Coverage Report

Created: 2025-11-24 06:33

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/FreeRDP/libfreerdp/crypto/x509_utils.c
Line
Count
Source
1
/**
2
 * FreeRDP: A Remote Desktop Protocol Implementation
3
 * Cryptographic Abstraction Layer
4
 *
5
 * Copyright 2011-2012 Marc-Andre Moreau <marcandre.moreau@gmail.com>
6
 * Copyright 2023 Armin Novak <anovak@thincast.com>
7
 * Copyright 2023 Thincast Technologies GmbH
8
 *
9
 * Licensed under the Apache License, Version 2.0 (the "License");
10
 * you may not use this file except in compliance with the License.
11
 * You may obtain a copy of the License at
12
 *
13
 *   http://www.apache.org/licenses/LICENSE-2.0
14
 *
15
 * Unless required by applicable law or agreed to in writing, software
16
 * distributed under the License is distributed on an "AS IS" BASIS,
17
 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
18
 * See the License for the specific language governing permissions and
19
 * limitations under the License.
20
 */
21
22
#include <openssl/objects.h>
23
#include <openssl/x509v3.h>
24
#include <openssl/pem.h>
25
#include <openssl/rsa.h>
26
#include <openssl/err.h>
27
28
#include <freerdp/config.h>
29
30
#include <winpr/crt.h>
31
#include <winpr/string.h>
32
#include <winpr/assert.h>
33
34
#include <freerdp/log.h>
35
36
#include "x509_utils.h"
37
38
#define TAG FREERDP_TAG("crypto")
39
40
BYTE* x509_utils_get_hash(const X509* xcert, const char* hash, size_t* length)
41
0
{
42
0
  UINT32 fp_len = EVP_MAX_MD_SIZE;
43
0
  BYTE* fp = NULL;
44
0
  const EVP_MD* md = EVP_get_digestbyname(hash);
45
0
  if (!md)
46
0
  {
47
0
    WLog_ERR(TAG, "System does not support %s hash!", hash);
48
0
    return NULL;
49
0
  }
50
0
  if (!xcert || !length)
51
0
  {
52
0
    WLog_ERR(TAG, "Invalid arguments: xcert=%p, length=%p", xcert, length);
53
0
    return NULL;
54
0
  }
55
56
0
  fp = calloc(fp_len + 1, sizeof(BYTE));
57
0
  if (!fp)
58
0
  {
59
0
    WLog_ERR(TAG, "could not allocate %" PRIuz " bytes", fp_len);
60
0
    return NULL;
61
0
  }
62
63
0
  if (X509_digest(xcert, md, fp, &fp_len) != 1)
64
0
  {
65
0
    free(fp);
66
0
    WLog_ERR(TAG, "certificate does not have a %s hash!", hash);
67
0
    return NULL;
68
0
  }
69
70
0
  *length = fp_len;
71
0
  return fp;
72
0
}
73
74
static char* crypto_print_name(const X509_NAME* name)
75
0
{
76
0
  char* buffer = NULL;
77
0
  BIO* outBIO = BIO_new(BIO_s_mem());
78
79
0
  if (X509_NAME_print_ex(outBIO, name, 0, XN_FLAG_ONELINE) > 0)
80
0
  {
81
0
    UINT64 size = BIO_number_written(outBIO);
82
0
    if (size > INT_MAX)
83
0
      goto fail;
84
0
    buffer = calloc(1, (size_t)size + 1);
85
86
0
    if (!buffer)
87
0
      goto fail;
88
89
0
    ERR_clear_error();
90
0
    const int rc = BIO_read(outBIO, buffer, (int)size);
91
0
    if (rc <= 0)
92
0
    {
93
0
      free(buffer);
94
0
      buffer = NULL;
95
0
      goto fail;
96
0
    }
97
0
  }
98
99
0
fail:
100
0
  BIO_free_all(outBIO);
101
0
  return buffer;
102
0
}
103
104
char* x509_utils_get_subject(const X509* xcert)
105
0
{
106
0
  char* subject = NULL;
107
0
  if (!xcert)
108
0
  {
109
0
    WLog_ERR(TAG, "Invalid certificate %p", xcert);
110
0
    return NULL;
111
0
  }
112
0
  subject = crypto_print_name(X509_get_subject_name(xcert));
113
0
  if (!subject)
114
0
    WLog_WARN(TAG, "certificate does not have a subject!");
115
0
  return subject;
116
0
}
117
118
/* GENERAL_NAME type labels */
119
120
static const char* general_name_type_labels[] = { "OTHERNAME", "EMAIL    ", "DNS      ",
121
                                                "X400     ", "DIRNAME  ", "EDIPARTY ",
122
                                                "URI      ", "IPADD    ", "RID      " };
123
124
static const char* general_name_type_label(int general_name_type)
125
0
{
126
0
  if ((0 <= general_name_type) &&
127
0
      ((size_t)general_name_type < ARRAYSIZE(general_name_type_labels)))
128
0
  {
129
0
    return general_name_type_labels[general_name_type];
130
0
  }
131
0
  else
132
0
  {
133
0
    static char buffer[80] = { 0 };
134
0
    (void)snprintf(buffer, sizeof(buffer), "Unknown general name type (%d)", general_name_type);
135
0
    return buffer;
136
0
  }
137
0
}
138
139
/*
140
141
map_subject_alt_name(x509,  general_name_type, mapper, data)
142
143
Call the function mapper with subjectAltNames found in the x509
144
certificate and data.  if generate_name_type is GEN_ALL,  the the
145
mapper is called for all the names,  else it's called only for names
146
of the given type.
