Coverage Report

Created: 2025-10-10 06:31

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/PROJ/curl/lib/vtls/vtls_scache.c
Line
Count
Source
1
/***************************************************************************
2
 *                                  _   _ ____  _
3
 *  Project                     ___| | | |  _ \| |
4
 *                             / __| | | | |_) | |
5
 *                            | (__| |_| |  _ <| |___
6
 *                             \___|\___/|_| \_\_____|
7
 *
8
 * Copyright (C) Daniel Stenberg, <daniel@haxx.se>, et al.
9
 *
10
 * This software is licensed as described in the file COPYING, which
11
 * you should have received as part of this distribution. The terms
12
 * are also available at https://curl.se/docs/copyright.html.
13
 *
14
 * You may opt to use, copy, modify, merge, publish, distribute and/or sell
15
 * copies of the Software, and permit persons to whom the Software is
16
 * furnished to do so, under the terms of the COPYING file.
17
 *
18
 * This software is distributed on an "AS IS" basis, WITHOUT WARRANTY OF ANY
19
 * KIND, either express or implied.
20
 *
21
 * SPDX-License-Identifier: curl
22
 *
23
 ***************************************************************************/
24
25
#include "../curl_setup.h"
26
27
#ifdef USE_SSL
28
29
#ifdef HAVE_SYS_TYPES_H
30
#include <sys/types.h>
31
#endif
32
33
#include "../urldata.h"
34
#include "../cfilters.h"
35
36
#include "vtls.h" /* generic SSL protos etc */
37
#include "vtls_int.h"
38
#include "vtls_scache.h"
39
#include "vtls_spack.h"
40
41
#include "../strcase.h"
42
#include "../url.h"
43
#include "../llist.h"
44
#include "../share.h"
45
#include "../curl_trc.h"
46
#include "../curl_sha256.h"
47
#include "../rand.h"
48
#include "../curlx/warnless.h"
49
#include "../strdup.h"
50
51
/* The last #include files should be: */
52
#include "../curl_memory.h"
53
#include "../memdebug.h"
54
55
56
static bool cf_ssl_peer_key_is_global(const char *peer_key);
57
58
/* a peer+tls-config we cache sessions for */
59
struct Curl_ssl_scache_peer {
60
  char *ssl_peer_key;      /* id for peer + relevant TLS configuration */
61
  char *clientcert;
62
  char *srp_username;
63
  char *srp_password;
64
  struct Curl_llist sessions;
65
  void *sobj;              /* object instance or NULL */
66
  Curl_ssl_scache_obj_dtor *sobj_free; /* free `sobj` callback */
67
  unsigned char key_salt[CURL_SHA256_DIGEST_LENGTH]; /* for entry export */
68
  unsigned char key_hmac[CURL_SHA256_DIGEST_LENGTH]; /* for entry export */
69
  size_t max_sessions;
70
  long age;                /* just a number, the higher the more recent */
71
  BIT(hmac_set);           /* if key_salt and key_hmac are present */
72
  BIT(exportable);         /* sessions for this peer can be exported */
73
};
74
75
0
#define CURL_SCACHE_MAGIC 0x000e1551
76
77
0
#define GOOD_SCACHE(x) ((x) && (x)->magic == CURL_SCACHE_MAGIC)
78
79
struct Curl_ssl_scache {
80
  unsigned int magic;
81
  struct Curl_ssl_scache_peer *peers;
82
  size_t peer_count;
83
  int default_lifetime_secs;
84
  long age;
85
};
86
87
static struct Curl_ssl_scache *cf_ssl_scache_get(struct Curl_easy *data)
88
0
{
89
0
  struct Curl_ssl_scache *scache = NULL;
90
  /* If a share is present, its ssl_scache has preference over the multi */
91
0
  if(data->share && data->share->ssl_scache)
92
0
    scache = data->share->ssl_scache;
93
0
  else if(data->multi && data->multi->ssl_scache)
94
0
    scache = data->multi->ssl_scache;
95
0
  if(scache && !GOOD_SCACHE(scache)) {
96
0
    failf(data, "transfer would use an invalid scache at %p, denied",
97
0
          (void *)scache);
98
0
    DEBUGASSERT(0);
99
0
    return NULL;
100
0
  }
101
0
  return scache;
102
0
}
103
104
static void cf_ssl_scache_session_ldestroy(void *udata, void *obj)
105
0
{
106
0
  struct Curl_ssl_session *s = obj;
107
0
  (void)udata;
108
0
  free(CURL_UNCONST(s->sdata));
109
0
  free(CURL_UNCONST(s->quic_tp));
110
0
  free((void *)s->alpn);
111
0
  free(s);
112
0
}
113
114
CURLcode
115
Curl_ssl_session_create(void *sdata, size_t sdata_len,
116
                        int ietf_tls_id, const char *alpn,
117
                        curl_off_t valid_until, size_t earlydata_max,
118
                        struct Curl_ssl_session **psession)
119
0
{
120
0
  return Curl_ssl_session_create2(sdata, sdata_len, ietf_tls_id, alpn,
121
0
                                  valid_until, earlydata_max,
122
0
                                  NULL, 0, psession);
123
0
}
124
125
CURLcode
126
Curl_ssl_session_create2(void *sdata, size_t sdata_len,
127
                         int ietf_tls_id, const char *alpn,
128
                         curl_off_t valid_until, size_t earlydata_max,
129
                         unsigned char *quic_tp, size_t quic_tp_len,
130
                         struct Curl_ssl_session **psession)
