1120c43adSJerome Forissier# Default configuration values for OP-TEE core (all platforms). 2120c43adSJerome Forissier# 3120c43adSJerome Forissier# Platform-specific overrides are in core/arch/arm32/plat-*/conf.mk. 4120c43adSJerome Forissier# Some subsystem-specific defaults are not here but rather in */sub.mk. 5120c43adSJerome Forissier# 6120c43adSJerome Forissier# Configuration values may be assigned from multiple sources. 7120c43adSJerome Forissier# From higher to lower priority: 8120c43adSJerome Forissier# 9120c43adSJerome Forissier# 1. Make arguments ('make CFG_FOO=bar...') 10120c43adSJerome Forissier# 2. The file specified by $(CFG_OPTEE_CONFIG) (if defined) 11120c43adSJerome Forissier# 3. The environment ('CFG_FOO=bar make...') 12120c43adSJerome Forissier# 4. The platform-specific configuration file: core/arch/arm32/plat-*/conf.mk 13120c43adSJerome Forissier# 5. This file 14120c43adSJerome Forissier# 6. Subsystem-specific makefiles (*/sub.mk) 15120c43adSJerome Forissier# 16b5569a68SPascal Brand# Actual values used during the build are output to $(out-dir)/conf.mk 17120c43adSJerome Forissier# (CFG_* variables only). 18120c43adSJerome Forissier 19a75f2e14SJerome Forissier# Cross-compiler prefix and suffix 20a75f2e14SJerome ForissierCROSS_COMPILE ?= arm-linux-gnueabihf- 21c042fbefSJerome ForissierCROSS_COMPILE32 ?= $(CROSS_COMPILE) 22c042fbefSJerome ForissierCROSS_COMPILE64 ?= aarch64-linux-gnu- 23a75f2e14SJerome ForissierCOMPILER ?= gcc 24a75f2e14SJerome Forissier 25b09cddcaSJerome Forissier# For convenience 26b09cddcaSJerome Forissierifdef CFLAGS 27b09cddcaSJerome ForissierCFLAGS32 ?= $(CFLAGS) 28b09cddcaSJerome ForissierCFLAGS64 ?= $(CFLAGS) 29b09cddcaSJerome Forissierendif 30b09cddcaSJerome Forissier 31120c43adSJerome Forissier# Compiler warning level. 32120c43adSJerome Forissier# Supported values: undefined, 1, 2 and 3. 3 gives more warnings. 33b0104773SPascal BrandWARNS ?= 3 34b0104773SPascal Brand 35b4faf480SDick Olsson# Path to the Python interpreter used by the build system. 36b4faf480SDick Olsson# This variable is set to the default python3 interpreter in the user's 37b4faf480SDick Olsson# path. But build environments that require more explicit control can 38b4faf480SDick Olsson# set the path to a specific interpreter through this variable. 39b4faf480SDick OlssonPYTHON3 ?= python3 40b4faf480SDick Olsson 413f17b838SEtienne Carriere# Define DEBUG=1 to compile without optimization (forces -O0) 42b0104773SPascal Brand# DEBUG=1 430e6830baSEtienne Carriereifeq ($(DEBUG),1) 440e6830baSEtienne Carriere# For backwards compatibility 450e6830baSEtienne Carriere$(call force,CFG_CC_OPT_LEVEL,0) 460e6830baSEtienne Carriere$(call force,CFG_DEBUG_INFO,y) 470e6830baSEtienne Carriereendif 480e6830baSEtienne Carriere 490e6830baSEtienne Carriere# CFG_CC_OPT_LEVEL sets compiler optimization level passed with -O directive. 500e6830baSEtienne Carriere# Optimize for size by default, usually gives good performance too. 510e6830baSEtienne CarriereCFG_CC_OPT_LEVEL ?= s 520e6830baSEtienne Carriere 530e6830baSEtienne Carriere# Enabling CFG_DEBUG_INFO makes debug information embedded in core. 540e6830baSEtienne CarriereCFG_DEBUG_INFO ?= y 55b0104773SPascal Brand 564ec2358eSJerome Forissier# If y, enable debug features of the TEE core (assertions and lock checks 574ec2358eSJerome Forissier# are enabled, panic and assert messages are more verbose, data and prefetch 584ec2358eSJerome Forissier# aborts show a stack dump). When disabled, the NDEBUG directive is defined 594ec2358eSJerome Forissier# so assertions are disabled. 604ec2358eSJerome ForissierCFG_TEE_CORE_DEBUG ?= y 61b0104773SPascal Brand 623f58e4ecSOvidiu Mihalachi# Log levels for the TEE core. Defines which core messages are displayed 633f58e4ecSOvidiu Mihalachi# on the secure console. Disabling core log (level set to 0) also disables 643f58e4ecSOvidiu Mihalachi# logs from the TAs. 6509ca9f8bSJerome Forissier# 0: none 6609ca9f8bSJerome Forissier# 1: error 6714c68b3cSJerome Forissier# 2: error + info 6814c68b3cSJerome Forissier# 3: error + info + debug 6914c68b3cSJerome Forissier# 4: error + info + debug + flow 7014c68b3cSJerome ForissierCFG_TEE_CORE_LOG_LEVEL ?= 2 713f58e4ecSOvidiu Mihalachi 723f58e4ecSOvidiu Mihalachi# TA log level 733f58e4ecSOvidiu Mihalachi# If user-mode library libutils.a is built with CFG_TEE_TA_LOG_LEVEL=0, 743f58e4ecSOvidiu Mihalachi# TA tracing is disabled regardless of the value of CFG_TEE_TA_LOG_LEVEL 753f58e4ecSOvidiu Mihalachi# when the TA is built. 76e0042c88SPascal BrandCFG_TEE_TA_LOG_LEVEL ?= 1 77b0104773SPascal Brand 787c876f12SPascal Brand# TA enablement 797c876f12SPascal Brand# When defined to "y", TA traces are output according to 807c876f12SPascal Brand# CFG_TEE_TA_LOG_LEVEL. Otherwise, they are not output at all 817c876f12SPascal BrandCFG_TEE_CORE_TA_TRACE ?= y 82b0104773SPascal Brand 838c8e1441SJerome Forissier# If y, enable the memory leak detection feature in the bget memory allocator. 848c8e1441SJerome Forissier# When this feature is enabled, calling mdbg_check(1) will print a list of all 858c8e1441SJerome Forissier# the currently allocated buffers and the location of the allocation (file and 868c8e1441SJerome Forissier# line number). 878c8e1441SJerome Forissier# Note: make sure the log level is high enough for the messages to show up on 888c8e1441SJerome Forissier# the secure console! For instance: 898c8e1441SJerome Forissier# - To debug user-mode (TA) allocations: build OP-TEE *and* the TA with: 908c8e1441SJerome Forissier# $ make CFG_TEE_TA_MALLOC_DEBUG=y CFG_TEE_TA_LOG_LEVEL=3 918c8e1441SJerome Forissier# - To debug TEE core allocations: build OP-TEE with: 928c8e1441SJerome Forissier# $ make CFG_TEE_CORE_MALLOC_DEBUG=y CFG_TEE_CORE_LOG_LEVEL=3 930fcbddd4SSY ChiuCFG_TEE_CORE_MALLOC_DEBUG ?= n 940fcbddd4SSY ChiuCFG_TEE_TA_MALLOC_DEBUG ?= n 95c2ce4186SJens Wiklander# Prints an error message and dumps the stack on failed memory allocations 96c2ce4186SJens Wiklander# using malloc() and friends. 97c2ce4186SJens WiklanderCFG_CORE_DUMP_OOM ?= $(CFG_TEE_CORE_MALLOC_DEBUG) 980fcbddd4SSY Chiu 992bfab756SJerome Forissier# Mask to select which messages are prefixed with long debugging information 10064fad262SVolodymyr Babchuk# (severity, core ID, thread ID, component name, function name, line number) 10164fad262SVolodymyr Babchuk# based on the message level. If BIT(level) is set, the long prefix is shown. 1022bfab756SJerome Forissier# Otherwise a short prefix is used (severity and component name only). 103f4aa5b11SJerome Forissier# Levels: 0=none 1=error 2=info 3=debug 4=flow 1042bfab756SJerome ForissierCFG_MSG_LONG_PREFIX_MASK ?= 0x1a 105f4aa5b11SJerome Forissier 106120c43adSJerome Forissier# PRNG configuration 1077018ae01SSY Chiu# If CFG_WITH_SOFTWARE_PRNG is enabled, crypto provider provided 1087018ae01SSY Chiu# software PRNG implementation is used. 109391a3854SAndrew Davis# Otherwise, you need to implement hw_get_random_bytes() for your platform 1107018ae01SSY ChiuCFG_WITH_SOFTWARE_PRNG ?= y 111120c43adSJerome Forissier 112120c43adSJerome Forissier# Number of threads 113120c43adSJerome ForissierCFG_NUM_THREADS ?= 2 114ab35d7adSCedric Chaumont 115ab35d7adSCedric Chaumont# API implementation version 116ab35d7adSCedric ChaumontCFG_TEE_API_VERSION ?= GPD-1.1-dev 117ab35d7adSCedric Chaumont 118ab35d7adSCedric Chaumont# Implementation description (implementation-dependent) 119ab35d7adSCedric ChaumontCFG_TEE_IMPL_DESCR ?= OPTEE 120ab35d7adSCedric Chaumont 12129cff5cfSJerome Forissier# Should OPTEE_SMC_CALL_GET_OS_REVISION return a build identifier to Normal 12229cff5cfSJerome Forissier# World? 12329cff5cfSJerome ForissierCFG_OS_REV_REPORTS_GIT_SHA1 ?= y 12429cff5cfSJerome Forissier 12535c507f2SJerome Forissier# The following values are not extracted from the "git describe" output because 12635c507f2SJerome Forissier# we might be outside of a Git environment, or the tree may have been cloned 12735c507f2SJerome Forissier# with limited depth not including any tag, so there is really no guarantee 12835c507f2SJerome Forissier# that TEE_IMPL_VERSION contains the major and minor revision numbers. 129a83aec29SJerome ForissierCFG_OPTEE_REVISION_MAJOR ?= 3 1308e74d476SJens WiklanderCFG_OPTEE_REVISION_MINOR ?= 20 1313bfa418bSJerome ForissierCFG_OPTEE_REVISION_EXTRA ?= 132ab35d7adSCedric Chaumont 13348ca43e8SJerome Forissier# Trusted OS implementation version 13448ca43e8SJerome ForissierTEE_IMPL_VERSION ?= $(shell git describe --always --dirty=-dev 2>/dev/null || \ 1353bfa418bSJerome Forissier echo Unknown_$(CFG_OPTEE_REVISION_MAJOR).