xref: /rk3399_ARM-atf/plat/st/common/stm32mp_crypto_lib.c (revision 5c506c73751cc3f51df88826b89b5f729d8955c5)
1ad3e46a3SLionel Debieve /*
24ac5b394SYann Gautier  * Copyright (c) 2022-2023, STMicroelectronics - All Rights Reserved
3ad3e46a3SLionel Debieve  *
4ad3e46a3SLionel Debieve  * SPDX-License-Identifier: BSD-3-Clause
5ad3e46a3SLionel Debieve  */
6ad3e46a3SLionel Debieve 
7ad3e46a3SLionel Debieve #include <assert.h>
8ad3e46a3SLionel Debieve #include <endian.h>
9ad3e46a3SLionel Debieve #include <errno.h>
10ad3e46a3SLionel Debieve 
11ad3e46a3SLionel Debieve #include <common/debug.h>
12ad3e46a3SLionel Debieve #include <drivers/auth/crypto_mod.h>
13ad3e46a3SLionel Debieve #include <drivers/io/io_storage.h>
14ad3e46a3SLionel Debieve #include <drivers/st/bsec.h>
15ad3e46a3SLionel Debieve #include <drivers/st/stm32_hash.h>
16ad3e46a3SLionel Debieve #include <drivers/st/stm32_pka.h>
17ad3e46a3SLionel Debieve #include <drivers/st/stm32_rng.h>
18ad3e46a3SLionel Debieve #include <drivers/st/stm32_saes.h>
19377846b6SYann Gautier #include <lib/utils.h>
20ad3e46a3SLionel Debieve #include <lib/xlat_tables/xlat_tables_v2.h>
21ad3e46a3SLionel Debieve #include <mbedtls/asn1.h>
22ad3e46a3SLionel Debieve #include <mbedtls/md.h>
23ad3e46a3SLionel Debieve #include <mbedtls/oid.h>
24ad3e46a3SLionel Debieve #include <mbedtls/platform.h>
25ad3e46a3SLionel Debieve #include <mbedtls/x509.h>
26ad3e46a3SLionel Debieve #include <plat/common/platform.h>
27ad3e46a3SLionel Debieve #include <tools_share/firmware_encrypted.h>
28ad3e46a3SLionel Debieve 
29ad3e46a3SLionel Debieve #include <platform_def.h>
30ad3e46a3SLionel Debieve 
31ad3e46a3SLionel Debieve #define CRYPTO_HASH_MAX_SIZE	32U
32ad3e46a3SLionel Debieve #define CRYPTO_SIGN_MAX_SIZE	64U
33ad3e46a3SLionel Debieve #define CRYPTO_PUBKEY_MAX_SIZE	64U
34ad3e46a3SLionel Debieve #define CRYPTO_MAX_TAG_SIZE	16U
35ad3e46a3SLionel Debieve 
36ad3e46a3SLionel Debieve /* brainpoolP256t1 OID is not defined in mbedTLS */
37ad3e46a3SLionel Debieve #define OID_EC_GRP_BP256T1          MBEDTLS_OID_EC_BRAINPOOL_V1 "\x08"
38ad3e46a3SLionel Debieve 
39ad3e46a3SLionel Debieve #if STM32MP_CRYPTO_ROM_LIB
40ad3e46a3SLionel Debieve struct stm32mp_auth_ops {
41ad3e46a3SLionel Debieve 	uint32_t (*verify_signature)(uint8_t *hash_in, uint8_t *pubkey_in,
42ad3e46a3SLionel Debieve 				     uint8_t *signature, uint32_t ecc_algo);
43ad3e46a3SLionel Debieve };
44ad3e46a3SLionel Debieve 
45ad3e46a3SLionel Debieve static struct stm32mp_auth_ops auth_ops;
46ad3e46a3SLionel Debieve #endif
47ad3e46a3SLionel Debieve 
48ad3e46a3SLionel Debieve static void crypto_lib_init(void)
49ad3e46a3SLionel Debieve {
50ad3e46a3SLionel Debieve 	boot_api_context_t *boot_context __maybe_unused;
51ad3e46a3SLionel Debieve 	int ret;
52ad3e46a3SLionel Debieve 
53ad3e46a3SLionel Debieve 	NOTICE("TRUSTED_BOARD_BOOT support enabled\n");
54ad3e46a3SLionel Debieve 
55ad3e46a3SLionel Debieve 	ret = stm32_hash_register();
56ad3e46a3SLionel Debieve 	if (ret != 0) {
57ad3e46a3SLionel Debieve 		ERROR("HASH init (%d)\n", ret);
58ad3e46a3SLionel Debieve 		panic();
59ad3e46a3SLionel Debieve 	}
60ad3e46a3SLionel Debieve 
61ad3e46a3SLionel Debieve 	if (stm32mp_is_closed_device() || stm32mp_is_auth_supported()) {
62ad3e46a3SLionel Debieve #if STM32MP_CRYPTO_ROM_LIB
63ad3e46a3SLionel Debieve 		boot_context = (boot_api_context_t *)stm32mp_get_boot_ctx_address();
64ad3e46a3SLionel Debieve 		auth_ops.verify_signature = boot_context->bootrom_ecdsa_verify_signature;
65ad3e46a3SLionel Debieve #else
66ad3e46a3SLionel Debieve 		/* Use hardware peripherals */
67ad3e46a3SLionel Debieve 		if (stm32_rng_init() != 0) {
68ad3e46a3SLionel Debieve 			panic();
69ad3e46a3SLionel Debieve 		}
70ad3e46a3SLionel Debieve 
71ad3e46a3SLionel Debieve 		if (stm32_saes_driver_init() != 0) {
72ad3e46a3SLionel Debieve 			panic();
73ad3e46a3SLionel Debieve 		}
74ad3e46a3SLionel Debieve 
75ad3e46a3SLionel Debieve 		if (stm32_pka_init() != 0) {
76ad3e46a3SLionel Debieve 			panic();
77ad3e46a3SLionel Debieve 		}
78ad3e46a3SLionel Debieve #endif
79ad3e46a3SLionel Debieve 	}
80ad3e46a3SLionel Debieve }
81ad3e46a3SLionel Debieve 
8270a422baSYann Gautier static int get_plain_pk_from_asn1(void *pk_ptr, unsigned int pk_len, void **plain_pk,
8376e4fab0SYann Gautier 				  size_t *len, int *pk_alg)
84ad3e46a3SLionel Debieve {
