tls13_both.cc 18 KB

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  1. /* Copyright (c) 2016, Google Inc.
  2. *
  3. * Permission to use, copy, modify, and/or distribute this software for any
  4. * purpose with or without fee is hereby granted, provided that the above
  5. * copyright notice and this permission notice appear in all copies.
  6. *
  7. * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
  8. * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
  9. * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY
  10. * SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
  11. * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN ACTION
  12. * OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF OR IN
  13. * CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE. */
  14. #include <openssl/ssl.h>
  15. #include <assert.h>
  16. #include <string.h>
  17. #include <utility>
  18. #include <openssl/bytestring.h>
  19. #include <openssl/err.h>
  20. #include <openssl/hkdf.h>
  21. #include <openssl/mem.h>
  22. #include <openssl/stack.h>
  23. #include <openssl/x509.h>
  24. #include "../crypto/internal.h"
  25. #include "internal.h"
  26. namespace bssl {
  27. // kMaxKeyUpdates is the number of consecutive KeyUpdates that will be
  28. // processed. Without this limit an attacker could force unbounded processing
  29. // without being able to return application data.
  30. static const uint8_t kMaxKeyUpdates = 32;
  31. const uint8_t kHelloRetryRequest[SSL3_RANDOM_SIZE] = {
  32. 0xcf, 0x21, 0xad, 0x74, 0xe5, 0x9a, 0x61, 0x11, 0xbe, 0x1d, 0x8c,
  33. 0x02, 0x1e, 0x65, 0xb8, 0x91, 0xc2, 0xa2, 0x11, 0x16, 0x7a, 0xbb,
  34. 0x8c, 0x5e, 0x07, 0x9e, 0x09, 0xe2, 0xc8, 0xa8, 0x33, 0x9c,
  35. };
  36. bool tls13_get_cert_verify_signature_input(
  37. SSL_HANDSHAKE *hs, Array<uint8_t> *out,
  38. enum ssl_cert_verify_context_t cert_verify_context) {
  39. ScopedCBB cbb;
  40. if (!CBB_init(cbb.get(), 64 + 33 + 1 + 2 * EVP_MAX_MD_SIZE)) {
  41. OPENSSL_PUT_ERROR(SSL, ERR_R_MALLOC_FAILURE);
  42. return false;
  43. }
  44. for (size_t i = 0; i < 64; i++) {
  45. if (!CBB_add_u8(cbb.get(), 0x20)) {
  46. OPENSSL_PUT_ERROR(SSL, ERR_R_MALLOC_FAILURE);
  47. return false;
  48. }
  49. }
  50. Span<const char> context;
  51. if (cert_verify_context == ssl_cert_verify_server) {
  52. static const char kContext[] = "TLS 1.3, server CertificateVerify";
  53. context = kContext;
  54. } else if (cert_verify_context == ssl_cert_verify_client) {
  55. static const char kContext[] = "TLS 1.3, client CertificateVerify";
  56. context = kContext;
  57. } else if (cert_verify_context == ssl_cert_verify_channel_id) {
  58. static const char kContext[] = "TLS 1.3, Channel ID";
  59. context = kContext;
  60. } else {
  61. OPENSSL_PUT_ERROR(SSL, ERR_R_MALLOC_FAILURE);
  62. return false;
  63. }
  64. // Note |context| includes the NUL byte separator.
