statem_lib.c 78 KB

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  1. /*
  2. * Copyright 1995-2019 The OpenSSL Project Authors. All Rights Reserved.
  3. * Copyright (c) 2002, Oracle and/or its affiliates. All rights reserved
  4. *
  5. * Licensed under the OpenSSL license (the "License"). You may not use
  6. * this file except in compliance with the License. You can obtain a copy
  7. * in the file LICENSE in the source distribution or at
  8. * https://www.openssl.org/source/license.html
  9. */
  10. #include <limits.h>
  11. #include <string.h>
  12. #include <stdio.h>
  13. #include "../ssl_locl.h"
  14. #include "statem_locl.h"
  15. #include "internal/cryptlib.h"
  16. #include <openssl/buffer.h>
  17. #include <openssl/objects.h>
  18. #include <openssl/evp.h>
  19. #include <openssl/x509.h>
  20. /*
  21. * Map error codes to TLS/SSL alart types.
  22. */
  23. typedef struct x509err2alert_st {
  24. int x509err;
  25. int alert;
  26. } X509ERR2ALERT;
  27. /* Fixed value used in the ServerHello random field to identify an HRR */
  28. const unsigned char hrrrandom[] = {
  29. 0xcf, 0x21, 0xad, 0x74, 0xe5, 0x9a, 0x61, 0x11, 0xbe, 0x1d, 0x8c, 0x02,
  30. 0x1e, 0x65, 0xb8, 0x91, 0xc2, 0xa2, 0x11, 0x16, 0x7a, 0xbb, 0x8c, 0x5e,
  31. 0x07, 0x9e, 0x09, 0xe2, 0xc8, 0xa8, 0x33, 0x9c
  32. };
  33. /*
  34. * send s->init_buf in records of type 'type' (SSL3_RT_HANDSHAKE or
  35. * SSL3_RT_CHANGE_CIPHER_SPEC)
  36. */
  37. int ssl3_do_write(SSL *s, int type)
  38. {
  39. int ret;
  40. size_t written = 0;
  41. ret = ssl3_write_bytes(s, type, &s->init_buf->data[s->init_off],
  42. s->init_num, &written);
  43. if (ret < 0)
  44. return -1;
  45. if (type == SSL3_RT_HANDSHAKE)
  46. /*
  47. * should not be done for 'Hello Request's, but in that case we'll
  48. * ignore the result anyway
  49. * TLS1.3 KeyUpdate and NewSessionTicket do not need to be added
  50. */
  51. if (!SSL_IS_TLS13(s) || (s->statem.hand_state != TLS_ST_SW_SESSION_TICKET
  52. && s->statem.hand_state != TLS_ST_CW_KEY_UPDATE
  53. && s->statem.hand_state != TLS_ST_SW_KEY_UPDATE))
  54. if (!ssl3_finish_mac(s,
  55. (unsigned char *)&s->init_buf->data[s->init_off],
  56. written))
  57. return -1;
  58. if (written == s->init_num) {
  59. if (s->msg_callback)
  60. s->msg_callback(1, s->version, type, s->init_buf->data,
  61. (size_t)(s->init_off + s->init_num), s,
  62. s->msg_callback_arg);
  63. return 1;
  64. }
  65. s->init_off += written;
  66. s->init_num -= written;
  67. return 0;
  68. }
  69. int tls_close_construct_packet(SSL *s, WPACKET *pkt, int htype)
  70. {
  71. size_t msglen;
  72. if ((htype != SSL3_MT_CHANGE_CIPHER_SPEC && !WPACKET_close(pkt))
  73. || !WPACKET_get_length(pkt, &msglen)
  74. || msglen > INT_MAX)
  75. return 0;
  76. s->init_num = (int)msglen;
  77. s->init_off = 0;
  78. return 1;
  79. }
  80. int tls_setup_handshake(SSL *s)
  81. {
  82. if (!ssl3_init_finished_mac(s)) {
  83. /* SSLfatal() already called */
  84. return 0;
  85. }
  86. /* Reset any extension flags */
  87. memset(s->ext.extflags, 0, sizeof(s->ext.extflags));
  88. if (s->server) {
  89. STACK_OF(SSL_CIPHER) *ciphers = SSL_get_ciphers(s);
  90. int i, ver_min, ver_max, ok = 0;
  91. /*
  92. * Sanity check that the maximum version we accept has ciphers
  93. * enabled. For clients we do this check during construction of the
  94. * ClientHello.
  95. */
  96. if (ssl_get_min_max_version(s, &ver_min, &ver_max, NULL) != 0) {
  97. SSLfatal(s, SSL_AD_INTERNAL_ERROR, SSL_F_TLS_SETUP_HANDSHAKE,
  98. ERR_R_INTERNAL_ERROR);
  99. return 0;
  100. }
  101. for (i = 0; i < sk_SSL_CIPHER_num(ciphers); i++) {
  102. const SSL_CIPHER *c = sk_SSL_CIPHER_value(ciphers, i);
  103. if (SSL_IS_DTLS(s)) {
  104. if (DTLS_VERSION_GE(ver_max, c->min_dtls) &&
  105. DTLS_VERSION_LE(ver_max, c->max_dtls))
  106. ok = 1;
  107. } else if (ver_max >= c->min_tls && ver_max <= c->max_tls) {
  108. ok = 1;
  109. }
  110. if (ok)
  111. break;
  112. }
  113. if (!ok) {
  114. SSLfatal(s, SSL_AD_HANDSHAKE_FAILURE, SSL_F_TLS_SETUP_HANDSHAKE,
  115. SSL_R_NO_CIPHERS_AVAILABLE);
  116. ERR_add_error_data(1, "No ciphers enabled for max supported "
  117. "SSL/TLS version");
  118. return 0;
  119. }
  120. if (SSL_IS_FIRST_HANDSHAKE(s)) {
  121. /* N.B. s->session_ctx == s->ctx here */
  122. tsan_counter(&s->session_ctx->stats.sess_accept);
  123. } else {
  124. /* N.B. s->ctx may not equal s->session_ctx */
  125. tsan_counter(&s->ctx->stats.sess_accept_renegotiate);
  126. s->s3->tmp.cert_request = 0;
  127. }
  128. } else {
  129. if (SSL_IS_FIRST_HANDSHAKE(s))
  130. tsan_counter(&s->session_ctx->stats.sess_connect);
  131. else
  132. tsan_counter(&s->session_ctx->stats.sess_connect_renegotiate);
  133. /* mark client_random uninitialized */
  134. memset(s->s3->client_random, 0, sizeof(s->s3->client_random));
  135. s->hit = 0;
  136. s->s3->tmp.cert_req = 0;
  137. if (SSL_IS_DTLS(s))
  138. s->statem.use_timer = 1;
  139. }
  140. return 1;
  141. }
  142. /*
  143. * Size of the to-be-signed TLS13 data, without the hash size itself:
  144. * 64 bytes of value 32, 33 context bytes, 1 byte separator
  145. */
  146. #define TLS13_TBS_START_SIZE 64
  147. #define TLS13_TBS_PREAMBLE_SIZE (TLS13_TBS_START_SIZE + 33 + 1)
  148. static int get_cert_verify_tbs_data(SSL *s, unsigned char *tls13tbs,
  149. void **hdata, size_t *hdatalen)
  150. {
  151. static const char *servercontext = "TLS 1.3, server CertificateVerify";
  152. static const char *clientcontext = "TLS 1.3, client CertificateVerify";
  153. if (SSL_IS_TLS13(s)) {
  154. size_t hashlen;
  155. /* Set the first 64 bytes of to-be-signed data to octet 32 */
  156. memset(tls13tbs, 32, TLS13_TBS_START_SIZE);
  157. /* This copies the 33 bytes of context plus the 0 separator byte */
  158. if (s->statem.hand_state == TLS_ST_CR_CERT_VRFY
  159. || s->statem.hand_state == TLS_ST_SW_CERT_VRFY)
  160. strcpy((char *)tls13tbs + TLS13_TBS_START_SIZE, servercontext);
  161. else
  162. strcpy((char *)tls13tbs + TLS13_TBS_START_SIZE, clientcontext);
  163. /*
  164. * If we're currently reading then we need to use the saved handshake
  165. * hash value. We can't use the current handshake hash state because
  166. * that includes the CertVerify itself.
  167. */
  168. if (s->statem.hand_state == TLS_ST_CR_CERT_VRFY
  169. || s->statem.hand_state == TLS_ST_SR_CERT_VRFY) {
  170. memcpy(tls13tbs + TLS13_TBS_PREAMBLE_SIZE, s->cert_verify_hash,
  171. s->cert_verify_hash_len);
  172. hashlen = s->cert_verify_hash_len;
  173. } else if (!ssl_handshake_hash(s, tls13tbs + TLS13_TBS_PREAMBLE_SIZE,
  174. EVP_MAX_MD_SIZE, &hashlen)) {
  175. /* SSLfatal() already called */
  176. return 0;
  177. }
  178. *hdata = tls13tbs;
  179. *hdatalen = TLS13_TBS_PREAMBLE_SIZE + hashlen;
  180. } else {
  181. size_t retlen;
  182. long retlen_l;
  183. retlen = retlen_l = BIO_get_mem_data(s->s3->handshake_buffer, hdata);
  184. if (retlen_l <= 0) {
  185. SSLfatal(s, SSL_AD_INTERNAL_ERROR, SSL_F_GET_CERT_VERIFY_TBS_DATA,
  186. ERR_R_INTERNAL_ERROR);
  187. return 0;
  188. }
  189. *hdatalen = retlen;
  190. }
  191. return 1;
  192. }
  193. int tls_construct_cert_verify(SSL *s, WPACKET *pkt)
  194. {
  195. EVP_PKEY *pkey = NULL;
  196. const EVP_MD *md = NULL;
  197. EVP_MD_CTX *mctx = NULL;
  198. EVP_PKEY_CTX *pctx = NULL;
  199. size_t hdatalen = 0, siglen = 0;
  200. void *hdata;
  201. unsigned char *sig = NULL;
  202. unsigned char tls13tbs[TLS13_TBS_PREAMBLE_SIZE + EVP_MAX_MD_SIZE];
  203. const SIGALG_LOOKUP *lu = s->s3->tmp.sigalg;
  204. if (lu == NULL || s->s3->tmp.cert == NULL) {
  205. SSLfatal(s, SSL_AD_INTERNAL_ERROR, SSL_F_TLS_CONSTRUCT_CERT_VERIFY,
  206. ERR_R_INTERNAL_ERROR);
  207. goto err;
  208. }
  209. pkey = s->s3->tmp.cert->privatekey;
  210. if (pkey == NULL || !tls1_lookup_md(lu, &md)) {
  211. SSLfatal(s, SSL_AD_INTERNAL_ERROR, SSL_F_TLS_CONSTRUCT_CERT_VERIFY,
  212. ERR_R_INTERNAL_ERROR);
  213. goto err;
  214. }
  215. mctx = EVP_MD_CTX_new();
  216. if (mctx == NULL) {
  217. SSLfatal(s, SSL_AD_INTERNAL_ERROR, SSL_F_TLS_CONSTRUCT_CERT_VERIFY,
  218. ERR_R_MALLOC_FAILURE);
  219. goto err;
  220. }
  221. /* Get the data to be signed */
  222. if (!get_cert_verify_tbs_data(s, tls13tbs, &hdata, &hdatalen)) {
  223. /* SSLfatal() already called */
  224. goto err;
  225. }
  226. if (SSL_USE_SIGALGS(s) && !WPACKET_put_bytes_u16(pkt, lu->sigalg)) {
  227. SSLfatal(s, SSL_AD_INTERNAL_ERROR, SSL_F_TLS_CONSTRUCT_CERT_VERIFY,
  228. ERR_R_INTERNAL_ERROR);
  229. goto err;
  230. }
  231. siglen = EVP_PKEY_size(pkey);
  232. sig = OPENSSL_malloc(siglen);
  233. if (sig == NULL) {
  234. SSLfatal(s, SSL_AD_INTERNAL_ERROR, SSL_F_TLS_CONSTRUCT_CERT_VERIFY,
  235. ERR_R_MALLOC_FAILURE);
  236. goto err;
  237. }
  238. if (EVP_DigestSignInit(mctx, &pctx, md, NULL, pkey) <= 0) {
  239. SSLfatal(s, SSL_AD_INTERNAL_ERROR, SSL_F_TLS_CONSTRUCT_CERT_VERIFY,
  240. ERR_R_EVP_LIB);
  241. goto err;
  242. }
  243. if (lu->sig == EVP_PKEY_RSA_PSS) {
  244. if (EVP_PKEY_CTX_set_rsa_padding(pctx, RSA_PKCS1_PSS_PADDING) <= 0
  245. || EVP_PKEY_CTX_set_rsa_pss_saltlen(pctx,
  246. RSA_PSS_SALTLEN_DIGEST) <= 0) {
  247. SSLfatal(s, SSL_AD_INTERNAL_ERROR, SSL_F_TLS_CONSTRUCT_CERT_VERIFY,
  248. ERR_R_EVP_LIB);
