Coverage Report

Created: 2026-07-16 06:10

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/curl/lib/vtls/openssl.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
 * Source file for all OpenSSL-specific code for the TLS/SSL layer. No code
26
 * but vtls.c should ever call or use these functions.
27
 */
28
#include "curl_setup.h"
29
30
#ifdef USE_OPENSSL
31
32
#include "urldata.h"
33
#include "curl_trc.h"
34
#include "httpsrr.h"
35
#include "formdata.h" /* for the boundary function */
36
#include "url.h" /* for the SSL config check function */
37
#include "curlx/inet_pton.h"
38
#include "vtls/openssl.h"
39
#include "connect.h"
40
#include "cf-dns.h"
41
#include "progress.h"
42
#include "vtls/vtls.h"
43
#include "vtls/vtls_int.h"
44
#include "vtls/vtls_scache.h"
45
#include "vauth/vauth.h"
46
#include "vtls/keylog.h"
47
#include "vtls/hostcheck.h"
48
#include "transfer.h"
49
#include "multiif.h"
50
#include "curlx/strerr.h"
51
#include "curlx/strparse.h"
52
#include "curlx/strcopy.h"
53
#include "curlx/strdup.h"
54
#include "vtls/apple.h"
55
#ifdef USE_ECH
56
#include "curlx/base64.h"
57
#endif
58
59
#include <openssl/rand.h>
60
#include <openssl/x509v3.h>
61
#ifndef OPENSSL_NO_DSA
62
#include <openssl/dsa.h>
63
#endif
64
#include <openssl/dh.h>
65
#include <openssl/err.h>
66
#include <openssl/conf.h>
67
#include <openssl/bn.h>
68
#include <openssl/rsa.h>
69
#include <openssl/bio.h>
70
#include <openssl/pkcs12.h>
71
#include <openssl/tls1.h>
72
#include <openssl/evp.h>
73
74
#if defined(HAVE_SSL_SET1_ECH_CONFIG_LIST) && !defined(HAVE_BORINGSSL_LIKE)
75
#include <openssl/ech.h>
76
#endif
77
78
#ifndef OPENSSL_NO_OCSP
79
#include <openssl/ocsp.h>
80
#endif
81
82
#if !defined(OPENSSL_NO_ENGINE) && !defined(OPENSSL_NO_UI_CONSOLE)
83
#define USE_OPENSSL_ENGINE
84
#include <openssl/engine.h>
85
#endif
86
87
#ifdef LIBRESSL_VERSION_NUMBER
88
/* As of LibreSSL 2.0.0-4.0.0: OPENSSL_VERSION_NUMBER == 0x20000000L */
89
#  if LIBRESSL_VERSION_NUMBER < 0x2090100fL /* 2019-04-13 */
90
#    error "LibreSSL 2.9.1 or later required"
91
#  endif
92
#elif !defined(HAVE_BORINGSSL_LIKE)
93
#  ifndef HAVE_OPENSSL3 /* 2021-09-07 */
94
#    error "OpenSSL 3.0.0 or later required"
95
#  endif
96
#endif
97
98
#if defined(HAVE_OPENSSL3) && !defined(OPENSSL_NO_UI_CONSOLE)
99
#include <openssl/provider.h>
100
#include <openssl/store.h>
101
/* this is used in the following conditions to make them easier to read */
102
#define OPENSSL_HAS_PROVIDERS
103
#endif
104
105
/* AWS-LC fixed a bug with large buffers in v1.61.0 which also introduced
106
 * X509_V_ERR_EC_KEY_EXPLICIT_PARAMS. */
107
#if !defined(LIBRESSL_VERSION_NUMBER) && !defined(OPENSSL_IS_BORINGSSL) && \
108
  (!defined(OPENSSL_IS_AWSLC) || defined(X509_V_ERR_EC_KEY_EXPLICIT_PARAMS))
109
#define HAVE_SSL_CTX_SET_DEFAULT_READ_BUFFER_LEN 1
110
#endif
111
112
#if defined(USE_OPENSSL_ENGINE) || defined(OPENSSL_HAS_PROVIDERS)
113
#include <openssl/ui.h>
114
#endif
115
116
#ifdef HAVE_OPENSSL3
117
#define HAVE_EVP_PKEY_GET_PARAMS 1
118
#endif
119
120
#ifdef HAVE_EVP_PKEY_GET_PARAMS
121
#include <openssl/core_names.h>
122
0
#define DECLARE_PKEY_PARAM_BIGNUM(name) BIGNUM *name = NULL
123
0
#define FREE_PKEY_PARAM_BIGNUM(name) BN_clear_free(name)
124
#else
125
#define DECLARE_PKEY_PARAM_BIGNUM(name) const BIGNUM *name
126
#define FREE_PKEY_PARAM_BIGNUM(name)
127
#endif
128
129
/* Whether SSL_CTX_set_ciphersuites is available.
130
 * BoringSSL: no
131
 * LibreSSL: supported since 3.4.1 (released 2021-10-14)
132
 * OpenSSL: supported since 1.1.1 (commit a53b5be6a05)
133
 */
134
#if (!defined(LIBRESSL_VERSION_NUMBER) || \
135
     (defined(LIBRESSL_VERSION_NUMBER) && \
136
      LIBRESSL_VERSION_NUMBER >= 0x3040100fL)) && \
137
    !defined(OPENSSL_IS_BORINGSSL)
138
#  define HAVE_SSL_CTX_SET_CIPHERSUITES
139
#  ifndef OPENSSL_IS_AWSLC
140
#    define HAVE_SSL_CTX_SET_POST_HANDSHAKE_AUTH
141
#  endif
142
#endif
143
144
/* Whether SSL_CTX_set1_sigalgs_list is available
145
 * BoringSSL: supported since 0.20240913.0 (commit 826ce15)
146
 * LibreSSL: no
147
 * OpenSSL: supported since 1.0.2 (commit 0b362de5f575)
148
 */
149
#ifndef LIBRESSL_VERSION_NUMBER
150
#define HAVE_SSL_CTX_SET1_SIGALGS
151
#endif
152
153
#ifdef LIBRESSL_VERSION_NUMBER
154
#define OSSL_PACKAGE "LibreSSL"
155
#elif defined(OPENSSL_IS_AWSLC)
156
#define OSSL_PACKAGE "AWS-LC"
157
#elif defined(OPENSSL_IS_BORINGSSL)
158
#define OSSL_PACKAGE "BoringSSL"
159
#elif defined(USE_NGTCP2) && defined(USE_NGHTTP3) && \
160
  !defined(OPENSSL_QUIC_API2)
161
#define OSSL_PACKAGE "quictls"
162
#else
163
0
#define OSSL_PACKAGE "OpenSSL"
164
#endif
165
166
#ifdef HAVE_BORINGSSL_LIKE
167
typedef size_t numcert_t;
168
typedef uint32_t sslerr_t;
169
#else
170
typedef int numcert_t;
171
typedef unsigned long sslerr_t;
172
#endif
173
#define ossl_valsize_t numcert_t
174
175
static CURLcode push_certinfo(struct Curl_easy *data,
176
                              BIO *mem, const char *label, int num)
177
  WARN_UNUSED_RESULT;
178
179
static CURLcode push_certinfo(struct Curl_easy *data,
180
                              BIO *mem, const char *label, int num)
181
0
{
182
0
  char *ptr;
183
0
  long len = BIO_get_mem_data(mem, &ptr);
184
0
  CURLcode result = Curl_ssl_push_certinfo_len(data, num, label, ptr, len);
185
0
  (void)BIO_reset(mem);
186
0
  return result;
187
0
}
188
189
static CURLcode pubkey_show(struct Curl_easy *data,
190
                            BIO *mem,
191
                            int num,
192
                            const char *type,
193
                            const char *name,
194
                            const BIGNUM *bn) WARN_UNUSED_RESULT;
195
196
static CURLcode pubkey_show(struct Curl_easy *data,
197
                            BIO *mem,
198
                            int num,
199
                            const char *type,
200
                            const char *name,
201
                            const BIGNUM *bn)
202
0
{
203
0
  char namebuf[32];
204
205
0
  curl_msnprintf(namebuf, sizeof(namebuf), "%s(%s)", type, name);
206
207
0
  if(bn)
208
0
    BN_print(mem, bn);
209
0
  return push_certinfo(data, mem, namebuf, num);
210
0
}
211
212
#define print_pubkey_BN(_type, _name, _num)           \
213
0
  pubkey_show(data, mem, _num, #_type, #_name, _name)
214
215
static int asn1_object_dump(const ASN1_OBJECT *a, char *buf, size_t len)
216
0
{
217
0
  int i = i2t_ASN1_OBJECT(buf, (int)len, a);
218
0
  return (i >= (int)len);  /* buffer too small */
219
0
}
220
221
static CURLcode X509V3_ext(struct Curl_easy *data,
222
                           int certnum,
223
                           const STACK_OF(X509_EXTENSION) *extsarg)
224
0
{
225
0
  int i;
226
0
  CURLcode result = CURLE_OK;
227
#ifdef LIBRESSL_VERSION_NUMBER
228
  STACK_OF(X509_EXTENSION) *exts = CURL_UNCONST(extsarg);
229
#else
230
0
  const STACK_OF(X509_EXTENSION) *exts = extsarg;
231
0
#endif
232
233
0
  if((int)sk_X509_EXTENSION_num(exts) <= 0)
234
    /* no extensions, bail out */
235
0
    return result;
236
237
0
  for(i = 0; i < (int)sk_X509_EXTENSION_num(exts); i++) {
238
0
    const ASN1_OBJECT *obj;
239
0
    X509_EXTENSION *ext = sk_X509_EXTENSION_value(exts, (ossl_valsize_t)i);
240
0
    BUF_MEM *biomem;
241
0
    char namebuf[128];
242
0
    BIO *bio_out = BIO_new(BIO_s_mem());
243
244
0
    if(!bio_out)
245
0
      return result;
246
247
0
    obj = X509_EXTENSION_get_object(ext);
248
249
0
    if(asn1_object_dump(obj, namebuf, sizeof(namebuf)))
250
      /* make sure the name is null-terminated */
251
0
      namebuf[sizeof(namebuf) - 1] = 0;
252
253
0
    if(!X509V3_EXT_print(bio_out, ext, 0, 0))
254
0
      ASN1_STRING_print(bio_out,
255
0
                        (const ASN1_STRING *)X509_EXTENSION_get_data(ext));
256
257
0
    BIO_get_mem_ptr(bio_out, &biomem);
258
0
    result = Curl_ssl_push_certinfo_len(data, certnum, namebuf, biomem->data,
259
0
                                        biomem->length);
260
0
    BIO_free(bio_out);
261
0
    if(result)
262
0
      break;
263
0
  }
264
0
  return result;
265
0
}
266
267
static CURLcode get_pkey_rsa(struct Curl_easy *data,
268
                             EVP_PKEY *pubkey, BIO *mem, int i)
269
0
{
270
0
  CURLcode result = CURLE_OK;
271
#ifndef HAVE_EVP_PKEY_GET_PARAMS
272
  RSA *rsa = EVP_PKEY_get0_RSA(pubkey);
273
#endif /* !HAVE_EVP_PKEY_GET_PARAMS */
274
0
  DECLARE_PKEY_PARAM_BIGNUM(n);
275
0
  DECLARE_PKEY_PARAM_BIGNUM(e);
276
0
#ifdef HAVE_EVP_PKEY_GET_PARAMS
277
0
  EVP_PKEY_get_bn_param(pubkey, OSSL_PKEY_PARAM_RSA_N, &n);
278
0
  EVP_PKEY_get_bn_param(pubkey, OSSL_PKEY_PARAM_RSA_E, &e);
279
#else
280
  RSA_get0_key(rsa, &n, &e, NULL);
281
#endif /* HAVE_EVP_PKEY_GET_PARAMS */
282
0
  BIO_printf(mem, "%d", (int)(n ? BN_num_bits(n) : 0));
283
0
  result = push_certinfo(data, mem, "RSA Public Key", i);
284
0
  if(!result) {
285
0
    result = print_pubkey_BN(rsa, n, i);
286
0
    if(!result)
287
0
      result = print_pubkey_BN(rsa, e, i);
288
0
  }
289
0
  FREE_PKEY_PARAM_BIGNUM(n);
290
0
  FREE_PKEY_PARAM_BIGNUM(e);
291
0
  return result;
292
0
}
293
294
#ifndef OPENSSL_NO_DSA
295
static CURLcode get_pkey_dsa(struct Curl_easy *data,
296
                             EVP_PKEY *pubkey, BIO *mem, int i)
297
0
{
298
0
  CURLcode result = CURLE_OK;
299
#ifndef HAVE_EVP_PKEY_GET_PARAMS
300
  DSA *dsa = EVP_PKEY_get0_DSA(pubkey);
301
#endif /* !HAVE_EVP_PKEY_GET_PARAMS */
302
0
  DECLARE_PKEY_PARAM_BIGNUM(p);
303
0
  DECLARE_PKEY_PARAM_BIGNUM(q);
304
0
  DECLARE_PKEY_PARAM_BIGNUM(g);
305
0
  DECLARE_PKEY_PARAM_BIGNUM(pub_key);
306
0
#ifdef HAVE_EVP_PKEY_GET_PARAMS
307
0
  EVP_PKEY_get_bn_param(pubkey, OSSL_PKEY_PARAM_FFC_P, &p);
308
0
  EVP_PKEY_get_bn_param(pubkey, OSSL_PKEY_PARAM_FFC_Q, &q);
309
0
  EVP_PKEY_get_bn_param(pubkey, OSSL_PKEY_PARAM_FFC_G, &g);
310
0
  EVP_PKEY_get_bn_param(pubkey, OSSL_PKEY_PARAM_PUB_KEY, &pub_key);
311
#else
312
  DSA_get0_pqg(dsa, &p, &q, &g);
313
  DSA_get0_key(dsa, &pub_key, NULL);
314
#endif /* HAVE_EVP_PKEY_GET_PARAMS */
315
0
  result = print_pubkey_BN(dsa, p, i);
316
0
  if(!result)
317
0
    result = print_pubkey_BN(dsa, q, i);
318
0
  if(!result)
319
0
    result = print_pubkey_BN(dsa, g, i);
320
0
  if(!result)
321
0
    result = print_pubkey_BN(dsa, pub_key, i);
322
0
  FREE_PKEY_PARAM_BIGNUM(p);
323
0
  FREE_PKEY_PARAM_BIGNUM(q);
324
0
  FREE_PKEY_PARAM_BIGNUM(g);
325
0
  FREE_PKEY_PARAM_BIGNUM(pub_key);
326
0
  return result;
327
0
}
328
#endif /* !OPENSSL_NO_DSA */
329
330
static CURLcode get_pkey_dh(struct Curl_easy *data,
331
                            EVP_PKEY *pubkey, BIO *mem, int i)
332
0
{
333
0
  CURLcode result;
334
#ifndef HAVE_EVP_PKEY_GET_PARAMS
335
  DH *dh = EVP_PKEY_get0_DH(pubkey);
336
#endif /* !HAVE_EVP_PKEY_GET_PARAMS */
337
0
  DECLARE_PKEY_PARAM_BIGNUM(p);
338
0
  DECLARE_PKEY_PARAM_BIGNUM(q);
339
0
  DECLARE_PKEY_PARAM_BIGNUM(g);
340
0
  DECLARE_PKEY_PARAM_BIGNUM(pub_key);
341
0
#ifdef HAVE_EVP_PKEY_GET_PARAMS
342
0
  EVP_PKEY_get_bn_param(pubkey, OSSL_PKEY_PARAM_FFC_P, &p);
343
0
  EVP_PKEY_get_bn_param(pubkey, OSSL_PKEY_PARAM_FFC_Q, &q);
344
0
  EVP_PKEY_get_bn_param(pubkey, OSSL_PKEY_PARAM_FFC_G, &g);
345
0
  EVP_PKEY_get_bn_param(pubkey, OSSL_PKEY_PARAM_PUB_KEY, &pub_key);
346
#else
347
  DH_get0_pqg(dh, &p, &q, &g);
348
  DH_get0_key(dh, &pub_key, NULL);
349
#endif /* HAVE_EVP_PKEY_GET_PARAMS */
350
0
  result = print_pubkey_BN(dh, p, i);
351
0
  if(!result)
352
0
    result = print_pubkey_BN(dh, q, i);
353
0
  if(!result)
354
0
    result = print_pubkey_BN(dh, g, i);
355
0
  if(!result)
356
0
    result = print_pubkey_BN(dh, pub_key, i);
357
0
  FREE_PKEY_PARAM_BIGNUM(p);
358
0
  FREE_PKEY_PARAM_BIGNUM(q);
359
0
  FREE_PKEY_PARAM_BIGNUM(g);
360
0
  FREE_PKEY_PARAM_BIGNUM(pub_key);
361
0
  return result;
362
0
}
363
364
#ifdef HAVE_OPENSSL3
365
/* from OpenSSL commit fc756e594ed5a27af378 */
366
typedef const X509_PUBKEY pubkeytype_t;
367
#else
368
typedef X509_PUBKEY pubkeytype_t;
369
#endif
370
371
static CURLcode ossl_certchain(struct Curl_easy *data, SSL *ssl)
372
0
{
373
0
  CURLcode result;
374
0
  STACK_OF(X509) *sk;
375
0
  int i;
376
0
  numcert_t numcerts;
377
0
  BIO *mem;
378
379
0
  DEBUGASSERT(ssl);
380
381
0
  sk = SSL_get_peer_cert_chain(ssl);
382
0
  if(!sk)
383
0
    return CURLE_SSL_CONNECT_ERROR;
384
385
0
  numcerts = sk_X509_num(sk);
386
0
  if(numcerts > MAX_ALLOWED_CERT_AMOUNT) {
387
0
    failf(data, "%d certificates is more than allowed (%d)", (int)numcerts,
388
0
          MAX_ALLOWED_CERT_AMOUNT);
389
0
    return CURLE_SSL_CONNECT_ERROR;
390
0
  }
391
392
0
  result = Curl_ssl_init_certinfo(data, (int)numcerts);
393
0
  if(result)
394
0
    return result;
395
396
0
  mem = BIO_new(BIO_s_mem());
397
0
  if(!mem)
398
0
    result = CURLE_OUT_OF_MEMORY;
399
400
0
  for(i = 0; !result && (i < (int)numcerts); i++) {
401
0
    ASN1_INTEGER *num;
402
0
    const unsigned char *numdata;
403
0
    X509 *x = sk_X509_value(sk, (ossl_valsize_t)i);
404
0
    EVP_PKEY *pubkey = NULL;
405
0
    int j;
406
0
    const ASN1_BIT_STRING *psig = NULL;
407
408
0
    X509_NAME_print_ex(mem, X509_get_subject_name(x), 0, XN_FLAG_ONELINE);
409
0
    result = push_certinfo(data, mem, "Subject", i);
410
0
    if(result)
411
0
      break;
412
413
0
    X509_NAME_print_ex(mem, X509_get_issuer_name(x), 0, XN_FLAG_ONELINE);
414
0
    result = push_certinfo(data, mem, "Issuer", i);
415
0
    if(result)
416
0
      break;
417
418
0
    BIO_printf(mem, "%lx", (unsigned long)X509_get_version(x));
419
0
    result = push_certinfo(data, mem, "Version", i);
420
0
    if(result)
421
0
      break;
422
423
0
    num = X509_get_serialNumber(x);
424
0
    if(ASN1_STRING_type(num) == V_ASN1_NEG_INTEGER)
425
0
      BIO_puts(mem, "-");
426
0
    numdata = ASN1_STRING_get0_data(num);
427
0
    for(j = 0; j < ASN1_STRING_length(num); j++)
428
0
      BIO_printf(mem, "%02x", numdata[j]);
429
0
    result = push_certinfo(data, mem, "Serial Number", i);
430
0
    if(result)
431
0
      break;
432
433
0
    {
434
0
      const X509_ALGOR *sigalg = NULL;
435
0
      pubkeytype_t *xpubkey = NULL;
436
0
      ASN1_OBJECT *pubkeyoid = NULL;
437
438
0
      X509_get0_signature(&psig, &sigalg, x);
439
0
      if(sigalg) {
440
0
        const ASN1_OBJECT *sigalgoid = NULL;
441
0
        X509_ALGOR_get0(&sigalgoid, NULL, NULL, sigalg);
442
0
        i2a_ASN1_OBJECT(mem, sigalgoid);
443
0
        result = push_certinfo(data, mem, "Signature Algorithm", i);
444
0
        if(result)
445
0
          break;
446
0
      }
447
448
0
      xpubkey = X509_get_X509_PUBKEY(x);
449
0
      if(xpubkey) {
450
0
        X509_PUBKEY_get0_param(&pubkeyoid, NULL, NULL, NULL, xpubkey);
451
0
        if(pubkeyoid) {
452
0
          i2a_ASN1_OBJECT(mem, pubkeyoid);
453
0
          result = push_certinfo(data, mem, "Public Key Algorithm", i);
454
0
          if(result)
455
0
            break;
456
0
        }
457
0
      }
458
459
0
      result = X509V3_ext(data, i, X509_get0_extensions(x));
460
0
      if(result)
461
0
        break;
462
0
    }
463
464
0
    ASN1_TIME_print(mem, X509_get0_notBefore(x));
465
0
    result = push_certinfo(data, mem, "Start date", i);
466
0
    if(result)
467
0
      break;
468
469
0
    ASN1_TIME_print(mem, X509_get0_notAfter(x));
470
0
    result = push_certinfo(data, mem, "Expire date", i);
471
0
    if(result)
472
0
      break;
473
474
0
    pubkey = X509_get_pubkey(x);
475
0
    if(!pubkey)
476
0
      infof(data, "   Unable to load public key");
477
0
    else {
478
0
      switch(EVP_PKEY_id(pubkey)) {
479
0
      case EVP_PKEY_RSA:
480
0
        result = get_pkey_rsa(data, pubkey, mem, i);
481
0
        break;
482
483
0
#ifndef OPENSSL_NO_DSA
484
0
      case EVP_PKEY_DSA:
485
0
        result = get_pkey_dsa(data, pubkey, mem, i);
486
0
        break;
487
0
#endif
488
489
0
      case EVP_PKEY_DH:
490
0
        result = get_pkey_dh(data, pubkey, mem, i);
491
0
        break;
492
0
      }
493
0
      EVP_PKEY_free(pubkey);
494
0
    }
495
496
0
    if(!result && psig) {
497
0
      const unsigned char *psigdata = ASN1_STRING_get0_data(psig);
498
0
      for(j = 0; j < ASN1_STRING_length(psig); j++)
499
0
        BIO_printf(mem, "%02x:", psigdata[j]);
500
0
      result = push_certinfo(data, mem, "Signature", i);
501
0
    }
502
503
0
    if(!result) {
504
0
      PEM_write_bio_X509(mem, x);
505
0
      result = push_certinfo(data, mem, "Cert", i);
506
0
    }
507
0
  }
508
509
0
  BIO_free(mem);
510
511
0
  if(result)
512
    /* cleanup all leftovers */
513
0
    Curl_ssl_free_certinfo(data);
514
515
0
  return result;
516
0
}
517
518
static int ossl_bio_cf_create(BIO *bio)
519
0
{
520
0
  BIO_set_shutdown(bio, 1);
521
0
  BIO_set_init(bio, 1);
522
0
  BIO_set_data(bio, NULL);
523
0
  return 1;
524
0
}
525
526
static int ossl_bio_cf_destroy(BIO *bio)
527
0
{
528
0
  if(!bio)
529
0
    return 0;
530
0
  return 1;
531
0
}
532
533
static long ossl_bio_cf_ctrl(BIO *bio, int cmd, long num, void *ptr)
534
0
{
535
0
  struct Curl_cfilter *cf = BIO_get_data(bio);
536
0
  long ret = 1;
537
538
0
  (void)cf;
539
0
  (void)ptr;
540
0
  switch(cmd) {
541
0
  case BIO_CTRL_GET_CLOSE:
542
0
    ret = (long)BIO_get_shutdown(bio);
543
0
    break;
544
0
  case BIO_CTRL_SET_CLOSE:
545
0
    BIO_set_shutdown(bio, (int)num);
546
0
    break;
547
0
  case BIO_CTRL_FLUSH:
548
    /* we do no delayed writes, but if we ever would, this
549
     * needs to trigger it. */
550
0
    ret = 1;
551
0
    break;
552
0
  case BIO_CTRL_DUP:
553
0
    ret = 1;
554
0
    break;
555
0
  case BIO_CTRL_EOF: {
556
    /* EOF has been reached on input? */
557
0
    struct ssl_connect_data *connssl = cf->ctx;
558
0
    return connssl->peer_closed;
559
0
  }
560
0
  default:
561
0
    ret = 0;
562
0
    break;
563
0
  }
564
0
  return ret;
565
0
}
566
567
static int ossl_bio_cf_out_write(BIO *bio, const char *buf, int blen)
568
0
{
569
0
  struct Curl_cfilter *cf = BIO_get_data(bio);
570
0
  struct ssl_connect_data *connssl = cf->ctx;
571
0
  struct ossl_ctx *octx = (struct ossl_ctx *)connssl->backend;
572
0
  struct Curl_easy *data = CF_DATA_CURRENT(cf);
573
0
  size_t nwritten;
574
0
  CURLcode result;
575
576
0
  DEBUGASSERT(data);
577
0
  if(blen < 0)
578
0
    return 0;
579
580
0
  result = Curl_conn_cf_send(cf->next, data,
581
0
                             (const uint8_t *)buf, (size_t)blen, FALSE,
582
0
                             &nwritten);
583
0
  CURL_TRC_CF(data, cf, "ossl_bio_cf_out_write(len=%d) -> %d, %zu",
584
0
              blen, (int)result, nwritten);
585
0
  BIO_clear_retry_flags(bio);
586
0
  octx->io_result = result;
587
0
  if(result) {
588
0
    if(result == CURLE_AGAIN)
589
0
      BIO_set_retry_write(bio);
590
0
    return -1;
591
0
  }
592
0
  return (int)nwritten;
593
0
}
594
595
static int ossl_bio_cf_in_read(BIO *bio, char *buf, int blen)
596
0
{
597
0
  struct Curl_cfilter *cf = BIO_get_data(bio);
598
0
  struct ssl_connect_data *connssl = cf->ctx;
599
0
  struct ossl_ctx *octx = (struct ossl_ctx *)connssl->backend;
600
0
  struct Curl_easy *data = CF_DATA_CURRENT(cf);
601
0
  size_t nread;
602
0
  CURLcode result, r2;
603
604
0
  DEBUGASSERT(data);
605
  /* OpenSSL catches this case, so should we. */
606
0
  if(!buf)
607
0
    return 0;
608
0
  if(blen < 0)
609
0
    return 0;
610
611
0
  result = Curl_conn_cf_recv(cf->next, data, buf, (size_t)blen, &nread);
612
0
  CURL_TRC_CF(data, cf, "ossl_bio_cf_in_read(len=%d) -> %d, %zu",
613
0
              blen, (int)result, nread);
614
0
  BIO_clear_retry_flags(bio);
615
0
  octx->io_result = result;
616
0
  if(result) {
617
0
    if(result == CURLE_AGAIN)
618
0
      BIO_set_retry_read(bio);
619
0
  }
620
0
  else {
621
    /* feeding data to OpenSSL means SSL_read() might succeed */
622
0
    connssl->input_pending = TRUE;
623
0
    if(nread == 0)
624
0
      connssl->peer_closed = TRUE;
625
0
  }
626
627
  /* Before returning server replies to the SSL instance, we need
628
   * to have setup the x509 store or verification fails. */
629
0
  if(!octx->x509_store_setup) {
630
0
    r2 = Curl_ssl_setup_x509_store(cf, data, octx);
631
0
    if(r2) {
632
0
      BIO_clear_retry_flags(bio);
633
0
      octx->io_result = r2;
634
0
      return -1;
635
0
    }
636
0
    octx->x509_store_setup = TRUE;
637
0
  }
638
0
  return result ? -1 : (int)nread;
639
0
}
640
641
static BIO_METHOD *ossl_bio_cf_method_create(void)
642
0
{
643
0
  BIO_METHOD *m = BIO_meth_new(BIO_TYPE_MEM, "OpenSSL CF BIO");
644
0
  if(m) {
645
0
    BIO_meth_set_write(m, &ossl_bio_cf_out_write);
646
0
    BIO_meth_set_read(m, &ossl_bio_cf_in_read);
647
0
    BIO_meth_set_ctrl(m, &ossl_bio_cf_ctrl);
648
0
    BIO_meth_set_create(m, &ossl_bio_cf_create);
649
0
    BIO_meth_set_destroy(m, &ossl_bio_cf_destroy);
650
0
  }
651
0
  return m;
652
0
}
653
654
static void ossl_bio_cf_method_free(BIO_METHOD *m)
655
0
{
656
0
  if(m)
657
0
    BIO_meth_free(m);
658
0
}
659
660
#ifndef HAVE_KEYLOG_UPSTREAM
661
#ifdef HAVE_KEYLOG_CALLBACK
662
static void ossl_keylog_callback(const SSL *ssl, const char *line)
663
0
{
664
0
  (void)ssl;
665
666
0
  Curl_tls_keylog_write_line(line);
667
0
}
668
#else
669
/*
670
 * ossl_log_tls12_secret is called by libcurl to make the CLIENT_RANDOMs if the
671
 * OpenSSL being used does not have native support for doing that.
