Coverage Report

Created: 2026-09-12 06:55

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/openssl35/ssl/statem/extensions_srvr.c
Line
Count
Source
1
/*
2
 * Copyright 2016-2026 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
#include <openssl/ocsp.h>
11
#include "../ssl_local.h"
12
#include "statem_local.h"
13
#include "internal/cryptlib.h"
14
#include "internal/ssl_unwrap.h"
15
16
0
#define COOKIE_STATE_FORMAT_VERSION 1
17
18
/*
19
 * 2 bytes for packet length, 2 bytes for format version, 2 bytes for
20
 * protocol version, 2 bytes for group id, 2 bytes for cipher id, 1 byte for
21
 * key_share present flag, 8 bytes for timestamp, 2 bytes for the hashlen,
22
 * EVP_MAX_MD_SIZE for transcript hash, 1 byte for app cookie length, app cookie
23
 * length bytes, SHA256_DIGEST_LENGTH bytes for the HMAC of the whole thing.
24
 */
25
0
#define MAX_COOKIE_SIZE (2 + 2 + 2 + 2 + 2 + 1 + 8 + 2 + EVP_MAX_MD_SIZE + 1 \
26
0
    + SSL_COOKIE_LENGTH + SHA256_DIGEST_LENGTH)
27
28
/*
29
 * Message header + 2 bytes for protocol version + number of random bytes +
30
 * + 1 byte for legacy session id length + number of bytes in legacy session id
31
 * + 2 bytes for ciphersuite + 1 byte for legacy compression
32
 * + 2 bytes for extension block length + 6 bytes for key_share extension
33
 * + 4 bytes for cookie extension header + the number of bytes in the cookie
34
 */
35
#define MAX_HRR_SIZE (SSL3_HM_HEADER_LENGTH + 2 + SSL3_RANDOM_SIZE + 1 \
36
    + SSL_MAX_SSL_SESSION_ID_LENGTH + 2 + 1 + 2 + 6 + 4                \
37
    + MAX_COOKIE_SIZE)
38
39
/*
40
 * Parse the client's renegotiation binding and abort if it's not right
41
 */
42
int tls_parse_ctos_renegotiate(SSL_CONNECTION *s, PACKET *pkt,
43
    unsigned int context,
44
    X509 *x, size_t chainidx)
45
4.38k
{
46
4.38k
    unsigned int ilen;
47
4.38k
    const unsigned char *data;
48
4.38k
    int ok;
49
50
    /* Parse the length byte */
51
4.38k
    if (!PACKET_get_1(pkt, &ilen)
52
4.36k
        || !PACKET_get_bytes(pkt, &data, ilen)) {
53
31
        SSLfatal(s, SSL_AD_DECODE_ERROR, SSL_R_RENEGOTIATION_ENCODING_ERR);
54
31
        return 0;
55
31
    }
56
57
    /* Check that the extension matches */
58
4.34k
    if (ilen != s->s3.previous_client_finished_len) {
59
15
        SSLfatal(s, SSL_AD_HANDSHAKE_FAILURE, SSL_R_RENEGOTIATION_MISMATCH);
60
15
        return 0;
61
15
    }
62
63
4.33k
    ok = memcmp(data, s->s3.previous_client_finished,
64
4.33k
        s->s3.previous_client_finished_len);
65
4.33k
#ifdef FUZZING_BUILD_MODE_UNSAFE_FOR_PRODUCTION
66
4.33k
    if (ok) {
67
0
        if ((data[0] ^ s->s3.previous_client_finished[0]) != 0xFF) {
68
0
            ok = 0;
69
0
        }
70
0
    }
71
4.33k
#endif
72
4.33k
    if (ok) {
73
0
        SSLfatal(s, SSL_AD_HANDSHAKE_FAILURE, SSL_R_RENEGOTIATION_MISMATCH);
74
0
        return 0;
75
0
    }
76
77
4.33k
    s->s3.send_connection_binding = 1;
78
79
4.33k
    return 1;
80
4.33k
}
81
82
/*-
83
 * The servername extension is treated as follows:
84
 *
85
 * - Only the hostname type is supported with a maximum length of 255.
86
 * - The servername is rejected if too long or if it contains zeros,
87
 *   in which case an fatal alert is generated.
88
 * - The servername field is maintained together with the session cache.
89
 * - When a session is resumed, the servername call back invoked in order
90
 *   to allow the application to position itself to the right context.
91
 * - The servername is acknowledged if it is new for a session or when
92
 *   it is identical to a previously used for the same session.
93
 *   Applications can control the behaviour.  They can at any time
94
 *   set a 'desirable' servername for a new SSL object. This can be the
95
 *   case for example with HTTPS when a Host: header field is received and
96
 *   a renegotiation is requested. In this case, a possible servername
97
 *   presented in the new client hello is only acknowledged if it matches
98
 *   the value of the Host: field.
99
 * - Applications must  use SSL_OP_NO_SESSION_RESUMPTION_ON_RENEGOTIATION
100
 *   if they provide for changing an explicit servername context for the
101
 *   session, i.e. when the session has been established with a servername
102
 *   extension.
103
 * - On session reconnect, the servername extension may be absent.
104
 */
105
int tls_parse_ctos_server_name(SSL_CONNECTION *s, PACKET *pkt,
106
    unsigned int context, X509 *x, size_t chainidx)
107
6.30k
{
108
6.30k
    unsigned int servname_type;
109
6.30k
    PACKET sni, hostname;
110
111
6.30k
    if (!PACKET_as_length_prefixed_2(pkt, &sni)
112
        /* ServerNameList must be at least 1 byte long. */
113
6.13k
        || PACKET_remaining(&sni) == 0) {
114
185
        SSLfatal(s, SSL_AD_DECODE_ERROR, SSL_R_BAD_EXTENSION);
115
185
        return 0;
116
185
    }
117
118
    /*
119
     * Although the intent was for server_name to be extensible, RFC 4366
120
     * was not clear about it; and so OpenSSL among other implementations,
121
     * always and only allows a 'host_name' name types.
122
     * RFC 6066 corrected the mistake but adding new name types
123
     * is nevertheless no longer feasible, so act as if no other
124
     * SNI types can exist, to simplify parsing.
125
     *
126
     * Also note that the RFC permits only one SNI value per type,
127
     * i.e., we can only have a single hostname.
128
     */
129
6.11k
    if (!PACKET_get_1(&sni, &servname_type)
130
6.11k
        || servname_type != TLSEXT_NAMETYPE_host_name
131
6.08k
        || !PACKET_as_length_prefixed_2(&sni, &hostname)) {
132
120
        SSLfatal(s, SSL_AD_DECODE_ERROR, SSL_R_BAD_EXTENSION);
133
120
        return 0;
134
120
    }
135
136
    /*
137
     * In TLSv1.2 and below the SNI is associated with the session. In TLSv1.3
138
     * we always use the SNI value from the handshake.
139
     */
140
5.99k
    if (!s->hit || SSL_CONNECTION_IS_TLS13(s)) {
141
5.98k
        if (PACKET_remaining(&hostname) > TLSEXT_MAXLEN_host_name) {
142
4
            SSLfatal(s, SSL_AD_UNRECOGNIZED_NAME, SSL_R_BAD_EXTENSION);
143
4
            return 0;
144
4
        }
145
146
5.98k
        if (PACKET_contains_zero_byte(&hostname)) {
147
9
            SSLfatal(s, SSL_AD_UNRECOGNIZED_NAME, SSL_R_BAD_EXTENSION);
148
9
            return 0;
149
9
        }
150
151
        /*
152
         * Store the requested SNI in the SSL as temporary storage.
153
         * If we accept it, it will get stored in the SSL_SESSION as well.
154
         */
155
5.97k
        OPENSSL_free(s->ext.hostname);
156
5.97k
        s->ext.hostname = NULL;
157
5.97k
        if (!PACKET_strndup(&hostname, &s->ext.hostname)) {
158
0
            SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
159
0
            return 0;
160
0
        }
161
162
5.97k
        s->servername_done = 1;
163
5.97k
    } else {
164
        /*
165
         * In TLSv1.2 and below we should check if the SNI is consistent between
166
         * the initial handshake and the resumption. In TLSv1.3 SNI is not
167
         * associated with the session.
168
         */
169
8
        s->servername_done = (s->session->ext.hostname != NULL)
170
4
            && PACKET_equal(&hostname, s->session->ext.hostname,
171
4
                strlen(s->session->ext.hostname));
172
8
    }
173
174
5.98k
    return 1;
175
5.99k
}
176
177
int tls_parse_ctos_maxfragmentlen(SSL_CONNECTION *s, PACKET *pkt,
178
    unsigned int context,
179
    X509 *x, size_t chainidx)
180
1.08k
{
181
1.08k
    unsigned int value;
182
183
1.08k
    if (PACKET_remaining(pkt) != 1 || !PACKET_get_1(pkt, &value)) {
184
79
        SSLfatal(s, SSL_AD_DECODE_ERROR, SSL_R_BAD_EXTENSION);
185
79
        return 0;
186
79
    }
187
188
    /* Received |value| should be a valid max-fragment-length code. */
189
1.00k
    if (!IS_MAX_FRAGMENT_LENGTH_EXT_VALID(value)) {
190
51
        SSLfatal(s, SSL_AD_ILLEGAL_PARAMETER,
191
51
            SSL_R_SSL3_EXT_INVALID_MAX_FRAGMENT_LENGTH);
192
51
        return 0;
193
51
    }
194
195
    /*
196
     * When doing a full handshake or a renegotiation max_fragment_len_mode will
197
     * be TLSEXT_max_fragment_length_UNSPECIFIED
198
     *
199
     * In case of a resumption max_fragment_len_mode will be one of
200
     *      TLSEXT_max_fragment_length_DISABLED, TLSEXT_max_fragment_length_512,
201
     *      TLSEXT_max_fragment_length_1024, TLSEXT_max_fragment_length_2048.
202
     *      TLSEXT_max_fragment_length_4096
203
     *
204
     * RFC 6066: The negotiated length applies for the duration of the session
205
     * including session resumptions.
206
     *
207
     * So we only set the value in case it is unspecified.
208
     */
209
953
    if (s->session->ext.max_fragment_len_mode == TLSEXT_max_fragment_length_UNSPECIFIED)
210
        /*
211
         * Store it in session, so it'll become binding for us
212
         * and we'll include it in a next Server Hello.
213
         */
214
948
        s->session->ext.max_fragment_len_mode = value;
215
216
953
    return 1;
217
1.00k
}
218
219
#ifndef OPENSSL_NO_SRP
220
int tls_parse_ctos_srp(SSL_CONNECTION *s, PACKET *pkt, unsigned int context,
221
    X509 *x, size_t chainidx)
222
149
{
223
149
    PACKET srp_I;
224
225
149
    if (!PACKET_as_length_prefixed_1(pkt, &srp_I)
226
85
        || PACKET_contains_zero_byte(&srp_I)) {
227
85
        SSLfatal(s, SSL_AD_DECODE_ERROR, SSL_R_BAD_EXTENSION);
228
85
        return 0;
229
85
    }
230
231
64
    if (!PACKET_strndup(&srp_I, &s->srp_ctx.login)) {
232
0
        SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
233
0
        return 0;
234
0
    }
235
236
64
    return 1;
237
64
}
238
#endif
239
240
int tls_parse_ctos_ec_pt_formats(SSL_CONNECTION *s, PACKET *pkt,
241
    unsigned int context,
242
    X509 *x, size_t chainidx)
243
4.86k
{
244
4.86k
    PACKET ec_point_format_list;
245
246
4.86k
    if (!PACKET_as_length_prefixed_1(pkt, &ec_point_format_list)
247
4.74k
        || PACKET_remaining(&ec_point_format_list) == 0) {
248
121
        SSLfatal(s, SSL_AD_DECODE_ERROR, SSL_R_BAD_EXTENSION);
249
121
        return 0;
250
121
    }
251
252
4.74k
    if (!s->hit) {
253
4.62k
        if (!PACKET_memdup(&ec_point_format_list,
254
4.62k
                &s->ext.peer_ecpointformats,
255
4.62k
                &s->ext.peer_ecpointformats_len)) {
256
0
            SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
257
0
            return 0;
258
0
        }
259
4.62k
    }
260
261
4.74k
    return 1;
262
4.74k
}
263
264
int tls_parse_ctos_session_ticket(SSL_CONNECTION *s, PACKET *pkt,
265
    unsigned int context,
266
    X509 *x, size_t chainidx)
267
5.38k
{
268
5.38k
    if (s->ext.session_ticket_cb && !s->ext.session_ticket_cb(SSL_CONNECTION_GET_USER_SSL(s), PACKET_data(pkt), PACKET_remaining(pkt), s->ext.session_ticket_cb_arg)) {
269
0
        SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
270
0
        return 0;
271
0
    }
272
273
5.38k
    return 1;
274
5.38k
}
275
276
int tls_parse_ctos_sig_algs_cert(SSL_CONNECTION *s, PACKET *pkt,
277
    ossl_unused unsigned int context,
278
    ossl_unused X509 *x,
279
    ossl_unused size_t chainidx)
280
941
{
281
941
    PACKET supported_sig_algs;
282
283
941
    if (!PACKET_as_length_prefixed_2(pkt, &supported_sig_algs)
284
798
        || PACKET_remaining(&supported_sig_algs) == 0) {
285
153
        SSLfatal(s, SSL_AD_DECODE_ERROR, SSL_R_BAD_EXTENSION);
286
153
        return 0;
287
153
    }
288
289
    /*
290
     * We use this routine on both clients and servers, and when clients
291
     * get asked for PHA we need to always save the sigalgs regardless
292
     * of whether it was a resumption or not.
293
     */
294
788
    if ((!s->server || (s->server && !s->hit))
295
780
        && !tls1_save_sigalgs(s, &supported_sig_algs, 1)) {
296
14
        SSLfatal(s, SSL_AD_DECODE_ERROR, SSL_R_BAD_EXTENSION);
297
14
        return 0;
298
14
    }
299
300
774
    return 1;
301
788
}
302
303
int tls_parse_ctos_sig_algs(SSL_CONNECTION *s, PACKET *pkt,
304
    unsigned int context, X509 *x, size_t chainidx)
305
8.74k
{
306
8.74k
    PACKET supported_sig_algs;
307
308
8.74k
    if (!PACKET_as_length_prefixed_2(pkt, &supported_sig_algs)
309
8.53k
        || PACKET_remaining(&supported_sig_algs) == 0) {
310
215
        SSLfatal(s, SSL_AD_DECODE_ERROR, SSL_R_BAD_EXTENSION);
311
215
        return 0;
312
215
    }
313
314
    /*
315
     * We use this routine on both clients and servers, and when clients
316
     * get asked for PHA we need to always save the sigalgs regardless
317
     * of whether it was a resumption or not.
