sha256.c 19 KB

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  1. /*
  2. * FIPS-180-2 compliant SHA-256 implementation
  3. *
  4. * Copyright The Mbed TLS Contributors
  5. * SPDX-License-Identifier: Apache-2.0 OR GPL-2.0-or-later
  6. *
  7. * This file is provided under the Apache License 2.0, or the
  8. * GNU General Public License v2.0 or later.
  9. *
  10. * **********
  11. * Apache License 2.0:
  12. *
  13. * Licensed under the Apache License, Version 2.0 (the "License"); you may
  14. * not use this file except in compliance with the License.
  15. * You may obtain a copy of the License at
  16. *
  17. * http://www.apache.org/licenses/LICENSE-2.0
  18. *
  19. * Unless required by applicable law or agreed to in writing, software
  20. * distributed under the License is distributed on an "AS IS" BASIS, WITHOUT
  21. * WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
  22. * See the License for the specific language governing permissions and
  23. * limitations under the License.
  24. *
  25. * **********
  26. *
  27. * **********
  28. * GNU General Public License v2.0 or later:
  29. *
  30. * This program is free software; you can redistribute it and/or modify
  31. * it under the terms of the GNU General Public License as published by
  32. * the Free Software Foundation; either version 2 of the License, or
  33. * (at your option) any later version.
  34. *
  35. * This program is distributed in the hope that it will be useful,
  36. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  37. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  38. * GNU General Public License for more details.
  39. *
  40. * You should have received a copy of the GNU General Public License along
  41. * with this program; if not, write to the Free Software Foundation, Inc.,
  42. * 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
  43. *
  44. * **********
  45. */
  46. /*
  47. * The SHA-256 Secure Hash Standard was published by NIST in 2002.
  48. *
  49. * http://csrc.nist.gov/publications/fips/fips180-2/fips180-2.pdf
  50. */
  51. #if !defined(MBEDTLS_CONFIG_FILE)
  52. #include "mbedtls/config.h"
  53. #else
  54. #include MBEDTLS_CONFIG_FILE
  55. #endif
  56. #if defined(MBEDTLS_SHA256_C)
  57. #include "mbedtls/sha256.h"
  58. #include "mbedtls/platform_util.h"
  59. #include <string.h>
  60. #if defined(MBEDTLS_SELF_TEST)
  61. #if defined(MBEDTLS_PLATFORM_C)
  62. #include "mbedtls/platform.h"
  63. #else
  64. #include <stdio.h>
  65. #include <stdlib.h>
  66. #define mbedtls_printf printf
  67. #define mbedtls_calloc calloc
  68. #define mbedtls_free free
  69. #endif /* MBEDTLS_PLATFORM_C */
  70. #endif /* MBEDTLS_SELF_TEST */
  71. #define SHA256_VALIDATE_RET(cond) \
