xref: /optee_os/lib/libutee/include/utee_defines.h (revision 7dfcefda2cd455765172b4b300155797a42dee38)
1 /* SPDX-License-Identifier: BSD-2-Clause */
2 /*
3  * Copyright (c) 2014, STMicroelectronics International N.V.
4  * Copyright (c) 2021, SumUp Services GmbH
5  */
6 #ifndef UTEE_DEFINES_H
7 #define UTEE_DEFINES_H
8 
9 #include <compiler.h>
10 #include <tee_api_defines.h>
11 #include <tee_api_defines_extensions.h>
12 #include <types_ext.h>
13 
14 /*
15  * Copied from TEE Internal API specificaion v1.0 table 6-9 "Structure of
16  * Algorithm Identifier".
17  */
18 #define TEE_MAIN_ALGO_MD5        0x01
19 #define TEE_MAIN_ALGO_SHA1       0x02
20 #define TEE_MAIN_ALGO_SHA224     0x03
21 #define TEE_MAIN_ALGO_SHA256     0x04
22 #define TEE_MAIN_ALGO_SHA384     0x05
23 #define TEE_MAIN_ALGO_SHA512     0x06
24 #define TEE_MAIN_ALGO_SM3        0x07
25 #define TEE_MAIN_ALGO_SHA3_224   0x08
26 #define TEE_MAIN_ALGO_SHA3_256   0x09
27 #define TEE_MAIN_ALGO_SHA3_384   0x0A
28 #define TEE_MAIN_ALGO_SHA3_512   0x0B
29 #define TEE_MAIN_ALGO_AES        0x10
30 #define TEE_MAIN_ALGO_DES        0x11
31 #define TEE_MAIN_ALGO_DES2       0x12
32 #define TEE_MAIN_ALGO_DES3       0x13
33 #define TEE_MAIN_ALGO_SM4        0x14 /* Not in v1.2, extrapolated */
34 #define TEE_MAIN_ALGO_RSA        0x30
35 #define TEE_MAIN_ALGO_DSA        0x31
36 #define TEE_MAIN_ALGO_DH         0x32
37 #define TEE_MAIN_ALGO_ECDSA      0x41
38 #define TEE_MAIN_ALGO_ECDH       0x42
39 #define TEE_MAIN_ALGO_ED25519    0x43
40 #define TEE_MAIN_ALGO_SM2_DSA_SM3 0x45 /* Not in v1.2 spec */
41 #define TEE_MAIN_ALGO_SM2_KEP    0x46 /* Not in v1.2 spec */
42 #define TEE_MAIN_ALGO_SM2_PKE    0x47 /* Not in v1.2 spec */
43 #define TEE_MAIN_ALGO_HKDF       0xC0 /* OP-TEE extension */
44 #define TEE_MAIN_ALGO_CONCAT_KDF 0xC1 /* OP-TEE extension */
45 #define TEE_MAIN_ALGO_PBKDF2     0xC2 /* OP-TEE extension */
46 #define TEE_MAIN_ALGO_X25519     0x44 /* Not in v1.2 spec */
47 
48 
49 #define TEE_CHAIN_MODE_ECB_NOPAD        0x0
50 #define TEE_CHAIN_MODE_CBC_NOPAD        0x1
51 #define TEE_CHAIN_MODE_CTR              0x2
52 #define TEE_CHAIN_MODE_CTS              0x3
53 #define TEE_CHAIN_MODE_XTS              0x4
54 #define TEE_CHAIN_MODE_CBC_MAC_PKCS5    0x5
55 #define TEE_CHAIN_MODE_CMAC             0x6
56 #define TEE_CHAIN_MODE_CCM              0x7
57 #define TEE_CHAIN_MODE_GCM              0x8
58 #define TEE_CHAIN_MODE_PKCS1_PSS_MGF1   0x9	/* ??? */
59 
60 
61 static inline uint32_t __tee_alg_get_class(uint32_t algo)
62 {
63 	if (algo == TEE_ALG_SM2_PKE)
64 		return TEE_OPERATION_ASYMMETRIC_CIPHER;
65 	if (algo == TEE_ALG_SM2_KEP)
66 		return TEE_OPERATION_KEY_DERIVATION;
67 	if (algo == TEE_ALG_RSASSA_PKCS1_V1_5)
68 		return TEE_OPERATION_ASYMMETRIC_SIGNATURE;
69 	if (algo == TEE_ALG_DES3_CMAC)
70 		return TEE_OPERATION_MAC;
71 	if (algo == TEE_ALG_SM4_XTS)
72 		return TEE_OPERATION_CIPHER;
73 
74 	return (algo >> 28) & 0xF; /* Bits [31:28] */
75 }
76 
77 #define TEE_ALG_GET_CLASS(algo) __tee_alg_get_class(algo)
78 