672
 */
673
static void ossl_log_tls12_secret(const SSL *ssl, bool *keylog_done)
674
{
675
  const SSL_SESSION *session;
676
  unsigned char client_random[SSL3_RANDOM_SIZE];
677
  unsigned char master_key[SSL_MAX_MASTER_KEY_LENGTH];
678
  int master_key_length = 0;
679
680
  ERR_set_mark();
681
682
  session = SSL_get_session(ssl);
683
684
  if(!session || *keylog_done) {
685
    ERR_pop_to_mark();
686
    return;
687
  }
688
689
  SSL_get_client_random(ssl, client_random, SSL3_RANDOM_SIZE);
690
  master_key_length = (int)
691
    SSL_SESSION_get_master_key(session, master_key, SSL_MAX_MASTER_KEY_LENGTH);
692
693
  ERR_pop_to_mark();
694
695
  /* The handshake has not progressed sufficiently yet, or this is a TLS 1.3
696
   * session (when curl was built with older OpenSSL headers and running with
697
   * newer OpenSSL runtime libraries). */
698
  if(master_key_length <= 0)
699
    return;
700
701
  *keylog_done = TRUE;
702
  Curl_tls_keylog_write("CLIENT_RANDOM", client_random,
703
                        master_key, master_key_length);
704
}
705
#endif /* !HAVE_KEYLOG_CALLBACK */
706
#endif /* HAVE_KEYLOG_UPSTREAM */
707
708
static const char *SSL_ERROR_to_str(int err)
709
0
{
710
0
  switch(err) {
711
0
  case SSL_ERROR_NONE:
712
0
    return "SSL_ERROR_NONE";
713
0
  case SSL_ERROR_SSL:
714
0
    return "SSL_ERROR_SSL";
715
0
  case SSL_ERROR_WANT_READ:
716
0
    return "SSL_ERROR_WANT_READ";
717
0
  case SSL_ERROR_WANT_WRITE:
718
0
    return "SSL_ERROR_WANT_WRITE";
719
0
  case SSL_ERROR_WANT_X509_LOOKUP:
720
0
    return "SSL_ERROR_WANT_X509_LOOKUP";
721
0
  case SSL_ERROR_SYSCALL:
722
0
    return "SSL_ERROR_SYSCALL";
723
0
  case SSL_ERROR_ZERO_RETURN:
724
0
    return "SSL_ERROR_ZERO_RETURN";
725
0
  case SSL_ERROR_WANT_CONNECT:
726
0
    return "SSL_ERROR_WANT_CONNECT";
727
0
  case SSL_ERROR_WANT_ACCEPT:
728
0
    return "SSL_ERROR_WANT_ACCEPT";
729
0
#ifdef SSL_ERROR_WANT_ASYNC  /* OpenSSL 1.1.0+, LibreSSL 3.6.0+ */
730
0
  case SSL_ERROR_WANT_ASYNC:
731
0
    return "SSL_ERROR_WANT_ASYNC";
732
0
#endif
733
0
#ifdef SSL_ERROR_WANT_ASYNC_JOB  /* OpenSSL 1.1.0+, LibreSSL 3.6.0+ */
734
0
  case SSL_ERROR_WANT_ASYNC_JOB:
735
0
    return "SSL_ERROR_WANT_ASYNC_JOB";
736
0
#endif
737
0
#ifdef SSL_ERROR_WANT_CLIENT_HELLO_CB  /* OpenSSL 1.1.1, LibreSSL 3.6.0+ */
738
0
  case SSL_ERROR_WANT_CLIENT_HELLO_CB:
739
0
    return "SSL_ERROR_WANT_CLIENT_HELLO_CB";
740
0
#endif
741
0
  default:
742
0
    return "SSL_ERROR unknown";
743
0
  }
744
0
}
745
746
/* Return error string for last OpenSSL error
747
 */
748
static char *ossl_strerror(unsigned long error, char *buf, size_t size)
749
0
{
750
0
  size_t len;
751
0
  DEBUGASSERT(size);
752
0
  *buf = '\0';
753
754
0
  len = Curl_ossl_version(buf, size);
755
0
  DEBUGASSERT(len < (size - 2));
756
0
  if(len < (size - 2)) {
757
0
    buf += len;
758
0
    size -= (len + 2);
759
0
    *buf++ = ':';
760
0
    *buf++ = ' ';
761
0
    *buf = '\0';
762
0
  }
763
764
#ifdef HAVE_BORINGSSL_LIKE
765
  ERR_error_string_n((uint32_t)error, buf, size);
766
#else
767
0
  ERR_error_string_n(error, buf, size);
768
0
#endif
769
770
0
  if(!*buf) {
771
0
    const char *msg = error ? "Unknown error" : "No error";
772
0
    curlx_strcopy(buf, size, msg, strlen(msg));
773
0
  }
774
775
0
  return buf;
776
0
}
777
778
static int passwd_callback(char *buf, int num, int encrypting, void *password)
779
0
{
780
0
  DEBUGASSERT(encrypting == 0);
781
782
0
  if(!encrypting && num >= 0 && password) {
783
0
    int klen = curlx_uztosi(strlen((char *)password));
784
0
    if(num > klen) {
785
0
      memcpy(buf, password, klen + 1);
786
0
      return klen;
787
0
    }
788
0
  }
789
0
  return 0;
790
0
}
791
792
/*
793
 * rand_enough() returns TRUE if we have seeded the random engine properly.
794
 */
795
static bool rand_enough(void)
796
0
{
797
0
  return RAND_status() != 0;
798
0
}
799
800
static CURLcode ossl_seed(struct Curl_easy *data)
801
0
{
802
  /* This might get called before it has been added to a multi handle */
803
0
  if(data->multi && data->multi->ssl_seeded)
804
0
    return CURLE_OK;
805
806
0
  if(rand_enough()) {
807
    /* OpenSSL 1.1.0+ should return here */
808
0
    if(data->multi)
809
0
      data->multi->ssl_seeded = TRUE;
810
0
    return CURLE_OK;
811
0
  }
812
0
  failf(data, "Insufficient randomness");
813
0
  return CURLE_SSL_CONNECT_ERROR;
814
0
}
815
816
#ifndef SSL_FILETYPE_ENGINE
817
0
#define SSL_FILETYPE_ENGINE 42
818
#endif
819
#ifndef SSL_FILETYPE_PKCS12
820
0
#define SSL_FILETYPE_PKCS12 43
821
#endif
822
#ifndef SSL_FILETYPE_PROVIDER
823
0
#define SSL_FILETYPE_PROVIDER 44
824
#endif
825
static int ossl_do_file_type(const char *type)
826
0
{
827
0
  if(!type || !type[0])
828
0
    return SSL_FILETYPE_PEM;
829
0
  if(curl_strequal(type, "PEM"))
830
0
    return SSL_FILETYPE_PEM;
831
0
  if(curl_strequal(type, "DER"))
832
0
    return SSL_FILETYPE_ASN1;
833
0
  if(curl_strequal(type, "PROV"))
834
0
    return SSL_FILETYPE_PROVIDER;
835
0
  if(curl_strequal(type, "ENG"))
836
0
    return SSL_FILETYPE_ENGINE;
837
0
  if(curl_strequal(type, "P12"))
838
0
    return SSL_FILETYPE_PKCS12;
839
0
  return -1;
840
0
}
841
842
#if defined(USE_OPENSSL_ENGINE) || defined(OPENSSL_HAS_PROVIDERS)
843
/*
844
 * Supply default password to the engine user interface conversation.
845
 * The password is passed by OpenSSL engine from ENGINE_load_private_key()
846
 * last argument to the ui and can be obtained by UI_get0_user_data(ui) here.
847
 */
848
static int ssl_ui_reader(UI *ui, UI_STRING *uis)
849
0
{
850
0
  const char *password;
851
0
  switch(UI_get_string_type(uis)) {
852
0
  case UIT_PROMPT:
853
0
  case UIT_VERIFY:
854
0
    password = (const char *)UI_get0_user_data(ui);
855
0
    if(password && (UI_get_input_flags(uis) & UI_INPUT_FLAG_DEFAULT_PWD)) {
856
0
      UI_set_result(ui, uis, password);
857
0
      return 1;
858
0
    }
859
0
    FALLTHROUGH();
860
0
  default:
861
0
    break;
862
0
  }
863
0
  return (UI_method_get_reader(UI_OpenSSL()))(ui, uis);
864
0
}
865
866
/*
867
 * Suppress interactive request for a default password if available.
868
 */
869
static int ssl_ui_writer(UI *ui, UI_STRING *uis)
870
0
{
871
0
  switch(UI_get_string_type(uis)) {
872
0
  case UIT_PROMPT:
873
0
  case UIT_VERIFY:
874
0
    if(UI_get0_user_data(ui) &&
875
0
       (UI_get_input_flags(uis) & UI_INPUT_FLAG_DEFAULT_PWD)) {
876
0
      return 1;
877
0
    }
878
0
    FALLTHROUGH();
879
0
  default:
880
0
    break;
881
0
  }
882
0
  return (UI_method_get_writer(UI_OpenSSL()))(ui, uis);
883
0
}
884
885
/*
886
 * Check if a given string is a PKCS#11 URI
887
 */
888
static bool is_pkcs11_uri(const char *string)
889
0
{
890
0
  return string && curl_strnequal(string, "pkcs11:", 7);
891
0
}
892
893
#endif
894
895
static CURLcode ossl_set_engine(struct Curl_easy *data, const char *name);
896
#ifdef OPENSSL_HAS_PROVIDERS
897
static CURLcode ossl_set_provider(struct Curl_easy *data, const char *iname);
898
#endif
899
900
static int use_certificate_blob(SSL_CTX *ctx, const struct curl_blob *blob,
901
                                int type, const char *key_passwd)
902
0
{
903
0
  int ret = 0;
904
0
  X509 *x = NULL;
905
  /* the typecast of blob->len is fine since it is guaranteed to never be
906
     larger than CURL_MAX_INPUT_LENGTH */
907
0
  BIO *in = BIO_new_mem_buf(blob->data, (int)(blob->len));
908
0
  if(!in)
909
0
    return CURLE_OUT_OF_MEMORY;
910
911
0
  if(type == SSL_FILETYPE_ASN1) {
912
    /* j = ERR_R_ASN1_LIB; */
913
0
    x = d2i_X509_bio(in, NULL);
914
0
  }
915
0
  else if(type == SSL_FILETYPE_PEM) {
916
    /* ERR_R_PEM_LIB; */
917
0
    x = PEM_read_bio_X509(in, NULL, passwd_callback, CURL_UNCONST(key_passwd));
918
0
  }
919
0
  else {
920
0
    ret = 0;
921
0
    goto end;
922
0
  }
923
924
0
  if(!x) {
925
0
    ret = 0;
926
0
    goto end;
927
0
  }
928
929
0
  ret = SSL_CTX_use_certificate(ctx, x);
930
0
end:
931
0
  X509_free(x);
932
0
  BIO_free(in);
933
0
  return ret;
934
0
}
935
936
static int use_privatekey_blob(SSL_CTX *ctx, const struct curl_blob *blob,
937
                               int type, const char *key_passwd)
938
0
{
939
0
  int ret = 0;
940
0
  EVP_PKEY *pkey = NULL;
941
0
  BIO *in = BIO_new_mem_buf(blob->data, (int)(blob->len));
942
0
  if(!in)
943
0
    return CURLE_OUT_OF_MEMORY;
944
945
0
  if(type == SSL_FILETYPE_PEM)
946
0
    pkey = PEM_read_bio_PrivateKey(in, NULL, passwd_callback,
947
0
                                   CURL_UNCONST(key_passwd));
948
0
  else if(type == SSL_FILETYPE_ASN1)
949
0
    pkey = d2i_PrivateKey_bio(in, NULL);
950
0
  else
951
0
    goto end;
952
953
0
  if(!pkey)
954
0
    goto end;
955
956
0
  ret = SSL_CTX_use_PrivateKey(ctx, pkey);
957
0
  EVP_PKEY_free(pkey);
958
0
end:
959
0
  BIO_free(in);
960
0
  return ret;
961
0
}
962
963
static int use_certificate_chain_blob(SSL_CTX *ctx,
964
                                      const struct curl_blob *blob,
965
                                      const char *key_passwd)
966
0
{
967
0
  int ret = 0;
968
0
  X509 *x = NULL;
969
0
  BIO *in = BIO_new_mem_buf(blob->data, (int)(blob->len));
970
0
  if(!in)
971
0
    return CURLE_OUT_OF_MEMORY;
972
973
0
  ERR_clear_error();
974
975
0
  x = PEM_read_bio_X509_AUX(in, NULL,
976
0
                            passwd_callback, CURL_UNCONST(key_passwd));
977
0
  if(!x)
978
0
    goto end;
979
980
0
  ret = SSL_CTX_use_certificate(ctx, x);
981
982
0
  if(ERR_peek_error() != 0)
983
0
    ret = 0;
984
985
0
  if(ret) {
986
0
    X509 *ca;
987
0
    sslerr_t err;
988
989
0
    if(!SSL_CTX_clear_chain_certs(ctx)) {
990
0
      ret = 0;
991
0
      goto end;
992
0
    }
993
994
0
    while((ca = PEM_read_bio_X509(in, NULL, passwd_callback,
995
0
                                  CURL_UNCONST(key_passwd))) != NULL) {
996
997
0
      if(!SSL_CTX_add0_chain_cert(ctx, ca)) {
998
0
        X509_free(ca);
999
0
        ret = 0;
1000
0
        goto end;
1001
0
      }
1002
0
    }
1003
1004
0
    err = ERR_peek_last_error();
1005
0
    if((ERR_GET_LIB(err) == ERR_LIB_PEM) &&
1006
0
       (ERR_GET_REASON(err) == PEM_R_NO_START_LINE))
1007
0
      ERR_clear_error();
1008
0
    else
1009
0
      ret = 0;
1010
0
  }
1011
1012
0
end:
1013
0
  X509_free(x);
1014
0
  BIO_free(in);
1015
0
  return ret;
1016
0
}
1017
1018
static int enginecheck(struct Curl_easy *data,
1019
                       SSL_CTX* ctx,
1020
                       const char *key_file,
1021
                       const char *key_passwd)
1022
0
{
1023
#ifdef USE_OPENSSL_ENGINE
1024
  EVP_PKEY *priv_key = NULL;
1025
1026
  /* Implicitly use pkcs11 engine if none was provided and the
1027
   * key_file is a PKCS#11 URI */
1028
  if(!data->state.engine) {
1029
    if(is_pkcs11_uri(key_file)) {
1030
      if(ossl_set_engine(data, "pkcs11") != CURLE_OK) {
1031
        return 0;
1032
      }
1033
    }
1034
  }
1035
1036
  if(data->state.engine) {
1037
    UI_METHOD *ui_method = UI_create_method("curl user interface");
1038
    if(!ui_method) {
1039
      failf(data, "unable to create " OSSL_PACKAGE " user-interface method");
1040
      return 0;
1041
    }
1042
    UI_method_set_opener(ui_method, UI_method_get_opener(UI_OpenSSL()));
1043
    UI_method_set_closer(ui_method, UI_method_get_closer(UI_OpenSSL()));
1044
    UI_method_set_reader(ui_method, ssl_ui_reader);
1045
    UI_method_set_writer(ui_method, ssl_ui_writer);
1046
    priv_key = ENGINE_load_private_key(data->state.engine, key_file,
1047
                                       ui_method,
1048
                                       CURL_UNCONST(key_passwd));
1049
    UI_destroy_method(ui_method);
1050
    if(!priv_key) {
1051
      failf(data, "failed to load private key from crypto engine");
1052
      return 0;
1053
    }
1054
    if(SSL_CTX_use_PrivateKey(ctx, priv_key) != 1) {
1055
      failf(data, "unable to set private key");
1056
      EVP_PKEY_free(priv_key);
1057
      return 0;
1058
    }
1059
    EVP_PKEY_free(priv_key);  /* we do not need the handle any more... */
1060
  }
1061
  else {
1062
    failf(data, "crypto engine not set, cannot load private key");
1063
    return 0;
1064
  }
1065
  return 1;
1066
#else
1067
0
  (void)ctx;
1068
0
  (void)key_file;
1069
0
  (void)key_passwd;
1070
0
  failf(data, "SSL_FILETYPE_ENGINE not supported for private key");
1071
0
  return 0;
1072
0
#endif
1073
0
}
1074
1075
static int providercheck(struct Curl_easy *data,
1076
                         SSL_CTX* ctx,
1077
                         const char *key_file)
1078
0
{
1079
0
#ifdef OPENSSL_HAS_PROVIDERS
1080
0
  char error_buffer[256];
1081
  /* Implicitly use pkcs11 provider if none was provided and the
1082
   * key_file is a PKCS#11 URI */
1083
0
  if(!data->state.provider_loaded) {
1084
0
    if(is_pkcs11_uri(key_file)) {
1085
0
      if(ossl_set_provider(data, "pkcs11") != CURLE_OK) {
1086
0
        return 0;
1087
0
      }
1088
0
    }
1089
0
  }
1090
1091
0
  if(data->state.provider_loaded) {
1092
    /* Load the private key from the provider */
1093
0
    EVP_PKEY *priv_key = NULL;
1094
0
    OSSL_STORE_CTX *store = NULL;
1095
0
    OSSL_STORE_INFO *info = NULL;
1096
0
    UI_METHOD *ui_method = UI_create_method("curl user interface");
1097
0
    if(!ui_method) {
1098
0
      failf(data, "unable to create " OSSL_PACKAGE " user-interface method");
1099
0
      return 0;
1100
0
    }
1101
0
    UI_method_set_opener(ui_method, UI_method_get_opener(UI_OpenSSL()));
1102
0
    UI_method_set_closer(ui_method, UI_method_get_closer(UI_OpenSSL()));
1103
0
    UI_method_set_reader(ui_method, ssl_ui_reader);
1104
0
    UI_method_set_writer(ui_method, ssl_ui_writer);
1105
1106
0
    store = OSSL_STORE_open_ex(key_file, data->state.libctx,
1107
0
                               data->state.propq, ui_method, NULL, NULL,
1108
0
                               NULL, NULL);
1109
0
    if(!store) {
1110
0
      failf(data, "Failed to open OpenSSL store: %s",
1111
0
            ossl_strerror(ERR_get_error(), error_buffer,
1112
0
                          sizeof(error_buffer)));
1113
0
      UI_destroy_method(ui_method);
1114
0
      return 0;
1115
0
    }
1116
0
    if(OSSL_STORE_expect(store, OSSL_STORE_INFO_PKEY) != 1) {
1117
0
      failf(data, "Failed to set store preference. Ignoring the error: %s",
1118
0
            ossl_strerror(ERR_get_error(), error_buffer,
1119
0
                          sizeof(error_buffer)));
1120
0
    }
1121
1122
0
    info = OSSL_STORE_load(store);
1123
0
    if(info) {
1124
0
      int ossl_type = OSSL_STORE_INFO_get_type(info);
1125
1126
0
      if(ossl_type == OSSL_STORE_INFO_PKEY)
1127
0
        priv_key = OSSL_STORE_INFO_get1_PKEY(info);
1128
0
      OSSL_STORE_INFO_free(info);
1129
0
    }
1130
0
    OSSL_STORE_close(store);
1131
0
    UI_destroy_method(ui_method);
1132
0
    if(!priv_key) {
1133
0
      failf(data, "No private key found in the openssl store: %s",
1134
0
            ossl_strerror(ERR_get_error(), error_buffer,
1135
0
                          sizeof(error_buffer)));
1136
0
      return 0;
1137
0
    }
1138
1139
0
    if(SSL_CTX_use_PrivateKey(ctx, priv_key) != 1) {
1140
0
      failf(data, "unable to set private key [%s]",
1141
0
            ossl_strerror(ERR_get_error(), error_buffer,
1142
0
                          sizeof(error_buffer)));
1143
0
      EVP_PKEY_free(priv_key);
1144
0
      return 0;
1145
0
    }
1146
0
    EVP_PKEY_free(priv_key); /* we do not need the handle any more... */
1147
0
  }
1148
0
  else {
1149
0
    failf(data, "crypto provider not set, cannot load private key");
1150
0
    return 0;
1151
0
  }
1152
0
  return 1;
1153
#else
1154
  (void)ctx;
1155
  (void)key_file;
1156
  failf(data, "SSL_FILETYPE_PROVIDER not supported for private key");
1157
  return 0;
1158
#endif
1159
0
}
1160
1161
static int engineload(struct Curl_easy *data,
1162
                      SSL_CTX* ctx,
1163
                      const char *cert_file)
1164
0
{
1165
/* ENGINE_CTRL_GET_CMD_FROM_NAME supported by OpenSSL, LibreSSL <=3.8.3 */
1166
#if defined(USE_OPENSSL_ENGINE) && defined(ENGINE_CTRL_GET_CMD_FROM_NAME)
1167
  char error_buffer[256];
1168
  /* Implicitly use pkcs11 engine if none was provided and the
1169
   * cert_file is a PKCS#11 URI */
1170
  if(!data->state.engine) {
1171
    if(is_pkcs11_uri(cert_file)) {
1172
      if(ossl_set_engine(data, "pkcs11") != CURLE_OK) {
1173
        return 0;
1174
      }
1175
    }
1176
  }
1177
1178
  if(data->state.engine) {
1179
    const char *cmd_name = "LOAD_CERT_CTRL";
1180
    struct {
1181
      const char *cert_id;
1182
      X509 *cert;
1183
    } params;
1184
1185
    params.cert_id = cert_file;
1186
    params.cert = NULL;
1187
1188
    /* Does the engine supports LOAD_CERT_CTRL ? */
1189
    if(!ENGINE_ctrl(data->state.engine, ENGINE_CTRL_GET_CMD_FROM_NAME,
1190
                    0, CURL_UNCONST(cmd_name), NULL)) {
1191
      failf(data, "SSL engine does not support loading certificates");
1192
      return 0;
1193
    }
1194
1195
    /* Load the certificate from the engine */
1196
    if(!ENGINE_ctrl_cmd(data->state.engine, cmd_name, 0, &params, NULL, 1)) {
1197
      failf(data, "SSL engine cannot load client cert with id '%s' [%s]",
1198
            cert_file,
1199
            ossl_strerror(ERR_get_error(), error_buffer,
1200
                          sizeof(error_buffer)));
1201
      return 0;
1202
    }
1203
1204
    if(!params.cert) {
1205
      failf(data, "SSL engine did not initialized the certificate properly.");
1206
      return 0;
1207
    }
1208
1209
    if(SSL_CTX_use_certificate(ctx, params.cert) != 1) {
1210
      failf(data, "unable to set client certificate [%s]",
1211
            ossl_strerror(ERR_get_error(), error_buffer,
1212
                          sizeof(error_buffer)));
1213
      X509_free(params.cert);
1214
      return 0;
1215
    }
1216
    X509_free(params.cert); /* we do not need the handle any more... */
1217
  }
1218
  else {
1219
    failf(data, "crypto engine not set, cannot load certificate");
1220
    return 0;
1221
  }
1222
  return 1;
1223
#else
1224
0
  (void)ctx;
1225
0
  (void)cert_file;
1226
0
  failf(data, "SSL_FILETYPE_ENGINE not supported for certificate");
1227
0
  return 0;
1228
0
#endif
1229
0
}
1230
1231
static int providerload(struct Curl_easy *data,
1232
                        SSL_CTX* ctx,
1233
                        const char *cert_file)
1234
0
{
1235
0
#ifdef OPENSSL_HAS_PROVIDERS
1236
0
  char error_buffer[256];
1237
  /* Implicitly use pkcs11 provider if none was provided and the
1238
   * cert_file is a PKCS#11 URI */
1239
0
  if(!data->state.provider_loaded) {
1240
0
    if(is_pkcs11_uri(cert_file)) {
1241
0
      if(ossl_set_provider(data, "pkcs11") != CURLE_OK) {
1242
0
        return 0;
1243
0
      }
1244
0
    }
1245
0
  }
1246
1247
0
  if(data->state.provider_loaded) {
1248
    /* Load the certificate from the provider */
1249
0
    OSSL_STORE_INFO *info = NULL;
1250
0
    X509 *cert = NULL;
1251
0
    OSSL_STORE_CTX *store =
1252
0
      OSSL_STORE_open_ex(cert_file, data->state.libctx,
1253
0
                         NULL, NULL, NULL, NULL, NULL, NULL);
1254
0
    int rc;
1255
1256
0
    if(!store) {
1257
0
      failf(data, "Failed to open OpenSSL store: %s",
1258
0
            ossl_strerror(ERR_get_error(), error_buffer,
1259
0
                          sizeof(error_buffer)));
1260
0
      return 0;
1261
0
    }
1262
0
    if(OSSL_STORE_expect(store, OSSL_STORE_INFO_CERT) != 1) {
1263
0
      failf(data, "Failed to set store preference. Ignoring the error: %s",
1264
0
            ossl_strerror(ERR_get_error(), error_buffer,
1265
0
                          sizeof(error_buffer)));
1266
0
    }
1267
1268
0
    info = OSSL_STORE_load(store);
1269
0
    if(info) {
1270
0
      int ossl_type = OSSL_STORE_INFO_get_type(info);
1271
1272
0
      if(ossl_type == OSSL_STORE_INFO_CERT)
1273
0
        cert = OSSL_STORE_INFO_get1_CERT(info);
1274
0
      OSSL_STORE_INFO_free(info);
1275
0
    }
1276
0
    OSSL_STORE_close(store);
1277
0
    if(!cert) {
1278
0
      failf(data, "No cert found in the openssl store: %s",
1279
0
            ossl_strerror(ERR_get_error(), error_buffer,
1280
0
                          sizeof(error_buffer)));
1281
0
      return 0;
1282
0
    }
1283
1284
0
    rc = SSL_CTX_use_certificate(ctx, cert);
1285
0
    X509_free(cert); /* we do not need the handle any more... */
1286
1287
0
    if(rc != 1) {
1288
0
      failf(data, "unable to set client certificate [%s]",
1289
0
            ossl_strerror(ERR_get_error(), error_buffer,
1290
0
                          sizeof(error_buffer)));
1291
0
      return 0;
1292
0
    }
1293
0
  }
1294
0
  else {
1295
0
    failf(data, "crypto provider not set, cannot load certificate");
1296
0
    return 0;
1297
0
  }
1298
0
  return 1;
1299
#else
1300
  (void)ctx;
1301
  (void)cert_file;
1302
  failf(data, "SSL_FILETYPE_PROVIDER not supported for certificate");
1303
  return 0;
1304
#endif
1305
0
}
1306
1307
static int pkcs12load(struct Curl_easy *data,
1308
                      SSL_CTX* ctx,
1309
                      const struct curl_blob *cert_blob,
1310
                      const char *cert_file,
1311
                      const char *key_passwd)
1312
0
{
1313
0
  char error_buffer[256];
1314
0
  BIO *cert_bio = NULL;
1315
0
  PKCS12 *p12 = NULL;
1316
0
  EVP_PKEY *pri;
1317
0
  X509 *x509;
1318
0
  int cert_done = 0;
1319
0
  STACK_OF(X509) *ca = NULL;
1320
0
  if(cert_blob) {
1321
0
    cert_bio = BIO_new_mem_buf(cert_blob->data, (int)(cert_blob->len));
1322
0
    if(!cert_bio) {
1323
0
      failf(data, "BIO_new_mem_buf NULL, " OSSL_PACKAGE " error %s",
1324
0
            ossl_strerror(ERR_get_error(), error_buffer,
1325
0
                          sizeof(error_buffer)));
1326
0
      return 0;
1327
0
    }
1328
0
  }
1329
0
  else {
1330
0
    cert_bio = BIO_new(BIO_s_file());
1331
0
    if(!cert_bio) {
1332
0
      failf(data, "BIO_new return NULL, " OSSL_PACKAGE " error %s",
1333
0
            ossl_strerror(ERR_get_error(), error_buffer,
1334
0
                          sizeof(error_buffer)));
1335
0
      return 0;
1336
0
    }
1337
1338
0
    if(BIO_read_filename(cert_bio, CURL_UNCONST(cert_file)) <= 0) {
1339
0
      failf(data, "could not open PKCS12 file '%s'", cert_file);
1340
0
      BIO_free(cert_bio);
1341
0
      return 0;
1342
0
    }
1343
0
  }
1344
1345
0
  p12 = d2i_PKCS12_bio(cert_bio, NULL);
1346
0
  BIO_free(cert_bio);
1347
1348
0
  if(!p12) {
1349
0
    failf(data, "error reading PKCS12 file '%s'",
1350
0
          cert_blob ? "(memory blob)" : cert_file);
1351
0
    return 0;
1352
0
  }
1353
1354
0
  if(!PKCS12_parse(p12, key_passwd, &pri, &x509, &ca)) {
1355
0
    failf(data, "could not parse PKCS12 file, check password, " OSSL_PACKAGE
1356
0
          " error %s",
1357
0
          ossl_strerror(ERR_get_error(), error_buffer, sizeof(error_buffer)));
1358
0
    PKCS12_free(p12);
1359
0
    return 0;
1360
0
  }
1361
1362
0
  PKCS12_free(p12);
1363
1364
0
  if(SSL_CTX_use_certificate(ctx, x509) != 1) {
1365
0
    failf(data, "could not load PKCS12 client certificate, " OSSL_PACKAGE
1366
0
          " error %s",
1367
0
          ossl_strerror(ERR_get_error(), error_buffer, sizeof(error_buffer)));
1368
0
    goto fail;
1369
0
  }
1370
1371
0
  if(SSL_CTX_use_PrivateKey(ctx, pri) != 1) {
1372
0
    failf(data, "unable to use private key from PKCS12 file '%s'", cert_file);
1373
0
    goto fail;
1374
0
  }
1375
1376
0
  if(!SSL_CTX_check_private_key(ctx)) {
1377
0
    failf(data, "private key from PKCS12 file '%s' "
1378
0
          "does not match certificate in same file", cert_file);
1379
0
    goto fail;
1380
0
  }
1381
  /* Set Certificate Verification chain */
1382
0
  if(ca) {
1383
0
    while(sk_X509_num(ca)) {
1384
      /*
1385
       * Note that sk_X509_pop() is used below to make sure the cert is
1386
       * removed from the stack properly before getting passed to
1387
       * SSL_CTX_add_extra_chain_cert(), which takes ownership. Previously
1388
       * we used sk_X509_value() instead, but then we would clean it in the
1389
       * subsequent sk_X509_pop_free() call.
1390
       */
1391
0
      X509 *x = sk_X509_pop(ca);
1392
0
      if(!SSL_CTX_add_client_CA(ctx, x)) {
1393
0
        X509_free(x);
1394
0
        failf(data, "cannot add certificate to client CA list");
1395
0
        goto fail;
1396
0
      }
1397
0
      if(!SSL_CTX_add_extra_chain_cert(ctx, x)) {
1398
0
        X509_free(x);
1399
0
        failf(data, "cannot add certificate to certificate chain");
1400
0
        goto fail;
1401
0
      }
1402
0
    }
1403
0
  }
1404
1405
0
  cert_done = 1;
1406
0
fail:
1407
0
  EVP_PKEY_free(pri);
1408
0
  X509_free(x509);
1409
0
#if defined(__clang__) && __clang_major__ >= 16
1410
0
#pragma clang diagnostic push
1411
0
#pragma clang diagnostic ignored "-Wcast-function-type-strict"
1412
0
#endif
1413
0
  sk_X509_pop_free(ca, X509_free);
1414
0
#if defined(__clang__) && __clang_major__ >= 16
1415
0
#pragma clang diagnostic pop
1416
0
#endif
1417
0
  if(!cert_done)
1418
0
    return 0; /* failure! */
1419
0
  return 1;
1420
0
}
1421
1422
static CURLcode client_cert(struct Curl_easy *data,
1423
                            SSL_CTX* ctx,
1424
                            char *cert_file,
1425
                            const struct curl_blob *cert_blob,
1426
                            const char *cert_type,
1427
                            char *key_file,
1428
                            const struct curl_blob *key_blob,
1429
                            const char *key_type,
1430
                            char *key_passwd)
1431
0
{
1432
0
  char error_buffer[256];
1433
0
  bool check_privkey = TRUE;
1434
0
  int file_type = ossl_do_file_type(cert_type);
1435
1436
0
  if(cert_file || cert_blob || (file_type == SSL_FILETYPE_ENGINE) ||
1437
0
     (file_type == SSL_FILETYPE_PROVIDER)) {
1438
0
    SSL *ssl;
1439
0
    X509 *x509;
1440
0
    bool pcks12_done = FALSE;
1441
0
    int cert_use_result;
1442
1443
0
    if(key_passwd) {
1444
      /* set the password in the callback userdata */
1445
0
      SSL_CTX_set_default_passwd_cb_userdata(ctx, key_passwd);
1446
      /* Set passwd callback: */
1447
0
      SSL_CTX_set_default_passwd_cb(ctx, passwd_callback);
1448
0
    }
1449
1450
0
    switch(file_type) {
1451
0
    case SSL_FILETYPE_PEM:
1452
      /* SSL_CTX_use_certificate_chain_file() only works on PEM files */
1453
0
      cert_use_result = cert_blob ?
1454
0
        use_certificate_chain_blob(ctx, cert_blob, key_passwd) :
1455
0
        SSL_CTX_use_certificate_chain_file(ctx, cert_file);
1456
0
      if(cert_use_result != 1) {
1457
0
        failf(data,
1458
0
              "could not load PEM client certificate from %s, " OSSL_PACKAGE
1459
0
              " error %s, "
1460
0
              "(no key found, wrong passphrase, or wrong file format?)",
1461
0
              (cert_blob ? "CURLOPT_SSLCERT_BLOB" : cert_file),
1462
0
              ossl_strerror(ERR_get_error(), error_buffer,
1463
0
                            sizeof(error_buffer)));
1464
0
        return CURLE_SSL_CERTPROBLEM;
1465
0
      }
1466
0
      break;
1467
1468
0
    case SSL_FILETYPE_ASN1:
1469
      /* SSL_CTX_use_certificate_file() works with either PEM or ASN1, but
1470
         we use the case above for PEM so this can only be performed with
1471
         ASN1 files. */
1472
1473
0
      cert_use_result = cert_blob ?
