ssl_srv.c 30 KB

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  1. /*
  2. * SSLv3/TLSv1 server-side functions
  3. *
  4. * Copyright (C) 2006-2010, Brainspark B.V.
  5. *
  6. * This file is part of PolarSSL (http://www.polarssl.org)
  7. * Lead Maintainer: Paul Bakker <polarssl_maintainer at polarssl.org>
  8. *
  9. * All rights reserved.
  10. *
  11. * This program is free software; you can redistribute it and/or modify
  12. * it under the terms of the GNU General Public License as published by
  13. * the Free Software Foundation; either version 2 of the License, or
  14. * (at your option) any later version.
  15. *
  16. * This program is distributed in the hope that it will be useful,
  17. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  18. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  19. * GNU General Public License for more details.
  20. *
  21. * You should have received a copy of the GNU General Public License along
  22. * with this program; if not, write to the Free Software Foundation, Inc.,
  23. * 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
  24. */
  25. #include "config.h"
  26. #if defined(POLARSSL_SSL_SRV_C)
  27. #include "polarssl/debug.h"
  28. #include "polarssl/ssl.h"
  29. #if defined(POLARSSL_PKCS11_C)
  30. #include "polarssl/pkcs11.h"
  31. #endif /* defined(POLARSSL_PKCS11_C) */
  32. #include <stdlib.h>
  33. #include <stdio.h>
  34. #include <time.h>
  35. #include "rtc.h"
  36. static int ssl_parse_client_hello( ssl_context *ssl )
  37. {
  38. int ret;
  39. unsigned int i, j;
  40. size_t n;
  41. unsigned int ciph_len, sess_len;
  42. unsigned int chal_len, comp_len;
  43. unsigned char *buf, *p;
  44. SSL_DEBUG_MSG( 2, ( "=> parse client hello" ) );
  45. if( ( ret = ssl_fetch_input( ssl, 5 ) ) != 0 )
  46. {
  47. SSL_DEBUG_RET( 1, "ssl_fetch_input", ret );
  48. return( ret );
  49. }
  50. buf = ssl->in_hdr;
  51. if( ( buf[0] & 0x80 ) != 0 )
  52. {
  53. SSL_DEBUG_BUF( 4, "record header", buf, 5 );
  54. SSL_DEBUG_MSG( 3, ( "client hello v2, message type: %d",
  55. buf[2] ) );
  56. SSL_DEBUG_MSG( 3, ( "client hello v2, message len.: %d",
  57. ( ( buf[0] & 0x7F ) << 8 ) | buf[1] ) );
  58. SSL_DEBUG_MSG( 3, ( "client hello v2, max. version: [%d:%d]",
  59. buf[3], buf[4] ) );
  60. /*
  61. * SSLv2 Client Hello
  62. *
  63. * Record layer:
  64. * 0 . 1 message length
  65. *
  66. * SSL layer:
  67. * 2 . 2 message type
  68. * 3 . 4 protocol version
  69. */
  70. if( buf[2] != SSL_HS_CLIENT_HELLO ||
  71. buf[3] != SSL_MAJOR_VERSION_3 )
  72. {
  73. SSL_DEBUG_MSG( 1, ( "bad client hello message" ) );
  74. return( POLARSSL_ERR_SSL_BAD_HS_CLIENT_HELLO );
  75. }
  76. n = ( ( buf[0] << 8 ) | buf[1] ) & 0x7FFF;
  77. if( n < 17 || n > 512 )
  78. {
  79. SSL_DEBUG_MSG( 1, ( "bad client hello message" ) );
  80. return( POLARSSL_ERR_SSL_BAD_HS_CLIENT_HELLO );
  81. }
  82. ssl->max_major_ver = buf[3];
  83. ssl->max_minor_ver = buf[4];
  84. ssl->major_ver = SSL_MAJOR_VERSION_3;
  85. ssl->minor_ver = ( buf[4] <= SSL_MINOR_VERSION_2 )
  86. ? buf[4] : SSL_MINOR_VERSION_2;
  87. if( ( ret = ssl_fetch_input( ssl, 2 + n ) ) != 0 )
  88. {
  89. SSL_DEBUG_RET( 1, "ssl_fetch_input", ret );
  90. return( ret );
  91. }
  92. md5_update( &ssl->fin_md5 , buf + 2, n );
  93. sha1_update( &ssl->fin_sha1, buf + 2, n );
  94. buf = ssl->in_msg;
  95. n = ssl->in_left - 5;
  96. /*
  97. * 0 . 1 ciphersuitelist length
  98. * 2 . 3 session id length
  99. * 4 . 5 challenge length
  100. * 6 . .. ciphersuitelist
  101. * .. . .. session id