$(CFG_OPTEE_REVISION_MINOR))$(CFG_OPTEE_REVISION_EXTRA) 13648ca43e8SJerome Forissierifeq ($(CFG_OS_REV_REPORTS_GIT_SHA1),y) 13748ca43e8SJerome ForissierTEE_IMPL_GIT_SHA1 := 0x$(shell git rev-parse --short=8 HEAD 2>/dev/null || echo 0) 13848ca43e8SJerome Forissierelse 13948ca43e8SJerome ForissierTEE_IMPL_GIT_SHA1 := 0x0 14048ca43e8SJerome Forissierendif 14148ca43e8SJerome Forissier 142ab35d7adSCedric Chaumont# Trusted OS implementation manufacturer name 143ab35d7adSCedric ChaumontCFG_TEE_MANUFACTURER ?= LINARO 144ab35d7adSCedric Chaumont 145ab35d7adSCedric Chaumont# Trusted firmware version 146ab35d7adSCedric ChaumontCFG_TEE_FW_IMPL_VERSION ?= FW_IMPL_UNDEF 147ab35d7adSCedric Chaumont 148ab35d7adSCedric Chaumont# Trusted OS implementation manufacturer name 149ab35d7adSCedric ChaumontCFG_TEE_FW_MANUFACTURER ?= FW_MAN_UNDEF 150ab35d7adSCedric Chaumont 151b44708c1SJerome Forissier# Rich Execution Environment (REE) file system support: normal world OS 152b44708c1SJerome Forissier# provides the actual storage. 153b44708c1SJerome Forissier# This is the default FS when enabled (i.e., the one used when 154b44708c1SJerome Forissier# TEE_STORAGE_PRIVATE is passed to the trusted storage API) 155b44708c1SJerome ForissierCFG_REE_FS ?= y 156bc420748SJens Wiklander 15788e6e089SJerome Forissier# RPMB file system support 15888e6e089SJerome ForissierCFG_RPMB_FS ?= n 15988e6e089SJerome Forissier 160f5411aafSJudy Wang# Enable roll-back protection of REE file system using RPMB. 161f5411aafSJudy Wang# Roll-back protection only works if CFG_RPMB_FS = y. 162f5411aafSJudy WangCFG_REE_FS_INTEGRITY_RPMB ?= $(CFG_RPMB_FS) 163f5411aafSJudy Wang$(eval $(call cfg-depends-all,CFG_REE_FS_INTEGRITY_RPMB,CFG_RPMB_FS)) 164f5411aafSJudy Wang 16588e6e089SJerome Forissier# Device identifier used when CFG_RPMB_FS = y. 16688e6e089SJerome Forissier# The exact meaning of this value is platform-dependent. On Linux, the 16788e6e089SJerome Forissier# tee-supplicant process will open /dev/mmcblk<id>rpmb 16888e6e089SJerome ForissierCFG_RPMB_FS_DEV_ID ?= 0 16988e6e089SJerome Forissier 1707d97159bSManuel Huber# This config variable determines the number of entries read in from RPMB at 1717d97159bSManuel Huber# once whenever a function traverses the RPMB FS. Increasing the default value 1727d97159bSManuel Huber# has the following consequences: 1737d97159bSManuel Huber# - More memory required on heap. A single FAT entry currently has a size of 1747d97159bSManuel Huber# 256 bytes. 1757d97159bSManuel Huber# - Potentially significant speed-ups for RPMB I/O. Depending on how many 1767d97159bSManuel Huber# entries a function needs to traverse, the number of time-consuming RPMB 1777d97159bSManuel Huber# read-in operations can be reduced. 1787d97159bSManuel Huber# Chosing a proper value is both platform- (available memory) and use-case- 1797d97159bSManuel Huber# dependent (potential number of FAT fs entries), so overwrite in platform 1807d97159bSManuel Huber# config files 1817d97159bSManuel HuberCFG_RPMB_FS_RD_ENTRIES ?= 8 1827d97159bSManuel Huber 1835f68d784SManuel Huber# Enables caching of FAT FS entries when set to a value greater than zero. 1845f68d784SManuel Huber# When enabled, the cache stores the first 'CFG_RPMB_FS_CACHE_ENTRIES' FAT FS 1855f68d784SManuel Huber# entries. The cache is populated when FAT FS entries are initially read in. 1865f68d784SManuel Huber# When traversing the FAT FS entries, we read from the cache instead of reading 1875f68d784SManuel Huber# in the entries from RPMB storage. Consequently, when a FAT FS entry is 1885f68d784SManuel Huber# written, the cache is updated. In scenarios where an estimate of the number 1895f68d784SManuel Huber# of FAT FS entries can be made, the cache may be specifically tailored to 1905f68d784SManuel Huber# store all entries. The caching can improve RPMB I/O at the cost 1915f68d784SManuel Huber# of additional memory. 1925f68d784SManuel Huber# Without caching, we temporarily require 1935f68d784SManuel Huber# CFG_RPMB_FS_RD_ENTRIES*sizeof(struct rpmb_fat_entry) bytes of heap memory 1945f68d784SManuel Huber# while traversing the FAT FS (e.g. in read_fat). 1955f68d784SManuel Huber# For example 8*256 bytes = 2kB while in read_fat. 1965f68d784SManuel Huber# With caching, we constantly require up to 1975f68d784SManuel Huber# CFG_RPMB_FS_CACHE_ENTRIES*sizeof(struct rpmb_fat_entry) bytes of heap memory 1985f68d784SManuel Huber# depending on how many elements are in the cache, and additional temporary 1995f68d784SManuel Huber# CFG_RPMB_FS_RD_ENTRIES*sizeof(struct rpmb_fat_entry) bytes of heap memory 2005f68d784SManuel Huber# in case the cache is too small to hold all elements when traversing. 2015f68d784SManuel HuberCFG_RPMB_FS_CACHE_ENTRIES ?= 0 2025f68d784SManuel Huber 2038443e88eSEtienne Carriere# Print RPMB data frames sent to and received from the RPMB device 2048443e88eSEtienne CarriereCFG_RPMB_FS_DEBUG_DATA ?= n 2058443e88eSEtienne Carriere 2068443e88eSEtienne Carriere# Clear RPMB content at cold boot 2078443e88eSEtienne CarriereCFG_RPMB_RESET_FAT ?= n 2088443e88eSEtienne Carriere 2098443e88eSEtienne Carriere# Use a hard coded RPMB key instead of deriving it from the platform HUK 2108443e88eSEtienne CarriereCFG_RPMB_TESTKEY ?= n 2118443e88eSEtienne Carriere 212ed1993b7SJerome Forissier# Enables RPMB key programming by the TEE, in case the RPMB partition has not 213ed1993b7SJerome Forissier# been configured yet. 214ed1993b7SJerome Forissier# !!! Security warning !!! 215ed1993b7SJerome Forissier# Do *NOT* enable this in product builds, as doing so would allow the TEE to 216ed1993b7SJerome Forissier# leak the RPMB key. 217ed1993b7SJerome Forissier# This option is useful in the following situations: 218ed1993b7SJerome Forissier# - Testing 219ed1993b7SJerome Forissier# - RPMB key provisioning in a controlled environment (factory setup) 220ed1993b7SJerome ForissierCFG_RPMB_WRITE_KEY ?= n 221ed1993b7SJerome Forissier 22207fda6c7SJerome Forissier_CFG_WITH_SECURE_STORAGE := $(call cfg-one-enabled,CFG_REE_FS CFG_RPMB_FS) 22307fda6c7SJerome Forissier 2243ecd96bbSVesa Jääskeläinen# Signing key for OP-TEE TA's 2253ecd96bbSVesa Jääskeläinen# When performing external HSM signing for TA's TA_SIGN_KEY can be set to dummy 2263ecd96bbSVesa Jääskeläinen# key and then set TA_PUBLIC_KEY to match public key from the HSM. 2273ecd96bbSVesa Jääskeläinen# TA_PUBLIC_KEY's public key will be embedded into OP-TEE OS. 228bc420748SJens WiklanderTA_SIGN_KEY ?= keys/default_ta.pem 2293ecd96bbSVesa JääskeläinenTA_PUBLIC_KEY ?= $(TA_SIGN_KEY) 230c4553de7SJerome Forissier 231c34d0d91SJens Wiklander# Subkeys is a complement to the normal TA_SIGN_KEY where a subkey is used 232c34d0d91SJens Wiklander# to verify a TA instead. To sign a TA using a previously prepared subkey 233c34d0d91SJens Wiklander# two new options are added, TA_SUBKEY_ARGS and TA_SUBKEY_DEPS. It is 234c34d0d91SJens Wiklander# typically used by assigning the following in the TA Makefile: 235c34d0d91SJens Wiklander# BINARY = <TA-uuid-string> 236c34d0d91SJens Wiklander# TA_SIGN_KEY = subkey.pem 237c34d0d91SJens Wiklander# TA_SUBKEY_ARGS = --subkey subkey.bin --name subkey_ta 238c34d0d91SJens Wiklander# TA_SUBKEY_DEPS = subkey.bin 239c34d0d91SJens Wiklander# See the documentation for more details on subkeys. 240c34d0d91SJens Wiklander 241c4553de7SJerome Forissier# Include lib/libutils/isoc in the build? Most platforms need this, but some 242c4553de7SJerome Forissier# may not because they obtain the isoc functions from elsewhere 243c4553de7SJerome ForissierCFG_LIBUTILS_WITH_ISOC ?= y 244fce4cfa1SJens Wiklander 2450de9a5fbSJens Wiklander# Enables floating point support for user TAs 2460de9a5fbSJens Wiklander# ARM32: EABI defines both a soft-float ABI and a hard-float ABI, 2470de9a5fbSJens Wiklander# hard-float is basically a super set of soft-float. Hard-float 2480de9a5fbSJens Wiklander# requires all the support routines provided for soft-float, but the 2490de9a5fbSJens Wiklander# compiler may choose to optimize to not use some of them and use 2500de9a5fbSJens Wiklander# the floating-point registers instead. 2510de9a5fbSJens Wiklander# ARM64: EABI doesn't define a soft-float ABI, everything is hard-float (or 2520de9a5fbSJens Wiklander# nothing with ` -mgeneral-regs-only`) 2530de9a5fbSJens Wiklander# With CFG_TA_FLOAT_SUPPORT enabled TA code is free use floating point types 2540de9a5fbSJens WiklanderCFG_TA_FLOAT_SUPPORT ?= y 255923c1f34SJens Wiklander 2567411e0e1SJerome Forissier# Stack unwinding: print a stack dump to the console on core or TA abort, or 2577411e0e1SJerome Forissier# when a TA panics. 