Coverage Report

Created: 2026-07-22 06:50

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/wolfssl-fastmath/src/x509.c
Line
Count
Source
1
/* x509.c
2
 *
3
 * Copyright (C) 2006-2026 wolfSSL Inc.
4
 *
5
 * This file is part of wolfSSL.
6
 *
7
 * wolfSSL is free software; you can redistribute it and/or modify
8
 * it under the terms of the GNU General Public License as published by
9
 * the Free Software Foundation; either version 3 of the License, or
10
 * (at your option) any later version.
11
 *
12
 * wolfSSL is distributed in the hope that it will be useful,
13
 * but WITHOUT ANY WARRANTY; without even the implied warranty of
14
 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
15
 * GNU General Public License for more details.
16
 *
17
 * You should have received a copy of the GNU General Public License
18
 * along with this program; if not, write to the Free Software
19
 * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1335, USA
20
 */
21
22
#include <wolfssl/wolfcrypt/libwolfssl_sources.h>
23
24
#if !defined(WOLFSSL_X509_INCLUDED)
25
    #ifndef WOLFSSL_IGNORE_FILE_WARN
26
        #warning x509.c does not need to be compiled separately from ssl.c
27
    #endif
28
#else
29
30
#ifndef WOLFCRYPT_ONLY
31
32
#ifndef NO_CERTS
33
34
#if defined(OPENSSL_EXTRA) || defined(OPENSSL_EXTRA_X509_SMALL)
35
    #include <wolfssl/openssl/x509v3.h>
36
#endif
37
#ifdef OPENSSL_EXTRA
38
    #include <wolfssl/wolfio.h>
39
#endif
40
41
/* 16 times MAX_X509_SIZE should be more than enough to read any X509
42
 * certificate file */
43
#define MAX_BIO_READ_BUFFER (MAX_X509_SIZE * 16)
44
45
#if defined(OPENSSL_ALL) || defined(OPENSSL_EXTRA)
46
unsigned int wolfSSL_X509_get_extension_flags(WOLFSSL_X509* x509)
47
{
48
    unsigned int flags = 0;
49
50
    WOLFSSL_ENTER("wolfSSL_X509_get_extension_flags");
51
52
    if (x509 != NULL) {
53
        if (x509->keyUsageSet) {
54
            flags |= WOLFSSL_EXFLAG_KUSAGE;
55
        }
56
        if (x509->extKeyUsageSrc != NULL) {
57
            flags |= WOLFSSL_EXFLAG_XKUSAGE;
58
        }
59
    }
60
61
    WOLFSSL_LEAVE("wolfSSL_X509_get_extension_flags", flags);
62
63
    return flags;
64
}
65
66
unsigned int wolfSSL_X509_get_key_usage(WOLFSSL_X509* x509)
67
{
68
    unsigned int ret = 0;
69
70
    WOLFSSL_ENTER("wolfSSL_X509_get_key_usage");
71
72
    if (x509 == NULL) {
73
        WOLFSSL_MSG("x509 is NULL");
74
    }
75
    else {
76
        if (x509->keyUsageSet) {
77
            ret = wolfSSL_X509_get_keyUsage(x509);
78
        }
79
        else {
80
            ret = (unsigned int)-1;
81
        }
82
    }
83
84
    WOLFSSL_LEAVE("wolfSSL_X509_get_key_usage", ret);
85
86
    return ret;
87
}
88
89
unsigned int wolfSSL_X509_get_extended_key_usage(WOLFSSL_X509* x509)
90
{
91
    int ret = 0;
92
93
    WOLFSSL_ENTER("wolfSSL_X509_get_extended_key_usage");
94
95
    if (x509 != NULL) {
96
        if (x509->extKeyUsage & EXTKEYUSE_OCSP_SIGN)
97
            ret |= WOLFSSL_XKU_OCSP_SIGN;
98
        if (x509->extKeyUsage & EXTKEYUSE_TIMESTAMP)
99
            ret |= WOLFSSL_XKU_TIMESTAMP;
100
        if (x509->extKeyUsage & EXTKEYUSE_EMAILPROT)
101
            ret |= WOLFSSL_XKU_SMIME;
102
        if (x509->extKeyUsage & EXTKEYUSE_CODESIGN)
103
            ret |= WOLFSSL_XKU_CODE_SIGN;
104
        if (x509->extKeyUsage & EXTKEYUSE_CLIENT_AUTH)
105
            ret |= WOLFSSL_XKU_SSL_CLIENT;
106
        if (x509->extKeyUsage & EXTKEYUSE_SERVER_AUTH)
107
            ret |= WOLFSSL_XKU_SSL_SERVER;
108
        if (x509->extKeyUsage & EXTKEYUSE_ANY)
109
            ret |= WOLFSSL_XKU_ANYEKU;
110
    }
111
112
    WOLFSSL_LEAVE("wolfSSL_X509_get_extended_key_usage", ret);
113
114
    return (unsigned int)ret;
115
}
116
117
/* Returns the number of X509V3 extensions in X509 object, or 0 on failure */
118
int wolfSSL_X509_get_ext_count(const WOLFSSL_X509* passedCert)
119
{
120
    int extCount = 0;
121
    int length = 0;
122
    int outSz = 0;
123
    const byte* rawCert;
124
    int sz = 0;
125
    word32 idx = 0;
126
    const byte* input;
127
    WC_DECLARE_VAR(cert, DecodedCert, 1, 0);
128
129
    WOLFSSL_ENTER("wolfSSL_X509_get_ext_count");
130
    if (passedCert == NULL) {
131
        WOLFSSL_MSG("\tNot passed a certificate");
132
        return WOLFSSL_FAILURE;
133
    }
134
135
    rawCert = wolfSSL_X509_get_der((WOLFSSL_X509*)passedCert, &outSz);
136
    if (rawCert == NULL) {
137
        WOLFSSL_MSG("\tpassedCert has no internal DerBuffer set.");
138
        return WOLFSSL_FAILURE;
139
    }
140
141
#ifdef WOLFSSL_SMALL_STACK
142
    cert = (DecodedCert *)XMALLOC(sizeof(*cert), NULL, DYNAMIC_TYPE_DCERT);
143
    if (cert == NULL) {
144
        WOLFSSL_MSG("out of memory");
145
        return WOLFSSL_FAILURE;
146
    }
147
#endif
148
149
    InitDecodedCert(cert, rawCert, (word32)outSz, 0);
150
151
    if (ParseCert(cert,
152
#ifdef WOLFSSL_CERT_REQ
153
            passedCert->isCSR ? CERTREQ_TYPE :
154
#endif
155
                    CA_TYPE,
156
            NO_VERIFY, NULL) < 0) {
157
        WOLFSSL_MSG("\tCertificate parsing failed");
158
        goto out;
159
    }
160
161
    input = cert->extensions;
162
    sz = cert->extensionsSz;
163
164
    if (input == NULL || sz == 0) {
165
        WOLFSSL_MSG("\tsz or input NULL error");
166
        goto out;
167
    }
168
169
#ifdef WOLFSSL_CERT_REQ
170
    if (!passedCert->isCSR)
171
#endif
172
    {
173
        if (input[idx++] != ASN_EXTENSIONS) {
174
            WOLFSSL_MSG("\tfail: should be an EXTENSIONS");
175
            goto out;
176
        }
177
178
        if (GetLength(input, &idx, &length, (word32)sz) < 0) {
179
            WOLFSSL_MSG("\tfail: invalid length");
180
            goto out;
181
        }
182
    }
183
184
    if (GetSequence(input, &idx, &length, (word32)sz) < 0) {
185
        WOLFSSL_MSG("\tfail: should be a SEQUENCE (1)");
186
        goto out;
187
    }
188
189
    while (idx < (word32)sz) {
190
        if (GetSequence(input, &idx, &length, (word32)sz) < 0) {
191
            WOLFSSL_MSG("\tfail: should be a SEQUENCE");
192
            FreeDecodedCert(cert);
193
            return WOLFSSL_FAILURE;
194
        }
195
        idx += length;
196
        extCount++;
197
    }
198
199
out:
200
201
    FreeDecodedCert(cert);
202
    WC_FREE_VAR_EX(cert, NULL, DYNAMIC_TYPE_DCERT);
203
    return extCount;
204
}
205
206
/* Creates and returns pointer to a new X509_EXTENSION object in memory */
207
WOLFSSL_X509_EXTENSION* wolfSSL_X509_EXTENSION_new(void)
208
{
209
    WOLFSSL_X509_EXTENSION* newExt;
210
211
    WOLFSSL_ENTER("wolfSSL_X509_EXTENSION_new");
212
213
    newExt = (WOLFSSL_X509_EXTENSION*)XMALLOC(sizeof(WOLFSSL_X509_EXTENSION),
214
              NULL, DYNAMIC_TYPE_X509_EXT);
215
    if (newExt == NULL)
216
        return NULL;
217
    XMEMSET(newExt, 0, sizeof(WOLFSSL_X509_EXTENSION));
218
219
    return newExt;
220
}
221
222
223
/* Clear out and free internal pointers of ASN.1 STRING object.
224
 *
225
 * @param [in] asn1  ASN.1 STRING object.
226
 */
227
static void wolfSSL_ASN1_STRING_clear(WOLFSSL_ASN1_STRING* asn1)
228
{
229
    /* Check we have an object to free. */
230
    if (asn1 != NULL) {
231
        /* Dispose of dynamic data. */
232
        if ((asn1->length > 0) && asn1->isDynamic) {
233
            XFREE(asn1->data, NULL, DYNAMIC_TYPE_OPENSSL);
234
        }
235
        XMEMSET(asn1, 0, sizeof(WOLFSSL_ASN1_STRING));
236
    }
237
}
238
239
240
void wolfSSL_X509_EXTENSION_free(WOLFSSL_X509_EXTENSION* x)
241
{
242
    WOLFSSL_ENTER("wolfSSL_X509_EXTENSION_free");
243
    if (x == NULL)
244
        return;
245
246
    if (x->obj != NULL) {
247
        wolfSSL_ASN1_OBJECT_free(x->obj);
248
    }
249
250
    wolfSSL_ASN1_STRING_clear(&x->value);
251
    wolfSSL_sk_pop_free(x->ext_sk, NULL);
252
253
    XFREE(x, NULL, DYNAMIC_TYPE_X509_EXT);
254
}
255
256
WOLFSSL_X509_EXTENSION* wolfSSL_X509_EXTENSION_dup(WOLFSSL_X509_EXTENSION* src)
257
{
258
    WOLFSSL_X509_EXTENSION* ret = NULL;
259
    int err = 0;
260
261
    WOLFSSL_ENTER("wolfSSL_X509_EXTENSION_dup");
262
263
    if (src == NULL) {
264
        err = 1;
265
    }
266
267
    if (err == 0) {
268
        ret = wolfSSL_X509_EXTENSION_new();
269
        if (ret == NULL) {
270
            err = 1;
271
        }
272
    }
273
    if (err == 0 && src->obj != NULL) {
274
        ret->obj = wolfSSL_ASN1_OBJECT_dup(src->obj);
275
        if (ret->obj == NULL) {
276
            err = 1;
277
        }
278
    }
279
    if (err == 0) {
280
        ret->crit = src->crit;
281
        if (wolfSSL_ASN1_STRING_copy(&ret->value, &src->value) !=
282
                WOLFSSL_SUCCESS) {
283
            err = 1;
284
        }
285
    }
286
287
    if (err == 1 && ret != NULL) {
288
        wolfSSL_X509_EXTENSION_free(ret);
289
        ret = NULL;
290
    }
291
292
    return ret;
293
}
294
295
WOLFSSL_X509_EXTENSION* wolfSSL_X509_EXTENSION_create_by_OBJ(
296
    WOLFSSL_X509_EXTENSION* ex, WOLFSSL_ASN1_OBJECT *obj, int crit,
297
    WOLFSSL_ASN1_STRING *data)
298
{
299
    int err = 0;
300
    WOLFSSL_X509_EXTENSION *ret = ex;
301
    WOLFSSL_ASN1_OBJECT *newObj = NULL;
302
303
    WOLFSSL_ENTER("wolfSSL_X509_EXTENSION_create_by_OBJ");
304
305
    if ((obj == NULL) || (data == NULL)) {
306
       return NULL;
307
    }
308
309
    if (ret == NULL) {
310
        ret = wolfSSL_X509_EXTENSION_new();
311
        if (ret == NULL) {
312
            err = 1;
313
        }
314
    }
315
316
    /* Duplicate the source object before freeing the existing one so that a
317
     * caller passing the extension's own object (e.g. obtained via
318
     * wolfSSL_X509_EXTENSION_get_object(ex)) does not read freed memory. */
319
    if (err == 0) {
320
        newObj = wolfSSL_ASN1_OBJECT_dup(obj);
321
        if (newObj == NULL) {
322
            err = 1;
323
        }
324
    }
325
326
    if ((err == 0) && (ret == ex)) {
327
        /* Prevent potential memory leaks and dangling pointers. */
328
        wolfSSL_ASN1_OBJECT_free(ret->obj);
329
        ret->obj = NULL;
330
        wolfSSL_ASN1_STRING_clear(&ret->value);
331
    }
332
333
    if (err == 0) {
334
        ret->crit = crit;
335
        ret->obj = newObj;
336
        newObj = NULL;
337
    }
338
339
    if (err == 0) {
340
        if (wolfSSL_ASN1_STRING_copy(&ret->value, data) != WOLFSSL_SUCCESS) {
341
            err = 1;
342
        }
343
    }
344
345
    if (err == 1) {
346
        /* Free the duplicate if it was created but not assigned to ret. */
347
        wolfSSL_ASN1_OBJECT_free(newObj);
348
        if (ret != ex) {
349
            wolfSSL_X509_EXTENSION_free(ret);
350
        }
351
        ret = NULL;
352
    }
353
    return ret;
354
}
355
356
/* Creates and returns a new WOLFSSL_X509_EXTENSION stack. */
357
WOLFSSL_STACK* wolfSSL_sk_new_x509_ext(void)
358
{
359
    WOLFSSL_STACK* sk;
360
    WOLFSSL_ENTER("wolfSSL_sk_new_x509_ext");
361
362
    sk = wolfSSL_sk_new_null();
363
    if (sk) {
364
        sk->type = STACK_TYPE_X509_EXT;
365
    }
366
    return sk;
367
}
368
369
/* This function does NOT return 1 on success. It returns 0 on fail, and the
370
 * number of items in the stack upon success. This is for compatibility with
371
 * OpenSSL. */
372
int wolfSSL_sk_X509_EXTENSION_push(WOLFSSL_STACK* sk,
373
    WOLFSSL_X509_EXTENSION* ext)
374
{
375
    WOLFSSL_ENTER("wolfSSL_sk_X509_EXTENSION_push");
376
377
    return wolfSSL_sk_push(sk, ext);
378
}
379
380
static WOLFSSL_STACK* generateExtStack(const WOLFSSL_X509 *x)
381
{
382
    int numOfExt, i;
383
    WOLFSSL_X509 *x509 = (WOLFSSL_X509*)x;
384
    WOLFSSL_STACK* ret;
385
    WOLFSSL_STACK* tmp;
386
387
    if (!x509) {
388
        WOLFSSL_MSG("Bad parameter");
389
        return NULL;
390
    }
391
392
    /* Save x509->ext_sk */
393
    tmp = x509->ext_sk;
394
    x509->ext_sk = NULL;
395
    numOfExt = wolfSSL_X509_get_ext_count(x509);
396
397
    for (i = 0; i < numOfExt; i++) {
398
        /* Build the extension stack */
399
        (void)wolfSSL_X509_set_ext(x509, i);
400
    }
401
402
    /* Restore */
403
    ret = x509->ext_sk;
404
    x509->ext_sk = tmp;
405
    return ret;
406
}
407
408
/**
409
 * @param x Certificate to extract extensions from
410
 * @return STACK_OF(X509_EXTENSION)*
411
 */
412
const WOLFSSL_STACK *wolfSSL_X509_get0_extensions(const WOLFSSL_X509 *x)
413
{
414
    int numOfExt;
415
    WOLFSSL_X509 *x509 = (WOLFSSL_X509*)x;
416
    WOLFSSL_ENTER("wolfSSL_X509_get0_extensions");
417
418
    if (!x509) {
419
        WOLFSSL_MSG("Bad parameter");
420
        return NULL;
421
    }
422
423
    numOfExt = wolfSSL_X509_get_ext_count(x509);
424
425
    if (numOfExt != wolfSSL_sk_num(x509->ext_sk_full)) {
426
        wolfSSL_sk_pop_free(x509->ext_sk_full, NULL);
427
        x509->ext_sk_full = generateExtStack(x);
428
    }
429
430
    return x509->ext_sk_full;
431
}
432
433
/**
434
 * Caller is responsible for freeing the returned stack.
435
 */
436
const WOLFSSL_STACK *wolfSSL_X509_REQ_get_extensions(const WOLFSSL_X509 *x)
437
{
438
    return generateExtStack(x);
439
}
440
441
/* Gets the X509_EXTENSION* ext based on it's location in WOLFSSL_X509* x509.
442
 *
443
 * x509   : The X509 structure to look for the extension.
444
 * loc    : Location of the extension. If the extension is found at the given
445
 * location, a new X509_EXTENSION structure is populated with extension-specific
446
 * data based on the extension type.
447
448
 * Returns NULL on error or pointer to X509_EXTENSION structure containing the
449
 * extension. The returned X509_EXTENSION should not be free'd by caller.
450
 * The returned X509_EXTENSION is pushed onto a stack inside the x509 argument.
451
 * This is later free'd when x509 is free'd.
452
 *
453
 * NOTE: for unknown extension NIDs, a X509_EXTENSION is populated with the
454
 * extension oid as the ASN1_OBJECT (QT compatibility)
455
 */
456
WOLFSSL_X509_EXTENSION* wolfSSL_X509_get_ext(const WOLFSSL_X509* x509, int loc)
457
{
458
    WOLFSSL_X509_EXTENSION* ext = NULL;
459
    WOLFSSL_ENTER("wolfSSL_X509_get_ext");
460
    if (x509 == NULL)
461
        return NULL;
462
463
   ext = wolfSSL_X509_set_ext((WOLFSSL_X509*) x509, loc);
464
   return ext;
465
}
466
467
int wolfSSL_X509_get_ext_by_OBJ(const WOLFSSL_X509 *x,
468
        const WOLFSSL_ASN1_OBJECT *obj, int lastpos)
469
{
470
    const WOLF_STACK_OF(WOLFSSL_X509_EXTENSION) *sk;
471
472
    if (!x || !obj) {
473
        WOLFSSL_MSG("Bad parameter");
474
        return WOLFSSL_FATAL_ERROR;
475
    }
476
477
    sk = wolfSSL_X509_get0_extensions(x);
478
    if (!sk) {
479
        WOLFSSL_MSG("No extensions");
480
        return WOLFSSL_FATAL_ERROR;
481
    }
482
    lastpos++;
483
    if (lastpos < 0)
484
        lastpos = 0;
485
    for (; lastpos < wolfSSL_sk_num(sk); lastpos++) {
486
        const WOLFSSL_X509_EXTENSION *ext =
487
            wolfSSL_sk_X509_EXTENSION_value(sk, lastpos);
488
        if (ext == NULL)
489
            continue;
490
        if (wolfSSL_OBJ_cmp(ext->obj, obj) == 0)
491
            return lastpos;
492
    }
493
    return WOLFSSL_FATAL_ERROR;
494
}
495
496
497
int wolfSSL_X509_OBJECT_set1_X509(WOLFSSL_X509_OBJECT *a, WOLFSSL_X509 *obj)
498
{
499
    WOLFSSL_STUB("wolfSSL_X509_OBJECT_set1_X509");
500
    (void)a;
501
    (void)obj;
502
    return 0;
503
}
504
505
int wolfSSL_X509_OBJECT_set1_X509_CRL(WOLFSSL_X509_OBJECT *a,
506
    WOLFSSL_X509_CRL *obj)
507
{
508
    WOLFSSL_STUB("wolfSSL_X509_OBJECT_set1_X509_CRL");
509
    (void)a;
510
    (void)obj;
511
    return 0;
512
}
513
514
#endif /* OPENSSL_ALL || OPENSSL_EXTRA */
515
516
#if defined(OPENSSL_ALL) || defined(OPENSSL_EXTRA) || \
517
    defined(WOLFSSL_WPAS_SMALL)
518
/* Set a general name from the DNS entry data.
519
 *
520
 * @param [in]      dns  DNS entry.
521
 * @param [in, out] gn   General name to place data in.
522
 * @return  1 on success.
523
 * @return  0 on failure.
524
 */
525
static int wolfssl_dns_entry_othername_to_gn(DNS_entry* dns,
526
    WOLFSSL_GENERAL_NAME* gn)
527
{
528
    int ret = 0;
529
    WOLFSSL_ASN1_OBJECT* obj = NULL;
530
    WOLFSSL_ASN1_TYPE* type = NULL;
531
    WOLFSSL_ASN1_STRING* str = NULL;
532
    byte tag = 0;
533
    unsigned char* p = (unsigned char *)dns->name;
534
    long len = dns->len;
535
536
#ifdef WOLFSSL_FPKI
537
    if (dns->oidSum != 0) {
538
        /* UPN OID: 1.3.6.1.4.1.311.20.2.3 */
539
        static const unsigned char upn_oid[] = {
540
            0x2B, 0x06, 0x01, 0x04, 0x01, 0x82, 0x37, 0x14, 0x02, 0x03
541
        };
542
        /* FASCN OID: 2.16.840.1.101.3.6.6 */
543
        static const unsigned char fascn_oid[] = {
544
            0x60, 0x86, 0x48, 0x01, 0x65, 0x03, 0x06, 0x06
545
        };
546
        const unsigned char* oid;
547
        word32 oidSz;
548
549
        if ((oid = OidFromId(dns->oidSum, oidCertAltNameType, &oidSz)) ==
550
                NULL) {
551
            if (dns->oidSum == UPN_OID) {
552
                oid = upn_oid;
553
                oidSz = (word32)sizeof(upn_oid);
554
            }
555
            else if (dns->oidSum == FASCN_OID) {
556
                oid = fascn_oid;
557
                oidSz = (word32)sizeof(fascn_oid);
558
            }
559
            else {
560
                goto err;
561
            }
562
        }
563
        if ((obj = wolfSSL_c2i_ASN1_OBJECT(NULL, &oid, oidSz)) == NULL) {
564
            goto err;
565
        }
566
567
        tag = WOLFSSL_V_ASN1_UTF8STRING;
568
    }
569
    else
570
#endif
571
    {
572
        word32 idx = 0;
573
        int nameLen;
574
575
        /* Create an object id for general name from DER encoding. */
576
        obj = wolfSSL_d2i_ASN1_OBJECT(NULL, (const unsigned char**)&p, len);
577
        if (obj == NULL)
578
            goto err;
579
        /* Pointer moved on and now update length of remaining data. */
580
        len -= (long)((size_t)p - (size_t)dns->name);
581
582
        /* Next is "value      [0] EXPLICIT ANY DEFINED BY type-id" */
583
        if (GetASNHeader(p, ASN_CONTEXT_SPECIFIC | ASN_CONSTRUCTED | 0,
584
                &idx, &nameLen, (word32)len) < 0)
585
            goto err;
586
        p += idx;
587
        len -= idx;
588
589
        /* Set the tag to object so that it gets output in raw form */
590
        tag = WOLFSSL_V_ASN1_SEQUENCE;
591
    }
592
593
    /* Create a WOLFSSL_ASN1_STRING from the DER. */
594
    str = wolfSSL_ASN1_STRING_type_new(tag);
595
    if (str == NULL) {
596
        goto err;
597
    }
598
    wolfSSL_ASN1_STRING_set(str, p, (int)len);
599
600
    /* Wrap string in a WOLFSSL_ASN1_TYPE. */
601
    type = wolfSSL_ASN1_TYPE_new();
602
    if (type == NULL)
603
        goto err;
604
    wolfSSL_ASN1_TYPE_set(type, tag, str);
605
    str = NULL; /* type now owns str */
606
607
    if (wolfSSL_GENERAL_NAME_set_type(gn, WOLFSSL_GEN_OTHERNAME)
608
            != WOLFSSL_SUCCESS) {
609
        goto err;
610
    }
611
612
    /* Store the object and string in general name. */
613
    gn->d.otherName->type_id = obj;
614
    gn->d.otherName->value = type;
615
    type = NULL; /* gn->d.otherName owns type */
616
617
    ret = 1;
618
err:
619
    if (ret != 1) {
620
        wolfSSL_ASN1_OBJECT_free(obj);
621
        wolfSSL_ASN1_TYPE_free(type);
622
        wolfSSL_ASN1_STRING_free(str);
623
    }
624
    return ret;
625
}
626
#endif /* OPENSSL_ALL || WOLFSSL_WPAS_SMALL */
627
628
#if defined(OPENSSL_ALL) || defined(OPENSSL_EXTRA)
629
static int DNS_to_GENERAL_NAME(WOLFSSL_GENERAL_NAME* gn, DNS_entry* dns)
630
{
631
    switch (dns->type) {
632
        case WOLFSSL_GEN_OTHERNAME:
633
            /* Sets gn->type internally */
634
            if (!wolfssl_dns_entry_othername_to_gn(dns, gn)) {
635
                WOLFSSL_MSG("OTHERNAME set failed");
636
                return WOLFSSL_FAILURE;
637
            }
638
            break;
639
640
        case WOLFSSL_GEN_EMAIL:
641
        case WOLFSSL_GEN_DNS:
642
        case WOLFSSL_GEN_URI:
643
        case WOLFSSL_GEN_IPADD:
644
        case WOLFSSL_GEN_IA5:
645
            gn->type = dns->type;
646
            gn->d.ia5->length = dns->len;
647
            if (wolfSSL_ASN1_STRING_set(gn->d.ia5, dns->name,
648
                    gn->d.ia5->length) != WOLFSSL_SUCCESS) {
649
                WOLFSSL_MSG("ASN1_STRING_set failed");
650
                return WOLFSSL_FAILURE;
651
            }
652
            break;
653
654
655
        case WOLFSSL_GEN_DIRNAME:
656
            gn->type = dns->type;
657
            /* wolfSSL_GENERAL_NAME_new() mallocs this by default */
658
            wolfSSL_ASN1_STRING_free(gn->d.ia5);
659
            gn->d.ia5 = NULL;
660
661
            gn->d.dirn = wolfSSL_X509_NAME_new();;
662
            /* @TODO extract dir name info from DNS_entry */
663
            break;
664
665
        case WOLFSSL_GEN_RID:
666
            /* registeredID is parsed into altNames unconditionally so
667
             * ConfirmNameConstraints can enforce RID name constraints
668
             * (RFC 5280 Sec. 4.2.1.10). The body uses only the raw OID
669
             * bytes carried in dns->name/dns->len and constructs a
670
             * proper ASN1_OBJECT, so this case is independent of
671
             * WOLFSSL_RID_ALT_NAME (which only gates the human-readable
672
             * ridString form). */
673
            gn->type = dns->type;
674
            /* wolfSSL_GENERAL_NAME_new() mallocs this by default */
675
            wolfSSL_ASN1_STRING_free(gn->d.ia5);
676
            gn->d.ia5 = NULL;
677
678
            gn->d.registeredID = wolfSSL_ASN1_OBJECT_new();
679
            if (gn->d.registeredID == NULL) {
680
                return WOLFSSL_FAILURE;
681
            }
682
            {
683
                /* Store DER-encoded OID (tag + length + content) in obj */
684
                word32 derSz = 1 + SetLength(dns->len, NULL) + dns->len;
685
                byte* der = (byte*)XMALLOC(derSz,
686
                    gn->d.registeredID->heap, DYNAMIC_TYPE_ASN1);
687
                if (der == NULL) {
688
                    return WOLFSSL_FAILURE;
689
                }
690
                {
691
                    word32 idx = 0;
692
                    der[idx++] = ASN_OBJECT_ID;
693
                    idx += SetLength(dns->len, der + idx);
694
                    XMEMCPY(der + idx, dns->name, dns->len);
695
                }
696
                gn->d.registeredID->obj = der;
697
                gn->d.registeredID->objSz = derSz;
698
            }
699
            gn->d.registeredID->dynamic |= WOLFSSL_ASN1_DYNAMIC_DATA;
700
            gn->d.registeredID->grp = oidCertExtType;
701
            break;
702
703
        case WOLFSSL_GEN_X400:
704
            /* Unsupported: fall through */
705
        case WOLFSSL_GEN_EDIPARTY:
706
            /* Unsupported: fall through */
707
        default:
708
            WOLFSSL_MSG("Unsupported type conversion");
709
            return WOLFSSL_FAILURE;
710
    }
711
    return WOLFSSL_SUCCESS;
712
}
713
714
715
static int wolfssl_x509_alt_names_to_gn(WOLFSSL_X509* x509,
716
    WOLFSSL_X509_EXTENSION* ext)
717
{
718
    int ret = 0;
719
    WOLFSSL_GENERAL_NAME* gn = NULL;
720
    DNS_entry* dns = NULL;
721
    WOLFSSL_STACK* sk;
722
723
    sk = (WOLFSSL_GENERAL_NAMES*)XMALLOC(sizeof(WOLFSSL_GENERAL_NAMES), NULL,
724
        DYNAMIC_TYPE_ASN1);
725
    if (sk == NULL) {
726
        goto err;
727
    }
728
    XMEMSET(sk, 0, sizeof(WOLFSSL_GENERAL_NAMES));
729
    sk->type = STACK_TYPE_GEN_NAME;
730
731
    if (x509->subjAltNameSet && x509->altNames != NULL) {
732
        /* alt names are DNS_entry structs */
733
        dns = x509->altNames;
734
        /* Currently only support GEN_DNS type */
735
        while (dns != NULL) {
736
            gn = wolfSSL_GENERAL_NAME_new();
737
            if (gn == NULL) {
738
                WOLFSSL_MSG("Error creating GENERAL_NAME");
739
                wolfSSL_sk_pop_free(sk, NULL);
740
                goto err;
741
            }
742
743
            if (DNS_to_GENERAL_NAME(gn, dns) != WOLFSSL_SUCCESS) {
744
                wolfSSL_GENERAL_NAME_free(gn);
745
                wolfSSL_sk_pop_free(sk, NULL);
746
                goto err;
747
            }
748
749
            if (wolfSSL_sk_GENERAL_NAME_push(sk, gn) <= 0) {
750
                WOLFSSL_MSG("Error pushing onto stack");
751
                wolfSSL_GENERAL_NAME_free(gn);
752
                wolfSSL_sk_pop_free(sk, NULL);
753
                goto err;
754
            }
755
756
            dns = dns->next;
757
        }
758
    }
759
    ext->ext_sk = sk;
760
    ext->crit = x509->subjAltNameCrit;
761
762
    ret = 1;
763
err:
764
    return ret;
765
}
766
767
/* Pushes a new X509_EXTENSION* ext onto the stack inside WOLFSSL_X509* x509.
768
 * This is currently a helper function for wolfSSL_X509_get_ext
769
 * Caller does not free the returned WOLFSSL_X509_EXTENSION*
770
 */
771
WOLFSSL_X509_EXTENSION* wolfSSL_X509_set_ext(WOLFSSL_X509* x509, int loc)
772
{
773
    int extCount = 0, length = 0, outSz = 0, sz = 0, ret = 0;
774
    int objSz = 0, isSet = 0;
775
    const byte* rawCert;
776
    const byte* input;
777
    byte* oidBuf;
778
    word32 oid, idx = 0, tmpIdx = 0, nid;
779
    WOLFSSL_X509_EXTENSION* ext = NULL;
780
    WC_DECLARE_VAR(cert, DecodedCert, 1, 0);
781
782
    WOLFSSL_ENTER("wolfSSL_X509_set_ext");
783
784
    if (x509 == NULL) {
785
        WOLFSSL_MSG("\tNot passed a certificate");
786
        return NULL;
787
    }
788
789
    if (loc < 0 || (loc > wolfSSL_X509_get_ext_count(x509))) {
790
        WOLFSSL_MSG("\tBad location argument");
791
        return NULL;
792
    }
793
794
    ext = wolfSSL_X509_EXTENSION_new();
795
    if (ext == NULL) {
796
        WOLFSSL_MSG("\tX509_EXTENSION_new() failed");
797
        return NULL;
798
    }
799
800
    rawCert = wolfSSL_X509_get_der((WOLFSSL_X509*)x509, &outSz);
801
    if (rawCert == NULL) {
802
        WOLFSSL_MSG("\tX509_get_der() failed");
803
        wolfSSL_X509_EXTENSION_free(ext);
804
        return NULL;
805
    }
806
807
#ifdef WOLFSSL_SMALL_STACK
808
    cert = (DecodedCert*)XMALLOC(sizeof(DecodedCert), NULL, DYNAMIC_TYPE_DCERT);
809
    if (cert == NULL) {
810
        WOLFSSL_MSG("Failed to allocate memory for DecodedCert");
811
        wolfSSL_X509_EXTENSION_free(ext);
812
        return NULL;
813
    }
814
#endif
815
816
    InitDecodedCert(cert, rawCert, (word32)outSz, 0);
817
818
    if (ParseCert(cert,
819
#ifdef WOLFSSL_CERT_REQ
820
            x509->isCSR ? CERTREQ_TYPE :
821
#endif
822
                    CA_TYPE,
823
            NO_VERIFY, NULL) < 0) {
824
        WOLFSSL_MSG("\tCertificate parsing failed");
825
        wolfSSL_X509_EXTENSION_free(ext);
826
        FreeDecodedCert(cert);
827
        WC_FREE_VAR_EX(cert, NULL, DYNAMIC_TYPE_DCERT);
828
        return NULL;
829
    }
830
831
    input = cert->extensions;
832
    sz = cert->extensionsSz;
833
834
    if (input == NULL || sz == 0) {
835
        WOLFSSL_MSG("\tfail: should be an EXTENSIONS");
836
        wolfSSL_X509_EXTENSION_free(ext);
837
        FreeDecodedCert(cert);
838
        WC_FREE_VAR_EX(cert, NULL, DYNAMIC_TYPE_DCERT);
839
        return NULL;
840
    }
841
842
#ifdef WOLFSSL_CERT_REQ
843
    if (!x509->isCSR)
844
#endif
845
    {
846
        if (input[idx++] != ASN_EXTENSIONS) {
847
            WOLFSSL_MSG("\tfail: should be an EXTENSIONS");
848
            wolfSSL_X509_EXTENSION_free(ext);
849
            FreeDecodedCert(cert);
850
            WC_FREE_VAR_EX(cert, NULL, DYNAMIC_TYPE_DCERT);
851
            return NULL;
852
        }
853
854
        if (GetLength(input, &idx, &length, (word32)sz) < 0) {
855
            WOLFSSL_MSG("\tfail: invalid length");
856
            wolfSSL_X509_EXTENSION_free(ext);
857
            FreeDecodedCert(cert);
858
            WC_FREE_VAR_EX(cert, NULL, DYNAMIC_TYPE_DCERT);
859
            return NULL;
860
        }
861
    }
862
863
    if (GetSequence(input, &idx, &length, (word32)sz) < 0) {
864
        WOLFSSL_MSG("\tfail: should be a SEQUENCE (1)");
865
        wolfSSL_X509_EXTENSION_free(ext);
866
        FreeDecodedCert(cert);
867
        WC_FREE_VAR_EX(cert, NULL, DYNAMIC_TYPE_DCERT);
868
        return NULL;
869
    }
870
871
    while (idx < (word32)sz) {
872
        oid = 0;
873
874
        if (GetSequence(input, &idx, &length, (word32)sz) < 0) {
875
            WOLFSSL_MSG("\tfail: should be a SEQUENCE");
876
            wolfSSL_X509_EXTENSION_free(ext);
877
            FreeDecodedCert(cert);
878
            WC_FREE_VAR_EX(cert, NULL, DYNAMIC_TYPE_DCERT);
879
            return NULL;
880
        }
881
882
        tmpIdx = idx;
883
        ret = GetObjectId(input, &idx, &oid, oidCertExtType, (word32)sz);
884
        if (ret < 0) {
885
            WOLFSSL_MSG("\tfail: OBJECT ID");
886
            wolfSSL_X509_EXTENSION_free(ext);
887
            FreeDecodedCert(cert);
888
            WC_FREE_VAR_EX(cert, NULL, DYNAMIC_TYPE_DCERT);
889
            return NULL;
890
        }
891
        idx = tmpIdx;
892
        nid = (word32)oid2nid(oid, oidCertExtType);
893
894
        /* Continue while loop until extCount == loc or idx > sz */
895
        if (extCount != loc) {
896
            idx += length;
897
            extCount++;
898
            continue;
899
        }
900
        /* extCount == loc. Now get the extension. */
901
        /* Check if extension has been set */
902
        isSet = wolfSSL_X509_ext_isSet_by_NID((WOLFSSL_X509*)x509, (int)nid);
903
904
        if (wolfSSL_OBJ_nid2ln((int)nid) != NULL) {
905
            /* This is NOT an unknown OID. */
906
            ext->obj = wolfSSL_OBJ_nid2obj((int)nid);
907
            if (ext->obj == NULL) {
908
                WOLFSSL_MSG("\tfail: Invalid OBJECT");
909
                wolfSSL_X509_EXTENSION_free(ext);
910
                FreeDecodedCert(cert);
911
                WC_FREE_VAR_EX(cert, NULL, DYNAMIC_TYPE_DCERT);
912
                return NULL;
913
            }
914
        }
915
916
        if (ext->obj) {
917
            ext->obj->nid = (int)nid;
918
        }
919
920
        switch (oid) {
921
            case BASIC_CA_OID:
922
            {
923
                WOLFSSL_ASN1_INTEGER* a;
924
                word32 dataIdx = idx;
925
                word32 dummyOid;
926
                int dataLen = 0;
927
928
                if (!isSet)
929
                    break;
930
931
                /* Set pathlength */
932
                a = wolfSSL_ASN1_INTEGER_new();
933
934
                /* Set the data */
935
                ret = GetObjectId(input, &dataIdx, &dummyOid, oidCertExtType,
936
                        (word32)sz) == 0;
937
                if (ret && dataIdx < (word32)sz) {
938
                    /* Skip the critical information */
939
                    if (input[dataIdx] == ASN_BOOLEAN) {
940
                        dataIdx++;
941
                        ret = GetLength(input, &dataIdx, &dataLen, sz) >= 0;
942
                        dataIdx += dataLen;
943
                    }
944
                }
945
                if (ret) {
946
                    ret = GetOctetString(input, &dataIdx, &dataLen,
947
                            (word32)sz) > 0;
948
                }
949
                if (ret) {
950
                    ret = wolfSSL_ASN1_STRING_set(&ext->value, input + dataIdx,
951
                            dataLen) == 1;
952
                }
953
954
                if (a == NULL || !ret) {
955
                    wolfSSL_X509_EXTENSION_free(ext);
956
                    FreeDecodedCert(cert);
957
                    WC_FREE_VAR_EX(cert, NULL, DYNAMIC_TYPE_DCERT);
958
                    return NULL;
959
                }
960
                /* RFC 5280 4.2.1.9: only populate pathLen when the
961
                 * pathLenConstraint field was actually present. When it is
962
                 * absent no limit is imposed, and pathlen must remain NULL so
963
                 * it is distinguishable from a pathLenConstraint of 0. */
964
                if (x509->basicConstPlSet) {
965
                    a->length = (int)x509->pathLength;
966
967
                    /* Save ASN1_INTEGER in x509 extension */
968
                    ext->obj->pathlen = a;
969
                }
970
                else {
971
                    wolfSSL_ASN1_INTEGER_free(a);
972
                    ext->obj->pathlen = NULL;
973
                }
974
975
                ext->obj->ca = x509->isCa;
976
                break;
977
            }
978
979
            case AUTH_INFO_OID:
980
            {
981
                WOLFSSL_STACK* sk;
982
983
                if (!isSet)
984
                    break;
985
986
                /* Create a stack to hold both the caIssuer and ocsp objects
987
                    in X509_EXTENSION structure */
988
                sk = wolfSSL_sk_new_asn1_obj();
989
                if (sk == NULL) {
990
                    WOLFSSL_MSG("Failed to malloc stack");
991
                    wolfSSL_X509_EXTENSION_free(ext);
992
                    FreeDecodedCert(cert);
993
                    WC_FREE_VAR_EX(cert, NULL, DYNAMIC_TYPE_DCERT);
994
                    return NULL;
995
                }
996
997
                /* Add CaIssuers object to stack */
998
                if (x509->authInfoCaIssuer != NULL &&
999
                    x509->authInfoCaIssuerSz > 0)
1000
                {
1001
                    WOLFSSL_ASN1_OBJECT* obj;
1002
                    obj = wolfSSL_ASN1_OBJECT_new();
1003
                    if (obj == NULL) {
1004
                        WOLFSSL_MSG("Error creating ASN1 object");
1005
                        wolfSSL_sk_ASN1_OBJECT_pop_free(sk, NULL);
1006
                        wolfSSL_X509_EXTENSION_free(ext);
1007
                        FreeDecodedCert(cert);
1008
                        WC_FREE_VAR_EX(cert, NULL, DYNAMIC_TYPE_DCERT);
1009
                        return NULL;
1010
                    }
1011
                    obj->obj = (byte*)x509->authInfoCaIssuer;
1012
                    obj->objSz = (unsigned int)x509->authInfoCaIssuerSz;
1013
                    obj->grp = oidCertAuthInfoType;
1014
                    obj->nid = WC_NID_ad_ca_issuers;
1015
1016
                    ret = wolfSSL_sk_ASN1_OBJECT_push(sk, obj) > 0
1017
                            ? WOLFSSL_SUCCESS : WOLFSSL_FAILURE;
1018
                    if (ret != WOLFSSL_SUCCESS) {
1019
                        WOLFSSL_MSG("Error pushing ASN1 object onto stack");
1020
                        wolfSSL_ASN1_OBJECT_free(obj);
1021
                        wolfSSL_sk_ASN1_OBJECT_pop_free(sk, NULL);
1022
                        wolfSSL_X509_EXTENSION_free(ext);
1023
                        FreeDecodedCert(cert);
1024
                        WC_FREE_VAR_EX(cert, NULL, DYNAMIC_TYPE_DCERT);
1025
                        return NULL;
1026
                    }
1027
                }
1028
1029
                /* Add OCSP object to stack */
1030
                if (x509->authInfo != NULL &&
1031
                    x509->authInfoSz > 0)
1032
                {
1033
                    WOLFSSL_ASN1_OBJECT* obj;
1034
                    obj = wolfSSL_ASN1_OBJECT_new();
1035
                    if (obj == NULL) {
1036
                        WOLFSSL_MSG("Error creating ASN1 object");
1037
                        wolfSSL_sk_ASN1_OBJECT_pop_free(sk, NULL);
1038
                        wolfSSL_X509_EXTENSION_free(ext);
1039
                        FreeDecodedCert(cert);
1040
                        WC_FREE_VAR_EX(cert, NULL, DYNAMIC_TYPE_DCERT);
1041
                        return NULL;
1042
                    }
1043
                    obj->obj = x509->authInfo;
1044
                    obj->objSz = (unsigned int)x509->authInfoSz;
1045
                    obj->grp = oidCertAuthInfoType;
1046
                    obj->nid = WC_NID_ad_OCSP;
1047
1048
                    ret = wolfSSL_sk_ASN1_OBJECT_push(sk, obj) > 0
1049
                            ? WOLFSSL_SUCCESS : WOLFSSL_FAILURE;
1050
                    if (ret != WOLFSSL_SUCCESS) {
1051
                        WOLFSSL_MSG("Error pushing ASN1 object onto stack");
1052
                        wolfSSL_ASN1_OBJECT_free(obj);
1053
                        wolfSSL_sk_ASN1_OBJECT_pop_free(sk, NULL);
1054
                        wolfSSL_X509_EXTENSION_free(ext);
1055
                        FreeDecodedCert(cert);
1056
                        WC_FREE_VAR_EX(cert, NULL, DYNAMIC_TYPE_DCERT);
1057
                        return NULL;
1058
                    }
1059
                }
1060
                ext->ext_sk = sk;
1061
                break;
1062
            }
1063
1064
            case ALT_NAMES_OID:
1065
                if (!isSet)
1066
                    break;
1067
                if (!wolfssl_x509_alt_names_to_gn(x509, ext)) {
1068
                    wolfSSL_X509_EXTENSION_free(ext);
1069
                    FreeDecodedCert(cert);
1070
                    WC_FREE_VAR_EX(cert, NULL, DYNAMIC_TYPE_DCERT);
1071
                    return NULL;
1072
                }
1073
                break;
1074
        }
1075
1076
        /* The ASN1_OBJECT in the extension is set in the same way
1077
         * for recognized and for unrecognized extension types, as
1078
         * the full OCTET STRING */
1079
1080
        /* Get OID from input */
1081
        if (GetASNObjectId(input, &idx, &length, (word32)sz) != 0) {
1082
            WOLFSSL_MSG("Failed to Get ASN Object Id");
1083
            wolfSSL_X509_EXTENSION_free(ext);
1084
            FreeDecodedCert(cert);
1085
            WC_FREE_VAR_EX(cert, NULL, DYNAMIC_TYPE_DCERT);
1086
            return NULL;
1087
        }
1088
        oidBuf = (byte*)XMALLOC(length+1+MAX_LENGTH_SZ, NULL,
1089
                            DYNAMIC_TYPE_TMP_BUFFER);
1090
        if (oidBuf == NULL) {
1091
            WOLFSSL_MSG("Failed to malloc tmp buffer");
1092
            wolfSSL_X509_EXTENSION_free(ext);
1093
            FreeDecodedCert(cert);
1094
            WC_FREE_VAR_EX(cert, NULL, DYNAMIC_TYPE_DCERT);
1095
            return NULL;
1096
        }
1097
        oidBuf[0] = ASN_OBJECT_ID;
1098
        objSz++;
1099
        objSz += SetLength(length, oidBuf + 1);
1100
        objSz += length;
1101
1102
        /* Set object size and reallocate space in object buffer */
1103
        if (ext->obj == NULL) {
1104
            ext->obj = wolfSSL_ASN1_OBJECT_new();
1105
            if (ext->obj == NULL) {
1106
                XFREE(oidBuf, NULL, DYNAMIC_TYPE_TMP_BUFFER);
1107
                wolfSSL_X509_EXTENSION_free(ext);
1108
                FreeDecodedCert(cert);
1109
                WC_FREE_VAR_EX(cert, NULL, DYNAMIC_TYPE_DCERT);
1110
                return NULL;
1111
            }
1112
        }
1113
1114
        if (((ext->obj->dynamic & WOLFSSL_ASN1_DYNAMIC_DATA) != 0) ||
1115
            (ext->obj->obj == NULL)) {
1116
            byte* tmp;
1117
        #ifdef WOLFSSL_NO_REALLOC
1118
            tmp = (byte*)XMALLOC(objSz, NULL, DYNAMIC_TYPE_ASN1);
1119
            if (tmp != NULL && ext->obj->obj != NULL) {
1120
                XMEMCPY(tmp, ext->obj->obj, ext->obj->objSz);
1121
                XFREE((byte*)ext->obj->obj, NULL, DYNAMIC_TYPE_ASN1);
1122
            }
1123
            else if (tmp == NULL) {
1124
                XFREE((byte*)ext->obj->obj, NULL, DYNAMIC_TYPE_ASN1);
1125
            }
1126
            ext->obj->obj = tmp;
1127
        #else
1128
            tmp = (byte*)XREALLOC((byte*)ext->obj->obj, objSz, NULL,
1129
                                  DYNAMIC_TYPE_ASN1);
1130
            if (tmp == NULL)
1131
                XFREE((byte*)ext->obj->obj, NULL, DYNAMIC_TYPE_ASN1);
1132
            ext->obj->obj = tmp;
1133
        #endif
1134
            if (ext->obj->obj == NULL) {
1135
                wolfSSL_X509_EXTENSION_free(ext);
1136
                FreeDecodedCert(cert);
1137
                XFREE(oidBuf, NULL, DYNAMIC_TYPE_TMP_BUFFER);
1138
                WC_FREE_VAR_EX(cert, NULL, DYNAMIC_TYPE_DCERT);
1139
                return NULL;
1140
            }
1141
            ext->obj->dynamic |= WOLFSSL_ASN1_DYNAMIC_DATA;
1142
        }
1143
        else {
1144
            ext->obj->dynamic &= ~WOLFSSL_ASN1_DYNAMIC_DATA;
1145
        }
1146
        ext->obj->objSz = (unsigned int)objSz;
1147
1148
        /* Get OID from input and copy to ASN1_OBJECT buffer */
1149
        XMEMCPY(oidBuf+2, input+idx, length);
1150
        XMEMCPY((byte*)ext->obj->obj, oidBuf, ext->obj->objSz);
1151
        XFREE(oidBuf, NULL, DYNAMIC_TYPE_TMP_BUFFER);
1152
        oidBuf = NULL;
1153
        ext->obj->grp = oidCertExtType;
1154
        ext->crit = 0;
1155
1156
        tmpIdx = idx + length;
1157
1158
        /* Get CRITICAL. If not present, defaults to false.
1159
         * It present, must be a valid TRUE */
1160
        if ((tmpIdx < (word32)sz) &&
1161
            (input[tmpIdx] == ASN_BOOLEAN))
1162
        {
1163
            if (((tmpIdx + 2) >= (word32)sz) ||
1164
                /* Check bool length */
1165
                (input[tmpIdx+1] != 1) ||
1166
                /* Assert true if CRITICAL present */
1167
                (input[tmpIdx+2] != 0xff))
1168
            {
1169
                WOLFSSL_MSG("Error decoding unknown extension data");
1170
                wolfSSL_X509_EXTENSION_free(ext);
1171
                FreeDecodedCert(cert);
1172
                WC_FREE_VAR_EX(cert, NULL, DYNAMIC_TYPE_DCERT);
1173
                return NULL;
1174
            }
1175
1176
            ext->crit = 1;
1177
            tmpIdx += 3;
1178
        }
1179
1180
        /* Get extension data and copy as ASN1_STRING */
1181
        if ((tmpIdx >= (word32)sz) ||
1182
            (input[tmpIdx] != ASN_OCTET_STRING))
1183
        {
1184
            WOLFSSL_MSG("Error decoding unknown extension data");
1185
            wolfSSL_X509_EXTENSION_free(ext);
1186
            FreeDecodedCert(cert);
1187
            WC_FREE_VAR_EX(cert, NULL, DYNAMIC_TYPE_DCERT);
1188
            return NULL;
1189
        }
1190
1191
        tmpIdx++;
1192
1193
        if (GetLength(input, &tmpIdx, &length, (word32)sz) <= 0) {
1194
            WOLFSSL_MSG("Error: Invalid Input Length.");
1195
            wolfSSL_X509_EXTENSION_free(ext);
1196
            FreeDecodedCert(cert);
1197
            WC_FREE_VAR_EX(cert, NULL, DYNAMIC_TYPE_DCERT);
1198
            return NULL;
1199
        }
1200
        ext->value.data = (char*)XMALLOC(length, NULL,
1201
            DYNAMIC_TYPE_ASN1);
1202
        ext->value.isDynamic = 1;
1203
        if (ext->value.data == NULL) {
1204
            WOLFSSL_MSG("Failed to malloc ASN1_STRING data");
1205
            wolfSSL_X509_EXTENSION_free(ext);
1206
            FreeDecodedCert(cert);
1207
            WC_FREE_VAR_EX(cert, NULL, DYNAMIC_TYPE_DCERT);
1208
            return NULL;
1209
        }
1210
        XMEMCPY(ext->value.data,input+tmpIdx,length);
1211
        ext->value.length = length;
1212
1213
        break; /* Got the Extension. Now exit while loop. */
1214
1215
    } /* while(idx < sz) */
1216
1217
    /* Store the new extension in a stack inside x509
1218
     * The extensions on the stack are free'd internally when FreeX509 is called
1219
     */
1220
    if (x509->ext_sk == NULL)
1221
        x509->ext_sk = wolfSSL_sk_new_x509_ext();
1222
    if (wolfSSL_sk_insert(x509->ext_sk, ext, -1) <= 0) {
1223
        wolfSSL_X509_EXTENSION_free(ext);
1224
        ext = NULL;
1225
    }
1226
1227
    FreeDecodedCert(cert);
1228
    WC_FREE_VAR_EX(cert, NULL, DYNAMIC_TYPE_DCERT);
1229
    return ext;
1230
}
1231
1232
/**
1233
 * @param str String to copy
1234
 * @param buf Output buffer. If this contains a pointer then it is free'd
1235
 *            with the DYNAMIC_TYPE_X509_EXT hint.
1236
 * @param len Output length
1237
 * @return WOLFSSL_SUCCESS on success and WOLFSSL_FAILURE on error
1238
 */
1239
static int asn1_string_copy_to_buffer(WOLFSSL_ASN1_STRING* str, byte** buf,
1240
        word32* len, void* heap)
1241
{
1242
    if (str->data && str->length > 0) {
1243
        if (*buf)
1244
            XFREE(*buf, heap, DYNAMIC_TYPE_X509_EXT);
1245
        *len = 0;
1246
        *buf = (byte*)XMALLOC(str->length, heap, DYNAMIC_TYPE_X509_EXT);
1247
        if (!*buf) {
1248
            WOLFSSL_MSG("malloc error");
1249
            return WOLFSSL_FAILURE;
1250
        }
1251
        *len = (word32)str->length;
1252
        XMEMCPY(*buf, str->data, str->length);
1253
    }
1254
1255
    (void)heap;
1256
    return WOLFSSL_SUCCESS;
1257
}
1258
1259
/* Handle WC_NID_subject_alt_name for wolfSSL_X509_add_ext: iterate the
1260
 * GENERAL_NAME stack on the extension and add each entry to x509->altNames.
1261
 * Only types whose union member is WOLFSSL_ASN1_STRING* (DNS/RFC822/URI/IP/
1262
 * IA5) are read via gn->d.ia5; ASN_OTHER_TYPE is handled via SetOthername.