318
     */
319
8.52k
    if ((!s->server || (s->server && !s->hit))
320
8.41k
        && !tls1_save_sigalgs(s, &supported_sig_algs, 0)) {
321
15
        SSLfatal(s, SSL_AD_DECODE_ERROR, SSL_R_BAD_EXTENSION);
322
15
        return 0;
323
15
    }
324
325
8.51k
    return 1;
326
8.52k
}
327
328
#ifndef OPENSSL_NO_OCSP
329
int tls_parse_ctos_status_request(SSL_CONNECTION *s, PACKET *pkt,
330
    unsigned int context,
331
    X509 *x, size_t chainidx)
332
4.98k
{
333
4.98k
    PACKET responder_id_list, exts;
334
335
    /* We ignore this in a resumption handshake */
336
4.98k
    if (s->hit)
337
21
        return 1;
338
339
    /* Not defined if we get one of these in a client Certificate */
340
4.96k
    if (x != NULL)
341
0
        return 1;
342
343
4.96k
    if (!PACKET_get_1(pkt, (unsigned int *)&s->ext.status_type)) {
344
18
        SSLfatal(s, SSL_AD_DECODE_ERROR, SSL_R_BAD_EXTENSION);
345
18
        return 0;
346
18
    }
347
348
4.94k
    if (s->ext.status_type != TLSEXT_STATUSTYPE_ocsp) {
349
        /*
350
         * We don't know what to do with any other type so ignore it.
351
         */
352
222
        s->ext.status_type = TLSEXT_STATUSTYPE_nothing;
353
222
        return 1;
354
222
    }
355
356
4.72k
    if (!PACKET_get_length_prefixed_2(pkt, &responder_id_list)) {
357
76
        SSLfatal(s, SSL_AD_DECODE_ERROR, SSL_R_BAD_EXTENSION);
358
76
        return 0;
359
76
    }
360
361
    /*
362
     * We remove any OCSP_RESPIDs from a previous handshake
363
     * to prevent unbounded memory growth - CVE-2016-6304
364
     */
365
4.64k
    sk_OCSP_RESPID_pop_free(s->ext.ocsp.ids, OCSP_RESPID_free);
366
4.64k
    if (PACKET_remaining(&responder_id_list) > 0) {
367
2.09k
        s->ext.ocsp.ids = sk_OCSP_RESPID_new_null();
368
2.09k
        if (s->ext.ocsp.ids == NULL) {
369
0
            SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_CRYPTO_LIB);
370
0
            return 0;
371
0
        }
372
2.55k
    } else {
373
2.55k
        s->ext.ocsp.ids = NULL;
374
2.55k
    }
375
376
4.74k
    while (PACKET_remaining(&responder_id_list) > 0) {
377
2.17k
        OCSP_RESPID *id;
378
2.17k
        PACKET responder_id;
379
2.17k
        const unsigned char *id_data;
380
381
2.17k
        if (!PACKET_get_length_prefixed_2(&responder_id_list, &responder_id)
382
2.10k
            || PACKET_remaining(&responder_id) == 0) {
383
88
            SSLfatal(s, SSL_AD_DECODE_ERROR, SSL_R_BAD_EXTENSION);
384
88
            return 0;
385
88
        }
386
387
2.08k
        id_data = PACKET_data(&responder_id);
388
2.08k
        id = d2i_OCSP_RESPID(NULL, &id_data,
389
2.08k
            (int)PACKET_remaining(&responder_id));
390
2.08k
        if (id == NULL) {
391
1.95k
            SSLfatal(s, SSL_AD_DECODE_ERROR, SSL_R_BAD_EXTENSION);
392
1.95k
            return 0;
393
1.95k
        }
394
395
136
        if (id_data != PACKET_end(&responder_id)) {
396
43
            OCSP_RESPID_free(id);
397
43
            SSLfatal(s, SSL_AD_DECODE_ERROR, SSL_R_BAD_EXTENSION);
398
399
43
            return 0;
400
43
        }
401
402
93
        if (!sk_OCSP_RESPID_push(s->ext.ocsp.ids, id)) {
403
0
            OCSP_RESPID_free(id);
404
0
            SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
405
406
0
            return 0;
407
0
        }
408
93
    }
409
410
    /* Read in request_extensions */
411
2.56k
    if (!PACKET_as_length_prefixed_2(pkt, &exts)) {
412
56
        SSLfatal(s, SSL_AD_DECODE_ERROR, SSL_R_BAD_EXTENSION);
413
56
        return 0;
414
56
    }
415
416
2.50k
    if (PACKET_remaining(&exts) > 0) {
417
715
        const unsigned char *ext_data = PACKET_data(&exts);
418
419
715
        sk_X509_EXTENSION_pop_free(s->ext.ocsp.exts,
420
715
            X509_EXTENSION_free);
421
715
        s->ext.ocsp.exts = d2i_X509_EXTENSIONS(NULL, &ext_data, (int)PACKET_remaining(&exts));
422
715
        if (s->ext.ocsp.exts == NULL || ext_data != PACKET_end(&exts)) {
423
707
            SSLfatal(s, SSL_AD_DECODE_ERROR, SSL_R_BAD_EXTENSION);
424
707
            return 0;
425
707
        }
426
715
    }
427
428
1.80k
    return 1;
429
2.50k
}
430
#endif
431
432
#ifndef OPENSSL_NO_NEXTPROTONEG
433
int tls_parse_ctos_npn(SSL_CONNECTION *s, PACKET *pkt, unsigned int context,
434
    X509 *x, size_t chainidx)
435
19
{
436
    /*
437
     * We shouldn't accept this extension on a
438
     * renegotiation.
439
     */
440
19
    if (SSL_IS_FIRST_HANDSHAKE(s))
441
19
        s->s3.npn_seen = 1;
442
443
19
    return 1;
444
19
}
445
#endif
446
447
/*
448
 * Save the ALPN extension in a ClientHello.|pkt| holds the contents of the ALPN
449
 * extension, not including type and length. Returns: 1 on success, 0 on error.
450
 */
451
int tls_parse_ctos_alpn(SSL_CONNECTION *s, PACKET *pkt, unsigned int context,
452
    X509 *x, size_t chainidx)
453
549
{
454
549
    PACKET protocol_list, save_protocol_list, protocol;
455
456
549
    if (!SSL_IS_FIRST_HANDSHAKE(s))
457
0
        return 1;
458
459
549
    if (!PACKET_as_length_prefixed_2(pkt, &protocol_list)
460
458
        || PACKET_remaining(&protocol_list) < 2) {
461
100
        SSLfatal(s, SSL_AD_DECODE_ERROR, SSL_R_BAD_EXTENSION);
462
100
        return 0;
463
100
    }
464
465
449
    save_protocol_list = protocol_list;
466
2.29k
    do {
467
        /* Protocol names can't be empty. */
468
2.29k
        if (!PACKET_get_length_prefixed_1(&protocol_list, &protocol)
469
2.23k
            || PACKET_remaining(&protocol) == 0) {
470
94
            SSLfatal(s, SSL_AD_DECODE_ERROR, SSL_R_BAD_EXTENSION);
471
94
            return 0;
472
94
        }
473
2.29k
    } while (PACKET_remaining(&protocol_list) != 0);
474
475
355
    OPENSSL_free(s->s3.alpn_proposed);
476
355
    s->s3.alpn_proposed = NULL;
477
355
    s->s3.alpn_proposed_len = 0;
478
355
    if (!PACKET_memdup(&save_protocol_list,
479
355
            &s->s3.alpn_proposed, &s->s3.alpn_proposed_len)) {
480
0
        SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
481
0
        return 0;
482
0
    }
483
484
355
    return 1;
485
355
}
486
487
#ifndef OPENSSL_NO_SRTP
488
int tls_parse_ctos_use_srtp(SSL_CONNECTION *s, PACKET *pkt,
489
    unsigned int context, X509 *x, size_t chainidx)
490
1.20k
{
491
1.20k
    STACK_OF(SRTP_PROTECTION_PROFILE) *srvr;
492
1.20k
    unsigned int ct, mki_len, id;
493
1.20k
    int i, srtp_pref;
494
1.20k
    PACKET subpkt;
495
1.20k
    SSL *ssl = SSL_CONNECTION_GET_SSL(s);
496
497
    /* Ignore this if we have no SRTP profiles */
498
1.20k
    if (SSL_get_srtp_profiles(ssl) == NULL)
499
1.20k
        return 1;
500
501
    /* Pull off the length of the cipher suite list  and check it is even */
502
0
    if (!PACKET_get_net_2(pkt, &ct) || (ct & 1) != 0
503
0
        || !PACKET_get_sub_packet(pkt, &subpkt, ct)) {
504
0
        SSLfatal(s, SSL_AD_DECODE_ERROR,
505
0
            SSL_R_BAD_SRTP_PROTECTION_PROFILE_LIST);
506
0
        return 0;
507
0
    }
508
509
0
    srvr = SSL_get_srtp_profiles(ssl);
510
0
    s->srtp_profile = NULL;
511
    /* Search all profiles for a match initially */
512
0
    srtp_pref = sk_SRTP_PROTECTION_PROFILE_num(srvr);
513
514
0
    while (PACKET_remaining(&subpkt)) {
515
0
        if (!PACKET_get_net_2(&subpkt, &id)) {
516
0
            SSLfatal(s, SSL_AD_DECODE_ERROR,
517
0
                SSL_R_BAD_SRTP_PROTECTION_PROFILE_LIST);
518
0
            return 0;
519
0
        }
520
521
        /*
522
         * Only look for match in profiles of higher preference than
523
         * current match.
524
         * If no profiles have been have been configured then this
525
         * does nothing.
526
         */
527
0
        for (i = 0; i < srtp_pref; i++) {
528
0
            SRTP_PROTECTION_PROFILE *sprof = sk_SRTP_PROTECTION_PROFILE_value(srvr, i);
529
530
0
            if (sprof->id == id) {
531
0
                s->srtp_profile = sprof;
532
0
                srtp_pref = i;
533
0
                break;
534
0
            }
535
0
        }
536
0
    }
537
538
    /* Now extract the MKI value as a sanity check, but discard it for now */
539
0
    if (!PACKET_get_1(pkt, &mki_len)) {
540
0
        SSLfatal(s, SSL_AD_DECODE_ERROR,
541
0
            SSL_R_BAD_SRTP_PROTECTION_PROFILE_LIST);
542
0
        return 0;
543
0
    }
544
545
0
    if (!PACKET_forward(pkt, mki_len)
546
0
        || PACKET_remaining(pkt)) {
547
0
        SSLfatal(s, SSL_AD_DECODE_ERROR, SSL_R_BAD_SRTP_MKI_VALUE);
548
0
        return 0;
549
0
    }
550
551
0
    return 1;
552
0
}
553
#endif
554
555
int tls_parse_ctos_etm(SSL_CONNECTION *s, PACKET *pkt, unsigned int context,
556
    X509 *x, size_t chainidx)
557
1.80k
{
558
1.80k
    if (!(s->options & SSL_OP_NO_ENCRYPT_THEN_MAC))
559
1.80k
        s->ext.use_etm = 1;
560
561
1.80k
    return 1;
562
1.80k
}
563
564
/*
565
 * Process a psk_kex_modes extension received in the ClientHello. |pkt| contains
566
 * the raw PACKET data for the extension. Returns 1 on success or 0 on failure.
567
 */
568
int tls_parse_ctos_psk_kex_modes(SSL_CONNECTION *s, PACKET *pkt,
569
    unsigned int context,
570
    X509 *x, size_t chainidx)
571
1.35k
{
572
1.35k
#ifndef OPENSSL_NO_TLS1_3
573
1.35k
    PACKET psk_kex_modes;
574
1.35k
    unsigned int mode;
575
576
1.35k
    if (!PACKET_as_length_prefixed_1(pkt, &psk_kex_modes)
577
1.32k
        || PACKET_remaining(&psk_kex_modes) == 0) {
578
42
        SSLfatal(s, SSL_AD_DECODE_ERROR, SSL_R_BAD_EXTENSION);
579
42
        return 0;
580
42
    }
581
582
9.19k
    while (PACKET_get_1(&psk_kex_modes, &mode)) {
583
7.88k
        if (mode == TLSEXT_KEX_MODE_KE_DHE)
584
2.39k
            s->ext.psk_kex_mode |= TLSEXT_KEX_MODE_FLAG_KE_DHE;
585
5.49k
        else if (mode == TLSEXT_KEX_MODE_KE
586
1.84k
            && (s->options & SSL_OP_ALLOW_NO_DHE_KEX) != 0)
587
0
            s->ext.psk_kex_mode |= TLSEXT_KEX_MODE_FLAG_KE;
588
7.88k
    }
589
590
1.31k
    if (((s->ext.psk_kex_mode & TLSEXT_KEX_MODE_FLAG_KE) != 0)
591
0
        && (s->options & SSL_OP_PREFER_NO_DHE_KEX) != 0) {
592
593
        /*
594
         * If NO_DHE is supported and preferred, then we only remember this
595
         * mode. DHE PSK will not be used for sure, because in any case where
596
         * it would be supported (i.e. if a key share is present), NO_DHE would
597
         * be supported as well. As the latter is preferred it would be
598
         * chosen. By removing DHE PSK here, we don't have to deal with the
599
         * SSL_OP_PREFER_NO_DHE_KEX option in any other place.