  249. goto err;
  250. }
  251. }
  252. if (s->version == SSL3_VERSION) {
  253. if (EVP_DigestSignUpdate(mctx, hdata, hdatalen) <= 0
  254. || !EVP_MD_CTX_ctrl(mctx, EVP_CTRL_SSL3_MASTER_SECRET,
  255. (int)s->session->master_key_length,
  256. s->session->master_key)
  257. || EVP_DigestSignFinal(mctx, sig, &siglen) <= 0) {
  258. SSLfatal(s, SSL_AD_INTERNAL_ERROR, SSL_F_TLS_CONSTRUCT_CERT_VERIFY,
  259. ERR_R_EVP_LIB);
  260. goto err;
  261. }
  262. } else if (EVP_DigestSign(mctx, sig, &siglen, hdata, hdatalen) <= 0) {
  263. SSLfatal(s, SSL_AD_INTERNAL_ERROR, SSL_F_TLS_CONSTRUCT_CERT_VERIFY,
  264. ERR_R_EVP_LIB);
  265. goto err;
  266. }
  267. #ifndef OPENSSL_NO_GOST
  268. {
  269. int pktype = lu->sig;
  270. if (pktype == NID_id_GostR3410_2001
  271. || pktype == NID_id_GostR3410_2012_256
  272. || pktype == NID_id_GostR3410_2012_512)
  273. BUF_reverse(sig, NULL, siglen);
  274. }
  275. #endif
  276. if (!WPACKET_sub_memcpy_u16(pkt, sig, siglen)) {
  277. SSLfatal(s, SSL_AD_INTERNAL_ERROR, SSL_F_TLS_CONSTRUCT_CERT_VERIFY,
  278. ERR_R_INTERNAL_ERROR);
  279. goto err;
  280. }
  281. /* Digest cached records and discard handshake buffer */
  282. if (!ssl3_digest_cached_records(s, 0)) {
  283. /* SSLfatal() already called */
  284. goto err;
  285. }
  286. OPENSSL_free(sig);
  287. EVP_MD_CTX_free(mctx);
  288. return 1;
  289. err:
  290. OPENSSL_free(sig);
  291. EVP_MD_CTX_free(mctx);
  292. return 0;
  293. }
  294. MSG_PROCESS_RETURN tls_process_cert_verify(SSL *s, PACKET *pkt)
  295. {
  296. EVP_PKEY *pkey = NULL;
  297. const unsigned char *data;
  298. #ifndef OPENSSL_NO_GOST
  299. unsigned char *gost_data = NULL;
  300. #endif
  301. MSG_PROCESS_RETURN ret = MSG_PROCESS_ERROR;
  302. int j;
  303. unsigned int len;
  304. X509 *peer;
  305. const EVP_MD *md = NULL;
  306. size_t hdatalen = 0;
  307. void *hdata;
  308. unsigned char tls13tbs[TLS13_TBS_PREAMBLE_SIZE + EVP_MAX_MD_SIZE];
  309. EVP_MD_CTX *mctx = EVP_MD_CTX_new();
  310. EVP_PKEY_CTX *pctx = NULL;
  311. if (mctx == NULL) {
  312. SSLfatal(s, SSL_AD_INTERNAL_ERROR, SSL_F_TLS_PROCESS_CERT_VERIFY,
  313. ERR_R_MALLOC_FAILURE);
  314. goto err;
  315. }
  316. peer = s->session->peer;
  317. pkey = X509_get0_pubkey(peer);
  318. if (pkey == NULL) {
  319. SSLfatal(s, SSL_AD_INTERNAL_ERROR, SSL_F_TLS_PROCESS_CERT_VERIFY,
  320. ERR_R_INTERNAL_ERROR);
  321. goto err;
  322. }
  323. if (ssl_cert_lookup_by_pkey(pkey, NULL) == NULL) {
  324. SSLfatal(s, SSL_AD_ILLEGAL_PARAMETER, SSL_F_TLS_PROCESS_CERT_VERIFY,
  325. SSL_R_SIGNATURE_FOR_NON_SIGNING_CERTIFICATE);
  326. goto err;
  327. }
  328. if (SSL_USE_SIGALGS(s)) {
  329. unsigned int sigalg;
  330. if (!PACKET_get_net_2(pkt, &sigalg)) {
  331. SSLfatal(s, SSL_AD_DECODE_ERROR, SSL_F_TLS_PROCESS_CERT_VERIFY,
  332. SSL_R_BAD_PACKET);
  333. goto err;
  334. }
  335. if (tls12_check_peer_sigalg(s, sigalg, pkey) <= 0) {
  336. /* SSLfatal() already called */
  337. goto err;
  338. }
  339. } else if (!tls1_set_peer_legacy_sigalg(s, pkey)) {
  340. SSLfatal(s, SSL_AD_INTERNAL_ERROR, SSL_F_TLS_PROCESS_CERT_VERIFY,
  341. ERR_R_INTERNAL_ERROR);
  342. goto err;
  343. }
  344. if (!tls1_lookup_md(s->s3->tmp.peer_sigalg, &md)) {
  345. SSLfatal(s, SSL_AD_INTERNAL_ERROR, SSL_F_TLS_PROCESS_CERT_VERIFY,
  346. ERR_R_INTERNAL_ERROR);
  347. goto err;
  348. }
  349. #ifdef SSL_DEBUG
  350. if (SSL_USE_SIGALGS(s))
  351. fprintf(stderr, "USING TLSv1.2 HASH %s\n",
  352. md == NULL ? "n/a" : EVP_MD_name(md));
  353. #endif
  354. /* Check for broken implementations of GOST ciphersuites */
  355. /*
  356. * If key is GOST and len is exactly 64 or 128, it is signature without
  357. * length field (CryptoPro implementations at least till TLS 1.2)
  358. */
  359. #ifndef OPENSSL_NO_GOST
  360. if (!SSL_USE_SIGALGS(s)
  361. && ((PACKET_remaining(pkt) == 64
  362. && (EVP_PKEY_id(pkey) == NID_id_GostR3410_2001
  363. || EVP_PKEY_id(pkey) == NID_id_GostR3410_2012_256))
  364. || (PACKET_remaining(pkt) == 128
  365. && EVP_PKEY_id(pkey) == NID_id_GostR3410_2012_512))) {
  366. len = PACKET_remaining(pkt);
  367. } else
  368. #endif
  369. if (!PACKET_get_net_2(pkt, &len)) {
  370. SSLfatal(s, SSL_AD_DECODE_ERROR, SSL_F_TLS_PROCESS_CERT_VERIFY,
  371. SSL_R_LENGTH_MISMATCH);
  372. goto err;
  373. }
  374. j = EVP_PKEY_size(pkey);
  375. if (((int)len > j) || ((int)PACKET_remaining(pkt) > j)
  376. || (PACKET_remaining(pkt) == 0)) {
  377. SSLfatal(s, SSL_AD_DECODE_ERROR, SSL_F_TLS_PROCESS_CERT_VERIFY,
  378. SSL_R_WRONG_SIGNATURE_SIZE);
  379. goto err;
  380. }
  381. if (!PACKET_get_bytes(pkt, &data, len)) {
  382. SSLfatal(s, SSL_AD_DECODE_ERROR, SSL_F_TLS_PROCESS_CERT_VERIFY,
  383. SSL_R_LENGTH_MISMATCH);
  384. goto err;
  385. }
  386. if (!get_cert_verify_tbs_data(s, tls13tbs, &hdata, &hdatalen)) {
  387. /* SSLfatal() already called */
  388. goto err;
  389. }
  390. #ifdef SSL_DEBUG
  391. fprintf(stderr, "Using client verify alg %s\n",
  392. md == NULL ? "n/a" : EVP_MD_name(md));
  393. #endif
  394. if (EVP_DigestVerifyInit(mctx, &pctx, md, NULL, pkey) <= 0) {
  395. SSLfatal(s, SSL_AD_INTERNAL_ERROR, SSL_F_TLS_PROCESS_CERT_VERIFY,
  396. ERR_R_EVP_LIB);
  397. goto err;
  398. }
  399. #ifndef OPENSSL_NO_GOST
  400. {
  401. int pktype = EVP_PKEY_id(pkey);
  402. if (pktype == NID_id_GostR3410_2001
  403. || pktype == NID_id_GostR3410_2012_256
  404. || pktype == NID_id_GostR3410_2012_512) {
  405. if ((gost_data = OPENSSL_malloc(len)) == NULL) {
  406. SSLfatal(s, SSL_AD_INTERNAL_ERROR,
  407. SSL_F_TLS_PROCESS_CERT_VERIFY, ERR_R_MALLOC_FAILURE);
  408. goto err;
  409. }
  410. BUF_reverse(gost_data, data, len);
  411. data = gost_data;
  412. }
  413. }
  414. #endif
  415. if (SSL_USE_PSS(s)) {
  416. if (EVP_PKEY_CTX_set_rsa_padding(pctx, RSA_PKCS1_PSS_PADDING) <= 0
  417. || EVP_PKEY_CTX_set_rsa_pss_saltlen(pctx,
  418. RSA_PSS_SALTLEN_DIGEST) <= 0) {
  419. SSLfatal(s, SSL_AD_INTERNAL_ERROR, SSL_F_TLS_PROCESS_CERT_VERIFY,
  420. ERR_R_EVP_LIB);
  421. goto err;
  422. }
  423. }
  424. if (s->version == SSL3_VERSION) {
  425. if (EVP_DigestVerifyUpdate(mctx, hdata, hdatalen) <= 0
  426. || !EVP_MD_CTX_ctrl(mctx, EVP_CTRL_SSL3_MASTER_SECRET,
  427. (int)s->session->master_key_length,
  428. s->session->master_key)) {
  429. SSLfatal(s, SSL_AD_INTERNAL_ERROR, SSL_F_TLS_PROCESS_CERT_VERIFY,
  430. ERR_R_EVP_LIB);
  431. goto err;
  432. }
  433. if (EVP_DigestVerifyFinal(mctx, data, len) <= 0) {
  434. SSLfatal(s, SSL_AD_DECRYPT_ERROR, SSL_F_TLS_PROCESS_CERT_VERIFY,
  435. SSL_R_BAD_SIGNATURE);
  436. goto err;
  437. }
  438. } else {
  439. j = EVP_DigestVerify(mctx, data, len, hdata, hdatalen);
  440. if (j <= 0) {
  441. SSLfatal(s, SSL_AD_DECRYPT_ERROR, SSL_F_TLS_PROCESS_CERT_VERIFY,
  442. SSL_R_BAD_SIGNATURE);
  443. goto err;
  444. }
  445. }
  446. /*
  447. * In TLSv1.3 on the client side we make sure we prepare the client
  448. * certificate after the CertVerify instead of when we get the
  449. * CertificateRequest. This is because in TLSv1.3 the CertificateRequest
  450. * comes *before* the Certificate message. In TLSv1.2 it comes after. We
  451. * want to make sure that SSL_get_peer_certificate() will return the actual
  452. * server certificate from the client_cert_cb callback.
  453. */
  454. if (!s->server && SSL_IS_TLS13(s) && s->s3->tmp.cert_req == 1)
  455. ret = MSG_PROCESS_CONTINUE_PROCESSING;
  456. else
  457. ret = MSG_PROCESS_CONTINUE_READING;
  458. err:
  459. BIO_free(s->s3->handshake_buffer);
  460. s->s3->handshake_buffer = NULL;
  461. EVP_MD_CTX_free(mctx);
  462. #ifndef OPENSSL_NO_GOST
  463. OPENSSL_free(gost_data);
  464. #endif
  465. return ret;
  466. }
  467. int tls_construct_finished(SSL *s, WPACKET *pkt)
  468. {
  469. size_t finish_md_len;
  470. const char *sender;
  471. size_t slen;
  472. /* This is a real handshake so make sure we clean it up at the end */
  473. if (!s->server && s->post_handshake_auth != SSL_PHA_REQUESTED)
  474. s->statem.cleanuphand = 1;
  475. /*
  476. * We only change the keys if we didn't already do this when we sent the
  477. * client certificate
  478. */
  479. if (SSL_IS_TLS13(s)
  480. && !s->server
  481. && s->s3->tmp.cert_req == 0
  482. && (!s->method->ssl3_enc->change_cipher_state(s,
  483. SSL3_CC_HANDSHAKE | SSL3_CHANGE_CIPHER_CLIENT_WRITE))) {;
  484. /* SSLfatal() already called */
  485. return 0;
  486. }
  487. if (s->server) {
  488. sender = s->method->ssl3_enc->server_finished_label;
  489. slen = s->method->ssl3_enc->server_finished_label_len;
  490. } else {
  491. sender = s->method->ssl3_enc->client_finished_label;
  492. slen = s->method->ssl3_enc->client_finished_label_len;
  493. }
  494. finish_md_len = s->method->ssl3_enc->final_finish_mac(s,
  495. sender, slen,
  496. s->s3->tmp.finish_md);
  497. if (finish_md_len == 0) {
  498. /* SSLfatal() already called */
  499. return 0;
  500. }
  501. s->s3->tmp.finish_md_len = finish_md_len;
  502. if (!WPACKET_memcpy(pkt, s->s3->tmp.finish_md, finish_md_len)) {
  503. SSLfatal(s, SSL_AD_INTERNAL_ERROR, SSL_F_TLS_CONSTRUCT_FINISHED,
  504. ERR_R_INTERNAL_ERROR);
  505. return 0;
  506. }
  507. /*
  508. * Log the master secret, if logging is enabled. We don't log it for
  509. * TLSv1.3: there's a different key schedule for that.