1263
 * Other types (DIRNAME/RID/X400/EDIPARTY) are rejected to avoid the
1264
 * type-confused union access that would XMEMCPY from a wild pointer in
1265
 * wolfSSL_X509_add_altname_ex. */
1266
static int wolfssl_x509_add_subj_alt_name_ext(WOLFSSL_X509 *x509,
1267
    WOLFSSL_X509_EXTENSION *ext)
1268
{
1269
    WOLFSSL_GENERAL_NAMES* gns = ext->ext_sk;
1270
    while (gns) {
1271
        WOLFSSL_GENERAL_NAME* gn = gns->data.gn;
1272
        if ((gn != NULL) && (gn->type == ASN_OTHER_TYPE)) {
1273
            char *buf = NULL;
1274
            int ret = 0;
1275
            word32 len = 0;
1276
1277
            len = SetOthername(gn->d.otherName, NULL);
1278
            if (len == WC_NO_ERR_TRACE(WOLFSSL_FAILURE)) {
1279
                return WOLFSSL_FAILURE;
1280
            }
1281
1282
            buf = (char*)XMALLOC(len, x509->heap, DYNAMIC_TYPE_X509_EXT);
1283
            if (buf == NULL) {
1284
                WOLFSSL_MSG("Couldn't allocate memory for othername");
1285
                return WOLFSSL_FAILURE;
1286
            }
1287
1288
            /* SetOthername() cannot fail; already passed above. */
1289
            SetOthername(gn->d.otherName, (byte*)buf);
1290
1291
            ret = wolfSSL_X509_add_altname_ex(x509, buf, len,
1292
                                              ASN_OTHER_TYPE);
1293
            XFREE(buf, x509->heap, DYNAMIC_TYPE_X509_EXT);
1294
            if (ret == WC_NO_ERR_TRACE(WOLFSSL_FAILURE)) {
1295
                 WOLFSSL_MSG("wolfSSL_X509_add_altname_ex() failed");
1296
                 return WOLFSSL_FAILURE;
1297
            }
1298
        }
1299
        /* Only types whose union member are WOLFSSL_ASN1_STRING. */
1300
        else if (gn == NULL) {
1301
            WOLFSSL_MSG("Subject alternative name missing");
1302
            return WOLFSSL_FAILURE;
1303
        }
1304
        else {
1305
            if ((gn->type != ASN_RFC822_TYPE && gn->type != ASN_DNS_TYPE &&
1306
                 gn->type != ASN_URI_TYPE && gn->type != ASN_IP_TYPE &&
1307
                 gn->type != WOLFSSL_GEN_IA5) || (gn->d.ia5 == NULL)) {
1308
                WOLFSSL_MSG("Subject alternative name unsupported "
1309
                            "GeneralName type or missing name");
1310
                return WOLFSSL_FAILURE;
1311
            }
1312
            if (wolfSSL_X509_add_altname_ex(x509, gn->d.ia5->data,
1313
                         gn->d.ia5->length, gn->type) != WOLFSSL_SUCCESS) {
1314
                WOLFSSL_MSG("Failed to add subject alternative name");
1315
                return WOLFSSL_FAILURE;
1316
            }
1317
        }
1318
        gns = gns->next;
1319
    }
1320
    x509->subjAltNameSet = 1;
1321
    x509->subjAltNameCrit = (byte)ext->crit;
1322
    return WOLFSSL_SUCCESS;
1323
}
1324
1325
#ifdef WOLFSSL_CUSTOM_OID
1326
/* Handle the default (unrecognized NID) case of wolfSSL_X509_add_ext when
1327
 * custom-OID extensions are enabled: copy the extension OID text and value
1328
 * into the next free slot in x509->custom_exts, taking ownership of the
1329
 * allocations on success. */
1330
static int wolfssl_x509_add_custom_ext(WOLFSSL_X509 *x509,
1331
    WOLFSSL_X509_EXTENSION *ext)
1332
{
1333
    char *oid = NULL;
1334
    byte *val = NULL;
1335
    int err = 0;
1336
1337
    if ((ext->obj == NULL) || (ext->value.length == 0) ||
1338
        (ext->value.data == NULL)) {
1339
        WOLFSSL_MSG("Extension has insufficient information.");
1340
        return WOLFSSL_FAILURE;
1341
    }
1342
1343
    if ((x509->customExtCount < 0) ||
1344
        (x509->customExtCount >= NUM_CUSTOM_EXT)) {
1345
        WOLFSSL_MSG("Bad value for customExtCount.");
1346
        return WOLFSSL_FAILURE;
1347
    }
1348
1349
    /* This is a viable custom extension. */
1350
    oid = (char*)XMALLOC(MAX_OID_STRING_SZ, x509->heap,
1351
        DYNAMIC_TYPE_X509_EXT);
1352
    val = (byte*)XMALLOC(ext->value.length, x509->heap,
1353
        DYNAMIC_TYPE_X509_EXT);
1354
    if ((oid == NULL) || (val == NULL)) {
1355
        WOLFSSL_MSG("Memory allocation failure.\n");
1356
        err = 1;
1357
    }
1358
1359
    if (err == 0) {
1360
        XMEMCPY(val, ext->value.data, ext->value.length);
1361
        if (wolfSSL_OBJ_obj2txt(oid, MAX_OID_STRING_SZ, ext->obj, 1) < 0) {
1362
            err = 1;
1363
        }
1364
    }
1365
1366
    if (err == 1) {
1367
        XFREE(val, x509->heap, DYNAMIC_TYPE_X509_EXT);
1368
        XFREE(oid, x509->heap, DYNAMIC_TYPE_X509_EXT);
1369
        return WOLFSSL_FAILURE;
1370
    }
1371
1372
    /* ext->crit is WOLFSSL_ASN1_BOOLEAN */
1373
    if (ext->crit != 0 && ext->crit != -1) {
1374
        XFREE(val, x509->heap, DYNAMIC_TYPE_X509_EXT);
1375
        XFREE(oid, x509->heap, DYNAMIC_TYPE_X509_EXT);
1376
        return WOLFSSL_FAILURE;
1377
    }
1378
1379
    /* x509->custom_exts now owns the buffers and they must be managed. */
1380
    x509->custom_exts[x509->customExtCount].oid = oid;
1381
    x509->custom_exts[x509->customExtCount].crit = (byte)ext->crit;
1382
    x509->custom_exts[x509->customExtCount].val = val;
1383
    x509->custom_exts[x509->customExtCount].valSz = ext->value.length;
1384
    x509->customExtCount++;
1385
    return WOLFSSL_SUCCESS;
1386
}
1387
#endif /* WOLFSSL_CUSTOM_OID */
1388
1389
int wolfSSL_X509_add_ext(WOLFSSL_X509 *x509, WOLFSSL_X509_EXTENSION *ext,
1390
    int loc)
1391
{
1392
    int nid;
1393
1394
    WOLFSSL_ENTER("wolfSSL_X509_add_ext");
1395
1396
    if (!x509 || !ext || loc >= 0) {
1397
        WOLFSSL_MSG("Bad parameter");
1398
        return WOLFSSL_FAILURE;
1399
    }
1400
    nid = (ext->obj != NULL) ? ext->obj->type : ext->value.nid;
1401
1402
    switch (nid) {
1403
    case WC_NID_authority_key_identifier:
1404
        if (x509->authKeyIdSrc != NULL) {
1405
            /* If authKeyId points into authKeyIdSrc then free it and
1406
             * revert to old functionality */
1407
            XFREE(x509->authKeyIdSrc, x509->heap, DYNAMIC_TYPE_X509_EXT);
1408
            x509->authKeyIdSrc = NULL;
1409
            x509->authKeyId = NULL;
1410
        }
1411
        if (asn1_string_copy_to_buffer(&ext->value, &x509->authKeyId,
1412
                &x509->authKeyIdSz, x509->heap) != WOLFSSL_SUCCESS) {
1413
            WOLFSSL_MSG("asn1_string_copy_to_buffer error");
1414
            return WOLFSSL_FAILURE;
1415
        }
1416
        x509->authKeyIdCrit = (byte)ext->crit;
1417
        break;
1418
    case WC_NID_subject_key_identifier:
1419
        if (asn1_string_copy_to_buffer(&ext->value, &x509->subjKeyId,
1420
                &x509->subjKeyIdSz, x509->heap) != WOLFSSL_SUCCESS) {
1421
            WOLFSSL_MSG("asn1_string_copy_to_buffer error");
1422
            return WOLFSSL_FAILURE;
1423
        }
1424
        x509->subjKeyIdCrit = (byte)ext->crit;
1425
        break;
1426
    case WC_NID_subject_alt_name:
1427
        if (wolfssl_x509_add_subj_alt_name_ext(x509, ext) != WOLFSSL_SUCCESS) {
1428
            return WOLFSSL_FAILURE;
1429
        }
1430
        break;
1431
    case WC_NID_key_usage:
1432
        if (ext && ext->value.data) {
1433
            if (ext->value.length == sizeof(word16)) {
1434
                /* if ext->value is already word16, set directly */
1435
                word16 ku;
1436
                XMEMCPY(&ku, ext->value.data, sizeof(word16));
1437
                x509->keyUsage = ku;
1438
#ifdef BIG_ENDIAN_ORDER
1439
                x509->keyUsage = rotlFixed16(x509->keyUsage, 8U);
1440
#endif
1441
                x509->keyUsageCrit = (byte)ext->crit;
1442
                x509->keyUsageSet = 1;
1443
            }
1444
            else if (ext->value.length > 0) {
1445
                /* ext->value is comma-delimited string, convert to word16 */
1446
                if (ParseKeyUsageStr(ext->value.data, &x509->keyUsage,
1447
                                     x509->heap) != 0) {
1448
                    return WOLFSSL_FAILURE;
1449
                }
1450
                x509->keyUsageCrit = (byte)ext->crit;
1451
                x509->keyUsageSet = 1;
1452
            }
1453
            else {
1454
                return WOLFSSL_FAILURE;
1455
            }
1456
        }
1457
        break;
1458
    case WC_NID_ext_key_usage:
1459
        if (ext && ext->value.data) {
1460
            if (ext->value.length == sizeof(byte)) {
1461
                /* if ext->value is already 1 byte, set directly */
1462
                x509->extKeyUsage = *(byte*)ext->value.data;
1463
                x509->extKeyUsageCrit = (byte)ext->crit;
1464
            }
1465
            else if (ext->value.length > 0) {
1466
                /* ext->value is comma-delimited string, convert to word16 */
1467
                if (ParseExtKeyUsageStr(ext->value.data, &x509->extKeyUsage,
1468
                                        x509->heap) != 0) {
1469
                    return WOLFSSL_FAILURE;
1470
                }
1471
                x509->extKeyUsageCrit = (byte)ext->crit;
1472
            }
1473
            else {
1474
                return WOLFSSL_FAILURE;
1475
            }
1476
        }
1477
        break;
1478
    case WC_NID_basic_constraints:
1479
        if (ext->obj) {
1480
            x509->isCa = (byte)ext->obj->ca;
1481
            x509->basicConstCrit = (byte)ext->crit;
1482
            if (ext->obj->pathlen) {
1483
                x509->pathLength = (word32)ext->obj->pathlen->length;
1484
                x509->basicConstPlSet = 1;
1485
                x509->pathLengthSet = 1;
1486
            }
1487
            x509->basicConstSet = 1;
1488
        }
1489
        break;
1490
    default:
1491
#ifdef WOLFSSL_CUSTOM_OID
1492
        if (wolfssl_x509_add_custom_ext(x509, ext) != WOLFSSL_SUCCESS) {
1493
            return WOLFSSL_FAILURE;
1494
        }
1495
        break;
1496
#else
1497
        WOLFSSL_MSG("Unsupported extension to add");
1498
        return WOLFSSL_FAILURE;
1499
#endif /* WOLFSSL_CUSTOM_OID */
1500
    } /* switch (nid) */
1501
1502
    return WOLFSSL_SUCCESS;
1503
}
1504
1505
/* Returns pointer to ASN1_STRING in X509_EXTENSION object */
1506
static WOLFSSL_ASN1_STRING* wolfSSL_X509_EXTENSION_get_data_internal(
1507
    WOLFSSL_X509_EXTENSION* ext)
1508
{
1509
    WOLFSSL_ENTER("wolfSSL_X509_EXTENSION_get_data_internal");
1510
    if (ext == NULL)
1511
        return NULL;
1512
1513
    return &ext->value;
1514
}
1515
1516
1517
#ifndef NO_BIO
1518
1519
#ifndef MAX_INDENT
1520
    #define MAX_INDENT 40
1521
#endif
1522
1523
1524
/* Return 0 on success and 1 on failure. Copies ext data to bio, using indent
1525
 *  to pad the output. flag is ignored. */
1526
int wolfSSL_X509V3_EXT_print(WOLFSSL_BIO *out, WOLFSSL_X509_EXTENSION *ext,
1527
        unsigned long flag, int indent)
1528
{
1529
    WOLFSSL_ASN1_OBJECT* obj;
1530
    WOLFSSL_ASN1_STRING* str;
1531
    int nid;
1532
    int rc = WC_NO_ERR_TRACE(WOLFSSL_FAILURE);
1533
    char tmp[CTC_NAME_SIZE*2 + 1];
1534
    const int tmpSz = sizeof(tmp);
1535
    int tmpLen = 0;
1536
    WOLFSSL_ENTER("wolfSSL_X509V3_EXT_print");
1537
1538
    if (indent < 0) indent = 0;
1539
    if (indent > MAX_INDENT) indent = MAX_INDENT;
1540
1541
    if ((out == NULL) || (ext == NULL)) {
1542
        WOLFSSL_MSG("NULL parameter error");
1543
        return rc;
1544
    }
1545
1546
    obj = wolfSSL_X509_EXTENSION_get_object(ext);
1547
    if (obj == NULL) {
1548
        WOLFSSL_MSG("Error getting ASN1_OBJECT from X509_EXTENSION");
1549
        return rc;
1550
    }
1551
1552
    str = wolfSSL_X509_EXTENSION_get_data_internal(ext);
1553
    if (str == NULL) {
1554
        WOLFSSL_MSG("Error getting ASN1_STRING from X509_EXTENSION");
1555
        return rc;
1556
    }
1557
1558
    /* Print extension based on the type */
1559
    nid = wolfSSL_OBJ_obj2nid(obj);
1560
    switch (nid) {
1561
        case BASIC_CA_OID:
1562
        {
1563
            char isCa[] = "TRUE";
1564
            char notCa[] = "FALSE";
1565
            if ((tmpLen = XSNPRINTF(tmp, tmpSz, "%*sCA:%s", indent, "",
1566
                                     obj->ca ? isCa : notCa))
1567
                >= tmpSz)
1568
                return rc;
1569
            break;
1570
        }
1571
        case ALT_NAMES_OID:
1572
        {
1573
            WOLFSSL_STACK* sk;
1574
            char* val;
1575
            int valLen;
1576
            int len;
1577
1578
            sk = ext->ext_sk;
1579
            while (sk != NULL) {
1580
                if (sk->type == STACK_TYPE_GEN_NAME && sk->data.gn) {
1581
                    /* str is GENERAL_NAME for subject alternative name ext */
1582
                    str = sk->data.gn->d.ia5;
1583
                    len = str->length + 2; /* + 2 for NULL char and "," */
1584
                    if (len > tmpSz) {
1585
                        WOLFSSL_MSG("len greater than buffer size");
1586
                        return rc;
1587
                    }
1588
1589
                    val = (char*)XMALLOC(len + indent, NULL,
1590
                                                       DYNAMIC_TYPE_TMP_BUFFER);
1591
                    if (val == NULL) {
1592
                        WOLFSSL_MSG("Memory error");
1593
                        return rc;
1594
                    }
1595
                    valLen = XSNPRINTF(val, (size_t)len + indent,
1596
                            "%*s%.*s", indent, "", str->length, str->data);
1597
                    if ((valLen < 0) || (valLen >= len + indent)
1598
                            || ((tmpLen + valLen) >= tmpSz)) {
1599
                        XFREE(val, NULL, DYNAMIC_TYPE_TMP_BUFFER);
1600
                        return rc;
1601
                    }
1602
                    XMEMCPY(tmp + tmpLen, val, valLen);
1603
                    tmpLen += valLen;
1604
                    XFREE(val, NULL, DYNAMIC_TYPE_TMP_BUFFER);
1605
                }
1606
                sk = sk->next;
1607
            }
1608
            break;
1609
        }
1610
        case AUTH_KEY_OID:
1611
        case SUBJ_KEY_OID:
1612
        {
1613
            char* asn1str;
1614
            asn1str = wolfSSL_i2s_ASN1_STRING(NULL, str);
1615
            if (asn1str == NULL) {
1616
                WOLFSSL_MSG("wolfSSL_i2s_ASN1_STRING returned NULL");
1617
                return rc;
1618
            }
1619
            tmpLen = XSNPRINTF(tmp, tmpSz, "%*s%s", indent, "", asn1str);
1620
            XFREE(asn1str, NULL, DYNAMIC_TYPE_TMP_BUFFER);
1621
            if (tmpLen >= tmpSz)
1622
                tmpLen = tmpSz - 1;
1623
            break;
1624
        }
1625
        case AUTH_INFO_OID:
1626
        case CERT_POLICY_OID:
1627
        case CRL_DIST_OID:
1628
        case KEY_USAGE_OID:
1629
            WOLFSSL_MSG("X509V3_EXT_print not yet implemented for ext type");
1630
            break;
1631
1632
        default:
1633
            if ((tmpLen = XSNPRINTF(
1634
                     tmp, tmpSz, "%*s%s", indent, "", str->strData))
1635
                >= tmpSz)
1636
                return rc;
1637
    }
1638
1639
    if (wolfSSL_BIO_write(out, tmp, tmpLen) == tmpLen) {
1640
        rc = WOLFSSL_SUCCESS;
1641
    }
1642
    (void) flag;
1643
1644
    return rc;
1645
}
1646
#endif /* !NO_BIO */
1647
1648
#ifndef NO_WOLFSSL_STUB
1649
int wolfSSL_X509V3_EXT_add_nconf(WOLFSSL_CONF *conf, WOLFSSL_X509V3_CTX *ctx,
1650
        const char *section, WOLFSSL_X509 *cert)
1651
{
1652
    WOLFSSL_ENTER("wolfSSL_X509V3_EXT_add_nconf");
1653
    WOLFSSL_STUB("wolfSSL_X509V3_EXT_add_nconf");
1654
    (void)conf;
1655
    (void)ctx;
1656
    (void)section;
1657
    (void)cert;
1658
    return WOLFSSL_SUCCESS;
1659
}
1660
#endif
1661
1662
/* Find extension by NID in a stack of extensions.
1663
 *
1664
 * @param sk Stack of extensions
1665
 * @param nid ID to search for
1666
 * @param lastpos Start search from this position (not inclusive, -1 means start from beginning)
1667
 * @return Index of matching extension or -1 on error/not found
1668
 */
1669
int wolfSSL_X509v3_get_ext_by_NID(const WOLF_STACK_OF(WOLFSSL_X509_EXTENSION)* sk,
1670
                                 int nid, int lastpos)
1671
{
1672
    int i;
1673
    WOLFSSL_ENTER("wolfSSL_X509v3_get_ext_by_NID");
1674
1675
    if (sk == NULL) {
1676
        WOLFSSL_MSG("Stack pointer is NULL");
1677
        return WOLFSSL_FATAL_ERROR;
1678
    }
1679
1680
    if (lastpos < -1 || lastpos >= wolfSSL_sk_num(sk)) {
1681
        WOLFSSL_MSG("Invalid position argument");
1682
        return WOLFSSL_FATAL_ERROR;
1683
    }
1684
1685
    for (i = lastpos + 1; i < wolfSSL_sk_num(sk); i++) {
1686
        WOLFSSL_X509_EXTENSION* ext = wolfSSL_sk_X509_EXTENSION_value(sk, i);
1687
        if (ext && ext->obj) {
1688
            if (wolfSSL_OBJ_obj2nid(ext->obj) == nid)
1689
                return i;
1690
        }
1691
    }
1692
1693
    /* Not found */
1694
    return -1;
1695
}
1696
1697
/* Get extension from a stack of extensions by location.
1698
 *
1699
 * @param sk Stack of extensions
1700
 * @param loc Index of extension to retrieve
1701
 * @return Pointer to extension or NULL on error
1702
 */
1703
WOLFSSL_X509_EXTENSION* wolfSSL_X509v3_get_ext(
1704
    const WOLF_STACK_OF(WOLFSSL_X509_EXTENSION)* sk, int loc)
1705
{
1706
    WOLFSSL_ENTER("wolfSSL_X509v3_get_ext");
1707
1708
    if (sk == NULL) {
1709
        WOLFSSL_MSG("Stack pointer is NULL");
1710
        return NULL;
1711
    }
1712
1713
    if (loc < 0 || loc >= wolfSSL_sk_num(sk)) {
1714
        WOLFSSL_MSG("Invalid location argument");
1715
        return NULL;
1716
    }
1717
1718
    return wolfSSL_sk_X509_EXTENSION_value(sk, loc);
1719
}
1720
1721
/* Returns crit flag in X509_EXTENSION object */
1722
int wolfSSL_X509_EXTENSION_get_critical(const WOLFSSL_X509_EXTENSION* ex)
1723
{
1724
    WOLFSSL_ENTER("wolfSSL_X509_EXTENSION_get_critical");
1725
    if (ex == NULL)
1726
        return BAD_FUNC_ARG;
1727
    return ex->crit;
1728
}
1729
1730
/* Sets if the extension is critical
1731
 * returns WOLFSSL_SUCCESS on success
1732
 */
1733
int wolfSSL_X509_EXTENSION_set_critical(WOLFSSL_X509_EXTENSION* ex, int crit)
1734
{
1735
    WOLFSSL_ENTER("wolfSSL_X509_EXTENSION_set_critical");
1736
    if (ex == NULL)
1737
        return WOLFSSL_FAILURE;
1738
    ex->crit = crit;
1739
    return WOLFSSL_SUCCESS;
1740
}
1741
1742
/* Creates v3_ext_method for a given X509v3 extension
1743
 *
1744
 * ex   : The X509_EXTENSION used to create v3_ext_method. If the extension is
1745
 * not NULL, get the NID of the extension object and populate the
1746
 * extension type-specific X509V3_EXT_* function(s) in v3_ext_method.
1747
 *
1748
 * Returns NULL on error or pointer to the v3_ext_method populated with
1749
 * extension type-specific X509V3_EXT_* function(s).
1750
 *
1751
 * NOTE: WC_NID_subject_key_identifier is currently the only extension
1752
 * implementing the X509V3_EXT_* functions, as it is the only type called
1753
 * directly by QT. The other extension types return a pointer to a
1754
 * v3_ext_method struct that contains only the NID.
1755
 */
1756
#if defined(OPENSSL_VERSION_NUMBER) && OPENSSL_VERSION_NUMBER >= 0x10100000L
1757
const WOLFSSL_v3_ext_method* wolfSSL_X509V3_EXT_get(WOLFSSL_X509_EXTENSION* ex)
1758
#else
1759
WOLFSSL_v3_ext_method* wolfSSL_X509V3_EXT_get(WOLFSSL_X509_EXTENSION* ex)
1760
#endif
1761
{
1762
    int nid;
1763
    WOLFSSL_v3_ext_method method;
1764
1765
    WOLFSSL_ENTER("wolfSSL_X509V3_EXT_get");
1766
    if ((ex == NULL) || (ex->obj == NULL)) {
1767
        WOLFSSL_MSG("Passed an invalid X509_EXTENSION*");
1768
        return NULL;
1769
    }
1770
    /* Initialize method to 0 */
1771
    XMEMSET(&method, 0, sizeof(struct WOLFSSL_v3_ext_method));
1772
1773
    nid = ex->obj->nid;
1774
    if (nid <= 0) {
1775
        WOLFSSL_MSG("Failed to get nid from passed extension object");
1776
        return NULL;
1777
    }
1778
    switch (nid) {
1779
        case WC_NID_basic_constraints:
1780
            break;
1781
        case WC_NID_subject_key_identifier:
1782
            method.i2s = (WOLFSSL_X509V3_EXT_I2S)wolfSSL_i2s_ASN1_STRING;
1783
            break;
1784
        case WC_NID_subject_alt_name:
1785
            WOLFSSL_MSG("i2v function not yet implemented for Subject "
1786
                        "Alternative Name");
1787
            break;
1788
        case WC_NID_key_usage:
1789
            WOLFSSL_MSG("i2v function not yet implemented for Key Usage");
1790
            break;
1791
        case WC_NID_authority_key_identifier:
1792
            WOLFSSL_MSG("i2v function not yet implemented for Auth Key Id");
1793
            break;
1794
        case WC_NID_info_access:
1795
            WOLFSSL_MSG("i2v function not yet implemented for Info Access");
1796
            break;
1797
        case WC_NID_ext_key_usage:
1798
            WOLFSSL_MSG("i2v function not yet implemented for Ext Key Usage");
1799
            break;
1800
        case WC_NID_certificate_policies:
1801
            WOLFSSL_MSG("r2i function not yet implemented for Cert Policies");
1802
            break;
1803
        case WC_NID_crl_distribution_points:
1804
            WOLFSSL_MSG("r2i function not yet implemented for CRL Dist Points");
1805
            break;
1806
        default:
1807
            /* If extension type is unknown, return NULL -- QT makes call to
1808
                X509_EXTENSION_get_data() if there is no v3_ext_method */
1809
            WOLFSSL_MSG("X509V3_EXT_get(): Unknown extension type found");
1810
            return NULL;
1811
    }
1812
1813
    method.ext_nid = nid;
1814
    ex->ext_method = method;
1815
1816
#if defined(OPENSSL_VERSION_NUMBER) && OPENSSL_VERSION_NUMBER >= 0x10100000L
1817
    return (const WOLFSSL_v3_ext_method*)&ex->ext_method;
1818
#else
1819
    return (WOLFSSL_v3_ext_method*)&ex->ext_method;
1820
#endif
1821
}
1822
1823
/* Create an Authority Info Access (AIA) from the contents of the extension.
1824
 *
1825
 * AIA is a stack of Access Descriptions.
1826
 *
1827
 * RFC 5280: 4.2.2.1
1828
 *
1829
 * @param [in] ext  X509v3 extension.
1830
 * @return  Stack of Access Descriptions as an AIA on success.
1831
 * @return  NULL on error.
1832
 */
1833
static WOLFSSL_AUTHORITY_INFO_ACCESS* wolfssl_x509v3_ext_aia_d2i(
1834
    WOLFSSL_X509_EXTENSION* ext)
1835
{
1836
    int err = 0;
1837
    int ret;
1838
    WOLFSSL_AUTHORITY_INFO_ACCESS* aia = NULL;
1839
    WOLFSSL_STACK* sk;
1840
    WOLFSSL_ACCESS_DESCRIPTION* ad = NULL;
1841
1842
    /* Get the type specific data of this extension. */
1843
    sk = ext->ext_sk;
1844
    if (sk == NULL) {
1845
        WOLFSSL_MSG("ACCESS_DESCRIPTION stack NULL");
1846
        err = 1;
1847
    }
1848
1849
    if (!err) {
1850
        /* AUTHORITY_INFO_ACCESS is a stack of ACCESS_DESCRIPTION entries. */
1851
        aia = wolfSSL_sk_new_null();
1852
        if (aia == NULL) {
1853
            WOLFSSL_MSG("Failed to malloc AUTHORITY_INFO_ACCESS");
1854
            err = 1;
1855
        }
1856
    }
1857
    if (!err) {
1858
        /* AIA is a stack of Access Descriptions. */
1859
        aia->type = STACK_TYPE_ACCESS_DESCRIPTION;
1860
    }
1861
1862
    while ((!err) && (sk != NULL)) {
1863
        WOLFSSL_ASN1_OBJECT* aiaEntry;
1864
1865
        /* Looking for objects in extension's data. */
1866
        if (sk->type != STACK_TYPE_OBJ) {
1867
            sk = sk->next;
1868
            continue;
1869
        }
1870
1871
        /* Get ASN.1 Object from the stack entry's data. */
1872
        aiaEntry = sk->data.obj;
1873
1874
        /* ACCESS_DESCRIPTION has two members: method and location.
1875
         *  method: ASN1_OBJECT as either AIA_OCSP_OID or AIA_CA_ISSUER_OID
1876
         *  location: GENERAL_NAME structure containing the URI.
1877
         */
1878
1879
        /* Allocate a new Access Description. */
1880
        ad = (WOLFSSL_ACCESS_DESCRIPTION*)XMALLOC(
1881
            sizeof(WOLFSSL_ACCESS_DESCRIPTION), NULL, DYNAMIC_TYPE_X509_EXT);
1882
        if (ad == NULL) {
1883
            WOLFSSL_MSG("Failed to malloc ACCESS_DESCRIPTION");
1884
            err = 1;
1885
            break;
1886
        }
1887
        XMEMSET(ad, 0, sizeof(WOLFSSL_ACCESS_DESCRIPTION));
1888
1889
        /* Create new ASN1_OBJECT from NID. */
1890
        ad->method = wolfSSL_OBJ_nid2obj(aiaEntry->nid);
1891
        if (ad->method == NULL) {
1892
            WOLFSSL_MSG("OBJ_nid2obj() failed");
1893
            err = 1;
1894
            break;
1895
        }
1896
1897
        /* Allocate memory for GENERAL NAME. */
1898
        ad->location = wolfSSL_GENERAL_NAME_new();
1899
        if (ad->location == NULL) {
1900
            WOLFSSL_MSG("Failed to malloc GENERAL_NAME");
1901
            err = 1;
1902
            break;
1903
        }
1904
1905
        /* Set the type of general name to URI (only type supported). */
1906
        ret = wolfSSL_GENERAL_NAME_set_type(ad->location, WOLFSSL_GEN_URI);
1907
        if (ret != WOLFSSL_SUCCESS) {
1908
            err = 1;
1909
            break;
1910
        }
1911
1912
        /* Set the URI into GENERAL_NAME. */
1913
        ret = wolfSSL_ASN1_STRING_set(ad->location->d.uniformResourceIdentifier,
1914
            aiaEntry->obj, aiaEntry->objSz);
1915
        if (ret != WOLFSSL_SUCCESS) {
1916
            WOLFSSL_MSG("ASN1_STRING_set() failed");
1917
            err = 1;
1918
            break;
1919
        }
1920
        /* Push onto AUTHORITY_INFO_ACCESS stack. */
1921
        ret = wolfSSL_sk_ACCESS_DESCRIPTION_push(aia, ad) > 0
1922
                ? WOLFSSL_SUCCESS : WOLFSSL_FAILURE;
1923
        if (ret != WOLFSSL_SUCCESS) {
1924
            WOLFSSL_MSG("Error pushing ASN1 AD onto stack");
1925
            err = 1;
1926
            break;
1927
        }
1928
        /* Set to NULL so that it doesn't get freed now it is in AIA stack. */
1929
        ad = NULL;
1930
1931
        sk = sk->next;
1932
    }
1933
1934
    if (err) {
1935
        /* Dispose of Access Description if not put in stack. */
1936
        if (ad != NULL) {
1937
            wolfSSL_ASN1_OBJECT_free(ad->method);
1938
            wolfSSL_GENERAL_NAME_free(ad->location);
1939
            XFREE(ad, NULL, DYNAMIC_TYPE_X509_EXT);
1940
        }
1941
        /* Dispose of incomplete Access Description stack. */
1942
        wolfSSL_sk_ACCESS_DESCRIPTION_pop_free(aia, NULL);
1943
        aia = NULL;
1944
    }
1945
    return aia;
1946
}
1947
1948
/* Parses and returns an x509v3 extension internal structure.
1949
 *
1950
 * ext   : The X509_EXTENSION for parsing internal structure. If extension is
1951
 * not NULL, get the NID of the extension object and create a new
1952
 * extension-specific internal structure based on the extension type.
1953
 *
1954
 * Returns NULL on error or if NID is not found, otherwise returns a pointer to
1955
 * the extension type-specific X509_EXTENSION internal structure.
1956
 * Return is expected to be free'd by caller.
1957
 */
1958
void* wolfSSL_X509V3_EXT_d2i(WOLFSSL_X509_EXTENSION* ext)
1959
{
1960
    const WOLFSSL_v3_ext_method* method;
1961
    int ret;
1962
    WOLFSSL_ASN1_OBJECT* object;
1963
    WOLFSSL_BASIC_CONSTRAINTS* bc;
1964
    WOLFSSL_AUTHORITY_KEYID* akey;
1965
    WOLFSSL_ASN1_STRING* asn1String = NULL, *newString = NULL;
1966
    WOLFSSL_STACK* sk;
1967
    void *data = NULL;
1968
    WC_DECLARE_VAR(cert, DecodedCert, 1, 0);
1969
1970
    WOLFSSL_ENTER("wolfSSL_X509V3_EXT_d2i");
1971
1972
    if (ext == NULL) {
1973
        WOLFSSL_MSG("Bad function Argument");
1974
        return NULL;
1975
    }
1976
1977
    object = wolfSSL_X509_EXTENSION_get_object(ext);
1978
    if (object == NULL) {
1979
        WOLFSSL_MSG("X509_EXTENSION_get_object failed");
1980
        return NULL;
1981
    }
1982
    /* extract extension info */
1983
    method = wolfSSL_X509V3_EXT_get(ext);
1984
    if (method == NULL) {
1985
        WOLFSSL_MSG("wolfSSL_X509V3_EXT_get error");
1986
        return NULL;
1987
    }
1988
1989
#ifdef WOLFSSL_SMALL_STACK
1990
    cert = (DecodedCert *)XMALLOC(sizeof(*cert), NULL,
1991
            DYNAMIC_TYPE_X509_EXT);
1992
    if (cert == NULL) {
1993
        WOLFSSL_MSG("\tout of memory");
1994
        return NULL;
1995
    }
1996
#endif
1997
1998
    InitDecodedCert(cert, NULL, 0, NULL);
1999
2000
    if ((object->type != WC_NID_basic_constraints) &&
2001
        (object->type != WC_NID_subject_alt_name) &&
2002
        (object->type != WC_NID_info_access)) {
2003
2004
        asn1String = wolfSSL_X509_EXTENSION_get_data_internal(ext);
2005
        if (asn1String == NULL) {
2006
            WOLFSSL_MSG("X509_EXTENSION_get_data() failed");
2007
            goto out;
2008
        }
2009
2010
        ret = DecodeExtensionType((const byte*)asn1String->data,
2011
                asn1String->length, object->type, (byte)ext->crit, cert, NULL);
2012
        if (ret != 0) {
2013
            WOLFSSL_MSG("DecodeExtensionType() failed");
2014
            goto out;
2015
        }
2016
    }
2017
2018
    /* Return pointer to proper internal structure based on NID */
2019
    switch (object->type) {
2020
        /* basicConstraints */
2021
        case WC_NID_basic_constraints:
2022
            WOLFSSL_MSG("basicConstraints");
2023
            /* Allocate new BASIC_CONSTRAINTS structure */
2024
            bc = wolfSSL_BASIC_CONSTRAINTS_new();
2025
            if (bc == NULL) {
2026
                WOLFSSL_MSG("Failed to malloc basic constraints");
2027
                break;
2028
            }
2029
            /* Copy pathlen and CA into BASIC_CONSTRAINTS from object */
2030
            bc->ca = object->ca;
2031
            /* RFC 5280 4.2.1.9:
2032
             *   "A pathLenConstraint of zero indicates that no non-self-issued
2033
             *    intermediate CA certificates may follow in a valid
2034
             *    certification path."
2035
             * Check for length of 0 or greater.
2036
             */
2037
            if ((object->pathlen != NULL) && (object->pathlen->length >= 0)) {
2038
                bc->pathlen = wolfSSL_ASN1_INTEGER_dup(object->pathlen);
2039
                if (bc->pathlen == NULL) {
2040
                    WOLFSSL_MSG("Failed to duplicate ASN1_INTEGER");
2041
                    wolfSSL_BASIC_CONSTRAINTS_free(bc);
2042
                    break;
2043
                }
2044
            }
2045
            else
2046
                bc->pathlen = NULL;
2047
2048
            data = bc;
2049
            break;
2050
2051
        /* subjectKeyIdentifier */
2052
        case WC_NID_subject_key_identifier:
2053
        {
2054
            WOLFSSL_MSG("subjectKeyIdentifier");
2055
2056
            newString = wolfSSL_ASN1_STRING_new();
2057
            if (newString == NULL) {
2058
                WOLFSSL_MSG("Failed to malloc ASN1_STRING");
2059
                break;
2060
            }
2061
            ret = wolfSSL_ASN1_STRING_set(newString, cert->extSubjKeyId,
2062
                                          cert->extSubjKeyIdSz);
2063
            if (ret != WOLFSSL_SUCCESS) {
2064
                WOLFSSL_MSG("ASN1_STRING_set() failed");
2065
                wolfSSL_ASN1_STRING_free(newString);
2066
                break;
2067
            };
2068
2069
            newString->type = asn1String->type;
2070
            data = newString;
2071
            break;
2072
        }
2073
2074
        /* authorityKeyIdentifier */
2075
        case WC_NID_authority_key_identifier:
2076
        {
2077
            WOLFSSL_MSG("AuthorityKeyIdentifier");
2078
2079
            akey = (WOLFSSL_AUTHORITY_KEYID*)
2080
                    XMALLOC(sizeof(WOLFSSL_AUTHORITY_KEYID), NULL,
2081
                    DYNAMIC_TYPE_X509_EXT);
2082
            if (akey == NULL) {
2083
                WOLFSSL_MSG("Failed to malloc authority key id");
2084
                break;
2085
            }
2086
2087
            XMEMSET(akey, 0, sizeof(WOLFSSL_AUTHORITY_KEYID));
2088
2089
            akey->keyid = wolfSSL_ASN1_STRING_new();
2090
            if (akey->keyid == NULL) {
2091
                WOLFSSL_MSG("ASN1_STRING_new() failed");
2092
                wolfSSL_AUTHORITY_KEYID_free(akey);
2093
                break;
2094
            }
2095
2096
            ret = wolfSSL_ASN1_STRING_set(akey->keyid, cert->extAuthKeyId,
2097
                                          cert->extAuthKeyIdSz);
2098
            if (ret != WOLFSSL_SUCCESS) {
2099
                WOLFSSL_MSG("ASN1_STRING_set() failed");
2100
                wolfSSL_AUTHORITY_KEYID_free(akey);
2101
                break;
2102
            };
2103
            akey->keyid->type   = asn1String->type;
2104
2105
            /* For now, set issuer and serial to NULL. This may need to be
2106
                updated for future use */
2107
            akey->issuer = NULL;
2108
            akey->serial = NULL;
2109
2110
            data = akey;
2111
            break;
2112
        }
2113
2114
        /* keyUsage */
2115
        case WC_NID_key_usage:
2116
        {
2117
            WOLFSSL_MSG("keyUsage");
2118
2119
            /* This may need to be updated for future use. The i2v method for
2120
                keyUsage is not currently set. For now, return the ASN1_STRING
2121
                representation of KeyUsage bit string */
2122
            newString = wolfSSL_ASN1_STRING_new();
2123
            if (newString == NULL) {
2124
                WOLFSSL_MSG("Failed to malloc ASN1_STRING");
2125
                break;
2126
            }
2127
            ret = wolfSSL_ASN1_STRING_set(newString, (byte*)&cert->extKeyUsage,
2128
                                                                sizeof(word16));
2129
            if (ret != WOLFSSL_SUCCESS) {
2130
                WOLFSSL_MSG("ASN1_STRING_set() failed");
2131
                wolfSSL_ASN1_STRING_free(newString);
2132
                break;
2133
            };
2134
            newString->type = asn1String->type;
2135
            data = newString;
2136
            break;
2137
        }
2138
2139
        /* extKeyUsage */
2140
        case WC_NID_ext_key_usage:
2141
            WOLFSSL_MSG("extKeyUsage not supported yet");
2142
            break;
2143
2144
        /* certificatePolicies */
2145
        case WC_NID_certificate_policies:
2146
            WOLFSSL_MSG("certificatePolicies not supported yet");
2147
            break;
2148
2149
        /* cRLDistributionPoints */
2150
        case WC_NID_crl_distribution_points:
2151
            WOLFSSL_MSG("cRLDistributionPoints not supported yet");
2152
            break;
2153
2154
        case WC_NID_subject_alt_name:
2155
            if (ext->ext_sk == NULL) {
2156
                WOLFSSL_MSG("Subject alt name stack NULL");
2157
                break;
2158
            }
2159
            sk = wolfSSL_sk_dup(ext->ext_sk);
2160
            if (sk == NULL) {
2161
                WOLFSSL_MSG("Failed to duplicate subject alt names stack.");
2162
                break;
2163
            }
2164
            data = sk;
2165
            break;
2166
2167
        /* authorityInfoAccess */
2168
        case WC_NID_info_access:
2169
            WOLFSSL_MSG("AuthorityInfoAccess");
2170
            data = wolfssl_x509v3_ext_aia_d2i(ext);
2171
            break;
2172
2173
        default:
2174
            WOLFSSL_MSG("Extension NID not in table, returning NULL");
2175
            break;
2176
    }
2177
2178
out:
2179
2180
    FreeDecodedCert(cert);
2181
    WC_FREE_VAR_EX(cert, NULL, DYNAMIC_TYPE_X509_EXT);
2182
2183
    return data;
2184
}
2185
2186
/* Looks for the extension matching the passed in nid
2187
 *
2188
 * x509 : certificate to get parse through for extension.
2189
 * nid : Extension OID to be found.
2190
 * lastPos : Start search from extension after lastPos.
2191
 *           Set to -1 to search from index 0.
2192
 * return >= 0 If successful the extension index is returned.
2193
 * return WOLFSSL_FATAL_ERROR If extension is not found or error is encountered.
2194
 */
2195
int wolfSSL_X509_get_ext_by_NID(const WOLFSSL_X509* x509, int nid, int lastPos)
2196
{
2197
    int extCount = 0, length = 0, outSz = 0, sz = 0, ret = 0;
2198
    int isSet = 0, found = 0, loc;
2199
    const byte* rawCert;
2200
    const byte* input;
2201
    word32 oid, idx = 0, tmpIdx = 0, foundNID;
2202
    WC_DECLARE_VAR(cert, DecodedCert, 1, 0);
2203
2204
    WOLFSSL_ENTER("wolfSSL_X509_get_ext_by_NID");
2205
2206
    if (x509 == NULL) {
2207
        WOLFSSL_MSG("\tNot passed a certificate");
2208
        return WOLFSSL_FATAL_ERROR;
2209
    }
2210
2211
    if (lastPos < -1 || (lastPos > (wolfSSL_X509_get_ext_count(x509) - 1))) {
2212
        WOLFSSL_MSG("\tBad location argument");
2213
        return WOLFSSL_FATAL_ERROR;
2214
    }
2215
2216
    loc = lastPos + 1;
2217
2218
    rawCert = wolfSSL_X509_get_der((WOLFSSL_X509*)x509, &outSz);
2219
    if (rawCert == NULL) {
2220
        WOLFSSL_MSG("\tX509_get_der() failed");
2221
        return WOLFSSL_FATAL_ERROR;
2222
    }
2223
2224
#ifdef WOLFSSL_SMALL_STACK
2225
    cert = (DecodedCert *)XMALLOC(sizeof(*cert), x509->heap,
2226
                                  DYNAMIC_TYPE_DCERT);
2227
    if (cert == NULL) {
2228
        WOLFSSL_MSG("\tout of memory");
2229
        return WOLFSSL_FATAL_ERROR;
2230
    }
2231
#endif
2232
2233
    InitDecodedCert( cert, rawCert, (word32)outSz, 0);
2234
2235
    if (ParseCert(cert,
2236
#ifdef WOLFSSL_CERT_REQ
2237
            x509->isCSR ? CERTREQ_TYPE :
2238
#endif
2239
            CA_TYPE,
2240
            NO_VERIFY, NULL) < 0) {
2241
        WOLFSSL_MSG("\tCertificate parsing failed");
2242
        goto out;
2243
    }
2244
2245
    input = cert->extensions;
2246
    sz = cert->extensionsSz;
2247
2248
    if (input == NULL || sz == 0) {
2249
        WOLFSSL_MSG("\tfail: should be an EXTENSIONS");
2250
        goto out;
2251
    }
2252
2253
#ifdef WOLFSSL_CERT_REQ
2254
    if (!x509->isCSR)
2255
#endif
2256
    {
2257
        if (input[idx++] != ASN_EXTENSIONS) {
2258
            WOLFSSL_MSG("\tfail: should be an EXTENSIONS");
2259
            goto out;
2260
        }
2261
2262
        if (GetLength(input, &idx, &length, (word32)sz) < 0) {
2263
            WOLFSSL_MSG("\tfail: invalid length");
2264
            goto out;
2265
        }
2266
    }
2267
2268
    if (GetSequence(input, &idx, &length, (word32)sz) < 0) {
2269
        WOLFSSL_MSG("\tfail: should be a SEQUENCE (1)");
2270
        goto out;
2271
    }
2272
2273
    while (idx < (word32)sz) {
2274
        oid = 0;
2275
2276
        if (GetSequence(input, &idx, &length, (word32)sz) < 0) {
2277
            WOLFSSL_MSG("\tfail: should be a SEQUENCE");
2278
            goto out;
2279
        }
2280
2281
        tmpIdx = idx;
2282
        ret = GetObjectId(input, &idx, &oid, oidCertExtType, (word32)sz);
2283
        if (ret < 0) {
2284
            WOLFSSL_MSG("\tfail: OBJECT ID");
2285
            goto out;
2286
        }
2287
        idx = tmpIdx;
2288
        foundNID = (word32)oid2nid(oid, oidCertExtType);
2289
2290
        if (extCount >= loc) {
2291
            /* extCount >= loc. Now check if extension has been set */
2292
            isSet = wolfSSL_X509_ext_isSet_by_NID((WOLFSSL_X509*)x509,
2293
                (int)foundNID);
2294
            if (isSet && ((word32)nid == foundNID)) {
2295
                found = 1;
2296
                break;
2297
            }
2298
        }
2299
2300
        idx += length;
2301
        extCount++;
2302
    } /* while(idx < sz) */
2303
2304
out:
2305
2306
    FreeDecodedCert(cert);
2307
    WC_FREE_VAR_EX(cert, x509->heap, DYNAMIC_TYPE_DCERT);
2308
2309
    return found ? extCount : WOLFSSL_FATAL_ERROR;
2310
}
2311
2312
#endif /* OPENSSL_ALL || OPENSSL_EXTRA */
2313
2314
#if defined(OPENSSL_EXTRA) && !defined(IGNORE_NAME_CONSTRAINTS)
2315
/*
2316
 * Convert a Base_entry linked list to a STACK of GENERAL_SUBTREE.
2317
 *
2318
 * Base_entry stores name constraint data from DecodedCert. This function
2319
 * converts it to GENERAL_SUBTREE format.
2320
 *
2321
 * Supported types: ASN_DNS_TYPE, ASN_RFC822_TYPE, ASN_DIR_TYPE, ASN_IP_TYPE,
2322
 *                  ASN_URI_TYPE
2323
 *
2324
 * Returns 0 on success, negative on error.
2325
 */
2326
static int ConvertBaseEntryToSubtreeStack(Base_entry* list, WOLFSSL_STACK* sk,
2327
                                          void* heap)
2328
{
2329
    Base_entry* entry = list;
2330
    WOLFSSL_GENERAL_SUBTREE* subtree = NULL;
2331
    WOLFSSL_GENERAL_NAME* gn = NULL;
2332
    (void)heap;
2333
2334
    while (entry != NULL) {
2335
2336
        if (entry->type != ASN_DNS_TYPE && entry->type != ASN_RFC822_TYPE &&
2337
            entry->type != ASN_DIR_TYPE && entry->type != ASN_IP_TYPE &&
2338
            entry->type != ASN_URI_TYPE) {
2339
            entry = entry->next;
2340
            continue;
2341
        }
2342
2343
        /* Allocate subtree and general name */
2344
        subtree = (WOLFSSL_GENERAL_SUBTREE*)XMALLOC(
2345
            sizeof(WOLFSSL_GENERAL_SUBTREE), heap, DYNAMIC_TYPE_OPENSSL);
2346
        if (subtree == NULL) {
2347
            WOLFSSL_MSG("Failed to allocate GENERAL_SUBTREE");
2348
            return MEMORY_E;
2349
        }
2350
        XMEMSET(subtree, 0, sizeof(WOLFSSL_GENERAL_SUBTREE));
2351
2352
        gn = wolfSSL_GENERAL_NAME_new();
2353
        if (gn == NULL) {
2354
            WOLFSSL_MSG("Failed to allocate GENERAL_NAME");
2355
            XFREE(subtree, heap, DYNAMIC_TYPE_OPENSSL);
2356
            return MEMORY_E;
2357
        }
2358
2359
        /* Free default ia5 string allocated by GENERAL_NAME_new */
2360
        wolfSSL_ASN1_STRING_free(gn->d.ia5);
2361
        gn->d.ia5 = NULL;
2362
2363
        switch (entry->type) {
2364
            case ASN_DNS_TYPE:
2365
            case ASN_RFC822_TYPE:
2366
            case ASN_URI_TYPE:
2367
            {
2368
                if (entry->type == ASN_DNS_TYPE) {
2369
                    gn->type = WOLFSSL_GEN_DNS;
2370
                }
2371
                else if (entry->type == ASN_RFC822_TYPE) {
2372
                    gn->type = WOLFSSL_GEN_EMAIL;
2373
                }
2374
                else {
2375
                    gn->type = WOLFSSL_GEN_URI;
2376
                }
2377
                gn->d.ia5 = wolfSSL_ASN1_STRING_new();
2378
                if (gn->d.ia5 == NULL) {
2379
                    WOLFSSL_MSG("Failed to allocate ASN1_STRING");
2380
                    wolfSSL_GENERAL_NAME_free(gn);
2381
                    XFREE(subtree, heap, DYNAMIC_TYPE_OPENSSL);
2382
                    return MEMORY_E;
2383
                }
2384
                if (wolfSSL_ASN1_STRING_set(gn->d.ia5, entry->name,
2385
                        entry->nameSz) != WOLFSSL_SUCCESS) {
2386
                    WOLFSSL_MSG("Failed to set ASN1_STRING");
2387
                    wolfSSL_GENERAL_NAME_free(gn);
2388
                    XFREE(subtree, heap, DYNAMIC_TYPE_OPENSSL);
2389
                    return MEMORY_E;
2390
                }
2391
                gn->d.ia5->type = WOLFSSL_V_ASN1_IA5STRING;
2392
                break;
2393
            }
2394
2395
            case ASN_DIR_TYPE:
2396
            {
2397
                byte* seqBuf = NULL;
2398
                unsigned char* p = NULL;
2399
                int seqLen = 0;
2400
2401
                /* Wrap in SEQUENCE and parse as X509_NAME */
2402
                gn->type = WOLFSSL_GEN_DIRNAME;
2403
                seqBuf = (byte*)XMALLOC((word32)entry->nameSz + MAX_SEQ_SZ,
2404
                                        heap, DYNAMIC_TYPE_TMP_BUFFER);
2405
                if (seqBuf == NULL) {
2406
                    WOLFSSL_MSG("Failed to allocate sequence buffer");
2407
                    wolfSSL_GENERAL_NAME_free(gn);
2408
                    XFREE(subtree, heap, DYNAMIC_TYPE_OPENSSL);
2409
                    return MEMORY_E;
2410
                }
2411
2412
                seqLen = SetSequence(entry->nameSz, seqBuf);
2413
                XMEMCPY(seqBuf + seqLen, entry->name, entry->nameSz);
2414
2415
                p = seqBuf;
2416
                gn->d.directoryName = wolfSSL_d2i_X509_NAME(NULL, &p,
2417
                    (long)entry->nameSz + seqLen);
2418
                XFREE(seqBuf, heap, DYNAMIC_TYPE_TMP_BUFFER);
2419
2420
                if (gn->d.directoryName == NULL) {
2421
                    WOLFSSL_MSG("Failed to parse directoryName");
2422
                    wolfSSL_GENERAL_NAME_free(gn);
2423
                    XFREE(subtree, heap, DYNAMIC_TYPE_OPENSSL);
2424
                    return ASN_PARSE_E;
2425
                }
2426
                break;
2427
            }
2428
2429
            case ASN_IP_TYPE:
2430
            {
2431
                /* For IP address, store raw bytes as OCTET_STRING. */
2432
                gn->type = WOLFSSL_GEN_IPADD;
2433
                gn->d.iPAddress = wolfSSL_ASN1_STRING_new();
2434
                if (gn->d.iPAddress == NULL) {
2435
                    WOLFSSL_MSG("Failed to allocate ASN1_STRING for IP");
2436
                    wolfSSL_GENERAL_NAME_free(gn);
2437
                    XFREE(subtree, heap, DYNAMIC_TYPE_OPENSSL);
2438
                    return MEMORY_E;
2439
                }
2440
                if (wolfSSL_ASN1_STRING_set(gn->d.iPAddress, entry->name,
2441
                        entry->nameSz) != WOLFSSL_SUCCESS) {
2442
                    WOLFSSL_MSG("Failed to set IP ASN1_STRING");
2443
                    wolfSSL_GENERAL_NAME_free(gn);
2444
                    XFREE(subtree, heap, DYNAMIC_TYPE_OPENSSL);
2445
                    return MEMORY_E;
2446
                }
2447
                gn->d.iPAddress->type = WOLFSSL_V_ASN1_OCTET_STRING;
2448
                break;
2449
            }
2450
        }
2451
2452
        subtree->base = gn;
2453
2454
        if (wolfSSL_sk_push(sk, subtree) <= 0) {
2455
            WOLFSSL_MSG("Failed to push subtree onto stack");
2456
            wolfSSL_GENERAL_NAME_free(gn);
2457
            XFREE(subtree, heap, DYNAMIC_TYPE_OPENSSL);
2458
            return MEMORY_E;
2459
        }
2460
        entry = entry->next;
2461
    }
2462
2463
    return 0;
2464
}
2465
#endif /* OPENSSL_EXTRA && !IGNORE_NAME_CONSTRAINTS */
2466
2467
#if defined(OPENSSL_EXTRA) || defined(WOLFSSL_WPAS_SMALL)
2468
/* Looks for the extension matching the passed in nid
2469
 *
2470
 * c   : if not null then is set to status value -2 if multiple occurrences
2471
 *       of the extension are found, -1 if not found, 0 if found and not
2472
 *       critical, and 1 if found and critical.
2473
 * nid : Extension OID to be found.
2474
 * idx : if NULL return first extension found match, otherwise start search at
2475
 *       idx location and set idx to the location of extension returned.
2476
 * returns NULL or a pointer to an WOLFSSL_ASN1_BIT_STRING (for KEY_USAGE_OID)
2477
 * or WOLFSSL_STACK (for other)
2478
 * holding extension structure
2479
 *
2480
 * NOTE code for decoding extensions is in asn.c DecodeCertExtensions --
2481
 * use already decoded extension in this function to avoid decoding twice.
2482
 * Currently we do not make use of idx since getting pre decoded extensions.