  65. if (!CBB_add_bytes(cbb.get(),
  66. reinterpret_cast<const uint8_t *>(context.data()),
  67. context.size())) {
  68. OPENSSL_PUT_ERROR(SSL, ERR_R_MALLOC_FAILURE);
  69. return false;
  70. }
  71. uint8_t context_hash[EVP_MAX_MD_SIZE];
  72. size_t context_hash_len;
  73. if (!hs->transcript.GetHash(context_hash, &context_hash_len) ||
  74. !CBB_add_bytes(cbb.get(), context_hash, context_hash_len) ||
  75. !CBBFinishArray(cbb.get(), out)) {
  76. OPENSSL_PUT_ERROR(SSL, ERR_R_MALLOC_FAILURE);
  77. return false;
  78. }
  79. return true;
  80. }
  81. int tls13_process_certificate(SSL_HANDSHAKE *hs, const SSLMessage &msg,
  82. int allow_anonymous) {
  83. SSL *const ssl = hs->ssl;
  84. CBS body = msg.body, context, certificate_list;
  85. if (!CBS_get_u8_length_prefixed(&body, &context) ||
  86. CBS_len(&context) != 0 ||
  87. !CBS_get_u24_length_prefixed(&body, &certificate_list) ||
  88. CBS_len(&body) != 0) {
  89. ssl_send_alert(ssl, SSL3_AL_FATAL, SSL_AD_DECODE_ERROR);
  90. OPENSSL_PUT_ERROR(SSL, SSL_R_DECODE_ERROR);
  91. return 0;
  92. }
  93. UniquePtr<STACK_OF(CRYPTO_BUFFER)> certs(sk_CRYPTO_BUFFER_new_null());
  94. if (!certs) {
  95. ssl_send_alert(ssl, SSL3_AL_FATAL, SSL_AD_INTERNAL_ERROR);
  96. OPENSSL_PUT_ERROR(SSL, ERR_R_MALLOC_FAILURE);
  97. return 0;
  98. }
  99. const bool retain_sha256 =
  100. ssl->server && ssl->retain_only_sha256_of_client_certs;
  101. UniquePtr<EVP_PKEY> pkey;
  102. while (CBS_len(&certificate_list) > 0) {
  103. CBS certificate, extensions;
  104. if (!CBS_get_u24_length_prefixed(&certificate_list, &certificate) ||
  105. !CBS_get_u16_length_prefixed(&certificate_list, &extensions) ||
  106. CBS_len(&certificate) == 0) {
  107. ssl_send_alert(ssl, SSL3_AL_FATAL, SSL_AD_DECODE_ERROR);
  108. OPENSSL_PUT_ERROR(SSL, SSL_R_CERT_LENGTH_MISMATCH);
  109. return 0;
  110. }
  111. if (sk_CRYPTO_BUFFER_num(certs.get()) == 0) {
  112. pkey = ssl_cert_parse_pubkey(&certificate);
  113. if (!pkey) {
  114. ssl_send_alert(ssl, SSL3_AL_FATAL, SSL_AD_DECODE_ERROR);
  115. OPENSSL_PUT_ERROR(SSL, SSL_R_DECODE_ERROR);
  116. return 0;
  117. }
  118. // TLS 1.3 always uses certificate keys for signing thus the correct
  119. // keyUsage is enforced.
  120. if (!ssl_cert_check_digital_signature_key_usage(&certificate)) {
  121. ssl_send_alert(ssl, SSL3_AL_FATAL, SSL_AD_ILLEGAL_PARAMETER);
  122. return 0;
  123. }
  124. if (retain_sha256) {
  125. // Retain the hash of the leaf certificate if requested.
  126. SHA256(CBS_data(&certificate), CBS_len(&certificate),
  127. hs->new_session->peer_sha256);
  128. }
  129. }
  130. UniquePtr<CRYPTO_BUFFER> buf(
  131. CRYPTO_BUFFER_new_from_CBS(&certificate, ssl->ctx->pool));
  132. if (!buf ||
  133. !PushToStack(certs.get(), std::move(buf))) {
  134. ssl_send_alert(ssl, SSL3_AL_FATAL, SSL_AD_INTERNAL_ERROR);
  135. OPENSSL_PUT_ERROR(SSL, ERR_R_MALLOC_FAILURE);
  136. return 0;
  137. }
  138. // Parse out the extensions.
  139. bool have_status_request = false, have_sct = false;
  140. CBS status_request, sct;
  141. const SSL_EXTENSION_TYPE ext_types[] = {
  142. {TLSEXT_TYPE_status_request, &have_status_request, &status_request},
  143. {TLSEXT_TYPE_certificate_timestamp, &have_sct, &sct},
  144. };
  145. uint8_t alert = SSL_AD_DECODE_ERROR;
  146. if (!ssl_parse_extensions(&extensions, &alert, ext_types,
  147. OPENSSL_ARRAY_SIZE(ext_types),
  148. 0 /* reject unknown */)) {
  149. ssl_send_alert(ssl, SSL3_AL_FATAL, alert);
  150. return 0;
  151. }
  152. // All Certificate extensions are parsed, but only the leaf extensions are
  153. // stored.