147
148
149
We implement two extractors:
150
151
 -  a string extractor that can be used to get the subjectAltNames of
152
    the following types: GEN_URI,  GEN_DNS,  GEN_EMAIL
153
154
 - a ASN1_OBJECT filter/extractor that can be used to get the
155
   subjectAltNames of OTHERNAME type.
156
157
   Note: usually, it's a string, but some type of otherNames can be
158
   associated with different classes of objects. eg. a KPN may be a
159
   sequence of realm and principal name, instead of a single string
160
   object.
161
162
Not implemented yet: extractors for the types: GEN_X400, GEN_DIRNAME,
163
GEN_EDIPARTY, GEN_RID, GEN_IPADD (the later can contain nul-bytes).
164
165
166
mapper(name, data, index, count)
167
168
The mapper is passed:
169
 - the GENERAL_NAME selected,
170
 - the data,
171
 - the index of the general name in the subjectAltNames,
172
 - the total number of names in the subjectAltNames.
173
174
The last parameter let's the mapper allocate arrays to collect objects.
175
Note: if names are filtered,  not all the indices from 0 to count-1 are
176
passed to mapper,  only the indices selected.
177
178
When the mapper returns 0, map_subject_alt_name stops the iteration immediately.
179
180
*/
181
182
0
#define GEN_ALL (-1)
183
184
typedef int (*general_name_mapper_pr)(GENERAL_NAME* name, void* data, int index, int count);
185
186
static void map_subject_alt_name(const X509* x509, int general_name_type,
187
                                 general_name_mapper_pr mapper, void* data)
188
0
{
189
0
  int num = 0;
190
0
  STACK_OF(GENERAL_NAME)* gens = NULL;
191
0
  gens = X509_get_ext_d2i(x509, NID_subject_alt_name, NULL, NULL);
192
193
0
  if (!gens)
194
0
  {
195
0
    return;
196
0
  }
197
198
0
  num = sk_GENERAL_NAME_num(gens);
199
200
0
  for (int i = 0; (i < num); i++)
201
0
  {
202
0
    GENERAL_NAME* name = sk_GENERAL_NAME_value(gens, i);
203
204
0
    if (name)
205
0
    {
206
0
      if ((general_name_type == GEN_ALL) || (general_name_type == name->type))
207
0
      {
208
0
        if (!mapper(name, data, i, num))
209
0
        {
210
0
          break;
211
0
        }
212
0
      }
213
0
    }
214
0
  }
215
216
0
  sk_GENERAL_NAME_pop_free(gens, GENERAL_NAME_free);
217
0
}
218
219
/*
220
extract_string  --  string extractor
221
222
- the strings array is allocated lazily, when we first have to store a
223
  string.
224
225
- allocated contains the size of the strings array, or -1 if
226
  allocation failed.
227
228
- count contains the actual count of strings in the strings array.
229
230
- maximum limits the number of strings we can store in the strings
231
  array: beyond, the extractor returns 0 to short-cut the search.
232
233
extract_string stores in the string list OPENSSL strings,
234
that must be freed with OPENSSL_free.