  102. * .. . .. challenge
  103. */
  104. SSL_DEBUG_BUF( 4, "record contents", buf, n );
  105. ciph_len = ( buf[0] << 8 ) | buf[1];
  106. sess_len = ( buf[2] << 8 ) | buf[3];
  107. chal_len = ( buf[4] << 8 ) | buf[5];
  108. SSL_DEBUG_MSG( 3, ( "ciph_len: %d, sess_len: %d, chal_len: %d",
  109. ciph_len, sess_len, chal_len ) );
  110. /*
  111. * Make sure each parameter length is valid
  112. */
  113. if( ciph_len < 3 || ( ciph_len % 3 ) != 0 )
  114. {
  115. SSL_DEBUG_MSG( 1, ( "bad client hello message" ) );
  116. return( POLARSSL_ERR_SSL_BAD_HS_CLIENT_HELLO );
  117. }
  118. if( sess_len > 32 )
  119. {
  120. SSL_DEBUG_MSG( 1, ( "bad client hello message" ) );
  121. return( POLARSSL_ERR_SSL_BAD_HS_CLIENT_HELLO );
  122. }
  123. if( chal_len < 8 || chal_len > 32 )
  124. {
  125. SSL_DEBUG_MSG( 1, ( "bad client hello message" ) );
  126. return( POLARSSL_ERR_SSL_BAD_HS_CLIENT_HELLO );
  127. }
  128. if( n != 6 + ciph_len + sess_len + chal_len )
  129. {
  130. SSL_DEBUG_MSG( 1, ( "bad client hello message" ) );
  131. return( POLARSSL_ERR_SSL_BAD_HS_CLIENT_HELLO );
  132. }
  133. SSL_DEBUG_BUF( 3, "client hello, ciphersuitelist",
  134. buf + 6, ciph_len );
  135. SSL_DEBUG_BUF( 3, "client hello, session id",
  136. buf + 6 + ciph_len, sess_len );
  137. SSL_DEBUG_BUF( 3, "client hello, challenge",
  138. buf + 6 + ciph_len + sess_len, chal_len );
  139. p = buf + 6 + ciph_len;
  140. ssl->session->length = sess_len;
  141. memset( ssl->session->id, 0, sizeof( ssl->session->id ) );
  142. memcpy( ssl->session->id, p, ssl->session->length );
  143. p += sess_len;
  144. memset( ssl->randbytes, 0, 64 );
  145. memcpy( ssl->randbytes + 32 - chal_len, p, chal_len );
  146. for( i = 0; ssl->ciphersuites[i] != 0; i++ )
  147. {
  148. for( j = 0, p = buf + 6; j < ciph_len; j += 3, p += 3 )
  149. {
  150. if( p[0] == 0 &&
  151. p[1] == 0 &&
  152. p[2] == ssl->ciphersuites[i] )
  153. goto have_ciphersuite;
  154. }
  155. }
  156. }
  157. else
  158. {
  159. SSL_DEBUG_BUF( 4, "record header", buf, 5 );
  160. SSL_DEBUG_MSG( 3, ( "client hello v3, message type: %d",
  161. buf[0] ) );
  162. SSL_DEBUG_MSG( 3, ( "client hello v3, message len.: %d",
  163. ( buf[3] << 8 ) | buf[4] ) );
  164. SSL_DEBUG_MSG( 3, ( "client hello v3, protocol ver: [%d:%d]",
  165. buf[1], buf[2] ) );
  166. /*
  167. * SSLv3 Client Hello
  168. *
  169. * Record layer:
  170. * 0 . 0 message type
  171. * 1 . 2 protocol version
  172. * 3 . 4 message length
  173. */
  174. if( buf[0] != SSL_MSG_HANDSHAKE ||
  175. buf[1] != SSL_MAJOR_VERSION_3 )
  176. {
  177. SSL_DEBUG_MSG( 1, ( "bad client hello message" ) );
  178. return( POLARSSL_ERR_SSL_BAD_HS_CLIENT_HELLO );
  179. }
  180. n = ( buf[3] << 8 ) | buf[4];
  181. if( n < 45 || n > 512 )
  182. {
  183. SSL_DEBUG_MSG( 1, ( "bad client hello message" ) );
  184. return( POLARSSL_ERR_SSL_BAD_HS_CLIENT_HELLO );
  185. }
  186. if( ( ret = ssl_fetch_input( ssl, 5 + n ) ) != 0 )
  187. {
  188. SSL_DEBUG_RET( 1, "ssl_fetch_input", ret );
  189. return( ret );
  190. }
  191. buf = ssl->in_msg;
  192. n = ssl->in_left - 5;
  193. md5_update( &ssl->fin_md5 , buf, n );
  194. sha1_update( &ssl->fin_sha1, buf, n );
  195. /*
  196. * SSL layer:
  197. * 0 . 0 handshake type
  198. * 1 . 3 handshake length
  199. * 4 . 5 protocol version
  200. * 6 . 9 UNIX time()
  201. * 10 . 37 random bytes
  202. * 38 . 38 session id length
  203. * 39 . 38+x session id
  204. * 39+x . 40+x ciphersuitelist length
  205. * 41+x . .. ciphersuitelist
  206. * .. . .. compression alg.
