wolfBoot/options.mk

2109 lines
66 KiB
Makefile

WOLFCRYPT_OBJS+=$(WOLFBOOT_LIB_WOLFSSL)/wolfcrypt/src/asn.o \
$(WOLFBOOT_LIB_WOLFSSL)/wolfcrypt/src/coding.o
# Shared wolfHSM client/server object lists. Defined here at the top so any
# downstream block (legacy WOLFHSM_CLIENT/SERVER, or WOLFCRYPT_TZ_WOLFHSM TZ
# engine) can reference them by variable name without ordering hazards.
WOLFHSM_CLIENT_OBJS := \
$(WOLFBOOT_LIB_WOLFHSM)/src/wh_client.o \
$(WOLFBOOT_LIB_WOLFHSM)/src/wh_client_nvm.o \
$(WOLFBOOT_LIB_WOLFHSM)/src/wh_client_cryptocb.o \
$(WOLFBOOT_LIB_WOLFHSM)/src/wh_client_crypto.o \
$(WOLFBOOT_LIB_WOLFHSM)/src/wh_client_dma.o \
$(WOLFBOOT_LIB_WOLFHSM)/src/wh_crypto.o \
$(WOLFBOOT_LIB_WOLFHSM)/src/wh_dma.o \
$(WOLFBOOT_LIB_WOLFHSM)/src/wh_utils.o \
$(WOLFBOOT_LIB_WOLFHSM)/src/wh_comm.o \
$(WOLFBOOT_LIB_WOLFHSM)/src/wh_message_comm.o \
$(WOLFBOOT_LIB_WOLFHSM)/src/wh_message_nvm.o \
$(WOLFBOOT_LIB_WOLFHSM)/src/wh_message_customcb.o
WOLFHSM_SERVER_OBJS := \
$(WOLFBOOT_LIB_WOLFHSM)/src/wh_utils.o \
$(WOLFBOOT_LIB_WOLFHSM)/src/wh_comm.o \
$(WOLFBOOT_LIB_WOLFHSM)/src/wh_nvm.o \
$(WOLFBOOT_LIB_WOLFHSM)/src/wh_nvm_flash.o \
$(WOLFBOOT_LIB_WOLFHSM)/src/wh_keyid.o \
$(WOLFBOOT_LIB_WOLFHSM)/src/wh_flash_unit.o \
$(WOLFBOOT_LIB_WOLFHSM)/src/wh_crypto.o \
$(WOLFBOOT_LIB_WOLFHSM)/src/wh_dma.o \
$(WOLFBOOT_LIB_WOLFHSM)/src/wh_server_dma.o \
$(WOLFBOOT_LIB_WOLFHSM)/src/wh_server.o \
$(WOLFBOOT_LIB_WOLFHSM)/src/wh_server_nvm.o \
$(WOLFBOOT_LIB_WOLFHSM)/src/wh_server_crypto.o \
$(WOLFBOOT_LIB_WOLFHSM)/src/wh_server_counter.o \
$(WOLFBOOT_LIB_WOLFHSM)/src/wh_server_keystore.o \
$(WOLFBOOT_LIB_WOLFHSM)/src/wh_server_customcb.o \
$(WOLFBOOT_LIB_WOLFHSM)/src/wh_message_customcb.o \
$(WOLFBOOT_LIB_WOLFHSM)/src/wh_message_keystore.o \
$(WOLFBOOT_LIB_WOLFHSM)/src/wh_message_crypto.o \
$(WOLFBOOT_LIB_WOLFHSM)/src/wh_message_counter.o \
$(WOLFBOOT_LIB_WOLFHSM)/src/wh_message_nvm.o \
$(WOLFBOOT_LIB_WOLFHSM)/src/wh_message_comm.o
USE_CLANG?=0
USE_ARMCLANG?=0
ifneq ($(filter 1,$(USE_CLANG) $(USE_ARMCLANG)),)
USE_GCC?=0
else
USE_GCC?=1
endif
WOLFBOOT_TEST_FILLER?=0
WOLFBOOT_TIME_TEST?=0
ifeq ($(USE_CLANG),1)
ifeq ($(USE_GCC),1)
$(error USE_CLANG=1 is incompatible with USE_GCC=1; set USE_GCC=0)
endif
ifeq ($(ARMORED),1)
$(error USE_CLANG=1 requires ARMORED=0)
endif
endif
ifeq ($(USE_ARMCLANG),1)
ifeq ($(USE_GCC),1)
$(error USE_ARMCLANG=1 is incompatible with USE_GCC=1; set USE_GCC=0)
endif
ifeq ($(USE_CLANG),1)
$(error USE_ARMCLANG=1 is incompatible with USE_CLANG=1)
endif
ifeq ($(ARMORED),1)
$(error USE_ARMCLANG=1 requires ARMORED=0)
endif
endif
# Support for Built-in ROT into OTP flash memory
ifeq ($(FLASH_OTP_KEYSTORE),1)
CFLAGS+=-D"FLASH_OTP_KEYSTORE"
endif
ifeq ($(WOLFBOOT_TEST_FILLER),1)
CFLAGS+=-D"WOLFBOOT_TEST_FILLER"
endif
ifeq ($(WOLFBOOT_TIME_TEST),1)
CFLAGS+=-D"WOLFBOOT_TIME_TEST"
endif
# Persist update/boot/rollback failure diagnostics to a dedicated flash region
ifeq ($(WOLFBOOT_PERSIST_FAILURE_STATUS),1)
CFLAGS+=-D"WOLFBOOT_PERSIST_FAILURE_STATUS"
ifneq ($(WOLFBOOT_DIAGNOSTICS_ADDRESS),)
CFLAGS+=-D"WOLFBOOT_DIAGNOSTICS_ADDRESS=$(WOLFBOOT_DIAGNOSTICS_ADDRESS)"
endif
ifneq ($(WOLFBOOT_DIAGNOSTICS_SECTORS),)
CFLAGS+=-D"WOLFBOOT_DIAGNOSTICS_SECTORS=$(WOLFBOOT_DIAGNOSTICS_SECTORS)"
endif
ifneq ($(WOLFBOOT_DIAGNOSTICS_RECORD_SIZE),)
CFLAGS+=-D"WOLFBOOT_DIAGNOSTICS_RECORD_SIZE=$(WOLFBOOT_DIAGNOSTICS_RECORD_SIZE)"
endif
ifeq ($(WOLFBOOT_DIAGNOSTICS_EXT),1)
CFLAGS+=-D"WOLFBOOT_DIAGNOSTICS_EXT"
endif
endif
# Support for TPM signature verification
ifeq ($(WOLFBOOT_TPM_VERIFY),1)
WOLFTPM:=1
CFLAGS+=-D"WOLFBOOT_TPM_VERIFY"
endif
## Measured boot requires TPM to be present
ifeq ($(MEASURED_BOOT),1)
WOLFTPM:=1
CFLAGS+=-D"WOLFBOOT_MEASURED_BOOT"
CFLAGS+=-D"WOLFBOOT_MEASURED_PCR_A=$(MEASURED_PCR_A)"
ifeq ($(MEASURED_BOOT_APP_PARTITION),1)
CFLAGS+=-D"WOLFBOOT_MEASURED_BOOT_APP_PARTITION"
endif
endif
## Measured boot via the platform firmware TPM behind EFI_TCG2_PROTOCOL, for
## UEFI-application targets (e.g. aarch64_efi on NVIDIA Jetson). wolfBoot
## measures the verified next-stage image into a PCR with HashLogExtendEvent;
## the firmware / fTPM owns the TPM, so this pulls in NO wolfTPM transport.
ifeq ($(MEASURED_BOOT_TCG2),1)
MEASURED_PCR_A ?= 9
CFLAGS+=-D"WOLFBOOT_MEASURED_BOOT_EFI_TCG2"
CFLAGS+=-D"WOLFBOOT_MEASURED_PCR_A=$(MEASURED_PCR_A)"
endif
## TPM keystore
ifeq ($(WOLFBOOT_TPM_KEYSTORE),1)
WOLFTPM:=1
CFLAGS+=-D"WOLFBOOT_TPM_KEYSTORE"
ifneq ($(WOLFBOOT_TPM_KEYSTORE_AUTH),)
CFLAGS+=-DWOLFBOOT_TPM_KEYSTORE_AUTH='"$(WOLFBOOT_TPM_KEYSTORE_AUTH)"'
endif
ifneq ($(WOLFBOOT_TPM_KEYSTORE_NV_BASE),)
CFLAGS+=-D"WOLFBOOT_TPM_KEYSTORE_NV_BASE=$(WOLFBOOT_TPM_KEYSTORE_NV_BASE)"
endif
endif
## TPM manufacturing identity: precomputed per-device authValue is the default
## (no master secret on device). Opt into on-device derive-from-master mode:
ifeq ($(WOLFBOOT_TPM_MFG_AUTH_DERIVE),1)
CFLAGS+=-D"WOLFBOOT_TPM_MFG_AUTH_DERIVE"
endif
ifeq ($(WOLFBOOT_ATTESTATION_IAK),1)
CFLAGS+=-D"WOLFBOOT_ATTESTATION_IAK"
endif
ifeq ($(WOLFBOOT_UDS_UID_FALLBACK_FORTEST),1)
$(warning WOLFBOOT_UDS_UID_FALLBACK_FORTEST=1 derives UDS from the publicly-readable device UID; do not use in production)
CFLAGS+=-D"WOLFBOOT_UDS_UID_FALLBACK_FORTEST"
endif
ifeq ($(WOLFBOOT_UDS_OBKEYS),1)
ifneq ($(TARGET),stm32h5)
$(error WOLFBOOT_UDS_OBKEYS is only supported on STM32H5 targets)
endif
CFLAGS+=-D"WOLFBOOT_UDS_OBKEYS"
endif
## Sealing a secret into the TPM
ifeq ($(WOLFBOOT_TPM_SEAL),1)
WOLFTPM:=1
CFLAGS+=-D"WOLFBOOT_TPM_SEAL"
ifneq ($(WOLFBOOT_TPM_SEAL_AUTH),)
CFLAGS+=-DWOLFBOOT_TPM_SEAL_AUTH='"$(WOLFBOOT_TPM_SEAL_AUTH)"'
endif
ifneq ($(WOLFBOOT_TPM_SEAL_NV_BASE),)
CFLAGS+=-D"WOLFBOOT_TPM_SEAL_NV_BASE=$(WOLFBOOT_TPM_SEAL_NV_BASE)"
endif
ifneq ($(WOLFBOOT_TPM_SEAL_KEY_ID),)
CFLAGS+=-D"WOLFBOOT_TPM_SEAL_KEY_ID=$(WOLFBOOT_TPM_SEAL_KEY_ID)"
endif
ifneq ($(POLICY_FILE),)
SIGN_OPTIONS+=--policy $(POLICY_FILE)
endif
endif
## Monolithic self-update: erase covers fw_size so the payload can span
## the bootloader region into the contiguous boot partition.
ifeq ($(WOLFBOOT_SELF_UPDATE_MONOLITHIC),1)
SELF_UPDATE_MONOLITHIC:=1
endif
ifeq ($(SELF_UPDATE_MONOLITHIC),1)
CFLAGS+=-DWOLFBOOT_SELF_UPDATE_MONOLITHIC
DISABLE_BACKUP=1
endif
## Persist wolfBoot self header at fixed address
## Invariants and defaults are enforced in wolfboot.h
ifeq ($(WOLFBOOT_SELF_HEADER),1)
CFLAGS+=-DWOLFBOOT_SELF_HEADER
ifeq ($(WOLFBOOT_PARTITION_SELF_HEADER_ADDRESS),)
$(error WOLFBOOT_PARTITION_SELF_HEADER_ADDRESS must be set when WOLFBOOT_SELF_HEADER=1)
endif
ifneq ($(WOLFBOOT_SELF_HEADER_SIZE),)
CFLAGS+=-D"WOLFBOOT_SELF_HEADER_SIZE=$(WOLFBOOT_SELF_HEADER_SIZE)"
endif
ifeq ($(SELF_HEADER_EXT),1)
CFLAGS+=-DWOLFBOOT_SELF_HEADER_EXT
endif
endif
## DSA Settings
ifeq ($(SIGN),NONE)
$(warning SIGN=NONE / WOLFBOOT_NO_SIGN=1 disables firmware signature verification; images are NOT authenticated. Do not use in production.)
