xref: /optee_os/core/crypto.mk (revision 91fc6bd89309eebdfbe3d7203a046958b8c5a3eb)
13d3ad63dSJens WiklanderCFG_CRYPTO ?= y
2dc57b110SJerome Forissier# Select small code size in the crypto library if applicable (for instance
3dc57b110SJerome Forissier# LibTomCrypt has -DLTC_SMALL_CODE)
4dc57b110SJerome Forissier# Note: the compiler flag -Os is not set here but by CFG_CC_OPTIMIZE_FOR_SIZE
53d3ad63dSJens WiklanderCFG_CRYPTO_SIZE_OPTIMIZATION ?= y
63d3ad63dSJens Wiklander
73d3ad63dSJens Wiklanderifeq (y,$(CFG_CRYPTO))
83d3ad63dSJens Wiklander
93d3ad63dSJens Wiklander# Ciphers
103d3ad63dSJens WiklanderCFG_CRYPTO_AES ?= y
113d3ad63dSJens WiklanderCFG_CRYPTO_DES ?= y
12ade6f848SJerome ForissierCFG_CRYPTO_SM4 ?= y
133d3ad63dSJens Wiklander
143d3ad63dSJens Wiklander# Cipher block modes
153d3ad63dSJens WiklanderCFG_CRYPTO_ECB ?= y
163d3ad63dSJens WiklanderCFG_CRYPTO_CBC ?= y
173d3ad63dSJens WiklanderCFG_CRYPTO_CTR ?= y
183d3ad63dSJens WiklanderCFG_CRYPTO_CTS ?= y
193d3ad63dSJens WiklanderCFG_CRYPTO_XTS ?= y
203d3ad63dSJens Wiklander
213d3ad63dSJens Wiklander# Message authentication codes
223d3ad63dSJens WiklanderCFG_CRYPTO_HMAC ?= y
233d3ad63dSJens WiklanderCFG_CRYPTO_CMAC ?= y
243d3ad63dSJens WiklanderCFG_CRYPTO_CBC_MAC ?= y
253d3ad63dSJens Wiklander
263d3ad63dSJens Wiklander# Hashes
273d3ad63dSJens WiklanderCFG_CRYPTO_MD5 ?= y
283d3ad63dSJens WiklanderCFG_CRYPTO_SHA1 ?= y
293d3ad63dSJens WiklanderCFG_CRYPTO_SHA224 ?= y
303d3ad63dSJens WiklanderCFG_CRYPTO_SHA256 ?= y
313d3ad63dSJens WiklanderCFG_CRYPTO_SHA384 ?= y
323d3ad63dSJens WiklanderCFG_CRYPTO_SHA512 ?= y
33b8bb0afaSSumit GargCFG_CRYPTO_SHA512_256 ?= y
3447645577SJerome ForissierCFG_CRYPTO_SM3 ?= y
353d3ad63dSJens Wiklander
363d3ad63dSJens Wiklander# Asymmetric ciphers
373d3ad63dSJens WiklanderCFG_CRYPTO_DSA ?= y
383d3ad63dSJens WiklanderCFG_CRYPTO_RSA ?= y
393d3ad63dSJens WiklanderCFG_CRYPTO_DH ?= y
40*91fc6bd8SJerome Forissier# ECC includes ECDSA and ECDH
413d3ad63dSJens WiklanderCFG_CRYPTO_ECC ?= y
42*91fc6bd8SJerome Forissierifeq ($(CFG_CRYPTOLIB_NAME),tomcrypt)
43*91fc6bd8SJerome ForissierCFG_CRYPTO_SM2_PKE ?= y
44*91fc6bd8SJerome Forissierendif
45*91fc6bd8SJerome Forissierifeq ($(CFG_CRYPTOLIB_NAME)-$(CFG_CRYPTO_SM2_PKE),mbedtls-y)
46*91fc6bd8SJerome Forissier$(error Error: CFG_CRYPTO_SM2_PKE=y requires CFG_CRYPTOLIB_NAME=tomcrypt)
47*91fc6bd8SJerome Forissierendif
483d3ad63dSJens Wiklander
493d3ad63dSJens Wiklander# Authenticated encryption
503d3ad63dSJens WiklanderCFG_CRYPTO_CCM ?= y
513d3ad63dSJens WiklanderCFG_CRYPTO_GCM ?= y
521fca7e26SJens Wiklander# Default uses the OP-TEE internal AES-GCM implementation
531fca7e26SJens WiklanderCFG_CRYPTO_AES_GCM_FROM_CRYPTOLIB ?= n
543d3ad63dSJens Wiklander
553d3ad63dSJens Wiklanderendif
563d3ad63dSJens Wiklander
573d3ad63dSJens Wiklanderifeq ($(CFG_WITH_PAGER),y)
583d3ad63dSJens Wiklanderifneq ($(CFG_CRYPTO_SHA256),y)