600
         */
601
0
        s->ext.psk_kex_mode = TLSEXT_KEX_MODE_FLAG_KE;
602
0
    }
603
604
1.31k
#endif
605
606
1.31k
    return 1;
607
1.35k
}
608
609
/*
610
 * Use function tls_parse_ctos_key_share with helper functions extract_keyshares,
611
 * check_overlap and tls_accept_ksgroup to parse the key_share extension(s)
612
 * received in the ClientHello and to select the group used of the key exchange
613
 */
614
615
#ifndef OPENSSL_NO_TLS1_3
616
/*
617
 * Accept a key share group by setting the related variables in s->s3 and
618
 * by generating a pubkey for this group
619
 */
620
static int tls_accept_ksgroup(SSL_CONNECTION *s, uint16_t ksgroup, PACKET *encoded_pubkey)
621
1.98k
{
622
    /* Accept the key share group */
623
1.98k
    s->s3.group_id = ksgroup;
624
1.98k
    s->s3.group_id_candidate = ksgroup;
625
    /* Cache the selected group ID in the SSL_SESSION */
626
1.98k
    s->session->kex_group = ksgroup;
627
1.98k
    if ((s->s3.peer_tmp = ssl_generate_param_group(s, ksgroup)) == NULL) {
628
0
        SSLfatal(s,
629
0
            SSL_AD_INTERNAL_ERROR,
630
0
            SSL_R_UNABLE_TO_FIND_ECDH_PARAMETERS);
631
0
        return 0;
632
0
    }
633
1.98k
    if (tls13_set_encoded_pub_key(s->s3.peer_tmp,
634
1.98k
            PACKET_data(encoded_pubkey),
635
1.98k
            PACKET_remaining(encoded_pubkey))
636
1.98k
        <= 0) {
637
43
        SSLfatal(s, SSL_AD_ILLEGAL_PARAMETER, SSL_R_BAD_ECPOINT);
638
43
        return 0;
639
43
    }
640
1.93k
    return 1;
641
1.98k
}
642
643
1.89k
#define GROUPLIST_INCREMENT 32 /* Memory allocation chunk size (nominally 64 Bytes chunks) */
644
645
typedef enum KS_EXTRACTION_RESULT {
646
    EXTRACTION_FAILURE,
647
    EXTRACTION_SUCCESS,
648
    EXTRACTION_SUCCESS_HRR
649
} KS_EXTRACTION_RESULT;
650
651
static KS_EXTRACTION_RESULT extract_keyshares(SSL_CONNECTION *s, PACKET *key_share_list,
652
    const uint16_t *clntgroups, size_t clnt_num_groups,
653
    const uint16_t *srvrgroups, size_t srvr_num_groups,
654
    uint16_t **keyshares_arr, PACKET **encoded_pubkey_arr,
655
    size_t *keyshares_cnt, size_t *keyshares_max)
656
1.23k
{
657
1.23k
    PACKET encoded_pubkey;
658
1.23k
    size_t key_share_pos = 0;
659
1.23k
    size_t previous_key_share_pos = 0;
660
1.23k
    unsigned int group_id = 0;
661
662
    /* Prepare memory to hold the extracted key share groups and related pubkeys */
663
1.23k
    *keyshares_arr = OPENSSL_malloc(*keyshares_max * sizeof(**keyshares_arr));
664
1.23k
    if (*keyshares_arr == NULL) {
665
0
        SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
666
0
        goto failure;
667
0
    }
668
1.23k
    *encoded_pubkey_arr = OPENSSL_malloc(*keyshares_max * sizeof(**encoded_pubkey_arr));
669
1.23k
    if (*encoded_pubkey_arr == NULL) {
670
0
        SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
671
0
        goto failure;
672
0
    }
673
674
2.49k
    while (PACKET_remaining(key_share_list) > 0) {
675
        /* Get the group_id for the current share and its encoded_pubkey */
676
1.38k
        if (!PACKET_get_net_2(key_share_list, &group_id)
677
1.37k
            || !PACKET_get_length_prefixed_2(key_share_list, &encoded_pubkey)
678
1.34k
            || PACKET_remaining(&encoded_pubkey) == 0) {
679
40
            SSLfatal(s, SSL_AD_DECODE_ERROR, SSL_R_LENGTH_MISMATCH);
680
40
            goto failure;
681
40
        }
682
683
        /*
684
         * If we sent an HRR then the key_share sent back MUST be for the group
685
         * we requested, and must be the only key_share sent.
686
         */
687
1.34k
        if (s->s3.group_id != 0
688
70
            && (group_id != s->s3.group_id
689
52
                || PACKET_remaining(key_share_list) != 0)) {
690
21
            SSLfatal(s, SSL_AD_ILLEGAL_PARAMETER, SSL_R_BAD_KEY_SHARE);
691
21
            goto failure;
692
21
        }
693
694
        /*
695
         * Check if this share is in supported_groups sent from client
696
         * RFC 8446 also mandates that clients send keyshares in the same
697
         * order as listed in the supported groups extension, but its not
698
         * required that the server check that, and some clients violate this
699
         * so instead of failing the connection when that occurs, log a trace
700
         * message indicating the client discrepancy.
701
         */
702
1.32k
        if (!check_in_list(s, group_id, clntgroups, clnt_num_groups, 0, &key_share_pos)) {
703
12
            SSLfatal(s, SSL_AD_ILLEGAL_PARAMETER, SSL_R_BAD_KEY_SHARE);
704
12
            goto failure;
705
12
        }
706
707
1.30k
        if (key_share_pos < previous_key_share_pos)
708
1.30k
            OSSL_TRACE1(TLS, "key share group id %d is out of RFC 8446 order\n", group_id);
709
710
1.30k
        previous_key_share_pos = key_share_pos;
711
712
1.30k
        if (s->s3.group_id != 0) {
713
            /*
714
             * We have sent a HRR, and the key share we got back is
715
             * the one we expected and is the only key share and is
716
             * in the list of supported_groups (checked
717
             * above already), hence we accept this key share group
718
             */
719
49
            if (!tls_accept_ksgroup(s, s->s3.group_id, &encoded_pubkey))
720
2
                goto failure; /* SSLfatal already called */
721
            /* We have selected a key share group via HRR, hence we're done here */
722
47
            return EXTRACTION_SUCCESS_HRR;
723
49
        }
724
725
        /*
726
         * We tolerate but ignore a group id that we don't think is
727
         * suitable for TLSv1.3 or which is not supported by the server
728
         */
729
1.25k
        if (!check_in_list(s, group_id, srvrgroups, srvr_num_groups, 1, NULL)
730
904
            || !tls_group_allowed(s, group_id, SSL_SECOP_CURVE_SUPPORTED)
731
904
            || !tls_valid_group(s, group_id, TLS1_3_VERSION, TLS1_3_VERSION,
732
904
                0, NULL)) {
733
            /* Share not suitable or not supported, check next share */
734
355
            continue;
735
355
        }
736
737
        /* Memorize this key share group ID and its encoded point */
738
904
        (*keyshares_arr)[*keyshares_cnt] = group_id;
739
904
        (*encoded_pubkey_arr)[(*keyshares_cnt)++] = encoded_pubkey;
740
741
        /*
742
         * Memory management (remark: While limiting the client to only allow
743
         * a maximum of OPENSSL_CLIENT_MAX_KEY_SHARES to be sent, the server can
744
         * handle any number of key shares)
745
         */
746
904
        if (*keyshares_cnt == *keyshares_max) {
747
0
            PACKET *tmp_pkt;
748
0
            uint16_t *tmp = OPENSSL_realloc(*keyshares_arr,
749
0
                (*keyshares_max + GROUPLIST_INCREMENT) * sizeof(**keyshares_arr));
750
751
0
            if (tmp == NULL) {
752
0
                SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
753
0
                goto failure;
754
0
            }
755
756
0
            *keyshares_arr = tmp;
757
0
            tmp_pkt = OPENSSL_realloc(*encoded_pubkey_arr,
758
0
                (*keyshares_max + GROUPLIST_INCREMENT) * sizeof(**encoded_pubkey_arr));
759
0
            if (tmp_pkt == NULL) {
760
0
                SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
761
0
                goto failure;
762
0
            }
763
764
0
            *encoded_pubkey_arr = tmp_pkt;
765
0
            *keyshares_max += GROUPLIST_INCREMENT;
766
0
        }
767
904
    }
768
769
1.11k
    return EXTRACTION_SUCCESS;
770
771
75
failure:
772
    /* Fatal error -> free any allocated memory and return 0 */
773
75
    OPENSSL_free(*keyshares_arr);
774
75
    OPENSSL_free(*encoded_pubkey_arr);
775
75
    return EXTRACTION_FAILURE;
776
1.23k
}
777
#endif
778
779
/*
780
 * For each group in the priority list of groups, check if that group is
781
 * also present in the secondary list; if so, select the first overlap and
782
 * assign to selected_group and also set the related index in the candidate group list,
783
 * or set selected_group to 0 if no overlap
784
 */
785
#ifndef OPENSSL_NO_TLS1_3
786
static void check_overlap(SSL_CONNECTION *s,
787
    const uint16_t *prio_groups, size_t prio_num_groups,
788
    const uint16_t *candidate_groups, size_t candidate_num_groups,
789
    int *prio_group_idx, int *candidate_group_idx,
790
    uint16_t *selected_group)
791
5.74k
{
792
5.74k
    uint16_t current_group;
793
5.74k
    size_t group_idx = prio_num_groups;
794
5.74k
    size_t new_group_idx = 0;
795
796
5.74k
    *candidate_group_idx = 0;
797
5.74k
    *prio_group_idx = 0;
798
5.74k
    *selected_group = 0;
799
800
16.3k
    for (current_group = 0; current_group < candidate_num_groups; current_group++) {
801
10.6k
        if (!check_in_list(s, candidate_groups[current_group], prio_groups,
802
10.6k
                prio_num_groups, 1, &new_group_idx)
803
1.80k
            || !tls_group_allowed(s, candidate_groups[current_group],
804
1.80k
                SSL_SECOP_CURVE_SUPPORTED)
805
1.80k
            || !tls_valid_group(s, candidate_groups[current_group], TLS1_3_VERSION,
806
1.80k
                TLS1_3_VERSION, 0, NULL))
807
            /* No overlap or group not suitable, check next group */
808
8.83k
            continue;
809
810
        /*
811
         * is the found new_group_idx earlier in the priority list than
812
         * initial or last group_idx?
813
         */
814
1.80k
        if (new_group_idx < group_idx) {
815
1.68k
            group_idx = new_group_idx;
816
1.68k
            *candidate_group_idx = current_group;
817
1.68k
            *prio_group_idx = group_idx;
818
1.68k
            *selected_group = prio_groups[group_idx];
819
1.68k
        }
820
1.80k
    }
821
5.74k
}
822
#endif
823
824
int tls_parse_ctos_key_share(SSL_CONNECTION *s, PACKET *pkt,
825
    unsigned int context, X509 *x, size_t chainidx)
826
1.89k
{
827
1.89k
#ifndef OPENSSL_NO_TLS1_3
828
1.89k
    PACKET key_share_list;
829
1.89k
    const uint16_t *clntgroups, *srvrgroups;
830
1.89k
    const size_t *srvrtuples;
831
1.89k
    uint16_t *first_group_in_tuple;
832
1.89k
    size_t clnt_num_groups, srvr_num_groups, srvr_num_tuples;
833
1.89k
    PACKET *encoded_pubkey_arr = NULL;
834
1.89k
    uint16_t *keyshares_arr = NULL;
835
1.89k
    size_t keyshares_cnt = 0;
836
1.89k
    size_t keyshares_max = GROUPLIST_INCREMENT;
837
    /* We conservatively assume that we did not find a suitable group */
838
1.89k
    uint16_t group_id_candidate = 0;
839
1.89k
    KS_EXTRACTION_RESULT ks_extraction_result;
840
1.89k
    size_t current_tuple;
841
1.89k
    int ret = 0;
842
843
1.89k
    s->s3.group_id_candidate = 0;
844
1.89k
    if (s->hit && (s->ext.psk_kex_mode & TLSEXT_KEX_MODE_FLAG_KE_DHE) == 0)
845
0
        return 1;
846
847
    /* Sanity check */
848
1.89k
    if (s->s3.peer_tmp != NULL) {
849
0
        SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
850
0
        return 0;
851
0
    }
852
853
1.89k
    if (!PACKET_as_length_prefixed_2(pkt, &key_share_list)) {
854
24
        SSLfatal(s, SSL_AD_DECODE_ERROR, SSL_R_LENGTH_MISMATCH);
855
24
        return 0;
856
24
    }
857
858
    /* Get list of server supported groups and the group tuples */
859
1.86k
    tls1_get_supported_groups(s, &srvrgroups, &srvr_num_groups);
860
1.86k
    tls1_get_group_tuples(s, &srvrtuples, &srvr_num_tuples);
861
    /* Get the clients list of supported groups. */
862
1.86k
    tls1_get_peer_groups(s, &clntgroups, &clnt_num_groups);
863
864
1.86k
    if (clnt_num_groups == 0) {
865
        /*
866
         * This can only happen if the supported_groups extension was not sent,
867
         * because we verify that the length is non-zero when we process that
868
         * extension.
869
         */
870
3
        SSLfatal(s, SSL_AD_MISSING_EXTENSION,
871
3
            SSL_R_MISSING_SUPPORTED_GROUPS_EXTENSION);
872
3
        return 0;
873
3
    }
874
875
1.86k
    if (s->s3.group_id != 0 && PACKET_remaining(&key_share_list) == 0) {
876
        /*
877
         * If we set a group_id already, then we must have sent an HRR
878
         * requesting a new key_share. If we haven't got one then that is an
879
         * error
880
         */
881
4
        SSLfatal(s, SSL_AD_ILLEGAL_PARAMETER, SSL_R_BAD_KEY_SHARE);
882
4
        return 0;
883
4
    }
884
885
    /* We parse the key share extension and memorize the entries (after some checks) */
886
1.86k
    ks_extraction_result = extract_keyshares(s,
887
1.86k
        &key_share_list,
888
1.86k
        clntgroups, clnt_num_groups,
889
1.86k
        srvrgroups, srvr_num_groups,
890
1.86k
        &keyshares_arr, &encoded_pubkey_arr,
891
1.86k
        &keyshares_cnt, &keyshares_max);
892
893
1.86k
    if (ks_extraction_result == EXTRACTION_FAILURE) /* Fatal error during tests */
894
109
        return 0; /* Memory already freed and SSLfatal already called */
895
1.75k
    if (ks_extraction_result == EXTRACTION_SUCCESS_HRR) /* Successful HRR */
896
66
        goto end;
897
898
    /*
899
     * We now have the following lists available to make a decision for
900
     * which group the server should use for key exchange :
901
     * From client: clntgroups[clnt_num_groups],
902
     *              keyshares_arr[keyshares_cnt], encoded_pubkey_arr[keyshares_cnt]
903
     * From server: srvrgroups[srvr_num_groups], srvrtuples[srvr_num_tuples]
904
     *
905
     * Group selection algorithm:
906
     *    For all tuples do:
907
     *      key share group(s) overlapping with current tuple?
908
     *         --> Yes: accept group_id for SH
909
     *        --> No: is any of the client supported_groups overlapping with current tuple?
910
     *            --> Yes: memorize group_id for HRR, break
911
     *             --> No: continue to check next tuple
912
     *
913
     * Remark: Selection priority different for client- or server-preference
914
     */
915
1.68k
    first_group_in_tuple = (uint16_t *)srvrgroups;
916
3.53k
    for (current_tuple = 0; current_tuple < srvr_num_tuples; current_tuple++) {
917
3.52k
        size_t number_of_groups_in_tuple = srvrtuples[current_tuple];
918
3.52k
        int prio_group_idx = 0, candidate_group_idx = 0;
919
920
        /* Server or client preference ? */
921
3.52k
        if (s->options & SSL_OP_CIPHER_SERVER_PREFERENCE) {
922
            /* Server preference */
923
            /* Is there overlap with a key share group?  */
924
0
            check_overlap(s,
925
0
                first_group_in_tuple, number_of_groups_in_tuple,
926
0
                keyshares_arr, keyshares_cnt,
927
0
                &prio_group_idx, &candidate_group_idx,
928
0
                &group_id_candidate);
929
0
            if (group_id_candidate > 0) { /* Overlap found -> accept the key share group */
930
0
                if (!tls_accept_ksgroup(s, group_id_candidate,
931
0
                        &encoded_pubkey_arr[candidate_group_idx]))
932
0
                    goto err; /* SSLfatal already called */
933
                /* We have all info for a SH, hence we're done here */
934
0
                goto end;
935
0
            } else {
936
                /*
937
                 * There's no overlap with a key share, but is there at least a client
938
                 * supported_group overlapping with the current tuple?