2483
 */
2484
void* wolfSSL_X509_get_ext_d2i(const WOLFSSL_X509* x509, int nid, int* c,
2485
    int* idx)
2486
{
2487
    void* ret = NULL;
2488
    WOLFSSL_STACK* sk = NULL;
2489
    WOLFSSL_ASN1_OBJECT* obj = NULL;
2490
    WOLFSSL_GENERAL_NAME* gn = NULL;
2491
#ifdef OPENSSL_EXTRA
2492
    WOLFSSL_DIST_POINT* dp = NULL;
2493
#endif
2494
    WOLFSSL_BASIC_CONSTRAINTS* bc = NULL;
2495
2496
    WOLFSSL_ENTER("wolfSSL_X509_get_ext_d2i");
2497
2498
    if (x509 == NULL) {
2499
        return NULL;
2500
    }
2501
2502
    if (c != NULL) {
2503
        *c = -1; /* default to not found */
2504
    }
2505
2506
    switch (nid) {
2507
        case BASIC_CA_OID:
2508
            if (x509->basicConstSet) {
2509
                bc = wolfSSL_BASIC_CONSTRAINTS_new();
2510
                if (!bc) {
2511
                    WOLFSSL_MSG("wolfSSL_BASIC_CONSTRAINTS_new error");
2512
                    return NULL;
2513
                }
2514
2515
#if defined(OPENSSL_ALL) || defined(WOLFSSL_QT) || \
2516
        defined(WOLFSSL_APACHE_HTTPD)
2517
                bc->ca = x509->isCa;
2518
#endif
2519
                /* RFC 5280 4.2.1.9: only populate pathLen when the
2520
                 * pathLenConstraint field was present. When absent, no limit
2521
                 * is imposed and pathlen must remain NULL so it is
2522
                 * distinguishable from a pathLenConstraint of 0. */
2523
                if (x509->basicConstPlSet) {
2524
                    WOLFSSL_ASN1_INTEGER* a = wolfSSL_ASN1_INTEGER_new();
2525
                    if (a == NULL) {
2526
                        WOLFSSL_MSG("wolfSSL_ASN1_INTEGER_new error");
2527
                        wolfSSL_BASIC_CONSTRAINTS_free(bc);
2528
                        return NULL;
2529
                    }
2530
                    a->length = (int)x509->pathLength;
2531
                    bc->pathlen = a;
2532
                }
2533
2534
                if (c != NULL) {
2535
                    *c = x509->basicConstCrit;
2536
                }
2537
            }
2538
            else {
2539
                WOLFSSL_MSG("No Basic Constraint set");
2540
            }
2541
            return bc;
2542
2543
        case ALT_NAMES_OID:
2544
        {
2545
            DNS_entry* dns = NULL;
2546
2547
            if (x509->subjAltNameSet && x509->altNames != NULL) {
2548
                /* Malloc GENERAL_NAME stack */
2549
                sk = wolfSSL_sk_new_null();
2550
                if (sk == NULL)
2551
                    return NULL;
2552
                sk->type = STACK_TYPE_GEN_NAME;
2553
2554
                /* alt names are DNS_entry structs */
2555
                if (c != NULL) {
2556
                    if (x509->altNames->next != NULL) {
2557
                        *c = -2; /* more then one found */
2558
                    }
2559
                    else {
2560
                        *c = x509->subjAltNameCrit;
2561
                    }
2562
                }
2563
2564
                dns = x509->altNames;
2565
                /* Currently only support GEN_DNS type */
2566
                while (dns != NULL) {
2567
                    gn = wolfSSL_GENERAL_NAME_new();
2568
                    if (gn == NULL) {
2569
                        WOLFSSL_MSG("Error creating GENERAL_NAME");
2570
                        goto err;
2571
                    }
2572
2573
                    switch (dns->type) {
2574
                        case ASN_DIR_TYPE:
2575
                            gn->type = dns->type;
2576
                            {
2577
                                int localIdx = 0;
2578
                                unsigned char* n = (unsigned char*)XMALLOC(
2579
                                        dns->len + MAX_SEQ_SZ, x509->heap,
2580
                                        DYNAMIC_TYPE_TMP_BUFFER);
2581
                                if (n == NULL) {
2582
                                    goto err;
2583
                                }
2584
2585
                                localIdx += SetSequence(dns->len, n);
2586
                                XMEMCPY(n + localIdx, dns->name, dns->len);
2587
                                gn->d.dirn =  wolfSSL_d2i_X509_NAME(NULL, &n,
2588
                                        dns->len + localIdx);
2589
                                XFREE(n, x509->heap, DYNAMIC_TYPE_TMP_BUFFER);
2590
                                if (gn->d.dirn == NULL) {
2591
                                    WOLFSSL_MSG("Convert altDirName to X509 "
2592
                                            "NAME failed");
2593
                                    goto err;
2594
                                }
2595
                            }
2596
                            break;
2597
2598
                        case ASN_OTHER_TYPE:
2599
                            /* gn->type set internally */
2600
                            if (!wolfssl_dns_entry_othername_to_gn(dns, gn)) {
2601
                                goto err;
2602
                            }
2603
                            break;
2604
2605
                        case ASN_IP_TYPE:
2606
                            gn->type = dns->type;
2607
                            if (wolfSSL_ASN1_STRING_set(gn->d.iPAddress,
2608
                                    dns->name, dns->len) != WOLFSSL_SUCCESS) {
2609
                                WOLFSSL_MSG("ASN1_STRING_set failed");
2610
                                goto err;
2611
                            }
2612
                            gn->d.iPAddress->type = WOLFSSL_V_ASN1_OCTET_STRING;
2613
                            break;
2614
2615
                        case ASN_RID_TYPE:
2616
                            /* Always handle registeredID: the union
2617
                             * member d.registeredID is populated from
2618
                             * raw OID body bytes. WOLFSSL_RID_ALT_NAME
2619
                             * only gates the human-readable ridString,
2620
                             * which this path does not need. */
2621
                            gn->type = dns->type;
2622
                            /* Free ia5 before using union for registeredID */
2623
                            wolfSSL_ASN1_STRING_free(gn->d.ia5);
2624
                            gn->d.ia5 = NULL;
2625
2626
                            gn->d.registeredID = wolfSSL_ASN1_OBJECT_new();
2627
                            if (gn->d.registeredID == NULL) {
2628
                                goto err;
2629
                            }
2630
                            {
2631
                                /* Store DER-encoded OID (tag+length+content) */
2632
                                word32 derSz = 1 + SetLength(dns->len, NULL)
2633
                                               + dns->len;
2634
                                byte* der = (byte*)XMALLOC(derSz,
2635
                                    gn->d.registeredID->heap,
2636
                                    DYNAMIC_TYPE_ASN1);
2637
                                if (der == NULL) {
2638
                                    goto err;
2639
                                }
2640
                                {
2641
                                    word32 derIdx = 0;
2642
                                    der[derIdx++] = ASN_OBJECT_ID;
2643
                                    derIdx += SetLength(dns->len, der + derIdx);
2644
                                    XMEMCPY(der + derIdx, dns->name, dns->len);
2645
                                }
2646
                                gn->d.registeredID->obj = der;
2647
                                gn->d.registeredID->objSz = derSz;
2648
                            }
2649
                            gn->d.registeredID->dynamic |=
2650
                                WOLFSSL_ASN1_DYNAMIC_DATA;
2651
                            gn->d.registeredID->grp = oidCertExtType;
2652
                            break;
2653
2654
                        default:
2655
                            gn->type = dns->type;
2656
                            if (wolfSSL_ASN1_STRING_set(gn->d.dNSName,
2657
                                    dns->name, dns->len) != WOLFSSL_SUCCESS) {
2658
                                WOLFSSL_MSG("ASN1_STRING_set failed");
2659
                                goto err;
2660
                            }
2661
                            gn->d.dNSName->type = WOLFSSL_V_ASN1_IA5STRING;
2662
                    }
2663
2664
                    dns = dns->next;
2665
                    /* Using wolfSSL_sk_insert to maintain backwards
2666
                     * compatibility with earlier versions of _push API that
2667
                     * pushed items to the start of the list instead of the
2668
                     * end. */
2669
                    if (wolfSSL_sk_insert(sk, gn, 0) <= 0) {
2670
                        WOLFSSL_MSG("Error pushing ASN1 object onto stack");
2671
                        goto err;
2672
                    }
2673
                    /* null so that it doesn't get pushed again after switch */
2674
                    gn = NULL;
2675
                }
2676
            }
2677
            else {
2678
                WOLFSSL_MSG("No Alt Names set");
2679
            }
2680
2681
            break;
2682
        }
2683
2684
        case CRL_DIST_OID:
2685
    #if defined(OPENSSL_EXTRA)
2686
            if (x509->CRLdistSet && x509->CRLInfo != NULL) {
2687
                if (c != NULL) {
2688
                    *c = x509->CRLdistCrit;
2689
                }
2690
2691
                sk = wolfSSL_sk_new_null();
2692
                if (sk == NULL) {
2693
                    return NULL;
2694
                }
2695
                sk->type = STACK_TYPE_DIST_POINT;
2696
2697
                gn = wolfSSL_GENERAL_NAME_new();
2698
                if (gn == NULL) {
2699
                    WOLFSSL_MSG("Error creating GENERAL_NAME");
2700
                    goto err;
2701
                }
2702
2703
                if (wolfSSL_GENERAL_NAME_set_type(gn, WOLFSSL_GEN_URI) !=
2704
                        WOLFSSL_SUCCESS) {
2705
                    WOLFSSL_MSG("Error setting GENERAL_NAME type");
2706
                    goto err;
2707
                }
2708
2709
                if (wolfSSL_ASN1_STRING_set(gn->d.uniformResourceIdentifier,
2710
                        x509->CRLInfo, x509->CRLInfoSz) != WOLFSSL_SUCCESS) {
2711
                    WOLFSSL_MSG("ASN1_STRING_set failed");
2712
                    goto err;
2713
                }
2714
2715
                /* wolfSSL only decodes one dist point */
2716
                dp = wolfSSL_DIST_POINT_new();
2717
                if (dp == NULL) {
2718
                    WOLFSSL_MSG("Error creating DIST_POINT");
2719
                    goto err;
2720
                }
2721
2722
                /* push GENERAL_NAME onto fullname stack */
2723
                if (wolfSSL_sk_GENERAL_NAME_push(dp->distpoint->name.fullname,
2724
                                                 gn) <= 0) {
2725
                    WOLFSSL_MSG("wolfSSL_sk_GENERAL_NAME_push error");
2726
                    goto err;
2727
                }
2728
                /* gn now owned by stack. */
2729
                gn = NULL;
2730
2731
                /* push DIST_POINT onto stack */
2732
                if (wolfSSL_sk_DIST_POINT_push(sk, dp) <= 0) {
2733
                    WOLFSSL_MSG("Error pushing DIST_POINT onto stack");
2734
                    goto err;
2735
                }
2736
                /* dp now owned by stack. */
2737
                dp = NULL;
2738
2739
            }
2740
            else {
2741
                WOLFSSL_MSG("No CRL dist set");
2742
            }
2743
    #endif /* OPENSSL_EXTRA */
2744
            break;
2745
2746
        case AUTH_INFO_OID:
2747
            if (x509->authInfoSet && x509->authInfo != NULL) {
2748
                if (c != NULL) {
2749
                    *c = x509->authInfoCrit;
2750
                }
2751
                obj = wolfSSL_ASN1_OBJECT_new();
2752
                if (obj == NULL) {
2753
                    WOLFSSL_MSG("Issue creating WOLFSSL_ASN1_OBJECT struct");
2754
                    return NULL;
2755
                }
2756
                obj->type  = AUTH_INFO_OID;
2757
                obj->grp   = oidCertExtType;
2758
                obj->obj   = x509->authInfo;
2759
                obj->objSz = (unsigned int)x509->authInfoSz;
2760
            }
2761
            else {
2762
                WOLFSSL_MSG("No Auth Info set");
2763
            }
2764
            break;
2765
2766
        case AUTH_KEY_OID:
2767
            if (x509->authKeyIdSet) {
2768
                WOLFSSL_AUTHORITY_KEYID* akey = wolfSSL_AUTHORITY_KEYID_new();
2769
                if (!akey) {
2770
                    WOLFSSL_MSG(
2771
                        "Issue creating WOLFSSL_AUTHORITY_KEYID struct");
2772
                    return NULL;
2773
                }
2774
2775
                if (c != NULL) {
2776
                    *c = x509->authKeyIdCrit;
2777
                }
2778
                obj = wolfSSL_ASN1_OBJECT_new();
2779
                if (obj == NULL) {
2780
                    WOLFSSL_MSG("Issue creating WOLFSSL_ASN1_OBJECT struct");
2781
                    wolfSSL_AUTHORITY_KEYID_free(akey);
2782
                    return NULL;
2783
                }
2784
                obj->type  = AUTH_KEY_OID;
2785
                obj->grp   = oidCertExtType;
2786
                obj->obj   = x509->authKeyId;
2787
                obj->objSz = x509->authKeyIdSz;
2788
                akey->issuer = obj;
2789
                return akey;
2790
            }
2791
            else {
2792
                WOLFSSL_MSG("No Auth Key set");
2793
            }
2794
            break;
2795
2796
        case SUBJ_KEY_OID:
2797
            if (x509->subjKeyIdSet) {
2798
                if (c != NULL) {
2799
                    *c = x509->subjKeyIdCrit;
2800
                }
2801
                obj = wolfSSL_ASN1_OBJECT_new();
2802
                if (obj == NULL) {
2803
                    WOLFSSL_MSG("Issue creating WOLFSSL_ASN1_OBJECT struct");
2804
                    return NULL;
2805
                }
2806
                obj->type  = SUBJ_KEY_OID;
2807
                obj->grp   = oidCertExtType;
2808
                obj->obj   = x509->subjKeyId;
2809
                obj->objSz = x509->subjKeyIdSz;
2810
            }
2811
            else {
2812
                WOLFSSL_MSG("No Subject Key set");
2813
            }
2814
            break;
2815
2816
        case CERT_POLICY_OID:
2817
        {
2818
        #ifdef WOLFSSL_CERT_EXT
2819
            int i;
2820
2821
            if (x509->certPoliciesNb > 0) {
2822
                if (c != NULL) {
2823
                    if (x509->certPoliciesNb > 1) {
2824
                        *c = -2;
2825
                    }
2826
                    else {
2827
                        *c = 0;
2828
                    }
2829
                }
2830
2831
                sk = wolfSSL_sk_new_asn1_obj();
2832
                if (sk == NULL) {
2833
                    return NULL;
2834
                }
2835
2836
                for (i = 0; i < x509->certPoliciesNb - 1; i++) {
2837
                    obj = wolfSSL_ASN1_OBJECT_new();
2838
                    if (obj == NULL) {
2839
                        WOLFSSL_MSG(
2840
                            "Issue creating WOLFSSL_ASN1_OBJECT struct");
2841
                        wolfSSL_sk_ASN1_OBJECT_pop_free(sk, NULL);
2842
                        return NULL;
2843
                    }
2844
                    obj->type  = CERT_POLICY_OID;
2845
                    obj->grp   = oidCertExtType;
2846
                    obj->obj   = (byte*)(x509->certPolicies[i]);
2847
                    obj->objSz = MAX_CERTPOL_SZ;
2848
                    if (wolfSSL_sk_ASN1_OBJECT_push(sk, obj) <= 0) {
2849
                        WOLFSSL_MSG("Error pushing ASN1 object onto stack");
2850
                        wolfSSL_ASN1_OBJECT_free(obj);
2851
                        wolfSSL_sk_ASN1_OBJECT_pop_free(sk, NULL);
2852
                        sk = NULL;
2853
                    }
2854
                }
2855
2856
                obj = wolfSSL_ASN1_OBJECT_new();
2857
                if (obj == NULL) {
2858
                    WOLFSSL_MSG("Issue creating WOLFSSL_ASN1_OBJECT struct");
2859
                    wolfSSL_sk_ASN1_OBJECT_pop_free(sk, NULL);
2860
                    return NULL;
2861
                }
2862
                obj->type  = CERT_POLICY_OID;
2863
                obj->grp   = oidCertExtType;
2864
                obj->obj   = (byte*)(x509->certPolicies[i]);
2865
                obj->objSz = MAX_CERTPOL_SZ;
2866
2867
                if (wolfSSL_sk_ASN1_OBJECT_push(sk, obj) <= 0) {
2868
                    WOLFSSL_MSG("Error pushing ASN1 object onto stack");
2869
                    wolfSSL_ASN1_OBJECT_free(obj);
2870
                    wolfSSL_sk_ASN1_OBJECT_pop_free(sk, NULL);
2871
                    sk = NULL;
2872
                }
2873
2874
                obj = NULL;
2875
            }
2876
            else {
2877
                WOLFSSL_MSG("No Cert Policy set");
2878
            }
2879
        #endif /* WOLFSSL_CERT_EXT */
2880
        #ifdef WOLFSSL_SEP
2881
            if (x509->certPolicySet) {
2882
                if (c != NULL) {
2883
                    *c = x509->certPolicyCrit;
2884
                }
2885
                obj = wolfSSL_ASN1_OBJECT_new();
2886
                if (obj == NULL) {
2887
                    WOLFSSL_MSG("Issue creating WOLFSSL_ASN1_OBJECT struct");
2888
                    return NULL;
2889
                }
2890
                obj->type  = CERT_POLICY_OID;
2891
                obj->grp   = oidCertExtType;
2892
            }
2893
            else {
2894
                WOLFSSL_MSG("No Cert Policy set");
2895
            }
2896
        #endif
2897
            break;
2898
        }
2899
        case KEY_USAGE_OID:
2900
        {
2901
            WOLFSSL_ASN1_STRING* asn1str = NULL;
2902
            if (x509->keyUsageSet) {
2903
                if (c != NULL) {
2904
                    *c = x509->keyUsageCrit;
2905
                }
2906
2907
                asn1str = wolfSSL_ASN1_STRING_new();
2908
                if (asn1str == NULL) {
2909
                    WOLFSSL_MSG("Failed to malloc ASN1_STRING");
2910
                    return NULL;
2911
                }
2912
2913
                if (wolfSSL_ASN1_STRING_set(asn1str, &x509->keyUsage,
2914
                        sizeof(word16)) != WOLFSSL_SUCCESS) {
2915
                    WOLFSSL_MSG("wolfSSL_ASN1_STRING_set error");
2916
                    wolfSSL_ASN1_STRING_free(asn1str);
2917
                    return NULL;
2918
                }
2919
2920
                asn1str->type = KEY_USAGE_OID;
2921
            }
2922
            else {
2923
                WOLFSSL_MSG("No Key Usage set");
2924
            }
2925
            /* don't add stack of and return bit string directly */
2926
            return asn1str;
2927
        }
2928
        case INHIBIT_ANY_OID:
2929
            WOLFSSL_MSG("INHIBIT ANY extension not supported");
2930
            break;
2931
2932
        case EXT_KEY_USAGE_OID:
2933
            if (x509->extKeyUsageSrc != NULL) {
2934
                const byte* ekuSrc = x509->extKeyUsageSrc;
2935
                word32 i;
2936
2937
                sk = wolfSSL_sk_new_asn1_obj();
2938
                if (sk == NULL) {
2939
                    WOLFSSL_MSG("Issue creating stack");
2940
                    return NULL;
2941
                }
2942
2943
                for (i = 0; i < x509->extKeyUsageCount; i++) {
2944
                    long ekuSrcLen = (long)(x509->extKeyUsageSz -
2945
                            (word32)(ekuSrc - x509->extKeyUsageSrc));
2946
                    WOLFSSL_ASN1_OBJECT* ekuObj = wolfSSL_d2i_ASN1_OBJECT(NULL,
2947
                            &ekuSrc, ekuSrcLen);
2948
                    if (ekuObj == NULL) {
2949
                        wolfSSL_sk_ASN1_OBJECT_pop_free(sk, NULL);
2950
                        WOLFSSL_MSG("d2i obj error");
2951
                        return NULL;
2952
                    }
2953
                    ekuObj->type  = EXT_KEY_USAGE_OID;
2954
                    ekuObj->grp   = oidCertExtType;
2955
                    /* Push to end to maintain order */
2956
                    if (wolfSSL_sk_insert(sk, ekuObj, -1) <= 0) {
2957
                        wolfSSL_ASN1_OBJECT_free(ekuObj);
2958
                        wolfSSL_sk_ASN1_OBJECT_pop_free(sk, NULL);
2959
                        WOLFSSL_MSG("d2i obj error");
2960
                        return NULL;
2961
                    }
2962
                }
2963
2964
                if ((word32)(ekuSrc - x509->extKeyUsageSrc)
2965
                        != x509->extKeyUsageSz ||
2966
                        i != x509->extKeyUsageCount) {
2967
                    wolfSSL_sk_ASN1_OBJECT_pop_free(sk, NULL);
2968
                    WOLFSSL_MSG("incorrect eku count or buffer not exhausted");
2969
                    return NULL;
2970
                }
2971
2972
                if (c != NULL) {
2973
                    if (x509->extKeyUsageCount > 1) {
2974
                        *c = -2;
2975
                    }
2976
                    else {
2977
                        *c = x509->extKeyUsageCrit;
2978
                    }
2979
                }
2980
            }
2981
            else {
2982
                WOLFSSL_MSG("No Extended Key Usage set");
2983
            }
2984
            break;
2985
2986
    #if defined(OPENSSL_EXTRA) && !defined(IGNORE_NAME_CONSTRAINTS)
2987
        case NAME_CONS_OID:
2988
        {
2989
            WOLFSSL_NAME_CONSTRAINTS* nc = NULL;
2990
2991
            /* Check if name constraints exist in stored X509 */
2992
            if (x509->permittedNames == NULL && x509->excludedNames == NULL) {
2993
                WOLFSSL_MSG("No Name Constraints set");
2994
                break;
2995
            }
2996
2997
            if (c != NULL) {
2998
                *c = x509->nameConstraintCrit;
2999
            }
3000
3001
            nc = (WOLFSSL_NAME_CONSTRAINTS*)XMALLOC(
3002
                sizeof(WOLFSSL_NAME_CONSTRAINTS), x509->heap,
3003
                DYNAMIC_TYPE_OPENSSL);
3004
            if (nc == NULL) {
3005
                WOLFSSL_MSG("Failed to allocate NAME_CONSTRAINTS");
3006
                break;
3007
            }
3008
            XMEMSET(nc, 0, sizeof(WOLFSSL_NAME_CONSTRAINTS));
3009
3010
            /* Convert permitted names */
3011
            if (x509->permittedNames != NULL) {
3012
                nc->permittedSubtrees = wolfSSL_sk_new_null();
3013
                if (nc->permittedSubtrees == NULL) {
3014
                    WOLFSSL_MSG("Failed to allocate permitted stack");
3015
                    wolfSSL_NAME_CONSTRAINTS_free(nc);
3016
                    break;
3017
                }
3018
                nc->permittedSubtrees->type = STACK_TYPE_GENERAL_SUBTREE;
3019
3020
                if (ConvertBaseEntryToSubtreeStack(x509->permittedNames,
3021
                        nc->permittedSubtrees, x509->heap) != 0) {
3022
                    WOLFSSL_MSG("Failed to convert permitted names");
3023
                    wolfSSL_NAME_CONSTRAINTS_free(nc);
3024
                    break;
3025
                }
3026
            }
3027
3028
            /* Convert excluded names */
3029
            if (x509->excludedNames != NULL) {
3030
                nc->excludedSubtrees = wolfSSL_sk_new_null();
3031
                if (nc->excludedSubtrees == NULL) {
3032
                    WOLFSSL_MSG("Failed to allocate excluded stack");
3033
                    wolfSSL_NAME_CONSTRAINTS_free(nc);
3034
                    break;
3035
                }
3036
                nc->excludedSubtrees->type = STACK_TYPE_GENERAL_SUBTREE;
3037
3038
                if (ConvertBaseEntryToSubtreeStack(x509->excludedNames,
3039
                        nc->excludedSubtrees, x509->heap) != 0) {
3040
                    WOLFSSL_MSG("Failed to convert excluded names");
3041
                    wolfSSL_NAME_CONSTRAINTS_free(nc);
3042
                    break;
3043
                }
3044
            }
3045
3046
            return nc;
3047
        }
3048
    #endif /* OPENSSL_EXTRA && !IGNORE_NAME_CONSTRAINTS */
3049
3050
        case PRIV_KEY_USAGE_PERIOD_OID:
3051
            WOLFSSL_MSG("Private Key Usage Period extension not supported");
3052
            break;
3053
3054
        case SUBJ_INFO_ACC_OID:
3055
            WOLFSSL_MSG("Subject Info Access extension not supported");
3056
            break;
3057
3058
        case POLICY_MAP_OID:
3059
            WOLFSSL_MSG("Policy Map extension not supported");
3060
            break;
3061
3062
        case POLICY_CONST_OID:
3063
            WOLFSSL_MSG("Policy Constraint extension not supported");
3064
            break;
3065
3066
        case ISSUE_ALT_NAMES_OID:
3067
            WOLFSSL_MSG("Issue Alt Names extension not supported");
3068
            break;
3069
3070
        case TLS_FEATURE_OID:
3071
            WOLFSSL_MSG("TLS Feature extension not supported");
3072
            break;
3073
3074
        default:
3075
            WOLFSSL_MSG("Unsupported/Unknown extension OID");
3076
    }
3077
3078
    /* make sure stack of is allocated */
3079
    if ((obj || gn) && sk == NULL) {
3080
        sk = wolfSSL_sk_new_asn1_obj();
3081
        if (sk == NULL) {
3082
            goto err;
3083
        }
3084
    }
3085
    if (obj) {
3086
        if (wolfSSL_sk_ASN1_OBJECT_push(sk, obj) <= 0) {
3087
            WOLFSSL_MSG("Error pushing ASN1_OBJECT object onto "
3088
                        "stack.");
3089
            goto err;
3090
        }
3091
    }
3092
3093
    ret = sk;
3094
3095
    (void)idx;
3096
3097
    return ret;
3098
3099
err:
3100
    if (obj) {
3101
        wolfSSL_ASN1_OBJECT_free(obj);
3102
    }
3103
    if (gn) {
3104
        wolfSSL_GENERAL_NAME_free(gn);
3105
    }
3106
    #ifdef OPENSSL_EXTRA
3107
    if (dp) {
3108
        wolfSSL_DIST_POINT_free(dp);
3109
    }
3110
    #endif
3111
    if (sk) {
3112
        wolfSSL_sk_pop_free(sk, NULL);
3113
    }
3114
    return NULL;
3115
}
3116
#endif /* OPENSSL_EXTRA || WOLFSSL_WPAS_SMALL */
3117
3118
#ifdef OPENSSL_EXTRA
3119
int wolfSSL_X509_add_altname_ex(WOLFSSL_X509* x509, const char* name,
3120
        word32 nameSz, int type)
3121
{
3122
    DNS_entry* newAltName = NULL;
3123
    char* nameCopy = NULL;
3124
3125
    if (x509 == NULL)
3126
        return WOLFSSL_FAILURE;
3127
3128
    if ((name == NULL) || (nameSz == 0))
3129
        return WOLFSSL_SUCCESS;
3130
3131
    newAltName = AltNameNew(x509->heap);
3132
    if (newAltName == NULL)
3133
        return WOLFSSL_FAILURE;
3134
3135
    nameCopy = (char*)XMALLOC(nameSz + 1, x509->heap, DYNAMIC_TYPE_ALTNAME);
3136
    if (nameCopy == NULL) {
3137
        XFREE(newAltName, x509->heap, DYNAMIC_TYPE_ALTNAME);
3138
        return WOLFSSL_FAILURE;
3139
    }
3140
3141
    XMEMCPY(nameCopy, name, nameSz);
3142
3143
    nameCopy[nameSz] = '\0';
3144
3145
    newAltName->next = x509->altNames;
3146
    newAltName->type = type;
3147
    newAltName->len = (int)nameSz;
3148
    newAltName->name = nameCopy;
3149
    newAltName->nameStored = 1;
3150
    x509->altNames = newAltName;
3151
3152
    return WOLFSSL_SUCCESS;
3153
}
3154
3155
int wolfSSL_X509_add_altname(WOLFSSL_X509* x509, const char* name, int type)
3156
{
3157
    word32 nameSz;
3158
3159
    if (name == NULL)
3160
        return WOLFSSL_SUCCESS;
3161
3162
    nameSz = (word32)XSTRLEN(name);
3163
    if (nameSz == 0)
3164
        return WOLFSSL_SUCCESS;
3165
3166
    if (type == ASN_IP_TYPE) {
3167
#ifdef WOLFSSL_IP_ALT_NAME
3168
        byte ip4[4];
3169
        byte ip6[16];
3170
        int ptonRet;
3171
3172
        /* Check if this is an ip4 address */
3173
    #ifdef FREESCALE_MQX
3174
        ptonRet = XINET_PTON(WOLFSSL_IP4, name, ip4, sizeof(ip4));
3175
        if (ptonRet == RTCS_OK) {
3176
    #else
3177
        ptonRet = XINET_PTON(WOLFSSL_IP4, name, ip4);
3178
        if (ptonRet == 1) {
3179
    #endif
3180
            return wolfSSL_X509_add_altname_ex(x509, (const char*)ip4, 4,
3181
                type);
3182
        }
3183
3184
        /* Check for ip6 */
3185
    #ifdef FREESCALE_MQX
3186
        ptonRet = XINET_PTON(WOLFSSL_IP6, name, ip6, sizeof(ip6));
3187
        if (ptonRet == RTCS_OK) {
3188
    #else
3189
        ptonRet = XINET_PTON(WOLFSSL_IP6, name, ip6);
3190
        if (ptonRet == 1) {
3191
    #endif
3192
            return wolfSSL_X509_add_altname_ex(x509, (const char*)ip6, 16,
3193
                type);
3194
        }
3195
3196
        WOLFSSL_MSG("IP address parse failed");
3197
        return WOLFSSL_FAILURE;
3198
#else
3199
        WOLFSSL_MSG("WOLFSSL_IP_ALT_NAME not enabled");
3200
        return WOLFSSL_FAILURE;
3201
#endif
3202
    }
3203
3204
    return wolfSSL_X509_add_altname_ex(x509, name, nameSz, type);
3205
}
3206
3207
#ifndef NO_WOLFSSL_STUB
3208
WOLFSSL_X509_EXTENSION *wolfSSL_X509_delete_ext(WOLFSSL_X509 *x509, int loc)
3209
{
3210
    WOLFSSL_STUB("wolfSSL_X509_delete_ext");
3211
    (void)x509;
3212
    (void)loc;
3213
    return NULL;
3214
}
3215
3216
/* currently LHASH is not implemented (and not needed for Apache port) */
3217
WOLFSSL_X509_EXTENSION* wolfSSL_X509V3_EXT_conf_nid(
3218
        WOLF_LHASH_OF(CONF_VALUE)* conf, WOLFSSL_X509V3_CTX* ctx, int nid,
3219
        char* value)
3220
{
3221
    WOLFSSL_STUB("wolfSSL_X509V3_EXT_conf_nid");
3222
3223
    if (conf != NULL) {
3224
        WOLFSSL_MSG("Handling LHASH not implemented yet");
3225
        return NULL;
3226
    }
3227
3228
    (void)conf;
3229
    (void)ctx;
3230
    (void)nid;
3231
    (void)value;
3232
    return NULL;
3233
}
3234
3235
void wolfSSL_X509V3_set_ctx_nodb(WOLFSSL_X509V3_CTX* ctx)
3236
{
3237
    WOLFSSL_STUB("wolfSSL_X509V3_set_ctx_nodb");
3238
    (void)ctx;
3239
}
3240
#endif /* !NO_WOLFSSL_STUB */
3241
3242
#ifdef OPENSSL_EXTRA
3243
static WOLFSSL_X509_EXTENSION* createExtFromStr(int nid, const char *value)
3244
{
3245
    WOLFSSL_X509_EXTENSION* ext;
3246
3247
    ext = wolfSSL_X509_EXTENSION_new();
3248
    if (ext == NULL) {
3249
        WOLFSSL_MSG("memory error");
3250
        return NULL;
3251
    }
3252
    ext->value.nid = nid;
3253
3254
    switch (nid) {
3255
        case WC_NID_subject_key_identifier:
3256
        case WC_NID_authority_key_identifier:
3257
            if (wolfSSL_ASN1_STRING_set(&ext->value, value, -1)
3258
                    != WOLFSSL_SUCCESS) {
3259
                WOLFSSL_MSG("wolfSSL_ASN1_STRING_set error");
3260
                goto err_cleanup;
3261
            }
3262
            ext->value.type = CTC_UTF8;
3263
            break;
3264
        case WC_NID_subject_alt_name:
3265
        {
3266
            WOLFSSL_GENERAL_NAMES* gns;
3267
            WOLFSSL_GENERAL_NAME* gn;
3268
3269
            if (wolfSSL_ASN1_STRING_set(&ext->value, value, -1)
3270
                    != WOLFSSL_SUCCESS) {
3271
                WOLFSSL_MSG("wolfSSL_ASN1_STRING_set error");
3272
                goto err_cleanup;
3273
            }
3274
            ext->value.type = ASN_DNS_TYPE;
3275
3276
            /* add stack of general names */
3277
            gns = wolfSSL_sk_new_null();
3278
            if (gns == NULL) {
3279
                WOLFSSL_MSG("wolfSSL_sk_new_null error");
3280
                goto err_cleanup;
3281
            }
3282
            ext->ext_sk = gns; /* wolfSSL_X509_EXTENSION_free will handle
3283
                                * free'ing gns */
3284
            gns->type = STACK_TYPE_GEN_NAME;
3285
            gn = wolfSSL_GENERAL_NAME_new();
3286
            if (gn == NULL) {
3287
                WOLFSSL_MSG("wolfSSL_GENERAL_NAME_new error");
3288
                goto err_cleanup;
3289
            }
3290
            if (wolfSSL_sk_GENERAL_NAME_push(gns, gn) <= 0) {
3291
                WOLFSSL_MSG("wolfSSL_sk_GENERAL_NAME_push error");
3292
                wolfSSL_GENERAL_NAME_free(gn);
3293
                goto err_cleanup;
3294
            }
3295
            if (wolfSSL_ASN1_STRING_set(gn->d.ia5, value, -1)
3296
                    != WOLFSSL_SUCCESS) {
3297
                WOLFSSL_MSG("wolfSSL_ASN1_STRING_set failed");
3298
                goto err_cleanup;
3299
            }
3300
            gn->type = ASN_DNS_TYPE;
3301
            break;
3302
        }
3303
        case WC_NID_key_usage:
3304
            if (wolfSSL_ASN1_STRING_set(&ext->value, value, -1)
3305
                    != WOLFSSL_SUCCESS) {
3306
                WOLFSSL_MSG("wolfSSL_ASN1_STRING_set error");
3307
                goto err_cleanup;
3308
            }
3309
            ext->value.type = KEY_USAGE_OID;
3310
            break;
3311
        case WC_NID_ext_key_usage:
3312
            if (wolfSSL_ASN1_STRING_set(&ext->value, value, -1)
3313
                    != WOLFSSL_SUCCESS) {
3314
                WOLFSSL_MSG("wolfSSL_ASN1_STRING_set error");
3315
                goto err_cleanup;
3316
            }
3317
            ext->value.type = EXT_KEY_USAGE_OID;
3318
            break;
3319
        default:
3320
            WOLFSSL_MSG("invalid or unsupported NID");
3321
            goto err_cleanup;
3322
    }
3323
    return ext;
3324
err_cleanup:
3325
    wolfSSL_X509_EXTENSION_free(ext);
3326
    return NULL;
3327
}
3328
3329
/**
3330
 * Create a WOLFSSL_X509_EXTENSION from the input arguments.
3331
 * @param conf  Not used
3332
 * @param ctx   Not used
3333
 * @param nid   Interprets the value parameter as the x509 extension that
3334
 *              corresponds to this NID.
3335
 * @param value A NULL terminated string that is taken as the value of the
3336
 *              newly created extension object.
3337
 * @return WOLFSSL_X509_EXTENSION* on success or NULL on failure.
3338
 */
3339
WOLFSSL_X509_EXTENSION* wolfSSL_X509V3_EXT_nconf_nid(WOLFSSL_CONF* conf,
3340
        WOLFSSL_X509V3_CTX *ctx, int nid, const char *value)
3341
{
3342
    WOLFSSL_ENTER("wolfSSL_X509V3_EXT_nconf_nid");
3343
3344
    if (value == NULL) {
3345
        WOLFSSL_MSG("value NULL parameter");
3346
        return NULL;
3347
    }
3348
3349
    if (conf != NULL || ctx != NULL) {
3350
        WOLFSSL_MSG("wolfSSL_X509V3_EXT_nconf_nid does not handle either "
3351
                    "conf or ctx parameters");
3352
    }
3353
3354
    return createExtFromStr(nid, value);
3355
}
3356
3357
/**
3358
 * Create a WOLFSSL_X509_EXTENSION from the input arguments.
3359
 * @param conf  Not used
3360
 * @param ctx   Not used
3361
 * @param sName The textual representation of the NID that the value parameter
3362
 *              should be interpreted as.
3363
 * @param value A NULL terminated string that is taken as the value of the
3364
 *              newly created extension object.
3365
 * @return WOLFSSL_X509_EXTENSION* on success or NULL on failure.
3366
 */
3367
WOLFSSL_X509_EXTENSION* wolfSSL_X509V3_EXT_nconf(WOLFSSL_CONF *conf,
3368
        WOLFSSL_X509V3_CTX *ctx, const char *sName, const char *value)
3369
{
3370
    const WOLFSSL_ObjectInfo* info = wolfssl_object_info;
3371
    size_t i;
3372
3373
    WOLFSSL_ENTER("wolfSSL_X509V3_EXT_nconf");
3374
3375
    if (value == NULL || sName == NULL) {
3376
        WOLFSSL_MSG("NULL parameter");
3377
        return NULL;
3378
    }
3379
3380
    if (conf != NULL || ctx != NULL) {
3381
        WOLFSSL_MSG("wolfSSL_X509V3_EXT_nconf does not handle either "
3382
                    "conf or ctx parameters");
3383
    }
3384
3385
    for (i = 0; i < wolfssl_object_info_sz; i++, info++) {
3386
        if (XSTRCMP(info->sName, sName) == 0)
3387
            return createExtFromStr(info->nid, value);
3388
    }
3389
3390
    WOLFSSL_MSG("value didn't match any known NID");
3391
    return NULL;
3392
}
3393
3394
static void wolfSSL_X509V3_EXT_METHOD_populate(WOLFSSL_v3_ext_method *method,
3395
                                               int nid)
3396
{
3397
    if (!method)
3398
        return;
3399
3400
    WOLFSSL_ENTER("wolfSSL_X509V3_EXT_METHOD_populate");
3401
    switch (nid) {
3402
    case WC_NID_subject_key_identifier:
3403
        method->i2s = (WOLFSSL_X509V3_EXT_I2S)wolfSSL_i2s_ASN1_STRING;
3404
        FALL_THROUGH;
3405
    case WC_NID_authority_key_identifier:
3406
    case WC_NID_key_usage:
3407
    case WC_NID_certificate_policies:
3408
    case WC_NID_policy_mappings:
3409
    case WC_NID_subject_alt_name:
3410
    case WC_NID_issuer_alt_name:
3411
    case WC_NID_basic_constraints:
3412
    case WC_NID_name_constraints:
3413
    case WC_NID_policy_constraints:
3414
    case WC_NID_ext_key_usage:
3415
    case WC_NID_crl_distribution_points:
3416
    case WC_NID_inhibit_any_policy:
3417
    case WC_NID_info_access:
3418
        WOLFSSL_MSG("Nothing to populate for current NID");
3419
        break;
3420
    default:
3421
        WOLFSSL_MSG("Unknown or unsupported NID");
3422
        break;
3423
    }
3424
3425
    return;
3426
}
3427
3428
/**
3429
 * @param nid One of the WC_NID_* constants defined in asn.h
3430
 * @param crit
3431
 * @param data This data is copied to the returned extension.
3432
 * @return
3433
 */
3434
WOLFSSL_X509_EXTENSION *wolfSSL_X509V3_EXT_i2d(int nid, int crit,
3435
                                               void *data)
3436
{
3437
    WOLFSSL_X509_EXTENSION *ext = NULL;
3438
    WOLFSSL_ASN1_STRING* asn1str = NULL;
3439
3440
    WOLFSSL_ENTER("wolfSSL_X509V3_EXT_i2d");
3441
3442
    if (!data) {
3443
        return NULL;
3444
    }
3445
3446
    if (!(ext = wolfSSL_X509_EXTENSION_new())) {
3447
        return NULL;
3448
    }
3449
3450
    wolfSSL_X509V3_EXT_METHOD_populate(&ext->ext_method, nid);
3451
3452
    switch (nid) {
3453
    case WC_NID_subject_key_identifier:
3454
        /* WOLFSSL_ASN1_STRING */
3455
    case WC_NID_key_usage:
3456
        /* WOLFSSL_ASN1_STRING */
3457
    {
3458
        asn1str = (WOLFSSL_ASN1_STRING*)data;
3459
        ext->value = *asn1str;
3460
        if (asn1str->isDynamic) {
3461
            ext->value.data = (char*)XMALLOC(asn1str->length, NULL,
3462
                                             DYNAMIC_TYPE_OPENSSL);
3463
            if (!ext->value.data) {
3464
                WOLFSSL_MSG("malloc failed");
3465
                /* Zero so that no existing memory is freed */
3466
                XMEMSET(&ext->value, 0, sizeof(WOLFSSL_ASN1_STRING));
3467
                goto err_cleanup;
3468
            }
3469
            XMEMCPY(ext->value.data, asn1str->data, asn1str->length);
3470
        }
3471
        else {
3472
            ext->value.data = ext->value.strData;
3473
        }
3474
3475
        if (!(ext->obj = wolfSSL_OBJ_nid2obj(nid))) {
3476
            WOLFSSL_MSG("wolfSSL_ASN1_OBJECT_new failed");
3477
            goto err_cleanup;
3478
        }
3479
3480
        break;
3481
    }
3482
    case WC_NID_subject_alt_name:
3483
        /* typedef STACK_OF(GENERAL_NAME) GENERAL_NAMES */
3484
    case WC_NID_issuer_alt_name:
3485
        /* typedef STACK_OF(GENERAL_NAME) GENERAL_NAMES */
3486
    case WC_NID_ext_key_usage:
3487
        /* typedef STACK_OF(ASN1_OBJECT) EXTENDED_KEY_USAGE */
3488
    case WC_NID_info_access:
3489
        /* typedef STACK_OF(ACCESS_DESCRIPTION) AUTHORITY_INFO_ACCESS */
3490
    {
3491
        WOLFSSL_STACK* sk = (WOLFSSL_STACK*)data;
3492
3493
        if (ext->ext_sk) {
3494
            wolfSSL_sk_pop_free(ext->ext_sk, NULL);
3495
        }
3496
3497
        if (!(ext->ext_sk = wolfSSL_sk_dup(sk))) {
3498
            WOLFSSL_MSG("wolfSSL_sk_dup failed");
3499
            goto err_cleanup;
3500
        }
3501
3502
        if (!(ext->obj = wolfSSL_OBJ_nid2obj(nid))) {
3503
            WOLFSSL_MSG("wolfSSL_ASN1_OBJECT_new failed");
3504
            goto err_cleanup;
3505
        }
3506
3507
        break;
3508
    }
3509
    case WC_NID_basic_constraints:
3510
    {
3511
        /* WOLFSSL_BASIC_CONSTRAINTS */
3512
        WOLFSSL_BASIC_CONSTRAINTS* bc = (WOLFSSL_BASIC_CONSTRAINTS*)data;
3513
3514
        if (!(ext->obj = wolfSSL_ASN1_OBJECT_new())) {
3515
            WOLFSSL_MSG("wolfSSL_ASN1_OBJECT_new failed");
3516
            goto err_cleanup;
3517
        }
3518
3519
        ext->obj->ca = bc->ca;
3520
        if (bc->pathlen) {
3521
            ext->obj->pathlen = wolfSSL_ASN1_INTEGER_dup(bc->pathlen);
3522
            if (!ext->obj->pathlen) {
3523
                WOLFSSL_MSG("wolfSSL_ASN1_INTEGER_dup failed");
3524
                goto err_cleanup;
3525
            }
3526
        }
3527
        break;
3528
    }
3529
    case WC_NID_authority_key_identifier:
3530
    {
3531
        /* AUTHORITY_KEYID */
3532
        WOLFSSL_AUTHORITY_KEYID* akey = (WOLFSSL_AUTHORITY_KEYID*)data;
3533
3534
        if (akey->keyid) {
3535
            if (wolfSSL_ASN1_STRING_set(&ext->value, akey->keyid->data,
3536
                                    akey->keyid->length) != WOLFSSL_SUCCESS) {
3537
                WOLFSSL_MSG("wolfSSL_ASN1_STRING_set failed");
3538
                goto err_cleanup;
3539
            }
3540
            ext->value.type = akey->keyid->type;
3541
3542
            if (!(ext->obj = wolfSSL_OBJ_nid2obj(nid))) {
3543
                WOLFSSL_MSG("wolfSSL_ASN1_OBJECT_new failed");
3544
                goto err_cleanup;
3545
            }
3546
3547
        }
3548
        else if (akey->issuer) {
3549
            ext->obj = wolfSSL_ASN1_OBJECT_dup(akey->issuer);
3550
            if (!ext->obj) {
3551
                WOLFSSL_MSG("wolfSSL_ASN1_OBJECT_dup failed");
3552
                goto err_cleanup;
3553
            }
3554
        }
3555
        else {
3556
            WOLFSSL_MSG("WC_NID_authority_key_identifier empty data");
3557
            goto err_cleanup;
3558
        }
3559
        break;
3560
    }
3561
    case WC_NID_inhibit_any_policy:
3562
        /* ASN1_INTEGER */
3563
    case WC_NID_certificate_policies:
3564
        /* STACK_OF(POLICYINFO) */
3565
    case WC_NID_policy_mappings:
3566
        /* STACK_OF(POLICY_MAPPING) */
3567
    case WC_NID_name_constraints:
3568
        /* NAME_CONSTRAINTS */
3569
    case WC_NID_policy_constraints:
3570
        /* POLICY_CONSTRAINTS */
3571
    case WC_NID_crl_distribution_points:
3572
        /* typedef STACK_OF(DIST_POINT) CRL_DIST_POINTS */
3573
    default:
3574
        WOLFSSL_MSG("Unknown or unsupported NID");
3575
        break;
3576
    }
3577
3578
    ext->crit = crit;
3579
3580
    return ext;
3581
err_cleanup:
3582
    if (ext) {
3583
        wolfSSL_X509_EXTENSION_free(ext);
3584
    }
3585
    return NULL;
3586
}
3587
3588
/* Returns pointer to ASN1_OBJECT from an X509_EXTENSION object */
3589
WOLFSSL_ASN1_OBJECT* wolfSSL_X509_EXTENSION_get_object(
3590
    WOLFSSL_X509_EXTENSION* ext)
3591
{
3592
    WOLFSSL_ENTER("wolfSSL_X509_EXTENSION_get_object");
3593
    if (ext == NULL)
3594
        return NULL;
3595
    return ext->obj;
3596
}
3597
3598
3599
/**
3600
 * duplicates the 'obj' input and sets it into the 'ext' structure
3601
 * returns WOLFSSL_SUCCESS on success
3602
 */
3603
int wolfSSL_X509_EXTENSION_set_object(WOLFSSL_X509_EXTENSION* ext,
3604
        const WOLFSSL_ASN1_OBJECT* obj)
3605
{
3606
    WOLFSSL_ASN1_OBJECT *current;
3607
3608
    WOLFSSL_ENTER("wolfSSL_X509_EXTENSION_set_object");
3609
    if (ext == NULL)
3610
        return WOLFSSL_FAILURE;
3611
3612
    current = wolfSSL_X509_EXTENSION_get_object(ext);
3613
    if (current != NULL) {
3614
        wolfSSL_ASN1_OBJECT_free(current);
3615
    }
3616
    ext->obj = wolfSSL_ASN1_OBJECT_dup((WOLFSSL_ASN1_OBJECT*)obj);
3617
    return WOLFSSL_SUCCESS;
3618
}
3619
#endif /* OPENSSL_ALL */
3620
3621
#ifdef WOLFSSL_OLD_EXTDATA_FMT
3622
/*
3623
 * Replace the current string in 'asn1str', which is the full X.509
3624
 * extension octet string with some data specific for the extension
3625
 * type. The extension is the one given in 'oid'.
3626
 * Return 0 in case of success, or a negative error code.