235
236
*/
237
238
typedef struct string_list
239
{
240
  char** strings;
241
  size_t allocated;
242
  size_t count;
243
  size_t maximum;
244
} string_list;
245
246
static void string_list_initialize(string_list* list)
247
0
{
248
0
  list->strings = 0;
249
0
  list->allocated = 0;
250
0
  list->count = 0;
251
0
  list->maximum = INT_MAX;
252
0
}
253
254
static void string_list_allocate(string_list* list, size_t allocate_count)
255
0
{
256
0
  if (!list->strings && list->allocated == 0)
257
0
  {
258
0
    list->strings = (char**)calloc(allocate_count, sizeof(char*));
259
0
    list->allocated = list->strings ? allocate_count : 0;
260
0
    list->count = 0;
261
0
  }
262
0
}
263
264
static void string_list_free(string_list* list)
265
0
{
266
  /* Note: we don't free the contents of the strings array: this */
267
  /* is handled by the caller,  either by returning this */
268
  /* content,  or freeing it itself. */
269
0
  free((void*)list->strings);
270
0
}
271
272
static int extract_string(GENERAL_NAME* name, void* data, int index, int count)
273
0
{
274
0
  string_list* list = data;
275
0
  unsigned char* cstring = 0;
276
0
  ASN1_STRING* str = NULL;
277
278
0
  WINPR_UNUSED(index);
279
280
0
  switch (name->type)
281
0
  {
282
0
    case GEN_URI:
283
0
      str = name->d.uniformResourceIdentifier;
284
0
      break;
285
286
0
    case GEN_DNS:
287
0
      str = name->d.dNSName;
288
0
      break;
289
290
0
    case GEN_EMAIL:
291
0
      str = name->d.rfc822Name;
292
0
      break;
293
294
0
    default:
295
0
      return 1;
296
0
  }
297
298
0
  if ((ASN1_STRING_to_UTF8(&cstring, str)) < 0)
299
0
  {
300
0
    WLog_ERR(TAG, "ASN1_STRING_to_UTF8() failed for %s: %s",
301
0
             general_name_type_label(name->type), ERR_error_string(ERR_get_error(), NULL));
302
0
    return 1;
303
0
  }
304
305
0
  string_list_allocate(list, WINPR_ASSERTING_INT_CAST(WINPR_CIPHER_TYPE, count));
306
307
0
  if (list->allocated <= 0)
308
0
  {
309
0
    OPENSSL_free(cstring);
310
0
    return 0;
311
0
  }
312
313
0
  list->strings[list->count] = (char*)cstring;
314
0
  list->count++;
315
316
0
  if (list->count >= list->maximum)
317
0
  {
318
0
    return 0;
319
0
  }
320
321
0
  return 1;
322
0
}
323
324
/*
325
extract_othername_object --  object extractor.
326
327
- the objects array is allocated lazily, when we first have to store a
328
  string.
329
330
- allocated contains the size of the objects array, or -1 if
331
  allocation failed.
332
333
- count contains the actual count of objects in the objects array.
334
335
- maximum limits the number of objects we can store in the objects
336
  array: beyond, the extractor returns 0 to short-cut the search.
337
338
extract_othername_objects stores in the objects array ASN1_TYPE *
339
pointers directly obtained from the GENERAL_NAME.
340
*/
341
342
typedef struct object_list
343
{
344
  ASN1_OBJECT* type_id;
345
  char** strings;
346
  size_t allocated;
347
  size_t count;
348
  size_t maximum;
349
} object_list;
350
351
static void object_list_initialize(object_list* list)
352
0
{
353
0
  list->type_id = 0;
354
0
  list->strings = 0;
355
0
  list->allocated = 0;
356
0
  list->count = 0;
357
0
  list->maximum = INT_MAX;
358
0
}
359
360
static void object_list_allocate(object_list* list, size_t allocate_count)
361
0
{
362
0
  if (!list->strings && (list->allocated == 0) && (allocate_count > 0))