SIGN_OPTIONS+=--no-sign
ifeq ($(HASH),SHA384)
STACK_USAGE=3760
else
STACK_USAGE=1216
endif
CFLAGS+=-DWOLFBOOT_NO_SIGN
endif
ifeq ($(IMAGE_HEADER_SIZE),)
IMAGE_HEADER_SIZE=256
endif
ifeq ($(WOLFBOOT_SMALL_STACK),1)
CFLAGS+=-D"WOLFBOOT_SMALL_STACK" -D"XMALLOC_USER"
STACK_USAGE=4096
OBJS+=./src/xmalloc.o
endif
# GCC 13 overestimates some wolfTPM wrapper stack usage; keep TPM
# limits above 10 KB to avoid false -Wstack-usage failures.
STACK_USAGE_WOLFTPM=10680
ECC_OBJS= \
$(WOLFBOOT_LIB_WOLFSSL)/wolfcrypt/src/ecc.o
ED25519_OBJS=$(WOLFBOOT_LIB_WOLFSSL)/wolfcrypt/src/sha512.o \
$(WOLFBOOT_LIB_WOLFSSL)/wolfcrypt/src/ed25519.o \
$(WOLFBOOT_LIB_WOLFSSL)/wolfcrypt/src/ge_low_mem.o \
$(WOLFBOOT_LIB_WOLFSSL)/wolfcrypt/src/fe_low_mem.o
ED448_OBJS=$(WOLFBOOT_LIB_WOLFSSL)/wolfcrypt/src/ed448.o \
$(WOLFBOOT_LIB_WOLFSSL)/wolfcrypt/src/ge_low_mem.o \
$(WOLFBOOT_LIB_WOLFSSL)/wolfcrypt/src/ge_448.o \
$(WOLFBOOT_LIB_WOLFSSL)/wolfcrypt/src/fe_448.o \
$(WOLFBOOT_LIB_WOLFSSL)/wolfcrypt/src/fe_low_mem.o
RSA_OBJS=\
$(RSA_EXTRA_OBJS) \
$(WOLFBOOT_LIB_WOLFSSL)/wolfcrypt/src/rsa.o
LMS_OBJS=\
$(WOLFBOOT_LIB_WOLFSSL)/wolfcrypt/src/wc_lms.o \
$(WOLFBOOT_LIB_WOLFSSL)/wolfcrypt/src/wc_lms_impl.o
LMS_EXTRA=\
-D"WOLFSSL_HAVE_LMS" \
-D"WOLFSSL_WC_LMS_SMALL" \
-D"WOLFSSL_LMS_MAX_LEVELS=$(LMS_LEVELS)" \
-D"WOLFSSL_LMS_MAX_HEIGHT=$(LMS_HEIGHT)" \
-D"LMS_LEVELS=$(LMS_LEVELS)" -D"LMS_HEIGHT=$(LMS_HEIGHT)" \
-D"LMS_WINTERNITZ=$(LMS_WINTERNITZ)" \
-D"LMS_IMAGE_SIGNATURE_SIZE"=$(IMAGE_SIGNATURE_SIZE) \
-D"WOLFSSL_LMS_VERIFY_ONLY"
XMSS_OBJS=\
$(WOLFBOOT_LIB_WOLFSSL)/wolfcrypt/src/wc_xmss.o \
$(WOLFBOOT_LIB_WOLFSSL)/wolfcrypt/src/wc_xmss_impl.o
XMSS_EXTRA=\
-D"WOLFSSL_HAVE_XMSS" \
-D"WOLFSSL_WC_XMSS_SMALL" \
-DWOLFBOOT_XMSS_PARAMS=\"$(XMSS_PARAMS)\" \
-D"XMSS_IMAGE_SIGNATURE_SIZE"=$(IMAGE_SIGNATURE_SIZE) \
-D"WOLFSSL_XMSS_VERIFY_ONLY" -D"WOLFSSL_XMSS_MAX_HEIGHT=32"
ML_DSA_OBJS=\
$(WOLFBOOT_LIB_WOLFSSL)/wolfcrypt/src/wc_mldsa.o
ML_DSA_EXTRA=\
-D"ML_DSA_IMAGE_SIGNATURE_SIZE"=$(IMAGE_SIGNATURE_SIZE) \
-D"ML_DSA_LEVEL"=$(ML_DSA_LEVEL)
ifeq ($(SIGN),ECC256)
KEYGEN_OPTIONS+=--ecc256
SIGN_OPTIONS+=--ecc256
WOLFCRYPT_OBJS+=$(ECC_OBJS)
WOLFCRYPT_OBJS+=$(MATH_OBJS)
CFLAGS+=-D"WOLFBOOT_SIGN_ECC256"
ifeq ($(WOLFBOOT_SMALL_STACK),1)
STACK_USAGE=4096
else
ifeq ($(WOLFTPM),1)
STACK_USAGE=$(STACK_USAGE_WOLFTPM)
else
ifneq ($(SPMATH),1)
STACK_USAGE=5264
else
STACK_USAGE=7632
endif
endif
endif
ifeq ($(shell test $(IMAGE_HEADER_SIZE) -lt 256; echo $$?),0)
IMAGE_HEADER_SIZE=256
endif
endif
ifeq ($(SIGN),ECC384)
KEYGEN_OPTIONS+=--ecc384
SIGN_OPTIONS+=--ecc384
WOLFCRYPT_OBJS+=$(ECC_OBJS)
WOLFCRYPT_OBJS+=$(MATH_OBJS)
CFLAGS+=-D"WOLFBOOT_SIGN_ECC384"
ifeq ($(WOLFBOOT_SMALL_STACK),1)
STACK_USAGE=5880
else
ifeq ($(WOLFTPM),1)
STACK_USAGE=$(STACK_USAGE_WOLFTPM)
else
ifneq ($(SPMATH),1)
STACK_USAGE=11248
else
STACK_USAGE=11216
endif
endif
endif
ifeq ($(shell test $(IMAGE_HEADER_SIZE) -lt 512; echo $$?),0)
IMAGE_HEADER_SIZE=512
endif
endif
ifeq ($(SIGN),ECC521)
KEYGEN_OPTIONS+=--ecc521
SIGN_OPTIONS+=--ecc521
CFLAGS+=-D"WOLFBOOT_SIGN_ECC521"
WOLFCRYPT_OBJS+=$(ECC_OBJS)
WOLFCRYPT_OBJS+=$(MATH_OBJS)
ifeq ($(WOLFBOOT_SMALL_STACK),1)
STACK_USAGE=4096
else
ifeq ($(WOLFTPM),1)
STACK_USAGE=$(STACK_USAGE_WOLFTPM)
else
ifneq ($(SPMATH),1)
STACK_USAGE=11256
else
STACK_USAGE=8480
endif
endif
endif
ifeq ($(shell test $(IMAGE_HEADER_SIZE) -lt 512; echo $$?),0)
IMAGE_HEADER_SIZE=512
endif
endif
ifeq ($(SIGN),ED25519)
KEYGEN_OPTIONS+=--ed25519
SIGN_OPTIONS+=--ed25519
WOLFCRYPT_OBJS+=$(ED25519_OBJS)
CFLAGS+=-D"WOLFBOOT_SIGN_ED25519"
ifeq ($(WOLFTPM),1)
STACK_USAGE=$(STACK_USAGE_WOLFTPM)
else
STACK_USAGE?=5000
endif
ifeq ($(shell test $(IMAGE_HEADER_SIZE) -lt 256; echo $$?),0)
IMAGE_HEADER_SIZE=256
endif
endif
ifeq ($(SIGN),ED448)
KEYGEN_OPTIONS+=--ed448
SIGN_OPTIONS+=--ed448
WOLFCRYPT_OBJS+= $(ED448_OBJS)
ifeq ($(WOLFTPM),1)
STACK_USAGE=$(STACK_USAGE_WOLFTPM)
else
ifeq ($(WOLFBOOT_SMALL_STACK),1)
STACK_USAGE?=1024
else
STACK_USAGE?=4578
endif
endif
ifneq ($(HASH),SHA3)
WOLFCRYPT_OBJS+=$(WOLFBOOT_LIB_WOLFSSL)/wolfcrypt/src/sha3.o
endif
CFLAGS+=-D"WOLFBOOT_SIGN_ED448"
ifeq ($(shell test $(IMAGE_HEADER_SIZE) -lt 512; echo $$?),0)
IMAGE_HEADER_SIZE=512
endif
endif
ifeq ($(SIGN),RSAPSS2048)
KEYGEN_OPTIONS+=--rsapss2048
SIGN_OPTIONS+=--rsapss2048
SIGN_ALG=RSAPSS2048
WOLFCRYPT_OBJS+= $(RSA_OBJS)
WOLFCRYPT_OBJS+=$(MATH_OBJS)
CFLAGS+=-D"WOLFBOOT_SIGN_RSAPSS2048" $(RSA_EXTRA_CFLAGS)
ifeq ($(WOLFBOOT_SMALL_STACK),1)
ifneq ($(SPMATH),1)
STACK_USAGE=5008
else
STACK_USAGE=4096
endif
else
ifeq ($(WOLFTPM),1)
STACK_USAGE=$(STACK_USAGE_WOLFTPM)
else
ifneq ($(SPMATH),1)
STACK_USAGE=35952
else
STACK_USAGE=17568
endif
endif
endif
ifeq ($(shell test $(IMAGE_HEADER_SIZE) -lt 512; echo $$?),0)
IMAGE_HEADER_SIZE=512
endif
endif
ifeq ($(SIGN),RSAPSS3072)
KEYGEN_OPTIONS+=--rsapss3072
SIGN_OPTIONS+=--rsapss3072
SIGN_ALG=RSAPSS3072
WOLFCRYPT_OBJS+= $(RSA_OBJS)
WOLFCRYPT_OBJS+=$(MATH_OBJS)
CFLAGS+=-D"WOLFBOOT_SIGN_RSAPSS3072" $(RSA_EXTRA_CFLAGS)
ifeq ($(WOLFBOOT_SMALL_STACK),1)
ifneq ($(SPMATH),1)
STACK_USAGE=5008
else
STACK_USAGE=4364
endif
else
ifeq ($(WOLFTPM),1)
STACK_USAGE=$(STACK_USAGE_WOLFTPM)
else
ifneq ($(SPMATH),1)
STACK_USAGE=52592
else
STACK_USAGE=12288
endif
endif
endif
ifneq ($(HASH),SHA256)
ifeq ($(shell test $(IMAGE_HEADER_SIZE) -lt 1024; echo $$?),0)
IMAGE_HEADER_SIZE=1024
endif
endif
ifeq ($(shell test $(IMAGE_HEADER_SIZE) -lt 512; echo $$?),0)
IMAGE_HEADER_SIZE=512
endif
endif
ifeq ($(SIGN),RSAPSS4096)
KEYGEN_OPTIONS+=--rsapss4096
SIGN_OPTIONS+=--rsapss4096
SIGN_ALG=RSAPSS4096
WOLFCRYPT_OBJS+= $(RSA_OBJS)
WOLFCRYPT_OBJS+=$(MATH_OBJS)
CFLAGS+=-D"WOLFBOOT_SIGN_RSAPSS4096" $(RSA_EXTRA_CFLAGS)
ifeq ($(WOLFBOOT_SMALL_STACK),1)
ifneq ($(SPMATH),1)
STACK_USAGE=5888
else
STACK_USAGE=5768
endif
else
ifeq ($(WOLFTPM),1)
STACK_USAGE=$(STACK_USAGE_WOLFTPM)
else
ifneq ($(SPMATH),1)
STACK_USAGE=69232
else
STACK_USAGE=18064
endif
endif
endif
ifeq ($(shell test $(IMAGE_HEADER_SIZE) -lt 1024; echo $$?),0)
IMAGE_HEADER_SIZE=1024
endif
endif
ifneq ($(findstring RSA2048,$(SIGN)),)
KEYGEN_OPTIONS+=--rsa2048
ifeq ($(SIGN),RSA2048ENC)
SIGN_OPTIONS+=--rsa2048enc
else
SIGN_OPTIONS+=--rsa2048
endif
SIGN_ALG=RSA2048 # helps keystore.c check
WOLFCRYPT_OBJS+= $(RSA_OBJS)
WOLFCRYPT_OBJS+=$(MATH_OBJS)
CFLAGS+=-D"WOLFBOOT_SIGN_RSA2048" $(RSA_EXTRA_CFLAGS)
ifeq ($(WOLFBOOT_SMALL_STACK),1)
ifneq ($(SPMATH),1)
STACK_USAGE=5008
else
STACK_USAGE=4096
endif
else
ifeq ($(WOLFTPM),1)
STACK_USAGE=$(STACK_USAGE_WOLFTPM)
else
ifneq ($(SPMATH),1)
STACK_USAGE=35952
else
STACK_USAGE=17568
endif
endif
endif
ifeq ($(shell test $(IMAGE_HEADER_SIZE) -lt 512; echo $$?),0)
IMAGE_HEADER_SIZE=512
endif
endif
ifneq ($(findstring RSA3072,$(SIGN)),)
KEYGEN_OPTIONS+=--rsa3072
ifeq ($(SIGN),RSA3072ENC)
SIGN_OPTIONS+=--rsa3072enc
else
SIGN_OPTIONS+=--rsa3072
endif
SIGN_ALG=RSA3072 # helps keystore.c check
WOLFCRYPT_OBJS+= $(RSA_OBJS)
WOLFCRYPT_OBJS+=$(MATH_OBJS)
CFLAGS+=-D"WOLFBOOT_SIGN_RSA3072" $(RSA_EXTRA_CFLAGS)
ifeq ($(WOLFBOOT_SMALL_STACK),1)
ifneq ($(SPMATH),1)
STACK_USAGE=5008
else
STACK_USAGE=4364
endif
else
ifeq ($(WOLFTPM),1)
STACK_USAGE=$(STACK_USAGE_WOLFTPM)
else
ifneq ($(SPMATH),1)
STACK_USAGE=52592
else
STACK_USAGE=12288
endif
endif
endif
ifneq ($(HASH),SHA256)
ifeq ($(shell test $(IMAGE_HEADER_SIZE) -lt 1024; echo $$?),0)
IMAGE_HEADER_SIZE=1024
endif
endif
ifeq ($(shell test $(IMAGE_HEADER_SIZE) -lt 512; echo $$?),0)
IMAGE_HEADER_SIZE=512
endif
endif
ifneq ($(findstring RSA4096,$(SIGN)),)
SIGN:=RSA4096
KEYGEN_OPTIONS+=--rsa4096
ifeq ($(SIGN),RSA4096ENC)
SIGN_OPTIONS+=--rsa4096enc
else
SIGN_OPTIONS+=--rsa4096
endif
SIGN_ALG=RSA4096 # helps keystore.c check
WOLFCRYPT_OBJS+= $(RSA_OBJS)
WOLFCRYPT_OBJS+=$(MATH_OBJS)
CFLAGS+=-D"WOLFBOOT_SIGN_RSA4096" $(RSA_EXTRA_CFLAGS)
ifeq ($(WOLFBOOT_SMALL_STACK),1)
ifneq ($(SPMATH),1)
STACK_USAGE=5888
else
STACK_USAGE=5768
endif
else
ifeq ($(WOLFTPM),1)
STACK_USAGE=$(STACK_USAGE_WOLFTPM)
else
ifneq ($(SPMATH),1)
STACK_USAGE=69232
else
STACK_USAGE=18064
endif
endif
endif
ifeq ($(shell test $(IMAGE_HEADER_SIZE) -lt 1024; echo $$?),0)
IMAGE_HEADER_SIZE=1024
endif
endif
ifeq ($(SIGN),LMS)
