s3_enc.c 17 KB

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  1. /*
  2. * Copyright 1995-2021 The OpenSSL Project Authors. All Rights Reserved.
  3. * Copyright 2005 Nokia. All rights reserved.
  4. *
  5. * Licensed under the Apache License 2.0 (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 <stdio.h>
  11. #include "ssl_local.h"
  12. #include <openssl/evp.h>
  13. #include <openssl/md5.h>
  14. #include <openssl/core_names.h>
  15. #include "internal/cryptlib.h"
  16. static int ssl3_generate_key_block(SSL_CONNECTION *s, unsigned char *km, int num)
  17. {
  18. const EVP_MD *md5 = NULL, *sha1 = NULL;
  19. EVP_MD_CTX *m5;
  20. EVP_MD_CTX *s1;
  21. unsigned char buf[16], smd[SHA_DIGEST_LENGTH];
  22. unsigned char c = 'A';
  23. unsigned int i, k;
  24. int ret = 0;
  25. SSL_CTX *sctx = SSL_CONNECTION_GET_CTX(s);
  26. #ifdef CHARSET_EBCDIC
  27. c = os_toascii[c]; /* 'A' in ASCII */
  28. #endif
  29. k = 0;
  30. md5 = ssl_evp_md_fetch(sctx->libctx, NID_md5, sctx->propq);
  31. sha1 = ssl_evp_md_fetch(sctx->libctx, NID_sha1, sctx->propq);
  32. m5 = EVP_MD_CTX_new();
  33. s1 = EVP_MD_CTX_new();
  34. if (md5 == NULL || sha1 == NULL || m5 == NULL || s1 == NULL) {
  35. SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_MALLOC_FAILURE);
  36. goto err;
  37. }
  38. for (i = 0; (int)i < num; i += MD5_DIGEST_LENGTH) {
  39. k++;
  40. if (k > sizeof(buf)) {
  41. /* bug: 'buf' is too small for this ciphersuite */
  42. SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
  43. goto err;
  44. }
  45. memset(buf, c, k);
  46. c++;
  47. if (!EVP_DigestInit_ex(s1, sha1, NULL)
  48. || !EVP_DigestUpdate(s1, buf, k)
  49. || !EVP_DigestUpdate(s1, s->session->master_key,
  50. s->session->master_key_length)
  51. || !EVP_DigestUpdate(s1, s->s3.server_random, SSL3_RANDOM_SIZE)
  52. || !EVP_DigestUpdate(s1, s->s3.client_random, SSL3_RANDOM_SIZE)
  53. || !EVP_DigestFinal_ex(s1, smd, NULL)
  54. || !EVP_DigestInit_ex(m5, md5, NULL)
  55. || !EVP_DigestUpdate(m5, s->session->master_key,
  56. s->session->master_key_length)
  57. || !EVP_DigestUpdate(m5, smd, SHA_DIGEST_LENGTH)) {
  58. SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
  59. goto err;
  60. }
  61. if ((int)(i + MD5_DIGEST_LENGTH) > num) {
  62. if (!EVP_DigestFinal_ex(m5, smd, NULL)) {
  63. SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
  64. goto err;
  65. }
  66. memcpy(km, smd, (num - i));
  67. } else {
  68. if (!EVP_DigestFinal_ex(m5, km, NULL)) {
  69. SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
  70. goto err;
  71. }
  72. }
  73. km += MD5_DIGEST_LENGTH;
  74. }
  75. OPENSSL_cleanse(smd, sizeof(smd));
  76. ret = 1;
  77. err:
  78. EVP_MD_CTX_free(m5);
  79. EVP_MD_CTX_free(s1);
  80. ssl_evp_md_free(md5);
  81. ssl_evp_md_free(sha1);
  82. return ret;
  83. }
  84. int ssl3_change_cipher_state(SSL_CONNECTION *s, int which)
  85. {
  86. unsigned char *p, *mac_secret;
  87. size_t md_len;
  88. unsigned char *key, *iv;