25831a29642SJerome Forissier# If CFG_UNWIND is enabled, both the kernel and user mode call stacks can be 25931a29642SJerome Forissier# unwound (not paged TAs, however). 26031a29642SJerome Forissier# Note that 32-bit ARM code needs unwind tables for this to work, so enabling 26131a29642SJerome Forissier# this option will increase the size of the 32-bit TEE binary by a few KB. 26231a29642SJerome Forissier# Similarly, TAs have to be compiled with -funwind-tables (default when the 26331a29642SJerome Forissier# option is set) otherwise they can't be unwound. 2647411e0e1SJerome Forissier# Warning: since the unwind sequence for user-mode (TA) code is implemented in 2657411e0e1SJerome Forissier# the privileged layer of OP-TEE, enabling this feature will weaken the 2667411e0e1SJerome Forissier# user/kernel isolation. Therefore it should be disabled in release builds. 2673f17b838SEtienne Carriereifeq ($(CFG_TEE_CORE_DEBUG),y) 26831a29642SJerome ForissierCFG_UNWIND ?= y 269923c1f34SJens Wiklanderendif 2706fbac37eSJens Wiklander 2716fbac37eSJens Wiklander# Enable support for dynamically loaded user TAs 2726fbac37eSJens WiklanderCFG_WITH_USER_TA ?= y 2732a142248SJens Wiklander 274*2c20168bSBalsam CHIHI# Build user TAs included in this source tree 275*2c20168bSBalsam CHIHICFG_BUILD_IN_TREE_TA ?= y 276*2c20168bSBalsam CHIHI 27724d49094SJerome Forissier# Choosing the architecture(s) of user-mode libraries (used by TAs) 27824d49094SJerome Forissier# 27924d49094SJerome Forissier# Platforms may define a list of supported architectures for user-mode code 28024d49094SJerome Forissier# by setting $(supported-ta-targets). Valid values are "ta_arm32", "ta_arm64", 28124d49094SJerome Forissier# "ta_arm32 ta_arm64" and "ta_arm64 ta_arm32". 28224d49094SJerome Forissier# $(supported-ta-targets) defaults to "ta_arm32" when the TEE core is 32-bits, 28324d49094SJerome Forissier# and "ta_arm32 ta_arm64" when it is 64-bits (that is, when CFG_ARM64_core=y). 28424d49094SJerome Forissier# The first entry in $(supported-ta-targets) has a special role, see 28524d49094SJerome Forissier# CFG_USER_TA_TARGET_<ta-name> below. 28624d49094SJerome Forissier# 28724d49094SJerome Forissier# CFG_USER_TA_TARGETS may be defined to restrict $(supported-ta-targets) or 28824d49094SJerome Forissier# change the order of the values. 28924d49094SJerome Forissier# 29024d49094SJerome Forissier# The list of TA architectures is ultimately stored in $(ta-targets). 29124d49094SJerome Forissier 29224d49094SJerome Forissier# CFG_USER_TA_TARGET_<ta-name> (for example, CFG_USER_TA_TARGET_avb), if 29324d49094SJerome Forissier# defined, selects the unique TA architecture mode for building the in-tree TA 29424d49094SJerome Forissier# <ta-name>. Can be either ta_arm32 or ta_arm64. 29524d49094SJerome Forissier# By default, in-tree TAs are built using the first architecture specified in 29624d49094SJerome Forissier# $(ta-targets). 29724d49094SJerome Forissier 2987dfff131SJerome Forissier# Address Space Layout Randomization for user-mode Trusted Applications 2997dfff131SJerome Forissier# 3007dfff131SJerome Forissier# When this flag is enabled, the ELF loader will introduce a random offset 3017dfff131SJerome Forissier# when mapping the application in user space. ASLR makes the exploitation of 3027dfff131SJerome Forissier# memory corruption vulnerabilities more difficult. 30387372da4SJens WiklanderCFG_TA_ASLR ?= y 3047dfff131SJerome Forissier 3057dfff131SJerome Forissier# How much ASLR may shift the base address (in pages). The base address is 3067dfff131SJerome Forissier# randomly shifted by an integer number of pages comprised between these two 3077dfff131SJerome Forissier# values. Bigger ranges are more secure because they make the addresses harder 3087dfff131SJerome Forissier# to guess at the expense of using more memory for the page tables. 3097dfff131SJerome ForissierCFG_TA_ASLR_MIN_OFFSET_PAGES ?= 0 3107dfff131SJerome ForissierCFG_TA_ASLR_MAX_OFFSET_PAGES ?= 128 3117dfff131SJerome Forissier 312170e9084SJens Wiklander# Address Space Layout Randomization for TEE Core 313170e9084SJens Wiklander# 314170e9084SJens Wiklander# When this flag is enabled, the early init code will introduce a random 315170e9084SJens Wiklander# offset when mapping TEE Core. ASLR makes the exploitation of memory 316170e9084SJens Wiklander# corruption vulnerabilities more difficult. 31787372da4SJens WiklanderCFG_CORE_ASLR ?= y 318170e9084SJens Wiklander 31945507d10SKhoa Hoang# Stack Protection for TEE Core 32045507d10SKhoa Hoang# This flag enables the compiler stack protection mechanisms -fstack-protector. 32145507d10SKhoa Hoang# It will check the stack canary value before returning from a function to 32245507d10SKhoa Hoang# prevent buffer overflow attacks. Stack protector canary logic will be added 32345507d10SKhoa Hoang# for vulnerable functions that contain: 32445507d10SKhoa Hoang# - A character array larger than 8 bytes. 32545507d10SKhoa Hoang# - An 8-bit integer array larger than 8 bytes. 32645507d10SKhoa Hoang# - A call to alloca() with either a variable size or a constant size bigger 32745507d10SKhoa Hoang# than 8 bytes. 32845507d10SKhoa HoangCFG_CORE_STACK_PROTECTOR ?= n 32945507d10SKhoa Hoang# This enable stack protector flag -fstack-protector-strong. Stack protector 33045507d10SKhoa Hoang# canary logic will be added for vulnerable functions that contain: 33145507d10SKhoa Hoang# - An array of any size and type. 33245507d10SKhoa Hoang# - A call to alloca(). 33345507d10SKhoa Hoang# - A local variable that has its address taken. 33445507d10SKhoa HoangCFG_CORE_STACK_PROTECTOR_STRONG ?= y 33545507d10SKhoa Hoang# This enable stack protector flag -fstack-protector-all. Stack protector canary 33645507d10SKhoa Hoang# logic will be added to all functions regardless of their vulnerability. 33745507d10SKhoa HoangCFG_CORE_STACK_PROTECTOR_ALL ?= n 33845507d10SKhoa Hoang# Stack Protection for TA 33945507d10SKhoa HoangCFG_TA_STACK_PROTECTOR ?= n 34045507d10SKhoa HoangCFG_TA_STACK_PROTECTOR_STRONG ?= y 34145507d10SKhoa HoangCFG_TA_STACK_PROTECTOR_ALL ?= n 34245507d10SKhoa Hoang 34345507d10SKhoa Hoang_CFG_CORE_STACK_PROTECTOR := $(call cfg-one-enabled, CFG_CORE_STACK_PROTECTOR \ 34445507d10SKhoa Hoang CFG_CORE_STACK_PROTECTOR_STRONG \ 34545507d10SKhoa Hoang CFG_CORE_STACK_PROTECTOR_ALL) 34645507d10SKhoa Hoang_CFG_TA_STACK_PROTECTOR := $(call cfg-one-enabled, CFG_TA_STACK_PROTECTOR \ 34745507d10SKhoa Hoang CFG_TA_STACK_PROTECTOR_STRONG \ 34845507d10SKhoa Hoang CFG_TA_STACK_PROTECTOR_ALL) 34945507d10SKhoa Hoang 350ee664c19SJerome Forissier# Load user TAs from the REE filesystem via tee-supplicant 351ee664c19SJerome ForissierCFG_REE_FS_TA ?= y 352ee664c19SJerome Forissier 3537db24ad6SJerome Forissier# Pre-authentication of TA binaries loaded from the REE filesystem 3547db24ad6SJerome Forissier# 3557db24ad6SJerome Forissier# - If CFG_REE_FS_TA_BUFFERED=y: load TA binary into a temporary buffer in the 3567db24ad6SJerome Forissier# "Secure DDR" pool, check the signature, then process the file only if it is 3577db24ad6SJerome Forissier# valid. 3587db24ad6SJerome Forissier# - If disabled: hash the binaries as they are being processed and verify the 3597db24ad6SJerome Forissier# signature as a last step. 360e6e68745SJerome ForissierCFG_REE_FS_TA_BUFFERED ?= n 3617db24ad6SJerome Forissier$(eval $(call cfg-depends-all,CFG_REE_FS_TA_BUFFERED,CFG_REE_FS_TA)) 3627db24ad6SJerome Forissier 363300faa62SEtienne Carriere# When CFG_REE_FS=y and CFG_RPMB_FS=y: 364300faa62SEtienne Carriere# Allow secure storage in the REE FS to be entirely deleted without causing 365300faa62SEtienne Carriere# anti-rollback errors. That is, rm /data/tee/dirf.db or rm -rf /data/tee (or 366300faa62SEtienne Carriere# whatever path is configured in tee-supplicant as CFG_TEE_FS_PARENT_PATH) 367300faa62SEtienne Carriere# can be used to reset the secure storage to a clean, empty state. 368300faa62SEtienne Carriere# Typically used for testing only since it weakens storage security. 369300faa62SEtienne CarriereCFG_REE_FS_ALLOW_RESET ?= n 370300faa62SEtienne Carriere 371d0c63614SJerome Forissier# Support for loading user TAs from a special section in the TEE binary. 372d0c63614SJerome Forissier# Such TAs are available even before tee-supplicant is available (hence their 373d0c63614SJerome Forissier# name), but note that many services exported to TAs may need tee-supplicant, 374d0c63614SJerome Forissier# so early use is limited to a subset of the TEE Internal Core API (crypto...) 