1 /*
2 * Copyright 2016-2024 The OpenSSL Project Authors. All Rights Reserved.
3 *
4 * Licensed under the Apache License 2.0 (the "License"). You may not use
5 * this file except in compliance with the License. You can obtain a copy
6 * in the file LICENSE in the source distribution or at
7 * https://www.openssl.org/source/license.html
8 */
9
10 #if defined(__TANDEM) && defined(_SPT_MODEL_)
11 # include <spthread.h>
12 # include <spt_extensions.h> /* timeval */
13 #endif
14
15 #include <string.h>
16 #include "internal/nelem.h"
17 #include "internal/cryptlib.h"
18 #include "../ssl_local.h"
19 #include "statem_local.h"
20
21 static int final_renegotiate(SSL_CONNECTION *s, unsigned int context, int sent);
22 static int init_server_name(SSL_CONNECTION *s, unsigned int context);
23 static int final_server_name(SSL_CONNECTION *s, unsigned int context, int sent);
24 static int final_ec_pt_formats(SSL_CONNECTION *s, unsigned int context,
25 int sent);
26 static int init_session_ticket(SSL_CONNECTION *s, unsigned int context);
27 #ifndef OPENSSL_NO_OCSP
28 static int init_status_request(SSL_CONNECTION *s, unsigned int context);
29 #endif
30 #ifndef OPENSSL_NO_NEXTPROTONEG
31 static int init_npn(SSL_CONNECTION *s, unsigned int context);
32 #endif
33 static int init_alpn(SSL_CONNECTION *s, unsigned int context);
34 static int final_alpn(SSL_CONNECTION *s, unsigned int context, int sent);
35 static int init_sig_algs_cert(SSL_CONNECTION *s, unsigned int context);
36 static int init_sig_algs(SSL_CONNECTION *s, unsigned int context);
37 static int init_server_cert_type(SSL_CONNECTION *sc, unsigned int context);
38 static int init_client_cert_type(SSL_CONNECTION *sc, unsigned int context);
39 static int init_certificate_authorities(SSL_CONNECTION *s,
40 unsigned int context);
41 static EXT_RETURN tls_construct_certificate_authorities(SSL_CONNECTION *s,
42 WPACKET *pkt,
43 unsigned int context,
44 X509 *x,
45 size_t chainidx);
46 static int tls_parse_certificate_authorities(SSL_CONNECTION *s, PACKET *pkt,
47 unsigned int context, X509 *x,
48 size_t chainidx);
49 #ifndef OPENSSL_NO_SRP
50 static int init_srp(SSL_CONNECTION *s, unsigned int context);
51 #endif
52 static int init_ec_point_formats(SSL_CONNECTION *s, unsigned int context);
53 static int init_etm(SSL_CONNECTION *s, unsigned int context);
54 static int init_ems(SSL_CONNECTION *s, unsigned int context);
55 static int final_ems(SSL_CONNECTION *s, unsigned int context, int sent);
56 static int init_psk_kex_modes(SSL_CONNECTION *s, unsigned int context);
57 static int final_key_share(SSL_CONNECTION *s, unsigned int context, int sent);
58 #ifndef OPENSSL_NO_SRTP
59 static int init_srtp(SSL_CONNECTION *s, unsigned int context);
60 #endif
61 static int final_sig_algs(SSL_CONNECTION *s, unsigned int context, int sent);
62 static int final_supported_versions(SSL_CONNECTION *s, unsigned int context,
63 int sent);
64 static int final_early_data(SSL_CONNECTION *s, unsigned int context, int sent);
65 static int final_maxfragmentlen(SSL_CONNECTION *s, unsigned int context,
66 int sent);
67 static int init_post_handshake_auth(SSL_CONNECTION *s, unsigned int context);
68 static int final_psk(SSL_CONNECTION *s, unsigned int context, int sent);
69 static int tls_init_compress_certificate(SSL_CONNECTION *sc, unsigned int context);
70 static EXT_RETURN tls_construct_compress_certificate(SSL_CONNECTION *sc, WPACKET *pkt,
71 unsigned int context,
72 X509 *x, size_t chainidx);
73 static int tls_parse_compress_certificate(SSL_CONNECTION *sc, PACKET *pkt,
74 unsigned int context,
75 X509 *x, size_t chainidx);
76
77 /* Structure to define a built-in extension */
78 typedef struct extensions_definition_st {
79 /* The defined type for the extension */
80 unsigned int type;
81 /*
82 * The context that this extension applies to, e.g. what messages and
83 * protocol versions
84 */
85 unsigned int context;
86 /*
87 * Initialise extension before parsing. Always called for relevant contexts
88 * even if extension not present
89 */
90 int (*init)(SSL_CONNECTION *s, unsigned int context);
91 /* Parse extension sent from client to server */
92 int (*parse_ctos)(SSL_CONNECTION *s, PACKET *pkt, unsigned int context,
93 X509 *x, size_t chainidx);
94 /* Parse extension send from server to client */
95 int (*parse_stoc)(SSL_CONNECTION *s, PACKET *pkt, unsigned int context,
96 X509 *x, size_t chainidx);
97 /* Construct extension sent from server to client */
98 EXT_RETURN (*construct_stoc)(SSL_CONNECTION *s, WPACKET *pkt,
99 unsigned int context,
100 X509 *x, size_t chainidx);
101 /* Construct extension sent from client to server */
102 EXT_RETURN (*construct_ctos)(SSL_CONNECTION *s, WPACKET *pkt,
103 unsigned int context,
104 X509 *x, size_t chainidx);
105 /*
106 * Finalise extension after parsing. Always called where an extensions was
107 * initialised even if the extension was not present. |sent| is set to 1 if
108 * the extension was seen, or 0 otherwise.
109 */
110 int (*final)(SSL_CONNECTION *s, unsigned int context, int sent);
111 } EXTENSION_DEFINITION;
112
113 /*
114 * Definitions of all built-in extensions. NOTE: Changes in the number or order
115 * of these extensions should be mirrored with equivalent changes to the
116 * indexes ( TLSEXT_IDX_* ) defined in ssl_local.h.
117 * Extensions should be added to test/ext_internal_test.c as well, as that
118 * tests the ordering of the extensions.
119 *
120 * Each extension has an initialiser, a client and
121 * server side parser and a finaliser. The initialiser is called (if the
122 * extension is relevant to the given context) even if we did not see the
123 * extension in the message that we received. The parser functions are only
124 * called if we see the extension in the message. The finalisers are always
125 * called if the initialiser was called.
126 * There are also server and client side constructor functions which are always
127 * called during message construction if the extension is relevant for the
128 * given context.
129 * The initialisation, parsing, finalisation and construction functions are
130 * always called in the order defined in this list. Some extensions may depend
131 * on others having been processed first, so the order of this list is
132 * significant.
133 * The extension context is defined by a series of flags which specify which
134 * messages the extension is relevant to. These flags also specify whether the
135 * extension is relevant to a particular protocol or protocol version.
136 *
137 * NOTE: WebSphere Application Server 7+ cannot handle empty extensions at
138 * the end, keep these extensions before signature_algorithm.
139 */
140 #define INVALID_EXTENSION { TLSEXT_TYPE_invalid, 0, NULL, NULL, NULL, NULL, NULL, NULL }
141 static const EXTENSION_DEFINITION ext_defs[] = {
142 {
143 TLSEXT_TYPE_renegotiate,
144 SSL_EXT_CLIENT_HELLO | SSL_EXT_TLS1_2_SERVER_HELLO
145 | SSL_EXT_SSL3_ALLOWED | SSL_EXT_TLS1_2_AND_BELOW_ONLY,
146 NULL, tls_parse_ctos_renegotiate, tls_parse_stoc_renegotiate,
147 tls_construct_stoc_renegotiate, tls_construct_ctos_renegotiate,
148 final_renegotiate
149 },
150 {
151 TLSEXT_TYPE_server_name,
152 SSL_EXT_CLIENT_HELLO | SSL_EXT_TLS1_2_SERVER_HELLO
153 | SSL_EXT_TLS1_3_ENCRYPTED_EXTENSIONS,
154 init_server_name,
155 tls_parse_ctos_server_name, tls_parse_stoc_server_name,
156 tls_construct_stoc_server_name, tls_construct_ctos_server_name,
157 final_server_name
158 },
159 {
160 TLSEXT_TYPE_max_fragment_length,
161 SSL_EXT_CLIENT_HELLO | SSL_EXT_TLS1_2_SERVER_HELLO
162 | SSL_EXT_TLS1_3_ENCRYPTED_EXTENSIONS,
163 NULL, tls_parse_ctos_maxfragmentlen, tls_parse_stoc_maxfragmentlen,
164 tls_construct_stoc_maxfragmentlen, tls_construct_ctos_maxfragmentlen,
165 final_maxfragmentlen
166 },
167 #ifndef OPENSSL_NO_SRP
168 {
169 TLSEXT_TYPE_srp,
170 SSL_EXT_CLIENT_HELLO | SSL_EXT_TLS1_2_AND_BELOW_ONLY,
171 init_srp, tls_parse_ctos_srp, NULL, NULL, tls_construct_ctos_srp, NULL
172 },
173 #else
174 INVALID_EXTENSION,
175 #endif
176 {
177 TLSEXT_TYPE_ec_point_formats,
178 SSL_EXT_CLIENT_HELLO | SSL_EXT_TLS1_2_SERVER_HELLO
179 | SSL_EXT_TLS1_2_AND_BELOW_ONLY,
180 init_ec_point_formats, tls_parse_ctos_ec_pt_formats, tls_parse_stoc_ec_pt_formats,
181 tls_construct_stoc_ec_pt_formats, tls_construct_ctos_ec_pt_formats,
182 final_ec_pt_formats
183 },
184 {
185 /*
186 * "supported_groups" is spread across several specifications.
187 * It was originally specified as "elliptic_curves" in RFC 4492,
188 * and broadened to include named FFDH groups by RFC 7919.
189 * Both RFCs 4492 and 7919 do not include a provision for the server
190 * to indicate to the client the complete list of groups supported
191 * by the server, with the server instead just indicating the
192 * selected group for this connection in the ServerKeyExchange
193 * message. TLS 1.3 adds a scheme for the server to indicate
194 * to the client its list of supported groups in the
195 * EncryptedExtensions message, but none of the relevant
196 * specifications permit sending supported_groups in the ServerHello.
197 * Nonetheless (possibly due to the close proximity to the
198 * "ec_point_formats" extension, which is allowed in the ServerHello),
199 * there are several servers that send this extension in the
200 * ServerHello anyway. Up to and including the 1.1.0 release,
201 * we did not check for the presence of nonpermitted extensions,
202 * so to avoid a regression, we must permit this extension in the
203 * TLS 1.2 ServerHello as well.
204 *
205 * Note that there is no tls_parse_stoc_supported_groups function,
206 * so we do not perform any additional parsing, validation, or
207 * processing on the server's group list -- this is just a minimal
208 * change to preserve compatibility with these misbehaving servers.