  154. if (have_status_request) {
  155. if (ssl->server || !ssl->ocsp_stapling_enabled) {
  156. OPENSSL_PUT_ERROR(SSL, SSL_R_UNEXPECTED_EXTENSION);
  157. ssl_send_alert(ssl, SSL3_AL_FATAL, SSL_AD_UNSUPPORTED_EXTENSION);
  158. return 0;
  159. }
  160. uint8_t status_type;
  161. CBS ocsp_response;
  162. if (!CBS_get_u8(&status_request, &status_type) ||
  163. status_type != TLSEXT_STATUSTYPE_ocsp ||
  164. !CBS_get_u24_length_prefixed(&status_request, &ocsp_response) ||
  165. CBS_len(&ocsp_response) == 0 ||
  166. CBS_len(&status_request) != 0) {
  167. ssl_send_alert(ssl, SSL3_AL_FATAL, SSL_AD_DECODE_ERROR);
  168. return 0;
  169. }
  170. if (sk_CRYPTO_BUFFER_num(certs.get()) == 1) {
  171. CRYPTO_BUFFER_free(hs->new_session->ocsp_response);
  172. hs->new_session->ocsp_response =
  173. CRYPTO_BUFFER_new_from_CBS(&ocsp_response, ssl->ctx->pool);
  174. if (hs->new_session->ocsp_response == nullptr) {
  175. ssl_send_alert(ssl, SSL3_AL_FATAL, SSL_AD_INTERNAL_ERROR);
  176. return 0;
  177. }
  178. }
  179. }
  180. if (have_sct) {
  181. if (ssl->server || !ssl->signed_cert_timestamps_enabled) {
  182. OPENSSL_PUT_ERROR(SSL, SSL_R_UNEXPECTED_EXTENSION);
  183. ssl_send_alert(ssl, SSL3_AL_FATAL, SSL_AD_UNSUPPORTED_EXTENSION);
  184. return 0;
  185. }
  186. if (!ssl_is_sct_list_valid(&sct)) {
  187. OPENSSL_PUT_ERROR(SSL, SSL_R_ERROR_PARSING_EXTENSION);
  188. ssl_send_alert(ssl, SSL3_AL_FATAL, SSL_AD_DECODE_ERROR);
  189. return 0;
  190. }
  191. if (sk_CRYPTO_BUFFER_num(certs.get()) == 1) {
  192. CRYPTO_BUFFER_free(hs->new_session->signed_cert_timestamp_list);
  193. hs->new_session->signed_cert_timestamp_list =
  194. CRYPTO_BUFFER_new_from_CBS(&sct, ssl->ctx->pool);
  195. if (hs->new_session->signed_cert_timestamp_list == nullptr) {
  196. ssl_send_alert(ssl, SSL3_AL_FATAL, SSL_AD_INTERNAL_ERROR);
  197. return 0;
  198. }
  199. }
  200. }
  201. }
  202. // Store a null certificate list rather than an empty one if the peer didn't
  203. // send certificates.
  204. if (sk_CRYPTO_BUFFER_num(certs.get()) == 0) {
  205. certs.reset();
  206. }
  207. hs->peer_pubkey = std::move(pkey);
  208. sk_CRYPTO_BUFFER_pop_free(hs->new_session->certs, CRYPTO_BUFFER_free);
  209. hs->new_session->certs = certs.release();
  210. if (!ssl->ctx->x509_method->session_cache_objects(hs->new_session.get())) {
  211. OPENSSL_PUT_ERROR(SSL, SSL_R_DECODE_ERROR);
  212. ssl_send_alert(ssl, SSL3_AL_FATAL, SSL_AD_DECODE_ERROR);
  213. return 0;
  214. }
  215. if (sk_CRYPTO_BUFFER_num(hs->new_session->certs) == 0) {
  216. if (!allow_anonymous) {
  217. OPENSSL_PUT_ERROR(SSL, SSL_R_PEER_DID_NOT_RETURN_A_CERTIFICATE);
  218. ssl_send_alert(ssl, SSL3_AL_FATAL, SSL_AD_CERTIFICATE_REQUIRED);
  219. return 0;
  220. }
  221. // OpenSSL returns X509_V_OK when no certificates are requested. This is
  222. // classed by them as a bug, but it's assumed by at least NGINX.
  223. hs->new_session->verify_result = X509_V_OK;
  224. // No certificate, so nothing more to do.
