM_AR9) || defined(SYSTEM_VR9) ++#if defined(SYSTEM_AR9) || defined(SYSTEM_VR9) || defined(SYSTEM_FALCON) + IFX_uint8_t nChannels, nFXOChannels; + #endif /*SYSTEM_AR9 || SYSTEM_VR9*/ + IFX_int32_t ret = VMMC_statusOk; +@@ -874,7 +865,7 @@ static IFX_int32_t VMMC_TAPI_LL_FW_Init( + pDev->bSmartSlic = IFX_FALSE; + pDev->bSlicSupportsIdleMode = IFX_FALSE; + +-#if defined(SYSTEM_AR9) || defined(SYSTEM_VR9) ++#if defined(SYSTEM_AR9) || defined(SYSTEM_VR9) || defined(SYSTEM_FALCON) + if (VMMC_SUCCESS(ret)) + { + /* Reduce the number of ALM channels in the capabilities if the SLIC +--- a/src/drv_vmmc_ioctl.c ++++ b/src/drv_vmmc_ioctl.c +@@ -273,7 +273,7 @@ IFX_int32_t VMMC_Dev_Spec_Ioctl (IFX_TAP + case FIO_GET_VERS: + { + VMMC_IO_VERSION *pVers; +-#if defined(SYSTEM_AR9) || defined(SYSTEM_VR9) ++#if defined(SYSTEM_AR9) || defined(SYSTEM_VR9) || defined(SYSTEM_FALCON) + VMMC_SDD_REVISION_READ_t *pSDDVersCmd = IFX_NULL; + #endif /*SYSTEM_AR9 || SYSTEM_VR9*/ + SYS_VER_t *pCmd; +@@ -322,7 +322,7 @@ IFX_int32_t VMMC_Dev_Spec_Ioctl (IFX_TAP + pVers->nTapiVers = 3; + pVers->nDrvVers = MAJORSTEP << 24 | MINORSTEP << 16 | + VERSIONSTEP << 8 | VERS_TYPE; +-#if defined(SYSTEM_AR9) || defined(SYSTEM_VR9) ++#if defined(SYSTEM_AR9) || defined(SYSTEM_VR9) || defined(SYSTEM_FALCON) + /* in case of SmartSLIC based systems, we can give some more + versions.*/ + if (VMMC_ALM_SmartSLIC_IsConnected(pDev)) |