375d0c63614SJerome Forissier# To use this feature, set EARLY_TA_PATHS to the paths to one or more TA ELF 376d0c63614SJerome Forissier# file(s). For example: 377d0c63614SJerome Forissier# $ make ... \ 378d0c63614SJerome Forissier# EARLY_TA_PATHS="path/to/8aaaf200-2450-11e4-abe2-0002a5d5c51b.stripped.elf \ 379d0c63614SJerome Forissier# path/to/cb3e5ba0-adf1-11e0-998b-0002a5d5c51b.stripped.elf" 380d0c63614SJerome Forissier# Typical build steps: 381d0c63614SJerome Forissier# $ make ta_dev_kit CFG_EARLY_TA=y # Create the dev kit (user mode libraries, 382d0c63614SJerome Forissier# # headers, makefiles), ready to build TAs. 383d0c63614SJerome Forissier# # CFG_EARLY_TA=y is optional, it prevents 384d0c63614SJerome Forissier# # later library recompilations. 385d0c63614SJerome Forissier# <build some TAs> 386d0c63614SJerome Forissier# $ make EARLY_TA_PATHS=<paths> # Build OP-TEE and embbed the TA(s) 3873638ea32SJens Wiklander# 3883638ea32SJens Wiklander# Another option is CFG_IN_TREE_EARLY_TAS which is used to point at 3893638ea32SJens Wiklander# in-tree TAs. CFG_IN_TREE_EARLY_TAS is formatted as: 3903638ea32SJens Wiklander# <name-of-ta>/<uuid> 3913638ea32SJens Wiklander# for instance avb/023f8f1a-292a-432b-8fc4-de8471358067 3923638ea32SJens Wiklanderifneq ($(EARLY_TA_PATHS)$(CFG_IN_TREE_EARLY_TAS),) 393d0c63614SJerome Forissier$(call force,CFG_EARLY_TA,y) 394d0c63614SJerome Forissierelse 395d0c63614SJerome ForissierCFG_EARLY_TA ?= n 396d0c63614SJerome Forissierendif 397dea46be3SJelle Sels 39805ee04a8SJelle Selsifeq ($(CFG_EARLY_TA),y) 39905ee04a8SJelle Sels$(call force,CFG_EMBEDDED_TS,y) 40005ee04a8SJelle Selsendif 40105ee04a8SJelle Sels 402dea46be3SJelle Selsifneq ($(SP_PATHS),) 403dea46be3SJelle Sels$(call force,CFG_EMBEDDED_TS,y) 404dea46be3SJelle Selselse 405dea46be3SJelle SelsCFG_SECURE_PARTITION ?= n 406dea46be3SJelle Selsendif 407dea46be3SJelle Sels 40805ee04a8SJelle Selsifeq ($(CFG_SECURE_PARTITION),y) 40905ee04a8SJelle Sels$(call force,CFG_EMBEDDED_TS,y) 41005ee04a8SJelle Selsendif 41105ee04a8SJelle Sels 412dea46be3SJelle Selsifeq ($(CFG_EMBEDDED_TS),y) 413509a9802SJerome Forissier$(call force,CFG_ZLIB,y) 414509a9802SJerome Forissierendif 415d0c63614SJerome Forissier 416c082c54dSEtienne Carriere# By default the early TAs are compressed in the TEE binary, it is possible to 417c082c54dSEtienne Carriere# not compress them with CFG_EARLY_TA_COMPRESS=n 418c082c54dSEtienne CarriereCFG_EARLY_TA_COMPRESS ?= y 419c082c54dSEtienne Carriere 420a884c935SJens Wiklander# Enable paging, requires SRAM, can't be enabled by default 421a884c935SJens WiklanderCFG_WITH_PAGER ?= n 422a884c935SJens Wiklander 423b757e307SJens Wiklander# Use the pager for user TAs 424b757e307SJens WiklanderCFG_PAGED_USER_TA ?= $(CFG_WITH_PAGER) 425b757e307SJens Wiklander 426b757e307SJens Wiklander# If paging of user TAs, that is, R/W paging default to enable paging of 427b757e307SJens Wiklander# TAG and IV in order to reduce heap usage. 428b757e307SJens WiklanderCFG_CORE_PAGE_TAG_AND_IV ?= $(CFG_PAGED_USER_TA) 429b757e307SJens Wiklander 430ab0df69eSJerome Forissier# Runtime lock dependency checker: ensures that a proper locking hierarchy is 431ab0df69eSJerome Forissier# used in the TEE core when acquiring and releasing mutexes. Any violation will 432ab0df69eSJerome Forissier# cause a panic as soon as the invalid locking condition is detected. If 4332288b071SJerome Forissier# CFG_UNWIND and CFG_LOCKDEP_RECORD_STACK are both enabled, the algorithm 4342288b071SJerome Forissier# records the call stacks when locks are taken, and prints them when a 4352288b071SJerome Forissier# potential deadlock is found. 436ab0df69eSJerome Forissier# Expect a significant performance impact when enabling this. 437ab0df69eSJerome ForissierCFG_LOCKDEP ?= n 4382288b071SJerome ForissierCFG_LOCKDEP_RECORD_STACK ?= y 439ab0df69eSJerome Forissier 440bde8a250SJoakim Bech# BestFit algorithm in bget reduces the fragmentation of the heap when running 441ab0df69eSJerome Forissier# with the pager enabled or lockdep 442ab0df69eSJerome ForissierCFG_CORE_BGET_BESTFIT ?= $(call cfg-one-enabled, CFG_WITH_PAGER CFG_LOCKDEP) 443bde8a250SJoakim Bech 444be715239SJens Wiklander# Enable support for detected undefined behavior in C 4451d171f95SJens Wiklander# Uses a lot of memory, can't be enabled by default 446be715239SJens WiklanderCFG_CORE_SANITIZE_UNDEFINED ?= n 447b908c675SJens Wiklander 4481d171f95SJens Wiklander# Enable Kernel Address sanitizer, has a huge performance impact, uses a 4491d171f95SJens Wiklander# lot of memory and need platform specific adaptations, can't be enabled by 4501d171f95SJens Wiklander# default 4511d171f95SJens WiklanderCFG_CORE_SANITIZE_KADDRESS ?= n 4521d171f95SJens Wiklander 45335e770dfSJerome Forissier# Add stack guards before/after stacks and periodically check them 45435e770dfSJerome ForissierCFG_WITH_STACK_CANARIES ?= y 45535e770dfSJerome Forissier 456e2f03e07SJerome Forissier# Use compiler instrumentation to troubleshoot stack overflows. 457e2f03e07SJerome Forissier# When enabled, most C functions check the stack pointer against the current 458e2f03e07SJerome Forissier# stack limits on entry and panic immediately if it is out of range. 459e2f03e07SJerome ForissierCFG_CORE_DEBUG_CHECK_STACKS ?= n 460e2f03e07SJerome Forissier 461cca7b5ebSJorge Ramirez-Ortiz# Use when the default stack allocations are not sufficient. 462cca7b5ebSJorge Ramirez-OrtizCFG_STACK_THREAD_EXTRA ?= 0 463cca7b5ebSJorge Ramirez-OrtizCFG_STACK_TMP_EXTRA ?= 0 464cca7b5ebSJorge Ramirez-Ortiz 465b908c675SJens Wiklander# Device Tree support 466c95b9511SEtienne Carriere# 467c95b9511SEtienne Carriere# When CFG_DT is enabled core embeds the FDT library (libfdt) allowing 468c95b9511SEtienne Carriere# device tree blob (DTB) parsing from the core. 469c95b9511SEtienne Carriere# 470c95b9511SEtienne Carriere# When CFG_DT is enabled, the TEE _start function expects to find 471c95b9511SEtienne Carriere# the address of a DTB in register X2/R2 provided by the early boot stage 472c95b9511SEtienne Carriere# or value 0 if boot stage provides no DTB. 473c95b9511SEtienne Carriere# 4747c2317a7SGatien Chevallier# When CFG_EXTERNAL_DT is enabled, the external device tree ABI is implemented 4757c2317a7SGatien Chevallier# and the external device tree is expected to be used/modified. Its value 4767c2317a7SGatien Chevallier# defaults to CFG_DT. 4777c2317a7SGatien Chevallier# 478bf31bf10SImre Kis# When CFG_MAP_EXT_DT_SECURE is enabled the external device tree is expected to 479bf31bf10SImre Kis# be in the secure memory. 480bf31bf10SImre Kis# 481c95b9511SEtienne Carriere# When CFG_EMBED_DTB is enabled, CFG_EMBED_DTB_SOURCE_FILE shall define the 482c95b9511SEtienne Carriere# relative path of a DTS file located in core/arch/$(ARCH)/dts. 483c95b9511SEtienne Carriere# The DTS file is compiled into a DTB file which content is embedded in a 484c95b9511SEtienne Carriere# read-only section of the core. 485c95b9511SEtienne Carriereifneq ($(strip $(CFG_EMBED_DTB_SOURCE_FILE)),) 486c95b9511SEtienne CarriereCFG_EMBED_DTB ?= y 487c95b9511SEtienne Carriereendif 488c95b9511SEtienne Carriereifeq ($(CFG_EMBED_DTB),y) 489c95b9511SEtienne Carriere$(call force,CFG_DT,y) 490c95b9511SEtienne Carriereendif 491c95b9511SEtienne CarriereCFG_EMBED_DTB ?= n 492b908c675SJens WiklanderCFG_DT ?= n 4937c2317a7SGatien ChevallierCFG_EXTERNAL_DT ?= $(CFG_DT) 494bf31bf10SImre KisCFG_MAP_EXT_DT_SECURE ?= n 495bf31bf10SImre Kisifeq ($(CFG_MAP_EXT_DT_SECURE),y) 496bf31bf10SImre Kis$(call force,CFG_DT,y) 497bf31bf10SImre Kisendif 49876358becSJens Wiklander 49976358becSJens Wiklander# Maximum size of the Device Tree Blob, has to be large enough to allow 50076358becSJens Wiklander# editing of the supplied DTB. 50176358becSJens WiklanderCFG_DTB_MAX_SIZE ?= 0x10000 5024d62e91aSVictor Chong 503c36d2192SBalint Dobszay# Maximum size of the init info data passed to Secure Partitions. 504c36d2192SBalint DobszayCFG_SP_INIT_INFO_MAX_SIZE ?= 0x1000 505c36d2192SBalint Dobszay 5060a3ad9b6SBryan O'Donoghue# Device Tree Overlay support. 507c4544143SClément Léger# CFG_EXTERNAL_DTB_OVERLAY allows to append a DTB overlay into an existing 508c4544143SClément Léger# external DTB. The overlay is created when no valid DTB overlay is found. 509c4544143SClément Léger# CFG_GENERATE_DTB_OVERLAY allows to create a DTB overlay at external 510c4544143SClément Léger# DTB location. 511c4544143SClément Léger# External DTB location (physical address) is provided either by boot 512c4544143SClément Léger# argument arg2 or from CFG_DT_ADDR if defined. 