85ad3e46a3SLionel Debieve 	int ret;
86ad3e46a3SLionel Debieve 	mbedtls_pk_context mbedtls_pk = {0};
87ad3e46a3SLionel Debieve 	unsigned char *p, *end;
88ad3e46a3SLionel Debieve 	mbedtls_asn1_buf alg_params = {0};
89ad3e46a3SLionel Debieve 	mbedtls_asn1_buf alg_oid = {0};
90ad3e46a3SLionel Debieve 
91ad3e46a3SLionel Debieve 	*plain_pk = NULL;
92ad3e46a3SLionel Debieve 	*len = 0U;
93ad3e46a3SLionel Debieve 
94ad3e46a3SLionel Debieve 	/* Parse the public key */
95ad3e46a3SLionel Debieve 	mbedtls_pk_init(&mbedtls_pk);
96ad3e46a3SLionel Debieve 	p = (unsigned char *)pk_ptr;
97ad3e46a3SLionel Debieve 	end = (unsigned char *)(p + pk_len);
98ad3e46a3SLionel Debieve 
99ad3e46a3SLionel Debieve 	ret =  mbedtls_asn1_get_tag(&p, end, len,
100ad3e46a3SLionel Debieve 				    MBEDTLS_ASN1_CONSTRUCTED | MBEDTLS_ASN1_SEQUENCE);
101ad3e46a3SLionel Debieve 	if (ret != 0) {
102ad3e46a3SLionel Debieve 		return -EINVAL;
103ad3e46a3SLionel Debieve 	}
104ad3e46a3SLionel Debieve 
105ad3e46a3SLionel Debieve 	end = p + *len;
106ad3e46a3SLionel Debieve 	ret = mbedtls_asn1_get_alg(&p, end, &alg_oid, &alg_params);
107ad3e46a3SLionel Debieve 	if (ret != 0) {
108ad3e46a3SLionel Debieve 		VERBOSE("%s: mbedtls_asn1_get_alg (%d)\n", __func__, ret);
109ad3e46a3SLionel Debieve 		return -EINVAL;
110ad3e46a3SLionel Debieve 	}
111ad3e46a3SLionel Debieve 
112ad3e46a3SLionel Debieve 	if (pk_alg != NULL) {
113ad3e46a3SLionel Debieve 		if ((strlen(MBEDTLS_OID_EC_GRP_SECP256R1) == alg_params.len) &&
114ad3e46a3SLionel Debieve 		    (memcmp(MBEDTLS_OID_EC_GRP_SECP256R1, alg_params.p, alg_params.len) == 0)) {
115ad3e46a3SLionel Debieve 			*pk_alg = BOOT_API_ECDSA_ALGO_TYPE_P256NIST;
116ad3e46a3SLionel Debieve 		} else if ((strlen(OID_EC_GRP_BP256T1) == alg_params.len) &&
117ad3e46a3SLionel Debieve 		    (memcmp(OID_EC_GRP_BP256T1, alg_params.p, alg_params.len) == 0)) {
118ad3e46a3SLionel Debieve 			*pk_alg = BOOT_API_ECDSA_ALGO_TYPE_BRAINPOOL256;
119ad3e46a3SLionel Debieve 		} else {
120ad3e46a3SLionel Debieve 			ERROR("%s: Algorithm is not supported\n", __func__);
121ad3e46a3SLionel Debieve 			return -EINVAL;
122ad3e46a3SLionel Debieve 		}
123ad3e46a3SLionel Debieve 	}
124ad3e46a3SLionel Debieve 
125ad3e46a3SLionel Debieve 	ret = mbedtls_asn1_get_bitstring_null(&p, end, len);
126ad3e46a3SLionel Debieve 	if (ret != 0) {
127ad3e46a3SLionel Debieve 		VERBOSE("%s: mbedtls_asn1_get_bitstring_null (%d)\n", __func__, ret);
128ad3e46a3SLionel Debieve 		return -EINVAL;
129ad3e46a3SLionel Debieve 	}
130ad3e46a3SLionel Debieve 
131ad3e46a3SLionel Debieve 	/* We remove the ident (0x04) first byte. */
132ad3e46a3SLionel Debieve 	if ((*len < 1U) || (p[0] !=  MBEDTLS_ASN1_OCTET_STRING)) {
133ad3e46a3SLionel Debieve 		VERBOSE("%s: not expected len or tag\n", __func__);
134ad3e46a3SLionel Debieve 		return -EINVAL;
135ad3e46a3SLionel Debieve 	}
136ad3e46a3SLionel Debieve 
137ad3e46a3SLionel Debieve 	*len = *len - 1U;
138ad3e46a3SLionel Debieve 	*plain_pk = p + 1U;
139ad3e46a3SLionel Debieve 
140ad3e46a3SLionel Debieve 	return 0;
141ad3e46a3SLionel Debieve }
142ad3e46a3SLionel Debieve 
143ad3e46a3SLionel Debieve #if STM32MP_CRYPTO_ROM_LIB
144ad3e46a3SLionel Debieve uint32_t verify_signature(uint8_t *hash_in, uint8_t *pubkey_in,
145ad3e46a3SLionel Debieve 			  uint8_t *signature, uint32_t ecc_algo)
146ad3e46a3SLionel Debieve {
147ad3e46a3SLionel Debieve 	int ret;
148ad3e46a3SLionel Debieve 
149ad3e46a3SLionel Debieve 	ret = mmap_add_dynamic_region(STM32MP_ROM_BASE, STM32MP_ROM_BASE,
150ad3e46a3SLionel Debieve 				      STM32MP_ROM_SIZE_2MB_ALIGNED, MT_CODE | MT_SECURE);
151ad3e46a3SLionel Debieve 	if (ret != 0) {
152ad3e46a3SLionel Debieve 		VERBOSE("%s: mmap_add_dynamic_region (%d)\n", __func__, ret);
153ad3e46a3SLionel Debieve 		return CRYPTO_ERR_SIGNATURE;
154ad3e46a3SLionel Debieve 	}
155ad3e46a3SLionel Debieve 
156ad3e46a3SLionel Debieve 	ret = auth_ops.verify_signature(hash_in, pubkey_in, signature, ecc_algo);
157ad3e46a3SLionel Debieve 
158ad3e46a3SLionel Debieve 	if (ret != BOOT_API_RETURN_OK) {
159ad3e46a3SLionel Debieve 		VERBOSE("%s: auth_ops.verify_sign (%d)\n", __func__, ret);
160ad3e46a3SLionel Debieve 		ret = CRYPTO_ERR_SIGNATURE;
161ad3e46a3SLionel Debieve 	} else {
162ad3e46a3SLionel Debieve 		ret = 0;
163ad3e46a3SLionel Debieve 	}
164ad3e46a3SLionel Debieve 