131
0
{
132
0
  struct Curl_ssl_session *s;
133
134
0
  if(!sdata || !sdata_len) {
135
0
    free(sdata);
136
0
    return CURLE_BAD_FUNCTION_ARGUMENT;
137
0
  }
138
139
0
  *psession = NULL;
140
0
  s = calloc(1, sizeof(*s));
141
0
  if(!s) {
142
0
    free(sdata);
143
0
    free(quic_tp);
144
0
    return CURLE_OUT_OF_MEMORY;
145
0
  }
146
147
0
  s->ietf_tls_id = ietf_tls_id;
148
0
  s->valid_until = valid_until;
149
0
  s->earlydata_max = earlydata_max;
150
0
  s->sdata = sdata;
151
0
  s->sdata_len = sdata_len;
152
0
  s->quic_tp = quic_tp;
153
0
  s->quic_tp_len = quic_tp_len;
154
0
  if(alpn) {
155
0
    s->alpn = strdup(alpn);
156
0
    if(!s->alpn) {
157
0
      cf_ssl_scache_session_ldestroy(NULL, s);
158
0
      return CURLE_OUT_OF_MEMORY;
159
0
    }
160
0
  }
161
0
  *psession = s;
162
0
  return CURLE_OK;
163
0
}
164
165
void Curl_ssl_session_destroy(struct Curl_ssl_session *s)
166
0
{
167
0
  if(s) {
168
    /* if in the list, the list destructor takes care of it */
169
0
    if(Curl_node_llist(&s->list))
170
0
      Curl_node_remove(&s->list);
171
0
    else {
172
0
      cf_ssl_scache_session_ldestroy(NULL, s);
173
0
    }
174
0
  }
175
0
}
176
177
static void cf_ssl_scache_clear_peer(struct Curl_ssl_scache_peer *peer)
178
0
{
179
0
  Curl_llist_destroy(&peer->sessions, NULL);
180
0
  if(peer->sobj) {
181
0
    DEBUGASSERT(peer->sobj_free);
182
0
    if(peer->sobj_free)
183
0
      peer->sobj_free(peer->sobj);
184
0
    peer->sobj = NULL;
185
0
  }
186
0
  peer->sobj_free = NULL;
187
0
  Curl_safefree(peer->clientcert);
188
0
#ifdef USE_TLS_SRP
189
0
  Curl_safefree(peer->srp_username);
190
0
  Curl_safefree(peer->srp_password);
191
0
#endif
192
0
  Curl_safefree(peer->ssl_peer_key);
193
0
  peer->age = 0;
194
0
  peer->hmac_set = FALSE;
195
0
}
196
197
static void cf_ssl_scache_peer_set_obj(struct Curl_ssl_scache_peer *peer,
198
                                       void *sobj,
199
                                       Curl_ssl_scache_obj_dtor *sobj_free)
200
0
{
201
0
  DEBUGASSERT(peer);
202
0
  if(peer->sobj_free) {
203
0
    peer->sobj_free(peer->sobj);
204
0
  }
205
0
  peer->sobj = sobj;
206
0
  peer->sobj_free = sobj_free;
207
0
}
208
209
static void cf_ssl_cache_peer_update(struct Curl_ssl_scache_peer *peer)
210
0
{
211
  /* The sessions of this peer are exportable if
212
   * - it has no confidential information
213
   * - its peer key is not yet known, because sessions were
214
   *   imported using only the salt+hmac
215
   * - the peer key is global, e.g. carrying no relative paths */
216
0
  peer->exportable = (!peer->clientcert && !peer->srp_username &&
217
0
                      !peer->srp_password &&
218
0
                      (!peer->ssl_peer_key ||
219
0
                       cf_ssl_peer_key_is_global(peer->ssl_peer_key)));
220
0
}
221
222
static CURLcode
223
cf_ssl_scache_peer_init(struct Curl_ssl_scache_peer *peer,
224
                        const char *ssl_peer_key,
225
                        const char *clientcert,
226
                        const char *srp_username,
227
                        const char *srp_password,
228
                        const unsigned char *salt,
229
                        const unsigned char *hmac)
230
0
{
231
0
  CURLcode result = CURLE_OUT_OF_MEMORY;
232
233
0
  DEBUGASSERT(!peer->ssl_peer_key);
234
0
  if(ssl_peer_key) {
235
0
    peer->ssl_peer_key = strdup(ssl_peer_key);
236
0
    if(!peer->ssl_peer_key)
237
0
      goto out;
238
0
    peer->hmac_set = FALSE;
239
0
  }
240
0
  else if(salt && hmac) {
241
0
    memcpy(peer->key_salt, salt, sizeof(peer->key_salt));
242
0
    memcpy(peer->key_hmac, hmac, sizeof(peer->key_hmac));
243
0
    peer->hmac_set = TRUE;
244
0
  }
245
0
  else {
246
0
    result = CURLE_BAD_FUNCTION_ARGUMENT;
247
0
    goto out;
248
0
  }
249
0
  if(clientcert) {
250
0
    peer->clientcert = strdup(clientcert);
251
0
    if(!peer->clientcert)
252
0
      goto out;
253
0
  }
254
0
  if(srp_username) {
255
0
    peer->srp_username = strdup(srp_username);
256
0
    if(!peer->srp_username)
257
0
      goto out;
258
0
  }
259
0
  if(srp_password) {
260
0
    peer->srp_password = strdup(srp_password);
261
0
    if(!peer->srp_password)
262
0
      goto out;
263
0
  }
264
265
0
  cf_ssl_cache_peer_update(peer);
266
0
  result = CURLE_OK;
267
0
out:
268
0
  if(result)
269
0
    cf_ssl_scache_clear_peer(peer);
270
0
  return result;
271
0
}
272
273
static void cf_scache_session_remove(struct Curl_ssl_scache_peer *peer,
274
                                     struct Curl_ssl_session *s)
275
0
{
276
0
  (void)peer;
277
0
  DEBUGASSERT(Curl_node_llist(&s->list) == &peer->sessions);
278
0
  Curl_ssl_session_destroy(s);
279
0
}
280
281
static bool cf_scache_session_expired(struct Curl_ssl_session *s,
282
                                      curl_off_t now)
283
0
{
284