513c4544143SClément Léger# A subsequent boot stage can then merge the generated overlay DTB into a main 5140a3ad9b6SBryan O'Donoghue# DTB using the standard fdt_overlay_apply() method. 5150a3ad9b6SBryan O'DonoghueCFG_EXTERNAL_DTB_OVERLAY ?= n 516c4544143SClément LégerCFG_GENERATE_DTB_OVERLAY ?= n 517c4544143SClément Léger 518c4544143SClément Légerifeq (y-y,$(CFG_EXTERNAL_DTB_OVERLAY)-$(CFG_GENERATE_DTB_OVERLAY)) 519c4544143SClément Léger$(error CFG_EXTERNAL_DTB_OVERLAY and CFG_GENERATE_DTB_OVERLAY are exclusive) 520c4544143SClément Légerendif 521c4544143SClément Léger_CFG_USE_DTB_OVERLAY := $(call cfg-one-enabled,CFG_EXTERNAL_DTB_OVERLAY \ 522c4544143SClément Léger CFG_GENERATE_DTB_OVERLAY) 5230a3ad9b6SBryan O'Donoghue 524313aa2a4SJens Wiklander# All embedded tests are supposed to be disabled by default, this flag 525313aa2a4SJens Wiklander# is used to control the default value of all other embedded tests 526313aa2a4SJens WiklanderCFG_ENABLE_EMBEDDED_TESTS ?= n 527313aa2a4SJens Wiklander 52835964dc9SEtienne Carriere# Enable core self tests and related pseudo TAs 529313aa2a4SJens WiklanderCFG_TEE_CORE_EMBED_INTERNAL_TESTS ?= $(CFG_ENABLE_EMBEDDED_TESTS) 5306d96f208Syanyan-wrs 53127e8d08dSJens Wiklander# Compiles bget_main_test() to be called from a test TA 53227e8d08dSJens WiklanderCFG_TA_BGET_TEST ?= $(CFG_ENABLE_EMBEDDED_TESTS) 53327e8d08dSJens Wiklander 534d783b681SEtienne Carriere# CFG_DT_DRIVER_EMBEDDED_TEST when enabled embedb DT driver probing tests. 535d783b681SEtienne Carriere# This also requires embeddeding a DTB with expected content. 536d783b681SEtienne Carriere# Defautl disable CFG_DRIVERS_CLK_EARLY_PROBE to probe clocks as other drivers. 537d783b681SEtienne Carriere# A probe deferral test mandates CFG_DRIVERS_DT_RECURSIVE_PROBE=n. 538d783b681SEtienne CarriereCFG_DT_DRIVER_EMBEDDED_TEST ?= n 539d783b681SEtienne Carriereifeq ($(CFG_DT_DRIVER_EMBEDDED_TEST),y) 540d783b681SEtienne CarriereCFG_DRIVERS_CLK ?= y 541d783b681SEtienne CarriereCFG_DRIVERS_RSTCTRL ?= y 542d783b681SEtienne CarriereCFG_DRIVERS_CLK_EARLY_PROBE ?= n 543d783b681SEtienne Carriere$(call force,CFG_DRIVERS_DT_RECURSIVE_PROBE,n,Mandated by CFG_DT_DRIVER_EMBEDDED_TEST) 544d783b681SEtienne Carriereendif 545d783b681SEtienne Carriere 5464101c34aSEtienne Carriere# CFG_DRIVERS_DT_RECURSIVE_PROBE when enabled forces a recursive subnode 5474101c34aSEtienne Carriere# parsing in the embedded DTB for driver probing. The alternative is 5484101c34aSEtienne Carriere# an exploration based on compatible drivers found. It is default disabled. 5494101c34aSEtienne CarriereCFG_DRIVERS_DT_RECURSIVE_PROBE ?= n 5504101c34aSEtienne Carriere 5516d96f208Syanyan-wrs# This option enables OP-TEE to respond to SMP boot request: the Rich OS 5526d96f208Syanyan-wrs# issues this to request OP-TEE to release secondaries cores out of reset, 5536d96f208Syanyan-wrs# with specific core number and non-secure entry address. 5546d96f208Syanyan-wrsCFG_BOOT_SECONDARY_REQUEST ?= n 5556d96f208Syanyan-wrs 556f5f914aaSJens Wiklander# Default heap size for Core, 64 kB 557f5f914aaSJens WiklanderCFG_CORE_HEAP_SIZE ?= 65536 558f3bb2312SJerome Forissier 559386fc264SVolodymyr Babchuk# Default size of nexus heap. 16 kB. Used only if CFG_VIRTUALIZATION 560386fc264SVolodymyr Babchuk# is enabled 561386fc264SVolodymyr BabchukCFG_CORE_NEX_HEAP_SIZE ?= 16384 562386fc264SVolodymyr Babchuk 563883c4be3SJerome Forissier# TA profiling. 564883c4be3SJerome Forissier# When this option is enabled, OP-TEE can execute Trusted Applications 565883c4be3SJerome Forissier# instrumented with GCC's -pg flag and will output profiling information 566883c4be3SJerome Forissier# in gmon.out format to /tmp/gmon-<ta_uuid>.out (path is defined in 567883c4be3SJerome Forissier# tee-supplicant) 5688800b01dSJerome Forissier# Note: this does not work well with shared libraries at the moment for a 5698800b01dSJerome Forissier# couple of reasons: 5708800b01dSJerome Forissier# 1. The profiling code assumes a unique executable section in the TA VA space. 5718800b01dSJerome Forissier# 2. The code used to detect at run time if the TA is intrumented assumes that 5728800b01dSJerome Forissier# the TA is linked statically. 573883c4be3SJerome ForissierCFG_TA_GPROF_SUPPORT ?= n 574f3bb2312SJerome Forissier 575b02ae382SSumit Garg# TA function tracing. 576b02ae382SSumit Garg# When this option is enabled, OP-TEE can execute Trusted Applications 577b02ae382SSumit Garg# instrumented with GCC's -pg flag and will output function tracing 578b02ae382SSumit Garg# information in ftrace.out format to /tmp/ftrace-<ta_uuid>.out (path is 579b02ae382SSumit Garg# defined in tee-supplicant) 580099918f6SSumit GargCFG_FTRACE_SUPPORT ?= n 581b02ae382SSumit Garg 582d408db99SJerome Forissier# How to make room when the function tracing buffer is full? 583d408db99SJerome Forissier# 'shift': shift the previously stored data by the amount needed in order 584d408db99SJerome Forissier# to always keep the latest logs (slower, especially with big buffer sizes) 585d408db99SJerome Forissier# 'wrap': discard the previous data and start at the beginning of the buffer 586d408db99SJerome Forissier# again (fast, but can result in a mostly empty buffer) 587d408db99SJerome Forissier# 'stop': stop logging new data 588d408db99SJerome ForissierCFG_FTRACE_BUF_WHEN_FULL ?= shift 589d408db99SJerome Forissier$(call cfg-check-value,FTRACE_BUF_WHEN_FULL,shift stop wrap) 590d408db99SJerome Forissier$(call force,_CFG_FTRACE_BUF_WHEN_FULL_$(CFG_FTRACE_BUF_WHEN_FULL),y) 591d408db99SJerome Forissier 592d1492098SJerome Forissier# Function tracing: unit to be used when displaying durations 593d1492098SJerome Forissier# 0: always display durations in microseconds 594d1492098SJerome Forissier# >0: if duration is greater or equal to the specified value (in microseconds), 595d1492098SJerome Forissier# display it in milliseconds 596d1492098SJerome ForissierCFG_FTRACE_US_MS ?= 10000 597d1492098SJerome Forissier 598099918f6SSumit Garg# Core syscall function tracing. 599099918f6SSumit Garg# When this option is enabled, OP-TEE core is instrumented with GCC's 600099918f6SSumit Garg# -pg flag and will output syscall function graph in user TA ftrace 601099918f6SSumit Garg# buffer 602099918f6SSumit GargCFG_SYSCALL_FTRACE ?= n 603099918f6SSumit Garg$(call cfg-depends-all,CFG_SYSCALL_FTRACE,CFG_FTRACE_SUPPORT) 604099918f6SSumit Garg 605883c4be3SJerome Forissier# Enable to compile user TA libraries with profiling (-pg). 606099918f6SSumit Garg# Depends on CFG_TA_GPROF_SUPPORT or CFG_FTRACE_SUPPORT. 607735565dbSSumit GargCFG_ULIBS_MCOUNT ?= n 6080f8adafeSJerome Forissier# Profiling/tracing of syscall wrapper (utee_*) 6090f8adafeSJerome ForissierCFG_SYSCALL_WRAPPERS_MCOUNT ?= $(CFG_ULIBS_MCOUNT) 610883c4be3SJerome Forissier 6110f8adafeSJerome Forissierifeq (y,$(filter y,$(CFG_ULIBS_MCOUNT) $(CFG_SYSCALL_WRAPPERS_MCOUNT))) 612099918f6SSumit Gargifeq (,$(filter y,$(CFG_TA_GPROF_SUPPORT) $(CFG_FTRACE_SUPPORT))) 613883c4be3SJerome Forissier$(error Cannot instrument user libraries if user mode profiling is disabled) 614f3bb2312SJerome Forissierendif 615f3bb2312SJerome Forissierendif 616cb0b5954SJens Wiklander 6177fb525f1SJerome Forissier# Build libutee, libutils, libmbedtls as shared libraries. 61864718c93SJerome Forissier# - Static libraries are still generated when this is enabled, but TAs will use 61964718c93SJerome Forissier# the shared libraries unless explicitly linked with the -static flag. 62064718c93SJerome Forissier# - Shared libraries are made of two files: for example, libutee is 62164718c93SJerome Forissier# libutee.so and 527f1a47-b92c-4a74-95bd-72f19f4a6f74.ta. The '.so' file 62264718c93SJerome Forissier# is a totally standard shared object, and should be used to link against. 62364718c93SJerome Forissier# The '.ta' file is a signed version of the '.so' and should be installed 62464718c93SJerome Forissier# in the same way as TAs so that they can be found at runtime. 62564718c93SJerome ForissierCFG_ULIBS_SHARED ?= n 62664718c93SJerome Forissier 62739ef71afSEtienne Carriereifeq (y-y,$(CFG_TA_GPROF_SUPPORT)-$(CFG_ULIBS_SHARED)) 62870aa7511SJerome Forissier$(error CFG_TA_GPROF_SUPPORT and CFG_ULIBS_SHARED are currently incompatible) 62970aa7511SJerome Forissierendif 63070aa7511SJerome Forissier 631cb0b5954SJens Wiklander# CFG_GP_SOCKETS 632cb0b5954SJens Wiklander# Enable Global Platform Sockets support 633cb0b5954SJens WiklanderCFG_GP_SOCKETS ?= y 63480a4e51dSEtienne Carriere 63580a4e51dSEtienne Carriere# Enable Secure Data Path support in OP-TEE core (TA may be invoked with 63680a4e51dSEtienne Carriere# invocation parameters referring to specific secure memories). 