3627
 */
3628
static int wolfSSL_ASN1_STRING_into_old_ext_fmt(WOLFSSL_ASN1_STRING *asn1str,
3629
                                                word32 oid)
3630
{
3631
    switch (oid)
3632
    {
3633
        case AUTH_INFO_OID:
3634
            wolfSSL_ASN1_STRING_clear(asn1str);
3635
            asn1str->data = NULL;
3636
            asn1str->length = 0;
3637
            return 0;
3638
3639
        case AUTH_KEY_OID:
3640
        {
3641
            int ret = 0;
3642
            const byte *extAuthKeyId = NULL;
3643
            word32 extAuthKeyIdSz = 0;
3644
            char *data = NULL;
3645
3646
            ret = DecodeAuthKeyId((const byte *)asn1str->data, asn1str->length,
3647
                    &extAuthKeyId, &extAuthKeyIdSz, NULL, NULL, NULL, NULL);
3648
3649
            if (ret != 0)
3650
                return ret;
3651
3652
            data = (char*)XMALLOC((size_t)(extAuthKeyIdSz), NULL,
3653
                                  DYNAMIC_TYPE_OPENSSL);
3654
            if (data == NULL)
3655
                return MEMORY_ERROR;
3656
3657
            XMEMCPY(data, extAuthKeyId, (size_t)extAuthKeyIdSz);
3658
            wolfSSL_ASN1_STRING_set(asn1str, data, extAuthKeyIdSz);
3659
            XFREE(data, NULL, DYNAMIC_TYPE_OPENSSL);
3660
            return 0;
3661
        }
3662
3663
        case SUBJ_KEY_OID:
3664
        {
3665
            int ret = 0;
3666
            const byte *extSubjKeyId = NULL;
3667
            word32 extSubjKeyIdSz = 0;
3668
            char *data = NULL;
3669
3670
            ret = DecodeSubjKeyId((const byte *)asn1str->data, asn1str->length,
3671
                    &extSubjKeyId, &extSubjKeyIdSz);
3672
            if (ret != 0)
3673
                return ret;
3674
3675
            data = (char*)XMALLOC((size_t)(extSubjKeyIdSz), NULL,
3676
                                  DYNAMIC_TYPE_OPENSSL);
3677
            if (data == NULL)
3678
                return MEMORY_ERROR;
3679
3680
            XMEMCPY(data, extSubjKeyId, (size_t)extSubjKeyIdSz);
3681
            wolfSSL_ASN1_STRING_set(asn1str, data, extSubjKeyIdSz);
3682
            XFREE(data, NULL, DYNAMIC_TYPE_OPENSSL);
3683
            return 0;
3684
        }
3685
3686
        case CERT_POLICY_OID:
3687
            wolfSSL_ASN1_STRING_clear(asn1str);
3688
            asn1str->data = NULL;
3689
            asn1str->length = 0;
3690
            return 0;
3691
3692
        case KEY_USAGE_OID:
3693
        {
3694
            int ret = 0;
3695
            word16 extKeyUsage = 0;
3696
3697
            ret = DecodeKeyUsage((const byte *)asn1str->data, asn1str->length,
3698
                    &extKeyUsage);
3699
            if (ret != 0)
3700
                return ret;
3701
3702
            wolfSSL_ASN1_STRING_set(asn1str, (byte*)&extKeyUsage,
3703
                                    sizeof(extKeyUsage));
3704
            return 0;
3705
        }
3706
3707
        case EXT_KEY_USAGE_OID:
3708
        {
3709
            int ret = 0;
3710
            const byte *extExtKeyUsageSrc = NULL;
3711
            word32 extExtKeyUsageSz = 0;
3712
            word32 extExtKeyUsageCount = 0;
3713
            byte extExtKeyUsage = 0;
3714
            byte extExtKeyUsageSsh = 0;
3715
            char *data = NULL;
3716
3717
            ret = DecodeExtKeyUsage((const byte*)asn1str->data, asn1str->length,
3718
                    &extExtKeyUsageSrc, &extExtKeyUsageSz, &extExtKeyUsageCount,
3719
                    &extExtKeyUsage, &extExtKeyUsageSsh, NULL);
3720
            if (ret != 0)
3721
                return ret;
3722
3723
            data = (char*)XMALLOC((size_t)(extExtKeyUsageSz), NULL,
3724
                                  DYNAMIC_TYPE_OPENSSL);
3725
            if (data == NULL)
3726
                return MEMORY_ERROR;
3727
3728
            XMEMCPY(data, extExtKeyUsageSrc, (size_t)extExtKeyUsageSz);
3729
            wolfSSL_ASN1_STRING_set(asn1str, data, extExtKeyUsageSz);
3730
            XFREE(data, NULL, DYNAMIC_TYPE_OPENSSL);
3731
            return 0;
3732
        }
3733
3734
        case CRL_DIST_OID:
3735
            wolfSSL_ASN1_STRING_clear(asn1str);
3736
            asn1str->data = NULL;
3737
            asn1str->length = 0;
3738
            return 0;
3739
3740
        default:
3741
            /* Do nothing, it is already set */
3742
            return 0;
3743
    }
3744
}
3745
#endif /* WOLFSSL_OLD_EXTDATA_FMT */
3746
3747
/* Returns pointer to ASN1_STRING in X509_EXTENSION object */
3748
WOLFSSL_ASN1_STRING* wolfSSL_X509_EXTENSION_get_data(
3749
    WOLFSSL_X509_EXTENSION* ext)
3750
{
3751
    WOLFSSL_ASN1_STRING *ret;
3752
3753
    ret =  wolfSSL_X509_EXTENSION_get_data_internal(ext);
3754
3755
#ifdef WOLFSSL_OLD_EXTDATA_FMT
3756
    if (ret)
3757
    {
3758
        int error;
3759
        error = wolfSSL_ASN1_STRING_into_old_ext_fmt (ret, ext->obj->type);
3760
        if (error != 0)
3761
        {
3762
            WOLFSSL_MSG("Error calling wolfSSL_ASN1_STRING_into_old_ext_fmt");
3763
            return NULL;
3764
        }
3765
    }
3766
#endif
3767
3768
    return ret;
3769
}
3770
3771
3772
/**
3773
 * Creates a duplicate of input 'data' and sets it into 'ext' structure
3774
 * returns WOLFSSL_SUCCESS on success
3775
 */
3776
int wolfSSL_X509_EXTENSION_set_data(WOLFSSL_X509_EXTENSION* ext,
3777
        WOLFSSL_ASN1_STRING* data)
3778
{
3779
    WOLFSSL_ASN1_STRING* current;
3780
3781
    if (ext == NULL || data == NULL)
3782
        return WOLFSSL_FAILURE;
3783
3784
    current = wolfSSL_X509_EXTENSION_get_data_internal(ext);
3785
    if (current->length > 0 && current->data != NULL && current->isDynamic) {
3786
        XFREE(current->data, NULL, DYNAMIC_TYPE_OPENSSL);
3787
    }
3788
3789
    return wolfSSL_ASN1_STRING_copy(&ext->value, data);
3790
}
3791
3792
#if !defined(NO_PWDBASED)
3793
int wolfSSL_X509_digest(const WOLFSSL_X509* x509, const WOLFSSL_EVP_MD* digest,
3794
        unsigned char* buf, unsigned int* len)
3795
{
3796
    int ret;
3797
3798
    WOLFSSL_ENTER("wolfSSL_X509_digest");
3799
3800
    if (x509 == NULL || digest == NULL) {
3801
        WOLFSSL_MSG("Null argument found");
3802
        return WOLFSSL_FAILURE;
3803
    }
3804
3805
    if (x509->derCert == NULL) {
3806
        WOLFSSL_MSG("No DER certificate stored in X509");
3807
        return WOLFSSL_FAILURE;
3808
    }
3809
3810
    ret = wolfSSL_EVP_Digest(x509->derCert->buffer, x509->derCert->length, buf,
3811
                              len, digest, NULL);
3812
    WOLFSSL_LEAVE("wolfSSL_X509_digest", ret);
3813
    return ret;
3814
}
3815
3816
int wolfSSL_X509_pubkey_digest(const WOLFSSL_X509 *x509,
3817
        const WOLFSSL_EVP_MD *digest, unsigned char* buf, unsigned int* len)
3818
{
3819
    int ret;
3820
3821
    WOLFSSL_ENTER("wolfSSL_X509_pubkey_digest");
3822
3823
    if (x509 == NULL || digest == NULL) {
3824
        WOLFSSL_MSG("Null argument found");
3825
        return WOLFSSL_FAILURE;
3826
    }
3827
3828
    if (x509->pubKey.buffer == NULL || x509->pubKey.length == 0) {
3829
        WOLFSSL_MSG("No DER public key stored in X509");
3830
        return WOLFSSL_FAILURE;
3831
    }
3832
3833
    ret = wolfSSL_EVP_Digest(x509->pubKey.buffer, x509->pubKey.length, buf,
3834
                              len, digest, NULL);
3835
    WOLFSSL_LEAVE("wolfSSL_X509_pubkey_digest", ret);
3836
    return ret;
3837
}
3838
#endif
3839
3840
#endif /* OPENSSL_EXTRA */
3841
3842
#ifdef OPENSSL_EXTRA
3843
3844
    #ifndef NO_WOLFSSL_STUB
3845
    const char* wolfSSL_X509_get_default_cert_file_env(void)
3846
    {
3847
        WOLFSSL_STUB("X509_get_default_cert_file_env");
3848
        return "";
3849
    }
3850
3851
    const char* wolfSSL_X509_get_default_cert_file(void)
3852
    {
3853
        WOLFSSL_STUB("X509_get_default_cert_file");
3854
        return "";
3855
    }
3856
3857
    const char* wolfSSL_X509_get_default_cert_dir_env(void)
3858
    {
3859
        WOLFSSL_STUB("X509_get_default_cert_dir_env");
3860
        return "";
3861
    }
3862
3863
    const char* wolfSSL_X509_get_default_cert_dir(void)
3864
    {
3865
        WOLFSSL_STUB("X509_get_default_cert_dir");
3866
        return "";
3867
    }
3868
    #endif
3869
3870
#endif /* OPENSSL_EXTRA */
3871
3872
#if defined(KEEP_PEER_CERT) || defined(SESSION_CERTS) || \
3873
    defined(KEEP_OUR_CERT) || \
3874
    defined(OPENSSL_EXTRA)  || defined(OPENSSL_EXTRA_X509_SMALL)
3875
3876
/* user externally called free X509, if dynamic go ahead with free, otherwise
3877
 * don't */
3878
static void ExternalFreeX509(WOLFSSL_X509* x509)
3879
{
3880
#if defined(OPENSSL_EXTRA_X509_SMALL) || defined(OPENSSL_EXTRA)
3881
    int doFree = 0;
3882
#endif
3883
3884
    WOLFSSL_ENTER("ExternalFreeX509");
3885
    if (x509) {
3886
#ifdef HAVE_EX_DATA_CLEANUP_HOOKS
3887
        wolfSSL_CRYPTO_cleanup_ex_data(&x509->ex_data);
3888
#endif
3889
        if (x509->dynamicMemory) {
3890
        #if defined(OPENSSL_EXTRA_X509_SMALL) || defined(OPENSSL_EXTRA)
3891
            int ret;
3892
            wolfSSL_RefDec(&x509->ref, &doFree, &ret);
3893
            if (ret != 0) {
3894
                WOLFSSL_MSG("Couldn't lock x509 mutex");
3895
            }
3896
            if (doFree)
3897
        #endif /* OPENSSL_EXTRA_X509_SMALL || OPENSSL_EXTRA */
3898
            {
3899
                FreeX509(x509);
3900
                XFREE(x509, x509->heap, DYNAMIC_TYPE_X509);
3901
            }
3902
        }
3903
        else {
3904
            WOLFSSL_MSG("free called on non dynamic object, not freeing");
3905
        }
3906
    }
3907
}
3908
3909
/* Frees an external WOLFSSL_X509 structure */
3910
WOLFSSL_ABI
3911
void wolfSSL_X509_free(WOLFSSL_X509* x509)
3912
{
3913
    WOLFSSL_ENTER("wolfSSL_X509_free");
3914
    ExternalFreeX509(x509);
3915
}
3916
#endif
3917
3918
#if defined(KEEP_PEER_CERT) || defined(SESSION_CERTS) || \
3919
    defined(OPENSSL_EXTRA)  || defined(OPENSSL_EXTRA_X509_SMALL)
3920
3921
/* copy name into in buffer, at most sz bytes, if buffer is null will
3922
   malloc buffer, call responsible for freeing                     */
3923
WOLFSSL_ABI
3924
char* wolfSSL_X509_NAME_oneline(WOLFSSL_X509_NAME* name, char* in, int sz)
3925
{
3926
    int copySz;
3927
3928
    WOLFSSL_ENTER("wolfSSL_X509_NAME_oneline");
3929
3930
    if (name == NULL) {
3931
        WOLFSSL_MSG("WOLFSSL_X509_NAME pointer was NULL");
3932
        return NULL;
3933
    }
3934
3935
    if (name->sz == 0)
3936
        return in;
3937
3938
    if (!in) {
3939
    #ifdef WOLFSSL_STATIC_MEMORY
3940
        WOLFSSL_MSG("Using static memory -- please pass in a buffer");
3941
        return NULL;
3942
    #else
3943
        in = (char*)XMALLOC(name->sz, NULL, DYNAMIC_TYPE_OPENSSL);
3944
        if (!in)
3945
            return in;
3946
        copySz = name->sz;
3947
    #endif
3948
    }
3949
    else {
3950
        copySz = (int)min((word32)sz, (word32)name->sz);
3951
        if (copySz <= 0)
3952
            return in;
3953
    }
3954
3955
    XMEMCPY(in, name->name, copySz - 1);
3956
    in[copySz - 1] = 0;
3957
3958
    return in;
3959
}
3960
3961
#ifdef OPENSSL_EXTRA
3962
/* Given an X509_NAME, convert it to canonical form and then hash
3963
 * with the provided hash type. Returns the first 4 bytes of the hash
3964
 * as unsigned long on success, and 0 otherwise. */
3965
static unsigned long X509NameHash(WOLFSSL_X509_NAME* name,
3966
    enum wc_HashType hashType)
3967
{
3968
    unsigned long  hash = 0;
3969
    unsigned char* canonName = NULL;
3970
    byte           digest[WC_MAX_DIGEST_SIZE];
3971
    int            size = 0;
3972
    int            rc;
3973
3974
    WOLFSSL_ENTER("X509NameHash");
3975
3976
    if (name == NULL) {
3977
        WOLFSSL_ERROR_MSG("WOLFSSL_X509_NAME pointer was NULL");
3978
        return 0;
3979
    }
3980
3981
    if (name->sz == 0) {
3982
        WOLFSSL_ERROR_MSG("Nothing to hash in WOLFSSL_X509_NAME");
3983
        return 0;
3984
    }
3985
3986
    size = wolfSSL_i2d_X509_NAME_canon(name, &canonName);
3987
3988
    if (size <= 0 || canonName == NULL) {
3989
        WOLFSSL_ERROR_MSG("wolfSSL_i2d_X509_NAME_canon error");
3990
        return 0;
3991
    }
3992
3993
    rc = wc_Hash(hashType, (const byte*)canonName, (word32)size, digest,
3994
        sizeof(digest));
3995
3996
    if (rc == 0) {
3997
        hash = (((unsigned long)digest[3] << 24) |
3998
                ((unsigned long)digest[2] << 16) |
3999
                ((unsigned long)digest[1] <<  8) |
4000
                ((unsigned long)digest[0]));
4001
    }
4002
    else if (rc == WC_NO_ERR_TRACE(HASH_TYPE_E)) {
4003
        WOLFSSL_ERROR_MSG("Hash function not compiled in");
4004
    }
4005
    else {
4006
        WOLFSSL_ERROR_MSG("Error hashing name");
4007
    }
4008
4009
    XFREE(canonName, NULL, DYNAMIC_TYPE_OPENSSL);
4010
    return hash;
4011
}
4012
4013
unsigned long wolfSSL_X509_NAME_hash(WOLFSSL_X509_NAME* name)
4014
{
4015
    return X509NameHash(name, WC_HASH_TYPE_SHA);
4016
}
4017
4018
/******************************************************************************
4019
* wolfSSL_X509_subject_name_hash
4020
* wolfSSL_X509_issuer_name_hash
4021
* Compute the hash digest of the subject / issuer name.
4022
* These functions prefer SHA-1 (if available) for compatibility. Otherwise
4023
* they use SHA-256.
4024
*
4025
* RETURNS:
4026
* The first 4 bytes of SHA-1 (or SHA-256) hash in little endian order as
4027
* unsigned long.
4028
* Otherwise, returns zero.
4029
*
4030
* Note:
4031
* Returns the same hash value as OpenSSL's X509_X_name_hash() API
4032
* if SHA-1 support is compiled in. SHA-256 will be used if SHA-1 is
4033
* not available.
4034
*/
4035
unsigned long wolfSSL_X509_subject_name_hash(const WOLFSSL_X509* x509)
4036
{
4037
    if (x509 == NULL) {
4038
        WOLFSSL_ERROR_MSG("WOLFSSL_X509 pointer was NULL");
4039
        return 0;
4040
    }
4041
4042
    #ifndef NO_SHA
4043
    return X509NameHash((WOLFSSL_X509_NAME*) &x509->subject, WC_HASH_TYPE_SHA);
4044
    #elif !defined(NO_SHA256)
4045
    return X509NameHash((WOLFSSL_X509_NAME*) &x509->subject,
4046
                        WC_HASH_TYPE_SHA256);
4047
    #else
4048
    WOLFSSL_ERROR_MSG("Hash function not compiled in");
4049
    return 0;
4050
    #endif
4051
}
4052
4053
unsigned long wolfSSL_X509_issuer_name_hash(const WOLFSSL_X509* x509)
4054
{
4055
    if (x509 == NULL) {
4056
        WOLFSSL_ERROR_MSG("WOLFSSL_X509 pointer was NULL");
4057
        return 0;
4058
    }
4059
4060
    #ifndef NO_SHA
4061
    return X509NameHash((WOLFSSL_X509_NAME*) &x509->issuer, WC_HASH_TYPE_SHA);
4062
    #elif !defined(NO_SHA256)
4063
    return X509NameHash((WOLFSSL_X509_NAME*) &x509->issuer,
4064
                        WC_HASH_TYPE_SHA256);
4065
    #else
4066
    WOLFSSL_ERROR_MSG("Hash function not compiled in");
4067
    return 0;
4068
    #endif
4069
}
4070
#endif /* OPENSSL_EXTRA */
4071
4072
#if defined(OPENSSL_EXTRA) && defined(XSNPRINTF)
4073
/* Copies X509 subject name into a buffer, with comma-separated name entries
4074
 *   (matching OpenSSL v1.0.0 format)
4075
 * Example Output for Issuer:
4076
 *
4077
 * C=US, ST=Montana, L=Bozeman, O=Sawtooth, OU=Consulting,
4078
 *  CN=www.wolfssl.com, emailAddress=facts@wolfssl.com
4079
 */
4080
char* wolfSSL_X509_get_name_oneline(WOLFSSL_X509_NAME* name, char* in, int sz)
4081
{
4082
    int count, i;
4083
    int totalLen = 0;
4084
    char tmpBuf[256];
4085
    WOLFSSL_ENTER("wolfSSL_X509_get_name_oneline");
4086
4087
    if (name == NULL) {
4088
        WOLFSSL_MSG("wolfSSL_X509_get_name_oneline failed");
4089
        return NULL;
4090
    }
4091
    #ifdef WOLFSSL_STATIC_MEMORY
4092
    if (!in) {
4093
        WOLFSSL_MSG("Using static memory -- please pass in a buffer");
4094
        return NULL;
4095
    }
4096
    #endif
4097
4098
    /* Loop through X509 name entries and copy new format to buffer */
4099
    count = wolfSSL_X509_NAME_entry_count(name);
4100
    for (i = 0; i < count; i++) {
4101
        WOLFSSL_X509_NAME_ENTRY* entry;
4102
        int nameSz;
4103
        int strSz;
4104
        int strLen;
4105
        char *str;
4106
        const int tmpBufSz = sizeof(tmpBuf);
4107
        char buf[80];
4108
        const char* sn;
4109
4110
        /* Get name entry and size */
4111
        entry = wolfSSL_X509_NAME_get_entry(name, i);
4112
        if (entry == NULL) {
4113
            WOLFSSL_MSG("wolfSSL_X509_NAME_get_entry failed");
4114
            return NULL;
4115
        }
4116
        nameSz = wolfSSL_X509_NAME_get_text_by_NID(name, entry->nid, buf,
4117
                                                                   sizeof(buf));
4118
        if (nameSz < 0) {
4119
            WOLFSSL_MSG("wolfSSL_X509_NAME_get_text_by_NID failed");
4120
            return NULL;
4121
        }
4122
4123
        /* Get short name */
4124
        sn = wolfSSL_OBJ_nid2sn(entry->nid);
4125
        if (sn == NULL) {
4126
            WOLFSSL_MSG("OBJ_nid2sn failed");
4127
            return NULL;
4128
        }
4129
4130
        /* Copy sn and name text to buffer
4131
         * Add extra strSz for '=', ',', ' ' and '\0' characters in XSNPRINTF.
4132
         */
4133
        if (i != count - 1) {
4134
            strSz = (int)XSTRLEN(sn) + nameSz + 4;
4135
            str = (char*)XMALLOC(strSz, NULL, DYNAMIC_TYPE_TMP_BUFFER);
4136
            if (str == NULL) {
4137
                WOLFSSL_MSG("Memory error");
4138
                return NULL;
4139
            }
4140
            strLen = XSNPRINTF(str, (size_t)strSz, "%s=%s, ", sn, buf);
4141
            if ((strLen  < 0) || (strLen  >= strSz)) {
4142
                WOLFSSL_MSG("buffer overrun");
4143
                XFREE(str, NULL, DYNAMIC_TYPE_TMP_BUFFER);
4144
                return NULL;
4145
            }
4146
        }
4147
        else {
4148
            /* Copy last name entry
4149
            * Add extra strSz for '=' and '\0' characters in XSNPRINTF.
4150
            */
4151
            strSz = (int)XSTRLEN(sn) + nameSz + 2;
4152
            str = (char*)XMALLOC(strSz, NULL, DYNAMIC_TYPE_TMP_BUFFER);
4153
            if (str == NULL) {
4154
                WOLFSSL_MSG("Memory error");
4155
                return NULL;
4156
            }
4157
            strLen = XSNPRINTF(str, (size_t)strSz, "%s=%s", sn, buf);
4158
            if ((strLen  < 0) || (strLen  >= strSz)) {
4159
                WOLFSSL_MSG("buffer overrun");
4160
                XFREE(str, NULL, DYNAMIC_TYPE_TMP_BUFFER);
4161
                return NULL;
4162
            }
4163
        }
4164
        /* Copy string to tmpBuf */
4165
        if (totalLen + strLen > tmpBufSz) {
4166
            WOLFSSL_MSG("buffer overrun");
4167
            XFREE(str, NULL, DYNAMIC_TYPE_TMP_BUFFER);
4168
            return NULL;
4169
        }
4170
        XMEMCPY(tmpBuf + totalLen, str, strLen);
4171
        totalLen += strLen;
4172
        XFREE(str, NULL, DYNAMIC_TYPE_TMP_BUFFER);
4173
    }
4174
4175
    /* Allocate space based on total string size if no buffer was provided */
4176
    if (!in) {
4177
        in = (char*)XMALLOC(totalLen+1, NULL, DYNAMIC_TYPE_OPENSSL);
4178
        if (in == NULL) {
4179
            WOLFSSL_MSG("Memory error");
4180
            return in;
4181
        }
4182
    }
4183
    else {
4184
        if (totalLen + 1 > sz) {
4185
            WOLFSSL_MSG("buffer overrun");
4186
            return NULL;
4187
        }
4188
    }
4189
4190
    XMEMCPY(in, tmpBuf, totalLen); /* cppcheck-suppress uninitvar */
4191
    in[totalLen] = '\0';
4192
4193
    return in;
4194
}
4195
#endif
4196
4197
4198
/* Wraps wolfSSL_X509_d2i
4199
 *
4200
 * returns a WOLFSSL_X509 structure pointer on success and NULL on fail
4201
 */
4202
WOLFSSL_X509* wolfSSL_d2i_X509(WOLFSSL_X509** x509, const unsigned char** in,
4203
        int len)
4204
{
4205
    WOLFSSL_X509* newX509 = NULL;
4206
    WOLFSSL_ENTER("wolfSSL_d2i_X509");
4207
4208
    if (in == NULL) {
4209
        WOLFSSL_MSG("NULL input for wolfSSL_d2i_X509");
4210
        return NULL;
4211
    }
4212
4213
    newX509 = wolfSSL_X509_d2i(x509, *in, len);
4214
    if (newX509 != NULL) {
4215
        *in += newX509->derCert->length;
4216
    }
4217
    return newX509;
4218
}
4219
4220
static WOLFSSL_X509* d2i_X509orX509REQ(WOLFSSL_X509** x509,
4221
                                  const byte* in, int len, int req, void* heap)
4222
{
4223
    WOLFSSL_X509 *newX509 = NULL;
4224
    int type = req ? CERTREQ_TYPE : CERT_TYPE;
4225
4226
    WOLFSSL_ENTER("wolfSSL_X509_d2i");
4227
4228
    if (in != NULL && len > 0
4229
    #ifndef WOLFSSL_CERT_REQ
4230
            && req == 0
4231
    #else
4232
            && (req == 0 || req == 1)
4233
    #endif
4234
            ) {
4235
        WC_DECLARE_VAR(cert, DecodedCert, 1, 0);
4236
4237
        WC_ALLOC_VAR_EX(cert, DecodedCert, 1, NULL, DYNAMIC_TYPE_DCERT,
4238
            return NULL);
4239
4240
        InitDecodedCert(cert, (byte*)in, (word32)len, heap);
4241
    #ifdef WOLFSSL_CERT_REQ
4242
        cert->isCSR = (byte)req;
4243
    #endif
4244
        if (ParseCertRelative(cert, type, 0, NULL, NULL) == 0) {
4245
            newX509 = wolfSSL_X509_new_ex(heap);
4246
            if (newX509 != NULL) {
4247
                if (CopyDecodedToX509(newX509, cert) != 0) {
4248
                    wolfSSL_X509_free(newX509);
4249
                    newX509 = NULL;
4250
                }
4251
            }
4252
        }
4253
        FreeDecodedCert(cert);
4254
        WC_FREE_VAR_EX(cert, NULL, DYNAMIC_TYPE_DCERT);
4255
    }
4256
4257
    if (x509 != NULL)
4258
        *x509 = newX509;
4259
4260
    return newX509;
4261
}
4262
4263
int wolfSSL_X509_get_isCA(WOLFSSL_X509* x509)
4264
{
4265
    int isCA = 0;
4266
4267
    WOLFSSL_ENTER("wolfSSL_X509_get_isCA");
4268
4269
    if (x509 != NULL)
4270
        isCA = x509->isCa;
4271
4272
    WOLFSSL_LEAVE("wolfSSL_X509_get_isCA", isCA);
4273
4274
    return isCA;
4275
}
4276
4277
WOLFSSL_X509* wolfSSL_X509_d2i_ex(WOLFSSL_X509** x509, const byte* in, int len,
4278
    void* heap)
4279
{
4280
    return d2i_X509orX509REQ(x509, in, len, 0, heap);
4281
}
4282
4283
WOLFSSL_X509* wolfSSL_X509_d2i(WOLFSSL_X509** x509, const byte* in, int len)
4284
{
4285
    return wolfSSL_X509_d2i_ex(x509, in, len, NULL);
4286
}
4287
4288
#ifdef WOLFSSL_CERT_REQ
4289
WOLFSSL_X509* wolfSSL_X509_REQ_d2i(WOLFSSL_X509** x509,
4290
        const unsigned char* in, int len)
4291
{
4292
    return d2i_X509orX509REQ(x509, in, len, 1, NULL);
4293
}
4294
4295
WOLFSSL_X509* wolfSSL_d2i_X509_REQ_INFO(WOLFSSL_X509** req,
4296
        const unsigned char** in, int len)
4297
{
4298
    WOLFSSL_X509* ret = NULL;
4299
    WOLFSSL_ENTER("wolfSSL_d2i_X509_REQ_INFO");
4300
4301
    if (in == NULL) {
4302
        WOLFSSL_MSG("NULL input for wolfSSL_d2i_X509");
4303
        return NULL;
4304
    }
4305
4306
    ret = wolfSSL_X509_REQ_d2i(req, *in, len);
4307
    if (ret != NULL) {
4308
        *in += ret->derCert->length;
4309
    }
4310
    return ret;
4311
}
4312
#endif
4313
4314
#endif /* KEEP_PEER_CERT || SESSION_CERTS || OPENSSL_EXTRA ||
4315
          OPENSSL_EXTRA_X509_SMALL */
4316
4317
#if defined(OPENSSL_EXTRA) || defined(OPENSSL_EXTRA_X509_SMALL)
4318
/* returns the number of entries in the WOLFSSL_X509_NAME */
4319
int wolfSSL_X509_NAME_entry_count(WOLFSSL_X509_NAME* name)
4320
{
4321
    int count = 0;
4322
4323
    WOLFSSL_ENTER("wolfSSL_X509_NAME_entry_count");
4324
4325
    if (name != NULL)
4326
        count = name->entrySz;
4327
4328
    WOLFSSL_LEAVE("wolfSSL_X509_NAME_entry_count", count);
4329
    return count;
4330
}
4331
#endif /* OPENSSL_EXTRA || OPENSSL_EXTRA_X509_SMALL */
4332
4333
#if defined(OPENSSL_EXTRA) || \
4334
    defined(KEEP_OUR_CERT) || defined(KEEP_PEER_CERT)
4335
4336
/* return the next, if any, altname from the peer cert */
4337
WOLFSSL_ABI
4338
char* wolfSSL_X509_get_next_altname(WOLFSSL_X509* cert)
4339
{
4340
    char* ret = NULL;
4341
    WOLFSSL_ENTER("wolfSSL_X509_get_next_altname");
4342
4343
    /* don't have any to work with */
4344
    if (cert == NULL || cert->altNames == NULL)
4345
        return NULL;
4346
4347
    /* already went through them */
4348
    if (cert->altNamesNext == NULL) {
4349
#ifdef WOLFSSL_MULTICIRCULATE_ALTNAMELIST
4350
        /* Reset altNames List to head
4351
         * so that caller can circulate the list again
4352
         */
4353
        cert->altNamesNext = cert->altNames;
4354
#endif
4355
        return NULL;
4356
    }
4357
4358
    /* In default builds iPAddress entries hold raw 4/16 octet payloads
4359
     * and registeredID entries hold raw OID body bytes (no human-readable
4360
     * ipString/ridString), so returning them as a C string would truncate
4361
     * at any embedded NUL byte. Such entries are still parsed into
4362
     * altNames for name-constraint enforcement; skip them here so
4363
     * string-iteration callers see the same set of entries as before.
4364
     *
4365
     * With WOLFSSL_MULTICIRCULATE_ALTNAMELIST, a list consisting only of
4366
     * skipped entries collapses to "no entries" on the first pass and
4367
     * resets to head on the next call; the cycle shape matches the
4368
     * pre-fix behavior where such entries were never parsed. */
4369
#if !defined(WOLFSSL_IP_ALT_NAME) || !defined(WOLFSSL_RID_ALT_NAME)
4370
    while (cert->altNamesNext != NULL) {
4371
        int skip = 0;
4372
#ifndef WOLFSSL_IP_ALT_NAME
4373
        if (cert->altNamesNext->type == ASN_IP_TYPE)
4374
            skip = 1;
4375
#endif
4376
#ifndef WOLFSSL_RID_ALT_NAME
4377
        if (cert->altNamesNext->type == ASN_RID_TYPE)
4378
            skip = 1;
4379
#endif
4380
        if (!skip)
4381
            break;
4382
        cert->altNamesNext = cert->altNamesNext->next;
4383
    }
4384
    if (cert->altNamesNext == NULL)
4385
        return NULL;
4386
#endif /* !WOLFSSL_IP_ALT_NAME || !WOLFSSL_RID_ALT_NAME */
4387
4388
    /* unsafe cast required for ABI compatibility. */
4389
    ret = (char *)(wc_ptr_t)cert->altNamesNext->name;
4390
#ifdef WOLFSSL_IP_ALT_NAME
4391
    /* return the IP address as a string */
4392
    if (cert->altNamesNext->type == ASN_IP_TYPE) {
4393
        ret = cert->altNamesNext->ipString;
4394
    }
4395
#endif
4396
#ifdef WOLFSSL_RID_ALT_NAME
4397
    /* return the registeredID as a string */
4398
    if (cert->altNamesNext->type == ASN_RID_TYPE) {
4399
        ret = cert->altNamesNext->ridString;
4400
    }
4401
#endif
4402
    cert->altNamesNext = cert->altNamesNext->next;
4403
4404
    return ret;
4405
}
4406
4407
int wolfSSL_X509_get_signature(WOLFSSL_X509* x509,
4408
                                                unsigned char* buf, int* bufSz)
4409
{
4410
    WOLFSSL_ENTER("wolfSSL_X509_get_signature");
4411
    if (x509 == NULL || bufSz == NULL || (*bufSz < (int)x509->sig.length &&
4412
                buf != NULL))
4413
        return WOLFSSL_FATAL_ERROR;
4414
4415
    if (buf != NULL)
4416
        XMEMCPY(buf, x509->sig.buffer, x509->sig.length);
4417
    *bufSz = (int)x509->sig.length;
4418
4419
    return WOLFSSL_SUCCESS;
4420
}
4421
4422
4423
/* Getter function that copies over the DER public key buffer to "buf" and
4424
    * sets the size in bufSz. If "buf" is NULL then just bufSz is set to needed
4425
    * buffer size. "bufSz" passed in should initially be set by the user to be
4426
    * the size of "buf". This gets checked to make sure the buffer is large
4427
    * enough to hold the public key.
4428
    *
4429
    * Note: this is the X.509 form of key with "header" info.
4430
    * return WOLFSSL_SUCCESS on success
4431
    */
4432
int wolfSSL_X509_get_pubkey_buffer(WOLFSSL_X509* x509,
4433
                                            unsigned char* buf, int* bufSz)
4434
{
4435
    WC_DECLARE_VAR(cert, DecodedCert, 1, 0);
4436
    const byte*  der;
4437
    int length = 0;
4438
    int    ret = 0, derSz = 0;
4439
    int badDate = 0;
4440
    const byte* pubKeyX509 = NULL;
4441
    int   pubKeyX509Sz = 0;
4442
4443
    WOLFSSL_ENTER("wolfSSL_X509_get_pubkey_buffer");
4444
    if (x509 == NULL || bufSz == NULL) {
4445
        WOLFSSL_LEAVE("wolfSSL_X509_get_pubkey_buffer", BAD_FUNC_ARG);
4446
        return WOLFSSL_FATAL_ERROR;
4447
    }
4448
4449
4450
#ifdef WOLFSSL_SMALL_STACK
4451
    cert = (DecodedCert*)XMALLOC(sizeof(DecodedCert),
4452
                                    x509->heap, DYNAMIC_TYPE_TMP_BUFFER);
4453
    if (cert == NULL) {
4454
        WOLFSSL_LEAVE("wolfSSL_X509_get_pubkey_buffer", MEMORY_E);
4455
        return WOLFSSL_FATAL_ERROR;
4456
    }
4457
#endif
4458
4459
    der = wolfSSL_X509_get_der(x509, &derSz);
4460
    if (der != NULL) {
4461
        InitDecodedCert(cert, der, (word32)derSz, NULL);
4462
        ret = wc_GetPubX509(cert, 0, &badDate);
4463
        if (ret >= 0) {
4464
            word32 idx = cert->srcIdx;
4465
            pubKeyX509 = cert->source + cert->srcIdx;
4466
            ret = GetSequence(cert->source, &cert->srcIdx, &length,
4467
                    cert->maxIdx);
4468
            pubKeyX509Sz = length + (cert->srcIdx - idx);
4469
        }
4470
        FreeDecodedCert(cert);
4471
    }
4472
    WC_FREE_VAR_EX(cert, x509->heap, DYNAMIC_TYPE_TMP_BUFFER);
4473
4474
    if (ret < 0) {
4475
        WOLFSSL_LEAVE("wolfSSL_X509_get_pubkey_buffer", ret);
4476
        return WOLFSSL_FATAL_ERROR;
4477
    }
4478
4479
    if (buf != NULL && pubKeyX509 != NULL) {
4480
        if (pubKeyX509Sz > *bufSz) {
4481
            WOLFSSL_LEAVE("wolfSSL_X509_get_pubkey_buffer", BUFFER_E);
4482
            return WOLFSSL_FATAL_ERROR;
4483
        }
4484
        XMEMCPY(buf, pubKeyX509, pubKeyX509Sz);
4485
    }
4486
    *bufSz = pubKeyX509Sz;
4487
4488
    return WOLFSSL_SUCCESS;
4489
}
4490
4491
4492
/* Getter function for the public key OID value
4493
    * return public key OID stored in WOLFSSL_X509 structure */
4494
int wolfSSL_X509_get_pubkey_type(WOLFSSL_X509* x509)
4495
{
4496
    if (x509 == NULL)
4497
        return WOLFSSL_FAILURE;
4498
    return x509->pubKeyOID;
4499
}
4500
4501
#endif /* OPENSSL_EXTRA || KEEP_OUR_CERT || KEEP_PEER_CERT || SESSION_CERTS */
4502
4503
#if defined(OPENSSL_EXTRA) || defined(WOLFSSL_WPAS_SMALL) || \
4504
    defined(KEEP_OUR_CERT) || defined(KEEP_PEER_CERT) || defined(SESSION_CERTS)
4505
4506
/* write X509 serial number in unsigned binary to buffer
4507
    buffer needs to be at least EXTERNAL_SERIAL_SIZE (32) for all cases
4508
    return WOLFSSL_SUCCESS on success */
4509
int wolfSSL_X509_get_serial_number(WOLFSSL_X509* x509,
4510
                                    byte* in, int* inOutSz)
4511
{
4512
    WOLFSSL_ENTER("wolfSSL_X509_get_serial_number");
4513
    if (x509 == NULL || inOutSz == NULL) {
4514
        WOLFSSL_MSG("Null argument passed in");
4515
        return BAD_FUNC_ARG;
4516
    }
4517
4518
    if (in != NULL) {
4519
        if (*inOutSz < x509->serialSz) {
4520
            WOLFSSL_MSG("Serial buffer too small");
4521
            return BUFFER_E;
4522
        }
4523
        XMEMCPY(in, x509->serial, x509->serialSz);
4524
    }
4525
    *inOutSz = x509->serialSz;
4526
4527
    return WOLFSSL_SUCCESS;
4528
}
4529
4530
/* not an openssl compatibility function - getting for derCert */
4531
const byte* wolfSSL_X509_get_der(WOLFSSL_X509* x509, int* outSz)
4532
{
4533
    WOLFSSL_ENTER("wolfSSL_X509_get_der");
4534
4535
    if (x509 == NULL || x509->derCert == NULL || outSz == NULL)
4536
        return NULL;
4537
4538
    if (x509->derCert->length > (word32)INT_MAX) {
4539
        return NULL;
4540
    }
4541
4542
    *outSz = (int)x509->derCert->length;
4543
    return x509->derCert->buffer;
4544
}
4545
4546
#endif /* OPENSSL_EXTRA || WOLFSSL_WPAS_SMALL || KEEP_OUR_CERT ||
4547
        * KEEP_PEER_CERT || SESSION_CERTS */
4548
4549
#if defined(OPENSSL_EXTRA_X509_SMALL) || defined(OPENSSL_EXTRA) || \
4550
    defined(OPENSSL_ALL) || defined(KEEP_OUR_CERT) || \
4551
    defined(KEEP_PEER_CERT) || defined(SESSION_CERTS)
4552
4553
/* used by JSSE (not a standard compatibility function) */
4554
WOLFSSL_ABI
4555
const byte* wolfSSL_X509_notBefore(WOLFSSL_X509* x509)
4556
{
4557
    WOLFSSL_ENTER("wolfSSL_X509_notBefore");
4558
4559
    if (x509 == NULL) {
4560
        return NULL;
4561
    }
4562
4563
    if (x509->notBefore.length < 0 ||
4564
            x509->notBefore.length > (int)sizeof(x509->notBeforeData) - 2) {
4565
        return NULL;
4566
    }
4567
4568
    XMEMSET(x509->notBeforeData, 0, sizeof(x509->notBeforeData));
4569
    x509->notBeforeData[0] = (byte)x509->notBefore.type;
4570
    x509->notBeforeData[1] = (byte)x509->notBefore.length;
4571
    XMEMCPY(&x509->notBeforeData[2], x509->notBefore.data,
4572
        x509->notBefore.length);
4573
4574
    return x509->notBeforeData;
4575
}
4576
4577
/* used by JSSE (not a standard compatibility function) */
4578
WOLFSSL_ABI
4579
const byte* wolfSSL_X509_notAfter(WOLFSSL_X509* x509)
4580
{
4581
    WOLFSSL_ENTER("wolfSSL_X509_notAfter");
4582
4583
    if (x509 == NULL) {
4584
        return NULL;
4585
    }
4586
4587
    if (x509->notAfter.length < 0 ||
4588
            x509->notAfter.length > (int)sizeof(x509->notAfterData) - 2) {
4589
        return NULL;
4590
    }
4591
4592
    XMEMSET(x509->notAfterData, 0, sizeof(x509->notAfterData));
4593
    x509->notAfterData[0] = (byte)x509->notAfter.type;
4594
    x509->notAfterData[1] = (byte)x509->notAfter.length;
4595
    XMEMCPY(&x509->notAfterData[2], x509->notAfter.data, x509->notAfter.length);
4596
4597
    return x509->notAfterData;
4598
}
4599
4600
int wolfSSL_X509_version(WOLFSSL_X509* x509)
4601
{
4602
    WOLFSSL_ENTER("wolfSSL_X509_version");
4603
4604
    if (x509 == NULL)
4605
        return 0;
4606
4607
    return x509->version;
4608
}
4609
#endif
4610
4611
#ifdef OPENSSL_EXTRA
4612
4613
/* get the buffer to be signed (tbs) from the WOLFSSL_X509 certificate
4614
    *
4615
    * outSz : gets set to the size of the buffer
4616
    * returns a pointer to the internal buffer at the location of TBS on
4617
    *         on success and NULL on failure.
4618
    */
4619
const unsigned char* wolfSSL_X509_get_tbs(WOLFSSL_X509* x509, int* outSz)
4620
{
4621
    int sz = 0, len;
4622
    unsigned int idx = 0, tmpIdx;
4623
    const unsigned char* der = NULL;
4624
    const unsigned char* tbs = NULL;
4625
4626
    if (x509 == NULL || outSz == NULL) {
4627
        return NULL;
4628
    }
4629
4630
    der = wolfSSL_X509_get_der(x509, &sz);
4631
    if (der == NULL) {
4632
        return NULL;
4633
    }
4634
4635
    if (GetSequence(der, &idx, &len, (word32)sz) < 0) {
4636
        return NULL;
4637
    }
4638
    tbs = der + idx;
4639
    tmpIdx = idx;
4640
    if (GetSequence(der, &idx, &len, (word32)sz) < 0) {
4641
        return NULL;
4642
    }
4643
    *outSz = len + (idx - tmpIdx);
4644
    return tbs;
4645
}
4646
4647
#ifdef WOLFSSL_SEP
4648
4649
/* copy oid into in buffer, at most *inOutSz bytes, if buffer is null will
4650
   malloc buffer, call responsible for freeing. Actual size returned in
4651
   *inOutSz. Requires inOutSz be non-null */
4652
byte* wolfSSL_X509_get_device_type(WOLFSSL_X509* x509, byte* in, int *inOutSz)
4653
{
4654
    int copySz;
4655
4656
    WOLFSSL_ENTER("wolfSSL_X509_get_dev_type");
4657
    if (x509 == NULL) return NULL;
4658
    if (inOutSz == NULL) return NULL;
4659
    if (!x509->deviceTypeSz) return in;
4660
4661
    copySz = min(*inOutSz, x509->deviceTypeSz);
4662
4663
    if (!in) {
4664
    #ifdef WOLFSSL_STATIC_MEMORY
4665
        WOLFSSL_MSG("Using static memory -- please pass in a buffer");
4666
        return NULL;
4667
    #else
4668
        in = (byte*)XMALLOC(x509->deviceTypeSz, 0, DYNAMIC_TYPE_OPENSSL);
4669
        if (!in) return in;
4670
        copySz = x509->deviceTypeSz;
4671
    #endif
4672
    }
4673
4674
    XMEMCPY(in, x509->deviceType, copySz);
4675
    *inOutSz = copySz;
4676
4677
    return in;
4678
}
4679
4680
4681
byte* wolfSSL_X509_get_hw_type(WOLFSSL_X509* x509, byte* in, int* inOutSz)
4682
{
4683
    int copySz;
4684
4685
    WOLFSSL_ENTER("wolfSSL_X509_get_hw_type");
4686
    if (x509 == NULL) return NULL;
4687
    if (inOutSz == NULL) return NULL;
4688
    if (!x509->hwTypeSz) return in;
4689
4690
    copySz = min(*inOutSz, x509->hwTypeSz);
4691
4692
    if (!in) {
4693
    #ifdef WOLFSSL_STATIC_MEMORY
4694
        WOLFSSL_MSG("Using static memory -- please pass in a buffer");
4695
        return NULL;
4696
    #else
4697
        in = (byte*)XMALLOC(x509->hwTypeSz, 0, DYNAMIC_TYPE_OPENSSL);
4698
        if (!in) return in;
4699
        copySz = x509->hwTypeSz;
4700
    #endif
4701
    }
4702
4703
    XMEMCPY(in, x509->hwType, copySz);
4704
    *inOutSz = copySz;
4705
4706
    return in;
4707
}
4708
4709
4710
byte* wolfSSL_X509_get_hw_serial_number(WOLFSSL_X509* x509,byte* in,
4711
                                        int* inOutSz)
4712
{
4713
    int copySz;
4714
4715
    WOLFSSL_ENTER("wolfSSL_X509_get_hw_serial_number");
4716
    if (x509 == NULL) return NULL;
4717
    if (inOutSz == NULL) return NULL;
4718
    if (!x509->hwTypeSz) return in;
4719
4720
    copySz = min(*inOutSz, x509->hwSerialNumSz);
4721
4722
    if (!in) {
4723
    #ifdef WOLFSSL_STATIC_MEMORY
4724
        WOLFSSL_MSG("Using static memory -- please pass in a buffer");
4725
        return NULL;
4726
    #else
4727
        in = (byte*)XMALLOC(x509->hwSerialNumSz, 0, DYNAMIC_TYPE_OPENSSL);
4728
        if (!in) return in;
4729
        copySz = x509->hwSerialNumSz;
4730
    #endif
4731
    }
4732
4733
    XMEMCPY(in, x509->hwSerialNum, copySz);
4734
    *inOutSz = copySz;
4735
4736
    return in;
4737
}
4738
4739
#endif /* WOLFSSL_SEP */
4740
#endif /* OPENSSL_EXTRA */
4741
4742
/* require OPENSSL_EXTRA since wolfSSL_X509_free is wrapped by OPENSSL_EXTRA */
4743
#if defined(OPENSSL_EXTRA)
4744
4745
WOLFSSL_ASN1_TIME* wolfSSL_X509_get_notBefore(const WOLFSSL_X509* x509)
4746
{
4747
    WOLFSSL_ENTER("wolfSSL_X509_get_notBefore");
4748
4749
    if (x509 == NULL)
4750
        return NULL;
4751
4752
    return (WOLFSSL_ASN1_TIME*)&x509->notBefore;
4753
}
4754
4755
4756
WOLFSSL_ASN1_TIME* wolfSSL_X509_get_notAfter(const WOLFSSL_X509* x509)
4757
{
4758
    WOLFSSL_ENTER("wolfSSL_X509_get_notAfter");
4759
4760
    if (x509 == NULL)
4761
        return NULL;
4762
4763
    return (WOLFSSL_ASN1_TIME*)&x509->notAfter;
4764
}
4765
4766
4767
/* return number of elements on success 0 on fail */
4768
int wolfSSL_sk_X509_push(WOLF_STACK_OF(WOLFSSL_X509_NAME)* sk,
4769
    WOLFSSL_X509* x509)
4770
{
4771
    WOLFSSL_ENTER("wolfSSL_sk_X509_push");
4772
4773
    if (sk == NULL || x509 == NULL) {
4774
        return WOLFSSL_FAILURE;
4775
    }
4776
4777
    return wolfSSL_sk_push(sk, x509);
4778
}
4779
4780
4781
/* Return and remove the last x509 pushed on stack */
4782
WOLFSSL_X509* wolfSSL_sk_X509_pop(WOLF_STACK_OF(WOLFSSL_X509_NAME)* sk)
4783
{
4784
    return (WOLFSSL_X509*)wolfSSL_sk_pop(sk);
4785
}
4786
4787
/* Getter function for WOLFSSL_X509 pointer
4788
 *
4789
 * sk is the stack to retrieve pointer from
4790
 * i  is the index value in stack
4791
 *
4792
 * returns a pointer to a WOLFSSL_X509 structure on success and NULL on
4793
 *         fail
4794
 */
4795
WOLFSSL_X509* wolfSSL_sk_X509_value(WOLF_STACK_OF(WOLFSSL_X509)* sk, int i)
4796
{
4797
    WOLFSSL_ENTER("wolfSSL_sk_X509_value");
4798
4799
    for (; sk != NULL && i > 0; i--)
4800
        sk = sk->next;
4801
4802
    if (i != 0 || sk == NULL)
4803
        return NULL;
4804
    return sk->data.x509;
4805
}
4806
4807
4808
/* Return and remove the first x509 pushed on stack */
4809
WOLFSSL_X509* wolfSSL_sk_X509_shift(WOLF_STACK_OF(WOLFSSL_X509)* sk)
4810
{
4811
    return (WOLFSSL_X509*)wolfSSL_sk_pop_node(sk, 0);
4812
}
4813
4814
#endif /* OPENSSL_EXTRA */
4815
4816
#if defined(OPENSSL_EXTRA) || defined(WOLFSSL_WPAS_SMALL)
4817
/* Free's all nodes in X509 stack. This is different then wolfSSL_sk_X509_free
4818
 * in that it free's the underlying objects pushed to the stack.
4819
 *
4820
 * sk  stack to free nodes in
4821
 * f   X509 free function
4822
 */
4823
void wolfSSL_sk_X509_pop_free(WOLF_STACK_OF(WOLFSSL_X509)* sk,
4824
    void (*f) (WOLFSSL_X509*))
4825
{
4826
    WOLFSSL_ENTER("wolfSSL_sk_X509_pop_free");
4827
    wolfSSL_sk_pop_free(sk, (wolfSSL_sk_freefunc)f);
4828
}
4829
4830
4831
/* free just the stack structure */
4832
void wolfSSL_sk_X509_free(WOLF_STACK_OF(WOLFSSL_X509)* sk)
4833
{
4834
    wolfSSL_sk_free(sk);
4835
}
4836
4837
#ifdef HAVE_CRL
4838
WOLFSSL_STACK* wolfSSL_sk_X509_CRL_new(void)
4839
{
4840
    WOLFSSL_STACK* s = wolfSSL_sk_new_node(NULL);
4841
    if (s != NULL)
4842
        s->type = STACK_TYPE_X509_CRL;
4843
    return s;
4844
}
4845
4846
WOLFSSL_STACK* wolfSSL_sk_X509_CRL_new_null(void)
4847
{
4848
    WOLFSSL_STACK* s = wolfSSL_sk_new_null();
4849
    if (s != NULL)
4850
        s->type = STACK_TYPE_X509_CRL;
4851
    return s;
4852
}
4853
4854
void wolfSSL_sk_X509_CRL_pop_free(WOLF_STACK_OF(WOLFSSL_X509_CRL)* sk,
4855
    void (*f) (WOLFSSL_X509_CRL*))
4856
{
4857
    WOLFSSL_ENTER("wolfSSL_sk_X509_CRL_pop_free");
4858
    wolfSSL_sk_pop_free(sk, (wolfSSL_sk_freefunc)f);
4859
}
4860
4861
void wolfSSL_sk_X509_CRL_free(WOLF_STACK_OF(WOLFSSL_X509_CRL)* sk)
4862
{
4863
    wolfSSL_sk_X509_CRL_pop_free(sk, NULL);
4864
}
4865
4866
/* return number of elements on success 0 on fail */
4867
int wolfSSL_sk_X509_CRL_push(WOLF_STACK_OF(WOLFSSL_X509_CRL)* sk,
4868
    WOLFSSL_X509_CRL* crl)
4869
{
4870
    WOLFSSL_ENTER("wolfSSL_sk_X509_CRL_push");
4871
4872
    if (sk == NULL || crl == NULL) {
4873
        return WOLFSSL_FAILURE;
4874
    }
4875
4876
    return wolfSSL_sk_push(sk, crl);
4877
}
4878
4879
WOLFSSL_X509_CRL* wolfSSL_sk_X509_CRL_value(WOLF_STACK_OF(WOLFSSL_X509)* sk,
4880
                                            int i)
4881
{
4882
    WOLFSSL_ENTER("wolfSSL_sk_X509_CRL_value");
4883
    if (sk)
4884
        return (WOLFSSL_X509_CRL*)wolfSSL_sk_value(sk, i);
4885
    return NULL;
4886
}
4887
4888
int wolfSSL_sk_X509_CRL_num(WOLF_STACK_OF(WOLFSSL_X509)* sk)
4889
{
4890
    WOLFSSL_ENTER("wolfSSL_sk_X509_CRL_num");
4891
    if (sk)
4892
        return wolfSSL_sk_num(sk);
4893
    return 0;
4894
}
4895
#endif /* HAVE_CRL */
4896
4897
#endif /* OPENSSL_EXTRA || WOLFSSL_WPAS_SMALL */
4898
4899
#if defined(OPENSSL_EXTRA) || defined(WOLFSSL_QT)
4900
/* return number of elements on success 0 on fail */
4901
int wolfSSL_sk_ACCESS_DESCRIPTION_push(WOLF_STACK_OF(ACCESS_DESCRIPTION)* sk,
4902
                                              WOLFSSL_ACCESS_DESCRIPTION* a)
4903
{
4904
    WOLFSSL_ENTER("wolfSSL_sk_ACCESS_DESCRIPTION_push");
4905
4906
    return wolfSSL_sk_push(sk, a);
4907
}
4908
4909
/* Frees all nodes in ACCESS_DESCRIPTION stack
4910
*
4911
* sk stack of nodes to free
4912
* f  free function to use
4913
*/
4914
void wolfSSL_sk_ACCESS_DESCRIPTION_pop_free(WOLFSSL_STACK* sk,
4915
    void (*f) (WOLFSSL_ACCESS_DESCRIPTION*))
4916
{
4917
   WOLFSSL_ENTER("wolfSSL_sk_ACCESS_DESCRIPTION_pop_free");
4918
   wolfSSL_sk_pop_free(sk, (wolfSSL_sk_freefunc)f);
4919
}
4920
4921
void wolfSSL_sk_ACCESS_DESCRIPTION_free(WOLFSSL_STACK* sk)
4922
{
4923
    wolfSSL_sk_free(sk);
4924
}
4925
4926
4927
/* AUTHORITY_INFO_ACCESS object is a stack of ACCESS_DESCRIPTION objects,
4928
 * to free the stack the WOLFSSL_ACCESS_DESCRIPTION stack free function is
4929
 * used */
4930
void wolfSSL_AUTHORITY_INFO_ACCESS_free(
4931
        WOLF_STACK_OF(WOLFSSL_ACCESS_DESCRIPTION)* sk)
4932
{
4933
    WOLFSSL_ENTER("wolfSSL_AUTHORITY_INFO_ACCESS_free");
4934
    wolfSSL_sk_ACCESS_DESCRIPTION_free(sk);
4935
}
4936
4937
void wolfSSL_AUTHORITY_INFO_ACCESS_pop_free(
4938
        WOLF_STACK_OF(WOLFSSL_ACCESS_DESCRIPTION)* sk,
4939
        void (*f) (WOLFSSL_ACCESS_DESCRIPTION*))
4940
{
4941
    WOLFSSL_ENTER("wolfSSL_AUTHORITY_INFO_ACCESS_free");
4942
    wolfSSL_sk_ACCESS_DESCRIPTION_pop_free(sk, f);
4943
}
4944
4945
4946
void wolfSSL_ACCESS_DESCRIPTION_free(WOLFSSL_ACCESS_DESCRIPTION* a)
4947
{
4948
    WOLFSSL_ENTER("wolfSSL_ACCESS_DESCRIPTION_free");
4949
    if (a == NULL)
4950
        return;
4951
4952
    if (a->method)
4953
        wolfSSL_ASN1_OBJECT_free(a->method);
4954
    if (a->location)
4955
        wolfSSL_GENERAL_NAME_free(a->location);
4956
    XFREE(a, NULL, DYNAMIC_TYPE_X509_EXT);
4957
4958
    /* a = NULL, don't try to a or double free it */
4959
}
4960
#endif /* OPENSSL_EXTRA || WOLFSSL_QT */
4961
4962
#if defined(OPENSSL_EXTRA) || defined(WOLFSSL_WPAS_SMALL)
4963
4964
/* Creates and returns new GENERAL_NAME structure */
4965
WOLFSSL_GENERAL_NAME* wolfSSL_GENERAL_NAME_new(void)
4966
{
4967
    WOLFSSL_GENERAL_NAME* gn;
4968
    WOLFSSL_ENTER("GENERAL_NAME_new");
4969
4970
    gn = (WOLFSSL_GENERAL_NAME*)XMALLOC(sizeof(WOLFSSL_GENERAL_NAME), NULL,
4971
                                                             DYNAMIC_TYPE_ASN1);
4972
    if (gn == NULL) {
4973
        return NULL;
4974
    }
4975
    XMEMSET(gn, 0, sizeof(WOLFSSL_GENERAL_NAME));
4976
4977
    gn->d.ia5 = wolfSSL_ASN1_STRING_new();
4978
    if (gn->d.ia5 == NULL) {
4979
        WOLFSSL_MSG("Issue creating ASN1_STRING struct");
4980
        wolfSSL_GENERAL_NAME_free(gn);
4981
        return NULL;
4982
    }
4983
    gn->type = WOLFSSL_GEN_IA5;
4984
    return gn;
4985
}
4986
4987
WOLFSSL_GENERAL_NAME* wolfSSL_GENERAL_NAME_dup(WOLFSSL_GENERAL_NAME* gn)
4988
{
4989
    WOLFSSL_GENERAL_NAME* dupl = NULL;
4990
4991
    WOLFSSL_ENTER("wolfSSL_GENERAL_NAME_dup");
4992
4993
    if (!gn) {
4994
        WOLFSSL_MSG("Bad parameter");
4995
        return NULL;
4996
    }
4997
4998
    if (!(dupl = wolfSSL_GENERAL_NAME_new())) {
4999
        WOLFSSL_MSG("wolfSSL_GENERAL_NAME_new error");
5000
        return NULL;
5001
    }
5002
5003
    wolfSSL_ASN1_STRING_free(dupl->d.ia5);
5004
    dupl->d.ia5 = NULL;
5005
    switch (gn->type) {
5006
    /* WOLFSSL_ASN1_STRING types */
5007
    case WOLFSSL_GEN_DNS:
5008
        if (!(dupl->d.dNSName = wolfSSL_ASN1_STRING_dup(gn->d.dNSName))) {
5009
            WOLFSSL_MSG("wolfSSL_ASN1_STRING_dup error");
5010
            goto error;
5011
        }
5012
        break;
5013
    case WOLFSSL_GEN_IPADD:
5014
        if (!(dupl->d.iPAddress = wolfSSL_ASN1_STRING_dup(gn->d.iPAddress))) {
5015
            WOLFSSL_MSG("wolfSSL_ASN1_STRING_dup error");
5016
            goto error;
5017
        }
5018
        break;
5019
    case WOLFSSL_GEN_EMAIL:
5020
        if (!(dupl->d.rfc822Name = wolfSSL_ASN1_STRING_dup(gn->d.rfc822Name))) {
5021
            WOLFSSL_MSG("wolfSSL_ASN1_STRING_dup error");
5022
            goto error;
5023
        }
5024
        break;
5025
    case WOLFSSL_GEN_URI:
5026
        if (!(dupl->d.uniformResourceIdentifier =
5027
                wolfSSL_ASN1_STRING_dup(gn->d.uniformResourceIdentifier))) {
5028
            WOLFSSL_MSG("wolfSSL_ASN1_STRING_dup error");
5029
            goto error;
5030
        }
5031
        break;
5032
    case WOLFSSL_GEN_OTHERNAME:
5033
        if (gn->d.otherName->value->type != WOLFSSL_V_ASN1_UTF8STRING) {
5034
            WOLFSSL_MSG("Unsupported othername value type");
5035
            goto error;
5036
        }
5037
        dupl->d.otherName = (WOLFSSL_ASN1_OTHERNAME*)XMALLOC(
5038
            sizeof(WOLFSSL_ASN1_OTHERNAME), NULL, DYNAMIC_TYPE_ASN1);
5039
        if (dupl->d.otherName == NULL) {
5040
            WOLFSSL_MSG("XMALLOC error");
5041
            goto error;
5042
        }
5043
        dupl->d.otherName->type_id = wolfSSL_ASN1_OBJECT_dup(
5044
            gn->d.otherName->type_id);
5045
        dupl->d.otherName->value = (WOLFSSL_ASN1_TYPE*)XMALLOC(
5046
            sizeof(WOLFSSL_ASN1_TYPE), NULL, DYNAMIC_TYPE_ASN1);
5047
        if (dupl->d.otherName->value != NULL) {
5048
            dupl->d.otherName->value->type = gn->d.otherName->value->type;
5049
            dupl->d.otherName->value->value.utf8string =
5050
                wolfSSL_ASN1_STRING_dup(
5051
                                      gn->d.otherName->value->value.utf8string);
5052
        }
5053
        if ((dupl->d.otherName->type_id == NULL) ||
5054
            (dupl->d.otherName->value == NULL) ||
5055
            (dupl->d.otherName->value->value.utf8string == NULL)) {
5056
            wolfSSL_ASN1_OBJECT_free(dupl->d.otherName->type_id);
5057
            wolfSSL_ASN1_TYPE_free(dupl->d.otherName->value);
5058
            XFREE(dupl->d.otherName, NULL, DYNAMIC_TYPE_ASN1);
5059
            dupl->d.otherName = NULL;
5060
            WOLFSSL_MSG("error duping othername");
5061
            goto error;
5062
        }
5063
        break;
5064
    case WOLFSSL_GEN_X400:
5065
    case WOLFSSL_GEN_DIRNAME:
5066
    case WOLFSSL_GEN_EDIPARTY:
5067
    case WOLFSSL_GEN_RID:
5068
    default:
5069
        WOLFSSL_MSG("Unrecognized or unsupported GENERAL_NAME type");
5070
        goto error;
5071
    }
5072
    dupl->type = gn->type;
5073
5074
    return dupl;
5075
error:
5076
    wolfSSL_GENERAL_NAME_free(dupl);
5077
    return NULL;
5078
}
5079
5080
/* Set an Othername in a general name.