363
0
  {
364
0
    list->strings = (char**)calloc(allocate_count, sizeof(list->strings[0]));
365
0
    list->allocated = list->strings ? allocate_count : 0;
366
0
    list->count = 0;
367
0
  }
368
0
}
369
370
static char* object_string(ASN1_TYPE* object)
371
0
{
372
0
  char* result = NULL;
373
0
  unsigned char* utf8String = NULL;
374
375
  /* TODO: check that object.type is a string type. */
376
0
  const int length = ASN1_STRING_to_UTF8(&utf8String, object->value.asn1_string);
377
378
0
  if (length < 0)
379
0
  {
380
0
    return 0;
381
0
  }
382
383
0
  result = strndup((char*)utf8String, WINPR_ASSERTING_INT_CAST(size_t, length));
384
0
  OPENSSL_free(utf8String);
385
0
  return result;
386
0
}
387
388
static void object_list_free(object_list* list)
389
0
{
390
0
  WINPR_ASSERT(list);
391
0
  free((void*)list->strings);
392
0
}
393
394
static int extract_othername_object_as_string(GENERAL_NAME* name, void* data, int index, int count)
395
0
{
396
0
  object_list* list = data;
397
0
  WINPR_UNUSED(index);
398
399
0
  if (count < 0)
400
0
    return -1;
401
402
0
  if (name->type != GEN_OTHERNAME)
403
0
  {
404
0
    return 1;
405
0
  }
406
407
0
  if (0 != OBJ_cmp(name->d.otherName->type_id, list->type_id))
408
0
  {
409
0
    return 1;
410
0
  }
411
412
0
  object_list_allocate(list, WINPR_ASSERTING_INT_CAST(size_t, count));
413
414
0
  if (list->allocated <= 0)
415
0
  {
416
0
    return 0;
417
0
  }
418
419
0
  list->strings[list->count] = object_string(name->d.otherName->value);
420
421
0
  if (list->strings[list->count])
422
0
  {
423
0
    list->count++;
424
0
  }
425
426
0
  if (list->count >= list->maximum)
427
0
  {
428
0
    return 0;
429
0
  }
430
431
0
  return 1;
432
0
}
433
434
char* x509_utils_get_email(const X509* x509)
435
0
{
436
0
  char* result = 0;
437
0
  string_list list;
438
0
  string_list_initialize(&list);
439
0
  list.maximum = 1;
440
0
  map_subject_alt_name(x509, GEN_EMAIL, extract_string, &list);
441
442
0
  if (list.count == 0)
443
0
  {
444
0
    string_list_free(&list);
445
0
    return 0;
446
0
  }
447
448
0
  result = _strdup(list.strings[0]);
449
0
  OPENSSL_free(list.strings[0]);
450
0
  string_list_free(&list);
451
0
  return result;
452
0
}
453
454
char* x509_utils_get_upn(const X509* x509)
455
0
{
456
0
  char* result = 0;
457
0
  object_list list = { 0 };
458
0
  object_list_initialize(&list);
459
0
  list.type_id = OBJ_nid2obj(NID_ms_upn);
460
0
  list.maximum = 1;
461
0
  map_subject_alt_name(x509, GEN_OTHERNAME, extract_othername_object_as_string, &list);
462
463
0
  if (list.count == 0)
464
0
  {
465
0
    object_list_free(&list);
466
0
    return 0;
467
0
  }
468
469
0
  result = list.strings[0];
470
0
  object_list_free(&list);
471
0
  return result;
472
0
}
473
474
char* x509_utils_get_date(const X509* x509, BOOL startDate)
475
0
{
476
0
  WINPR_ASSERT(x509);
477
478
0
  const ASN1_TIME* date = startDate ? X509_get0_notBefore(x509) : X509_get0_notAfter(x509);
479
0
  if (!date)
480
0
    return NULL;
481
482
0
  BIO* bmem = BIO_new(BIO_s_mem());
483
0
  if (!bmem)
484
0
    return NULL;
485
486
0
  char* str = NULL;
487
0
  if (ASN1_TIME_print(bmem, date))
488
0
  {
489
0
    BUF_MEM* bptr = NULL;
490
491
0
    BIO_get_mem_ptr(bmem, &bptr);
492
0
    str = strndup(bptr->data, bptr->length);
493
0
  }
494
0
  else
495
0
  { // Log error
496
0
  }
497
0
  BIO_free_all(bmem);
