ccm.c 13 KB

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  1. /*
  2. * NIST SP800-38C compliant CCM implementation
  3. *
  4. * Copyright (C) 2006-2015, ARM Limited, All Rights Reserved
  5. * SPDX-License-Identifier: Apache-2.0
  6. *
  7. * Licensed under the Apache License, Version 2.0 (the "License"); you may
  8. * not use this file except in compliance with the License.
  9. * You may obtain a copy of the License at
  10. *
  11. * http://www.apache.org/licenses/LICENSE-2.0
  12. *
  13. * Unless required by applicable law or agreed to in writing, software
  14. * distributed under the License is distributed on an "AS IS" BASIS, WITHOUT
  15. * WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
  16. * See the License for the specific language governing permissions and
  17. * limitations under the License.
  18. *
  19. * This file is part of mbed TLS (https://tls.mbed.org)
  20. */
  21. /*
  22. * Definition of CCM:
  23. * http://csrc.nist.gov/publications/nistpubs/800-38C/SP800-38C_updated-July20_2007.pdf
  24. * RFC 3610 "Counter with CBC-MAC (CCM)"
  25. *
  26. * Related:
  27. * RFC 5116 "An Interface and Algorithms for Authenticated Encryption"
  28. */
  29. #if !defined(MBEDTLS_CONFIG_FILE)
  30. #include "mbedtls/config.h"
  31. #else
  32. #include MBEDTLS_CONFIG_FILE
  33. #endif
  34. #if defined(MBEDTLS_CCM_C)
  35. #include "mbedtls/ccm.h"
  36. #include <string.h>
  37. #if defined(MBEDTLS_SELF_TEST) && defined(MBEDTLS_AES_C)
  38. #if defined(MBEDTLS_PLATFORM_C)
  39. #include "mbedtls/platform.h"
  40. #else
  41. #ifdef PRINTF_STDLIB
  42. #include <stdio.h>
  43. #endif
  44. #ifdef PRINTF_CUSTOM
  45. #include "tinystdio.h"
  46. #endif
  47. #define mbedtls_printf printf
  48. #endif /* MBEDTLS_PLATFORM_C */
  49. #endif /* MBEDTLS_SELF_TEST && MBEDTLS_AES_C */
  50. /* Implementation that should never be optimized out by the compiler */
  51. static void mbedtls_zeroize( void *v, size_t n ) {
  52. volatile unsigned char *p = (unsigned char*)v; while( n-- ) *p++ = 0;
  53. }
  54. #define CCM_ENCRYPT 0
  55. #define CCM_DECRYPT 1
  56. /*
  57. * Initialize context
  58. */
  59. void mbedtls_ccm_init( mbedtls_ccm_context *ctx )
  60. {
  61. memset( ctx, 0, sizeof( mbedtls_ccm_context ) );
  62. }
  63. int mbedtls_ccm_setkey( mbedtls_ccm_context *ctx,
  64. mbedtls_cipher_id_t cipher,
  65. const unsigned char *key,
  66. unsigned int keybits )
  67. {
  68. int ret;
  69. const mbedtls_cipher_info_t *cipher_info;
  70. cipher_info = mbedtls_cipher_info_from_values( cipher, keybits, MBEDTLS_MODE_ECB );
  71. if( cipher_info == NULL )
  72. return( MBEDTLS_ERR_CCM_BAD_INPUT );
  73. if( cipher_info->block_size != 16 )
  74. return( MBEDTLS_ERR_CCM_BAD_INPUT );
  75. mbedtls_cipher_free( &ctx->cipher_ctx );
  76. if( ( ret = mbedtls_cipher_setup( &ctx->cipher_ctx, cipher_info ) ) != 0 )
  77. return( ret );
  78. if( ( ret = mbedtls_cipher_setkey( &ctx->cipher_ctx, key, keybits,
  79. MBEDTLS_ENCRYPT ) ) != 0 )
  80. {
  81. return( ret );
  82. }
  83. return( 0 );
  84. }
  85. /*
  86. * Free context
  87. */
  88. void mbedtls_ccm_free( mbedtls_ccm_context *ctx )
  89. {
  90. mbedtls_cipher_free( &ctx->cipher_ctx );
  91. mbedtls_zeroize( ctx, sizeof( mbedtls_ccm_context ) );
  92. }
  93. /*
  94. * Macros for common operations.
  95. * Results in smaller compiled code than static inline functions.
  96. */
  97. /*
  98. * Update the CBC-MAC state in y using a block in b
  99. * (Always using b as the source helps the compiler optimise a bit better.)