5081
 *
5082
 * @param [out] gen     Pointer to the GENERAL_NAME where the othername is set.
5083
 * @param [in]  oid     Object ID (ie UPN).
5084
 * @param [in]  name    The actual name.
5085
 * @return  WOLFSSL_FAILURE on invalid parameter or memory error,
5086
 *          WOLFSSL_SUCCESS otherwise.
5087
 */
5088
int wolfSSL_GENERAL_NAME_set0_othername(WOLFSSL_GENERAL_NAME* gen,
5089
                                        WOLFSSL_ASN1_OBJECT* oid,
5090
                                        WOLFSSL_ASN1_TYPE* value)
5091
{
5092
    WOLFSSL_ASN1_OBJECT *x = NULL;
5093
5094
    if ((gen == NULL) || (oid == NULL) || (value == NULL)) {
5095
        return WOLFSSL_FAILURE;
5096
    }
5097
5098
    x = wolfSSL_ASN1_OBJECT_dup(oid);
5099
    if (x == NULL) {
5100
        WOLFSSL_MSG("wolfSSL_ASN1_OBJECT_dup() failed");
5101
        return WOLFSSL_FAILURE;
5102
    }
5103
5104
    if (wolfSSL_GENERAL_NAME_set_type(gen, WOLFSSL_GEN_OTHERNAME)
5105
            != WOLFSSL_SUCCESS) {
5106
        wolfSSL_ASN1_OBJECT_free(x);
5107
        return WOLFSSL_FAILURE;
5108
    }
5109
5110
    gen->d.otherName->type_id = x;
5111
    gen->d.otherName->value = value;
5112
    return WOLFSSL_SUCCESS;
5113
}
5114
5115
/* return number of elements on success 0 on fail */
5116
int wolfSSL_sk_GENERAL_NAME_push(WOLFSSL_GENERAL_NAMES* sk,
5117
                                 WOLFSSL_GENERAL_NAME* gn)
5118
{
5119
    WOLFSSL_ENTER("wolfSSL_sk_GENERAL_NAME_push");
5120
5121
    return wolfSSL_sk_push(sk, gn);
5122
}
5123
5124
#endif /* OPENSSL_EXTRA || WOLFSSL_WPAS_SMALL */
5125
5126
#ifdef OPENSSL_EXTRA
5127
5128
/* Returns the general name at index i from the stack
5129
 *
5130
 * sk  stack to get general name from
5131
 * idx index to get
5132
 *
5133
 * return a pointer to the internal node of the stack
5134
 */
5135
WOLFSSL_GENERAL_NAME* wolfSSL_sk_GENERAL_NAME_value(WOLFSSL_STACK* sk, int idx)
5136
{
5137
    return (WOLFSSL_GENERAL_NAME*)wolfSSL_sk_value(sk, idx);
5138
}
5139
5140
/* Gets the number of nodes in the stack
5141
 *
5142
 * sk  stack to get the number of nodes from
5143
 *
5144
 * returns the number of nodes, -1 if no nodes
5145
 */
5146
int wolfSSL_sk_GENERAL_NAME_num(WOLFSSL_STACK* sk)
5147
{
5148
    WOLFSSL_ENTER("wolfSSL_sk_GENERAL_NAME_num");
5149
5150
    return wolfSSL_sk_num(sk);
5151
}
5152
5153
/* Allocates an empty GENERAL NAME stack */
5154
WOLFSSL_STACK* wolfSSL_sk_GENERAL_NAME_new(void *cmpFunc) {
5155
    WOLFSSL_STACK* sk = NULL;
5156
    (void)cmpFunc;
5157
    WOLFSSL_ENTER("wolfSSL_sk_GENERAL_NAME_new");
5158
5159
    sk = wolfSSL_sk_new_null();
5160
    if (sk != NULL) {
5161
        sk->type = STACK_TYPE_GEN_NAME;
5162
    }
5163
5164
    return sk;
5165
}
5166
#endif /* OPENSSL_EXTRA */
5167
5168
#if defined(OPENSSL_EXTRA) || defined(WOLFSSL_WPAS_SMALL)
5169
5170
/* Frees all nodes in a GENERAL NAME stack
5171
 *
5172
 * sk stack of nodes to free
5173
 * f  free function to use, not called with wolfSSL
5174
 */
5175
void wolfSSL_sk_GENERAL_NAME_pop_free(WOLFSSL_STACK* sk,
5176
        void (*f) (WOLFSSL_GENERAL_NAME*))
5177
{
5178
    WOLFSSL_ENTER("wolfSSL_sk_GENERAL_NAME_pop_free");
5179
    wolfSSL_sk_pop_free(sk, (wolfSSL_sk_freefunc)f);
5180
}
5181
5182
void wolfSSL_sk_GENERAL_NAME_free(WOLFSSL_STACK* sk)
5183
{
5184
    WOLFSSL_ENTER("wolfSSL_sk_GENERAL_NAME_free");
5185
    wolfSSL_sk_X509_pop_free(sk, NULL);
5186
}
5187
#endif /* OPENSSL_EXTRA || WOLFSSL_WPAS_SMALL */
5188
5189
#ifdef OPENSSL_EXTRA
5190
static void wolfSSL_DIST_POINT_NAME_free(WOLFSSL_DIST_POINT_NAME* dpn)
5191
{
5192
    if (dpn != NULL) {
5193
        if (dpn->name.fullname != NULL) {
5194
            wolfSSL_sk_X509_pop_free(dpn->name.fullname, NULL);
5195
        }
5196
        XFREE(dpn, NULL, DYNAMIC_TYPE_OPENSSL);
5197
    }
5198
}
5199
5200
5201
/* returns new pointer on success and NULL on fail */
5202
static WOLFSSL_DIST_POINT_NAME* wolfSSL_DIST_POINT_NAME_new(void)
5203
{
5204
    WOLFSSL_DIST_POINT_NAME* dpn = NULL;
5205
    WOLFSSL_GENERAL_NAMES* gns = NULL;
5206
5207
    dpn = (WOLFSSL_DIST_POINT_NAME*)XMALLOC(sizeof(WOLFSSL_DIST_POINT_NAME),
5208
                                            NULL, DYNAMIC_TYPE_OPENSSL);
5209
    if (dpn == NULL) {
5210
        return NULL;
5211
    }
5212
    XMEMSET(dpn, 0, sizeof(WOLFSSL_DIST_POINT_NAME));
5213
5214
    gns = wolfSSL_sk_new_null();
5215
    if (gns == NULL) {
5216
        WOLFSSL_MSG("wolfSSL_sk_new_null error");
5217
        XFREE(dpn, NULL, DYNAMIC_TYPE_OPENSSL);
5218
        return NULL;
5219
    }
5220
    gns->type = STACK_TYPE_GEN_NAME;
5221
5222
    /* DIST_POINT_NAME type may be 0 or 1, indicating whether fullname or
5223
     * relativename is used. See: RFC 5280 section 4.2.1.13 */
5224
    dpn->name.fullname = gns;
5225
    dpn->type = 0;
5226
5227
    return dpn;
5228
}
5229
5230
5231
/* Creates and returns new DIST_POINT structure */
5232
WOLFSSL_DIST_POINT* wolfSSL_DIST_POINT_new(void)
5233
{
5234
    WOLFSSL_DIST_POINT* dp = NULL;
5235
    WOLFSSL_DIST_POINT_NAME* dpn = NULL;
5236
5237
    WOLFSSL_ENTER("wolfSSL_DIST_POINT_new");
5238
5239
    dp = (WOLFSSL_DIST_POINT*)XMALLOC(sizeof(WOLFSSL_DIST_POINT), NULL,
5240
                                      DYNAMIC_TYPE_OPENSSL);
5241
    if (dp == NULL) {
5242
        return NULL;
5243
    }
5244
    XMEMSET(dp, 0, sizeof(WOLFSSL_DIST_POINT));
5245
5246
    dpn = wolfSSL_DIST_POINT_NAME_new();
5247
    if (dpn == NULL) {
5248
        XFREE(dp, NULL, DYNAMIC_TYPE_OPENSSL);
5249
        return NULL;
5250
    }
5251
    dp->distpoint = dpn;
5252
5253
    return dp;
5254
}
5255
5256
5257
/* Frees DIST_POINT objects.
5258
*/
5259
void wolfSSL_DIST_POINT_free(WOLFSSL_DIST_POINT* dp)
5260
{
5261
    WOLFSSL_ENTER("wolfSSL_DIST_POINT_free");
5262
    if (dp != NULL) {
5263
        wolfSSL_DIST_POINT_NAME_free(dp->distpoint);
5264
        XFREE(dp, NULL, DYNAMIC_TYPE_OPENSSL);
5265
    }
5266
}
5267
5268
void wolfSSL_DIST_POINTS_free(WOLFSSL_DIST_POINTS *dps)
5269
{
5270
    WOLFSSL_ENTER("wolfSSL_DIST_POINTS_free");
5271
5272
    if (dps == NULL) {
5273
        return;
5274
    }
5275
5276
    wolfSSL_sk_free(dps);
5277
}
5278
5279
/* return number of elements on success 0 on fail */
5280
int wolfSSL_sk_DIST_POINT_push(WOLFSSL_DIST_POINTS* sk, WOLFSSL_DIST_POINT* dp)
5281
{
5282
    WOLFSSL_ENTER("wolfSSL_sk_DIST_POINT_push");
5283
5284
    if (sk == NULL || dp == NULL) {
5285
        return WOLFSSL_FAILURE;
5286
    }
5287
5288
    return wolfSSL_sk_push(sk, dp);
5289
}
5290
5291
/* Returns the CRL dist point at index i from the stack
5292
 *
5293
 * sk  stack to get general name from
5294
 * idx index to get
5295
 *
5296
 * return a pointer to the internal node of the stack
5297
 */
5298
WOLFSSL_DIST_POINT* wolfSSL_sk_DIST_POINT_value(WOLFSSL_STACK* sk, int idx)
5299
{
5300
    if (sk == NULL) {
5301
        return NULL;
5302
    }
5303
5304
    return (WOLFSSL_DIST_POINT*)wolfSSL_sk_value(sk, idx);
5305
}
5306
5307
/* Gets the number of nodes in the stack
5308
 *
5309
 * sk  stack to get the number of nodes from
5310
 *
5311
 * returns the number of nodes, -1 if no nodes
5312
 */
5313
int wolfSSL_sk_DIST_POINT_num(WOLFSSL_STACK* sk)
5314
{
5315
    WOLFSSL_ENTER("wolfSSL_sk_DIST_POINT_num");
5316
5317
    if (sk == NULL) {
5318
        return WOLFSSL_FATAL_ERROR;
5319
    }
5320
5321
    return wolfSSL_sk_num(sk);
5322
}
5323
5324
/* Frees all nodes in a DIST_POINT stack
5325
 *
5326
 * sk stack of nodes to free
5327
 * f  free function to use
5328
 */
5329
void wolfSSL_sk_DIST_POINT_pop_free(WOLFSSL_STACK* sk,
5330
        void (*f) (WOLFSSL_DIST_POINT*))
5331
{
5332
    WOLFSSL_ENTER("wolfSSL_sk_DIST_POINT_pop_free");
5333
    wolfSSL_sk_pop_free(sk, (wolfSSL_sk_freefunc)f);
5334
}
5335
5336
void wolfSSL_sk_DIST_POINT_free(WOLFSSL_STACK* sk)
5337
{
5338
    WOLFSSL_ENTER("wolfSSL_sk_DIST_POINT_free");
5339
    wolfSSL_sk_free(sk);
5340
}
5341
5342
/* returns the number of nodes in stack on success and WOLFSSL_FATAL_ERROR
5343
 * on fail */
5344
int wolfSSL_sk_ACCESS_DESCRIPTION_num(WOLFSSL_STACK* sk)
5345
{
5346
    if (sk == NULL) {
5347
        return WOLFSSL_FATAL_ERROR;
5348
    }
5349
5350
    return (int)sk->num;
5351
}
5352
5353
/* returns NULL on fail and pointer to internal data on success */
5354
WOLFSSL_ACCESS_DESCRIPTION* wolfSSL_sk_ACCESS_DESCRIPTION_value(
5355
        WOLFSSL_STACK* sk, int idx)
5356
{
5357
    WOLFSSL_STACK* ret;
5358
5359
    if (sk == NULL) {
5360
        return NULL;
5361
    }
5362
5363
    ret = wolfSSL_sk_get_node(sk, idx);
5364
    if (ret != NULL) {
5365
        return ret->data.access;
5366
    }
5367
    return NULL;
5368
}
5369
#endif /* OPENSSL_EXTRA */
5370
5371
#if defined(OPENSSL_EXTRA) || defined(WOLFSSL_WPAS_SMALL)
5372
/* free's the internal type for the general name */
5373
static void wolfSSL_GENERAL_NAME_type_free(WOLFSSL_GENERAL_NAME* name)
5374
{
5375
    if (name != NULL) {
5376
        switch (name->type) {
5377
        case WOLFSSL_GEN_IA5:
5378
            wolfSSL_ASN1_STRING_free(name->d.ia5);
5379
            name->d.ia5 = NULL;
5380
            break;
5381
        case WOLFSSL_GEN_EMAIL:
5382
            wolfSSL_ASN1_STRING_free(name->d.rfc822Name);
5383
            name->d.rfc822Name = NULL;
5384
            break;
5385
        case WOLFSSL_GEN_DNS:
5386
            wolfSSL_ASN1_STRING_free(name->d.dNSName);
5387
            name->d.dNSName = NULL;
5388
            break;
5389
        case WOLFSSL_GEN_DIRNAME:
5390
            wolfSSL_X509_NAME_free(name->d.dirn);
5391
            name->d.dirn = NULL;
5392
            break;
5393
        case WOLFSSL_GEN_URI:
5394
            wolfSSL_ASN1_STRING_free(name->d.uniformResourceIdentifier);
5395
            name->d.uniformResourceIdentifier = NULL;
5396
            break;
5397
        case WOLFSSL_GEN_IPADD:
5398
            wolfSSL_ASN1_STRING_free(name->d.iPAddress);
5399
            name->d.iPAddress = NULL;
5400
            break;
5401
        case WOLFSSL_GEN_RID:
5402
            wolfSSL_ASN1_OBJECT_free(name->d.registeredID);
5403
            name->d.registeredID = NULL;
5404
            break;
5405
        case WOLFSSL_GEN_OTHERNAME:
5406
            if (name->d.otherName != NULL) {
5407
                wolfSSL_ASN1_OBJECT_free(name->d.otherName->type_id);
5408
                wolfSSL_ASN1_TYPE_free(name->d.otherName->value);
5409
                XFREE(name->d.otherName, NULL, DYNAMIC_TYPE_ASN1);
5410
                name->d.otherName = NULL;
5411
            }
5412
            break;
5413
        case WOLFSSL_GEN_X400:
5414
            /* Unsupported: fall through */
5415
        case WOLFSSL_GEN_EDIPARTY:
5416
            /* Unsupported: fall through */
5417
        default:
5418
            WOLFSSL_MSG("wolfSSL_GENERAL_NAME_type_free: possible leak");
5419
            break;
5420
        }
5421
    }
5422
}
5423
5424
/* sets the general name type and free's the existing one
5425
 * can fail with a memory error if malloc fails or bad arg error
5426
 * otherwise return WOLFSSL_SUCCESS */
5427
int wolfSSL_GENERAL_NAME_set_type(WOLFSSL_GENERAL_NAME* name, int typ)
5428
{
5429
    int ret = WOLFSSL_SUCCESS;
5430
5431
    if (name != NULL) {
5432
        wolfSSL_GENERAL_NAME_type_free(name);
5433
        name->type = typ;
5434
5435
        switch (typ) {
5436
            case WOLFSSL_GEN_URI:
5437
                name->d.uniformResourceIdentifier = wolfSSL_ASN1_STRING_new();
5438
                if (name->d.uniformResourceIdentifier == NULL)
5439
                    ret = MEMORY_E;
5440
                break;
5441
            case WOLFSSL_GEN_OTHERNAME:
5442
                name->d.otherName = (WOLFSSL_ASN1_OTHERNAME*)XMALLOC(
5443
                    sizeof(WOLFSSL_ASN1_OTHERNAME), NULL, DYNAMIC_TYPE_ASN1);
5444
                if (name->d.otherName == NULL) {
5445
                    ret = MEMORY_E;
5446
                }
5447
                else {
5448
                    XMEMSET(name->d.otherName, 0, sizeof(WOLFSSL_ASN1_OTHERNAME));
5449
                }
5450
                break;
5451
            default:
5452
                name->type = WOLFSSL_GEN_IA5;
5453
                name->d.ia5 = wolfSSL_ASN1_STRING_new();
5454
                if (name->d.ia5 == NULL)
5455
                    ret = MEMORY_E;
5456
        }
5457
    }
5458
    else {
5459
        ret = BAD_FUNC_ARG;
5460
    }
5461
5462
    return ret;
5463
}
5464
5465
/* Set the value in a general name. This is a compat layer API.
5466
 *
5467
 * @param [out] a       Pointer to the GENERAL_NAME where the othername is set.
5468
 * @param [in]  type    The type of this general name.
5469
 * @param [in]  value   The ASN.1 string that is the value.
5470
 * @return none
5471
 * @note the set0 indicates we take ownership so the user does NOT free value.
5472
 */
5473
void wolfSSL_GENERAL_NAME_set0_value(WOLFSSL_GENERAL_NAME *a, int type,
5474
                                     void *value)
5475
{
5476
    WOLFSSL_ASN1_STRING *val = (WOLFSSL_ASN1_STRING *)value;
5477
    if (a == NULL) {
5478
        WOLFSSL_MSG("a is NULL");
5479
        return;
5480
    }
5481
5482
    if (val == NULL) {
5483
        WOLFSSL_MSG("value is NULL");
5484
        return;
5485
    }
5486
5487
    if (type != WOLFSSL_GEN_DNS) {
5488
        WOLFSSL_MSG("Only WOLFSSL_GEN_DNS is supported");
5489
        return;
5490
    }
5491
5492
    wolfSSL_GENERAL_NAME_type_free(a);
5493
    a->type = type;
5494
    /* Only when WOLFSSL_GEN_DNS. */
5495
    a->d.dNSName = val;
5496
}
5497
5498
/* Frees GENERAL_NAME objects.
5499
*/
5500
void wolfSSL_GENERAL_NAME_free(WOLFSSL_GENERAL_NAME* name)
5501
{
5502
    WOLFSSL_ENTER("wolfSSL_GENERAL_NAME_Free");
5503
    if (name != NULL) {
5504
        wolfSSL_GENERAL_NAME_type_free(name);
5505
        XFREE(name, NULL, DYNAMIC_TYPE_OPENSSL);
5506
    }
5507
}
5508
#endif /* OPENSSL_EXTRA || WOLFSSL_WPAS_SMALL*/
5509
5510
#ifdef OPENSSL_EXTRA
5511
void wolfSSL_GENERAL_NAMES_free(WOLFSSL_GENERAL_NAMES *gens)
5512
{
5513
    WOLFSSL_ENTER("wolfSSL_GENERAL_NAMES_free");
5514
5515
    if (gens == NULL) {
5516
        return;
5517
    }
5518
5519
    wolfSSL_sk_GENERAL_NAME_free(gens);
5520
}
5521
5522
void wolfSSL_EXTENDED_KEY_USAGE_free(WOLFSSL_STACK * sk)
5523
{
5524
    WOLFSSL_ENTER("wolfSSL_EXTENDED_KEY_USAGE_free");
5525
5526
    if (sk == NULL) {
5527
        return;
5528
    }
5529
5530
    wolfSSL_sk_X509_pop_free(sk, NULL);
5531
}
5532
5533
#if !defined(IGNORE_NAME_CONSTRAINTS)
5534
/*
5535
 * Allocate and initialize an empty GENERAL_SUBTREE structure.
5536
 * Returns NULL on allocation failure.
5537
 */
5538
WOLFSSL_GENERAL_SUBTREE* wolfSSL_GENERAL_SUBTREE_new(void)
5539
{
5540
    WOLFSSL_GENERAL_SUBTREE* subtree;
5541
5542
    WOLFSSL_ENTER("wolfSSL_GENERAL_SUBTREE_new");
5543
5544
    subtree = (WOLFSSL_GENERAL_SUBTREE*)XMALLOC(sizeof(WOLFSSL_GENERAL_SUBTREE),
5545
                                                NULL, DYNAMIC_TYPE_OPENSSL);
5546
    if (subtree == NULL) {
5547
        WOLFSSL_MSG("Failed to allocate GENERAL_SUBTREE");
5548
        return NULL;
5549
    }
5550
    XMEMSET(subtree, 0, sizeof(WOLFSSL_GENERAL_SUBTREE));
5551
    return subtree;
5552
}
5553
5554
/*
5555
 * Create an empty NAME_CONSTRAINTS structure.
5556
 * Returns NULL on allocation failure.
5557
 */
5558
WOLFSSL_NAME_CONSTRAINTS* wolfSSL_NAME_CONSTRAINTS_new(void)
5559
{
5560
    WOLFSSL_NAME_CONSTRAINTS* nc;
5561
5562
    WOLFSSL_ENTER("wolfSSL_NAME_CONSTRAINTS_new");
5563
5564
    nc = (WOLFSSL_NAME_CONSTRAINTS*)XMALLOC(sizeof(WOLFSSL_NAME_CONSTRAINTS),
5565
                                            NULL, DYNAMIC_TYPE_OPENSSL);
5566
    if (nc == NULL) {
5567
        WOLFSSL_MSG("Failed to allocate NAME_CONSTRAINTS");
5568
        return NULL;
5569
    }
5570
    XMEMSET(nc, 0, sizeof(WOLFSSL_NAME_CONSTRAINTS));
5571
    return nc;
5572
}
5573
5574
/* Free a GENERAL_SUBTREE and its contents. */
5575
void wolfSSL_GENERAL_SUBTREE_free(WOLFSSL_GENERAL_SUBTREE* subtree)
5576
{
5577
    if (subtree == NULL) {
5578
        return;
5579
    }
5580
    wolfSSL_GENERAL_NAME_free(subtree->base);
5581
    XFREE(subtree, NULL, DYNAMIC_TYPE_OPENSSL);
5582
}
5583
5584
/* Free a NAME_CONSTRAINTS structure and all its contents. */
5585
void wolfSSL_NAME_CONSTRAINTS_free(WOLFSSL_NAME_CONSTRAINTS* nc)
5586
{
5587
    WOLFSSL_ENTER("wolfSSL_NAME_CONSTRAINTS_free");
5588
5589
    if (nc == NULL) {
5590
        return;
5591
    }
5592
5593
    if (nc->permittedSubtrees != NULL) {
5594
        wolfSSL_sk_pop_free(nc->permittedSubtrees,
5595
            (wolfSSL_sk_freefunc)wolfSSL_GENERAL_SUBTREE_free);
5596
    }
5597
5598
    if (nc->excludedSubtrees != NULL) {
5599
        wolfSSL_sk_pop_free(nc->excludedSubtrees,
5600
            (wolfSSL_sk_freefunc)wolfSSL_GENERAL_SUBTREE_free);
5601
    }
5602
5603
    XFREE(nc, NULL, DYNAMIC_TYPE_OPENSSL);
5604
}
5605
5606
/* Get number of items in GENERAL_SUBTREE stack. */
5607
int wolfSSL_sk_GENERAL_SUBTREE_num(const WOLFSSL_STACK* sk)
5608
{
5609
    WOLFSSL_ENTER("wolfSSL_sk_GENERAL_SUBTREE_num");
5610
5611
    return wolfSSL_sk_num(sk);
5612
}
5613
5614
/* Get GENERAL_SUBTREE at index from stack. */
5615
WOLFSSL_GENERAL_SUBTREE* wolfSSL_sk_GENERAL_SUBTREE_value(
5616
    const WOLFSSL_STACK* sk, int idx)
5617
{
5618
    WOLFSSL_ENTER("wolfSSL_sk_GENERAL_SUBTREE_value");
5619
5620
    return (WOLFSSL_GENERAL_SUBTREE*)wolfSSL_sk_value(sk, idx);
5621
}
5622
5623
/* Check IP address string matches constraint.
5624
 *
5625
 * name: IP address string (ex "192.168.1.50")
5626
 * nameSz: length of name string
5627
 * gn: GENERAL_NAME containing IP constraint (IP + mask bytes)
5628
 *
5629
 * Return 1 on match, otherwise 0
5630
 */
5631
static int MatchIpName(const char* name, int nameSz, WOLFSSL_GENERAL_NAME* gn)
5632
{
5633
    int ipLen = 0;
5634
    int constraintLen;
5635
    char ipStr[WOLFSSL_MAX_IPSTR];
5636
    unsigned char ipBytes[16]; /* Max 16 bytes for IPv6 */
5637
    const unsigned char* constraintData;
5638
5639
    if (name == NULL || nameSz <= 0 || gn == NULL || gn->d.iPAddress == NULL) {
5640
        return 0;
5641
    }
5642
5643
    constraintData = wolfSSL_ASN1_STRING_get0_data(gn->d.iPAddress);
5644
    constraintLen = wolfSSL_ASN1_STRING_length(gn->d.iPAddress);
5645
    if (constraintData == NULL || constraintLen <= 0) {
5646
        return 0;
5647
    }
5648
5649
    /* Null-terminate IP string */
5650
    if (nameSz >= (int)sizeof(ipStr)) {
5651
        return 0;
5652
    }
5653
    XMEMCPY(ipStr, name, nameSz);
5654
    ipStr[nameSz] = '\0';
5655
5656
    /* IPv4 constraint 8 bytes (IP + mask),
5657
     * IPv6 constraint 32 bytes (IP + mask) */
5658
    if (constraintLen == 8) {
5659
    #ifdef FREESCALE_MQX
5660
        if (XINET_PTON(WOLFSSL_IP4, ipStr, ipBytes, sizeof(ipBytes)) == RTCS_OK) {
5661
    #else
5662
        if (XINET_PTON(WOLFSSL_IP4, ipStr, ipBytes) == 1) {
5663
    #endif
5664
            ipLen = 4;
5665
        }
5666
    }
5667
    else if (constraintLen == 32) {
5668
    #ifdef FREESCALE_MQX
5669
        if (XINET_PTON(WOLFSSL_IP6, ipStr, ipBytes, sizeof(ipBytes)) == RTCS_OK) {
5670
    #else
5671
        if (XINET_PTON(WOLFSSL_IP6, ipStr, ipBytes) == 1) {
5672
    #endif
5673
            ipLen = 16;
5674
        }
5675
    }
5676
5677
    if (ipLen == 0) {
5678
        return 0;
5679
    }
5680
5681
    return wolfssl_local_MatchIpSubnet(ipBytes, ipLen,
5682
        constraintData, constraintLen);
5683
}
5684
5685
/* Helper to check if name string matches a single GENERAL_NAME constraint.
5686
 * permitted selects subtree semantics for wildcard DNS names: containment
5687
 * for permitted subtrees, intersection for excluded subtrees.
5688
 * Returns 1 if matches, 0 if not. */
5689
static int MatchNameConstraint(int type, const char* name, int nameSz,
5690
    WOLFSSL_GENERAL_NAME* gn, int permitted)
5691
{
5692
    const char* baseStr;
5693
    int baseLen;
5694
5695
    if (gn == NULL || gn->type != type) {
5696
        return 0;
5697
    }
5698
5699
    switch (type) {
5700
        case WOLFSSL_GEN_IPADD:
5701
            return MatchIpName(name, nameSz, gn);
5702
5703
        case WOLFSSL_GEN_DNS:
5704
        case WOLFSSL_GEN_EMAIL:
5705
        case WOLFSSL_GEN_URI:
5706
            if (gn->d.ia5 == NULL) {
5707
                return 0;
5708
            }
5709
            baseStr = (const char*)wolfSSL_ASN1_STRING_get0_data(gn->d.ia5);
5710
            baseLen = wolfSSL_ASN1_STRING_length(gn->d.ia5);
5711
            if (baseStr == NULL || baseLen <= 0) {
5712
                return 0;
5713
            }
5714
5715
            if (type == WOLFSSL_GEN_EMAIL) {
5716
                return wolfssl_local_MatchBaseName(ASN_RFC822_TYPE, name,
5717
                    nameSz, baseStr, baseLen);
5718
            }
5719
            else if (type == WOLFSSL_GEN_URI) {
5720
                return wolfssl_local_MatchUriNameConstraint(name, nameSz,
5721
                    baseStr, baseLen);
5722
            }
5723
            else {
5724
                /* WOLFSSL_GEN_DNS uses DNS-style matching */
5725
                return wolfssl_local_MatchDnsNameConstraint(name, nameSz,
5726
                    baseStr, baseLen, permitted);
5727
            }
5728
5729
        default:
5730
            /* Unsupported type */
5731
            return 0;
5732
    }
5733
}
5734
5735
static int NameConstraintsHasType(const WOLFSSL_STACK* sk, int type)
5736
{
5737
    int i;
5738
    int num;
5739
5740
    if (sk == NULL) {
5741
        return 0;
5742
    }
5743
5744
    num = wolfSSL_sk_GENERAL_SUBTREE_num(sk);
5745
    for (i = 0; i < num; i++) {
5746
        WOLFSSL_GENERAL_SUBTREE* subtree;
5747
5748
        subtree = wolfSSL_sk_GENERAL_SUBTREE_value(sk, i);
5749
        if (subtree != NULL && subtree->base != NULL &&
5750
                subtree->base->type == type) {
5751
            return 1;
5752
        }
5753
    }
5754
5755
    return 0;
5756
}
5757
5758
/*
5759
 * Check if a name string satisfies given name constraints.
5760
 *
5761
 * nc: NAME_CONSTRAINTS struct containing permitted/excluded subtrees
5762
 * type: GeneralName type (WOLFSSL_GEN_DNS, WOLFSSL_GEN_EMAIL, etc.)
5763
 * name: The name string to check
5764
 * nameSz: Length of name string
5765
 *
5766
 * Returns 1 if name satisfies constraints (permitted and not excluded),
5767
 * otherwise 0 if name does not satisfy constraints or on error
5768
 *
5769
 * A name satisfies constraints if permitted subtrees exist for the type,
5770
 * name matches at least one, and name does not match any excluded subtree.
5771
 */
5772
int wolfSSL_NAME_CONSTRAINTS_check_name(WOLFSSL_NAME_CONSTRAINTS* nc,
5773
    int type, const char* name, int nameSz)
5774
{
5775
    int i, num;
5776
    int hasPermittedType = 0;
5777
    int matchedPermitted = 0;
5778
    WOLFSSL_GENERAL_SUBTREE* subtree;
5779
    WOLFSSL_GENERAL_NAME* gn;
5780
5781
    WOLFSSL_ENTER("wolfSSL_NAME_CONSTRAINTS_check_name");
5782
5783
    if (nc == NULL || name == NULL || nameSz <= 0) {
5784
        WOLFSSL_MSG("Bad argument to NAME_CONSTRAINTS_check_name");
5785
        return 0;
5786
    }
5787
5788
    if (type == WOLFSSL_GEN_URI &&
5789
            (NameConstraintsHasType(nc->permittedSubtrees, type) ||
5790
             NameConstraintsHasType(nc->excludedSubtrees, type)) &&
5791
            !wolfssl_local_UriNameHasDnsHost(name, nameSz)) {
5792
        WOLFSSL_MSG("URI name constraint applied to URI without DNS host");
5793
        return 0;
5794
    }
5795
5796
    /* Check permitted subtrees */
5797
    if (nc->permittedSubtrees != NULL) {
5798
        num = wolfSSL_sk_GENERAL_SUBTREE_num(nc->permittedSubtrees);
5799
        for (i = 0; i < num; i++) {
5800
            subtree = wolfSSL_sk_GENERAL_SUBTREE_value(
5801
                nc->permittedSubtrees, i);
5802
            if (subtree == NULL || subtree->base == NULL) {
5803
                continue;
5804
            }
5805
5806
            gn = subtree->base;
5807
            if (gn->type != type) {
5808
                continue;
5809
            }
5810
            hasPermittedType = 1;
5811
5812
            if (MatchNameConstraint(type, name, nameSz, gn, 1)) {
5813
                matchedPermitted = 1;
5814
                break;
5815
            }
5816
        }
5817
    }
5818
5819
    /* If permitted constraints exist for this type but none matched, fail */
5820
    if (hasPermittedType && !matchedPermitted) {
5821
        WOLFSSL_MSG("Name not in permitted subtrees");
5822
        return 0;
5823
    }
5824
5825
    /* Check excluded subtrees */
5826
    if (nc->excludedSubtrees != NULL) {
5827
        num = wolfSSL_sk_GENERAL_SUBTREE_num(nc->excludedSubtrees);
5828
        for (i = 0; i < num; i++) {
5829
            subtree = wolfSSL_sk_GENERAL_SUBTREE_value(nc->excludedSubtrees, i);
5830
            if (subtree == NULL || subtree->base == NULL) {
5831
                continue;
5832
            }
5833
5834
            gn = subtree->base;
5835
            if (gn->type != type) {
5836
                continue;
5837
            }
5838
5839
            if (MatchNameConstraint(type, name, nameSz, gn, 0)) {
5840
                WOLFSSL_MSG("Name in excluded subtrees");
5841
                return 0;
5842
            }
5843
        }
5844
    }
5845
5846
    return 1;
5847
}
5848
#endif /* !IGNORE_NAME_CONSTRAINTS */
5849
5850
#if defined(OPENSSL_ALL) && !defined(NO_BIO)
5851
/* Outputs name string of the given WOLFSSL_GENERAL_NAME_OBJECT to WOLFSSL_BIO.
5852
 * Can handle following GENERAL_NAME_OBJECT types:
5853
 *  - GEN_OTHERNAME #
5854
 *  - GEN_EMAIL
5855
 *  - GEN_DNS
5856
 *  - GEN_X400  #
5857
 *  - GEN_DIRNAME
5858
 *  - GEN_EDIPARTY #
5859
 *  - GEN_URI
5860
 *  - GEN_RID
5861
 * The each name string to be output has "typename:namestring" format.
5862
 * For instance, email name string will be output as "email:facts@wolfssl.com".
5863
 * However,some types above marked with "#" will be output with
5864
 * "typename:<unsupported>".
5865
 *
5866
 * Parameters:
5867
 *  - out: WOLFSSL_BIO object which is the output destination
5868
 *  - gen: WOLFSSL_GENERAL_NAME object to be output its name
5869
 *
5870
 * Returns WOLFSSL_SUCCESS on success, WOLFSSL_FAILURE on failure.
5871
 */
5872
int wolfSSL_GENERAL_NAME_print(WOLFSSL_BIO* out, WOLFSSL_GENERAL_NAME* gen)
5873
{
5874
    int ret, i;
5875
    unsigned int wd;
5876
    unsigned char* p;
5877
    (void)wd;
5878
    (void)p;
5879
    (void)i;
5880
    WOLFSSL_ENTER("wolfSSL_GENERAL_NAME_print");
5881
5882
    if (out == NULL || gen == NULL)
5883
        return WOLFSSL_FAILURE;
5884
5885
    ret = WOLFSSL_FAILURE;
5886
    switch (gen->type)
5887
    {
5888
    case GEN_OTHERNAME:
5889
        ret = wolfSSL_BIO_printf(out, "othername:<unsupported>");
5890
        ret = (ret > 0) ? WOLFSSL_SUCCESS : WOLFSSL_FAILURE;
5891
        break;
5892
5893
    case GEN_EMAIL:
5894
        ret = wolfSSL_BIO_printf(out, "email:");
5895
        ret = (ret > 0) ? WOLFSSL_SUCCESS : WOLFSSL_FAILURE;
5896
        if (ret == WOLFSSL_SUCCESS) {
5897
            ret = wolfSSL_ASN1_STRING_print(out, gen->d.rfc822Name);
5898
        }
5899
        break;
5900
5901
    case GEN_DNS:
5902
        ret = wolfSSL_BIO_printf(out, "DNS:");
5903
        ret = (ret > 0) ? WOLFSSL_SUCCESS : WOLFSSL_FAILURE;
5904
        if (ret == WOLFSSL_SUCCESS) {
5905
            ret = wolfSSL_ASN1_STRING_print(out, gen->d.dNSName);
5906
        }
5907
        break;
5908
5909
    case GEN_X400:
5910
        ret = wolfSSL_BIO_printf(out, "X400Name:<unsupported>");
5911
        ret = (ret > 0) ? WOLFSSL_SUCCESS : WOLFSSL_FAILURE;
5912
        break;
5913
5914
    case GEN_DIRNAME:
5915
        ret = wolfSSL_BIO_printf(out, "DirName:");
5916
        ret = (ret > 0) ? WOLFSSL_SUCCESS : WOLFSSL_FAILURE;
5917
        if (ret == WOLFSSL_SUCCESS) {
5918
            ret = wolfSSL_X509_NAME_print_ex(out, gen->d.directoryName, 0,
5919
                                                         XN_FLAG_ONELINE);
5920
        }
5921
        break;
5922
5923
    case GEN_EDIPARTY:
5924
        ret = wolfSSL_BIO_printf(out, "EdiPartyName:<unsupported>");
5925
        ret = (ret > 0) ? WOLFSSL_SUCCESS : WOLFSSL_FAILURE;
5926
        break;
5927
5928
    case GEN_URI:
5929
        ret = wolfSSL_BIO_printf(out, "URI:");
5930
        ret = (ret > 0) ? WOLFSSL_SUCCESS : WOLFSSL_FAILURE;
5931
        if (ret == WOLFSSL_SUCCESS) {
5932
            ret = wolfSSL_ASN1_STRING_print(out,
5933
                                    gen->d.uniformResourceIdentifier);
5934
        }
5935
        break;
5936
5937
    case GEN_IPADD:
5938
        ret = wolfSSL_BIO_printf(out, "IP Address");
5939
        ret = (ret > 0) ? WOLFSSL_SUCCESS : WOLFSSL_FAILURE;
5940
        if (ret == WOLFSSL_SUCCESS) {
5941
5942
            if (!gen->d.iPAddress->length) {
5943
                ret = WOLFSSL_FAILURE;
5944
                break;
5945
            }
5946
            p = (unsigned char*)gen->d.iPAddress->strData;
5947
5948
            if (gen->d.iPAddress->length == 4) {
5949
                ret = wolfSSL_BIO_printf(out, ":%d.%d.%d.%d",
5950
                                  p[0],p[1],p[2],p[3]);
5951
            }
5952
            else if (gen->d.iPAddress->length == 16) {
5953
5954
                for (i = 0; i < 16 && ret == WOLFSSL_SUCCESS;) {
5955
                    wd = p[i] << 8 | p[i+1];
5956
5957
                    i += 2;
5958
                    ret = wolfSSL_BIO_printf(out, ":%X", wd);
5959
                    ret = (ret > 0) ? WOLFSSL_SUCCESS : WOLFSSL_FAILURE;
5960
                }
5961
            }
5962
            else {
5963
                ret = wolfSSL_BIO_printf(out, "<unsupported>");
5964
            }
5965
            ret = (ret > 0) ? WOLFSSL_SUCCESS : WOLFSSL_FAILURE;
5966
        }
5967
        break;
5968
5969
    case GEN_RID:
5970
        ret = wolfSSL_BIO_printf(out, "Registered ID:");
5971
        ret = (ret > 0) ? WOLFSSL_SUCCESS : WOLFSSL_FAILURE;
5972
        if (ret == WOLFSSL_SUCCESS) {
5973
            ret = wolfSSL_i2a_ASN1_OBJECT(out, gen->d.registeredID);
5974
        }
5975
        break;
5976
5977
    default:
5978
        /* unsupported type */
5979
        break;
5980
    }
5981
5982
    if (ret == WC_NO_ERR_TRACE(WOLFSSL_FAILURE))
5983
        return WOLFSSL_FAILURE;
5984
    else
5985
        return WOLFSSL_SUCCESS;
5986
}
5987
#endif /* OPENSSL_ALL */
5988
5989
WOLF_STACK_OF(WOLFSSL_X509_EXTENSION)* wolfSSL_sk_X509_EXTENSION_new_null(void)
5990
{
5991
    WOLFSSL_STACK* sk = wolfSSL_sk_new_node(NULL);
5992
    if (sk) {
5993
        sk->type = STACK_TYPE_X509_EXT;
5994
    }
5995
5996
    return (WOLF_STACK_OF(WOLFSSL_X509_EXTENSION)*)sk;;
5997
}
5998
5999
/* returns the number of nodes on the stack */
6000
int wolfSSL_sk_X509_EXTENSION_num(WOLF_STACK_OF(WOLFSSL_X509_EXTENSION)* sk)
6001
{
6002
    if (sk != NULL) {
6003
        return (int)sk->num;
6004
    }
6005
    return WOLFSSL_FATAL_ERROR;
6006
}
6007
6008
6009
/* returns null on failure and pointer to internal value on success */
6010
WOLFSSL_X509_EXTENSION* wolfSSL_sk_X509_EXTENSION_value(
6011
        const WOLF_STACK_OF(WOLFSSL_X509_EXTENSION)* sk, int idx)
6012
{
6013
    return (WOLFSSL_X509_EXTENSION*)wolfSSL_sk_value(sk, idx);
6014
}
6015
6016
/* frees all of the nodes and the values in stack */
6017
void wolfSSL_sk_X509_EXTENSION_pop_free(
6018
        WOLF_STACK_OF(WOLFSSL_X509_EXTENSION)* sk,
6019
        void (*f) (WOLFSSL_X509_EXTENSION*))
6020
{
6021
    wolfSSL_sk_pop_free(sk, (wolfSSL_sk_freefunc)f);
6022
}
6023
6024
void wolfSSL_sk_X509_EXTENSION_free(WOLF_STACK_OF(WOLFSSL_X509_EXTENSION)* sk)
6025
{
6026
    wolfSSL_sk_pop_free(sk, NULL);
6027
}
6028
6029
#endif /* OPENSSL_EXTRA */
6030
6031
#if defined(OPENSSL_EXTRA) && !defined(NO_FILESYSTEM) && \
6032
    !defined(NO_STDIO_FILESYSTEM)
6033
6034
WOLFSSL_X509* wolfSSL_X509_d2i_fp(WOLFSSL_X509** x509, XFILE file)
6035
{
6036
    WOLFSSL_X509* newX509 = NULL;
6037
6038
    WOLFSSL_ENTER("wolfSSL_X509_d2i_fp");
6039
6040
    if (file != XBADFILE) {
6041
        byte* fileBuffer = NULL;
6042
        long sz = 0;
6043
6044
        if (XFSEEK(file, 0, XSEEK_END) != 0)
6045
            return NULL;
6046
        sz = XFTELL(file);
6047
        if (XFSEEK(file, 0, XSEEK_SET) != 0)
6048
            return NULL;
6049
6050
        if (sz > MAX_WOLFSSL_FILE_SIZE || sz < 0) {
6051
            WOLFSSL_MSG("X509_d2i file size error");
6052
            return NULL;
6053
        }
6054
6055
        fileBuffer = (byte*)XMALLOC(sz, NULL, DYNAMIC_TYPE_FILE);
6056
        if (fileBuffer != NULL) {
6057
            int ret = (int)XFREAD(fileBuffer, 1, (size_t)sz, file);
6058
            if (ret == sz) {
6059
                newX509 = wolfSSL_X509_d2i(NULL, fileBuffer, (int)sz);
6060
            }
6061
            XFREE(fileBuffer, NULL, DYNAMIC_TYPE_FILE);
6062
        }
6063
    }
6064
6065
    if (x509 != NULL)
6066
        *x509 = newX509;
6067
6068
    return newX509;
6069
}
6070
6071
#endif /* OPENSSL_EXTRA && !NO_FILESYSTEM && !NO_STDIO_FILESYSTEM */
6072
6073
#if defined(OPENSSL_EXTRA) || defined(OPENSSL_EXTRA_X509_SMALL) || \
6074
    defined(WOLFSSL_WPAS_SMALL) || defined(KEEP_PEER_CERT) || \
6075
    defined(SESSION_CERTS)
6076
6077
#ifndef NO_FILESYSTEM
6078
WOLFSSL_ABI
6079
WOLFSSL_X509* wolfSSL_X509_load_certificate_file(const char* fname, int format)
6080
{
6081
#ifdef WOLFSSL_SMALL_STACK
6082
    byte  staticBuffer[1]; /* force heap usage */
6083
#else
6084
    byte  staticBuffer[FILE_BUFFER_SIZE];
6085
#endif
6086
    byte* fileBuffer = staticBuffer;
6087
    int   dynamic = 0;
6088
    int   ret;
6089
    long  sz = 0;
6090
    XFILE file;
6091
6092
    WOLFSSL_X509* x509 = NULL;
6093
6094
    /* Check the inputs */
6095
    if ((fname == NULL) ||
6096
        (format != WOLFSSL_FILETYPE_ASN1 && format != WOLFSSL_FILETYPE_PEM))
6097
        return NULL;
6098
6099
    file = XFOPEN(fname, "rb");
6100
    if (file == XBADFILE)
6101
        return NULL;
6102
6103
    if (XFSEEK(file, 0, XSEEK_END) != 0) {
6104
        XFCLOSE(file);
6105
        return NULL;
6106
    }
6107
    sz = XFTELL(file);
6108
    if (XFSEEK(file, 0, XSEEK_SET) != 0) {
6109
        XFCLOSE(file);
6110
        return NULL;
6111
    }
6112
6113
    if (sz > MAX_WOLFSSL_FILE_SIZE || sz < 0) {
6114
        WOLFSSL_MSG("X509_load_certificate_file size error");
6115
        XFCLOSE(file);
6116
        return NULL;
6117
    }
6118
6119
    if (sz > (long)sizeof(staticBuffer)) {
6120
        fileBuffer = (byte*)XMALLOC(sz, NULL, DYNAMIC_TYPE_FILE);
6121
        if (fileBuffer == NULL) {
6122
            XFCLOSE(file);
6123
            return NULL;
6124
        }
6125
        dynamic = 1;
6126
    }
6127
6128
    ret = (int)XFREAD(fileBuffer, 1, (size_t)sz, file);
6129
    if (ret != sz) {
6130
        XFCLOSE(file);
6131
        if (dynamic)
6132
            XFREE(fileBuffer, NULL, DYNAMIC_TYPE_FILE);
6133
        return NULL;
6134
    }
6135
6136
    XFCLOSE(file);
6137
6138
    x509 = wolfSSL_X509_load_certificate_buffer(fileBuffer, (int)sz, format);
6139
6140
    if (dynamic)
6141
        XFREE(fileBuffer, NULL, DYNAMIC_TYPE_FILE);
6142
6143
    return x509;
6144
}
6145
#endif /* !NO_FILESYSTEM */
6146
6147
static WOLFSSL_X509* loadX509orX509REQFromBuffer(
6148
    const unsigned char* buf, int sz, int format, int type,
6149
    wc_pem_password_cb *cb, void *u)
6150
{
6151
6152
    int ret = 0;
6153
    WOLFSSL_X509* x509 = NULL;
6154
    DerBuffer* der = NULL;
6155
6156
    WOLFSSL_ENTER("wolfSSL_X509_load_certificate_ex");
6157
6158
    if (format == WOLFSSL_FILETYPE_PEM) {
6159
        EncryptedInfo info;
6160
        XMEMSET(&info, 0, sizeof(EncryptedInfo));
6161
    #ifdef WOLFSSL_ENCRYPTED_KEYS
6162
        info.passwd_cb       = cb;
6163
        info.passwd_userdata = u;
6164
    #endif
6165
6166
    #ifdef WOLFSSL_PEM_TO_DER
6167
        ret = PemToDer(buf, sz, type, &der, NULL, &info, NULL);
6168
        if (ret != 0) {
6169
            FreeDer(&der);
6170
        }
6171
    #else
6172
        ret = NOT_COMPILED_IN;
6173
    #endif
6174
    }
6175
    else {
6176
        ret = AllocDer(&der, (word32)sz, type, NULL);
6177
        if (ret == 0) {
6178
            XMEMCPY(der->buffer, buf, sz);
6179
        }
6180
    }
6181
6182
    /* At this point we want `der` to have the certificate in DER format */
6183
    /* ready to be decoded. */
6184
    if (der != NULL && der->buffer != NULL) {
6185
        WC_DECLARE_VAR(cert, DecodedCert, 1, 0);
6186
        /* For TRUSTED_CERT_TYPE, the DER buffer contains the certificate
6187
         * followed by auxiliary trust info. ParseCertRelative expects CERT_TYPE
6188
         * and will parse only the certificate portion, ignoring the rest. */
6189
        int parseType = (type == TRUSTED_CERT_TYPE) ? CERT_TYPE : type;
6190
6191
        WC_ALLOC_VAR_EX(cert, DecodedCert, 1, NULL, DYNAMIC_TYPE_DCERT,
6192
            ret=MEMORY_ERROR);
6193
        if (WC_VAR_OK(cert))
6194
        {
6195
            InitDecodedCert(cert, der->buffer, der->length, NULL);
6196
            ret = ParseCertRelative(cert, parseType, 0, NULL, NULL);
6197
            if (ret == 0) {
6198
                /* For TRUSTED_CERT_TYPE, truncate the DER buffer to exclude
6199
                 * auxiliary trust data. ParseCertRelative sets srcIdx to the
6200
                 * end of the certificate, so we adjust cert->maxIdx accordingly. */
6201
                if (type == TRUSTED_CERT_TYPE && cert->srcIdx < cert->maxIdx) {
6202
                    cert->maxIdx = cert->srcIdx;
6203
                }
6204
6205
                x509 = (WOLFSSL_X509*)XMALLOC(sizeof(WOLFSSL_X509), NULL,
6206
                                                             DYNAMIC_TYPE_X509);
6207
                if (x509 != NULL) {
6208
                    InitX509(x509, 1, NULL);
6209
                    ret = CopyDecodedToX509(x509, cert);
6210
                    if (ret != 0) {
6211
                        wolfSSL_X509_free(x509);
6212
                        x509 = NULL;
6213
                    }
6214
                }
6215
                else {
6216
                    ret = MEMORY_ERROR;
6217
                }
6218
            }
6219
6220
            FreeDecodedCert(cert);
6221
            WC_FREE_VAR_EX(cert, NULL, DYNAMIC_TYPE_DCERT);
6222
        }
6223
6224
        FreeDer(&der);
6225
    }
6226
6227
    if (ret != 0) {
6228
        WOLFSSL_ERROR(ret);
6229
    }
6230
6231
    /* unused parameter when built without WOLFSSL_ENCRYPTED_KEYS */
6232
    (void)cb;
6233
    (void)u;
6234
    return x509;
6235
}
6236
6237
WOLFSSL_X509* wolfSSL_X509_load_certificate_buffer(
6238
    const unsigned char* buf, int sz, int format)
6239
{
6240
    return loadX509orX509REQFromBuffer(buf, sz,
6241
            format, CERT_TYPE, NULL, NULL);
6242
}
6243
6244
#ifdef WOLFSSL_CERT_REQ
6245
WOLFSSL_X509* wolfSSL_X509_REQ_load_certificate_buffer(
6246
    const unsigned char* buf, int sz, int format)
6247
{
6248
    return loadX509orX509REQFromBuffer(buf, sz,
6249
            format, CERTREQ_TYPE, NULL, NULL);
6250
}
6251
#endif
6252
6253
#endif /* OPENSSL_EXTRA || WOLFSSL_WPAS_SMALL || KEEP_PEER_CERT || \
6254
          SESSION_CERTS */
6255
6256
#if defined(OPENSSL_EXTRA_X509_SMALL) || defined(KEEP_PEER_CERT) || \
6257
    defined(SESSION_CERTS)
6258
/* Smaller subset of X509 compatibility functions. Avoid increasing the size of
6259
 * this subset and its memory usage */
6260
6261
/* returns a pointer to a new WOLFSSL_X509 structure on success and NULL on
6262
 * fail
6263
 */
6264
WOLFSSL_X509* wolfSSL_X509_new_ex(void* heap)
6265
{
6266
    WOLFSSL_X509* x509;
6267
6268
    x509 = (WOLFSSL_X509*)XMALLOC(sizeof(WOLFSSL_X509), heap,
6269
            DYNAMIC_TYPE_X509);
6270
    if (x509 != NULL) {
6271
        InitX509(x509, 1, heap);
6272
    }
6273
6274
    return x509;
6275
}
6276
6277
WOLFSSL_X509* wolfSSL_X509_new(void)
6278
{
6279
    return wolfSSL_X509_new_ex(NULL);
6280
}
6281
6282
WOLFSSL_ABI
6283
WOLFSSL_X509_NAME* wolfSSL_X509_get_subject_name(WOLFSSL_X509* cert)
6284
{
6285
    WOLFSSL_ENTER("wolfSSL_X509_get_subject_name");
6286
    if (cert)
6287
        return &cert->subject;
6288
    return NULL;
6289
}
6290
6291
WOLFSSL_ABI
6292
WOLFSSL_X509_NAME* wolfSSL_X509_get_issuer_name(WOLFSSL_X509* cert)
6293
{
6294
    WOLFSSL_ENTER("wolfSSL_X509_get_issuer_name");
6295
    if (cert)
6296
        return &cert->issuer;
6297
    return NULL;
6298
}
6299
6300
6301
int wolfSSL_X509_get_signature_type(WOLFSSL_X509* x509)
6302
{
6303
    int type = 0;
6304
6305
    WOLFSSL_ENTER("wolfSSL_X509_get_signature_type");
6306
6307
    if (x509 != NULL)
6308
        type = x509->sigOID;
6309
6310
    return type;
6311
}
6312
6313
#if defined(OPENSSL_EXTRA_X509_SMALL)
6314
6315
int wolfSSL_X509_NAME_get_sz(WOLFSSL_X509_NAME* name)
6316
{
6317
    WOLFSSL_ENTER("wolfSSL_X509_NAME_get_sz");
6318
    if (!name)
6319
        return WOLFSSL_FATAL_ERROR;
6320
    return name->sz;
6321
}
6322
6323
/* Searches for the first ENTRY of type NID
6324
 * idx is the location to start searching from, the value at when the entry was
6325
 *     found is stored into idx
6326
 * returns a pointer to the entry on success and null on fail */
6327
static WOLFSSL_X509_NAME_ENTRY* GetEntryByNID(WOLFSSL_X509_NAME* name, int nid,
6328
        int* idx)
6329
{
6330
    int i;
6331
    WOLFSSL_X509_NAME_ENTRY* ret = NULL;
6332
6333
    for (i = *idx; i < MAX_NAME_ENTRIES; i++) {
6334
        if (name->entry[i].nid == nid) {
6335
            ret = &name->entry[i];
6336
            *idx = i;
6337
            break;
6338
        }
6339
    }
6340
    return ret;
6341
}
6342
6343
6344
/* Used to get a string from the WOLFSSL_X509_NAME structure that
6345
 * corresponds with the NID value passed in. This finds the first entry with
6346
 * matching NID value, if searching for the case where there is multiple
6347
 * entries with the same NID value than other functions should be used
6348
 * (i.e. wolfSSL_X509_NAME_get_index_by_NID, wolfSSL_X509_NAME_get_entry)
6349
 *
6350
 * name structure to get string from
6351
 * nid  NID value to search for
6352
 * buf  [out] buffer to hold results. If NULL then the buffer size minus the
6353
 *      null char is returned.