  225. return 1;
  226. }
  227. hs->new_session->peer_sha256_valid = retain_sha256;
  228. return 1;
  229. }
  230. int tls13_process_certificate_verify(SSL_HANDSHAKE *hs, const SSLMessage &msg) {
  231. SSL *const ssl = hs->ssl;
  232. if (hs->peer_pubkey == NULL) {
  233. OPENSSL_PUT_ERROR(SSL, ERR_R_INTERNAL_ERROR);
  234. return 0;
  235. }
  236. CBS body = msg.body, signature;
  237. uint16_t signature_algorithm;
  238. if (!CBS_get_u16(&body, &signature_algorithm) ||
  239. !CBS_get_u16_length_prefixed(&body, &signature) ||
  240. CBS_len(&body) != 0) {
  241. OPENSSL_PUT_ERROR(SSL, SSL_R_DECODE_ERROR);
  242. ssl_send_alert(ssl, SSL3_AL_FATAL, SSL_AD_DECODE_ERROR);
  243. return 0;
  244. }
  245. uint8_t alert = SSL_AD_DECODE_ERROR;
  246. if (!tls12_check_peer_sigalg(ssl, &alert, signature_algorithm)) {
  247. ssl_send_alert(ssl, SSL3_AL_FATAL, alert);
  248. return 0;
  249. }
  250. hs->new_session->peer_signature_algorithm = signature_algorithm;
  251. Array<uint8_t> input;
  252. if (!tls13_get_cert_verify_signature_input(
  253. hs, &input,
  254. ssl->server ? ssl_cert_verify_client : ssl_cert_verify_server)) {
  255. ssl_send_alert(ssl, SSL3_AL_FATAL, SSL_AD_INTERNAL_ERROR);
  256. return 0;
  257. }
  258. bool sig_ok = ssl_public_key_verify(ssl, signature, signature_algorithm,
  259. hs->peer_pubkey.get(), input);
  260. #if defined(BORINGSSL_UNSAFE_FUZZER_MODE)
  261. sig_ok = true;
  262. ERR_clear_error();
  263. #endif
  264. if (!sig_ok) {
  265. OPENSSL_PUT_ERROR(SSL, SSL_R_BAD_SIGNATURE);
  266. ssl_send_alert(ssl, SSL3_AL_FATAL, SSL_AD_DECRYPT_ERROR);
  267. return 0;
  268. }
  269. return 1;
  270. }
  271. int tls13_process_finished(SSL_HANDSHAKE *hs, const SSLMessage &msg,
  272. int use_saved_value) {
  273. SSL *const ssl = hs->ssl;
  274. uint8_t verify_data_buf[EVP_MAX_MD_SIZE];
  275. const uint8_t *verify_data;
  276. size_t verify_data_len;
  277. if (use_saved_value) {
  278. assert(ssl->server);
  279. verify_data = hs->expected_client_finished;
  280. verify_data_len = hs->hash_len;
  281. } else {
  282. if (!tls13_finished_mac(hs, verify_data_buf, &verify_data_len,
  283. !ssl->server)) {
  284. return 0;
  285. }
  286. verify_data = verify_data_buf;
  287. }
  288. int finished_ok = CBS_mem_equal(&msg.body, verify_data, verify_data_len);
  289. #if defined(BORINGSSL_UNSAFE_FUZZER_MODE)
  290. finished_ok = 1;
  291. #endif
  292. if (!finished_ok) {
  293. ssl_send_alert(ssl, SSL3_AL_FATAL, SSL_AD_DECRYPT_ERROR);
  294. OPENSSL_PUT_ERROR(SSL, SSL_R_DIGEST_CHECK_FAILED);
  295. return 0;
  296. }
  297. return 1;
  298. }
  299. int tls13_add_certificate(SSL_HANDSHAKE *hs) {
  300. SSL *const ssl = hs->ssl;
  301. ScopedCBB cbb;
  302. CBB body, certificate_list;
  303. if (!ssl->method->init_message(ssl, cbb.get(), &body, SSL3_MT_CERTIFICATE) ||
  304. // The request context is always empty in the handshake.