1474
0
        use_certificate_blob(ctx, cert_blob, file_type, key_passwd) :
1475
0
      SSL_CTX_use_certificate_file(ctx, cert_file, file_type);
1476
0
      if(cert_use_result != 1) {
1477
0
        failf(data,
1478
0
              "could not load ASN1 client certificate from %s, " OSSL_PACKAGE
1479
0
              " error %s, "
1480
0
              "(no key found, wrong passphrase, or wrong file format?)",
1481
0
              (cert_blob ? "CURLOPT_SSLCERT_BLOB" : cert_file),
1482
0
              ossl_strerror(ERR_get_error(), error_buffer,
1483
0
                            sizeof(error_buffer)));
1484
0
        return CURLE_SSL_CERTPROBLEM;
1485
0
      }
1486
0
      break;
1487
1488
0
    case SSL_FILETYPE_ENGINE:
1489
0
      if(!cert_file || !engineload(data, ctx, cert_file))
1490
0
        return CURLE_SSL_CERTPROBLEM;
1491
0
      break;
1492
1493
0
    case SSL_FILETYPE_PROVIDER:
1494
0
      if(!cert_file || !providerload(data, ctx, cert_file))
1495
0
        return CURLE_SSL_CERTPROBLEM;
1496
0
      break;
1497
1498
0
    case SSL_FILETYPE_PKCS12:
1499
0
      if(!pkcs12load(data, ctx, cert_blob, cert_file, key_passwd))
1500
0
        return CURLE_SSL_CERTPROBLEM;
1501
0
      pcks12_done = TRUE;
1502
0
      break;
1503
1504
0
    default:
1505
0
      failf(data, "not supported file type '%s' for certificate", cert_type);
1506
0
      return CURLE_BAD_FUNCTION_ARGUMENT;
1507
0
    }
1508
1509
0
    if(!key_file && !key_blob) {
1510
0
      key_file = cert_file;
1511
0
      key_blob = cert_blob;
1512
0
    }
1513
0
    else
1514
0
      file_type = ossl_do_file_type(key_type);
1515
1516
0
    switch(file_type) {
1517
0
    case SSL_FILETYPE_PEM:
1518
0
    case SSL_FILETYPE_ASN1:
1519
0
      cert_use_result = key_blob ?
1520
0
        use_privatekey_blob(ctx, key_blob, file_type, key_passwd) :
1521
0
      SSL_CTX_use_PrivateKey_file(ctx, key_file, file_type);
1522
0
      if(cert_use_result != 1) {
1523
0
        failf(data, "unable to set private key file: '%s' type %s",
1524
0
              key_file ? key_file : "(memory blob)",
1525
0
              key_type ? key_type : "PEM");
1526
0
        return CURLE_BAD_FUNCTION_ARGUMENT;
1527
0
      }
1528
0
      break;
1529
0
    case SSL_FILETYPE_ENGINE:
1530
0
      if(!enginecheck(data, ctx, key_file, key_passwd))
1531
0
        return CURLE_SSL_CERTPROBLEM;
1532
0
      break;
1533
1534
0
    case SSL_FILETYPE_PROVIDER:
1535
0
      if(!providercheck(data, ctx, key_file))
1536
0
        return CURLE_SSL_CERTPROBLEM;
1537
0
      break;
1538
1539
0
    case SSL_FILETYPE_PKCS12:
1540
0
      if(!pcks12_done) {
1541
0
        failf(data, "file type P12 for private key not supported");
1542
0
        return CURLE_SSL_CERTPROBLEM;
1543
0
      }
1544
0
      break;
1545
0
    default:
1546
0
      failf(data, "not supported file type for private key");
1547
0
      return CURLE_BAD_FUNCTION_ARGUMENT;
1548
0
    }
1549
1550
0
    ssl = SSL_new(ctx);
1551
0
    if(!ssl) {
1552
0
      failf(data, "unable to create an SSL structure");
1553
0
      return CURLE_OUT_OF_MEMORY;
1554
0
    }
1555
1556
0
    x509 = SSL_get_certificate(ssl);
1557
1558
0
    if(x509) {
1559
0
      EVP_PKEY *pktmp = X509_get_pubkey(x509);
1560
0
      EVP_PKEY_copy_parameters(pktmp, SSL_get_privatekey(ssl));
1561
0
      EVP_PKEY_free(pktmp);
1562
0
    }
1563
1564
0
#if !defined(OPENSSL_NO_RSA) && !defined(OPENSSL_NO_DEPRECATED_3_0)
1565
0
    {
1566
      /* If RSA is used, do not check the private key if its flags indicate
1567
       * it does not support it. */
1568
0
      EVP_PKEY *priv_key = SSL_get_privatekey(ssl);
1569
0
      if(EVP_PKEY_id(priv_key) == EVP_PKEY_RSA) {
1570
0
        RSA *rsa = EVP_PKEY_get1_RSA(priv_key);
1571
0
        if(RSA_flags(rsa) & RSA_METHOD_FLAG_NO_CHECK)
1572
0
          check_privkey = FALSE;
1573
0
        RSA_free(rsa); /* Decrement reference count */
1574
0
      }
1575
0
    }
1576
0
#endif
1577
1578
0
    SSL_free(ssl);
1579
1580
    /* If we are using DSA, we can copy the parameters from
1581
     * the private key */
1582
1583
0
    if(check_privkey == TRUE) {
1584
      /* Now we know that a key and cert have been set against
1585
       * the SSL context */
1586
0
      if(!SSL_CTX_check_private_key(ctx)) {
1587
0
        failf(data, "Private key does not match the certificate public key");
1588
0
        return CURLE_SSL_CERTPROBLEM;
1589
0
      }
1590
0
    }
1591
0
  }
1592
0
  return CURLE_OK;
1593
0
}
1594
1595
#ifdef CURLVERBOSE
1596
/* returns non-zero on failure */
1597
static CURLcode x509_name_oneline(const X509_NAME *a, struct dynbuf *d)
1598
0
{
1599
0
  BIO *bio_out = BIO_new(BIO_s_mem());
1600
0
  BUF_MEM *biomem;
1601
0
  int rc;
1602
0
  CURLcode result = CURLE_OUT_OF_MEMORY;
1603
1604
0
  if(bio_out) {
1605
0
    unsigned long flags = XN_FLAG_SEP_SPLUS_SPC |
1606
0
      (XN_FLAG_ONELINE & ~ASN1_STRFLGS_ESC_MSB & ~XN_FLAG_SPC_EQ);
1607
0
    curlx_dyn_reset(d);
1608
0
    rc = X509_NAME_print_ex(bio_out, a, 0, flags);
1609
0
    if(rc != -1) {
1610
0
      BIO_get_mem_ptr(bio_out, &biomem);
1611
0
      result = curlx_dyn_addn(d, biomem->data, biomem->length);
1612
0
    }
1613
0
    BIO_free(bio_out);
1614
0
  }
1615
0
  return result;
1616
0
}
1617
#endif
1618
1619
/**
1620
 * Global SSL init
1621
 *
1622
 * @retval 0 error initializing SSL
1623
 * @retval 1 SSL initialized successfully
1624
 */
1625
static int ossl_init(void)
1626
0
{
1627
0
  const uint64_t flags =
1628
0
#ifdef OPENSSL_INIT_ENGINE_ALL_BUILTIN
1629
    /* not present in BoringSSL */
1630
0
    OPENSSL_INIT_ENGINE_ALL_BUILTIN |
1631
0
#endif
1632
#ifdef CURL_DISABLE_OPENSSL_AUTO_LOAD_CONFIG
1633
    OPENSSL_INIT_NO_LOAD_CONFIG |
1634
#else
1635
0
    OPENSSL_INIT_LOAD_CONFIG |
1636
0
#endif
1637
0
    0;
1638
0
  OPENSSL_init_ssl(flags, NULL);
1639
1640
0
#ifndef HAVE_KEYLOG_UPSTREAM
1641
0
  Curl_tls_keylog_open();
1642
0
#endif
1643
1644
0
  return 1;
1645
0
}
1646
1647
/* Global cleanup */
1648
static void ossl_cleanup(void)
1649
0
{
1650
0
#ifndef HAVE_KEYLOG_UPSTREAM
1651
0
  Curl_tls_keylog_close();
1652
0
#endif
1653
0
}
1654
1655
/* Selects an OpenSSL crypto engine or provider.
1656
 */
1657
static CURLcode ossl_set_engine(struct Curl_easy *data, const char *name)
1658
0
{
1659
#ifdef USE_OPENSSL_ENGINE
1660
  CURLcode result = CURLE_SSL_ENGINE_NOTFOUND;
1661
  ENGINE *e = ENGINE_by_id(name);
1662
1663
  if(e) {
1664
1665
    if(data->state.engine) {
1666
      ENGINE_finish(data->state.engine);
1667
      ENGINE_free(data->state.engine);
1668
      data->state.engine = NULL;
1669
    }
1670
    if(!ENGINE_init(e)) {
1671
      char buf[256];
1672
1673
      ENGINE_free(e);
1674
      failf(data, "Failed to initialize SSL Engine '%s': %s",
1675
            name, ossl_strerror(ERR_get_error(), buf, sizeof(buf)));
1676
      result = CURLE_SSL_ENGINE_INITFAILED;
1677
      e = NULL;
1678
    }
1679
    else {
1680
      result = CURLE_OK;
1681
    }
1682
    data->state.engine = e;
1683
    return result;
1684
  }
1685
#endif
1686
0
#ifdef OPENSSL_HAS_PROVIDERS
1687
0
  return ossl_set_provider(data, name);
1688
#else
1689
  (void)name;
1690
  failf(data, "OpenSSL engine not found");
1691
  return CURLE_SSL_ENGINE_NOTFOUND;
1692
#endif
1693
0
}
1694
1695
/* Sets engine as default for all SSL operations
1696
 */
1697
static CURLcode ossl_set_engine_default(struct Curl_easy *data)
1698
0
{
1699
#ifdef USE_OPENSSL_ENGINE
1700
  if(data->state.engine) {
1701
    if(ENGINE_set_default(data->state.engine, ENGINE_METHOD_ALL) > 0) {
1702
      infof(data, "set default crypto engine '%s'",
1703
            ENGINE_get_id(data->state.engine));
1704
    }
1705
    else {
1706
      failf(data, "set default crypto engine '%s' failed",
1707
            ENGINE_get_id(data->state.engine));
1708
      return CURLE_SSL_ENGINE_SETFAILED;
1709
    }
1710
  }
1711
#else
1712
0
  (void)data;
1713
0
#endif
1714
0
  return CURLE_OK;
1715
0
}
1716
1717
/* Return list of OpenSSL crypto engine names.
1718
 */
1719
static struct curl_slist *ossl_engines_list(struct Curl_easy *data)
1720
0
{
1721
0
  struct curl_slist *list = NULL;
1722
#ifdef USE_OPENSSL_ENGINE
1723
  struct curl_slist *beg;
1724
  ENGINE *e;
1725
1726
  for(e = ENGINE_get_first(); e; e = ENGINE_get_next(e)) {
1727
    beg = curl_slist_append(list, ENGINE_get_id(e));
1728
    if(!beg) {
1729
      curl_slist_free_all(list);
1730
      return NULL;
1731
    }
1732
    list = beg;
1733
  }
1734
#endif
1735
0
  (void)data;
1736
0
  return list;
1737
0
}
1738
1739
#ifdef OPENSSL_HAS_PROVIDERS
1740
1741
static void ossl_provider_cleanup(struct Curl_easy *data)
1742
0
{
1743
0
  if(data->state.baseprov) {
1744
0
    OSSL_PROVIDER_unload(data->state.baseprov);
1745
0
    data->state.baseprov = NULL;
1746
0
  }
1747
0
  if(data->state.provider) {
1748
0
    OSSL_PROVIDER_unload(data->state.provider);
1749
0
    data->state.provider = NULL;
1750
0
  }
1751
0
  OSSL_LIB_CTX_free(data->state.libctx);
1752
0
  data->state.libctx = NULL;
1753
0
  curlx_safefree(data->state.propq);
1754
0
  data->state.provider_loaded = FALSE;
1755
0
}
1756
1757
0
#define MAX_PROVIDER_LEN 128 /* reasonable */
1758
1759
/* Selects an OpenSSL crypto provider.
1760
 *
1761
 * A provider might need an associated property, a string passed on to
1762
 * OpenSSL. Specify this as [PROVIDER][:PROPERTY]: separate the name and the
1763
 * property with a colon. No colon means no property is set.
1764
 *
1765
 * An example provider + property looks like "tpm2:?provider=tpm2".
1766
 */
1767
static CURLcode ossl_set_provider(struct Curl_easy *data, const char *iname)
1768
0
{
1769
0
  char name[MAX_PROVIDER_LEN + 1];
1770
0
  struct Curl_str prov;
1771
0
  const char *propq = NULL;
1772
1773
0
  if(!iname) {
1774
    /* clear and cleanup provider use */
1775
0
    ossl_provider_cleanup(data);
1776
0
    return CURLE_OK;
1777
0
  }
1778
0
  if(curlx_str_until(&iname, &prov, MAX_PROVIDER_LEN, ':'))
1779
0
    return CURLE_BAD_FUNCTION_ARGUMENT;
1780
1781
0
  if(!curlx_str_single(&iname, ':'))
1782
    /* there was a colon, get the propq until the end of string */
1783
0
    propq = iname;
1784
1785
  /* we need the name in a buffer, null-terminated */
1786
0
  memcpy(name, curlx_str(&prov), curlx_strlen(&prov));
1787
0
  name[curlx_strlen(&prov)] = 0;
1788
1789
0
  if(!data->state.libctx) {
1790
0
    OSSL_LIB_CTX *libctx = OSSL_LIB_CTX_new();
1791
0
    if(!libctx)
1792
0
      return CURLE_OUT_OF_MEMORY;
1793
0
    if(propq) {
1794
0
      data->state.propq = curlx_strdup(propq);
1795
0
      if(!data->state.propq) {
1796
0
        OSSL_LIB_CTX_free(libctx);
1797
0
        return CURLE_OUT_OF_MEMORY;
1798
0
      }
1799
0
    }
1800
0
    data->state.libctx = libctx;
1801
0
  }
1802
1803
0
#ifndef CURL_DISABLE_OPENSSL_AUTO_LOAD_CONFIG
1804
  /* load the configuration file into the library context before checking the
1805
   * provider availability */
1806
0
  if(!OSSL_LIB_CTX_load_config(data->state.libctx, NULL)) {
1807
0
    infof(data, "Failed to load default openssl config. Proceeding.");
1808
0
  }
1809
0
#endif
1810
1811
0
  if(OSSL_PROVIDER_available(data->state.libctx, name)) {
1812
    /* already loaded through the configuration - no action needed */
1813
0
    data->state.provider_loaded = TRUE;
1814
0
    return CURLE_OK;
1815
0
  }
1816
1817
0
  data->state.provider = OSSL_PROVIDER_try_load(data->state.libctx, name, 1);
1818
0
  if(!data->state.provider) {
1819
0
    char error_buffer[256];
1820
0
    failf(data, "Failed to initialize provider: %s",
1821
0
          ossl_strerror(ERR_get_error(), error_buffer, sizeof(error_buffer)));
1822
0
    ossl_provider_cleanup(data);
1823
0
    return CURLE_SSL_ENGINE_NOTFOUND;
1824
0
  }
1825
1826
  /* load the base provider as well */
1827
0
  data->state.baseprov = OSSL_PROVIDER_try_load(data->state.libctx, "base", 1);
1828
0
  if(!data->state.baseprov) {
1829
0
    ossl_provider_cleanup(data);
1830
0
    failf(data, "Failed to load base");
1831
0
    return CURLE_SSL_ENGINE_NOTFOUND;
1832
0
  }
1833
0
  else
1834
0
    data->state.provider_loaded = TRUE;
1835
0
  return CURLE_OK;
1836
0
}
1837
#endif
1838
1839
static CURLcode ossl_shutdown(struct Curl_cfilter *cf,
1840
                              struct Curl_easy *data,
1841
                              bool send_shutdown, bool *done)
1842
0
{
1843
0
  struct ssl_connect_data *connssl = cf->ctx;
1844
0
  struct ossl_ctx *octx = (struct ossl_ctx *)connssl->backend;
1845
0
  CURLcode result = CURLE_OK;
1846
0
  char buf[1024];
1847
0
  int nread = -1, err;
1848
0
  size_t i;
1849
1850
0
  DEBUGASSERT(octx);
1851
0
  if(!octx->ssl || cf->shutdown) {
1852
0
    *done = TRUE;
1853
0
    goto out;
1854
0
  }
1855
1856
0
  connssl->io_need = CURL_SSL_IO_NEED_NONE;
1857
0
  *done = FALSE;
1858
0
  if(!(SSL_get_shutdown(octx->ssl) & SSL_SENT_SHUTDOWN)) {
1859
    /* We have not started the shutdown from our side yet. Check
1860
     * if the server already sent us one. */
1861
0
    ERR_clear_error();
1862
0
    for(i = 0; i < 10; ++i) {
1863
0
      nread = SSL_read(octx->ssl, buf, (int)sizeof(buf));
1864
0
      CURL_TRC_CF(data, cf, "SSL shutdown not sent, read -> %d", nread);
1865
0
      if(nread <= 0)
1866
0
        break;
1867
0
    }
1868
0
    err = SSL_get_error(octx->ssl, nread);
1869
0
    if(!nread && err == SSL_ERROR_ZERO_RETURN) {
1870
0
      bool input_pending;
1871
      /* Yes, it did. */
1872
0
      if(!send_shutdown) {
1873
0
        CURL_TRC_CF(data, cf, "SSL shutdown received, not sending");
1874
0
        *done = TRUE;
1875
0
        goto out;
1876
0
      }
1877
0
      else if(!cf->next->cft->is_alive(cf->next, data, &input_pending)) {
1878
        /* Server closed the connection after its closy notify. It
1879
         * seems not interested to see our close notify, so do not
1880
         * send it. We are done. */
1881
0
        connssl->peer_closed = TRUE;
1882
0
        CURL_TRC_CF(data, cf, "peer closed connection");
1883
0
        *done = TRUE;
1884
0
        goto out;
1885
0
      }
1886
0
    }
1887
0
  }
1888
1889
  /* SSL should now have started the shutdown from our side. Since it
1890
   * was not complete, we are lacking the close notify from the server. */
1891
0
  if(send_shutdown && !(SSL_get_shutdown(octx->ssl) & SSL_SENT_SHUTDOWN)) {
1892
0
    int rc;
1893
0
    ERR_clear_error();
1894
0
    CURL_TRC_CF(data, cf, "send SSL close notify");
1895
0
    rc = SSL_shutdown(octx->ssl);
1896
0
    if(rc == 1) {
1897
0
      CURL_TRC_CF(data, cf, "SSL shutdown finished");
1898
0
      *done = TRUE;
1899
0
      goto out;
1900
0
    }
1901
0
    if(SSL_get_error(octx->ssl, rc) == SSL_ERROR_WANT_WRITE) {
1902
0
      CURL_TRC_CF(data, cf, "SSL shutdown still wants to send");
1903
0
      connssl->io_need = CURL_SSL_IO_NEED_SEND;
1904
0
      goto out;
1905
0
    }
1906
    /* Having sent the close notify, we use SSL_read() to get the
1907
     * missing close notify from the server. */
1908
0
  }
1909
1910
0
  for(i = 0; i < 10; ++i) {
1911
0
    ERR_clear_error();
1912
0
    nread = SSL_read(octx->ssl, buf, (int)sizeof(buf));
1913
0
    CURL_TRC_CF(data, cf, "SSL shutdown read -> %d", nread);
1914
0
    if(nread <= 0)
1915
0
      break;
1916
0
  }
1917
0
  err = SSL_get_error(octx->ssl, nread);
1918
0
  switch(err) {
1919
0
  case SSL_ERROR_ZERO_RETURN: /* no more data */
1920
0
    if(SSL_shutdown(octx->ssl) == 1)
1921
0
      CURL_TRC_CF(data, cf, "SSL shutdown finished");
1922
0
    else
1923
0
      CURL_TRC_CF(data, cf, "SSL shutdown not received, but closed");
1924
0
    *done = TRUE;
1925
0
    break;
1926
0
  case SSL_ERROR_NONE: /* did not get anything */
1927
0
  case SSL_ERROR_WANT_READ:
1928
    /* SSL has send its notify and now wants to read the reply
1929
     * from the server. We are not really interested in that. */
1930
0
    CURL_TRC_CF(data, cf, "SSL shutdown sent, want receive");
1931
0
    connssl->io_need = CURL_SSL_IO_NEED_RECV;
1932
0
    break;
1933
0
  case SSL_ERROR_WANT_WRITE:
1934
0
    CURL_TRC_CF(data, cf, "SSL shutdown send blocked");
1935
0
    connssl->io_need = CURL_SSL_IO_NEED_SEND;
1936
0
    break;
1937
0
  default:
1938
    /* Server seems to have closed the connection without sending us
1939
     * a close notify. */
1940
0
    {
1941
0
      VERBOSE(unsigned long sslerr = ERR_get_error());
1942
0
      CURL_TRC_CF(data, cf, "SSL shutdown, ignore recv error: '%s', errno %d",
1943
0
                  (sslerr ?
1944
0
                   ossl_strerror(sslerr, buf, sizeof(buf)) :
1945
0
                   SSL_ERROR_to_str(err)),
1946
0
                  SOCKERRNO);
1947
0
    }
1948
0
    *done = TRUE;
1949
0
    result = CURLE_OK;
1950
0
    break;
1951
0
  }
1952
1953
0
out:
1954
0
  cf->shutdown = (result || *done);
1955
0
  if(cf->shutdown || (connssl->io_need != CURL_SSL_IO_NEED_NONE))
1956
0
    connssl->input_pending = FALSE;
1957
0
  return result;
1958
0
}
1959
1960
static void ossl_close(struct Curl_cfilter *cf, struct Curl_easy *data)
1961
0
{
1962
0
  struct ssl_connect_data *connssl = cf->ctx;
1963
0
  struct ossl_ctx *octx = (struct ossl_ctx *)connssl->backend;
1964
1965
0
  (void)data;
1966
0
  DEBUGASSERT(octx);
1967
1968
0
  connssl->input_pending = FALSE;
1969
0
  if(octx->ssl) {
1970
0
    SSL_free(octx->ssl);
1971
0
    octx->ssl = NULL;
1972
0
  }
1973
0
  if(octx->ssl_ctx) {
1974
0
    SSL_CTX_free(octx->ssl_ctx);
1975
0
    octx->ssl_ctx = NULL;
1976
0
    octx->x509_store_setup = FALSE;
1977
0
  }
1978
0
  if(octx->bio_method) {
1979
0
    ossl_bio_cf_method_free(octx->bio_method);
1980
0
    octx->bio_method = NULL;
1981
0
  }
1982
0
}
1983
1984
/*
1985
 * This function is called when the 'data' struct is going away. Close
1986
 * down everything and free all resources!
1987
 */
1988
static void ossl_close_all(struct Curl_easy *data)
1989
0
{
1990
#ifdef USE_OPENSSL_ENGINE
1991
  if(data->state.engine) {
1992
    ENGINE_finish(data->state.engine);
1993
    ENGINE_free(data->state.engine);
1994
    data->state.engine = NULL;
1995
  }
1996
#else
1997
0
  (void)data;
1998
0
#endif
1999
0
#ifdef OPENSSL_HAS_PROVIDERS
2000
0
  ossl_provider_cleanup(data);
2001
0
#endif
2002
0
}
2003
2004
/* ====================================================== */
2005
2006
/* Quote from RFC2818 section 3.1 "Server Identity"
2007
2008
   If a subjectAltName extension of type dNSName is present, that MUST
2009
   be used as the identity. Otherwise, the (most specific) Common Name
2010
   field in the Subject field of the certificate MUST be used. Although
2011
   the use of the Common Name is existing practice, it is deprecated and
2012
   Certification Authorities are encouraged to use the dNSName instead.
2013
2014
   Matching is performed using the matching rules specified by
2015
   [RFC2459]. If more than one identity of a given type is present in
2016
   the certificate (e.g., more than one dNSName name, a match in any one
2017
   of the set is considered acceptable.) Names may contain the wildcard
2018
   character * which is considered to match any single domain name
2019
   component or component fragment. E.g., *.a.com matches foo.a.com but
2020
   not bar.foo.a.com. f*.com matches foo.com but not bar.com.
2021
2022
   In some cases, the URI is specified as an IP address rather than a
2023
   hostname. In this case, the iPAddress subjectAltName must be present
2024
   in the certificate and must exactly match the IP in the URI.
2025
2026
   This function is now used from ngtcp2 (QUIC) as well.
2027
*/
2028
static CURLcode ossl_verifyhost(struct Curl_easy *data,
2029
                                struct connectdata *conn,
2030
                                struct ssl_peer *peer,
2031
                                X509 *server_cert)
2032
0
{
2033
0
  bool matched = FALSE;
2034
0
  int target; /* target type, GEN_DNS or GEN_IPADD */
2035
0
  size_t addrlen = 0;
2036
0
  STACK_OF(GENERAL_NAME) *altnames;
2037
0
#ifdef USE_IPV6
2038
0
  struct in6_addr addr;
2039
#else
2040
  struct in_addr addr;
2041
#endif
2042
0
  CURLcode result = CURLE_OK;
2043
0
  bool dNSName = FALSE; /* if a dNSName field exists in the cert */
2044
0
  bool iPAddress = FALSE; /* if an iPAddress field exists in the cert */
2045
0
  size_t hostlen = strlen(peer->origin->hostname);
2046
2047
0
  (void)conn;
2048
0
  switch(peer->type) {
2049
0
  case CURL_SSL_PEER_IPV4:
2050
0
    if(!curlx_inet_pton(AF_INET, peer->origin->hostname, &addr))
2051
0
      return CURLE_PEER_FAILED_VERIFICATION;
2052
0
    target = GEN_IPADD;
2053
0
    addrlen = sizeof(struct in_addr);
2054
0
    break;
2055
0
#ifdef USE_IPV6
2056
0
  case CURL_SSL_PEER_IPV6:
2057
0
    if(!curlx_inet_pton(AF_INET6, peer->origin->hostname, &addr))
2058
0
      return CURLE_PEER_FAILED_VERIFICATION;
2059
0
    target = GEN_IPADD;
2060
0
    addrlen = sizeof(struct in6_addr);
2061
0
    break;
2062
0
#endif
2063
0
  case CURL_SSL_PEER_DNS:
2064
0
    target = GEN_DNS;
2065
0
    break;
2066
0
  default:
2067
0
    DEBUGASSERT(0);
2068
0
    failf(data, "unexpected SSL peer type: %d", (int)peer->type);
2069
0
    return CURLE_PEER_FAILED_VERIFICATION;
2070
0
  }
2071
2072
  /* get a "list" of alternative names */
2073
0
  altnames = X509_get_ext_d2i(server_cert, NID_subject_alt_name, NULL, NULL);
2074
2075
0
  if(altnames) {
2076
#ifdef HAVE_BORINGSSL_LIKE
2077
    size_t numalts;
2078
    size_t i;
2079
#else
2080
0
    int numalts;
2081
0
    int i;
2082
0
#endif
2083
2084
    /* get amount of alternatives, RFC2459 claims there MUST be at least
2085
       one, but we do not depend on it... */
2086
0
    numalts = sk_GENERAL_NAME_num(altnames);
2087
2088
    /* loop through all alternatives - until a dnsmatch */
2089
0
    for(i = 0; (i < numalts) && !matched; i++) {
2090
      /* get a handle to alternative name number i */
2091
0
      const GENERAL_NAME *check = sk_GENERAL_NAME_value(altnames, i);
2092
2093
0
      if(check->type == GEN_DNS)
2094
0
        dNSName = TRUE;
2095
0
      else if(check->type == GEN_IPADD)
2096
0
        iPAddress = TRUE;
2097
2098
      /* only check alternatives of the same type the target is */
2099
0
      if(check->type == target) {
2100
        /* get data and length */
2101
0
        const char *altptr = (const char *)ASN1_STRING_get0_data(check->d.ia5);
2102
0
        size_t altlen = (size_t)ASN1_STRING_length(check->d.ia5);
2103
2104
0
        switch(target) {
2105
0
        case GEN_DNS: /* name/pattern comparison */
2106
          /* The OpenSSL man page explicitly says: "In general it cannot be
2107
             assumed that the data returned by ASN1_STRING_data() is null
2108
             terminated or does not contain embedded nulls.", but also that
2109
             "The actual format of the data depends on the actual string
2110
             type itself: for example for an IA5String the data is ASCII"
2111
2112
             It has been however verified that in 0.9.6 and 0.9.7, IA5String
2113
             is always null-terminated.
2114
          */
2115
0
          if((altlen == strlen(altptr)) &&
2116
             /* if this is not true, there was an embedded zero in the name
2117
                string and we cannot match it. */
2118
0
             Curl_cert_hostcheck(altptr, altlen,
2119
0
                                 peer->origin->hostname, hostlen)) {
2120
0
            matched = TRUE;
2121
0
            infof(data, "  subjectAltName: \"%s\" matches cert's \"%.*s\"",
2122
0
                  peer->origin->user_hostname, (int)altlen, altptr);
2123
0
          }
2124
0
          break;
2125
2126
0
        case GEN_IPADD: /* IP address comparison */
2127
          /* compare alternative IP address if the data chunk is the same size
2128
             our server IP address is */
2129
0
          if((altlen == addrlen) && !memcmp(altptr, &addr, altlen)) {
2130
0
            matched = TRUE;
2131
0
            infof(data, "  subjectAltName: \"%s\" matches cert's IP address!",
2132
0
                  peer->origin->user_hostname);
2133
0
          }
2134
0
          break;
2135
0
        }
2136
0
      }
2137
0
    }
2138
0
    GENERAL_NAMES_free(altnames);
2139
0
  }
2140
2141
0
  if(matched)
2142
    /* an alternative name matched */
2143
0
    ;
2144
0
  else if(dNSName || iPAddress) {
2145
0
    const char *tname = (peer->type == CURL_SSL_PEER_DNS) ? "hostname" :
2146
0
                        (peer->type == CURL_SSL_PEER_IPV4) ?