593d3ad63dSJens Wiklander$(warning Warning: Enabling CFG_CRYPTO_SHA256 [required by CFG_WITH_PAGER])
603d3ad63dSJens WiklanderCFG_CRYPTO_SHA256:=y
613d3ad63dSJens Wiklanderendif
623d3ad63dSJens Wiklanderendif
633d3ad63dSJens Wiklander
646e954a6eSJens Wiklander$(eval $(call cryp-enable-all-depends,CFG_WITH_SOFTWARE_PRNG, AES ECB SHA256))
656e954a6eSJens Wiklander
663d3ad63dSJens Wiklanderifeq ($(CFG_CRYPTO_WITH_CE),y)
67b8c186b5SJens Wiklander
68b8c186b5SJens Wiklander$(call force,CFG_AES_GCM_TABLE_BASED,n,conflicts with CFG_CRYPTO_WITH_CE)
69b8c186b5SJens Wiklander
708f643c00SJerome Forissier# CFG_HWSUPP_PMULT_64 defines whether the CPU supports polynomial multiplies
718f643c00SJerome Forissier# of 64-bit values (Aarch64: PMULL/PMULL2 with the 1Q specifier; Aarch32:
728f643c00SJerome Forissier# VMULL.P64). These operations are part of the Cryptographic Extensions, so
738f643c00SJerome Forissier# assume they are implicitly contained in CFG_CRYPTO_WITH_CE=y.
748f643c00SJerome ForissierCFG_HWSUPP_PMULT_64 ?= y
758f643c00SJerome Forissier
763d3ad63dSJens Wiklanderifeq ($(CFG_ARM32_core),y)
773d3ad63dSJens WiklanderCFG_CRYPTO_AES_ARM32_CE ?= $(CFG_CRYPTO_AES)
783d3ad63dSJens WiklanderCFG_CRYPTO_SHA1_ARM32_CE ?= $(CFG_CRYPTO_SHA1)
793d3ad63dSJens WiklanderCFG_CRYPTO_SHA256_ARM32_CE ?= $(CFG_CRYPTO_SHA256)
803d3ad63dSJens Wiklanderendif
81b8c186b5SJens Wiklander
823d3ad63dSJens Wiklanderifeq ($(CFG_ARM64_core),y)
833d3ad63dSJens WiklanderCFG_CRYPTO_AES_ARM64_CE ?= $(CFG_CRYPTO_AES)
843d3ad63dSJens WiklanderCFG_CRYPTO_SHA1_ARM64_CE ?= $(CFG_CRYPTO_SHA1)
853d3ad63dSJens WiklanderCFG_CRYPTO_SHA256_ARM64_CE ?= $(CFG_CRYPTO_SHA256)
863d3ad63dSJens Wiklanderendif
87b8c186b5SJens Wiklander
88b8c186b5SJens Wiklanderelse #CFG_CRYPTO_WITH_CE
89b8c186b5SJens Wiklander
90b8c186b5SJens WiklanderCFG_AES_GCM_TABLE_BASED ?= y
91b8c186b5SJens Wiklander
92b8c186b5SJens Wiklanderendif #!CFG_CRYPTO_WITH_CE
93b8c186b5SJens Wiklander
943d3ad63dSJens Wiklander
953d3ad63dSJens Wiklander# Cryptographic extensions can only be used safely when OP-TEE knows how to
963d3ad63dSJens Wiklander# preserve the VFP context
973d3ad63dSJens Wiklanderifeq ($(CFG_CRYPTO_SHA256_ARM32_CE),y)
983d3ad63dSJens Wiklander$(call force,CFG_WITH_VFP,y,required by CFG_CRYPTO_SHA256_ARM32_CE)
993d3ad63dSJens Wiklanderendif
1003d3ad63dSJens Wiklanderifeq ($(CFG_CRYPTO_SHA256_ARM64_CE),y)
1013d3ad63dSJens Wiklander$(call force,CFG_WITH_VFP,y,required by CFG_CRYPTO_SHA256_ARM64_CE)
1023d3ad63dSJens Wiklanderendif
1033d3ad63dSJens Wiklanderifeq ($(CFG_CRYPTO_SHA1_ARM32_CE),y)
1043d3ad63dSJens Wiklander$(call force,CFG_WITH_VFP,y,required by CFG_CRYPTO_SHA1_ARM32_CE)
1053d3ad63dSJens Wiklanderendif
1063d3ad63dSJens Wiklanderifeq ($(CFG_CRYPTO_SHA1_ARM64_CE),y)
1073d3ad63dSJens Wiklander$(call force,CFG_WITH_VFP,y,required by CFG_CRYPTO_SHA1_ARM64_CE)
