xref: /optee_os/core/include/crypto/crypto.h (revision d7ac7d0f6ac0a7837a7d821e5e31eaae08ff7af8)
11bb92983SJerome Forissier /* SPDX-License-Identifier: BSD-2-Clause */
2e1770e71SJens Wiklander /*
3e1770e71SJens Wiklander  * Copyright (c) 2014-2017, Linaro Limited
4e1770e71SJens Wiklander  */
5e1770e71SJens Wiklander 
6e1770e71SJens Wiklander /*
7e1770e71SJens Wiklander  * This is the Cryptographic Provider API (CP API).
8e1770e71SJens Wiklander  *
9e1770e71SJens Wiklander  * This defines how most crypto syscalls that implement the Cryptographic
10e1770e71SJens Wiklander  * Operations API can invoke the actual providers of cryptographic algorithms
11e1770e71SJens Wiklander  * (such as LibTomCrypt).
12e1770e71SJens Wiklander  *
13e1770e71SJens Wiklander  * To add a new provider, you need to provide an implementation of this
14e1770e71SJens Wiklander  * interface.
15e1770e71SJens Wiklander  *
16e1770e71SJens Wiklander  * The following parameters are commonly used.
17e1770e71SJens Wiklander  *
18e1770e71SJens Wiklander  * @ctx: context allocated by the syscall, for later use by the algorithm
19e1770e71SJens Wiklander  * @algo: algorithm identifier (TEE_ALG_*)
20e1770e71SJens Wiklander  */
21e1770e71SJens Wiklander 
22e1770e71SJens Wiklander #ifndef __CRYPTO_CRYPTO_H
23e1770e71SJens Wiklander #define __CRYPTO_CRYPTO_H
24e1770e71SJens Wiklander 
25e1770e71SJens Wiklander #include <tee_api_types.h>
26e1770e71SJens Wiklander 
27e1770e71SJens Wiklander TEE_Result crypto_init(void);
28e1770e71SJens Wiklander 
29e1770e71SJens Wiklander /* Message digest functions */
30ecf2e014SJens Wiklander TEE_Result crypto_hash_alloc_ctx(void **ctx, uint32_t algo);
31e1770e71SJens Wiklander TEE_Result crypto_hash_init(void *ctx, uint32_t algo);
32e1770e71SJens Wiklander TEE_Result crypto_hash_update(void *ctx, uint32_t algo, const uint8_t *data,
33e1770e71SJens Wiklander 			      size_t len);
34e1770e71SJens Wiklander TEE_Result crypto_hash_final(void *ctx, uint32_t algo, uint8_t *digest,
35e1770e71SJens Wiklander 			     size_t len);
36ecf2e014SJens Wiklander void crypto_hash_free_ctx(void *ctx, uint32_t algo);
37ecf2e014SJens Wiklander void crypto_hash_copy_state(void *dst_ctx, void *src_ctx, uint32_t algo);
38e1770e71SJens Wiklander 
39e1770e71SJens Wiklander /* Symmetric ciphers */
4072a9b1a0SJens Wiklander TEE_Result crypto_cipher_alloc_ctx(void **ctx, uint32_t algo);
41e1770e71SJens Wiklander TEE_Result crypto_cipher_init(void *ctx, uint32_t algo, TEE_OperationMode mode,
42e1770e71SJens Wiklander 			      const uint8_t *key1, size_t key1_len,
43e1770e71SJens Wiklander 			      const uint8_t *key2, size_t key2_len,
44e1770e71SJens Wiklander 			      const uint8_t *iv, size_t iv_len);
45e1770e71SJens Wiklander TEE_Result crypto_cipher_update(void *ctx, uint32_t algo,
46e1770e71SJens Wiklander 				TEE_OperationMode mode, bool last_block,
47e1770e71SJens Wiklander 				const uint8_t *data, size_t len, uint8_t *dst);
48e1770e71SJens Wiklander void crypto_cipher_final(void *ctx, uint32_t algo);
49e1770e71SJens Wiklander TEE_Result crypto_cipher_get_block_size(uint32_t algo, size_t *size);
5072a9b1a0SJens Wiklander void crypto_cipher_free_ctx(void *ctx, uint32_t algo);
5172a9b1a0SJens Wiklander void crypto_cipher_copy_state(void *dst_ctx, void *src_ctx, uint32_t algo);
52e1770e71SJens Wiklander 
53e1770e71SJens Wiklander /* Message Authentication Code functions */
5482ef73bcSJens Wiklander TEE_Result crypto_mac_alloc_ctx(void **ctx, uint32_t algo);
55e1770e71SJens Wiklander TEE_Result crypto_mac_init(void *ctx, uint32_t algo, const uint8_t *key,
56e1770e71SJens Wiklander 			   size_t len);