498
0
  return str;
499
0
}
500
501
void x509_utils_dns_names_free(size_t count, size_t* lengths, char** dns_names)
502
0
{
503
0
  free(lengths);
504
505
0
  if (dns_names)
506
0
  {
507
0
    for (size_t i = 0; i < count; i++)
508
0
    {
509
0
      if (dns_names[i])
510
0
      {
511
0
        OPENSSL_free(dns_names[i]);
512
0
      }
513
0
    }
514
515
0
    free((void*)dns_names);
516
0
  }
517
0
}
518
519
char** x509_utils_get_dns_names(const X509* x509, size_t* count, size_t** lengths)
520
0
{
521
0
  char** result = 0;
522
0
  string_list list = { 0 };
523
0
  string_list_initialize(&list);
524
0
  map_subject_alt_name(x509, GEN_DNS, extract_string, &list);
525
0
  (*count) = list.count;
526
527
0
  if (list.count <= 0)
528
0
  {
529
0
    string_list_free(&list);
530
0
    return NULL;
531
0
  }
532
533
  /* lengths are not useful,  since we converted the
534
     strings to utf-8,  there cannot be nul-bytes in them. */
535
0
  result = (char**)calloc(list.count, sizeof(*result));
536
0
  (*lengths) = calloc(list.count, sizeof(**lengths));
537
538
0
  if (!result || !(*lengths))
539
0
  {
540
0
    string_list_free(&list);
541
0
    free((void*)result);
542
0
    free(*lengths);
543
0
    (*lengths) = 0;
544
0
    (*count) = 0;
545
0
    return NULL;
546
0
  }
547
548
0
  for (size_t i = 0; i < list.count; i++)
549
0
  {
550
0
    result[i] = list.strings[i];
551
0
    (*lengths)[i] = strlen(result[i]);
552
0
  }
553
554
0
  string_list_free(&list);
555
0
  return result;
556
0
}
557
558
char* x509_utils_get_issuer(const X509* xcert)
559
0
{
560
0
  char* issuer = NULL;
561
0
  if (!xcert)
562
0
  {
563
0
    WLog_ERR(TAG, "Invalid certificate %p", xcert);
564
0
    return NULL;
565
0
  }
566
0
  issuer = crypto_print_name(X509_get_issuer_name(xcert));
567
0
  if (!issuer)
568
0
    WLog_WARN(TAG, "certificate does not have an issuer!");
569
0
  return issuer;
570
0
}
571
572
static int asn1_object_cmp(const ASN1_OBJECT* const* a, const ASN1_OBJECT* const* b)
573
0
{
574
0
  if (!a || !b)
575
0
    return (a == b) ? 0 : (a ? 1 : -1);
576
577
0
  if (!*a || !*b)
578
0
    return (*a == *b) ? 0 : (*a ? 1 : -1);
579
580
0
  return OBJ_cmp(*a, *b);
581
0
}
582
583
BOOL x509_utils_check_eku(const X509* xcert, int nid)
584
0
{
585
0
  BOOL ret = FALSE;
586
0
  STACK_OF(ASN1_OBJECT)* oid_stack = NULL;
587
0
  ASN1_OBJECT* oid = NULL;
588
589
0
  if (!xcert)
590
0
    return FALSE;
591
592
0
  oid = OBJ_nid2obj(nid);
593
0
  if (!oid)
594
0
    return FALSE;
595
596
0
  oid_stack = X509_get_ext_d2i(xcert, NID_ext_key_usage, NULL, NULL);
597
0
  if (!oid_stack)
598
0
    return FALSE;
599
600
0
  sk_ASN1_OBJECT_set_cmp_func(oid_stack, asn1_object_cmp);
601
0
  if (sk_ASN1_OBJECT_find(oid_stack, oid) >= 0)
602
0
    ret = TRUE;
603
604
0
  sk_ASN1_OBJECT_pop_free(oid_stack, ASN1_OBJECT_free);
605
0
  return ret;
606
0
}
607
608
void x509_utils_print_info(const X509* xcert)
609
0
{
610
0
  char* fp = NULL;
611
0
  char* issuer = NULL;
612
0
  char* subject = NULL;
613
0
  subject = x509_utils_get_subject(xcert);
614
0
  issuer = x509_utils_get_issuer(xcert);
615
0
  fp = (char*)x509_utils_get_hash(xcert, "sha256", NULL);
616
617
0
  if (!fp)
618
0
  {
619
0
    WLog_ERR(TAG, "error computing fingerprint");
620
0
    goto out_free_issuer;
621
0
  }
622
623
0
  WLog_INFO(TAG, "Certificate details:");
624
0