# For LMS the signature size is a function of the LMS parameters.
# All five of these parms must be set in the LMS .config file:
# LMS_LEVELS, LMS_HEIGHT, LMS_WINTERNITZ, IMAGE_SIGNATURE_SIZE,
# IMAGE_HEADER_SIZE
ifndef LMS_LEVELS
$(error LMS_LEVELS not set)
endif
ifndef LMS_HEIGHT
$(error LMS_HEIGHT not set)
endif
ifndef LMS_WINTERNITZ
$(error LMS_WINTERNITZ not set)
endif
ifndef IMAGE_SIGNATURE_SIZE
$(error IMAGE_SIGNATURE_SIZE not set)
endif
ifndef IMAGE_HEADER_SIZE
$(error IMAGE_HEADER_SIZE not set)
endif
endif
ifeq ($(SIGN),LMS)
KEYGEN_OPTIONS+=--lms
SIGN_OPTIONS+=--lms
WOLFCRYPT_OBJS+= $(LMS_OBJS)
CFLAGS+=-D"WOLFBOOT_SIGN_LMS" $(LMS_EXTRA)
ifeq ($(WOLFBOOT_SMALL_STACK),1)
$(error WOLFBOOT_SMALL_STACK with LMS not supported)
else
STACK_USAGE=1320
endif
endif
ifeq ($(SIGN),XMSS)
ifndef XMSS_PARAMS
$(error XMSS_PARAMS not set)
endif
ifndef IMAGE_SIGNATURE_SIZE
$(error IMAGE_SIGNATURE_SIZE not set)
endif
ifndef IMAGE_HEADER_SIZE
$(error IMAGE_HEADER_SIZE not set)
endif
endif
ifeq ($(SIGN),XMSS)
# Use wc_xmss implementation.
KEYGEN_OPTIONS+=--xmss
SIGN_OPTIONS+=--xmss
WOLFCRYPT_OBJS+=$(XMSS_OBJS)
CFLAGS+=-D"WOLFBOOT_SIGN_XMSS"
CFLAGS+=$(XMSS_EXTRA)
ifeq ($(WOLFBOOT_SMALL_STACK),1)
$(error WOLFBOOT_SMALL_STACK with XMSS not supported)
else
STACK_USAGE=9352
endif
endif
ifeq ($(SIGN),ML_DSA)
# Use wolfcrypt ML-DSA implementation.
KEYGEN_OPTIONS+=--ml_dsa
SIGN_OPTIONS+=--ml_dsa
WOLFCRYPT_OBJS+= $(ML_DSA_OBJS)
CFLAGS+=-D"WOLFBOOT_SIGN_ML_DSA" $(ML_DSA_EXTRA)
ifneq ($(HASH),SHA3)
WOLFCRYPT_OBJS+=$(WOLFBOOT_LIB_WOLFSSL)/wolfcrypt/src/sha3.o
endif
ifeq ($(WOLFBOOT_SMALL_STACK),1)
$(error WOLFBOOT_SMALL_STACK with ML-DSA not supported yet)
else
STACK_USAGE=25000
endif
endif
ifneq ($(SIGN_SECONDARY),)
LOWERCASE_SECONDARY=$(shell echo $(SIGN_SECONDARY) | tr '[:upper:]' '[:lower:]')
SECONDARY_KEYGEN_OPTIONS=--$(LOWERCASE_SECONDARY)
SECONDARY_SIGN_OPTIONS=--$(LOWERCASE_SECONDARY)
CFLAGS+=-DSIGN_HYBRID
CFLAGS+=-DWOLFBOOT_SIGN_SECONDARY_$(SIGN_SECONDARY)
ifeq ($(SIGN_SECONDARY),RSA2048)
WOLFCRYPT_OBJS+=$(RSA_OBJS)
WOLFCRYPT_OBJS+=$(MATH_OBJS)
endif
ifeq ($(SIGN_SECONDARY),RSA3072)
WOLFCRYPT_OBJS+=$(RSA_OBJS)
WOLFCRYPT_OBJS+=$(MATH_OBJS)
endif
ifeq ($(SIGN_SECONDARY),RSA4096)
WOLFCRYPT_OBJS+=$(RSA_OBJS)
WOLFCRYPT_OBJS+=$(MATH_OBJS)
endif
ifeq ($(SIGN_SECONDARY),RSAPSS2048)
WOLFCRYPT_OBJS+=$(RSA_OBJS)
WOLFCRYPT_OBJS+=$(MATH_OBJS)
endif
ifeq ($(SIGN_SECONDARY),RSAPSS3072)
WOLFCRYPT_OBJS+=$(RSA_OBJS)
WOLFCRYPT_OBJS+=$(MATH_OBJS)
endif
ifeq ($(SIGN_SECONDARY),RSAPSS4096)
WOLFCRYPT_OBJS+=$(RSA_OBJS)
WOLFCRYPT_OBJS+=$(MATH_OBJS)
endif
ifeq ($(SIGN_SECONDARY),ECC256)
WOLFCRYPT_OBJS+=$(ECC_OBJS)
WOLFCRYPT_OBJS+=$(MATH_OBJS)
endif
ifeq ($(SIGN_SECONDARY),ECC384)
WOLFCRYPT_OBJS+=$(ECC_OBJS)
WOLFCRYPT_OBJS+=$(MATH_OBJS)
endif
ifeq ($(SIGN_SECONDARY),ECC521)
WOLFCRYPT_OBJS+=$(ECC_OBJS)
WOLFCRYPT_OBJS+=$(MATH_OBJS)
endif
ifeq ($(SIGN_SECONDARY),ED25519)
WOLFCRYPT_OBJS+=$(ED25519_OBJS)
endif
ifeq ($(SIGN_SECONDARY),ED448)
WOLFCRYPT_OBJS+=$(ED448_OBJS)
endif
ifeq ($(SIGN_SECONDARY),LMS)
WOLFCRYPT_OBJS+=$(LMS_OBJS)
CFLAGS+=-D"WOLFBOOT_SIGN_LMS" $(LMS_EXTRA)
endif
ifeq ($(SIGN_SECONDARY),XMSS)
WOLFCRYPT_OBJS+= $(XMSS_OBJS)
CFLAGS+=-D"WOLFBOOT_SIGN_XMSS" $(XMSS_EXTRA)
endif
ifeq ($(SIGN_SECONDARY),ML_DSA)
WOLFCRYPT_OBJS+= $(ML_DSA_OBJS)
ifneq ($(HASH),SHA3)
WOLFCRYPT_OBJS+=$(WOLFBOOT_LIB_WOLFSSL)/wolfcrypt/src/sha3.o
endif
CFLAGS+=-D"WOLFBOOT_SIGN_ML_DSA" $(ML_DSA_EXTRA)
endif
endif
ifeq ($(RAM_CODE),1)
CFLAGS+= -D"RAM_CODE"
endif
ifeq ($(FLAGS_HOME),1)
CFLAGS+=-D"FLAGS_HOME=1"
endif
ifeq ($(FLAGS_INVERT),1)
CFLAGS+=-D"WOLFBOOT_FLAGS_INVERT=1"
FILL_BYTE?=0x00
else
FILL_BYTE?=0xFF
endif
CFLAGS+=-D"FILL_BYTE=$(FILL_BYTE)"
ifeq ($(DUALBANK_SWAP),1)
CFLAGS+=-D"DUALBANK_SWAP=1"
endif
ifeq ($(SPI_FLASH),1)
EXT_FLASH=1
CFLAGS+=-D"SPI_FLASH=1"
OBJS+= src/spi_flash.o
ifeq ($(ARCH),RENESAS_RX)
WOLFCRYPT_OBJS+=hal/spi/spi_drv_renesas_rx.o
else
WOLFCRYPT_OBJS+=hal/spi/spi_drv_$(SPI_TARGET).o
endif
endif
ifeq ($(OCTOSPI_FLASH),1)
EXT_FLASH=1
QSPI_FLASH=1
CFLAGS+=-D"OCTOSPI_FLASH=1"
endif
ifeq ($(QSPI_FLASH),1)
EXT_FLASH=1
CFLAGS+=-D"QSPI_FLASH=1"
OBJS+= src/qspi_flash.o
ifeq ($(ARCH),RENESAS_RX)
WOLFCRYPT_OBJS+=hal/spi/spi_drv_renesas_rx.o
else
WOLFCRYPT_OBJS+=hal/spi/spi_drv_$(SPI_TARGET).o
endif
endif
# SD Card support (Cadence SDHCI controller)
ifeq ($(DISK_SDCARD),1)
CFLAGS+=-D"DISK_SDCARD=1"
endif
# eMMC support (Cadence SDHCI controller)
ifeq ($(DISK_EMMC),1)
CFLAGS+=-D"DISK_EMMC=1"
endif
# Add SDHCI driver if SD card or eMMC is enabled (only add once).
# PPC targets provide their own eSDHC driver (hal/nxp_esdhc.o, added in
# arch.mk), so the Cadence SDHCI driver must not be linked there (its
# disk_* entry points would collide).
ifneq ($(filter 1,$(DISK_SDCARD) $(DISK_EMMC)),)
ifneq ($(ARCH),PPC)
OBJS+= src/sdhci.o
endif
endif
# Optional read-only filesystem support for disk boot (src/update_disk.c),
# so a boot slot can name a file instead of requiring the signed image at
# raw offset 0 of a partition. DISK_FS = fat32 | ext4 | both. Leaving it
# unset keeps raw partition access completely unchanged.
#
# The WOLFBOOT_UPDATE_DISK test works because arch.mk is included before
# this file (see the Makefile) and every disk-capable arch block puts that
# define into CFLAGS. Gating here rather than in arch.mk keeps the knob in
# one place instead of four.
DISK_FS ?=
ifneq ($(DISK_FS),)
ifeq (,$(filter fat32 ext4 both,$(DISK_FS)))
$(error DISK_FS must be one of: fat32, ext4, both)
endif
ifeq ($(WOLFBOOT_TARGET_BUILD),1)
ifeq (,$(findstring WOLFBOOT_UPDATE_DISK,$(CFLAGS)))
$(error DISK_FS requires a disk-boot target (DISK_SDCARD=1, DISK_EMMC=1, or an x86 FSP/AHCI target))
endif
endif
CFLAGS+=-D"WOLFBOOT_DISK_FS=1"
OBJS+= src/disk_fs.o
ifneq (,$(filter fat32 both,$(DISK_FS)))
CFLAGS+=-D"WOLFBOOT_FAT32=1"
OBJS+= src/fat32.o
endif
ifneq (,$(filter ext4 both,$(DISK_FS)))
CFLAGS+=-D"WOLFBOOT_EXT4=1"
OBJS+= src/ext4.o
endif
ifneq ($(WOLFBOOT_FS_CACHE_SIZE),)
CFLAGS+=-D"WOLFBOOT_FS_CACHE_SIZE=$(WOLFBOOT_FS_CACHE_SIZE)"
endif
ifneq ($(DEBUG_FS),)
CFLAGS+=-D"DEBUG_FS=$(DEBUG_FS)"
endif
endif
ifeq ($(UART_FLASH),1)
EXT_FLASH=1
endif
ifeq ($(ENCRYPT),1)
CFLAGS+=-D"EXT_ENCRYPTED=1"
ifeq ($(ENCRYPT_PKCS11),1)
CFLAGS+=-DENCRYPT_PKCS11 -D'ENCRYPT_PKCS11_PIN=$(ENCRYPT_PKCS11_PIN)'
ifeq ($(ENCRYPT_PKCS11_KEY_ID_SIZE),)
ENCRYPT_PKCS11_KEY_ID_SIZE=4
endif
CFLAGS+=-DENCRYPT_PKCS11_KEY_ID_SIZE=$(ENCRYPT_PKCS11_KEY_ID_SIZE)
ifeq ($(ENCRYPT_PKCS11_MECHANISM),)
# No mechanism defined; assume AES-CTR
CFLAGS+=-DENCRYPT_PKCS11_MECHANISM=0x00001086UL
CFLAGS+=-DENCRYPT_PKCS11_BLOCK_SIZE=16
CFLAGS+=-DENCRYPT_PKCS11_NONCE_SIZE=16
else
CFLAGS+=-DENCRYPT_PKCS11_MECHANISM=$(ENCRYPT_PKCS11_MECHANISM)
CFLAGS+=-DENCRYPT_PKCS11_BLOCK_SIZE=$(ENCRYPT_PKCS11_BLOCK_SIZE)
CFLAGS+=-DENCRYPT_PKCS11_NONCE_SIZE=$(ENCRYPT_PKCS11_NONCE_SIZE)
endif
else
ifeq ($(ENCRYPT_WITH_AES128),1)
CFLAGS+=-DWOLFSSL_AES_COUNTER -DWOLFSSL_AES_DIRECT
CFLAGS+=-DENCRYPT_WITH_AES128 -DWOLFSSL_AES_128
WOLFCRYPT_OBJS+=$(WOLFBOOT_LIB_WOLFSSL)/wolfcrypt/src/aes.o
else
ifeq ($(ENCRYPT_WITH_AES256),1)
CFLAGS+=-DWOLFSSL_AES_COUNTER -DWOLFSSL_AES_DIRECT
CFLAGS+=-DENCRYPT_WITH_AES256 -DWOLFSSL_AES_256
WOLFCRYPT_OBJS+=$(WOLFBOOT_LIB_WOLFSSL)/wolfcrypt/src/aes.o
else
ENCRYPT_WITH_CHACHA=1
WOLFCRYPT_OBJS+=$(WOLFBOOT_LIB_WOLFSSL)/wolfcrypt/src/chacha.o
CFLAGS+=-DENCRYPT_WITH_CHACHA -DHAVE_CHACHA
endif
endif
endif
ifeq ($(CUSTOM_ENCRYPT_KEY),1)
CFLAGS+=-D"CUSTOM_ENCRYPT_KEY"
endif
endif
ifeq ($(EXT_FLASH),1)
CFLAGS+= -D"EXT_FLASH=1" -D"PART_UPDATE_EXT=1"
ifeq ($(NO_SWAP_EXT),)
CFLAGS+= -D"PART_SWAP_EXT=1"
endif
ifeq ($(NO_XIP),1)
CFLAGS+=-D"PART_BOOT_EXT=1"
endif
ifeq ($(UART_FLASH),1)
CFLAGS+=-D"UART_FLASH=1"
OBJS+=src/uart_flash.o
WOLFCRYPT_OBJS+=hal/uart/uart_drv_$(UART_TARGET).o
endif
endif
ifeq ($(NO_XIP),1)
CFLAGS+=-D"NO_XIP"
endif
ifeq ($(DEBUG_UART),1)
ifeq ($(WOLFHAL),1)