  100. */
  101. #define UPDATE_CBC_MAC \
  102. for( i = 0; i < 16; i++ ) \
  103. y[i] ^= b[i]; \
  104. \
  105. if( ( ret = mbedtls_cipher_update( &ctx->cipher_ctx, y, 16, y, &olen ) ) != 0 ) \
  106. return( ret );
  107. /*
  108. * Encrypt or decrypt a partial block with CTR
  109. * Warning: using b for temporary storage! src and dst must not be b!
  110. * This avoids allocating one more 16 bytes buffer while allowing src == dst.
  111. */
  112. #define CTR_CRYPT( dst, src, len ) \
  113. if( ( ret = mbedtls_cipher_update( &ctx->cipher_ctx, ctr, 16, b, &olen ) ) != 0 ) \
  114. return( ret ); \
  115. \
  116. for( i = 0; i < len; i++ ) \
  117. dst[i] = src[i] ^ b[i];
  118. /*
  119. * Authenticated encryption or decryption
  120. */
  121. static int ccm_auth_crypt( mbedtls_ccm_context *ctx, int mode, size_t length,
  122. const unsigned char *iv, size_t iv_len,
  123. const unsigned char *add, size_t add_len,
  124. const unsigned char *input, unsigned char *output,
  125. unsigned char *tag, size_t tag_len )
  126. {
  127. int ret;
  128. unsigned char i;
  129. unsigned char q;
  130. size_t len_left, olen;
  131. unsigned char b[16];
  132. unsigned char y[16];
  133. unsigned char ctr[16];
  134. const unsigned char *src;
  135. unsigned char *dst;
  136. /*
  137. * Check length requirements: SP800-38C A.1
  138. * Additional requirement: a < 2^16 - 2^8 to simplify the code.
  139. * 'length' checked later (when writing it to the first block)
  140. */
  141. if( tag_len < 4 || tag_len > 16 || tag_len % 2 != 0 )
  142. return( MBEDTLS_ERR_CCM_BAD_INPUT );
  143. /* Also implies q is within bounds */
  144. if( iv_len < 7 || iv_len > 13 )
  145. return( MBEDTLS_ERR_CCM_BAD_INPUT );
  146. if( add_len > 0xFF00 )
  147. return( MBEDTLS_ERR_CCM_BAD_INPUT );
  148. q = 16 - 1 - (unsigned char) iv_len;
  149. /*
  150. * First block B_0:
  151. * 0 .. 0 flags
  152. * 1 .. iv_len nonce (aka iv)
  153. * iv_len+1 .. 15 length
  154. *
  155. * With flags as (bits):
  156. * 7 0
  157. * 6 add present?
  158. * 5 .. 3 (t - 2) / 2
  159. * 2 .. 0 q - 1
  160. */
  161. b[0] = 0;
  162. b[0] |= ( add_len > 0 ) << 6;
  163. b[0] |= ( ( tag_len - 2 ) / 2 ) << 3;
  164. b[0] |= q - 1;
  165. memcpy( b + 1, iv, iv_len );
  166. for( i = 0, len_left = length; i < q; i++, len_left >>= 8 )
  167. b[15-i] = (unsigned char)( len_left & 0xFF );
  168. if( len_left > 0 )
  169. return( MBEDTLS_ERR_CCM_BAD_INPUT );
  170. /* Start CBC-MAC with first block */
  171. memset( y, 0, 16 );
  172. UPDATE_CBC_MAC;
  173. /*
  174. * If there is additional data, update CBC-MAC with
  175. * add_len, add, 0 (padding to a block boundary)
  176. */
  177. if( add_len > 0 )
  178. {
  179. size_t use_len;
  180. len_left = add_len;
  181. src = add;
  182. memset( b, 0, 16 );
  183. b[0] = (unsigned char)( ( add_len >> 8 ) & 0xFF );
  184. b[1] = (unsigned char)( ( add_len ) & 0xFF );
  185. use_len = len_left < 16 - 2 ? len_left : 16 - 2;
  186. memcpy( b + 2, src, use_len );
  187. len_left -= use_len;
  188. src += use_len;
  189. UPDATE_CBC_MAC;
  190. while( len_left > 0 )
  191. {
  192. use_len = len_left > 16 ? 16 : len_left;
  193. memset( b, 0, 16 );
  194. memcpy( b, src, use_len );
  195. UPDATE_CBC_MAC;
  196. len_left -= use_len;
  197. src += use_len;
  198. }
  199. }
  200. /*
  201. * Prepare counter block for encryption:
  202. * 0 .. 0 flags
  203. * 1 .. iv_len nonce (aka iv)
  204. * iv_len+1 .. 15 counter (initially 1)
  205. *
  206. * With flags as (bits):
  207. * 7 .. 3 0
  208. * 2 .. 0 q - 1
  209. */
  210. ctr[0] = q - 1;
  211. memcpy( ctr + 1, iv, iv_len );
  212. memset( ctr + 1 + iv_len, 0, q );
  213. ctr[15] = 1;
  214. /*
  215. * Authenticate and {en,de}crypt the message.