  WLog_INFO(TAG, "\tSubject: %s", subject);
625
0
  WLog_INFO(TAG, "\tIssuer: %s", issuer);
626
0
  WLog_INFO(TAG, "\tThumbprint: %s", fp);
627
0
  WLog_INFO(TAG,
628
0
            "The above X.509 certificate could not be verified, possibly because you do not have "
629
0
            "the CA certificate in your certificate store, or the certificate has expired. "
630
0
            "Please look at the OpenSSL documentation on how to add a private CA to the store.");
631
0
  free(fp);
632
0
out_free_issuer:
633
0
  free(issuer);
634
0
  free(subject);
635
0
}
636
637
X509* x509_utils_from_pem(const char* data, size_t len, BOOL fromFile)
638
0
{
639
0
  X509* x509 = NULL;
640
0
  BIO* bio = NULL;
641
0
  if (fromFile)
642
0
    bio = BIO_new_file(data, "rb");
643
0
  else
644
0
  {
645
0
    if (len > INT_MAX)
646
0
      return NULL;
647
648
0
    bio = BIO_new_mem_buf(data, (int)len);
649
0
  }
650
651
0
  if (!bio)
652
0
  {
653
0
    WLog_ERR(TAG, "BIO_new failed for certificate");
654
0
    return NULL;
655
0
  }
656
657
0
  x509 = PEM_read_bio_X509(bio, NULL, NULL, 0);
658
0
  BIO_free_all(bio);
659
0
  if (!x509)
660
0
    WLog_ERR(TAG, "PEM_read_bio_X509 returned NULL [input length %" PRIuz "]", len);
661
662
0
  return x509;
663
0
}
664
665
static WINPR_MD_TYPE hash_nid_to_winpr(int hash_nid)
666
0
{
667
0
  switch (hash_nid)
668
0
  {
669
0
    case NID_md2:
670
0
      return WINPR_MD_MD2;
671
0
    case NID_md4:
672
0
      return WINPR_MD_MD4;
673
0
    case NID_md5:
674
0
      return WINPR_MD_MD5;
675
0
    case NID_sha1:
676
0
      return WINPR_MD_SHA1;
677
0
    case NID_sha224:
678
0
      return WINPR_MD_SHA224;
679
0
    case NID_sha256:
680
0
      return WINPR_MD_SHA256;
681
0
    case NID_sha384:
682
0
      return WINPR_MD_SHA384;
683
0
    case NID_sha512:
684
0
      return WINPR_MD_SHA512;
685
0
    case NID_ripemd160:
686
0
      return WINPR_MD_RIPEMD160;
687
0
#if (OPENSSL_VERSION_NUMBER >= 0x1010101fL) && !defined(LIBRESSL_VERSION_NUMBER)
688
0
    case NID_sha3_224:
689
0
      return WINPR_MD_SHA3_224;
690
0
    case NID_sha3_256:
691
0
      return WINPR_MD_SHA3_256;
692
0
    case NID_sha3_384:
693
0
      return WINPR_MD_SHA3_384;
694
0
    case NID_sha3_512:
695
0
      return WINPR_MD_SHA3_512;
696
0
    case NID_shake128:
697
0
      return WINPR_MD_SHAKE128;
698
0
    case NID_shake256:
699
0
      return WINPR_MD_SHAKE256;
700
0
#endif
701
0
    case NID_undef:
702
0
    default:
703
0
      return WINPR_MD_NONE;
704
0
  }
705
0
}
706
707
static WINPR_MD_TYPE get_rsa_pss_digest(const X509_ALGOR* alg)
708
0
{
709
0
  WINPR_MD_TYPE ret = WINPR_MD_NONE;
710
0
  WINPR_MD_TYPE message_digest = WINPR_MD_NONE;
711
0
  WINPR_MD_TYPE mgf1_digest = WINPR_MD_NONE;
712
0
  int param_type = 0;
713
0
  const void* param_value = NULL;
714
0
  const ASN1_STRING* sequence = NULL;
715
0
  const unsigned char* inp = NULL;
716
0
  RSA_PSS_PARAMS* params = NULL;
717
0
  X509_ALGOR* mgf1_digest_alg = NULL;
718
719
  /* The RSA-PSS digest is encoded in a complex structure, defined in
720
  https://www.rfc-editor.org/rfc/rfc4055.html. */
721
0
  X509_ALGOR_get0(NULL, &param_type, &param_value, alg);
722
723
  /* param_type and param_value the parameter in ASN1_TYPE form, but split into two parameters. A
724
  SEQUENCE is has type V_ASN1_SEQUENCE, and the value is an ASN1_STRING with the encoded
725
  structure. */
726
0