# wolfHAL provides uart_write via hal/wolfhal.c; the wolfHAL board.mk
# pulls in the wolfHAL uart driver. Don't auto-add the legacy
# hal/uart/uart_drv_$(TARGET).o or its symbols would collide.
CFLAGS+=-DDEBUG_UART
else ifeq ($(strip $(UART_TARGET)),)
else
UART_DRV_OBJ:=hal/uart/uart_drv_$(UART_TARGET).o
# Test for the driver SOURCE, not the object: the object does not exist on a
# clean tree, so testing for it meant DEBUG_UART was silently dropped on the
# very build that was supposed to enable it.
ifneq ($(wildcard $(UART_DRV_OBJ:.o=.c)),)
CFLAGS+=-DDEBUG_UART
ifneq ($(findstring $(UART_DRV_OBJ),$(OBJS)),$(UART_DRV_OBJ))
OBJS+=$(UART_DRV_OBJ)
endif
endif
endif
endif
# Flash erase/write/read test at WOLFBOOT_PARTITION_UPDATE_ADDRESS.
ifeq ($(TEST_FLASH),1)
CFLAGS+=-DTEST_FLASH
endif
ifeq ($(NO_QNX),1)
CFLAGS+=-D"NO_QNX"
endif
ifeq ($(SKIP_GIC_INIT),1)
CFLAGS+=-D"SKIP_GIC_INIT"
endif
# Boot Exception Level (mutually exclusive)
ifeq ($(BOOT_EL1),1)
ifeq ($(BOOT_EL2),1)
$(error BOOT_EL1 and BOOT_EL2 are mutually exclusive. Choose one.)
endif
CFLAGS+=-D"BOOT_EL1"
endif
ifeq ($(BOOT_EL2),1)
CFLAGS+=-D"BOOT_EL2"
endif
ifeq ($(BOOT_BENCHMARK),1)
CFLAGS+=-D"BOOT_BENCHMARK"
endif
ifeq ($(ALLOW_DOWNGRADE),1)
$(warning ALLOW_DOWNGRADE=1 disables anti-rollback enforcement; signed older firmware images can replace newer ones)
CFLAGS+= -D"ALLOW_DOWNGRADE"
endif
# Raw (non-FIT) device tree authentication (see docs/Signing.md '--dts'). A
# device tree bound to the image via HDR_DEVICE_TREE_DIGEST is always verified;
# WOLFBOOT_REQUIRE_SIGNED_DTB additionally makes a missing digest a hard failure
# (fail-closed) instead of a warning, once every raw-DTB payload is signed with
# 'sign --dts'.
ifeq ($(WOLFBOOT_REQUIRE_SIGNED_DTB),1)
$(warning WOLFBOOT_REQUIRE_SIGNED_DTB=1 makes wolfBoot panic on a raw device tree that carries no authenticated HDR_DEVICE_TREE_DIGEST; sign every raw DTB payload with 'sign --dts' first or the target will not boot)
CFLAGS+= -D"WOLFBOOT_REQUIRE_SIGNED_DTB"
endif
ifeq ($(WOLFBOOT_SKIP_BOOT_VERIFY),1)
ifneq ($(WOLFBOOT_SELF_HEADER),1)
$(error WOLFBOOT_SKIP_BOOT_VERIFY=1 requires WOLFBOOT_SELF_HEADER=1)
endif
ifneq ($(SELF_UPDATE_MONOLITHIC),1)
$(error WOLFBOOT_SKIP_BOOT_VERIFY=1 requires WOLFBOOT_SELF_UPDATE_MONOLITHIC (set SELF_UPDATE_MONOLITHIC=1))
endif
$(warning WOLFBOOT_SKIP_BOOT_VERIFY=1 disables ALL boot-time firmware signature and integrity verification; only safe when an external verifier authenticates the full monolithic payload before boot. Do not use in production.)
CFLAGS+=-D"WOLFBOOT_SKIP_BOOT_VERIFY"
endif
ifeq ($(NVM_FLASH_WRITEONCE),1)
CFLAGS+= -D"NVM_FLASH_WRITEONCE"
endif
ifeq ($(DISABLE_BACKUP),1)
$(warning DISABLE_BACKUP=1 disables power-fail-safe updates; losing power during an update can leave BOOT partially written and unrecoverable)
CFLAGS+= -D"DISABLE_BACKUP"
WOLFBOOT_PARTITION_SWAP_ADDRESS?=0
endif
DEBUG_SYMBOLS?=0
ifeq ($(DEBUG),1)
CFLAGS+=-O0 -D"DEBUG"
DEBUG_SYMBOLS=1
else
ifeq ($(OPTIMIZATION_LEVEL),)
CFLAGS+=-Os
else
CFLAGS+=-O$(OPTIMIZATION_LEVEL)
endif
endif
# allow elf inclusion of debug symbols even with optimizations enabled
# make DEBUG_SYMBOLS=1
ifeq ($(DEBUG_SYMBOLS),1)
CFLAGS+=-g -DDEBUG_SYMBOLS
ifeq ($(USE_GCC),1)
CFLAGS+=-ggdb3
else ifneq ($(ARCH),AURIX_TC3)
ifneq ($(USE_CLANG),1)
# -gstabs was removed in GCC 12; -gdwarf-4 works on old and new GCC
CFLAGS+=-gdwarf-4
endif
endif
endif
Q?=@
ifeq ($(V),1)
Q=
endif
ifeq ($(NO_MPU),1)
CFLAGS+=-D"WOLFBOOT_NO_MPU"
endif
ifeq ($(VTOR),0)
CFLAGS+=-D"NO_VTOR"
endif
ifeq ($(PKA),1)
OBJS += $(PKA_EXTRA_OBJS)
CFLAGS+=$(PKA_EXTRA_CFLAGS)
endif
ifneq ($(WOLFBOOT_VERSION),0)
ifneq ($(WOLFBOOT_VERSION),)
CFLAGS+=-DWOLFBOOT_VERSION=$(WOLFBOOT_VERSION)
endif
endif
ifeq ($(DELTA_UPDATES),1)
OBJS += src/delta.o
CFLAGS+=-DDELTA_UPDATES
ifneq ($(DELTA_BLOCK_SIZE),)
CFLAGS+=-DDELTA_BLOCK_SIZE=$(DELTA_BLOCK_SIZE)
endif
endif
# GZIP=1 enables native gzip decompression of FIT subimages
# (RFC 1951 + RFC 1952). Enabled by default in FIT-using example configs.
GZIP ?= 0
ifeq ($(GZIP),1)
OBJS += src/gzip.o
CFLAGS+=-DWOLFBOOT_GZIP
endif
# FIT_RAMDISK=1 enables FIT ramdisk (initramfs) extraction and DTB
# /chosen/linux,initrd-{start,end} fixup. Compressed (gzip) ramdisks
# decompress through the same path when GZIP=1.
FIT_RAMDISK ?= 0
ifeq ($(FIT_RAMDISK),1)
CFLAGS+=-DWOLFBOOT_FIT_RAMDISK
endif
# FPGA_BITSTREAM=1 enables loading an "fpga" sub-image from a FIT and
# programming the PL before booting (Xilinx ZynqMP/Zynq-7000; Versal is
# stubbed pending a PLM Load-PDI path). Off by default.
FPGA_BITSTREAM ?= 0
ifeq ($(FPGA_BITSTREAM),1)
CFLAGS+=-DWOLFBOOT_FPGA_BITSTREAM
endif
# DDR staging address for the (decompressed) FPGA bitstream. The fpga
# sub-image typically has no `load` property and is gzip-compressed, so
# it is decompressed to this address before the PL is programmed. 0 (the
# default) means "honor the FIT's own `load` property instead". Pick a
# region clear of the FIT staging area (WOLFBOOT_LOAD_ADDRESS) and the
# kernel/DTB/ramdisk load addresses.
WOLFBOOT_LOAD_FPGA_ADDRESS ?= 0
# FPGA_NONFATAL=1 downgrades a failed PL load from fatal (panic) to a
# logged warning that continues the boot.
FPGA_NONFATAL ?= 0
ifeq ($(FPGA_NONFATAL),1)
$(warning FPGA_NONFATAL=1 continues booting when the FPGA bitstream fails to load; the device may run without security-relevant programmable logic)