  510. */
  511. if (!SSL_IS_TLS13(s) && !ssl_log_secret(s, MASTER_SECRET_LABEL,
  512. s->session->master_key,
  513. s->session->master_key_length)) {
  514. /* SSLfatal() already called */
  515. return 0;
  516. }
  517. /*
  518. * Copy the finished so we can use it for renegotiation checks
  519. */
  520. if (!ossl_assert(finish_md_len <= EVP_MAX_MD_SIZE)) {
  521. SSLfatal(s, SSL_AD_INTERNAL_ERROR, SSL_F_TLS_CONSTRUCT_FINISHED,
  522. ERR_R_INTERNAL_ERROR);
  523. return 0;
  524. }
  525. if (!s->server) {
  526. memcpy(s->s3->previous_client_finished, s->s3->tmp.finish_md,
  527. finish_md_len);
  528. s->s3->previous_client_finished_len = finish_md_len;
  529. } else {
  530. memcpy(s->s3->previous_server_finished, s->s3->tmp.finish_md,
  531. finish_md_len);
  532. s->s3->previous_server_finished_len = finish_md_len;
  533. }
  534. return 1;
  535. }
  536. int tls_construct_key_update(SSL *s, WPACKET *pkt)
  537. {
  538. if (!WPACKET_put_bytes_u8(pkt, s->key_update)) {
  539. SSLfatal(s, SSL_AD_INTERNAL_ERROR, SSL_F_TLS_CONSTRUCT_KEY_UPDATE,
  540. ERR_R_INTERNAL_ERROR);
  541. return 0;
  542. }
  543. s->key_update = SSL_KEY_UPDATE_NONE;
  544. return 1;
  545. }
  546. MSG_PROCESS_RETURN tls_process_key_update(SSL *s, PACKET *pkt)
  547. {
  548. unsigned int updatetype;
  549. /*
  550. * A KeyUpdate message signals a key change so the end of the message must
  551. * be on a record boundary.
  552. */
  553. if (RECORD_LAYER_processed_read_pending(&s->rlayer)) {
  554. SSLfatal(s, SSL_AD_UNEXPECTED_MESSAGE, SSL_F_TLS_PROCESS_KEY_UPDATE,
  555. SSL_R_NOT_ON_RECORD_BOUNDARY);
  556. return MSG_PROCESS_ERROR;
  557. }
  558. if (!PACKET_get_1(pkt, &updatetype)
  559. || PACKET_remaining(pkt) != 0) {
  560. SSLfatal(s, SSL_AD_DECODE_ERROR, SSL_F_TLS_PROCESS_KEY_UPDATE,
  561. SSL_R_BAD_KEY_UPDATE);
  562. return MSG_PROCESS_ERROR;
  563. }
  564. /*
  565. * There are only two defined key update types. Fail if we get a value we
  566. * didn't recognise.
  567. */
  568. if (updatetype != SSL_KEY_UPDATE_NOT_REQUESTED
  569. && updatetype != SSL_KEY_UPDATE_REQUESTED) {
  570. SSLfatal(s, SSL_AD_ILLEGAL_PARAMETER, SSL_F_TLS_PROCESS_KEY_UPDATE,
  571. SSL_R_BAD_KEY_UPDATE);
  572. return MSG_PROCESS_ERROR;
  573. }
  574. /*
  575. * If we get a request for us to update our sending keys too then, we need
  576. * to additionally send a KeyUpdate message. However that message should
  577. * not also request an update (otherwise we get into an infinite loop). We
  578. * ignore a request for us to update our sending keys too if we already
  579. * sent close_notify.
  580. */
  581. if (updatetype == SSL_KEY_UPDATE_REQUESTED
  582. && (s->shutdown & SSL_SENT_SHUTDOWN) == 0)
  583. s->key_update = SSL_KEY_UPDATE_NOT_REQUESTED;
  584. if (!tls13_update_key(s, 0)) {
  585. /* SSLfatal() already called */
  586. return MSG_PROCESS_ERROR;
  587. }
  588. return MSG_PROCESS_FINISHED_READING;
  589. }
  590. /*
  591. * ssl3_take_mac calculates the Finished MAC for the handshakes messages seen
  592. * to far.
  593. */
  594. int ssl3_take_mac(SSL *s)
  595. {
  596. const char *sender;
  597. size_t slen;
  598. if (!s->server) {
  599. sender = s->method->ssl3_enc->server_finished_label;
  600. slen = s->method->ssl3_enc->server_finished_label_len;
  601. } else {
  602. sender = s->method->ssl3_enc->client_finished_label;
  603. slen = s->method->ssl3_enc->client_finished_label_len;
  604. }
  605. s->s3->tmp.peer_finish_md_len =
  606. s->method->ssl3_enc->final_finish_mac(s, sender, slen,
  607. s->s3->tmp.peer_finish_md);
  608. if (s->s3->tmp.peer_finish_md_len == 0) {
  609. /* SSLfatal() already called */
  610. return 0;
  611. }
  612. return 1;
  613. }
  614. MSG_PROCESS_RETURN tls_process_change_cipher_spec(SSL *s, PACKET *pkt)
  615. {
  616. size_t remain;
  617. remain = PACKET_remaining(pkt);
  618. /*
  619. * 'Change Cipher Spec' is just a single byte, which should already have
  620. * been consumed by ssl_get_message() so there should be no bytes left,
  621. * unless we're using DTLS1_BAD_VER, which has an extra 2 bytes
  622. */
  623. if (SSL_IS_DTLS(s)) {
  624. if ((s->version == DTLS1_BAD_VER
  625. && remain != DTLS1_CCS_HEADER_LENGTH + 1)
  626. || (s->version != DTLS1_BAD_VER
  627. && remain != DTLS1_CCS_HEADER_LENGTH - 1)) {
  628. SSLfatal(s, SSL_AD_DECODE_ERROR,
  629. SSL_F_TLS_PROCESS_CHANGE_CIPHER_SPEC,
  630. SSL_R_BAD_CHANGE_CIPHER_SPEC);
  631. return MSG_PROCESS_ERROR;
  632. }
  633. } else {
  634. if (remain != 0) {
  635. SSLfatal(s, SSL_AD_DECODE_ERROR,
  636. SSL_F_TLS_PROCESS_CHANGE_CIPHER_SPEC,
  637. SSL_R_BAD_CHANGE_CIPHER_SPEC);
  638. return MSG_PROCESS_ERROR;
  639. }
  640. }
  641. /* Check we have a cipher to change to */
  642. if (s->s3->tmp.new_cipher == NULL) {
  643. SSLfatal(s, SSL_AD_UNEXPECTED_MESSAGE,
  644. SSL_F_TLS_PROCESS_CHANGE_CIPHER_SPEC, SSL_R_CCS_RECEIVED_EARLY);
  645. return MSG_PROCESS_ERROR;
  646. }
  647. s->s3->change_cipher_spec = 1;
  648. if (!ssl3_do_change_cipher_spec(s)) {
  649. SSLfatal(s, SSL_AD_INTERNAL_ERROR, SSL_F_TLS_PROCESS_CHANGE_CIPHER_SPEC,
  650. ERR_R_INTERNAL_ERROR);
  651. return MSG_PROCESS_ERROR;
  652. }
  653. if (SSL_IS_DTLS(s)) {
  654. dtls1_reset_seq_numbers(s, SSL3_CC_READ);
  655. if (s->version == DTLS1_BAD_VER)
  656. s->d1->handshake_read_seq++;
  657. #ifndef OPENSSL_NO_SCTP
  658. /*
  659. * Remember that a CCS has been received, so that an old key of
  660. * SCTP-Auth can be deleted when a CCS is sent. Will be ignored if no
  661. * SCTP is used
  662. */
  663. BIO_ctrl(SSL_get_wbio(s), BIO_CTRL_DGRAM_SCTP_AUTH_CCS_RCVD, 1, NULL);
  664. #endif
  665. }
  666. return MSG_PROCESS_CONTINUE_READING;
  667. }
  668. MSG_PROCESS_RETURN tls_process_finished(SSL *s, PACKET *pkt)
  669. {
  670. size_t md_len;
  671. /* This is a real handshake so make sure we clean it up at the end */
  672. if (s->server) {
  673. /*
  674. * To get this far we must have read encrypted data from the client. We
  675. * no longer tolerate unencrypted alerts. This value is ignored if less
  676. * than TLSv1.3
  677. */
  678. s->statem.enc_read_state = ENC_READ_STATE_VALID;
  679. if (s->post_handshake_auth != SSL_PHA_REQUESTED)
  680. s->statem.cleanuphand = 1;
  681. if (SSL_IS_TLS13(s) && !tls13_save_handshake_digest_for_pha(s)) {
  682. /* SSLfatal() already called */
  683. return MSG_PROCESS_ERROR;
  684. }
  685. }
  686. /*
  687. * In TLSv1.3 a Finished message signals a key change so the end of the
  688. * message must be on a record boundary.
  689. */
  690. if (SSL_IS_TLS13(s) && RECORD_LAYER_processed_read_pending(&s->rlayer)) {
  691. SSLfatal(s, SSL_AD_UNEXPECTED_MESSAGE, SSL_F_TLS_PROCESS_FINISHED,
  692. SSL_R_NOT_ON_RECORD_BOUNDARY);
  693. return MSG_PROCESS_ERROR;
  694. }
  695. /* If this occurs, we have missed a message */
  696. if (!SSL_IS_TLS13(s) && !s->s3->change_cipher_spec) {
  697. SSLfatal(s, SSL_AD_UNEXPECTED_MESSAGE, SSL_F_TLS_PROCESS_FINISHED,
  698. SSL_R_GOT_A_FIN_BEFORE_A_CCS);
  699. return MSG_PROCESS_ERROR;
  700. }
  701. s->s3->change_cipher_spec = 0;
  702. md_len = s->s3->tmp.peer_finish_md_len;
  703. if (md_len != PACKET_remaining(pkt)) {
  704. SSLfatal(s, SSL_AD_DECODE_ERROR, SSL_F_TLS_PROCESS_FINISHED,
  705. SSL_R_BAD_DIGEST_LENGTH);
  706. return MSG_PROCESS_ERROR;
  707. }
  708. if (CRYPTO_memcmp(PACKET_data(pkt), s->s3->tmp.peer_finish_md,
  709. md_len) != 0) {
  710. SSLfatal(s, SSL_AD_DECRYPT_ERROR, SSL_F_TLS_PROCESS_FINISHED,
  711. SSL_R_DIGEST_CHECK_FAILED);
  712. return MSG_PROCESS_ERROR;
  713. }
  714. /*
  715. * Copy the finished so we can use it for renegotiation checks
  716. */
  717. if (!ossl_assert(md_len <= EVP_MAX_MD_SIZE)) {
  718. SSLfatal(s, SSL_AD_INTERNAL_ERROR, SSL_F_TLS_PROCESS_FINISHED,
  719. ERR_R_INTERNAL_ERROR);
  720. return MSG_PROCESS_ERROR;
  721. }
  722. if (s->server) {
  723. memcpy(s->s3->previous_client_finished, s->s3->tmp.peer_finish_md,
  724. md_len);
  725. s->s3->previous_client_finished_len = md_len;
  726. } else {
  727. memcpy(s->s3->previous_server_finished, s->s3->tmp.peer_finish_md,
  728. md_len);
  729. s->s3->previous_server_finished_len = md_len;
  730. }
  731. /*
  732. * In TLS1.3 we also have to change cipher state and do any final processing
  733. * of the initial server flight (if we are a client)
  734. */
  735. if (SSL_IS_TLS13(s)) {
  736. if (s->server) {
  737. if (s->post_handshake_auth != SSL_PHA_REQUESTED &&
  738. !s->method->ssl3_enc->change_cipher_state(s,
  739. SSL3_CC_APPLICATION | SSL3_CHANGE_CIPHER_SERVER_READ)) {
  740. /* SSLfatal() already called */
  741. return MSG_PROCESS_ERROR;
  742. }
  743. } else {
  744. if (!s->method->ssl3_enc->generate_master_secret(s,
  745. s->master_secret, s->handshake_secret, 0,
  746. &s->session->master_key_length)) {
  747. /* SSLfatal() already called */
  748. return MSG_PROCESS_ERROR;
  749. }
  750. if (!s->method->ssl3_enc->change_cipher_state(s,
  751. SSL3_CC_APPLICATION | SSL3_CHANGE_CIPHER_CLIENT_READ)) {
  752. /* SSLfatal() already called */
  753. return MSG_PROCESS_ERROR;
  754. }
  755. if (!tls_process_initial_server_flight(s)) {
  756. /* SSLfatal() already called */
  757. return MSG_PROCESS_ERROR;
  758. }
  759. }
  760. }
  761. return MSG_PROCESS_FINISHED_READING;
  762. }
  763. int tls_construct_change_cipher_spec(SSL *s, WPACKET *pkt)
  764. {
  765. if (!WPACKET_put_bytes_u8(pkt, SSL3_MT_CCS)) {
  766. SSLfatal(s, SSL_AD_INTERNAL_ERROR,
  767. SSL_F_TLS_CONSTRUCT_CHANGE_CIPHER_SPEC, ERR_R_INTERNAL_ERROR);
  768. return 0;
  769. }
  770. return 1;
  771. }
  772. /* Add a certificate to the WPACKET */
  773. static int ssl_add_cert_to_wpacket(SSL *s, WPACKET *pkt, X509 *x, int chain)
  774. {
  775. int len;
  776. unsigned char *outbytes;
  777. len = i2d_X509(x, NULL);
  778. if (len < 0) {
  779. SSLfatal(s, SSL_AD_INTERNAL_ERROR, SSL_F_SSL_ADD_CERT_TO_WPACKET,
  780. ERR_R_BUF_LIB);
  781. return 0;
  782. }
  783. if (!WPACKET_sub_allocate_bytes_u24(pkt, len, &outbytes)
  784. || i2d_X509(x, &outbytes) != len) {
  785. SSLfatal(s, SSL_AD_INTERNAL_ERROR, SSL_F_SSL_ADD_CERT_TO_WPACKET,
  786. ERR_R_INTERNAL_ERROR);
  787. return 0;
  788. }
  789. if (SSL_IS_TLS13(s)
  790. && !tls_construct_extensions(s, pkt, SSL_EXT_TLS1_3_CERTIFICATE, x,
  791. chain)) {
  792. /* SSLfatal() already called */
  793. return 0;
  794. }
  795. return 1;
  796. }
  797. /* Add certificate chain to provided WPACKET */
  798. static int ssl_add_cert_chain(SSL *s, WPACKET *pkt, CERT_PKEY *cpk)
  799. {
  800. int i, chain_count;
  801. X509 *x;
  802. STACK_OF(X509) *extra_certs;
  803. STACK_OF(X509) *chain = NULL;
  804. X509_STORE *chain_store;
  805. if (cpk == NULL || cpk->x509 == NULL)
  806. return 1;
  807. x = cpk->x509;
  808. /*
  809. * If we have a certificate specific chain use it, else use parent ctx.