6354
 * len  size of "buf" passed in
6355
 *
6356
 * returns the length of string found, not including the NULL terminator.
6357
 *         It's possible the function could return a negative value in the
6358
 *         case that len is less than or equal to 0. A negative value is
6359
 *         considered an error case.
6360
 */
6361
int wolfSSL_X509_NAME_get_text_by_NID(WOLFSSL_X509_NAME* name,
6362
                                      int nid, char* buf, int len)
6363
{
6364
    WOLFSSL_X509_NAME_ENTRY* e;
6365
    unsigned char *text = NULL;
6366
    int textSz = 0;
6367
    int idx    = 0;
6368
6369
    WOLFSSL_ENTER("wolfSSL_X509_NAME_get_text_by_NID");
6370
6371
    if (name == NULL) {
6372
        WOLFSSL_MSG("NULL argument passed in");
6373
        return WOLFSSL_FATAL_ERROR;
6374
    }
6375
6376
    e = GetEntryByNID(name, nid, &idx);
6377
    if (e == NULL) {
6378
        WOLFSSL_MSG("Entry type not found");
6379
        return WOLFSSL_FATAL_ERROR;
6380
    }
6381
    text   = wolfSSL_ASN1_STRING_data(e->value);
6382
    textSz = wolfSSL_ASN1_STRING_length(e->value);
6383
6384
    if (text == NULL) {
6385
        WOLFSSL_MSG("Unable to get entry text");
6386
        return WOLFSSL_FATAL_ERROR;
6387
    }
6388
6389
    /* if buf is NULL return size of buffer needed (minus null char) */
6390
    if (buf == NULL) {
6391
        WOLFSSL_MSG("Buffer is NULL, returning buffer size only");
6392
        return textSz;
6393
    }
6394
    if (len <= 0) {
6395
        return 0;
6396
    }
6397
6398
    /* + 1 to account for null char */
6399
    textSz = (int)min((word32)textSz + 1, (word32)len);
6400
    if (textSz > 0) {
6401
        XMEMCPY(buf, text, textSz - 1);
6402
        buf[textSz - 1] = '\0';
6403
    }
6404
6405
    WOLFSSL_LEAVE("wolfSSL_X509_NAME_get_text_by_NID", textSz);
6406
    return (textSz - 1); /* do not include null character in size */
6407
}
6408
6409
/* Creates a new WOLFSSL_EVP_PKEY structure that has the public key from x509
6410
 *
6411
 * returns a pointer to the created WOLFSSL_EVP_PKEY on success and NULL on fail
6412
 */
6413
WOLFSSL_EVP_PKEY* wolfSSL_X509_get_pubkey(WOLFSSL_X509* x509)
6414
{
6415
    WOLFSSL_EVP_PKEY* key = NULL;
6416
    int ret = 0;
6417
6418
    (void)ret;
6419
6420
    WOLFSSL_ENTER("wolfSSL_X509_get_pubkey");
6421
    if (x509 != NULL) {
6422
        key = wolfSSL_EVP_PKEY_new_ex(x509->heap);
6423
        if (key != NULL) {
6424
            if (x509->pubKeyOID == RSAk) {
6425
                key->type = WC_EVP_PKEY_RSA;
6426
            }
6427
            else if (x509->pubKeyOID == DSAk) {
6428
                key->type = WC_EVP_PKEY_DSA;
6429
            }
6430
        #ifdef WOLFSSL_HAVE_MLDSA
6431
            else if (x509->pubKeyOID == ML_DSA_44k ||
6432
                     x509->pubKeyOID == ML_DSA_65k ||
6433
                     x509->pubKeyOID == ML_DSA_87k
6434
        #ifdef WOLFSSL_MLDSA_FIPS204_DRAFT
6435
                     || x509->pubKeyOID == DILITHIUM_LEVEL2k ||
6436
                     x509->pubKeyOID == DILITHIUM_LEVEL3k ||
6437
                     x509->pubKeyOID == DILITHIUM_LEVEL5k
6438
        #endif
6439
                     ) {
6440
                key->type = WC_EVP_PKEY_DILITHIUM;
6441
                WOLFSSL_ATOMIC_STORE(key->mldsaOID, x509->pubKeyOID);
6442
            }
6443
        #endif
6444
            else {
6445
                key->type = WC_EVP_PKEY_EC;
6446
            }
6447
            key->save_type = 0;
6448
            key->pkey.ptr = (char*)XMALLOC(
6449
                        x509->pubKey.length, x509->heap,
6450
                                                       DYNAMIC_TYPE_PUBLIC_KEY);
6451
            if (key->pkey.ptr == NULL) {
6452
                wolfSSL_EVP_PKEY_free(key);
6453
                return NULL;
6454
            }
6455
            XMEMCPY(key->pkey.ptr, x509->pubKey.buffer, x509->pubKey.length);
6456
            key->pkey_sz = (int)x509->pubKey.length;
6457
6458
            #ifdef HAVE_ECC
6459
                key->pkey_curve = (int)x509->pkCurveOID;
6460
            #endif /* HAVE_ECC */
6461
6462
            /* decode RSA key */
6463
            #ifndef NO_RSA
6464
            if (key->type == WC_EVP_PKEY_RSA) {
6465
                key->ownRsa = 1;
6466
                key->rsa = wolfSSL_RSA_new();
6467
                if (key->rsa == NULL) {
6468
                    wolfSSL_EVP_PKEY_free(key);
6469
                    return NULL;
6470
                }
6471
6472
                if (wolfSSL_RSA_LoadDer_ex(key->rsa,
6473
                            (const unsigned char*)key->pkey.ptr, key->pkey_sz,
6474
                            WOLFSSL_RSA_LOAD_PUBLIC) != WOLFSSL_SUCCESS) {
6475
                    wolfSSL_EVP_PKEY_free(key);
6476
                    return NULL;
6477
                }
6478
            }
6479
            #endif /* NO_RSA */
6480
6481
            /* decode ECC key */
6482
            #if defined(HAVE_ECC) && defined(OPENSSL_EXTRA)
6483
            if (key->type == WC_EVP_PKEY_EC) {
6484
                word32 idx = 0;
6485
6486
                key->ownEcc = 1;
6487
                key->ecc = wolfSSL_EC_KEY_new();
6488
                if (key->ecc == NULL || key->ecc->internal == NULL) {
6489
                    wolfSSL_EVP_PKEY_free(key);
6490
                    return NULL;
6491
                }
6492
6493
                /* not using wolfSSL_EC_KEY_LoadDer because public key in x509
6494
                 * is in the format of x963 (no sequence at start of buffer) */
6495
                ret = wc_EccPublicKeyDecode((const unsigned char*)key->pkey.ptr,
6496
                                            &idx, (ecc_key*)key->ecc->internal,
6497
                                            key->pkey_sz);
6498
                if (ret < 0) {
6499
                    WOLFSSL_ERROR_VERBOSE(ret);
6500
                    WOLFSSL_MSG("wc_EccPublicKeyDecode failed");
6501
                    wolfSSL_EVP_PKEY_free(key);
6502
                    return NULL;
6503
                }
6504
6505
                if (SetECKeyExternal(key->ecc) != WOLFSSL_SUCCESS) {
6506
                    WOLFSSL_MSG("SetECKeyExternal failed");
6507
                    wolfSSL_EVP_PKEY_free(key);
6508
                    return NULL;
6509
                }
6510
6511
                key->ecc->inSet = 1;
6512
            }
6513
            #endif /* HAVE_ECC && OPENSSL_EXTRA */
6514
6515
            #ifndef NO_DSA
6516
            if (key->type == WC_EVP_PKEY_DSA) {
6517
                key->ownDsa = 1;
6518
                key->dsa = wolfSSL_DSA_new();
6519
                if (key->dsa == NULL) {
6520
                    wolfSSL_EVP_PKEY_free(key);
6521
                    return NULL;
6522
                }
6523
6524
                if (wolfSSL_DSA_LoadDer_ex(key->dsa,
6525
                            (const unsigned char*)key->pkey.ptr, key->pkey_sz, \
6526
                            WOLFSSL_DSA_LOAD_PUBLIC) != WOLFSSL_SUCCESS) {
6527
                    wolfSSL_DSA_free(key->dsa);
6528
                    key->dsa = NULL;
6529
                    wolfSSL_EVP_PKEY_free(key);
6530
                    return NULL;
6531
                }
6532
            }
6533
            #endif /* NO_DSA */
6534
        }
6535
    }
6536
    return key;
6537
}
6538
#endif /* OPENSSL_EXTRA_X509_SMALL */
6539
6540
/* End of smaller subset of X509 compatibility functions. Avoid increasing the
6541
 * size of this subset and its memory usage */
6542
#endif /* OPENSSL_EXTRA_X509_SMALL || KEEP_PEER_CERT || SESSION_CERTS */
6543
6544
#if defined(OPENSSL_ALL) || defined(OPENSSL_EXTRA)
6545
/*
6546
 * Converts a and b to DER and then does an XMEMCMP to check if they match.
6547
 * Returns 0 when certificates match and WOLFSSL_FATAL_ERROR when they don't.
6548
 */
6549
int wolfSSL_X509_cmp(const WOLFSSL_X509 *a, const WOLFSSL_X509 *b)
6550
{
6551
        const byte* derA;
6552
        const byte* derB;
6553
        int outSzA = 0;
6554
        int outSzB = 0;
6555
6556
        if (a == NULL || b == NULL) {
6557
            return BAD_FUNC_ARG;
6558
        }
6559
6560
        derA = wolfSSL_X509_get_der((WOLFSSL_X509*)a, &outSzA);
6561
        if (derA == NULL) {
6562
            WOLFSSL_MSG("wolfSSL_X509_get_der - certificate A has failed");
6563
            return WOLFSSL_FATAL_ERROR;
6564
        }
6565
        derB = wolfSSL_X509_get_der((WOLFSSL_X509*)b, &outSzB);
6566
        if (derB == NULL) {
6567
            WOLFSSL_MSG("wolfSSL_X509_get_der - certificate B has failed");
6568
            return WOLFSSL_FATAL_ERROR;
6569
        }
6570
6571
        if (outSzA != outSzB || XMEMCMP(derA, derB, outSzA) != 0) {
6572
            WOLFSSL_LEAVE("wolfSSL_X509_cmp", WOLFSSL_FATAL_ERROR);
6573
            return WOLFSSL_FATAL_ERROR;
6574
        }
6575
6576
        WOLFSSL_LEAVE("wolfSSL_X509_cmp", 0);
6577
6578
        return 0;
6579
    }
6580
#endif /* OPENSSL_ALL */
6581
6582
#if defined(OPENSSL_EXTRA)
6583
    int wolfSSL_X509_ext_isSet_by_NID(WOLFSSL_X509* x509, int nid)
6584
    {
6585
        int isSet = 0;
6586
6587
        WOLFSSL_ENTER("wolfSSL_X509_ext_isSet_by_NID");
6588
6589
        if (x509 != NULL) {
6590
            switch (nid) {
6591
                case WC_NID_basic_constraints:
6592
                    isSet = x509->basicConstSet; break;
6593
                case WC_NID_subject_alt_name:
6594
                    isSet = x509->subjAltNameSet; break;
6595
                case WC_NID_authority_key_identifier:
6596
                    isSet = x509->authKeyIdSet; break;
6597
                case WC_NID_subject_key_identifier:
6598
                    isSet = x509->subjKeyIdSet; break;
6599
                case WC_NID_key_usage:
6600
                    isSet = x509->keyUsageSet; break;
6601
                case WC_NID_crl_distribution_points:
6602
                    isSet = x509->CRLdistSet; break;
6603
                case WC_NID_ext_key_usage:
6604
                    isSet = ((x509->extKeyUsageSrc) ? 1 : 0); break;
6605
                case WC_NID_info_access:
6606
                    isSet = x509->authInfoSet; break;
6607
            #if defined(WOLFSSL_SEP) || defined(WOLFSSL_QT)
6608
                case WC_NID_certificate_policies:
6609
                    isSet = x509->certPolicySet; break;
6610
            #endif /* WOLFSSL_SEP || WOLFSSL_QT */
6611
                default:
6612
                    WOLFSSL_MSG("NID not in table");
6613
            }
6614
        }
6615
6616
        WOLFSSL_LEAVE("wolfSSL_X509_ext_isSet_by_NID", isSet);
6617
6618
        return isSet;
6619
    }
6620
6621
6622
    int wolfSSL_X509_ext_get_critical_by_NID(WOLFSSL_X509* x509, int nid)
6623
    {
6624
        int crit = 0;
6625
6626
        WOLFSSL_ENTER("wolfSSL_X509_ext_get_critical_by_NID");
6627
6628
        if (x509 != NULL) {
6629
            switch (nid) {
6630
                case WC_NID_basic_constraints:
6631
                    crit = x509->basicConstCrit; break;
6632
                case WC_NID_subject_alt_name:
6633
                    crit = x509->subjAltNameCrit; break;
6634
                case WC_NID_authority_key_identifier:
6635
                    crit = x509->authKeyIdCrit; break;
6636
                case WC_NID_subject_key_identifier:
6637
                    crit = x509->subjKeyIdCrit; break;
6638
                case WC_NID_key_usage:
6639
                    crit = x509->keyUsageCrit; break;
6640
                case WC_NID_crl_distribution_points:
6641
                    crit= x509->CRLdistCrit; break;
6642
                case WC_NID_ext_key_usage:
6643
                    crit= x509->extKeyUsageCrit; break;
6644
            #ifdef WOLFSSL_SEP
6645
                case WC_NID_certificate_policies:
6646
                    crit = x509->certPolicyCrit; break;
6647
            #endif /* WOLFSSL_SEP */
6648
            }
6649
        }
6650
6651
        WOLFSSL_LEAVE("wolfSSL_X509_ext_get_critical_by_NID", crit);
6652
6653
        return crit;
6654
    }
6655
6656
6657
    int wolfSSL_X509_get_isSet_pathLength(WOLFSSL_X509* x509)
6658
    {
6659
        int isSet = 0;
6660
6661
        WOLFSSL_ENTER("wolfSSL_X509_get_isSet_pathLength");
6662
6663
        if (x509 != NULL)
6664
            isSet = x509->basicConstPlSet;
6665
6666
        WOLFSSL_LEAVE("wolfSSL_X509_get_isSet_pathLength", isSet);
6667
6668
        return isSet;
6669
    }
6670
6671
6672
    word32 wolfSSL_X509_get_pathLength(WOLFSSL_X509* x509)
6673
    {
6674
        word32 pathLength = 0;
6675
6676
        WOLFSSL_ENTER("wolfSSL_X509_get_pathLength");
6677
6678
        if (x509 != NULL)
6679
            pathLength = x509->pathLength;
6680
6681
        WOLFSSL_LEAVE("wolfSSL_X509_get_pathLength", pathLength);
6682
6683
        return pathLength;
6684
    }
6685
6686
6687
    unsigned int wolfSSL_X509_get_keyUsage(WOLFSSL_X509* x509)
6688
    {
6689
        word16 usage = 0;
6690
6691
        WOLFSSL_ENTER("wolfSSL_X509_get_keyUsage");
6692
6693
        if (x509 != NULL)
6694
            usage = x509->keyUsage;
6695
6696
        WOLFSSL_LEAVE("wolfSSL_X509_get_keyUsage", usage);
6697
6698
        return usage;
6699
    }
6700
6701
6702
    byte* wolfSSL_X509_get_authorityKeyID(WOLFSSL_X509* x509,
6703
                                          byte* dst, int* dstLen)
6704
    {
6705
        byte *id = NULL;
6706
        int copySz = 0;
6707
6708
        WOLFSSL_ENTER("wolfSSL_X509_get_authorityKeyID");
6709
6710
        if (x509 != NULL) {
6711
            if (x509->authKeyIdSet) {
6712
                copySz = (int)min(dstLen != NULL ? (word32)*dstLen : 0,
6713
                                  x509->authKeyIdSz);
6714
                id = x509->authKeyId;
6715
            }
6716
6717
            if (dst != NULL && dstLen != NULL && id != NULL && copySz > 0) {
6718
                XMEMCPY(dst, id, copySz);
6719
                id = dst;
6720
                *dstLen = copySz;
6721
            }
6722
        }
6723
6724
        WOLFSSL_LEAVE("wolfSSL_X509_get_authorityKeyID", copySz);
6725
6726
        return id;
6727
    }
6728
6729
    byte* wolfSSL_X509_get_subjectKeyID(WOLFSSL_X509* x509,
6730
                                        byte* dst, int* dstLen)
6731
    {
6732
        byte *id = NULL;
6733
        int copySz = 0;
6734
6735
        WOLFSSL_ENTER("wolfSSL_X509_get_subjectKeyID");
6736
6737
        if (x509 != NULL) {
6738
            if (x509->subjKeyIdSet) {
6739
                copySz = (int)min(dstLen != NULL ? (word32) *dstLen : 0,
6740
                                  x509->subjKeyIdSz);
6741
                id = x509->subjKeyId;
6742
            }
6743
6744
            if (dst != NULL && dstLen != NULL && id != NULL && copySz > 0) {
6745
                XMEMCPY(dst, id, copySz);
6746
                id = dst;
6747
                *dstLen = copySz;
6748
            }
6749
        }
6750
6751
        WOLFSSL_LEAVE("wolfSSL_X509_get_subjectKeyID", copySz);
6752
6753
        return id;
6754
    }
6755
6756
    const WOLFSSL_ASN1_STRING *wolfSSL_X509_get0_subject_key_id(
6757
            WOLFSSL_X509 *x509)
6758
    {
6759
        WOLFSSL_ASN1_STRING* ret = NULL;
6760
6761
        WOLFSSL_ENTER("wolfSSL_X509_get0_subject_key_id");
6762
6763
        if (x509 != NULL && x509->subjKeyIdSet) {
6764
            if (x509->subjKeyIdStr == NULL) {
6765
                x509->subjKeyIdStr = wolfSSL_ASN1_STRING_new();
6766
                if (x509->subjKeyIdStr != NULL) {
6767
                    if (wolfSSL_ASN1_STRING_set(x509->subjKeyIdStr,
6768
                            x509->subjKeyId, x509->subjKeyIdSz) == 1) {
6769
                    }
6770
                    else {
6771
                        wolfSSL_ASN1_STRING_free(x509->subjKeyIdStr);
6772
                        x509->subjKeyIdStr = NULL;
6773
                    }
6774
                }
6775
            }
6776
            ret = x509->subjKeyIdStr;
6777
        }
6778
6779
        WOLFSSL_LEAVE("wolfSSL_X509_get0_subject_key_id", ret != NULL);
6780
6781
        return ret;
6782
    }
6783
#endif /* OPENSSL_EXTRA */
6784
6785
#if defined(OPENSSL_EXTRA) || defined(WOLFSSL_WPAS_SMALL) || \
6786
    defined(OPENSSL_EXTRA_X509_SMALL)
6787
6788
    /* Looks up the index of the first entry encountered with matching NID
6789
     * The search starts from index 'pos'
6790
     * returns a negative value on failure and positive index value on success*/
6791
    int wolfSSL_X509_NAME_get_index_by_NID(WOLFSSL_X509_NAME* name,
6792
                                          int nid, int pos)
6793
    {
6794
        int value = nid, i;
6795
6796
        WOLFSSL_ENTER("wolfSSL_X509_NAME_get_index_by_NID");
6797
6798
        if (name == NULL) {
6799
            return BAD_FUNC_ARG;
6800
        }
6801
6802
        i = pos + 1; /* start search after index passed in */
6803
        if (i < 0) {
6804
            i = 0;
6805
        }
6806
6807
        for (;i < name->entrySz && i < MAX_NAME_ENTRIES; i++) {
6808
            if (name->entry[i].nid == value) {
6809
                return i;
6810
            }
6811
        }
6812
        return WOLFSSL_FATAL_ERROR;
6813
    }
6814
6815
6816
    WOLFSSL_ASN1_STRING*  wolfSSL_X509_NAME_ENTRY_get_data(
6817
                                                    WOLFSSL_X509_NAME_ENTRY* in)
6818
    {
6819
        WOLFSSL_ENTER("wolfSSL_X509_NAME_ENTRY_get_data");
6820
        if (in == NULL)
6821
            return NULL;
6822
6823
        return in->value;
6824
    }
6825
6826
#endif /* OPENSSL_EXTRA || WOLFSSL_WPAS_SMALL */
6827
6828
#ifdef OPENSSL_EXTRA
6829
#ifndef NO_BIO
6830
6831
#ifndef MAX_WIDTH
6832
    #define MAX_WIDTH 80
6833
#endif
6834
6835
#define ACERT_NUM_DIR_TAGS 4
6836
6837
/* Convenience struct and function for printing the Holder sub fields
6838
 * of an X509 Attribute struct. */
6839
struct acert_dir_print_t {
6840
    const char * pfx;
6841
    const byte   tag[3];
6842
};
6843
6844
static struct acert_dir_print_t acert_dir_print[ACERT_NUM_DIR_TAGS] =
6845
{
6846
    { "C=", {0x55, 0x04, ASN_COUNTRY_NAME} },
6847
    { "O=", {0x55, 0x04, ASN_ORG_NAME} },
6848
    { "OU=", {0x55, 0x04, ASN_ORGUNIT_NAME} },
6849
    { "CN=", {0x55, 0x04, ASN_COMMON_NAME} },
6850
};
6851
6852
/* Print an entry of ASN_DIR_TYPE into dst of length max_len.
6853
 *
6854
 * Returns total_len of str on success.
6855
 * Returns < 0 on failure.
6856
 * */
6857
static int X509PrintDirType(char * dst, int max_len, const DNS_entry * entry)
6858
{
6859
    word32       k = 0;
6860
    word32       i = 0;
6861
    const char * src = entry->name;
6862
    word32       src_len = (word32)XSTRLEN(src);
6863
    int          total_len = 0;
6864
    int          bytes_left = max_len;
6865
    int          fld_len = 0;
6866
    int          match_found = 0;
6867
6868
    XMEMSET(dst, 0, max_len);
6869
6870
    /* loop over printable DIR tags. */
6871
    for (k = 0; k < ACERT_NUM_DIR_TAGS; ++k) {
6872
        const char * pfx = acert_dir_print[k].pfx;
6873
        const byte * tag = acert_dir_print[k].tag;
6874
        byte         asn_tag;
6875
6876
        /* walk through entry looking for matches. */
6877
        for (i = 0; i < src_len - 5; ++i) {
6878
            if (XMEMCMP(tag, &src[i], 3) == 0) {
6879
                if (bytes_left < 5) {
6880
                    /* Not enough space left for name oid + tag + len. */
6881
                    break;
6882
                }
6883
6884
                if (match_found) {
6885
                    /* append a {',', ' '} before doing anything else. */
6886
                    *dst++ = ',';
6887
                    *dst++ = ' ';
6888
                    total_len += 2;
6889
                    bytes_left -= 2;
6890
                }
6891
6892
                i += 3;
6893
6894
                /* Get the ASN Tag. */
6895
                if (GetASNTag((const byte *)src, &i, &asn_tag, src_len) < 0) {
6896
                    WOLFSSL_MSG("error: GetASNTag failed");
6897
                    break;
6898
                }
6899
6900
                /* Check it is printable. */
6901
                if ((asn_tag != ASN_PRINTABLE_STRING) &&
6902
                    (asn_tag != ASN_IA5_STRING) &&
6903
                    (asn_tag != ASN_UTF8STRING)) {
6904
                    /* Don't know what this is but we can't print it. */
6905
                    WOLFSSL_MSG("error: asn tag not printable string");
6906
                    break;
6907
                }
6908
6909
                /* Now get the length of the printable string. */
6910
                if (GetLength((const byte *)src, &i, &fld_len, src_len) < 0) {
6911
                    break;
6912
                }
6913
6914
                /* Make sure we have space to fit it. */
6915
                if ((int) XSTRLEN(pfx) > bytes_left) {
6916
                    /* Not enough space left. */
6917
                    break;
6918
                }
6919
6920
                /* Copy it in, decrement available space. */
6921
                XSTRNCPY(dst, pfx, bytes_left);
6922
                dst += XSTRLEN(pfx);
6923
                total_len += (int)XSTRLEN(pfx);
6924
                bytes_left -= (int)XSTRLEN(pfx);
6925
6926
                if (fld_len > bytes_left) {
6927
                    /* Not enough space left. */
6928
                    break;
6929
                }
6930
6931
                XMEMCPY(dst, &src[i], fld_len);
6932
                i += fld_len;
6933
                dst += fld_len;
6934
                total_len += fld_len;
6935
                bytes_left -= fld_len;
6936
6937
                match_found = 1;
6938
            }
6939
        }
6940
    }
6941
6942
    return total_len;
6943
}
6944
static int X509_print_name_entry(WOLFSSL_BIO* bio,
6945
                                 const DNS_entry* entry, int indent)
6946
{
6947
    int  ret = WOLFSSL_SUCCESS;
6948
    int  nameCount = 0;
6949
    char scratch[MAX_WIDTH];
6950
    int  len;
6951
6952
    if (bio == NULL || entry == NULL) {
6953
        return WOLFSSL_FAILURE;
6954
    }
6955
6956
    len = XSNPRINTF(scratch, MAX_WIDTH, "%*s", indent, "");
6957
    if (len >= MAX_WIDTH) {
6958
        return WOLFSSL_FAILURE;
6959
    }
6960
6961
    if (wolfSSL_BIO_write(bio, scratch, (int)XSTRLEN(scratch)) <= 0) {
6962
        return WOLFSSL_FAILURE;
6963
    }
6964
6965
    while (entry != NULL) {
6966
        ++nameCount;
6967
        if (nameCount > 1) {
6968
            if (wolfSSL_BIO_write(bio, ", ", 2) <= 0) {
6969
                ret = WOLFSSL_FAILURE;
6970
                break;
6971
            }
6972
        }
6973
6974
        if (entry->type == ASN_DNS_TYPE) {
6975
            len = XSNPRINTF(scratch, MAX_WIDTH, "DNS:%s", entry->name);
6976
        }
6977
    #if defined(OPENSSL_ALL) || defined(WOLFSSL_IP_ALT_NAME)
6978
        else if (entry->type == ASN_IP_TYPE) {
6979
            len = XSNPRINTF(scratch, MAX_WIDTH, "IP Address:%s",
6980
                    entry->ipString);
6981
        }
6982
    #else
6983
        else if (entry->type == ASN_IP_TYPE) {
6984
            /* iPAddress entries are now always parsed into altNames so
6985
             * name constraints can be enforced. Without the
6986
             * human-readable ipString field, emit a fixed label so this
6987
             * print path does not fail. */
6988
            len = XSNPRINTF(scratch, MAX_WIDTH, "IP Address:<unavailable>");
6989
        }
6990
    #endif /* OPENSSL_ALL || WOLFSSL_IP_ALT_NAME */
6991
        else if (entry->type == ASN_RFC822_TYPE) {
6992
            len = XSNPRINTF(scratch, MAX_WIDTH, "email:%s",
6993
                    entry->name);
6994
        }
6995
        else if (entry->type == ASN_DIR_TYPE) {
6996
            len = X509PrintDirType(scratch, MAX_WIDTH, entry);
6997
        }
6998
        else if (entry->type == ASN_URI_TYPE) {
6999
            len = XSNPRINTF(scratch, MAX_WIDTH, "URI:%s",
7000
                entry->name);
7001
        }
7002
    #ifdef WOLFSSL_RID_ALT_NAME
7003
        else if (entry->type == ASN_RID_TYPE) {
7004
            len = XSNPRINTF(scratch, MAX_WIDTH, "Registered ID:%s",
7005
                entry->ridString);
7006
        }
7007
    #else
7008
        else if (entry->type == ASN_RID_TYPE) {
7009
            /* registeredID entries are now always parsed into altNames
7010
             * so name constraints can be enforced. Without the
7011
             * human-readable ridString field, emit a fixed label so
7012
             * this print path does not fail. */
7013
            len = XSNPRINTF(scratch, MAX_WIDTH, "Registered ID:<unavailable>");
7014
        }
7015
    #endif /* WOLFSSL_RID_ALT_NAME */
7016
        else if (entry->type == ASN_OTHER_TYPE) {
7017
            len = XSNPRINTF(scratch, MAX_WIDTH,
7018
                "othername <unsupported>");
7019
        }
7020
        else {
7021
            WOLFSSL_MSG("Bad alt name type.");
7022
            ret = WOLFSSL_FAILURE;
7023
            break;
7024
        }
7025
        if (len >= MAX_WIDTH) {
7026
            ret = WOLFSSL_FAILURE;
7027
            break;
7028
        }
7029
        if (wolfSSL_BIO_write(bio, scratch, (int)XSTRLEN(scratch))
7030
                <= 0) {
7031
            ret = WOLFSSL_FAILURE;
7032
            break;
7033
        }
7034
7035
        entry = entry->next;
7036
    }
7037
7038
    if (ret == WOLFSSL_SUCCESS && wolfSSL_BIO_write(bio, "\n", 1) <= 0) {
7039
        ret = WOLFSSL_FAILURE;
7040
    }
7041
7042
    return ret;
7043
}
7044
7045
#ifdef XSNPRINTF
7046
static int X509PrintKeyUsage(WOLFSSL_BIO* bio, WOLFSSL_X509* x509, int indent)
7047
{
7048
    int ret = WOLFSSL_SUCCESS;
7049
    const int usages[] = {
7050
        KEYUSE_DIGITAL_SIG,
7051
        KEYUSE_CONTENT_COMMIT,
7052
        KEYUSE_KEY_ENCIPHER,
7053
        KEYUSE_DATA_ENCIPHER,
7054
        KEYUSE_KEY_AGREE,
7055
        KEYUSE_KEY_CERT_SIGN,
7056
        KEYUSE_CRL_SIGN,
7057
        KEYUSE_ENCIPHER_ONLY,
7058
        KEYUSE_DECIPHER_ONLY
7059
    };
7060
    const char* usageStrs[] = {
7061
        "Digital Signature",
7062
        "Non Repudiation",
7063
        "Key Encipherment",
7064
        "Data Encipherment",
7065
        "Key Agreement",
7066
        "Certificate Sign",
7067
        "CRL Sign",
7068
        "Encipher Only",
7069
        "Decipher Only"
7070
    };
7071
7072
    if (indent < 0) indent = 0;
7073
    if (indent > MAX_INDENT) indent = MAX_INDENT;
7074
7075
    if (bio == NULL || x509 == NULL) {
7076
        ret = WOLFSSL_FAILURE;
7077
    }
7078
7079
    if (ret == WOLFSSL_SUCCESS && x509->keyUsageSet && x509->keyUsage != 0) {
7080
        char scratch[MAX_WIDTH];
7081
        int len;
7082
        word32 i = 0;
7083
        int usageCount = 0;
7084
7085
        len = XSNPRINTF(scratch, MAX_WIDTH, "%*s", indent, "");
7086
        if (len >= MAX_WIDTH)
7087
            ret = WOLFSSL_FAILURE;
7088
        if (ret == WOLFSSL_SUCCESS) {
7089
            if (wolfSSL_BIO_write(bio, scratch, (int)XSTRLEN(scratch)) <= 0) {
7090
                ret = WOLFSSL_FAILURE;
7091
            }
7092
        }
7093
        for (; ret == WOLFSSL_SUCCESS && i < sizeof(usages) / sizeof(usages[i]);
7094
             i++) {
7095
            if (x509->keyUsage & usages[i]) {
7096
                ++usageCount;
7097
                if (usageCount > 1 && wolfSSL_BIO_write(bio, ", ", 2) <= 0) {
7098
                    ret = WOLFSSL_FAILURE;
7099
                    break;
7100
                }
7101
                if (wolfSSL_BIO_write(bio, usageStrs[i],
7102
                                      (int)XSTRLEN(usageStrs[i])) <= 0) {
7103
                    ret = WOLFSSL_FAILURE;
7104
                    break;
7105
                }
7106
            }
7107
        }
7108
        if (ret == WOLFSSL_SUCCESS && wolfSSL_BIO_write(bio, "\n", 1) <= 0) {
7109
            ret = WOLFSSL_FAILURE;
7110
        }
7111
    }
7112
7113
    return ret;
7114
}
7115
7116
static int X509PrintExtendedKeyUsage(WOLFSSL_BIO* bio, WOLFSSL_X509* x509,
7117
        int indent)
7118
{
7119
    int ret = WOLFSSL_SUCCESS;
7120
    const int usages[] = {
7121
        EXTKEYUSE_OCSP_SIGN,
7122
        EXTKEYUSE_TIMESTAMP,
7123
        EXTKEYUSE_EMAILPROT,
7124
        EXTKEYUSE_CODESIGN,
7125
        EXTKEYUSE_CLIENT_AUTH,
7126
        EXTKEYUSE_SERVER_AUTH,
7127
        EXTKEYUSE_ANY
7128
    };
7129
    const char* usageStrs[] = {
7130
        "OCSP Signing",
7131
        "Time Stamping",
7132
        "E-mail Protection",
7133
        "Code Signing",
7134
        "TLS Web Client Authentication",
7135
        "TLS Web Server Authentication",
7136
        "Any Extended Key Usage"
7137
    };
7138
7139
    if (bio == NULL || x509 == NULL) {
7140
        ret = WOLFSSL_FAILURE;
7141
    }
7142
7143
    if (ret == WOLFSSL_SUCCESS && x509->extKeyUsageCount > 0
7144
            && x509->extKeyUsage != 0) {
7145
        char scratch[MAX_WIDTH];
7146
        int len;
7147
        word32 i = 0;
7148
        int usageCount = 0;
7149
7150
        len = XSNPRINTF(scratch, MAX_WIDTH, "%*s", indent, "");
7151
        if (len >= MAX_WIDTH)
7152
            ret = WOLFSSL_FAILURE;
7153
        if (ret == WOLFSSL_SUCCESS) {
7154
            if (wolfSSL_BIO_write(bio, scratch, (int)XSTRLEN(scratch)) <= 0) {
7155
                ret = WOLFSSL_FAILURE;
7156
            }
7157
        }
7158
        for (; ret == WOLFSSL_SUCCESS && i < sizeof(usages) / sizeof(usages[i]);
7159
             i++) {
7160
            if (x509->extKeyUsage & usages[i]) {
7161
                ++usageCount;
7162
                if (usageCount > 1 && wolfSSL_BIO_write(bio, ", ", 2) <= 0) {
7163
                    ret = WOLFSSL_FAILURE;
7164
                    break;
7165
                }
7166
                if (wolfSSL_BIO_write(bio, usageStrs[i],
7167
                                      (int)XSTRLEN(usageStrs[i])) <= 0) {
7168
                    ret = WOLFSSL_FAILURE;
7169
                    break;
7170
                }
7171
            }
7172
        }
7173
        if (ret == WOLFSSL_SUCCESS && wolfSSL_BIO_write(bio, "\n", 1) <= 0) {
7174
            ret = WOLFSSL_FAILURE;
7175
        }
7176
    }
7177
7178
    return ret;
7179
}
7180
7181
7182
/* print serial number out
7183
 * return WOLFSSL_SUCCESS on success
7184
 */
7185
static int X509PrintSerial_ex(WOLFSSL_BIO* bio, byte* serial, int sz,
7186
        int delimiter, int indent)
7187
{
7188
    char scratch[MAX_WIDTH];
7189
    const int scratchSz = sizeof(scratch);
7190
    int scratchLen;
7191
7192
    if ((scratchLen = XSNPRINTF(scratch, MAX_WIDTH, "%*sSerial Number:",
7193
                                 indent, "")) >= MAX_WIDTH) {
7194
        WOLFSSL_MSG("buffer overrun");
7195
        return WOLFSSL_FAILURE;
7196
    }
7197
    if (wolfSSL_BIO_write(bio, scratch, scratchLen) <= 0) {
7198
        return WOLFSSL_FAILURE;
7199
    }
7200
7201
    if (sz > (int)sizeof(byte)) {
7202
        int i;
7203
7204
        /* serial is larger than int size so print off hex values */
7205
        if ((scratchLen = XSNPRINTF(
7206
                 scratch, MAX_WIDTH, "\n%*s", indent + 4, ""))
7207
                >= MAX_WIDTH) {
7208
            WOLFSSL_MSG("buffer overrun");
7209
            return WOLFSSL_FAILURE;
7210
        }
7211
        for (i = 0; i < sz; i++) {
7212
            int valLen;
7213
7214
            if ((valLen = XSNPRINTF(
7215
                     scratch + scratchLen, scratchSz - scratchLen,
7216
                     "%02x%s", serial[i], (i < sz - 1) ?