209 */
210 TLSEXT_TYPE_supported_groups,
211 SSL_EXT_CLIENT_HELLO | SSL_EXT_TLS1_3_ENCRYPTED_EXTENSIONS
212 | SSL_EXT_TLS1_2_SERVER_HELLO,
213 NULL, tls_parse_ctos_supported_groups, NULL,
214 tls_construct_stoc_supported_groups,
215 tls_construct_ctos_supported_groups, NULL
216 },
217 {
218 TLSEXT_TYPE_session_ticket,
219 SSL_EXT_CLIENT_HELLO | SSL_EXT_TLS1_2_SERVER_HELLO
220 | SSL_EXT_TLS1_2_AND_BELOW_ONLY,
221 init_session_ticket, tls_parse_ctos_session_ticket,
222 tls_parse_stoc_session_ticket, tls_construct_stoc_session_ticket,
223 tls_construct_ctos_session_ticket, NULL
224 },
225 #ifndef OPENSSL_NO_OCSP
226 {
227 TLSEXT_TYPE_status_request,
228 SSL_EXT_CLIENT_HELLO | SSL_EXT_TLS1_2_SERVER_HELLO
229 | SSL_EXT_TLS1_3_CERTIFICATE | SSL_EXT_TLS1_3_CERTIFICATE_REQUEST,
230 init_status_request, tls_parse_ctos_status_request,
231 tls_parse_stoc_status_request, tls_construct_stoc_status_request,
232 tls_construct_ctos_status_request, NULL
233 },
234 #else
235 INVALID_EXTENSION,
236 #endif
237 #ifndef OPENSSL_NO_NEXTPROTONEG
238 {
239 TLSEXT_TYPE_next_proto_neg,
240 SSL_EXT_CLIENT_HELLO | SSL_EXT_TLS1_2_SERVER_HELLO
241 | SSL_EXT_TLS1_2_AND_BELOW_ONLY,
242 init_npn, tls_parse_ctos_npn, tls_parse_stoc_npn,
243 tls_construct_stoc_next_proto_neg, tls_construct_ctos_npn, NULL
244 },
245 #else
246 INVALID_EXTENSION,
247 #endif
248 {
249 /*
250 * Must appear in this list after server_name so that finalisation
251 * happens after server_name callbacks
252 */
253 TLSEXT_TYPE_application_layer_protocol_negotiation,
254 SSL_EXT_CLIENT_HELLO | SSL_EXT_TLS1_2_SERVER_HELLO
255 | SSL_EXT_TLS1_3_ENCRYPTED_EXTENSIONS,
256 init_alpn, tls_parse_ctos_alpn, tls_parse_stoc_alpn,
257 tls_construct_stoc_alpn, tls_construct_ctos_alpn, final_alpn
258 },
259 #ifndef OPENSSL_NO_SRTP
260 {
261 TLSEXT_TYPE_use_srtp,
262 SSL_EXT_CLIENT_HELLO | SSL_EXT_TLS1_2_SERVER_HELLO
263 | SSL_EXT_TLS1_3_ENCRYPTED_EXTENSIONS | SSL_EXT_DTLS_ONLY,
264 init_srtp, tls_parse_ctos_use_srtp, tls_parse_stoc_use_srtp,
265 tls_construct_stoc_use_srtp, tls_construct_ctos_use_srtp, NULL
266 },
267 #else
268 INVALID_EXTENSION,
269 #endif
270 {
271 TLSEXT_TYPE_encrypt_then_mac,
272 SSL_EXT_CLIENT_HELLO | SSL_EXT_TLS1_2_SERVER_HELLO
273 | SSL_EXT_TLS1_2_AND_BELOW_ONLY,
274 init_etm, tls_parse_ctos_etm, tls_parse_stoc_etm,
275 tls_construct_stoc_etm, tls_construct_ctos_etm, NULL
276 },
277 #ifndef OPENSSL_NO_CT
278 {
279 TLSEXT_TYPE_signed_certificate_timestamp,
280 SSL_EXT_CLIENT_HELLO | SSL_EXT_TLS1_2_SERVER_HELLO
281 | SSL_EXT_TLS1_3_CERTIFICATE | SSL_EXT_TLS1_3_CERTIFICATE_REQUEST,
282 NULL,
283 /*
284 * No server side support for this, but can be provided by a custom
285 * extension. This is an exception to the rule that custom extensions
286 * cannot override built in ones.
287 */
288 NULL, tls_parse_stoc_sct, NULL, tls_construct_ctos_sct, NULL
289 },
290 #else
291 INVALID_EXTENSION,
292 #endif
293 {
294 TLSEXT_TYPE_extended_master_secret,
295 SSL_EXT_CLIENT_HELLO | SSL_EXT_TLS1_2_SERVER_HELLO
296 | SSL_EXT_TLS1_2_AND_BELOW_ONLY,
297 init_ems, tls_parse_ctos_ems, tls_parse_stoc_ems,
298 tls_construct_stoc_ems, tls_construct_ctos_ems, final_ems
299 },
300 {
301 TLSEXT_TYPE_signature_algorithms_cert,
302 SSL_EXT_CLIENT_HELLO | SSL_EXT_TLS1_3_CERTIFICATE_REQUEST,
303 init_sig_algs_cert, tls_parse_ctos_sig_algs_cert,
304 tls_parse_ctos_sig_algs_cert,
305 /* We do not generate signature_algorithms_cert at present. */
306 NULL, NULL, NULL
307 },
308 {
309 TLSEXT_TYPE_post_handshake_auth,
310 SSL_EXT_CLIENT_HELLO | SSL_EXT_TLS1_3_ONLY,
311 init_post_handshake_auth,
312 tls_parse_ctos_post_handshake_auth, NULL,
313 NULL, tls_construct_ctos_post_handshake_auth,
314 NULL,
315 },
316 {
317 TLSEXT_TYPE_client_cert_type,
318 SSL_EXT_CLIENT_HELLO | SSL_EXT_TLS1_3_ENCRYPTED_EXTENSIONS
319 | SSL_EXT_TLS1_2_SERVER_HELLO,
320 init_client_cert_type,
321 tls_parse_ctos_client_cert_type, tls_parse_stoc_client_cert_type,
322 tls_construct_stoc_client_cert_type, tls_construct_ctos_client_cert_type,
323 NULL
324 },
325 {
326 TLSEXT_TYPE_server_cert_type,
327 SSL_EXT_CLIENT_HELLO | SSL_EXT_TLS1_3_ENCRYPTED_EXTENSIONS
328 | SSL_EXT_TLS1_2_SERVER_HELLO,
329 init_server_cert_type,
330 tls_parse_ctos_server_cert_type, tls_parse_stoc_server_cert_type,
331 tls_construct_stoc_server_cert_type, tls_construct_ctos_server_cert_type,
332 NULL
333 },
334 {
335 TLSEXT_TYPE_signature_algorithms,
336 SSL_EXT_CLIENT_HELLO | SSL_EXT_TLS1_3_CERTIFICATE_REQUEST,
337 init_sig_algs, tls_parse_ctos_sig_algs,
338 tls_parse_ctos_sig_algs, tls_construct_ctos_sig_algs,
339 tls_construct_ctos_sig_algs, final_sig_algs
340 },
341 {
342 TLSEXT_TYPE_supported_versions,
343 SSL_EXT_CLIENT_HELLO | SSL_EXT_TLS1_3_SERVER_HELLO
344 | SSL_EXT_TLS1_3_HELLO_RETRY_REQUEST | SSL_EXT_TLS_IMPLEMENTATION_ONLY,
345 NULL,
346 /* Processed inline as part of version selection */
347 NULL, tls_parse_stoc_supported_versions,
348 tls_construct_stoc_supported_versions,
349 tls_construct_ctos_supported_versions, final_supported_versions
350 },
351 {
352 TLSEXT_TYPE_psk_kex_modes,
353 SSL_EXT_CLIENT_HELLO | SSL_EXT_TLS_IMPLEMENTATION_ONLY
354 | SSL_EXT_TLS1_3_ONLY,
355 init_psk_kex_modes, tls_parse_ctos_psk_kex_modes, NULL, NULL,
356 tls_construct_ctos_psk_kex_modes, NULL
357 },
358 {
359 /*
360 * Must be in this list after supported_groups. We need that to have
361 * been parsed before we do this one.
362 */
363 TLSEXT_TYPE_key_share,
364 SSL_EXT_CLIENT_HELLO | SSL_EXT_TLS1_3_SERVER_HELLO
365 | SSL_EXT_TLS1_3_HELLO_RETRY_REQUEST | SSL_EXT_TLS_IMPLEMENTATION_ONLY
366 | SSL_EXT_TLS1_3_ONLY,
367 NULL, tls_parse_ctos_key_share, tls_parse_stoc_key_share,
368 tls_construct_stoc_key_share, tls_construct_ctos_key_share,
369 final_key_share
370 },
371 {
372 /* Must be after key_share */
373 TLSEXT_TYPE_cookie,
374 SSL_EXT_CLIENT_HELLO | SSL_EXT_TLS1_3_HELLO_RETRY_REQUEST
375 | SSL_EXT_TLS_IMPLEMENTATION_ONLY | SSL_EXT_TLS1_3_ONLY,
376 NULL, tls_parse_ctos_cookie, tls_parse_stoc_cookie,
377 tls_construct_stoc_cookie, tls_construct_ctos_cookie, NULL
378 },
379 {
380 /*
381 * Special unsolicited ServerHello extension only used when
382 * SSL_OP_CRYPTOPRO_TLSEXT_BUG is set. We allow it in a ClientHello but
383 * ignore it.