1083d3ad63dSJens Wiklanderendif
1093d3ad63dSJens Wiklanderifeq ($(CFG_CRYPTO_AES_ARM64_CE),y)
1103d3ad63dSJens Wiklander$(call force,CFG_WITH_VFP,y,required by CFG_CRYPTO_AES_ARM64_CE)
1113d3ad63dSJens Wiklanderendif
1123d3ad63dSJens Wiklander
1133d3ad63dSJens Wiklandercryp-enable-all-depends = $(call cfg-enable-all-depends,$(strip $(1)),$(foreach v,$(2),CFG_CRYPTO_$(v)))
1143d3ad63dSJens Wiklander$(eval $(call cryp-enable-all-depends,CFG_REE_FS, AES ECB CTR HMAC SHA256 GCM))
1153d3ad63dSJens Wiklander$(eval $(call cryp-enable-all-depends,CFG_RPMB_FS, AES ECB CTR HMAC SHA256 GCM))
1163d3ad63dSJens Wiklander
1173d3ad63dSJens Wiklander# Dependency checks: warn and disable some features if dependencies are not met
1183d3ad63dSJens Wiklander
1193d3ad63dSJens Wiklandercryp-dep-one = $(call cfg-depends-one,CFG_CRYPTO_$(strip $(1)),$(patsubst %, CFG_CRYPTO_%,$(strip $(2))))
1203d3ad63dSJens Wiklandercryp-dep-all = $(call cfg-depends-all,CFG_CRYPTO_$(strip $(1)),$(patsubst %, CFG_CRYPTO_%,$(strip $(2))))
1213d3ad63dSJens Wiklander
1223d3ad63dSJens Wiklander$(eval $(call cryp-dep-one, ECB, AES DES))
1233d3ad63dSJens Wiklander$(eval $(call cryp-dep-one, CBC, AES DES))
1243d3ad63dSJens Wiklander$(eval $(call cryp-dep-one, CTR, AES))
1253d3ad63dSJens Wiklander# CTS is implemented with ECB and CBC
1263d3ad63dSJens Wiklander$(eval $(call cryp-dep-all, CTS, AES ECB CBC))
1273d3ad63dSJens Wiklander$(eval $(call cryp-dep-one, XTS, AES))
1283d3ad63dSJens Wiklander$(eval $(call cryp-dep-one, HMAC, AES DES))
1293d3ad63dSJens Wiklander$(eval $(call cryp-dep-one, HMAC, MD5 SHA1 SHA224 SHA256 SHA384 SHA512))
1303d3ad63dSJens Wiklander$(eval $(call cryp-dep-one, CMAC, AES))
1313d3ad63dSJens Wiklander$(eval $(call cryp-dep-one, CBC_MAC, AES DES))
1323d3ad63dSJens Wiklander$(eval $(call cryp-dep-one, CCM, AES))
1333d3ad63dSJens Wiklander$(eval $(call cryp-dep-one, GCM, AES))
1343d3ad63dSJens Wiklander# If no AES cipher mode is left, disable AES
1353d3ad63dSJens Wiklander$(eval $(call cryp-dep-one, AES, ECB CBC CTR CTS XTS))
1363d3ad63dSJens Wiklander# If no DES cipher mode is left, disable DES
1373d3ad63dSJens Wiklander$(eval $(call cryp-dep-one, DES, ECB CBC))
138*91fc6bd8SJerome Forissier# SM2 is Elliptic Curve Cryptography, it uses some generic ECC functions
139*91fc6bd8SJerome Forissier$(eval $(call cryp-dep-one, SM2_PKE, ECC))
1403d3ad63dSJens Wiklander
141a1cbb728SJens Wiklander###############################################################
142a1cbb728SJens Wiklander# libtomcrypt (LTC) specifics, phase #1
143a1cbb728SJens Wiklander# LTC is only configured via _CFG_CORE_LTC_ prefixed variables
144a1cbb728SJens Wiklander#
145a1cbb728SJens Wiklander# _CFG_CORE_LTC_xxx_DESC means that LTC will only register the
146a1cbb728SJens Wiklander# descriptor of the algorithm, not provide a
147a1cbb728SJens Wiklander# crypt_xxx_alloc_ctx() function.