  72. MBEDTLS_INTERNAL_VALIDATE_RET( cond, MBEDTLS_ERR_SHA256_BAD_INPUT_DATA )
  73. #define SHA256_VALIDATE(cond) MBEDTLS_INTERNAL_VALIDATE( cond )
  74. #if !defined(MBEDTLS_SHA256_ALT)
  75. /*
  76. * 32-bit integer manipulation macros (big endian)
  77. */
  78. #ifndef GET_UINT32_BE
  79. #define GET_UINT32_BE(n,b,i) \
  80. do { \
  81. (n) = ( (uint32_t) (b)[(i) ] << 24 ) \
  82. | ( (uint32_t) (b)[(i) + 1] << 16 ) \
  83. | ( (uint32_t) (b)[(i) + 2] << 8 ) \
  84. | ( (uint32_t) (b)[(i) + 3] ); \
  85. } while( 0 )
  86. #endif
  87. #ifndef PUT_UINT32_BE
  88. #define PUT_UINT32_BE(n,b,i) \
  89. do { \
  90. (b)[(i) ] = (unsigned char) ( (n) >> 24 ); \
  91. (b)[(i) + 1] = (unsigned char) ( (n) >> 16 ); \
  92. (b)[(i) + 2] = (unsigned char) ( (n) >> 8 ); \
  93. (b)[(i) + 3] = (unsigned char) ( (n) ); \
  94. } while( 0 )
  95. #endif
  96. void mbedtls_sha256_init( mbedtls_sha256_context *ctx )
  97. {
  98. SHA256_VALIDATE( ctx != NULL );
  99. memset( ctx, 0, sizeof( mbedtls_sha256_context ) );
  100. }
  101. void mbedtls_sha256_free( mbedtls_sha256_context *ctx )
  102. {
  103. if( ctx == NULL )
  104. return;
  105. mbedtls_platform_zeroize( ctx, sizeof( mbedtls_sha256_context ) );
  106. }
  107. void mbedtls_sha256_clone( mbedtls_sha256_context *dst,
  108. const mbedtls_sha256_context *src )
  109. {
  110. SHA256_VALIDATE( dst != NULL );
  111. SHA256_VALIDATE( src != NULL );
  112. *dst = *src;
  113. }
  114. /*
  115. * SHA-256 context setup
  116. */
  117. int mbedtls_sha256_starts_ret( mbedtls_sha256_context *ctx, int is224 )
  118. {
  119. SHA256_VALIDATE_RET( ctx != NULL );
  120. SHA256_VALIDATE_RET( is224 == 0 || is224 == 1 );
  121. ctx->total[0] = 0;
  122. ctx->total[1] = 0;
  123. if( is224 == 0 )
  124. {
  125. /* SHA-256 */
  126. ctx->state[0] = 0x6A09E667;
  127. ctx->state[1] = 0xBB67AE85;
  128. ctx->state[2] = 0x3C6EF372;
  129. ctx->state[3] = 0xA54FF53A;
  130. ctx->state[4] = 0x510E527F;
  131. ctx->state[5] = 0x9B05688C;
  132. ctx->state[6] = 0x1F83D9AB;
  133. ctx->state[7] = 0x5BE0CD19;
  134. }
  135. else
  136. {
  137. /* SHA-224 */
  138. ctx->state[0] = 0xC1059ED8;
  139. ctx->state[1] = 0x367CD507;
  140. ctx->state[2] = 0x3070DD17;
  141. ctx->state[3] = 0xF70E5939;
  142. ctx->state[4] = 0xFFC00B31;
  143. ctx->state[5] = 0x68581511;
  144. ctx->state[6] = 0x64F98FA7;
  145. ctx->state[7] = 0xBEFA4FA4;
  146. }
  147. ctx->is224 = is224;
  148. return( 0 );
  149. }
  150. #if !defined(MBEDTLS_DEPRECATED_REMOVED)
  151. void mbedtls_sha256_starts( mbedtls_sha256_context *ctx,
  152. int is224 )
  153. {
  154. mbedtls_sha256_starts_ret( ctx, is224 );
  155. }
  156. #endif
  157. #if !defined(MBEDTLS_SHA256_PROCESS_ALT)
  158. static const uint32_t K[] =
  159. {