384 */
385 TLSEXT_TYPE_cryptopro_bug,
386 SSL_EXT_CLIENT_HELLO | SSL_EXT_TLS1_2_SERVER_HELLO
387 | SSL_EXT_TLS1_2_AND_BELOW_ONLY,
388 NULL, NULL, NULL, tls_construct_stoc_cryptopro_bug, NULL, NULL
389 },
390 {
391 TLSEXT_TYPE_compress_certificate,
392 SSL_EXT_CLIENT_HELLO | SSL_EXT_TLS1_3_CERTIFICATE_REQUEST
393 | SSL_EXT_TLS_IMPLEMENTATION_ONLY | SSL_EXT_TLS1_3_ONLY,
394 tls_init_compress_certificate,
395 tls_parse_compress_certificate, tls_parse_compress_certificate,
396 tls_construct_compress_certificate, tls_construct_compress_certificate,
397 NULL
398 },
399 {
400 TLSEXT_TYPE_early_data,
401 SSL_EXT_CLIENT_HELLO | SSL_EXT_TLS1_3_ENCRYPTED_EXTENSIONS
402 | SSL_EXT_TLS1_3_NEW_SESSION_TICKET | SSL_EXT_TLS1_3_ONLY,
403 NULL, tls_parse_ctos_early_data, tls_parse_stoc_early_data,
404 tls_construct_stoc_early_data, tls_construct_ctos_early_data,
405 final_early_data
406 },
407 {
408 TLSEXT_TYPE_certificate_authorities,
409 SSL_EXT_CLIENT_HELLO | SSL_EXT_TLS1_3_CERTIFICATE_REQUEST
410 | SSL_EXT_TLS1_3_ONLY,
411 init_certificate_authorities,
412 tls_parse_certificate_authorities, tls_parse_certificate_authorities,
413 tls_construct_certificate_authorities,
414 tls_construct_certificate_authorities, NULL,
415 },
416 {
417 /* Must be immediately before pre_shared_key */
418 TLSEXT_TYPE_padding,
419 SSL_EXT_CLIENT_HELLO,
420 NULL,
421 /* We send this, but don't read it */
422 NULL, NULL, NULL, tls_construct_ctos_padding, NULL
423 },
424 {
425 /* Required by the TLSv1.3 spec to always be the last extension */
426 TLSEXT_TYPE_psk,
427 SSL_EXT_CLIENT_HELLO | SSL_EXT_TLS1_3_SERVER_HELLO
428 | SSL_EXT_TLS_IMPLEMENTATION_ONLY | SSL_EXT_TLS1_3_ONLY,
429 NULL, tls_parse_ctos_psk, tls_parse_stoc_psk, tls_construct_stoc_psk,
430 tls_construct_ctos_psk, final_psk
431 }
432 };
433
434 /* Returns a TLSEXT_TYPE for the given index */
ossl_get_extension_type(size_t idx)435 unsigned int ossl_get_extension_type(size_t idx)
436 {
437 size_t num_exts = OSSL_NELEM(ext_defs);
438
439 if (idx >= num_exts)
440 return TLSEXT_TYPE_out_of_range;
441
442 return ext_defs[idx].type;
443 }
444
445 /* Check whether an extension's context matches the current context */
validate_context(SSL_CONNECTION * s,unsigned int extctx,unsigned int thisctx)446 static int validate_context(SSL_CONNECTION *s, unsigned int extctx,
447 unsigned int thisctx)
448 {
449 /* Check we're allowed to use this extension in this context */
450 if ((thisctx & extctx) == 0)
451 return 0;
452
453 if (SSL_CONNECTION_IS_DTLS(s)) {
454 if ((extctx & SSL_EXT_TLS_ONLY) != 0)
455 return 0;
456 } else if ((extctx & SSL_EXT_DTLS_ONLY) != 0) {
457 return 0;
458 }
459
460 return 1;
461 }
462
tls_validate_all_contexts(SSL_CONNECTION * s,unsigned int thisctx,RAW_EXTENSION * exts)463 int tls_validate_all_contexts(SSL_CONNECTION *s, unsigned int thisctx,
464 RAW_EXTENSION *exts)
465 {
466 size_t i, num_exts, builtin_num = OSSL_NELEM(ext_defs), offset;
467 RAW_EXTENSION *thisext;
468 unsigned int context;
469 ENDPOINT role = ENDPOINT_BOTH;
470
471 if ((thisctx & SSL_EXT_CLIENT_HELLO) != 0)
472 role = ENDPOINT_SERVER;
473 else if ((thisctx & SSL_EXT_TLS1_2_SERVER_HELLO) != 0)
474 role = ENDPOINT_CLIENT;
475
476 /* Calculate the number of extensions in the extensions list */
477 num_exts = builtin_num + s->cert->custext.meths_count;
478
479 for (thisext = exts, i = 0; i < num_exts; i++, thisext++) {
480 if (!thisext->present)
481 continue;
482
483 if (i < builtin_num) {
484 context = ext_defs[i].context;
485 } else {
486 custom_ext_method *meth = NULL;
487
488 meth = custom_ext_find(&s->cert->custext, role, thisext->type,
489 &offset);
490 if (!ossl_assert(meth != NULL))
491 return 0;
492 context = meth->context;
493 }
494
495 if (!validate_context(s, context, thisctx))
496 return 0;
497 }
498
499 return 1;
500 }
501
502 /*
503 * Verify whether we are allowed to use the extension |type| in the current
504 * |context|. Returns 1 to indicate the extension is allowed or unknown or 0 to
505 * indicate the extension is not allowed. If returning 1 then |*found| is set to
506 * the definition for the extension we found.
507 */
verify_extension(SSL_CONNECTION * s,unsigned int context,unsigned int type,custom_ext_methods * meths,RAW_EXTENSION * rawexlist,RAW_EXTENSION ** found)508 static int verify_extension(SSL_CONNECTION *s, unsigned int context,
509 unsigned int type, custom_ext_methods *meths,
510 RAW_EXTENSION *rawexlist, RAW_EXTENSION **found)
511 {
512 size_t i;
513 size_t builtin_num = OSSL_NELEM(ext_defs);
514 const EXTENSION_DEFINITION *thisext;
515
516 for (i = 0, thisext = ext_defs; i < builtin_num; i++, thisext++) {
517 if (type == thisext->type) {
518 if (!validate_context(s, thisext->context, context))
519 return 0;
520
521 *found = &rawexlist[i];
522 return 1;
523 }
524 }
525
526 /* Check the custom extensions */
527 if (meths != NULL) {
528 size_t offset = 0;
529 ENDPOINT role = ENDPOINT_BOTH;
530 custom_ext_method *meth = NULL;
531
532 if ((context & SSL_EXT_CLIENT_HELLO) != 0)
533 role = ENDPOINT_SERVER;
534 else if ((context & SSL_EXT_TLS1_2_SERVER_HELLO) != 0)
535 role = ENDPOINT_CLIENT;
536
537 meth = custom_ext_find(meths, role, type, &offset);
538 if (meth != NULL) {
539 if (!validate_context(s, meth->context, context))
540 return 0;
541 *found = &rawexlist[offset + builtin_num];
542 return 1;
543 }
544 }
545
546 /* Unknown extension. We allow it */
547 *found = NULL;
548 return 1;
549 }
550
551 /*
552 * Check whether the context defined for an extension |extctx| means whether
553 * the extension is relevant for the current context |thisctx| or not. Returns
554 * 1 if the extension is relevant for this context, and 0 otherwise
555 */
extension_is_relevant(SSL_CONNECTION * s,unsigned int extctx,unsigned int thisctx)556 int extension_is_relevant(SSL_CONNECTION *s, unsigned int extctx,
557 unsigned int thisctx)
558 {
559 int is_tls13;
560
561 /*
562 * For HRR we haven't selected the version yet but we know it will be
563 * TLSv1.3
564 */
565 if ((thisctx & SSL_EXT_TLS1_3_HELLO_RETRY_REQUEST) != 0)
566 is_tls13 = 1;
567 else
568 is_tls13 = SSL_CONNECTION_IS_TLS13(s);
569
570 if ((SSL_CONNECTION_IS_DTLS(s)
571 && (extctx & SSL_EXT_TLS_IMPLEMENTATION_ONLY) != 0)
572 || (s->version == SSL3_VERSION
573 && (extctx & SSL_EXT_SSL3_ALLOWED) == 0)
574 /*
575 * Note that SSL_IS_TLS13() means "TLS 1.3 has been negotiated",
576 * which is never true when generating the ClientHello.
577 * However, version negotiation *has* occurred by the time the
578 * ClientHello extensions are being parsed.
579 * Be careful to allow TLS 1.3-only extensions when generating
580 * the ClientHello.
581 */
582 || (is_tls13 && (extctx & SSL_EXT_TLS1_2_AND_BELOW_ONLY) != 0)
583 || (!is_tls13 && (extctx & SSL_EXT_TLS1_3_ONLY) != 0
584 && (thisctx & SSL_EXT_CLIENT_HELLO) == 0)
585 || (s->server && !is_tls13 && (extctx & SSL_EXT_TLS1_3_ONLY) != 0)
586 || (s->hit && (extctx & SSL_EXT_IGNORE_ON_RESUMPTION) != 0))
587 return 0;
588 return 1;
589 }
590
591 /*
592 * Gather a list of all the extensions from the data in |packet]. |context|
593 * tells us which message this extension is for. The raw extension data is
594 * stored in |*res| on success. We don't actually process the content of the
595 * extensions yet, except to check their types. This function also runs the
596 * initialiser functions for all known extensions if |init| is nonzero (whether
597 * we have collected them or not). If successful the caller is responsible for
598 * freeing the contents of |*res|.
599 *
600 * Per http://tools.ietf.org/html/rfc5246#section-7.4.1.4, there may not be
601 * more than one extension of the same type in a ClientHello or ServerHello.
602 * This function returns 1 if all extensions are unique and we have parsed their
603 * types, and 0 if the extensions contain duplicates, could not be successfully
604 * found, or an internal error occurred. We only check duplicates for
605 * extensions that we know about. We ignore others.
606 */
tls_collect_extensions(SSL_CONNECTION * s,PACKET * packet,unsigned int context,RAW_EXTENSION ** res,size_t * len,int init)607 int tls_collect_extensions(SSL_CONNECTION *s, PACKET *packet,
608 unsigned int context,
609 RAW_EXTENSION **res, size_t *len, int init)
610 {
611 PACKET extensions = *packet;
612 size_t i = 0;
613 size_t num_exts;
614 custom_ext_methods *exts = &s->cert->custext;
615 RAW_EXTENSION *raw_extensions = NULL;
616 const EXTENSION_DEFINITION *thisexd;
617
618 *res = NULL;
619
620 /*
621 * Initialise server side custom extensions. Client side is done during
622 * construction of extensions for the ClientHello.
623 */
624 if ((context & SSL_EXT_CLIENT_HELLO) != 0)
625 custom_ext_init(&s->cert->custext);
626
627 num_exts = OSSL_NELEM(ext_defs) + (exts != NULL ? exts->meths_count : 0);
628 raw_extensions = OPENSSL_zalloc(num_exts * sizeof(*raw_extensions));
629 if (raw_extensions == NULL) {
630 SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_CRYPTO_LIB);
631 return 0;
632 }
633
634 i = 0;
635 while (PACKET_remaining(&extensions) > 0) {
636 unsigned int type, idx;
637 PACKET extension;
638 RAW_EXTENSION *thisex;
639
640 if (!PACKET_get_net_2(&extensions, &type) ||
641 !PACKET_get_length_prefixed_2(&extensions, &extension)) {
642 SSLfatal(s, SSL_AD_DECODE_ERROR, SSL_R_BAD_EXTENSION);
643 goto err;
644 }
645 /*
646 * Verify this extension is allowed. We only check duplicates for
647 * extensions that we recognise. We also have a special case for the
648 * PSK extension, which must be the last one in the ClientHello.