  89. EVP_CIPHER_CTX *dd;
  90. const EVP_CIPHER *ciph;
  91. const SSL_COMP *comp = NULL;
  92. const EVP_MD *md;
  93. int mdi;
  94. size_t n, iv_len, key_len;
  95. int reuse_dd = 0;
  96. ciph = s->s3.tmp.new_sym_enc;
  97. md = s->s3.tmp.new_hash;
  98. /* m == NULL will lead to a crash later */
  99. if (!ossl_assert(md != NULL)) {
  100. SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
  101. goto err;
  102. }
  103. #ifndef OPENSSL_NO_COMP
  104. comp = s->s3.tmp.new_compression;
  105. #endif
  106. p = s->s3.tmp.key_block;
  107. mdi = EVP_MD_get_size(md);
  108. if (mdi < 0) {
  109. SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
  110. goto err;
  111. }
  112. md_len = (size_t)mdi;
  113. key_len = EVP_CIPHER_get_key_length(ciph);
  114. iv_len = EVP_CIPHER_get_iv_length(ciph);
  115. if ((which == SSL3_CHANGE_CIPHER_CLIENT_WRITE) ||
  116. (which == SSL3_CHANGE_CIPHER_SERVER_READ)) {
  117. mac_secret = &(p[0]);
  118. n = md_len + md_len;
  119. key = &(p[n]);
  120. n += key_len + key_len;
  121. iv = &(p[n]);
  122. n += iv_len + iv_len;
  123. } else {
  124. n = md_len;
  125. mac_secret = &(p[n]);
  126. n += md_len + key_len;
  127. key = &(p[n]);
  128. n += key_len + iv_len;
  129. iv = &(p[n]);
  130. n += iv_len;
  131. }
  132. if (n > s->s3.tmp.key_block_length) {
  133. SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
  134. goto err;
  135. }
  136. if (which & SSL3_CC_READ) {
  137. if (!ssl_set_new_record_layer(s, SSL3_VERSION,
  138. OSSL_RECORD_DIRECTION_READ,
  139. OSSL_RECORD_PROTECTION_LEVEL_APPLICATION,
  140. key, key_len, iv, iv_len, mac_secret,
  141. md_len, ciph, 0, NID_undef, md, comp)) {
  142. /* SSLfatal already called */
  143. goto err;
  144. }
  145. s->statem.enc_write_state = ENC_WRITE_STATE_VALID;
  146. return 1;
  147. }
  148. s->statem.enc_write_state = ENC_WRITE_STATE_INVALID;
  149. if (s->enc_write_ctx != NULL) {
  150. reuse_dd = 1;
  151. } else if ((s->enc_write_ctx = EVP_CIPHER_CTX_new()) == NULL) {
  152. SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_MALLOC_FAILURE);
  153. goto err;
  154. } else {
  155. /* make sure it's initialised in case we exit later with an error */
  156. EVP_CIPHER_CTX_reset(s->enc_write_ctx);
  157. }
  158. dd = s->enc_write_ctx;
  159. if (ssl_replace_hash(&s->write_hash, md) == NULL) {
  160. SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_MALLOC_FAILURE);
  161. goto err;
  162. }
  163. #ifndef OPENSSL_NO_COMP
  164. /* COMPRESS */
  165. COMP_CTX_free(s->compress);
  166. s->compress = NULL;
  167. if (comp != NULL) {
  168. s->compress = COMP_CTX_new(comp->method);
  169. if (s->compress == NULL) {
  170. SSLfatal(s, SSL_AD_INTERNAL_ERROR,
  171. SSL_R_COMPRESSION_LIBRARY_ERROR);
  172. goto err;
  173. }
  174. }
  175. #endif
  176. RECORD_LAYER_reset_write_sequence(&s->rlayer);
  177. memcpy(&(s->s3.write_mac_secret[0]), mac_secret, md_len);
  178. if (reuse_dd)
  179. EVP_CIPHER_CTX_reset(dd);