  160. 0x428A2F98, 0x71374491, 0xB5C0FBCF, 0xE9B5DBA5,
  161. 0x3956C25B, 0x59F111F1, 0x923F82A4, 0xAB1C5ED5,
  162. 0xD807AA98, 0x12835B01, 0x243185BE, 0x550C7DC3,
  163. 0x72BE5D74, 0x80DEB1FE, 0x9BDC06A7, 0xC19BF174,
  164. 0xE49B69C1, 0xEFBE4786, 0x0FC19DC6, 0x240CA1CC,
  165. 0x2DE92C6F, 0x4A7484AA, 0x5CB0A9DC, 0x76F988DA,
  166. 0x983E5152, 0xA831C66D, 0xB00327C8, 0xBF597FC7,
  167. 0xC6E00BF3, 0xD5A79147, 0x06CA6351, 0x14292967,
  168. 0x27B70A85, 0x2E1B2138, 0x4D2C6DFC, 0x53380D13,
  169. 0x650A7354, 0x766A0ABB, 0x81C2C92E, 0x92722C85,
  170. 0xA2BFE8A1, 0xA81A664B, 0xC24B8B70, 0xC76C51A3,
  171. 0xD192E819, 0xD6990624, 0xF40E3585, 0x106AA070,
  172. 0x19A4C116, 0x1E376C08, 0x2748774C, 0x34B0BCB5,
  173. 0x391C0CB3, 0x4ED8AA4A, 0x5B9CCA4F, 0x682E6FF3,
  174. 0x748F82EE, 0x78A5636F, 0x84C87814, 0x8CC70208,
  175. 0x90BEFFFA, 0xA4506CEB, 0xBEF9A3F7, 0xC67178F2,
  176. };
  177. #define SHR(x,n) (((x) & 0xFFFFFFFF) >> (n))
  178. #define ROTR(x,n) (SHR(x,n) | ((x) << (32 - (n))))
  179. #define S0(x) (ROTR(x, 7) ^ ROTR(x,18) ^ SHR(x, 3))
  180. #define S1(x) (ROTR(x,17) ^ ROTR(x,19) ^ SHR(x,10))
  181. #define S2(x) (ROTR(x, 2) ^ ROTR(x,13) ^ ROTR(x,22))
  182. #define S3(x) (ROTR(x, 6) ^ ROTR(x,11) ^ ROTR(x,25))
  183. #define F0(x,y,z) (((x) & (y)) | ((z) & ((x) | (y))))
  184. #define F1(x,y,z) ((z) ^ ((x) & ((y) ^ (z))))
  185. #define R(t) \
  186. ( \
  187. local.W[t] = S1(local.W[(t) - 2]) + local.W[(t) - 7] + \
  188. S0(local.W[(t) - 15]) + local.W[(t) - 16] \
  189. )
  190. #define P(a,b,c,d,e,f,g,h,x,K) \
  191. do \
  192. { \
  193. local.temp1 = (h) + S3(e) + F1((e),(f),(g)) + (K) + (x); \
  194. local.temp2 = S2(a) + F0((a),(b),(c)); \
  195. (d) += local.temp1; (h) = local.temp1 + local.temp2; \
  196. } while( 0 )
  197. int mbedtls_internal_sha256_process( mbedtls_sha256_context *ctx,
  198. const unsigned char data[64] )
  199. {
  200. struct
  201. {
  202. uint32_t temp1, temp2, W[64];
  203. uint32_t A[8];
  204. } local;
  205. unsigned int i;
  206. SHA256_VALIDATE_RET( ctx != NULL );
  207. SHA256_VALIDATE_RET( (const unsigned char *)data != NULL );
  208. for( i = 0; i < 8; i++ )
  209. local.A[i] = ctx->state[i];
  210. #if defined(MBEDTLS_SHA256_SMALLER)
  211. for( i = 0; i < 64; i++ )
  212. {
  213. if( i < 16 )
  214. GET_UINT32_BE( local.W[i], data, 4 * i );
  215. else
  216. R( i );
  217. P( local.A[0], local.A[1], local.A[2], local.A[3], local.A[4],
  218. local.A[5], local.A[6], local.A[7], local.W[i], K[i] );
  219. local.temp1 = local.A[7]; local.A[7] = local.A[6];
  220. local.A[6] = local.A[5]; local.A[5] = local.A[4];
  221. local.A[4] = local.A[3]; local.A[3] = local.A[2];
  222. local.A[2] = local.A[1]; local.A[1] = local.A[0];
  223. local.A[0] = local.temp1;