148a1cbb728SJens Wiklander###############################################################
149a1cbb728SJens Wiklander
150a1cbb728SJens Wiklander# If LTC is the cryptolib, pull configuration from CFG_CRYPTO_xxx
151a1cbb728SJens Wiklanderifeq ($(CFG_CRYPTOLIB_NAME),tomcrypt)
1523d3ad63dSJens Wiklander# dsa_make_params() needs all three SHA-2 algorithms.
1533d3ad63dSJens Wiklander# Disable DSA if any is missing.
1543d3ad63dSJens Wiklander$(eval $(call cryp-dep-all, DSA, SHA256 SHA384 SHA512))
1553d3ad63dSJens Wiklander
156a1cbb728SJens Wiklander# Assign _CFG_CORE_LTC_xxx based on CFG_CRYPTO_yyy
157a1cbb728SJens Wiklandercore-ltc-vars = AES DES
158a1cbb728SJens Wiklandercore-ltc-vars += ECB CBC CTR CTS XTS
159a1cbb728SJens Wiklandercore-ltc-vars += MD5 SHA1 SHA224 SHA256 SHA384 SHA512 SHA512_256
160a1cbb728SJens Wiklandercore-ltc-vars += HMAC CMAC CBC_MAC
161a1cbb728SJens Wiklandercore-ltc-vars += CCM
162a1cbb728SJens Wiklanderifeq ($(CFG_CRYPTO_AES_GCM_FROM_CRYPTOLIB),y)
163a1cbb728SJens Wiklandercore-ltc-vars += GCM
164a1cbb728SJens Wiklanderendif
165a1cbb728SJens Wiklandercore-ltc-vars += RSA DSA DH ECC
166a1cbb728SJens Wiklandercore-ltc-vars += AES_ARM64_CE AES_ARM32_CE
167a1cbb728SJens Wiklandercore-ltc-vars += SHA1_ARM32_CE SHA1_ARM64_CE
168a1cbb728SJens Wiklandercore-ltc-vars += SHA256_ARM32_CE SHA256_ARM64_CE
169a1cbb728SJens Wiklandercore-ltc-vars += SIZE_OPTIMIZATION
170*91fc6bd8SJerome Forissiercore-ltc-vars += SM2_PKE
171a1cbb728SJens Wiklander# Assigned selected CFG_CRYPTO_xxx as _CFG_CORE_LTC_xxx
172a1cbb728SJens Wiklander$(foreach v, $(core-ltc-vars), $(eval _CFG_CORE_LTC_$(v) := $(CFG_CRYPTO_$(v))))
173a1cbb728SJens Wiklander_CFG_CORE_LTC_MPI := $(CFG_CORE_MBEDTLS_MPI)
174a1cbb728SJens Wiklanderendif
1753d3ad63dSJens Wiklander
176a1cbb728SJens Wiklander###############################################################
177a2aa5803SJens Wiklander# mbedtls specifics
178a2aa5803SJens Wiklander###############################################################
179a2aa5803SJens Wiklander
180a2aa5803SJens Wiklanderifeq ($(CFG_CRYPTOLIB_NAME),mbedtls)
181a2aa5803SJens Wiklander# mbedtls has to be complemented with some algorithms by LTC
182a2aa5803SJens Wiklander# Specify the algorithms here
183a2aa5803SJens Wiklander_CFG_CORE_LTC_DSA := $(CFG_CRYPTO_DSA)
184a2aa5803SJens Wiklander_CFG_CORE_LTC_MPI := $(CFG_CRYPTO_DSA)