0
  return (s->valid_until > 0) && (s->valid_until < now);
285
0
}
286
287
static void cf_scache_peer_remove_expired(struct Curl_ssl_scache_peer *peer,
288
                                          curl_off_t now)
289
0
{
290
0
  struct Curl_llist_node *n = Curl_llist_head(&peer->sessions);
291
0
  while(n) {
292
0
    struct Curl_ssl_session *s = Curl_node_elem(n);
293
0
    n = Curl_node_next(n);
294
0
    if(cf_scache_session_expired(s, now))
295
0
      cf_scache_session_remove(peer, s);
296
0
  }
297
0
}
298
299
static void cf_scache_peer_remove_non13(struct Curl_ssl_scache_peer *peer)
300
0
{
301
0
  struct Curl_llist_node *n = Curl_llist_head(&peer->sessions);
302
0
  while(n) {
303
0
    struct Curl_ssl_session *s = Curl_node_elem(n);
304
0
    n = Curl_node_next(n);
305
0
    if(s->ietf_tls_id != CURL_IETF_PROTO_TLS1_3)
306
0
      cf_scache_session_remove(peer, s);
307
0
  }
308
0
}
309
310
CURLcode Curl_ssl_scache_create(size_t max_peers,
311
                                size_t max_sessions_per_peer,
312
                                struct Curl_ssl_scache **pscache)
313
0
{
314
0
  struct Curl_ssl_scache *scache;
315
0
  struct Curl_ssl_scache_peer *peers;
316
0
  size_t i;
317
318
0
  *pscache = NULL;
319
0
  peers = calloc(max_peers, sizeof(*peers));
320
0
  if(!peers)
321
0
    return CURLE_OUT_OF_MEMORY;
322
323
0
  scache = calloc(1, sizeof(*scache));
324
0
  if(!scache) {
325
0
    free(peers);
326
0
    return CURLE_OUT_OF_MEMORY;
327
0
  }
328
329
0
  scache->magic = CURL_SCACHE_MAGIC;
330
0
  scache->default_lifetime_secs = (24*60*60); /* 1 day */
331
0
  scache->peer_count = max_peers;
332
0
  scache->peers = peers;
333
0
  scache->age = 1;
334
0
  for(i = 0; i < scache->peer_count; ++i) {
335
0
    scache->peers[i].max_sessions = max_sessions_per_peer;
336
0
    Curl_llist_init(&scache->peers[i].sessions,
337
0
                    cf_ssl_scache_session_ldestroy);
338
0
  }
339
340
0
  *pscache = scache;
341
0
  return CURLE_OK;
342
0
}
343
344
void Curl_ssl_scache_destroy(struct Curl_ssl_scache *scache)
345
0
{
346
0
  if(scache && GOOD_SCACHE(scache)) {
347
0
    size_t i;
348
0
    scache->magic = 0;
349
0
    for(i = 0; i < scache->peer_count; ++i) {
350
0
      cf_ssl_scache_clear_peer(&scache->peers[i]);
351
0
    }
352
0
    free(scache->peers);
353
0
    free(scache);
354
0
  }
355
0
}
356
357
/* Lock shared SSL session data */
358
void Curl_ssl_scache_lock(struct Curl_easy *data)
359
0
{
360
0
  if(CURL_SHARE_ssl_scache(data))
361
0
    Curl_share_lock(data, CURL_LOCK_DATA_SSL_SESSION, CURL_LOCK_ACCESS_SINGLE);
362
0
}
363
364
/* Unlock shared SSL session data */
365
void Curl_ssl_scache_unlock(struct Curl_easy *data)
366
0
{
367
0
  if(CURL_SHARE_ssl_scache(data))
368
0
    Curl_share_unlock(data, CURL_LOCK_DATA_SSL_SESSION);
369
0
}
370
371
static CURLcode cf_ssl_peer_key_add_path(struct dynbuf *buf,
372
                                         const char *name,
373
                                         const char *path,
374
                                         bool *is_local)
375
0
{
376
0
  if(path && path[0]) {
377
    /* We try to add absolute paths, so that the session key can stay
378
     * valid when used in another process with different CWD. However,
379
     * when a path does not exist, this does not work. Then, we add
380
     * the path as is. */
381
#ifdef UNDER_CE
382
    (void)is_local;
383
    return curlx_dyn_addf(buf, ":%s-%s", name, path);
384
#elif defined(_WIN32)
385
    char abspath[_MAX_PATH];
386
    if(_fullpath(abspath, path, _MAX_PATH))
387
      return curlx_dyn_addf(buf, ":%s-%s", name, abspath);
388
    *is_local = TRUE;
389
#elif defined(HAVE_REALPATH)
390
0
    if(path[0] != '/') {
391
0
      char *abspath = realpath(path, NULL);
392
0
      if(abspath) {
393
0
        CURLcode r = curlx_dyn_addf(buf, ":%s-%s", name, abspath);
394
0
        (free)(abspath); /* allocated by libc, free without memdebug */
395
0
        return r;
396
0
      }
397
0
      *is_local = TRUE;
398
0
    }
399
0
#endif
400
0
    return curlx_dyn_addf(buf, ":%s-%s", name, path);
401
0
  }
402
0
  return CURLE_OK;
403
0
}
404
405
static CURLcode cf_ssl_peer_key_add_hash(struct dynbuf *buf,
406
                                         const char *name,
407
                                         struct curl_blob *blob)
408
0
{
409
0
  CURLcode r = CURLE_OK;
410
0
  if(blob && blob->len) {
411
0
    unsigned char hash[CURL_SHA256_DIGEST_LENGTH];
412
0
    size_t i;
413
414
0
    r = curlx_dyn_addf(buf, ":%s-", name);
415
0
    if(r)
416
0
      goto out;
417
0
    r = Curl_sha256it(hash, blob->data, blob->len);
418
0
    if(r)
419
0
      goto out;
420
0
    for(i = 0; i < CURL_SHA256_DIGEST_LENGTH; ++i) {
421
0
      r = curlx_dyn_addf(buf, "%02x", hash[i]);
422
0
      if(r)
423
0
        goto out;
424
0
    }