  224. }
  225. #else /* MBEDTLS_SHA256_SMALLER */
  226. for( i = 0; i < 16; i++ )
  227. GET_UINT32_BE( local.W[i], data, 4 * i );
  228. for( i = 0; i < 16; i += 8 )
  229. {
  230. P( local.A[0], local.A[1], local.A[2], local.A[3], local.A[4],
  231. local.A[5], local.A[6], local.A[7], local.W[i+0], K[i+0] );
  232. P( local.A[7], local.A[0], local.A[1], local.A[2], local.A[3],
  233. local.A[4], local.A[5], local.A[6], local.W[i+1], K[i+1] );
  234. P( local.A[6], local.A[7], local.A[0], local.A[1], local.A[2],
  235. local.A[3], local.A[4], local.A[5], local.W[i+2], K[i+2] );
  236. P( local.A[5], local.A[6], local.A[7], local.A[0], local.A[1],
  237. local.A[2], local.A[3], local.A[4], local.W[i+3], K[i+3] );
  238. P( local.A[4], local.A[5], local.A[6], local.A[7], local.A[0],
  239. local.A[1], local.A[2], local.A[3], local.W[i+4], K[i+4] );
  240. P( local.A[3], local.A[4], local.A[5], local.A[6], local.A[7],
  241. local.A[0], local.A[1], local.A[2], local.W[i+5], K[i+5] );
  242. P( local.A[2], local.A[3], local.A[4], local.A[5], local.A[6],
  243. local.A[7], local.A[0], local.A[1], local.W[i+6], K[i+6] );
  244. P( local.A[1], local.A[2], local.A[3], local.A[4], local.A[5],
  245. local.A[6], local.A[7], local.A[0], local.W[i+7], K[i+7] );
  246. }
  247. for( i = 16; i < 64; i += 8 )
  248. {
  249. P( local.A[0], local.A[1], local.A[2], local.A[3], local.A[4],
  250. local.A[5], local.A[6], local.A[7], R(i+0), K[i+0] );
  251. P( local.A[7], local.A[0], local.A[1], local.A[2], local.A[3],
  252. local.A[4], local.A[5], local.A[6], R(i+1), K[i+1] );
  253. P( local.A[6], local.A[7], local.A[0], local.A[1], local.A[2],
  254. local.A[3], local.A[4], local.A[5], R(i+2), K[i+2] );
  255. P( local.A[5], local.A[6], local.A[7], local.A[0], local.A[1],
  256. local.A[2], local.A[3], local.A[4], R(i+3), K[i+3] );
  257. P( local.A[4], local.A[5], local.A[6], local.A[7], local.A[0],
  258. local.A[1], local.A[2], local.A[3], R(i+4), K[i+4] );
  259. P( local.A[3], local.A[4], local.A[5], local.A[6], local.A[7],
  260. local.A[0], local.A[1], local.A[2], R(i+5), K[i+5] );
  261. P( local.A[2], local.A[3], local.A[4], local.A[5], local.A[6],
  262. local.A[7], local.A[0], local.A[1], R(i+6), K[i+6] );
  263. P( local.A[1], local.A[2], local.A[3], local.A[4], local.A[5],
  264. local.A[6], local.A[7], local.A[0], R(i+7), K[i+7] );
  265. }
  266. #endif /* MBEDTLS_SHA256_SMALLER */
  267. for( i = 0; i < 8; i++ )
  268. ctx->state[i] += local.A[i];
  269. /* Zeroise buffers and variables to clear sensitive data from memory. */
  270. mbedtls_platform_zeroize( &local, sizeof( local ) );
  271. return( 0 );
  272. }
  273. #if !defined(MBEDTLS_DEPRECATED_REMOVED)
  274. void mbedtls_sha256_process( mbedtls_sha256_context *ctx,