649 */
650 if (!verify_extension(s, context, type, exts, raw_extensions, &thisex)
651 || (thisex != NULL && thisex->present == 1)
652 || (type == TLSEXT_TYPE_psk
653 && (context & SSL_EXT_CLIENT_HELLO) != 0
654 && PACKET_remaining(&extensions) != 0)) {
655 SSLfatal(s, SSL_AD_ILLEGAL_PARAMETER, SSL_R_BAD_EXTENSION);
656 goto err;
657 }
658 idx = thisex - raw_extensions;
659 /*-
660 * Check that we requested this extension (if appropriate). Requests can
661 * be sent in the ClientHello and CertificateRequest. Unsolicited
662 * extensions can be sent in the NewSessionTicket. We only do this for
663 * the built-in extensions. Custom extensions have a different but
664 * similar check elsewhere.
665 * Special cases:
666 * - The HRR cookie extension is unsolicited
667 * - The renegotiate extension is unsolicited (the client signals
668 * support via an SCSV)
669 * - The signed_certificate_timestamp extension can be provided by a
670 * custom extension or by the built-in version. We let the extension
671 * itself handle unsolicited response checks.
672 */
673 if (idx < OSSL_NELEM(ext_defs)
674 && (context & (SSL_EXT_CLIENT_HELLO
675 | SSL_EXT_TLS1_3_CERTIFICATE_REQUEST
676 | SSL_EXT_TLS1_3_NEW_SESSION_TICKET)) == 0
677 && type != TLSEXT_TYPE_cookie
678 && type != TLSEXT_TYPE_renegotiate
679 && type != TLSEXT_TYPE_signed_certificate_timestamp
680 && (s->ext.extflags[idx] & SSL_EXT_FLAG_SENT) == 0
681 #ifndef OPENSSL_NO_GOST
682 && !((context & SSL_EXT_TLS1_2_SERVER_HELLO) != 0
683 && type == TLSEXT_TYPE_cryptopro_bug)
684 #endif
685 ) {
686 SSLfatal(s, SSL_AD_UNSUPPORTED_EXTENSION,
687 SSL_R_UNSOLICITED_EXTENSION);
688 goto err;
689 }
690 if (thisex != NULL) {
691 thisex->data = extension;
692 thisex->present = 1;
693 thisex->type = type;
694 thisex->received_order = i++;
695 if (s->ext.debug_cb)
696 s->ext.debug_cb(SSL_CONNECTION_GET_SSL(s), !s->server,
697 thisex->type, PACKET_data(&thisex->data),
698 PACKET_remaining(&thisex->data),
699 s->ext.debug_arg);
700 }
701 }
702
703 if (init) {
704 /*
705 * Initialise all known extensions relevant to this context,
706 * whether we have found them or not
707 */
708 for (thisexd = ext_defs, i = 0; i < OSSL_NELEM(ext_defs);
709 i++, thisexd++) {
710 if (thisexd->init != NULL && (thisexd->context & context) != 0
711 && extension_is_relevant(s, thisexd->context, context)
712 && !thisexd->init(s, context)) {
713 /* SSLfatal() already called */
714 goto err;
715 }
716 }
717 }
718
719 *res = raw_extensions;
720 if (len != NULL)
721 *len = num_exts;
722 return 1;
723
724 err:
725 OPENSSL_free(raw_extensions);
726 return 0;
727 }
728
729 /*
730 * Runs the parser for a given extension with index |idx|. |exts| contains the
731 * list of all parsed extensions previously collected by
732 * tls_collect_extensions(). The parser is only run if it is applicable for the
733 * given |context| and the parser has not already been run. If this is for a
734 * Certificate message, then we also provide the parser with the relevant
735 * Certificate |x| and its position in the |chainidx| with 0 being the first
736 * Certificate. Returns 1 on success or 0 on failure. If an extension is not
737 * present this counted as success.
738 */
tls_parse_extension(SSL_CONNECTION * s,TLSEXT_INDEX idx,int context,RAW_EXTENSION * exts,X509 * x,size_t chainidx)739 int tls_parse_extension(SSL_CONNECTION *s, TLSEXT_INDEX idx, int context,
740 RAW_EXTENSION *exts, X509 *x, size_t chainidx)
741 {
742 RAW_EXTENSION *currext = &exts[idx];
743 int (*parser)(SSL_CONNECTION *s, PACKET *pkt, unsigned int context, X509 *x,
744 size_t chainidx) = NULL;
745
746 /* Skip if the extension is not present */
747 if (!currext->present)
748 return 1;
749
750 /* Skip if we've already parsed this extension */
751 if (currext->parsed)
752 return 1;
753
754 currext->parsed = 1;
755
756 if (idx < OSSL_NELEM(ext_defs)) {
757 /* We are handling a built-in extension */
758 const EXTENSION_DEFINITION *extdef = &ext_defs[idx];
759
760 /* Check if extension is defined for our protocol. If not, skip */
761 if (!extension_is_relevant(s, extdef->context, context))
762 return 1;
763
764 parser = s->server ? extdef->parse_ctos : extdef->parse_stoc;
765
766 if (parser != NULL)
767 return parser(s, &currext->data, context, x, chainidx);
768
769 /*
770 * If the parser is NULL we fall through to the custom extension
771 * processing
772 */
773 }
774
775 /* Parse custom extensions */
776 return custom_ext_parse(s, context, currext->type,
777 PACKET_data(&currext->data),
778 PACKET_remaining(&currext->data),
779 x, chainidx);
780 }
781
782 /*
783 * Parse all remaining extensions that have not yet been parsed. Also calls the
784 * finalisation for all extensions at the end if |fin| is nonzero, whether we
785 * collected them or not. Returns 1 for success or 0 for failure. If we are
786 * working on a Certificate message then we also pass the Certificate |x| and
787 * its position in the |chainidx|, with 0 being the first certificate.
788 */
tls_parse_all_extensions(SSL_CONNECTION * s,int context,RAW_EXTENSION * exts,X509 * x,size_t chainidx,int fin)789 int tls_parse_all_extensions(SSL_CONNECTION *s, int context,
790 RAW_EXTENSION *exts, X509 *x,
791 size_t chainidx, int fin)
792 {
793 size_t i, numexts = OSSL_NELEM(ext_defs);
794 const EXTENSION_DEFINITION *thisexd;
795
796 /* Calculate the number of extensions in the extensions list */
797 numexts += s->cert->custext.meths_count;
798
799 /* Parse each extension in turn */
800 for (i = 0; i < numexts; i++) {
801 if (!tls_parse_extension(s, i, context, exts, x, chainidx)) {
802 /* SSLfatal() already called */
803 return 0;
804 }
805 }
806
807 if (fin) {
808 /*
809 * Finalise all known extensions relevant to this context,
810 * whether we have found them or not
811 */
812 for (i = 0, thisexd = ext_defs; i < OSSL_NELEM(ext_defs);
813 i++, thisexd++) {
814 if (thisexd->final != NULL && (thisexd->context & context) != 0
815 && !thisexd->final(s, context, exts[i].present)) {
816 /* SSLfatal() already called */
817 return 0;
818 }
819 }
820 }
821
822 return 1;
823 }
824
should_add_extension(SSL_CONNECTION * s,unsigned int extctx,unsigned int thisctx,int max_version)825 int should_add_extension(SSL_CONNECTION *s, unsigned int extctx,
826 unsigned int thisctx, int max_version)
827 {
828 /* Skip if not relevant for our context */
829 if ((extctx & thisctx) == 0)
830 return 0;
831
832 /* Check if this extension is defined for our protocol. If not, skip */
833 if (!extension_is_relevant(s, extctx, thisctx)
834 || ((extctx & SSL_EXT_TLS1_3_ONLY) != 0
835 && (thisctx & SSL_EXT_CLIENT_HELLO) != 0
836 && (SSL_CONNECTION_IS_DTLS(s) || max_version < TLS1_3_VERSION)))
837 return 0;
838
839 return 1;
840 }
841
842 /*
843 * Construct all the extensions relevant to the current |context| and write
844 * them to |pkt|. If this is an extension for a Certificate in a Certificate
845 * message, then |x| will be set to the Certificate we are handling, and
846 * |chainidx| will indicate the position in the chainidx we are processing (with
847 * 0 being the first in the chain). Returns 1 on success or 0 on failure. On a
848 * failure construction stops at the first extension to fail to construct.
849 */
tls_construct_extensions(SSL_CONNECTION * s,WPACKET * pkt,unsigned int context,X509 * x,size_t chainidx)850 int tls_construct_extensions(SSL_CONNECTION *s, WPACKET *pkt,
851 unsigned int context,
852 X509 *x, size_t chainidx)
853 {
854 size_t i;
855 int min_version, max_version = 0, reason;
856 const EXTENSION_DEFINITION *thisexd;
857 int for_comp = (context & SSL_EXT_TLS1_3_CERTIFICATE_COMPRESSION) != 0;
858
859 if (!WPACKET_start_sub_packet_u16(pkt)
860 /*
861 * If extensions are of zero length then we don't even add the
862 * extensions length bytes to a ClientHello/ServerHello
863 * (for non-TLSv1.3).
864 */
865 || ((context &
866 (SSL_EXT_CLIENT_HELLO | SSL_EXT_TLS1_2_SERVER_HELLO)) != 0
867 && !WPACKET_set_flags(pkt,
868 WPACKET_FLAGS_ABANDON_ON_ZERO_LENGTH))) {
869 if (!for_comp)
870 SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
871 return 0;
872 }
873
874 if ((context & SSL_EXT_CLIENT_HELLO) != 0) {
875 reason = ssl_get_min_max_version(s, &min_version, &max_version, NULL);
876 if (reason != 0) {
877 if (!for_comp)
878 SSLfatal(s, SSL_AD_INTERNAL_ERROR, reason);
879 return 0;
880 }
881 }
882
883 /* Add custom extensions first */
884 if ((context & SSL_EXT_CLIENT_HELLO) != 0) {
885 /* On the server side with initialise during ClientHello parsing */
886 custom_ext_init(&s->cert->custext);
887 }
888 if (!custom_ext_add(s, context, pkt, x, chainidx, max_version)) {
889 /* SSLfatal() already called */
890 return 0;
891 }
892
893 for (i = 0, thisexd = ext_defs; i < OSSL_NELEM(ext_defs); i++, thisexd++) {
894 EXT_RETURN (*construct)(SSL_CONNECTION *s, WPACKET *pkt,
895 unsigned int context,
896 X509 *x, size_t chainidx);
897 EXT_RETURN ret;
898
899 /* Skip if not relevant for our context */
900 if (!should_add_extension(s, thisexd->context, context, max_version))
901 continue;
902
903 construct = s->server ? thisexd->construct_stoc
904 : thisexd->construct_ctos;
905
906 if (construct == NULL)
907 continue;
908
909 ret = construct(s, pkt, context, x, chainidx);
910 if (ret == EXT_RETURN_FAIL) {
911 /* SSLfatal() already called */
912 return 0;
913 }
914 if (ret == EXT_RETURN_SENT
915 && (context & (SSL_EXT_CLIENT_HELLO
916 | SSL_EXT_TLS1_3_CERTIFICATE_REQUEST
917 | SSL_EXT_TLS1_3_NEW_SESSION_TICKET)) != 0)
918 s->ext.extflags[i] |= SSL_EXT_FLAG_SENT;
919 }
920
921 if (!WPACKET_close(pkt)) {
922 if (!for_comp)
923 SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
924 return 0;
925 }
926
927 return 1;
928 }
929
930 /*
931 * Built in extension finalisation and initialisation functions. All initialise
932 * or finalise the associated extension type for the given |context|. For
933 * finalisers |sent| is set to 1 if we saw the extension during parsing, and 0
934 * otherwise. These functions return 1 on success or 0 on failure.