  180. if (!EVP_CipherInit_ex(dd, ciph, NULL, key, iv, (which & SSL3_CC_WRITE))) {
  181. SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
  182. goto err;
  183. }
  184. if (EVP_CIPHER_get0_provider(ciph) != NULL
  185. && !tls_provider_set_tls_params(s, dd, ciph, md)) {
  186. /* SSLfatal already called */
  187. goto err;
  188. }
  189. s->statem.enc_write_state = ENC_WRITE_STATE_VALID;
  190. return 1;
  191. err:
  192. return 0;
  193. }
  194. int ssl3_setup_key_block(SSL_CONNECTION *s)
  195. {
  196. unsigned char *p;
  197. const EVP_CIPHER *c;
  198. const EVP_MD *hash;
  199. int num;
  200. int ret = 0;
  201. SSL_COMP *comp;
  202. if (s->s3.tmp.key_block_length != 0)
  203. return 1;
  204. if (!ssl_cipher_get_evp(SSL_CONNECTION_GET_CTX(s), s->session, &c, &hash,
  205. NULL, NULL, &comp, 0)) {
  206. /* Error is already recorded */
  207. SSLfatal_alert(s, SSL_AD_INTERNAL_ERROR);
  208. return 0;
  209. }
  210. ssl_evp_cipher_free(s->s3.tmp.new_sym_enc);
  211. s->s3.tmp.new_sym_enc = c;
  212. ssl_evp_md_free(s->s3.tmp.new_hash);
  213. s->s3.tmp.new_hash = hash;
  214. #ifdef OPENSSL_NO_COMP
  215. s->s3.tmp.new_compression = NULL;
  216. #else
  217. s->s3.tmp.new_compression = comp;
  218. #endif
  219. num = EVP_MD_get_size(hash);
  220. if (num < 0)
  221. return 0;
  222. num = EVP_CIPHER_get_key_length(c) + num + EVP_CIPHER_get_iv_length(c);
  223. num *= 2;
  224. ssl3_cleanup_key_block(s);
  225. if ((p = OPENSSL_malloc(num)) == NULL) {
  226. SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_MALLOC_FAILURE);
  227. return 0;
  228. }
  229. s->s3.tmp.key_block_length = num;
  230. s->s3.tmp.key_block = p;
  231. /* Calls SSLfatal() as required */
  232. ret = ssl3_generate_key_block(s, p, num);
  233. if (!(s->options & SSL_OP_DONT_INSERT_EMPTY_FRAGMENTS)) {
  234. /*
  235. * enable vulnerability countermeasure for CBC ciphers with known-IV
  236. * problem (http://www.openssl.org/~bodo/tls-cbc.txt)
  237. */
  238. s->s3.need_empty_fragments = 1;
  239. if (s->session->cipher != NULL) {
  240. if (s->session->cipher->algorithm_enc == SSL_eNULL)
  241. s->s3.need_empty_fragments = 0;
  242. if (s->session->cipher->algorithm_enc == SSL_RC4)
  243. s->s3.need_empty_fragments = 0;
  244. }
  245. }
  246. return ret;
  247. }
  248. void ssl3_cleanup_key_block(SSL_CONNECTION *s)
  249. {
  250. OPENSSL_clear_free(s->s3.tmp.key_block, s->s3.tmp.key_block_length);
  251. s->s3.tmp.key_block = NULL;
  252. s->s3.tmp.key_block_length = 0;
  253. }
  254. int ssl3_init_finished_mac(SSL_CONNECTION *s)
  255. {
  256. BIO *buf = BIO_new(BIO_s_mem());
  257. if (buf == NULL) {
  258. SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_MALLOC_FAILURE);
  259. return 0;
  260. }
  261. ssl3_free_digest_list(s);
  262. s->s3.handshake_buffer = buf;
  263. (void)BIO_set_close(s->s3.handshake_buffer, BIO_CLOSE);
  264. return 1;
  265. }
  266. /*
  267. * Free digest list. Also frees handshake buffer since they are always freed
  268. * together.