  275. const unsigned char data[64] )
  276. {
  277. mbedtls_internal_sha256_process( ctx, data );
  278. }
  279. #endif
  280. #endif /* !MBEDTLS_SHA256_PROCESS_ALT */
  281. /*
  282. * SHA-256 process buffer
  283. */
  284. int mbedtls_sha256_update_ret( mbedtls_sha256_context *ctx,
  285. const unsigned char *input,
  286. size_t ilen )
  287. {
  288. int ret;
  289. size_t fill;
  290. uint32_t left;
  291. SHA256_VALIDATE_RET( ctx != NULL );
  292. SHA256_VALIDATE_RET( ilen == 0 || input != NULL );
  293. if( ilen == 0 )
  294. return( 0 );
  295. left = ctx->total[0] & 0x3F;
  296. fill = 64 - left;
  297. ctx->total[0] += (uint32_t) ilen;
  298. ctx->total[0] &= 0xFFFFFFFF;
  299. if( ctx->total[0] < (uint32_t) ilen )
  300. ctx->total[1]++;
  301. if( left && ilen >= fill )
  302. {
  303. memcpy( (void *) (ctx->buffer + left), input, fill );
  304. if( ( ret = mbedtls_internal_sha256_process( ctx, ctx->buffer ) ) != 0 )
  305. return( ret );
  306. input += fill;
  307. ilen -= fill;
  308. left = 0;
  309. }
  310. while( ilen >= 64 )
  311. {
  312. if( ( ret = mbedtls_internal_sha256_process( ctx, input ) ) != 0 )
  313. return( ret );
  314. input += 64;
  315. ilen -= 64;
  316. }
  317. if( ilen > 0 )
  318. memcpy( (void *) (ctx->buffer + left), input, ilen );
  319. return( 0 );
  320. }
  321. #if !defined(MBEDTLS_DEPRECATED_REMOVED)
  322. void mbedtls_sha256_update( mbedtls_sha256_context *ctx,
  323. const unsigned char *input,
  324. size_t ilen )
  325. {
  326. mbedtls_sha256_update_ret( ctx, input, ilen );
  327. }
  328. #endif
  329. /*
  330. * SHA-256 final digest
  331. */
  332. int mbedtls_sha256_finish_ret( mbedtls_sha256_context *ctx,
  333. unsigned char output[32] )
  334. {
  335. int ret;
  336. uint32_t used;
  337. uint32_t high, low;
  338. SHA256_VALIDATE_RET( ctx != NULL );
  339. SHA256_VALIDATE_RET( (unsigned char *)output != NULL );
  340. /*
  341. * Add padding: 0x80 then 0x00 until 8 bytes remain for the length
  342. */
  343. used = ctx->total[0] & 0x3F;
  344. ctx->buffer[used++] = 0x80;
  345. if( used <= 56 )
  346. {
  347. /* Enough room for padding + length in current block */
  348. memset( ctx->buffer + used, 0, 56 - used );
  349. }
  350. else
  351. {
  352. /* We'll need an extra block */
  353. memset( ctx->buffer + used, 0, 64 - used );
  354. if( ( ret = mbedtls_internal_sha256_process( ctx, ctx->buffer ) ) != 0 )
  355. return( ret );
  356. memset( ctx->buffer, 0, 56 );
  357. }
  358. /*
  359. * Add message length
  360. */
  361. high = ( ctx->total[0] >> 29 )
  362. | ( ctx->total[1] << 3 );
  363. low = ( ctx->total[0] << 3 );
  364. PUT_UINT32_BE( high, ctx->buffer, 56 );
  365. PUT_UINT32_BE( low, ctx->buffer, 60 );