935 */
936
final_renegotiate(SSL_CONNECTION * s,unsigned int context,int sent)937 static int final_renegotiate(SSL_CONNECTION *s, unsigned int context, int sent)
938 {
939 if (!s->server) {
940 /*
941 * Check if we can connect to a server that doesn't support safe
942 * renegotiation
943 */
944 if (!(s->options & SSL_OP_LEGACY_SERVER_CONNECT)
945 && !(s->options & SSL_OP_ALLOW_UNSAFE_LEGACY_RENEGOTIATION)
946 && !sent) {
947 SSLfatal(s, SSL_AD_HANDSHAKE_FAILURE,
948 SSL_R_UNSAFE_LEGACY_RENEGOTIATION_DISABLED);
949 return 0;
950 }
951
952 return 1;
953 }
954
955 /* Need RI if renegotiating */
956 if (s->renegotiate
957 && !(s->options & SSL_OP_ALLOW_UNSAFE_LEGACY_RENEGOTIATION)
958 && !sent) {
959 SSLfatal(s, SSL_AD_HANDSHAKE_FAILURE,
960 SSL_R_UNSAFE_LEGACY_RENEGOTIATION_DISABLED);
961 return 0;
962 }
963
964
965 return 1;
966 }
967
ssl_tsan_decr(const SSL_CTX * ctx,TSAN_QUALIFIER int * stat)968 static ossl_inline void ssl_tsan_decr(const SSL_CTX *ctx,
969 TSAN_QUALIFIER int *stat)
970 {
971 if (ssl_tsan_lock(ctx)) {
972 tsan_decr(stat);
973 ssl_tsan_unlock(ctx);
974 }
975 }
976
init_server_name(SSL_CONNECTION * s,unsigned int context)977 static int init_server_name(SSL_CONNECTION *s, unsigned int context)
978 {
979 if (s->server) {
980 s->servername_done = 0;
981
982 OPENSSL_free(s->ext.hostname);
983 s->ext.hostname = NULL;
984 }
985
986 return 1;
987 }
988
final_server_name(SSL_CONNECTION * s,unsigned int context,int sent)989 static int final_server_name(SSL_CONNECTION *s, unsigned int context, int sent)
990 {
991 int ret = SSL_TLSEXT_ERR_NOACK;
992 int altmp = SSL_AD_UNRECOGNIZED_NAME;
993 SSL *ssl = SSL_CONNECTION_GET_SSL(s);
994 SSL_CTX *sctx = SSL_CONNECTION_GET_CTX(s);
995 int was_ticket = (SSL_get_options(ssl) & SSL_OP_NO_TICKET) == 0;
996
997 if (!ossl_assert(sctx != NULL) || !ossl_assert(s->session_ctx != NULL)) {
998 SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
999 return 0;
1000 }
1001
1002 if (sctx->ext.servername_cb != NULL)
1003 ret = sctx->ext.servername_cb(ssl, &altmp,
1004 sctx->ext.servername_arg);
1005 else if (s->session_ctx->ext.servername_cb != NULL)
1006 ret = s->session_ctx->ext.servername_cb(ssl, &altmp,
1007 s->session_ctx->ext.servername_arg);
1008
1009 /*
1010 * For servers, propagate the SNI hostname from the temporary
1011 * storage in the SSL to the persistent SSL_SESSION, now that we
1012 * know we accepted it.
1013 * Clients make this copy when parsing the server's response to
1014 * the extension, which is when they find out that the negotiation
1015 * was successful.
1016 */
1017 if (s->server) {
1018 if (sent && ret == SSL_TLSEXT_ERR_OK && !s->hit) {
1019 /* Only store the hostname in the session if we accepted it. */
1020 OPENSSL_free(s->session->ext.hostname);
1021 s->session->ext.hostname = OPENSSL_strdup(s->ext.hostname);
1022 if (s->session->ext.hostname == NULL && s->ext.hostname != NULL) {
1023 SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
1024 }
1025 }
1026 }
1027
1028 /*
1029 * If we switched contexts (whether here or in the client_hello callback),
1030 * move the sess_accept increment from the session_ctx to the new
1031 * context, to avoid the confusing situation of having sess_accept_good
1032 * exceed sess_accept (zero) for the new context.
1033 */
1034 if (SSL_IS_FIRST_HANDSHAKE(s) && sctx != s->session_ctx
1035 && s->hello_retry_request == SSL_HRR_NONE) {
1036 ssl_tsan_counter(sctx, &sctx->stats.sess_accept);
1037 ssl_tsan_decr(s->session_ctx, &s->session_ctx->stats.sess_accept);
1038 }
1039
1040 /*
1041 * If we're expecting to send a ticket, and tickets were previously enabled,
1042 * and now tickets are disabled, then turn off expected ticket.
1043 * Also, if this is not a resumption, create a new session ID
1044 */
1045 if (ret == SSL_TLSEXT_ERR_OK && s->ext.ticket_expected
1046 && was_ticket && (SSL_get_options(ssl) & SSL_OP_NO_TICKET) != 0) {
1047 s->ext.ticket_expected = 0;
1048 if (!s->hit) {
1049 SSL_SESSION* ss = SSL_get_session(ssl);
1050
1051 if (ss != NULL) {
1052 OPENSSL_free(ss->ext.tick);
1053 ss->ext.tick = NULL;
1054 ss->ext.ticklen = 0;
1055 ss->ext.tick_lifetime_hint = 0;
1056 ss->ext.tick_age_add = 0;
1057 if (!ssl_generate_session_id(s, ss)) {
1058 SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
1059 return 0;
1060 }
1061 } else {
1062 SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
1063 return 0;
1064 }
1065 }
1066 }
1067
1068 switch (ret) {
1069 case SSL_TLSEXT_ERR_ALERT_FATAL:
1070 SSLfatal(s, altmp, SSL_R_CALLBACK_FAILED);
1071 return 0;
1072
1073 case SSL_TLSEXT_ERR_ALERT_WARNING:
1074 /* TLSv1.3 doesn't have warning alerts so we suppress this */
1075 if (!SSL_CONNECTION_IS_TLS13(s))
1076 ssl3_send_alert(s, SSL3_AL_WARNING, altmp);
1077 s->servername_done = 0;
1078 return 1;
1079
1080 case SSL_TLSEXT_ERR_NOACK:
1081 s->servername_done = 0;
1082 return 1;
1083
1084 default:
1085 return 1;
1086 }
1087 }
1088
final_ec_pt_formats(SSL_CONNECTION * s,unsigned int context,int sent)1089 static int final_ec_pt_formats(SSL_CONNECTION *s, unsigned int context,
1090 int sent)
1091 {
1092 unsigned long alg_k, alg_a;
1093
1094 if (s->server)
1095 return 1;
1096
1097 alg_k = s->s3.tmp.new_cipher->algorithm_mkey;
1098 alg_a = s->s3.tmp.new_cipher->algorithm_auth;
1099
1100 /*
1101 * If we are client and using an elliptic curve cryptography cipher
1102 * suite, then if server returns an EC point formats lists extension it
1103 * must contain uncompressed.
1104 */
1105 if (s->ext.ecpointformats != NULL
1106 && s->ext.ecpointformats_len > 0
1107 && s->ext.peer_ecpointformats != NULL
1108 && s->ext.peer_ecpointformats_len > 0
1109 && ((alg_k & SSL_kECDHE) || (alg_a & SSL_aECDSA))) {
1110 /* we are using an ECC cipher */
1111 size_t i;
1112 unsigned char *list = s->ext.peer_ecpointformats;
1113
1114 for (i = 0; i < s->ext.peer_ecpointformats_len; i++) {
1115 if (*list++ == TLSEXT_ECPOINTFORMAT_uncompressed)
1116 break;
1117 }
1118 if (i == s->ext.peer_ecpointformats_len) {
1119 SSLfatal(s, SSL_AD_ILLEGAL_PARAMETER,
1120 SSL_R_TLS_INVALID_ECPOINTFORMAT_LIST);
1121 return 0;
1122 }
1123 }
1124
1125 return 1;
1126 }
1127
init_session_ticket(SSL_CONNECTION * s,unsigned int context)1128 static int init_session_ticket(SSL_CONNECTION *s, unsigned int context)
1129 {
1130 if (!s->server)
1131 s->ext.ticket_expected = 0;
1132
1133 return 1;
1134 }
1135
1136 #ifndef OPENSSL_NO_OCSP
init_status_request(SSL_CONNECTION * s,unsigned int context)1137 static int init_status_request(SSL_CONNECTION *s, unsigned int context)
1138 {
1139 if (s->server) {
1140 s->ext.status_type = TLSEXT_STATUSTYPE_nothing;
1141 } else {
1142 /*
1143 * Ensure we get sensible values passed to tlsext_status_cb in the event
1144 * that we don't receive a status message
1145 */
1146 OPENSSL_free(s->ext.ocsp.resp);
1147 s->ext.ocsp.resp = NULL;
1148 s->ext.ocsp.resp_len = 0;
1149 }
1150
1151 return 1;
1152 }
1153 #endif
1154
1155 #ifndef OPENSSL_NO_NEXTPROTONEG
init_npn(SSL_CONNECTION * s,unsigned int context)1156 static int init_npn(SSL_CONNECTION *s, unsigned int context)
1157 {
1158 s->s3.npn_seen = 0;
1159
1160 return 1;
1161 }
1162 #endif
1163
init_alpn(SSL_CONNECTION * s,unsigned int context)1164 static int init_alpn(SSL_CONNECTION *s, unsigned int context)
1165 {
1166 OPENSSL_free(s->s3.alpn_selected);
1167 s->s3.alpn_selected = NULL;
1168 s->s3.alpn_selected_len = 0;
1169 if (s->server) {
1170 OPENSSL_free(s->s3.alpn_proposed);
1171 s->s3.alpn_proposed = NULL;
1172 s->s3.alpn_proposed_len = 0;
1173 }
1174 return 1;
1175 }
1176
final_alpn(SSL_CONNECTION * s,unsigned int context,int sent)1177 static int final_alpn(SSL_CONNECTION *s, unsigned int context, int sent)
1178 {
1179 if (!s->server && !sent && s->session->ext.alpn_selected != NULL)
1180 s->ext.early_data_ok = 0;
1181
1182 if (!s->server || !SSL_CONNECTION_IS_TLS13(s))
1183 return 1;
1184
1185 /*
1186 * Call alpn_select callback if needed. Has to be done after SNI and
1187 * cipher negotiation (HTTP/2 restricts permitted ciphers). In TLSv1.3
1188 * we also have to do this before we decide whether to accept early_data.