  810. */
  811. if (cpk->chain != NULL)
  812. extra_certs = cpk->chain;
  813. else
  814. extra_certs = s->ctx->extra_certs;
  815. if ((s->mode & SSL_MODE_NO_AUTO_CHAIN) || extra_certs)
  816. chain_store = NULL;
  817. else if (s->cert->chain_store)
  818. chain_store = s->cert->chain_store;
  819. else
  820. chain_store = s->ctx->cert_store;
  821. if (chain_store != NULL) {
  822. X509_STORE_CTX *xs_ctx = X509_STORE_CTX_new();
  823. if (xs_ctx == NULL) {
  824. SSLfatal(s, SSL_AD_INTERNAL_ERROR, SSL_F_SSL_ADD_CERT_CHAIN,
  825. ERR_R_MALLOC_FAILURE);
  826. return 0;
  827. }
  828. if (!X509_STORE_CTX_init(xs_ctx, chain_store, x, NULL)) {
  829. X509_STORE_CTX_free(xs_ctx);
  830. SSLfatal(s, SSL_AD_INTERNAL_ERROR, SSL_F_SSL_ADD_CERT_CHAIN,
  831. ERR_R_X509_LIB);
  832. return 0;
  833. }
  834. /*
  835. * It is valid for the chain not to be complete (because normally we
  836. * don't include the root cert in the chain). Therefore we deliberately
  837. * ignore the error return from this call. We're not actually verifying
  838. * the cert - we're just building as much of the chain as we can
  839. */
  840. (void)X509_verify_cert(xs_ctx);
  841. /* Don't leave errors in the queue */
  842. ERR_clear_error();
  843. chain = X509_STORE_CTX_get0_chain(xs_ctx);
  844. i = ssl_security_cert_chain(s, chain, NULL, 0);
  845. if (i != 1) {
  846. #if 0
  847. /* Dummy error calls so mkerr generates them */
  848. SSLerr(SSL_F_SSL_ADD_CERT_CHAIN, SSL_R_EE_KEY_TOO_SMALL);
  849. SSLerr(SSL_F_SSL_ADD_CERT_CHAIN, SSL_R_CA_KEY_TOO_SMALL);
  850. SSLerr(SSL_F_SSL_ADD_CERT_CHAIN, SSL_R_CA_MD_TOO_WEAK);
  851. #endif
  852. X509_STORE_CTX_free(xs_ctx);
  853. SSLfatal(s, SSL_AD_INTERNAL_ERROR, SSL_F_SSL_ADD_CERT_CHAIN, i);
  854. return 0;
  855. }
  856. chain_count = sk_X509_num(chain);
  857. for (i = 0; i < chain_count; i++) {
  858. x = sk_X509_value(chain, i);
  859. if (!ssl_add_cert_to_wpacket(s, pkt, x, i)) {
  860. /* SSLfatal() already called */
  861. X509_STORE_CTX_free(xs_ctx);
  862. return 0;
  863. }
  864. }
  865. X509_STORE_CTX_free(xs_ctx);
  866. } else {
  867. i = ssl_security_cert_chain(s, extra_certs, x, 0);
  868. if (i != 1) {
  869. SSLfatal(s, SSL_AD_INTERNAL_ERROR, SSL_F_SSL_ADD_CERT_CHAIN, i);
  870. return 0;
  871. }
  872. if (!ssl_add_cert_to_wpacket(s, pkt, x, 0)) {
  873. /* SSLfatal() already called */
  874. return 0;
  875. }
  876. for (i = 0; i < sk_X509_num(extra_certs); i++) {
  877. x = sk_X509_value(extra_certs, i);
  878. if (!ssl_add_cert_to_wpacket(s, pkt, x, i + 1)) {
  879. /* SSLfatal() already called */
  880. return 0;
  881. }
  882. }
  883. }
  884. return 1;
  885. }
  886. unsigned long ssl3_output_cert_chain(SSL *s, WPACKET *pkt, CERT_PKEY *cpk)
  887. {
  888. if (!WPACKET_start_sub_packet_u24(pkt)) {
  889. SSLfatal(s, SSL_AD_INTERNAL_ERROR, SSL_F_SSL3_OUTPUT_CERT_CHAIN,
  890. ERR_R_INTERNAL_ERROR);
  891. return 0;
  892. }
  893. if (!ssl_add_cert_chain(s, pkt, cpk))
  894. return 0;
  895. if (!WPACKET_close(pkt)) {
  896. SSLfatal(s, SSL_AD_INTERNAL_ERROR, SSL_F_SSL3_OUTPUT_CERT_CHAIN,
  897. ERR_R_INTERNAL_ERROR);
  898. return 0;
  899. }
  900. return 1;
  901. }
  902. /*
  903. * Tidy up after the end of a handshake. In the case of SCTP this may result
  904. * in NBIO events. If |clearbufs| is set then init_buf and the wbio buffer is
  905. * freed up as well.
  906. */
  907. WORK_STATE tls_finish_handshake(SSL *s, WORK_STATE wst, int clearbufs, int stop)
  908. {
  909. void (*cb) (const SSL *ssl, int type, int val) = NULL;
  910. int cleanuphand = s->statem.cleanuphand;
  911. if (clearbufs) {
  912. if (!SSL_IS_DTLS(s)) {
  913. /*
  914. * We don't do this in DTLS because we may still need the init_buf
  915. * in case there are any unexpected retransmits
  916. */
  917. BUF_MEM_free(s->init_buf);
  918. s->init_buf = NULL;
  919. }
  920. if (!ssl_free_wbio_buffer(s)) {
  921. SSLfatal(s, SSL_AD_INTERNAL_ERROR, SSL_F_TLS_FINISH_HANDSHAKE,
  922. ERR_R_INTERNAL_ERROR);
  923. return WORK_ERROR;
  924. }
  925. s->init_num = 0;
  926. }
  927. if (SSL_IS_TLS13(s) && !s->server
  928. && s->post_handshake_auth == SSL_PHA_REQUESTED)
  929. s->post_handshake_auth = SSL_PHA_EXT_SENT;
  930. /*
  931. * Only set if there was a Finished message and this isn't after a TLSv1.3
  932. * post handshake exchange
  933. */
  934. if (cleanuphand) {
  935. /* skipped if we just sent a HelloRequest */
  936. s->renegotiate = 0;
  937. s->new_session = 0;
  938. s->statem.cleanuphand = 0;
  939. s->ext.ticket_expected = 0;
  940. ssl3_cleanup_key_block(s);
  941. if (s->server) {
  942. /*
  943. * In TLSv1.3 we update the cache as part of constructing the
  944. * NewSessionTicket
  945. */
  946. if (!SSL_IS_TLS13(s))
  947. ssl_update_cache(s, SSL_SESS_CACHE_SERVER);
  948. /* N.B. s->ctx may not equal s->session_ctx */
  949. tsan_counter(&s->ctx->stats.sess_accept_good);
  950. s->handshake_func = ossl_statem_accept;
  951. } else {
  952. if (SSL_IS_TLS13(s)) {
  953. /*
  954. * We encourage applications to only use TLSv1.3 tickets once,
  955. * so we remove this one from the cache.
  956. */
  957. if ((s->session_ctx->session_cache_mode
  958. & SSL_SESS_CACHE_CLIENT) != 0)
  959. SSL_CTX_remove_session(s->session_ctx, s->session);
  960. } else {
  961. /*
  962. * In TLSv1.3 we update the cache as part of processing the
  963. * NewSessionTicket
  964. */
  965. ssl_update_cache(s, SSL_SESS_CACHE_CLIENT);
  966. }
  967. if (s->hit)
  968. tsan_counter(&s->session_ctx->stats.sess_hit);
  969. s->handshake_func = ossl_statem_connect;
  970. tsan_counter(&s->session_ctx->stats.sess_connect_good);
  971. }
  972. if (SSL_IS_DTLS(s)) {
  973. /* done with handshaking */
  974. s->d1->handshake_read_seq = 0;
  975. s->d1->handshake_write_seq = 0;
  976. s->d1->next_handshake_write_seq = 0;
  977. dtls1_clear_received_buffer(s);
  978. }
  979. }
  980. if (s->info_callback != NULL)
  981. cb = s->info_callback;
  982. else if (s->ctx->info_callback != NULL)
  983. cb = s->ctx->info_callback;
  984. /* The callback may expect us to not be in init at handshake done */
  985. ossl_statem_set_in_init(s, 0);
  986. if (cb != NULL) {
  987. if (cleanuphand
  988. || !SSL_IS_TLS13(s)
  989. || SSL_IS_FIRST_HANDSHAKE(s))
  990. cb(s, SSL_CB_HANDSHAKE_DONE, 1);
  991. }
  992. if (!stop) {
  993. /* If we've got more work to do we go back into init */
  994. ossl_statem_set_in_init(s, 1);
  995. return WORK_FINISHED_CONTINUE;
  996. }
  997. return WORK_FINISHED_STOP;
  998. }
  999. int tls_get_message_header(SSL *s, int *mt)
  1000. {
  1001. /* s->init_num < SSL3_HM_HEADER_LENGTH */
  1002. int skip_message, i, recvd_type;
  1003. unsigned char *p;
  1004. size_t l, readbytes;
  1005. p = (unsigned char *)s->init_buf->data;
  1006. do {
  1007. while (s->init_num < SSL3_HM_HEADER_LENGTH) {
  1008. i = s->method->ssl_read_bytes(s, SSL3_RT_HANDSHAKE, &recvd_type,
  1009. &p[s->init_num],
  1010. SSL3_HM_HEADER_LENGTH - s->init_num,
  1011. 0, &readbytes);
  1012. if (i <= 0) {
  1013. s->rwstate = SSL_READING;
  1014. return 0;
  1015. }
  1016. if (recvd_type == SSL3_RT_CHANGE_CIPHER_SPEC) {
  1017. /*
  1018. * A ChangeCipherSpec must be a single byte and may not occur
  1019. * in the middle of a handshake message.
  1020. */
  1021. if (s->init_num != 0 || readbytes != 1 || p[0] != SSL3_MT_CCS) {
  1022. SSLfatal(s, SSL_AD_UNEXPECTED_MESSAGE,
  1023. SSL_F_TLS_GET_MESSAGE_HEADER,
  1024. SSL_R_BAD_CHANGE_CIPHER_SPEC);
  1025. return 0;
  1026. }
  1027. if (s->statem.hand_state == TLS_ST_BEFORE
  1028. && (s->s3->flags & TLS1_FLAGS_STATELESS) != 0) {
  1029. /*
  1030. * We are stateless and we received a CCS. Probably this is
  1031. * from a client between the first and second ClientHellos.
  1032. * We should ignore this, but return an error because we do
  1033. * not return success until we see the second ClientHello
  1034. * with a valid cookie.
  1035. */
  1036. return 0;
  1037. }
  1038. s->s3->tmp.message_type = *mt = SSL3_MT_CHANGE_CIPHER_SPEC;
  1039. s->init_num = readbytes - 1;
  1040. s->init_msg = s->init_buf->data;
  1041. s->s3->tmp.message_size = readbytes;
  1042. return 1;
  1043. } else if (recvd_type != SSL3_RT_HANDSHAKE) {
  1044. SSLfatal(s, SSL_AD_UNEXPECTED_MESSAGE,
  1045. SSL_F_TLS_GET_MESSAGE_HEADER,
  1046. SSL_R_CCS_RECEIVED_EARLY);
  1047. return 0;
  1048. }
  1049. s->init_num += readbytes;
  1050. }
  1051. skip_message = 0;
  1052. if (!s->server)
  1053. if (s->statem.hand_state != TLS_ST_OK
  1054. && p[0] == SSL3_MT_HELLO_REQUEST)
  1055. /*
  1056. * The server may always send 'Hello Request' messages --
  1057. * we are doing a handshake anyway now, so ignore them if
  1058. * their format is correct. Does not count for 'Finished'
  1059. * MAC.