57e1770e71SJens Wiklander TEE_Result crypto_mac_update(void *ctx, uint32_t algo, const uint8_t *data,
58e1770e71SJens Wiklander 			     size_t len);
59e1770e71SJens Wiklander TEE_Result crypto_mac_final(void *ctx, uint32_t algo, uint8_t *digest,
60e1770e71SJens Wiklander 			    size_t digest_len);
6182ef73bcSJens Wiklander void crypto_mac_free_ctx(void *ctx, uint32_t algo);
6282ef73bcSJens Wiklander void crypto_mac_copy_state(void *dst_ctx, void *src_ctx, uint32_t algo);
63e1770e71SJens Wiklander 
64e1770e71SJens Wiklander /* Authenticated encryption */
65*d7ac7d0fSJens Wiklander TEE_Result crypto_authenc_alloc_ctx(void **ctx, uint32_t algo);
66e1770e71SJens Wiklander TEE_Result crypto_authenc_init(void *ctx, uint32_t algo, TEE_OperationMode mode,
67e1770e71SJens Wiklander 			       const uint8_t *key, size_t key_len,
68e1770e71SJens Wiklander 			       const uint8_t *nonce, size_t nonce_len,
69e1770e71SJens Wiklander 			       size_t tag_len, size_t aad_len,
70e1770e71SJens Wiklander 			       size_t payload_len);
71e1770e71SJens Wiklander TEE_Result crypto_authenc_update_aad(void *ctx, uint32_t algo,
72e1770e71SJens Wiklander 				     TEE_OperationMode mode,
73e1770e71SJens Wiklander 				     const uint8_t *data, size_t len);
74e1770e71SJens Wiklander TEE_Result crypto_authenc_update_payload(void *ctx, uint32_t algo,
75e1770e71SJens Wiklander 					 TEE_OperationMode mode,
76e1770e71SJens Wiklander 					 const uint8_t *src_data,
77e1770e71SJens Wiklander 					 size_t src_len, uint8_t *dst_data,
78e1770e71SJens Wiklander 					 size_t *dst_len);
79e1770e71SJens Wiklander TEE_Result crypto_authenc_enc_final(void *ctx, uint32_t algo,
80e1770e71SJens Wiklander 				    const uint8_t *src_data, size_t src_len,
81e1770e71SJens Wiklander 				    uint8_t *dst_data, size_t *dst_len,
82e1770e71SJens Wiklander 				    uint8_t *dst_tag, size_t *dst_tag_len);
83e1770e71SJens Wiklander TEE_Result crypto_authenc_dec_final(void *ctx, uint32_t algo,
84e1770e71SJens Wiklander 				    const uint8_t *src_data, size_t src_len,
85e1770e71SJens Wiklander 				    uint8_t *dst_data, size_t *dst_len,
86e1770e71SJens Wiklander 				    const uint8_t *tag, size_t tag_len);
87e1770e71SJens Wiklander void crypto_authenc_final(void *ctx, uint32_t algo);
88*d7ac7d0fSJens Wiklander void crypto_authenc_free_ctx(void *ctx, uint32_t algo);
89*d7ac7d0fSJens Wiklander void crypto_authenc_copy_state(void *dst_ctx, void *src_ctx, uint32_t algo);
90e1770e71SJens Wiklander 
91e1770e71SJens Wiklander /* Implementation-defined big numbers */
92e1770e71SJens Wiklander 
93e1770e71SJens Wiklander /*
94e1770e71SJens Wiklander  * Allocate a bignum capable of holding an unsigned integer value of
95e1770e71SJens Wiklander  * up to bitsize bits
96e1770e71SJens Wiklander  */
97e1770e71SJens Wiklander struct bignum *crypto_bignum_allocate(size_t size_bits);
98e1770e71SJens Wiklander TEE_Result crypto_bignum_bin2bn(const uint8_t *from, size_t fromsize,
99e1770e71SJens Wiklander 				struct bignum *to);
100e1770e71SJens Wiklander size_t crypto_bignum_num_bytes(struct bignum *a);
101e1770e71SJens Wiklander size_t crypto_bignum_num_bits(struct bignum *a);
102e1770e71SJens Wiklander void crypto_bignum_bn2bin(const struct bignum *from, uint8_t *to);
103e1770e71SJens Wiklander void crypto_bignum_copy(struct bignum *to, const struct bignum *from);
104e1770e71SJens Wiklander void crypto_bignum_free(struct bignum *a);
105e1770e71SJens Wiklander void crypto_bignum_clear(struct bignum *a);
106e1770e71SJens Wiklander 
107e1770e71SJens Wiklander /* return -1 if a<b, 0 if a==b, +1 if a>b */