CFLAGS+=-DWOLFBOOT_FPGA_NONFATAL
endif
# FIT_CONFIG_SELECT=1 lets the target pick a per-board FIT configuration
# at runtime (hal_fit_config_name) instead of always booting the FIT's
# `default` config - mirrors U-Boot's `bootm <addr>#conf-<board>`.
FIT_CONFIG_SELECT ?= 0
ifeq ($(FIT_CONFIG_SELECT),1)
CFLAGS+=-DWOLFBOOT_FIT_CONFIG_SELECT
endif
ifeq ($(ARMORED),1)
CFLAGS+=-DWOLFBOOT_ARMORED
endif
ifeq ($(WOLFBOOT_IMG_HASH_ONESHOT),1)
CFLAGS+=-DWOLFBOOT_IMG_HASH_ONESHOT
endif
ifeq ($(WOLFBOOT_HUGE_STACK),1)
CFLAGS+=-DWOLFBOOT_HUGE_STACK
endif
ifeq ($(WOLFCRYPT_TZ_PKCS11),1)
ifeq ($(WOLFCRYPT_TZ_PSA),1)
$(error WOLFCRYPT_TZ_PKCS11 and WOLFCRYPT_TZ_PSA are mutually exclusive)
endif
ifeq ($(WOLFCRYPT_TZ_FWTPM),1)
$(error WOLFCRYPT_TZ_PKCS11 and WOLFCRYPT_TZ_FWTPM are mutually exclusive)
endif
ifeq ($(WOLFCRYPT_TZ_WOLFHSM),1)
$(error WOLFCRYPT_TZ_PKCS11 and WOLFCRYPT_TZ_WOLFHSM are mutually exclusive)
endif
endif
ifeq ($(WOLFCRYPT_TZ_PSA),1)
ifeq ($(WOLFCRYPT_TZ_FWTPM),1)
$(error WOLFCRYPT_TZ_PSA and WOLFCRYPT_TZ_FWTPM are mutually exclusive)
endif
ifeq ($(WOLFCRYPT_TZ_WOLFHSM),1)
$(error WOLFCRYPT_TZ_PSA and WOLFCRYPT_TZ_WOLFHSM are mutually exclusive)
endif
endif
ifeq ($(WOLFCRYPT_TZ_FWTPM),1)
ifeq ($(WOLFCRYPT_TZ_WOLFHSM),1)
$(error WOLFCRYPT_TZ_FWTPM and WOLFCRYPT_TZ_WOLFHSM are mutually exclusive)
endif
endif
ifeq ($(WOLFBOOT_DICE_HW),1)
ifneq ($(WOLFCRYPT_TZ_PSA),1)
$(error WOLFBOOT_DICE_HW requires WOLFCRYPT_TZ_PSA=1)
endif
endif
ifeq ($(WOLFCRYPT_TZ_PKCS11),1)
CFLAGS+=-DSECURE_PKCS11
CFLAGS+=-DWOLFPKCS11_USER_SETTINGS
CFLAGS+=-DWOLFSSL_PKCS11_RW_TOKENS
CFLAGS+=-DCK_CALLABLE="__attribute__((cmse_nonsecure_entry))"
CFLAGS+=-I$(WOLFBOOT_LIB_WOLFPKCS11)
CFLAGS+=-DWP11_HASH_PIN_COST=3
ifeq ($(USE_CLANG),1)
CLANG_MULTILIB_FLAGS:=$(filter -mthumb -mlittle-endian,$(LDFLAGS)) $(filter -mcpu=%,$(CFLAGS))
LIBS+=$(shell $(CLANG_GCC_NAME) $(CLANG_MULTILIB_FLAGS) -print-file-name=libc.a)
LIBS+=$(shell $(CLANG_GCC_NAME) $(CLANG_MULTILIB_FLAGS) -print-libgcc-file-name)
else
LDFLAGS+=--specs=nano.specs
endif
WOLFCRYPT_OBJS+=src/store_sbrk.o
WOLFCRYPT_OBJS+=src/pkcs11_store.o
WOLFCRYPT_OBJS+=src/pkcs11_callable.o
WOLFCRYPT_OBJS+=$(WOLFBOOT_LIB_WOLFSSL)/wolfcrypt/src/pwdbased.o
WOLFCRYPT_OBJS+=$(WOLFBOOT_LIB_WOLFSSL)/wolfcrypt/src/hmac.o
WOLFCRYPT_OBJS+=$(WOLFBOOT_LIB_WOLFSSL)/wolfcrypt/src/dh.o
ifeq ($(findstring random.o,$(WOLFCRYPT_OBJS)),)
WOLFCRYPT_OBJS+=$(WOLFBOOT_LIB_WOLFSSL)/wolfcrypt/src/random.o
endif
WOLFCRYPT_OBJS+=$(WOLFBOOT_LIB_WOLFPKCS11)/src/crypto.o \
$(WOLFBOOT_LIB_WOLFPKCS11)/src/internal.o \
$(WOLFBOOT_LIB_WOLFPKCS11)/src/slot.o \
$(WOLFBOOT_LIB_WOLFPKCS11)/src/wolfpkcs11.o
STACK_USAGE=16688
ifeq ($(ENCRYPT_WITH_AES128)$(ENCRYPT_WITH_AES256),)
WOLFCRYPT_OBJS+=$(WOLFBOOT_LIB_WOLFSSL)/wolfcrypt/src/aes.o
endif
ifeq ($(findstring RSA,$(SIGN)),)
ifeq ($(findstring RSA,$(SIGN_SECONDARY)),)
WOLFCRYPT_OBJS+=$(RSA_OBJS)
endif
endif
ifeq ($(findstring ECC,$(SIGN)),)
ifeq ($(findstring ECC,$(SIGN_SECONDARY)),)
WOLFCRYPT_OBJS+=$(ECC_OBJS)
endif
endif
ifeq ($(findstring ECC,$(SIGN)),)
ifeq ($(findstring ECC,$(SIGN_SECONDARY)),)
ifeq ($(findstring RSA,$(SIGN)),)
ifeq ($(findstring RSA,$(SIGN_SECONDARY)),)
WOLFCRYPT_OBJS+=$(MATH_OBJS)
endif
endif
endif
endif
endif
ifeq ($(WOLFCRYPT_TZ_PSA),1)
CFLAGS+=-DWOLFCRYPT_TZ_PSA
CFLAGS+=-DWOLFCRYPT_SECURE_MODE
ifeq ($(WOLFBOOT_DICE_HW),1)
CFLAGS+=-DWOLFBOOT_DICE_HW
endif
CFLAGS+=-DWOLFSSL_PSA_ENGINE
CFLAGS+=-DWOLFPSA_CUSTOM_STORE
CFLAGS+=-DNO_DES3 -DNO_DES3_TLS_SUITES
CFLAGS+=-I$(WOLFBOOT_LIB_WOLFCOSE)/include
CFLAGS+=-DWOLFCOSE_LEAN -DWOLFCOSE_ENABLE_EXT_SIGN
WOLFPSA_CFLAGS+=-I$(WOLFBOOT_LIB_WOLFPSA)
WOLFPSA_CFLAGS+=-I$(WOLFBOOT_LIB_WOLFPSA)/wolfpsa
ifeq ($(USE_CLANG),1)
CLANG_MULTILIB_FLAGS:=$(filter -mthumb -mlittle-endian,$(LDFLAGS)) $(filter -mcpu=%,$(CFLAGS))
LIBS+=$(shell $(CLANG_GCC_NAME) $(CLANG_MULTILIB_FLAGS) -print-file-name=libc.a)
LIBS+=$(shell $(CLANG_GCC_NAME) $(CLANG_MULTILIB_FLAGS) -print-libgcc-file-name)
else
LDFLAGS+=--specs=nano.specs
endif
WOLFCRYPT_OBJS+=src/store_sbrk.o
WOLFCRYPT_OBJS+=src/psa_store.o
WOLFCRYPT_OBJS+=src/arm_tee_psa_veneer.o
WOLFCRYPT_OBJS+=src/arm_tee_psa_ipc.o
WOLFCRYPT_OBJS+=$(WOLFBOOT_LIB_WOLFCOSE)/src/wolfcose.o
WOLFCRYPT_OBJS+=$(WOLFBOOT_LIB_WOLFCOSE)/src/wolfcose_cbor.o
WOLFCRYPT_OBJS+=$(WOLFBOOT_LIB_WOLFSSL)/wolfcrypt/src/pwdbased.o
WOLFCRYPT_OBJS+=$(WOLFBOOT_LIB_WOLFSSL)/wolfcrypt/src/hmac.o
WOLFCRYPT_OBJS+=$(WOLFBOOT_LIB_WOLFSSL)/wolfcrypt/src/dh.o
WOLFCRYPT_OBJS+=$(WOLFBOOT_LIB_WOLFSSL)/wolfcrypt/src/chacha.o
ifeq ($(findstring random.o,$(WOLFCRYPT_OBJS)),)
WOLFCRYPT_OBJS+=$(WOLFBOOT_LIB_WOLFSSL)/wolfcrypt/src/random.o
endif
WOLFPSA_SRCS := $(filter-out $(WOLFBOOT_LIB_WOLFPSA)/src/psa_store_posix.c, \
$(wildcard $(WOLFBOOT_LIB_WOLFPSA)/src/*.c))
WOLFPSA_OBJS := $(patsubst %.c,%.o,$(WOLFPSA_SRCS))
WOLFCRYPT_OBJS+=$(WOLFPSA_OBJS)
STACK_USAGE=16688
ifneq ($(ENCRYPT),1)
WOLFCRYPT_OBJS+=$(WOLFBOOT_LIB_WOLFSSL)/wolfcrypt/src/aes.o
endif
ifeq ($(findstring RSA,$(SIGN)),)
ifeq ($(findstring RSA,$(SIGN_SECONDARY)),)
WOLFCRYPT_OBJS+=$(RSA_OBJS)
endif
endif
ifeq ($(findstring ECC,$(SIGN)),)
ifeq ($(findstring ECC,$(SIGN_SECONDARY)),)
WOLFCRYPT_OBJS+=$(ECC_OBJS)
endif
endif
ifeq ($(findstring ECC,$(SIGN)),)
ifeq ($(findstring ECC,$(SIGN_SECONDARY)),)
ifeq ($(findstring RSA,$(SIGN)),)
ifeq ($(findstring RSA,$(SIGN_SECONDARY)),)
WOLFCRYPT_OBJS+=$(MATH_OBJS)
endif
endif
endif
endif
endif
ifeq ($(WOLFCRYPT_TZ_FWTPM),1)
CFLAGS+=-DWOLFBOOT_TZ_FWTPM
CFLAGS+=-DWOLFCRYPT_SECURE_MODE
CFLAGS+=-DWOLFTPM_FWTPM
CFLAGS+=-DFWTPM_NO_NV
CFLAGS+=-DWC_RSA_PSS
CFLAGS+=-DWOLFSSL_PSS_SALT_LEN_DISCOVER
CFLAGS+=-DFWTPM_MAX_COMMAND_SIZE=4096
CFLAGS+=-I$(WOLFBOOT_LIB_WOLFTPM)
ifeq ($(USE_CLANG),1)
CLANG_MULTILIB_FLAGS:=$(filter -mthumb -mlittle-endian,$(LDFLAGS)) $(filter -mcpu=%,$(CFLAGS))
LIBS+=$(shell $(CLANG_GCC_NAME) $(CLANG_MULTILIB_FLAGS) -print-file-name=libc.a)
LIBS+=$(shell $(CLANG_GCC_NAME) $(CLANG_MULTILIB_FLAGS) -print-libgcc-file-name)
else
LDFLAGS+=--specs=nano.specs
endif
WOLFCRYPT_OBJS+=src/store_sbrk.o
WOLFCRYPT_OBJS+=src/fwtpm_callable.o
WOLFCRYPT_OBJS+=$(WOLFBOOT_LIB_WOLFTPM)/src/fwtpm/fwtpm.o
WOLFCRYPT_OBJS+=$(WOLFBOOT_LIB_WOLFTPM)/src/fwtpm/fwtpm_command.o
WOLFCRYPT_OBJS+=$(WOLFBOOT_LIB_WOLFTPM)/src/fwtpm/fwtpm_crypto.o
WOLFCRYPT_OBJS+=$(WOLFBOOT_LIB_WOLFTPM)/src/fwtpm/fwtpm_nv.o
WOLFCRYPT_OBJS+=$(WOLFBOOT_LIB_WOLFTPM)/src/tpm2_util.o
WOLFCRYPT_OBJS+=$(WOLFBOOT_LIB_WOLFTPM)/src/tpm2_packet.o
WOLFCRYPT_OBJS+=$(WOLFBOOT_LIB_WOLFTPM)/src/tpm2_crypto.o
WOLFCRYPT_OBJS+=$(WOLFBOOT_LIB_WOLFTPM)/src/tpm2_param_enc.o
WOLFCRYPT_OBJS+=$(WOLFBOOT_LIB_WOLFSSL)/wolfcrypt/src/hmac.o
ifneq ($(SIGN),ED25519)
WOLFCRYPT_OBJS+=$(WOLFBOOT_LIB_WOLFSSL)/wolfcrypt/src/sha512.o
endif
WOLFCRYPT_OBJS+=$(WOLFBOOT_LIB_WOLFSSL)/wolfcrypt/src/wc_encrypt.o
ifeq ($(ENCRYPT_WITH_AES128)$(ENCRYPT_WITH_AES256),)
WOLFCRYPT_OBJS+=$(WOLFBOOT_LIB_WOLFSSL)/wolfcrypt/src/aes.o
endif
WOLFCRYPT_OBJS+=$(RSA_OBJS)
ifeq ($(findstring ECC,$(SIGN)),)
ifeq ($(findstring ECC,$(SIGN_SECONDARY)),)
WOLFCRYPT_OBJS+=$(ECC_OBJS)
WOLFCRYPT_OBJS+=$(MATH_OBJS)
endif
endif
STACK_USAGE=20000
endif
ifeq ($(WOLFCRYPT_TZ_WOLFHSM),1)
CFLAGS+=-DWOLFCRYPT_TZ_WOLFHSM
CFLAGS+=-DWOLFCRYPT_SECURE_MODE
CFLAGS+=-DWOLFHSM_CFG_ENABLE_SERVER
CFLAGS+=-DWOLFHSM_CFG_COMM_DATA_LEN=1280
CFLAGS+=-DWOLFHSM_CFG_PORT_ARMV8M_TZ_NSC
CFLAGS+=-DWOLFHSM_CFG_NO_SYS_TIME
CFLAGS+=-I"$(WOLFBOOT_LIB_WOLFHSM)"
CFLAGS+=-I"$(WOLFBOOT_LIB_WOLFHSM)/port/armv8m-tz"
ifeq ($(USE_CLANG),1)
CLANG_MULTILIB_FLAGS:=$(filter -mthumb -mlittle-endian,$(LDFLAGS)) $(filter -mcpu=%,$(CFLAGS))
LIBS+=$(shell $(CLANG_GCC_NAME) $(CLANG_MULTILIB_FLAGS) -print-file-name=libc.a)
LIBS+=$(shell $(CLANG_GCC_NAME) $(CLANG_MULTILIB_FLAGS) -print-libgcc-file-name)
else
LDFLAGS+=--specs=nano.specs
endif
WOLFCRYPT_OBJS+=src/store_sbrk.o
WOLFCRYPT_OBJS+=src/wolfhsm_callable.o
WOLFCRYPT_OBJS+=src/wolfhsm_flash_hal.o
WOLFCRYPT_OBJS+=$(WOLFBOOT_LIB_WOLFSSL)/wolfcrypt/src/cryptocb.o