  207. * .. . .. extensions
  208. */
  209. SSL_DEBUG_BUF( 4, "record contents", buf, n );
  210. SSL_DEBUG_MSG( 3, ( "client hello v3, handshake type: %d",
  211. buf[0] ) );
  212. SSL_DEBUG_MSG( 3, ( "client hello v3, handshake len.: %d",
  213. ( buf[1] << 16 ) | ( buf[2] << 8 ) | buf[3] ) );
  214. SSL_DEBUG_MSG( 3, ( "client hello v3, max. version: [%d:%d]",
  215. buf[4], buf[5] ) );
  216. /*
  217. * Check the handshake type and protocol version
  218. */
  219. if( buf[0] != SSL_HS_CLIENT_HELLO ||
  220. buf[4] != SSL_MAJOR_VERSION_3 )
  221. {
  222. SSL_DEBUG_MSG( 1, ( "bad client hello message" ) );
  223. return( POLARSSL_ERR_SSL_BAD_HS_CLIENT_HELLO );
  224. }
  225. ssl->major_ver = SSL_MAJOR_VERSION_3;
  226. ssl->minor_ver = ( buf[5] <= SSL_MINOR_VERSION_2 )
  227. ? buf[5] : SSL_MINOR_VERSION_2;
  228. ssl->max_major_ver = buf[4];
  229. ssl->max_minor_ver = buf[5];
  230. memcpy( ssl->randbytes, buf + 6, 32 );
  231. /*
  232. * Check the handshake message length
  233. */
  234. if( buf[1] != 0 || n != (unsigned int) 4 + ( ( buf[2] << 8 ) | buf[3] ) )
  235. {
  236. SSL_DEBUG_MSG( 1, ( "bad client hello message" ) );
  237. return( POLARSSL_ERR_SSL_BAD_HS_CLIENT_HELLO );
  238. }
  239. /*
  240. * Check the session length
  241. */
  242. sess_len = buf[38];
  243. if( sess_len > 32 )
  244. {
  245. SSL_DEBUG_MSG( 1, ( "bad client hello message" ) );
  246. return( POLARSSL_ERR_SSL_BAD_HS_CLIENT_HELLO );
  247. }
  248. ssl->session->length = sess_len;
  249. memset( ssl->session->id, 0, sizeof( ssl->session->id ) );
  250. memcpy( ssl->session->id, buf + 39 , ssl->session->length );
  251. /*
  252. * Check the ciphersuitelist length
  253. */
  254. ciph_len = ( buf[39 + sess_len] << 8 )
  255. | ( buf[40 + sess_len] );
  256. if( ciph_len < 2 || ciph_len > 256 || ( ciph_len % 2 ) != 0 )
  257. {
  258. SSL_DEBUG_MSG( 1, ( "bad client hello message" ) );
  259. return( POLARSSL_ERR_SSL_BAD_HS_CLIENT_HELLO );
  260. }
  261. /*
  262. * Check the compression algorithms length
  263. */
  264. comp_len = buf[41 + sess_len + ciph_len];
  265. if( comp_len < 1 || comp_len > 16 )
  266. {
  267. SSL_DEBUG_MSG( 1, ( "bad client hello message" ) );
  268. return( POLARSSL_ERR_SSL_BAD_HS_CLIENT_HELLO );
  269. }
  270. SSL_DEBUG_BUF( 3, "client hello, random bytes",
  271. buf + 6, 32 );
  272. SSL_DEBUG_BUF( 3, "client hello, session id",
  273. buf + 38, sess_len );
  274. SSL_DEBUG_BUF( 3, "client hello, ciphersuitelist",
  275. buf + 41 + sess_len, ciph_len );
  276. SSL_DEBUG_BUF( 3, "client hello, compression",
  277. buf + 42 + sess_len + ciph_len, comp_len );
  278. /*
  279. * Search for a matching ciphersuite
  280. */
  281. for( i = 0; ssl->ciphersuites[i] != 0; i++ )
  282. {
  283. for( j = 0, p = buf + 41 + sess_len; j < ciph_len;
  284. j += 2, p += 2 )
  285. {
  286. if( p[0] == 0 && p[1] == ssl->ciphersuites[i] )
  287. goto have_ciphersuite;
  288. }
  289. }
  290. }
  291. SSL_DEBUG_MSG( 1, ( "got no ciphersuites in common" ) );
  292. return( POLARSSL_ERR_SSL_NO_CIPHER_CHOSEN );
  293. have_ciphersuite:
  294. ssl->session->ciphersuite = ssl->ciphersuites[i];
  295. ssl->in_left = 0;
  296. ssl->state++;
  297. SSL_DEBUG_MSG( 2, ( "<= parse client hello" ) );
  298. return( 0 );
  299. }
  300. static int ssl_write_server_hello( ssl_context *ssl )
  301. {
  302. time_t t;
  303. int ret, i, n;
  304. unsigned char *buf, *p;
  305. SSL_DEBUG_MSG( 2, ( "=> write server hello" ) );
  306. /*
  307. * 0 . 0 handshake type
  308. * 1 . 3 handshake length
  309. * 4 . 5 protocol version
  310. * 6 . 9 UNIX time()
  311. * 10 . 37 random bytes
  312. */
  313. buf = ssl->out_msg;
  314. p = buf + 4;
  315. *p++ = (unsigned char) ssl->major_ver;
  316. *p++ = (unsigned char) ssl->minor_ver;
  317. SSL_DEBUG_MSG( 3, ( "server hello, chosen version: [%d:%d]",
  318. buf[4], buf[5] ) );
  319. //t = time( NULL );
  320. t = RTC_GetUnixTime();
  321. //t = 100000;
  322. *p++ = (unsigned char)( t >> 24 );
  323. *p++ = (unsigned char)( t >> 16 );
  324. *p++ = (unsigned char)( t >> 8 );
  325. *p++ = (unsigned char)( t );
  326. SSL_DEBUG_MSG( 3, ( "server hello, current time: %lu", t ) );
  327. for( i = 28; i > 0; i-- )
  328. *p++ = (unsigned char) ssl->f_rng( ssl->p_rng );
  329. memcpy( ssl->randbytes + 32, buf + 6, 32 );
  330. SSL_DEBUG_BUF( 3, "server hello, random bytes", buf + 6, 32 );
  331. /*
  332. * 38 . 38 session id length
  333. * 39 . 38+n session id
  334. * 39+n . 40+n chosen ciphersuite
  335. * 41+n . 41+n chosen compression alg.