  216. *
  217. * The only difference between encryption and decryption is
  218. * the respective order of authentication and {en,de}cryption.
  219. */
  220. len_left = length;
  221. src = input;
  222. dst = output;
  223. while( len_left > 0 )
  224. {
  225. size_t use_len = len_left > 16 ? 16 : len_left;
  226. if( mode == CCM_ENCRYPT )
  227. {
  228. memset( b, 0, 16 );
  229. memcpy( b, src, use_len );
  230. UPDATE_CBC_MAC;
  231. }
  232. CTR_CRYPT( dst, src, use_len );
  233. if( mode == CCM_DECRYPT )
  234. {
  235. memset( b, 0, 16 );
  236. memcpy( b, dst, use_len );
  237. UPDATE_CBC_MAC;
  238. }
  239. dst += use_len;
  240. src += use_len;
  241. len_left -= use_len;
  242. /*
  243. * Increment counter.
  244. * No need to check for overflow thanks to the length check above.
  245. */
  246. for( i = 0; i < q; i++ )
  247. if( ++ctr[15-i] != 0 )
  248. break;
  249. }
  250. /*
  251. * Authentication: reset counter and crypt/mask internal tag
  252. */
  253. for( i = 0; i < q; i++ )
  254. ctr[15-i] = 0;
  255. CTR_CRYPT( y, y, 16 );
  256. memcpy( tag, y, tag_len );
  257. return( 0 );
  258. }
  259. /*
  260. * Authenticated encryption
  261. */
  262. int mbedtls_ccm_encrypt_and_tag( mbedtls_ccm_context *ctx, size_t length,
  263. const unsigned char *iv, size_t iv_len,
  264. const unsigned char *add, size_t add_len,
  265. const unsigned char *input, unsigned char *output,
  266. unsigned char *tag, size_t tag_len )
  267. {
  268. return( ccm_auth_crypt( ctx, CCM_ENCRYPT, length, iv, iv_len,
  269. add, add_len, input, output, tag, tag_len ) );
  270. }
  271. /*
  272. * Authenticated decryption
  273. */
  274. int mbedtls_ccm_auth_decrypt( mbedtls_ccm_context *ctx, size_t length,
  275. const unsigned char *iv, size_t iv_len,
  276. const unsigned char *add, size_t add_len,
  277. const unsigned char *input, unsigned char *output,
  278. const unsigned char *tag, size_t tag_len )
  279. {
  280. int ret;
  281. unsigned char check_tag[16];
  282. unsigned char i;
  283. int diff;
  284. if( ( ret = ccm_auth_crypt( ctx, CCM_DECRYPT, length,
  285. iv, iv_len, add, add_len,
  286. input, output, check_tag, tag_len ) ) != 0 )
  287. {
  288. return( ret );
  289. }
  290. /* Check tag in "constant-time" */
  291. for( diff = 0, i = 0; i < tag_len; i++ )
  292. diff |= tag[i] ^ check_tag[i];
  293. if( diff != 0 )
  294. {
  295. mbedtls_zeroize( output, length );
  296. return( MBEDTLS_ERR_CCM_AUTH_FAILED );
  297. }
  298. return( 0 );
  299. }
  300. #if defined(MBEDTLS_SELF_TEST) && defined(MBEDTLS_AES_C)
  301. /*
  302. * Examples 1 to 3 from SP800-38C Appendix C
  303. */
  304. #define NB_TESTS 3
  305. /*
  306. * The data is the same for all tests, only the used length changes
  307. */
  308. static const unsigned char key[] = {
  309. 0x40, 0x41, 0x42, 0x43, 0x44, 0x45, 0x46, 0x47,