  1060. */
  1061. if (p[1] == 0 && p[2] == 0 && p[3] == 0) {
  1062. s->init_num = 0;
  1063. skip_message = 1;
  1064. if (s->msg_callback)
  1065. s->msg_callback(0, s->version, SSL3_RT_HANDSHAKE,
  1066. p, SSL3_HM_HEADER_LENGTH, s,
  1067. s->msg_callback_arg);
  1068. }
  1069. } while (skip_message);
  1070. /* s->init_num == SSL3_HM_HEADER_LENGTH */
  1071. *mt = *p;
  1072. s->s3->tmp.message_type = *(p++);
  1073. if (RECORD_LAYER_is_sslv2_record(&s->rlayer)) {
  1074. /*
  1075. * Only happens with SSLv3+ in an SSLv2 backward compatible
  1076. * ClientHello
  1077. *
  1078. * Total message size is the remaining record bytes to read
  1079. * plus the SSL3_HM_HEADER_LENGTH bytes that we already read
  1080. */
  1081. l = RECORD_LAYER_get_rrec_length(&s->rlayer)
  1082. + SSL3_HM_HEADER_LENGTH;
  1083. s->s3->tmp.message_size = l;
  1084. s->init_msg = s->init_buf->data;
  1085. s->init_num = SSL3_HM_HEADER_LENGTH;
  1086. } else {
  1087. n2l3(p, l);
  1088. /* BUF_MEM_grow takes an 'int' parameter */
  1089. if (l > (INT_MAX - SSL3_HM_HEADER_LENGTH)) {
  1090. SSLfatal(s, SSL_AD_ILLEGAL_PARAMETER, SSL_F_TLS_GET_MESSAGE_HEADER,
  1091. SSL_R_EXCESSIVE_MESSAGE_SIZE);
  1092. return 0;
  1093. }
  1094. s->s3->tmp.message_size = l;
  1095. s->init_msg = s->init_buf->data + SSL3_HM_HEADER_LENGTH;
  1096. s->init_num = 0;
  1097. }
  1098. return 1;
  1099. }
  1100. int tls_get_message_body(SSL *s, size_t *len)
  1101. {
  1102. size_t n, readbytes;
  1103. unsigned char *p;
  1104. int i;
  1105. if (s->s3->tmp.message_type == SSL3_MT_CHANGE_CIPHER_SPEC) {
  1106. /* We've already read everything in */
  1107. *len = (unsigned long)s->init_num;
  1108. return 1;
  1109. }
  1110. p = s->init_msg;
  1111. n = s->s3->tmp.message_size - s->init_num;
  1112. while (n > 0) {
  1113. i = s->method->ssl_read_bytes(s, SSL3_RT_HANDSHAKE, NULL,
  1114. &p[s->init_num], n, 0, &readbytes);
  1115. if (i <= 0) {
  1116. s->rwstate = SSL_READING;
  1117. *len = 0;
  1118. return 0;
  1119. }
  1120. s->init_num += readbytes;
  1121. n -= readbytes;
  1122. }
  1123. /*
  1124. * If receiving Finished, record MAC of prior handshake messages for
  1125. * Finished verification.
  1126. */
  1127. if (*(s->init_buf->data) == SSL3_MT_FINISHED && !ssl3_take_mac(s)) {
  1128. /* SSLfatal() already called */
  1129. *len = 0;
  1130. return 0;
  1131. }
  1132. /* Feed this message into MAC computation. */
  1133. if (RECORD_LAYER_is_sslv2_record(&s->rlayer)) {
  1134. if (!ssl3_finish_mac(s, (unsigned char *)s->init_buf->data,
  1135. s->init_num)) {
  1136. /* SSLfatal() already called */
  1137. *len = 0;
  1138. return 0;
  1139. }
  1140. if (s->msg_callback)
  1141. s->msg_callback(0, SSL2_VERSION, 0, s->init_buf->data,
  1142. (size_t)s->init_num, s, s->msg_callback_arg);
  1143. } else {
  1144. /*
  1145. * We defer feeding in the HRR until later. We'll do it as part of
  1146. * processing the message
  1147. * The TLsv1.3 handshake transcript stops at the ClientFinished
  1148. * message.
  1149. */
  1150. #define SERVER_HELLO_RANDOM_OFFSET (SSL3_HM_HEADER_LENGTH + 2)
  1151. /* KeyUpdate and NewSessionTicket do not need to be added */
  1152. if (!SSL_IS_TLS13(s) || (s->s3->tmp.message_type != SSL3_MT_NEWSESSION_TICKET
  1153. && s->s3->tmp.message_type != SSL3_MT_KEY_UPDATE)) {
  1154. if (s->s3->tmp.message_type != SSL3_MT_SERVER_HELLO
  1155. || s->init_num < SERVER_HELLO_RANDOM_OFFSET + SSL3_RANDOM_SIZE
  1156. || memcmp(hrrrandom,
  1157. s->init_buf->data + SERVER_HELLO_RANDOM_OFFSET,
  1158. SSL3_RANDOM_SIZE) != 0) {
  1159. if (!ssl3_finish_mac(s, (unsigned char *)s->init_buf->data,
  1160. s->init_num + SSL3_HM_HEADER_LENGTH)) {
  1161. /* SSLfatal() already called */
  1162. *len = 0;
  1163. return 0;
  1164. }
  1165. }
  1166. }
  1167. if (s->msg_callback)
  1168. s->msg_callback(0, s->version, SSL3_RT_HANDSHAKE, s->init_buf->data,
  1169. (size_t)s->init_num + SSL3_HM_HEADER_LENGTH, s,
  1170. s->msg_callback_arg);
  1171. }
  1172. *len = s->init_num;
  1173. return 1;
  1174. }
  1175. static const X509ERR2ALERT x509table[] = {
  1176. {X509_V_ERR_APPLICATION_VERIFICATION, SSL_AD_HANDSHAKE_FAILURE},
  1177. {X509_V_ERR_CA_KEY_TOO_SMALL, SSL_AD_BAD_CERTIFICATE},
  1178. {X509_V_ERR_CA_MD_TOO_WEAK, SSL_AD_BAD_CERTIFICATE},
  1179. {X509_V_ERR_CERT_CHAIN_TOO_LONG, SSL_AD_UNKNOWN_CA},
  1180. {X509_V_ERR_CERT_HAS_EXPIRED, SSL_AD_CERTIFICATE_EXPIRED},
  1181. {X509_V_ERR_CERT_NOT_YET_VALID, SSL_AD_BAD_CERTIFICATE},
  1182. {X509_V_ERR_CERT_REJECTED, SSL_AD_BAD_CERTIFICATE},
  1183. {X509_V_ERR_CERT_REVOKED, SSL_AD_CERTIFICATE_REVOKED},
  1184. {X509_V_ERR_CERT_SIGNATURE_FAILURE, SSL_AD_DECRYPT_ERROR},
  1185. {X509_V_ERR_CERT_UNTRUSTED, SSL_AD_BAD_CERTIFICATE},
  1186. {X509_V_ERR_CRL_HAS_EXPIRED, SSL_AD_CERTIFICATE_EXPIRED},
  1187. {X509_V_ERR_CRL_NOT_YET_VALID, SSL_AD_BAD_CERTIFICATE},
  1188. {X509_V_ERR_CRL_SIGNATURE_FAILURE, SSL_AD_DECRYPT_ERROR},
  1189. {X509_V_ERR_DANE_NO_MATCH, SSL_AD_BAD_CERTIFICATE},
  1190. {X509_V_ERR_DEPTH_ZERO_SELF_SIGNED_CERT, SSL_AD_UNKNOWN_CA},
  1191. {X509_V_ERR_EE_KEY_TOO_SMALL, SSL_AD_BAD_CERTIFICATE},
  1192. {X509_V_ERR_EMAIL_MISMATCH, SSL_AD_BAD_CERTIFICATE},
  1193. {X509_V_ERR_ERROR_IN_CERT_NOT_AFTER_FIELD, SSL_AD_BAD_CERTIFICATE},
  1194. {X509_V_ERR_ERROR_IN_CERT_NOT_BEFORE_FIELD, SSL_AD_BAD_CERTIFICATE},
  1195. {X509_V_ERR_ERROR_IN_CRL_LAST_UPDATE_FIELD, SSL_AD_BAD_CERTIFICATE},
  1196. {X509_V_ERR_ERROR_IN_CRL_NEXT_UPDATE_FIELD, SSL_AD_BAD_CERTIFICATE},
  1197. {X509_V_ERR_HOSTNAME_MISMATCH, SSL_AD_BAD_CERTIFICATE},
  1198. {X509_V_ERR_INVALID_CA, SSL_AD_UNKNOWN_CA},
  1199. {X509_V_ERR_INVALID_CALL, SSL_AD_INTERNAL_ERROR},
  1200. {X509_V_ERR_INVALID_PURPOSE, SSL_AD_UNSUPPORTED_CERTIFICATE},
  1201. {X509_V_ERR_IP_ADDRESS_MISMATCH, SSL_AD_BAD_CERTIFICATE},
  1202. {X509_V_ERR_OUT_OF_MEM, SSL_AD_INTERNAL_ERROR},
  1203. {X509_V_ERR_PATH_LENGTH_EXCEEDED, SSL_AD_UNKNOWN_CA},
  1204. {X509_V_ERR_SELF_SIGNED_CERT_IN_CHAIN, SSL_AD_UNKNOWN_CA},
  1205. {X509_V_ERR_STORE_LOOKUP, SSL_AD_INTERNAL_ERROR},
  1206. {X509_V_ERR_UNABLE_TO_DECODE_ISSUER_PUBLIC_KEY, SSL_AD_BAD_CERTIFICATE},
  1207. {X509_V_ERR_UNABLE_TO_DECRYPT_CERT_SIGNATURE, SSL_AD_BAD_CERTIFICATE},
  1208. {X509_V_ERR_UNABLE_TO_DECRYPT_CRL_SIGNATURE, SSL_AD_BAD_CERTIFICATE},
  1209. {X509_V_ERR_UNABLE_TO_GET_CRL, SSL_AD_UNKNOWN_CA},
  1210. {X509_V_ERR_UNABLE_TO_GET_CRL_ISSUER, SSL_AD_UNKNOWN_CA},
  1211. {X509_V_ERR_UNABLE_TO_GET_ISSUER_CERT, SSL_AD_UNKNOWN_CA},
  1212. {X509_V_ERR_UNABLE_TO_GET_ISSUER_CERT_LOCALLY, SSL_AD_UNKNOWN_CA},
  1213. {X509_V_ERR_UNABLE_TO_VERIFY_LEAF_SIGNATURE, SSL_AD_UNKNOWN_CA},
  1214. {X509_V_ERR_UNSPECIFIED, SSL_AD_INTERNAL_ERROR},
  1215. /* Last entry; return this if we don't find the value above. */
  1216. {X509_V_OK, SSL_AD_CERTIFICATE_UNKNOWN}
  1217. };
  1218. int ssl_x509err2alert(int x509err)
  1219. {
  1220. const X509ERR2ALERT *tp;
  1221. for (tp = x509table; tp->x509err != X509_V_OK; ++tp)
  1222. if (tp->x509err == x509err)
  1223. break;
  1224. return tp->alert;
  1225. }
  1226. int ssl_allow_compression(SSL *s)
  1227. {
  1228. if (s->options & SSL_OP_NO_COMPRESSION)
  1229. return 0;
  1230. return ssl_security(s, SSL_SECOP_COMPRESSION, 0, 0, NULL);
  1231. }
  1232. static int version_cmp(const SSL *s, int a, int b)
  1233. {
  1234. int dtls = SSL_IS_DTLS(s);
  1235. if (a == b)
  1236. return 0;
  1237. if (!dtls)
  1238. return a < b ? -1 : 1;
  1239. return DTLS_VERSION_LT(a, b) ? -1 : 1;
  1240. }
  1241. typedef struct {
  1242. int version;
  1243. const SSL_METHOD *(*cmeth) (void);
  1244. const SSL_METHOD *(*smeth) (void);
  1245. } version_info;
  1246. #if TLS_MAX_VERSION != TLS1_3_VERSION
  1247. # error Code needs update for TLS_method() support beyond TLS1_3_VERSION.
  1248. #endif
  1249. /* Must be in order high to low */
  1250. static const version_info tls_version_table[] = {
  1251. #ifndef OPENSSL_NO_TLS1_3
  1252. {TLS1_3_VERSION, tlsv1_3_client_method, tlsv1_3_server_method},
  1253. #else
  1254. {TLS1_3_VERSION, NULL, NULL},
  1255. #endif
  1256. #ifndef OPENSSL_NO_TLS1_2
  1257. {TLS1_2_VERSION, tlsv1_2_client_method, tlsv1_2_server_method},
  1258. #else
  1259. {TLS1_2_VERSION, NULL, NULL},
  1260. #endif
  1261. #ifndef OPENSSL_NO_TLS1_1
  1262. {TLS1_1_VERSION, tlsv1_1_client_method, tlsv1_1_server_method},
  1263. #else
  1264. {TLS1_1_VERSION, NULL, NULL},
  1265. #endif
  1266. #ifndef OPENSSL_NO_TLS1
  1267. {TLS1_VERSION, tlsv1_client_method, tlsv1_server_method},
  1268. #else
  1269. {TLS1_VERSION, NULL, NULL},
  1270. #endif
  1271. #ifndef OPENSSL_NO_SSL3
  1272. {SSL3_VERSION, sslv3_client_method, sslv3_server_method},
  1273. #else
  1274. {SSL3_VERSION, NULL, NULL},
  1275. #endif
  1276. {0, NULL, NULL},
  1277. };
  1278. #if DTLS_MAX_VERSION != DTLS1_2_VERSION
  1279. # error Code needs update for DTLS_method() support beyond DTLS1_2_VERSION.