  336. */
  337. ssl->session->length = n = 32;
  338. *p++ = (unsigned char) ssl->session->length;
  339. if( ssl->s_get == NULL ||
  340. ssl->s_get( ssl ) != 0 )
  341. {
  342. /*
  343. * Not found, create a new session id
  344. */
  345. ssl->resume = 0;
  346. ssl->state++;
  347. for( i = 0; i < n; i++ )
  348. ssl->session->id[i] =
  349. (unsigned char) ssl->f_rng( ssl->p_rng );
  350. }
  351. else
  352. {
  353. /*
  354. * Found a matching session, resume it
  355. */
  356. ssl->resume = 1;
  357. ssl->state = SSL_SERVER_CHANGE_CIPHER_SPEC;
  358. if( ( ret = ssl_derive_keys( ssl ) ) != 0 )
  359. {
  360. SSL_DEBUG_RET( 1, "ssl_derive_keys", ret );
  361. return( ret );
  362. }
  363. }
  364. memcpy( p, ssl->session->id, ssl->session->length );
  365. p += ssl->session->length;
  366. SSL_DEBUG_MSG( 3, ( "server hello, session id len.: %d", n ) );
  367. SSL_DEBUG_BUF( 3, "server hello, session id", buf + 39, n );
  368. SSL_DEBUG_MSG( 3, ( "%s session has been resumed",
  369. ssl->resume ? "a" : "no" ) );
  370. *p++ = (unsigned char)( ssl->session->ciphersuite >> 8 );
  371. *p++ = (unsigned char)( ssl->session->ciphersuite );
  372. *p++ = SSL_COMPRESS_NULL;
  373. SSL_DEBUG_MSG( 3, ( "server hello, chosen ciphersuite: %d",
  374. ssl->session->ciphersuite ) );
  375. SSL_DEBUG_MSG( 3, ( "server hello, compress alg.: %d", 0 ) );
  376. ssl->out_msglen = p - buf;
  377. ssl->out_msgtype = SSL_MSG_HANDSHAKE;
  378. ssl->out_msg[0] = SSL_HS_SERVER_HELLO;
  379. ret = ssl_write_record( ssl );
  380. SSL_DEBUG_MSG( 2, ( "<= write server hello" ) );
  381. return( ret );
  382. }
  383. static int ssl_write_certificate_request( ssl_context *ssl )
  384. {
  385. int ret;
  386. size_t n;
  387. unsigned char *buf, *p;
  388. const x509_cert *crt;
  389. SSL_DEBUG_MSG( 2, ( "=> write certificate request" ) );
  390. ssl->state++;
  391. if( ssl->authmode == SSL_VERIFY_NONE )
  392. {
  393. SSL_DEBUG_MSG( 2, ( "<= skip write certificate request" ) );
  394. return( 0 );
  395. }
  396. /*
  397. * 0 . 0 handshake type
  398. * 1 . 3 handshake length
  399. * 4 . 4 cert type count
  400. * 5 .. n-1 cert types
  401. * n .. n+1 length of all DNs
  402. * n+2 .. n+3 length of DN 1
  403. * n+4 .. ... Distinguished Name #1
  404. * ... .. ... length of DN 2, etc.