165ad3e46a3SLionel Debieve 	mmap_remove_dynamic_region(STM32MP_ROM_BASE, STM32MP_ROM_SIZE_2MB_ALIGNED);
166ad3e46a3SLionel Debieve 
167ad3e46a3SLionel Debieve 	return ret;
168ad3e46a3SLionel Debieve }
169ad3e46a3SLionel Debieve 
1704ac5b394SYann Gautier static int crypto_convert_pk(void *full_pk_ptr, unsigned int full_pk_len,
171ad3e46a3SLionel Debieve 			     void **hashed_pk_ptr, unsigned int *hashed_pk_len)
172ad3e46a3SLionel Debieve {
17376e4fab0SYann Gautier 	size_t len;
17476e4fab0SYann Gautier 	int ret;
17576e4fab0SYann Gautier 
17676e4fab0SYann Gautier 	ret = get_plain_pk_from_asn1(full_pk_ptr, full_pk_len, hashed_pk_ptr, &len, NULL);
17776e4fab0SYann Gautier 	if (ret == 0) {
17876e4fab0SYann Gautier 		*hashed_pk_len = (unsigned int)len;
17976e4fab0SYann Gautier 	}
18076e4fab0SYann Gautier 
18176e4fab0SYann Gautier 	return ret;
182ad3e46a3SLionel Debieve }
183ad3e46a3SLionel Debieve #else /* STM32MP_CRYPTO_ROM_LIB*/
184ad3e46a3SLionel Debieve static uint32_t verify_signature(uint8_t *hash_in, uint8_t *pubkey_in,
185ad3e46a3SLionel Debieve 				 uint8_t *signature, uint32_t ecc_algo)
186ad3e46a3SLionel Debieve {
187ad3e46a3SLionel Debieve 	int ret = -1;
188ad3e46a3SLionel Debieve 	enum stm32_pka_ecdsa_curve_id cid;
189ad3e46a3SLionel Debieve 
190ad3e46a3SLionel Debieve 	switch (ecc_algo) {
191ad3e46a3SLionel Debieve 	case BOOT_API_ECDSA_ALGO_TYPE_P256NIST:
192ad3e46a3SLionel Debieve #if PKA_USE_NIST_P256
193ad3e46a3SLionel Debieve 		cid = PKA_NIST_P256;
194ad3e46a3SLionel Debieve 		ret = 0;
195ad3e46a3SLionel Debieve #else
196ad3e46a3SLionel Debieve 		WARN("%s nist_p256 requested but not included\n", __func__);
197ad3e46a3SLionel Debieve #endif
198ad3e46a3SLionel Debieve 		break;
199ad3e46a3SLionel Debieve 	case BOOT_API_ECDSA_ALGO_TYPE_BRAINPOOL256:
200ad3e46a3SLionel Debieve #if PKA_USE_BRAINPOOL_P256T1
201ad3e46a3SLionel Debieve 		cid = PKA_BRAINPOOL_P256T1;
202ad3e46a3SLionel Debieve 		ret = 0;
203ad3e46a3SLionel Debieve #else
204ad3e46a3SLionel Debieve 		WARN("%s brainpool_p256t1 requested but not included\n", __func__);
205ad3e46a3SLionel Debieve #endif
206ad3e46a3SLionel Debieve 		break;
207ad3e46a3SLionel Debieve 	default:
208ad3e46a3SLionel Debieve 		WARN("%s unexpected ecc_algo(%u)\n", __func__, ecc_algo);
209ad3e46a3SLionel Debieve 		break;
210ad3e46a3SLionel Debieve 	}
211ad3e46a3SLionel Debieve 
212ad3e46a3SLionel Debieve 	if (ret < 0) {
213ad3e46a3SLionel Debieve 		return CRYPTO_ERR_SIGNATURE;
214ad3e46a3SLionel Debieve 	}
215ad3e46a3SLionel Debieve 
216ad3e46a3SLionel Debieve 	ret = stm32_pka_ecdsa_verif(hash_in,
217ad3e46a3SLionel Debieve 				    BOOT_API_SHA256_DIGEST_SIZE_IN_BYTES,
218ad3e46a3SLionel Debieve 				    signature, BOOT_API_ECDSA_SIGNATURE_LEN_IN_BYTES / 2U,
219ad3e46a3SLionel Debieve 				    signature + BOOT_API_ECDSA_SIGNATURE_LEN_IN_BYTES / 2U,
220ad3e46a3SLionel Debieve 				    BOOT_API_ECDSA_SIGNATURE_LEN_IN_BYTES / 2U,
221ad3e46a3SLionel Debieve 				    pubkey_in, BOOT_API_ECDSA_PUB_KEY_LEN_IN_BYTES / 2U,
222ad3e46a3SLionel Debieve 				    pubkey_in + BOOT_API_ECDSA_PUB_KEY_LEN_IN_BYTES / 2U,
223ad3e46a3SLionel Debieve 				    BOOT_API_ECDSA_PUB_KEY_LEN_IN_BYTES / 2U, cid);
224ad3e46a3SLionel Debieve 	if (ret < 0) {
225ad3e46a3SLionel Debieve 		return CRYPTO_ERR_SIGNATURE;
226ad3e46a3SLionel Debieve 	}
227ad3e46a3SLionel Debieve 
228ad3e46a3SLionel Debieve 	return 0;
229ad3e46a3SLionel Debieve }
230ad3e46a3SLionel Debieve 
2314ac5b394SYann Gautier static int crypto_convert_pk(void *full_pk_ptr, unsigned int full_pk_len,
232ad3e46a3SLionel Debieve 			     void **hashed_pk_ptr, unsigned int *hashed_pk_len)
233ad3e46a3SLionel Debieve {
234ad3e46a3SLionel Debieve 	static uint8_t st_pk[CRYPTO_PUBKEY_MAX_SIZE + sizeof(uint32_t)];
235ad3e46a3SLionel Debieve 	int ret;
236ad3e46a3SLionel Debieve 	void *plain_pk;
23776e4fab0SYann Gautier 	size_t len;
238ad3e46a3SLionel Debieve 	int curve_id;
239ad3e46a3SLionel Debieve 	uint32_t cid;
240ad3e46a3SLionel Debieve 
241ad3e46a3SLionel Debieve 	ret = get_plain_pk_from_asn1(full_pk_ptr, full_pk_len, &plain_pk, &len, &curve_id);
242ad3e46a3SLionel Debieve 	if ((ret != 0) || (len > CRYPTO_PUBKEY_MAX_SIZE))  {
243ad3e46a3SLionel Debieve 		return -EINVAL;
244ad3e46a3SLionel Debieve 	}
245ad3e46a3SLionel Debieve 
246ad3e46a3SLionel Debieve 	cid = curve_id; /* we want value of curve_id (1 or 2) in a uint32_t */