  1280. #endif
  1281. /* Must be in order high to low */
  1282. static const version_info dtls_version_table[] = {
  1283. #ifndef OPENSSL_NO_DTLS1_2
  1284. {DTLS1_2_VERSION, dtlsv1_2_client_method, dtlsv1_2_server_method},
  1285. #else
  1286. {DTLS1_2_VERSION, NULL, NULL},
  1287. #endif
  1288. #ifndef OPENSSL_NO_DTLS1
  1289. {DTLS1_VERSION, dtlsv1_client_method, dtlsv1_server_method},
  1290. {DTLS1_BAD_VER, dtls_bad_ver_client_method, NULL},
  1291. #else
  1292. {DTLS1_VERSION, NULL, NULL},
  1293. {DTLS1_BAD_VER, NULL, NULL},
  1294. #endif
  1295. {0, NULL, NULL},
  1296. };
  1297. /*
  1298. * ssl_method_error - Check whether an SSL_METHOD is enabled.
  1299. *
  1300. * @s: The SSL handle for the candidate method
  1301. * @method: the intended method.
  1302. *
  1303. * Returns 0 on success, or an SSL error reason on failure.
  1304. */
  1305. static int ssl_method_error(const SSL *s, const SSL_METHOD *method)
  1306. {
  1307. int version = method->version;
  1308. if ((s->min_proto_version != 0 &&
  1309. version_cmp(s, version, s->min_proto_version) < 0) ||
  1310. ssl_security(s, SSL_SECOP_VERSION, 0, version, NULL) == 0)
  1311. return SSL_R_VERSION_TOO_LOW;
  1312. if (s->max_proto_version != 0 &&
  1313. version_cmp(s, version, s->max_proto_version) > 0)
  1314. return SSL_R_VERSION_TOO_HIGH;
  1315. if ((s->options & method->mask) != 0)
  1316. return SSL_R_UNSUPPORTED_PROTOCOL;
  1317. if ((method->flags & SSL_METHOD_NO_SUITEB) != 0 && tls1_suiteb(s))
  1318. return SSL_R_AT_LEAST_TLS_1_2_NEEDED_IN_SUITEB_MODE;
  1319. return 0;
  1320. }
  1321. /*
  1322. * Only called by servers. Returns 1 if the server has a TLSv1.3 capable
  1323. * certificate type, or has PSK or a certificate callback configured. Otherwise
  1324. * returns 0.
  1325. */
  1326. static int is_tls13_capable(const SSL *s)
  1327. {
  1328. int i;
  1329. #ifndef OPENSSL_NO_EC
  1330. int curve;
  1331. EC_KEY *eckey;
  1332. #endif
  1333. #ifndef OPENSSL_NO_PSK
  1334. if (s->psk_server_callback != NULL)
  1335. return 1;
  1336. #endif
  1337. if (s->psk_find_session_cb != NULL || s->cert->cert_cb != NULL)
  1338. return 1;
  1339. for (i = 0; i < SSL_PKEY_NUM; i++) {
  1340. /* Skip over certs disallowed for TLSv1.3 */
  1341. switch (i) {
  1342. case SSL_PKEY_DSA_SIGN:
  1343. case SSL_PKEY_GOST01:
  1344. case SSL_PKEY_GOST12_256:
  1345. case SSL_PKEY_GOST12_512:
  1346. continue;
  1347. default:
  1348. break;
  1349. }
  1350. if (!ssl_has_cert(s, i))
  1351. continue;
  1352. #ifndef OPENSSL_NO_EC
  1353. if (i != SSL_PKEY_ECC)
  1354. return 1;
  1355. /*
  1356. * Prior to TLSv1.3 sig algs allowed any curve to be used. TLSv1.3 is
  1357. * more restrictive so check that our sig algs are consistent with this
  1358. * EC cert. See section 4.2.3 of RFC8446.
  1359. */
  1360. eckey = EVP_PKEY_get0_EC_KEY(s->cert->pkeys[SSL_PKEY_ECC].privatekey);
  1361. if (eckey == NULL)
  1362. continue;
  1363. curve = EC_GROUP_get_curve_name(EC_KEY_get0_group(eckey));
  1364. if (tls_check_sigalg_curve(s, curve))
  1365. return 1;
  1366. #else
  1367. return 1;
  1368. #endif
  1369. }
  1370. return 0;
  1371. }
  1372. /*
  1373. * ssl_version_supported - Check that the specified `version` is supported by
  1374. * `SSL *` instance
  1375. *
  1376. * @s: The SSL handle for the candidate method
  1377. * @version: Protocol version to test against
  1378. *
  1379. * Returns 1 when supported, otherwise 0
  1380. */
  1381. int ssl_version_supported(const SSL *s, int version, const SSL_METHOD **meth)
  1382. {
  1383. const version_info *vent;
  1384. const version_info *table;
  1385. switch (s->method->version) {
  1386. default:
  1387. /* Version should match method version for non-ANY method */
  1388. return version_cmp(s, version, s->version) == 0;
  1389. case TLS_ANY_VERSION:
  1390. table = tls_version_table;
  1391. break;
  1392. case DTLS_ANY_VERSION:
  1393. table = dtls_version_table;
  1394. break;
  1395. }
  1396. for (vent = table;
  1397. vent->version != 0 && version_cmp(s, version, vent->version) <= 0;
  1398. ++vent) {
  1399. if (vent->cmeth != NULL
  1400. && version_cmp(s, version, vent->version) == 0
  1401. && ssl_method_error(s, vent->cmeth()) == 0
  1402. && (!s->server
  1403. || version != TLS1_3_VERSION
  1404. || is_tls13_capable(s))) {
  1405. if (meth != NULL)
  1406. *meth = vent->cmeth();
  1407. return 1;
  1408. }
  1409. }
  1410. return 0;
  1411. }
  1412. /*
  1413. * ssl_check_version_downgrade - In response to RFC7507 SCSV version
  1414. * fallback indication from a client check whether we're using the highest
  1415. * supported protocol version.
  1416. *
  1417. * @s server SSL handle.
  1418. *
  1419. * Returns 1 when using the highest enabled version, 0 otherwise.
  1420. */
  1421. int ssl_check_version_downgrade(SSL *s)
  1422. {
  1423. const version_info *vent;
  1424. const version_info *table;
  1425. /*
  1426. * Check that the current protocol is the highest enabled version
  1427. * (according to s->ctx->method, as version negotiation may have changed
  1428. * s->method).
  1429. */
  1430. if (s->version == s->ctx->method->version)
  1431. return 1;
  1432. /*
  1433. * Apparently we're using a version-flexible SSL_METHOD (not at its
  1434. * highest protocol version).
  1435. */
  1436. if (s->ctx->method->version == TLS_method()->version)
  1437. table = tls_version_table;
  1438. else if (s->ctx->method->version == DTLS_method()->version)
  1439. table = dtls_version_table;
  1440. else {
  1441. /* Unexpected state; fail closed. */
  1442. return 0;
  1443. }
  1444. for (vent = table; vent->version != 0; ++vent) {
  1445. if (vent->smeth != NULL && ssl_method_error(s, vent->smeth()) == 0)
  1446. return s->version == vent->version;
  1447. }
  1448. return 0;
  1449. }
  1450. /*
  1451. * ssl_set_version_bound - set an upper or lower bound on the supported (D)TLS
  1452. * protocols, provided the initial (D)TLS method is version-flexible. This
  1453. * function sanity-checks the proposed value and makes sure the method is
  1454. * version-flexible, then sets the limit if all is well.
  1455. *
  1456. * @method_version: The version of the current SSL_METHOD.
  1457. * @version: the intended limit.
  1458. * @bound: pointer to limit to be updated.
  1459. *
  1460. * Returns 1 on success, 0 on failure.
  1461. */
  1462. int ssl_set_version_bound(int method_version, int version, int *bound)
  1463. {
  1464. if (version == 0) {
  1465. *bound = version;
  1466. return 1;
  1467. }
  1468. /*-
  1469. * Restrict TLS methods to TLS protocol versions.
  1470. * Restrict DTLS methods to DTLS protocol versions.
  1471. * Note, DTLS version numbers are decreasing, use comparison macros.
  1472. *
  1473. * Note that for both lower-bounds we use explicit versions, not
  1474. * (D)TLS_MIN_VERSION. This is because we don't want to break user
  1475. * configurations. If the MIN (supported) version ever rises, the user's
  1476. * "floor" remains valid even if no longer available. We don't expect the
  1477. * MAX ceiling to ever get lower, so making that variable makes sense.
  1478. */
  1479. switch (method_version) {
  1480. default:
  1481. /*
  1482. * XXX For fixed version methods, should we always fail and not set any
  1483. * bounds, always succeed and not set any bounds, or set the bounds and
  1484. * arrange to fail later if they are not met? At present fixed-version
  1485. * methods are not subject to controls that disable individual protocol
  1486. * versions.
  1487. */
  1488. return 0;
  1489. case TLS_ANY_VERSION:
  1490. if (version < SSL3_VERSION || version > TLS_MAX_VERSION)
  1491. return 0;
  1492. break;
  1493. case DTLS_ANY_VERSION:
  1494. if (DTLS_VERSION_GT(version, DTLS_MAX_VERSION) ||
  1495. DTLS_VERSION_LT(version, DTLS1_BAD_VER))
  1496. return 0;
  1497. break;
  1498. }
  1499. *bound = version;
  1500. return 1;
  1501. }
  1502. static void check_for_downgrade(SSL *s, int vers, DOWNGRADE *dgrd)
  1503. {
  1504. if (vers == TLS1_2_VERSION
  1505. && ssl_version_supported(s, TLS1_3_VERSION, NULL)) {
  1506. *dgrd = DOWNGRADE_TO_1_2;
  1507. } else if (!SSL_IS_DTLS(s)
  1508. && vers < TLS1_2_VERSION
  1509. /*
  1510. * We need to ensure that a server that disables TLSv1.2
  1511. * (creating a hole between TLSv1.3 and TLSv1.1) can still
  1512. * complete handshakes with clients that support TLSv1.2 and
  1513. * below. Therefore we do not enable the sentinel if TLSv1.3 is
  1514. * enabled and TLSv1.2 is not.
  1515. */
  1516. && ssl_version_supported(s, TLS1_2_VERSION, NULL)) {
  1517. *dgrd = DOWNGRADE_TO_1_1;
  1518. } else {
  1519. *dgrd = DOWNGRADE_NONE;
  1520. }
  1521. }
  1522. /*
  1523. * ssl_choose_server_version - Choose server (D)TLS version. Called when the
  1524. * client HELLO is received to select the final server protocol version and
  1525. * the version specific method.
  1526. *
  1527. * @s: server SSL handle.
  1528. *
  1529. * Returns 0 on success or an SSL error reason number on failure.
  1530. */
  1531. int ssl_choose_server_version(SSL *s, CLIENTHELLO_MSG *hello, DOWNGRADE *dgrd)
  1532. {
  1533. /*-
  1534. * With version-flexible methods we have an initial state with:
  1535. *
  1536. * s->method->version == (D)TLS_ANY_VERSION,
  1537. * s->version == (D)TLS_MAX_VERSION.
  1538. *
  1539. * So we detect version-flexible methods via the method version, not the
  1540. * handle version.
  1541. */
  1542. int server_version = s->method->version;
  1543. int client_version = hello->legacy_version;
  1544. const version_info *vent;
  1545. const version_info *table;
  1546. int disabled = 0;
  1547. RAW_EXTENSION *suppversions;
  1548. s->client_version = client_version;
  1549. switch (server_version) {
  1550. default:
  1551. if (!SSL_IS_TLS13(s)) {
  1552. if (version_cmp(s, client_version, s->version) < 0)
  1553. return SSL_R_WRONG_SSL_VERSION;
  1554. *dgrd = DOWNGRADE_NONE;
  1555. /*
  1556. * If this SSL handle is not from a version flexible method we don't
  1557. * (and never did) check min/max FIPS or Suite B constraints. Hope
  1558. * that's OK. It is up to the caller to not choose fixed protocol
  1559. * versions they don't want. If not, then easy to fix, just return
  1560. * ssl_method_error(s, s->method)
  1561. */
  1562. return 0;
  1563. }
  1564. /*
  1565. * Fall through if we are TLSv1.3 already (this means we must be after
  1566. * a HelloRetryRequest
  1567. */
  1568. /* fall thru */
  1569. case TLS_ANY_VERSION:
  1570. table = tls_version_table;
  1571. break;
  1572. case DTLS_ANY_VERSION:
  1573. table = dtls_version_table;
  1574. break;
  1575. }
  1576. suppversions = &hello->pre_proc_exts[TLSEXT_IDX_supported_versions];
  1577. /* If we did an HRR then supported versions is mandatory */
  1578. if (!suppversions->present && s->hello_retry_request != SSL_HRR_NONE)
  1579. return SSL_R_UNSUPPORTED_PROTOCOL;
  1580. if (suppversions->present && !SSL_IS_DTLS(s)) {
  1581. unsigned int candidate_vers = 0;
  1582. unsigned int best_vers = 0;
  1583. const SSL_METHOD *best_method = NULL;
  1584. PACKET versionslist;
  1585. suppversions->parsed = 1;
  1586. if (!PACKET_as_length_prefixed_1(&suppversions->data, &versionslist)) {
  1587. /* Trailing or invalid data? */
  1588. return SSL_R_LENGTH_MISMATCH;
  1589. }
  1590. /*
  1591. * The TLSv1.3 spec says the client MUST set this to TLS1_2_VERSION.