79 static inline uint32_t __tee_alg_get_main_alg(uint32_t algo)
80 {
81 	switch (algo) {
82 	case TEE_ALG_SM2_PKE:
83 		return TEE_MAIN_ALGO_SM2_PKE;
84 	case TEE_ALG_SM2_KEP:
85 		return TEE_MAIN_ALGO_SM2_KEP;
86 	case TEE_ALG_X25519:
87 		return TEE_MAIN_ALGO_X25519;
88 	case TEE_ALG_ED25519:
89 		return TEE_MAIN_ALGO_ED25519;
90 	case TEE_ALG_ECDSA_SHA1:
91 	case TEE_ALG_ECDSA_SHA224:
92 	case TEE_ALG_ECDSA_SHA256:
93 	case TEE_ALG_ECDSA_SHA384:
94 	case TEE_ALG_ECDSA_SHA512:
95 		return TEE_MAIN_ALGO_ECDSA;
96 	case TEE_ALG_HKDF:
97 		return TEE_MAIN_ALGO_HKDF;
98 	default:
99 		break;
100 	}
101 
102 	return algo & 0xff;
103 }
104 
105 #define TEE_ALG_GET_MAIN_ALG(algo) __tee_alg_get_main_alg(algo)
106 
107 	/* Bits [11:8] */
108 #define TEE_ALG_GET_CHAIN_MODE(algo)    (((algo) >> 8) & 0xF)
109 
110 /*
111  * Value not defined in the GP spec, and not used as bits 15-12 of any TEE_ALG*
112  * value. TEE_ALG_SM2_DSA_SM3 has value 0x6 for bits 15-12 which would yield the
113  * SHA512 digest if we were to apply the bit masks that were valid up to the TEE
114  * Internal Core API v1.1.
115  */
116 #define __TEE_MAIN_HASH_SM3 0x7
117 
118 static inline uint32_t __tee_alg_get_digest_hash(uint32_t algo)
119 {
120 	if (algo == TEE_ALG_SM2_DSA_SM3)
121 		return __TEE_MAIN_HASH_SM3;
122 
123 	/* Bits [15:12] */
124 	return (algo >> 12) & 0xF;
125 }
126 
127 #define TEE_ALG_GET_DIGEST_HASH(algo) __tee_alg_get_digest_hash(algo)
128 
129 	/* Bits [23:20] */
130 #define TEE_ALG_GET_INTERNAL_HASH(algo) (((algo) >> 20) & 0x7)
131 
132 static inline uint32_t __tee_alg_get_key_type(uint32_t algo, bool with_priv)
133 {
134 	uint32_t key_type = 0xA0000000 |  TEE_ALG_GET_MAIN_ALG(algo);
135 
136 	if (with_priv)
137 		key_type |= 0x01000000;
138 
139 	return key_type;
140 }
141 
142 #define TEE_ALG_GET_KEY_TYPE(algo, with_private_key) \
143 	__tee_alg_get_key_type(algo, with_private_key)
144 
145 static inline uint32_t __tee_alg_hash_algo(uint32_t main_hash)
146 {
147 	if (main_hash == __TEE_MAIN_HASH_SM3)
148 		return TEE_ALG_SM3;
149 
150 	return (TEE_OPERATION_DIGEST << 28) | main_hash;
151 }
152 
153 	/* Return hash algorithm based on main hash */
154 #define TEE_ALG_HASH_ALGO(main_hash) __tee_alg_hash_algo(main_hash)
155 
156 	/* Extract internal hash and return hash algorithm */
157 #define TEE_INTERNAL_HASH_TO_ALGO(algo) \
158                 TEE_ALG_HASH_ALGO(TEE_ALG_GET_INTERNAL_HASH(algo))
159 
160 	/* Extract digest hash and return hash algorithm */
161 #define TEE_DIGEST_HASH_TO_ALGO(algo) \
162                 TEE_ALG_HASH_ALGO(TEE_ALG_GET_DIGEST_HASH(algo))
163 
164 /* Return HMAC algorithm based on main hash */
165 #define TEE_ALG_HMAC_ALGO(main_hash) \
166 	(TEE_OPERATION_MAC << 28 | (main_hash))
167 
168 #define TEE_AES_BLOCK_SIZE  16UL
169 #define TEE_DES_BLOCK_SIZE  8UL
170 #define TEE_SM4_BLOCK_SIZE  16UL
171 
172 #define TEE_AES_MAX_KEY_SIZE    32UL
173 
174 	/* SHA-512 */
175 #ifndef TEE_MD5_HASH_SIZE
176 typedef enum {
177 	TEE_MD5_HASH_SIZE = 16,
178 	TEE_SHA1_HASH_SIZE = 20,