  if (param_type != V_ASN1_SEQUENCE)
727
0
    goto end;
728
0
  sequence = param_value;
729
730
  /* Decode the structure. */
731
0
  inp = ASN1_STRING_get0_data(sequence);
732
0
  params = d2i_RSA_PSS_PARAMS(NULL, &inp, ASN1_STRING_length(sequence));
733
0
  if (params == NULL)
734
0
    goto end;
735
736
  /* RSA-PSS uses two hash algorithms, a message digest and also an MGF function which is, itself,
737
  parameterized by a hash function. Both fields default to SHA-1, so we must also check for the
738
  value being NULL. */
739
0
  message_digest = WINPR_MD_SHA1;
740
0
  if (params->hashAlgorithm != NULL)
741
0
  {
742
0
    const ASN1_OBJECT* obj = NULL;
743
0
    X509_ALGOR_get0(&obj, NULL, NULL, params->hashAlgorithm);
744
0
    message_digest = hash_nid_to_winpr(OBJ_obj2nid(obj));
745
0
    if (message_digest == WINPR_MD_NONE)
746
0
      goto end;
747
0
  }
748
749
0
  mgf1_digest = WINPR_MD_SHA1;
750
0
  if (params->maskGenAlgorithm != NULL)
751
0
  {
752
0
    const ASN1_OBJECT* obj = NULL;
753
0
    int mgf_param_type = 0;
754
0
    const void* mgf_param_value = NULL;
755
0
    const ASN1_STRING* mgf_param_sequence = NULL;
756
    /* First, check this is MGF-1, the only one ever defined. */
757
0
    X509_ALGOR_get0(&obj, &mgf_param_type, &mgf_param_value, params->maskGenAlgorithm);
758
0
    if (OBJ_obj2nid(obj) != NID_mgf1)
759
0
      goto end;
760
761
    /* MGF-1 is, itself, parameterized by a hash function, encoded as an AlgorithmIdentifier. */
762
0
    if (mgf_param_type != V_ASN1_SEQUENCE)
763
0
      goto end;
764
0
    mgf_param_sequence = mgf_param_value;
765
0
    inp = ASN1_STRING_get0_data(mgf_param_sequence);
766
0
    mgf1_digest_alg = d2i_X509_ALGOR(NULL, &inp, ASN1_STRING_length(mgf_param_sequence));
767
0
    if (mgf1_digest_alg == NULL)
768
0
      goto end;
769
770
    /* Finally, extract the digest. */
771
0
    X509_ALGOR_get0(&obj, NULL, NULL, mgf1_digest_alg);
772
0
    mgf1_digest = hash_nid_to_winpr(OBJ_obj2nid(obj));
773
0
    if (mgf1_digest == WINPR_MD_NONE)
774
0
      goto end;
775
0
  }
776
777
  /* If the two digests do not match, it is ambiguous which to return. tls-server-end-point leaves
778
  it undefined, so return none.
779
  https://www.rfc-editor.org/rfc/rfc5929.html#section-4.1 */
780
0
  if (message_digest != mgf1_digest)
781
0
    goto end;
782
0
  ret = message_digest;
783
784
0
end:
785
0
  RSA_PSS_PARAMS_free(params);
786
0
  X509_ALGOR_free(mgf1_digest_alg);
787
0
  return ret;
788
0
}
789
790
WINPR_MD_TYPE x509_utils_get_signature_alg(const X509* xcert)
791
0
{
792
0
  WINPR_ASSERT(xcert);
793
794
0
  const int nid = X509_get_signature_nid(xcert);
795
796
0
  if (nid == NID_rsassaPss)
797
0
  {
798
0
    const X509_ALGOR* alg = NULL;
799
0
    X509_get0_signature(NULL, &alg, xcert);
800
0
    return get_rsa_pss_digest(alg);
801
0
  }
802
803
0
  int hash_nid = 0;
804
0
  if (OBJ_find_sigid_algs(nid, &hash_nid, NULL) != 1)
805
0
    return WINPR_MD_NONE;
806
807
0
  return hash_nid_to_winpr(hash_nid);
808
0
}
809
810
char* x509_utils_get_common_name(const X509* xcert, size_t* plength)
811
0
{
812
0
  X509_NAME* subject_name = X509_get_subject_name(xcert);
813
0
  if (subject_name == NULL)
814
0
    return NULL;
815
816
0
  const int index = X509_NAME_get_index_by_NID(subject_name, NID_commonName, -1);
817
0
  if (index < 0)
818
0
    return NULL;
819
820
0