  305. !CBB_add_u8(&body, 0) ||
  306. !CBB_add_u24_length_prefixed(&body, &certificate_list)) {
  307. OPENSSL_PUT_ERROR(SSL, ERR_R_INTERNAL_ERROR);
  308. return 0;
  309. }
  310. if (!ssl_has_certificate(ssl)) {
  311. return ssl_add_message_cbb(ssl, cbb.get());
  312. }
  313. CERT *cert = ssl->cert;
  314. CRYPTO_BUFFER *leaf_buf = sk_CRYPTO_BUFFER_value(cert->chain, 0);
  315. CBB leaf, extensions;
  316. if (!CBB_add_u24_length_prefixed(&certificate_list, &leaf) ||
  317. !CBB_add_bytes(&leaf, CRYPTO_BUFFER_data(leaf_buf),
  318. CRYPTO_BUFFER_len(leaf_buf)) ||
  319. !CBB_add_u16_length_prefixed(&certificate_list, &extensions)) {
  320. OPENSSL_PUT_ERROR(SSL, ERR_R_INTERNAL_ERROR);
  321. return 0;
  322. }
  323. if (hs->scts_requested && ssl->cert->signed_cert_timestamp_list != NULL) {
  324. CBB contents;
  325. if (!CBB_add_u16(&extensions, TLSEXT_TYPE_certificate_timestamp) ||
  326. !CBB_add_u16_length_prefixed(&extensions, &contents) ||
  327. !CBB_add_bytes(
  328. &contents,
  329. CRYPTO_BUFFER_data(ssl->cert->signed_cert_timestamp_list),
  330. CRYPTO_BUFFER_len(ssl->cert->signed_cert_timestamp_list)) ||
  331. !CBB_flush(&extensions)) {
  332. OPENSSL_PUT_ERROR(SSL, ERR_R_INTERNAL_ERROR);
  333. return 0;
  334. }
  335. }
  336. if (hs->ocsp_stapling_requested &&
  337. ssl->cert->ocsp_response != NULL) {
  338. CBB contents, ocsp_response;
  339. if (!CBB_add_u16(&extensions, TLSEXT_TYPE_status_request) ||
  340. !CBB_add_u16_length_prefixed(&extensions, &contents) ||
  341. !CBB_add_u8(&contents, TLSEXT_STATUSTYPE_ocsp) ||
  342. !CBB_add_u24_length_prefixed(&contents, &ocsp_response) ||
  343. !CBB_add_bytes(&ocsp_response,
  344. CRYPTO_BUFFER_data(ssl->cert->ocsp_response),
  345. CRYPTO_BUFFER_len(ssl->cert->ocsp_response)) ||
  346. !CBB_flush(&extensions)) {
  347. OPENSSL_PUT_ERROR(SSL, ERR_R_INTERNAL_ERROR);
  348. return 0;
  349. }
  350. }
  351. for (size_t i = 1; i < sk_CRYPTO_BUFFER_num(cert->chain); i++) {
  352. CRYPTO_BUFFER *cert_buf = sk_CRYPTO_BUFFER_value(cert->chain, i);
  353. CBB child;
  354. if (!CBB_add_u24_length_prefixed(&certificate_list, &child) ||
  355. !CBB_add_bytes(&child, CRYPTO_BUFFER_data(cert_buf),
  356. CRYPTO_BUFFER_len(cert_buf)) ||
  357. !CBB_add_u16(&certificate_list, 0 /* no extensions */)) {
  358. OPENSSL_PUT_ERROR(SSL, ERR_R_INTERNAL_ERROR);
  359. return 0;
  360. }
  361. }
  362. return ssl_add_message_cbb(ssl, cbb.get());
  363. }
  364. enum ssl_private_key_result_t tls13_add_certificate_verify(SSL_HANDSHAKE *hs) {
  365. SSL *const ssl = hs->ssl;
  366. uint16_t signature_algorithm;
  367. if (!tls1_choose_signature_algorithm(hs, &signature_algorithm)) {
  368. return ssl_private_key_failure;
  369. }
  370. ScopedCBB cbb;
  371. CBB body;
  372. if (!ssl->method->init_message(ssl, cbb.get(), &body,
  373. SSL3_MT_CERTIFICATE_VERIFY) ||
  374. !CBB_add_u16(&body, signature_algorithm)) {
  375. OPENSSL_PUT_ERROR(SSL, ERR_R_INTERNAL_ERROR);
  376. return ssl_private_key_failure;
  377. }
  378. // Sign the digest.