425
0
  }
426
0
out:
427
0
  return r;
428
0
}
429
430
0
#define CURL_SSLS_LOCAL_SUFFIX     ":L"
431
0
#define CURL_SSLS_GLOBAL_SUFFIX    ":G"
432
433
static bool cf_ssl_peer_key_is_global(const char *peer_key)
434
0
{
435
0
  size_t len = peer_key ? strlen(peer_key) : 0;
436
0
  return (len > 2) &&
437
0
         (peer_key[len - 1] == 'G') &&
438
0
         (peer_key[len - 2] == ':');
439
0
}
440
441
CURLcode Curl_ssl_peer_key_make(struct Curl_cfilter *cf,
442
                                const struct ssl_peer *peer,
443
                                const char *tls_id,
444
                                char **ppeer_key)
445
0
{
446
0
  struct ssl_primary_config *ssl = Curl_ssl_cf_get_primary_config(cf);
447
0
  struct dynbuf buf;
448
0
  size_t key_len;
449
0
  bool is_local = FALSE;
450
0
  CURLcode r;
451
452
0
  *ppeer_key = NULL;
453
0
  curlx_dyn_init(&buf, 10 * 1024);
454
455
0
  r = curlx_dyn_addf(&buf, "%s:%d", peer->hostname, peer->port);
456
0
  if(r)
457
0
    goto out;
458
459
0
  switch(peer->transport) {
460
0
  case TRNSPRT_TCP:
461
0
    break;
462
0
  case TRNSPRT_UDP:
463
0
    r = curlx_dyn_add(&buf, ":UDP");
464
0
    break;
465
0
  case TRNSPRT_QUIC:
466
0
    r = curlx_dyn_add(&buf, ":QUIC");
467
0
    break;
468
0
  case TRNSPRT_UNIX:
469
0
    r = curlx_dyn_add(&buf, ":UNIX");
470
0
    break;
471
0
  default:
472
0
    r = curlx_dyn_addf(&buf, ":TRNSPRT-%d", peer->transport);
473
0
    break;
474
0
  }
475
0
  if(r)
476
0
    goto out;
477
478
0
  if(!ssl->verifypeer) {
479
0
    r = curlx_dyn_add(&buf, ":NO-VRFY-PEER");
480
0
    if(r)
481
0
      goto out;
482
0
  }
483
0
  if(!ssl->verifyhost) {
484
0
    r = curlx_dyn_add(&buf, ":NO-VRFY-HOST");
485
0
    if(r)
486
0
      goto out;
487
0
  }
488
0
  if(ssl->verifystatus) {
489
0
    r = curlx_dyn_add(&buf, ":VRFY-STATUS");
490
0
    if(r)
491
0
      goto out;
492
0
  }
493
0
  if(!ssl->verifypeer || !ssl->verifyhost) {
494
0
    if(cf->conn->bits.conn_to_host) {
495
0
      r = curlx_dyn_addf(&buf, ":CHOST-%s", cf->conn->conn_to_host.name);
496
0
      if(r)
497
0
        goto out;
498
0
    }
499
0
    if(cf->conn->bits.conn_to_port) {
500
0
      r = curlx_dyn_addf(&buf, ":CPORT-%d", cf->conn->conn_to_port);
501
0
      if(r)
502
0
        goto out;
503
0
    }
504
0
  }
505
506
0
  if(ssl->version || ssl->version_max) {
507
0
    r = curlx_dyn_addf(&buf, ":TLSVER-%d-%d", ssl->version,
508
0
                      (ssl->version_max >> 16));
509
0
    if(r)
510
0
      goto out;
511
0
  }
512
0
  if(ssl->ssl_options) {
513
0
    r = curlx_dyn_addf(&buf, ":TLSOPT-%x", ssl->ssl_options);
514
0
    if(r)
515
0
      goto out;
516
0
  }
517
0
  if(ssl->cipher_list) {
518
0
    r = curlx_dyn_addf(&buf, ":CIPHER-%s", ssl->cipher_list);
519
0
    if(r)
520
0
      goto out;
521
0
  }
522
0
  if(ssl->cipher_list13) {
523
0
    r = curlx_dyn_addf(&buf, ":CIPHER13-%s", ssl->cipher_list13);
524
0
    if(r)
525
0
      goto out;
526
0
  }
527
0
  if(ssl->curves) {
528
0
    r = curlx_dyn_addf(&buf, ":CURVES-%s", ssl->curves);
529
0
    if(r)
530
0
      goto out;
531
0
  }
532
0
  if(ssl->verifypeer) {
533
0
    r = cf_ssl_peer_key_add_path(&buf, "CA", ssl->CAfile, &is_local);
534
0
    if(r)
535
0
      goto out;
536
0
    r = cf_ssl_peer_key_add_path(&buf, "CApath", ssl->CApath, &is_local);
537
0
    if(r)
538
0
      goto out;
539
0
    r = cf_ssl_peer_key_add_path(&buf, "CRL", ssl->CRLfile, &is_local);
540
0
    if(r)
541
0
      goto out;
542
0
    r = cf_ssl_peer_key_add_path(&buf, "Issuer", ssl->issuercert, &is_local);
543
0
    if(r)
544
0
      goto out;
545
0
    if(ssl->cert_blob) {
546
0
      r = cf_ssl_peer_key_add_hash(&buf, "CertBlob", ssl->cert_blob);
547
0
      if(r)
548
0
        goto out;
549
0
    }
550
0
    if(ssl->ca_info_blob) {
551
0
      r = cf_ssl_peer_key_add_hash(&buf, "CAInfoBlob", ssl->ca_info_blob);
552
0
      if(r)
553
0
        goto out;
554
0
    }
555
0
    if(ssl->issuercert_blob) {
556
0
      r = cf_ssl_peer_key_add_hash(&buf, "IssuerBlob", ssl->issuercert_blob);
557
0
      if(r)
558
0
        goto out;
559
0
    }
560
0
  }
561
0
  if(ssl->pinned_key && ssl->pinned_key[0]) {
562
0
    r = curlx_dyn_addf(&buf, ":Pinned-%s", ssl->pinned_key);
563
0
    if(r)
564
0
      goto out;
565
0
  }
566
567
0
  if(ssl->clientcert && ssl->clientcert[0]) {
568
0
    r = curlx_dyn_add(&buf, ":CCERT");
569
0
    if(r)
570
0
      goto out;
571
0
  }
572
0
#ifdef USE_TLS_SRP
573
0
  if(ssl->username || ssl->password) {
574
0
    r = curlx_dyn_add(&buf, ":SRP-AUTH");
575
0
    if(r)
576
0
      goto out;
577
0
  }
578
0
#endif
579
580
0
  if(!tls_id || !tls_id[0]) {
581
0
    r = CURLE_FAILED_INIT;
582
0
    goto out;
583
0
  }
584
0
  r = curlx_dyn_addf(&buf, ":IMPL-%s", tls_id);
585
0
  if(r)
586
0
    goto out;
587
588
0
  r = curlx_dyn_addf(&buf, is_local ?