7217
                     (delimiter ? ":" : "") : "\n"))
7218
                >= scratchSz - scratchLen) {
7219
                WOLFSSL_MSG("buffer overrun");
7220
                return WOLFSSL_FAILURE;
7221
            }
7222
            scratchLen += valLen;
7223
        }
7224
        if (wolfSSL_BIO_write(bio, scratch, scratchLen) <= 0) {
7225
            return WOLFSSL_FAILURE;
7226
        }
7227
    }
7228
7229
    /* if serial can fit into byte then print on the same line */
7230
    else  {
7231
        if ((scratchLen = XSNPRINTF(scratch, MAX_WIDTH, " %d (0x%x)\n",
7232
                (char)serial[0], serial[0])) >= MAX_WIDTH) {
7233
            WOLFSSL_MSG("buffer overrun");
7234
            return WOLFSSL_FAILURE;
7235
        }
7236
        if (wolfSSL_BIO_write(bio, scratch, scratchLen) <= 0) {
7237
            return WOLFSSL_FAILURE;
7238
        }
7239
    }
7240
    return WOLFSSL_SUCCESS;
7241
}
7242
7243
static int X509PrintSerial(WOLFSSL_BIO* bio, WOLFSSL_X509* x509, int indent)
7244
{
7245
    unsigned char serial[32];
7246
    int  sz = sizeof(serial);
7247
7248
    if (indent < 0) indent = 0;
7249
    if (indent > MAX_INDENT) indent = MAX_INDENT;
7250
7251
    XMEMSET(serial, 0, sz);
7252
    if (wolfSSL_X509_get_serial_number(x509, serial, &sz) == WOLFSSL_SUCCESS) {
7253
        X509PrintSerial_ex(bio, serial, sz, 1, indent);
7254
    }
7255
    return WOLFSSL_SUCCESS;
7256
}
7257
7258
#ifndef NO_ASN_TIME
7259
static int X509PrintValidity(WOLFSSL_BIO* bio, WOLFSSL_ASN1_TIME * notBefore,
7260
                             WOLFSSL_ASN1_TIME * notAfter, int indent)
7261
{
7262
    char tmp[80];
7263
    (void) indent;
7264
7265
    if (wolfSSL_BIO_write(bio, "        Validity\n",
7266
                  (int)XSTRLEN("        Validity\n")) <= 0) {
7267
        return WOLFSSL_FAILURE;
7268
    }
7269
7270
    if (wolfSSL_BIO_write(bio, "            Not Before: ",
7271
                  (int)XSTRLEN("            Not Before: ")) <= 0) {
7272
        return WOLFSSL_FAILURE;
7273
    }
7274
    if (notBefore->length > 0) {
7275
        if (GetTimeString(notBefore->data, ASN_UTC_TIME,
7276
            tmp, sizeof(tmp), notBefore->length) != WOLFSSL_SUCCESS) {
7277
            if (GetTimeString(notBefore->data, ASN_GENERALIZED_TIME,
7278
            tmp, sizeof(tmp), notBefore->length) != WOLFSSL_SUCCESS) {
7279
                WOLFSSL_MSG("Error getting not before date");
7280
                return WOLFSSL_FAILURE;
7281
            }
7282
        }
7283
    }
7284
    else {
7285
        XSTRNCPY(tmp, "Not Set", sizeof(tmp)-1);
7286
    }
7287
    tmp[sizeof(tmp) - 1] = '\0'; /* make sure null terminated */
7288
    if (wolfSSL_BIO_write(bio, tmp, (int)XSTRLEN(tmp)) <= 0) {
7289
        return WOLFSSL_FAILURE;
7290
    }
7291
7292
    if (wolfSSL_BIO_write(bio, "\n            Not After : ",
7293
                  (int)XSTRLEN("\n            Not After : ")) <= 0) {
7294
        return WOLFSSL_FAILURE;
7295
    }
7296
    if (notAfter->length > 0) {
7297
        if (GetTimeString(notAfter->data, ASN_UTC_TIME,
7298
            tmp, sizeof(tmp), notAfter->length) != WOLFSSL_SUCCESS) {
7299
            if (GetTimeString(notAfter->data, ASN_GENERALIZED_TIME,
7300
                tmp, sizeof(tmp), notAfter->length) != WOLFSSL_SUCCESS) {
7301
                WOLFSSL_MSG("Error getting not after date");
7302
                return WOLFSSL_FAILURE;
7303
            }
7304
        }
7305
    }
7306
    else {
7307
        XSTRNCPY(tmp, "Not Set", sizeof(tmp)-1);
7308
    }
7309
    tmp[sizeof(tmp) - 1] = '\0'; /* make sure null terminated */
7310
    if (wolfSSL_BIO_write(bio, tmp, (int)XSTRLEN(tmp)) <= 0) {
7311
        return WOLFSSL_FAILURE;
7312
    }
7313
7314
    if (wolfSSL_BIO_write(bio, "\n\0", (int)XSTRLEN("\n\0")) <= 0) {
7315
        return WOLFSSL_FAILURE;
7316
    }
7317
7318
    return WOLFSSL_SUCCESS;
7319
}
7320
#endif /* ifndef NO_ASN_TIME */
7321
7322
static int X509PrintSubjAltName(WOLFSSL_BIO* bio, WOLFSSL_X509* x509,
7323
                                int indent)
7324
{
7325
    if (!x509 || !x509->altNames || !x509->subjAltNameSet)
7326
        return WOLFSSL_FAILURE;
7327
    return X509_print_name_entry(bio, x509->altNames, indent);
7328
}
7329
7330
/* iterate through certificate extensions printing them out in human readable
7331
 * form
7332
 * return WOLFSSL_SUCCESS on success
7333
 */
7334
static int X509PrintExtensions(WOLFSSL_BIO* bio, WOLFSSL_X509* x509, int indent)
7335
{
7336
    int  ret = WOLFSSL_SUCCESS;
7337
    char scratch[MAX_WIDTH];
7338
    const int scratchSz = sizeof(scratch);
7339
    int scratchLen;
7340
    int  count, i;
7341
    char* buf = NULL;
7342
7343
    if (indent < 0) indent = 0;
7344
    if (indent > MAX_INDENT) indent = MAX_INDENT;
7345
7346
    count = wolfSSL_X509_get_ext_count(x509);
7347
    if (count <= 0)
7348
        return WOLFSSL_SUCCESS;
7349
7350
#ifdef WOLFSSL_CERT_REQ
7351
    if (x509->isCSR) {
7352
        if ((scratchLen = XSNPRINTF(scratch, MAX_WIDTH, "%*s%s\n", indent, "",
7353
                      "Requested extensions:")) >= MAX_WIDTH) {
7354
            return WOLFSSL_FAILURE;
7355
        }
7356
    }
7357
    else
7358
#endif
7359
    {
7360
        if ((scratchLen = XSNPRINTF(scratch, MAX_WIDTH, "%*s%s\n", indent, "",
7361
                                     "X509v3 extensions:")) >= MAX_WIDTH) {
7362
            return WOLFSSL_FAILURE;
7363
        }
7364
    }
7365
    if (wolfSSL_BIO_write(bio, scratch, scratchLen) <= 0) {
7366
        return WOLFSSL_FAILURE;
7367
    }
7368
7369
    buf = (char*)XMALLOC(MAX_WIDTH, x509->heap, DYNAMIC_TYPE_TMP_BUFFER);
7370
    if (buf == NULL) {
7371
        return WOLFSSL_FAILURE;
7372
    }
7373
7374
    for (i = 0; (i < count) && (ret != WC_NO_ERR_TRACE(WOLFSSL_FAILURE)); i++) {
7375
        WOLFSSL_X509_EXTENSION* ext;
7376
7377
        ext = wolfSSL_X509_get_ext(x509, i);
7378
        if (ext != NULL) {
7379
            WOLFSSL_ASN1_OBJECT* obj;
7380
            int nid;
7381
            char val[6];
7382
            int valLen;
7383
            word32 j;
7384
7385
            obj = wolfSSL_X509_EXTENSION_get_object(ext);
7386
            if (obj == NULL) {
7387
                ret = WOLFSSL_FAILURE;
7388
                break;
7389
            }
7390
            if (wolfSSL_OBJ_obj2txt(buf, MAX_WIDTH, obj, 0)
7391
                == WC_NO_ERR_TRACE(WOLFSSL_FAILURE))
7392
            {
7393
                ret = WOLFSSL_FAILURE;
7394
                break;
7395
            }
7396
            if ((scratchLen = XSNPRINTF(
7397
                     scratch, MAX_WIDTH, "%*s%s%s\n", indent + 4, "",
7398
                     buf,
7399
                     (wolfSSL_X509_EXTENSION_get_critical(ext)
7400
                      ? ": critical"
7401
                      : ": ")))
7402
                >= MAX_WIDTH)
7403
            {
7404
                ret = WOLFSSL_FAILURE;
7405
                break;
7406
            }
7407
7408
            if (wolfSSL_BIO_write(bio, scratch, scratchLen) <= 0) {
7409
                ret = WOLFSSL_FAILURE;
7410
                break;
7411
            }
7412
            nid = wolfSSL_OBJ_obj2nid(obj);
7413
            switch (nid) {
7414
            case WC_NID_subject_alt_name:
7415
                ret = X509PrintSubjAltName(bio, x509, indent + 8);
7416
                break;
7417
7418
            case WC_NID_subject_key_identifier:
7419
                if (!x509->subjKeyIdSet || x509->subjKeyId == NULL ||
7420
                    x509->subjKeyIdSz == 0)
7421
                {
7422
                    ret = WOLFSSL_FAILURE;
7423
                    break;
7424
                }
7425
7426
                if ((scratchLen = XSNPRINTF(
7427
                         scratch, scratchSz,
7428
                         "%*s", indent + 8, "")) >= scratchSz)
7429
                {
7430
                    ret = WOLFSSL_FAILURE;
7431
                    break;
7432
                }
7433
                for (j = 0; j < x509->subjKeyIdSz; j++) {
7434
                    if ((valLen = XSNPRINTF(
7435
                             val, sizeof(val), "%02X%s",
7436
                             x509->subjKeyId[j],
7437
                             (j < x509->subjKeyIdSz - 1) ? ":" : "\n"))
7438
                        >= (int)sizeof(val))
7439
                    {
7440
                        ret = WOLFSSL_FAILURE;
7441
                        break;
7442
                    }
7443
                    if (scratchLen + valLen >= scratchSz) {
7444
                        if (wolfSSL_BIO_write(bio, scratch,
7445
                                              scratchLen) <= 0) {
7446
                            ret = WOLFSSL_FAILURE;
7447
                            break;
7448
                        }
7449
                        scratchLen = 0;
7450
                    }
7451
                    XMEMCPY(scratch + scratchLen, val, valLen);
7452
                    scratchLen += valLen;
7453
                }
7454
                if (ret == WC_NO_ERR_TRACE(WOLFSSL_FAILURE))
7455
                    break;
7456
                if (wolfSSL_BIO_write(bio, scratch,
7457
                                      scratchLen) <= 0) {
7458
                    ret = WOLFSSL_FAILURE;
7459
                    break;
7460
                }
7461
                break;
7462
7463
            case WC_NID_authority_key_identifier:
7464
                if (!x509->authKeyIdSet || x509->authKeyId == NULL ||
7465
                    x509->authKeyIdSz == 0) {
7466
                    ret = WOLFSSL_FAILURE;
7467
                    break;
7468
                }
7469
7470
                if ((scratchLen = XSNPRINTF(
7471
                         scratch, scratchSz, "%*s%s",
7472
                         indent + 8, "", "keyid:")) >= scratchSz)
7473
                {
7474
                    ret = WOLFSSL_FAILURE;
7475
                    break;
7476
                }
7477
                for (j = 0; j < x509->authKeyIdSz; j++) {
7478
                    if ((valLen = XSNPRINTF(
7479
                             val, sizeof(val), "%02X%s",
7480
                             x509->authKeyId[j],
7481
                             (j < x509->authKeyIdSz - 1) ? ":" : "\n\n"))
7482
                        >= (int)sizeof(val))
7483
                    {
7484
                        ret = WOLFSSL_FAILURE;
7485
                        break;
7486
                    }
7487
                    if (scratchLen >= scratchSz - valLen) {
7488
                        if (wolfSSL_BIO_write(bio, scratch,
7489
                                              scratchLen) <= 0)
7490
                        {
7491
                            ret = WOLFSSL_FAILURE;
7492
                            break;
7493
                        }
7494
                        scratchLen = 0;
7495
                    }
7496
                    if (scratchLen + valLen >= scratchSz) {
7497
                        ret = WOLFSSL_FAILURE;
7498
                        break;
7499
                    }
7500
                    XMEMCPY(scratch + scratchLen, val, valLen);
7501
                    scratchLen += valLen;
7502
                }
7503
                if (ret == WC_NO_ERR_TRACE(WOLFSSL_FAILURE))
7504
                    break;
7505
                if (wolfSSL_BIO_write(bio, scratch,
7506
                                      scratchLen) <= 0) {
7507
                    ret = WOLFSSL_FAILURE;
7508
                    break;
7509
                }
7510
                break;
7511
7512
            case WC_NID_basic_constraints:
7513
                if (!x509->basicConstSet) {
7514
                    ret = WOLFSSL_FAILURE;
7515
                    break;
7516
                }
7517
                /* Match OpenSSL output: print "CA:TRUE"/"CA:FALSE" and append
7518
                 * ", pathlen:N" only when a pathLenConstraint is present
7519
                 * (RFC 5280 4.2.1.9). An absent constraint imposes no limit
7520
                 * and must not be shown as pathlen:0. */
7521
                if (x509->basicConstPlSet) {
7522
                    scratchLen = XSNPRINTF(scratch, scratchSz,
7523
                        "%*sCA:%s, pathlen:%u\n",
7524
                        indent + 8, "", (x509->isCa) ? "TRUE" : "FALSE",
7525
                        (unsigned int)x509->pathLength);
7526
                }
7527
                else {
7528
                    scratchLen = XSNPRINTF(scratch, scratchSz,
7529
                        "%*sCA:%s\n",
7530
                        indent + 8, "", (x509->isCa) ? "TRUE" : "FALSE");
7531
                }
7532
                if (scratchLen >= scratchSz) {
7533
                    ret = WOLFSSL_FAILURE;
7534
                    break;
7535
                }
7536
                if (wolfSSL_BIO_write(bio, scratch,
7537
                                      scratchLen) <= 0) {
7538
                    ret = WOLFSSL_FAILURE;
7539
                    break;
7540
                }
7541
                break;
7542
7543
            case WC_NID_key_usage:
7544
                ret = X509PrintKeyUsage(bio, x509, indent + 8);
7545
                break;
7546
7547
            case WC_NID_ext_key_usage:
7548
                ret = X509PrintExtendedKeyUsage(bio, x509, indent + 8);
7549
                break;
7550
7551
            default:
7552
                /* extension nid not yet supported */
7553
                if ((scratchLen = XSNPRINTF(
7554
                         scratch, MAX_WIDTH,
7555
                         "%*sNID %d print not yet supported\n",
7556
                         indent + 8, "", nid)) >= MAX_WIDTH)
7557
                {
7558
                    ret = WOLFSSL_FAILURE;
7559
                    break;
7560
                }
7561
7562
                if (wolfSSL_BIO_write(bio, scratch, scratchLen) <= 0) {
7563
                    ret = WOLFSSL_FAILURE;
7564
                    break;
7565
                }
7566
            }
7567
        }
7568
    }
7569
7570
    XFREE(buf, x509->heap, DYNAMIC_TYPE_TMP_BUFFER);
7571
7572
    return ret;
7573
}
7574
7575
7576
/* print out the signature in human readable format for use with
7577
 * wolfSSL_X509_print()
7578
 * return WOLFSSL_SUCCESS on success
7579
 */
7580
static int X509PrintSignature_ex(WOLFSSL_BIO* bio, byte* sig,
7581
        int sigSz, int sigNid, int algOnly, int indent)
7582
{
7583
    char scratch[MAX_WIDTH];
7584
    int scratchLen;
7585
    WOLFSSL_ASN1_OBJECT* obj = NULL;
7586
    int ret = WOLFSSL_SUCCESS;
7587
    char tmp[100];
7588
    int tmpLen = 0;
7589
7590
    if (sigSz <= 0) {
7591
        return WOLFSSL_SUCCESS;
7592
    }
7593
7594
    if ((scratchLen = XSNPRINTF(scratch, MAX_WIDTH, "%*s%s", indent, "",
7595
                                "Signature Algorithm: ")) >= MAX_WIDTH) {
7596
        ret = WOLFSSL_FAILURE;
7597
    }
7598
7599
    if (ret == WOLFSSL_SUCCESS) {
7600
        if (wolfSSL_BIO_write(bio, scratch, scratchLen) <= 0)
7601
            ret = WOLFSSL_FAILURE;
7602
    }
7603
7604
    if (ret == WOLFSSL_SUCCESS) {
7605
        obj = wolfSSL_OBJ_nid2obj(sigNid);
7606
        if (obj == NULL)
7607
            ret = WOLFSSL_FAILURE;
7608
    }
7609
    if (ret == WOLFSSL_SUCCESS) {
7610
        if (wolfSSL_OBJ_obj2txt(scratch, MAX_WIDTH, obj, 0)
7611
            == WC_NO_ERR_TRACE(WOLFSSL_FAILURE))
7612
        {
7613
            ret = WOLFSSL_FAILURE;
7614
        }
7615
    }
7616
7617
    if (ret == WOLFSSL_SUCCESS) {
7618
        if ((tmpLen = XSNPRINTF(tmp, sizeof(tmp),"%s\n", scratch))
7619
            >= (int)sizeof(tmp))
7620
        {
7621
            ret = WOLFSSL_FAILURE;
7622
        }
7623
    }
7624
    if (ret == WOLFSSL_SUCCESS) {
7625
        if (wolfSSL_BIO_write(bio, tmp, tmpLen) <= 0)
7626
            ret = WOLFSSL_FAILURE;
7627
    }
7628
7629
    /* Leave function if the desired content to print
7630
     * is only the signature algorithm */
7631
    if (algOnly) {
7632
        if (obj != NULL)
7633
            wolfSSL_ASN1_OBJECT_free(obj);
7634
7635
        return ret;
7636
    }
7637
7638
    if (ret == WOLFSSL_SUCCESS) {
7639
        if ((tmpLen = XSNPRINTF(tmp, sizeof(tmp), "%*s", indent + 5, ""))
7640
            >= (int)sizeof(tmp))
7641
        {
7642
            ret = WOLFSSL_FAILURE;
7643
        }
7644
    }
7645
7646
    if (ret == WOLFSSL_SUCCESS) {
7647
        int i;
7648
7649
        for (i = 0; i < sigSz; i++) {
7650
            char val[6];
7651
            int valLen;
7652
7653
            if (i == 0) {
7654
                if ((valLen = XSNPRINTF(val, sizeof(val), "%02x", sig[i]))
7655
                    >= (int)sizeof(val))
7656
                {
7657
                    ret = WOLFSSL_FAILURE;
7658
                    break;
7659
                }
7660
            }
7661
            else if (((i % 18) == 0)) {
7662
                if (wolfSSL_BIO_write(bio, tmp, tmpLen)
7663
                    <= 0) {
7664
                    ret = WOLFSSL_FAILURE;
7665
                    break;
7666
                }
7667
                if ((tmpLen = XSNPRINTF(tmp, sizeof(tmp), ":\n%*s",
7668
                                        indent + 5, ""))
7669
                    >= (int)sizeof(tmp))
7670
                {
7671
                    ret = WOLFSSL_FAILURE;
7672
                    break;
7673
                }
7674
                if ((valLen = XSNPRINTF(val, sizeof(val), "%02x", sig[i]))
7675
                    >= (int)sizeof(val))
7676
                {
7677
                    ret = WOLFSSL_FAILURE;
7678
                    break;
7679
                }
7680
            }
7681
            else {
7682
                if ((valLen = XSNPRINTF(val, sizeof(val), ":%02x", sig[i]))
7683
                    >= (int)sizeof(val))
7684
                {
7685
                    ret = WOLFSSL_FAILURE;
7686
                    break;
7687
                }
7688
            }
7689
            if ((tmpLen < 0) || (valLen < 0) ||
7690
                    (valLen >= ((int)sizeof(tmp) - tmpLen - 1))) {
7691
                ret = WOLFSSL_FAILURE;
7692
                break;
7693
            }
7694
            XMEMCPY(tmp + tmpLen, val, valLen);
7695
            tmpLen += valLen;
7696
            tmp[tmpLen] = 0;
7697
        }
7698
    }
7699
7700
    /* print out remaining sig values */
7701
    if (ret == WOLFSSL_SUCCESS) {
7702
        if (tmpLen > 0) {
7703
            if (wolfSSL_BIO_write(bio, tmp, tmpLen)
7704
                <= 0)
7705
            {
7706
                ret = WOLFSSL_FAILURE;
7707
            }
7708
        }
7709
    }
7710
7711
    if (obj != NULL)
7712
        wolfSSL_ASN1_OBJECT_free(obj);
7713
7714
    return ret;
7715
}
7716
7717
static int X509PrintSignature(WOLFSSL_BIO* bio, WOLFSSL_X509* x509,
7718
        int algOnly, int indent)
7719
{
7720
    int sigSz = 0;
7721
    if (wolfSSL_X509_get_signature(x509, NULL, &sigSz) <= 0) {
7722
        return WOLFSSL_FAILURE;
7723
    }
7724
7725
    if (sigSz > 0) {
7726
        unsigned char* sig;
7727
        int sigNid;
7728
7729
        sigNid = wolfSSL_X509_get_signature_nid(x509);
7730
        if (sigNid <= 0) {
7731
            return WOLFSSL_FAILURE;
7732
        }
7733
7734
        sig = (unsigned char*)XMALLOC(sigSz, NULL, DYNAMIC_TYPE_TMP_BUFFER);
7735
        if (sig == NULL) {
7736
            return WOLFSSL_FAILURE;
7737
        }
7738
7739
        if (wolfSSL_X509_get_signature(x509, sig, &sigSz) <= 0) {
7740
            XFREE(sig, NULL, DYNAMIC_TYPE_TMP_BUFFER);
7741
            return WOLFSSL_FAILURE;
7742
        }
7743
7744
        if (X509PrintSignature_ex(bio, sig, sigSz, sigNid, algOnly, indent)
7745
                != WOLFSSL_SUCCESS) {
7746
            XFREE(sig, NULL, DYNAMIC_TYPE_TMP_BUFFER);
7747
            return WOLFSSL_FAILURE;
7748
        }
7749
7750
        XFREE(sig, NULL, DYNAMIC_TYPE_TMP_BUFFER);
7751
7752
    }
7753
7754
    return WOLFSSL_SUCCESS;
7755
}
7756
7757
7758
/* print out the public key in human readable format for use with
7759
 * wolfSSL_X509_print()
7760
 * return WOLFSSL_SUCCESS on success
7761
 */
7762
static int X509PrintPubKey(WOLFSSL_BIO* bio, WOLFSSL_X509* x509, int indent)
7763
{
7764
    char scratch[MAX_WIDTH];
7765
    WOLFSSL_EVP_PKEY* pubKey;
7766
    int len;
7767
    int ret = WOLFSSL_SUCCESS;
7768
7769
    if (indent < 0) indent = 0;
7770
    if (indent > MAX_INDENT) indent = MAX_INDENT;
7771
7772
    if (bio == NULL || x509 == NULL)
7773
        return BAD_FUNC_ARG;
7774
7775
    len = XSNPRINTF(scratch, MAX_WIDTH, "%*sSubject Public Key Info:\n", indent,
7776
        "");
7777
    if (len >= MAX_WIDTH)
7778
        return WOLFSSL_FAILURE;
7779
    if (wolfSSL_BIO_write(bio, scratch, len) <= 0)
7780
        return WOLFSSL_FAILURE;
7781
7782
    switch (x509->pubKeyOID) {
7783
    #ifndef NO_RSA
7784
        case RSAk:
7785
            len = XSNPRINTF(scratch, MAX_WIDTH,
7786
                    "%*sPublic Key Algorithm: rsaEncryption\n", indent + 4, "");
7787
            if (len >= MAX_WIDTH)
7788
                return WOLFSSL_FAILURE;
7789
            if (wolfSSL_BIO_write(bio, scratch, len) <= 0)
7790
                return WOLFSSL_FAILURE;
7791
            break;
7792
    #endif
7793
    #ifdef HAVE_ECC
7794
        case ECDSAk:
7795
            len = XSNPRINTF(scratch, MAX_WIDTH,
7796
                    "%*sPublic Key Algorithm: EC\n", indent + 4, "");
7797
            if ((len < 0) || (len >= MAX_WIDTH))
7798
                return WOLFSSL_FAILURE;
7799
            if (wolfSSL_BIO_write(bio, scratch, len) <= 0)
7800
                return WOLFSSL_FAILURE;
7801
            break;
7802
    #endif
7803
        default:
7804
                WOLFSSL_MSG("Unknown key type");
7805
                return WOLFSSL_FAILURE;
7806
    }
7807
7808
    pubKey = wolfSSL_X509_get_pubkey(x509);
7809
    if (pubKey == NULL)
7810
        return WOLFSSL_FAILURE;
7811
7812
    ret = wolfSSL_EVP_PKEY_print_public(bio, pubKey, indent + 8, NULL);
7813
7814
    wolfSSL_EVP_PKEY_free(pubKey);
7815
7816
    return ret;
7817
}
7818
7819
7820
/* human readable print out of x509 name formatted for use with
7821
 * wolfSSL_X509_print()
7822
 * return WOLFSSL_SUCCESS on success
7823
 */
7824
static int X509PrintName(WOLFSSL_BIO* bio, WOLFSSL_X509_NAME* name,
7825
        char* type, int indent)
7826
{
7827
    if (name != NULL) {
7828
        char scratch[MAX_WIDTH];
7829
        int scratchLen;
7830
7831
        if ((scratchLen = XSNPRINTF(scratch, MAX_WIDTH,
7832
                                     "%*s%s", indent, "", type))
7833
            >= MAX_WIDTH)
7834
        {
7835
            return WOLFSSL_FAILURE;
7836
        }
7837
        if (wolfSSL_BIO_write(bio, scratch, scratchLen) <= 0) {
7838
            return WOLFSSL_FAILURE;
7839
        }
7840
        if (wolfSSL_X509_NAME_print_ex(bio, name, 1, 0) <= 0) {
7841
            return WOLFSSL_FAILURE;
7842
        }
7843
        if (wolfSSL_BIO_write(bio, "\n", (int)XSTRLEN("\n")) <= 0) {
7844
            return WOLFSSL_FAILURE;
7845
        }
7846
    }
7847
    return WOLFSSL_SUCCESS;
7848
}
7849
7850
7851
/* human readable print out of x509 version
7852
 * return WOLFSSL_SUCCESS on success
7853
 */
7854
static int X509PrintVersion(WOLFSSL_BIO* bio, int version, int indent)
7855
{
7856
    char scratch[MAX_WIDTH];
7857
    int scratchLen;
7858
7859
    if (indent < 0) indent = 0;
7860
    if (indent > MAX_INDENT) indent = MAX_INDENT;
7861
7862
    scratchLen = XSNPRINTF(scratch, MAX_WIDTH, "%*s%s", indent, "", "Version:");
7863
    if ((scratchLen < 0) || (scratchLen >= MAX_WIDTH)) {
7864
        return WOLFSSL_FAILURE;
7865
    }
7866
7867
    if (wolfSSL_BIO_write(bio, scratch, scratchLen) <= 0) {
7868
        return WOLFSSL_FAILURE;
7869
    }
7870
7871
    scratchLen = XSNPRINTF(scratch, MAX_WIDTH, " %d (0x%x)\n",
7872
                    version, (byte)version-1);
7873
    if ((scratchLen < 0) || (scratchLen >= MAX_WIDTH)) {
7874
        return WOLFSSL_FAILURE;
7875
    }
7876
7877
    if (wolfSSL_BIO_write(bio, scratch, scratchLen) <= 0) {
7878
        return WOLFSSL_FAILURE;
7879
    }
7880
    return WOLFSSL_SUCCESS;
7881
}
7882
7883
#ifdef WOLFSSL_CERT_REQ
7884
/* Print out of REQ attributes
7885
 * return WOLFSSL_SUCCESS on success
7886
 */
7887
static int X509PrintReqAttributes(WOLFSSL_BIO* bio, WOLFSSL_X509* x509,
7888
        int indent)
7889
{
7890
    WOLFSSL_X509_ATTRIBUTE* attr;
7891
    char scratch[MAX_WIDTH];
7892
    int scratchLen;
7893
    int i = 0;
7894
7895
    if (indent < 0) indent = 0;
7896
    if (indent > MAX_INDENT) indent = MAX_INDENT;
7897
7898
    if ((scratchLen = XSNPRINTF(scratch, MAX_WIDTH,
7899
                                 "%*s%s", indent, "", "Attributes: \n"))
7900
        >= MAX_WIDTH)
7901
    {
7902
        return WOLFSSL_FAILURE;
7903
    }
7904
    if (wolfSSL_BIO_write(bio, scratch, scratchLen) <= 0) {
7905
        return WOLFSSL_FAILURE;
7906
    }
7907
    do {
7908
        attr = wolfSSL_X509_REQ_get_attr(x509, i);
7909
        if (attr != NULL) {
7910
            char lName[NAME_SZ/4]; /* NAME_SZ default is 80 */
7911
            int lNameSz = NAME_SZ/4;
7912
            const byte* data;
7913
7914
            if (wolfSSL_OBJ_obj2txt(lName, lNameSz, attr->object, 0)
7915
                == WC_NO_ERR_TRACE(WOLFSSL_FAILURE))
7916
            {
7917
                return WOLFSSL_FAILURE;
7918
            }
7919
            lNameSz = (int)XSTRLEN(lName);
7920
            data = wolfSSL_ASN1_STRING_get0_data(
7921
                    attr->value->value.asn1_string);
7922
            if (data == NULL) {
7923
                WOLFSSL_MSG("No REQ attribute found when expected");
7924
                return WOLFSSL_FAILURE;
7925
            }
7926
            if ((scratchLen = XSNPRINTF(scratch, MAX_WIDTH,
7927
                          "%*s%s%*s:%s\n", indent+4, "",
7928
                          lName, (NAME_SZ/4)-lNameSz, "", data))
7929
                >= MAX_WIDTH)
7930
            {
7931
                return WOLFSSL_FAILURE;
7932
            }
7933
            if (wolfSSL_BIO_write(bio, scratch, scratchLen) <= 0) {
7934
                WOLFSSL_MSG("Error writing REQ attribute");
7935
                return WOLFSSL_FAILURE;
7936
            }
7937
        }
7938
        i++;
7939
    } while (attr != NULL);
7940
7941
    return WOLFSSL_SUCCESS;
7942
}
7943
7944
7945
/*
7946
 * return WOLFSSL_SUCCESS on success
7947
 */
7948
int wolfSSL_X509_REQ_print(WOLFSSL_BIO* bio, WOLFSSL_X509* x509)
7949
{
7950
    char subjType[] = "Subject: ";
7951
7952
    if (bio == NULL || x509 == NULL) {
7953
        return WOLFSSL_FAILURE;
7954
    }
7955
7956
    if (wolfSSL_BIO_write(bio, "Certificate Request:\n",
7957
                  (int)XSTRLEN("Certificate Request:\n")) <= 0) {
7958
            return WOLFSSL_FAILURE;
7959
    }
7960
7961
    if (wolfSSL_BIO_write(bio, "    Data:\n",
7962
                  (int)XSTRLEN("    Data:\n")) <= 0) {
7963
            return WOLFSSL_FAILURE;
7964
    }
7965
7966
    /* print version of cert.  Note that we increment by 1 because for REQs,
7967
     * the value stored in x509->version is the actual value of the field; not
7968
     * the version. */
7969
    if (X509PrintVersion(bio, (int)wolfSSL_X509_REQ_get_version(x509) + 1, 8)
7970
            != WOLFSSL_SUCCESS) {
7971
        return WOLFSSL_FAILURE;
7972
    }
7973
7974
    if (X509PrintSerial(bio, x509, 8) != WOLFSSL_SUCCESS) {
7975
        return WOLFSSL_FAILURE;
7976
    }
7977
7978
    /* print subject */
7979
    if (X509PrintName(bio, wolfSSL_X509_get_subject_name(x509), subjType, 8)
7980
            != WOLFSSL_SUCCESS) {
7981
        return WOLFSSL_FAILURE;
7982
    }
7983
7984
    /* get and print public key */
7985
    if (X509PrintPubKey(bio, x509, 8) != WOLFSSL_SUCCESS) {
7986
        return WOLFSSL_FAILURE;
7987
    }
7988
7989
    /* print out extensions */
7990
    if (X509PrintExtensions(bio, x509, 4) != WOLFSSL_SUCCESS) {
7991
        return WOLFSSL_FAILURE;
7992
    }
7993
7994
    /* print out req attributes */
7995
    if (X509PrintReqAttributes(bio, x509, 4) != WOLFSSL_SUCCESS) {
7996
        return WOLFSSL_FAILURE;
7997
    }
7998
7999
    /* print out signature */
8000
    if (X509PrintSignature(bio, x509, 0, 4) != WOLFSSL_SUCCESS) {
8001
        return WOLFSSL_FAILURE;
8002
    }
8003
8004
    /* done with print out */
8005
    if (wolfSSL_BIO_write(bio, "\n\0", (int)XSTRLEN("\n\0")) <= 0) {
8006
        return WOLFSSL_FAILURE;
8007
    }
8008
8009
    return WOLFSSL_SUCCESS;
8010
}
8011
#endif /* WOLFSSL_CERT_REQ */
8012
8013
8014
/* Writes the human readable form of x509 to bio.
8015
 *
8016
 * bio  WOLFSSL_BIO to write to.
8017
 * x509 Certificate to write.
8018
 *
8019
 * returns WOLFSSL_SUCCESS on success and WOLFSSL_FAILURE on failure
8020
 */
8021
int wolfSSL_X509_print_ex(WOLFSSL_BIO* bio, WOLFSSL_X509* x509,
8022
    unsigned long nmflags, unsigned long cflag)
8023
{
8024
    char issuType[] = "Issuer:";
8025
    char subjType[] = "Subject:";
8026
8027
    WOLFSSL_ENTER("wolfSSL_X509_print_ex");
8028
8029
    /* flags currently not supported */
8030
    (void)nmflags;
8031
    (void)cflag;
8032
8033
    if (bio == NULL || x509 == NULL) {
8034
        return WOLFSSL_FAILURE;
8035
    }
8036
8037
    if (wolfSSL_BIO_write(bio, "Certificate:\n",
8038
                  (int)XSTRLEN("Certificate:\n")) <= 0) {
8039
            return WOLFSSL_FAILURE;
8040
    }
8041
8042
    if (wolfSSL_BIO_write(bio, "    Data:\n",
8043
                  (int)XSTRLEN("    Data:\n")) <= 0) {
8044
            return WOLFSSL_FAILURE;
8045
    }
8046
8047
    /* print version of cert */
8048
    if (X509PrintVersion(bio, wolfSSL_X509_version(x509), 8)
8049
            != WOLFSSL_SUCCESS) {
8050
        return WOLFSSL_FAILURE;
8051
    }
8052
8053
    /* print serial number out */
8054
    if (X509PrintSerial(bio, x509, 8) != WOLFSSL_SUCCESS) {
8055
        return WOLFSSL_FAILURE;
8056
    }
8057
8058
    /* print out signature algo*/
8059
    if (X509PrintSignature(bio, x509, 1, 8) != WOLFSSL_SUCCESS) {
8060
        return WOLFSSL_FAILURE;
8061
    }
8062
8063
    /* print issuer */
8064
    if (X509PrintName(bio, wolfSSL_X509_get_issuer_name(x509), issuType, 8)
8065
            != WOLFSSL_SUCCESS) {
8066
        return WOLFSSL_FAILURE;
8067
    }
8068
8069
    #ifndef NO_ASN_TIME
8070
    /* print validity */
8071
    if (X509PrintValidity(bio, &x509->notBefore, &x509->notAfter, 8)
8072
        != WOLFSSL_SUCCESS) {
8073
        return WOLFSSL_FAILURE;
8074
    }
8075
    #endif /* NO_ASN_TIME */
8076
8077
    /* print subject */
8078
    if (X509PrintName(bio, wolfSSL_X509_get_subject_name(x509), subjType, 8)
8079
            != WOLFSSL_SUCCESS) {
8080
        return WOLFSSL_FAILURE;
8081
    }
8082
8083
    /* get and print public key */
8084
    if (X509PrintPubKey(bio, x509, 8) != WOLFSSL_SUCCESS) {
8085
        return WOLFSSL_FAILURE;
8086
    }
8087
8088
    /* print out extensions */
8089
    if (X509PrintExtensions(bio, x509, 8) != WOLFSSL_SUCCESS) {
8090
        return WOLFSSL_FAILURE;
8091
    }
8092
8093
    /* print out signature */
8094
    if (X509PrintSignature(bio, x509, 0, 4) != WOLFSSL_SUCCESS) {
8095
        return WOLFSSL_FAILURE;
8096
    }
8097
8098
    /* done with print out */
8099
    if (wolfSSL_BIO_write(bio, "\n\0", (int)XSTRLEN("\n\0")) <= 0) {
8100
        return WOLFSSL_FAILURE;
8101
    }
8102
8103
    return WOLFSSL_SUCCESS;
8104
}
8105
int wolfSSL_X509_print(WOLFSSL_BIO* bio, WOLFSSL_X509* x509)
8106
{
8107
    return wolfSSL_X509_print_ex(bio, x509, 0, 0);
8108
}
8109
8110
#if defined(WOLFSSL_ACERT)
8111
/* Retrieve sig NID from an ACERT.
8112
 *
8113
 * returns  NID on success
8114
 * returns  0 on failure
8115
 */
8116
int wolfSSL_X509_ACERT_get_signature_nid(const WOLFSSL_X509_ACERT *x509)
8117
{
8118
    if (x509 == NULL) {
8119
        return 0;
8120
    }
8121
8122
    return oid2nid((word32)x509->sigOID, oidSigType);
8123
}
8124
8125
static int X509AcertPrintSignature(WOLFSSL_BIO* bio, WOLFSSL_X509_ACERT* x509,
8126
                                   int algOnly, int indent)
8127
{
8128
    int sigSz = 0;
8129
    if (wolfSSL_X509_ACERT_get_signature(x509, NULL, &sigSz) <= 0) {
8130
        return WOLFSSL_FAILURE;
8131
    }
8132
8133
    if (sigSz > 0) {
8134
        unsigned char* sig;
8135
        int sigNid;
8136
8137
        sigNid = wolfSSL_X509_ACERT_get_signature_nid(x509);
8138
        if (sigNid <= 0) {
8139
            return WOLFSSL_FAILURE;
8140
        }
8141
8142
        sig = (unsigned char*)XMALLOC(sigSz, NULL, DYNAMIC_TYPE_TMP_BUFFER);
8143
        if (sig == NULL) {
8144
            return WOLFSSL_FAILURE;
8145
        }
8146
8147
        if (wolfSSL_X509_ACERT_get_signature(x509, sig, &sigSz) <= 0) {
8148
            XFREE(sig, NULL, DYNAMIC_TYPE_TMP_BUFFER);
8149
            return WOLFSSL_FAILURE;
8150
        }
8151
8152
        if (X509PrintSignature_ex(bio, sig, sigSz, sigNid, algOnly, indent)
8153
                != WOLFSSL_SUCCESS) {
8154
            XFREE(sig, NULL, DYNAMIC_TYPE_TMP_BUFFER);
8155
            return WOLFSSL_FAILURE;
8156
        }
8157
8158
        if (sig != NULL) {
8159
            XFREE(sig, NULL, DYNAMIC_TYPE_TMP_BUFFER);
8160
        }
8161
8162
    }
8163
8164
    return WOLFSSL_SUCCESS;
8165
}
8166
8167
static int X509AcertPrintSerial(WOLFSSL_BIO* bio, WOLFSSL_X509_ACERT* x509,
8168
                                int indent)
8169
{
8170
    unsigned char serial[32];
8171
    int  sz = sizeof(serial);
8172
8173
    XMEMSET(serial, 0, sz);
8174
    if (wolfSSL_X509_ACERT_get_serial_number(x509, serial, &sz)
8175
        == WOLFSSL_SUCCESS) {
8176
        X509PrintSerial_ex(bio, serial, sz, 1, indent);
8177
    }
8178
    return WOLFSSL_SUCCESS;
8179
}
8180
8181
int wolfSSL_X509_ACERT_print(WOLFSSL_BIO* bio, WOLFSSL_X509_ACERT* x509)
8182
{
8183
    const char * hdr =                "Attribute Certificate:\n";
8184
    const char * data_hdr =           "    Data:\n";
8185
    const char * holder_hdr =         "        Holder:\n";
8186
    const char * holder_issuer_hdr =  "            Issuer:";
8187
    const char * holder_name_hdr =    "            Name:";
8188
    const char * attcert_issuer_hdr = "        Issuer:";
8189
8190
    if (bio == NULL || x509 == NULL) {
8191
        return WOLFSSL_FAILURE;
8192
    }
8193
8194
    /* print acert header */
8195
    if (wolfSSL_BIO_write(bio, hdr, (int)XSTRLEN(hdr)) <= 0) {
8196
        return WOLFSSL_FAILURE;
8197
    }
8198
8199
    /* print data header */
8200
    if (wolfSSL_BIO_write(bio, data_hdr, (int)XSTRLEN(data_hdr)) <= 0) {
8201
        return WOLFSSL_FAILURE;
8202
    }
8203
8204
    /* print version of cert */
8205
    if (X509PrintVersion(bio, wolfSSL_X509_ACERT_version(x509), 8)
8206
            != WOLFSSL_SUCCESS) {
8207
        return WOLFSSL_FAILURE;
8208
    }
8209
8210
    /* print serial number out */
8211
    if (X509AcertPrintSerial(bio, x509, 8) != WOLFSSL_SUCCESS) {
8212
        return WOLFSSL_FAILURE;
8213
    }
8214
8215
    /* print holder field */
8216
    if (wolfSSL_BIO_write(bio, holder_hdr, (int)XSTRLEN(holder_hdr)) <= 0) {
8217
        return WOLFSSL_FAILURE;
8218
    }
8219
8220
    if (x509->holderEntityName != NULL) {
8221
        /* print issuer header */
8222
        if (wolfSSL_BIO_write(bio, holder_name_hdr,
8223
            (int)XSTRLEN(holder_name_hdr)) <= 0) {
8224
            return WOLFSSL_FAILURE;
8225
        }
8226
8227
        if (X509_print_name_entry(bio, x509->holderEntityName, 1)
8228
                != WOLFSSL_SUCCESS) {
8229
            return WOLFSSL_FAILURE;
8230
        }
8231
    }
8232
8233
    if (x509->holderIssuerName != NULL) {
8234
        /* print issuer header */
8235
        if (wolfSSL_BIO_write(bio, holder_issuer_hdr,
8236
            (int)XSTRLEN(holder_issuer_hdr)) <= 0) {
8237
            return WOLFSSL_FAILURE;
8238
        }
8239
8240
        if (X509_print_name_entry(bio, x509->holderIssuerName, 1)
8241
            != WOLFSSL_SUCCESS) {
8242
            return WOLFSSL_FAILURE;
8243
        }
8244
    }
8245
8246
    if (x509->holderSerialSz > 0) {
8247
        X509PrintSerial_ex(bio, x509->holderSerial, x509->holderSerialSz,
8248
                           1, 12);
8249
    }
8250
8251
    /* print issuer header */
8252
    if (wolfSSL_BIO_write(bio, attcert_issuer_hdr,
8253
        (int)XSTRLEN(attcert_issuer_hdr)) <= 0) {
8254
        return WOLFSSL_FAILURE;
8255
    }
8256
8257
    if (x509->AttCertIssuerName != NULL) {
8258
        if (X509_print_name_entry(bio, x509->AttCertIssuerName, 1)
8259
                != WOLFSSL_SUCCESS) {
8260
            return WOLFSSL_FAILURE;
8261
        }
8262
    }
8263
    else {
8264
        const char * msg = " Issuer type not supported.\n";
8265
        if (wolfSSL_BIO_write(bio, msg, (int)XSTRLEN(msg)) <= 0) {
8266
            return WOLFSSL_FAILURE;
8267
        }
8268
    }
8269
8270
    #ifndef NO_ASN_TIME
8271
    /* print validity */
8272
    if (X509PrintValidity(bio, &x509->notBefore, &x509->notAfter, 8)
8273
        != WOLFSSL_SUCCESS) {
8274
        return WOLFSSL_FAILURE;
8275
    }
8276
    #endif /* NO_ASN_TIME */
8277
8278
    /* print raw attributes */
8279
    if (x509->rawAttr && x509->rawAttrLen > 0) {
8280
        char attr_hdr[128]; /* buffer for XSNPRINTF */
8281
8282
        if (XSNPRINTF(attr_hdr, 128, "%*s%s: %d bytes\n", 8, "",
8283
                    "Attributes", x509->rawAttrLen) >= 128) {
8284
            return WOLFSSL_FAILURE;
8285
        }
8286
8287
        if (wolfSSL_BIO_write(bio, attr_hdr, (int)XSTRLEN(attr_hdr)) <= 0) {
8288
                return WOLFSSL_FAILURE;
8289
        }
8290
    }
8291
8292
    /* print out sig algo and signature */
8293
    if (X509AcertPrintSignature(bio, x509, 0, 8) != WOLFSSL_SUCCESS) {
8294
        return WOLFSSL_FAILURE;
8295
    }
8296
8297
    /* done with print out */
8298
    if (wolfSSL_BIO_write(bio, "\n\0", (int)XSTRLEN("\n\0")) <= 0) {
8299
        return WOLFSSL_FAILURE;
8300
    }
8301
8302
    return WOLFSSL_SUCCESS;
8303
}
8304
#endif /* WOLFSSL_ACERT */
8305
8306
#ifndef NO_FILESYSTEM
8307
int wolfSSL_X509_print_fp(XFILE fp, WOLFSSL_X509 *x509)
8308
{
8309
    WOLFSSL_BIO* bio;
8310
    int ret;
8311
8312
    WOLFSSL_ENTER("wolfSSL_X509_print_fp");
8313
8314
    if (!fp || !x509) {
8315
        WOLFSSL_MSG("Bad parameter");
8316
        return WOLFSSL_FAILURE;
8317
    }
8318
8319
    if (!(bio = wolfSSL_BIO_new(wolfSSL_BIO_s_file()))) {
8320
        WOLFSSL_MSG("wolfSSL_BIO_new wolfSSL_BIO_s_file error");
8321
        return WOLFSSL_FAILURE;
8322
    }
8323
8324
    if (wolfSSL_BIO_set_fp(bio, fp, WOLFSSL_BIO_NOCLOSE) != WOLFSSL_SUCCESS) {
8325
        WOLFSSL_MSG("wolfSSL_BIO_set_fp error");
8326
        wolfSSL_BIO_free(bio);
8327
        return WOLFSSL_FAILURE;
8328
    }
8329
8330
    ret = wolfSSL_X509_print(bio, x509);
8331
8332
    wolfSSL_BIO_free(bio);
8333
8334
    return ret;
8335
}
8336
#endif /* NO_FILESYSTEM */
8337
8338
#endif /* XSNPRINTF */
8339
8340
int wolfSSL_X509_signature_print(WOLFSSL_BIO *bp,
8341
        const WOLFSSL_X509_ALGOR *sigalg, const WOLFSSL_ASN1_STRING *sig)
8342
{
8343
    int length = 0;
8344
    word32 idx = 0;
8345
    int i;
8346
8347
    (void)sig;
8348
8349
    WOLFSSL_ENTER("wolfSSL_X509_signature_print");
8350
8351
    if (!bp || !sigalg) {
8352
        WOLFSSL_MSG("Bad parameter");
8353
        return WOLFSSL_FAILURE;
8354
    }
8355
8356
    if ((sigalg->algorithm->obj == NULL) ||
8357
        (sigalg->algorithm->obj[idx] != ASN_OBJECT_ID)) {
8358
        WOLFSSL_MSG("Bad ASN1 Object");
8359
        return WOLFSSL_FAILURE;
8360
    }
8361
    idx++; /* skip object id */
8362
8363
    if (GetLength((const byte*)sigalg->algorithm->obj, &idx, &length,
8364
                  sigalg->algorithm->objSz) < 0 || length < 0) {
8365
        return WOLFSSL_FAILURE;
8366
    }
8367
8368
    if (wolfSSL_BIO_puts(bp, "    Raw Signature Algorithm:") <= 0) {
8369
        WOLFSSL_MSG("wolfSSL_BIO_puts error");
8370
        return WOLFSSL_FAILURE;
8371
    }
8372
8373
    for (i = 0; i < length; ++i) {
8374
        char hex_digits[4];
8375
        if (XSNPRINTF(hex_digits, sizeof(hex_digits), "%c%02X", i>0 ? ':' : ' ',
8376
                  (unsigned int)sigalg->algorithm->obj[idx+i])
8377
            >= (int)sizeof(hex_digits))
8378
        {
8379
            WOLFSSL_MSG("buffer overrun");
8380
            return WOLFSSL_FAILURE;
8381
        }
8382
        if (wolfSSL_BIO_puts(bp, hex_digits) <= 0)
8383
            return WOLFSSL_FAILURE;
8384
    }
8385
8386
    if (wolfSSL_BIO_puts(bp, "\n") <= 0)
8387
        return WOLFSSL_FAILURE;
8388
8389
    return WOLFSSL_SUCCESS;
8390
}
8391
#endif /* !NO_BIO */
8392
8393
#ifndef NO_WOLFSSL_STUB
8394
void wolfSSL_X509_get0_signature(const WOLFSSL_ASN1_BIT_STRING **psig,
8395
        const WOLFSSL_X509_ALGOR **palg, const WOLFSSL_X509 *x509)
8396
{
8397
    (void)psig;
8398
    (void)palg;
8399
    (void)x509;
8400
    WOLFSSL_STUB("wolfSSL_X509_get0_signature");
8401
}
8402
#endif
8403
8404
#endif /* OPENSSL_EXTRA */
8405
8406
#if defined(OPENSSL_EXTRA) || defined(WOLFSSL_WPAS_SMALL)
8407
const char* wolfSSL_X509_verify_cert_error_string(long err)
8408
{
8409
    return wolfSSL_ERR_reason_error_string((unsigned long)err);
8410
}
8411
#endif /* OPENSSL_EXTRA || WOLFSSL_WPAS_SMALL */
8412
8413
#ifdef OPENSSL_EXTRA
8414
8415
/* Add directory path that will be used for loading certs and CRLs
8416
 * which have the <hash>.rn name format.
8417
 * type may be WOLFSSL_FILETYPE_PEM or WOLFSSL_FILETYPE_ASN1.
8418
 * returns WOLFSSL_SUCCESS on successful, otherwise negative or zero. */
8419
int wolfSSL_X509_LOOKUP_add_dir(WOLFSSL_X509_LOOKUP* lookup, const char* dir,
8420
                               long type)
8421
{
8422
    return wolfSSL_X509_LOOKUP_ctrl(lookup, WOLFSSL_X509_L_ADD_DIR, dir, type,
8423
                                    NULL);
8424
}
8425
8426
int wolfSSL_X509_LOOKUP_load_file(WOLFSSL_X509_LOOKUP* lookup,
8427
                                 const char* file, long type)
8428
{
8429
#if !defined(NO_FILESYSTEM) && \
8430
    (defined(WOLFSSL_PEM_TO_DER) || defined(WOLFSSL_DER_TO_PEM))
8431
    int           ret = WC_NO_ERR_TRACE(WOLFSSL_FAILURE);
8432
    XFILE         fp;
8433
    long          sz;
8434
    byte*         pem = NULL;
8435
    byte*         curr = NULL;
8436
    byte*         prev = NULL;
8437
    const char* header = NULL;
8438
    const char* footer = NULL;
8439
8440
    if (type != WOLFSSL_FILETYPE_PEM)
8441
        return WS_RETURN_CODE(BAD_FUNC_ARG, (int)WOLFSSL_FAILURE);
8442
8443
    fp = XFOPEN(file, "rb");
8444
    if (fp == XBADFILE)
8445
        return WS_RETURN_CODE(BAD_FUNC_ARG, (int)WOLFSSL_FAILURE);
8446
8447
    if (XFSEEK(fp, 0, XSEEK_END) != 0) {
8448
        XFCLOSE(fp);
8449
        return WS_RETURN_CODE(WOLFSSL_BAD_FILE,WOLFSSL_FAILURE);
8450
    }
8451
    sz = XFTELL(fp);
8452
    if (XFSEEK(fp, 0, XSEEK_SET) != 0) {
8453
        XFCLOSE(fp);
8454
        return WS_RETURN_CODE(WOLFSSL_BAD_FILE,WOLFSSL_FAILURE);
8455
    }
8456
8457
    if (sz > MAX_WOLFSSL_FILE_SIZE || sz <= 0) {
8458
        WOLFSSL_MSG("X509_LOOKUP_load_file size error");
8459
        goto end;
8460
    }
8461
8462
    pem = (byte*)XMALLOC(sz, 0, DYNAMIC_TYPE_PEM);
8463
    if (pem == NULL) {
8464
        ret = MEMORY_ERROR;
8465
        goto end;
8466
    }
8467
8468
    /* Read in file which may be CRLs or certificates. */
8469
    if (XFREAD(pem, (size_t)sz, 1, fp) != 1)
8470
        goto end;
8471
8472
    prev = curr = pem;
8473
    do {
8474
        /* get PEM header and footer based on type */
8475
        if (wc_PemGetHeaderFooter(CRL_TYPE, &header, &footer) == 0 &&
8476
                XSTRNSTR((char*)curr, header, sz) != NULL) {
8477
#ifdef HAVE_CRL
8478
            WOLFSSL_CERT_MANAGER* cm = lookup->store->cm;
8479
8480
            if (cm->crl == NULL) {
8481
                if (wolfSSL_CertManagerEnableCRL(cm, WOLFSSL_CRL_CHECK)
8482
                    != WOLFSSL_SUCCESS) {
8483
                    WOLFSSL_MSG("Enable CRL failed");
8484
                    goto end;
8485
                }
8486
            }
8487
8488
            ret = BufferLoadCRL(cm->crl, curr, sz, WOLFSSL_FILETYPE_PEM,
8489
                NO_VERIFY);
8490
            if (ret != WOLFSSL_SUCCESS)
8491
                goto end;
8492
#endif
8493
            curr = (byte*)XSTRNSTR((char*)curr, footer, sz);
8494
        }
8495
        else if (wc_PemGetHeaderFooter(CERT_TYPE, &header, &footer) == 0 &&
8496
                XSTRNSTR((char*)curr, header, sz) != NULL) {
8497
            ret = X509StoreLoadCertBuffer(lookup->store, curr,
8498
                                        (word32)sz, WOLFSSL_FILETYPE_PEM);
8499
            if (ret != WOLFSSL_SUCCESS)
8500
                goto end;
8501
            curr = (byte*)XSTRNSTR((char*)curr, footer, sz);
8502
        }
8503
        else
8504
            goto end;
8505
8506
        if (curr == NULL)
8507
            goto end;
8508
8509
        curr++;
8510
        sz -= (long)(curr - prev);
8511
        prev = curr;
8512
    }
8513
    while (ret == WOLFSSL_SUCCESS);
8514
8515
end:
8516
    XFREE(pem, 0, DYNAMIC_TYPE_PEM);
8517
    XFCLOSE(fp);
8518
    return WS_RETURN_CODE(ret, (int)WOLFSSL_FAILURE);
8519
#else
8520
    (void)lookup;
8521
    (void)file;
8522
    (void)type;
8523
    return WS_RETURN_CODE(WOLFSSL_FAILURE,WOLFSSL_FAILURE);
8524
#endif
8525
}
8526
8527
WOLFSSL_X509_LOOKUP_METHOD* wolfSSL_X509_LOOKUP_hash_dir(void)
8528
{
8529
    /* Method implementation in functions. */
8530
    static WOLFSSL_X509_LOOKUP_METHOD meth = { 1 };
8531
    return &meth;
8532
}
8533
8534
WOLFSSL_X509_LOOKUP_METHOD* wolfSSL_X509_LOOKUP_file(void)
8535
{
8536
    /* Method implementation in functions. */
8537
    static WOLFSSL_X509_LOOKUP_METHOD meth = { 0 };
8538
    return &meth;
8539
}
8540
8541
/* set directory path to load certificate or CRL which have the hash.N form */
8542
/* for late use                                                             */
8543
/* @param ctx    a pointer to WOLFSSL_BY_DIR structure                      */
8544
/* @param argc   directory path                                             */
8545
/* @param argl   file type, either WOLFSSL_FILETYPE_PEM or                  */
8546
/*                                          WOLFSSL_FILETYPE_ASN1           */
8547
/* @return WOLFSSL_SUCCESS on successful, otherwise negative or zero        */
8548
static int x509AddCertDir(WOLFSSL_BY_DIR *ctx, const char *argc, long argl)
8549
{
8550
#if defined(OPENSSL_ALL) && !defined(NO_FILESYSTEM) && !defined(NO_WOLFSSL_DIR)
8551
    WOLFSSL_BY_DIR_entry *entry;
8552
    size_t pathLen;
8553
    int i, num;
8554
    const char* c;
8555
    WC_DECLARE_VAR(buf, char, MAX_FILENAME_SZ, 0);
8556
8557
    WOLFSSL_ENTER("x509AddCertDir");
8558
8559
    pathLen = 0;
8560
    c = argc;
8561
    /* sanity check, zero length */
8562
    if (ctx == NULL || c == NULL || *c == '\0')
8563
        return WOLFSSL_FAILURE;
8564
8565
#ifdef WOLFSSL_SMALL_STACK
8566
    buf = (char*)XMALLOC(MAX_FILENAME_SZ, NULL, DYNAMIC_TYPE_OPENSSL);
8567
    if (buf == NULL) {
8568
        WOLFSSL_LEAVE("x509AddCertDir", MEMORY_E);
8569
        return MEMORY_E;
8570
    }
8571
#endif
8572
8573
    XMEMSET(buf, 0, MAX_FILENAME_SZ);
8574
8575
    do {
8576
        if (*c == SEPARATOR_CHAR || *c == '\0') {
8577
8578
            num = wolfSSL_sk_BY_DIR_entry_num(ctx->dir_entry);
8579
8580
            for (i=0; i<num; i++) {
8581
8582
                entry = wolfSSL_sk_BY_DIR_entry_value(ctx->dir_entry, i);
8583
8584
                if (XSTRLEN(entry->dir_name) == pathLen &&
8585
                    XSTRNCMP(entry->dir_name, buf, pathLen) == 0) {
8586
                    WOLFSSL_MSG("dir entry found");
8587
                    break;
8588
                }
8589
            }
8590
8591
            if (num == -1 || i == num) {
8592
                WOLFSSL_MSG("no entry found");
8593
8594
                if (ctx->dir_entry == NULL) {
8595
                    ctx->dir_entry = wolfSSL_sk_BY_DIR_entry_new_null();
8596
8597
                    if (ctx->dir_entry == NULL) {
8598
                        WOLFSSL_MSG("failed to allocate dir_entry");
8599
                            WC_FREE_VAR_EX(buf, 0, DYNAMIC_TYPE_OPENSSL);
8600
                        return 0;
8601
                    }
8602
                }
8603
8604
                entry = wolfSSL_BY_DIR_entry_new();
8605
                if (entry == NULL) {
8606
                    WOLFSSL_MSG("failed to allocate dir entry");
8607
                        WC_FREE_VAR_EX(buf, 0, DYNAMIC_TYPE_OPENSSL);
8608
                    return 0;
8609
                }
8610
                entry->dir_type = (int)argl;
8611
                entry->dir_name = (char*)XMALLOC(pathLen + 1/* \0 termination*/
8612
                                                , NULL, DYNAMIC_TYPE_OPENSSL);
8613
                entry->hashes = wolfSSL_sk_BY_DIR_HASH_new_null();
8614
                if (entry->dir_name == NULL || entry->hashes == NULL) {
8615
                    WOLFSSL_MSG("failed to allocate dir name");
8616
                    wolfSSL_BY_DIR_entry_free(entry);
8617
                        WC_FREE_VAR_EX(buf, 0, DYNAMIC_TYPE_OPENSSL);
8618
                    return 0;
8619
                }
8620
8621
                XSTRNCPY(entry->dir_name, buf, pathLen);
8622
                entry->dir_name[pathLen] = '\0';
8623
8624
                if (wolfSSL_sk_BY_DIR_entry_push(ctx->dir_entry, entry) <= 0) {
8625
                    wolfSSL_BY_DIR_entry_free(entry);
8626
                        WC_FREE_VAR_EX(buf, 0, DYNAMIC_TYPE_OPENSSL);
8627
                    return 0;
8628
                }
8629
            }
8630
            /* skip separator */
8631
            if (*c == SEPARATOR_CHAR) c++;
8632
8633
            pathLen = 0;
8634
            XMEMSET(buf, 0, MAX_FILENAME_SZ);
8635
        }
8636
        buf[pathLen++] = *c;
8637
8638
    } while(*c++ != '\0');
8639
8640
    WC_FREE_VAR_EX(buf, 0, DYNAMIC_TYPE_OPENSSL);
8641
8642
    return WOLFSSL_SUCCESS;
8643
#else
8644
    (void)ctx;
8645
    (void)argc;
8646
    (void)argl;
8647
    return WOLFSSL_NOT_IMPLEMENTED;
8648
#endif
8649
}
8650
8651
/* set additional data to X509_LOOKUP                                   */
8652
/* @param ctx    a pointer to X509_LOOKUP structure                     */
8653
/* @param cmd    control command :                                      */
8654
/*               X509_L_FILE_LOAD, X509_L_ADD_DIR X509_L_ADD_STORE or   */
8655
/*               X509_L_LOAD_STORE                                      */
8656
/* @param argc   arguments for the control command                      */
8657
/* @param argl   arguments for the control command                      */
8658
/* @param **ret  return value of the control command                    */
8659
/* @return WOLFSSL_SUCCESS on successful, otherwise WOLFSSL_FAILURE     */
8660
/* note: WOLFSSL_X509_L_ADD_STORE and WOLFSSL_X509_L_LOAD_STORE have not*/
8661
/*       yet implemented. It returns WOLFSSL_NOT_IMPLEMENTED            */
8662
/*       when those control commands are passed.                        */
8663
int wolfSSL_X509_LOOKUP_ctrl(WOLFSSL_X509_LOOKUP *ctx, int cmd,
8664
        const char *argc, long argl, char **ret)
8665
{
8666
    int lret = WC_NO_ERR_TRACE(WOLFSSL_FAILURE);
8667
8668
    WOLFSSL_ENTER("wolfSSL_X509_LOOKUP_ctrl");
8669
#if !defined(NO_FILESYSTEM)
8670
    if (ctx != NULL) {
8671
        switch (cmd) {
8672
        case WOLFSSL_X509_L_FILE_LOAD:
8673
            /* expects to return a number of processed cert or crl file */
8674
            lret = wolfSSL_X509_load_cert_crl_file(ctx, argc, (int)argl) > 0 ?
8675
                            WOLFSSL_SUCCESS : WOLFSSL_FAILURE;
8676
            break;
8677
        case WOLFSSL_X509_L_ADD_DIR:
8678
            /* store directory location to use it later */
8679
#if !defined(NO_WOLFSSL_DIR)
8680
            lret = x509AddCertDir(ctx->dirs, argc, argl);
8681
#else
8682
            (void)x509AddCertDir;
8683
            lret = WOLFSSL_NOT_IMPLEMENTED;
8684
#endif
8685
            break;
8686
        case WOLFSSL_X509_L_ADD_STORE:
8687
        case WOLFSSL_X509_L_LOAD_STORE:
8688
            return WOLFSSL_NOT_IMPLEMENTED;
8689
8690
        default:
8691
            break;
8692
        }
8693
    }
8694
    (void)ret;
8695
#else
8696
    (void)ctx;
8697
    (void)argc;
8698
    (void)argl;
8699
    (void)ret;
8700
    (void)cmd;
8701
    (void)x509AddCertDir;
8702
    lret = WOLFSSL_NOT_IMPLEMENTED;
8703
#endif
8704
    return lret;
8705
}
8706
8707
8708
#if defined(WOLFSSL_CERT_GEN)
8709
static int wolfssl_x509_make_der(WOLFSSL_X509* x509, int req,
8710
        unsigned char* der, int* derSz, int includeSig);
8711
#endif
8712
8713
#ifdef WOLFSSL_CERT_GEN
8714
#ifndef NO_BIO
8715
/* Converts the X509 to DER format and outputs it into bio.
8716
 *
8717
 * bio  is the structure to hold output DER
8718
 * x509 certificate to create DER from
8719
 * req  if set then a CSR is generated
8720
 *
8721
 * returns WOLFSSL_SUCCESS on success
8722
 */
8723
static int loadX509orX509REQFromBio(WOLFSSL_BIO* bio, WOLFSSL_X509* x509,
8724
    int req)
8725
{
8726
    int ret = WC_NO_ERR_TRACE(WOLFSSL_FAILURE);
8727
    /* Get large buffer to hold cert der */
8728
    int derSz = X509_BUFFER_SZ;
8729
    WC_DECLARE_VAR(der, byte, X509_BUFFER_SZ, 0);
8730
    WOLFSSL_ENTER("wolfSSL_i2d_X509_bio");
8731
8732
    if (bio == NULL || x509 == NULL) {
8733
        return WOLFSSL_FAILURE;
8734
    }
8735
8736
#ifdef WOLFSSL_SMALL_STACK
8737
    der = (byte*)XMALLOC(derSz, NULL, DYNAMIC_TYPE_TMP_BUFFER);
8738
    if (!der) {
8739
        WOLFSSL_MSG("malloc failed");
8740
        return WOLFSSL_FAILURE;
8741
    }
8742
#endif
8743
8744
    if (wolfssl_x509_make_der(x509, req, der, &derSz, 1) != WOLFSSL_SUCCESS) {
8745
        goto cleanup;
8746
    }
8747
8748
    if (wolfSSL_BIO_write(bio, der, derSz) != derSz) {
8749
        goto cleanup;
8750
    }
8751
8752
    ret = WOLFSSL_SUCCESS;
8753
cleanup:
8754
    WC_FREE_VAR_EX(der, NULL, DYNAMIC_TYPE_TMP_BUFFER);
8755
8756
    return ret;
8757
}
8758
8759
/* Converts the X509 to DER format and outputs it into bio.
8760
 *
8761
 * bio  is the structure to hold output DER
8762
 * x509 certificate to create DER from
8763
 *
8764
 * returns WOLFSSL_SUCCESS on success
8765
 */
8766
int wolfSSL_i2d_X509_bio(WOLFSSL_BIO* bio, WOLFSSL_X509* x509)
8767
{
8768
    return loadX509orX509REQFromBio(bio, x509, 0);
8769
}
8770
8771
#ifdef WOLFSSL_CERT_REQ
8772
int wolfSSL_i2d_X509_REQ_bio(WOLFSSL_BIO* bio, WOLFSSL_X509* x509)
8773
{
8774
    return loadX509orX509REQFromBio(bio, x509, 1);
8775
}
8776
#endif /* WOLFSSL_CERT_REQ */
8777
#endif /* !NO_BIO */
8778
#endif /* WOLFSSL_CERT_GEN */
8779
8780
/* Converts an internal structure to a DER buffer
8781
 *
8782
 * x509 structure to get DER buffer from
8783
 * out  buffer to hold result. If NULL then *out is NULL then a new buffer is
8784
 *      created.
8785
 *
8786
 * returns the size of the DER result on success
8787
 */
8788
int wolfSSL_i2d_X509(WOLFSSL_X509* x509, unsigned char** out)
8789
{
8790
    const unsigned char* der;
8791
    int derSz = 0;
8792
    int advance = 1;
8793
8794
    WOLFSSL_ENTER("wolfSSL_i2d_X509");
8795
8796
    if (x509 == NULL) {
8797
        WOLFSSL_LEAVE("wolfSSL_i2d_X509", BAD_FUNC_ARG);
8798
        return BAD_FUNC_ARG;
8799
    }
8800
8801
    der = wolfSSL_X509_get_der(x509, &derSz);
8802
    if (der == NULL || derSz <= 0) {
8803
        WOLFSSL_LEAVE("wolfSSL_i2d_X509", MEMORY_E);
8804
        return MEMORY_E;
8805
    }
8806
8807
    if (out != NULL && *out == NULL) {
8808
        *out = (unsigned char*)XMALLOC(derSz, NULL, DYNAMIC_TYPE_OPENSSL);
8809
        if (*out == NULL) {
8810
            WOLFSSL_LEAVE("wolfSSL_i2d_X509", MEMORY_E);
8811
            return MEMORY_E;
8812
        }
8813
        advance = 0;
8814
    }
8815
8816
    if (out != NULL) {
8817
        XMEMCPY(*out, der, derSz);
8818
        if (advance)
8819
            *out += derSz;
8820
    }
8821
8822
    WOLFSSL_LEAVE("wolfSSL_i2d_X509", derSz);
8823
    return derSz;
8824
}
8825
8826
#ifdef WOLFSSL_DUAL_ALG_CERTS
8827
/* Generate a der preTBS from a decoded cert, and write
8828
 * to buffer.
8829
 *
8830
 * @param [in]  cert  The decoded cert to parse.
8831
 * @param [out] der   The der buffer to write in.
8832
 * @param [in]  derSz The der buffer size.
8833
 *
8834
 * @return  preTBS der size on success.
8835
 * */
8836
int wc_GeneratePreTBS(DecodedCert* cert, byte *der, int derSz) {
8837
    int ret = 0;
8838
    WOLFSSL_X509 *x = NULL;
8839
    byte certIsCSR = 0;
8840
8841
    WOLFSSL_ENTER("wc_GeneratePreTBS");
8842
8843
    if ((cert == NULL) || (der == NULL) || (derSz <= 0)) {
8844
        return BAD_FUNC_ARG;
8845
    }
8846
8847
#ifdef WOLFSSL_CERT_REQ
8848
    certIsCSR = cert->isCSR;
8849
#endif
8850
8851
    x = wolfSSL_X509_new();
8852
    if (x == NULL) {
8853
        ret = MEMORY_E;
8854
    }
8855
    else {
8856
        ret = CopyDecodedToX509(x, cert);
8857
    }
8858
8859
    if (ret == 0) {
8860
        /* Remove the altsigval extension. */
8861
        XFREE(x->altSigValDer, x->heap, DYNAMIC_TYPE_X509_EXT);
8862
        x->altSigValDer = NULL;
8863
        x->altSigValLen = 0;
8864
        /* Remove sigOID so it won't be encoded. */
8865
        x->sigOID = 0;
8866
        /* We now have a PreTBS. Encode it. */
8867
        ret = wolfssl_x509_make_der(x, certIsCSR, der, &derSz, 0);
8868
        if (ret == WOLFSSL_SUCCESS) {
8869
            ret = derSz;
8870
        }
8871
    }
8872
8873
    if (x != NULL) {
8874
        wolfSSL_X509_free(x);
8875
        x = NULL;
8876
    }
8877
8878
    return ret;
8879
}
8880
#endif /* WOLFSSL_DUAL_ALG_CERTS */
8881
8882
#ifndef NO_BIO
8883
/**
8884
 * Converts the DER from bio and creates a WOLFSSL_X509 structure from it.