939
                 */
940
0
                check_overlap(s,
941
0
                    first_group_in_tuple, number_of_groups_in_tuple,
942
0
                    clntgroups, clnt_num_groups,
943
0
                    &prio_group_idx, &candidate_group_idx,
944
0
                    &group_id_candidate);
945
0
                if (group_id_candidate > 0) {
946
                    /*
947
                     * We did not have a key share overlap, but at least the supported
948
                     * groups overlap hence we can stop searching
949
                     * (and report group_id_candidate 'upward' for HRR)
950
                     */
951
0
                    s->s3.group_id_candidate = group_id_candidate;
952
0
                    goto end;
953
0
                } else {
954
                    /*
955
                     * Neither key share nor supported_groups overlap current
956
                     * tuple, hence we try the next tuple
957
                     */
958
0
                    first_group_in_tuple = &first_group_in_tuple[number_of_groups_in_tuple];
959
0
                    continue;
960
0
                }
961
0
            }
962
963
3.52k
        } else { /* We have client preference */
964
3.52k
            check_overlap(s,
965
3.52k
                keyshares_arr, keyshares_cnt,
966
3.52k
                first_group_in_tuple, number_of_groups_in_tuple,
967
3.52k
                &prio_group_idx, &candidate_group_idx,
968
3.52k
                &group_id_candidate);
969
3.52k
            if (group_id_candidate > 0) {
970
1.30k
                if (!tls_accept_ksgroup(s, group_id_candidate, &encoded_pubkey_arr[prio_group_idx]))
971
22
                    goto err;
972
1.28k
                goto end;
973
2.22k
            } else {
974
2.22k
                check_overlap(s,
975
2.22k
                    clntgroups, clnt_num_groups,
976
2.22k
                    first_group_in_tuple, number_of_groups_in_tuple,
977
2.22k
                    &prio_group_idx, &candidate_group_idx,
978
2.22k
                    &group_id_candidate);
979
2.22k
                if (group_id_candidate > 0) {
980
372
                    s->s3.group_id_candidate = group_id_candidate;
981
372
                    goto end;
982
1.84k
                } else {
983
1.84k
                    first_group_in_tuple = &first_group_in_tuple[number_of_groups_in_tuple];
984
1.84k
                    continue;
985
1.84k
                }
986
2.22k
            }
987
3.52k
        }
988
3.52k
    }
989
990
1.73k
end:
991
1.73k
    ret = 1;
992
993
1.75k
err:
994
1.75k
    OPENSSL_free(keyshares_arr);
995
1.75k
    OPENSSL_free(encoded_pubkey_arr);
996
1.75k
    return ret;
997
998
0
#endif
999
1000
0
    return 1;
1001
1.73k
}
1002
1003
int tls_parse_ctos_cookie(SSL_CONNECTION *s, PACKET *pkt, unsigned int context,
1004
    X509 *x, size_t chainidx)
1005
84
{
1006
84
#ifndef OPENSSL_NO_TLS1_3
1007
84
    unsigned int format, version, key_share, group_id;
1008
84
    EVP_MD_CTX *hctx;
1009
84
    EVP_PKEY *pkey;
1010
84
    PACKET cookie, raw, chhash, appcookie;
1011
84
    WPACKET hrrpkt;
1012
84
    const unsigned char *data, *mdin, *ciphdata;
1013
84
    unsigned char hmac[SHA256_DIGEST_LENGTH];
1014
84
    unsigned char hrr[MAX_HRR_SIZE];
1015
84
    size_t rawlen, hmaclen, hrrlen, ciphlen;
1016
84
    uint64_t tm, now;
1017
84
    SSL *ssl = SSL_CONNECTION_GET_SSL(s);
1018
84
    SSL_CTX *sctx = SSL_CONNECTION_GET_CTX(s);
1019
1020
    /* Ignore any cookie if we're not set up to verify it */
1021
84
    if (sctx->verify_stateless_cookie_cb == NULL
1022
0
        || (s->s3.flags & TLS1_FLAGS_STATELESS) == 0)
1023
84
        return 1;
1024
1025
0
    if (!PACKET_as_length_prefixed_2(pkt, &cookie)) {
1026
0
        SSLfatal(s, SSL_AD_DECODE_ERROR, SSL_R_LENGTH_MISMATCH);
1027
0
        return 0;
1028
0
    }
1029
1030
0
    raw = cookie;
1031
0
    data = PACKET_data(&raw);
1032
0
    rawlen = PACKET_remaining(&raw);
1033
0
    if (rawlen < SHA256_DIGEST_LENGTH
1034
0
        || !PACKET_forward(&raw, rawlen - SHA256_DIGEST_LENGTH)) {
1035
0
        SSLfatal(s, SSL_AD_DECODE_ERROR, SSL_R_LENGTH_MISMATCH);
1036
0
        return 0;
1037
0
    }
1038
0
    mdin = PACKET_data(&raw);
1039
1040
    /* Verify the HMAC of the cookie */
1041
0
    hctx = EVP_MD_CTX_create();
1042
0
    pkey = EVP_PKEY_new_raw_private_key_ex(sctx->libctx, "HMAC",
1043
0
        sctx->propq,
1044
0
        s->session_ctx->ext.cookie_hmac_key,
1045
0
        sizeof(s->session_ctx->ext.cookie_hmac_key));
1046
0
    if (hctx == NULL || pkey == NULL) {
1047
0
        EVP_MD_CTX_free(hctx);
1048
0
        EVP_PKEY_free(pkey);
1049
0
        SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_EVP_LIB);
1050
0
        return 0;
1051
0
    }
1052
1053
0
    hmaclen = SHA256_DIGEST_LENGTH;
1054
0
    if (EVP_DigestSignInit_ex(hctx, NULL, "SHA2-256", sctx->libctx,
1055
0
            sctx->propq, pkey, NULL)
1056
0
            <= 0
1057
0
        || EVP_DigestSign(hctx, hmac, &hmaclen, data,
1058
0
               rawlen - SHA256_DIGEST_LENGTH)
1059
0
            <= 0
1060
0
        || hmaclen != SHA256_DIGEST_LENGTH) {
1061
0
        EVP_MD_CTX_free(hctx);
1062
0
        EVP_PKEY_free(pkey);
1063
0
        SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
1064
0
        return 0;
1065
0
    }
1066
1067
0
    EVP_MD_CTX_free(hctx);
1068
0
    EVP_PKEY_free(pkey);
1069
1070
0
    if (CRYPTO_memcmp(hmac, mdin, SHA256_DIGEST_LENGTH) != 0) {
1071
0
        SSLfatal(s, SSL_AD_ILLEGAL_PARAMETER, SSL_R_COOKIE_MISMATCH);
1072
0
        return 0;
1073
0
    }
1074
1075
0
    if (!PACKET_get_net_2(&cookie, &format)) {
1076
0
        SSLfatal(s, SSL_AD_DECODE_ERROR, SSL_R_LENGTH_MISMATCH);
1077
0
        return 0;
1078
0
    }
1079
    /* Check the cookie format is something we recognise. Ignore it if not */
1080
0
    if (format != COOKIE_STATE_FORMAT_VERSION)
1081
0
        return 1;
1082
1083
    /*
1084
     * The rest of these checks really shouldn't fail since we have verified the
1085
     * HMAC above.
1086
     */
1087
1088
    /* Check the version number is sane */
1089
0
    if (!PACKET_get_net_2(&cookie, &version)) {
1090
0
        SSLfatal(s, SSL_AD_DECODE_ERROR, SSL_R_LENGTH_MISMATCH);
1091
0
        return 0;
1092
0
    }
1093
0
    if (version != TLS1_3_VERSION) {
1094
0
        SSLfatal(s, SSL_AD_ILLEGAL_PARAMETER,
1095
0
            SSL_R_BAD_PROTOCOL_VERSION_NUMBER);
1096
0
        return 0;
1097
0
    }
1098
1099
0
    if (!PACKET_get_net_2(&cookie, &group_id)) {
1100
0
        SSLfatal(s, SSL_AD_DECODE_ERROR, SSL_R_LENGTH_MISMATCH);
1101
0
        return 0;
1102
0
    }
1103
1104
0
    ciphdata = PACKET_data(&cookie);
1105
0
    if (!PACKET_forward(&cookie, 2)) {
1106
0
        SSLfatal(s, SSL_AD_DECODE_ERROR, SSL_R_LENGTH_MISMATCH);
1107
0
        return 0;
1108
0
    }
1109
0
    if (group_id != s->s3.group_id
1110
0
        || s->s3.tmp.new_cipher
1111
0
            != ssl_get_cipher_by_char(s, ciphdata, 0)) {
1112
        /*
1113
         * We chose a different cipher or group id this time around to what is
1114
         * in the cookie. Something must have changed.
1115
         */
1116
0
        SSLfatal(s, SSL_AD_ILLEGAL_PARAMETER, SSL_R_BAD_CIPHER);
1117
0
        return 0;
1118
0
    }
1119
1120
0
    if (!PACKET_get_1(&cookie, &key_share)
1121
0
        || !PACKET_get_net_8(&cookie, &tm)
1122
0
        || !PACKET_get_length_prefixed_2(&cookie, &chhash)
1123
0
        || !PACKET_get_length_prefixed_1(&cookie, &appcookie)
1124
0
        || PACKET_remaining(&cookie) != SHA256_DIGEST_LENGTH) {
1125
0
        SSLfatal(s, SSL_AD_DECODE_ERROR, SSL_R_LENGTH_MISMATCH);
1126
0
        return 0;
1127
0
    }
1128
1129
    /* We tolerate a cookie age of up to 10 minutes (= 60 * 10 seconds) */
1130
0
    now = time(NULL);
1131
0
    if (tm > now || (now - tm) > 600) {
1132
        /* Cookie is stale. Ignore it */
1133
0
        return 1;
1134
0
    }
1135
1136
    /* Verify the app cookie */
1137
0
    if (sctx->verify_stateless_cookie_cb(SSL_CONNECTION_GET_USER_SSL(s),
1138
0
            PACKET_data(&appcookie),
1139
0
            PACKET_remaining(&appcookie))
1140
0
        == 0) {
1141
0
        SSLfatal(s, SSL_AD_ILLEGAL_PARAMETER, SSL_R_COOKIE_MISMATCH);
1142
0
        return 0;
1143
0
    }
1144
1145
    /*
1146
     * Reconstruct the HRR that we would have sent in response to the original
1147
     * ClientHello so we can add it to the transcript hash.
1148
     * Note: This won't work with custom HRR extensions
1149
     */
1150
0
    if (!WPACKET_init_static_len(&hrrpkt, hrr, sizeof(hrr), 0)) {
1151
0
        SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
1152
0
        return 0;
1153
0
    }
1154
0
    if (!WPACKET_put_bytes_u8(&hrrpkt, SSL3_MT_SERVER_HELLO)
1155
0
        || !WPACKET_start_sub_packet_u24(&hrrpkt)
1156
0
        || !WPACKET_put_bytes_u16(&hrrpkt, TLS1_2_VERSION)
1157
0
        || !WPACKET_memcpy(&hrrpkt, hrrrandom, SSL3_RANDOM_SIZE)
1158
0
        || !WPACKET_sub_memcpy_u8(&hrrpkt, s->tmp_session_id,
1159
0
            s->tmp_session_id_len)
1160
0
        || !ssl->method->put_cipher_by_char(s->s3.tmp.new_cipher, &hrrpkt,
1161
0
            &ciphlen)
1162
0
        || !WPACKET_put_bytes_u8(&hrrpkt, 0)
1163
0
        || !WPACKET_start_sub_packet_u16(&hrrpkt)) {
1164
0
        WPACKET_cleanup(&hrrpkt);
1165
0
        SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
1166
0
        return 0;
1167
0
    }
1168
0
    if (!WPACKET_put_bytes_u16(&hrrpkt, TLSEXT_TYPE_supported_versions)
1169
0
        || !WPACKET_start_sub_packet_u16(&hrrpkt)
1170
0
        || !WPACKET_put_bytes_u16(&hrrpkt, s->version)
1171
0
        || !WPACKET_close(&hrrpkt)) {
1172
0
        WPACKET_cleanup(&hrrpkt);
1173
0
        SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
1174
0
        return 0;
1175
0
    }
1176
0
    if (key_share) {
1177
0
        if (!WPACKET_put_bytes_u16(&hrrpkt, TLSEXT_TYPE_key_share)
1178
0
            || !WPACKET_start_sub_packet_u16(&hrrpkt)
1179
0
            || !WPACKET_put_bytes_u16(&hrrpkt, s->s3.group_id)
1180
0
            || !WPACKET_close(&hrrpkt)) {
1181
0
            WPACKET_cleanup(&hrrpkt);
1182
0
            SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
1183
0
            return 0;
1184
0
        }
1185
0
    }
1186
0
    if (!WPACKET_put_bytes_u16(&hrrpkt, TLSEXT_TYPE_cookie)
1187
0
        || !WPACKET_start_sub_packet_u16(&hrrpkt)
1188
0
        || !WPACKET_sub_memcpy_u16(&hrrpkt, data, rawlen)
1189
0
        || !WPACKET_close(&hrrpkt) /* cookie extension */
1190
0
        || !WPACKET_close(&hrrpkt) /* extension block */
1191
0
        || !WPACKET_close(&hrrpkt) /* message */
1192
0
        || !WPACKET_get_total_written(&hrrpkt, &hrrlen)
1193
0
        || !WPACKET_finish(&hrrpkt)) {
1194
0
        WPACKET_cleanup(&hrrpkt);
1195
0
        SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
1196
0
        return 0;
1197
0
    }
1198
1199
    /* Reconstruct the transcript hash */
1200
0
    if (!create_synthetic_message_hash(s, PACKET_data(&chhash),
1201
0
            PACKET_remaining(&chhash), hrr,
1202
0
            hrrlen)) {
1203
        /* SSLfatal() already called */
1204
0
        return 0;
1205
0
    }
1206
1207
    /* Act as if this ClientHello came after a HelloRetryRequest */
1208
0
    s->hello_retry_request = SSL_HRR_PENDING;
1209
1210
0
    s->ext.cookieok = 1;
1211
0
#endif
1212
1213
0
    return 1;
1214
0
}
1215
1216
int tls_parse_ctos_supported_groups(SSL_CONNECTION *s, PACKET *pkt,
1217
    unsigned int context,
1218
    X509 *x, size_t chainidx)
1219
12.0k
{
1220
12.0k
    PACKET supported_groups_list;
1221
1222
    /* Each group is 2 bytes and we must have at least 1. */
1223
12.0k
    if (!PACKET_as_length_prefixed_2(pkt, &supported_groups_list)
1224
11.8k
        || PACKET_remaining(&supported_groups_list) == 0
1225
11.8k
        || (PACKET_remaining(&supported_groups_list) % 2) != 0) {
1226
181
        SSLfatal(s, SSL_AD_DECODE_ERROR, SSL_R_BAD_EXTENSION);
1227
181
        return 0;
1228
181
    }
1229
1230
11.8k
    if (!s->hit || SSL_CONNECTION_IS_TLS13(s)) {
1231
11.7k
        OPENSSL_free(s->ext.peer_supportedgroups);
1232
11.7k
        s->ext.peer_supportedgroups = NULL;
1233
11.7k
        s->ext.peer_supportedgroups_len = 0;
1234
11.7k
        if (!tls1_save_u16(&supported_groups_list,
1235
11.7k
                &s->ext.peer_supportedgroups,
1236
11.7k
                &s->ext.peer_supportedgroups_len)) {
1237
0
            SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
1238
0
            return 0;
1239
0
        }
1240
11.7k
    }
1241
1242
11.8k
    return 1;
1243
11.8k
}
1244
1245
int tls_parse_ctos_ems(SSL_CONNECTION *s, PACKET *pkt, unsigned int context,
1246
    X509 *x, size_t chainidx)
1247
5.35k
{
1248
    /* The extension must always be empty */
1249
5.35k
    if (PACKET_remaining(pkt) != 0) {
1250
12
        SSLfatal(s, SSL_AD_DECODE_ERROR, SSL_R_BAD_EXTENSION);
1251
12
        return 0;
1252
12
    }
1253
1254
5.34k
    if (s->options & SSL_OP_NO_EXTENDED_MASTER_SECRET)
1255
0
        return 1;
1256
1257
5.34k
    s->s3.flags |= TLS1_FLAGS_RECEIVED_EXTMS;
1258
1259
5.34k
    return 1;
1260
5.34k
}
1261
1262
int tls_parse_ctos_early_data(SSL_CONNECTION *s, PACKET *pkt, unsigned int context,
1263
    X509 *x, size_t chainidx)
1264
2.16k
{
1265
2.16k
    if (PACKET_remaining(pkt) != 0) {
1266
5
        SSLfatal(s, SSL_AD_DECODE_ERROR, SSL_R_BAD_EXTENSION);
1267
5
        return 0;
1268
5
    }
1269
1270
2.15k
    if (s->hello_retry_request != SSL_HRR_NONE) {
1271
7
        SSLfatal(s, SSL_AD_ILLEGAL_PARAMETER, SSL_R_BAD_EXTENSION);
1272
7
        return 0;
1273
7