WOLFCRYPT_OBJS+=$(WOLFBOOT_LIB_WOLFSSL)/wolfcrypt/src/hmac.o
ifneq ($(SIGN),ED25519)
WOLFCRYPT_OBJS+=$(WOLFBOOT_LIB_WOLFSSL)/wolfcrypt/src/sha512.o
endif
WOLFCRYPT_OBJS+=$(WOLFBOOT_LIB_WOLFSSL)/wolfcrypt/src/wc_encrypt.o
ifeq ($(ENCRYPT_WITH_AES128)$(ENCRYPT_WITH_AES256),)
WOLFCRYPT_OBJS+=$(WOLFBOOT_LIB_WOLFSSL)/wolfcrypt/src/aes.o
endif
WOLFCRYPT_OBJS+=$(RSA_OBJS)
ifeq ($(findstring ECC,$(SIGN)),)
ifeq ($(findstring ECC,$(SIGN_SECONDARY)),)
WOLFCRYPT_OBJS+=$(ECC_OBJS)
WOLFCRYPT_OBJS+=$(MATH_OBJS)
endif
endif
WOLFHSM_OBJS+=$(WOLFHSM_SERVER_OBJS)
WOLFHSM_OBJS+=$(WOLFBOOT_LIB_WOLFHSM)/port/armv8m-tz/wh_transport_nsc.o
STACK_USAGE=20000
endif
OBJS+=$(PUBLIC_KEY_OBJS)
ifneq ($(STAGE1),1)
OBJS+=$(UPDATE_OBJS)
endif
ifeq ($(WOLFTPM),1)
OBJS+=\
./src/tpm.o \
$(WOLFBOOT_LIB_WOLFTPM)/src/tpm2.o \
$(WOLFBOOT_LIB_WOLFTPM)/src/tpm2_packet.o \
$(WOLFBOOT_LIB_WOLFTPM)/src/tpm2_tis.o \
$(WOLFBOOT_LIB_WOLFTPM)/src/tpm2_wrap.o \
$(WOLFBOOT_LIB_WOLFTPM)/src/tpm2_crypto.o \
$(WOLFBOOT_LIB_WOLFTPM)/src/tpm2_util.o \
$(WOLFBOOT_LIB_WOLFTPM)/src/tpm2_param_enc.o
CFLAGS+=-I$(WOLFBOOT_LIB_WOLFTPM)
CFLAGS+=-D"WOLFBOOT_TPM"
CFLAGS+=-D"WOLFTPM_SMALL_STACK"
ifneq ($(SPI_FLASH),1)
# don't use spi if we're using simulator
ifeq ($(TARGET),sim)
SIM_TPM=1
endif
ifeq ($(SIM_TPM),1)
CFLAGS+=-DWOLFTPM_SWTPM -DTPM_TIMEOUT_TRIES=0 -DHAVE_NETDB_H -DHAVE_UNISTD_H
OBJS+=$(WOLFBOOT_LIB_WOLFTPM)/src/tpm2_swtpm.o
else
# Use memory-mapped WOLFTPM on x86-64
ifeq ($(ARCH),x86_64)
CFLAGS+=-DWOLFTPM_MMIO -DWOLFTPM_EXAMPLE_HAL -DWOLFTPM_INCLUDE_IO_FILE
OBJS+=$(WOLFBOOT_LIB_WOLFTPM)/hal/tpm_io_mmio.o
# By default, on other architectures, provide SPI driver
else
WOLFCRYPT_OBJS+=hal/spi/spi_drv_$(SPI_TARGET).o
endif
endif
endif
ifneq ($(WOLFCRYPT_TZ_PKCS11),1)
ifneq ($(WOLFCRYPT_TZ_PSA),1)
ifneq ($(ENCRYPT),1)
WOLFCRYPT_OBJS+=$(WOLFBOOT_LIB_WOLFSSL)/wolfcrypt/src/aes.o
endif
WOLFCRYPT_OBJS+=$(WOLFBOOT_LIB_WOLFSSL)/wolfcrypt/src/hmac.o
WOLFCRYPT_OBJS+=$(WOLFBOOT_LIB_WOLFSSL)/wolfcrypt/src/random.o
endif
endif
ifeq ($(DEBUG),1)
CFLAGS+=-DWOLFBOOT_DEBUG_TPM=1
endif
endif
## Hash settings
ifeq ($(HASH),SHA256)
CFLAGS+=-D"WOLFBOOT_HASH_SHA256"
endif
ifeq ($(HASH),SHA384)
CFLAGS+=-D"WOLFBOOT_HASH_SHA384"
SIGN_OPTIONS+=--sha384
ifneq ($(SIGN),ED25519)
WOLFCRYPT_OBJS+=$(WOLFBOOT_LIB_WOLFSSL)/wolfcrypt/src/sha512.o
endif
endif
ifeq ($(WOLFBOOT_NO_PARTITIONS),1)
CFLAGS+=-D"WOLFBOOT_NO_PARTITIONS"
endif
ifeq ($(HASH),SHA3)
ifeq ($(HASH_HAL),)
WOLFCRYPT_OBJS+=$(WOLFBOOT_LIB_WOLFSSL)/wolfcrypt/src/sha3.o
endif
CFLAGS+=-D"WOLFBOOT_HASH_SHA3_384"
SIGN_OPTIONS+=--sha3
endif
CFLAGS+=-DIMAGE_HEADER_SIZE=$(IMAGE_HEADER_SIZE)
OBJS+=$(SECURE_OBJS)
# check if both encryption and self update are on
#
ifeq ($(RAM_CODE),1)
ifeq ($(ENCRYPT),1)
ifeq ($(ENCRYPT_WITH_CHACHA),1)
ifneq ($(WOLFHAL),1)
LSCRIPT_IN=hal/$(TARGET)_chacha_ram.ld
endif
endif
endif
ifeq ($(ARCH),ARM)
CFLAGS+=-mlong-calls
endif
endif
# Support external encryption cache
#
ifeq ($(ENCRYPT),1)
ifeq ($(ENCRYPT_CACHE),1)
CFLAGS+=-D"WOLFBOOT_ENCRYPT_CACHE=$(ENCRYPT_CACHE)"
endif
endif
# support for elf32 or elf64 loader
ifeq ($(ELF),1)
CFLAGS+=-DWOLFBOOT_ELF
OBJS += src/elf.o
ifneq ($(DEBUG_ELF),)
CFLAGS+=-DDEBUG_ELF=$(DEBUG_ELF)
endif
ifeq ($(ELF_FLASH_SCATTER),1)
CFLAGS+=-D"WOLFBOOT_ELF_FLASH_SCATTER=1"
endif
endif
ifeq ($(MULTIBOOT2),1)
CFLAGS+=-DWOLFBOOT_MULTIBOOT2
OBJS += src/multiboot.o
endif
ifeq ($(LINUX_PAYLOAD),1)
CFLAGS+=-DWOLFBOOT_LINUX_PAYLOAD
ifeq ($(ARCH),x86_64)
OBJS+=src/x86/linux_loader.o
endif
endif
ifeq ($(64BIT),1)
CFLAGS+=-DWOLFBOOT_64BIT
endif
ifeq ($(WOLFBOOT_UNIVERSAL_KEYSTORE),1)
CFLAGS+=-DWOLFBOOT_UNIVERSAL_KEYSTORE
endif
ifeq ($(DISK_LOCK),1)
CFLAGS+=-DWOLFBOOT_ATA_DISK_LOCK
ifneq ($(DISK_LOCK_PASSWORD),)
CFLAGS+=-DWOLFBOOT_ATA_DISK_LOCK_PASSWORD=\"$(DISK_LOCK_PASSWORD)\"
endif
endif
ifeq ($(FSP), 1)
X86_FSP_OPTIONS := \
X86_UART_BASE \
X86_UART_REG_WIDTH \
X86_UART_MMIO \
PCH_HAS_PCR \
PCI_USE_ECAM \
PCH_PCR_BASE \
PCI_ECAM_BASE \
WOLFBOOT_LOAD_BASE \
FSP_S_LOAD_BASE
# set CFLAGS defines for each x86_fsp option
$(foreach option,$(X86_FSP_OPTIONS),$(if $($(option)), $(eval CFLAGS += -D$(option)=$($(option)))))
endif
ifeq ($(FLASH_MULTI_SECTOR_ERASE),1)
CFLAGS+=-DWOLFBOOT_FLASH_MULTI_SECTOR_ERASE
endif
# Per-hart secondary stack size: single source of truth shared by the
# startup asm (via this -D) and the linker script (via @STACK_SIZE_PER_HART@
# substitution in the LSCRIPT rule). Set in the target .config; defaults to
# 0 (no secondary park/wake stacks). The concept (and the consuming startup
# asm) is RISC-V only, so gate the -D to RISC-V; the default is kept
# unconditional because the LSCRIPT sed always needs a value to substitute.
STACK_SIZE_PER_HART ?= 0
ifneq (,$(filter RISCV RISCV64,$(ARCH)))
CFLAGS+=-DSTACK_SIZE_PER_HART=$(STACK_SIZE_PER_HART)
endif
CFLAGS+=$(CFLAGS_EXTRA)
OBJS+=$(OBJS_EXTRA)
ifeq ($(USE_GCC_HEADLESS),1)
ifeq ($(USE_GCC),1)
ifneq ($(USE_CLANG),1)
ifneq ($(ARCH),RENESAS_RX)
ifneq ($(ARCH),AURIX_TC3)
CFLAGS+="-Wstack-usage=$(STACK_USAGE)"
endif
endif
endif
endif
endif
ifeq ($(SIGN_ALG),)
SIGN_ALG=$(SIGN)
endif
ifneq ($(KEYVAULT_OBJ_SIZE),)
CFLAGS+=-DKEYVAULT_OBJ_SIZE=$(KEYVAULT_OBJ_SIZE)
endif
ifneq ($(KEYVAULT_MAX_ITEMS),)
CFLAGS+=-DKEYVAULT_MAX_ITEMS=$(KEYVAULT_MAX_ITEMS)
endif
# Support for using a custom partition ID
ifneq ($(WOLFBOOT_PART_ID),)
CFLAGS+=-DHDR_IMG_TYPE_APP=$(WOLFBOOT_PART_ID)
SIGN_OPTIONS+=--id $(WOLFBOOT_PART_ID)
endif
# Simulator crypto callback test option
ifeq ($(ARCH),sim)
ifeq ($(WOLFBOOT_TEST_SIM_CRYPTOCB),1)
CFLAGS += -DWOLFBOOT_TEST_SIM_CRYPTOCB
CFLAGS += -DWOLF_CRYPTO_CB
CFLAGS += -DWOLFBOOT_DEVID_HASH=0xCB
CFLAGS += -DWOLFBOOT_DEVID_PUBKEY=0xCB
CFLAGS += -DWOLFBOOT_DEVID_CRYPT=0xCB
WOLFCRYPT_OBJS += $(WOLFBOOT_LIB_WOLFSSL)/wolfcrypt/src/cryptocb.o
endif
endif
# Size of the wolfHSM comm data payload, shared by the client and server blocks
# below. The default is sized for certificate chains (the whole DER chain is
# shipped to the HSM in a single message) and for ML-DSA keys/signatures.
#
# Targets whose transport slot is smaller MUST override this in their .config:
# e.g. PIC32CZ's shared-memory slot is 4096 B, of which the transport CSR takes
# 8 B and the comm header another 8 B, so 4080 is a hard ceiling -- overrunning
# it silently corrupts the slot rather than failing the build. The value must
# also match the wolfHSM server's own build, or the two disagree on the layout.
WOLFHSM_CFG_COMM_DATA_LEN ?= 5000
# Maximum trusted-root count for wolfHSM cert-chain verification. Part of the
# client<->server wire format, so every wolfHSM build in the system (wolfBoot
# client or server, and any separately built HSM server firmware) must use
# the same value.
WOLFHSM_CFG_CERT_MAX_VERIFY_ROOTS ?= 8
# wolfHSM client options
ifeq ($(WOLFHSM_CLIENT),1)
WOLFCRYPT_OBJS += \
$(WOLFBOOT_LIB_WOLFSSL)/wolfcrypt/src/cryptocb.o
ifeq ($(SIGN),ML_DSA)
WOLFCRYPT_OBJS += $(MATH_OBJS)
# ML-DSA asn.c decode/encode requires mp_xxx functions
WOLFCRYPT_OBJS += \
$(WOLFBOOT_LIB_WOLFSSL)/wolfcrypt/src/random.o
endif
WOLFHSM_OBJS += $(WOLFHSM_CLIENT_OBJS)
#includes
CFLAGS += -I"$(WOLFBOOT_LIB_WOLFHSM)"
# defines
CFLAGS += -DWOLFBOOT_ENABLE_WOLFHSM_CLIENT -DWOLFHSM_CFG_ENABLE_CLIENT
# HAL crypto devId abstraction for wolfHSM client
CFLAGS += -DWOLFBOOT_DEVID_HASH=hsmDevIdHash
CFLAGS += -DWOLFBOOT_DEVID_PUBKEY=hsmDevIdPubKey
ifeq ($(ENCRYPT),1)
CFLAGS += -DWOLFBOOT_DEVID_CRYPT=hsmDevIdCrypt
endif
# Make sure we export generated public keys so they can be used to load into
# HSM out-of-band
KEYGEN_OPTIONS += --exportpubkey --der
# wolfHSM clients always use HSM-resident public keys, referenced by key ID or
# authenticated via a certificate chain. Public keys baked into a local
# keystore.c are not supported.
KEYGEN_OPTIONS += --nolocalkeys
CFLAGS += -DWOLFHSM_CFG_COMM_DATA_LEN=$(WOLFHSM_CFG_COMM_DATA_LEN)
CFLAGS += -DWOLFHSM_CFG_CERT_MAX_VERIFY_ROOTS=$(WOLFHSM_CFG_CERT_MAX_VERIFY_ROOTS)