2147
0
                        "IPv4 address" : "IPv6 address";
2148
0
    infof(data, " subjectAltName does not match %s %s", tname,
2149
0
          peer->origin->user_hostname);
2150
0
    failf(data, "SSL: no alternative certificate subject name matches "
2151
0
          "target %s '%s'", tname, peer->origin->user_hostname);
2152
0
    result = CURLE_PEER_FAILED_VERIFICATION;
2153
0
  }
2154
0
  else {
2155
    /* we have to look to the last occurrence of a commonName in the
2156
       distinguished one to get the most significant one. */
2157
0
    int i = -1;
2158
0
    unsigned char *cn = NULL;
2159
0
    int cnlen = 0;
2160
0
    bool free_cn = FALSE;
2161
2162
    /* The following is done because of a bug in 0.9.6b */
2163
0
    const X509_NAME *name = X509_get_subject_name(server_cert);
2164
0
    if(name) {
2165
0
      int j;
2166
0
      while((j = X509_NAME_get_index_by_NID(name, NID_commonName, i)) >= 0)
2167
0
        i = j;
2168
0
    }
2169
2170
    /* we have the name entry and we now convert this to a string
2171
       that we can use for comparison. Doing this we support BMPstring,
2172
       UTF8, etc. */
2173
2174
0
    if(i >= 0) {
2175
0
      const ASN1_STRING *tmp =
2176
0
        X509_NAME_ENTRY_get_data(X509_NAME_get_entry(name, i));
2177
2178
      /* In OpenSSL 0.9.7d and earlier, ASN1_STRING_to_UTF8 fails if the input
2179
         is already UTF-8 encoded. We check for this case and copy the raw
2180
         string manually to avoid the problem. This code can be made
2181
         conditional in the future when OpenSSL has been fixed. */
2182
0
      if(tmp) {
2183
0
        if(ASN1_STRING_type(tmp) == V_ASN1_UTF8STRING) {
2184
0
          cnlen = ASN1_STRING_length(tmp);
2185
0
          cn = (unsigned char *)CURL_UNCONST(ASN1_STRING_get0_data(tmp));
2186
0
        }
2187
0
        else { /* not a UTF8 name */
2188
0
          cnlen = ASN1_STRING_to_UTF8(&cn, tmp);
2189
0
          free_cn = TRUE;
2190
0
        }
2191
2192
0
        if((cnlen <= 0) || !cn)
2193
0
          result = CURLE_OUT_OF_MEMORY;
2194
0
        else if((size_t)cnlen != strlen((char *)cn)) {
2195
          /* there was a null-terminator before the end of string, this
2196
             cannot match and we return failure! */
2197
0
          failf(data, "SSL: illegal cert name field");
2198
0
          result = CURLE_PEER_FAILED_VERIFICATION;
2199
0
        }
2200
0
      }
2201
0
    }
2202
2203
0
    if(result)
2204
      /* error already detected, pass through */
2205
0
      ;
2206
0
    else if(!cn) {
2207
0
      failf(data, "SSL: unable to obtain common name from peer certificate");
2208
0
      result = CURLE_PEER_FAILED_VERIFICATION;
2209
0
    }
2210
0
    else if(!Curl_cert_hostcheck((const char *)cn, cnlen,
2211
0
                                 peer->origin->hostname, hostlen)) {
2212
0
      failf(data, "SSL: certificate subject name '%s' does not match "
2213
0
            "target hostname '%s'", cn, peer->origin->user_hostname);
2214
0
      result = CURLE_PEER_FAILED_VERIFICATION;
2215
0
    }
2216
0
    else {
2217
0
      infof(data, " common name: %s (matched)", cn);
2218
0
    }
2219
0
    if(free_cn)
2220
0
      OPENSSL_free(cn);
2221
0
  }
2222
2223
0
  return result;
2224
0
}
2225
2226
#ifndef OPENSSL_NO_OCSP
2227
static CURLcode verifystatus(struct Curl_cfilter *cf,
2228
                             struct Curl_easy *data,
2229
                             struct ossl_ctx *octx)
2230
0
{
2231
0
  int i, ocsp_status;
2232
#ifdef HAVE_BORINGSSL_LIKE
2233
  const uint8_t *status;
2234
#else
2235
0
  unsigned char *status;
2236
0
#endif
2237
0
  const unsigned char *p;
2238
0
  CURLcode result = CURLE_OK;
2239
0
  OCSP_RESPONSE *rsp = NULL;
2240
0
  OCSP_BASICRESP *br = NULL;
2241
0
  X509_STORE     *st = NULL;
2242
0
  STACK_OF(X509) *ch = NULL;
2243
0
  X509 *cert;
2244
0
  OCSP_CERTID *id = NULL;
2245
0
  int cert_status, crl_reason;
2246
0
  ASN1_GENERALIZEDTIME *rev, *thisupd, *nextupd;
2247
0
  int ret;
2248
0
  long len;
2249
2250
0
  (void)cf;
2251
0
  DEBUGASSERT(octx);
2252
2253
0
  len = (long)SSL_get_tlsext_status_ocsp_resp(octx->ssl, &status);
2254
2255
0
  if(!status) {
2256
0
    failf(data, "No OCSP response received");
2257
0
    result = CURLE_SSL_INVALIDCERTSTATUS;
2258
0
    goto end;
2259
0
  }
2260
0
  p = status;
2261
0
  rsp = d2i_OCSP_RESPONSE(NULL, &p, len);
2262
0
  if(!rsp) {
2263
0
    failf(data, "Invalid OCSP response");
2264
0
    result = CURLE_SSL_INVALIDCERTSTATUS;
2265
0
    goto end;
2266
0
  }
2267
2268
0
  ocsp_status = OCSP_response_status(rsp);
2269
0
  if(ocsp_status != OCSP_RESPONSE_STATUS_SUCCESSFUL) {
2270
0
    failf(data, "Invalid OCSP response status: %s (%d)",
2271
0
          OCSP_response_status_str(ocsp_status), ocsp_status);
2272
0
    result = CURLE_SSL_INVALIDCERTSTATUS;
2273
0
    goto end;
2274
0
  }
2275
2276
0
  br = OCSP_response_get1_basic(rsp);
2277
0
  if(!br) {
2278
0
    failf(data, "Invalid OCSP response");
2279
0
    result = CURLE_SSL_INVALIDCERTSTATUS;
2280
0
    goto end;
2281
0
  }
2282
2283
0
  ch = SSL_get_peer_cert_chain(octx->ssl);
2284
0
  if(!ch) {
2285
0
    failf(data, "Could not get peer certificate chain");
2286
0
    result = CURLE_SSL_INVALIDCERTSTATUS;
2287
0
    goto end;
2288
0
  }
2289
0
  st = SSL_CTX_get_cert_store(octx->ssl_ctx);
2290
2291
0
  if(OCSP_basic_verify(br, ch, st, 0) <= 0) {
2292
0
    failf(data, "OCSP response verification failed");
2293
0
    result = CURLE_SSL_INVALIDCERTSTATUS;
2294
0
    goto end;
2295
0
  }
2296
2297
  /* Compute the certificate's ID */
2298
0
  cert = SSL_get1_peer_certificate(octx->ssl);
2299
0
  if(!cert) {
2300
0
    failf(data, "Error getting peer certificate");
2301
0
    result = CURLE_SSL_INVALIDCERTSTATUS;
2302
0
    goto end;
2303
0
  }
2304
2305
0
  for(i = 0; i < (int)sk_X509_num(ch); i++) {
2306
0
    X509 *issuer = sk_X509_value(ch, (ossl_valsize_t)i);
2307
0
    if(X509_check_issued(issuer, cert) == X509_V_OK) {
2308
      /* Note to analysis tools: using SHA1 here is fine. The `id`
2309
       * generated is used as a hash lookup key, not as a verifier
2310
       * of the OCSP data itself. This all according to RFC 5019. */
2311
0
      id = OCSP_cert_to_id(EVP_sha1(), cert, issuer);
2312
0
      break;
2313
0
    }
2314
0
  }
2315
0
  X509_free(cert);
2316
2317
0
  if(!id) {
2318
0
    failf(data, "Error computing OCSP ID");
2319
0
    result = CURLE_SSL_INVALIDCERTSTATUS;
2320
0
    goto end;
2321
0
  }
2322
2323
  /* Find the single OCSP response corresponding to the certificate ID */
2324
0
  ret = OCSP_resp_find_status(br, id, &cert_status, &crl_reason, &rev,
2325
0
                              &thisupd, &nextupd);
2326
0
  OCSP_CERTID_free(id);
2327
0
  if(ret != 1) {
2328
0
    failf(data, "Could not find certificate ID in OCSP response");
2329
0
    result = CURLE_SSL_INVALIDCERTSTATUS;
2330
0
    goto end;
2331
0
  }
2332
2333
  /* Validate the OCSP response issuing and update times.
2334
   * - `thisupd` is the time the OCSP response was issued
2335
   * - `nextupd` is the time the OCSP response should be updated
2336
   *    (valid life time assigned by the OCSP responder)
2337
   * - 3rd param: how many seconds of clock skew we allow between
2338
   *   our clock and the instance that issued the OCSP response
2339
   * - 4th param: how many seconds in the past `thisupd` may be, with
2340
   *   -1 meaning there is no limit. */
2341
0
  if(!OCSP_check_validity(thisupd, nextupd, 300L, -1L)) {
2342
0
    failf(data, "OCSP response has expired");
2343
0
    result = CURLE_SSL_INVALIDCERTSTATUS;
2344
0
    goto end;
2345
0
  }
2346
2347
0
  infof(data, "SSL certificate status: %s (%d)",
2348
0
        OCSP_cert_status_str(cert_status), cert_status);
2349
2350
0
  switch(cert_status) {
2351
0
  case V_OCSP_CERTSTATUS_GOOD:
2352
0
    break;
2353
2354
0
  case V_OCSP_CERTSTATUS_REVOKED:
2355
0
    result = CURLE_SSL_INVALIDCERTSTATUS;
2356
0
    failf(data, "SSL certificate revocation reason: %s (%d)",
2357
0
          OCSP_crl_reason_str(crl_reason), crl_reason);
2358
0
    goto end;
2359
2360
0
  case V_OCSP_CERTSTATUS_UNKNOWN:
2361
0
  default:
2362
0
    result = CURLE_SSL_INVALIDCERTSTATUS;
2363
0
    goto end;
2364
0
  }
2365
2366
0
end:
2367
0
  if(br)
2368
0
    OCSP_BASICRESP_free(br);
2369
0
  OCSP_RESPONSE_free(rsp);
2370
2371
0
  return result;
2372
0
}
2373
#endif
2374
2375
static const char *ssl_msg_type(int ssl_ver, int msg)
2376
0
{
2377
0
  if(ssl_ver == SSL3_VERSION_MAJOR) {
2378
0
    switch(msg) {
2379
0
    case SSL3_MT_HELLO_REQUEST:
2380
0
      return "Hello request";
2381
0
    case SSL3_MT_CLIENT_HELLO:
2382
0
      return "Client hello";
2383
0
    case SSL3_MT_SERVER_HELLO:
2384
0
      return "Server hello";
2385
0
#ifdef SSL3_MT_NEWSESSION_TICKET
2386
0
    case SSL3_MT_NEWSESSION_TICKET:
2387
0
      return "Newsession Ticket";
2388
0
#endif
2389
0
    case SSL3_MT_CERTIFICATE:
2390
0
      return "Certificate";
2391
0
    case SSL3_MT_SERVER_KEY_EXCHANGE:
2392
0
      return "Server key exchange";
2393
0
    case SSL3_MT_CLIENT_KEY_EXCHANGE:
2394
0
      return "Client key exchange";
2395
0
    case SSL3_MT_CERTIFICATE_REQUEST:
2396
0
      return "Request CERT";
2397
0
    case SSL3_MT_SERVER_DONE:
2398
0
      return "Server finished";
2399
0
    case SSL3_MT_CERTIFICATE_VERIFY:
2400
0
      return "CERT verify";
2401
0
    case SSL3_MT_FINISHED:
2402
0
      return "Finished";
2403
0
#ifdef SSL3_MT_CERTIFICATE_STATUS
2404
0
    case SSL3_MT_CERTIFICATE_STATUS:
2405
0
      return "Certificate Status";
2406
0
#endif
2407
0
#ifdef SSL3_MT_ENCRYPTED_EXTENSIONS
2408
0
    case SSL3_MT_ENCRYPTED_EXTENSIONS:
2409
0
      return "Encrypted Extensions";
2410
0
#endif
2411
0
#ifdef SSL3_MT_SUPPLEMENTAL_DATA
2412
0
    case SSL3_MT_SUPPLEMENTAL_DATA:
2413
0
      return "Supplemental data";
2414
0
#endif
2415
0
#ifdef SSL3_MT_END_OF_EARLY_DATA
2416
0
    case SSL3_MT_END_OF_EARLY_DATA:
2417
0
      return "End of early data";
2418
0
#endif
2419
0
#ifdef SSL3_MT_KEY_UPDATE
2420
0
    case SSL3_MT_KEY_UPDATE:
2421
0
      return "Key update";
2422
0
#endif
2423
0
#ifdef SSL3_MT_NEXT_PROTO
2424
0
    case SSL3_MT_NEXT_PROTO:
2425
0
      return "Next protocol";
2426
0
#endif
2427
0
#ifdef SSL3_MT_MESSAGE_HASH
2428
0
    case SSL3_MT_MESSAGE_HASH:
2429
0
      return "Message hash";
2430
0
#endif
2431
0
    }
2432
0
  }
2433
0
  return "Unknown";
2434
0
}
2435
2436
static const char *tls_rt_type(int type)
2437
0
{
2438
0
  switch(type) {
2439
0
#ifdef SSL3_RT_HEADER
2440
0
  case SSL3_RT_HEADER:
2441
0
    return "TLS header";
2442
0
#endif
2443
0
  case SSL3_RT_CHANGE_CIPHER_SPEC:
2444
0
    return "TLS change cipher";
2445
0
  case SSL3_RT_ALERT:
2446
0
    return "TLS alert";
2447
0
  case SSL3_RT_HANDSHAKE:
2448
0
    return "TLS handshake";
2449
0
  case SSL3_RT_APPLICATION_DATA:
2450
0
    return "TLS app data";
2451
0
  default:
2452
0
    return "TLS Unknown";
2453
0
  }
2454
0
}
2455
2456
/*
2457
 * Our callback from the SSL/TLS layers.
2458
 */
2459
static void ossl_trace(int direction, int ssl_ver, int content_type,
2460
                       const void *buf, size_t len, SSL *ssl,
2461
                       void *userp)
2462
0
{
2463
0
  const char *verstr;
2464
0
  struct Curl_cfilter *cf = userp;
2465
0
  struct Curl_easy *data = NULL;
2466
0
  char unknown[32];
2467
2468
0
  if(!cf)
2469
0
    return;
2470
0
  data = CF_DATA_CURRENT(cf);
2471
0
  if(!data || !data->set.fdebug || (direction && direction != 1))
2472
0
    return;
2473
2474
0
  switch(ssl_ver) {
2475
0
#ifdef SSL3_VERSION
2476
0
  case SSL3_VERSION:
2477
0
    verstr = "SSLv3";
2478
0
    break;
2479
0
#endif
2480
0
  case TLS1_VERSION:
2481
0
    verstr = "TLSv1.0";
2482
0
    break;
2483
0
#ifdef TLS1_1_VERSION
2484
0
  case TLS1_1_VERSION:
2485
0
    verstr = "TLSv1.1";
2486
0
    break;
2487
0
#endif
2488
0
#ifdef TLS1_2_VERSION
2489
0
  case TLS1_2_VERSION:
2490
0
    verstr = "TLSv1.2";
2491
0
    break;
2492
0
#endif
2493
0
  case TLS1_3_VERSION:
2494
0
    verstr = "TLSv1.3";
2495
0
    break;
2496
0
  default:
2497
0
    curl_msnprintf(unknown, sizeof(unknown), "(%x)", (unsigned int)ssl_ver);
2498
0
    verstr = unknown;
2499
0
    break;
2500
0
  }
2501
2502
  /* Log progress for interesting records only (like Handshake or Alert), skip
2503
   * all raw record headers (content_type == SSL3_RT_HEADER or ssl_ver == 0).
2504
   * For TLS 1.3, skip notification of the decrypted inner Content-Type.
2505
   */
2506
0
  if(ssl_ver
2507
0
#ifdef SSL3_RT_HEADER
2508
0
     && content_type != SSL3_RT_HEADER
2509
0
#endif
2510
0
#ifdef SSL3_RT_INNER_CONTENT_TYPE
2511
0
     && content_type != SSL3_RT_INNER_CONTENT_TYPE
2512
0
#endif
2513
0
    ) {
2514
0
    const char *msg_name = "Truncated message";
2515
0
    const char *tls_rt_name;
2516
0
    char ssl_buf[1024];
2517
0
    int msg_type = 0;
2518
0
    int txt_len;
2519
2520
    /* the info given when the version is zero is not that useful for us */
2521
2522
0
    ssl_ver >>= 8; /* check the upper 8 bits only below */
2523
2524
    /* SSLv2 does not seem to have TLS record-type headers, so OpenSSL
2525
     * always pass-up content-type as 0, but the interesting message-type
2526
     * is at 'buf[0]'.
2527
     */
2528
0
    if(ssl_ver == SSL3_VERSION_MAJOR && content_type)
2529
0
      tls_rt_name = tls_rt_type(content_type);
2530
0
    else
2531
0
      tls_rt_name = "";
2532
2533
0
    if(content_type == SSL3_RT_CHANGE_CIPHER_SPEC) {
2534
0
      if(len) {
2535
0
        msg_type = *(const unsigned char *)buf;
2536
0
        msg_name = "Change cipher spec";
2537
0
      }
2538
0
    }
2539
0
    else if(content_type == SSL3_RT_ALERT) {
2540
0
      if(len >= 2) {
2541
0
        msg_type =
2542
0
          (((const unsigned char *)buf)[0] << 8) +
2543
0
           ((const unsigned char *)buf)[1];
2544
0
        msg_name = SSL_alert_desc_string_long(msg_type);
2545
0
      }
2546
0
    }
2547
0
    else if(len) {
2548
0
      msg_type = *(const unsigned char *)buf;
2549
0
      msg_name = ssl_msg_type(ssl_ver, msg_type);
2550
0
    }
2551
2552
0
    txt_len = curl_msnprintf(ssl_buf, sizeof(ssl_buf),
2553
0
                             "%s (%s), %s, %s (%d):\n",
2554
0
                             verstr, direction ? "OUT" : "IN",
2555
0
                             tls_rt_name, msg_name, msg_type);
2556
0
    Curl_debug(data, CURLINFO_TEXT, ssl_buf, (size_t)txt_len);
2557
0
  }
2558
2559
0
  Curl_debug(data, (direction == 1) ? CURLINFO_SSL_DATA_OUT :
2560
0
             CURLINFO_SSL_DATA_IN, (const char *)buf, len);
2561
0
  (void)ssl;
2562
0
}
2563
2564
static CURLcode ossl_set_ssl_version_min_max(struct Curl_cfilter *cf,
2565
                                             SSL_CTX *ctx,
2566
                                             unsigned int ssl_version_min)
2567
0
{
2568
0
  struct ssl_primary_config *conn_config = Curl_ssl_cf_get_primary_config(cf);
2569
  /* first, TLS min version... */
2570
0
  long curl_ssl_version_min = (long)ssl_version_min;
2571
0
  long curl_ssl_version_max;
2572
2573
  /* convert curl min SSL version option to OpenSSL constant */
2574
#if defined(HAVE_BORINGSSL_LIKE) || defined(LIBRESSL_VERSION_NUMBER)
2575
  uint16_t ossl_ssl_version_min = 0;
2576
  uint16_t ossl_ssl_version_max = 0;
2577
#else
2578
0
  long ossl_ssl_version_min = 0;
2579
0
  long ossl_ssl_version_max = 0;
2580
0
#endif
2581
  /* it cannot be default here */
2582
0
  DEBUGASSERT(curl_ssl_version_min != CURL_SSLVERSION_DEFAULT);
2583
0
  switch(curl_ssl_version_min) {
2584
0
  case CURL_SSLVERSION_TLSv1: /* TLS 1.x */
2585
0
  case CURL_SSLVERSION_TLSv1_0:
2586
0
    ossl_ssl_version_min = TLS1_VERSION;
2587
0
    break;
2588
0
  case CURL_SSLVERSION_TLSv1_1:
2589
0
    ossl_ssl_version_min = TLS1_1_VERSION;
2590
0
    break;
2591
0
  case CURL_SSLVERSION_TLSv1_2:
2592
0
    ossl_ssl_version_min = TLS1_2_VERSION;
2593
0
    break;
2594
0
  case CURL_SSLVERSION_TLSv1_3:
2595
0
    ossl_ssl_version_min = TLS1_3_VERSION;
2596
0
    break;
2597
0
  }
2598
2599
  /* ... then, TLS max version */
2600
0
  curl_ssl_version_max = (long)conn_config->version_max;
2601
2602
  /* convert curl max SSL version option to OpenSSL constant */
2603
0
  switch(curl_ssl_version_max) {
2604
0
  case CURL_SSLVERSION_MAX_TLSv1_0:
2605
0
    ossl_ssl_version_max = TLS1_VERSION;
2606
0
    break;
2607
0
  case CURL_SSLVERSION_MAX_TLSv1_1:
2608
0
    ossl_ssl_version_max = TLS1_1_VERSION;
2609
0
    break;
2610
0
  case CURL_SSLVERSION_MAX_TLSv1_2:
2611
0
    ossl_ssl_version_max = TLS1_2_VERSION;
2612
0
    break;
2613
0
  case CURL_SSLVERSION_MAX_TLSv1_3:
2614
0
    ossl_ssl_version_max = TLS1_3_VERSION;
2615
0
    break;
2616
0
  case CURL_SSLVERSION_MAX_NONE:  /* none selected */
2617
0
  case CURL_SSLVERSION_MAX_DEFAULT:  /* max selected */
2618
0
  default:
2619
    /* SSL_CTX_set_max_proto_version states that: setting the maximum to 0
2620
       enables protocol versions up to the highest version supported by
2621
       the library */
2622
0
    ossl_ssl_version_max = 0;
2623
0
    break;
2624
0
  }
2625
2626
0
  if(!SSL_CTX_set_min_proto_version(ctx, ossl_ssl_version_min) ||
2627
0
     !SSL_CTX_set_max_proto_version(ctx, ossl_ssl_version_max))
2628
0
    return CURLE_SSL_CONNECT_ERROR;
2629
2630
0
  return CURLE_OK;
2631
0
}
2632
2633
CURLcode Curl_ossl_add_session(struct Curl_cfilter *cf,
2634
                               struct Curl_easy *data,
2635
                               struct ossl_ctx *octx,
2636
                               const char *ssl_peer_key,
2637
                               SSL_SESSION *session,
2638
                               const char *alpn,
2639
                               unsigned char *quic_tp,
2640
                               size_t quic_tp_len,
2641
                               struct Curl_ssl_session **psession)
2642
0
{
2643
0
  struct Curl_ssl_session *sc_session = NULL, *sc_dup = NULL;
2644
0
  unsigned char *der_session_buf = NULL;
2645
0
  unsigned char *qtp_clone = NULL;
2646
0
  CURLcode result = CURLE_OK;
2647
2648
0
  if(psession)
2649
0
    *psession = NULL;
2650
0
  if(!cf || !data)
2651
0
    goto out;
2652
2653
0
  if(Curl_ssl_scache_use(cf, data)) {
2654
0
    size_t der_session_size;
2655
0
    unsigned char *der_session_ptr;
2656
0
    size_t earlydata_max = 0;
2657
0
    int ietf_tls_id = SSL_version(octx->ssl);
2658
2659
0
    der_session_size = i2d_SSL_SESSION(session, NULL);
2660
0
    if(der_session_size == 0) {
2661
0
      result = CURLE_OUT_OF_MEMORY;
2662
0
      goto out;
2663
0
    }
2664
2665
0
    der_session_buf = der_session_ptr = curlx_malloc(der_session_size);
2666
0
    if(!der_session_buf) {
2667
0
      result = CURLE_OUT_OF_MEMORY;
2668
0
      goto out;
2669
0
    }
2670
2671
0
    der_session_size = i2d_SSL_SESSION(session, &der_session_ptr);
2672
0
    if(der_session_size == 0) {
2673
0
      result = CURLE_OUT_OF_MEMORY;
2674
0
      goto out;
2675
0
    }
2676
2677
0
#ifdef HAVE_OPENSSL_EARLYDATA
2678
0
    earlydata_max = SSL_SESSION_get_max_early_data(session);
2679
0
#endif
2680
0
    if(quic_tp && quic_tp_len) {
2681
0
      qtp_clone = curlx_memdup0((const char *)quic_tp, quic_tp_len);
2682
0
      if(!qtp_clone) {
2683
0
        result = CURLE_OUT_OF_MEMORY;
2684
0
        goto out;
2685
0
      }
2686
0
    }
2687
2688
0
    result = Curl_ssl_session_create2(der_session_buf, der_session_size,
2689
0
                                      ietf_tls_id, alpn,
2690
0
                                      (curl_off_t)time(NULL) +
2691
0
                                        SSL_SESSION_get_timeout(session),
2692
0
                                      earlydata_max, qtp_clone, quic_tp_len,
2693
0
                                      &sc_session);
2694
0
    der_session_buf = NULL;  /* took ownership of sdata */
2695
#ifdef USE_APPLE_SECTRUST
2696
    if(!result)
2697
      sc_session->sectrust_verified = octx->sectrust_verified;
2698
#endif
2699
0
    if(!result && psession &&  /* return a duplicate if asked for and FTP */
2700
0
       (cf->conn->scheme->family == CURLPROTO_FTP)) {
2701
0
        result = Curl_ssl_session_dup(sc_session, &sc_dup);
2702
0
    }
2703
0
    if(!result) {
2704
0
      result = Curl_ssl_scache_put(cf, data, ssl_peer_key, sc_session);
2705
      /* took ownership of `sc_session` */
2706
0
      sc_session = NULL;
2707
0
    }
2708
0
  }
2709
2710
0
out:
2711
0
  curlx_free(der_session_buf);
2712
0
  if(!result && psession) {
2713
0
    *psession = sc_dup;
2714
0
    sc_dup = NULL;
2715
0
  }
2716
0
  Curl_ssl_session_destroy(sc_session);
2717
0
  Curl_ssl_session_destroy(sc_dup);
2718
0
  return result;
2719
0
}
2720
2721
/* The "new session" callback must return zero if the session can be removed
2722
 * or non-zero if the session has been put into the session cache.
2723
 */
2724
static int ossl_new_session_cb(SSL *ssl, SSL_SESSION *ssl_sessionid)
2725
0
{
2726
0
  struct Curl_cfilter *cf = (struct Curl_cfilter *)SSL_get_app_data(ssl);
2727
0
  if(cf) {
2728
0
    struct Curl_easy *data = CF_DATA_CURRENT(cf);
2729
0
    struct ssl_connect_data *connssl = cf->ctx;
2730
0
    struct ossl_ctx *octx = (struct ossl_ctx *)connssl->backend;
2731
0
    struct Curl_ssl_session *session = NULL;
2732
0
    Curl_ossl_add_session(cf, data, octx, connssl->peer.scache_key,
2733
0
                          ssl_sessionid, connssl->negotiated.alpn, NULL,
2734
0
                          0, &session);
2735
0
    if(session) { /* remember current TLS session */
2736
0
      Curl_ssl_session_destroy(connssl->session);
2737
0
      connssl->session = session;
2738
0
    }
2739
0
  }
2740
0
  return 0;
2741
0
}
2742
2743
static CURLcode load_cacert_from_memory(X509_STORE *store,
2744
                                        const struct curl_blob *ca_info_blob)
2745
0
{
2746
  /* these need to be freed at the end */
2747
0
  BIO *cbio = NULL;
2748
0
  STACK_OF(X509_INFO) *inf = NULL;
2749
2750
  /* everything else is a reference */
2751
0
  int i, count = 0;
2752
0
  X509_INFO *itmp = NULL;
2753
2754
0
  if(ca_info_blob->len > (size_t)INT_MAX)
2755
0
    return CURLE_SSL_CACERT_BADFILE;
2756
2757
0
  cbio = BIO_new_mem_buf(ca_info_blob->data, (int)ca_info_blob->len);
2758
0
  if(!cbio)
2759
0
    return CURLE_OUT_OF_MEMORY;
2760
2761
0
  inf = PEM_X509_INFO_read_bio(cbio, NULL, NULL, NULL);
2762
0
  if(!inf) {
2763
0
    BIO_free(cbio);
2764
0
    return CURLE_SSL_CACERT_BADFILE;
2765
0
  }
2766
2767
  /* add each entry from PEM file to x509_store */
2768
0
  for(i = 0; i < (int)sk_X509_INFO_num(inf); ++i) {
2769
0
    itmp = sk_X509_INFO_value(inf, (ossl_valsize_t)i);
2770
0
    if(itmp->x509) {
2771
0
      if(X509_STORE_add_cert(store, itmp->x509)) {
2772
0
        ++count;
2773
0
      }
2774
0
      else {
2775
        /* set count to 0 to return an error */
2776
0
        count = 0;
2777
0
        break;
2778
0
      }
2779
0
    }
2780
0
    if(itmp->crl) {
2781
0
      if(X509_STORE_add_crl(store, itmp->crl)) {
2782
0
        ++count;
2783
0
      }
2784
0
      else {
2785
        /* set count to 0 to return an error */
2786
0
        count = 0;
2787
0
        break;
2788
0
      }
2789
0
    }
2790
0
  }
2791
2792
0
#if defined(__clang__) && __clang_major__ >= 16
2793
0
#pragma clang diagnostic push
2794
0
#pragma clang diagnostic ignored "-Wcast-function-type-strict"
2795
0
#endif
2796
0
  sk_X509_INFO_pop_free(inf, X509_INFO_free);
2797
0
#if defined(__clang__) && __clang_major__ >= 16
2798
0
#pragma clang diagnostic pop
2799
0
#endif
2800
0
  BIO_free(cbio);
2801
2802
  /* if we did not end up importing anything, treat that as an error */
2803
0
  return (count > 0) ? CURLE_OK : CURLE_SSL_CACERT_BADFILE;
2804
0
}
2805
2806
#ifdef USE_WIN32_CRYPTO
2807
static CURLcode ossl_win_load_store(struct Curl_easy *data,
2808
                                    struct Curl_cfilter *cf,
2809
                                    const char *win_store,
2810
                                    X509_STORE *store,
2811
                                    bool *padded)
2812
{
2813
  CURLcode result = CURLE_OK;
2814
  HCERTSTORE hStore;
2815
2816
  *padded = FALSE;
2817
2818
  hStore = CertOpenSystemStoreA(0, win_store);
2819
  if(hStore) {
2820
    PCCERT_CONTEXT pContext = NULL;
2821
    /* The array of enhanced key usage OIDs varies per certificate and
2822
       is declared outside of the loop so that rather than malloc/free each
2823
       iteration we can grow it with realloc, when necessary. */
2824
    CERT_ENHKEY_USAGE *enhkey_usage = NULL;
2825
    DWORD enhkey_usage_size = 0;
2826
    VERBOSE(size_t total = 0);
2827
    VERBOSE(size_t imported = 0);
2828
2829
    /* This loop makes a best effort to import all valid certificates from
2830
       the MS root store. If a certificate cannot be imported it is
2831
       skipped. 'result' is used to store only hard-fail conditions (such
2832
       as out of memory) that cause an early break. */
2833
    result = CURLE_OK;
2834
    for(;;) {
2835
      X509 *x509;
2836
      FILETIME now;
2837
      BYTE key_usage[2];
2838
      DWORD req_size;
2839
      const unsigned char *encoded_cert;
2840
      pContext = CertEnumCertificatesInStore(hStore, pContext);
2841
      if(!pContext)
2842
        break;
2843
2844
      VERBOSE(++total);
2845
2846
#if defined(DEBUGBUILD) && defined(CURLVERBOSE)
2847
      {
2848
        char cert_name[256];
2849
        if(!CertGetNameStringA(pContext, CERT_NAME_SIMPLE_DISPLAY_TYPE, 0,
2850
                               NULL, cert_name, sizeof(cert_name)))
2851
          infof(data, "SSL: unknown cert name");
2852
        else
2853
          infof(data, "SSL: Checking cert \"%s\"", cert_name);
2854
      }
2855
#endif
2856
      encoded_cert = (const unsigned char *)pContext->pbCertEncoded;
2857
      if(!encoded_cert)
2858
        continue;
2859
2860
      GetSystemTimeAsFileTime(&now);
2861
      if(CompareFileTime(&pContext->pCertInfo->NotBefore, &now) > 0 ||
2862
         CompareFileTime(&now, &pContext->pCertInfo->NotAfter) > 0)
2863
        continue;
2864
2865
      /* If key usage exists check for signing attribute */
2866
      if(CertGetIntendedKeyUsage(pContext->dwCertEncodingType,
2867
                                 pContext->pCertInfo,
2868
                                 key_usage, sizeof(key_usage))) {
2869
        if(!(key_usage[0] & CERT_KEY_CERT_SIGN_KEY_USAGE))
2870
          continue;
2871
      }
2872
      else if(GetLastError())
2873
        continue;
2874
2875
      /* If enhanced key usage exists check for server auth attribute.
2876
       *
2877
       * Note "In a Microsoft environment, a certificate might also have
2878
       * EKU extended properties that specify valid uses for the
2879
       * certificate."  The call below checks both, and behavior varies
2880
       * depending on what is found. For more details see
2881
       * CertGetEnhancedKeyUsage doc.