    }
1274
1275
2.15k
    return 1;
1276
2.15k
}
1277
1278
static SSL_TICKET_STATUS tls_get_stateful_ticket(SSL_CONNECTION *s, PACKET *tick,
1279
    SSL_SESSION **sess)
1280
0
{
1281
0
    SSL_SESSION *tmpsess = NULL;
1282
1283
0
    s->ext.ticket_expected = 1;
1284
1285
0
    switch (PACKET_remaining(tick)) {
1286
0
    case 0:
1287
0
        return SSL_TICKET_EMPTY;
1288
1289
0
    case SSL_MAX_SSL_SESSION_ID_LENGTH:
1290
0
        break;
1291
1292
0
    default:
1293
0
        return SSL_TICKET_NO_DECRYPT;
1294
0
    }
1295
1296
0
    tmpsess = lookup_sess_in_cache(s, PACKET_data(tick),
1297
0
        SSL_MAX_SSL_SESSION_ID_LENGTH);
1298
1299
0
    if (tmpsess == NULL)
1300
0
        return SSL_TICKET_NO_DECRYPT;
1301
1302
0
    *sess = tmpsess;
1303
0
    return SSL_TICKET_SUCCESS;
1304
0
}
1305
1306
int tls_parse_ctos_psk(SSL_CONNECTION *s, PACKET *pkt, unsigned int context,
1307
    X509 *x, size_t chainidx)
1308
537
{
1309
537
    PACKET identities, binders, binder;
1310
537
    size_t binderoffset;
1311
537
    int hashsize;
1312
537
    SSL_SESSION *sess = NULL;
1313
537
    unsigned int id, i, ext = 0;
1314
537
    const EVP_MD *md = NULL;
1315
537
    SSL_CTX *sctx = SSL_CONNECTION_GET_CTX(s);
1316
537
    SSL *ussl = SSL_CONNECTION_GET_USER_SSL(s);
1317
1318
    /*
1319
     * If we have no PSK kex mode that we recognise then we can't resume so
1320
     * ignore this extension
1321
     */
1322
537
    if ((s->ext.psk_kex_mode
1323
537
            & (TLSEXT_KEX_MODE_FLAG_KE | TLSEXT_KEX_MODE_FLAG_KE_DHE))
1324
537
        == 0)
1325
9
        return 1;
1326
1327
528
    if (!PACKET_get_length_prefixed_2(pkt, &identities)) {
1328
25
        SSLfatal(s, SSL_AD_DECODE_ERROR, SSL_R_BAD_EXTENSION);
1329
25
        return 0;
1330
25
    }
1331
1332
503
    s->ext.ticket_expected = 0;
1333
981
    for (id = 0; PACKET_remaining(&identities) != 0; id++) {
1334
782
        PACKET identity;
1335
782
        unsigned long ticket_agel;
1336
782
        size_t idlen;
1337
1338
782
        if (!PACKET_get_length_prefixed_2(&identities, &identity)
1339
670
            || !PACKET_get_net_4(&identities, &ticket_agel)) {
1340
122
            SSLfatal(s, SSL_AD_DECODE_ERROR, SSL_R_BAD_EXTENSION);
1341
122
            return 0;
1342
122
        }
1343
1344
660
        idlen = PACKET_remaining(&identity);
1345
660
        if (idlen == 0) {
1346
12
            SSLfatal(s, SSL_AD_DECODE_ERROR, SSL_R_BAD_EXTENSION);
1347
12
            return 0;
1348
12
        }
1349
648
        if (s->psk_find_session_cb != NULL
1350
0
            && !s->psk_find_session_cb(ussl, PACKET_data(&identity), idlen,
1351
0
                &sess)) {
1352
0
            SSLfatal(s, SSL_AD_INTERNAL_ERROR, SSL_R_BAD_EXTENSION);
1353
0
            return 0;
1354
0
        }
1355
1356
648
#ifndef OPENSSL_NO_PSK
1357
648
        if (sess == NULL
1358
648
            && s->psk_server_callback != NULL
1359
0
            && idlen <= PSK_MAX_IDENTITY_LEN) {
1360
0
            char *pskid = NULL;
1361
0
            unsigned char pskdata[PSK_MAX_PSK_LEN];
1362
0
            unsigned int pskdatalen;
1363
1364
0
            if (!PACKET_strndup(&identity, &pskid)) {
1365
0
                SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
1366
0
                return 0;
1367
0
            }
1368
0
            pskdatalen = s->psk_server_callback(ussl, pskid, pskdata,
1369
0
                sizeof(pskdata));
1370
0
            OPENSSL_free(pskid);
1371
0
            if (pskdatalen > PSK_MAX_PSK_LEN) {
1372
0
                SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
1373
0
                return 0;
1374
0
            } else if (pskdatalen > 0) {
1375
0
                const SSL_CIPHER *cipher;
1376
0
                const unsigned char tls13_aes128gcmsha256_id[] = { 0x13, 0x01 };
1377
1378
                /*
1379
                 * We found a PSK using an old style callback. We don't know
1380
                 * the digest so we default to SHA256 as per the TLSv1.3 spec
1381
                 */
1382
0
                cipher = SSL_CIPHER_find(SSL_CONNECTION_GET_SSL(s),
1383
0
                    tls13_aes128gcmsha256_id);
1384
0
                if (cipher == NULL) {
1385
0
                    OPENSSL_cleanse(pskdata, pskdatalen);
1386
0
                    SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
1387
0
                    return 0;
1388
0
                }
1389
1390
0
                sess = SSL_SESSION_new();
1391
0
                if (sess == NULL
1392
0
                    || !SSL_SESSION_set1_master_key(sess, pskdata,
1393
0
                        pskdatalen)
1394
0
                    || !SSL_SESSION_set_cipher(sess, cipher)
1395
0
                    || !SSL_SESSION_set_protocol_version(sess,
1396
0
                        TLS1_3_VERSION)) {
1397
0
                    OPENSSL_cleanse(pskdata, pskdatalen);
1398
0
                    SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
1399
0
                    goto err;
1400
0
                }
1401
0
                OPENSSL_cleanse(pskdata, pskdatalen);
1402
0
            }
1403
0
        }
1404
648
#endif /* OPENSSL_NO_PSK */
1405
1406
648
        if (sess != NULL) {
1407
            /* We found a PSK */
1408
0
            SSL_SESSION *sesstmp = ssl_session_dup(sess, 0);
1409
1410
0
            if (sesstmp == NULL) {
1411
0
                SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
1412
0
                goto err;
1413
0
            }
1414
0
            SSL_SESSION_free(sess);
1415
0
            sess = sesstmp;
1416
1417
            /*
1418
             * We've just been told to use this session for this context so
1419
             * make sure the sid_ctx matches up.
1420
             */
1421
0
            memcpy(sess->sid_ctx, s->sid_ctx, s->sid_ctx_length);
1422
0
            sess->sid_ctx_length = s->sid_ctx_length;
1423
0
            ext = 1;
1424
0
            if (id == 0)
1425
0
                s->ext.early_data_ok = 1;
1426
0
            s->ext.ticket_expected = 1;
1427
648
        } else {
1428
648
            OSSL_TIME t, age, expire;
1429
648
            int ret;
1430
1431
            /*
1432
             * If we are using anti-replay protection then we behave as if
1433
             * SSL_OP_NO_TICKET is set - we are caching tickets anyway so there
1434
             * is no point in using full stateless tickets.
1435
             */
1436
648
            if ((s->options & SSL_OP_NO_TICKET) != 0
1437
648
                || (s->max_early_data > 0
1438
0
                    && (s->options & SSL_OP_NO_ANTI_REPLAY) == 0))
1439
0
                ret = tls_get_stateful_ticket(s, &identity, &sess);
1440
648
            else
1441
648
                ret = tls_decrypt_ticket(s, PACKET_data(&identity),
1442
648
                    PACKET_remaining(&identity), NULL, 0,
1443
648
                    &sess);
1444
1445
648
            if (ret == SSL_TICKET_EMPTY) {
1446
0
                SSLfatal(s, SSL_AD_DECODE_ERROR, SSL_R_BAD_EXTENSION);
1447
0
                goto err;
1448
0
            }
1449
1450
648
            if (ret == SSL_TICKET_FATAL_ERR_MALLOC
1451
648
                || ret == SSL_TICKET_FATAL_ERR_OTHER) {
1452
0
                SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
1453
0
                goto err;
1454
0
            }
1455
648
            if (ret == SSL_TICKET_NONE || ret == SSL_TICKET_NO_DECRYPT)
1456
356
                continue;
1457
1458
            /* Check for replay */
1459
292
            if (s->max_early_data > 0
1460
0
                && (s->options & SSL_OP_NO_ANTI_REPLAY) == 0
1461
0
                && !SSL_CTX_remove_session(s->session_ctx, sess)) {
1462
0
                SSL_SESSION_free(sess);
1463
0
                sess = NULL;
1464
0
                continue;
1465
0
            }
1466
1467
292
            age = ossl_time_subtract(ossl_ms2time(ticket_agel),
1468
292
                ossl_ms2time(sess->ext.tick_age_add));
1469
292
            t = ossl_time_subtract(ossl_time_now(), sess->time);
1470
1471
            /*
1472
             * Although internally we use OSS_TIME which has ns granularity,
1473
             * when SSL_SESSION structures are serialised/deserialised we use
1474
             * second granularity for the sess->time field. Therefore it could
1475
             * appear that the client's ticket age is longer than ours (our
1476
             * ticket age calculation should always be slightly longer than the
1477
             * client's due to the network latency). Therefore we add 1000ms to
1478
             * our age calculation to adjust for rounding errors.
1479
             */
1480
292
            expire = ossl_time_add(t, ossl_ms2time(1000));
1481
1482
292
            if (id == 0
1483
290
                && ossl_time_compare(sess->timeout, t) >= 0
1484
178
                && ossl_time_compare(age, expire) <= 0
1485
72
                && ossl_time_compare(ossl_time_add(age, TICKET_AGE_ALLOWANCE),
1486
72
                       expire)
1487
72
                    >= 0) {
1488
                /*
1489
                 * Ticket age is within tolerance and not expired. We allow it
1490
                 * for early data
1491
                 */
1492
72
                s->ext.early_data_ok = 1;
1493
72
            }
1494
292
        }
1495
1496
292
        md = ssl_md(sctx, sess->cipher->algorithm2);
1497
292
        if (md == NULL) {
1498
0
            SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
1499
0
            goto err;
1500
0
        }
1501
292
        if (!EVP_MD_is_a(md,
1502
292
                EVP_MD_get0_name(ssl_md(sctx,
1503
292
                    s->s3.tmp.new_cipher->algorithm2)))) {
1504
            /* The ciphersuite is not compatible with this session. */
1505
122
            SSL_SESSION_free(sess);
1506
122
            sess = NULL;
1507
122
            s->ext.early_data_ok = 0;
1508
            /*
1509
             * We fall back to a full handshake. The new session ticket will be
1510
             * issued to the client with the newly negotiated ciphersuite,
1511
             * allowing successful resumption on future connections.
1512
             */
1513
122
            s->ext.ticket_expected = 1;
1514
122
            continue;
1515
122
        }
1516
170
        break;
1517
292
    }
1518
1519
369
    if (sess == NULL)
1520
199
        return 1;
1521
1522
170
    binderoffset = PACKET_data(pkt) - (const unsigned char *)s->init_buf->data;
1523
170
    hashsize = EVP_MD_get_size(md);
1524
170
    if (hashsize <= 0)
1525
0
        goto err;
1526
1527
170
    if (!PACKET_get_length_prefixed_2(pkt, &binders)) {
1528
94
        SSLfatal(s, SSL_AD_DECODE_ERROR, SSL_R_BAD_EXTENSION);
1529
94
        goto err;
1530
94
    }
1531
1532
132
    for (i = 0; i <= id; i++) {
1533
76
        if (!PACKET_get_length_prefixed_1(&binders, &binder)) {
1534
20
            SSLfatal(s, SSL_AD_DECODE_ERROR, SSL_R_BAD_EXTENSION);
1535
20
            goto err;
1536
20
        }
1537
76
    }
1538
1539
56
    if (PACKET_remaining(&binder) != (size_t)hashsize) {
1540
12
        SSLfatal(s, SSL_AD_DECODE_ERROR, SSL_R_BAD_EXTENSION);
1541
12
        goto err;
1542
12
    }
1543
44
    if (tls_psk_do_binder(s, md, (const unsigned char *)s->init_buf->data,
1544
44
            binderoffset, PACKET_data(&binder), NULL, sess, 0,
1545
44
            ext)
1546
44
        != 1) {
1547
        /* SSLfatal() already called */
1548
40
        goto err;
1549
40
    }
1550
1551
4
    s->ext.tick_identity = id;
1552
1553
4
    SSL_SESSION_free(s->session);
1554
4
    s->session = sess;
1555
4
    return 1;
1556
166
err:
1557
166
    SSL_SESSION_free(sess);
1558
166
    return 0;
1559
44
}
1560
1561
int tls_parse_ctos_post_handshake_auth(SSL_CONNECTION *s, PACKET *pkt,
1562
    ossl_unused unsigned int context,
1563
    ossl_unused X509 *x,
1564
    ossl_unused size_t chainidx)
1565
131
{
1566
131
    if (PACKET_remaining(pkt) != 0) {
1567
8
        SSLfatal(s, SSL_AD_DECODE_ERROR,
1568
8
            SSL_R_POST_HANDSHAKE_AUTH_ENCODING_ERR);
1569
8
        return 0;
1570
8
    }
1571
1572
123
    s->post_handshake_auth = SSL_PHA_EXT_RECEIVED;
1573
1574
123
    return 1;
1575
131
}
1576
1577
/*
1578
 * Add the server's renegotiation binding
1579
 */
1580
EXT_RETURN tls_construct_stoc_renegotiate(SSL_CONNECTION *s, WPACKET *pkt,
1581
    unsigned int context, X509 *x,
1582
    size_t chainidx)
1583
20.5k
{
1584
20.5k
    if (!s->s3.send_connection_binding)
1585
14.1k
        return EXT_RETURN_NOT_SENT;
1586
1587
    /* Still add this even if SSL_OP_NO_RENEGOTIATION is set */
1588
6.39k
    if (!WPACKET_put_bytes_u16(pkt, TLSEXT_TYPE_renegotiate)
1589
6.39k
        || !WPACKET_start_sub_packet_u16(pkt)
1590
6.39k
        || !WPACKET_start_sub_packet_u8(pkt)
1591
6.39k
        || !WPACKET_memcpy(pkt, s->s3.previous_client_finished,
1592
6.39k
            s->s3.previous_client_finished_len)
1593
6.39k
        || !WPACKET_memcpy(pkt, s->s3.previous_server_finished,
1594
6.39k
            s->s3.previous_server_finished_len)
1595
6.39k
        || !WPACKET_close(pkt)
1596
6.39k
        || !WPACKET_close(pkt)) {
1597
0
        SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
1598
0
        return EXT_RETURN_FAIL;
1599
0
    }
1600
1601
6.39k
    return EXT_RETURN_SENT;
1602
6.39k
}
1603
1604
EXT_RETURN tls_construct_stoc_server_name(SSL_CONNECTION *s, WPACKET *pkt,
1605
    unsigned int context, X509 *x,
1606
    size_t chainidx)
1607
17.3k
{
1608
17.3k
    if (s->servername_done != 1)
1609
17.3k
        return EXT_RETURN_NOT_SENT;
1610
1611
    /*
1612
     * Prior to TLSv1.3 we ignore any SNI in the current handshake if resuming.