  1592. * The spec only requires servers to check that it isn't SSLv3:
  1593. * "Any endpoint receiving a Hello message with
  1594. * ClientHello.legacy_version or ServerHello.legacy_version set to
  1595. * 0x0300 MUST abort the handshake with a "protocol_version" alert."
  1596. * We are slightly stricter and require that it isn't SSLv3 or lower.
  1597. * We tolerate TLSv1 and TLSv1.1.
  1598. */
  1599. if (client_version <= SSL3_VERSION)
  1600. return SSL_R_BAD_LEGACY_VERSION;
  1601. while (PACKET_get_net_2(&versionslist, &candidate_vers)) {
  1602. if (version_cmp(s, candidate_vers, best_vers) <= 0)
  1603. continue;
  1604. if (ssl_version_supported(s, candidate_vers, &best_method))
  1605. best_vers = candidate_vers;
  1606. }
  1607. if (PACKET_remaining(&versionslist) != 0) {
  1608. /* Trailing data? */
  1609. return SSL_R_LENGTH_MISMATCH;
  1610. }
  1611. if (best_vers > 0) {
  1612. if (s->hello_retry_request != SSL_HRR_NONE) {
  1613. /*
  1614. * This is after a HelloRetryRequest so we better check that we
  1615. * negotiated TLSv1.3
  1616. */
  1617. if (best_vers != TLS1_3_VERSION)
  1618. return SSL_R_UNSUPPORTED_PROTOCOL;
  1619. return 0;
  1620. }
  1621. check_for_downgrade(s, best_vers, dgrd);
  1622. s->version = best_vers;
  1623. s->method = best_method;
  1624. return 0;
  1625. }
  1626. return SSL_R_UNSUPPORTED_PROTOCOL;
  1627. }
  1628. /*
  1629. * If the supported versions extension isn't present, then the highest
  1630. * version we can negotiate is TLSv1.2
  1631. */
  1632. if (version_cmp(s, client_version, TLS1_3_VERSION) >= 0)
  1633. client_version = TLS1_2_VERSION;
  1634. /*
  1635. * No supported versions extension, so we just use the version supplied in
  1636. * the ClientHello.
  1637. */
  1638. for (vent = table; vent->version != 0; ++vent) {
  1639. const SSL_METHOD *method;
  1640. if (vent->smeth == NULL ||
  1641. version_cmp(s, client_version, vent->version) < 0)
  1642. continue;
  1643. method = vent->smeth();
  1644. if (ssl_method_error(s, method) == 0) {
  1645. check_for_downgrade(s, vent->version, dgrd);
  1646. s->version = vent->version;
  1647. s->method = method;
  1648. return 0;
  1649. }
  1650. disabled = 1;
  1651. }
  1652. return disabled ? SSL_R_UNSUPPORTED_PROTOCOL : SSL_R_VERSION_TOO_LOW;
  1653. }
  1654. /*
  1655. * ssl_choose_client_version - Choose client (D)TLS version. Called when the
  1656. * server HELLO is received to select the final client protocol version and
  1657. * the version specific method.
  1658. *
  1659. * @s: client SSL handle.
  1660. * @version: The proposed version from the server's HELLO.
  1661. * @extensions: The extensions received
  1662. *
  1663. * Returns 1 on success or 0 on error.
  1664. */
  1665. int ssl_choose_client_version(SSL *s, int version, RAW_EXTENSION *extensions)
  1666. {
  1667. const version_info *vent;
  1668. const version_info *table;
  1669. int ret, ver_min, ver_max, real_max, origv;
  1670. origv = s->version;
  1671. s->version = version;
  1672. /* This will overwrite s->version if the extension is present */
  1673. if (!tls_parse_extension(s, TLSEXT_IDX_supported_versions,
  1674. SSL_EXT_TLS1_2_SERVER_HELLO
  1675. | SSL_EXT_TLS1_3_SERVER_HELLO, extensions,
  1676. NULL, 0)) {
  1677. s->version = origv;
  1678. return 0;
  1679. }
  1680. if (s->hello_retry_request != SSL_HRR_NONE
  1681. && s->version != TLS1_3_VERSION) {
  1682. s->version = origv;
  1683. SSLfatal(s, SSL_AD_PROTOCOL_VERSION, SSL_F_SSL_CHOOSE_CLIENT_VERSION,
  1684. SSL_R_WRONG_SSL_VERSION);
  1685. return 0;
  1686. }
  1687. switch (s->method->version) {
  1688. default:
  1689. if (s->version != s->method->version) {
  1690. s->version = origv;
  1691. SSLfatal(s, SSL_AD_PROTOCOL_VERSION,
  1692. SSL_F_SSL_CHOOSE_CLIENT_VERSION,
  1693. SSL_R_WRONG_SSL_VERSION);
  1694. return 0;
  1695. }
  1696. /*
  1697. * If this SSL handle is not from a version flexible method we don't
  1698. * (and never did) check min/max, FIPS or Suite B constraints. Hope
  1699. * that's OK. It is up to the caller to not choose fixed protocol
  1700. * versions they don't want. If not, then easy to fix, just return
  1701. * ssl_method_error(s, s->method)
  1702. */
  1703. return 1;
  1704. case TLS_ANY_VERSION:
  1705. table = tls_version_table;
  1706. break;
  1707. case DTLS_ANY_VERSION:
  1708. table = dtls_version_table;
  1709. break;
  1710. }
  1711. ret = ssl_get_min_max_version(s, &ver_min, &ver_max, &real_max);
  1712. if (ret != 0) {
  1713. s->version = origv;
  1714. SSLfatal(s, SSL_AD_PROTOCOL_VERSION,
  1715. SSL_F_SSL_CHOOSE_CLIENT_VERSION, ret);
  1716. return 0;
  1717. }
  1718. if (SSL_IS_DTLS(s) ? DTLS_VERSION_LT(s->version, ver_min)
  1719. : s->version < ver_min) {
  1720. s->version = origv;
  1721. SSLfatal(s, SSL_AD_PROTOCOL_VERSION,
  1722. SSL_F_SSL_CHOOSE_CLIENT_VERSION, SSL_R_UNSUPPORTED_PROTOCOL);
  1723. return 0;
  1724. } else if (SSL_IS_DTLS(s) ? DTLS_VERSION_GT(s->version, ver_max)
  1725. : s->version > ver_max) {
  1726. s->version = origv;
  1727. SSLfatal(s, SSL_AD_PROTOCOL_VERSION,
  1728. SSL_F_SSL_CHOOSE_CLIENT_VERSION, SSL_R_UNSUPPORTED_PROTOCOL);
  1729. return 0;
  1730. }
  1731. if ((s->mode & SSL_MODE_SEND_FALLBACK_SCSV) == 0)
  1732. real_max = ver_max;
  1733. /* Check for downgrades */
  1734. if (s->version == TLS1_2_VERSION && real_max > s->version) {
  1735. if (memcmp(tls12downgrade,
  1736. s->s3->server_random + SSL3_RANDOM_SIZE
  1737. - sizeof(tls12downgrade),
  1738. sizeof(tls12downgrade)) == 0) {
  1739. s->version = origv;
  1740. SSLfatal(s, SSL_AD_ILLEGAL_PARAMETER,
  1741. SSL_F_SSL_CHOOSE_CLIENT_VERSION,
  1742. SSL_R_INAPPROPRIATE_FALLBACK);
  1743. return 0;
  1744. }
  1745. } else if (!SSL_IS_DTLS(s)
  1746. && s->version < TLS1_2_VERSION
  1747. && real_max > s->version) {
  1748. if (memcmp(tls11downgrade,
  1749. s->s3->server_random + SSL3_RANDOM_SIZE
  1750. - sizeof(tls11downgrade),
  1751. sizeof(tls11downgrade)) == 0) {
  1752. s->version = origv;
  1753. SSLfatal(s, SSL_AD_ILLEGAL_PARAMETER,
  1754. SSL_F_SSL_CHOOSE_CLIENT_VERSION,
  1755. SSL_R_INAPPROPRIATE_FALLBACK);
  1756. return 0;
  1757. }
  1758. }
  1759. for (vent = table; vent->version != 0; ++vent) {
  1760. if (vent->cmeth == NULL || s->version != vent->version)
  1761. continue;
  1762. s->method = vent->cmeth();
  1763. return 1;
  1764. }
  1765. s->version = origv;
  1766. SSLfatal(s, SSL_AD_PROTOCOL_VERSION, SSL_F_SSL_CHOOSE_CLIENT_VERSION,
  1767. SSL_R_UNSUPPORTED_PROTOCOL);
  1768. return 0;
  1769. }
  1770. /*
  1771. * ssl_get_min_max_version - get minimum and maximum protocol version
  1772. * @s: The SSL connection
  1773. * @min_version: The minimum supported version
  1774. * @max_version: The maximum supported version
  1775. * @real_max: The highest version below the lowest compile time version hole
  1776. * where that hole lies above at least one run-time enabled
  1777. * protocol.
  1778. *
  1779. * Work out what version we should be using for the initial ClientHello if the
  1780. * version is initially (D)TLS_ANY_VERSION. We apply any explicit SSL_OP_NO_xxx
  1781. * options, the MinProtocol and MaxProtocol configuration commands, any Suite B
  1782. * constraints and any floor imposed by the security level here,
  1783. * so we don't advertise the wrong protocol version to only reject the outcome later.
  1784. *
  1785. * Computing the right floor matters. If, e.g., TLS 1.0 and 1.2 are enabled,
  1786. * TLS 1.1 is disabled, but the security level, Suite-B and/or MinProtocol
  1787. * only allow TLS 1.2, we want to advertise TLS1.2, *not* TLS1.
  1788. *
  1789. * Returns 0 on success or an SSL error reason number on failure. On failure
  1790. * min_version and max_version will also be set to 0.
  1791. */
  1792. int ssl_get_min_max_version(const SSL *s, int *min_version, int *max_version,
  1793. int *real_max)
  1794. {
  1795. int version, tmp_real_max;
  1796. int hole;
  1797. const SSL_METHOD *single = NULL;
  1798. const SSL_METHOD *method;
  1799. const version_info *table;
  1800. const version_info *vent;
  1801. switch (s->method->version) {
  1802. default:
  1803. /*
  1804. * If this SSL handle is not from a version flexible method we don't
  1805. * (and never did) check min/max FIPS or Suite B constraints. Hope
  1806. * that's OK. It is up to the caller to not choose fixed protocol
  1807. * versions they don't want. If not, then easy to fix, just return
  1808. * ssl_method_error(s, s->method)
  1809. */
  1810. *min_version = *max_version = s->version;
  1811. /*
  1812. * Providing a real_max only makes sense where we're using a version
  1813. * flexible method.
  1814. */
  1815. if (!ossl_assert(real_max == NULL))
  1816. return ERR_R_INTERNAL_ERROR;
  1817. return 0;
  1818. case TLS_ANY_VERSION:
  1819. table = tls_version_table;
  1820. break;
  1821. case DTLS_ANY_VERSION:
  1822. table = dtls_version_table;
  1823. break;
  1824. }
  1825. /*
  1826. * SSL_OP_NO_X disables all protocols above X *if* there are some protocols
  1827. * below X enabled. This is required in order to maintain the "version
  1828. * capability" vector contiguous. Any versions with a NULL client method
  1829. * (protocol version client is disabled at compile-time) is also a "hole".
  1830. *
  1831. * Our initial state is hole == 1, version == 0. That is, versions above
  1832. * the first version in the method table are disabled (a "hole" above
  1833. * the valid protocol entries) and we don't have a selected version yet.
  1834. *
  1835. * Whenever "hole == 1", and we hit an enabled method, its version becomes
  1836. * the selected version, and the method becomes a candidate "single"
  1837. * method. We're no longer in a hole, so "hole" becomes 0.
  1838. *
  1839. * If "hole == 0" and we hit an enabled method, then "single" is cleared,
  1840. * as we support a contiguous range of at least two methods. If we hit
  1841. * a disabled method, then hole becomes true again, but nothing else
  1842. * changes yet, because all the remaining methods may be disabled too.
  1843. * If we again hit an enabled method after the new hole, it becomes
  1844. * selected, as we start from scratch.
  1845. */
  1846. *min_version = version = 0;
  1847. hole = 1;
  1848. if (real_max != NULL)
  1849. *real_max = 0;
  1850. tmp_real_max = 0;
  1851. for (vent = table; vent->version != 0; ++vent) {
  1852. /*
  1853. * A table entry with a NULL client method is still a hole in the
  1854. * "version capability" vector.
  1855. */
  1856. if (vent->cmeth == NULL) {
  1857. hole = 1;
  1858. tmp_real_max = 0;
  1859. continue;
  1860. }
  1861. method = vent->cmeth();
  1862. if (hole == 1 && tmp_real_max == 0)
  1863. tmp_real_max = vent->version;
  1864. if (ssl_method_error(s, method) != 0) {
  1865. hole = 1;
  1866. } else if (!hole) {
  1867. single = NULL;
  1868. *min_version = method->version;
  1869. } else {
  1870. if (real_max != NULL && tmp_real_max != 0)
  1871. *real_max = tmp_real_max;
  1872. version = (single = method)->version;
  1873. *min_version = version;
  1874. hole = 0;
  1875. }
  1876. }
  1877. *max_version = version;
  1878. /* Fail if everything is disabled */
  1879. if (version == 0)
  1880. return SSL_R_NO_PROTOCOLS_AVAILABLE;
  1881. return 0;
  1882. }
  1883. /*
  1884. * ssl_set_client_hello_version - Work out what version we should be using for
  1885. * the initial ClientHello.legacy_version field.