247ad3e46a3SLionel Debieve 
248ad3e46a3SLionel Debieve 	memcpy(st_pk, &cid, sizeof(cid));
249ad3e46a3SLionel Debieve 	memcpy(st_pk + sizeof(cid), plain_pk, len);
250ad3e46a3SLionel Debieve 
251ad3e46a3SLionel Debieve 	*hashed_pk_ptr = st_pk;
25276e4fab0SYann Gautier 	*hashed_pk_len = (unsigned int)(len + sizeof(cid));
253ad3e46a3SLionel Debieve 
254ad3e46a3SLionel Debieve 	return 0;
255ad3e46a3SLionel Debieve }
256ad3e46a3SLionel Debieve #endif /* STM32MP_CRYPTO_ROM_LIB */
257ad3e46a3SLionel Debieve 
258ad3e46a3SLionel Debieve static int get_plain_digest_from_asn1(void *digest_ptr, unsigned int digest_len,
259ad3e46a3SLionel Debieve 				      uint8_t **out, size_t *out_len, mbedtls_md_type_t *md_alg)
260ad3e46a3SLionel Debieve {
261ad3e46a3SLionel Debieve 	int ret;
262ad3e46a3SLionel Debieve 	mbedtls_asn1_buf hash_oid, params;
263ad3e46a3SLionel Debieve 	size_t len;
264ad3e46a3SLionel Debieve 	unsigned char *p, *end;
265ad3e46a3SLionel Debieve 
266ad3e46a3SLionel Debieve 	*out = NULL;
267ad3e46a3SLionel Debieve 	*out_len = 0U;
268ad3e46a3SLionel Debieve 
269ad3e46a3SLionel Debieve 	/* Digest info should be an MBEDTLS_ASN1_SEQUENCE */
270ad3e46a3SLionel Debieve 	p = (unsigned char *)digest_ptr;
271ad3e46a3SLionel Debieve 	end = p + digest_len;
272ad3e46a3SLionel Debieve 	ret = mbedtls_asn1_get_tag(&p, end, &len, MBEDTLS_ASN1_CONSTRUCTED |
273ad3e46a3SLionel Debieve 				   MBEDTLS_ASN1_SEQUENCE);
274ad3e46a3SLionel Debieve 	if (ret != 0) {
275ad3e46a3SLionel Debieve 		return ret;
276ad3e46a3SLionel Debieve 	}
277ad3e46a3SLionel Debieve 
278ad3e46a3SLionel Debieve 	/* Get the hash algorithm */
279ad3e46a3SLionel Debieve 	ret = mbedtls_asn1_get_alg(&p, end, &hash_oid, &params);
280ad3e46a3SLionel Debieve 	if (ret != 0) {
281ad3e46a3SLionel Debieve 		return ret;
282ad3e46a3SLionel Debieve 	}
283ad3e46a3SLionel Debieve 
284ad3e46a3SLionel Debieve 	ret = mbedtls_oid_get_md_alg(&hash_oid, md_alg);
285ad3e46a3SLionel Debieve 	if (ret != 0) {
286ad3e46a3SLionel Debieve 		return ret;
287ad3e46a3SLionel Debieve 	}
288ad3e46a3SLionel Debieve 
289ad3e46a3SLionel Debieve 	ret = mbedtls_asn1_get_tag(&p, end, &len, MBEDTLS_ASN1_OCTET_STRING);
290ad3e46a3SLionel Debieve 	if (ret != 0) {
291ad3e46a3SLionel Debieve 		return ret;
292ad3e46a3SLionel Debieve 	}
293ad3e46a3SLionel Debieve 
294ad3e46a3SLionel Debieve 	/* Length of hash must match the algorithm's size */
295ad3e46a3SLionel Debieve 	if (len != BOOT_API_SHA256_DIGEST_SIZE_IN_BYTES) {
296ad3e46a3SLionel Debieve 		return -1;
297ad3e46a3SLionel Debieve 	}
298ad3e46a3SLionel Debieve 
299ad3e46a3SLionel Debieve 	*out = p;
300ad3e46a3SLionel Debieve 	*out_len = len;
301ad3e46a3SLionel Debieve 
302ad3e46a3SLionel Debieve 	return 0;
303ad3e46a3SLionel Debieve }
304ad3e46a3SLionel Debieve 
305ad3e46a3SLionel Debieve static int crypto_verify_signature(void *data_ptr, unsigned int data_len,
306ad3e46a3SLionel Debieve 				   void *sig_ptr, unsigned int sig_len,
307ad3e46a3SLionel Debieve 				   void *sig_alg, unsigned int sig_alg_len,
308ad3e46a3SLionel Debieve 				   void *pk_ptr, unsigned int pk_len)
309ad3e46a3SLionel Debieve {
310ad3e46a3SLionel Debieve 	uint8_t image_hash[CRYPTO_HASH_MAX_SIZE] = {0};
311ad3e46a3SLionel Debieve 	uint8_t sig[CRYPTO_SIGN_MAX_SIZE];
312ad3e46a3SLionel Debieve 	uint8_t my_pk[CRYPTO_PUBKEY_MAX_SIZE];
313ad3e46a3SLionel Debieve 	int ret;
314ad3e46a3SLionel Debieve 	size_t len;
315ad3e46a3SLionel Debieve 	mbedtls_asn1_sequence seq;
316ad3e46a3SLionel Debieve 	mbedtls_asn1_sequence *cur;
317ad3e46a3SLionel Debieve 	unsigned char *p, *end;
318ad3e46a3SLionel Debieve 	int curve_id;
319ad3e46a3SLionel Debieve 	mbedtls_asn1_buf sig_oid, sig_params;
320ad3e46a3SLionel Debieve 	mbedtls_md_type_t md_alg;
321ad3e46a3SLionel Debieve 	mbedtls_pk_type_t pk_alg;
322ad3e46a3SLionel Debieve 	size_t bignum_len = sizeof(sig) / 2U;
323ad3e46a3SLionel Debieve 	unsigned int seq_num = 0U;
324ad3e46a3SLionel Debieve 
325ad3e46a3SLionel Debieve 	if (!stm32mp_is_closed_device() && !stm32mp_is_auth_supported()) {
326ad3e46a3SLionel Debieve 		return CRYPTO_SUCCESS;
327ad3e46a3SLionel Debieve 	}
328ad3e46a3SLionel Debieve 
329ad3e46a3SLionel Debieve 	/* Get pointers to signature OID and parameters */
330ad3e46a3SLionel Debieve 	p = (unsigned char *)sig_alg;