589
0
                     CURL_SSLS_LOCAL_SUFFIX : CURL_SSLS_GLOBAL_SUFFIX);
590
0
  if(r)
591
0
    goto out;
592
593
0
  *ppeer_key = curlx_dyn_take(&buf, &key_len);
594
  /* we just added printable char, and dynbuf always null-terminates, no need
595
   * to track length */
596
597
0
out:
598
0
  curlx_dyn_free(&buf);
599
0
  return r;
600
0
}
601
602
static bool cf_ssl_scache_match_auth(struct Curl_ssl_scache_peer *peer,
603
                                     struct ssl_primary_config *conn_config)
604
0
{
605
0
  if(!conn_config) {
606
0
    if(peer->clientcert)
607
0
      return FALSE;
608
0
#ifdef USE_TLS_SRP
609
0
    if(peer->srp_username || peer->srp_password)
610
0
      return FALSE;
611
0
#endif
612
0
    return TRUE;
613
0
  }
614
0
  else if(!Curl_safecmp(peer->clientcert, conn_config->clientcert))
615
0
    return FALSE;
616
0
#ifdef USE_TLS_SRP
617
0
   if(Curl_timestrcmp(peer->srp_username, conn_config->username) ||
618
0
      Curl_timestrcmp(peer->srp_password, conn_config->password))
619
0
     return FALSE;
620
0
#endif
621
0
  return TRUE;
622
0
}
623
624
static CURLcode
625
cf_ssl_find_peer_by_key(struct Curl_easy *data,
626
                        struct Curl_ssl_scache *scache,
627
                        const char *ssl_peer_key,
628
                        struct ssl_primary_config *conn_config,
629
                        struct Curl_ssl_scache_peer **ppeer)
630
0
{
631
0
  size_t i, peer_key_len = 0;
632
0
  CURLcode result = CURLE_OK;
633
634
0
  *ppeer = NULL;
635
0
  if(!GOOD_SCACHE(scache)) {
636
0
    return CURLE_BAD_FUNCTION_ARGUMENT;
637
0
  }
638
639
0
  CURL_TRC_SSLS(data, "find peer slot for %s among %zu slots",
640
0
                ssl_peer_key, scache->peer_count);
641
642
  /* check for entries with known peer_key */
643
0
  for(i = 0; scache && i < scache->peer_count; i++) {
644
0
    if(scache->peers[i].ssl_peer_key &&
645
0
       curl_strequal(ssl_peer_key, scache->peers[i].ssl_peer_key) &&
646
0
       cf_ssl_scache_match_auth(&scache->peers[i], conn_config)) {
647
      /* yes, we have a cached session for this! */
648
0
      *ppeer = &scache->peers[i];
649
0
      goto out;
650
0
    }
651
0
  }
652
  /* check for entries with HMAC set but no known peer_key */
653
0
  for(i = 0; scache && i < scache->peer_count; i++) {
654
0
    if(!scache->peers[i].ssl_peer_key &&
655
0
       scache->peers[i].hmac_set &&
656
0
       cf_ssl_scache_match_auth(&scache->peers[i], conn_config)) {
657
      /* possible entry with unknown peer_key, check hmac */
658
0
      unsigned char my_hmac[CURL_SHA256_DIGEST_LENGTH];
659
0
      if(!peer_key_len) /* we are lazy */
660
0
        peer_key_len = strlen(ssl_peer_key);
661
0
      result = Curl_hmacit(&Curl_HMAC_SHA256,
662
0
                           scache->peers[i].key_salt,
663
0
                           sizeof(scache->peers[i].key_salt),
664
0
                           (const unsigned char *)ssl_peer_key,
665
0
                           peer_key_len,
666
0
                           my_hmac);
667
0
      if(result)
668
0
        goto out;
669
0
      if(!memcmp(scache->peers[i].key_hmac, my_hmac, sizeof(my_hmac))) {
670
        /* remember peer_key for future lookups */
671
0
        CURL_TRC_SSLS(data, "peer entry %zu key recovered: %s",
672
0
                      i, ssl_peer_key);
673
0
        scache->peers[i].ssl_peer_key = strdup(ssl_peer_key);
674
0
        if(!scache->peers[i].ssl_peer_key) {
675
0
          result = CURLE_OUT_OF_MEMORY;
676
0
          goto out;
677
0
        }
678
0
        cf_ssl_cache_peer_update(&scache->peers[i]);
679
0
        *ppeer = &scache->peers[i];
680
0
        goto out;
681
0
      }
682
0
    }
683
0
  }
684
0
  CURL_TRC_SSLS(data, "peer not found for %s", ssl_peer_key);
685
0
out:
686
0
  return result;
687
0
}
688
689
static struct Curl_ssl_scache_peer *
690
cf_ssl_get_free_peer(struct Curl_ssl_scache *scache)
691
0
{
692
0
  struct Curl_ssl_scache_peer *peer = NULL;
693
0
  size_t i;
694
695
  /* find empty or oldest peer */
696
0
  for(i = 0; i < scache->peer_count; ++i) {
697
    /* free peer entry? */
698
0
    if(!scache->peers[i].ssl_peer_key && !scache->peers[i].hmac_set) {
699
0
      peer = &scache->peers[i];
700
0
      break;
701
0
    }
702
    /* peer without sessions and obj */
703
0
    if(!scache->peers[i].sobj &&
704
0
       !Curl_llist_count(&scache->peers[i].sessions)) {
705
0
      peer = &scache->peers[i];
706
0
      break;
707
0
    }
708
    /* remember "oldest" peer */
709
0
    if(!peer || (scache->peers[i].age < peer->age)) {
710
0
      peer = &scache->peers[i];
711
0
    }
712
0
  }
713
0
  DEBUGASSERT(peer);
714
0
  if(peer)
715
0
    cf_ssl_scache_clear_peer(peer);
716
0
  return peer;
717
0
}
718
719
static CURLcode
720
cf_ssl_add_peer(struct Curl_easy *data,
721
                struct Curl_ssl_scache *scache,
722
                const char *ssl_peer_key,
723
                struct ssl_primary_config *conn_config,
724
                struct Curl_ssl_scache_peer **ppeer)
725
0
{
726
0
  struct Curl_ssl_scache_peer *peer = NULL;
727
0
  CURLcode result = CURLE_OK;
728
729
0
  *ppeer = NULL;
730
0
  if(ssl_peer_key) {
731
0
    result = cf_ssl_find_peer_by_key(data, scache, ssl_peer_key, conn_config,
732
0
                                     &peer);
733
0
    if(result || !scache->peer_count)
734
0
      return result;
735
0
  }
736
737
0
  if(peer) {
738
0
    *ppeer = peer;
739
0
    return CURLE_OK;
740
0
  }
741
742
0
  peer = cf_ssl_get_free_peer(scache);
743
0
  if(peer) {
744
0
    const char *ccert = conn_config ? conn_config->clientcert : NULL;
745
0
    const char *username = NULL, *password = NULL;
746
0
#ifdef USE_TLS_SRP
747
0
    username = conn_config ? conn_config->username : NULL;
748
0
    password = conn_config ? conn_config->password : NULL;
749
0
#endif
750
0
    result = cf_ssl_scache_peer_init(peer, ssl_peer_key, ccert,
751
0
                                     username, password, NULL, NULL);
752
0
    if(result)
753
0
      goto out;
754
    /* all ready */
755
0
    *ppeer = peer;
756
0
    result = CURLE_OK;
757
0
  }
758
759
0
out:
760
0
  if(result) {
761
0
    cf_ssl_scache_clear_peer(peer);
762
0
  }
763
0
  return result;
764
0
}
765
766
static void cf_scache_peer_add_session(struct Curl_ssl_scache_peer *peer,
767
                                       struct Curl_ssl_session *s,
768
                                       curl_off_t now)
769
0
{
770
  /* A session not from TLSv1.3 replaces all other. */
771
0
  if(s->ietf_tls_id != CURL_IETF_PROTO_TLS1_3) {
772
0
    Curl_llist_destroy(&peer->sessions, NULL);
773
0
    Curl_llist_append(&peer->sessions, s, &s->list);
774
0
  }
775
0
  else {
776
    /* Expire existing, append, trim from head to obey max_sessions */
777
0
    cf_scache_peer_remove_expired(peer, now);
778
0
    cf_scache_peer_remove_non13(peer);
779
0
    Curl_llist_append(&peer->sessions, s, &s->list);
780
0
    while(Curl_llist_count(&peer->sessions) > peer->max_sessions) {
781
0
      Curl_node_remove(Curl_llist_head(&peer->sessions));
782
0
    }
783
0
  }
784
0
}
785
786
static CURLcode cf_scache_add_session(struct Curl_cfilter *cf,
787
                                      struct Curl_easy *data,
788
                                      struct Curl_ssl_scache *scache,
789
                                      const char *ssl_peer_key,
790
                                      struct Curl_ssl_session *s)
791
0
{
792
0
  struct Curl_ssl_scache_peer *peer = NULL;
793
0
  struct ssl_primary_config *conn_config = Curl_ssl_cf_get_primary_config(cf);
794
0
  CURLcode result = CURLE_OUT_OF_MEMORY;
795
0
  curl_off_t now = (curl_off_t)time(NULL);
796
0
  curl_off_t max_lifetime;
797
798
0
  if(!scache || !scache->peer_count) {
799
0
    Curl_ssl_session_destroy(s);
800
0
    return CURLE_OK;
801
0
  }
802
803
0
  if(s->valid_until <= 0)
804
0
    s->valid_until = now + scache->default_lifetime_secs;
805
806
0
  max_lifetime = (s->ietf_tls_id == CURL_IETF_PROTO_TLS1_3) ?