  310. 0x48, 0x49, 0x4a, 0x4b, 0x4c, 0x4d, 0x4e, 0x4f
  311. };
  312. static const unsigned char iv[] = {
  313. 0x10, 0x11, 0x12, 0x13, 0x14, 0x15, 0x16, 0x17,
  314. 0x18, 0x19, 0x1a, 0x1b
  315. };
  316. static const unsigned char ad[] = {
  317. 0x00, 0x01, 0x02, 0x03, 0x04, 0x05, 0x06, 0x07,
  318. 0x08, 0x09, 0x0a, 0x0b, 0x0c, 0x0d, 0x0e, 0x0f,
  319. 0x10, 0x11, 0x12, 0x13
  320. };
  321. static const unsigned char msg[] = {
  322. 0x20, 0x21, 0x22, 0x23, 0x24, 0x25, 0x26, 0x27,
  323. 0x28, 0x29, 0x2a, 0x2b, 0x2c, 0x2d, 0x2e, 0x2f,
  324. 0x30, 0x31, 0x32, 0x33, 0x34, 0x35, 0x36, 0x37,
  325. };
  326. static const size_t iv_len [NB_TESTS] = { 7, 8, 12 };
  327. static const size_t add_len[NB_TESTS] = { 8, 16, 20 };
  328. static const size_t msg_len[NB_TESTS] = { 4, 16, 24 };
  329. static const size_t tag_len[NB_TESTS] = { 4, 6, 8 };
  330. static const unsigned char res[NB_TESTS][32] = {
  331. { 0x71, 0x62, 0x01, 0x5b, 0x4d, 0xac, 0x25, 0x5d },
  332. { 0xd2, 0xa1, 0xf0, 0xe0, 0x51, 0xea, 0x5f, 0x62,
  333. 0x08, 0x1a, 0x77, 0x92, 0x07, 0x3d, 0x59, 0x3d,
  334. 0x1f, 0xc6, 0x4f, 0xbf, 0xac, 0xcd },
  335. { 0xe3, 0xb2, 0x01, 0xa9, 0xf5, 0xb7, 0x1a, 0x7a,
  336. 0x9b, 0x1c, 0xea, 0xec, 0xcd, 0x97, 0xe7, 0x0b,
  337. 0x61, 0x76, 0xaa, 0xd9, 0xa4, 0x42, 0x8a, 0xa5,
  338. 0x48, 0x43, 0x92, 0xfb, 0xc1, 0xb0, 0x99, 0x51 }
  339. };
  340. int mbedtls_ccm_self_test( int verbose )
  341. {
  342. mbedtls_ccm_context ctx;
  343. unsigned char out[32];
  344. size_t i;
  345. int ret;
  346. mbedtls_ccm_init( &ctx );
  347. if( mbedtls_ccm_setkey( &ctx, MBEDTLS_CIPHER_ID_AES, key, 8 * sizeof key ) != 0 )
  348. {
  349. if( verbose != 0 )
  350. mbedtls_printf( " CCM: setup failed" );
  351. return( 1 );
  352. }
  353. for( i = 0; i < NB_TESTS; i++ )
  354. {
  355. if( verbose != 0 )
  356. mbedtls_printf( " CCM-AES #%u: ", (unsigned int) i + 1 );
  357. ret = mbedtls_ccm_encrypt_and_tag( &ctx, msg_len[i],
  358. iv, iv_len[i], ad, add_len[i],
  359. msg, out,
  360. out + msg_len[i], tag_len[i] );
  361. if( ret != 0 ||
  362. memcmp( out, res[i], msg_len[i] + tag_len[i] ) != 0 )
  363. {
  364. if( verbose != 0 )
  365. mbedtls_printf( "failed\n" );
  366. return( 1 );
  367. }
  368. ret = mbedtls_ccm_auth_decrypt( &ctx, msg_len[i],
  369. iv, iv_len[i], ad, add_len[i],
  370. res[i], out,
  371. res[i] + msg_len[i], tag_len[i] );
  372. if( ret != 0 ||
  373. memcmp( out, msg, msg_len[i] ) != 0 )
  374. {
  375. if( verbose != 0 )
  376. mbedtls_printf( "failed\n" );
  377. return( 1 );
  378. }
  379. if( verbose != 0 )
  380. mbedtls_printf( "passed\n" );
  381. }
  382. mbedtls_ccm_free( &ctx );
  383. if( verbose != 0 )
  384. mbedtls_printf( "\n" );
  385. return( 0 );
  386. }
  387. #endif /* MBEDTLS_SELF_TEST && MBEDTLS_AES_C */
  388. #endif /* MBEDTLS_CCM_C */