331ad3e46a3SLionel Debieve 	end = (unsigned char *)(p + sig_alg_len);
332ad3e46a3SLionel Debieve 	ret = mbedtls_asn1_get_alg(&p, end, &sig_oid, &sig_params);
333ad3e46a3SLionel Debieve 	if (ret != 0) {
334ad3e46a3SLionel Debieve 		VERBOSE("%s: mbedtls_asn1_get_alg (%d)\n", __func__, ret);
335ad3e46a3SLionel Debieve 		return CRYPTO_ERR_SIGNATURE;
336ad3e46a3SLionel Debieve 	}
337ad3e46a3SLionel Debieve 
338ad3e46a3SLionel Debieve 	/* Get the actual signature algorithm (MD + PK) */
339ad3e46a3SLionel Debieve 	ret = mbedtls_oid_get_sig_alg(&sig_oid, &md_alg, &pk_alg);
340ad3e46a3SLionel Debieve 	if (ret != 0) {
341ad3e46a3SLionel Debieve 		VERBOSE("%s: mbedtls_oid_get_sig_alg (%d)\n", __func__, ret);
342ad3e46a3SLionel Debieve 		return CRYPTO_ERR_SIGNATURE;
343ad3e46a3SLionel Debieve 	}
344ad3e46a3SLionel Debieve 
345ad3e46a3SLionel Debieve 	if ((md_alg != MBEDTLS_MD_SHA256) || (pk_alg != MBEDTLS_PK_ECDSA)) {
346ad3e46a3SLionel Debieve 		VERBOSE("%s: md_alg=%u pk_alg=%u\n", __func__, md_alg, pk_alg);
347ad3e46a3SLionel Debieve 		return CRYPTO_ERR_SIGNATURE;
348ad3e46a3SLionel Debieve 	}
349ad3e46a3SLionel Debieve 
35076e4fab0SYann Gautier 	ret = get_plain_pk_from_asn1(pk_ptr, pk_len, &pk_ptr, &len, &curve_id);
351ad3e46a3SLionel Debieve 	if (ret != 0) {
352ad3e46a3SLionel Debieve 		VERBOSE("%s: get_plain_pk_from_asn1 (%d)\n", __func__, ret);
353ad3e46a3SLionel Debieve 		return CRYPTO_ERR_SIGNATURE;
354ad3e46a3SLionel Debieve 	}
355ad3e46a3SLionel Debieve 
356ad3e46a3SLionel Debieve 	/* We expect a known pk_len */
35776e4fab0SYann Gautier 	if (len != sizeof(my_pk)) {
35876e4fab0SYann Gautier 		VERBOSE("%s: pk_len=%zu sizeof(my_pk)=%zu)\n", __func__, len, sizeof(my_pk));
359ad3e46a3SLionel Debieve 		return CRYPTO_ERR_SIGNATURE;
360ad3e46a3SLionel Debieve 	}
361ad3e46a3SLionel Debieve 
362ad3e46a3SLionel Debieve 	/* Need to copy as auth_ops.verify_signature
363ad3e46a3SLionel Debieve 	 * expects aligned public key.
364ad3e46a3SLionel Debieve 	 */
365ad3e46a3SLionel Debieve 	memcpy(my_pk, pk_ptr, sizeof(my_pk));
366ad3e46a3SLionel Debieve 
367ad3e46a3SLionel Debieve 	/* Get the signature (bitstring) */
368ad3e46a3SLionel Debieve 	p = (unsigned char *)sig_ptr;
369ad3e46a3SLionel Debieve 	end = (unsigned char *)(p + sig_len);
370ad3e46a3SLionel Debieve 	ret = mbedtls_asn1_get_bitstring_null(&p, end, &len);
371ad3e46a3SLionel Debieve 	if (ret != 0) {
372ad3e46a3SLionel Debieve 		VERBOSE("%s: mbedtls_asn1_get_bitstring_null (%d)\n", __func__, ret);
373ad3e46a3SLionel Debieve 		return CRYPTO_ERR_SIGNATURE;
374ad3e46a3SLionel Debieve 	}
375ad3e46a3SLionel Debieve 
376ad3e46a3SLionel Debieve 	/* Get r and s from sequence */
377ad3e46a3SLionel Debieve 	ret = mbedtls_asn1_get_sequence_of(&p, end, &seq, MBEDTLS_ASN1_INTEGER);
378ad3e46a3SLionel Debieve 	if (ret != 0) {
379ad3e46a3SLionel Debieve 		VERBOSE("%s: mbedtls_asn1_get_sequence_of (%d)\n", __func__, ret);
380ad3e46a3SLionel Debieve 		return CRYPTO_ERR_SIGNATURE;
381ad3e46a3SLionel Debieve 	}
382ad3e46a3SLionel Debieve 
383ad3e46a3SLionel Debieve 	/* We expect only 2 integers (r and s) from the sequence */
384ad3e46a3SLionel Debieve 	if (seq.next->next != NULL) {
385ad3e46a3SLionel Debieve 		cur = seq.next;
386ad3e46a3SLionel Debieve 		mbedtls_asn1_sequence *next;
387ad3e46a3SLionel Debieve 
388ad3e46a3SLionel Debieve 		VERBOSE("%s: nb seq != 2\n", __func__);
389ad3e46a3SLionel Debieve 		/* Free all the sequences */
390ad3e46a3SLionel Debieve 		while (cur != NULL) {
391ad3e46a3SLionel Debieve 			next = cur->next;
392ad3e46a3SLionel Debieve 			mbedtls_free(cur);
393ad3e46a3SLionel Debieve 			cur = next;
394ad3e46a3SLionel Debieve 		}
395ad3e46a3SLionel Debieve 
396ad3e46a3SLionel Debieve 		return CRYPTO_ERR_SIGNATURE;
397ad3e46a3SLionel Debieve 	}
398ad3e46a3SLionel Debieve 
399ad3e46a3SLionel Debieve 	/*
400ad3e46a3SLionel Debieve 	 * ECDSA signatures are composed of a tuple (R,S) where R and S are between 0 and n.
401ad3e46a3SLionel Debieve 	 * This means that the R and S can have a maximum of 32 each, but can also be smaller.
402ad3e46a3SLionel Debieve 	 * Also seen the integer sequence may (sometime) start with 0x00 as MSB, but we can only
403ad3e46a3SLionel Debieve 	 * manage exactly 2*32 bytes, we remove this higher byte if there are not 00,
404ad3e46a3SLionel Debieve 	 * we will fail either.