63780a4e51dSEtienne CarriereCFG_SECURE_DATA_PATH ?= n 63800da26ecSAndrew F. Davis 639c9720143SJens Wiklander# Enable storage for TAs in secure storage, depends on CFG_REE_FS=y 640c9720143SJens Wiklander# TA binaries are stored encrypted in the REE FS and are protected by 641c9720143SJens Wiklander# metadata in secure storage. 642c9720143SJens WiklanderCFG_SECSTOR_TA ?= $(call cfg-all-enabled,CFG_REE_FS CFG_WITH_USER_TA) 643c9720143SJens Wiklander$(eval $(call cfg-depends-all,CFG_SECSTOR_TA,CFG_REE_FS CFG_WITH_USER_TA)) 644c9720143SJens Wiklander 64530668b28SJens Wiklander# Enable the pseudo TA that managages TA storage in secure storage 64630668b28SJens WiklanderCFG_SECSTOR_TA_MGMT_PTA ?= $(call cfg-all-enabled,CFG_SECSTOR_TA) 64730668b28SJens Wiklander$(eval $(call cfg-depends-all,CFG_SECSTOR_TA_MGMT_PTA,CFG_SECSTOR_TA)) 648c9720143SJens Wiklander 6494bca302aSIgor Opaniuk# Enable the pseudo TA for misc. auxilary services, extending existing 65057e642f1SEtienne Carriere# GlobalPlatform TEE Internal Core API (for example, re-seeding RNG entropy 65157e642f1SEtienne Carriere# pool etc...) 65257e642f1SEtienne CarriereCFG_SYSTEM_PTA ?= $(CFG_WITH_USER_TA) 65357e642f1SEtienne Carriere$(eval $(call cfg-depends-all,CFG_SYSTEM_PTA,CFG_WITH_USER_TA)) 6544bca302aSIgor Opaniuk 6550b611081SSumit Garg# Enable the pseudo TA for enumeration of TEE based devices for the normal 6560b611081SSumit Garg# world OS. 6570b611081SSumit GargCFG_DEVICE_ENUM_PTA ?= y 6580b611081SSumit Garg 6597e05ec25SJerome Forissier# The attestation pseudo TA provides an interface to request measurements of 6607e05ec25SJerome Forissier# a TA or the TEE binary. 6617e05ec25SJerome ForissierCFG_ATTESTATION_PTA ?= n 6627e05ec25SJerome Forissier$(eval $(call cfg-depends-all,CFG_ATTESTATION_PTA,_CFG_WITH_SECURE_STORAGE)) 6637e05ec25SJerome Forissier 6647e05ec25SJerome Forissier# RSA key size (in bits) for the attestation PTA. Must be at least 528 given 6657e05ec25SJerome Forissier# other algorithm parameters (RSA PSS with SHA-256 and 32-byte salt), but 6667e05ec25SJerome Forissier# note that such a low value is not secure. 6677e05ec25SJerome Forissier# See https://tools.ietf.org/html/rfc8017#section-8.1.1 and 6687e05ec25SJerome Forissier# https://tools.ietf.org/html/rfc8017#section-9.1.1 6697e05ec25SJerome Forissier# emLen >= hlen + sLen + 2 = 32 + 32 + 2 = 66 6707e05ec25SJerome Forissier# emLen = ceil((modBits - 1) / 8) => emLen is the key size in bytes 6717e05ec25SJerome ForissierCFG_ATTESTATION_PTA_KEY_SIZE ?= 3072 6727e05ec25SJerome Forissier 67300da26ecSAndrew F. Davis# Define the number of cores per cluster used in calculating core position. 67400da26ecSAndrew F. Davis# The cluster number is shifted by this value and added to the core ID, 67500da26ecSAndrew F. Davis# so its value represents log2(cores/cluster). 67600da26ecSAndrew F. Davis# Default is 2**(2) = 4 cores per cluster. 67700da26ecSAndrew F. DavisCFG_CORE_CLUSTER_SHIFT ?= 2 678d81f93a7SVolodymyr Babchuk 6798be2de1aSImre Kis# Define the number of threads per core used in calculating processing 6808be2de1aSImre Kis# element's position. The core number is shifted by this value and added to 6818be2de1aSImre Kis# the thread ID, so its value represents log2(threads/core). 6828be2de1aSImre Kis# Default is 2**(0) = 1 threads per core. 6838be2de1aSImre KisCFG_CORE_THREAD_SHIFT ?= 0 6848be2de1aSImre Kis 68537a6b717SJens Wiklander# Enable support for dynamic shared memory (shared memory anywhere in 68637a6b717SJens Wiklander# non-secure memory). 68737a6b717SJens WiklanderCFG_CORE_DYN_SHM ?= y 68837a6b717SJens Wiklander 6898aeb6c94SJens Wiklander# Enable support for reserved shared memory (shared memory in a carved out 6908aeb6c94SJens Wiklander# memory area). 6918aeb6c94SJens WiklanderCFG_CORE_RESERVED_SHM ?= y 6928aeb6c94SJens Wiklander 693dd3afbacSJens Wiklander# Enables support for larger physical addresses, that is, it will define 694dd3afbacSJens Wiklander# paddr_t as a 64-bit type. 695dd3afbacSJens WiklanderCFG_CORE_LARGE_PHYS_ADDR ?= n 696e3458e03SJerome Forissier 697e3458e03SJerome Forissier# Define the maximum size, in bits, for big numbers in the Internal Core API 698e3458e03SJerome Forissier# Arithmetical functions. This does *not* influence the key size that may be 699e3458e03SJerome Forissier# manipulated through the Cryptographic API. 700e3458e03SJerome Forissier# Set this to a lower value to reduce the TA memory footprint. 701e3458e03SJerome ForissierCFG_TA_BIGNUM_MAX_BITS ?= 2048 702409d2ff0SJerome Forissier 703409d2ff0SJerome Forissier# Define the maximum size, in bits, for big numbers in the TEE core (privileged 704409d2ff0SJerome Forissier# layer). 705409d2ff0SJerome Forissier# This value is an upper limit for the key size in any cryptographic algorithm 706409d2ff0SJerome Forissier# implemented by the TEE core. 707409d2ff0SJerome Forissier# Set this to a lower value to reduce the memory footprint. 708409d2ff0SJerome ForissierCFG_CORE_BIGNUM_MAX_BITS ?= 4096 709a97bc4a0SJens Wiklander 7107fb525f1SJerome Forissier# Not used since libmpa was removed. Force the values to catch build scripts 7117fb525f1SJerome Forissier# that would set = n. 7127fb525f1SJerome Forissier$(call force,CFG_TA_MBEDTLS_MPI,y) 7137fb525f1SJerome Forissier$(call force,CFG_TA_MBEDTLS,y) 714a97bc4a0SJens Wiklander 715a97bc4a0SJens Wiklander# Compile the TA library mbedTLS with self test functions, the functions 716a97bc4a0SJens Wiklander# need to be called to test anything 717a97bc4a0SJens WiklanderCFG_TA_MBEDTLS_SELF_TEST ?= y 718017dfaf8SGabor Szekely 71968689d86SJens Wiklander# By default use tomcrypt as the main crypto lib providing an implementation 72068689d86SJens Wiklander# for the API in <crypto/crypto.h> 72168689d86SJens Wiklander# CFG_CRYPTOLIB_NAME is used as libname and 72268689d86SJens Wiklander# CFG_CRYPTOLIB_DIR is used as libdir when compiling the library 72377327d7aSEdison Ai# 72477327d7aSEdison Ai# It's also possible to configure to use mbedtls instead of tomcrypt. 72577327d7aSEdison Ai# Then the variables should be assigned as "CFG_CRYPTOLIB_NAME=mbedtls" and 72677327d7aSEdison Ai# "CFG_CRYPTOLIB_DIR=lib/libmbedtls" respectively. 72768689d86SJens WiklanderCFG_CRYPTOLIB_NAME ?= tomcrypt 72868689d86SJens WiklanderCFG_CRYPTOLIB_DIR ?= core/lib/libtomcrypt 72968689d86SJens Wiklander 7307fb525f1SJerome Forissier# Not used since libmpa was removed. Force the value to catch build scripts 7317fb525f1SJerome Forissier# that would set = n. 7327fb525f1SJerome Forissier$(call force,CFG_CORE_MBEDTLS_MPI,y) 7337fb525f1SJerome Forissier 73415216d4dSVolodymyr Babchuk# Enable virtualization support. OP-TEE will not work without compatible 73515216d4dSVolodymyr Babchuk# hypervisor if this option is enabled. 73615216d4dSVolodymyr BabchukCFG_VIRTUALIZATION ?= n 73715216d4dSVolodymyr Babchuk 73815216d4dSVolodymyr Babchukifeq ($(CFG_VIRTUALIZATION),y) 73915216d4dSVolodymyr Babchuk$(call force,CFG_CORE_RODATA_NOEXEC,y) 74015216d4dSVolodymyr Babchuk$(call force,CFG_CORE_RWDATA_NOEXEC,y) 741c4e8be26SVolodymyr Babchuk 742c4e8be26SVolodymyr Babchuk# Default number of virtual guests 743c4e8be26SVolodymyr BabchukCFG_VIRT_GUEST_COUNT ?= 2 74415216d4dSVolodymyr Babchukendif 74515216d4dSVolodymyr Babchuk 74617888736SJens Wiklander# Enables backwards compatible derivation of RPMB and SSK keys 74717888736SJens WiklanderCFG_CORE_HUK_SUBKEY_COMPAT ?= y 748a2087649SJerome Forissier 74933b38f8cSRuslan Piasetskyi# Use SoC specific tee_otp_get_die_id() implementation for SSK key generation. 75033b38f8cSRuslan Piasetskyi# This option depends on CFG_CORE_HUK_SUBKEY_COMPAT=y. 75133b38f8cSRuslan PiasetskyiCFG_CORE_HUK_SUBKEY_COMPAT_USE_OTP_DIE_ID ?= n 75233b38f8cSRuslan Piasetskyi 753a2087649SJerome Forissier# Compress and encode conf.mk into the TEE core, and show the encoded string on 754a2087649SJerome Forissier# boot (with severity TRACE_INFO). 755a2087649SJerome ForissierCFG_SHOW_CONF_ON_BOOT ?= n 756dd333f03SJavier Almansa Sobrino 757dd333f03SJavier Almansa Sobrino# Enables support for passing a TPM Event Log stored in secure memory 758145035ffSImre Kis# to a TA or FF-A SP, so a TPM Service could use it to extend any measurement 759dd333f03SJavier Almansa Sobrino# taken before the service was up and running. 760dd333f03SJavier Almansa SobrinoCFG_CORE_TPM_EVENT_LOG ?= n 761ae8c8068SEtienne Carriere 762ae8c8068SEtienne Carriere# When enabled, CFG_SCMI_MSG_DRIVERS embeds SCMI message drivers in the core. 763ae8c8068SEtienne Carriere# Refer to the supported SCMI features embedded upon CFG_SCMI_MSG_* 76428e51326SEtienne Carriere# 765a7a9e3baSEtienne Carriere# CFG_SCMI_MSG_CLOCK embeds SCMI clock protocol support. 