807
0
                 CURL_SCACHE_MAX_13_LIFETIME_SEC :
808
0
                 CURL_SCACHE_MAX_12_LIFETIME_SEC;
809
0
  if(s->valid_until > (now + max_lifetime))
810
0
    s->valid_until = now + max_lifetime;
811
812
0
  if(cf_scache_session_expired(s, now)) {
813
0
    CURL_TRC_SSLS(data, "add, session already expired");
814
0
    Curl_ssl_session_destroy(s);
815
0
    return CURLE_OK;
816
0
  }
817
818
0
  result = cf_ssl_add_peer(data, scache, ssl_peer_key, conn_config, &peer);
819
0
  if(result || !peer) {
820
0
    CURL_TRC_SSLS(data, "unable to add scache peer: %d", result);
821
0
    Curl_ssl_session_destroy(s);
822
0
    goto out;
823
0
  }
824
825
0
  cf_scache_peer_add_session(peer, s, now);
826
827
0
out:
828
0
  if(result) {
829
0
    failf(data, "[SCACHE] failed to add session for %s, error=%d",
830
0
          ssl_peer_key, result);
831
0
  }
832
0
  else
833
0
    CURL_TRC_SSLS(data, "added session for %s [proto=0x%x, "
834
0
                  "valid_secs=%" FMT_OFF_T ", alpn=%s, earlydata=%zu, "
835
0
                  "quic_tp=%s], peer has %zu sessions now",
836
0
                  ssl_peer_key, s->ietf_tls_id, s->valid_until - now,
837
0
                  s->alpn, s->earlydata_max, s->quic_tp ? "yes" : "no",
838
0
                  peer ? Curl_llist_count(&peer->sessions) : 0);
839
0
  return result;
840
0
}
841
842
CURLcode Curl_ssl_scache_put(struct Curl_cfilter *cf,
843
                             struct Curl_easy *data,
844
                             const char *ssl_peer_key,
845
                             struct Curl_ssl_session *s)
846
0
{
847
0
  struct Curl_ssl_scache *scache = cf_ssl_scache_get(data);
848
0
  struct ssl_config_data *ssl_config = Curl_ssl_cf_get_config(cf, data);
849
0
  CURLcode result;
850
0
  DEBUGASSERT(ssl_config);
851
852
0
  if(!scache || !ssl_config->primary.cache_session) {
853
0
    Curl_ssl_session_destroy(s);
854
0
    return CURLE_OK;
855
0
  }
856
857
0
  Curl_ssl_scache_lock(data);
858
0
  result = cf_scache_add_session(cf, data, scache, ssl_peer_key, s);
859
0
  Curl_ssl_scache_unlock(data);
860
0
  return result;
861
0
}
862
863
void Curl_ssl_scache_return(struct Curl_cfilter *cf,
864
                            struct Curl_easy *data,
865
                            const char *ssl_peer_key,
866
                            struct Curl_ssl_session *s)
867
0
{
868
  /* See RFC 8446 C.4:
869
   * "Clients SHOULD NOT reuse a ticket for multiple connections." */
870
0
  if(s && s->ietf_tls_id < 0x304)
871
0
    (void)Curl_ssl_scache_put(cf, data, ssl_peer_key, s);
872
0
  else
873
0
    Curl_ssl_session_destroy(s);
874
0
}
875
876
CURLcode Curl_ssl_scache_take(struct Curl_cfilter *cf,
877
                              struct Curl_easy *data,
878
                              const char *ssl_peer_key,
879
                              struct Curl_ssl_session **ps)
880
0
{
881
0
  struct Curl_ssl_scache *scache = cf_ssl_scache_get(data);
882
0
  struct ssl_primary_config *conn_config = Curl_ssl_cf_get_primary_config(cf);
883
0
  struct Curl_ssl_scache_peer *peer = NULL;
884
0
  struct Curl_llist_node *n;
885
0
  struct Curl_ssl_session *s = NULL;
886
0
  CURLcode result;
887
888
0
  *ps = NULL;
889
0
  if(!scache)
890
0
    return CURLE_OK;
891
892
0
  Curl_ssl_scache_lock(data);
893
0
  result = cf_ssl_find_peer_by_key(data, scache, ssl_peer_key, conn_config,
894
0
                                   &peer);
895
0
  if(!result && peer) {
896
0
    cf_scache_peer_remove_expired(peer, (curl_off_t)time(NULL));
897
0
    n = Curl_llist_head(&peer->sessions);
898
0
    if(n) {
899
0
      s = Curl_node_take_elem(n);
900
0
      (scache->age)++;            /* increase general age */
901
0
      peer->age = scache->age; /* set this as used in this age */
902
0
    }
903
0
  }
904
0
  if(s) {
905
0
    *ps = s;
906
0
    CURL_TRC_SSLS(data, "took session for %s [proto=0x%x, "
907
0
                  "alpn=%s, earlydata=%zu, quic_tp=%s], %zu sessions remain",
908
0
                  ssl_peer_key, s->ietf_tls_id, s->alpn,
909
0
                  s->earlydata_max, s->quic_tp ? "yes" : "no",
910
0
                  Curl_llist_count(&peer->sessions));
911
0
  }
912
0
  else {
913
0
    CURL_TRC_SSLS(data, "no cached session for %s", ssl_peer_key);
914
0
  }
915
0
  Curl_ssl_scache_unlock(data);
916
0
  return result;
917
0
}
918
919
CURLcode Curl_ssl_scache_add_obj(struct Curl_cfilter *cf,
920
                                 struct Curl_easy *data,
921
                                 const char *ssl_peer_key,
922
                                 void *sobj,
923
                                 Curl_ssl_scache_obj_dtor *sobj_free)
924
0
{
925
0
  struct Curl_ssl_scache *scache = cf_ssl_scache_get(data);
926
0
  struct ssl_primary_config *conn_config = Curl_ssl_cf_get_primary_config(cf);
927
0
  struct Curl_ssl_scache_peer *peer = NULL;
928
0
  CURLcode result;
929
930
0
  DEBUGASSERT(sobj);
931
0
  DEBUGASSERT(sobj_free);
932