  366. if( ( ret = mbedtls_internal_sha256_process( ctx, ctx->buffer ) ) != 0 )
  367. return( ret );
  368. /*
  369. * Output final state
  370. */
  371. PUT_UINT32_BE( ctx->state[0], output, 0 );
  372. PUT_UINT32_BE( ctx->state[1], output, 4 );
  373. PUT_UINT32_BE( ctx->state[2], output, 8 );
  374. PUT_UINT32_BE( ctx->state[3], output, 12 );
  375. PUT_UINT32_BE( ctx->state[4], output, 16 );
  376. PUT_UINT32_BE( ctx->state[5], output, 20 );
  377. PUT_UINT32_BE( ctx->state[6], output, 24 );
  378. if( ctx->is224 == 0 )
  379. PUT_UINT32_BE( ctx->state[7], output, 28 );
  380. return( 0 );
  381. }
  382. #if !defined(MBEDTLS_DEPRECATED_REMOVED)
  383. void mbedtls_sha256_finish( mbedtls_sha256_context *ctx,
  384. unsigned char output[32] )
  385. {
  386. mbedtls_sha256_finish_ret( ctx, output );
  387. }
  388. #endif
  389. #endif /* !MBEDTLS_SHA256_ALT */
  390. /*
  391. * output = SHA-256( input buffer )
  392. */
  393. int mbedtls_sha256_ret( const unsigned char *input,
  394. size_t ilen,
  395. unsigned char output[32],
  396. int is224 )
  397. {
  398. int ret;
  399. mbedtls_sha256_context ctx;
  400. SHA256_VALIDATE_RET( is224 == 0 || is224 == 1 );
  401. SHA256_VALIDATE_RET( ilen == 0 || input != NULL );
  402. SHA256_VALIDATE_RET( (unsigned char *)output != NULL );
  403. mbedtls_sha256_init( &ctx );
  404. if( ( ret = mbedtls_sha256_starts_ret( &ctx, is224 ) ) != 0 )
  405. goto exit;
  406. if( ( ret = mbedtls_sha256_update_ret( &ctx, input, ilen ) ) != 0 )
  407. goto exit;
  408. if( ( ret = mbedtls_sha256_finish_ret( &ctx, output ) ) != 0 )
  409. goto exit;
  410. exit:
  411. mbedtls_sha256_free( &ctx );
  412. return( ret );
  413. }
  414. #if !defined(MBEDTLS_DEPRECATED_REMOVED)
  415. void mbedtls_sha256( const unsigned char *input,
  416. size_t ilen,
  417. unsigned char output[32],
  418. int is224 )
  419. {
  420. mbedtls_sha256_ret( input, ilen, output, is224 );
  421. }
  422. #endif
  423. #if defined(MBEDTLS_SELF_TEST)
  424. /*
  425. * FIPS-180-2 test vectors
  426. */
  427. static const unsigned char sha256_test_buf[3][57] =
  428. {
  429. { "abc" },
  430. { "abcdbcdecdefdefgefghfghighijhijkijkljklmklmnlmnomnopnopq" },
  431. { "" }
  432. };
  433. static const size_t sha256_test_buflen[3] =
  434. {
  435. 3, 56, 1000
  436. };
  437. static const unsigned char sha256_test_sum[6][32] =
  438. {
  439. /*
  440. * SHA-224 test vectors
  441. */
  442. { 0x23, 0x09, 0x7D, 0x22, 0x34, 0x05, 0xD8, 0x22,
  443. 0x86, 0x42, 0xA4, 0x77, 0xBD, 0xA2, 0x55, 0xB3,
  444. 0x2A, 0xAD, 0xBC, 0xE4, 0xBD, 0xA0, 0xB3, 0xF7,
  445. 0xE3, 0x6C, 0x9D, 0xA7 },
  446. { 0x75, 0x38, 0x8B, 0x16, 0x51, 0x27, 0x76, 0xCC,
  447. 0x5D, 0xBA, 0x5D, 0xA1, 0xFD, 0x89, 0x01, 0x50,