108e1770e71SJens Wiklander int32_t crypto_bignum_compare(struct bignum *a, struct bignum *b);
109e1770e71SJens Wiklander 
110e1770e71SJens Wiklander /* Asymmetric algorithms */
111e1770e71SJens Wiklander 
112e1770e71SJens Wiklander struct rsa_keypair {
113e1770e71SJens Wiklander 	struct bignum *e;	/* Public exponent */
114e1770e71SJens Wiklander 	struct bignum *d;	/* Private exponent */
115e1770e71SJens Wiklander 	struct bignum *n;	/* Modulus */
116e1770e71SJens Wiklander 
117e1770e71SJens Wiklander 	/* Optional CRT parameters (all NULL if unused) */
118e1770e71SJens Wiklander 	struct bignum *p;	/* N = pq */
119e1770e71SJens Wiklander 	struct bignum *q;
120e1770e71SJens Wiklander 	struct bignum *qp;	/* 1/q mod p */
121e1770e71SJens Wiklander 	struct bignum *dp;	/* d mod (p-1) */
122e1770e71SJens Wiklander 	struct bignum *dq;	/* d mod (q-1) */
123e1770e71SJens Wiklander };
124e1770e71SJens Wiklander 
125e1770e71SJens Wiklander struct rsa_public_key {
126e1770e71SJens Wiklander 	struct bignum *e;	/* Public exponent */
127e1770e71SJens Wiklander 	struct bignum *n;	/* Modulus */
128e1770e71SJens Wiklander };
129e1770e71SJens Wiklander 
130e1770e71SJens Wiklander struct dsa_keypair {
131e1770e71SJens Wiklander 	struct bignum *g;	/* Generator of subgroup (public) */
132e1770e71SJens Wiklander 	struct bignum *p;	/* Prime number (public) */
133e1770e71SJens Wiklander 	struct bignum *q;	/* Order of subgroup (public) */
134e1770e71SJens Wiklander 	struct bignum *y;	/* Public key */
135e1770e71SJens Wiklander 	struct bignum *x;	/* Private key */
136e1770e71SJens Wiklander };
137e1770e71SJens Wiklander 
138e1770e71SJens Wiklander struct dsa_public_key {
139e1770e71SJens Wiklander 	struct bignum *g;	/* Generator of subgroup (public) */
140e1770e71SJens Wiklander 	struct bignum *p;	/* Prime number (public) */
141e1770e71SJens Wiklander 	struct bignum *q;	/* Order of subgroup (public) */
142e1770e71SJens Wiklander 	struct bignum *y;	/* Public key */
143e1770e71SJens Wiklander };
144e1770e71SJens Wiklander 
145e1770e71SJens Wiklander struct dh_keypair {
146e1770e71SJens Wiklander 	struct bignum *g;	/* Generator of Z_p (shared) */
147e1770e71SJens Wiklander 	struct bignum *p;	/* Prime modulus (shared) */
148e1770e71SJens Wiklander 	struct bignum *x;	/* Private key */
149e1770e71SJens Wiklander 	struct bignum *y;	/* Public key y = g^x */
150e1770e71SJens Wiklander 
151e1770e71SJens Wiklander 	/*
152e1770e71SJens Wiklander 	 * Optional parameters used by key generation.
153e1770e71SJens Wiklander 	 * When not used, q == NULL and xbits == 0
154e1770e71SJens Wiklander 	 */
155e1770e71SJens Wiklander 	struct bignum *q;	/* x must be in the range [2, q-2] */
156e1770e71SJens Wiklander 	uint32_t xbits;		/* Number of bits in the private key */
157e1770e71SJens Wiklander };
158e1770e71SJens Wiklander 
159e1770e71SJens Wiklander struct ecc_public_key {
160e1770e71SJens Wiklander 	struct bignum *x;	/* Public value x */
161e1770e71SJens Wiklander 	struct bignum *y;	/* Public value y */
162e1770e71SJens Wiklander 	uint32_t curve;	        /* Curve type */
163e1770e71SJens Wiklander };
164e1770e71SJens Wiklander 
165e1770e71SJens Wiklander struct ecc_keypair {
166e1770e71SJens Wiklander 	struct bignum *d;	/* Private value */
167e1770e71SJens Wiklander 	struct bignum *x;	/* Public value x */
168e1770e71SJens Wiklander 	struct bignum *y;	/* Public value y */
169e1770e71SJens Wiklander 	uint32_t curve;	        /* Curve type */
170e1770e71SJens Wiklander };
171e1770e71SJens Wiklander 
172e1770e71SJens Wiklander /*
173e1770e71SJens Wiklander  * Key allocation functions
174e1770e71SJens Wiklander  * Allocate the bignum's inside a key structure.