  379. CBB child;
  380. const size_t max_sig_len = EVP_PKEY_size(hs->local_pubkey.get());
  381. uint8_t *sig;
  382. size_t sig_len;
  383. if (!CBB_add_u16_length_prefixed(&body, &child) ||
  384. !CBB_reserve(&child, &sig, max_sig_len)) {
  385. ssl_send_alert(ssl, SSL3_AL_FATAL, SSL_AD_INTERNAL_ERROR);
  386. return ssl_private_key_failure;
  387. }
  388. Array<uint8_t> msg;
  389. if (!tls13_get_cert_verify_signature_input(
  390. hs, &msg,
  391. ssl->server ? ssl_cert_verify_server : ssl_cert_verify_client)) {
  392. ssl_send_alert(ssl, SSL3_AL_FATAL, SSL_AD_INTERNAL_ERROR);
  393. return ssl_private_key_failure;
  394. }
  395. enum ssl_private_key_result_t sign_result = ssl_private_key_sign(
  396. hs, sig, &sig_len, max_sig_len, signature_algorithm, msg);
  397. if (sign_result != ssl_private_key_success) {
  398. return sign_result;
  399. }
  400. if (!CBB_did_write(&child, sig_len) ||
  401. !ssl_add_message_cbb(ssl, cbb.get())) {
  402. return ssl_private_key_failure;
  403. }
  404. return ssl_private_key_success;
  405. }
  406. int tls13_add_finished(SSL_HANDSHAKE *hs) {
  407. SSL *const ssl = hs->ssl;
  408. size_t verify_data_len;
  409. uint8_t verify_data[EVP_MAX_MD_SIZE];
  410. if (!tls13_finished_mac(hs, verify_data, &verify_data_len, ssl->server)) {
  411. ssl_send_alert(ssl, SSL3_AL_FATAL, SSL_AD_INTERNAL_ERROR);
  412. OPENSSL_PUT_ERROR(SSL, SSL_R_DIGEST_CHECK_FAILED);
  413. return 0;
  414. }
  415. ScopedCBB cbb;
  416. CBB body;
  417. if (!ssl->method->init_message(ssl, cbb.get(), &body, SSL3_MT_FINISHED) ||
  418. !CBB_add_bytes(&body, verify_data, verify_data_len) ||
  419. !ssl_add_message_cbb(ssl, cbb.get())) {
  420. return 0;
  421. }
  422. return 1;
  423. }
  424. static int tls13_receive_key_update(SSL *ssl, const SSLMessage &msg) {
  425. CBS body = msg.body;
  426. uint8_t key_update_request;
  427. if (!CBS_get_u8(&body, &key_update_request) ||
  428. CBS_len(&body) != 0 ||
  429. (key_update_request != SSL_KEY_UPDATE_NOT_REQUESTED &&
  430. key_update_request != SSL_KEY_UPDATE_REQUESTED)) {
  431. OPENSSL_PUT_ERROR(SSL, SSL_R_DECODE_ERROR);
  432. ssl_send_alert(ssl, SSL3_AL_FATAL, SSL_AD_DECODE_ERROR);
  433. return 0;
  434. }
  435. if (!tls13_rotate_traffic_key(ssl, evp_aead_open)) {
  436. return 0;
  437. }
  438. // Acknowledge the KeyUpdate
  439. if (key_update_request == SSL_KEY_UPDATE_REQUESTED &&
  440. !ssl->s3->key_update_pending) {
  441. ScopedCBB cbb;
  442. CBB body_cbb;
  443. if (!ssl->method->init_message(ssl, cbb.get(), &body_cbb,
  444. SSL3_MT_KEY_UPDATE) ||
  445. !CBB_add_u8(&body_cbb, SSL_KEY_UPDATE_NOT_REQUESTED) ||
  446. !ssl_add_message_cbb(ssl, cbb.get()) ||
  447. !tls13_rotate_traffic_key(ssl, evp_aead_seal)) {
  448. return 0;
  449. }
  450. // Suppress KeyUpdate acknowledgments until this change is written to the
  451. // wire. This prevents us from accumulating write obligations when read and
  452. // write progress at different rates. See draft-ietf-tls-tls13-18, section
  453. // 4.5.3.
  454. ssl->s3->key_update_pending = true;
  455. }
  456. return 1;
  457. }
  458. int tls13_post_handshake(SSL *ssl, const SSLMessage &msg) {
  459. if (msg.type == SSL3_MT_KEY_UPDATE) {
  460. ssl->s3->key_update_count++;
  461. if (ssl->s3->key_update_count > kMaxKeyUpdates) {
  462. OPENSSL_PUT_ERROR(SSL, SSL_R_TOO_MANY_KEY_UPDATES);
  463. ssl_send_alert(ssl, SSL3_AL_FATAL, SSL_AD_UNEXPECTED_MESSAGE);
  464. return 0;
  465. }
  466. return tls13_receive_key_update(ssl, msg);
  467. }
  468. ssl->s3->key_update_count = 0;
  469. if (msg.type == SSL3_MT_NEW_SESSION_TICKET && !ssl->server) {
  470. return tls13_process_new_session_ticket(ssl, msg);
  471. }
  472. ssl_send_alert(ssl, SSL3_AL_FATAL, SSL_AD_UNEXPECTED_MESSAGE);
  473. OPENSSL_PUT_ERROR(SSL, SSL_R_UNEXPECTED_MESSAGE);
  474. return 0;
  475. }
  476. } // namespace bssl