76656a1f10eSEtienne Carriere# CFG_SCMI_MSG_RESET_DOMAIN embeds SCMI reset domain protocol support. 76728e51326SEtienne Carriere# CFG_SCMI_MSG_SMT embeds a SMT header in shared device memory buffers 768f37af03eSEtienne Carriere# CFG_SCMI_MSG_VOLTAGE_DOMAIN embeds SCMI voltage domain protocol support. 76928e51326SEtienne Carriere# CFG_SCMI_MSG_SMT_FASTCALL_ENTRY embeds fastcall SMC entry with SMT memory 77028e51326SEtienne Carriere# CFG_SCMI_MSG_SMT_INTERRUPT_ENTRY embeds interrupt entry with SMT memory 77128e51326SEtienne Carriere# CFG_SCMI_MSG_SMT_THREAD_ENTRY embeds threaded entry with SMT memory 772916cc52aSEtienne Carriere# CFG_SCMI_MSG_SHM_MSG embeds a MSG header in cached shared memory buffer 773ae8c8068SEtienne CarriereCFG_SCMI_MSG_DRIVERS ?= n 77428e51326SEtienne Carriereifeq ($(CFG_SCMI_MSG_DRIVERS),y) 775a7a9e3baSEtienne CarriereCFG_SCMI_MSG_CLOCK ?= n 77656a1f10eSEtienne CarriereCFG_SCMI_MSG_RESET_DOMAIN ?= n 777916cc52aSEtienne CarriereCFG_SCMI_MSG_SHM_MSG ?= n 778a58c4d70SEtienne CarriereCFG_SCMI_MSG_SMT ?= n 77928e51326SEtienne CarriereCFG_SCMI_MSG_SMT_FASTCALL_ENTRY ?= n 78028e51326SEtienne CarriereCFG_SCMI_MSG_SMT_INTERRUPT_ENTRY ?= n 78128e51326SEtienne CarriereCFG_SCMI_MSG_SMT_THREAD_ENTRY ?= n 78228e51326SEtienne CarriereCFG_SCMI_MSG_THREAD_ENTRY ?= n 783f37af03eSEtienne CarriereCFG_SCMI_MSG_VOLTAGE_DOMAIN ?= n 78428e51326SEtienne Carriere$(eval $(call cfg-depends-all,CFG_SCMI_MSG_SMT_FASTCALL_ENTRY,CFG_SCMI_MSG_SMT)) 78528e51326SEtienne Carriere$(eval $(call cfg-depends-all,CFG_SCMI_MSG_SMT_INTERRUPT_ENTRY,CFG_SCMI_MSG_SMT)) 786916cc52aSEtienne Carriere$(eval $(call cfg-depends-one,CFG_SCMI_MSG_SMT_THREAD_ENTRY,CFG_SCMI_MSG_SMT CFG_SCMI_MSG_SHM_MSG)) 78716a5030fSEtienne Carriereifeq ($(CFG_SCMI_MSG_SMT),y) 78816a5030fSEtienne Carriere_CFG_SCMI_PTA_SMT_HEADER := y 78916a5030fSEtienne Carriereendif 79016a5030fSEtienne Carriereifeq ($(CFG_SCMI_MSG_SHM_MSG),y) 79116a5030fSEtienne Carriere_CFG_SCMI_PTA_MSG_HEADER := y 79216a5030fSEtienne Carriereendif 79328e51326SEtienne Carriereendif 79442471ecfSJens Wiklander 7954c4212e9SVincent Guittot# CFG_SCMI_SCPFW, when enabled, embeds the reference SCMI server implementation 7964c4212e9SVincent Guittot# from SCP-firmware package as an built-in SCMI stack in core. This 7974c4212e9SVincent Guittot# configuration mandates target product identifier is configured with 7984c4212e9SVincent Guittot# CFG_SCMI_SCPFW_PRODUCT and the SCP-firmware source tree path with 7994c4212e9SVincent Guittot# CFG_SCP_FIRMWARE. 8004c4212e9SVincent GuittotCFG_SCMI_SCPFW ?= n 8014c4212e9SVincent Guittot 8024c4212e9SVincent Guittotifeq ($(CFG_SCMI_SCPFW),y) 8034c4212e9SVincent Guittot$(call force,CFG_SCMI_PTA,y,Required by CFG_SCMI_SCPFW) 8044c4212e9SVincent Guittotifeq (,$(CFG_SCMI_SCPFW_PRODUCT)) 8054c4212e9SVincent Guittot$(error CFG_SCMI_SCPFW=y requires CFG_SCMI_SCPFW_PRODUCT configuration) 8064c4212e9SVincent Guittotendif 8074c4212e9SVincent Guittotifeq (,$(wildcard $(CFG_SCP_FIRMWARE)/CMakeLists.txt)) 8084c4212e9SVincent Guittot$(error CFG_SCMI_SCPFW=y requires CFG_SCP_FIRMWARE configuration) 8094c4212e9SVincent Guittotendif 8104c4212e9SVincent Guittotendif #CFG_SCMI_SCPFW 8114c4212e9SVincent Guittot 8124c4212e9SVincent Guittotifeq ($(CFG_SCMI_MSG_DRIVERS)-$(CFG_SCMI_SCPFW),y-y) 8134c4212e9SVincent Guittot$(error CFG_SCMI_MSG_DRIVERS=y and CFG_SCMI_SCPFW=y are mutually exclusive) 8144c4212e9SVincent Guittotendif 8154c4212e9SVincent Guittot 816b0a1c250SEtienne Carriere# Enable SCMI PTA interface for REE SCMI agents 817b0a1c250SEtienne CarriereCFG_SCMI_PTA ?= n 81816a5030fSEtienne Carriereifeq ($(CFG_SCMI_PTA),y) 81916a5030fSEtienne Carriere_CFG_SCMI_PTA_SMT_HEADER ?= n 82016a5030fSEtienne Carriere_CFG_SCMI_PTA_MSG_HEADER ?= n 82116a5030fSEtienne Carriereendif 822b0a1c250SEtienne Carriere 82342471ecfSJens Wiklanderifneq ($(CFG_STMM_PATH),) 824f9cd31c5SJelle Sels$(call force,CFG_WITH_STMM_SP,y) 82542471ecfSJens Wiklanderelse 826f9cd31c5SJelle SelsCFG_WITH_STMM_SP ?= n 82742471ecfSJens Wiklanderendif 828f9cd31c5SJelle Selsifeq ($(CFG_WITH_STMM_SP),y) 82942471ecfSJens Wiklander$(call force,CFG_ZLIB,y) 83042471ecfSJens Wiklanderendif 8316915bbbbSJens Wiklander 8326915bbbbSJens Wiklander# When enabled checks that buffers passed to the GP Internal Core API 8336915bbbbSJens Wiklander# comply with the rules added as annotations as part of the definition of 8346915bbbbSJens Wiklander# the API. For example preventing buffers in non-secure shared memory when 8356915bbbbSJens Wiklander# not allowed. 8366915bbbbSJens WiklanderCFG_TA_STRICT_ANNOTATION_CHECKS ?= y 837c56cc686SJens Wiklander 838c56cc686SJens Wiklander# When enabled accepts the DES key sizes excluding parity bits as in 839c56cc686SJens Wiklander# the GP Internal API Specification v1.0 840c56cc686SJens WiklanderCFG_COMPAT_GP10_DES ?= y 841806a85faSJens Wiklander 842806a85faSJens Wiklander# Defines a limit for many levels TAs may call each others. 843806a85faSJens WiklanderCFG_CORE_MAX_SYSCALL_RECURSION ?= 4 844f2dad489SSergiy Kibrik 845f2dad489SSergiy Kibrik# Pseudo-TA to export hardware RNG output to Normal World 846f2dad489SSergiy Kibrik# RNG characteristics are platform specific 847f2dad489SSergiy KibrikCFG_HWRNG_PTA ?= n 848f2dad489SSergiy Kibrikifeq ($(CFG_HWRNG_PTA),y) 849f2dad489SSergiy Kibrik# Output rate of hw_get_random_bytes() in bytes per second, 0: not rate-limited 850f2dad489SSergiy KibrikCFG_HWRNG_RATE ?= 0 851f2dad489SSergiy Kibrik# Quality/entropy of hw_get_random_bytes() per 1024 bits of output data, in bits 852f2dad489SSergiy Kibrikifeq (,$(CFG_HWRNG_QUALITY)) 853f2dad489SSergiy Kibrik$(error CFG_HWRNG_QUALITY not defined) 854f2dad489SSergiy Kibrikendif 855f2dad489SSergiy Kibrikendif 85688876632SEtienne Carriere 85788876632SEtienne Carriere# CFG_PREALLOC_RPC_CACHE, when enabled, makes core to preallocate 85888876632SEtienne Carriere# shared memory for each secure thread. When disabled, RPC shared 85988876632SEtienne Carriere# memory is released once the secure thread has completed is execution. 86088876632SEtienne Carriereifeq ($(CFG_WITH_PAGER),y) 86188876632SEtienne CarriereCFG_PREALLOC_RPC_CACHE ?= n 86288876632SEtienne Carriereendif 86388876632SEtienne CarriereCFG_PREALLOC_RPC_CACHE ?= y 8642305544bSClément Léger 8652305544bSClément Léger# When enabled, CFG_DRIVERS_CLK embeds a clock framework in OP-TEE core. 8662305544bSClément Léger# This clock framework allows to describe clock tree and provides functions to 8672305544bSClément Léger# get and configure the clocks. 868dbe94a85SClément Léger# CFG_DRIVERS_CLK_DT embeds devicetree clock parsing support 869804e32d7SClément Léger# CFG_DRIVERS_CLK_FIXED add support for "fixed-clock" compatible clocks 87017fd9102SEtienne Carriere# CFG_DRIVERS_CLK_EARLY_PROBE makes clocks probed at early_init initcall level. 8712305544bSClément LégerCFG_DRIVERS_CLK ?= n 872dbe94a85SClément LégerCFG_DRIVERS_CLK_DT ?= $(call cfg-all-enabled,CFG_DRIVERS_CLK CFG_DT) 873804e32d7SClément LégerCFG_DRIVERS_CLK_FIXED ?= $(CFG_DRIVERS_CLK_DT) 87417fd9102SEtienne CarriereCFG_DRIVERS_CLK_EARLY_PROBE ?= $(CFG_DRIVERS_CLK_DT) 875dbe94a85SClément Léger 876d547c99aSEtienne Carriere$(eval $(call cfg-depends-all,CFG_DRIVERS_CLK_DT,CFG_DRIVERS_CLK CFG_DT)) 877d547c99aSEtienne Carriere$(eval $(call cfg-depends-all,CFG_DRIVERS_CLK_FIXED,CFG_DRIVERS_CLK_DT)) 878d547c99aSEtienne Carriere 879c78b2c66SEtienne Carriere# When enabled, CFG_DRIVERS_RSTCTRL embeds a reset controller framework in 880c78b2c66SEtienne Carriere# OP-TEE core to provide reset controls on subsystems of the devices. 881c78b2c66SEtienne CarriereCFG_DRIVERS_RSTCTRL ?= n 882c78b2c66SEtienne Carriere 8839e42008dSJoakim Bech# The purpose of this flag is to show a print when booting up the device that 8849e42008dSJoakim Bech# indicates whether the board runs a standard developer configuration or not. 8859e42008dSJoakim Bech# A developer configuration doesn't necessarily has to be secure. The intention 8869e42008dSJoakim Bech# is that the one making products based on OP-TEE should override this flag in 8879e42008dSJoakim Bech# plat-xxx/conf.mk for the platform they're basing their products on after 8889e42008dSJoakim Bech# they've finalized implementing stubbed functionality (see OP-TEE 8899e42008dSJoakim Bech# documentation/Porting guidelines) as well as vendor specific security 8909e42008dSJoakim Bech# configuration. 8919e42008dSJoakim BechCFG_WARN_INSECURE ?