1189 * In TLSv1.3 we've already negotiated our cipher so we do this call now.
1190 * For < TLSv1.3 we defer it until after cipher negotiation.
1191 *
1192 * On failure SSLfatal() already called.
1193 */
1194 return tls_handle_alpn(s);
1195 }
1196
init_sig_algs(SSL_CONNECTION * s,unsigned int context)1197 static int init_sig_algs(SSL_CONNECTION *s, unsigned int context)
1198 {
1199 /* Clear any signature algorithms extension received */
1200 OPENSSL_free(s->s3.tmp.peer_sigalgs);
1201 s->s3.tmp.peer_sigalgs = NULL;
1202 s->s3.tmp.peer_sigalgslen = 0;
1203
1204 return 1;
1205 }
1206
init_sig_algs_cert(SSL_CONNECTION * s,ossl_unused unsigned int context)1207 static int init_sig_algs_cert(SSL_CONNECTION *s,
1208 ossl_unused unsigned int context)
1209 {
1210 /* Clear any signature algorithms extension received */
1211 OPENSSL_free(s->s3.tmp.peer_cert_sigalgs);
1212 s->s3.tmp.peer_cert_sigalgs = NULL;
1213 s->s3.tmp.peer_cert_sigalgslen = 0;
1214
1215 return 1;
1216 }
1217
1218 #ifndef OPENSSL_NO_SRP
init_srp(SSL_CONNECTION * s,unsigned int context)1219 static int init_srp(SSL_CONNECTION *s, unsigned int context)
1220 {
1221 OPENSSL_free(s->srp_ctx.login);
1222 s->srp_ctx.login = NULL;
1223
1224 return 1;
1225 }
1226 #endif
1227
init_ec_point_formats(SSL_CONNECTION * s,unsigned int context)1228 static int init_ec_point_formats(SSL_CONNECTION *s, unsigned int context)
1229 {
1230 OPENSSL_free(s->ext.peer_ecpointformats);
1231 s->ext.peer_ecpointformats = NULL;
1232 s->ext.peer_ecpointformats_len = 0;
1233
1234 return 1;
1235 }
1236
init_etm(SSL_CONNECTION * s,unsigned int context)1237 static int init_etm(SSL_CONNECTION *s, unsigned int context)
1238 {
1239 s->ext.use_etm = 0;
1240
1241 return 1;
1242 }
1243
init_ems(SSL_CONNECTION * s,unsigned int context)1244 static int init_ems(SSL_CONNECTION *s, unsigned int context)
1245 {
1246 if (s->s3.flags & TLS1_FLAGS_RECEIVED_EXTMS) {
1247 s->s3.flags &= ~TLS1_FLAGS_RECEIVED_EXTMS;
1248 s->s3.flags |= TLS1_FLAGS_REQUIRED_EXTMS;
1249 }
1250
1251 return 1;
1252 }
1253
final_ems(SSL_CONNECTION * s,unsigned int context,int sent)1254 static int final_ems(SSL_CONNECTION *s, unsigned int context, int sent)
1255 {
1256 /*
1257 * Check extended master secret extension is not dropped on
1258 * renegotiation.
1259 */
1260 if (!(s->s3.flags & TLS1_FLAGS_RECEIVED_EXTMS)
1261 && (s->s3.flags & TLS1_FLAGS_REQUIRED_EXTMS)) {
1262 SSLfatal(s, SSL_AD_HANDSHAKE_FAILURE, SSL_R_INCONSISTENT_EXTMS);
1263 return 0;
1264 }
1265 if (!s->server && s->hit) {
1266 /*
1267 * Check extended master secret extension is consistent with
1268 * original session.
1269 */
1270 if (!(s->s3.flags & TLS1_FLAGS_RECEIVED_EXTMS) !=
1271 !(s->session->flags & SSL_SESS_FLAG_EXTMS)) {
1272 SSLfatal(s, SSL_AD_HANDSHAKE_FAILURE, SSL_R_INCONSISTENT_EXTMS);
1273 return 0;
1274 }
1275 }
1276
1277 return 1;
1278 }
1279
init_certificate_authorities(SSL_CONNECTION * s,unsigned int context)1280 static int init_certificate_authorities(SSL_CONNECTION *s, unsigned int context)
1281 {
1282 sk_X509_NAME_pop_free(s->s3.tmp.peer_ca_names, X509_NAME_free);
1283 s->s3.tmp.peer_ca_names = NULL;
1284 return 1;
1285 }
1286
tls_construct_certificate_authorities(SSL_CONNECTION * s,WPACKET * pkt,unsigned int context,X509 * x,size_t chainidx)1287 static EXT_RETURN tls_construct_certificate_authorities(SSL_CONNECTION *s,
1288 WPACKET *pkt,
1289 unsigned int context,
1290 X509 *x,
1291 size_t chainidx)
1292 {
1293 const STACK_OF(X509_NAME) *ca_sk = get_ca_names(s);
1294
1295 if (ca_sk == NULL || sk_X509_NAME_num(ca_sk) == 0)
1296 return EXT_RETURN_NOT_SENT;
1297
1298 if (!WPACKET_put_bytes_u16(pkt, TLSEXT_TYPE_certificate_authorities)
1299 || !WPACKET_start_sub_packet_u16(pkt)) {
1300 SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
1301 return EXT_RETURN_FAIL;
1302 }
1303
1304 if (!construct_ca_names(s, ca_sk, pkt)) {
1305 /* SSLfatal() already called */
1306 return EXT_RETURN_FAIL;
1307 }
1308
1309 if (!WPACKET_close(pkt)) {
1310 SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
1311 return EXT_RETURN_FAIL;
1312 }
1313
1314 return EXT_RETURN_SENT;
1315 }
1316
tls_parse_certificate_authorities(SSL_CONNECTION * s,PACKET * pkt,unsigned int context,X509 * x,size_t chainidx)1317 static int tls_parse_certificate_authorities(SSL_CONNECTION *s, PACKET *pkt,
1318 unsigned int context, X509 *x,
1319 size_t chainidx)
1320 {
1321 if (!parse_ca_names(s, pkt))
1322 return 0;
1323 if (PACKET_remaining(pkt) != 0) {
1324 SSLfatal(s, SSL_AD_DECODE_ERROR, SSL_R_BAD_EXTENSION);
1325 return 0;
1326 }
1327 return 1;
1328 }
1329
1330 #ifndef OPENSSL_NO_SRTP
init_srtp(SSL_CONNECTION * s,unsigned int context)1331 static int init_srtp(SSL_CONNECTION *s, unsigned int context)
1332 {
1333 if (s->server)
1334 s->srtp_profile = NULL;
1335
1336 return 1;
1337 }
1338 #endif
1339
final_sig_algs(SSL_CONNECTION * s,unsigned int context,int sent)1340 static int final_sig_algs(SSL_CONNECTION *s, unsigned int context, int sent)
1341 {
1342 if (!sent && SSL_CONNECTION_IS_TLS13(s) && !s->hit) {
1343 SSLfatal(s, TLS13_AD_MISSING_EXTENSION,
1344 SSL_R_MISSING_SIGALGS_EXTENSION);
1345 return 0;
1346 }
1347
1348 return 1;
1349 }
1350
final_supported_versions(SSL_CONNECTION * s,unsigned int context,int sent)1351 static int final_supported_versions(SSL_CONNECTION *s, unsigned int context,
1352 int sent)
1353 {
1354 if (!sent && context == SSL_EXT_TLS1_3_HELLO_RETRY_REQUEST) {
1355 SSLfatal(s, TLS13_AD_MISSING_EXTENSION,
1356 SSL_R_MISSING_SUPPORTED_VERSIONS_EXTENSION);
1357 return 0;
1358 }
1359
1360 return 1;
1361 }
1362
final_key_share(SSL_CONNECTION * s,unsigned int context,int sent)1363 static int final_key_share(SSL_CONNECTION *s, unsigned int context, int sent)
1364 {
1365 #if !defined(OPENSSL_NO_TLS1_3)
1366 if (!SSL_CONNECTION_IS_TLS13(s))
1367 return 1;
1368
1369 /* Nothing to do for key_share in an HRR */
1370 if ((context & SSL_EXT_TLS1_3_HELLO_RETRY_REQUEST) != 0)
1371 return 1;
1372
1373 /*
1374 * If
1375 * we are a client
1376 * AND
1377 * we have no key_share
1378 * AND
1379 * (we are not resuming
1380 * OR the kex_mode doesn't allow non key_share resumes)
1381 * THEN
1382 * fail;
1383 */
1384 if (!s->server
1385 && !sent) {
1386 if ((s->ext.psk_kex_mode & TLSEXT_KEX_MODE_FLAG_KE) == 0) {
1387 SSLfatal(s, SSL_AD_ILLEGAL_PARAMETER, SSL_R_NO_SUITABLE_KEY_SHARE);
1388 return 0;
1389 }
1390 if (!s->hit) {
1391 SSLfatal(s, SSL_AD_MISSING_EXTENSION, SSL_R_NO_SUITABLE_KEY_SHARE);
1392 return 0;
1393 }
1394 }
1395 /*
1396 * IF
1397 * we are a server
1398 * THEN
1399 * IF
1400 * we have a suitable key_share
1401 * THEN
1402 * IF
1403 * we are stateless AND we have no cookie
1404 * THEN
1405 * send a HelloRetryRequest
1406 * ELSE
1407 * IF
1408 * we didn't already send a HelloRetryRequest
1409 * AND
1410 * the client sent a key_share extension
1411 * AND
1412 * (we are not resuming
1413 * OR the kex_mode allows key_share resumes)
1414 * AND
1415 * a shared group exists
1416 * THEN
1417 * send a HelloRetryRequest
1418 * ELSE IF
1419 * we are not resuming
1420 * OR
1421 * the kex_mode doesn't allow non key_share resumes
1422 * THEN
1423 * fail
1424 * ELSE IF
1425 * we are stateless AND we have no cookie
1426 * THEN
1427 * send a HelloRetryRequest
1428 */
1429 if (s->server) {
1430 if (s->s3.peer_tmp != NULL) {
1431 /* We have a suitable key_share */
1432 if ((s->s3.flags & TLS1_FLAGS_STATELESS) != 0
1433 && !s->ext.cookieok) {
1434 if (!ossl_assert(s->hello_retry_request == SSL_HRR_NONE)) {
1435 /*
1436 * If we are stateless then we wouldn't know about any
1437 * previously sent HRR - so how can this be anything other
1438 * than 0?