405ad3e46a3SLionel Debieve 	 */
406ad3e46a3SLionel Debieve 	cur = &seq;
407ad3e46a3SLionel Debieve 	memset(sig, 0U, sizeof(sig));
408ad3e46a3SLionel Debieve 
409ad3e46a3SLionel Debieve 	while (cur != NULL) {
410ad3e46a3SLionel Debieve 		size_t skip = 0U;
411ad3e46a3SLionel Debieve 		size_t seek = seq_num * bignum_len;
412ad3e46a3SLionel Debieve 
413ad3e46a3SLionel Debieve 		if (cur->buf.len > bignum_len) {
414ad3e46a3SLionel Debieve 			/* Remove extra 0x00 bytes */
415ad3e46a3SLionel Debieve 			skip = cur->buf.len - bignum_len;
416ad3e46a3SLionel Debieve 		} else if (cur->buf.len < bignum_len) {
417ad3e46a3SLionel Debieve 			/* Add padding to match HW required size */
418ad3e46a3SLionel Debieve 			seek += (bignum_len % cur->buf.len);
419ad3e46a3SLionel Debieve 		}
420ad3e46a3SLionel Debieve 
421ad3e46a3SLionel Debieve 		if (seek + cur->buf.len > sizeof(sig) + skip) {
422ad3e46a3SLionel Debieve 			panic();
423ad3e46a3SLionel Debieve 		}
424ad3e46a3SLionel Debieve 
425ad3e46a3SLionel Debieve 		memcpy(sig + seek, cur->buf.p + skip, cur->buf.len - skip);
426ad3e46a3SLionel Debieve 		cur = cur->next;
427ad3e46a3SLionel Debieve 		seq_num++;
428ad3e46a3SLionel Debieve 	}
429ad3e46a3SLionel Debieve 
430ad3e46a3SLionel Debieve 	/* Need to free allocated 'next' in mbedtls_asn1_get_sequence_of */
431ad3e46a3SLionel Debieve 	mbedtls_free(seq.next);
432ad3e46a3SLionel Debieve 
433ad3e46a3SLionel Debieve 	/* Compute hash for the data covered by the signature */
434ad3e46a3SLionel Debieve 	stm32_hash_init(HASH_SHA256);
435ad3e46a3SLionel Debieve 
436ad3e46a3SLionel Debieve 	ret = stm32_hash_final_update((uint8_t *)data_ptr, data_len, image_hash);
437ad3e46a3SLionel Debieve 	if (ret != 0) {
438ad3e46a3SLionel Debieve 		VERBOSE("%s: stm32_hash_final_update (%d)\n", __func__, ret);
439ad3e46a3SLionel Debieve 		return CRYPTO_ERR_SIGNATURE;
440ad3e46a3SLionel Debieve 	}
441ad3e46a3SLionel Debieve 
442ad3e46a3SLionel Debieve 	return verify_signature(image_hash, my_pk, sig, curve_id);
443ad3e46a3SLionel Debieve }
444ad3e46a3SLionel Debieve 
445ad3e46a3SLionel Debieve static int crypto_verify_hash(void *data_ptr, unsigned int data_len,
446ad3e46a3SLionel Debieve 			      void *digest_info_ptr,
447ad3e46a3SLionel Debieve 			      unsigned int digest_info_len)
448ad3e46a3SLionel Debieve {
449ad3e46a3SLionel Debieve 	int ret;
450ad3e46a3SLionel Debieve 	uint8_t calc_hash[BOOT_API_SHA256_DIGEST_SIZE_IN_BYTES];
451ad3e46a3SLionel Debieve 	unsigned char *p;
452ad3e46a3SLionel Debieve 	mbedtls_md_type_t md_alg;
453ad3e46a3SLionel Debieve 	size_t len;
454ad3e46a3SLionel Debieve 
455ad3e46a3SLionel Debieve 	/* we receive an asn1 encapsulated digest, we flatten it */
456ad3e46a3SLionel Debieve 	ret = get_plain_digest_from_asn1(digest_info_ptr,
457ad3e46a3SLionel Debieve 					 digest_info_len, &p, &len,
458ad3e46a3SLionel Debieve 					 &md_alg);
459ad3e46a3SLionel Debieve 	if ((ret != 0) || (md_alg != MBEDTLS_MD_SHA256) || (len != sizeof(calc_hash))) {
460ad3e46a3SLionel Debieve 		return CRYPTO_ERR_HASH;
461ad3e46a3SLionel Debieve 	}
462ad3e46a3SLionel Debieve 
463ad3e46a3SLionel Debieve 	digest_info_ptr = p;
464ad3e46a3SLionel Debieve 	digest_info_len = len;
465ad3e46a3SLionel Debieve 
466ad3e46a3SLionel Debieve 	stm32_hash_init(HASH_SHA256);
467ad3e46a3SLionel Debieve 
468ad3e46a3SLionel Debieve 	ret = stm32_hash_final_update(data_ptr, data_len, calc_hash);
469ad3e46a3SLionel Debieve 	if (ret != 0) {
470ad3e46a3SLionel Debieve 		VERBOSE("%s: hash failed\n", __func__);
471ad3e46a3SLionel Debieve 		return CRYPTO_ERR_HASH;
472ad3e46a3SLionel Debieve 	}
473ad3e46a3SLionel Debieve 
474ad3e46a3SLionel Debieve 	ret = memcmp(calc_hash, digest_info_ptr, digest_info_len);
475ad3e46a3SLionel Debieve 	if (ret != 0) {
476ad3e46a3SLionel Debieve 		VERBOSE("%s: not expected digest\n", __func__);
477ad3e46a3SLionel Debieve 		ret = CRYPTO_ERR_HASH;
478ad3e46a3SLionel Debieve 	}
479ad3e46a3SLionel Debieve 
480ad3e46a3SLionel Debieve 	return ret;
481ad3e46a3SLionel Debieve }
482ad3e46a3SLionel Debieve 
483ad3e46a3SLionel Debieve #if !defined(DECRYPTION_SUPPORT_none)
484ad3e46a3SLionel Debieve static int derive_key(uint8_t *key, size_t *key_len, size_t len,
485ad3e46a3SLionel Debieve 		      unsigned int *flags, const uint8_t *img_id, size_t img_id_len)
486ad3e46a3SLionel Debieve {
487ad3e46a3SLionel Debieve 	size_t i, j;
488ad3e46a3SLionel Debieve 
489ad3e46a3SLionel Debieve 	assert(*key_len >= 32U);
490ad3e46a3SLionel Debieve 
491ad3e46a3SLionel Debieve 	/*
492ad3e46a3SLionel Debieve 	 * Not a real derivation yet
493ad3e46a3SLionel Debieve 	 *
494*5c506c73SYann Gautier 	 * We expect a 32 bytes key, if OTP is only 16 bytes
495ad3e46a3SLionel Debieve 	 *   => duplicate.