  const X509_NAME_ENTRY* entry = X509_NAME_get_entry(subject_name, index);
821
0
  if (entry == NULL)
822
0
    return NULL;
823
824
0
  const ASN1_STRING* entry_data = X509_NAME_ENTRY_get_data(entry);
825
0
  if (entry_data == NULL)
826
0
    return NULL;
827
828
0
  BYTE* common_name_raw = NULL;
829
0
  const int length = ASN1_STRING_to_UTF8(&common_name_raw, entry_data);
830
0
  if (length < 0)
831
0
    return NULL;
832
833
0
  if (plength)
834
0
    *plength = (size_t)length;
835
836
0
  char* common_name = _strdup((char*)common_name_raw);
837
0
  OPENSSL_free(common_name_raw);
838
0
  return common_name;
839
0
}
840
841
static int verify_cb(int ok, X509_STORE_CTX* csc)
842
0
{
843
0
  if (ok != 1)
844
0
  {
845
0
    WINPR_ASSERT(csc);
846
0
    int err = X509_STORE_CTX_get_error(csc);
847
0
    int derr = X509_STORE_CTX_get_error_depth(csc);
848
0
    X509* where = X509_STORE_CTX_get_current_cert(csc);
849
0
    const char* what = X509_verify_cert_error_string(err);
850
0
    char* name = x509_utils_get_subject(where);
851
852
0
    WLog_WARN(TAG, "Certificate verification failure '%s (%d)' at stack position %d", what, err,
853
0
              derr);
854
0
    WLog_WARN(TAG, "%s", name);
855
856
0
    free(name);
857
0
  }
858
0
  return ok;
859
0
}
860
861
BOOL x509_utils_verify(X509* xcert, STACK_OF(X509) * chain, const char* certificate_store_path)
862
0
{
863
0
  const int purposes[3] = { X509_PURPOSE_SSL_SERVER, X509_PURPOSE_SSL_CLIENT, X509_PURPOSE_ANY };
864
0
  X509_STORE_CTX* csc = NULL;
865
0
  BOOL status = FALSE;
866
0
  X509_LOOKUP* lookup = NULL;
867
868
0
  if (!xcert)
869
0
    return FALSE;
870
871
0
  X509_STORE* cert_ctx = X509_STORE_new();
872
873
0
  if (cert_ctx == NULL)
874
0
    goto end;
875
876
#if OPENSSL_VERSION_NUMBER < 0x10100000L || defined(LIBRESSL_VERSION_NUMBER)
877
  OpenSSL_add_all_algorithms();
878
#else
879
0
  OPENSSL_init_crypto(OPENSSL_INIT_ADD_ALL_CIPHERS | OPENSSL_INIT_ADD_ALL_DIGESTS |
880
0
                          OPENSSL_INIT_LOAD_CONFIG,
881
0
                      NULL);
882
0
#endif
883
884
0
  if (X509_STORE_set_default_paths(cert_ctx) != 1)
885
0
    goto end;
886
887
0
  lookup = X509_STORE_add_lookup(cert_ctx, X509_LOOKUP_hash_dir());
888
889
0
  if (lookup == NULL)
890
0
    goto end;
891
892
0
  X509_LOOKUP_add_dir(lookup, NULL, X509_FILETYPE_DEFAULT);
893
894
0
  if (certificate_store_path != NULL)
895
0
  {
896
0
    X509_LOOKUP_add_dir(lookup, certificate_store_path, X509_FILETYPE_PEM);
897
0
  }
898
899
0
  X509_STORE_set_flags(cert_ctx, 0);
900
901
0
  for (size_t i = 0; i < ARRAYSIZE(purposes); i++)
902
0
  {
903
0
    int err = -1;
904
0
    int rc = -1;
905
0
    int purpose = purposes[i];
906
0
    csc = X509_STORE_CTX_new();
907
908
0
    if (csc == NULL)
909
0
      goto skip;
910
0
    if (!X509_STORE_CTX_init(csc, cert_ctx, xcert, chain))
911
0
      goto skip;
912
913
0
    X509_STORE_CTX_set_purpose(csc, purpose);
914
0
    X509_STORE_CTX_set_verify_cb(csc, verify_cb);
915
916
0
    rc = X509_verify_cert(csc);
917
0
    err = X509_STORE_CTX_get_error(csc);
918
0
  skip:
919
0
    X509_STORE_CTX_free(csc);
920
0
    if (rc == 1)
921
0
    {
922
0
      status = TRUE;
923
0
      break;
924
0
    }
925
0
    else if (err != X509_V_ERR_INVALID_PURPOSE)
926
0
      break;
927
0
  }
928
929
0
  X509_STORE_free(cert_ctx);
930
0
end:
931
0
  return status;
932
0
}