2882
       */
2883
      if(CertGetEnhancedKeyUsage(pContext, 0, NULL, &req_size) && req_size) {
2884
        if(req_size > enhkey_usage_size) {
2885
          void *tmp = curlx_realloc(enhkey_usage, req_size);
2886
2887
          if(!tmp) {
2888
            failf(data, "SSL: Out of memory allocating for OID list");
2889
            result = CURLE_OUT_OF_MEMORY;
2890
            break;
2891
          }
2892
2893
          enhkey_usage = (CERT_ENHKEY_USAGE *)tmp;
2894
          enhkey_usage_size = req_size;
2895
        }
2896
2897
        if(CertGetEnhancedKeyUsage(pContext, 0, enhkey_usage, &req_size)) {
2898
          if(!enhkey_usage->cUsageIdentifier) {
2899
            /* "If GetLastError returns CRYPT_E_NOT_FOUND, the certificate
2900
               is good for all uses. If it returns zero, the certificate
2901
               has no valid uses." */
2902
            if((HRESULT)GetLastError() != CRYPT_E_NOT_FOUND)
2903
              continue;
2904
          }
2905
          else {
2906
            DWORD i;
2907
            bool found = FALSE;
2908
2909
            for(i = 0; i < enhkey_usage->cUsageIdentifier; ++i) {
2910
              if(!strcmp("1.3.6.1.5.5.7.3.1" /* OID server auth */,
2911
                         enhkey_usage->rgpszUsageIdentifier[i])) {
2912
                found = TRUE;
2913
                break;
2914
              }
2915
            }
2916
2917
            if(!found)
2918
              continue;
2919
          }
2920
        }
2921
        else
2922
          continue;
2923
      }
2924
      else
2925
        continue;
2926
2927
      x509 = d2i_X509(NULL, &encoded_cert, (long)pContext->cbCertEncoded);
2928
      if(!x509)
2929
        continue;
2930
2931
      /* Try to import the certificate. This may fail for legitimate reasons
2932
         such as duplicate certificate, which is allowed by MS but not
2933
         OpenSSL. */
2934
      if(X509_STORE_add_cert(store, x509) == 1) {
2935
        VERBOSE(++imported);
2936
#ifdef DEBUGBUILD
2937
        infof(data, "SSL: Imported cert");
2938
#endif
2939
        *padded = TRUE;
2940
      }
2941
      X509_free(x509);
2942
    }
2943
2944
    curlx_free(enhkey_usage);
2945
    CertFreeCertificateContext(pContext);
2946
    CertCloseStore(hStore, 0);
2947
2948
    CURL_TRC_CF(data, cf,
2949
                "ossl_win_load_store() found: %zu imported: %zu certs in %s.",
2950
                total, imported, win_store);
2951
2952
    if(result)
2953
      return result;
2954
  }
2955
2956
  return result;
2957
}
2958
2959
static CURLcode ossl_windows_load_anchors(struct Curl_cfilter *cf,
2960
                                          struct Curl_easy *data,
2961
                                          X509_STORE *store,
2962
                                          bool *padded)
2963
{
2964
  /* Import certificates from the Windows root certificate store if
2965
     requested.
2966
     https://stackoverflow.com/questions/9507184/
2967
     https://github.com/d3x0r/SACK/blob/ff15424d3c581b86d40f818532e5a400c516d39d/src/netlib/ssl_layer.c#L1410
2968
     https://datatracker.ietf.org/doc/html/rfc5280 */
2969
  const char *win_stores[] = {
2970
    "ROOT",   /* Trusted Root Certification Authorities */
2971
    "CA"      /* Intermediate Certification Authorities */
2972
  };
2973
  size_t i;
2974
  CURLcode result = CURLE_OK;
2975
2976
  *padded = FALSE;
2977
  for(i = 0; i < CURL_ARRAYSIZE(win_stores); ++i) {
2978
    bool store_added = FALSE;
2979
    result = ossl_win_load_store(data, cf, win_stores[i], store, &store_added);
2980
    if(result)
2981
      return result;
2982
    if(store_added) {
2983
      CURL_TRC_CF(data, cf, "added trust anchors from Windows %s store",
2984
                  win_stores[i]);
2985
      *padded = TRUE;
2986
    }
2987
    else
2988
      infof(data, "error importing Windows %s store, continuing anyway",
2989
            win_stores[i]);
2990
  }
2991
  return result;
2992
}
2993
2994
#endif /* USE_WIN32_CRYPTO */
2995
2996
static CURLcode ossl_load_trust_anchors(struct Curl_cfilter *cf,
2997
                                        struct Curl_easy *data,
2998
                                        struct ossl_ctx *octx,
2999
                                        X509_STORE *store)
3000
0
{
3001
0
  struct ssl_primary_config *conn_config = Curl_ssl_cf_get_primary_config(cf);
3002
0
  struct ssl_config_data *ssl_config = Curl_ssl_cf_get_config(cf, data);
3003
0
  CURLcode result = CURLE_OK;
3004
0
  const char * const ssl_cafile =
3005
    /* CURLOPT_CAINFO_BLOB overrides CURLOPT_CAINFO */
3006
0
    (conn_config->ca_info_blob ? NULL : conn_config->CAfile);
3007
0
  const char * const ssl_capath = conn_config->CApath;
3008
0
  bool have_native_check = FALSE;
3009
3010
0
  octx->store_is_empty = TRUE;
3011
0
  if(ssl_config->native_ca_store) {
3012
#ifdef USE_WIN32_CRYPTO
3013
    bool added = FALSE;
3014
    result = ossl_windows_load_anchors(cf, data, store, &added);
3015
    if(result)
3016
      return result;
3017
    if(added) {
3018
      infof(data, "  Native: Windows System Stores ROOT+CA");
3019
      octx->store_is_empty = FALSE;
3020
    }
3021
#elif defined(USE_APPLE_SECTRUST)
3022
    infof(data, "  Native: Apple SecTrust");
3023
    have_native_check = TRUE;
3024
#endif
3025
0
  }
3026
3027
0
  if(conn_config->ca_info_blob) {
3028
0
    result = load_cacert_from_memory(store, conn_config->ca_info_blob);
3029
0
    if(result) {
3030
0
      failf(data, "error adding trust anchors from certificate blob: %d",
3031
0
            (int)result);
3032
0
      return result;
3033
0
    }
3034
0
    infof(data, "  CA Blob from configuration");
3035
0
    octx->store_is_empty = FALSE;
3036
0
  }
3037
3038
0
  if(ssl_cafile || ssl_capath) {
3039
0
#ifdef HAVE_OPENSSL3
3040
    /* OpenSSL 3.0.0 has deprecated SSL_CTX_load_verify_locations */
3041
0
    if(ssl_cafile) {
3042
0
      if(!X509_STORE_load_file(store, ssl_cafile)) {
3043
0
        if(octx->store_is_empty && !have_native_check) {
3044
          /* Fail if we insist on successfully verifying the server. */
3045
0
          failf(data, "error adding trust anchors from file: %s", ssl_cafile);
3046
0
          return CURLE_SSL_CACERT_BADFILE;
3047
0
        }
3048
0
        else
3049
0
          infof(data, "error setting certificate file, continuing anyway");
3050
0
      }
3051
0
      infof(data, "  CAfile: %s", ssl_cafile);
3052
0
      octx->store_is_empty = FALSE;
3053
0
    }
3054
0
    if(ssl_capath) {
3055
0
      if(!X509_STORE_load_path(store, ssl_capath)) {
3056
0
        if(octx->store_is_empty && !have_native_check) {
3057
          /* Fail if we insist on successfully verifying the server. */
3058
0
          failf(data, "error adding trust anchors from path: %s", ssl_capath);
3059
0
          return CURLE_SSL_CACERT_BADFILE;
3060
0
        }
3061
0
        else
3062
0
          infof(data, "error setting certificate path, continuing anyway");
3063
0
      }
3064
0
      infof(data, "  CApath: %s", ssl_capath);
3065
0
      octx->store_is_empty = FALSE;
3066
0
    }
3067
#else
3068
    /* tell OpenSSL where to find CA certificates that are used to verify the
3069
       server's certificate. */
3070
    if(!X509_STORE_load_locations(store, ssl_cafile, ssl_capath)) {
3071
      if(octx->store_is_empty && !have_native_check) {
3072
        /* Fail if we insist on successfully verifying the server. */
3073
        failf(data, "error adding trust anchors from locations:"
3074
              "  CAfile: %s CApath: %s",
3075
              ssl_cafile ? ssl_cafile : "none",
3076
              ssl_capath ? ssl_capath : "none");
3077
        return CURLE_SSL_CACERT_BADFILE;
3078
      }
3079
      else {
3080
        infof(data, "error setting certificate verify locations,"
3081
              " continuing anyway");
3082
      }
3083
    }
3084
    if(ssl_cafile)
3085
      infof(data, "  CAfile: %s", ssl_cafile);
3086
    if(ssl_capath)
3087
      infof(data, "  CApath: %s", ssl_capath);
3088
    octx->store_is_empty = FALSE;
3089
#endif
3090
0
  }
3091
3092
#ifdef CURL_CA_FALLBACK
3093
  if(octx->store_is_empty) {
3094
    /* verifying the peer without any CA certificates does not
3095
       work so use OpenSSL's built-in default as fallback */
3096
    X509_STORE_set_default_paths(store);
3097
    infof(data, "  OpenSSL default paths (fallback)");
3098
    octx->store_is_empty = FALSE;
3099
  }
3100
#endif
3101
0
  if(octx->store_is_empty && !have_native_check)
3102
0
    infof(data, "  no trust anchors configured");
3103
3104
0
  return result;
3105
0
}
3106
3107
static CURLcode ossl_populate_x509_store(struct Curl_cfilter *cf,
3108
                                         struct Curl_easy *data,
3109
                                         struct ossl_ctx *octx,
3110
                                         X509_STORE *store)
3111
0
{
3112
0
  struct ssl_primary_config *conn_config = Curl_ssl_cf_get_primary_config(cf);
3113
0
  struct ssl_config_data *ssl_config = Curl_ssl_cf_get_config(cf, data);
3114
0
  CURLcode result = CURLE_OK;
3115
0
  X509_LOOKUP *lookup = NULL;
3116
0
  const char * const ssl_crlfile = ssl_config->primary.CRLfile;
3117
0
  unsigned long x509flags = 0;
3118
3119
0
  CURL_TRC_CF(data, cf, "configuring OpenSSL's x509 trust store");
3120
0
  if(!store)
3121
0
    return CURLE_OUT_OF_MEMORY;
3122
3123
0
  if(!conn_config->verifypeer) {
3124
0
    infof(data, "SSL Trust: peer verification disabled");
3125
0
    return CURLE_OK;
3126
0
  }
3127
3128
0
  infof(data, "SSL Trust Anchors:");
3129
0
  result = ossl_load_trust_anchors(cf, data, octx, store);
3130
0
  if(result)
3131
0
    return result;
3132
3133
  /* Does not make sense to load a CRL file without peer verification */
3134
0
  if(ssl_crlfile) {
3135
    /* tell OpenSSL where to find CRL file that is used to check certificate
3136
     * revocation */
3137
0
    lookup = X509_STORE_add_lookup(store, X509_LOOKUP_file());
3138
0
    if(!lookup ||
3139
0
       (!X509_load_crl_file(lookup, ssl_crlfile, X509_FILETYPE_PEM))) {
3140
0
      failf(data, "error loading CRL file: %s", ssl_crlfile);
3141
0
      return CURLE_SSL_CRL_BADFILE;
3142
0
    }
3143
0
    x509flags = X509_V_FLAG_CRL_CHECK | X509_V_FLAG_CRL_CHECK_ALL;
3144
0
    infof(data, " CRLfile: %s", ssl_crlfile);
3145
0
  }
3146
3147
  /* Try building a chain using issuers in the trusted store first to avoid
3148
     problems with server-sent legacy intermediates. Newer versions of
3149
     OpenSSL do alternate chain checking by default but we do not know how to
3150
     determine that in a reliable manner.
3151
     https://web.archive.org/web/20190422050538/rt.openssl.org/Ticket/Display.html?id=3621
3152
  */
3153
0
  x509flags |= X509_V_FLAG_TRUSTED_FIRST;
3154
3155
0
  if(!ssl_config->no_partialchain && !ssl_crlfile) {
3156
    /* Have intermediate certificates in the trust store be treated as
3157
       trust-anchors, in the same way as self-signed root CA certificates are.
3158
       This allows users to verify servers using the intermediate cert only,
3159
       instead of needing the whole chain.
3160
3161
       Due to OpenSSL bug https://github.com/openssl/openssl/issues/5081 we
3162
       cannot do partial chains with a CRL check.
3163
    */
3164
0
    x509flags |= X509_V_FLAG_PARTIAL_CHAIN;
3165
0
  }
3166
0
  (void)X509_STORE_set_flags(store, x509flags);
3167
3168
0
  return result;
3169
0
}
3170
3171
/* key to use at `multi->proto_hash` */
3172
0
#define MPROTO_OSSL_X509_KEY  "tls:ossl:x509:share"
3173
3174
struct ossl_x509_share {
3175
  char *CAfile;         /* CAfile path used to generate X509 store */
3176
  X509_STORE *store;    /* cached X509 store or NULL if none */
3177
  struct curltime time; /* when the cached store was created */
3178
  BIT(store_is_empty);  /* no certs/paths/blobs are in the store */
3179
  BIT(no_partialchain); /* keep partial chain state */
3180
};
3181
3182
static void oss_x509_share_free(void *key, size_t key_len, void *p)
3183
0
{
3184
0
  struct ossl_x509_share *share = p;
3185
0
  DEBUGASSERT(key_len == (sizeof(MPROTO_OSSL_X509_KEY) - 1));
3186
0
  DEBUGASSERT(!memcmp(MPROTO_OSSL_X509_KEY, key, key_len));
3187
0
  (void)key;
3188
0
  (void)key_len;
3189
0
  if(share->store) {
3190
0
    X509_STORE_free(share->store);
3191
0
  }
3192
0
  curlx_free(share->CAfile);
3193
0
  curlx_free(share);
3194
0
}
3195
3196
static bool ossl_cached_x509_store_expired(struct Curl_easy *data,
3197
                                           const struct ossl_x509_share *mb)
3198
0
{
3199
0
  const struct ssl_general_config *cfg = &data->set.general_ssl;
3200
0
  if(cfg->ca_cache_timeout < 0)
3201
0
    return FALSE;
3202
0
  else {
3203
0
    timediff_t elapsed_ms = curlx_ptimediff_ms(Curl_pgrs_now(data), &mb->time);
3204
0
    timediff_t timeout_ms = cfg->ca_cache_timeout * (timediff_t)1000;
3205
3206
0
    return elapsed_ms >= timeout_ms;
3207
0
  }
3208
0
}
3209
3210
static bool ossl_cached_x509_store_different(struct Curl_cfilter *cf,
3211
                                             const struct Curl_easy *data,
3212
                                             const struct ossl_x509_share *mb)
3213
0
{
3214
0
  struct ssl_primary_config *conn_config = Curl_ssl_cf_get_primary_config(cf);
3215
0
  struct ssl_config_data *ssl_config =
3216
0
    Curl_ssl_cf_get_config(cf, CURL_UNCONST(data));
3217
0
  if(mb->no_partialchain != ssl_config->no_partialchain)
3218
0
    return TRUE;
3219
0
  if(!mb->CAfile || !conn_config->CAfile)
3220
0
    return mb->CAfile != conn_config->CAfile;
3221
0
  return strcmp(mb->CAfile, conn_config->CAfile);
3222
0
}
3223
3224
static X509_STORE *ossl_get_cached_x509_store(struct Curl_cfilter *cf,
3225
                                              struct Curl_easy *data,
3226
                                              bool *pempty)
3227
0
{
3228
0
  struct Curl_multi *multi = data->multi;
3229
0
  struct ossl_x509_share *share;
3230
0
  X509_STORE *store = NULL;
3231
3232
0
  DEBUGASSERT(multi);
3233
0
  *pempty = TRUE;
3234
0
  share = multi ? Curl_hash_pick(&multi->proto_hash,
3235
0
                                 CURL_UNCONST(MPROTO_OSSL_X509_KEY),
3236
0
                                 sizeof(MPROTO_OSSL_X509_KEY) - 1) : NULL;
3237
0
  if(share && share->store &&
3238
0
     !ossl_cached_x509_store_expired(data, share) &&
3239
0
     !ossl_cached_x509_store_different(cf, data, share)) {
3240
0
    store = share->store;
3241
0
    *pempty = (bool)share->store_is_empty;
3242
0
  }
3243
3244
0
  return store;
3245
0
}
3246
3247
static void ossl_set_cached_x509_store(struct Curl_cfilter *cf,
3248
                                       struct Curl_easy *data,
3249
                                       X509_STORE *store,
3250
                                       bool is_empty)
3251
0
{
3252
0
  struct ssl_primary_config *conn_config = Curl_ssl_cf_get_primary_config(cf);
3253
0
  struct Curl_multi *multi = data->multi;
3254
0
  struct ossl_x509_share *share;
3255
3256
0
  DEBUGASSERT(multi);
3257
0
  if(!multi)
3258
0
    return;
3259
0
  share = Curl_hash_pick(&multi->proto_hash,
3260
0
                         CURL_UNCONST(MPROTO_OSSL_X509_KEY),
3261
0
                         sizeof(MPROTO_OSSL_X509_KEY) - 1);
3262
3263
0
  if(!share) {
3264
0
    share = curlx_calloc(1, sizeof(*share));
3265
0
    if(!share)
3266
0
      return;
3267
0
    if(!Curl_hash_add2(&multi->proto_hash,
3268
0
                       CURL_UNCONST(MPROTO_OSSL_X509_KEY),
3269
0
                       sizeof(MPROTO_OSSL_X509_KEY) - 1,
3270
0
                       share, oss_x509_share_free)) {
3271
0
      curlx_free(share);
3272
0
      return;
3273
0
    }
3274
0
  }
3275
3276
0
  if(X509_STORE_up_ref(store)) {
3277
0
    char *CAfile = NULL;
3278
0
    struct ssl_config_data *ssl_config =
3279
0
      Curl_ssl_cf_get_config(cf, CURL_UNCONST(data));
3280
3281
0
    if(conn_config->CAfile) {
3282
0
      CAfile = curlx_strdup(conn_config->CAfile);
3283
0
      if(!CAfile) {
3284
0
        X509_STORE_free(store);
3285
0
        return;
3286
0
      }
3287
0
    }
3288
3289
0
    if(share->store) {
3290
0
      X509_STORE_free(share->store);
3291
0
      curlx_free(share->CAfile);
3292
0
    }
3293
3294
0
    share->time = *Curl_pgrs_now(data);
3295
0
    share->store = store;
3296
0
    share->store_is_empty = is_empty;
3297
0
    share->CAfile = CAfile;
3298
0
    share->no_partialchain = ssl_config->no_partialchain;
3299
0
  }
3300
0
}
3301
3302
CURLcode Curl_ssl_setup_x509_store(struct Curl_cfilter *cf,
3303
                                   struct Curl_easy *data,
3304
                                   struct ossl_ctx *octx)
3305
0
{
3306
0
  struct ssl_primary_config *conn_config = Curl_ssl_cf_get_primary_config(cf);
3307
0
  struct ssl_config_data *ssl_config = Curl_ssl_cf_get_config(cf, data);
3308
0
  CURLcode result = CURLE_OK;
3309
0
  X509_STORE *cached_store;
3310
0
  bool cache_criteria_met, is_empty;
3311
3312
  /* Consider the X509 store cacheable if it comes exclusively from a CAfile,
3313
     or no source is provided and we are falling back to OpenSSL's built-in
3314
     default. */
3315
0
  cache_criteria_met = (data->set.general_ssl.ca_cache_timeout != 0) &&
3316
0
    conn_config->verifypeer &&
3317
0
    !conn_config->CApath &&
3318
0
    !conn_config->ca_info_blob &&
3319
0
    !ssl_config->primary.CRLfile &&
3320
0
    !ssl_config->native_ca_store;
3321
3322
0
  ERR_set_mark();
3323
3324
0
  cached_store = ossl_get_cached_x509_store(cf, data, &is_empty);
3325
0
  if(cached_store && cache_criteria_met && X509_STORE_up_ref(cached_store)) {
3326
0
    SSL_CTX_set_cert_store(octx->ssl_ctx, cached_store);
3327
0
    octx->store_is_empty = is_empty;
3328
0
  }
3329
0
  else {
3330
0
    X509_STORE *store = SSL_CTX_get_cert_store(octx->ssl_ctx);
3331
3332
0
    result = ossl_populate_x509_store(cf, data, octx, store);
3333
0
    if(result == CURLE_OK && cache_criteria_met) {
3334
0
      ossl_set_cached_x509_store(cf, data, store, (bool)octx->store_is_empty);
3335
0
    }
3336
0
  }
3337
3338
0
  ERR_pop_to_mark();
3339
3340
0
  return result;
3341
0
}
3342
3343
static bool ossl_apply_session(
3344
  struct ossl_ctx *octx,
3345
  struct Curl_cfilter *cf,
3346
  struct Curl_easy *data,
3347
  struct alpn_spec *alpns,
3348
  Curl_ossl_init_session_reuse_cb *sess_reuse_cb,
3349
  struct Curl_ssl_session *scs)
3350
0
{
3351
0
  struct ssl_config_data *ssl_config = Curl_ssl_cf_get_config(cf, data);
3352
0
  struct ssl_primary_config *conn_cfg = Curl_ssl_cf_get_primary_config(cf);
3353
0
  const unsigned char *der_sessionid = scs->sdata;
3354
0
  size_t der_sessionid_size = scs->sdata_len;
3355
0
  SSL_SESSION *ssl_session = NULL;
3356
3357
  /* If OpenSSL does not accept the session from the cache, this
3358
   * is not an error. We continue without it. */
3359
0
  ssl_session = d2i_SSL_SESSION(NULL, &der_sessionid,
3360
0
                                (long)der_sessionid_size);
3361
0
  if(ssl_session) {
3362
0
    if(!SSL_set_session(octx->ssl, ssl_session)) {
3363
0
      VERBOSE(char error_buffer[256]);
3364
0
      infof(data, "SSL: SSL_set_session not accepted, "
3365
0
            "continuing without: %s",
3366
0
            ossl_strerror(ERR_get_error(), error_buffer,
3367
0
                          sizeof(error_buffer)));
3368
0
    }
3369
0
    else {
3370
0
      if(conn_cfg->verifypeer &&
3371
0
         (SSL_get_verify_result(octx->ssl) != X509_V_OK)
3372
#ifdef USE_APPLE_SECTRUST
3373
         /* if sectrust is used and verified the session before */
3374
         && (!ssl_config->native_ca_store || !scs->sectrust_verified)
3375
#endif
3376
0
        ) {
3377
        /* Session was from unverified connection, cannot reuse here */
3378
0
        SSL_set_session(octx->ssl, NULL);
3379
0
        infof(data, "SSL session not peer verified, not reusing");
3380
0
      }
3381
0
      else {
3382
0
        infof(data, "SSL reusing session with ALPN '%s'",
3383
0
              scs->alpn ? scs->alpn : "-");
3384
0
        octx->reused_session = TRUE;
3385
#ifdef USE_APPLE_SECTRUST
3386
        octx->sectrust_session = scs->sectrust_verified;
3387
#endif
3388
0
        infof(data, "SSL verify result: %lx",
3389
0
              (unsigned long)SSL_get_verify_result(octx->ssl));
3390
0
#ifdef HAVE_OPENSSL_EARLYDATA
3391
0
        if(ssl_config->earlydata && scs->alpn &&
3392
0
           SSL_SESSION_get_max_early_data(ssl_session) &&
3393
0
           !cf->conn->bits.connect_only &&
3394
0
           (SSL_version(octx->ssl) == TLS1_3_VERSION)) {
3395
0
          bool do_early_data = FALSE;
3396
0
          if(sess_reuse_cb)
3397
0
            (void)sess_reuse_cb(cf, data, alpns, scs, &do_early_data);
3398
0
          if(do_early_data) {
3399
            /* We only try the ALPN protocol the session used before,
3400
             * otherwise we might send early data for the wrong protocol */
3401
0
            Curl_alpn_restrict_to(alpns, scs->alpn);
3402
0
          }
3403
0
        }
3404
#else
3405
        (void)alpns;
3406
        (void)ssl_config;
3407
        (void)sess_reuse_cb;
3408
#endif
3409
0
      }
3410
0
    }
3411
0
    SSL_SESSION_free(ssl_session);
3412
0
  }
3413
0
  else {
3414
0
    infof(data, "SSL session not accepted by OpenSSL, continuing without");
3415
0
  }
3416
0
  return (bool)octx->reused_session;
3417
0
}
3418
3419
static CURLcode ossl_init_session_and_alpns(
3420
  struct ossl_ctx *octx,
3421
  struct Curl_cfilter *cf,
3422
  struct Curl_easy *data,
3423
  struct ssl_peer *peer,
3424
  const struct alpn_spec *alpns_requested,
3425
  Curl_ossl_init_session_reuse_cb *sess_reuse_cb)
3426
0
{
3427
0
  struct ssl_primary_config *conn_cfg = Curl_ssl_cf_get_primary_config(cf);
3428
0
  struct alpn_spec alpns;
3429
0
  CURLcode result;
3430
3431
0
  Curl_alpn_copy(&alpns, alpns_requested);
3432
3433
0
  octx->reused_session = FALSE;
3434
3435
0
  if((cf->sockindex == SECONDARYSOCKET) && !(cf->cft->flags & CF_TYPE_PROXY)) {
3436
    /* FTP is a bitch. On TLS secured transfers, it is a common server
3437
     * option to require the client to use the SAME TLS session as on
3438
     * the control connection or it fails the request. See #22225. */
3439
0
    struct Curl_ssl_session *scs =
3440
0
      Curl_ssl_get_cf_session(data, cf->cft, FIRSTSOCKET);
3441
0
    if(scs) {
3442
0
      if(ossl_apply_session(octx, cf, data, &alpns, sess_reuse_cb, scs))
3443
0
        CURL_TRC_CF(data, cf, "applied SSL session from control connection");
3444
0
    }
3445
0
  }
3446
3447
0
  if(!octx->reused_session &&
3448
0
     Curl_ssl_scache_use(cf, data) && !conn_cfg->verifystatus) {
3449
0
    struct Curl_ssl_session *scs = NULL;
3450
3451
0
    result = Curl_ssl_scache_take(cf, data, peer->scache_key, &scs);
3452
0
    if(!result && scs && scs->sdata && scs->sdata_len) {
3453
0
      (void)ossl_apply_session(octx, cf, data, &alpns, sess_reuse_cb, scs);
3454
0
    }
3455
0
    Curl_ssl_scache_return(cf, data, peer->scache_key, scs);
3456
0
  }
3457
3458
0
  if(alpns.count) {
3459
0
    struct alpn_proto_buf proto;
3460
0
    memset(&proto, 0, sizeof(proto));
3461
0
    result = Curl_alpn_to_proto_buf(&proto, &alpns);
3462
0
    if(result) {
3463
0
      failf(data, "Error determining ALPN");
3464
0
      return CURLE_SSL_CONNECT_ERROR;
3465
0
    }
3466
0
    if(SSL_set_alpn_protos(octx->ssl, proto.data, proto.len)) {
3467
0
      failf(data, "Error setting ALPN");
3468
0
      return CURLE_SSL_CONNECT_ERROR;
3469
0
    }
3470
0
  }
3471
3472
0
  return CURLE_OK;
3473
0
}
3474
3475
#ifdef HAVE_SSL_SET1_ECH_CONFIG_LIST
3476
bool Curl_ossl_need_httpsrr(struct Curl_easy *data)
3477
{
3478
  if(!CURLECH_ENABLED(data))
3479
    return FALSE;
3480
  if((data->set.tls_ech == CURLECH_GREASE) ||
3481
     data->set.str[STRING_ECH_CONFIG])
3482
    return FALSE;
3483
  return TRUE;
3484
}
3485
3486
static CURLcode ossl_init_ech(struct ossl_ctx *octx,
3487
                              struct Curl_cfilter *cf,
3488
                              struct Curl_easy *data,
3489
                              struct ssl_peer *peer)
3490
{
3491
  unsigned char *ech_config = NULL;
3492
  size_t ech_config_len = 0;
3493
  char *outername = data->set.str[STRING_ECH_PUBLIC];
3494
  int trying_ech_now = 0;
3495
3496
  if(!CURLECH_ENABLED(data))
3497
    return CURLE_OK;
3498
3499
  if(data->set.tls_ech == CURLECH_GREASE) {
3500
    infof(data, "ECH: will GREASE ClientHello");
3501
#ifdef HAVE_BORINGSSL_LIKE
3502
    SSL_set_enable_ech_grease(octx->ssl, 1);
3503
#else
3504
    SSL_set_options(octx->ssl, SSL_OP_ECH_GREASE);
3505
#endif
3506
  }
3507
  else if(data->set.tls_ech && data->set.str[STRING_ECH_CONFIG]) {
3508
#ifdef HAVE_BORINGSSL_LIKE
3509
    /* have to do base64 decode here for BoringSSL */
3510
    const char *b64 = data->set.str[STRING_ECH_CONFIG];
3511
    CURLcode result;
3512
3513
    if(!b64) {
3514
      infof(data, "ECH: ECHConfig from command line empty");
3515
      return CURLE_SSL_CONNECT_ERROR;
3516
    }
3517
    ech_config_len = 2 * strlen(b64);
3518
    result = curlx_base64_decode(b64, &ech_config, &ech_config_len);
3519
    if(result || !ech_config) {
3520
      infof(data, "ECH: cannot base64 decode ECHConfig from command line");
3521
      if(data->set.tls_ech == CURLECH_HARD)
3522
        return result;
3523
    }
3524
    if(SSL_set1_ech_config_list(octx->ssl, ech_config, ech_config_len) != 1) {
3525
      infof(data, "ECH: SSL_ECH_set1_ech_config_list failed");
3526
      if(data->set.tls_ech == CURLECH_HARD) {
3527
        curlx_free(ech_config);
3528
        return CURLE_SSL_CONNECT_ERROR;
3529
      }
3530
    }
3531
    curlx_free(ech_config);
3532
    trying_ech_now = 1;
3533
#else
3534
    ech_config = (unsigned char *)data->set.str[STRING_ECH_CONFIG];
3535
    if(!ech_config) {
3536
      infof(data, "ECH: ECHConfig from command line empty");
3537
      return CURLE_SSL_CONNECT_ERROR;
3538
    }
3539
    ech_config_len = strlen(data->set.str[STRING_ECH_CONFIG]);
3540
    if(SSL_set1_ech_config_list(octx->ssl, ech_config, ech_config_len) != 1) {
3541
      infof(data, "ECH: SSL_ECH_set1_ech_config_list failed");
3542
      if(data->set.tls_ech == CURLECH_HARD)
3543
        return CURLE_SSL_CONNECT_ERROR;
3544
    }
3545
    else
3546
      trying_ech_now = 1;
3547
#endif /* HAVE_BORINGSSL_LIKE */
3548
    infof(data, "ECH: ECHConfig from command line");
3549
  }
3550
  else {
3551
    const struct Curl_https_rrinfo *rinfo =
3552
      Curl_conn_dns_get_https(data, cf->sockindex, peer->origin);
3553
3554
    if(rinfo && rinfo->echconfiglist) {
3555
      const unsigned char *ecl = rinfo->echconfiglist;
3556
      size_t elen = rinfo->echconfiglist_len;
3557
3558
      infof(data, "ECH: ECHConfig from HTTPS RR");
3559
      if(SSL_set1_ech_config_list(octx->ssl, ecl, elen) != 1) {
3560
        infof(data, "ECH: SSL_set1_ech_config_list failed");
3561
        if(data->set.tls_ech == CURLECH_HARD)
3562
          return CURLE_SSL_CONNECT_ERROR;
3563
      }
3564
      else {
3565
        trying_ech_now = 1;
3566
        infof(data, "ECH: imported ECHConfigList of length %zu", elen);
3567
      }
3568
    }
3569
    else {
3570
      infof(data, "ECH: requested but no ECHConfig available");
3571
      if(data->set.tls_ech == CURLECH_HARD)
3572
        return CURLE_SSL_CONNECT_ERROR;
3573
    }
3574
  }
3575
#ifdef HAVE_BORINGSSL_LIKE
3576
  (void)peer;
3577
  if(trying_ech_now && outername) {
3578
    infof(data, "ECH: setting public_name not supported with BoringSSL");
3579
    return CURLE_SSL_CONNECT_ERROR;
3580
  }
3581
#else
3582
  if(trying_ech_now && outername) {
3583
    int ret;
3584
    infof(data, "ECH: inner: '%s', outer: '%s'",
3585
          peer->origin->hostname ? peer->origin->hostname : "NULL", outername);
3586
    ret = SSL_ech_set1_server_names(octx->ssl,
3587
                                    peer->origin->hostname, outername,
3588
                                    0 /* do send outer */);
3589
    if(ret != 1) {
3590
      infof(data, "ECH: rv failed to set server name(s) %d [ERROR]", ret);
3591
      return CURLE_SSL_CONNECT_ERROR;
3592
    }
3593
  }
3594
#endif /* HAVE_BORINGSSL_LIKE */
3595
  if(trying_ech_now &&
3596
     SSL_set_min_proto_version(octx->ssl, TLS1_3_VERSION) != 1) {
3597
    infof(data, "ECH: cannot force TLSv1.3 [ERROR]");
3598
    return CURLE_SSL_CONNECT_ERROR;
3599
  }
3600
3601
  return CURLE_OK;
3602
}
3603
#else /* HAVE_SSL_SET1_ECH_CONFIG_LIST */
3604
bool Curl_ossl_need_httpsrr(struct Curl_easy *data)
3605
0
{
3606
0
  (void)data;
3607
0
  return FALSE;
3608
0
}
3609
#endif /* else HAVE_SSL_SET1_ECH_CONFIG_LIST */
3610
3611
static CURLcode ossl_init_ssl(struct ossl_ctx *octx,
3612
                              struct Curl_cfilter *cf,
3613
                              struct Curl_easy *data,
3614
                              struct ssl_peer *peer,
3615
                              const struct alpn_spec *alpns_requested,
3616
                              void *ssl_user_data,
3617
                              Curl_ossl_init_session_reuse_cb *sess_reuse_cb)
3618
0
{
3619
  /* Let's make an SSL structure */
3620
0
  if(octx->ssl)
3621
0
    SSL_free(octx->ssl);
3622
0
  octx->ssl = SSL_new(octx->ssl_ctx);
3623
0
  if(!octx->ssl) {
3624
0
    failf(data, "SSL: could not create a context (handle)");
3625
0
    return CURLE_OUT_OF_MEMORY;
3626
0
  }
3627
3628
0
  SSL_set_app_data(octx->ssl, ssl_user_data);
3629
3630
0
#ifndef OPENSSL_NO_OCSP
3631
0
  if(Curl_ssl_cf_get_primary_config(cf)->verifystatus)
3632
0
    SSL_set_tlsext_status_type(octx->ssl, TLSEXT_STATUSTYPE_ocsp);
3633
0
#endif
3634
3635
0
  SSL_set_connect_state(octx->ssl);
3636
3637
0
  if(peer->sni) {
3638
0
    if(!SSL_set_tlsext_host_name(octx->ssl, peer->sni)) {
3639
0
      failf(data, "Failed set SNI");
3640
0
      return CURLE_SSL_CONNECT_ERROR;
3641
0
    }
3642
0
  }
3643
3644
#ifdef HAVE_SSL_SET1_ECH_CONFIG_LIST
3645
  {
3646
    CURLcode result = ossl_init_ech(octx, cf, data, peer);
3647
    if(result)
3648
      return result;
3649
  }
3650
#endif /* HAVE_SSL_SET1_ECH_CONFIG_LIST */
3651
3652
0
  return ossl_init_session_and_alpns(octx, cf, data, peer,
3653
0
                                     alpns_requested, sess_reuse_cb);
3654
0
}
3655
3656
static CURLcode ossl_init_method(struct Curl_cfilter *cf,
3657
                                 struct Curl_easy *data,
3658
                                 struct ssl_peer *peer,
3659
                                 const SSL_METHOD **pmethod,
3660
                                 unsigned int *pssl_version_min)
3661
0
{
3662
0
  struct ssl_primary_config *conn_config = Curl_ssl_cf_get_primary_config(cf);
3663
3664
0
  *pmethod = NULL;
3665
0
  *pssl_version_min = conn_config->version;
3666
0
  DEBUGASSERT(conn_config->version != CURL_SSLVERSION_DEFAULT);
3667
0
  switch(peer->transport) {
3668
0
  case TRNSPRT_TCP:
3669
    /* check to see if we have been told to use an explicit SSL/TLS version */
3670
0
    switch(*pssl_version_min) {
3671
0
    case CURL_SSLVERSION_TLSv1:
3672
0
    case CURL_SSLVERSION_TLSv1_0:
3673
0
    case CURL_SSLVERSION_TLSv1_1:
3674
0
    case CURL_SSLVERSION_TLSv1_2:
3675
0
    case CURL_SSLVERSION_TLSv1_3:
3676
      /* it is handled later with the context options */
3677
0
      *pmethod = TLS_client_method();
3678
0
      break;
3679
0
    case CURL_SSLVERSION_SSLv2:
3680
0
      failf(data, "No SSLv2 support");
3681
0
      return CURLE_NOT_BUILT_IN;
3682
0
    case CURL_SSLVERSION_SSLv3:
3683
0
      failf(data, "No SSLv3 support");
3684
0
      return CURLE_NOT_BUILT_IN;
3685
0
    default:
3686
0
      failf(data, "Unrecognized parameter passed via CURLOPT_SSLVERSION");
3687
0
      return CURLE_SSL_CONNECT_ERROR;
3688
0
    }
3689
0
    break;
3690
0
  case TRNSPRT_QUIC:
3691
0
    *pssl_version_min = CURL_SSLVERSION_TLSv1_3;
3692
0
    if(conn_config->version_max &&
3693
0
       (conn_config->version_max != CURL_SSLVERSION_MAX_DEFAULT) &&
3694
0
       (conn_config->version_max != CURL_SSLVERSION_MAX_TLSv1_3)) {
3695
0
      failf(data, "QUIC needs at least TLS version 1.3");
3696
0
      return CURLE_SSL_CONNECT_ERROR;
3697
0
    }
3698
3699
0
    *pmethod = TLS_method();
3700
0
    break;
3701
0
  default:
3702
0
    failf(data, "unsupported transport %d in SSL init", peer->transport);
3703
0
    return CURLE_SSL_CONNECT_ERROR;
3704
0
  }
3705
3706
0
  return *pmethod ? CURLE_OK : CURLE_SSL_CONNECT_ERROR;
3707
0
}
3708
3709
CURLcode Curl_ossl_ctx_init(struct ossl_ctx *octx,
3710
                            struct Curl_cfilter *cf,
3711
                            struct Curl_easy *data,
3712
                            struct ssl_peer *peer,
3713
                            const struct alpn_spec *alpns_requested,
3714
                            Curl_ossl_ctx_setup_cb *cb_setup,
3715
                            void *cb_user_data,
3716
                            Curl_ossl_new_session_cb *cb_new_session,
3717
                            void *ssl_user_data,
3718
                            Curl_ossl_init_session_reuse_cb *sess_reuse_cb)
3719
0
{
3720
0
  CURLcode result = CURLE_OK;
3721
0
  const char *ciphers;
3722
0
  const SSL_METHOD *req_method = NULL;
3723
0
  ctx_option_t ctx_options = 0;
3724
0
  struct ssl_primary_config *conn_config = Curl_ssl_cf_get_primary_config(cf);
3725
0
  struct ssl_config_data *ssl_config = Curl_ssl_cf_get_config(cf, data);
3726
0
  char * const ssl_cert = ssl_config->primary.clientcert;
3727
0
  const struct curl_blob *ssl_cert_blob = ssl_config->primary.cert_blob;
3728
0
  const char * const ssl_cert_type = ssl_config->primary.cert_type;
3729
0
  unsigned int ssl_version_min;
3730
0
  char error_buffer[256];
3731
3732
  /* Make funny stuff to get random input */
3733
0
  result = ossl_seed(data);
3734
0
  if(result)
3735
0
    return result;
3736
3737
0
  ssl_config->certverifyresult = !X509_V_OK;
3738
3739
0
  result = ossl_init_method(cf, data, peer, &req_method, &ssl_version_min);
3740
0
  if(result)
3741
0
    return result;
3742
0
  DEBUGASSERT(req_method);
3743
3744
0
  DEBUGASSERT(!octx->ssl_ctx);
3745
0
  octx->ssl_ctx =
3746
0
#ifdef OPENSSL_HAS_PROVIDERS
3747
0
    data->state.libctx ?