179 	TEE_SHA224_HASH_SIZE = 28,
180 	TEE_SHA256_HASH_SIZE = 32,
181 	TEE_SM3_HASH_SIZE = 32,
182 	TEE_SHA384_HASH_SIZE = 48,
183 	TEE_SHA512_HASH_SIZE = 64,
184 	TEE_MD5SHA1_HASH_SIZE = (TEE_MD5_HASH_SIZE + TEE_SHA1_HASH_SIZE),
185 	TEE_MAX_HASH_SIZE = 64,
186 } t_hash_size;
187 #endif
188 
189 #define TEE_MAC_SIZE_AES_CBC_MAC_NOPAD
190 #define TEE_MAC_SIZE_AES_CBC_MAC_PKCS5
191 #define TEE_MAC_SIZE_AES_CMAC
192 #define TEE_MAC_SIZE_DES_CBC_MAC_PKCS5
193 
194 static inline size_t __tee_alg_get_digest_size(uint32_t algo)
195 {
196 	switch (algo) {
197 	case TEE_ALG_MD5:
198 	case TEE_ALG_HMAC_MD5:
199 		return TEE_MD5_HASH_SIZE;
200 	case TEE_ALG_SHA1:
201 	case TEE_ALG_HMAC_SHA1:
202 	case TEE_ALG_DSA_SHA1:
203 		return TEE_SHA1_HASH_SIZE;
204 	case TEE_ALG_SHA224:
205 	case TEE_ALG_HMAC_SHA224:
206 	case TEE_ALG_HMAC_SHA3_224:
207 	case TEE_ALG_DSA_SHA224:
208 		return TEE_SHA224_HASH_SIZE;
209 	case TEE_ALG_SHA256:
210 	case TEE_ALG_HMAC_SHA256:
211 	case TEE_ALG_HMAC_SHA3_256:
212 	case TEE_ALG_DSA_SHA256:
213 		return TEE_SHA256_HASH_SIZE;
214 	case TEE_ALG_SHA384:
215 	case TEE_ALG_HMAC_SHA384:
216 	case TEE_ALG_HMAC_SHA3_384:
217 		return TEE_SHA384_HASH_SIZE;
218 	case TEE_ALG_SHA512:
219 	case TEE_ALG_HMAC_SHA512:
220 	case TEE_ALG_HMAC_SHA3_512:
221 		return TEE_SHA512_HASH_SIZE;
222 	case TEE_ALG_SM3:
223 	case TEE_ALG_HMAC_SM3:
224 		return TEE_SM3_HASH_SIZE;
225 	case TEE_ALG_AES_CBC_MAC_NOPAD:
226 	case TEE_ALG_AES_CBC_MAC_PKCS5:
227 	case TEE_ALG_AES_CMAC:
228 		return TEE_AES_BLOCK_SIZE;
229 	case TEE_ALG_DES_CBC_MAC_NOPAD:
230 	case TEE_ALG_DES_CBC_MAC_PKCS5:
231 	case TEE_ALG_DES3_CBC_MAC_NOPAD:
232 	case TEE_ALG_DES3_CBC_MAC_PKCS5:
233 	case TEE_ALG_DES3_CMAC:
234 		return TEE_DES_BLOCK_SIZE;
235 	default:
236 		return 0;
237 	}
238 }
239 
240 	/* Return algorithm digest size */
241 #define TEE_ALG_GET_DIGEST_SIZE(algo) __tee_alg_get_digest_size(algo)
242 
243 /*
244  * Bit indicating that the attribute is a value attribute
245  * See TEE Internal API specificaion v1.0 table 6-12 "Partial Structure of
246  * Attribute Identifier"
247  */
248 
249 
250 #ifdef __compiler_bswap64
251 #define TEE_U64_BSWAP(x) __compiler_bswap64((x))
252 #else
253 #define TEE_U64_BSWAP(x) ((uint64_t)( \
254         (((uint64_t)(x) & UINT64_C(0xff00000000000000ULL)) >> 56) | \
255         (((uint64_t)(x) & UINT64_C(0x00ff000000000000ULL)) >> 40) | \
256         (((uint64_t)(x) & UINT64_C(0x0000ff0000000000ULL)) >> 24) | \
257         (((uint64_t)(x) & UINT64_C(0x000000ff00000000ULL)) >>  8) | \
258         (((uint64_t)(x) & UINT64_C(0x00000000ff000000ULL)) <<  8) | \
259         (((uint64_t)(x) & UINT64_C(0x0000000000ff0000ULL)) << 24) | \
260         (((uint64_t)(x) & UINT64_C(0x000000000000ff00ULL)) << 40) | \
261         (((uint64_t)(x) & UINT64_C(0x00000000000000ffULL)) << 56)))
262 #endif
263 
264 #ifdef __compiler_bswap32
265 #define TEE_U32_BSWAP(x) __compiler_bswap32((x))
266 #else
267 #define TEE_U32_BSWAP(x) ((uint32_t)( \
268         (((uint32_t)(x) & UINT32_C(0xff000000)) >> 24) | \