175e1770e71SJens Wiklander  * TEE core will later use crypto_bignum_free().
176e1770e71SJens Wiklander  */
177e1770e71SJens Wiklander TEE_Result crypto_acipher_alloc_rsa_keypair(struct rsa_keypair *s,
178e1770e71SJens Wiklander 				size_t key_size_bits);
179e1770e71SJens Wiklander TEE_Result crypto_acipher_alloc_rsa_public_key(struct rsa_public_key *s,
180e1770e71SJens Wiklander 				   size_t key_size_bits);
181e1770e71SJens Wiklander void crypto_acipher_free_rsa_public_key(struct rsa_public_key *s);
182e1770e71SJens Wiklander TEE_Result crypto_acipher_alloc_dsa_keypair(struct dsa_keypair *s,
183e1770e71SJens Wiklander 				size_t key_size_bits);
184e1770e71SJens Wiklander TEE_Result crypto_acipher_alloc_dsa_public_key(struct dsa_public_key *s,
185e1770e71SJens Wiklander 				   size_t key_size_bits);
186e1770e71SJens Wiklander TEE_Result crypto_acipher_alloc_dh_keypair(struct dh_keypair *s,
187e1770e71SJens Wiklander 			       size_t key_size_bits);
188e1770e71SJens Wiklander TEE_Result crypto_acipher_alloc_ecc_public_key(struct ecc_public_key *s,
189e1770e71SJens Wiklander 				   size_t key_size_bits);
190e1770e71SJens Wiklander TEE_Result crypto_acipher_alloc_ecc_keypair(struct ecc_keypair *s,
191e1770e71SJens Wiklander 				size_t key_size_bits);
192e1770e71SJens Wiklander void crypto_acipher_free_ecc_public_key(struct ecc_public_key *s);
193e1770e71SJens Wiklander 
194e1770e71SJens Wiklander /*
195e1770e71SJens Wiklander  * Key generation functions
196e1770e71SJens Wiklander  */
197e1770e71SJens Wiklander TEE_Result crypto_acipher_gen_rsa_key(struct rsa_keypair *key, size_t key_size);
198e1770e71SJens Wiklander TEE_Result crypto_acipher_gen_dsa_key(struct dsa_keypair *key, size_t key_size);
199e1770e71SJens Wiklander TEE_Result crypto_acipher_gen_dh_key(struct dh_keypair *key, struct bignum *q,
200e1770e71SJens Wiklander 				     size_t xbits);
201e1770e71SJens Wiklander TEE_Result crypto_acipher_gen_ecc_key(struct ecc_keypair *key);
202e1770e71SJens Wiklander 
203e1770e71SJens Wiklander TEE_Result crypto_acipher_dh_shared_secret(struct dh_keypair *private_key,
204e1770e71SJens Wiklander 					   struct bignum *public_key,
205e1770e71SJens Wiklander 					   struct bignum *secret);
206e1770e71SJens Wiklander 
207e1770e71SJens Wiklander TEE_Result crypto_acipher_rsanopad_decrypt(struct rsa_keypair *key,
208e1770e71SJens Wiklander 					   const uint8_t *src, size_t src_len,
209e1770e71SJens Wiklander 					   uint8_t *dst, size_t *dst_len);
210e1770e71SJens Wiklander TEE_Result crypto_acipher_rsanopad_encrypt(struct rsa_public_key *key,
211e1770e71SJens Wiklander 					   const uint8_t *src, size_t src_len,
212e1770e71SJens Wiklander 					   uint8_t *dst, size_t *dst_len);
213e1770e71SJens Wiklander TEE_Result crypto_acipher_rsaes_decrypt(uint32_t algo, struct rsa_keypair *key,
214e1770e71SJens Wiklander 					const uint8_t *label, size_t label_len,
215e1770e71SJens Wiklander 					const uint8_t *src, size_t src_len,
216e1770e71SJens Wiklander 					uint8_t *dst, size_t *dst_len);
217e1770e71SJens Wiklander TEE_Result crypto_acipher_rsaes_encrypt(uint32_t algo,
218e1770e71SJens Wiklander 					struct rsa_public_key *key,
219e1770e71SJens Wiklander 					const uint8_t *label, size_t label_len,
220e1770e71SJens Wiklander 					const uint8_t *src, size_t src_len,
221e1770e71SJens Wiklander 					uint8_t *dst, size_t *dst_len);
222e1770e71SJens Wiklander /* RSA SSA sign/verify: if salt_len == -1, use default value */