1613
     * We just use the servername from the initial handshake.
1614
     */
1615
0
    if (s->hit && !SSL_CONNECTION_IS_TLS13(s))
1616
0
        return EXT_RETURN_NOT_SENT;
1617
1618
0
    if (!WPACKET_put_bytes_u16(pkt, TLSEXT_TYPE_server_name)
1619
0
        || !WPACKET_put_bytes_u16(pkt, 0)) {
1620
0
        SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
1621
0
        return EXT_RETURN_FAIL;
1622
0
    }
1623
1624
0
    return EXT_RETURN_SENT;
1625
0
}
1626
1627
/* Add/include the server's max fragment len extension into ServerHello */
1628
EXT_RETURN tls_construct_stoc_maxfragmentlen(SSL_CONNECTION *s, WPACKET *pkt,
1629
    unsigned int context, X509 *x,
1630
    size_t chainidx)
1631
22.8k
{
1632
22.8k
    if (!USE_MAX_FRAGMENT_LENGTH_EXT(s->session))
1633
22.0k
        return EXT_RETURN_NOT_SENT;
1634
1635
    /*-
1636
     * 4 bytes for this extension type and extension length
1637
     * 1 byte for the Max Fragment Length code value.
1638
     */
1639
881
    if (!WPACKET_put_bytes_u16(pkt, TLSEXT_TYPE_max_fragment_length)
1640
881
        || !WPACKET_start_sub_packet_u16(pkt)
1641
881
        || !WPACKET_put_bytes_u8(pkt, s->session->ext.max_fragment_len_mode)
1642
881
        || !WPACKET_close(pkt)) {
1643
0
        SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
1644
0
        return EXT_RETURN_FAIL;
1645
0
    }
1646
1647
881
    return EXT_RETURN_SENT;
1648
881
}
1649
1650
EXT_RETURN tls_construct_stoc_ec_pt_formats(SSL_CONNECTION *s, WPACKET *pkt,
1651
    unsigned int context, X509 *x,
1652
    size_t chainidx)
1653
15.5k
{
1654
15.5k
    unsigned long alg_k = s->s3.tmp.new_cipher->algorithm_mkey;
1655
15.5k
    unsigned long alg_a = s->s3.tmp.new_cipher->algorithm_auth;
1656
15.5k
    int using_ecc = ((alg_k & SSL_kECDHE) || (alg_a & SSL_aECDSA))
1657
6.95k
        && (s->ext.peer_ecpointformats != NULL);
1658
15.5k
    const unsigned char *plist;
1659
15.5k
    size_t plistlen;
1660
1661
15.5k
    if (!using_ecc)
1662
13.0k
        return EXT_RETURN_NOT_SENT;
1663
1664
2.52k
    tls1_get_formatlist(s, &plist, &plistlen);
1665
2.52k
    if (!WPACKET_put_bytes_u16(pkt, TLSEXT_TYPE_ec_point_formats)
1666
2.52k
        || !WPACKET_start_sub_packet_u16(pkt)
1667
2.52k
        || !WPACKET_sub_memcpy_u8(pkt, plist, plistlen)
1668
2.52k
        || !WPACKET_close(pkt)) {
1669
0
        SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
1670
0
        return EXT_RETURN_FAIL;
1671
0
    }
1672
1673
2.52k
    return EXT_RETURN_SENT;
1674
2.52k
}
1675
1676
EXT_RETURN tls_construct_stoc_supported_groups(SSL_CONNECTION *s, WPACKET *pkt,
1677
    unsigned int context, X509 *x,
1678
    size_t chainidx)
1679
22.8k
{
1680
22.8k
    const uint16_t *groups;
1681
22.8k
    size_t numgroups, i, first = 1;
1682
22.8k
    int version;
1683
1684
    /* s->s3.group_id is non zero if we accepted a key_share */
1685
22.8k
    if (s->s3.group_id == 0)
1686
20.5k
        return EXT_RETURN_NOT_SENT;
1687
1688
    /* Get our list of supported groups */
1689
2.33k
    tls1_get_supported_groups(s, &groups, &numgroups);
1690
2.33k
    if (numgroups == 0) {
1691
0
        SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
1692
0
        return EXT_RETURN_FAIL;
1693
0
    }
1694
1695
    /* Copy group ID if supported */
1696
2.33k
    version = SSL_version(SSL_CONNECTION_GET_SSL(s));
1697
20.0k
    for (i = 0; i < numgroups; i++) {
1698
18.1k
        uint16_t group = groups[i];
1699
1700
18.1k
        if (tls_valid_group(s, group, version, version, 0, NULL)
1701
18.1k
            && tls_group_allowed(s, group, SSL_SECOP_CURVE_SUPPORTED)) {
1702
18.1k
            if (first) {
1703
                /*
1704
                 * Check if the client is already using our preferred group. If
1705
                 * so we don't need to add this extension
1706
                 */
1707
2.33k
                if (s->s3.group_id == group)
1708
489
                    return EXT_RETURN_NOT_SENT;
1709
1710
                /* Add extension header */
1711
1.84k
                if (!WPACKET_put_bytes_u16(pkt, TLSEXT_TYPE_supported_groups)
1712
                    /* Sub-packet for supported_groups extension */
1713
1.84k
                    || !WPACKET_start_sub_packet_u16(pkt)
1714
1.84k
                    || !WPACKET_start_sub_packet_u16(pkt)) {
1715
0
                    SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
1716
0
                    return EXT_RETURN_FAIL;
1717
0
                }
1718
1719
1.84k
                first = 0;
1720
1.84k
            }
1721
17.7k
            if (!WPACKET_put_bytes_u16(pkt, group)) {
1722
0
                SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
1723
0
                return EXT_RETURN_FAIL;
1724
0
            }
1725
17.7k
        }
1726
18.1k
    }
1727
1728
1.84k
    if (!WPACKET_close(pkt) || !WPACKET_close(pkt)) {
1729
0
        SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
1730
0
        return EXT_RETURN_FAIL;
1731
0
    }
1732
1733
1.84k
    return EXT_RETURN_SENT;
1734
1.84k
}
1735
1736
EXT_RETURN tls_construct_stoc_session_ticket(SSL_CONNECTION *s, WPACKET *pkt,
1737
    unsigned int context, X509 *x,
1738
    size_t chainidx)
1739
15.5k
{
1740
15.5k
    if (!s->ext.ticket_expected || !tls_use_ticket(s)) {
1741
11.4k
        s->ext.ticket_expected = 0;
1742
11.4k
        return EXT_RETURN_NOT_SENT;
1743
11.4k
    }
1744
1745
4.14k
    if (!WPACKET_put_bytes_u16(pkt, TLSEXT_TYPE_session_ticket)
1746
4.14k
        || !WPACKET_put_bytes_u16(pkt, 0)) {
1747
0
        SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
1748
0
        return EXT_RETURN_FAIL;
1749
0
    }
1750
1751
4.14k
    return EXT_RETURN_SENT;
1752
4.14k
}
1753
1754
#ifndef OPENSSL_NO_OCSP
1755
EXT_RETURN tls_construct_stoc_status_request(SSL_CONNECTION *s, WPACKET *pkt,
1756
    unsigned int context, X509 *x,
1757
    size_t chainidx)
1758
9.61k
{
1759
    /* We don't currently support this extension inside a CertificateRequest */
1760
9.61k
    if (context == SSL_EXT_TLS1_3_CERTIFICATE_REQUEST)
1761
0
        return EXT_RETURN_NOT_SENT;
1762
1763
9.61k
    if (!s->ext.status_expected)
1764
9.61k
        return EXT_RETURN_NOT_SENT;
1765
1766
0
    if (SSL_CONNECTION_IS_TLS13(s) && chainidx != 0)
1767
0
        return EXT_RETURN_NOT_SENT;
1768
1769
0
    if (!WPACKET_put_bytes_u16(pkt, TLSEXT_TYPE_status_request)
1770
0
        || !WPACKET_start_sub_packet_u16(pkt)) {
1771
0
        SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
1772
0
        return EXT_RETURN_FAIL;
1773
0
    }
1774
1775
    /*
1776
     * In TLSv1.3 we include the certificate status itself. In <= TLSv1.2 we
1777
     * send back an empty extension, with the certificate status appearing as a
1778
     * separate message
1779
     */
1780
0
    if (SSL_CONNECTION_IS_TLS13(s) && !tls_construct_cert_status_body(s, pkt)) {
1781
        /* SSLfatal() already called */
1782
0
        return EXT_RETURN_FAIL;
1783
0
    }
1784
0
    if (!WPACKET_close(pkt)) {
1785
0
        SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
1786
0
        return EXT_RETURN_FAIL;
1787
0
    }
1788
1789
0
    return EXT_RETURN_SENT;
1790
0
}
1791
#endif
1792
1793
#ifndef OPENSSL_NO_NEXTPROTONEG
1794
EXT_RETURN tls_construct_stoc_next_proto_neg(SSL_CONNECTION *s, WPACKET *pkt,
1795
    unsigned int context, X509 *x,
1796
    size_t chainidx)
1797
20.5k
{
1798
20.5k
    const unsigned char *npa;
1799
20.5k
    unsigned int npalen;
1800
20.5k
    int ret;
1801
20.5k
    int npn_seen = s->s3.npn_seen;
1802
20.5k
    SSL_CTX *sctx = SSL_CONNECTION_GET_CTX(s);
1803
1804
20.5k
    s->s3.npn_seen = 0;
1805
20.5k
    if (!npn_seen || sctx->ext.npn_advertised_cb == NULL)
1806
20.5k
        return EXT_RETURN_NOT_SENT;
1807
1808
0
    ret = sctx->ext.npn_advertised_cb(SSL_CONNECTION_GET_USER_SSL(s), &npa,
1809
0
        &npalen, sctx->ext.npn_advertised_cb_arg);
1810
0
    if (ret == SSL_TLSEXT_ERR_OK) {
1811
0
        if (!WPACKET_put_bytes_u16(pkt, TLSEXT_TYPE_next_proto_neg)
1812
0
            || !WPACKET_sub_memcpy_u16(pkt, npa, npalen)) {
1813
0
            SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
1814
0
            return EXT_RETURN_FAIL;
1815
0
        }
1816
0
        s->s3.npn_seen = 1;
1817
0
        return EXT_RETURN_SENT;
1818
0
    }
1819
1820
0
    return EXT_RETURN_NOT_SENT;
1821
0
}
1822
#endif
1823
1824
EXT_RETURN tls_construct_stoc_alpn(SSL_CONNECTION *s, WPACKET *pkt, unsigned int context,
1825
    X509 *x, size_t chainidx)
1826
22.8k
{
1827
22.8k
    if (s->s3.alpn_selected == NULL)
1828
22.8k
        return EXT_RETURN_NOT_SENT;
1829
1830
0
    if (!WPACKET_put_bytes_u16(pkt,
1831
0
            TLSEXT_TYPE_application_layer_protocol_negotiation)
1832
0
        || !WPACKET_start_sub_packet_u16(pkt)
1833
0
        || !WPACKET_start_sub_packet_u16(pkt)
1834
0
        || !WPACKET_sub_memcpy_u8(pkt, s->s3.alpn_selected,
1835
0
            s->s3.alpn_selected_len)
1836
0
        || !WPACKET_close(pkt)
1837
0
        || !WPACKET_close(pkt)) {
1838
0
        SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
1839
0
        return EXT_RETURN_FAIL;
1840
0
    }
1841
1842
0
    return EXT_RETURN_SENT;
1843
0
}
1844
1845
#ifndef OPENSSL_NO_SRTP
1846
EXT_RETURN tls_construct_stoc_use_srtp(SSL_CONNECTION *s, WPACKET *pkt,
1847
    unsigned int context, X509 *x,
1848
    size_t chainidx)
1849
22.8k
{
1850
22.8k
    if (s->srtp_profile == NULL)
1851
22.8k
        return EXT_RETURN_NOT_SENT;
1852
1853
0
    if (!WPACKET_put_bytes_u16(pkt, TLSEXT_TYPE_use_srtp)
1854
0
        || !WPACKET_start_sub_packet_u16(pkt)
1855
0
        || !WPACKET_put_bytes_u16(pkt, 2)
1856
0
        || !WPACKET_put_bytes_u16(pkt, s->srtp_profile->id)
1857
0
        || !WPACKET_put_bytes_u8(pkt, 0)
1858
0
        || !WPACKET_close(pkt)) {
1859
0
        SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
1860
0
        return EXT_RETURN_FAIL;
1861
0
    }
1862
1863
0
    return EXT_RETURN_SENT;
1864
0
}
1865
#endif
1866
1867
EXT_RETURN tls_construct_stoc_etm(SSL_CONNECTION *s, WPACKET *pkt,
1868
    unsigned int context,
1869
    X509 *x, size_t chainidx)
1870
20.5k
{
1871
20.5k
    if (!s->ext.use_etm)
1872
19.1k
        return EXT_RETURN_NOT_SENT;
1873
1874
    /*
1875
     * Don't use encrypt_then_mac if AEAD or RC4 might want to disable
1876
     * for other cases too.