933
0
  if(!scache) {
934
0
    result = CURLE_BAD_FUNCTION_ARGUMENT;
935
0
    goto out;
936
0
  }
937
938
0
  result = cf_ssl_add_peer(data, scache, ssl_peer_key, conn_config, &peer);
939
0
  if(result || !peer) {
940
0
    CURL_TRC_SSLS(data, "unable to add scache peer: %d", result);
941
0
    goto out;
942
0
  }
943
944
0
  cf_ssl_scache_peer_set_obj(peer, sobj, sobj_free);
945
0
  sobj = NULL;  /* peer took ownership */
946
947
0
out:
948
0
  if(sobj && sobj_free)
949
0
    sobj_free(sobj);
950
0
  return result;
951
0
}
952
953
void *Curl_ssl_scache_get_obj(struct Curl_cfilter *cf,
954
                              struct Curl_easy *data,
955
                              const char *ssl_peer_key)
956
0
{
957
0
  struct Curl_ssl_scache *scache = cf_ssl_scache_get(data);
958
0
  struct ssl_primary_config *conn_config = Curl_ssl_cf_get_primary_config(cf);
959
0
  struct Curl_ssl_scache_peer *peer = NULL;
960
0
  CURLcode result;
961
0
  void *sobj;
962
963
0
  if(!scache)
964
0
    return NULL;
965
966
0
  result = cf_ssl_find_peer_by_key(data, scache, ssl_peer_key, conn_config,
967
0
                                   &peer);
968
0
  if(result)
969
0
    return NULL;
970
971
0
  sobj = peer ? peer->sobj : NULL;
972
973
0
  CURL_TRC_SSLS(data, "%s cached session for '%s'",
974
0
                sobj ? "Found" : "No", ssl_peer_key);
975
0
  return sobj;
976
0
}
977
978
void Curl_ssl_scache_remove_all(struct Curl_cfilter *cf,
979
                                struct Curl_easy *data,
980
                                const char *ssl_peer_key)
981
0
{
982
0
  struct Curl_ssl_scache *scache = cf_ssl_scache_get(data);
983
0
  struct ssl_primary_config *conn_config = Curl_ssl_cf_get_primary_config(cf);
984
0
  struct Curl_ssl_scache_peer *peer = NULL;
985
0
  CURLcode result;
986
987
0
  (void)cf;
988
0
  if(!scache)
989
0
    return;
990
991
0
  Curl_ssl_scache_lock(data);
992
0
  result = cf_ssl_find_peer_by_key(data, scache, ssl_peer_key, conn_config,
993
0
                                   &peer);
994
0
  if(!result && peer)
995
0
    cf_ssl_scache_clear_peer(peer);
996
0
  Curl_ssl_scache_unlock(data);
997
0
}
998
999
#ifdef USE_SSLS_EXPORT
1000
1001
#define CURL_SSL_TICKET_MAX   (16*1024)
1002
1003
static CURLcode cf_ssl_scache_peer_set_hmac(struct Curl_ssl_scache_peer *peer)
1004
{
1005
  CURLcode result;
1006
1007
  DEBUGASSERT(peer);
1008
  if(!peer->ssl_peer_key)
1009
    return CURLE_BAD_FUNCTION_ARGUMENT;
1010
1011
  result = Curl_rand(NULL, peer->key_salt, sizeof(peer->key_salt));
1012
  if(result)
1013
    return result;
1014
1015
  result = Curl_hmacit(&Curl_HMAC_SHA256,
1016
                       peer->key_salt, sizeof(peer->key_salt),
1017
                       (const unsigned char *)peer->ssl_peer_key,
1018
                       strlen(peer->ssl_peer_key),
1019
                       peer->key_hmac);
1020
  if(!result)
1021
    peer->hmac_set = TRUE;
1022
  return result;
1023
}
1024
1025
static CURLcode
1026
cf_ssl_find_peer_by_hmac(struct Curl_ssl_scache *scache,
1027
                         const unsigned char *salt,
1028
                         const unsigned char *hmac,
1029
                         struct Curl_ssl_scache_peer **ppeer)
1030
{
1031
  size_t i;
1032
  CURLcode result = CURLE_OK;
1033
1034
  *ppeer = NULL;
1035
  if(!GOOD_SCACHE(scache))
1036
    return CURLE_BAD_FUNCTION_ARGUMENT;
1037
1038
  /* look for an entry that matches salt+hmac exactly or has a known
1039
   * ssl_peer_key which salt+hmac's to the same. */
1040
  for(i = 0; scache && i < scache->peer_count; i++) {
1041
    struct Curl_ssl_scache_peer *peer = &scache->peers[i];
1042
    if(!cf_ssl_scache_match_auth(peer, NULL))
1043
      continue;
1044
    if(scache->peers[i].hmac_set &&
1045
       !memcmp(peer->key_salt, salt, sizeof(peer->key_salt)) &&
1046
       !memcmp(peer->key_hmac, hmac, sizeof(peer->key_hmac))) {
1047
      /* found exact match, return */
1048
      *ppeer = peer;
1049
      goto out;
1050
    }
1051
    else if(peer->ssl_peer_key) {
1052
      unsigned char my_hmac[CURL_SHA256_DIGEST_LENGTH];
1053
      /* compute hmac for the passed salt */
1054
      result = Curl_hmacit(&Curl_HMAC_SHA256,
1055
                           salt, sizeof(peer->key_salt),
1056
                           (const unsigned char *)peer->ssl_peer_key,
1057
                           strlen(peer->ssl_peer_key),
1058
                           my_hmac);
1059
      if(result)
1060
        goto out;
1061
      if(!memcmp(my_hmac, hmac, sizeof(my_hmac))) {
1062
        /* cryptohash match, take over salt+hmac if no set and return */
1063
        if(!peer->hmac_set) {
1064
          memcpy(peer->key_salt, salt, sizeof(peer->key_salt));
1065
          memcpy(peer->key_hmac, hmac, sizeof(peer->key_hmac));
1066
          peer->hmac_set = TRUE;
1067
        }
1068
        *ppeer = peer;
1069
        goto out;
1070
      }
1071
    }
1072
  }
1073
out:
1074
  return result;
1075
}