1439 */
1440 SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
1441 return 0;
1442 }
1443 s->hello_retry_request = SSL_HRR_PENDING;
1444 return 1;
1445 }
1446 } else {
1447 /* No suitable key_share */
1448 if (s->hello_retry_request == SSL_HRR_NONE && sent
1449 && (!s->hit
1450 || (s->ext.psk_kex_mode & TLSEXT_KEX_MODE_FLAG_KE_DHE)
1451 != 0)) {
1452 const uint16_t *pgroups, *clntgroups;
1453 size_t num_groups, clnt_num_groups, i;
1454 unsigned int group_id = 0;
1455
1456 /* Check if a shared group exists */
1457
1458 /* Get the clients list of supported groups. */
1459 tls1_get_peer_groups(s, &clntgroups, &clnt_num_groups);
1460 tls1_get_supported_groups(s, &pgroups, &num_groups);
1461
1462 /*
1463 * Find the first group we allow that is also in client's list
1464 */
1465 for (i = 0; i < num_groups; i++) {
1466 group_id = pgroups[i];
1467
1468 if (check_in_list(s, group_id, clntgroups, clnt_num_groups,
1469 1)
1470 && tls_group_allowed(s, group_id,
1471 SSL_SECOP_CURVE_SUPPORTED)
1472 && tls_valid_group(s, group_id, TLS1_3_VERSION,
1473 TLS1_3_VERSION, 0, NULL))
1474 break;
1475 }
1476
1477 if (i < num_groups) {
1478 /* A shared group exists so send a HelloRetryRequest */
1479 s->s3.group_id = group_id;
1480 s->hello_retry_request = SSL_HRR_PENDING;
1481 return 1;
1482 }
1483 }
1484 if (!s->hit
1485 || (s->ext.psk_kex_mode & TLSEXT_KEX_MODE_FLAG_KE) == 0) {
1486 /* Nothing left we can do - just fail */
1487 SSLfatal(s, sent ? SSL_AD_HANDSHAKE_FAILURE
1488 : SSL_AD_MISSING_EXTENSION,
1489 SSL_R_NO_SUITABLE_KEY_SHARE);
1490 return 0;
1491 }
1492
1493 if ((s->s3.flags & TLS1_FLAGS_STATELESS) != 0
1494 && !s->ext.cookieok) {
1495 if (!ossl_assert(s->hello_retry_request == SSL_HRR_NONE)) {
1496 /*
1497 * If we are stateless then we wouldn't know about any
1498 * previously sent HRR - so how can this be anything other
1499 * than 0?
1500 */
1501 SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
1502 return 0;
1503 }
1504 s->hello_retry_request = SSL_HRR_PENDING;
1505 return 1;
1506 }
1507 }
1508
1509 /*
1510 * We have a key_share so don't send any more HelloRetryRequest
1511 * messages
1512 */
1513 if (s->hello_retry_request == SSL_HRR_PENDING)
1514 s->hello_retry_request = SSL_HRR_COMPLETE;
1515 } else {
1516 /*
1517 * For a client side resumption with no key_share we need to generate
1518 * the handshake secret (otherwise this is done during key_share
1519 * processing).
1520 */
1521 if (!sent && !tls13_generate_handshake_secret(s, NULL, 0)) {
1522 SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
1523 return 0;
1524 }
1525 }
1526 #endif /* !defined(OPENSSL_NO_TLS1_3) */
1527 return 1;
1528 }
1529
init_psk_kex_modes(SSL_CONNECTION * s,unsigned int context)1530 static int init_psk_kex_modes(SSL_CONNECTION *s, unsigned int context)
1531 {
1532 s->ext.psk_kex_mode = TLSEXT_KEX_MODE_FLAG_NONE;
1533 return 1;
1534 }
1535
tls_psk_do_binder(SSL_CONNECTION * s,const EVP_MD * md,const unsigned char * msgstart,size_t binderoffset,const unsigned char * binderin,unsigned char * binderout,SSL_SESSION * sess,int sign,int external)1536 int tls_psk_do_binder(SSL_CONNECTION *s, const EVP_MD *md,
1537 const unsigned char *msgstart,
1538 size_t binderoffset, const unsigned char *binderin,
1539 unsigned char *binderout, SSL_SESSION *sess, int sign,
1540 int external)
1541 {
1542 EVP_PKEY *mackey = NULL;
1543 EVP_MD_CTX *mctx = NULL;
1544 unsigned char hash[EVP_MAX_MD_SIZE], binderkey[EVP_MAX_MD_SIZE];
1545 unsigned char finishedkey[EVP_MAX_MD_SIZE], tmpbinder[EVP_MAX_MD_SIZE];
1546 unsigned char *early_secret;
1547 /* ASCII: "res binder", in hex for EBCDIC compatibility */
1548 static const unsigned char resumption_label[] = "\x72\x65\x73\x20\x62\x69\x6E\x64\x65\x72";
1549 /* ASCII: "ext binder", in hex for EBCDIC compatibility */
1550 static const unsigned char external_label[] = "\x65\x78\x74\x20\x62\x69\x6E\x64\x65\x72";
1551 const unsigned char *label;
1552 size_t bindersize, labelsize, hashsize;
1553 int hashsizei = EVP_MD_get_size(md);
1554 int ret = -1;
1555 int usepskfored = 0;
1556 SSL_CTX *sctx = SSL_CONNECTION_GET_CTX(s);
1557
1558 /* Ensure cast to size_t is safe */
1559 if (!ossl_assert(hashsizei > 0)) {
1560 SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
1561 goto err;
1562 }
1563 hashsize = (size_t)hashsizei;
1564
1565 if (external
1566 && s->early_data_state == SSL_EARLY_DATA_CONNECTING
1567 && s->session->ext.max_early_data == 0
1568 && sess->ext.max_early_data > 0)
1569 usepskfored = 1;
1570
1571 if (external) {
1572 label = external_label;
1573 labelsize = sizeof(external_label) - 1;
1574 } else {
1575 label = resumption_label;
1576 labelsize = sizeof(resumption_label) - 1;
1577 }
1578
1579 /*
1580 * Generate the early_secret. On the server side we've selected a PSK to
1581 * resume with (internal or external) so we always do this. On the client
1582 * side we do this for a non-external (i.e. resumption) PSK or external PSK
1583 * that will be used for early_data so that it is in place for sending early
1584 * data. For client side external PSK not being used for early_data we
1585 * generate it but store it away for later use.
1586 */
1587 if (s->server || !external || usepskfored)
1588 early_secret = (unsigned char *)s->early_secret;
1589 else
1590 early_secret = (unsigned char *)sess->early_secret;
1591
1592 if (!tls13_generate_secret(s, md, NULL, sess->master_key,
1593 sess->master_key_length, early_secret)) {
1594 /* SSLfatal() already called */
1595 goto err;
1596 }
1597
1598 /*
1599 * Create the handshake hash for the binder key...the messages so far are
1600 * empty!
1601 */
1602 mctx = EVP_MD_CTX_new();
1603 if (mctx == NULL
1604 || EVP_DigestInit_ex(mctx, md, NULL) <= 0
1605 || EVP_DigestFinal_ex(mctx, hash, NULL) <= 0) {
1606 SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
1607 goto err;
1608 }
1609
1610 /* Generate the binder key */
1611 if (!tls13_hkdf_expand(s, md, early_secret, label, labelsize, hash,
1612 hashsize, binderkey, hashsize, 1)) {
1613 /* SSLfatal() already called */
1614 goto err;
1615 }
1616
1617 /* Generate the finished key */
1618 if (!tls13_derive_finishedkey(s, md, binderkey, finishedkey, hashsize)) {
1619 /* SSLfatal() already called */
1620 goto err;
1621 }
1622
1623 if (EVP_DigestInit_ex(mctx, md, NULL) <= 0) {
1624 SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
1625 goto err;
1626 }
1627
1628 /*
1629 * Get a hash of the ClientHello up to the start of the binders. If we are
1630 * following a HelloRetryRequest then this includes the hash of the first
1631 * ClientHello and the HelloRetryRequest itself.
1632 */
1633 if (s->hello_retry_request == SSL_HRR_PENDING) {
1634 size_t hdatalen;
1635 long hdatalen_l;
1636 void *hdata;
1637
1638 hdatalen = hdatalen_l =
1639 BIO_get_mem_data(s->s3.handshake_buffer, &hdata);
1640 if (hdatalen_l <= 0) {
1641 SSLfatal(s, SSL_AD_INTERNAL_ERROR, SSL_R_BAD_HANDSHAKE_LENGTH);
1642 goto err;
1643 }
1644
1645 /*
1646 * For servers the handshake buffer data will include the second
1647 * ClientHello - which we don't want - so we need to take that bit off.