  269. */
  270. void ssl3_free_digest_list(SSL_CONNECTION *s)
  271. {
  272. BIO_free(s->s3.handshake_buffer);
  273. s->s3.handshake_buffer = NULL;
  274. EVP_MD_CTX_free(s->s3.handshake_dgst);
  275. s->s3.handshake_dgst = NULL;
  276. }
  277. int ssl3_finish_mac(SSL_CONNECTION *s, const unsigned char *buf, size_t len)
  278. {
  279. int ret;
  280. if (s->s3.handshake_dgst == NULL) {
  281. /* Note: this writes to a memory BIO so a failure is a fatal error */
  282. if (len > INT_MAX) {
  283. SSLfatal(s, SSL_AD_INTERNAL_ERROR, SSL_R_OVERFLOW_ERROR);
  284. return 0;
  285. }
  286. ret = BIO_write(s->s3.handshake_buffer, (void *)buf, (int)len);
  287. if (ret <= 0 || ret != (int)len) {
  288. SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
  289. return 0;
  290. }
  291. } else {
  292. ret = EVP_DigestUpdate(s->s3.handshake_dgst, buf, len);
  293. if (!ret) {
  294. SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
  295. return 0;
  296. }
  297. }
  298. return 1;
  299. }
  300. int ssl3_digest_cached_records(SSL_CONNECTION *s, int keep)
  301. {
  302. const EVP_MD *md;
  303. long hdatalen;
  304. void *hdata;
  305. if (s->s3.handshake_dgst == NULL) {
  306. hdatalen = BIO_get_mem_data(s->s3.handshake_buffer, &hdata);
  307. if (hdatalen <= 0) {
  308. SSLfatal(s, SSL_AD_INTERNAL_ERROR, SSL_R_BAD_HANDSHAKE_LENGTH);
  309. return 0;
  310. }
  311. s->s3.handshake_dgst = EVP_MD_CTX_new();
  312. if (s->s3.handshake_dgst == NULL) {
  313. SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_MALLOC_FAILURE);
  314. return 0;
  315. }
  316. md = ssl_handshake_md(s);
  317. if (md == NULL) {
  318. SSLfatal(s, SSL_AD_INTERNAL_ERROR,
  319. SSL_R_NO_SUITABLE_DIGEST_ALGORITHM);
  320. return 0;
  321. }
  322. if (!EVP_DigestInit_ex(s->s3.handshake_dgst, md, NULL)
  323. || !EVP_DigestUpdate(s->s3.handshake_dgst, hdata, hdatalen)) {
  324. SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
  325. return 0;
  326. }
  327. }
  328. if (keep == 0) {
  329. BIO_free(s->s3.handshake_buffer);
  330. s->s3.handshake_buffer = NULL;
  331. }
  332. return 1;
  333. }
  334. void ssl3_digest_master_key_set_params(const SSL_SESSION *session,
  335. OSSL_PARAM params[])
  336. {
  337. int n = 0;
  338. params[n++] = OSSL_PARAM_construct_octet_string(OSSL_DIGEST_PARAM_SSL3_MS,
  339. (void *)session->master_key,
  340. session->master_key_length);
  341. params[n++] = OSSL_PARAM_construct_end();
  342. }
  343. size_t ssl3_final_finish_mac(SSL_CONNECTION *s, const char *sender, size_t len,
  344. unsigned char *p)
  345. {
  346. int ret;
  347. EVP_MD_CTX *ctx = NULL;
  348. if (!ssl3_digest_cached_records(s, 0)) {
  349. /* SSLfatal() already called */
  350. return 0;
  351. }
  352. if (EVP_MD_CTX_get_type(s->s3.handshake_dgst) != NID_md5_sha1) {