1877
     */
1878
1.39k
    if (s->s3.tmp.new_cipher->algorithm_mac == SSL_AEAD
1879
1.09k
        || s->s3.tmp.new_cipher->algorithm_enc == SSL_RC4
1880
1.09k
        || s->s3.tmp.new_cipher->algorithm_enc == SSL_eGOST2814789CNT
1881
1.09k
        || s->s3.tmp.new_cipher->algorithm_enc == SSL_eGOST2814789CNT12
1882
1.09k
        || s->s3.tmp.new_cipher->algorithm_enc == SSL_MAGMA
1883
1.09k
        || s->s3.tmp.new_cipher->algorithm_enc == SSL_KUZNYECHIK) {
1884
300
        s->ext.use_etm = 0;
1885
300
        return EXT_RETURN_NOT_SENT;
1886
300
    }
1887
1888
1.09k
    if (!WPACKET_put_bytes_u16(pkt, TLSEXT_TYPE_encrypt_then_mac)
1889
1.09k
        || !WPACKET_put_bytes_u16(pkt, 0)) {
1890
0
        SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
1891
0
        return EXT_RETURN_FAIL;
1892
0
    }
1893
1894
1.09k
    return EXT_RETURN_SENT;
1895
1.09k
}
1896
1897
EXT_RETURN tls_construct_stoc_ems(SSL_CONNECTION *s, WPACKET *pkt,
1898
    unsigned int context,
1899
    X509 *x, size_t chainidx)
1900
20.5k
{
1901
20.5k
    if ((s->s3.flags & TLS1_FLAGS_RECEIVED_EXTMS) == 0)
1902
16.0k
        return EXT_RETURN_NOT_SENT;
1903
1904
4.44k
    if (!WPACKET_put_bytes_u16(pkt, TLSEXT_TYPE_extended_master_secret)
1905
4.44k
        || !WPACKET_put_bytes_u16(pkt, 0)) {
1906
0
        SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
1907
0
        return EXT_RETURN_FAIL;
1908
0
    }
1909
1910
4.44k
    return EXT_RETURN_SENT;
1911
4.44k
}
1912
1913
EXT_RETURN tls_construct_stoc_supported_versions(SSL_CONNECTION *s, WPACKET *pkt,
1914
    unsigned int context, X509 *x,
1915
    size_t chainidx)
1916
2.21k
{
1917
2.21k
    if (!ossl_assert(SSL_CONNECTION_IS_TLS13(s))) {
1918
0
        SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
1919
0
        return EXT_RETURN_FAIL;
1920
0
    }
1921
1922
2.21k
    if (!WPACKET_put_bytes_u16(pkt, TLSEXT_TYPE_supported_versions)
1923
2.21k
        || !WPACKET_start_sub_packet_u16(pkt)
1924
2.21k
        || !WPACKET_put_bytes_u16(pkt, s->version)
1925
2.21k
        || !WPACKET_close(pkt)) {
1926
0
        SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
1927
0
        return EXT_RETURN_FAIL;
1928
0
    }
1929
1930
2.21k
    return EXT_RETURN_SENT;
1931
2.21k
}
1932
1933
EXT_RETURN tls_construct_stoc_key_share(SSL_CONNECTION *s, WPACKET *pkt,
1934
    unsigned int context, X509 *x,
1935
    size_t chainidx)
1936
2.86k
{
1937
2.86k
#ifndef OPENSSL_NO_TLS1_3
1938
2.86k
    unsigned char *encoded_pubkey;
1939
2.86k
    size_t encoded_pubkey_len = 0;
1940
2.86k
    EVP_PKEY *ckey = s->s3.peer_tmp, *skey = NULL;
1941
2.86k
    const TLS_GROUP_INFO *ginf = NULL;
1942
1943
2.86k
    if (s->hello_retry_request == SSL_HRR_PENDING) {
1944
519
        if (ckey != NULL) {
1945
            /* Original key_share was acceptable so don't ask for another one */
1946
0
            return EXT_RETURN_NOT_SENT;
1947
0
        }
1948
519
        if (!WPACKET_put_bytes_u16(pkt, TLSEXT_TYPE_key_share)
1949
519
            || !WPACKET_start_sub_packet_u16(pkt)
1950
519
            || !WPACKET_put_bytes_u16(pkt, s->s3.group_id)
1951
519
            || !WPACKET_close(pkt)) {
1952
0
            SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
1953
0
            return EXT_RETURN_FAIL;
1954
0
        }
1955
1956
519
        return EXT_RETURN_SENT;
1957
519
    }
1958
1959
2.34k
    if (ckey == NULL) {
1960
        /* No key_share received from client - must be resuming */
1961
0
        if (!s->hit || !tls13_generate_handshake_secret(s, NULL, 0)) {
1962
0
            SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
1963
0
            return EXT_RETURN_FAIL;
1964
0
        }
1965
0
        return EXT_RETURN_NOT_SENT;
1966
0
    }
1967
1968
2.34k
    if (s->hit && (s->ext.psk_kex_mode & TLSEXT_KEX_MODE_FLAG_KE_DHE) == 0) {
1969
        /*
1970
         * PSK ('hit') and explicitly not doing DHE. If the client sent the
1971
         * DHE option, we take it by default, except if non-DHE would be
1972
         * preferred by config, but this case would have been handled in
1973
         * tls_parse_ctos_psk_kex_modes().
1974
         */
1975
0
        return EXT_RETURN_NOT_SENT;
1976
0
    }
1977
1978
2.34k
    if (!WPACKET_put_bytes_u16(pkt, TLSEXT_TYPE_key_share)
1979
2.34k
        || !WPACKET_start_sub_packet_u16(pkt)
1980
2.34k
        || !WPACKET_put_bytes_u16(pkt, s->s3.group_id)) {
1981
0
        SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
1982
0
        return EXT_RETURN_FAIL;
1983
0
    }
1984
1985
2.34k
    if ((ginf = tls1_group_id_lookup(SSL_CONNECTION_GET_CTX(s),
1986
2.34k
             s->s3.group_id))
1987
2.34k
        == NULL) {
1988
0
        SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
1989
0
        return EXT_RETURN_FAIL;
1990
0
    }
1991
1992
2.34k
    if (!ginf->is_kem) {
1993
        /* Regular KEX */
1994
2.32k
        skey = ssl_generate_pkey(s, ckey);
1995
2.32k
        if (skey == NULL) {
1996
0
            SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_SSL_LIB);
1997
0
            return EXT_RETURN_FAIL;
1998
0
        }
1999
2000
        /* Generate encoding of server key */
2001
2.32k
        encoded_pubkey_len = EVP_PKEY_get1_encoded_public_key(skey, &encoded_pubkey);
2002
2.32k
        if (encoded_pubkey_len == 0) {
2003
0
            SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_EC_LIB);
2004
0
            EVP_PKEY_free(skey);
2005
0
            return EXT_RETURN_FAIL;
2006
0
        }
2007
2008
2.32k
        if (!WPACKET_sub_memcpy_u16(pkt, encoded_pubkey, encoded_pubkey_len)
2009
2.32k
            || !WPACKET_close(pkt)) {
2010
0
            SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
2011
0
            EVP_PKEY_free(skey);
2012
0
            OPENSSL_free(encoded_pubkey);
2013
0
            return EXT_RETURN_FAIL;
2014
0
        }
2015
2.32k
        OPENSSL_free(encoded_pubkey);
2016
2017
        /*
2018
         * This causes the crypto state to be updated based on the derived keys
2019
         */
2020
2.32k
        s->s3.tmp.pkey = skey;
2021
2.32k
        if (ssl_derive(s, skey, ckey, 1) == 0) {
2022
            /* SSLfatal() already called */
2023
11
            return EXT_RETURN_FAIL;
2024
11
        }
2025
2.32k
    } else {
2026
        /* KEM mode */
2027
24
        unsigned char *ct = NULL;
2028
24
        size_t ctlen = 0;
2029
2030
        /*
2031
         * This does not update the crypto state.
2032
         *
2033
         * The generated pms is stored in `s->s3.tmp.pms` to be later used via
2034
         * ssl_gensecret().
2035
         */
2036
24
        if (ssl_encapsulate(s, ckey, &ct, &ctlen, 0) == 0) {
2037
            /* SSLfatal() already called */
2038
2
            return EXT_RETURN_FAIL;
2039
2
        }
2040
2041
22
        if (ctlen == 0) {
2042
0
            SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
2043
0
            OPENSSL_free(ct);
2044
0
            return EXT_RETURN_FAIL;
2045
0
        }
2046
2047
22
        if (!WPACKET_sub_memcpy_u16(pkt, ct, ctlen)
2048
22
            || !WPACKET_close(pkt)) {
2049
0
            SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
2050
0
            OPENSSL_free(ct);
2051
0
            return EXT_RETURN_FAIL;
2052
0
        }
2053
22
        OPENSSL_free(ct);
2054
2055
        /*
2056
         * This causes the crypto state to be updated based on the generated pms
2057
         */
2058
22
        if (ssl_gensecret(s, s->s3.tmp.pms, s->s3.tmp.pmslen) == 0) {
2059
            /* SSLfatal() already called */
2060
0
            return EXT_RETURN_FAIL;
2061
0
        }
2062
22
    }
2063
2.33k
    s->s3.did_kex = 1;
2064
2.33k
    return EXT_RETURN_SENT;
2065
#else
2066
    return EXT_RETURN_FAIL;
2067
#endif
2068
2.34k
}
2069
2070
EXT_RETURN tls_construct_stoc_cookie(SSL_CONNECTION *s, WPACKET *pkt,
2071
    unsigned int context,
2072
    X509 *x, size_t chainidx)
2073
435
{
2074
435
#ifndef OPENSSL_NO_TLS1_3
2075
435
    unsigned char *hashval1, *hashval2, *appcookie1, *appcookie2, *cookie;
2076
435
    unsigned char *hmac, *hmac2;
2077
435
    size_t startlen, ciphlen, totcookielen, hashlen, hmaclen, appcookielen;
2078
435
    EVP_MD_CTX *hctx;
2079
435
    EVP_PKEY *pkey;
2080
435
    int ret = EXT_RETURN_FAIL;
2081
435
    SSL_CTX *sctx = SSL_CONNECTION_GET_CTX(s);
2082
435
    SSL *ssl = SSL_CONNECTION_GET_SSL(s);
2083
435
    SSL *ussl = SSL_CONNECTION_GET_USER_SSL(s);
2084
2085
435
    if ((s->s3.flags & TLS1_FLAGS_STATELESS) == 0)
2086
435
        return EXT_RETURN_NOT_SENT;
2087
2088
0
    if (sctx->gen_stateless_cookie_cb == NULL) {
2089
0
        SSLfatal(s, SSL_AD_INTERNAL_ERROR, SSL_R_NO_COOKIE_CALLBACK_SET);
2090
0
        return EXT_RETURN_FAIL;
2091
0
    }
2092
2093
0
    if (!WPACKET_put_bytes_u16(pkt, TLSEXT_TYPE_cookie)
2094
0
        || !WPACKET_start_sub_packet_u16(pkt)
2095
0
        || !WPACKET_start_sub_packet_u16(pkt)
2096
0
        || !WPACKET_get_total_written(pkt, &startlen)
2097
0
        || !WPACKET_reserve_bytes(pkt, MAX_COOKIE_SIZE, &cookie)
2098
0
        || !WPACKET_put_bytes_u16(pkt, COOKIE_STATE_FORMAT_VERSION)
2099
0
        || !WPACKET_put_bytes_u16(pkt, TLS1_3_VERSION)
2100
0
        || !WPACKET_put_bytes_u16(pkt, s->s3.group_id)
2101
0
        || !ssl->method->put_cipher_by_char(s->s3.tmp.new_cipher, pkt,
2102
0
            &ciphlen)
2103
        /* Is there a key_share extension present in this HRR? */
2104
0
        || !WPACKET_put_bytes_u8(pkt, s->s3.peer_tmp == NULL)
2105
0
        || !WPACKET_put_bytes_u64(pkt, time(NULL))
2106
0
        || !WPACKET_start_sub_packet_u16(pkt)
2107
0
        || !WPACKET_reserve_bytes(pkt, EVP_MAX_MD_SIZE, &hashval1)) {
2108
0
        SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
2109
0
        return EXT_RETURN_FAIL;
2110
0
    }
2111
2112
    /*
2113
     * Get the hash of the initial ClientHello. ssl_handshake_hash() operates
2114
     * on raw buffers, so we first reserve sufficient bytes (above) and then
2115
     * subsequently allocate them (below)
2116
     */
2117
0
    if (!ssl3_digest_cached_records(s, 0)
2118
0
        || !ssl_handshake_hash(s, hashval1, EVP_MAX_MD_SIZE, &hashlen)) {
2119
        /* SSLfatal() already called */
2120
0
        return EXT_RETURN_FAIL;
2121
0
    }
2122
2123
0
    if (!WPACKET_allocate_bytes(pkt, hashlen, &hashval2)
2124
0
        || !ossl_assert(hashval1 == hashval2)
2125
0
        || !WPACKET_close(pkt)
2126
0
        || !WPACKET_start_sub_packet_u8(pkt)
2127
0
        || !WPACKET_reserve_bytes(pkt, SSL_COOKIE_LENGTH, &appcookie1)) {
2128
0
        SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
2129
0
        return EXT_RETURN_FAIL;
2130
0
    }
2131
2132
    /* Generate the application cookie */
2133
0
    if (sctx->gen_stateless_cookie_cb(ussl, appcookie1,
2134
0
            &appcookielen)
2135
0
        == 0) {
2136
0
        SSLfatal(s, SSL_AD_INTERNAL_ERROR, SSL_R_COOKIE_GEN_CALLBACK_FAILURE);
2137
0
        return EXT_RETURN_FAIL;
2138
0
    }
2139
2140
0
    if (!WPACKET_allocate_bytes(pkt, appcookielen, &appcookie2)
2141
0
        || !ossl_assert(appcookie1 == appcookie2)
2142
0
        || !WPACKET_close(pkt)
2143
0
        || !WPACKET_get_total_written(pkt, &totcookielen)
2144
0
        || !WPACKET_reserve_bytes(pkt, SHA256_DIGEST_LENGTH, &hmac)) {
2145
0
        SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
2146
0
        return EXT_RETURN_FAIL;
2147
0
    }
2148
0
    hmaclen = SHA256_DIGEST_LENGTH;
2149
2150
0
    totcookielen -= startlen;
2151
0
    if (!ossl_assert(totcookielen <= MAX_COOKIE_SIZE - SHA256_DIGEST_LENGTH)) {
2152
0
        SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
2153
0
        return EXT_RETURN_FAIL;
2154
0
    }
2155
2156
    /* HMAC the cookie */
2157
0
    hctx = EVP_MD_CTX_create();
2158
0
    pkey = EVP_PKEY_new_raw_private_key_ex(sctx->libctx, "HMAC",
2159
0
        sctx->propq,
2160
0
        s->session_ctx->ext.cookie_hmac_key,
2161
0
        sizeof(s->session_ctx->ext.cookie_hmac_key));
2162
0
    if (hctx == NULL || pkey == NULL) {
2163
0
        SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_EVP_LIB);
2164
0
        goto err;
2165
0
    }
2166
2167
0
    if (EVP_DigestSignInit_ex(hctx, NULL, "SHA2-256", sctx->libctx,
2168
0
            sctx->propq, pkey, NULL)
2169
0
            <= 0
2170
0
        || EVP_DigestSign(hctx, hmac, &hmaclen, cookie,
2171
0
               totcookielen)
2172
0
            <= 0) {
2173
0
        SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
2174
0
        goto err;
2175
0
    }
2176
2177
0
    if (!ossl_assert(totcookielen + hmaclen <= MAX_COOKIE_SIZE)) {
2178
0
        SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
2179
0
        goto err;
2180
0
    }
2181
2182
0
    if (!WPACKET_allocate_bytes(pkt, hmaclen, &hmac2)
2183
0
        || !ossl_assert(hmac == hmac2)
2184
0
        || !ossl_assert(cookie == hmac - totcookielen)
2185
0
        || !WPACKET_close(pkt)
2186
0
        || !WPACKET_close(pkt)) {
2187
0
        SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
2188
0
        goto err;
2189
0
    }
2190
2191
0
    ret = EXT_RETURN_SENT;
2192
2193
0
err:
2194
0
    EVP_MD_CTX_free(hctx);
2195
0
    EVP_PKEY_free(pkey);
2196
0
    return ret;
2197
#else
2198
    return EXT_RETURN_FAIL;
2199
#endif
2200
0
}
2201
2202
EXT_RETURN tls_construct_stoc_cryptopro_bug(SSL_CONNECTION *s, WPACKET *pkt,
2203
    unsigned int context, X509 *x,
2204
    size_t chainidx)
2205
20.5k
{
2206
20.5k
    const unsigned char cryptopro_ext[36] = {
2207
20.5k
        0xfd, 0xe8, /* 65000 */
2208
20.5k
        0x00, 0x20, /* 32 bytes length */
2209
20.5k
        0x30, 0x1e, 0x30, 0x08, 0x06, 0x06, 0x2a, 0x85,
2210
20.5k
        0x03, 0x02, 0x02, 0x09, 0x30, 0x08, 0x06, 0x06,
2211
20.5k
        0x2a, 0x85, 0x03, 0x02, 0x02, 0x16, 0x30, 0x08,
2212
20.5k
        0x06, 0x06, 0x2a, 0x85, 0x03, 0x02, 0x02, 0x17
2213
20.5k
    };
2214
2215
20.5k
    if (((s->s3.tmp.new_cipher->id & 0xFFFF) != 0x80
2216
20.5k
            && (s->s3.tmp.new_cipher->id & 0xFFFF) != 0x81)
2217
0
        || (SSL_get_options(SSL_CONNECTION_GET_SSL(s))
2218
0
               & SSL_OP_CRYPTOPRO_TLSEXT_BUG)
2219
0
            == 0)
2220
20.5k
        return EXT_RETURN_NOT_SENT;
2221
2222
0
    if (!WPACKET_memcpy(pkt, cryptopro_ext, sizeof(cryptopro_ext))) {
2223
0
        SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
2224
0
        return EXT_RETURN_FAIL;
2225
0
    }
2226
2227
0
    return EXT_RETURN_SENT;
2228
0
}
2229
2230
EXT_RETURN tls_construct_stoc_early_data(SSL_CONNECTION *s, WPACKET *pkt,
2231
    unsigned int context, X509 *x,
2232
    size_t chainidx)
2233
2.33k
{
2234
2.33k
    if (context == SSL_EXT_TLS1_3_NEW_SESSION_TICKET) {
2235
0
        if (s->max_early_data == 0)
2236
0
            return EXT_RETURN_NOT_SENT;
2237
2238
0
        if (!WPACKET_put_bytes_u16(pkt, TLSEXT_TYPE_early_data)
2239
0
            || !WPACKET_start_sub_packet_u16(pkt)
2240
0
            || !WPACKET_put_bytes_u32(pkt, s->max_early_data)
2241
0
            || !WPACKET_close(pkt)) {
2242
0
            SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
2243
0
            return EXT_RETURN_FAIL;
2244
0
        }
2245
2246
0
        return EXT_RETURN_SENT;
2247
0
    }
2248
2249
2.33k
    if (s->ext.early_data != SSL_EARLY_DATA_ACCEPTED)
2250
2.33k
        return EXT_RETURN_NOT_SENT;
2251
2252
0
    if (!WPACKET_put_bytes_u16(pkt, TLSEXT_TYPE_early_data)
2253
0
        || !WPACKET_start_sub_packet_u16(pkt)
2254
0
        || !WPACKET_close(pkt)) {
2255
0
        SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
2256
0
        return EXT_RETURN_FAIL;
2257
0
    }
2258
2259
0
    return EXT_RETURN_SENT;
2260
0
}
2261
2262
EXT_RETURN tls_construct_stoc_psk(SSL_CONNECTION *s, WPACKET *pkt,
2263
    unsigned int context,
2264
    X509 *x, size_t chainidx)
2265
2.33k
{
2266
2.33k
    if (!s->hit)
2267
2.33k
        return EXT_RETURN_NOT_SENT;
2268
2269
0
    if (!WPACKET_put_bytes_u16(pkt, TLSEXT_TYPE_psk)
2270
0
        || !WPACKET_start_sub_packet_u16(pkt)
2271
0
        || !WPACKET_put_bytes_u16(pkt, s->ext.tick_identity)
2272
0
        || !WPACKET_close(pkt)) {
2273
0
        SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
2274
0
        return EXT_RETURN_FAIL;
2275
0
    }
2276
2277
0
    return EXT_RETURN_SENT;
2278
0
}
2279
2280
EXT_RETURN tls_construct_stoc_client_cert_type(SSL_CONNECTION *sc, WPACKET *pkt,
2281
    unsigned int context,
2282
    X509 *x, size_t chainidx)
2283
22.8k
{
2284
22.8k
    if (sc->ext.client_cert_type_ctos == OSSL_CERT_TYPE_CTOS_ERROR
2285
0
        && (send_certificate_request(sc)
2286
0
            || sc->post_handshake_auth == SSL_PHA_EXT_RECEIVED)) {
2287
        /* Did not receive an acceptable cert type - and doing client auth */
2288
0
        SSLfatal(sc, SSL_AD_UNSUPPORTED_CERTIFICATE, SSL_R_BAD_EXTENSION);
2289
0
        return EXT_RETURN_FAIL;
2290
0
    }
2291
2292
22.8k
    if (sc->ext.client_cert_type == TLSEXT_cert_type_x509) {
2293
22.8k
        sc->ext.client_cert_type_ctos = OSSL_CERT_TYPE_CTOS_NONE;
2294
22.8k
        return EXT_RETURN_NOT_SENT;
2295
22.8k
    }
2296
2297
    /*
2298
     * Note: only supposed to send this if we are going to do a cert request,
2299
     * but TLSv1.3 could do a PHA request if the client supports it
2300
     */
2301
0
    if ((!send_certificate_request(sc) && sc->post_handshake_auth != SSL_PHA_EXT_RECEIVED)
2302
0
        || sc->ext.client_cert_type_ctos != OSSL_CERT_TYPE_CTOS_GOOD
2303
0
        || sc->client_cert_type == NULL) {
2304
        /* if we don't send it, reset to TLSEXT_cert_type_x509 */
2305
0
        sc->ext.client_cert_type_ctos = OSSL_CERT_TYPE_CTOS_NONE;
2306
0
        sc->ext.client_cert_type = TLSEXT_cert_type_x509;
2307
0
        return EXT_RETURN_NOT_SENT;
2308
0
    }
2309
2310
0
    if (!WPACKET_put_bytes_u16(pkt, TLSEXT_TYPE_client_cert_type)
2311
0
        || !WPACKET_start_sub_packet_u16(pkt)
2312
0
        || !WPACKET_put_bytes_u8(pkt, sc->ext.client_cert_type)
2313
0
        || !WPACKET_close(pkt)) {
2314
0
        SSLfatal(sc, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
2315
0
        return EXT_RETURN_FAIL;
2316
0
    }
2317
0
    return EXT_RETURN_SENT;
2318
0
}
2319
2320
/* One of |pref|, |other| is configured and the values are sanitized */
2321
static int reconcile_cert_type(const unsigned char *pref, size_t pref_len,
2322
    const unsigned char *other, size_t other_len,
2323
    uint8_t *chosen_cert_type)
2324
0
{
2325
0
    size_t i;
2326
2327
0
    for (i = 0; i < pref_len; i++) {
2328
0
        if (memchr(other, pref[i], other_len) != NULL) {
2329
0
            *chosen_cert_type = pref[i];
2330
0
            return OSSL_CERT_TYPE_CTOS_GOOD;
2331
0
        }
2332
0
    }
2333
0
    return OSSL_CERT_TYPE_CTOS_ERROR;
2334
0
}
2335
2336
int tls_parse_ctos_client_cert_type(SSL_CONNECTION *sc, PACKET *pkt,
2337
    unsigned int context,
2338
    X509 *x, size_t chainidx)
2339
479
{
2340
479
    PACKET supported_cert_types;
2341
479
    const unsigned char *data;
2342
479
    size_t len;
2343
2344
    /* Ignore the extension */
2345
479
    if (sc->client_cert_type == NULL) {
2346
479
        sc->ext.client_cert_type_ctos = OSSL_CERT_TYPE_CTOS_NONE;
2347
479
        sc->ext.client_cert_type = TLSEXT_cert_type_x509;
2348
479
        return 1;
2349
479
    }
2350
2351
0
    if (!PACKET_as_length_prefixed_1(pkt, &supported_cert_types)) {
2352
0
        sc->ext.client_cert_type_ctos = OSSL_CERT_TYPE_CTOS_ERROR;
2353
0
        SSLfatal(sc, SSL_AD_DECODE_ERROR, SSL_R_BAD_EXTENSION);
2354
0
        return 0;
2355
0
    }
2356
0
    if ((len = PACKET_remaining(&supported_cert_types)) == 0) {
2357
0
        sc->ext.client_cert_type_ctos = OSSL_CERT_TYPE_CTOS_ERROR;
2358
0
        SSLfatal(sc, SSL_AD_DECODE_ERROR, SSL_R_BAD_EXTENSION);
2359
0
        return 0;
2360
0
    }
2361
0
    if (!PACKET_get_bytes(&supported_cert_types, &data, len)) {
2362
0
        sc->ext.client_cert_type_ctos = OSSL_CERT_TYPE_CTOS_ERROR;
2363
0
        SSLfatal(sc, SSL_AD_DECODE_ERROR, SSL_R_BAD_EXTENSION);
2364
0
        return 0;
2365
0
    }
2366
    /* client_cert_type: client (peer) has priority */
2367
0
    sc->ext.client_cert_type_ctos = reconcile_cert_type(data, len,
2368
0
        sc->client_cert_type, sc->client_cert_type_len,
2369
0
        &sc->ext.client_cert_type);
2370
2371
    /* Ignore the error until sending - so we can check cert auth*/
2372
0
    return 1;
2373
0
}
2374
2375
EXT_RETURN tls_construct_stoc_server_cert_type(SSL_CONNECTION *sc, WPACKET *pkt,
2376
    unsigned int context,
2377
    X509 *x, size_t chainidx)
2378
22.8k
{
2379
22.8k
    if (sc->ext.server_cert_type == TLSEXT_cert_type_x509) {
2380
22.8k
        sc->ext.server_cert_type_ctos = OSSL_CERT_TYPE_CTOS_NONE;
2381
22.8k
        return EXT_RETURN_NOT_SENT;
2382
22.8k
    }
2383
0
    if (sc->ext.server_cert_type_ctos != OSSL_CERT_TYPE_CTOS_GOOD
2384
0
        || sc->server_cert_type == NULL) {
2385
        /* if we don't send it, reset to TLSEXT_cert_type_x509 */
2386
0
        sc->ext.server_cert_type_ctos = OSSL_CERT_TYPE_CTOS_NONE;
2387
0
        sc->ext.server_cert_type = TLSEXT_cert_type_x509;
2388
0
        return EXT_RETURN_NOT_SENT;
2389
0
    }
2390
2391
0
    if (!WPACKET_put_bytes_u16(pkt, TLSEXT_TYPE_server_cert_type)
2392
0
        || !WPACKET_start_sub_packet_u16(pkt)
2393
0
        || !WPACKET_put_bytes_u8(pkt, sc->ext.server_cert_type)
2394
0
        || !WPACKET_close(pkt)) {
2395
0
        SSLfatal(sc, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
2396
0
        return EXT_RETURN_FAIL;
2397
0
    }
2398
0
    return EXT_RETURN_SENT;
2399
0
}
2400
2401
int tls_parse_ctos_server_cert_type(SSL_CONNECTION *sc, PACKET *pkt,
2402
    unsigned int context,
2403
    X509 *x, size_t chainidx)
2404
242
{
2405
242
    PACKET supported_cert_types;
2406
242
    const unsigned char *data;
2407
242
    size_t len;
2408
2409
    /* Ignore the extension */
2410
242
    if (sc->server_cert_type == NULL) {
2411
242
        sc->ext.server_cert_type_ctos = OSSL_CERT_TYPE_CTOS_NONE;
2412
242
        sc->ext.server_cert_type = TLSEXT_cert_type_x509;
2413
242
        return 1;
2414
242
    }
2415
2416
0
    if (!PACKET_as_length_prefixed_1(pkt, &supported_cert_types)) {
2417
0
        SSLfatal(sc, SSL_AD_DECODE_ERROR, SSL_R_BAD_EXTENSION);
2418
0
        return 0;
2419
0
    }
2420
2421
0
    if ((len = PACKET_remaining(&supported_cert_types)) == 0) {
2422
0
        SSLfatal(sc, SSL_AD_DECODE_ERROR, SSL_R_BAD_EXTENSION);
2423
0
        return 0;
2424
0
    }
2425
0
    if (!PACKET_get_bytes(&supported_cert_types, &data, len)) {
2426
0
        SSLfatal(sc, SSL_AD_DECODE_ERROR, SSL_R_BAD_EXTENSION);
2427
0
        return 0;
2428
0
    }
2429
    /* server_cert_type: server (this) has priority */
2430
0
    sc->ext.server_cert_type_ctos = reconcile_cert_type(sc->server_cert_type, sc->server_cert_type_len,
2431
0
        data, len,
2432
0
        &sc->ext.server_cert_type);
2433
0
    if (sc->ext.server_cert_type_ctos == OSSL_CERT_TYPE_CTOS_GOOD)
2434
0
        return 1;
2435
2436
    /* Did not receive an acceptable cert type */
2437
0
    SSLfatal(sc, SSL_AD_UNSUPPORTED_CERTIFICATE, SSL_R_BAD_EXTENSION);
2438
0
    return 0;
2439
0
}