1648 */
1649 if (s->server) {
1650 PACKET hashprefix, msg;
1651
1652 /* Find how many bytes are left after the first two messages */
1653 if (!PACKET_buf_init(&hashprefix, hdata, hdatalen)
1654 || !PACKET_forward(&hashprefix, 1)
1655 || !PACKET_get_length_prefixed_3(&hashprefix, &msg)
1656 || !PACKET_forward(&hashprefix, 1)
1657 || !PACKET_get_length_prefixed_3(&hashprefix, &msg)) {
1658 SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
1659 goto err;
1660 }
1661 hdatalen -= PACKET_remaining(&hashprefix);
1662 }
1663
1664 if (EVP_DigestUpdate(mctx, hdata, hdatalen) <= 0) {
1665 SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
1666 goto err;
1667 }
1668 }
1669
1670 if (EVP_DigestUpdate(mctx, msgstart, binderoffset) <= 0
1671 || EVP_DigestFinal_ex(mctx, hash, NULL) <= 0) {
1672 SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
1673 goto err;
1674 }
1675
1676 mackey = EVP_PKEY_new_raw_private_key_ex(sctx->libctx, "HMAC",
1677 sctx->propq, finishedkey,
1678 hashsize);
1679 if (mackey == NULL) {
1680 SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
1681 goto err;
1682 }
1683
1684 if (!sign)
1685 binderout = tmpbinder;
1686
1687 bindersize = hashsize;
1688 if (EVP_DigestSignInit_ex(mctx, NULL, EVP_MD_get0_name(md), sctx->libctx,
1689 sctx->propq, mackey, NULL) <= 0
1690 || EVP_DigestSignUpdate(mctx, hash, hashsize) <= 0
1691 || EVP_DigestSignFinal(mctx, binderout, &bindersize) <= 0
1692 || bindersize != hashsize) {
1693 SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
1694 goto err;
1695 }
1696
1697 if (sign) {
1698 ret = 1;
1699 } else {
1700 /* HMAC keys can't do EVP_DigestVerify* - use CRYPTO_memcmp instead */
1701 ret = (CRYPTO_memcmp(binderin, binderout, hashsize) == 0);
1702 if (!ret)
1703 SSLfatal(s, SSL_AD_DECRYPT_ERROR, SSL_R_BINDER_DOES_NOT_VERIFY);
1704 }
1705
1706 err:
1707 OPENSSL_cleanse(binderkey, sizeof(binderkey));
1708 OPENSSL_cleanse(finishedkey, sizeof(finishedkey));
1709 EVP_PKEY_free(mackey);
1710 EVP_MD_CTX_free(mctx);
1711
1712 return ret;
1713 }
1714
final_early_data(SSL_CONNECTION * s,unsigned int context,int sent)1715 static int final_early_data(SSL_CONNECTION *s, unsigned int context, int sent)
1716 {
1717 if (!sent)
1718 return 1;
1719
1720 if (!s->server) {
1721 if (context == SSL_EXT_TLS1_3_ENCRYPTED_EXTENSIONS
1722 && sent
1723 && !s->ext.early_data_ok) {
1724 /*
1725 * If we get here then the server accepted our early_data but we
1726 * later realised that it shouldn't have done (e.g. inconsistent
1727 * ALPN)
1728 */
1729 SSLfatal(s, SSL_AD_ILLEGAL_PARAMETER, SSL_R_BAD_EARLY_DATA);
1730 return 0;
1731 }
1732
1733 return 1;
1734 }
1735
1736 if (s->max_early_data == 0
1737 || !s->hit
1738 || s->early_data_state != SSL_EARLY_DATA_ACCEPTING
1739 || !s->ext.early_data_ok
1740 || s->hello_retry_request != SSL_HRR_NONE
1741 || (s->allow_early_data_cb != NULL
1742 && !s->allow_early_data_cb(SSL_CONNECTION_GET_SSL(s),
1743 s->allow_early_data_cb_data))) {
1744 s->ext.early_data = SSL_EARLY_DATA_REJECTED;
1745 } else {
1746 s->ext.early_data = SSL_EARLY_DATA_ACCEPTED;
1747
1748 if (!tls13_change_cipher_state(s,
1749 SSL3_CC_EARLY | SSL3_CHANGE_CIPHER_SERVER_READ)) {
1750 /* SSLfatal() already called */
1751 return 0;
1752 }
1753 }
1754
1755 return 1;
1756 }
1757
final_maxfragmentlen(SSL_CONNECTION * s,unsigned int context,int sent)1758 static int final_maxfragmentlen(SSL_CONNECTION *s, unsigned int context,
1759 int sent)
1760 {
1761 /* MaxFragmentLength defaults to disabled */
1762 if (s->session->ext.max_fragment_len_mode == TLSEXT_max_fragment_length_UNSPECIFIED)
1763 s->session->ext.max_fragment_len_mode = TLSEXT_max_fragment_length_DISABLED;
1764
1765 if (s->session && USE_MAX_FRAGMENT_LENGTH_EXT(s->session)) {
1766 s->rlayer.rrlmethod->set_max_frag_len(s->rlayer.rrl,
1767 GET_MAX_FRAGMENT_LENGTH(s->session));
1768 s->rlayer.wrlmethod->set_max_frag_len(s->rlayer.wrl,
1769 ssl_get_max_send_fragment(s));
1770 }
1771
1772 return 1;
1773 }
1774
init_post_handshake_auth(SSL_CONNECTION * s,ossl_unused unsigned int context)1775 static int init_post_handshake_auth(SSL_CONNECTION *s,
1776 ossl_unused unsigned int context)
1777 {
1778 s->post_handshake_auth = SSL_PHA_NONE;
1779
1780 return 1;
1781 }
1782
1783 /*
1784 * If clients offer "pre_shared_key" without a "psk_key_exchange_modes"
1785 * extension, servers MUST abort the handshake.
1786 */
final_psk(SSL_CONNECTION * s,unsigned int context,int sent)1787 static int final_psk(SSL_CONNECTION *s, unsigned int context, int sent)
1788 {
1789 if (s->server && sent && s->clienthello != NULL
1790 && !s->clienthello->pre_proc_exts[TLSEXT_IDX_psk_kex_modes].present) {
1791 SSLfatal(s, TLS13_AD_MISSING_EXTENSION,
1792 SSL_R_MISSING_PSK_KEX_MODES_EXTENSION);
1793 return 0;
1794 }
1795
1796 return 1;
1797 }
1798
tls_init_compress_certificate(SSL_CONNECTION * sc,unsigned int context)1799 static int tls_init_compress_certificate(SSL_CONNECTION *sc, unsigned int context)
1800 {
1801 memset(sc->ext.compress_certificate_from_peer, 0,
1802 sizeof(sc->ext.compress_certificate_from_peer));
1803 return 1;
1804 }
1805
1806 /* The order these are put into the packet imply a preference order: [brotli, zlib, zstd] */
tls_construct_compress_certificate(SSL_CONNECTION * sc,WPACKET * pkt,unsigned int context,X509 * x,size_t chainidx)1807 static EXT_RETURN tls_construct_compress_certificate(SSL_CONNECTION *sc, WPACKET *pkt,
1808 unsigned int context,
1809 X509 *x, size_t chainidx)
1810 {
1811 #ifndef OPENSSL_NO_COMP_ALG
1812 int i;
1813
1814 if (!ossl_comp_has_alg(0))
1815 return EXT_RETURN_NOT_SENT;
1816
1817 /* Server: Don't attempt to compress a non-X509 (i.e. an RPK) */
1818 if (sc->server && sc->ext.server_cert_type != TLSEXT_cert_type_x509) {
1819 sc->cert_comp_prefs[0] = TLSEXT_comp_cert_none;
1820 return EXT_RETURN_NOT_SENT;
1821 }
1822
1823 /* Client: If we sent a client cert-type extension, don't indicate compression */
1824 if (!sc->server && sc->ext.client_cert_type_ctos) {
1825 sc->cert_comp_prefs[0] = TLSEXT_comp_cert_none;
1826 return EXT_RETURN_NOT_SENT;
1827 }
1828
1829 /* Do not indicate we support receiving compressed certificates */
1830 if ((sc->options & SSL_OP_NO_RX_CERTIFICATE_COMPRESSION) != 0)
1831 return EXT_RETURN_NOT_SENT;
1832
1833 if (sc->cert_comp_prefs[0] == TLSEXT_comp_cert_none)
1834 return EXT_RETURN_NOT_SENT;
1835
1836 if (!WPACKET_put_bytes_u16(pkt, TLSEXT_TYPE_compress_certificate)
1837 || !WPACKET_start_sub_packet_u16(pkt)
1838 || !WPACKET_start_sub_packet_u8(pkt))
1839 goto err;
1840
1841 for (i = 0; sc->cert_comp_prefs[i] != TLSEXT_comp_cert_none; i++) {
1842 if (!WPACKET_put_bytes_u16(pkt, sc->cert_comp_prefs[i]))
1843 goto err;
1844 }
1845 if (!WPACKET_close(pkt) || !WPACKET_close(pkt))
1846 goto err;
1847
1848 sc->ext.compress_certificate_sent = 1;
1849 return EXT_RETURN_SENT;
1850 err:
1851 SSLfatal(sc, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
1852 return EXT_RETURN_FAIL;
1853 #else
1854 return EXT_RETURN_NOT_SENT;
1855 #endif
1856 }
1857
1858 #ifndef OPENSSL_NO_COMP_ALG
tls_comp_in_pref(SSL_CONNECTION * sc,int alg)1859 static int tls_comp_in_pref(SSL_CONNECTION *sc, int alg)
1860 {
1861 int i;
1862
1863 /* ossl_comp_has_alg() considers 0 as "any" */
1864 if (alg == 0)
1865 return 0;
1866 /* Make sure algorithm is enabled */
1867 if (!ossl_comp_has_alg(alg))
1868 return 0;
1869 /* If no preferences are set, it's ok */
1870 if (sc->cert_comp_prefs[0] == TLSEXT_comp_cert_none)
1871 return 1;
1872 /* Find the algorithm */
1873 for (i = 0; i < TLSEXT_comp_cert_limit; i++)
1874 if (sc->cert_comp_prefs[i] == alg)
1875 return 1;
1876 return 0;
1877 }
1878 #endif
1879
tls_parse_compress_certificate(SSL_CONNECTION * sc,PACKET * pkt,unsigned int context,X509 * x,size_t chainidx)1880 int tls_parse_compress_certificate(SSL_CONNECTION *sc, PACKET *pkt, unsigned int context,
1881 X509 *x, size_t chainidx)
1882 {
1883 #ifndef OPENSSL_NO_COMP_ALG
1884 PACKET supported_comp_algs;
1885 unsigned int comp;
1886 int already_set[TLSEXT_comp_cert_limit];
1887 int j = 0;
1888
1889 /* If no algorithms are available, ignore the extension */
1890 if (!ossl_comp_has_alg(0))
1891 return 1;
1892
1893 /* Don't attempt to compress a non-X509 (i.e. an RPK) */
1894 if (sc->server && sc->ext.server_cert_type != TLSEXT_cert_type_x509)
1895 return 1;
1896 if (!sc->server && sc->ext.client_cert_type != TLSEXT_cert_type_x509)
1897 return 1;
1898
1899 /* Ignore the extension and don't send compressed certificates */
1900 if ((sc->options & SSL_OP_NO_TX_CERTIFICATE_COMPRESSION) != 0)
1901 return 1;
1902
1903 if (!PACKET_as_length_prefixed_1(pkt, &supported_comp_algs)
1904 || PACKET_remaining(&supported_comp_algs) == 0) {
1905 SSLfatal(sc, SSL_AD_DECODE_ERROR, SSL_R_BAD_EXTENSION);
1906 return 0;
1907 }
1908
1909 memset(already_set, 0, sizeof(already_set));
1910 /*
1911 * The preference array has real values, so take a look at each
1912 * value coming in, and make sure it's in our preference list
1913 * The array is 0 (i.e. "none") terminated
1914 * The preference list only contains supported algorithms
1915 */
1916 while (PACKET_get_net_2(&supported_comp_algs, &comp)) {
1917 if (tls_comp_in_pref(sc, comp) && !already_set[comp]) {
1918 sc->ext.compress_certificate_from_peer[j++] = comp;
1919 already_set[comp] = 1;
1920 }
1921 }
1922 #endif
1923 return 1;
1924 }
1925
init_server_cert_type(SSL_CONNECTION * sc,unsigned int context)1926 static int init_server_cert_type(SSL_CONNECTION *sc, unsigned int context)
1927 {
1928 /* Only reset when parsing client hello */
1929 if (sc->server) {
1930 sc->ext.server_cert_type_ctos = OSSL_CERT_TYPE_CTOS_NONE;
1931 sc->ext.server_cert_type = TLSEXT_cert_type_x509;
1932 }
1933 return 1;
1934 }
1935
init_client_cert_type(SSL_CONNECTION * sc,unsigned int context)1936 static int init_client_cert_type(SSL_CONNECTION *sc, unsigned int context)
1937 {
1938 /* Only reset when parsing client hello */
1939 if (sc->server) {
1940 sc->ext.client_cert_type_ctos = OSSL_CERT_TYPE_CTOS_NONE;
1941 sc->ext.client_cert_type = TLSEXT_cert_type_x509;
1942 }
1943 return 1;
1944 }
1945