  353. SSLfatal(s, SSL_AD_INTERNAL_ERROR, SSL_R_NO_REQUIRED_DIGEST);
  354. return 0;
  355. }
  356. ctx = EVP_MD_CTX_new();
  357. if (ctx == NULL) {
  358. SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_MALLOC_FAILURE);
  359. return 0;
  360. }
  361. if (!EVP_MD_CTX_copy_ex(ctx, s->s3.handshake_dgst)) {
  362. SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
  363. ret = 0;
  364. goto err;
  365. }
  366. ret = EVP_MD_CTX_get_size(ctx);
  367. if (ret < 0) {
  368. SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
  369. ret = 0;
  370. goto err;
  371. }
  372. if (sender != NULL) {
  373. OSSL_PARAM digest_cmd_params[3];
  374. ssl3_digest_master_key_set_params(s->session, digest_cmd_params);
  375. if (EVP_DigestUpdate(ctx, sender, len) <= 0
  376. || EVP_MD_CTX_set_params(ctx, digest_cmd_params) <= 0
  377. || EVP_DigestFinal_ex(ctx, p, NULL) <= 0) {
  378. SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
  379. ret = 0;
  380. }
  381. }
  382. err:
  383. EVP_MD_CTX_free(ctx);
  384. return ret;
  385. }
  386. int ssl3_generate_master_secret(SSL_CONNECTION *s, unsigned char *out,
  387. unsigned char *p,
  388. size_t len, size_t *secret_size)
  389. {
  390. static const unsigned char *salt[3] = {
  391. #ifndef CHARSET_EBCDIC
  392. (const unsigned char *)"A",
  393. (const unsigned char *)"BB",
  394. (const unsigned char *)"CCC",
  395. #else
  396. (const unsigned char *)"\x41",
  397. (const unsigned char *)"\x42\x42",
  398. (const unsigned char *)"\x43\x43\x43",
  399. #endif
  400. };
  401. unsigned char buf[EVP_MAX_MD_SIZE];
  402. EVP_MD_CTX *ctx = EVP_MD_CTX_new();
  403. int i, ret = 1;
  404. unsigned int n;
  405. size_t ret_secret_size = 0;
  406. if (ctx == NULL) {
  407. SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_MALLOC_FAILURE);
  408. return 0;
  409. }
  410. for (i = 0; i < 3; i++) {
  411. if (EVP_DigestInit_ex(ctx, SSL_CONNECTION_GET_CTX(s)->sha1, NULL) <= 0
  412. || EVP_DigestUpdate(ctx, salt[i],
  413. strlen((const char *)salt[i])) <= 0
  414. || EVP_DigestUpdate(ctx, p, len) <= 0
  415. || EVP_DigestUpdate(ctx, &(s->s3.client_random[0]),
  416. SSL3_RANDOM_SIZE) <= 0
  417. || EVP_DigestUpdate(ctx, &(s->s3.server_random[0]),
  418. SSL3_RANDOM_SIZE) <= 0
  419. || EVP_DigestFinal_ex(ctx, buf, &n) <= 0
  420. || EVP_DigestInit_ex(ctx, SSL_CONNECTION_GET_CTX(s)->md5, NULL) <= 0
  421. || EVP_DigestUpdate(ctx, p, len) <= 0
  422. || EVP_DigestUpdate(ctx, buf, n) <= 0
  423. || EVP_DigestFinal_ex(ctx, out, &n) <= 0) {
  424. SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
  425. ret = 0;
  426. break;
  427. }
  428. out += n;
  429. ret_secret_size += n;
  430. }
  431. EVP_MD_CTX_free(ctx);
  432. OPENSSL_cleanse(buf, sizeof(buf));
  433. if (ret)
  434. *secret_size = ret_secret_size;
  435. return ret;
  436. }