# wolfHSM client ID presented to the HSM server during the connection
# handshake. Single value shared by all targets; defaults to 1. Override in the
# .config or on the make command line. This MUST match the client/user ID the
# server provisions the wolfBoot public key under -- e.g. the whnvmtool
# 'key <clientId> ...' field (tools/scripts/tc3xx/*.nvminit) or the example
# POSIX server's '--client <id>' argument.
WOLFHSM_CLIENT_ID ?= 1
CFLAGS += -DWOLFBOOT_WOLFHSM_CLIENT_ID=$(WOLFHSM_CLIENT_ID)
# Ensure wolfHSM is configured to use certificate manager if we are
# doing cert chain verification
ifneq ($(CERT_CHAIN_VERIFY),)
WOLFHSM_OBJS += \
$(WOLFBOOT_LIB_WOLFHSM)/src/wh_client_cert.o \
$(WOLFBOOT_LIB_WOLFHSM)/src/wh_message_cert.o
CFLAGS += -DWOLFHSM_CFG_CERTIFICATE_MANAGER
endif
endif
# wolfHSM server options
ifeq ($(WOLFHSM_SERVER),1)
# Currently, cert chain auth is the only supported auth mechanism for wolfHSM
# server mode
ifeq ($(CERT_CHAIN_VERIFY),)
$(error WOLFHSM_SERVER=1 requires CERT_CHAIN_VERIFY=1: wolfHSM server mode \
only supports certificate-chain authentication)
endif
WOLFCRYPT_OBJS += \
$(WOLFBOOT_LIB_WOLFSSL)/wolfcrypt/src/cryptocb.o \
$(WOLFBOOT_LIB_WOLFSSL)/wolfcrypt/src/random.o
ifeq ($(SIGN),ML_DSA)
WOLFCRYPT_OBJS += $(MATH_OBJS)
# Large enough to handle the largest ML-DSA key/signature
CFLAGS += -DWOLFHSM_CFG_COMM_DATA_LEN=$(WOLFHSM_CFG_COMM_DATA_LEN)
endif
WOLFHSM_OBJS += $(WOLFHSM_SERVER_OBJS)
#includes
CFLAGS += -I"$(WOLFBOOT_LIB_WOLFHSM)"
# defines
CFLAGS += -DWOLFBOOT_ENABLE_WOLFHSM_SERVER -DWOLFHSM_CFG_ENABLE_SERVER
CFLAGS += -DWOLFHSM_CFG_CERT_MAX_VERIFY_ROOTS=$(WOLFHSM_CFG_CERT_MAX_VERIFY_ROOTS)
# HAL crypto devId abstraction for wolfHSM server
CFLAGS += -DWOLFBOOT_DEVID_HASH=hsmDevIdHash
CFLAGS += -DWOLFBOOT_DEVID_PUBKEY=hsmDevIdPubKey
ifeq ($(ENCRYPT),1)
CFLAGS += -DWOLFBOOT_DEVID_CRYPT=hsmDevIdCrypt
endif
# Ensure wolfHSM is configured to use certificate manager if we are
# doing cert chain verification
ifneq ($(CERT_CHAIN_VERIFY),)
CFLAGS += -I"$(WOLFBOOT_LIB_WOLFSSL)"
WOLFCRYPT_OBJS += \
$(WOLFBOOT_LIB_WOLFSSL)/src/internal.o \
$(WOLFBOOT_LIB_WOLFSSL)/src/ssl.o \
$(WOLFBOOT_LIB_WOLFSSL)/src/ssl_certman.o
WOLFHSM_OBJS += \
$(WOLFBOOT_LIB_WOLFHSM)/src/wh_message_cert.o \
$(WOLFBOOT_LIB_WOLFHSM)/src/wh_server_cert.o
CFLAGS += -DWOLFHSM_CFG_CERTIFICATE_MANAGER
endif
endif
# wolfBoot hooks framework
# WOLFBOOT_HOOKS_FILE: path to a single .c file containing hook definitions
WOLFBOOT_HOOKS_ENABLED :=
ifeq ($(WOLFBOOT_HOOK_LOADER_PREINIT),1)
CFLAGS += -DWOLFBOOT_HOOK_LOADER_PREINIT
WOLFBOOT_HOOKS_ENABLED := 1
endif
ifeq ($(WOLFBOOT_HOOK_LOADER_POSTINIT),1)
CFLAGS += -DWOLFBOOT_HOOK_LOADER_POSTINIT
WOLFBOOT_HOOKS_ENABLED := 1
endif
ifeq ($(WOLFBOOT_HOOK_BOOT),1)
CFLAGS += -DWOLFBOOT_HOOK_BOOT
WOLFBOOT_HOOKS_ENABLED := 1
endif
ifeq ($(WOLFBOOT_HOOK_PANIC),1)
CFLAGS += -DWOLFBOOT_HOOK_PANIC
WOLFBOOT_HOOKS_ENABLED := 1
endif
ifneq ($(WOLFBOOT_HOOKS_ENABLED),)
ifeq ($(WOLFBOOT_HOOKS_FILE),)
$(error WOLFBOOT_HOOKS_FILE must be set to a .c file when hooks are enabled)
endif
OBJS += $(patsubst %.c,%.o,$(WOLFBOOT_HOOKS_FILE))
endif
# Cert chain verification options
ifneq ($(CERT_CHAIN_VERIFY),)
CFLAGS += -DWOLFBOOT_CERT_CHAIN_VERIFY
# export the private key in DER format so it can be used with certificates
KEYGEN_OPTIONS += --der
# Optional override for the wolfHSM trusted-root NVM ID list used during
# cert-chain verification. Expects a comma-separated initializer (no quotes,
# no spaces), e.g. WOLFHSM_NVM_ROOT_CA_LIST=1,2,3. Bounded by
# WOLFHSM_CFG_CERT_MAX_VERIFY_ROOTS (settable in .config; must match the HSM
# server firmware's build). When unset, falls back to a HAL-specified default
ifneq ($(strip $(WOLFHSM_NVM_ROOT_CA_LIST)),)
CFLAGS += '-DWOLFBOOT_WOLFHSM_NVM_ROOT_CA_LIST=$(WOLFHSM_NVM_ROOT_CA_LIST)'
endif
# User-provided cert chain takes precedence. Declare the chain's
# algorithms via AUX_PK_ALGOS/AUX_HASH_ALGOS so the verifier has them.
ifneq ($(USER_CERT_CHAIN),)
CERT_CHAIN_FILE = $(USER_CERT_CHAIN)
else
# Auto-generate dummy cert chain (when USER_CERT_CHAIN not provided)
CERT_CHAIN_FILE = test-dummy-ca/raw-chain.der
# The leaf cert wraps the signing key, so its algo follows SIGN
ifeq ($(SIGN),ECC256)
CERT_CHAIN_GEN_LEAF_ALGO:=ecc256
endif
ifeq ($(SIGN),ECC384)
CERT_CHAIN_GEN_LEAF_ALGO:=ecc384
endif
ifeq ($(SIGN),ECC521)
CERT_CHAIN_GEN_LEAF_ALGO:=ecc521
endif
ifeq ($(SIGN),RSA2048)
CERT_CHAIN_GEN_LEAF_ALGO:=rsa2048
endif
ifeq ($(SIGN),RSA3072)
CERT_CHAIN_GEN_LEAF_ALGO:=rsa3072
endif
ifeq ($(SIGN),RSA4096)
CERT_CHAIN_GEN_LEAF_ALGO:=rsa4096
endif
ifeq ($(SIGN),RSAPSS2048)
CERT_CHAIN_GEN_LEAF_ALGO:=rsa2048
endif
ifeq ($(SIGN),RSAPSS3072)
CERT_CHAIN_GEN_LEAF_ALGO:=rsa3072
endif
ifeq ($(SIGN),RSAPSS4096)
CERT_CHAIN_GEN_LEAF_ALGO:=rsa4096
endif
ifeq ($(CERT_CHAIN_GEN_LEAF_ALGO),)
$(error dummy cert chain generation does not support SIGN=$(SIGN); \
provide USER_CERT_CHAIN instead)
endif
# Root/intermediate key algo and cert signature hash are configurable
CERT_CHAIN_GEN_CA_ALGO?=$(CERT_CHAIN_GEN_LEAF_ALGO)
CERT_CHAIN_GEN_CA_HASH?=sha256
# Compile in the CA's algorithms so the chain verifies in boot
ifneq ($(CERT_CHAIN_GEN_CA_ALGO),$(CERT_CHAIN_GEN_LEAF_ALGO))
AUX_PK_ALGOS:=$(AUX_PK_ALGOS),$(CERT_CHAIN_GEN_CA_ALGO)
endif
ifneq ($(CERT_CHAIN_GEN_CA_HASH),sha256)
AUX_HASH_ALGOS:=$(AUX_HASH_ALGOS),$(CERT_CHAIN_GEN_CA_HASH)
endif
endif
# Reasonably large default cert buffer when RSA4096 is in the chain
ifneq (,$(filter rsa4096,$(CERT_CHAIN_GEN_CA_ALGO) $(CERT_CHAIN_GEN_LEAF_ALGO)))
CFLAGS += -DWOLFHSM_CFG_MAX_CERT_SIZE=4096
endif
SIGN_OPTIONS += --cert-chain $(CERT_CHAIN_FILE)
endif
# Clock Speed (Hz)
ifneq ($(CLOCK_SPEED),)
CFLAGS += -DCLOCK_SPEED=$(CLOCK_SPEED)
endif
# STM32F4 clock options
ifneq ($(STM32_PLLM),)
CFLAGS += -DSTM32_PLLM=$(STM32_PLLM)
endif
ifneq ($(STM32_PLLN),)
CFLAGS += -DSTM32_PLLN=$(STM32_PLLN)
endif
ifneq ($(STM32_PLLP),)
CFLAGS += -DSTM32_PLLP=$(STM32_PLLP)
endif
ifneq ($(STM32_PLLQ),)
CFLAGS += -DSTM32_PLLQ=$(STM32_PLLQ)
endif
# STM32 UART options
ifeq ($(USE_UART1),1)
CFLAGS += -DUSE_UART1=1
endif
ifeq ($(USE_UART3),1)
CFLAGS += -DUSE_UART3=1
endif
ifneq ($(WOLFBOOT_PARTITION_FILENAME),)
CFLAGS += -DWOLFBOOT_PARTITION_FILENAME=$(WOLFBOOT_PARTITION_FILENAME)
endif
# Clock Restore Option (default on)
ifneq ($(WOLFBOOT_RESTORE_CLOCK),0)
CFLAGS += -DWOLFBOOT_RESTORE_CLOCK
endif
ifeq ($(TZEN),1)
CFLAGS+=-DTZEN
endif
# Auxiliary algorithms: compile extra wolfCrypt code beyond what SIGN/HASH
# selects, for features that need it (cert-chain verification, TPM, ...).
# Auxiliary algorithms are never used to verify image signatures.
# AUX_PK_ALGOS / AUX_HASH_ALGOS take comma-separated, case-insensitive
# entries, e.g. AUX_PK_ALGOS=rsa2048,ecc384 AUX_HASH_ALGOS=sha384.
# This section must stay below anything that appends to the two lists
# (e.g. the cert-chain block above).
AUX_PK_ALGOS?=
AUX_HASH_ALGOS?=
AUX_PK_LIST:=$(sort $(shell echo $(AUX_PK_ALGOS) | tr 'A-Z,' 'a-z '))
AUX_HASH_LIST:=$(sort $(shell echo $(AUX_HASH_ALGOS) | tr 'A-Z,' 'a-z '))
SIGN_TOKENS_LC:=$(shell echo $(SIGN) $(SIGN_SECONDARY) | tr 'A-Z' 'a-z')
# TPM needs ECC or RSA for the SRK and parameter encryption
ifeq ($(WOLFTPM),1)
ifeq (,$(filter ecc% rsa%,$(SIGN_TOKENS_LC) $(AUX_PK_LIST)))
AUX_PK_LIST+=ecc256
endif
endif
ifneq (,$(strip $(AUX_PK_LIST) $(AUX_HASH_LIST)))
ifeq ($(WOLFBOOT_SMALL_STACK),1)
$(error auxiliary algorithms not supported with WOLFBOOT_SMALL_STACK: \
the static pools in src/xmalloc.c only cover the primary SIGN algorithm)
endif
endif
AUX_PK_VALID:=ecc256 ecc384 ecc521 rsa2048 rsa3072 rsa4096 \
rsapss2048 rsapss3072 rsapss4096 ed25519 ed448
AUX_HASH_VALID:=sha256 sha384 sha512 sha3
ifneq (,$(filter-out $(AUX_PK_VALID),$(AUX_PK_LIST)))
$(error invalid AUX_PK_ALGOS entries "$(filter-out $(AUX_PK_VALID),$(AUX_PK_LIST))". Valid: $(AUX_PK_VALID))
endif
ifneq (,$(filter-out $(AUX_HASH_VALID),$(AUX_HASH_LIST)))
$(error invalid AUX_HASH_ALGOS entries "$(filter-out $(AUX_HASH_VALID),$(AUX_HASH_LIST))". Valid: $(AUX_HASH_VALID))
endif
# Entries matching SIGN/SIGN_SECONDARY are already compiled in
AUX_PK_EFFECTIVE:=$(filter-out $(SIGN_TOKENS_LC),$(AUX_PK_LIST))
AUX_WOLFCRYPT_OBJS:=
ifneq (,$(filter ecc256,$(AUX_PK_EFFECTIVE)))
CFLAGS+=-DWOLFBOOT_AUX_PK_ECC256
AUX_WOLFCRYPT_OBJS+=$(ECC_OBJS) $(MATH_OBJS)
endif
ifneq (,$(filter ecc384,$(AUX_PK_EFFECTIVE)))
CFLAGS+=-DWOLFBOOT_AUX_PK_ECC384
AUX_WOLFCRYPT_OBJS+=$(ECC_OBJS) $(MATH_OBJS)
endif
ifneq (,$(filter ecc521,$(AUX_PK_EFFECTIVE)))
CFLAGS+=-DWOLFBOOT_AUX_PK_ECC521
AUX_WOLFCRYPT_OBJS+=$(ECC_OBJS) $(MATH_OBJS)
endif
ifneq (,$(filter rsa2048,$(AUX_PK_EFFECTIVE)))
CFLAGS+=-DWOLFBOOT_AUX_PK_RSA2048
AUX_WOLFCRYPT_OBJS+=$(RSA_OBJS) $(MATH_OBJS)
endif
ifneq (,$(filter rsa3072,$(AUX_PK_EFFECTIVE)))
CFLAGS+=-DWOLFBOOT_AUX_PK_RSA3072
AUX_WOLFCRYPT_OBJS+=$(RSA_OBJS) $(MATH_OBJS)
endif
ifneq (,$(filter rsa4096,$(AUX_PK_EFFECTIVE)))
CFLAGS+=-DWOLFBOOT_AUX_PK_RSA4096
AUX_WOLFCRYPT_OBJS+=$(RSA_OBJS) $(MATH_OBJS)
endif
ifneq (,$(filter rsapss2048,$(AUX_PK_EFFECTIVE)))
CFLAGS+=-DWOLFBOOT_AUX_PK_RSAPSS2048
AUX_WOLFCRYPT_OBJS+=$(RSA_OBJS) $(MATH_OBJS)
endif
ifneq (,$(filter rsapss3072,$(AUX_PK_EFFECTIVE)))
CFLAGS+=-DWOLFBOOT_AUX_PK_RSAPSS3072
AUX_WOLFCRYPT_OBJS+=$(RSA_OBJS) $(MATH_OBJS)
endif
ifneq (,$(filter rsapss4096,$(AUX_PK_EFFECTIVE)))
CFLAGS+=-DWOLFBOOT_AUX_PK_RSAPSS4096
AUX_WOLFCRYPT_OBJS+=$(RSA_OBJS) $(MATH_OBJS)
endif
ifneq (,$(filter ed25519,$(AUX_PK_EFFECTIVE)))
CFLAGS+=-DWOLFBOOT_AUX_PK_ED25519
AUX_WOLFCRYPT_OBJS+=$(ED25519_OBJS)
endif
ifneq (,$(filter ed448,$(AUX_PK_EFFECTIVE)))
CFLAGS+=-DWOLFBOOT_AUX_PK_ED448
AUX_WOLFCRYPT_OBJS+=$(ED448_OBJS)
AUX_WOLFCRYPT_OBJS+=$(WOLFBOOT_LIB_WOLFSSL)/wolfcrypt/src/sha3.o
AUX_WOLFCRYPT_OBJS+=$(WOLFBOOT_LIB_WOLFSSL)/wolfcrypt/src/sha512.o
endif
# ED448 defines WOLFSSL_SHA512 in user_settings.h but ED448_OBJS carries no
# sha512.o; make sure it gets linked (deduplicated below)
ifneq (,$(filter ED448,$(SIGN) $(SIGN_SECONDARY)))
AUX_WOLFCRYPT_OBJS+=$(WOLFBOOT_LIB_WOLFSSL)/wolfcrypt/src/sha512.o
endif
ifneq (,$(filter sha256,$(AUX_HASH_LIST)))
CFLAGS+=-DWOLFBOOT_AUX_HASH_SHA256
endif
ifneq (,$(filter sha384,$(AUX_HASH_LIST)))
CFLAGS+=-DWOLFBOOT_AUX_HASH_SHA384
AUX_WOLFCRYPT_OBJS+=$(WOLFBOOT_LIB_WOLFSSL)/wolfcrypt/src/sha512.o
endif
ifneq (,$(filter sha512,$(AUX_HASH_LIST)))
CFLAGS+=-DWOLFBOOT_AUX_HASH_SHA512
AUX_WOLFCRYPT_OBJS+=$(WOLFBOOT_LIB_WOLFSSL)/wolfcrypt/src/sha512.o
endif
ifneq (,$(filter sha3,$(AUX_HASH_LIST)))