3748
0
    SSL_CTX_new_ex(data->state.libctx, data->state.propq, req_method):
3749
0
#endif
3750
0
    SSL_CTX_new(req_method);
3751
3752
0
  if(!octx->ssl_ctx) {
3753
0
    failf(data, "SSL: could not create a context: %s",
3754
0
          ossl_strerror(ERR_peek_error(), error_buffer, sizeof(error_buffer)));
3755
0
    return CURLE_OUT_OF_MEMORY;
3756
0
  }
3757
3758
0
  if(cb_setup) {
3759
0
    result = cb_setup(cf, data, cb_user_data);
3760
0
    if(result)
3761
0
      return result;
3762
0
  }
3763
3764
0
  if(data->set.fdebug && data->set.verbose &&
3765
0
     (peer->transport != TRNSPRT_QUIC)) {
3766
    /* the SSL trace callback is only used for verbose logging;
3767
     * QUIC connections use a different TLS record format that
3768
     * ossl_trace cannot handle */
3769
0
    SSL_CTX_set_msg_callback(octx->ssl_ctx, ossl_trace);
3770
0
    SSL_CTX_set_msg_callback_arg(octx->ssl_ctx, cf);
3771
0
  }
3772
3773
  /* OpenSSL contains code to work around lots of bugs and flaws in various
3774
     SSL-implementations. SSL_CTX_set_options() is used to enabled those
3775
     workarounds. The man page for this option states that SSL_OP_ALL enables
3776
     all the workarounds and that "It is usually safe to use SSL_OP_ALL to
3777
     enable the bug workaround options if compatibility with somewhat broken
3778
     implementations is desired."
3779
3780
     The "-no_ticket" option was introduced in OpenSSL 0.9.8j. it is a flag to
3781
     disable "rfc4507bis session ticket support". rfc4507bis was later turned
3782
     into the proper RFC5077: https://datatracker.ietf.org/doc/html/rfc5077
3783
3784
     The enabled extension concerns the session management. I wonder how often
3785
     libcurl stops a connection and then resumes a TLS session. Also, sending
3786
     the session data is some overhead. I suggest that you use your proposed
3787
     patch (which explicitly disables TICKET).
3788
3789
     If someone writes an application with libcurl and OpenSSL who wants to
3790
     enable the feature, one can do this in the SSL callback.
3791
3792
     SSL_OP_NETSCAPE_REUSE_CIPHER_CHANGE_BUG option enabling allowed proper
3793
     interoperability with web server Netscape Enterprise Server 2.0.1 which
3794
     was released back in 1996.
3795
3796
     Due to CVE-2010-4180, option SSL_OP_NETSCAPE_REUSE_CIPHER_CHANGE_BUG has
3797
     become ineffective as of OpenSSL 0.9.8q and 1.0.0c. In order to mitigate
3798
     CVE-2010-4180 when using previous OpenSSL versions we no longer enable
3799
     this option regardless of OpenSSL version and SSL_OP_ALL definition.
3800
3801
     OpenSSL added a workaround for an SSL 3.0/TLS 1.0 CBC vulnerability:
3802
     https://web.archive.org/web/20240114184648/openssl.org/~bodo/tls-cbc.txt.
3803
     In 0.9.6e they added a bit to SSL_OP_ALL that _disables_ that workaround
3804
     despite the fact that SSL_OP_ALL is documented to do "rather harmless"
3805
     workarounds. In order to keep the secure workaround, the
3806
     SSL_OP_DONT_INSERT_EMPTY_FRAGMENTS bit must not be set.
3807
  */
3808
3809
0
  ctx_options = SSL_OP_ALL | SSL_OP_NO_TICKET | SSL_OP_NO_COMPRESSION;
3810
3811
  /* mitigate CVE-2010-4180 */
3812
0
  ctx_options &= ~(ctx_option_t)SSL_OP_NETSCAPE_REUSE_CIPHER_CHANGE_BUG;
3813
3814
  /* unless the user explicitly asks to allow the protocol vulnerability we
3815
     use the workaround */
3816
0
  if(!ssl_config->enable_beast)
3817
0
    ctx_options &= ~(ctx_option_t)SSL_OP_DONT_INSERT_EMPTY_FRAGMENTS;
3818
3819
0
  DEBUGASSERT(ssl_version_min != CURL_SSLVERSION_DEFAULT);
3820
0
  switch(ssl_version_min) {
3821
0
  case CURL_SSLVERSION_SSLv2:
3822
0
  case CURL_SSLVERSION_SSLv3:
3823
0
    return CURLE_NOT_BUILT_IN;
3824
3825
    /* "--tlsv<x.y>" options mean TLS >= version <x.y> */
3826
0
  case CURL_SSLVERSION_TLSv1:   /* TLS >= version 1.0 */
3827
0
  case CURL_SSLVERSION_TLSv1_0: /* TLS >= version 1.0 */
3828
0
  case CURL_SSLVERSION_TLSv1_1: /* TLS >= version 1.1 */
3829
0
  case CURL_SSLVERSION_TLSv1_2: /* TLS >= version 1.2 */
3830
0
  case CURL_SSLVERSION_TLSv1_3: /* TLS >= version 1.3 */
3831
    /* asking for any TLS version as the minimum, means no SSL versions
3832
       allowed */
3833
0
    ctx_options |= SSL_OP_NO_SSLv2;
3834
0
    ctx_options |= SSL_OP_NO_SSLv3;
3835
3836
0
    result = ossl_set_ssl_version_min_max(cf, octx->ssl_ctx, ssl_version_min);
3837
0
    if(result)
3838
0
      return result;
3839
0
    break;
3840
3841
0
  default:
3842
0
    failf(data, "Unrecognized parameter passed via CURLOPT_SSLVERSION");
3843
0
    return CURLE_SSL_CONNECT_ERROR;
3844
0
  }
3845
3846
0
  SSL_CTX_set_options(octx->ssl_ctx, ctx_options);
3847
0
  SSL_CTX_set_read_ahead(octx->ssl_ctx, 1);
3848
3849
  /* Max TLS1.2 record size 0x4000 + 0x800.
3850
     OpenSSL supports processing "jumbo TLS record" (8 TLS records) in one go
3851
     for some algorithms, so match that here.
3852
     Experimentation shows that a slightly larger buffer is needed
3853
     to avoid short reads.
3854
3855
     However using a large buffer (8 packets) actually decreases performance.
3856
     4 packets is better.
3857
   */
3858
0
#ifdef HAVE_SSL_CTX_SET_DEFAULT_READ_BUFFER_LEN
3859
0
  SSL_CTX_set_default_read_buffer_len(octx->ssl_ctx, 0x401e * 4);
3860
0
#endif
3861
3862
  /* We do retry writes sometimes from another buffer address */
3863
0
  SSL_CTX_set_mode(octx->ssl_ctx, SSL_MODE_ACCEPT_MOVING_WRITE_BUFFER);
3864
3865
0
  ciphers = conn_config->cipher_list;
3866
0
  if(!ciphers && (peer->transport != TRNSPRT_QUIC))
3867
0
    ciphers = NULL;
3868
0
  if(ciphers && (ssl_version_min < CURL_SSLVERSION_TLSv1_3)) {
3869
0
    if(!SSL_CTX_set_cipher_list(octx->ssl_ctx, ciphers)) {
3870
0
      failf(data, "failed setting cipher list: %s", ciphers);
3871
0
      return CURLE_SSL_CIPHER;
3872
0
    }
3873
0
    infof(data, "Cipher selection: %s", ciphers);
3874
0
  }
3875
3876
0
#ifdef HAVE_SSL_CTX_SET_CIPHERSUITES
3877
0
  {
3878
0
    const char *ciphers13 = conn_config->cipher_list13;
3879
0
    if(ciphers13 &&
3880
0
       (!conn_config->version_max ||
3881
0
        (conn_config->version_max == CURL_SSLVERSION_MAX_DEFAULT) ||
3882
0
        (conn_config->version_max >= CURL_SSLVERSION_MAX_TLSv1_3))) {
3883
0
      if(!SSL_CTX_set_ciphersuites(octx->ssl_ctx, ciphers13)) {
3884
0
        failf(data, "failed setting TLS 1.3 cipher suite: %s", ciphers13);
3885
0
        return CURLE_SSL_CIPHER;
3886
0
      }
3887
0
      infof(data, "TLS 1.3 cipher selection: %s", ciphers13);
3888
0
    }
3889
0
  }
3890
0
#endif
3891
3892
0
  if(ssl_cert || ssl_cert_blob || ssl_cert_type) {
3893
0
    result = client_cert(data, octx->ssl_ctx,
3894
0
                         ssl_cert, ssl_cert_blob, ssl_cert_type,
3895
0
                         ssl_config->primary.key, ssl_config->primary.key_blob,
3896
0
                         ssl_config->primary.key_type,
3897
0
                         ssl_config->primary.key_passwd);
3898
0
    if(result)
3899
      /* failf() is already done in client_cert() */
3900
0
      return result;
3901
0
  }
3902
3903
0
#ifdef HAVE_SSL_CTX_SET_POST_HANDSHAKE_AUTH
3904
  /* OpenSSL 1.1.1 requires clients to opt-in for PHA */
3905
0
  SSL_CTX_set_post_handshake_auth(octx->ssl_ctx, 1);
3906
0
#endif
3907
3908
0
  {
3909
0
    const char *curves = conn_config->curves;
3910
0
    if(curves) {
3911
#ifdef HAVE_BORINGSSL_LIKE
3912
#define OSSL_CURVE_CAST(x) (x)
3913
#else
3914
0
#define OSSL_CURVE_CAST(x) (char *)CURL_UNCONST(x)
3915
0
#endif
3916
0
      if(!SSL_CTX_set1_curves_list(octx->ssl_ctx, OSSL_CURVE_CAST(curves))) {
3917
0
        failf(data, "failed setting curves list: '%s'", curves);
3918
0
        return CURLE_SSL_CIPHER;
3919
0
      }
3920
0
    }
3921
0
  }
3922
3923
0
#ifdef HAVE_SSL_CTX_SET1_SIGALGS
3924
0
#define OSSL_SIGALG_CAST(x) OSSL_CURVE_CAST(x)
3925
0
  {
3926
0
    const char *signature_algorithms = conn_config->signature_algorithms;
3927
0
    if(signature_algorithms) {
3928
0
      if(!SSL_CTX_set1_sigalgs_list(octx->ssl_ctx,
3929
0
                                    OSSL_SIGALG_CAST(signature_algorithms))) {
3930
0
        failf(data, "failed setting signature algorithms: '%s'",
3931
0
              signature_algorithms);
3932
0
        return CURLE_SSL_CIPHER;
3933
0
      }
3934
0
    }
3935
0
  }
3936
0
#endif
3937
3938
  /* OpenSSL always tries to verify the peer. By setting the failure mode
3939
   * to NONE, we allow the connect to complete, regardless of the outcome.
3940
   * We then explicitly check the result and may try alternatives like
3941
   * Apple's SecTrust for verification. */
3942
0
  SSL_CTX_set_verify(octx->ssl_ctx, SSL_VERIFY_NONE, NULL);
3943
3944
  /* Enable logging of secrets to the file specified in env SSLKEYLOGFILE. */
3945
0
#if !defined(HAVE_KEYLOG_UPSTREAM) && defined(HAVE_KEYLOG_CALLBACK)
3946
0
  if(Curl_tls_keylog_enabled()) {
3947
0
    SSL_CTX_set_keylog_callback(octx->ssl_ctx, ossl_keylog_callback);
3948
0
  }
3949
0
#endif
3950
3951
0
  if(cb_new_session) {
3952
    /* Enable the session cache because it is a prerequisite for the
3953
     * "new session" callback. Use the "external storage" mode to prevent
3954
     * OpenSSL from creating an internal session cache.
3955
     */
3956
0
    SSL_CTX_set_session_cache_mode(octx->ssl_ctx,
3957
0
                                   SSL_SESS_CACHE_CLIENT |
3958
0
                                   SSL_SESS_CACHE_NO_INTERNAL);
3959
0
    SSL_CTX_sess_set_new_cb(octx->ssl_ctx, cb_new_session);
3960
0
  }
3961
3962
  /* give application a chance to interfere with SSL set up. */
3963
0
  if(data->set.ssl.fsslctx) {
3964
    /* When a user callback is installed to modify the SSL_CTX,
3965
     * we need to do the full initialization before calling it.
3966
     * See: #11800 */
3967
0
    if(!octx->x509_store_setup) {
3968
0
      result = Curl_ssl_setup_x509_store(cf, data, octx);
3969
0
      if(result)
3970
0
        return result;
3971
0
      octx->x509_store_setup = TRUE;
3972
0
    }
3973
0
    Curl_set_in_callback(data, TRUE);
3974
0
    result = (*data->set.ssl.fsslctx)(data, octx->ssl_ctx,
3975
0
                                      data->set.ssl.fsslctxp);
3976
0
    Curl_set_in_callback(data, FALSE);
3977
0
    if(result) {
3978
0
      failf(data, "error signaled by SSL ctx callback");
3979
0
      return result;
3980
0
    }
3981
0
  }
3982
3983
0
  return ossl_init_ssl(octx, cf, data, peer, alpns_requested,
3984
0
                       ssl_user_data, sess_reuse_cb);
3985
0
}
3986
3987
static CURLcode ossl_on_session_reuse(struct Curl_cfilter *cf,
3988
                                      struct Curl_easy *data,
3989
                                      struct alpn_spec *alpns,
3990
                                      struct Curl_ssl_session *scs,
3991
                                      bool *do_early_data)
3992
0
{
3993
0
  struct ssl_connect_data *connssl = cf->ctx;
3994
3995
0
  connssl->earlydata_max = scs->earlydata_max;
3996
3997
0
  return Curl_on_session_reuse(cf, data, alpns, scs, do_early_data,
3998
0
                               connssl->earlydata_max);
3999
0
}
4000
4001
void Curl_ossl_report_handshake(struct Curl_easy *data, struct ossl_ctx *octx)
4002
0
{
4003
0
#ifdef CURLVERBOSE
4004
0
  if(Curl_trc_is_verbose(data)) {
4005
0
    int psigtype_nid = NID_undef;
4006
0
    const char *negotiated_group_name = NULL;
4007
4008
0
#ifdef HAVE_OPENSSL3
4009
0
    SSL_get_peer_signature_type_nid(octx->ssl, &psigtype_nid);
4010
0
#if OPENSSL_VERSION_NUMBER >= 0x30200000L
4011
0
    negotiated_group_name = SSL_get0_group_name(octx->ssl);
4012
#else
4013
    negotiated_group_name =
4014
      OBJ_nid2sn(SSL_get_negotiated_group(octx->ssl) & 0x0000FFFF);
4015
#endif
4016
0
#endif
4017
4018
    /* Informational message */
4019
0
    infof(data, "SSL connection using %s / %s / %s / %s",
4020
0
          SSL_get_version(octx->ssl),
4021
0
          SSL_get_cipher(octx->ssl),
4022
0
          negotiated_group_name ? negotiated_group_name : "[blank]",
4023
0
          OBJ_nid2sn(psigtype_nid));
4024
0
  }
4025
#else
4026
  (void)data;
4027
  (void)octx;
4028
#endif /* CURLVERBOSE */
4029
0
}
4030
4031
static CURLcode ossl_connect_step1(struct Curl_cfilter *cf,
4032
                                   struct Curl_easy *data)
4033
0
{
4034
0
  struct ssl_connect_data *connssl = cf->ctx;
4035
0
  struct ossl_ctx *octx = (struct ossl_ctx *)connssl->backend;
4036
0
  BIO *bio;
4037
0
  CURLcode result;
4038
4039
0
  DEBUGASSERT(connssl->connecting_state == ssl_connect_1);
4040
0
  DEBUGASSERT(octx);
4041
0
  DEBUGASSERT(connssl->peer.origin);
4042
4043
0
  result = Curl_ossl_ctx_init(octx, cf, data, &connssl->peer,
4044
0
                              connssl->alpn, NULL, NULL,
4045
0
                              ossl_new_session_cb, cf,
4046
0
                              ossl_on_session_reuse);
4047
0
  if(result)
4048
0
    return result;
4049
4050
0
  octx->bio_method = ossl_bio_cf_method_create();
4051
0
  if(!octx->bio_method)
4052
0
    return CURLE_OUT_OF_MEMORY;
4053
0
  bio = BIO_new(octx->bio_method);
4054
0
  if(!bio)
4055
0
    return CURLE_OUT_OF_MEMORY;
4056
4057
0
  BIO_set_data(bio, cf);
4058
0
#ifdef HAVE_SSL_SET0_WBIO
4059
  /* with OpenSSL v1.1.1 we get an alternative to SSL_set_bio() that works
4060
   * without backward compat quirks. Every call takes one reference, so we
4061
   * up it and pass. SSL* then owns and frees it.
4062
   * We check on the function in configure, since LibreSSL and friends
4063
   * each have their own versions to add support for this. */
4064
0
  BIO_up_ref(bio);
4065
0
  SSL_set0_rbio(octx->ssl, bio);
4066
0
  SSL_set0_wbio(octx->ssl, bio);
4067
#else
4068
  SSL_set_bio(octx->ssl, bio, bio);
4069
#endif
4070
4071
0
  if(connssl->alpn && (connssl->state != ssl_connection_deferred)) {
4072
0
    struct alpn_proto_buf proto;
4073
0
    memset(&proto, 0, sizeof(proto));
4074
0
    Curl_alpn_to_proto_str(&proto, connssl->alpn);
4075
0
    infof(data, VTLS_INFOF_ALPN_OFFER_1STR, proto.data);
4076
0
  }
4077
4078
0
  connssl->connecting_state = ssl_connect_2;
4079
0
  return CURLE_OK;
4080
0
}
4081
4082
#ifdef HAVE_SSL_SET1_ECH_CONFIG_LIST
4083
/* If we have retry configs, then trace those out */
4084
static int ossl_trace_ech_retry_configs(struct Curl_easy *data, SSL *ssl,
4085
                                        int reason)
4086
{
4087
  CURLcode result = CURLE_OK;
4088
  size_t rcl = 0;
4089
  int rv = 1;
4090
#ifndef HAVE_BORINGSSL_LIKE
4091
  char *inner = NULL;
4092
  uint8_t *rcs = NULL;
4093
  char *outer = NULL;
4094
#else
4095
  const char *inner = NULL;
4096
  const uint8_t *rcs = NULL;
4097
  const char *outer = NULL;
4098
  size_t out_name_len = 0;
4099
  int servername_type = 0;
4100
#endif
4101
  NOVERBOSE((void)reason);
4102
4103
  /* nothing to trace if not doing ECH */
4104
  if(!CURLECH_ENABLED(data))
4105
    return rv;
4106
#ifndef HAVE_BORINGSSL_LIKE
4107
  rv = SSL_ech_get1_retry_config(ssl, &rcs, &rcl);
4108
#else
4109
  SSL_get0_ech_retry_configs(ssl, &rcs, &rcl);
4110
  rv = (int)rcl;
4111
#endif
4112
4113
  if(rv && rcs) {
4114
    char *b64str = NULL;
4115
    size_t blen = 0;
4116
4117
    result = curlx_base64_encode(rcs, rcl, &b64str, &blen);
4118
    if(!result && b64str) {
4119
      infof(data, "ECH: retry_configs %s", b64str);
4120
      curlx_free(b64str);
4121
#ifndef HAVE_BORINGSSL_LIKE
4122
      rv = SSL_ech_get1_status(ssl, &inner, &outer);
4123
      infof(data, "ECH: retry_configs for %s from %s, %d %d",
4124
            inner ? inner : "NULL", outer ? outer : "NULL", reason, rv);
4125
#else
4126
      rv = SSL_ech_accepted(ssl);
4127
      servername_type = SSL_get_servername_type(ssl);
4128
      inner = SSL_get_servername(ssl, servername_type);
4129
      SSL_get0_ech_name_override(ssl, &outer, &out_name_len);
4130
      infof(data, "ECH: retry_configs for %s from %s, %d %d",
4131
            inner ? inner : "NULL", outer ? outer : "NULL", reason, rv);
4132
#endif
4133
    }
4134
  }
4135
  else
4136
    infof(data, "ECH: no retry_configs (rv = %d)", rv);
4137
#ifndef HAVE_BORINGSSL_LIKE
4138
  OPENSSL_free(inner);
4139
  OPENSSL_free(rcs);
4140
  OPENSSL_free(outer);
4141
#endif
4142
  return rv;
4143
}
4144
4145
#endif
4146
4147
static CURLcode ossl_connect_step2(struct Curl_cfilter *cf,
4148
                                   struct Curl_easy *data)
4149
0
{
4150
0
  int err;
4151
0
  struct ssl_connect_data *connssl = cf->ctx;
4152
0
  struct ossl_ctx *octx = (struct ossl_ctx *)connssl->backend;
4153
0
  struct ssl_config_data *ssl_config = Curl_ssl_cf_get_config(cf, data);
4154
0
  DEBUGASSERT(connssl->connecting_state == ssl_connect_2);
4155
0
  DEBUGASSERT(octx);
4156
4157
0
  connssl->io_need = CURL_SSL_IO_NEED_NONE;
4158
0
  ERR_clear_error();
4159
4160
0
  err = SSL_connect(octx->ssl);
4161
4162
0
  if(!octx->x509_store_setup) {
4163
    /* After having send off the ClientHello, we prepare the x509
4164
     * store to verify the coming certificate from the server */
4165
0
    CURLcode result = Curl_ssl_setup_x509_store(cf, data, octx);
4166
0
    if(result)
4167
0
      return result;
4168
0
    octx->x509_store_setup = TRUE;
4169
0
  }
4170
4171
#if !defined(HAVE_KEYLOG_UPSTREAM) && !defined(HAVE_KEYLOG_CALLBACK)
4172
  /* If key logging is enabled, wait for the handshake to complete and then
4173
   * proceed with logging secrets (for TLS 1.2 or older).