  405. */
  406. buf = ssl->out_msg;
  407. p = buf + 4;
  408. /*
  409. * At the moment, only RSA certificates are supported
  410. */
  411. *p++ = 1;
  412. *p++ = 1;
  413. p += 2;
  414. crt = ssl->ca_chain;
  415. while( crt != NULL )
  416. {
  417. if( p - buf > 4096 )
  418. break;
  419. n = crt->subject_raw.len;
  420. *p++ = (unsigned char)( n >> 8 );
  421. *p++ = (unsigned char)( n );
  422. memcpy( p, crt->subject_raw.p, n );
  423. SSL_DEBUG_BUF( 3, "requested DN", p, n );
  424. p += n; crt = crt->next;
  425. }
  426. ssl->out_msglen = n = p - buf;
  427. ssl->out_msgtype = SSL_MSG_HANDSHAKE;
  428. ssl->out_msg[0] = SSL_HS_CERTIFICATE_REQUEST;
  429. ssl->out_msg[6] = (unsigned char)( ( n - 8 ) >> 8 );
  430. ssl->out_msg[7] = (unsigned char)( ( n - 8 ) );
  431. ret = ssl_write_record( ssl );
  432. SSL_DEBUG_MSG( 2, ( "<= write certificate request" ) );
  433. return( ret );
  434. }
  435. static int ssl_write_server_key_exchange( ssl_context *ssl )
  436. {
  437. #if defined(POLARSSL_DHM_C)
  438. int ret;
  439. size_t n, rsa_key_len = 0;
  440. unsigned char hash[36];
  441. md5_context md5;
  442. sha1_context sha1;
  443. #endif
  444. SSL_DEBUG_MSG( 2, ( "=> write server key exchange" ) );
  445. if( ssl->session->ciphersuite != SSL_EDH_RSA_DES_168_SHA &&
  446. ssl->session->ciphersuite != SSL_EDH_RSA_AES_128_SHA &&
  447. ssl->session->ciphersuite != SSL_EDH_RSA_AES_256_SHA &&
  448. ssl->session->ciphersuite != SSL_EDH_RSA_CAMELLIA_128_SHA &&
  449. ssl->session->ciphersuite != SSL_EDH_RSA_CAMELLIA_256_SHA)
  450. {
  451. SSL_DEBUG_MSG( 2, ( "<= skip write server key exchange" ) );
  452. ssl->state++;
  453. return( 0 );
  454. }
  455. #if !defined(POLARSSL_DHM_C)
  456. SSL_DEBUG_MSG( 1, ( "support for dhm is not available" ) );
  457. return( POLARSSL_ERR_SSL_FEATURE_UNAVAILABLE );
  458. #else
  459. if( ssl->rsa_key == NULL )
  460. {
  461. #if defined(POLARSSL_PKCS11_C)
  462. if( ssl->pkcs11_key == NULL )
  463. {
  464. #endif /* defined(POLARSSL_PKCS11_C) */
  465. SSL_DEBUG_MSG( 1, ( "got no private key" ) );
  466. return( POLARSSL_ERR_SSL_PRIVATE_KEY_REQUIRED );
  467. #if defined(POLARSSL_PKCS11_C)
  468. }
  469. #endif /* defined(POLARSSL_PKCS11_C) */
  470. }
  471. /*
  472. * Ephemeral DH parameters:
  473. *
  474. * struct {
  475. * opaque dh_p<1..2^16-1>;
  476. * opaque dh_g<1..2^16-1>;
  477. * opaque dh_Ys<1..2^16-1>;
  478. * } ServerDHParams;
  479. */
  480. if( ( ret = dhm_make_params( &ssl->dhm_ctx, 256, ssl->out_msg + 4,
  481. &n, ssl->f_rng, ssl->p_rng ) ) != 0 )
  482. {
  483. SSL_DEBUG_RET( 1, "dhm_make_params", ret );
  484. return( ret );
  485. }
  486. SSL_DEBUG_MPI( 3, "DHM: X ", &ssl->dhm_ctx.X );
  487. SSL_DEBUG_MPI( 3, "DHM: P ", &ssl->dhm_ctx.P );
  488. SSL_DEBUG_MPI( 3, "DHM: G ", &ssl->dhm_ctx.G );
  489. SSL_DEBUG_MPI( 3, "DHM: GX", &ssl->dhm_ctx.GX );
  490. /*
  491. * digitally-signed struct {
  492. * opaque md5_hash[16];
  493. * opaque sha_hash[20];
  494. * };
  495. *
  496. * md5_hash
  497. * MD5(ClientHello.random + ServerHello.random
  498. * + ServerParams);
  499. * sha_hash
  500. * SHA(ClientHello.random + ServerHello.random
  501. * + ServerParams);
  502. */
  503. md5_starts( &md5 );
  504. md5_update( &md5, ssl->randbytes, 64 );
  505. md5_update( &md5, ssl->out_msg + 4, n );
  506. md5_finish( &md5, hash );
  507. sha1_starts( &sha1 );
  508. sha1_update( &sha1, ssl->randbytes, 64 );
  509. sha1_update( &sha1, ssl->out_msg + 4, n );
  510. sha1_finish( &sha1, hash + 16 );
  511. SSL_DEBUG_BUF( 3, "parameters hash", hash, 36 );