  1886. *
  1887. * @s: client SSL handle.
  1888. *
  1889. * Returns 0 on success or an SSL error reason number on failure.
  1890. */
  1891. int ssl_set_client_hello_version(SSL *s)
  1892. {
  1893. int ver_min, ver_max, ret;
  1894. /*
  1895. * In a renegotiation we always send the same client_version that we sent
  1896. * last time, regardless of which version we eventually negotiated.
  1897. */
  1898. if (!SSL_IS_FIRST_HANDSHAKE(s))
  1899. return 0;
  1900. ret = ssl_get_min_max_version(s, &ver_min, &ver_max, NULL);
  1901. if (ret != 0)
  1902. return ret;
  1903. s->version = ver_max;
  1904. /* TLS1.3 always uses TLS1.2 in the legacy_version field */
  1905. if (!SSL_IS_DTLS(s) && ver_max > TLS1_2_VERSION)
  1906. ver_max = TLS1_2_VERSION;
  1907. s->client_version = ver_max;
  1908. return 0;
  1909. }
  1910. /*
  1911. * Checks a list of |groups| to determine if the |group_id| is in it. If it is
  1912. * and |checkallow| is 1 then additionally check if the group is allowed to be
  1913. * used. Returns 1 if the group is in the list (and allowed if |checkallow| is
  1914. * 1) or 0 otherwise.
  1915. */
  1916. #ifndef OPENSSL_NO_EC
  1917. int check_in_list(SSL *s, uint16_t group_id, const uint16_t *groups,
  1918. size_t num_groups, int checkallow)
  1919. {
  1920. size_t i;
  1921. if (groups == NULL || num_groups == 0)
  1922. return 0;
  1923. for (i = 0; i < num_groups; i++) {
  1924. uint16_t group = groups[i];
  1925. if (group_id == group
  1926. && (!checkallow
  1927. || tls_curve_allowed(s, group, SSL_SECOP_CURVE_CHECK))) {
  1928. return 1;
  1929. }
  1930. }
  1931. return 0;
  1932. }
  1933. #endif
  1934. /* Replace ClientHello1 in the transcript hash with a synthetic message */
  1935. int create_synthetic_message_hash(SSL *s, const unsigned char *hashval,
  1936. size_t hashlen, const unsigned char *hrr,
  1937. size_t hrrlen)
  1938. {
  1939. unsigned char hashvaltmp[EVP_MAX_MD_SIZE];
  1940. unsigned char msghdr[SSL3_HM_HEADER_LENGTH];
  1941. memset(msghdr, 0, sizeof(msghdr));
  1942. if (hashval == NULL) {
  1943. hashval = hashvaltmp;
  1944. hashlen = 0;
  1945. /* Get the hash of the initial ClientHello */
  1946. if (!ssl3_digest_cached_records(s, 0)
  1947. || !ssl_handshake_hash(s, hashvaltmp, sizeof(hashvaltmp),
  1948. &hashlen)) {
  1949. /* SSLfatal() already called */
  1950. return 0;
  1951. }
  1952. }
  1953. /* Reinitialise the transcript hash */
  1954. if (!ssl3_init_finished_mac(s)) {
  1955. /* SSLfatal() already called */
  1956. return 0;
  1957. }
  1958. /* Inject the synthetic message_hash message */
  1959. msghdr[0] = SSL3_MT_MESSAGE_HASH;
  1960. msghdr[SSL3_HM_HEADER_LENGTH - 1] = (unsigned char)hashlen;
  1961. if (!ssl3_finish_mac(s, msghdr, SSL3_HM_HEADER_LENGTH)
  1962. || !ssl3_finish_mac(s, hashval, hashlen)) {
  1963. /* SSLfatal() already called */
  1964. return 0;
  1965. }
  1966. /*
  1967. * Now re-inject the HRR and current message if appropriate (we just deleted
  1968. * it when we reinitialised the transcript hash above). Only necessary after
  1969. * receiving a ClientHello2 with a cookie.
  1970. */
  1971. if (hrr != NULL
  1972. && (!ssl3_finish_mac(s, hrr, hrrlen)
  1973. || !ssl3_finish_mac(s, (unsigned char *)s->init_buf->data,
  1974. s->s3->tmp.message_size
  1975. + SSL3_HM_HEADER_LENGTH))) {
  1976. /* SSLfatal() already called */
  1977. return 0;
  1978. }
  1979. return 1;
  1980. }
  1981. static int ca_dn_cmp(const X509_NAME *const *a, const X509_NAME *const *b)
  1982. {
  1983. return X509_NAME_cmp(*a, *b);
  1984. }
  1985. int parse_ca_names(SSL *s, PACKET *pkt)
  1986. {
  1987. STACK_OF(X509_NAME) *ca_sk = sk_X509_NAME_new(ca_dn_cmp);
  1988. X509_NAME *xn = NULL;
  1989. PACKET cadns;
  1990. if (ca_sk == NULL) {
  1991. SSLfatal(s, SSL_AD_INTERNAL_ERROR, SSL_F_PARSE_CA_NAMES,
  1992. ERR_R_MALLOC_FAILURE);
  1993. goto err;
  1994. }
  1995. /* get the CA RDNs */
  1996. if (!PACKET_get_length_prefixed_2(pkt, &cadns)) {
  1997. SSLfatal(s, SSL_AD_DECODE_ERROR,SSL_F_PARSE_CA_NAMES,
  1998. SSL_R_LENGTH_MISMATCH);
  1999. goto err;
  2000. }
  2001. while (PACKET_remaining(&cadns)) {
  2002. const unsigned char *namestart, *namebytes;
  2003. unsigned int name_len;
  2004. if (!PACKET_get_net_2(&cadns, &name_len)
  2005. || !PACKET_get_bytes(&cadns, &namebytes, name_len)) {
  2006. SSLfatal(s, SSL_AD_DECODE_ERROR, SSL_F_PARSE_CA_NAMES,
  2007. SSL_R_LENGTH_MISMATCH);
  2008. goto err;
  2009. }
  2010. namestart = namebytes;
  2011. if ((xn = d2i_X509_NAME(NULL, &namebytes, name_len)) == NULL) {
  2012. SSLfatal(s, SSL_AD_DECODE_ERROR, SSL_F_PARSE_CA_NAMES,
  2013. ERR_R_ASN1_LIB);
  2014. goto err;
  2015. }
  2016. if (namebytes != (namestart + name_len)) {
  2017. SSLfatal(s, SSL_AD_DECODE_ERROR, SSL_F_PARSE_CA_NAMES,
  2018. SSL_R_CA_DN_LENGTH_MISMATCH);
  2019. goto err;
  2020. }
  2021. if (!sk_X509_NAME_push(ca_sk, xn)) {
  2022. SSLfatal(s, SSL_AD_INTERNAL_ERROR, SSL_F_PARSE_CA_NAMES,
  2023. ERR_R_MALLOC_FAILURE);
  2024. goto err;
  2025. }
  2026. xn = NULL;
  2027. }
  2028. sk_X509_NAME_pop_free(s->s3->tmp.peer_ca_names, X509_NAME_free);
  2029. s->s3->tmp.peer_ca_names = ca_sk;
  2030. return 1;
  2031. err:
  2032. sk_X509_NAME_pop_free(ca_sk, X509_NAME_free);
  2033. X509_NAME_free(xn);
  2034. return 0;
  2035. }
  2036. const STACK_OF(X509_NAME) *get_ca_names(SSL *s)
  2037. {
  2038. const STACK_OF(X509_NAME) *ca_sk = NULL;;
  2039. if (s->server) {
  2040. ca_sk = SSL_get_client_CA_list(s);
  2041. if (ca_sk != NULL && sk_X509_NAME_num(ca_sk) == 0)
  2042. ca_sk = NULL;
  2043. }
  2044. if (ca_sk == NULL)
  2045. ca_sk = SSL_get0_CA_list(s);
  2046. return ca_sk;
  2047. }
  2048. int construct_ca_names(SSL *s, const STACK_OF(X509_NAME) *ca_sk, WPACKET *pkt)
  2049. {
  2050. /* Start sub-packet for client CA list */
  2051. if (!WPACKET_start_sub_packet_u16(pkt)) {
  2052. SSLfatal(s, SSL_AD_INTERNAL_ERROR, SSL_F_CONSTRUCT_CA_NAMES,
  2053. ERR_R_INTERNAL_ERROR);
  2054. return 0;
  2055. }
  2056. if (ca_sk != NULL) {
  2057. int i;
  2058. for (i = 0; i < sk_X509_NAME_num(ca_sk); i++) {
  2059. unsigned char *namebytes;
  2060. X509_NAME *name = sk_X509_NAME_value(ca_sk, i);
  2061. int namelen;
  2062. if (name == NULL
  2063. || (namelen = i2d_X509_NAME(name, NULL)) < 0
  2064. || !WPACKET_sub_allocate_bytes_u16(pkt, namelen,
  2065. &namebytes)
  2066. || i2d_X509_NAME(name, &namebytes) != namelen) {
  2067. SSLfatal(s, SSL_AD_INTERNAL_ERROR, SSL_F_CONSTRUCT_CA_NAMES,
  2068. ERR_R_INTERNAL_ERROR);
  2069. return 0;
  2070. }
  2071. }
  2072. }
  2073. if (!WPACKET_close(pkt)) {
  2074. SSLfatal(s, SSL_AD_INTERNAL_ERROR, SSL_F_CONSTRUCT_CA_NAMES,
  2075. ERR_R_INTERNAL_ERROR);
  2076. return 0;
  2077. }
  2078. return 1;
  2079. }
  2080. /* Create a buffer containing data to be signed for server key exchange */
  2081. size_t construct_key_exchange_tbs(SSL *s, unsigned char **ptbs,
  2082. const void *param, size_t paramlen)
  2083. {
  2084. size_t tbslen = 2 * SSL3_RANDOM_SIZE + paramlen;
  2085. unsigned char *tbs = OPENSSL_malloc(tbslen);
  2086. if (tbs == NULL) {
  2087. SSLfatal(s, SSL_AD_INTERNAL_ERROR, SSL_F_CONSTRUCT_KEY_EXCHANGE_TBS,
  2088. ERR_R_MALLOC_FAILURE);
  2089. return 0;
  2090. }
  2091. memcpy(tbs, s->s3->client_random, SSL3_RANDOM_SIZE);
  2092. memcpy(tbs + SSL3_RANDOM_SIZE, s->s3->server_random, SSL3_RANDOM_SIZE);
  2093. memcpy(tbs + SSL3_RANDOM_SIZE * 2, param, paramlen);
  2094. *ptbs = tbs;
  2095. return tbslen;
  2096. }
  2097. /*
  2098. * Saves the current handshake digest for Post-Handshake Auth,
  2099. * Done after ClientFinished is processed, done exactly once
  2100. */
  2101. int tls13_save_handshake_digest_for_pha(SSL *s)
  2102. {
  2103. if (s->pha_dgst == NULL) {
  2104. if (!ssl3_digest_cached_records(s, 1))
  2105. /* SSLfatal() already called */
  2106. return 0;
  2107. s->pha_dgst = EVP_MD_CTX_new();
  2108. if (s->pha_dgst == NULL) {
  2109. SSLfatal(s, SSL_AD_INTERNAL_ERROR,
  2110. SSL_F_TLS13_SAVE_HANDSHAKE_DIGEST_FOR_PHA,
  2111. ERR_R_INTERNAL_ERROR);
  2112. return 0;
  2113. }
  2114. if (!EVP_MD_CTX_copy_ex(s->pha_dgst,
  2115. s->s3->handshake_dgst)) {
  2116. SSLfatal(s, SSL_AD_INTERNAL_ERROR,
  2117. SSL_F_TLS13_SAVE_HANDSHAKE_DIGEST_FOR_PHA,
  2118. ERR_R_INTERNAL_ERROR);
  2119. return 0;
  2120. }
  2121. }
  2122. return 1;
  2123. }
  2124. /*
  2125. * Restores the Post-Handshake Auth handshake digest
  2126. * Done just before sending/processing the Cert Request
  2127. */
  2128. int tls13_restore_handshake_digest_for_pha(SSL *s)
  2129. {
  2130. if (s->pha_dgst == NULL) {
  2131. SSLfatal(s, SSL_AD_INTERNAL_ERROR,
  2132. SSL_F_TLS13_RESTORE_HANDSHAKE_DIGEST_FOR_PHA,
  2133. ERR_R_INTERNAL_ERROR);
  2134. return 0;
  2135. }
  2136. if (!EVP_MD_CTX_copy_ex(s->s3->handshake_dgst,
  2137. s->pha_dgst)) {
  2138. SSLfatal(s, SSL_AD_INTERNAL_ERROR,
  2139. SSL_F_TLS13_RESTORE_HANDSHAKE_DIGEST_FOR_PHA,
  2140. ERR_R_INTERNAL_ERROR);
  2141. return 0;
  2142. }
  2143. return 1;
  2144. }