4174
   */
4175
  if(Curl_tls_keylog_enabled() && !octx->keylog_done)
4176
    ossl_log_tls12_secret(octx->ssl, &octx->keylog_done);
4177
#endif
4178
4179
  /* 1  is fine
4180
     0  is "not successful but was shut down controlled"
4181
     <0 is "handshake was not successful, because a fatal error occurred" */
4182
0
  if(err != 1) {
4183
0
    int detail = SSL_get_error(octx->ssl, err);
4184
0
    CURL_TRC_CF(data, cf, "SSL_connect() -> err=%d, detail=%d", err, detail);
4185
4186
0
    if(detail == SSL_ERROR_WANT_READ) {
4187
0
      CURL_TRC_CF(data, cf, "SSL_connect() -> want recv");
4188
0
      connssl->io_need = CURL_SSL_IO_NEED_RECV;
4189
0
      return CURLE_AGAIN;
4190
0
    }
4191
0
    if(detail == SSL_ERROR_WANT_WRITE) {
4192
0
      CURL_TRC_CF(data, cf, "SSL_connect() -> want send");
4193
0
      connssl->io_need = CURL_SSL_IO_NEED_SEND;
4194
0
      return CURLE_AGAIN;
4195
0
    }
4196
0
#ifdef SSL_ERROR_WANT_ASYNC
4197
0
    if(detail == SSL_ERROR_WANT_ASYNC) {
4198
0
      CURL_TRC_CF(data, cf, "SSL_connect() -> want async");
4199
0
      connssl->io_need = CURL_SSL_IO_NEED_RECV;
4200
0
      return CURLE_AGAIN;
4201
0
    }
4202
0
#endif
4203
0
#ifdef SSL_ERROR_WANT_RETRY_VERIFY
4204
0
    if(detail == SSL_ERROR_WANT_RETRY_VERIFY) {
4205
0
      CURL_TRC_CF(data, cf, "SSL_connect() -> want retry_verify");
4206
0
      Curl_xfer_pause_recv(data, TRUE);
4207
0
      return CURLE_AGAIN;
4208
0
    }
4209
0
#endif
4210
0
    else {
4211
      /* untreated error */
4212
0
      sslerr_t errdetail;
4213
0
      char error_buffer[256] = "";
4214
0
      CURLcode result;
4215
0
      long lerr;
4216
0
      int lib;
4217
0
      int reason;
4218
4219
      /* the connection failed, we are not waiting for anything else. */
4220
0
      connssl->connecting_state = ssl_connect_2;
4221
4222
      /* Get the earliest error code from the thread's error queue and remove
4223
         the entry. */
4224
0
      errdetail = ERR_get_error();
4225
4226
      /* Extract which lib and reason */
4227
0
      lib = ERR_GET_LIB(errdetail);
4228
0
      reason = ERR_GET_REASON(errdetail);
4229
4230
0
      if((lib == ERR_LIB_SSL) &&
4231
0
         ((reason == SSL_R_CERTIFICATE_VERIFY_FAILED)
4232
/* Missing from OpenSSL 4+ OPENSSL_NO_DEPRECATED_3_0 builds */
4233
0
#ifdef SSL_R_SSLV3_ALERT_CERTIFICATE_EXPIRED
4234
0
          || (reason == SSL_R_SSLV3_ALERT_CERTIFICATE_EXPIRED)
4235
0
#endif
4236
0
         )) {
4237
0
        result = CURLE_PEER_FAILED_VERIFICATION;
4238
4239
0
        lerr = SSL_get_verify_result(octx->ssl);
4240
0
        if(lerr != X509_V_OK) {
4241
0
          ssl_config->certverifyresult = lerr;
4242
0
          failf(data, "SSL certificate problem: %s",
4243
0
                X509_verify_cert_error_string(lerr));
4244
0
        }
4245
0
        else
4246
0
          failf(data, "%s", "SSL certificate verification failed");
4247
0
      }
4248
0
#ifdef SSL_R_TLSV13_ALERT_CERTIFICATE_REQUIRED
4249
      /* SSL_R_TLSV13_ALERT_CERTIFICATE_REQUIRED is only available on
4250
         OpenSSL version above v1.1.1, not AWS-LC, BoringSSL, or LibreSSL */
4251
0
      else if((lib == ERR_LIB_SSL) &&
4252
0
              (reason == SSL_R_TLSV13_ALERT_CERTIFICATE_REQUIRED)) {
4253
        /* If client certificate is required, communicate the
4254
           error to client */
4255
0
        result = CURLE_SSL_CLIENTCERT;
4256
0
        failf(data, "TLS cert problem: %s",
4257
0
              ossl_strerror(errdetail, error_buffer, sizeof(error_buffer)));
4258
0
      }
4259
0
#endif
4260
#ifdef HAVE_SSL_SET1_ECH_CONFIG_LIST
4261
      else if((lib == ERR_LIB_SSL) &&
4262
#ifndef HAVE_BORINGSSL_LIKE
4263
              (reason == SSL_R_ECH_REQUIRED)) {
4264
#else
4265
              (reason == SSL_R_ECH_REJECTED)) {
4266
#endif /* HAVE_BORINGSSL_LIKE */
4267
4268
        /* trace retry_configs if we got some */
4269
        ossl_trace_ech_retry_configs(data, octx->ssl, reason);
4270
4271
        result = CURLE_ECH_REQUIRED;
4272
        failf(data, "ECH required: %s",
4273
              ossl_strerror(errdetail, error_buffer, sizeof(error_buffer)));
4274
      }
4275
#endif
4276
0
      else {
4277
0
        result = CURLE_SSL_CONNECT_ERROR;
4278
0
        failf(data, "TLS connect error: %s",
4279
0
              ossl_strerror(errdetail, error_buffer, sizeof(error_buffer)));
4280
0
      }
4281
4282
      /* detail is already set to the SSL error above */
4283
4284
      /* If we e.g. use SSLv2 request-method and the server does not like us
4285
       * (RST connection, etc.), OpenSSL gives no explanation whatsoever and
4286
       * the SO_ERROR is also lost.
4287
       */
4288
0
      if(result == CURLE_SSL_CONNECT_ERROR && errdetail == 0) {
4289
0
        char extramsg[80] = "";
4290
0
        int sockerr = SOCKERRNO;
4291
4292
0
        if(sockerr && detail == SSL_ERROR_SYSCALL)
4293
0
          curlx_strerror(sockerr, extramsg, sizeof(extramsg));
4294
0
        failf(data, OSSL_PACKAGE " SSL_connect: %s in connection to %s:%d ",
4295
0
              extramsg[0] ? extramsg : SSL_ERROR_to_str(detail),
4296
0
              connssl->peer.origin->hostname, connssl->peer.origin->port);
4297
0
      }
4298
4299
0
      return result;
4300
0
    }
4301
0
  }
4302
0
  else {
4303
    /* we connected fine, we are not waiting for anything else. */
4304
0
    connssl->connecting_state = ssl_connect_3;
4305
0
    Curl_ossl_report_handshake(data, octx);
4306
4307
#if defined(HAVE_SSL_SET1_ECH_CONFIG_LIST) && !defined(HAVE_BORINGSSL_LIKE)
4308
    if(CURLECH_ENABLED(data)) {
4309
      char *inner = NULL, *outer = NULL;
4310
      int rv;
4311
      VERBOSE(const char *status);
4312
4313
      rv = SSL_ech_get1_status(octx->ssl, &inner, &outer);
4314
      switch(rv) {
4315
      case SSL_ECH_STATUS_SUCCESS:
4316
        VERBOSE(status = "succeeded");
4317
        break;
4318
      case SSL_ECH_STATUS_GREASE_ECH:
4319
        VERBOSE(status = "sent GREASE, got retry-configs");
4320
        break;
4321
      case SSL_ECH_STATUS_GREASE:
4322
        VERBOSE(status = "sent GREASE");
4323
        break;
4324
      case SSL_ECH_STATUS_NOT_TRIED:
4325
        VERBOSE(status = "not attempted");
4326
        break;
4327
      case SSL_ECH_STATUS_NOT_CONFIGURED:
4328
        VERBOSE(status = "not configured");
4329
        break;
4330
      case SSL_ECH_STATUS_BACKEND:
4331
        VERBOSE(status = "backend (unexpected)");
4332
        break;
4333
      case SSL_ECH_STATUS_FAILED:
4334
        VERBOSE(status = "failed");
4335
        break;
4336
      case SSL_ECH_STATUS_BAD_CALL:
4337
        VERBOSE(status = "bad call (unexpected)");
4338
        break;
4339
      case SSL_ECH_STATUS_BAD_NAME: {
4340
        struct ssl_primary_config *conn_config =
4341
          Curl_ssl_cf_get_primary_config(cf);
4342
        if(!conn_config->verifypeer && !conn_config->verifyhost &&
4343
           inner && !strcmp(inner, connssl->peer.origin->hostname)) {
4344
          VERBOSE(status = "bad name (tolerated without peer verification)");
4345
          rv = SSL_ECH_STATUS_SUCCESS;
4346
        }
4347
        else {
4348
          VERBOSE(status = "bad name (unexpected)");
4349
        }
4350
        break;
4351
      }
4352
      default:
4353
        VERBOSE(status = "unexpected status");
4354
        infof(data, "ECH: unexpected status %d", rv);
4355
      }
4356
      infof(data, "ECH: result: status is %s, inner is %s, outer is %s",
4357
            (status ? status : "NULL"),
4358
            (inner ? inner : "NULL"),
4359
            (outer ? outer : "NULL"));
4360
      OPENSSL_free(inner);
4361
      OPENSSL_free(outer);
4362
      if(rv == SSL_ECH_STATUS_GREASE_ECH) {
4363
        /* trace retry_configs if we got some */
4364
        ossl_trace_ech_retry_configs(data, octx->ssl, 0);
4365
      }
4366
      if(rv != SSL_ECH_STATUS_SUCCESS && (data->set.tls_ech == CURLECH_HARD)) {
4367
        infof(data, "ECH: ech-hard failed");
4368
        return CURLE_SSL_CONNECT_ERROR;
4369
      }
4370
    }
4371
    else {
4372
      infof(data, "ECH: result: status is not attempted");
4373
    }
4374
#endif /* HAVE_SSL_SET1_ECH_CONFIG_LIST && !HAVE_BORINGSSL_LIKE */
4375
4376
    /* Sets data and len to negotiated protocol, len is 0 if no protocol was
4377
     * negotiated
4378
     */
4379
0
    if(connssl->alpn) {
4380
0
      const unsigned char *neg_protocol;
4381
0
      unsigned int len;
4382
0
      SSL_get0_alpn_selected(octx->ssl, &neg_protocol, &len);
4383
4384
0
      return Curl_alpn_set_negotiated(cf, data, connssl, neg_protocol, len);
4385
0
    }
4386
4387
0
    return CURLE_OK;
4388
0
  }
4389
0
}
4390
4391
/*
4392
 * Heavily modified from:
4393
 * https://www.owasp.org/index.php/Certificate_and_Public_Key_Pinning#OpenSSL
4394
 */
4395
static CURLcode ossl_pkp_pin_peer_pubkey(struct Curl_easy *data, X509 *cert,
4396
                                         const char *pinnedpubkey)
4397
0
{
4398
  /* Scratch */
4399
0
  int len1 = 0, len2 = 0;
4400
0
  unsigned char *buff1 = NULL, *temp = NULL;
4401
4402
  /* Result is returned to caller */
4403
0
  CURLcode result = CURLE_SSL_PINNEDPUBKEYNOTMATCH;
4404
4405
  /* if a path was not specified, do not pin */
4406
0
  if(!pinnedpubkey)
4407
0
    return CURLE_OK;
4408
4409
0
  if(!cert)
4410
0
    return result;
4411
4412
0
  do {
4413
    /* Get the subjectPublicKeyInfo */
4414
    /* https://groups.google.com/group/mailing.openssl.users/browse_thread/thread/d61858dae102c6c7 */
4415
0
    len1 = i2d_X509_PUBKEY(X509_get_X509_PUBKEY(cert), NULL);
4416
0
    if(len1 < 1)
4417
0
      break; /* failed */
4418
4419
0
    buff1 = temp = curlx_malloc(len1);
4420
0
    if(!buff1)
4421
0
      break; /* failed */
4422
4423
    /* https://docs.openssl.org/master/man3/d2i_X509/ */
4424
0
    len2 = i2d_X509_PUBKEY(X509_get_X509_PUBKEY(cert), &temp);
4425
4426
    /*
4427
     * These checks are verifying we got back the same values as when we
4428
     * sized the buffer. it is pretty weak since they should always be the
4429
     * same, but it gives us something to test.
4430
     */
4431
0
    if((len1 != len2) || !temp || ((temp - buff1) != len1))
4432
0
      break; /* failed */
4433
4434
    /* End Gyrations */
4435
4436
    /* The one good exit point */
4437
0
    result = Curl_pin_peer_pubkey(data, pinnedpubkey, buff1, len1);
4438
0
  } while(0);
4439
4440
0
  if(buff1)
4441
0
    curlx_free(buff1);
4442
4443
0
  return result;
4444
0
}
4445
4446
#ifdef CURLVERBOSE
4447
#if !defined(HAVE_BORINGSSL_LIKE) && \
4448
  !(defined(LIBRESSL_VERSION_NUMBER) && LIBRESSL_VERSION_NUMBER < 0x3060000fL)
4449
static void infof_certstack(struct Curl_easy *data, const SSL *ssl)
4450
0
{
4451
0
  STACK_OF(X509) *certstack;
4452
0
  long verify_result;
4453
0
  int num_cert_levels;
4454
0
  int cert_level;
4455
4456
0
  if(!Curl_trc_is_verbose(data))
4457
0
    return;
4458
4459
0
  verify_result = SSL_get_verify_result(ssl);
4460
0
  if(verify_result != X509_V_OK)
4461
0
    certstack = SSL_get_peer_cert_chain(ssl);
4462
0
  else
4463
0
    certstack = SSL_get0_verified_chain(ssl);
4464
0
  if(!certstack)
4465
0
    return;
4466
0
  num_cert_levels = sk_X509_num(certstack);
4467
4468
0
  for(cert_level = 0; cert_level < num_cert_levels; cert_level++) {
4469
0
    char cert_algorithm[80] = "";
4470
0
    char group_name_final[80] = "";
4471
0
    const X509_ALGOR *palg_cert = NULL;
4472
0
    const ASN1_OBJECT *paobj_cert = NULL;
4473
0
    X509 *current_cert;
4474
0
    EVP_PKEY *current_pkey;
4475
0
    int key_bits;
4476
0
    int key_sec_bits;
4477
0
    int get_group_name;
4478
0
    const char *type_name;
4479
4480
0
    current_cert = sk_X509_value(certstack, cert_level);
4481
0
    if(!current_cert)
4482
0
      continue;
4483
4484
0
    current_pkey = X509_get0_pubkey(current_cert);
4485
0
    if(!current_pkey)
4486
0
      continue;
4487
4488
0
    X509_get0_signature(NULL, &palg_cert, current_cert);
4489
0
    X509_ALGOR_get0(&paobj_cert, NULL, NULL, palg_cert);
4490
0
    OBJ_obj2txt(cert_algorithm, sizeof(cert_algorithm), paobj_cert, 0);
4491
4492
0
    key_bits = EVP_PKEY_bits(current_pkey);
4493
#ifndef HAVE_OPENSSL3
4494
#define EVP_PKEY_get_security_bits EVP_PKEY_security_bits
4495
#endif
4496
0
    key_sec_bits = EVP_PKEY_get_security_bits(current_pkey);
4497
0
#ifdef HAVE_OPENSSL3
4498
0
    {
4499
0
      char group_name[80] = "";
4500
0
      get_group_name = EVP_PKEY_get_group_name(current_pkey, group_name,
4501
0
                                               sizeof(group_name), NULL);
4502
0
      curl_msnprintf(group_name_final, sizeof(group_name_final), "/%s",
4503
0
                     group_name);
4504
0
    }
4505
0
    type_name = EVP_PKEY_get0_type_name(current_pkey);
4506
#else
4507
    get_group_name = 0;
4508
    type_name = NULL;
4509
#endif
4510
4511
0
    infof(data, "  Certificate level %d: "
4512
0
          "Public key type %s%s (%d/%d Bits/secBits), signed using %s",
4513
0
          cert_level, type_name ? type_name : "?",
4514
0
          get_group_name == 0 ? "" : group_name_final,
4515
0
          key_bits, key_sec_bits, cert_algorithm);
4516
0
  }
4517
0
}
4518
#else
4519
#define infof_certstack(data, ssl)
4520
#endif
4521
#endif /* CURLVERBOSE */
4522
4523
static CURLcode ossl_check_issuer(struct Curl_cfilter *cf,
4524
                                  struct Curl_easy *data,
4525
                                  X509 *server_cert)
4526
0
{
4527
0
  struct ssl_primary_config *conn_config = Curl_ssl_cf_get_primary_config(cf);
4528
0
  X509 *issuer = NULL;
4529
0
  BIO *fp = NULL;
4530
0
  char err_buf[256] = "";
4531
0
  bool verify_enabled = (conn_config->verifypeer || conn_config->verifyhost);
4532
0
  CURLcode result = CURLE_OK;
4533
4534
  /* e.g. match issuer name with provided issuer certificate */
4535
0
  if(conn_config->issuercert_blob) {
4536
0
    fp = BIO_new_mem_buf(conn_config->issuercert_blob->data,
4537
0
                         (int)conn_config->issuercert_blob->len);
4538
0
    if(!fp) {
4539
0
      failf(data, "BIO_new_mem_buf NULL, " OSSL_PACKAGE " error %s",
4540
0
            ossl_strerror(ERR_get_error(), err_buf, sizeof(err_buf)));
4541
0
      result = CURLE_OUT_OF_MEMORY;
4542
0
      goto out;
4543
0
    }
4544
0
  }
4545
0
  else if(conn_config->issuercert) {
4546
0
    fp = BIO_new(BIO_s_file());
4547
0
    if(!fp) {
4548
0
      failf(data, "BIO_new return NULL, " OSSL_PACKAGE " error %s",
4549
0
            ossl_strerror(ERR_get_error(), err_buf, sizeof(err_buf)));
4550
0
      result = CURLE_OUT_OF_MEMORY;
4551
0
      goto out;
4552
0
    }
4553
4554
0
    if(BIO_read_filename(fp, conn_config->issuercert) <= 0) {
4555
0
      if(verify_enabled)
4556
0
        failf(data, "SSL: Unable to open issuer cert (%s)",
4557
0
              conn_config->issuercert);
4558
0
      result = CURLE_SSL_ISSUER_ERROR;
4559
0
      goto out;
4560
0
    }
4561
0
  }
4562
4563
0
  if(fp) {
4564
0
    issuer = PEM_read_bio_X509(fp, NULL, ZERO_NULL, NULL);
4565
0
    if(!issuer) {
4566
0
      if(verify_enabled)
4567
0
        failf(data, "SSL: Unable to read issuer cert (%s)",
4568
0
              conn_config->issuercert);
4569
0
      result = CURLE_SSL_ISSUER_ERROR;
4570
0
      goto out;
4571
0
    }
4572
4573
0
    if(X509_check_issued(issuer, server_cert) != X509_V_OK) {
4574
0
      if(verify_enabled)
4575
0
        failf(data, "SSL: Certificate issuer check failed (%s)",
4576
0
              conn_config->issuercert);
4577
0
      result = CURLE_SSL_ISSUER_ERROR;
4578
0
      goto out;
4579
0
    }
4580
4581
0
    infof(data, " SSL certificate issuer check ok (%s)",
4582
0
          conn_config->issuercert);
4583
0
  }
4584
4585
0
out:
4586
0
  if(fp)
4587
0
    BIO_free(fp);
4588
0
  if(issuer)
4589
0
    X509_free(issuer);
4590
0
  return result;
4591
0
}
4592
4593
static CURLcode ossl_check_pinned_key(struct Curl_cfilter *cf,
4594
                                      struct Curl_easy *data,
4595
                                      X509 *server_cert)
4596
0
{
4597
0
  const char *ptr;
4598
0
  CURLcode result = CURLE_OK;
4599
4600
0
  (void)cf;
4601
0
#ifndef CURL_DISABLE_PROXY
4602
0
  ptr = Curl_ssl_cf_is_proxy(cf) ?
4603
0
    data->set.str[STRING_SSL_PINNEDPUBLICKEY_PROXY] :
4604
0
    data->set.str[STRING_SSL_PINNEDPUBLICKEY];
4605
#else
4606
  ptr = data->set.str[STRING_SSL_PINNEDPUBLICKEY];
4607
#endif
4608
0
  if(ptr) {
4609
0
    result = ossl_pkp_pin_peer_pubkey(data, server_cert, ptr);
4610
0
    if(result)
4611
0
      failf(data, "SSL: public key does not match pinned public key");
4612
0
  }
4613
0
  return result;
4614
0
}
4615
4616
#ifdef CURLVERBOSE
4617
0
#define MAX_CERT_NAME_LENGTH 2048
4618
static CURLcode ossl_infof_cert(struct Curl_cfilter *cf,
4619
                                struct Curl_easy *data,
4620
                                X509 *server_cert)
4621
0
{
4622
0
  BIO *mem = NULL;
4623
0
  struct dynbuf dname;
4624
0
  char err_buf[256] = "";
4625
0
  char *buf;
4626
0
  long len;
4627
0
  CURLcode result = CURLE_OK;
4628
4629
0
  if(!Curl_trc_is_verbose(data))
4630
0
    return CURLE_OK;
4631
4632
0
  curlx_dyn_init(&dname, MAX_CERT_NAME_LENGTH);
4633
0
  mem = BIO_new(BIO_s_mem());
4634
0
  if(!mem) {
4635
0
    failf(data, "BIO_new return NULL, " OSSL_PACKAGE " error %s",
4636
0
          ossl_strerror(ERR_get_error(), err_buf, sizeof(err_buf)));
4637
0
    result = CURLE_OUT_OF_MEMORY;
4638
0
    goto out;
4639
0
  }
4640
4641
0
  infof(data, "%s certificate:", Curl_ssl_cf_is_proxy(cf) ?
4642
0
        "Proxy" : "Server");
4643
4644
0
  result = x509_name_oneline(X509_get_subject_name(server_cert), &dname);
4645
0
  infof(data, "  subject: %s", result ? "[NONE]" : curlx_dyn_ptr(&dname));
4646
4647
0
  ASN1_TIME_print(mem, X509_get0_notBefore(server_cert));
4648
0
  len = BIO_get_mem_data(mem, (char **)&buf);
4649
0
  infof(data, "  start date: %.*s", (int)len, buf);
4650
0
  (void)BIO_reset(mem);
4651
4652
0
  ASN1_TIME_print(mem, X509_get0_notAfter(server_cert));
4653
0
  len = BIO_get_mem_data(mem, (char **)&buf);
4654
0
  infof(data, "  expire date: %.*s", (int)len, buf);
4655
0
  (void)BIO_reset(mem);
4656
4657
0
  result = x509_name_oneline(X509_get_issuer_name(server_cert), &dname);
4658
0
  if(result) /* should be only fatal stuff like OOM */
4659
0
    goto out;
4660
0
  infof(data, "  issuer: %s", curlx_dyn_ptr(&dname));
4661
4662
0
out:
4663
0
  BIO_free(mem);
4664
0
  curlx_dyn_free(&dname);
4665
0
  return result;
4666
0
}
4667
#endif /* CURLVERBOSE */
4668
4669
#ifdef USE_APPLE_SECTRUST
4670
struct ossl_certs_ctx {
4671
  STACK_OF(X509) *sk;
4672
  size_t num_certs;
4673
};
4674
4675
static CURLcode ossl_chain_get_der(struct Curl_cfilter *cf,
4676
                                   struct Curl_easy *data,
4677
                                   void *user_data,
4678
                                   size_t i,
4679
                                   unsigned char **pder,
4680
                                   size_t *pder_len)
4681
{
4682
  struct ossl_certs_ctx *chain = user_data;
4683
  X509 *cert;
4684
  int der_len;
4685
4686
  (void)cf;
4687
  (void)data;
4688
  *pder_len = 0;
4689
  *pder = NULL;
4690
4691
  if(i >= chain->num_certs)
4692
    return CURLE_TOO_LARGE;
4693
  cert = sk_X509_value(chain->sk, (int)i);
4694
  if(!cert)
4695
    return CURLE_FAILED_INIT;
4696
  der_len = i2d_X509(cert, pder);
4697
  if(der_len < 0)
4698
    return CURLE_FAILED_INIT;
4699
  *pder_len = (size_t)der_len;
4700
  return CURLE_OK;
4701
}
4702
4703
static CURLcode ossl_apple_verify(struct Curl_cfilter *cf,
4704
                                  struct Curl_easy *data,
4705
                                  struct ossl_ctx *octx,
4706
                                  struct ssl_peer *peer)
4707
{
4708
  struct ssl_primary_config *conn_config = Curl_ssl_cf_get_primary_config(cf);
4709
  struct ossl_certs_ctx chain;
4710
  CURLcode result;
4711
4712
  octx->sectrust_verified = FALSE;
4713
  memset(&chain, 0, sizeof(chain));
4714
  chain.sk = SSL_get_peer_cert_chain(octx->ssl);
4715
  chain.num_certs = chain.sk ? sk_X509_num(chain.sk) : 0;
4716
4717
  if(!chain.num_certs &&
4718
     (conn_config->verifypeer || conn_config->verifyhost)) {
4719
    if(!octx->reused_session) {
4720
      failf(data, "SSL: could not get peer certificate chain");
4721
      result = CURLE_PEER_FAILED_VERIFICATION;
4722
    }
4723
    else {
4724
      /* When session was reused, there is no peer cert chain.
4725
       * We trust it if it came from a SecTrust verified TLS. */
4726
      CURL_TRC_CF(data, cf, "session reused, sectrust_session=%d",
4727
                  octx->sectrust_session);
4728
      octx->sectrust_verified = (bool)octx->sectrust_session;
4729
      return CURLE_OK;
4730
    }
4731
  }
4732
  else {
4733
#ifdef HAVE_BORINGSSL_LIKE
4734
    const uint8_t *ocsp_data = NULL;
4735
#else
4736
    unsigned char *ocsp_data = NULL;
4737
#endif
4738
    long ocsp_len = 0;
4739
    bool ocsp_missing = FALSE;
4740
    if(conn_config->verifystatus && !octx->reused_session)
4741
      ocsp_len = (long)SSL_get_tlsext_status_ocsp_resp(octx->ssl, &ocsp_data);
4742
4743
    /* SSL_get_tlsext_status_ocsp_resp() returns the length of the OCSP
4744
       response data or -1 if there is no OCSP response data. */
4745
    if(ocsp_len < 0) {
4746
      ocsp_len = 0; /* no data available */
4747
      ocsp_missing = TRUE;
4748
    }
4749
    result = Curl_vtls_apple_verify(cf, data, peer, chain.num_certs,
4750
                                    ossl_chain_get_der, &chain,
4751
                                    ocsp_data, ocsp_len);
4752
    if(!result && ocsp_missing && conn_config->verifystatus &&
4753
       !octx->reused_session) {
4754
      /* verified, but OCSP stapling is required and server sent none */
4755
      octx->sectrust_verified = TRUE;
4756
      failf(data, "No OCSP response received");
4757
      return CURLE_SSL_INVALIDCERTSTATUS;
4758
    }
4759
  }
4760
  octx->sectrust_verified = !result;
4761
  return result;
4762
}
4763
#endif /* USE_APPLE_SECTRUST */
4764
4765
CURLcode Curl_ossl_check_peer_cert(struct Curl_cfilter *cf,
4766
                                   struct Curl_easy *data,
4767
                                   struct ossl_ctx *octx,
4768
                                   struct ssl_peer *peer)
4769
0
{
4770
0
  struct connectdata *conn = cf->conn;
4771
0
  struct ssl_config_data *ssl_config = Curl_ssl_cf_get_config(cf, data);
4772
0
  struct ssl_primary_config *conn_config = Curl_ssl_cf_get_primary_config(cf);
4773
0
  CURLcode result = CURLE_OK;
4774
0
  long ossl_verify;
4775
0
  X509 *server_cert;
4776
0
  bool verified = FALSE;
4777
4778
0
  if(data->set.ssl.certinfo && !octx->reused_session) {
4779
    /* asked to gather certificate info. Reused sessions do not have cert
4780
       chains */
4781
0
    result = ossl_certchain(data, octx->ssl);
4782
0
    if(result)
4783
0
      return result;
4784
0
  }
4785
4786
0
  server_cert = SSL_get1_peer_certificate(octx->ssl);
4787
0
  if(!server_cert) {
4788
    /* no verification at all, this maybe acceptable */
4789
0
    if(!(conn_config->verifypeer || conn_config->verifyhost))
4790
0
      goto out;
4791
4792
0
    failf(data, "SSL: could not get peer certificate");
4793
0
    result = CURLE_PEER_FAILED_VERIFICATION;
4794
0
    goto out;
4795
0
  }
4796
4797
0
#ifdef CURLVERBOSE
4798
0
  result = ossl_infof_cert(cf, data, server_cert);
4799
0
  if(result)
4800
0
    goto out;
4801
0
  infof_certstack(data, octx->ssl);
4802
0
#endif
4803
4804
0
  if(conn_config->verifyhost) {
4805
0
    result = ossl_verifyhost(data, conn, peer, server_cert);
4806
0
    if(result)
4807
0
      goto out;
4808
0
  }
4809
  /* `verifyhost` is either OK or not requested from here on */
4810
4811
0
  ossl_verify = SSL_get_verify_result(octx->ssl);
4812
0
  ssl_config->certverifyresult = ossl_verify;
4813
0
  infof(data, "OpenSSL verify result: %lx", (unsigned long)ossl_verify);
4814
4815
0
  verified = (ossl_verify == X509_V_OK);
4816
0
  if(verified)
4817
0
    infof(data, "SSL certificate verified via OpenSSL.");
4818
4819
#ifdef USE_APPLE_SECTRUST
4820
  if(!verified && conn_config->verifypeer && ssl_config->native_ca_store) {
4821
    /* we verify using Apple SecTrust *unless* OpenSSL already verified.
4822
     * This may happen if the application intercepted the OpenSSL callback
4823
     * and installed its own. */
4824
    result = ossl_apple_verify(cf, data, octx, peer);
4825
    if(result && (result != CURLE_PEER_FAILED_VERIFICATION))
4826
      goto out; /* unexpected error */
4827
    if(octx->sectrust_verified) {
4828
      infof(data, "SSL certificate verified via Apple SecTrust.");
4829
      ssl_config->certverifyresult = X509_V_OK;
4830
      verified = TRUE;
4831
    }
4832
  }
4833
#endif
4834
4835
0
  if(!verified) {
4836
    /* no trust established, report the OpenSSL status */
4837
0
    if(conn_config->verifypeer) {
4838
0
      failf(data, "SSL certificate OpenSSL verify result: %s (%ld)",
4839
0
            X509_verify_cert_error_string(ossl_verify), ossl_verify);
4840
0
      result = CURLE_PEER_FAILED_VERIFICATION;
4841
0
      goto out;
4842
0
    }
4843
0
    infof(data, " SSL certificate verification failed, continuing anyway!");
4844
0
  }
4845
4846
0
#ifndef OPENSSL_NO_OCSP
4847
0
  if(conn_config->verifystatus &&
4848
#ifdef USE_APPLE_SECTRUST
4849
     !octx->sectrust_verified && /* already verified via sectrust, cannot
4850
                                  * verifystate via OpenSSL in that case as it
4851
                                  * does not have the trust anchors */
4852
#endif
4853
0
     !octx->reused_session) {
4854
    /* do not do this after Session ID reuse */
4855
0
    result = verifystatus(cf, data, octx);
4856
0
    if(result)
4857
0
      goto out;
4858
0
  }
4859
0
#endif
4860
4861
0
  result = ossl_check_issuer(cf, data, server_cert);
4862
0
  if(result)
4863
0
    goto out;
4864
4865
0
  result = ossl_check_pinned_key(cf, data, server_cert);
4866
4867
0
out:
4868
0
  X509_free(server_cert);
4869
0
  return result;
4870
0
}
4871
4872
static CURLcode ossl_connect_step3(struct Curl_cfilter *cf,
4873
                                   struct Curl_easy *data)
4874
0
{
4875
0
  CURLcode result = CURLE_OK;
4876
0
  struct ssl_connect_data *connssl = cf->ctx;
4877
0
  struct ossl_ctx *octx = (struct ossl_ctx *)connssl->backend;
4878
4879
0
  DEBUGASSERT(connssl->connecting_state == ssl_connect_3);
4880
4881
  /*
4882
   * We check certificates to authenticate the server; otherwise we risk
4883
   * man-in-the-middle attack; NEVERTHELESS, if we are told explicitly not to
4884
   * verify the peer, ignore faults and failures from the server cert
4885
   * operations.