269         (((uint32_t)(x) & UINT32_C(0x00ff0000)) >>  8) | \
270         (((uint32_t)(x) & UINT32_C(0x0000ff00)) <<  8) | \
271         (((uint32_t)(x) & UINT32_C(0x000000ff)) << 24)))
272 #endif
273 
274 #ifdef __compiler_bswap16
275 #define TEE_U16_BSWAP(x) __compiler_bswap16((x))
276 #else
277 #define TEE_U16_BSWAP(x) ((uint16_t)( \
278         (((uint16_t)(x) & UINT16_C(0xff00)) >> 8) | \
279         (((uint16_t)(x) & UINT16_C(0x00ff)) << 8)))
280 #endif
281 
282 /* If we we're on a big endian platform we'll have to update these */
283 #define TEE_U64_FROM_BIG_ENDIAN(x)  TEE_U64_BSWAP(x)
284 #define TEE_U32_FROM_BIG_ENDIAN(x)  TEE_U32_BSWAP(x)
285 #define TEE_U16_FROM_BIG_ENDIAN(x)  TEE_U16_BSWAP(x)
286 #define TEE_U64_TO_BIG_ENDIAN(x)    TEE_U64_BSWAP(x)
287 #define TEE_U32_TO_BIG_ENDIAN(x)    TEE_U32_BSWAP(x)
288 #define TEE_U16_TO_BIG_ENDIAN(x)    TEE_U16_BSWAP(x)
289 
290 #define TEE_TIME_MILLIS_BASE    1000
291 
292 #define TEE_TIME_LT(t1, t2)				\
293     (((t1).seconds == (t2).seconds) ?			\
294         ((t1).millis < (t2).millis) :			\
295         ((t1).seconds < (t2).seconds))
296 
297 #define TEE_TIME_LE(t1, t2)				\
298     (((t1).seconds == (t2).seconds) ?			\
299         ((t1).millis <= (t2).millis) :			\
300         ((t1).seconds <= (t2).seconds))
301 
302 #define TEE_TIME_ADD(t1, t2, dst) do {                      \
303         (dst).seconds = (t1).seconds + (t2).seconds;        \
304         (dst).millis = (t1).millis + (t2).millis;           \
305         if ((dst).millis >= TEE_TIME_MILLIS_BASE) {         \
306             (dst).seconds++;                                \
307             (dst).millis -= TEE_TIME_MILLIS_BASE;           \
308         }                                                   \
309     } while (0)
310 
311 #define TEE_TIME_SUB(t1, t2, dst) do {                      \
312         (dst).seconds = (t1).seconds - (t2).seconds;        \
313         if ((t1).millis < (t2).millis) {                    \
314             (dst).seconds--;                                \
315             (dst).millis = (t1).millis + TEE_TIME_MILLIS_BASE - (t2).millis;\
316         } else {                                            \
317             (dst).millis = (t1).millis - (t2).millis;       \
318         }                                                   \
319     } while (0)
320 
321 /* ------------------------------------------------------------ */
322 /* OTP mapping                                                  */
323 /* ------------------------------------------------------------ */
324 #define HW_UNIQUE_KEY_WORD1      (8)
325 #define HW_UNIQUE_KEY_LENGTH     (16)
326 #define HW_UNIQUE_KEY_WORD2      (HW_UNIQUE_KEY_WORD1 + 1)
327 #define HW_UNIQUE_KEY_WORD3      (HW_UNIQUE_KEY_WORD1 + 2)
328 #define HW_UNIQUE_KEY_WORD4      (HW_UNIQUE_KEY_WORD1 + 3)
329 
330 #define UTEE_SE_READER_PRESENT			(1 << 0)
331 #define UTEE_SE_READER_TEE_ONLY			(1 << 1)
332 #define UTEE_SE_READER_SELECT_RESPONE_ENABLE	(1 << 2)
333 
334 #endif /* UTEE_DEFINES_H */
335