= y 8929e42008dSJoakim Bech 893a748f9edSJens Wiklander# Enables warnings for declarations mixed with statements 894a748f9edSJens WiklanderCFG_WARN_DECL_AFTER_STATEMENT ?= y 895b7a623f8SRuchika Gupta 896b7a623f8SRuchika Gupta# Branch Target Identification (part of the ARMv8.5 Extensions) provides a 897b7a623f8SRuchika Gupta# mechanism to limit the set of locations to which computed branch instructions 898b7a623f8SRuchika Gupta# such as BR or BLR can jump. To make use of BTI in TEE core and ldelf on CPU's 899b7a623f8SRuchika Gupta# that support it, enable this option. A GCC toolchain built with 900b7a623f8SRuchika Gupta# --enable-standard-branch-protection is needed to use this option. 901b7a623f8SRuchika GuptaCFG_CORE_BTI ?= n 902b7a623f8SRuchika Gupta 903b7a623f8SRuchika Gupta$(eval $(call cfg-depends-all,CFG_CORE_BTI,CFG_ARM64_core)) 904b7a623f8SRuchika Gupta 905b7a623f8SRuchika Gupta# To make use of BTI in user space libraries and TA's on CPU's that support it, 906b7a623f8SRuchika Gupta# enable this option. 907b7a623f8SRuchika GuptaCFG_TA_BTI ?= $(CFG_CORE_BTI) 908b7a623f8SRuchika Gupta 909b7a623f8SRuchika Gupta$(eval $(call cfg-depends-all,CFG_TA_BTI,CFG_ARM64_core)) 910b7a623f8SRuchika Gupta 911b7a623f8SRuchika Guptaifeq (y-y,$(CFG_VIRTUALIZATION)-$(call cfg-one-enabled, CFG_TA_BTI CFG_CORE_BTI)) 912b7a623f8SRuchika Gupta$(error CFG_VIRTUALIZATION and BTI are currently incompatible) 913b7a623f8SRuchika Guptaendif 914b7a623f8SRuchika Gupta 915b7a623f8SRuchika Guptaifeq (y-y,$(CFG_PAGED_USER_TA)-$(CFG_TA_BTI)) 916b7a623f8SRuchika Gupta$(error CFG_PAGED_USER_TA and CFG_TA_BTI are currently incompatible) 917b7a623f8SRuchika Guptaendif 918c2d44948SJens Wiklander 919a0e8ffe9SJens Wiklander# Memory Tagging Extension (part of the ARMv8.5 Extensions) implements lock 920a0e8ffe9SJens Wiklander# and key access to memory. This is a hardware supported alternative to 921a0e8ffe9SJens Wiklander# CFG_CORE_SANITIZE_KADDRESS which covers both S-EL1 and S-EL0. 922a0e8ffe9SJens WiklanderCFG_MEMTAG ?= n 923a0e8ffe9SJens Wiklander 924a0e8ffe9SJens Wiklander$(eval $(call cfg-depends-all,CFG_MEMTAG,CFG_ARM64_core)) 925a0e8ffe9SJens Wiklanderifeq (y-y,$(CFG_CORE_SANITIZE_KADDRESS)-$(CFG_MEMTAG)) 926a0e8ffe9SJens Wiklander$(error CFG_CORE_SANITIZE_KADDRESS and CFG_MEMTAG are not compatible) 927a0e8ffe9SJens Wiklanderendif 928a0e8ffe9SJens Wiklanderifeq (y-y,$(CFG_WITH_PAGER)-$(CFG_MEMTAG)) 929a0e8ffe9SJens Wiklander$(error CFG_WITH_PAGER and CFG_MEMTAG are not compatible) 930a0e8ffe9SJens Wiklanderendif 931a0e8ffe9SJens Wiklander 932c2d44948SJens Wiklander# CFG_CORE_ASYNC_NOTIF is defined by the platform to enable enables support 933c2d44948SJens Wiklander# for sending asynchronous notifications to normal world. Note that an 934c2d44948SJens Wiklander# interrupt ID must be configurged by the platform too. Currently is only 935c2d44948SJens Wiklander# CFG_CORE_ASYNC_NOTIF_GIC_INTID defined. 936c2d44948SJens WiklanderCFG_CORE_ASYNC_NOTIF ?= n 937a51d45b5SJens Wiklander 938a51d45b5SJens Wiklander$(eval $(call cfg-enable-all-depends,CFG_MEMPOOL_REPORT_LAST_OFFSET, \ 939a51d45b5SJens Wiklander CFG_WITH_STATS)) 940bb329115SRuchika Gupta 94193dc6b29SJens Wiklander# Pointer Authentication (part of ARMv8.3 Extensions) provides instructions 94293dc6b29SJens Wiklander# for signing and authenticating pointers against secret keys. These can 94393dc6b29SJens Wiklander# be used to mitigate ROP (Return oriented programming) attacks. This is 94493dc6b29SJens Wiklander# currently done by instructing the compiler to add paciasp/autiasp at the 94593dc6b29SJens Wiklander# begging and end of functions to sign and verify ELR. 94693dc6b29SJens Wiklander# 94793dc6b29SJens Wiklander# The CFG_CORE_PAUTH enables these instructions for the core parts 94893dc6b29SJens Wiklander# executing at EL1, with one secret key per thread and one secret key per 94993dc6b29SJens Wiklander# physical CPU. 95093dc6b29SJens Wiklander# 95193dc6b29SJens Wiklander# The CFG_TA_PAUTH option enables these instructions for TA's at EL0. When 95293dc6b29SJens Wiklander# this option is enabled, TEE core will initialize secret keys per TA. 95393dc6b29SJens WiklanderCFG_CORE_PAUTH ?= n 95493dc6b29SJens WiklanderCFG_TA_PAUTH ?= $(CFG_CORE_PAUTH) 955bb329115SRuchika Gupta 95693dc6b29SJens Wiklander$(eval $(call cfg-depends-all,CFG_CORE_PAUTH,CFG_ARM64_core)) 957bb329115SRuchika Gupta$(eval $(call cfg-depends-all,CFG_TA_PAUTH,CFG_ARM64_core)) 9586b35a0abSRuchika Gupta 95993dc6b29SJens Wiklanderifeq (y-y,$(CFG_VIRTUALIZATION)-$(CFG_CORE_PAUTH)) 96093dc6b29SJens Wiklander$(error CFG_VIRTUALIZATION and CFG_CORE_PAUTH are currently incompatible) 96193dc6b29SJens Wiklanderendif 9626b35a0abSRuchika Guptaifeq (y-y,$(CFG_VIRTUALIZATION)-$(CFG_TA_PAUTH)) 9636b35a0abSRuchika Gupta$(error CFG_VIRTUALIZATION and CFG_TA_PAUTH are currently incompatible) 9646b35a0abSRuchika Guptaendif 9656b35a0abSRuchika Gupta 9666b35a0abSRuchika Guptaifeq (y-y,$(CFG_TA_GPROF_SUPPORT)-$(CFG_TA_PAUTH)) 9676b35a0abSRuchika Gupta$(error CFG_TA_GPROF_SUPPORT and CFG_TA_PAUTH are currently incompatible) 9686b35a0abSRuchika Guptaendif 9696b35a0abSRuchika Gupta 9706b35a0abSRuchika Guptaifeq (y-y,$(CFG_FTRACE_SUPPORT)-$(CFG_TA_PAUTH)) 9716b35a0abSRuchika Gupta$(error CFG_FTRACE_SUPPORT and CFG_TA_PAUTH are currently incompatible) 9726b35a0abSRuchika Guptaendif 973011a8f96SClément Léger 974011a8f96SClément Léger# Enable support for generic watchdog registration 975011a8f96SClément Léger# This watchdog will then be usable by non-secure world through SMC calls. 976011a8f96SClément LégerCFG_WDT ?= n 977cb60bce4SClément Léger 978cb60bce4SClément Léger# Enable watchdog SMC handling compatible with arm-smc-wdt Linux driver 979cb60bce4SClément Léger# When enabled, CFG_WDT_SM_HANDLER_ID must be defined with a SMC ID 980cb60bce4SClément LégerCFG_WDT_SM_HANDLER ?= n 981cb60bce4SClément Léger 982cb60bce4SClément Léger$(eval $(call cfg-enable-all-depends,CFG_WDT_SM_HANDLER,CFG_WDT)) 983cb60bce4SClément Légerifeq (y-,$(CFG_WDT_SM_HANDLER)-$(CFG_WDT_SM_HANDLER_ID)) 984cb60bce4SClément Léger$(error CFG_WDT_SM_HANDLER_ID must be defined when enabling CFG_WDT_SM_HANDLER) 985cb60bce4SClément Légerendif 98634d244bfSClément Léger 98734d244bfSClément Léger# Allow using the udelay/mdelay function for platforms without ARM generic timer 98834d244bfSClément Léger# extension. When set to 'n', the plat_get_freq() function must be defined by 98934d244bfSClément Léger# the platform code 99034d244bfSClément LégerCFG_CORE_HAS_GENERIC_TIMER ?= y 991f3f9432fSClément Léger 992f3f9432fSClément Léger# Enable RTC API 993f3f9432fSClément LégerCFG_DRIVERS_RTC ?= n 994cea1eb0bSClément Léger 995cea1eb0bSClément Léger# Enable PTA for RTC access from non-secure world 996cea1eb0bSClément LégerCFG_RTC_PTA ?= n 997952f5260SRuchika Gupta 998952f5260SRuchika Gupta# Enable TPM2 999952f5260SRuchika GuptaCFG_DRIVERS_TPM2 ?= n 10005916069bSRuchika GuptaCFG_DRIVERS_TPM2_MMIO ?= n 10012e1b85feSRuchika Guptaifeq ($(CFG_CORE_TPM_EVENT_LOG),y) 10022e1b85feSRuchika GuptaCFG_CORE_TCG_PROVIDER ?= $(CFG_DRIVERS_TPM2) 10032e1b85feSRuchika Guptaendif 10041fdb1c4fSJelle Sels 10051fdb1c4fSJelle Sels# Enable the FF-A SPMC tests in xtests 10061fdb1c4fSJelle SelsCFG_SPMC_TESTS ?= n 1007bfdeae23SJens Wiklander 1008bfdeae23SJens Wiklander# Allocate the translation tables needed to map the S-EL0 application 1009bfdeae23SJens Wiklander# loaded 1010bfdeae23SJens WiklanderCFG_CORE_PREALLOC_EL0_TBLS ?= n 1011bfdeae23SJens Wiklanderifeq (y-y,$(CFG_CORE_PREALLOC_EL0_TBLS)-$(CFG_WITH_PAGER)) 1012bfdeae23SJens Wiklander$(error "CFG_WITH_PAGER can't support CFG_CORE_PREALLOC_EL0_TBLS") 1013bfdeae23SJens Wiklanderendif 1014cb94c145SWeizhao Jiang 1015cb94c145SWeizhao Jiang# User TA runtime context dump. 1016cb94c145SWeizhao Jiang# When this option is enabled, OP-TEE provides a debug method for 1017cb94c145SWeizhao Jiang# developer to dump user TA's runtime context, including TA's heap stats. 1018cb94c145SWeizhao Jiang# Developer can open a stats PTA session and then invoke command 1019cb94c145SWeizhao Jiang# STATS_CMD_TA_STATS to get the context of loaded TAs. 1020cb94c145SWeizhao JiangCFG_TA_STATS ?= n 10217e75ca54SJens Wiklander 10227e75ca54SJens Wiklander# Enables best effort mitigations against fault injected when the hardware 10237e75ca54SJens Wiklander# is tampered with. Details in lib/libutils/ext/include/fault_mitigation.h 10247e75ca54SJens WiklanderCFG_FAULT_MITIGATION ?= y 10258bbc2e9cSJens Wiklander 10268bbc2e9cSJens Wiklander# Enable TEE Internal Core API v1.1 compatibility for in-tree TAs 10278bbc2e9cSJens WiklanderCFG_TA_OPTEE_CORE_API_COMPAT_1_1 ?= y 1028