  512. if ( ssl->rsa_key )
  513. rsa_key_len = ssl->rsa_key->len;
  514. #if defined(POLARSSL_PKCS11_C)
  515. else
  516. rsa_key_len = ssl->pkcs11_key->len;
  517. #endif /* defined(POLARSSL_PKCS11_C) */
  518. ssl->out_msg[4 + n] = (unsigned char)( rsa_key_len >> 8 );
  519. ssl->out_msg[5 + n] = (unsigned char)( rsa_key_len );
  520. if ( ssl->rsa_key )
  521. {
  522. ret = rsa_pkcs1_sign( ssl->rsa_key, ssl->f_rng, ssl->p_rng,
  523. RSA_PRIVATE,
  524. SIG_RSA_RAW, 36, hash, ssl->out_msg + 6 + n );
  525. }
  526. #if defined(POLARSSL_PKCS11_C)
  527. else {
  528. ret = pkcs11_sign( ssl->pkcs11_key, RSA_PRIVATE,
  529. SIG_RSA_RAW, 36, hash, ssl->out_msg + 6 + n );
  530. }
  531. #endif /* defined(POLARSSL_PKCS11_C) */
  532. if( ret != 0 )
  533. {
  534. SSL_DEBUG_RET( 1, "pkcs1_sign", ret );
  535. return( ret );
  536. }
  537. SSL_DEBUG_BUF( 3, "my RSA sig", ssl->out_msg + 6 + n, rsa_key_len );
  538. ssl->out_msglen = 6 + n + rsa_key_len;
  539. ssl->out_msgtype = SSL_MSG_HANDSHAKE;
  540. ssl->out_msg[0] = SSL_HS_SERVER_KEY_EXCHANGE;
  541. ssl->state++;
  542. if( ( ret = ssl_write_record( ssl ) ) != 0 )
  543. {
  544. SSL_DEBUG_RET( 1, "ssl_write_record", ret );
  545. return( ret );
  546. }
  547. SSL_DEBUG_MSG( 2, ( "<= write server key exchange" ) );
  548. return( 0 );
  549. #endif
  550. }
  551. static int ssl_write_server_hello_done( ssl_context *ssl )
  552. {
  553. int ret;
  554. SSL_DEBUG_MSG( 2, ( "=> write server hello done" ) );
  555. ssl->out_msglen = 4;
  556. ssl->out_msgtype = SSL_MSG_HANDSHAKE;
  557. ssl->out_msg[0] = SSL_HS_SERVER_HELLO_DONE;
  558. ssl->state++;
  559. if( ( ret = ssl_write_record( ssl ) ) != 0 )
  560. {
  561. SSL_DEBUG_RET( 1, "ssl_write_record", ret );
  562. return( ret );
  563. }
  564. SSL_DEBUG_MSG( 2, ( "<= write server hello done" ) );
  565. return( 0 );
  566. }
  567. static int ssl_parse_client_key_exchange( ssl_context *ssl )
  568. {
  569. int ret;
  570. size_t i, n = 0;
  571. SSL_DEBUG_MSG( 2, ( "=> parse client key exchange" ) );
  572. if( ( ret = ssl_read_record( ssl ) ) != 0 )
  573. {
  574. SSL_DEBUG_RET( 1, "ssl_read_record", ret );
  575. return( ret );
  576. }
  577. if( ssl->in_msgtype != SSL_MSG_HANDSHAKE )
  578. {
  579. SSL_DEBUG_MSG( 1, ( "bad client key exchange message" ) );
  580. return( POLARSSL_ERR_SSL_BAD_HS_CLIENT_KEY_EXCHANGE );
  581. }
  582. if( ssl->in_msg[0] != SSL_HS_CLIENT_KEY_EXCHANGE )
  583. {
  584. SSL_DEBUG_MSG( 1, ( "bad client key exchange message" ) );
  585. return( POLARSSL_ERR_SSL_BAD_HS_CLIENT_KEY_EXCHANGE );
  586. }
  587. if( ssl->session->ciphersuite == SSL_EDH_RSA_DES_168_SHA ||
  588. ssl->session->ciphersuite == SSL_EDH_RSA_AES_128_SHA ||
  589. ssl->session->ciphersuite == SSL_EDH_RSA_AES_256_SHA ||
  590. ssl->session->ciphersuite == SSL_EDH_RSA_CAMELLIA_128_SHA ||
  591. ssl->session->ciphersuite == SSL_EDH_RSA_CAMELLIA_256_SHA)
  592. {
  593. #if !defined(POLARSSL_DHM_C)
  594. SSL_DEBUG_MSG( 1, ( "support for dhm is not available" ) );
  595. return( POLARSSL_ERR_SSL_FEATURE_UNAVAILABLE );
  596. #else
  597. /*
  598. * Receive G^Y mod P, premaster = (G^Y)^X mod P
  599. */
  600. n = ( ssl->in_msg[4] << 8 ) | ssl->in_msg[5];
  601. if( n < 1 || n > ssl->dhm_ctx.len ||
  602. n + 6 != ssl->in_hslen )
  603. {
  604. SSL_DEBUG_MSG( 1, ( "bad client key exchange message" ) );
  605. return( POLARSSL_ERR_SSL_BAD_HS_CLIENT_KEY_EXCHANGE );
  606. }
  607. if( ( ret = dhm_read_public( &ssl->dhm_ctx,
  608. ssl->in_msg + 6, n ) ) != 0 )
  609. {