CFLAGS+=-DWOLFBOOT_AUX_HASH_SHA3
AUX_WOLFCRYPT_OBJS+=$(WOLFBOOT_LIB_WOLFSSL)/wolfcrypt/src/sha3.o
endif
# Append only objects not already selected by SIGN/HASH/features.
# Snapshot with := first: WOLFCRYPT_OBJS is a recursive variable in some
# includers (test-app), where a self-referencing += would not terminate.
AUX_WOLFCRYPT_OBJS_NEW:=$(filter-out $(WOLFCRYPT_OBJS),$(sort $(AUX_WOLFCRYPT_OBJS)))
WOLFCRYPT_OBJS+=$(AUX_WOLFCRYPT_OBJS_NEW)
# Under WOLFSSL_ARMASM, chacha.c defers the block function to
# wc_chacha_crypt_bytes(), which lives in the port. arch.mk adds the aes/sha
# equivalents unconditionally; ChaCha is only selected here, so add it last.
ifeq ($(ARCH),AARCH64)
ifneq ($(NO_ARM_ASM),1)
ifneq (,$(filter %/wolfcrypt/src/chacha.o,$(WOLFCRYPT_OBJS)))
WOLFCRYPT_OBJS+=$(WOLFBOOT_LIB_WOLFSSL)/wolfcrypt/src/port/arm/armv8-chacha-asm_c.o
endif
endif
endif
# ---------------------------------------------------------------------------
# wolfCrypt FIPS 140-3 module (FIPS=1)
#
# Point WOLFBOOT_LIB_WOLFSSL at an unpacked FIPS / FIPS-ready wolfSSL tree.
# The in-core integrity hash on GCC/ELF is enforced by LINK ORDER:
# wolfcrypt_first.o must be first and wolfcrypt_last.o last, with the FIPS
# boundary (crypto + fips.o + fips_test.o) between them. We therefore rebuild
# WOLFCRYPT_OBJS from scratch in that order, replacing the piecemeal per-SIGN
# selection above (the SIGN/HASH CFLAGS remain in effect). This also drops
# AUX_WOLFCRYPT_OBJS: hybrid / secondary-signature configurations are not
# supported with FIPS=1. See docs/FIPS.md.
ifeq ($(FIPS),1)
# Intercept impossible FIPS build cases early with a clear error. Skip for
# clean-style goals (which do not compile/link) so 'make clean' still works
# with FIPS=1 in .config.
ifeq ($(filter %clean,$(MAKECMDGOALS)),)
# NO_ARM_ASM is an ARM-only knob; the FIPS module is portable C on every
# arch, but only the ARM/AArch64 builds have an asm crypto path to disable
# (which would sit outside the validated module boundary). Force it on rather
# than erroring when unset, so this works regardless of include order
# (test-app/Makefile includes options.mk before arch.mk, so NO_ARM_ASM is
# still empty here). Only an explicit NO_ARM_ASM=0 is a hard error.
ifneq ($(filter ARM AARCH64,$(ARCH)),)
ifeq ($(NO_ARM_ASM),0)
$(error FIPS=1 on $(ARCH) requires NO_ARM_ASM=1 (the FIPS module uses portable-C crypto); NO_ARM_ASM=0 was set)
endif
NO_ARM_ASM=1
# Fail closed on include order: the top-level Makefile includes arch.mk
# BEFORE options.mk, so if NO_ARM_ASM was unset when arch.mk ran (e.g.
# TARGET=zynq/versal/nxp_ls1028a) it has already pulled the ARM asm crypto
# path into CFLAGS/OBJS - which the WOLFCRYPT_OBJS := reset below does NOT
# remove. Force-setting NO_ARM_ASM above is too late to unwind that, so
# refuse rather than link asm inside the validated boundary. Set
# NO_ARM_ASM=1 in your .config / on the command line (arch.mk sees it first).
ifneq ($(filter -DWOLFSSL_ARMASM,$(CFLAGS)),)
$(error FIPS=1 on $(ARCH): ARM asm crypto (-DWOLFSSL_ARMASM) was already selected before options.mk; set NO_ARM_ASM=1 explicitly so arch.mk sees it first (see docs/FIPS.md))
endif
endif
# Only the ECDSA object set is wired into the FIPS boundary below. RSA-PSS
# would additionally need rsa.o inside the boundary and its own CI job.
ifeq ($(filter $(SIGN),ECC256 ECC384 ECC521),)
$(error FIPS=1 requires a FIPS-approved ECDSA SIGN (ECC256/ECC384/ECC521, see docs/FIPS.md); got $(SIGN))
endif
# The WOLFCRYPT_OBJS := reset below rebuilds ONLY the ECDSA FIPS boundary. It
# drops the objects the following features add while their -D CFLAGS survive,
# producing a confusing link error instead of a clear message. The FIPS
# boundary is ECDSA-only; reject unsupported combinations up front.
ifneq ($(SIGN_SECONDARY),)
$(error FIPS=1 does not support hybrid/secondary signatures (SIGN_SECONDARY=$(SIGN_SECONDARY)); see docs/FIPS.md)
endif
ifneq ($(strip $(AUX_PK_ALGOS)),)
$(error FIPS=1 does not support auxiliary public-key algorithms (AUX_PK_ALGOS=$(AUX_PK_ALGOS)); see docs/FIPS.md)
endif
ifeq ($(ENCRYPT),1)
$(error FIPS=1 does not support the image ENCRYPT path (its ChaCha/AES objects sit outside the FIPS boundary); see docs/FIPS.md)
endif
ifeq ($(WOLFTPM),1)
$(error FIPS=1 with WOLFTPM is not supported)
endif
ifeq ($(WOLFHSM_CLIENT),1)
$(error FIPS=1 with WOLFHSM_CLIENT is not supported)
endif
ifeq ($(WOLFHSM_SERVER),1)
$(error FIPS=1 with WOLFHSM_SERVER is not supported)
endif
# Non-wolfcrypt driver objects are appended to WOLFCRYPT_OBJS too and are
# likewise dropped by the reset while their src/*.o consumers stay in OBJS
# (undefined spi_init/spi_xfer/etc. at link). Reject them as well.
ifeq ($(SPI_FLASH),1)
$(error FIPS=1 with SPI_FLASH is not supported (driver object dropped by the FIPS WOLFCRYPT_OBJS reset))
endif
ifeq ($(QSPI_FLASH),1)
$(error FIPS=1 with QSPI_FLASH is not supported)
endif
ifeq ($(OCTOSPI_FLASH),1)
$(error FIPS=1 with OCTOSPI_FLASH is not supported)
endif
ifeq ($(UART_FLASH),1)
$(error FIPS=1 with UART_FLASH is not supported)
endif
ifeq ($(WOLFCRYPT_TZ_PKCS11),1)
$(error FIPS=1 with WOLFCRYPT_TZ_PKCS11 (SECURE_PKCS11) is not supported)
endif
# M10: SPMATH must be on. The fastmath fallback (SPMATH!=1) defines
# WC_NO_HARDEN in user_settings.h, disabling the side-channel hardening a
# FIPS build must keep (it also does ECDSA signing in its CASTs). Shipped
# FIPS configs set SPMATH=1 (cm4.config, sim-fips.config).
ifneq ($(SPMATH),1)
$(error FIPS=1 requires SPMATH=1 (fastmath defines WC_NO_HARDEN, dropping side-channel hardening); see docs/FIPS.md)
endif
endif
CFLAGS+=-DHAVE_FIPS
# Evaluation "FIPS-ready" bundle by default: -DWOLFBOOT_FIPS_READY defines
# WOLFSSL_FIPS_READY, which forces HAVE_FIPS_VERSION 7 in settings.h.
FIPS_READY?=1
ifeq ($(FIPS_READY),1)
CFLAGS+=-DWOLFBOOT_FIPS_READY
else
# Production/validated-bundle path. wolfBoot builds with
# -DWOLFSSL_USER_SETTINGS, so settings.h includes only user_settings.h and
# never the configure-generated wolfssl/options.h where a validated bundle
# supplies HAVE_FIPS_VERSION. Without WOLFSSL_FIPS_READY it would therefore
# fall back to FIPS v1 (140-2) silently, so pin the module version
# explicitly. e.g. FIPS_VERSION=7 for a 140-3 validated bundle.
ifndef FIPS_VERSION
$(error FIPS_READY=0 requires FIPS_VERSION=<n> to pin the validated wolfCrypt FIPS module version (e.g. FIPS_VERSION=7); see docs/FIPS.md)
endif
# Emit the full MAJOR/MINOR/PATCH triplet. wolfSSL builds
# WOLFSSL_FIPS_VERSION_CODE from all three (settings.h); emitting only
# HAVE_FIPS_VERSION leaves MINOR/PATCH at 0, so every FIPS_VERSION_GE(major,
# minor) gate on a real validated bundle (e.g. 5.2.1) evaluates as n.0.0 and
# silently mis-versions. MINOR/PATCH default to 0 (matches a bundle whose
# settings.h pins them to 0); override for a minor/patch-versioned bundle.
FIPS_VERSION_MINOR ?= 0
FIPS_VERSION_PATCH ?= 0
CFLAGS+=-DHAVE_FIPS_VERSION=$(FIPS_VERSION)
CFLAGS+=-DHAVE_FIPS_VERSION_MINOR=$(FIPS_VERSION_MINOR)
CFLAGS+=-DHAVE_FIPS_VERSION_PATCH=$(FIPS_VERSION_PATCH)
endif
# The FIPS module pulls in libc malloc/printf. On a bare-metal newlib target,
# stub the syscalls with nosys.specs; the HAL provides a bounded _sbrk so the
# heap cannot grow into the unverified image (see hal/cm4.c). This is WRONG for
# a hosted / glibc-cross toolchain, so make it opt-in per target rather than
# "every non-sim ARCH" - a new bare-metal FIPS target sets FIPS_NOSYS_SPECS=1.
FIPS_NOSYS_SPECS ?= 0
ifeq ($(TARGET),cm4)
FIPS_NOSYS_SPECS = 1
endif
ifeq ($(FIPS_NOSYS_SPECS),1)
LDFLAGS += --specs=nosys.specs
endif
WCDIR=$(WOLFBOOT_LIB_WOLFSSL)/wolfcrypt/src
WOLFCRYPT_OBJS := \
$(WCDIR)/wolfcrypt_first.o \
$(WCDIR)/hash.o \
$(WCDIR)/hmac.o \
$(WCDIR)/kdf.o \
$(WCDIR)/pwdbased.o \
$(WCDIR)/random.o \
$(WCDIR)/sha.o \
$(WCDIR)/sha256.o \
$(WCDIR)/sha512.o \
$(WCDIR)/sha3.o \
$(WCDIR)/aes.o \
$(WCDIR)/cmac.o \
$(WCDIR)/ecc.o \
$(WCDIR)/sp_int.o \
$(WCDIR)/wolfmath.o \
$(WCDIR)/memory.o \
$(WCDIR)/wc_port.o \
$(WCDIR)/logging.o \
$(WCDIR)/error.o \
$(WCDIR)/coding.o \
$(WCDIR)/asn.o \
$(WCDIR)/wc_encrypt.o \
$(WCDIR)/fips.o \
$(WCDIR)/fips_test.o \
$(WCDIR)/wolfcrypt_last.o
endif