185a2aa5803SJens Wiklander_CFG_CORE_LTC_SHA256_DESC := $(CFG_CRYPTO_DSA)
186a2aa5803SJens Wiklander_CFG_CORE_LTC_SHA384_DESC := $(CFG_CRYPTO_DSA)
187a2aa5803SJens Wiklander_CFG_CORE_LTC_SHA512_DESC := $(CFG_CRYPTO_DSA)
188a4ae1ebeSJens Wiklander_CFG_CORE_LTC_XTS := $(CFG_CRYPTO_XTS)
189ef21404eSJens Wiklander_CFG_CORE_LTC_CCM := $(CFG_CRYPTO_CCM)
190ef21404eSJens Wiklander_CFG_CORE_LTC_AES_DESC := $(call cfg-one-enabled, CFG_CRYPTO_XTS CFG_CRYPTO_CCM)
191a2aa5803SJens Wiklanderendif
192a2aa5803SJens Wiklander
193a2aa5803SJens Wiklander###############################################################
194a1cbb728SJens Wiklander# libtomcrypt (LTC) specifics, phase #2
195a1cbb728SJens Wiklander###############################################################
196a1cbb728SJens Wiklander
197a1cbb728SJens Wiklander# Assign system variables
198a1cbb728SJens Wiklander_CFG_CORE_LTC_CE := $(CFG_CRYPTO_WITH_CE)
199a1cbb728SJens Wiklander_CFG_CORE_LTC_VFP := $(CFG_WITH_VFP)
200a1cbb728SJens Wiklander_CFG_CORE_LTC_BIGNUM_MAX_BITS := $(CFG_CORE_BIGNUM_MAX_BITS)
201a1cbb728SJens Wiklander_CFG_CORE_LTC_PAGER := $(CFG_WITH_PAGER)
202a1cbb728SJens Wiklander_CFG_CORE_LTC_OPTEE_THREAD := $(CFG_LTC_OPTEE_THREAD)
203a1cbb728SJens Wiklander_CFG_CORE_LTC_HWSUPP_PMULL := $(CFG_HWSUPP_PMULL)
204a1cbb728SJens Wiklander
205a1cbb728SJens Wiklander# Assign aggregated variables
206a1cbb728SJens Wiklanderltc-one-enabled = $(call cfg-one-enabled,$(foreach v,$(1),_CFG_CORE_LTC_$(v)))
207a1cbb728SJens Wiklander_CFG_CORE_LTC_ACIPHER := $(call ltc-one-enabled, RSA DSA DH ECC)
208a1cbb728SJens Wiklander_CFG_CORE_LTC_AUTHENC := $(and $(filter y,$(_CFG_CORE_LTC_AES) \
209a1cbb728SJens Wiklander					  $(_CFG_CORE_LTC_AES_DESC)), \
2109e8c816aSJerome Forissier			       $(filter y,$(call ltc-one-enabled, CCM GCM)))
211a1cbb728SJens Wiklander_CFG_CORE_LTC_CIPHER := $(call ltc-one-enabled, AES AES_DESC DES)
212a1cbb728SJens Wiklander_CFG_CORE_LTC_HASH := $(call ltc-one-enabled, MD5 SHA1 SHA224 SHA256 SHA384 \
213a1cbb728SJens Wiklander					      SHA512)
214a1cbb728SJens Wiklander_CFG_CORE_LTC_MAC := $(call ltc-one-enabled, HMAC CMAC CBC_MAC)
215a1cbb728SJens Wiklander_CFG_CORE_LTC_CBC := $(call ltc-one-enabled, CBC CBC_MAC)
216a1cbb728SJens Wiklander_CFG_CORE_LTC_ASN1 := $(call ltc-one-enabled, RSA DSA ECC)
217