  610. SSL_DEBUG_RET( 1, "dhm_read_public", ret );
  611. return( POLARSSL_ERR_SSL_BAD_HS_CLIENT_KEY_EXCHANGE_DHM_RP );
  612. }
  613. SSL_DEBUG_MPI( 3, "DHM: GY", &ssl->dhm_ctx.GY );
  614. ssl->pmslen = ssl->dhm_ctx.len;
  615. if( ( ret = dhm_calc_secret( &ssl->dhm_ctx,
  616. ssl->premaster, &ssl->pmslen ) ) != 0 )
  617. {
  618. SSL_DEBUG_RET( 1, "dhm_calc_secret", ret );
  619. return( POLARSSL_ERR_SSL_BAD_HS_CLIENT_KEY_EXCHANGE_DHM_CS );
  620. }
  621. SSL_DEBUG_MPI( 3, "DHM: K ", &ssl->dhm_ctx.K );
  622. #endif
  623. }
  624. else
  625. {
  626. if( ssl->rsa_key == NULL )
  627. {
  628. #if defined(POLARSSL_PKCS11_C)
  629. if( ssl->pkcs11_key == NULL )
  630. {
  631. #endif
  632. SSL_DEBUG_MSG( 1, ( "got no private key" ) );
  633. return( POLARSSL_ERR_SSL_PRIVATE_KEY_REQUIRED );
  634. #if defined(POLARSSL_PKCS11_C)
  635. }
  636. #endif
  637. }
  638. /*
  639. * Decrypt the premaster using own private RSA key
  640. */
  641. i = 4;
  642. if( ssl->rsa_key )
  643. n = ssl->rsa_key->len;
  644. #if defined(POLARSSL_PKCS11_C)
  645. else
  646. n = ssl->pkcs11_key->len;
  647. #endif
  648. ssl->pmslen = 48;
  649. if( ssl->minor_ver != SSL_MINOR_VERSION_0 )
  650. {
  651. i += 2;
  652. if( ssl->in_msg[4] != ( ( n >> 8 ) & 0xFF ) ||
  653. ssl->in_msg[5] != ( ( n ) & 0xFF ) )
  654. {
  655. SSL_DEBUG_MSG( 1, ( "bad client key exchange message" ) );
  656. return( POLARSSL_ERR_SSL_BAD_HS_CLIENT_KEY_EXCHANGE );
  657. }
  658. }
  659. if( ssl->in_hslen != i + n )
  660. {
  661. SSL_DEBUG_MSG( 1, ( "bad client key exchange message" ) );
  662. return( POLARSSL_ERR_SSL_BAD_HS_CLIENT_KEY_EXCHANGE );
  663. }
  664. if( ssl->rsa_key ) {
  665. ret = rsa_pkcs1_decrypt( ssl->rsa_key, RSA_PRIVATE, &ssl->pmslen,
  666. ssl->in_msg + i, ssl->premaster,
  667. sizeof(ssl->premaster) );
  668. }
  669. #if defined(POLARSSL_PKCS11_C)
  670. else {
  671. ret = pkcs11_decrypt( ssl->pkcs11_key, RSA_PRIVATE, &ssl->pmslen,
  672. ssl->in_msg + i, ssl->premaster,
  673. sizeof(ssl->premaster) );
  674. }
  675. #endif /* defined(POLARSSL_PKCS11_C) */
  676. if( ret != 0 || ssl->pmslen != 48 ||
  677. ssl->premaster[0] != ssl->max_major_ver ||
  678. ssl->premaster[1] != ssl->max_minor_ver )
  679. {
  680. SSL_DEBUG_MSG( 1, ( "bad client key exchange message" ) );
  681. /*
  682. * Protection against Bleichenbacher's attack:
  683. * invalid PKCS#1 v1.5 padding must not cause
  684. * the connection to end immediately; instead,
  685. * send a bad_record_mac later in the handshake.
  686. */
  687. ssl->pmslen = 48;
  688. for( i = 0; i < ssl->pmslen; i++ )
  689. ssl->premaster[i] = (unsigned char) ssl->f_rng( ssl->p_rng );
  690. }
  691. }
  692. if( ( ret = ssl_derive_keys( ssl ) ) != 0 )
  693. {
  694. SSL_DEBUG_RET( 1, "ssl_derive_keys", ret );
  695. return( ret );
  696. }
  697. if( ssl->s_set != NULL )
  698. ssl->s_set( ssl );
  699. ssl->state++;
  700. SSL_DEBUG_MSG( 2, ( "<= parse client key exchange" ) );
  701. return( 0 );
  702. }
  703. static int ssl_parse_certificate_verify( ssl_context *ssl )
  704. {
  705. int ret;
  706. size_t n1, n2;
  707. unsigned char hash[36];
  708. SSL_DEBUG_MSG( 2, ( "=> parse certificate verify" ) );
  709. if( ssl->peer_cert == NULL )
  710. {
  711. SSL_DEBUG_MSG( 2, ( "<= skip parse certificate verify" ) );
  712. ssl->state++;
  713. return( 0 );
  714. }
  715. ssl_calc_verify( ssl, hash );
  716. if( ( ret = ssl_read_record( ssl ) ) != 0 )
  717. {
  718. SSL_DEBUG_RET( 1, "ssl_read_record", ret );
  719. return( ret );
  720. }
  721. ssl->state++;