  437. int ssl3_alert_code(int code)
  438. {
  439. switch (code) {
  440. case SSL_AD_CLOSE_NOTIFY:
  441. return SSL3_AD_CLOSE_NOTIFY;
  442. case SSL_AD_UNEXPECTED_MESSAGE:
  443. return SSL3_AD_UNEXPECTED_MESSAGE;
  444. case SSL_AD_BAD_RECORD_MAC:
  445. return SSL3_AD_BAD_RECORD_MAC;
  446. case SSL_AD_DECRYPTION_FAILED:
  447. return SSL3_AD_BAD_RECORD_MAC;
  448. case SSL_AD_RECORD_OVERFLOW:
  449. return SSL3_AD_BAD_RECORD_MAC;
  450. case SSL_AD_DECOMPRESSION_FAILURE:
  451. return SSL3_AD_DECOMPRESSION_FAILURE;
  452. case SSL_AD_HANDSHAKE_FAILURE:
  453. return SSL3_AD_HANDSHAKE_FAILURE;
  454. case SSL_AD_NO_CERTIFICATE:
  455. return SSL3_AD_NO_CERTIFICATE;
  456. case SSL_AD_BAD_CERTIFICATE:
  457. return SSL3_AD_BAD_CERTIFICATE;
  458. case SSL_AD_UNSUPPORTED_CERTIFICATE:
  459. return SSL3_AD_UNSUPPORTED_CERTIFICATE;
  460. case SSL_AD_CERTIFICATE_REVOKED:
  461. return SSL3_AD_CERTIFICATE_REVOKED;
  462. case SSL_AD_CERTIFICATE_EXPIRED:
  463. return SSL3_AD_CERTIFICATE_EXPIRED;
  464. case SSL_AD_CERTIFICATE_UNKNOWN:
  465. return SSL3_AD_CERTIFICATE_UNKNOWN;
  466. case SSL_AD_ILLEGAL_PARAMETER:
  467. return SSL3_AD_ILLEGAL_PARAMETER;
  468. case SSL_AD_UNKNOWN_CA:
  469. return SSL3_AD_BAD_CERTIFICATE;
  470. case SSL_AD_ACCESS_DENIED:
  471. return SSL3_AD_HANDSHAKE_FAILURE;
  472. case SSL_AD_DECODE_ERROR:
  473. return SSL3_AD_HANDSHAKE_FAILURE;
  474. case SSL_AD_DECRYPT_ERROR:
  475. return SSL3_AD_HANDSHAKE_FAILURE;
  476. case SSL_AD_EXPORT_RESTRICTION:
  477. return SSL3_AD_HANDSHAKE_FAILURE;
  478. case SSL_AD_PROTOCOL_VERSION:
  479. return SSL3_AD_HANDSHAKE_FAILURE;
  480. case SSL_AD_INSUFFICIENT_SECURITY:
  481. return SSL3_AD_HANDSHAKE_FAILURE;
  482. case SSL_AD_INTERNAL_ERROR:
  483. return SSL3_AD_HANDSHAKE_FAILURE;
  484. case SSL_AD_USER_CANCELLED:
  485. return SSL3_AD_HANDSHAKE_FAILURE;
  486. case SSL_AD_NO_RENEGOTIATION:
  487. return -1; /* Don't send it :-) */
  488. case SSL_AD_UNSUPPORTED_EXTENSION:
  489. return SSL3_AD_HANDSHAKE_FAILURE;
  490. case SSL_AD_CERTIFICATE_UNOBTAINABLE:
  491. return SSL3_AD_HANDSHAKE_FAILURE;
  492. case SSL_AD_UNRECOGNIZED_NAME:
  493. return SSL3_AD_HANDSHAKE_FAILURE;
  494. case SSL_AD_BAD_CERTIFICATE_STATUS_RESPONSE:
  495. return SSL3_AD_HANDSHAKE_FAILURE;
  496. case SSL_AD_BAD_CERTIFICATE_HASH_VALUE:
  497. return SSL3_AD_HANDSHAKE_FAILURE;
  498. case SSL_AD_UNKNOWN_PSK_IDENTITY:
  499. return TLS1_AD_UNKNOWN_PSK_IDENTITY;
  500. case SSL_AD_INAPPROPRIATE_FALLBACK:
  501. return TLS1_AD_INAPPROPRIATE_FALLBACK;
  502. case SSL_AD_NO_APPLICATION_PROTOCOL:
  503. return TLS1_AD_NO_APPLICATION_PROTOCOL;
  504. case SSL_AD_CERTIFICATE_REQUIRED:
  505. return SSL_AD_HANDSHAKE_FAILURE;
  506. case TLS13_AD_MISSING_EXTENSION:
  507. return SSL_AD_HANDSHAKE_FAILURE;
  508. default:
  509. return -1;
  510. }
  511. }