  448. 0xB0, 0xC6, 0x45, 0x5C, 0xB4, 0xF5, 0x8B, 0x19,
  449. 0x52, 0x52, 0x25, 0x25 },
  450. { 0x20, 0x79, 0x46, 0x55, 0x98, 0x0C, 0x91, 0xD8,
  451. 0xBB, 0xB4, 0xC1, 0xEA, 0x97, 0x61, 0x8A, 0x4B,
  452. 0xF0, 0x3F, 0x42, 0x58, 0x19, 0x48, 0xB2, 0xEE,
  453. 0x4E, 0xE7, 0xAD, 0x67 },
  454. /*
  455. * SHA-256 test vectors
  456. */
  457. { 0xBA, 0x78, 0x16, 0xBF, 0x8F, 0x01, 0xCF, 0xEA,
  458. 0x41, 0x41, 0x40, 0xDE, 0x5D, 0xAE, 0x22, 0x23,
  459. 0xB0, 0x03, 0x61, 0xA3, 0x96, 0x17, 0x7A, 0x9C,
  460. 0xB4, 0x10, 0xFF, 0x61, 0xF2, 0x00, 0x15, 0xAD },
  461. { 0x24, 0x8D, 0x6A, 0x61, 0xD2, 0x06, 0x38, 0xB8,
  462. 0xE5, 0xC0, 0x26, 0x93, 0x0C, 0x3E, 0x60, 0x39,
  463. 0xA3, 0x3C, 0xE4, 0x59, 0x64, 0xFF, 0x21, 0x67,
  464. 0xF6, 0xEC, 0xED, 0xD4, 0x19, 0xDB, 0x06, 0xC1 },
  465. { 0xCD, 0xC7, 0x6E, 0x5C, 0x99, 0x14, 0xFB, 0x92,
  466. 0x81, 0xA1, 0xC7, 0xE2, 0x84, 0xD7, 0x3E, 0x67,
  467. 0xF1, 0x80, 0x9A, 0x48, 0xA4, 0x97, 0x20, 0x0E,
  468. 0x04, 0x6D, 0x39, 0xCC, 0xC7, 0x11, 0x2C, 0xD0 }
  469. };
  470. /*
  471. * Checkup routine
  472. */
  473. int mbedtls_sha256_self_test( int verbose )
  474. {
  475. int i, j, k, buflen, ret = 0;
  476. unsigned char *buf;
  477. unsigned char sha256sum[32];
  478. mbedtls_sha256_context ctx;
  479. buf = mbedtls_calloc( 1024, sizeof(unsigned char) );
  480. if( NULL == buf )
  481. {
  482. if( verbose != 0 )
  483. mbedtls_printf( "Buffer allocation failed\n" );
  484. return( 1 );
  485. }
  486. mbedtls_sha256_init( &ctx );
  487. for( i = 0; i < 6; i++ )
  488. {
  489. j = i % 3;
  490. k = i < 3;
  491. if( verbose != 0 )
  492. mbedtls_printf( " SHA-%d test #%d: ", 256 - k * 32, j + 1 );
  493. if( ( ret = mbedtls_sha256_starts_ret( &ctx, k ) ) != 0 )
  494. goto fail;
  495. if( j == 2 )
  496. {
  497. memset( buf, 'a', buflen = 1000 );
  498. for( j = 0; j < 1000; j++ )
  499. {
  500. ret = mbedtls_sha256_update_ret( &ctx, buf, buflen );
  501. if( ret != 0 )
  502. goto fail;
  503. }
  504. }
  505. else
  506. {
  507. ret = mbedtls_sha256_update_ret( &ctx, sha256_test_buf[j],
  508. sha256_test_buflen[j] );
  509. if( ret != 0 )
  510. goto fail;
  511. }
  512. if( ( ret = mbedtls_sha256_finish_ret( &ctx, sha256sum ) ) != 0 )
  513. goto fail;
  514. if( memcmp( sha256sum, sha256_test_sum[i], 32 - k * 4 ) != 0 )
  515. {
  516. ret = 1;
  517. goto fail;
  518. }
  519. if( verbose != 0 )
  520. mbedtls_printf( "passed\n" );
  521. }
  522. if( verbose != 0 )
  523. mbedtls_printf( "\n" );
  524. goto exit;
  525. fail:
  526. if( verbose != 0 )
  527. mbedtls_printf( "failed\n" );
  528. exit:
  529. mbedtls_sha256_free( &ctx );
  530. mbedtls_free( buf );
  531. return( ret );
  532. }
  533. #endif /* MBEDTLS_SELF_TEST */
  534. #endif /* MBEDTLS_SHA256_C */