  722. if( ssl->in_msgtype != SSL_MSG_HANDSHAKE )
  723. {
  724. SSL_DEBUG_MSG( 1, ( "bad certificate verify message" ) );
  725. return( POLARSSL_ERR_SSL_BAD_HS_CERTIFICATE_VERIFY );
  726. }
  727. if( ssl->in_msg[0] != SSL_HS_CERTIFICATE_VERIFY )
  728. {
  729. SSL_DEBUG_MSG( 1, ( "bad certificate verify message" ) );
  730. return( POLARSSL_ERR_SSL_BAD_HS_CERTIFICATE_VERIFY );
  731. }
  732. n1 = ssl->peer_cert->rsa.len;
  733. n2 = ( ssl->in_msg[4] << 8 ) | ssl->in_msg[5];
  734. if( n1 + 6 != ssl->in_hslen || n1 != n2 )
  735. {
  736. SSL_DEBUG_MSG( 1, ( "bad certificate verify message" ) );
  737. return( POLARSSL_ERR_SSL_BAD_HS_CERTIFICATE_VERIFY );
  738. }
  739. ret = rsa_pkcs1_verify( &ssl->peer_cert->rsa, RSA_PUBLIC,
  740. SIG_RSA_RAW, 36, hash, ssl->in_msg + 6 );
  741. if( ret != 0 )
  742. {
  743. SSL_DEBUG_RET( 1, "rsa_pkcs1_verify", ret );
  744. return( ret );
  745. }
  746. SSL_DEBUG_MSG( 2, ( "<= parse certificate verify" ) );
  747. return( 0 );
  748. }
  749. /*
  750. * SSL handshake -- server side
  751. */
  752. int ssl_handshake_server( ssl_context *ssl )
  753. {
  754. int ret = 0;
  755. SSL_DEBUG_MSG( 2, ( "=> handshake server" ) );
  756. while( ssl->state != SSL_HANDSHAKE_OVER )
  757. {
  758. SSL_DEBUG_MSG( 2, ( "server state: %d", ssl->state ) );
  759. if( ( ret = ssl_flush_output( ssl ) ) != 0 )
  760. break;
  761. switch( ssl->state )
  762. {
  763. case SSL_HELLO_REQUEST:
  764. ssl->state = SSL_CLIENT_HELLO;
  765. break;
  766. /*
  767. * <== ClientHello
  768. */
  769. case SSL_CLIENT_HELLO:
  770. ret = ssl_parse_client_hello( ssl );
  771. break;
  772. /*
  773. * ==> ServerHello
  774. * Certificate
  775. * ( ServerKeyExchange )
  776. * ( CertificateRequest )
  777. * ServerHelloDone
  778. */
  779. case SSL_SERVER_HELLO:
  780. ret = ssl_write_server_hello( ssl );
  781. break;
  782. case SSL_SERVER_CERTIFICATE:
  783. ret = ssl_write_certificate( ssl );
  784. break;
  785. case SSL_SERVER_KEY_EXCHANGE:
  786. ret = ssl_write_server_key_exchange( ssl );
  787. break;
  788. case SSL_CERTIFICATE_REQUEST:
  789. ret = ssl_write_certificate_request( ssl );
  790. break;
  791. case SSL_SERVER_HELLO_DONE:
  792. ret = ssl_write_server_hello_done( ssl );
  793. break;
  794. /*
  795. * <== ( Certificate/Alert )
  796. * ClientKeyExchange
  797. * ( CertificateVerify )
  798. * ChangeCipherSpec
  799. * Finished
  800. */
  801. case SSL_CLIENT_CERTIFICATE:
  802. ret = ssl_parse_certificate( ssl );
  803. break;
  804. case SSL_CLIENT_KEY_EXCHANGE:
  805. ret = ssl_parse_client_key_exchange( ssl );
  806. break;
  807. case SSL_CERTIFICATE_VERIFY:
  808. ret = ssl_parse_certificate_verify( ssl );
  809. break;
  810. case SSL_CLIENT_CHANGE_CIPHER_SPEC:
  811. ret = ssl_parse_change_cipher_spec( ssl );
  812. break;
  813. case SSL_CLIENT_FINISHED:
  814. ret = ssl_parse_finished( ssl );
  815. break;
  816. /*
  817. * ==> ChangeCipherSpec
  818. * Finished
  819. */
  820. case SSL_SERVER_CHANGE_CIPHER_SPEC:
  821. ret = ssl_write_change_cipher_spec( ssl );
  822. break;
  823. case SSL_SERVER_FINISHED:
  824. ret = ssl_write_finished( ssl );
  825. break;
  826. case SSL_FLUSH_BUFFERS:
  827. SSL_DEBUG_MSG( 2, ( "handshake: done" ) );
  828. ssl->state = SSL_HANDSHAKE_OVER;
  829. break;
  830. default:
  831. SSL_DEBUG_MSG( 1, ( "invalid state %d", ssl->state ) );
  832. return( POLARSSL_ERR_SSL_BAD_INPUT_DATA );
  833. }
  834. if( ret != 0 )
  835. break;
  836. }
  837. SSL_DEBUG_MSG( 2, ( "<= handshake server" ) );
  838. return( ret );
  839. }
  840. #endif