496ad3e46a3SLionel Debieve 	 */
497ad3e46a3SLionel Debieve 	for (i = 0U, j = len; j < 32U;
498ad3e46a3SLionel Debieve 	     i += sizeof(uint32_t), j += sizeof(uint32_t)) {
499ad3e46a3SLionel Debieve 		memcpy(key + j, key + i, sizeof(uint32_t));
500ad3e46a3SLionel Debieve 	}
501ad3e46a3SLionel Debieve 
502ad3e46a3SLionel Debieve 	*key_len = 32U;
503ad3e46a3SLionel Debieve 	/* Variable 'key' store a real key */
504ad3e46a3SLionel Debieve 	*flags = 0U;
505ad3e46a3SLionel Debieve 
506ad3e46a3SLionel Debieve 	return 0;
507ad3e46a3SLionel Debieve }
508ad3e46a3SLionel Debieve 
509ad3e46a3SLionel Debieve int plat_get_enc_key_info(enum fw_enc_status_t fw_enc_status, uint8_t *key,
510ad3e46a3SLionel Debieve 			  size_t *key_len, unsigned int *flags,
511ad3e46a3SLionel Debieve 			  const uint8_t *img_id, size_t img_id_len)
512ad3e46a3SLionel Debieve {
513ad3e46a3SLionel Debieve 	uint32_t otp_idx;
514ad3e46a3SLionel Debieve 	uint32_t otp_len;
515ad3e46a3SLionel Debieve 	size_t read_len;
516ad3e46a3SLionel Debieve 	size_t i;
517ad3e46a3SLionel Debieve 
518ad3e46a3SLionel Debieve 	if (fw_enc_status == FW_ENC_WITH_BSSK) {
519ad3e46a3SLionel Debieve 		return -EINVAL;
520ad3e46a3SLionel Debieve 	}
521ad3e46a3SLionel Debieve 
522ad3e46a3SLionel Debieve 	if (stm32_get_otp_index(ENCKEY_OTP, &otp_idx, &otp_len) != 0) {
523ad3e46a3SLionel Debieve 		VERBOSE("%s: get %s index error\n", __func__, ENCKEY_OTP);
524ad3e46a3SLionel Debieve 		return -EINVAL;
525ad3e46a3SLionel Debieve 	}
526ad3e46a3SLionel Debieve 
527ad3e46a3SLionel Debieve 	if (otp_len > (*key_len * CHAR_BIT)) {
52876e4fab0SYann Gautier 		VERBOSE("%s: length Error otp_len=%u key_len=%zu\n", __func__,
529ad3e46a3SLionel Debieve 			otp_len, *key_len * CHAR_BIT);
530ad3e46a3SLionel Debieve 		return -EINVAL;
531ad3e46a3SLionel Debieve 	}
532ad3e46a3SLionel Debieve 
533ad3e46a3SLionel Debieve 	read_len = otp_len / CHAR_BIT;
534ad3e46a3SLionel Debieve 	assert(read_len % sizeof(uint32_t) == 0);
535ad3e46a3SLionel Debieve 
536ad3e46a3SLionel Debieve 	for (i = 0U; i < read_len / sizeof(uint32_t); i++) {
537ad3e46a3SLionel Debieve 		uint32_t tmp;
538ad3e46a3SLionel Debieve 		uint32_t otp_val;
539ad3e46a3SLionel Debieve 
540ad3e46a3SLionel Debieve 		if (stm32_get_otp_value_from_idx(otp_idx + i, &otp_val) != 0) {
541ad3e46a3SLionel Debieve 			zeromem(key, *key_len);
542ad3e46a3SLionel Debieve 			VERBOSE("%s: unable to read from otp\n", __func__);
543ad3e46a3SLionel Debieve 			return -EINVAL;
544ad3e46a3SLionel Debieve 		}
545ad3e46a3SLionel Debieve 
546ad3e46a3SLionel Debieve 		tmp = bswap32(otp_val);
547ad3e46a3SLionel Debieve 		memcpy(key + i * sizeof(uint32_t), &tmp, sizeof(tmp));
548ad3e46a3SLionel Debieve 	}
549ad3e46a3SLionel Debieve 
550ad3e46a3SLionel Debieve 	/* Now we have the OTP values in key till read_len */
551ad3e46a3SLionel Debieve 
552ad3e46a3SLionel Debieve 	if (derive_key(key, key_len, read_len, flags, img_id,
553ad3e46a3SLionel Debieve 		       img_id_len) != 0) {
554ad3e46a3SLionel Debieve 		zeromem(key, *key_len);
555ad3e46a3SLionel Debieve 		return -EINVAL;
556ad3e46a3SLionel Debieve 	}
557ad3e46a3SLionel Debieve 
558ad3e46a3SLionel Debieve 	return 0;
559ad3e46a3SLionel Debieve }
560ad3e46a3SLionel Debieve 
561ad3e46a3SLionel Debieve static enum stm32_saes_key_selection select_key(unsigned int key_flags)
562ad3e46a3SLionel Debieve {
563ad3e46a3SLionel Debieve 	if ((key_flags & ENC_KEY_IS_IDENTIFIER) != 0U) {
564ad3e46a3SLionel Debieve 		panic();
565ad3e46a3SLionel Debieve 	}
566ad3e46a3SLionel Debieve 
567ad3e46a3SLionel Debieve 	/* Use the provided key buffer */
568ad3e46a3SLionel Debieve 	return STM32_SAES_KEY_SOFT;
569ad3e46a3SLionel Debieve }
570ad3e46a3SLionel Debieve 
571ad3e46a3SLionel Debieve static int stm32_decrypt_aes_gcm(void *data, size_t data_len,
572ad3e46a3SLionel Debieve 				 const void *key, unsigned int key_len,
573ad3e46a3SLionel Debieve 				 unsigned int key_flags,
574ad3e46a3SLionel Debieve 				 const void *iv, unsigned int iv_len,
575ad3e46a3SLionel Debieve 				 const void *tag, unsigned int tag_len)
576ad3e46a3SLionel Debieve {
577ad3e46a3SLionel Debieve 	int ret;
578ad3e46a3SLionel Debieve 	struct stm32_saes_context ctx;
579ad3e46a3SLionel Debieve 	unsigned char tag_buf[CRYPTO_MAX_TAG_SIZE];
580ad3e46a3SLionel Debieve 	enum stm32_saes_key_selection key_mode;
581ad3e46a3SLionel Debieve 	unsigned int diff = 0U;
582ad3e46a3SLionel Debieve 	unsigned int i;