4886
   */
4887
4888
0
  result = Curl_ossl_check_peer_cert(cf, data, octx, &connssl->peer);
4889
0
  if(result)
4890
    /* on error, remove sessions we might have in the pool */
4891
0
    Curl_ssl_scache_remove_all(cf, data, connssl->peer.scache_key);
4892
4893
0
  return result;
4894
0
}
4895
4896
#ifdef HAVE_OPENSSL_EARLYDATA
4897
static CURLcode ossl_send_earlydata(struct Curl_cfilter *cf,
4898
                                    struct Curl_easy *data)
4899
0
{
4900
0
  struct ssl_connect_data *connssl = cf->ctx;
4901
0
  struct ossl_ctx *octx = (struct ossl_ctx *)connssl->backend;
4902
0
  CURLcode result = CURLE_OK;
4903
0
  const unsigned char *buf;
4904
0
  size_t blen, nwritten;
4905
0
  int rc;
4906
4907
0
  DEBUGASSERT(connssl->earlydata_state == ssl_earlydata_sending);
4908
0
  octx->io_result = CURLE_OK;
4909
0
  while(Curl_bufq_peek(&connssl->earlydata, &buf, &blen)) {
4910
0
    nwritten = 0;
4911
0
    rc = SSL_write_early_data(octx->ssl, buf, blen, &nwritten);
4912
0
    CURL_TRC_CF(data, cf, "SSL_write_early_data(len=%zu) -> %d, %zu",
4913
0
                blen, rc, nwritten);
4914
0
    if(rc <= 0) {
4915
0
      long sslerror;
4916
0
      char error_buffer[256];
4917
0
      int err = SSL_get_error(octx->ssl, rc);
4918
4919
0
      switch(err) {
4920
0
      case SSL_ERROR_WANT_READ:
4921
0
        connssl->io_need = CURL_SSL_IO_NEED_RECV;
4922
0
        result = CURLE_AGAIN;
4923
0
        goto out;
4924
0
      case SSL_ERROR_WANT_WRITE:
4925
0
        connssl->io_need = CURL_SSL_IO_NEED_SEND;
4926
0
        result = CURLE_AGAIN;
4927
0
        goto out;
4928
0
      case SSL_ERROR_SYSCALL: {
4929
0
        int sockerr = SOCKERRNO;
4930
4931
0
        if(octx->io_result == CURLE_AGAIN) {
4932
0
          result = CURLE_AGAIN;
4933
0
          goto out;
4934
0
        }
4935
0
        sslerror = ERR_get_error();
4936
0
        if(sslerror)
4937
0
          ossl_strerror(sslerror, error_buffer, sizeof(error_buffer));
4938
0
        else if(sockerr)
4939
0
          curlx_strerror(sockerr, error_buffer, sizeof(error_buffer));
4940
0
        else
4941
0
          curl_msnprintf(error_buffer, sizeof(error_buffer), "%s",
4942
0
                         SSL_ERROR_to_str(err));
4943
4944
0
        failf(data, OSSL_PACKAGE " SSL_write:early_data: %s, errno %d",
4945
0
              error_buffer, sockerr);
4946
0
        result = CURLE_SEND_ERROR;
4947
0
        goto out;
4948
0
      }
4949
0
      case SSL_ERROR_SSL: {
4950
        /*  A failure in the SSL library occurred, usually a protocol error.
4951
            The OpenSSL error queue contains more information on the error. */
4952
0
        sslerror = ERR_get_error();
4953
0
        failf(data, "SSL_write_early_data() error: %s",
4954
0
              ossl_strerror(sslerror, error_buffer, sizeof(error_buffer)));
4955
0
        result = CURLE_SEND_ERROR;
4956
0
        goto out;
4957
0
      }
4958
0
      default:
4959
        /* a true error */
4960
0
        failf(data, OSSL_PACKAGE " SSL_write_early_data: %s, errno %d",
4961
0
              SSL_ERROR_to_str(err), SOCKERRNO);
4962
0
        result = CURLE_SEND_ERROR;
4963
0
        goto out;
4964
0
      }
4965
0
    }
4966
0
    Curl_bufq_skip(&connssl->earlydata, nwritten);
4967
0
  }
4968
  /* sent everything there was */
4969
0
  infof(data, "SSL sending %zu bytes of early data", connssl->earlydata_skip);
4970
0
out:
4971
0
  return result;
4972
0
}
4973
#endif /* HAVE_OPENSSL_EARLYDATA */
4974
4975
static CURLcode ossl_connect(struct Curl_cfilter *cf,
4976
                             struct Curl_easy *data,
4977
                             bool *done)
4978
0
{
4979
0
  CURLcode result = CURLE_OK;
4980
0
  struct ssl_connect_data *connssl = cf->ctx;
4981
4982
  /* check if the connection has already been established */
4983
0
  if(ssl_connection_complete == connssl->state) {
4984
0
    *done = TRUE;
4985
0
    return CURLE_OK;
4986
0
  }
4987
4988
0
  *done = FALSE;
4989
0
  connssl->io_need = CURL_SSL_IO_NEED_NONE;
4990
4991
0
  if(connssl->connecting_state == ssl_connect_1) {
4992
0
    if(Curl_ossl_need_httpsrr(data) &&
4993
0
       !Curl_conn_dns_resolved_https(data, cf->sockindex,
4994
0
                                     connssl->peer.peer)) {
4995
0
      CURL_TRC_CF(data, cf, "need HTTPS-RR, delaying connect");
4996
0
      return CURLE_OK;
4997
0
    }
4998
0
    CURL_TRC_CF(data, cf, "ossl_connect, step1");
4999
0
    result = ossl_connect_step1(cf, data);
5000
0
    if(result)
5001
0
      goto out;
5002
0
  }
5003
5004
0
  if(connssl->connecting_state == ssl_connect_2) {
5005
0
    CURL_TRC_CF(data, cf, "ossl_connect, step2");
5006
0
#ifdef HAVE_OPENSSL_EARLYDATA
5007
0
    if(connssl->earlydata_state == ssl_earlydata_await) {
5008
0
      goto out;
5009
0
    }
5010
0
    else if(connssl->earlydata_state == ssl_earlydata_sending) {
5011
0
      result = ossl_send_earlydata(cf, data);
5012
0
      if(result)
5013
0
        goto out;
5014
0
      connssl->earlydata_state = ssl_earlydata_sent;
5015
0
    }
5016
0
#endif
5017
0
    DEBUGASSERT((connssl->earlydata_state == ssl_earlydata_none) ||
5018
0
                (connssl->earlydata_state == ssl_earlydata_sent));
5019
5020
0
    result = ossl_connect_step2(cf, data);
5021
0
    if(result)
5022
0
      goto out;
5023
0
  }
5024
5025
0
  if(connssl->connecting_state == ssl_connect_3) {
5026
0
    CURL_TRC_CF(data, cf, "ossl_connect, step3");
5027
0
    result = ossl_connect_step3(cf, data);
5028
0
    if(result)
5029
0
      goto out;
5030
0
    connssl->connecting_state = ssl_connect_done;
5031
0
#ifdef HAVE_OPENSSL_EARLYDATA
5032
0
    if(connssl->earlydata_state > ssl_earlydata_none) {
5033
0
      struct ossl_ctx *octx = (struct ossl_ctx *)connssl->backend;
5034
      /* We should be in this state by now */
5035
0
      DEBUGASSERT(connssl->earlydata_state == ssl_earlydata_sent);
5036
0
      connssl->earlydata_state =
5037
0
        (SSL_get_early_data_status(octx->ssl) == SSL_EARLY_DATA_ACCEPTED) ?
5038
0
        ssl_earlydata_accepted : ssl_earlydata_rejected;
5039
0
    }
5040
0
#endif
5041
0
  }
5042
5043
0
  if(connssl->connecting_state == ssl_connect_done) {
5044
0
    CURL_TRC_CF(data, cf, "ossl_connect, done");
5045
0
    connssl->state = ssl_connection_complete;
5046
0
  }
5047
5048
0
out:
5049
0
  if(result == CURLE_AGAIN) {
5050
0
    *done = FALSE;
5051
0
    return CURLE_OK;
5052
0
  }
5053
0
  *done = ((connssl->state == ssl_connection_complete) ||
5054
0
           (connssl->state == ssl_connection_deferred));
5055
0
  return result;
5056
0
}
5057
5058
static bool ossl_data_pending(struct Curl_cfilter *cf,
5059
                              const struct Curl_easy *data)
5060
0
{
5061
0
  struct ssl_connect_data *connssl = cf->ctx;
5062
0
  (void)data;
5063
0
  return (bool)connssl->input_pending;
5064
0
}
5065
5066
static CURLcode ossl_send(struct Curl_cfilter *cf,
5067
                          struct Curl_easy *data,
5068
                          const void *mem,
5069
                          size_t len,
5070
                          size_t *pnwritten)
5071
0
{
5072
  /* SSL_write() is said to return 'int' while write() and send() returns
5073
     'size_t' */
5074
0
  int err;
5075
0
  char error_buffer[256];
5076
0
  sslerr_t sslerror;
5077
0
  int memlen;
5078
0
  struct ssl_connect_data *connssl = cf->ctx;
5079
0
  struct ossl_ctx *octx = (struct ossl_ctx *)connssl->backend;
5080
0
  CURLcode result = CURLE_OK;
5081
0
  int nwritten;
5082
5083
0
  DEBUGASSERT(octx);
5084
0
  *pnwritten = 0;
5085
0
  ERR_clear_error();
5086
5087
0
  connssl->io_need = CURL_SSL_IO_NEED_NONE;
5088
0
  memlen = (len > (size_t)INT_MAX) ? INT_MAX : (int)len;
5089
0
  if(octx->blocked_ssl_write_len && (octx->blocked_ssl_write_len != memlen)) {
5090
    /* The previous SSL_write() call was blocked, using that length.
5091
     * We need to use that again or OpenSSL freaks out. A shorter
5092
     * length should not happen and is a bug in libcurl. */
5093
0
    if(octx->blocked_ssl_write_len > memlen) {
5094
0
      DEBUGASSERT(0);
5095
0
      return CURLE_BAD_FUNCTION_ARGUMENT;
5096
0
    }
5097
0
    memlen = octx->blocked_ssl_write_len;
5098
0
  }
5099
0
  octx->blocked_ssl_write_len = 0;
5100
0
  nwritten = SSL_write(octx->ssl, mem, memlen);
5101
5102
0
  if(nwritten > 0)
5103
0
    *pnwritten = (size_t)nwritten;
5104
0
  else {
5105
0
    err = SSL_get_error(octx->ssl, nwritten);
5106
5107
0
    switch(err) {
5108
0
    case SSL_ERROR_WANT_READ:
5109
0
      connssl->io_need = CURL_SSL_IO_NEED_RECV;
5110
0
      octx->blocked_ssl_write_len = memlen;
5111
0
      result = CURLE_AGAIN;
5112
0
      goto out;
5113
0
    case SSL_ERROR_WANT_WRITE:
5114
0
      result = CURLE_AGAIN;
5115
0
      octx->blocked_ssl_write_len = memlen;
5116
0
      goto out;
5117
0
    case SSL_ERROR_SYSCALL: {
5118
0
      int sockerr = SOCKERRNO;
5119
5120
0
      if(octx->io_result == CURLE_AGAIN) {
5121
0
        octx->blocked_ssl_write_len = memlen;
5122
0
        result = CURLE_AGAIN;
5123
0
        goto out;
5124
0
      }
5125
0
      sslerror = ERR_get_error();
5126
0
      if(sslerror)
5127
0
        ossl_strerror(sslerror, error_buffer, sizeof(error_buffer));
5128
0
      else if(sockerr)
5129
0
        curlx_strerror(sockerr, error_buffer, sizeof(error_buffer));
5130
0
      else
5131
0
        curl_msnprintf(error_buffer, sizeof(error_buffer), "%s",
5132
0
                       SSL_ERROR_to_str(err));
5133
5134
0
      failf(data, OSSL_PACKAGE " SSL_write: %s, errno %d",
5135
0
            error_buffer, sockerr);
5136
0
      result = CURLE_SEND_ERROR;
5137
0
      goto out;
5138
0
    }
5139
0
    case SSL_ERROR_SSL: {
5140
      /*  A failure in the SSL library occurred, usually a protocol error.
5141
          The OpenSSL error queue contains more information on the error. */
5142
0
      sslerror = ERR_get_error();
5143
0
      failf(data, "SSL_write() error: %s",
5144
0
            ossl_strerror(sslerror, error_buffer, sizeof(error_buffer)));
5145
0
      result = CURLE_SEND_ERROR;
5146
0
      goto out;
5147
0
    }
5148
0
    default:
5149
      /* a true error */
5150
0
      failf(data, OSSL_PACKAGE " SSL_write: %s, errno %d",
5151
0
            SSL_ERROR_to_str(err), SOCKERRNO);
5152
0
      result = CURLE_SEND_ERROR;
5153
0
      goto out;
5154
0
    }
5155
0
  }
5156
5157
0
out:
5158
0
  return result;
5159
0
}
5160
5161
static CURLcode ossl_recv(struct Curl_cfilter *cf,
5162
                          struct Curl_easy *data,   /* transfer */
5163
                          char *buf,                /* store read data here */
5164
                          size_t buffersize,        /* max amount to read */
5165
                          size_t *pnread)
5166
0
{
5167
0
  char error_buffer[256];
5168
0
  unsigned long sslerror;
5169
0
  int buffsize;
5170
0
  struct ssl_connect_data *connssl = cf->ctx;
5171
0
  struct ossl_ctx *octx = (struct ossl_ctx *)connssl->backend;
5172
0
  CURLcode result = CURLE_OK;
5173
0
  int nread;
5174
5175
0
  DEBUGASSERT(octx);
5176
5177
0
  *pnread = 0;
5178
0
  ERR_clear_error();
5179
5180
0
  connssl->io_need = CURL_SSL_IO_NEED_NONE;
5181
0
  buffsize = (buffersize > (size_t)INT_MAX) ? INT_MAX : (int)buffersize;
5182
0
  nread = SSL_read(octx->ssl, buf, buffsize);
5183
5184
0
  if(nread > 0)
5185
0
    *pnread = (size_t)nread;
5186
0
  else {
5187
    /* failed SSL_read */
5188
0
    int err = SSL_get_error(octx->ssl, nread);
5189
5190
0
    switch(err) {
5191
0
    case SSL_ERROR_NONE: /* this is not an error */
5192
0
      break;
5193
0
    case SSL_ERROR_ZERO_RETURN: /* no more data */
5194
      /* close_notify alert */
5195
0
      if(cf->sockindex == FIRSTSOCKET)
5196
        /* mark the connection for close if it is indeed the control
5197
           connection */
5198
0
        CURL_TRC_CF(data, cf, "TLS close_notify");
5199
0
      break;
5200
0
    case SSL_ERROR_WANT_READ:
5201
0
      connssl->io_need = CURL_SSL_IO_NEED_RECV;
5202
0
      result = CURLE_AGAIN;
5203
0
      goto out;
5204
0
    case SSL_ERROR_WANT_WRITE:
5205
0
      connssl->io_need = CURL_SSL_IO_NEED_SEND;
5206
0
      result = CURLE_AGAIN;
5207
0
      goto out;
5208
0
    default:
5209
      /* openssl/ssl.h for SSL_ERROR_SYSCALL says "look at error stack/return
5210
         value/errno" */
5211
      /* https://docs.openssl.org/master/man3/ERR_get_error/ */
5212
0
      if(octx->io_result == CURLE_AGAIN) {
5213
0
        result = CURLE_AGAIN;
5214
0
        goto out;
5215
0
      }
5216
0
      sslerror = ERR_get_error();
5217
0
      if((nread < 0) || sslerror) {
5218
        /* If the return code was negative or there actually is an error in the
5219
           queue */
5220
0
        int sockerr = SOCKERRNO;
5221
0
        if(sslerror)
5222
0
          ossl_strerror(sslerror, error_buffer, sizeof(error_buffer));
5223
0
        else if(sockerr && err == SSL_ERROR_SYSCALL)
5224
0
          curlx_strerror(sockerr, error_buffer, sizeof(error_buffer));
5225
0
        else
5226
0
          curl_msnprintf(error_buffer, sizeof(error_buffer), "%s",
5227
0
                         SSL_ERROR_to_str(err));
5228
0
        failf(data, OSSL_PACKAGE " SSL_read: %s, errno %d",
5229
0
              error_buffer, sockerr);
5230
0
        result = CURLE_RECV_ERROR;
5231
0
        goto out;
5232
0
      }
5233
0
      else if(err == SSL_ERROR_SYSCALL) {
5234
0
        if(octx->io_result) {
5235
          /* logging handling in underlying filter already */
5236
0
          result = octx->io_result;
5237
0
        }
5238
0
        else if(connssl->peer_closed) {
5239
0
          failf(data, "Connection closed abruptly");
5240
0
          result = CURLE_RECV_ERROR;
5241
0
        }
5242
0
        else {
5243
          /* We should no longer get here nowadays, but handle
5244
           * the error in case of some weirdness in the OSSL stack */
5245
0
          int sockerr = SOCKERRNO;
5246
0
          if(sockerr)
5247
0
            curlx_strerror(sockerr, error_buffer, sizeof(error_buffer));
5248
0
          else {
5249
0
            curl_msnprintf(error_buffer, sizeof(error_buffer),
5250
0
                           "Connection closed abruptly");
5251
0
          }
5252
0
          failf(data, OSSL_PACKAGE " SSL_read: %s, errno %d",
5253
0
                error_buffer, sockerr);
5254
0
          result = CURLE_RECV_ERROR;
5255
0
        }
5256
0
        goto out;
5257
0
      }
5258
0
    }
5259
0
  }
5260
5261
0
out:
5262
0
  if((!result && !*pnread) || (result == CURLE_AGAIN)) {
5263
    /* This happens when:
5264
     * - we read an EOF
5265
     * - OpenSSLs buffers are empty, there is no more data
5266
     * - OpenSSL read is blocked on writing something first
5267
     * - an incomplete TLS packet is buffered that cannot be read
5268
     *   until more data arrives */
5269
0
    connssl->input_pending = FALSE;
5270
0
  }
5271
0
  CURL_TRC_CF(data, cf, "ossl_recv(len=%zu) -> %d, %zu (in_pending=%d)",
5272
0
              buffersize, (int)result, *pnread, connssl->input_pending);
5273
0
  return result;
5274
0
}
5275
5276
static CURLcode ossl_get_channel_binding(struct Curl_easy *data,
5277
                                         int sockindex,
5278
                                         struct dynbuf *binding)
5279
0
{
5280
0
  X509 *cert;
5281
0
  int mdnid;
5282
0
  bool no_digest_acceptable = FALSE;
5283
0
  const EVP_MD *algo_type = NULL;
5284
0
  const char *algo_name = NULL;
5285
0
  unsigned int length;
5286
0
  unsigned char buf[EVP_MAX_MD_SIZE];
5287
5288
0
  const char prefix[] = "tls-server-end-point:";
5289
0
  struct connectdata *conn = data->conn;
5290
0
  struct Curl_cfilter *cf = conn->cfilter[sockindex];
5291
0
  struct ossl_ctx *octx = NULL;
5292
0
  CURLcode result = CURLE_OK;
5293
5294
0
  do {
5295
0
    const struct Curl_cftype *cft = cf->cft;
5296
0
    struct ssl_connect_data *connssl = cf->ctx;
5297
5298
0
    if(cft->name && !strcmp(cft->name, "SSL")) {
5299
0
      octx = (struct ossl_ctx *)connssl->backend;
5300
0
      break;
5301
0
    }
5302
5303
0
    cf = cf->next;
5304
0
  } while(cf);
5305
5306
0
  if(!octx) {
5307
0
    failf(data, "Failed to find the SSL filter");
5308
0
    return CURLE_BAD_FUNCTION_ARGUMENT;
5309
0
  }
5310
5311
0
  cert = SSL_get1_peer_certificate(octx->ssl);
5312
0
  if(!cert)
5313
    /* No server certificate, do not do channel binding */
5314
0
    return CURLE_OK;
5315
5316
0
#ifdef HAVE_OPENSSL3
5317
0
  {
5318
0
    int pknid, secbits;
5319
0
    uint32_t flags;
5320
0
    EVP_PKEY *pkey = X509_get0_pubkey(cert);
5321
5322
0
    if(!X509_get_signature_info(cert, &mdnid, &pknid, &secbits, &flags)) {
5323
0
      failf(data, "certificate signature algorithm not recognized");
5324
0
      result = CURLE_SSL_INVALIDCERTSTATUS;
5325
0
      goto out;
5326
0
    }
5327
5328
0
    if(mdnid != NID_undef) {
5329
0
      if(mdnid == NID_md5 || mdnid == NID_sha1) {
5330
0
        algo_type = EVP_sha256();
5331
0
      }
5332
0
      else
5333
0
        algo_type = EVP_get_digestbynid(mdnid);
5334
0
    }
5335
0
    else if(pkey && !EVP_PKEY_is_a(pkey, OBJ_nid2sn(pknid))) {
5336
      /* The cert's pkey is different from the algorithm used to sign
5337
       * the certificate. Since the reported `mdnid` is undefined, there
5338
       * is no digest algorithm available here. This happens in PQC
5339
       * and is accepted, resulting in no addition to the binding. */
5340
0
      no_digest_acceptable = TRUE;
5341
0
    }
5342
0
    else if(pkey) {
5343
      /* cert's pkey type is the same as the cert signer (or same family).
5344
       * Ask for the mandatory/advisory digest algorithm for the pkey.
5345
       */
5346
0
      char mdname[128] = "";
5347
0
      int rc = EVP_PKEY_get_default_digest_name(pkey, mdname, sizeof(mdname));
5348
0
      bool md_is_undef = !strcmp(mdname, "UNDEF");
5349
5350
0
      if(rc == 2 && md_is_undef) {
5351
        /* OpenSSL declares "undef" the *mandatory* digest for this key.
5352
         * This is some PQC shit, accept it, no addition to binding. */
5353
0
        no_digest_acceptable = TRUE;
5354
0
      }
5355
0
      else if(rc > 0 && mdname[0] != '\0' && !md_is_undef) {
5356
0
        infof(data, "Digest algorithm : %s%s (derived from public key)"
5357
0
              ", but unavailable",
5358
0
              mdname, rc == 2 ? " [mandatory]" : " [advisory]");
5359
0
      }
5360
0
    }
5361
0
  }
5362
#else /* HAVE_OPENSSL3 */
5363
5364
  if(!OBJ_find_sigid_algs(X509_get_signature_nid(cert), &mdnid, NULL)) {
5365
    failf(data,
5366
          "Unable to find digest NID for certificate signature algorithm");
5367
    result = CURLE_SSL_INVALIDCERTSTATUS;
5368
    goto out;
5369
  }
5370
5371
  /* https://datatracker.ietf.org/doc/html/rfc5929#section-4.1 */
5372
  if(mdnid == NID_md5 || mdnid == NID_sha1) {
5373
    algo_type = EVP_sha256();
5374
  }
5375
  else {
5376
    algo_type = EVP_get_digestbynid(mdnid);
5377
    if(!algo_type) {
5378
      algo_name = OBJ_nid2sn(mdnid);
5379
      failf(data, "Could not find digest algorithm %s (NID %d)",
5380
            algo_name ? algo_name : "(null)", mdnid);
5381
      result = CURLE_SSL_INVALIDCERTSTATUS;
5382
      goto out;
5383
    }
5384
  }
5385
5386
#endif /* HAVE_OPENSSL3, else */
5387
5388
0
  if(!algo_type) {
5389
0
    if(no_digest_acceptable) {
5390
0
      infof(data, "certificate exposes no signing digest algorithm, "
5391
0
            "nothing to add to channel binding");
5392
0
      result = CURLE_OK;
5393
0
      goto out;
5394
0
    }
5395
    /* unacceptable, something is wrong, fail */
5396
0
    algo_name = OBJ_nid2sn(mdnid);
5397
0
    failf(data, "Unable to find digest algorithm %s (NID %d) "
5398
0
          "for channel binding", algo_name ? algo_name : "(null)", mdnid);
5399
0
    result = CURLE_SSL_INVALIDCERTSTATUS;
5400
0
    goto out;
5401
0
  }
5402
5403
0
  if(!X509_digest(cert, algo_type, buf, &length)) {
5404
0
    failf(data, "X509_digest() failed for channel binding");
5405
0
    result = CURLE_SSL_INVALIDCERTSTATUS;
5406
0
    goto out;
5407
0
  }
5408
5409
  /* Append "tls-server-end-point:" */
5410
0
  result = curlx_dyn_addn(binding, prefix, sizeof(prefix) - 1);
5411
0
  if(result)
5412
0
    goto out;
5413
5414
  /* Append digest */
5415
0
  result = curlx_dyn_addn(binding, buf, length);
5416
5417
0
out:
5418
0
  X509_free(cert);
5419
0
  return result;
5420
0
}
5421
5422
size_t Curl_ossl_version(char *buffer, size_t size)
5423
0
{
5424
#ifdef LIBRESSL_VERSION_NUMBER
5425
  char *p;
5426
  size_t count;
5427
  const char *ver = OpenSSL_version(OPENSSL_VERSION);
5428
  const char expected[] = OSSL_PACKAGE " "; /* ie "LibreSSL " */
5429
  if(curl_strnequal(ver, expected, sizeof(expected) - 1)) {
5430
    ver += sizeof(expected) - 1;
5431
  }
5432
  count = curl_msnprintf(buffer, size, "%s/%s", OSSL_PACKAGE, ver);
5433
  for(p = buffer; *p; ++p) {
5434
    if(ISBLANK(*p))
5435
      *p = '_';
5436
  }
5437
  return count;
5438
#elif defined(OPENSSL_IS_AWSLC)
5439
  return curl_msnprintf(buffer, size, "%s/%s",
5440
                        OSSL_PACKAGE, AWSLC_VERSION_NUMBER_STRING);
5441
#elif defined(OPENSSL_IS_BORINGSSL)
5442
#ifdef CURL_BORINGSSL_VERSION
5443
  return curl_msnprintf(buffer, size, "%s/%s",
5444
                        OSSL_PACKAGE, CURL_BORINGSSL_VERSION);
5445
#else
5446
  return curl_msnprintf(buffer, size, OSSL_PACKAGE);
5447
#endif
5448
#else /* OpenSSL 3+ */
5449
0
  return curl_msnprintf(buffer, size, "%s/%s",
5450
0
                        OSSL_PACKAGE, OpenSSL_version(OPENSSL_VERSION_STRING));
5451
0
#endif
5452
0
}
5453
5454
/* can be called with data == NULL */
5455
static CURLcode ossl_random(struct Curl_easy *data,
5456
                            unsigned char *entropy, size_t length)
5457
0
{
5458
0
  int rc;
5459
0
  if(data) {
5460
0
    if(ossl_seed(data)) /* Initiate the seed if not already done */
5461
0
      return CURLE_FAILED_INIT; /* could not seed for some reason */
5462
0
  }
5463
0
  else {
5464
0
    if(!rand_enough())
5465
0
      return CURLE_FAILED_INIT;
5466
0
  }
5467
  /* RAND_bytes() returns 1 on success, 0 otherwise. */
5468
0
  rc = RAND_bytes(entropy, (ossl_valsize_t)curlx_uztosi(length));
5469
0
  return rc == 1 ? CURLE_OK : CURLE_FAILED_INIT;
5470
0
}
5471
5472
static CURLcode ossl_sha256sum(const unsigned char *input,
5473
                               size_t len,
5474
                               unsigned char *sha256sum /* output */,
5475
                               size_t unused)
5476
0
{
5477
0
  CURLcode result = CURLE_OK;
5478
0
  EVP_MD_CTX *mdctx;
5479
0
  (void)unused;
5480
5481
0
  mdctx = EVP_MD_CTX_new();
5482
0
  if(!mdctx)
5483
0
    return CURLE_OUT_OF_MEMORY;
5484
0
  if(!EVP_DigestInit_ex(mdctx, EVP_sha256(), NULL)) {
5485
0
    result = CURLE_FAILED_INIT;
5486
0
    goto out;
5487
0
  }
5488
0
  if(!EVP_DigestUpdate(mdctx, input, len) ||
5489
0
     !EVP_DigestFinal_ex(mdctx, sha256sum, NULL))
5490
0
    result = CURLE_BAD_FUNCTION_ARGUMENT;
5491
0
out:
5492
0
  EVP_MD_CTX_free(mdctx);
5493
0
  return result;
5494
0
}
5495
5496
static bool ossl_cert_status_request(void)
5497
0
{
5498
0
#ifndef OPENSSL_NO_OCSP
5499
0
  return TRUE;
5500
#else
5501
  return FALSE;
5502
#endif
5503
0
}
5504
5505
static void *ossl_get_internals(struct ssl_connect_data *connssl,
5506
                                CURLINFO info)
5507
0
{
5508
  /* Legacy: CURLINFO_TLS_SESSION must return an SSL_CTX pointer. */
5509
0
  struct ossl_ctx *octx = (struct ossl_ctx *)connssl->backend;
5510
0
  DEBUGASSERT(octx);
5511
0
  return info == CURLINFO_TLS_SESSION ?
5512
0
    (void *)octx->ssl_ctx : (void *)octx->ssl;
5513
0
}
5514
5515
const struct Curl_ssl Curl_ssl_openssl = {
5516
  { CURLSSLBACKEND_OPENSSL, "openssl" }, /* info */
5517
5518
  SSLSUPP_CA_PATH |
5519
  SSLSUPP_CAINFO_BLOB |
5520
  SSLSUPP_CERTINFO |
5521
  SSLSUPP_PINNEDPUBKEY |
5522
  SSLSUPP_SSL_CTX |
5523
#ifdef HAVE_SSL_CTX_SET_CIPHERSUITES
5524
  SSLSUPP_TLS13_CIPHERSUITES |
5525
#endif
5526
#ifdef HAVE_SSL_CTX_SET1_SIGALGS
5527
  SSLSUPP_SIGNATURE_ALGORITHMS |
5528
#endif
5529
#ifdef HAVE_SSL_SET1_ECH_CONFIG_LIST
5530
  SSLSUPP_ECH |
5531
#endif
5532
  SSLSUPP_CA_CACHE |
5533
  SSLSUPP_HTTPS_PROXY |
5534
  SSLSUPP_CIPHER_LIST |
5535
  SSLSUPP_ISSUERCERT |
5536
  SSLSUPP_ISSUERCERT_BLOB |
5537
  SSLSUPP_SSL_EC_CURVES |
5538
  SSLSUPP_CRLFILE,
5539
5540
  sizeof(struct ossl_ctx),
5541
5542
  ossl_init,                /* init */
5543
  ossl_cleanup,             /* cleanup */
5544
  Curl_ossl_version,        /* version */
5545
  ossl_shutdown,            /* shutdown */
5546
  ossl_data_pending,        /* data_pending */
5547
  ossl_random,              /* random */
5548
  ossl_cert_status_request, /* cert_status_request */
5549
  ossl_connect,             /* connect */
5550
  Curl_ssl_adjust_pollset,  /* adjust_pollset */
5551
  ossl_get_internals,       /* get_internals */
5552
  ossl_close,               /* close_one */
5553
  ossl_close_all,           /* close_all */
5554
  ossl_set_engine,          /* set_engine or provider */
5555
  ossl_set_engine_default,  /* set_engine_default */
5556
  ossl_engines_list,        /* engines_list */
5557
  ossl_sha256sum,           /* sha256sum */
5558
  ossl_recv,                /* recv decrypted data */
5559
  ossl_send,                /* send data to encrypt */
5560
  ossl_get_channel_binding  /* get_channel_binding */
5561
};
5562
5563
#endif /* USE_OPENSSL */