1076
1077
CURLcode Curl_ssl_session_import(struct Curl_easy *data,
1078
                                 const char *ssl_peer_key,
1079
                                 const unsigned char *shmac, size_t shmac_len,
1080
                                 const void *sdata, size_t sdata_len)
1081
{
1082
  struct Curl_ssl_scache *scache = cf_ssl_scache_get(data);
1083
  struct Curl_ssl_scache_peer *peer = NULL;
1084
  struct Curl_ssl_session *s = NULL;
1085
  bool locked = FALSE;
1086
  CURLcode r;
1087
1088
  if(!scache) {
1089
    r = CURLE_BAD_FUNCTION_ARGUMENT;
1090
    goto out;
1091
  }
1092
  if(!ssl_peer_key && (!shmac || !shmac_len)) {
1093
    r = CURLE_BAD_FUNCTION_ARGUMENT;
1094
    goto out;
1095
  }
1096
1097
  r = Curl_ssl_session_unpack(data, sdata, sdata_len, &s);
1098
  if(r)
1099
    goto out;
1100
1101
  Curl_ssl_scache_lock(data);
1102
  locked = TRUE;
1103
1104
  if(ssl_peer_key) {
1105
    r = cf_ssl_add_peer(data, scache, ssl_peer_key, NULL, &peer);
1106
    if(r)
1107
      goto out;
1108
  }
1109
  else if(shmac_len != (sizeof(peer->key_salt) + sizeof(peer->key_hmac))) {
1110
    /* Either salt+hmac was garbled by caller or is from a curl version
1111
     * that does things differently */
1112
    r = CURLE_BAD_FUNCTION_ARGUMENT;
1113
    goto out;
1114
  }
1115
  else {
1116
    const unsigned char *salt = shmac;
1117
    const unsigned char *hmac = shmac + sizeof(peer->key_salt);
1118
1119
    r = cf_ssl_find_peer_by_hmac(scache, salt, hmac, &peer);
1120
    if(r)
1121
      goto out;
1122
    if(!peer) {
1123
      peer = cf_ssl_get_free_peer(scache);
1124
      if(peer) {
1125
        r = cf_ssl_scache_peer_init(peer, ssl_peer_key, NULL,
1126
                                    NULL, NULL, salt, hmac);
1127
        if(r)
1128
          goto out;
1129
      }
1130
    }
1131
  }
1132
1133
  if(peer) {
1134
    cf_scache_peer_add_session(peer, s, time(NULL));
1135
    s = NULL; /* peer is now owner */
1136
    CURL_TRC_SSLS(data, "successfully imported ticket for peer %s, now "
1137
                  "with %zu tickets",
1138
                  peer->ssl_peer_key ? peer->ssl_peer_key : "without key",
1139
                  Curl_llist_count(&peer->sessions));
1140
  }
1141
1142
out:
1143
  if(locked)
1144
    Curl_ssl_scache_unlock(data);
1145
  Curl_ssl_session_destroy(s);
1146
  return r;
1147
}
1148
1149
CURLcode Curl_ssl_session_export(struct Curl_easy *data,
1150
                                 curl_ssls_export_cb *export_fn,
1151
                                 void *userptr)
1152
{
1153
  struct Curl_ssl_scache *scache = cf_ssl_scache_get(data);
1154
  struct Curl_ssl_scache_peer *peer;
1155
  struct dynbuf sbuf, hbuf;
1156
  struct Curl_llist_node *n;
1157
  size_t i, npeers = 0, ntickets = 0;
1158
  curl_off_t now = time(NULL);
1159
  CURLcode r = CURLE_OK;
1160
1161
  if(!export_fn)
1162
    return CURLE_BAD_FUNCTION_ARGUMENT;
1163
  if(!scache)
1164
    return CURLE_OK;
1165
1166
  Curl_ssl_scache_lock(data);
1167
1168
  curlx_dyn_init(&hbuf, (CURL_SHA256_DIGEST_LENGTH * 2) + 1);
1169
  curlx_dyn_init(&sbuf, CURL_SSL_TICKET_MAX);
1170
1171
  for(i = 0; scache && i < scache->peer_count; i++) {
1172
    peer = &scache->peers[i];
1173
    if(!peer->ssl_peer_key && !peer->hmac_set)
1174
      continue;  /* skip free entry */
1175
    if(!peer->exportable)
1176
      continue;
1177
1178
    curlx_dyn_reset(&hbuf);
1179
    cf_scache_peer_remove_expired(peer, now);
1180
    n = Curl_llist_head(&peer->sessions);
1181
    if(n)
1182
      ++npeers;
1183
    while(n) {
1184
      struct Curl_ssl_session *s = Curl_node_elem(n);
1185
      if(!peer->hmac_set) {
1186
        r = cf_ssl_scache_peer_set_hmac(peer);
1187
        if(r)
1188
          goto out;
1189
      }
1190
      if(!curlx_dyn_len(&hbuf)) {
1191
        r = curlx_dyn_addn(&hbuf, peer->key_salt, sizeof(peer->key_salt));
1192
        if(r)
1193
          goto out;
1194
        r = curlx_dyn_addn(&hbuf, peer->key_hmac, sizeof(peer->key_hmac));
1195
        if(r)
1196
          goto out;
1197
      }
1198
      curlx_dyn_reset(&sbuf);
1199
      r = Curl_ssl_session_pack(data, s, &sbuf);
1200
      if(r)
1201
        goto out;
1202
1203
      r = export_fn(data, userptr, peer->ssl_peer_key,
1204
                    curlx_dyn_uptr(&hbuf), curlx_dyn_len(&hbuf),
1205
                    curlx_dyn_uptr(&sbuf), curlx_dyn_len(&sbuf),
1206
                    s->valid_until, s->ietf_tls_id,
1207
                    s->alpn, s->earlydata_max);
1208
      if(r)
1209
        goto out;
1210
      ++ntickets;
1211
      n = Curl_node_next(n);
1212
    }
1213
1214
  }
1215
  r = CURLE_OK;
1216
  CURL_TRC_SSLS(data, "exported %zu session tickets for %zu peers",
1217
                ntickets, npeers);
1218
1219
out:
1220
  Curl_ssl_scache_unlock(data);
1221
  curlx_dyn_free(&hbuf);
1222
  curlx_dyn_free(&sbuf);
1223
  return r;
1224
}
1225
1226
#endif /* USE_SSLS_EXPORT */
1227
1228
#endif /* USE_SSL */