583ad3e46a3SLionel Debieve 
584ad3e46a3SLionel Debieve 	key_mode = select_key(key_flags);
585ad3e46a3SLionel Debieve 
586ad3e46a3SLionel Debieve 	ret = stm32_saes_init(&ctx, true, STM32_SAES_MODE_GCM, key_mode, key,
587ad3e46a3SLionel Debieve 			      key_len, iv, iv_len);
588ad3e46a3SLionel Debieve 	if (ret != 0) {
589ad3e46a3SLionel Debieve 		return CRYPTO_ERR_INIT;
590ad3e46a3SLionel Debieve 	}
591ad3e46a3SLionel Debieve 
592ad3e46a3SLionel Debieve 	ret = stm32_saes_update_assodata(&ctx, true, NULL, 0U);
593ad3e46a3SLionel Debieve 	if (ret != 0) {
594ad3e46a3SLionel Debieve 		return CRYPTO_ERR_DECRYPTION;
595ad3e46a3SLionel Debieve 	}
596ad3e46a3SLionel Debieve 
597ad3e46a3SLionel Debieve 	ret = stm32_saes_update_load(&ctx, true, data, data, data_len);
598ad3e46a3SLionel Debieve 	if (ret != 0) {
599ad3e46a3SLionel Debieve 		return CRYPTO_ERR_DECRYPTION;
600ad3e46a3SLionel Debieve 	}
601ad3e46a3SLionel Debieve 
602ad3e46a3SLionel Debieve 	ret = stm32_saes_final(&ctx, tag_buf, sizeof(tag_buf));
603ad3e46a3SLionel Debieve 	if (ret != 0) {
604ad3e46a3SLionel Debieve 		return CRYPTO_ERR_DECRYPTION;
605ad3e46a3SLionel Debieve 	}
606ad3e46a3SLionel Debieve 
607ad3e46a3SLionel Debieve 	/* Check tag in "constant-time" */
608ad3e46a3SLionel Debieve 	for (i = 0U; i < tag_len; i++) {
609ad3e46a3SLionel Debieve 		diff |= ((const unsigned char *)tag)[i] ^ tag_buf[i];
610ad3e46a3SLionel Debieve 	}
611ad3e46a3SLionel Debieve 
612ad3e46a3SLionel Debieve 	if (diff != 0U) {
613ad3e46a3SLionel Debieve 		return CRYPTO_ERR_DECRYPTION;
614ad3e46a3SLionel Debieve 	}
615ad3e46a3SLionel Debieve 
616ad3e46a3SLionel Debieve 	return CRYPTO_SUCCESS;
617ad3e46a3SLionel Debieve }
618ad3e46a3SLionel Debieve 
619ad3e46a3SLionel Debieve /*
620ad3e46a3SLionel Debieve  * Authenticated decryption of an image
621ad3e46a3SLionel Debieve  *
622ad3e46a3SLionel Debieve  */
623ad3e46a3SLionel Debieve static int crypto_auth_decrypt(enum crypto_dec_algo dec_algo, void *data_ptr, size_t len,
624ad3e46a3SLionel Debieve 			       const void *key, unsigned int key_len, unsigned int key_flags,
625ad3e46a3SLionel Debieve 			       const void *iv, unsigned int iv_len, const void *tag,
626ad3e46a3SLionel Debieve 			       unsigned int tag_len)
627ad3e46a3SLionel Debieve {
628ad3e46a3SLionel Debieve 	int rc = -1;
629ad3e46a3SLionel Debieve 	uint32_t real_iv[4];
630ad3e46a3SLionel Debieve 
631ad3e46a3SLionel Debieve 	switch (dec_algo) {
632ad3e46a3SLionel Debieve 	case CRYPTO_GCM_DECRYPT:
633ad3e46a3SLionel Debieve 		/*
634ad3e46a3SLionel Debieve 		 * GCM expect a Nonce
635ad3e46a3SLionel Debieve 		 * The AES IV is the nonce (a uint32_t[3])
636ad3e46a3SLionel Debieve 		 * then a counter (a uint32_t big endian)
637ad3e46a3SLionel Debieve 		 * The counter starts at 2.
638ad3e46a3SLionel Debieve 		 */
639ad3e46a3SLionel Debieve 		memcpy(real_iv, iv, iv_len);
640ad3e46a3SLionel Debieve 		real_iv[3] = htobe32(0x2U);
641ad3e46a3SLionel Debieve 
642ad3e46a3SLionel Debieve 		rc = stm32_decrypt_aes_gcm(data_ptr, len, key, key_len, key_flags,
643ad3e46a3SLionel Debieve 					   real_iv, sizeof(real_iv), tag, tag_len);
644ad3e46a3SLionel Debieve 		break;
645ad3e46a3SLionel Debieve 	default:
646ad3e46a3SLionel Debieve 		rc = CRYPTO_ERR_DECRYPTION;
647ad3e46a3SLionel Debieve 		break;
648ad3e46a3SLionel Debieve 	}
649ad3e46a3SLionel Debieve 
650ad3e46a3SLionel Debieve 	if (rc != 0) {
651ad3e46a3SLionel Debieve 		return rc;
652ad3e46a3SLionel Debieve 	}
653ad3e46a3SLionel Debieve 
654ad3e46a3SLionel Debieve 	return CRYPTO_SUCCESS;
655ad3e46a3SLionel Debieve }
656ad3e46a3SLionel Debieve 
657ad3e46a3SLionel Debieve REGISTER_CRYPTO_LIB("stm32_crypto_lib",
658ad3e46a3SLionel Debieve 		    crypto_lib_init,
659ad3e46a3SLionel Debieve 		    crypto_verify_signature,
660ad3e46a3SLionel Debieve 		    crypto_verify_hash,
661dee99f10SYann Gautier 		    NULL,
6624ac5b394SYann Gautier 		    crypto_auth_decrypt,
6634ac5b394SYann Gautier 		    crypto_convert_pk);
664ad3e46a3SLionel Debieve 
665ad3e46a3SLionel Debieve #else /* No decryption support */
666ad3e46a3SLionel Debieve REGISTER_CRYPTO_LIB("stm32_crypto_lib",
667ad3e46a3SLionel Debieve 		    crypto_lib_init,
668ad3e46a3SLionel Debieve 		    crypto_verify_signature,
669ad3e46a3SLionel Debieve 		    crypto_verify_hash,
6704ac5b394SYann Gautier 		    NULL,
671dee99f10SYann Gautier 		    NULL,
6724ac5b394SYann Gautier 		    crypto_convert_pk);
673ad3e46a3SLionel Debieve #endif
674