223e1770e71SJens Wiklander TEE_Result crypto_acipher_rsassa_sign(uint32_t algo, struct rsa_keypair *key,
224e1770e71SJens Wiklander 				      int salt_len, const uint8_t *msg,
225e1770e71SJens Wiklander 				      size_t msg_len, uint8_t *sig,
226e1770e71SJens Wiklander 				      size_t *sig_len);
227e1770e71SJens Wiklander TEE_Result crypto_acipher_rsassa_verify(uint32_t algo,
228e1770e71SJens Wiklander 					struct rsa_public_key *key,
229e1770e71SJens Wiklander 					int salt_len, const uint8_t *msg,
230e1770e71SJens Wiklander 					size_t msg_len, const uint8_t *sig,
231e1770e71SJens Wiklander 					size_t sig_len);
232e1770e71SJens Wiklander TEE_Result crypto_acipher_dsa_sign(uint32_t algo, struct dsa_keypair *key,
233e1770e71SJens Wiklander 				   const uint8_t *msg, size_t msg_len,
234e1770e71SJens Wiklander 				   uint8_t *sig, size_t *sig_len);
235e1770e71SJens Wiklander TEE_Result crypto_acipher_dsa_verify(uint32_t algo, struct dsa_public_key *key,
236e1770e71SJens Wiklander 				     const uint8_t *msg, size_t msg_len,
237e1770e71SJens Wiklander 				     const uint8_t *sig, size_t sig_len);
238e1770e71SJens Wiklander TEE_Result crypto_acipher_ecc_sign(uint32_t algo, struct ecc_keypair *key,
239e1770e71SJens Wiklander 				   const uint8_t *msg, size_t msg_len,
240e1770e71SJens Wiklander 				   uint8_t *sig, size_t *sig_len);
241e1770e71SJens Wiklander TEE_Result crypto_acipher_ecc_verify(uint32_t algo, struct ecc_public_key *key,
242e1770e71SJens Wiklander 				     const uint8_t *msg, size_t msg_len,
243e1770e71SJens Wiklander 				     const uint8_t *sig, size_t sig_len);
244e1770e71SJens Wiklander TEE_Result crypto_acipher_ecc_shared_secret(struct ecc_keypair *private_key,
245e1770e71SJens Wiklander 					    struct ecc_public_key *public_key,
246e1770e71SJens Wiklander 					    void *secret,
247e1770e71SJens Wiklander 					    unsigned long *secret_len);
248e1770e71SJens Wiklander 
249e1770e71SJens Wiklander /*
250e1770e71SJens Wiklander  * Verifies a SHA-256 hash, doesn't require crypto_init() to be called in
251e1770e71SJens Wiklander  * advance and has as few dependencies as possible.
252e1770e71SJens Wiklander  *
253e1770e71SJens Wiklander  * This function is primarily used by pager and early initialization code
254e1770e71SJens Wiklander  * where the complete crypto library isn't available.
255e1770e71SJens Wiklander  */
256e1770e71SJens Wiklander TEE_Result hash_sha256_check(const uint8_t *hash, const uint8_t *data,
257e1770e71SJens Wiklander 		size_t data_size);
258e1770e71SJens Wiklander 
259e1770e71SJens Wiklander /* Add entropy to PRNG entropy pool. */
260e1770e71SJens Wiklander TEE_Result crypto_rng_add_entropy(const uint8_t *inbuf, size_t len);
261e1770e71SJens Wiklander 
262e1770e71SJens Wiklander /* To read random data from PRNG implementation. */
263e1770e71SJens Wiklander TEE_Result crypto_rng_read(void *buf, size_t blen);
264e1770e71SJens Wiklander 
265e1770e71SJens Wiklander TEE_Result rng_generate(void *buffer, size_t len);
266e1770e71SJens Wiklander 
2670d360202SJens Wiklander TEE_Result crypto_aes_expand_enc_key(const void *key, size_t key_len,
2680d360202SJens Wiklander 				     void *enc_key, unsigned int *rounds);
2690d360202SJens Wiklander void crypto_aes_enc_block(const void *enc_key, unsigned int rounds,
2700d360202SJens Wiklander 			  const void *src, void *dst);
2710d360202SJens Wiklander 
272e1770e71SJens Wiklander #endif /* __CRYPTO_CRYPTO_H */
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