8885
 * @param bio  is the structure holding DER
8886
 * @param x509 certificate to create from DER. Can be NULL
8887
 * @param req  1 for a CSR and 0 for a x509 cert
8888
 * @return pointer to WOLFSSL_X509 structure on success and NULL on fail
8889
 */
8890
static WOLFSSL_X509* d2i_X509orX509REQ_bio(WOLFSSL_BIO* bio,
8891
                                            WOLFSSL_X509** x509, int req)
8892
{
8893
    WOLFSSL_X509* localX509 = NULL;
8894
    byte* mem  = NULL;
8895
    int    size;
8896
8897
    WOLFSSL_ENTER("wolfSSL_d2i_X509_bio");
8898
8899
    if (bio == NULL) {
8900
        WOLFSSL_MSG("Bad Function Argument bio is NULL");
8901
        return NULL;
8902
    }
8903
8904
    size = wolfSSL_BIO_get_len(bio);
8905
    if (size <= 0) {
8906
        WOLFSSL_MSG("wolfSSL_BIO_get_len error. Possibly no pending data.");
8907
        WOLFSSL_ERROR(WOLFSSL_ASN1_R_HEADER_TOO_LONG_E);
8908
        return NULL;
8909
    }
8910
8911
    if (!(mem = (byte*)XMALLOC(size, NULL, DYNAMIC_TYPE_OPENSSL))) {
8912
        WOLFSSL_MSG("malloc error");
8913
        return NULL;
8914
    }
8915
8916
    if ((size = wolfSSL_BIO_read(bio, mem, size)) == 0) {
8917
        WOLFSSL_MSG("wolfSSL_BIO_read error");
8918
        XFREE(mem, NULL, DYNAMIC_TYPE_OPENSSL);
8919
        return NULL;
8920
    }
8921
8922
    if (req) {
8923
#ifdef WOLFSSL_CERT_REQ
8924
        localX509 = wolfSSL_X509_REQ_d2i(NULL, mem, size);
8925
#else
8926
        WOLFSSL_MSG("CSR not compiled in");
8927
#endif
8928
    }
8929
    else {
8930
        localX509 = wolfSSL_X509_d2i_ex(NULL, mem, size, bio->heap);
8931
    }
8932
    if (localX509 == NULL) {
8933
        WOLFSSL_MSG("wolfSSL_X509_d2i error");
8934
        XFREE(mem, NULL, DYNAMIC_TYPE_OPENSSL);
8935
        return NULL;
8936
    }
8937
8938
    if (x509 != NULL) {
8939
        *x509 = localX509;
8940
    }
8941
8942
    XFREE(mem, NULL, DYNAMIC_TYPE_OPENSSL);
8943
    return localX509;
8944
}
8945
8946
WOLFSSL_X509* wolfSSL_d2i_X509_bio(WOLFSSL_BIO* bio, WOLFSSL_X509** x509)
8947
{
8948
    return d2i_X509orX509REQ_bio(bio, x509, 0);
8949
}
8950
8951
#ifdef WOLFSSL_CERT_REQ
8952
WOLFSSL_X509* wolfSSL_d2i_X509_REQ_bio(WOLFSSL_BIO* bio, WOLFSSL_X509** x509)
8953
{
8954
    return d2i_X509orX509REQ_bio(bio, x509, 1);
8955
}
8956
#endif
8957
#endif /* !NO_BIO */
8958
8959
#endif /* OPENSSL_EXTRA */
8960
8961
#ifdef OPENSSL_EXTRA
8962
/* Use the public key to verify the signature. Note: this only verifies
8963
 * the certificate signature.
8964
 * returns WOLFSSL_SUCCESS on successful signature verification */
8965
static int verifyX509orX509REQ(WOLFSSL_X509* x509, WOLFSSL_EVP_PKEY* pkey,
8966
    int req)
8967
{
8968
    int ret;
8969
    const byte* der;
8970
    int derSz = 0;
8971
    int type;
8972
8973
    (void)req;
8974
8975
    if (x509 == NULL || pkey == NULL) {
8976
        return WOLFSSL_FATAL_ERROR;
8977
    }
8978
8979
    der = wolfSSL_X509_get_der(x509, &derSz);
8980
    if (der == NULL) {
8981
        WOLFSSL_MSG("Error getting WOLFSSL_X509 DER");
8982
        return WOLFSSL_FATAL_ERROR;
8983
    }
8984
8985
    switch (pkey->type) {
8986
        case WC_EVP_PKEY_RSA:
8987
            type = RSAk;
8988
            break;
8989
8990
        case WC_EVP_PKEY_EC:
8991
            type = ECDSAk;
8992
            break;
8993
8994
        case WC_EVP_PKEY_DSA:
8995
            type = DSAk;
8996
            break;
8997
8998
    #if defined(WOLFSSL_HAVE_MLDSA)
8999
        case WC_EVP_PKEY_DILITHIUM:
9000
            type = WOLFSSL_ATOMIC_LOAD(pkey->mldsaOID);
9001
            if (type == 0) {
9002
                WOLFSSL_MSG("ML-DSA pkey missing key OID");
9003
                return WOLFSSL_FATAL_ERROR;
9004
            }
9005
            break;
9006
    #endif
9007
9008
        default:
9009
            WOLFSSL_MSG("Unknown pkey key type");
9010
            return WOLFSSL_FATAL_ERROR;
9011
    }
9012
9013
#ifdef WOLFSSL_CERT_REQ
9014
    if (req)
9015
        ret = CheckCSRSignaturePubKey(der, (word32)derSz, x509->heap,
9016
                (unsigned char*)pkey->pkey.ptr, pkey->pkey_sz, type);
9017
    else
9018
#endif
9019
        ret = CheckCertSignaturePubKey(der, (word32)derSz, x509->heap,
9020
                (unsigned char*)pkey->pkey.ptr, pkey->pkey_sz, type);
9021
    if (ret == 0) {
9022
        return WOLFSSL_SUCCESS;
9023
    }
9024
    return WOLFSSL_FAILURE;
9025
}
9026
9027
int wolfSSL_X509_verify(WOLFSSL_X509* x509, WOLFSSL_EVP_PKEY* pkey)
9028
{
9029
    return verifyX509orX509REQ(x509, pkey, 0);
9030
}
9031
9032
#ifdef WOLFSSL_CERT_REQ
9033
int wolfSSL_X509_REQ_verify(WOLFSSL_X509* x509, WOLFSSL_EVP_PKEY* pkey)
9034
{
9035
    return verifyX509orX509REQ(x509, pkey, 1);
9036
}
9037
#endif /* WOLFSSL_CERT_REQ */
9038
9039
#if !defined(NO_FILESYSTEM)
9040
static void *wolfSSL_d2i_X509_fp_ex(XFILE file, void **x509, int type)
9041
{
9042
    void *newx509 = NULL;
9043
    byte *fileBuffer = NULL;
9044
    long sz = 0;
9045
9046
    /* init variable */
9047
    if (x509)
9048
        *x509 = NULL;
9049
9050
    /* argument check */
9051
    if (file == XBADFILE) {
9052
        return NULL;
9053
    }
9054
9055
    /* determine file size */
9056
    if (XFSEEK(file, 0, XSEEK_END) != 0) {
9057
        return NULL;
9058
    }
9059
    sz = XFTELL(file);
9060
    if (XFSEEK(file, 0, XSEEK_SET) != 0) {
9061
        return NULL;
9062
    }
9063
9064
    if (sz > MAX_WOLFSSL_FILE_SIZE || sz <= 0) {
9065
        WOLFSSL_MSG("d2i_X509_fp_ex file size error");
9066
        return NULL;
9067
    }
9068
9069
    fileBuffer = (byte *)XMALLOC(sz, NULL, DYNAMIC_TYPE_FILE);
9070
    if (fileBuffer != NULL) {
9071
        if ((long)XFREAD(fileBuffer, 1, (size_t)sz, file) != sz) {
9072
            WOLFSSL_MSG("File read failed");
9073
            goto err_exit;
9074
        }
9075
        if (type == CERT_TYPE) {
9076
            newx509 = (void *)wolfSSL_X509_d2i(NULL, fileBuffer, (int)sz);
9077
        }
9078
    #ifdef HAVE_CRL
9079
        else if (type == CRL_TYPE) {
9080
            newx509 = (void *)wolfSSL_d2i_X509_CRL(NULL, fileBuffer, (int)sz);
9081
        }
9082
    #endif
9083
    #ifdef WOLFSSL_CERT_REQ
9084
        else if (type == CERTREQ_TYPE) {
9085
             newx509 = (void *)wolfSSL_X509_REQ_d2i(NULL, fileBuffer, (int)sz);
9086
        }
9087
    #endif
9088
    #if !defined(NO_ASN) && !defined(NO_PWDBASED) && defined(HAVE_PKCS12)
9089
        else if (type == PKCS12_TYPE) {
9090
            if ((newx509 = wc_PKCS12_new()) == NULL) {
9091
                goto err_exit;
9092
            }
9093
            if (wc_d2i_PKCS12(fileBuffer, (word32)sz,
9094
                                                     (WC_PKCS12*)newx509) < 0) {
9095
                goto err_exit;
9096
            }
9097
        }
9098
    #endif
9099
        else {
9100
            goto err_exit;
9101
        }
9102
        if (newx509 == NULL) {
9103
            WOLFSSL_MSG("X509 failed");
9104
            goto err_exit;
9105
        }
9106
    }
9107
9108
    if (x509)
9109
        *x509 = newx509;
9110
9111
    goto _exit;
9112
9113
err_exit:
9114
#if !defined(NO_ASN) && !defined(NO_PWDBASED) && defined(HAVE_PKCS12)
9115
    if ((newx509 != NULL) && (type == PKCS12_TYPE)) {
9116
        wc_PKCS12_free((WC_PKCS12*)newx509);
9117
        newx509 = NULL;
9118
    }
9119
#endif
9120
_exit:
9121
    XFREE(fileBuffer, NULL, DYNAMIC_TYPE_FILE);
9122
9123
    return newx509;
9124
}
9125
9126
#ifdef WOLFSSL_CERT_REQ
9127
WOLFSSL_X509* wolfSSL_d2i_X509_REQ_fp(XFILE fp, WOLFSSL_X509 **req)
9128
{
9129
    return (WOLFSSL_X509 *)wolfSSL_d2i_X509_fp_ex(fp, (void **)req,
9130
                                                  CERTREQ_TYPE);
9131
}
9132
#endif /* WOLFSSL_CERT_REQ */
9133
9134
WOLFSSL_X509 *wolfSSL_d2i_X509_fp(XFILE fp, WOLFSSL_X509 **x509)
9135
{
9136
    WOLFSSL_ENTER("wolfSSL_d2i_X509_fp");
9137
    return (WOLFSSL_X509 *)wolfSSL_d2i_X509_fp_ex(fp, (void **)x509, CERT_TYPE);
9138
}
9139
9140
/* load certificate or CRL file, and add it to the STORE           */
9141
/* @param ctx    a pointer to X509_LOOKUP structure                */
9142
/* @param file   file name to load                                 */
9143
/* @param type   WOLFSSL_FILETYPE_PEM or WOLFSSL_FILETYPE_ASN1     */
9144
/* @return a number of loading CRL or certificate, otherwise zero  */
9145
int wolfSSL_X509_load_cert_crl_file(WOLFSSL_X509_LOOKUP *ctx,
9146
    const char *file, int type)
9147
{
9148
    WOLFSSL_X509 *x509 = NULL;
9149
9150
    int cnt = 0;
9151
9152
    WOLFSSL_ENTER("wolfSSL_X509_load_cert_crl_file");
9153
9154
    /* stanity check */
9155
    if (ctx == NULL || file == NULL) {
9156
        WOLFSSL_MSG("bad arguments");
9157
        return 0;
9158
    }
9159
9160
    if (type != WOLFSSL_FILETYPE_PEM) {
9161
        x509 = wolfSSL_X509_load_certificate_file(file, type);
9162
        if (x509 != NULL) {
9163
            if (wolfSSL_X509_STORE_add_cert(ctx->store, x509)
9164
                                    == WOLFSSL_SUCCESS) {
9165
                cnt++;
9166
            }
9167
            else {
9168
                WOLFSSL_MSG("wolfSSL_X509_STORE_add_cert error");
9169
            }
9170
            wolfSSL_X509_free(x509);
9171
            x509 = NULL;
9172
        }
9173
        else {
9174
            WOLFSSL_MSG("wolfSSL_X509_load_certificate_file error");
9175
        }
9176
9177
    }
9178
    else {
9179
#if defined(OPENSSL_ALL)
9180
    #if !defined(NO_BIO)
9181
        STACK_OF(WOLFSSL_X509_INFO) *info;
9182
        WOLFSSL_X509_INFO *info_tmp;
9183
        int i;
9184
        int num = 0;
9185
        WOLFSSL_BIO *bio = wolfSSL_BIO_new_file(file, "rb");
9186
        if (!bio) {
9187
            WOLFSSL_MSG("wolfSSL_BIO_new error");
9188
            return cnt;
9189
        }
9190
9191
        info = wolfSSL_PEM_X509_INFO_read_bio(bio, NULL, NULL, NULL);
9192
9193
        wolfSSL_BIO_free(bio);
9194
9195
        if (!info) {
9196
            WOLFSSL_MSG("wolfSSL_PEM_X509_INFO_read_bio error");
9197
            return cnt;
9198
        }
9199
        num = wolfSSL_sk_X509_INFO_num(info);
9200
        for (i=0; i < num; i++) {
9201
            info_tmp = wolfSSL_sk_X509_INFO_value(info, i);
9202
9203
            if (info_tmp == NULL)
9204
                continue;
9205
9206
            if (info_tmp->x509) {
9207
                if (wolfSSL_X509_STORE_add_cert(ctx->store, info_tmp->x509) ==
9208
                    WOLFSSL_SUCCESS) {
9209
                    cnt ++;
9210
                }
9211
                else {
9212
                    WOLFSSL_MSG("wolfSSL_X509_STORE_add_cert failed");
9213
                }
9214
            }
9215
#ifdef HAVE_CRL
9216
            if (info_tmp->crl) {
9217
                if (wolfSSL_X509_STORE_add_crl(ctx->store, info_tmp->crl) ==
9218
                    WOLFSSL_SUCCESS) {
9219
                    cnt ++;
9220
                }
9221
                else {
9222
                    WOLFSSL_MSG("wolfSSL_X509_STORE_add_crl failed");
9223
                }
9224
            }
9225
#endif
9226
        }
9227
        wolfSSL_sk_X509_INFO_pop_free(info, wolfSSL_X509_INFO_free);
9228
    #elif defined(HAVE_CRL)
9229
        /* Only supports one certificate or CRL in the file. */
9230
        WOLFSSL_X509_CRL* crl = NULL;
9231
        XFILE fp = XFOPEN(file, "rb");
9232
        if (fp == XBADFILE) {
9233
            WOLFSSL_MSG("XFOPEN error");
9234
            return cnt;
9235
        }
9236
9237
        x509 = wolfSSL_PEM_read_X509(fp, NULL, NULL, NULL);
9238
        if (x509 != NULL) {
9239
            if (wolfSSL_X509_STORE_add_cert(ctx->store, x509) ==
9240
                WOLFSSL_SUCCESS) {
9241
                cnt++;
9242
            }
9243
            else {
9244
                WOLFSSL_MSG("wolfSSL_X509_STORE_add_cert failed");
9245
            }
9246
        }
9247
        else {
9248
            if (XFSEEK(fp, 0, XSEEK_SET) != 0) {
9249
                WOLFSSL_MSG("XFSEEK error");
9250
                return cnt;
9251
            }
9252
            crl = wolfSSL_PEM_read_X509_CRL(fp, NULL, NULL, NULL);
9253
            if (crl != NULL) {
9254
                if (wolfSSL_X509_STORE_add_crl(ctx->store, crl) ==
9255
                    WOLFSSL_SUCCESS) {
9256
                    cnt++;
9257
                }
9258
                else {
9259
                    WOLFSSL_MSG("wolfSSL_X509_STORE_add_crl failed");
9260
                }
9261
            }
9262
            else {
9263
                WOLFSSL_MSG("Certificate and CRL not recognized");
9264
                return cnt;
9265
            }
9266
        }
9267
9268
        wolfSSL_X509_free(x509);
9269
        wolfSSL_X509_CRL_free(crl);
9270
    #endif
9271
#else
9272
    (void)cnt;
9273
#endif /* OPENSSL_ALL && !NO_BIO */
9274
    }
9275
9276
    WOLFSSL_LEAVE("wolfSSL_X509_load_ceretificate_crl_file", cnt);
9277
    return cnt;
9278
}
9279
#endif /* !NO_FILESYSTEM */
9280
9281
9282
#ifdef HAVE_CRL
9283
9284
#ifndef NO_BIO
9285
WOLFSSL_X509_CRL *wolfSSL_d2i_X509_CRL_bio(WOLFSSL_BIO *bp,
9286
                                                    WOLFSSL_X509_CRL **x)
9287
{
9288
    int derSz;
9289
    byte* der = NULL;
9290
    WOLFSSL_X509_CRL* crl = NULL;
9291
9292
    if (bp == NULL)
9293
        return NULL;
9294
9295
    if ((derSz = wolfSSL_BIO_get_len(bp)) > 0) {
9296
        der = (byte*)XMALLOC(derSz, 0, DYNAMIC_TYPE_DER);
9297
        if (der != NULL) {
9298
            if (wolfSSL_BIO_read(bp, der, derSz) == derSz) {
9299
                crl = wolfSSL_d2i_X509_CRL(x, der, derSz);
9300
            }
9301
        }
9302
    }
9303
9304
    XFREE(der, 0, DYNAMIC_TYPE_DER);
9305
9306
    return crl;
9307
}
9308
#endif
9309
9310
#if !defined(NO_FILESYSTEM) && !defined(NO_STDIO_FILESYSTEM)
9311
WOLFSSL_X509_CRL *wolfSSL_d2i_X509_CRL_fp(XFILE fp, WOLFSSL_X509_CRL **crl)
9312
{
9313
    WOLFSSL_ENTER("wolfSSL_d2i_X509_CRL_fp");
9314
    return (WOLFSSL_X509_CRL *)wolfSSL_d2i_X509_fp_ex(fp, (void **)crl,
9315
        CRL_TYPE);
9316
}
9317
9318
/* Read CRL file, and add it to store and corresponding cert manager     */
9319
/* @param ctx   a pointer of X509_LOOKUP back to the X509_STORE          */
9320
/* @param file  a file to read                                           */
9321
/* @param type  WOLFSSL_FILETYPE_PEM or WOLFSSL_FILETYPE_ASN1            */
9322
/* @return WOLFSSL_SUCCESS(1) on successful, otherwise WOLFSSL_FAILURE(0)*/
9323
int wolfSSL_X509_load_crl_file(WOLFSSL_X509_LOOKUP *ctx,
9324
                                             const char *file, int type)
9325
{
9326
#ifndef NO_BIO
9327
    int ret = WC_NO_ERR_TRACE(WOLFSSL_FAILURE);
9328
    int count = 0;
9329
    WOLFSSL_BIO *bio = NULL;
9330
    WOLFSSL_X509_CRL *crl = NULL;
9331
9332
    WOLFSSL_ENTER("wolfSSL_X509_load_crl_file");
9333
9334
    if (ctx == NULL || file == NULL)
9335
        return ret;
9336
9337
    if ((bio = wolfSSL_BIO_new(wolfSSL_BIO_s_file())) == NULL)
9338
        return ret;
9339
9340
    if (wolfSSL_BIO_read_filename(bio, file) <= 0) {
9341
        wolfSSL_BIO_free(bio);
9342
        return ret;
9343
    }
9344
9345
    if (wolfSSL_BIO_read_filename(bio, file) <= 0) {
9346
        wolfSSL_BIO_free(bio);
9347
        return ret;
9348
    }
9349
9350
    if (type == WOLFSSL_FILETYPE_PEM) {
9351
        do {
9352
            crl = wolfSSL_PEM_read_bio_X509_CRL(bio, NULL, NULL, NULL);
9353
            if (crl == NULL) {
9354
                if (count <= 0) {
9355
                    WOLFSSL_MSG("Load crl failed");
9356
                }
9357
                break;
9358
            }
9359
9360
            ret = wolfSSL_X509_STORE_add_crl(ctx->store, crl);
9361
            if (ret == WC_NO_ERR_TRACE(WOLFSSL_FAILURE)) {
9362
                WOLFSSL_MSG("Adding crl failed");
9363
                break;
9364
            }
9365
            count++;
9366
            wolfSSL_X509_CRL_free(crl);
9367
            crl = NULL;
9368
        }   while(crl == NULL);
9369
9370
        ret = count;
9371
    }
9372
    else if (type == WOLFSSL_FILETYPE_ASN1) {
9373
        crl = wolfSSL_d2i_X509_CRL_bio(bio, NULL);
9374
        if (crl == NULL) {
9375
            WOLFSSL_MSG("Load crl failed");
9376
        }
9377
        else {
9378
            ret = wolfSSL_X509_STORE_add_crl(ctx->store, crl);
9379
            if (ret == WC_NO_ERR_TRACE(WOLFSSL_FAILURE)) {
9380
                WOLFSSL_MSG("Adding crl failed");
9381
            }
9382
            else {
9383
                ret = 1;/* handled a file */
9384
            }
9385
        }
9386
    }
9387
    else {
9388
        WOLFSSL_MSG("Invalid file type");
9389
    }
9390
9391
    wolfSSL_X509_CRL_free(crl);
9392
    wolfSSL_BIO_free(bio);
9393
9394
    WOLFSSL_LEAVE("wolfSSL_X509_load_crl_file", ret);
9395
    return ret;
9396
#else
9397
    int ret = WC_NO_ERR_TRACE(WOLFSSL_FAILURE);
9398
    int count = 0;
9399
    XFILE fp;
9400
    WOLFSSL_X509_CRL *crl = NULL;
9401
9402
    WOLFSSL_ENTER("wolfSSL_X509_load_crl_file");
9403
9404
    if (ctx == NULL || file == NULL)
9405
        return ret;
9406
9407
    if ((fp = XFOPEN(file, "rb")) == XBADFILE)
9408
        return ret;
9409
9410
    if (type == WOLFSSL_FILETYPE_PEM) {
9411
        do {
9412
            crl = wolfSSL_PEM_read_X509_CRL(fp, NULL, NULL, NULL);
9413
            if (crl == NULL) {
9414
                if (count <= 0) {
9415
                    WOLFSSL_MSG("Load crl failed");
9416
                }
9417
                break;
9418
            }
9419
9420
            ret = wolfSSL_X509_STORE_add_crl(ctx->store, crl);
9421
            if (ret == WC_NO_ERR_TRACE(WOLFSSL_FAILURE)) {
9422
                WOLFSSL_MSG("Adding crl failed");
9423
                break;
9424
            }
9425
            count++;
9426
            wolfSSL_X509_CRL_free(crl);
9427
            crl = NULL;
9428
        }
9429
        while(crl == NULL);
9430
9431
        ret = count;
9432
    }
9433
    else if (type == WOLFSSL_FILETYPE_ASN1) {
9434
        crl = wolfSSL_d2i_X509_CRL_fp(fp, NULL);
9435
        if (crl == NULL) {
9436
            WOLFSSL_MSG("Load crl failed");
9437
        }
9438
        else {
9439
            ret = wolfSSL_X509_STORE_add_crl(ctx->store, crl);
9440
            if (ret == WC_NO_ERR_TRACE(WOLFSSL_FAILURE)) {
9441
                WOLFSSL_MSG("Adding crl failed");
9442
            }
9443
            else {
9444
                ret = 1;/* handled a file */
9445
            }
9446
        }
9447
    }
9448
    else {
9449
        WOLFSSL_MSG("Invalid file type");
9450
    }
9451
9452
    wolfSSL_X509_CRL_free(crl);
9453
    XFCLOSE(fp);
9454
9455
    WOLFSSL_LEAVE("wolfSSL_X509_load_crl_file", ret);
9456
    return ret;
9457
#endif /* !NO_BIO */
9458
}
9459
#endif /* !NO_FILESYSTEM */
9460
9461
9462
WOLFSSL_X509_CRL* wolfSSL_d2i_X509_CRL(WOLFSSL_X509_CRL** crl,
9463
        const unsigned char* in, int len)
9464
{
9465
    WOLFSSL_X509_CRL *newcrl = NULL;
9466
    int ret = WOLFSSL_SUCCESS;
9467
9468
    WOLFSSL_ENTER("wolfSSL_d2i_X509_CRL");
9469
9470
    if (in == NULL) {
9471
        WOLFSSL_MSG("Bad argument value");
9472
    }
9473
    else {
9474
        newcrl =(WOLFSSL_X509_CRL*)XMALLOC(sizeof(WOLFSSL_X509_CRL), NULL,
9475
                DYNAMIC_TYPE_CRL);
9476
        if (newcrl == NULL) {
9477
            WOLFSSL_MSG("New CRL allocation failed");
9478
        }
9479
        else {
9480
            ret = InitCRL(newcrl, NULL);
9481
            if (ret < 0) {
9482
                WOLFSSL_MSG("Init tmp CRL failed");
9483
            }
9484
            else {
9485
                ret = BufferLoadCRL(newcrl, in, len, WOLFSSL_FILETYPE_ASN1,
9486
                    NO_VERIFY);
9487
                if (ret != WOLFSSL_SUCCESS) {
9488
                    WOLFSSL_MSG("Buffer Load CRL failed");
9489
                }
9490
                else {
9491
                    if (crl) {
9492
                        *crl = newcrl;
9493
                    }
9494
                }
9495
            }
9496
        }
9497
    }
9498
9499
    if ((ret != WOLFSSL_SUCCESS) && (newcrl != NULL)) {
9500
        wolfSSL_X509_CRL_free(newcrl);
9501
        newcrl = NULL;
9502
    }
9503
9504
    return newcrl;
9505
}
9506
9507
/* Retrieve issuer X509_NAME from CRL
9508
 * return X509_NAME*  on success
9509
 * return NULL on failure
9510
 */
9511
WOLFSSL_X509_NAME* wolfSSL_X509_CRL_get_issuer_name(const WOLFSSL_X509_CRL* crl)
9512
{
9513
    if (crl == NULL || crl->crlList == NULL)
9514
        return NULL;
9515
9516
    return crl->crlList->issuer;
9517
}
9518
9519
/* Set issuer name of CRL
9520
 * return WOLFSSL_SUCCESS on success
9521
 * return WOLFSSL_FAILURE on failure
9522
 */
9523
int wolfSSL_X509_CRL_set_issuer_name(WOLFSSL_X509_CRL* crl,
9524
                                     const WOLFSSL_X509_NAME* name)
9525
{
9526
    WOLFSSL_X509_NAME* newName;
9527
9528
    if (crl == NULL || crl->crlList == NULL || name == NULL)
9529
        return WOLFSSL_FAILURE;
9530
9531
    newName = wolfSSL_X509_NAME_dup(name);
9532
    if (newName == NULL)
9533
        return WOLFSSL_FAILURE;
9534
9535
    if (crl->crlList->issuer != NULL) {
9536
        FreeX509Name(crl->crlList->issuer);
9537
        XFREE(crl->crlList->issuer, crl->heap, DYNAMIC_TYPE_X509);
9538
    }
9539
    crl->crlList->issuer = newName;
9540
9541
    return WOLFSSL_SUCCESS;
9542
}
9543
9544
/* Retrieve version from CRL
9545
 * return version on success
9546
 * return 0 on failure
9547
 */
9548
int wolfSSL_X509_CRL_version(WOLFSSL_X509_CRL* crl)
9549
{
9550
    if (crl == NULL || crl->crlList == NULL)
9551
        return 0;
9552
9553
    return crl->crlList->version;
9554
}
9555
9556
/* Set version of CRL
9557
 * Caller passes the RFC 5280 value: 0 for v1, 1 for v2.
9558
 * Internally wolfSSL stores version + 1 (v1 = 1, v2 = 2) to match
9559
 * what ParseCRL produces, so apply the same normalization here.
9560
 * return WOLFSSL_SUCCESS on success
9561
 * return WOLFSSL_FAILURE on failure
9562
 */
9563
int wolfSSL_X509_CRL_set_version(WOLFSSL_X509_CRL* crl, long version)
9564
{
9565
    if (crl == NULL || crl->crlList == NULL)
9566
        return WOLFSSL_FAILURE;
9567
9568
    /* Only v1 (0) and v2 (1) are defined by RFC 5280. */
9569
    if (version < 0 || version > 1)
9570
        return WOLFSSL_FAILURE;
9571
9572
    /* Store as version + 1 to match internal convention. */
9573
    crl->crlList->version = (int)version + 1;
9574
    return WOLFSSL_SUCCESS;
9575
}
9576
9577
/* Retrieve sig OID from CRL
9578
 * return OID on success
9579
 * return 0 on failure
9580
 */
9581
int wolfSSL_X509_CRL_get_signature_type(WOLFSSL_X509_CRL* crl)
9582
{
9583
    if (crl == NULL || crl->crlList == NULL)
9584
        return 0;
9585
9586
    return crl->crlList->signatureOID;
9587
}
9588
9589
/* Set signature type of CRL
9590
 * return WOLFSSL_SUCCESS on success
9591
 * return WOLFSSL_FAILURE on failure
9592
 */
9593
int wolfSSL_X509_CRL_set_signature_type(WOLFSSL_X509_CRL* crl,
9594
                                        int signatureType)
9595
{
9596
    if (crl == NULL || crl->crlList == NULL)
9597
        return WOLFSSL_FAILURE;
9598
9599
    crl->crlList->signatureOID = signatureType;
9600
    return WOLFSSL_SUCCESS;
9601
}
9602
9603
/* Retrieve sig NID from CRL
9604
 * return NID on success
9605
 * return 0 on failure
9606
 */
9607
int wolfSSL_X509_CRL_get_signature_nid(const WOLFSSL_X509_CRL* crl)
9608
{
9609
    if (crl == NULL || crl->crlList == NULL)
9610
        return 0;
9611
9612
    return oid2nid(crl->crlList->signatureOID, oidSigType);
9613
}
9614
9615
/* Set signature NID of CRL
9616
 * return WOLFSSL_SUCCESS on success
9617
 * return negative value on failure
9618
 */
9619
int wolfSSL_X509_CRL_set_signature_nid(WOLFSSL_X509_CRL* crl, int nid)
9620
{
9621
    int ret = WOLFSSL_SUCCESS;
9622
    word32 oid;
9623
9624
    if (crl == NULL || crl->crlList == NULL || nid <= 0) {
9625
        ret = BAD_FUNC_ARG;
9626
    }
9627
9628
    if (ret == WOLFSSL_SUCCESS) {
9629
        oid = nid2oid(nid, oidSigType);
9630
        if (oid == (word32)-1 || oid == (word32)WOLFSSL_FATAL_ERROR) {
9631
            ret = WOLFSSL_FATAL_ERROR;
9632
        }
9633
        else {
9634
            crl->crlList->signatureOID = oid;
9635
        }
9636
    }
9637
9638
    return ret;
9639
}
9640
9641
/* Retrieve signature from CRL
9642
 * return WOLFSSL_SUCCESS on success and negative values on failure
9643
 */
9644
int wolfSSL_X509_CRL_get_signature(WOLFSSL_X509_CRL* crl,
9645
    unsigned char* buf, int* bufSz)
9646
{
9647
    WOLFSSL_ENTER("wolfSSL_X509_CRL_get_signature");
9648
9649
    if (crl == NULL || crl->crlList == NULL ||
9650
        crl->crlList->signature == NULL || bufSz == NULL)
9651
        return BAD_FUNC_ARG;
9652
9653
    if (buf != NULL) {
9654
        if (*bufSz < (int)crl->crlList->signatureSz) {
9655
            WOLFSSL_MSG("Signature buffer too small");
9656
            return BUFFER_E;
9657
        }
9658
        else {
9659
            XMEMCPY(buf, crl->crlList->signature, crl->crlList->signatureSz);
9660
        }
9661
    }
9662
    *bufSz = (int)crl->crlList->signatureSz;
9663
9664
    return WOLFSSL_SUCCESS;
9665
}
9666
9667
int wolfSSL_X509_CRL_set_signature(WOLFSSL_X509_CRL* crl,
9668
    unsigned char* buf, int bufSz)
9669
{
9670
    byte* newSig;
9671
9672
    if (crl == NULL || crl->crlList == NULL || buf == NULL || bufSz <= 0) {
9673
        return BAD_FUNC_ARG;
9674
    }
9675
9676
    /* Ensure signature buffer is allocated and large enough. */
9677
    if (crl->crlList->signature == NULL) {
9678
        crl->crlList->signature = (byte*)XMALLOC((word32)bufSz, crl->heap,
9679
                                                 DYNAMIC_TYPE_CRL_ENTRY);
9680
        if (crl->crlList->signature == NULL) {
9681
            return MEMORY_E;
9682
        }
9683
        crl->crlList->signatureSz = (word32)bufSz;
9684
    }
9685
    else if ((word32)bufSz > crl->crlList->signatureSz) {
9686
        newSig = (byte*)XMALLOC((word32)bufSz, crl->heap,
9687
                                DYNAMIC_TYPE_CRL_ENTRY);
9688
        if (newSig == NULL) {
9689
            return MEMORY_E;
9690
        }
9691
        XFREE(crl->crlList->signature, crl->heap, DYNAMIC_TYPE_CRL_ENTRY);
9692
        crl->crlList->signature = newSig;
9693
        crl->crlList->signatureSz = (word32)bufSz;
9694
    }
9695
    else {
9696
        /* Reuse existing buffer, clear contents in case new signature
9697
         * is smaller. Note that we do not shrink the buffer. */
9698
        XMEMSET(crl->crlList->signature, 0, crl->crlList->signatureSz);
9699
    }
9700
9701
    XMEMCPY(crl->crlList->signature, buf, bufSz);
9702
    crl->crlList->signatureSz = (word32)bufSz;
9703
    return WOLFSSL_SUCCESS;
9704
}
9705
9706
/* Retrieve serial number from RevokedCert
9707
 * return WOLFSSL_SUCCESS on success and negative values on failure
9708
 */
9709
int wolfSSL_X509_REVOKED_get_serial_number(RevokedCert* rev,
9710
    byte* in, int* inOutSz)
9711
{
9712
    WOLFSSL_ENTER("wolfSSL_X509_REVOKED_get_serial_number");
9713
    if (rev == NULL || inOutSz == NULL) {
9714
        return BAD_FUNC_ARG;
9715
    }
9716
9717
    if (in != NULL) {
9718
        if (*inOutSz < rev->serialSz) {
9719
            WOLFSSL_MSG("Serial buffer too small");
9720
            return BUFFER_E;
9721
        }
9722
        XMEMCPY(in, rev->serialNumber, rev->serialSz);
9723
    }
9724
    *inOutSz = rev->serialSz;
9725
9726
    return WOLFSSL_SUCCESS;
9727
}
9728
9729
const WOLFSSL_ASN1_INTEGER* wolfSSL_X509_REVOKED_get0_serial_number(const
9730
                                                      WOLFSSL_X509_REVOKED *rev)
9731
{
9732
    WOLFSSL_ENTER("wolfSSL_X509_REVOKED_get0_serial_number");
9733
9734
    if (rev != NULL) {
9735
        return rev->serialNumber;
9736
    }
9737
    else
9738
        return NULL;
9739
}
9740
9741
const WOLFSSL_ASN1_TIME* wolfSSL_X509_REVOKED_get0_revocation_date(const
9742
                                                      WOLFSSL_X509_REVOKED *rev)
9743
{
9744
    WOLFSSL_ENTER("wolfSSL_X509_REVOKED_get0_revocation_date");
9745
9746
    if (rev != NULL) {
9747
        return rev->revocationDate;
9748
    }
9749
    return NULL;
9750
}
9751
9752
9753
#ifndef NO_BIO
9754
/* print serial number out
9755
*  return WOLFSSL_SUCCESS on success
9756
*/
9757
static int X509RevokedPrintSerial(WOLFSSL_BIO* bio, RevokedCert* rev,
9758
    int indent)
9759
{
9760
    unsigned char serial[32];
9761
    int  sz = sizeof(serial);
9762
9763
    if (indent < 0) indent = 0;
9764
    if (indent > MAX_INDENT) indent = MAX_INDENT;
9765
9766
    XMEMSET(serial, 0, sz);
9767
    if (wolfSSL_X509_REVOKED_get_serial_number(rev, serial, &sz)
9768
            == WOLFSSL_SUCCESS) {
9769
        X509PrintSerial_ex(bio, serial, sz, 0, indent);
9770
    }
9771
    return WOLFSSL_SUCCESS;
9772
}
9773
9774
9775
/* print out the signature in human readable format for use with
9776
* wolfSSL_X509_CRL_print()
9777
 * return WOLFSSL_SUCCESS on success
9778
 */
9779
static int X509CRLPrintSignature(WOLFSSL_BIO* bio, WOLFSSL_X509_CRL* crl,
9780
        int algOnly, int indent)
9781
{
9782
    int sigSz = 0;
9783
9784
    if (wolfSSL_X509_CRL_get_signature(crl, NULL, &sigSz) <= 0) {
9785
        return WOLFSSL_FAILURE;
9786
    }
9787
9788
    if (sigSz > 0) {
9789
        unsigned char* sig;
9790
        int sigNid = wolfSSL_X509_CRL_get_signature_nid(crl);
9791
9792
        sig = (unsigned char*)XMALLOC(sigSz, NULL, DYNAMIC_TYPE_TMP_BUFFER);
9793
        if (sig == NULL) {
9794
            return WOLFSSL_FAILURE;
9795
        }
9796
9797
        if (wolfSSL_X509_CRL_get_signature(crl, sig, &sigSz) <= 0) {
9798
            XFREE(sig, NULL, DYNAMIC_TYPE_TMP_BUFFER);
9799
            return WOLFSSL_FAILURE;
9800
        }
9801
9802
        if (X509PrintSignature_ex(bio, sig, sigSz, sigNid, algOnly, indent)
9803
                != WOLFSSL_SUCCESS) {
9804
            XFREE(sig, NULL, DYNAMIC_TYPE_TMP_BUFFER);
9805
            return WOLFSSL_FAILURE;
9806
        }
9807
9808
        XFREE(sig, NULL, DYNAMIC_TYPE_TMP_BUFFER);
9809
9810
    }
9811
9812
    return WOLFSSL_SUCCESS;
9813
}
9814
#endif /* !NO_BIO */
9815
9816
#if !defined(NO_BIO) && defined(XSNPRINTF)
9817
/* print out the extensions in human readable format for use with
9818
 * wolfSSL_X509_CRL_print()
9819
 * return WOLFSSL_SUCCESS on success
9820
 */
9821
static int X509CRLPrintExtensions(WOLFSSL_BIO* bio, WOLFSSL_X509_CRL* crl,
9822
        int indent)
9823
{
9824
    char tmp[MAX_WIDTH]; /* buffer for XSNPRINTF */
9825
    int  ret = 0;
9826
9827
    if (indent < 0) indent = 0;
9828
    if (indent > MAX_INDENT) indent = MAX_INDENT;
9829
9830
    if (XSNPRINTF(tmp, MAX_WIDTH, "%*s%s\n", indent, "",
9831
                "CRL extensions:") >= MAX_WIDTH) {
9832
        ret = WOLFSSL_FAILURE;
9833
    }
9834
9835
    if (ret == 0 && wolfSSL_BIO_write(bio, tmp, (int)XSTRLEN(tmp)) <= 0) {
9836
        ret = WOLFSSL_FAILURE;
9837
    }
9838
9839
    if (ret == 0 && crl->crlList->crlNumberSet) {
9840
        char dec_string[49]; /* 20 octets can express numbers up to approx
9841
                                49 decimal digits */
9842
        int freeMp = 0;
9843
    #ifdef WOLFSSL_SMALL_STACK
9844
        mp_int* dec_num = (mp_int*)XMALLOC(sizeof(*dec_num), NULL,
9845
                            DYNAMIC_TYPE_BIGINT);
9846
        if (dec_num == NULL) {
9847
            ret = MEMORY_E;
9848
        }
9849
    #else
9850
        mp_int dec_num[1];
9851
    #endif
9852
9853
        if (ret == 0 && (mp_init(dec_num) != MP_OKAY)) {
9854
             ret = MP_INIT_E;
9855
        }
9856
        else if (ret == 0) {
9857
            freeMp = 1;
9858
        }
9859
9860
        if (ret == 0 && mp_read_radix(dec_num, (char *)crl->crlList->crlNumber,
9861
                    MP_RADIX_HEX) != MP_OKAY) {
9862
            ret = WOLFSSL_FAILURE;
9863
        }
9864
9865
        if (ret == 0 && mp_toradix(dec_num, dec_string, MP_RADIX_DEC)
9866
                    != MP_OKAY) {
9867
            ret = WOLFSSL_FAILURE;
9868
        }
9869
9870
        if (ret == 0 && XSNPRINTF(tmp, MAX_WIDTH, "%*s%s\n", indent + 4, "",
9871
                    "X509v3 CRL Number:") >= MAX_WIDTH) {
9872
            ret = WOLFSSL_FAILURE;
9873
        }
9874
9875
        if (ret == 0 && wolfSSL_BIO_write(bio, tmp, (int)XSTRLEN(tmp)) <= 0) {
9876
            ret = WOLFSSL_FAILURE;
9877
        }
9878
9879
        if (ret == 0 && XSNPRINTF(tmp, MAX_WIDTH, "%*s%s\n", indent + 8, "",
9880
            dec_string) >= MAX_WIDTH) {
9881
            ret = WOLFSSL_FAILURE;
9882
        }
9883
9884
        if (ret == 0 && wolfSSL_BIO_write(bio, tmp, (int)XSTRLEN(tmp)) <= 0) {
9885
            ret = WOLFSSL_FAILURE;
9886
        }
9887
9888
        XMEMSET(tmp, 0, sizeof(tmp));
9889
9890
        if (freeMp) {
9891
            mp_free(dec_num);
9892
        }
9893
9894
        WC_FREE_VAR_EX(dec_num, NULL, DYNAMIC_TYPE_BIGINT);
9895
    }
9896
9897
#if !defined(NO_SKID)
9898
    if (ret == 0 && crl->crlList->extAuthKeyIdSet &&
9899
            crl->crlList->extAuthKeyId[0] != 0) {
9900
        word32 i;
9901
        char val[5];
9902
        int valSz = 5;
9903
9904
        if (XSNPRINTF(tmp, MAX_WIDTH, "%*s%s", indent + 4, "",
9905
                    "X509v3 Authority Key Identifier:") >= MAX_WIDTH) {
9906
            ret = WOLFSSL_FAILURE;
9907
        }
9908
9909
        if (ret == 0) {
9910
            XSTRNCAT(tmp, "\n", MAX_WIDTH - XSTRLEN(tmp) - 1);
9911
        }
9912
9913
        if (ret == 0 && wolfSSL_BIO_write(bio, tmp, (int)XSTRLEN(tmp)) <= 0) {
9914
            ret = WOLFSSL_FAILURE;
9915
        }
9916
        XMEMSET(tmp, 0, MAX_WIDTH);
9917
9918
        if (ret == 0 && XSNPRINTF(tmp, MAX_WIDTH - 1, "%*s%s",
9919
                    indent + 8, "", "keyid") >= MAX_WIDTH) {
9920
            ret = WOLFSSL_FAILURE;
9921
        }
9922
9923
9924
        for (i = 0; i < XSTRLEN((char*)crl->crlList->extAuthKeyId); i++) {
9925
            /* check if buffer is almost full */
9926
            if (ret == 0 && XSTRLEN(tmp) >= sizeof(tmp) - valSz) {
9927
                if (wolfSSL_BIO_write(bio, tmp, (int)XSTRLEN(tmp)) <= 0) {
9928
                    ret = WOLFSSL_FAILURE;
9929
                }
9930
                tmp[0] = '\0';
9931
            }
9932
            if (ret == 0 && XSNPRINTF(val, (size_t)valSz, ":%02X",
9933
                    crl->crlList->extAuthKeyId[i]) >= valSz) {
9934
                WOLFSSL_MSG("buffer overrun");
9935
                ret = WOLFSSL_FAILURE;
9936
            }
9937
            if (ret == 0) {
9938
                XSTRNCAT(tmp, val, valSz);
9939
            }
9940
        }
9941
        if (ret == 0) {
9942
            XSTRNCAT(tmp, "\n", XSTRLEN("\n") + 1);
9943
        }
9944
        if (ret == 0 && wolfSSL_BIO_write(bio, tmp, (int)XSTRLEN(tmp)) <= 0) {
9945
            ret = WOLFSSL_FAILURE;
9946
        }
9947
    }
9948
#endif
9949
9950
    if (ret == 0) {
9951
        ret = WOLFSSL_SUCCESS;
9952
    }
9953
9954
    return ret;
9955
}
9956
9957
/* iterate through a CRL's Revoked Certs and print out in human
9958
 * readable format for use with wolfSSL_X509_CRL_print()
9959
 * return WOLFSSL_SUCCESS on success
9960
 */
9961
static int X509CRLPrintRevoked(WOLFSSL_BIO* bio, WOLFSSL_X509_CRL* crl,
9962
        int indent)
9963
{
9964
    char tmp[MAX_WIDTH]; /* buffer for XSNPRINTF */
9965
    int i;
9966
9967
    if (crl->crlList->totalCerts > 0) {
9968
        RevokedCert* revoked = crl->crlList->certs;
9969
9970
        if (XSNPRINTF(tmp, MAX_WIDTH, "%*s%s\n", indent, "",
9971
                    "Revoked Certificates:") >= MAX_WIDTH) {
9972
            return WOLFSSL_FAILURE;
9973
        }
9974
9975
        if (wolfSSL_BIO_write(bio, tmp, (int)XSTRLEN(tmp)) <= 0) {
9976
            return WOLFSSL_FAILURE;
9977
        }
9978
        XMEMSET(tmp, 0, MAX_WIDTH);
9979
9980
        for (i = 0; i < crl->crlList->totalCerts; i++) {
9981
            if (revoked->serialSz > 0) {
9982
                if (X509RevokedPrintSerial(bio, revoked, indent + 4)
9983
                        != WOLFSSL_SUCCESS) {
9984
                    return WOLFSSL_FAILURE;
9985
                }
9986
            }
9987
        #ifndef NO_ASN_TIME
9988
             if (XSNPRINTF(tmp, MAX_WIDTH, "%*s%s", indent + 8, "",
9989
                         "Revocation Date: ") >= MAX_WIDTH) {
9990
                return WOLFSSL_FAILURE;
9991
            }
9992
9993
            if (wolfSSL_BIO_write(bio, tmp, (int)XSTRLEN(tmp)) <= 0) {
9994
                return WOLFSSL_FAILURE;
9995
            }
9996
9997
            if (revoked->revDate[0] != 0) {
9998
                if (GetTimeString(revoked->revDate, ASN_UTC_TIME,
9999
                    tmp, MAX_WIDTH, MAX_DATE_SIZE) != WOLFSSL_SUCCESS) {
10000
                    if (GetTimeString(revoked->revDate, ASN_GENERALIZED_TIME,
10001
                    tmp, MAX_WIDTH, MAX_DATE_SIZE) != WOLFSSL_SUCCESS) {
10002
                        WOLFSSL_MSG("Error getting revocation date");
10003
                        return WOLFSSL_FAILURE;
10004
                    }
10005
                }
10006
            }
10007
            else {
10008
                XSTRNCPY(tmp, "Not Set", MAX_WIDTH-1);
10009
            }
10010
            tmp[MAX_WIDTH - 1] = '\0'; /* make sure null terminated */
10011
            if (wolfSSL_BIO_write(bio, tmp, (int)XSTRLEN(tmp)) <= 0) {
10012
                return WOLFSSL_FAILURE;
10013
            }
10014
10015
            if (wolfSSL_BIO_write(bio, "\n", (int)XSTRLEN("\n")) <= 0) {
10016
                return WOLFSSL_FAILURE;
10017
            }
10018
        #endif
10019
            revoked = revoked->next;
10020
        }
10021
    }
10022
    else {
10023
        if (wolfSSL_BIO_write(bio, "No Revoked Certificates.\n",
10024
                       (int)XSTRLEN("No Revoked Certificates.\n")) <= 0) {
10025
            return WOLFSSL_FAILURE;
10026
        }
10027
    }
10028
10029
    return WOLFSSL_SUCCESS;
10030
}
10031
10032
#ifndef NO_ASN_TIME
10033
/* print out the last/next update times in human readable
10034
 * format for use with wolfSSL_X509_CRL_print()
10035
 * return WOLFSSL_SUCCESS on success
10036
 */
10037
static int X509CRLPrintDates(WOLFSSL_BIO* bio, WOLFSSL_X509_CRL* crl,
10038
        int indent)
10039
{
10040
    char tmp[MAX_WIDTH]; /* buffer for XSNPRINTF */
10041
10042
    if (XSNPRINTF(tmp, MAX_WIDTH, "%*s%s", indent, "",
10043
                "Last Update: ") >= MAX_WIDTH) {
10044
        return WOLFSSL_FAILURE;
10045
    }
10046
10047
    if (wolfSSL_BIO_write(bio, tmp, (int)XSTRLEN(tmp)) <= 0) {
10048
        return WOLFSSL_FAILURE;
10049
    }
10050
10051
    if (crl->crlList->lastDate[0] != 0) {
10052
        if (GetTimeString(crl->crlList->lastDate, crl->crlList->lastDateFormat,
10053
            tmp, MAX_WIDTH, MAX_DATE_SIZE) != WOLFSSL_SUCCESS) {
10054
            WOLFSSL_MSG("Error getting last update date");
10055
            return WOLFSSL_FAILURE;
10056
        }
10057
    }
10058
    else {
10059
        XSTRNCPY(tmp, "Not Set", sizeof(tmp)-1);
10060
    }
10061
    tmp[sizeof(tmp) - 1] = '\0'; /* make sure null terminated */
10062
    if (wolfSSL_BIO_write(bio, tmp, (int)XSTRLEN(tmp)) <= 0) {
10063
        return WOLFSSL_FAILURE;
10064
    }
10065
10066
    if (wolfSSL_BIO_write(bio, "\n", (int)XSTRLEN("\n")) <= 0) {
10067
        return WOLFSSL_FAILURE;
10068
    }
10069
10070
    if (XSNPRINTF(tmp, MAX_WIDTH, "%*s%s", indent, "",
10071
                "Next Update: ") >= MAX_WIDTH) {
10072
        return WOLFSSL_FAILURE;
10073
    }
10074
10075
    if (wolfSSL_BIO_write(bio, tmp, (int)XSTRLEN(tmp)) <= 0) {
10076
        return WOLFSSL_FAILURE;
10077
    }
10078
10079
    if (crl->crlList->nextDate[0] != 0) {
10080
        if (GetTimeString(crl->crlList->nextDate, crl->crlList->nextDateFormat,
10081
            tmp, MAX_WIDTH, MAX_DATE_SIZE) != WOLFSSL_SUCCESS) {
10082
            WOLFSSL_MSG("Error getting next update date");
10083
            return WOLFSSL_FAILURE;
10084
        }
10085
    }
10086
    else {
10087
        XSTRNCPY(tmp, "Not Set", sizeof(tmp)-1);
10088
    }
10089
    tmp[sizeof(tmp) - 1] = '\0'; /* make sure null terminated */
10090
    if (wolfSSL_BIO_write(bio, tmp, (int)XSTRLEN(tmp)) <= 0) {
10091
        return WOLFSSL_FAILURE;
10092
    }
10093
10094
    if (wolfSSL_BIO_write(bio, "\n", (int)XSTRLEN("\n")) <= 0) {
10095
        return WOLFSSL_FAILURE;
10096
    }
10097
10098
    return WOLFSSL_SUCCESS;
10099
}
10100
#endif
10101
10102
/* Writes the human readable form of x509 to bio.
10103
 *
10104
 * bio  WOLFSSL_BIO to write to.
10105
 * crl Certificate revocation list to write.
10106
 *
10107
 * returns WOLFSSL_SUCCESS on success and WOLFSSL_FAILURE on failure
10108
 */
10109
int wolfSSL_X509_CRL_print(WOLFSSL_BIO* bio, WOLFSSL_X509_CRL* crl)
10110
{
10111
    char issuType[] = "Issuer: ";
10112
10113
    if (bio == NULL || crl == NULL || crl->crlList == NULL) {
10114
        return WOLFSSL_FAILURE;
10115
    }
10116
10117
    if (wolfSSL_BIO_write(bio, "Certificate Revocation List (CRL):\n",
10118
                  (int)XSTRLEN("Certificate Revocation List (CRL):\n")) <= 0) {
10119
            return WOLFSSL_FAILURE;
10120
    }
10121
10122
    /* print version */
10123
    if (X509PrintVersion(bio, wolfSSL_X509_CRL_version(crl), 8)
10124
            != WOLFSSL_SUCCESS) {
10125
        return WOLFSSL_FAILURE;
10126
    }
10127
10128
    /* print signature algo */
10129
    if (X509CRLPrintSignature(bio, crl, 1, 8) != WOLFSSL_SUCCESS) {
10130
        return WOLFSSL_FAILURE;
10131
    }
10132
10133
    /* print issuer name */
10134
    if (X509PrintName(bio, wolfSSL_X509_CRL_get_issuer_name(crl), issuType, 8)
10135
            != WOLFSSL_SUCCESS) {
10136
        return WOLFSSL_FAILURE;
10137
    }
10138
10139
#ifndef NO_ASN_TIME
10140
    /* print last and next update times */
10141
    if (X509CRLPrintDates(bio, crl, 8) != WOLFSSL_SUCCESS) {
10142
        return WOLFSSL_FAILURE;
10143
    }
10144
#endif
10145
10146
    /* print CRL extensions */
10147
    if (X509CRLPrintExtensions(bio, crl, 8) != WOLFSSL_SUCCESS) {
10148
        return WOLFSSL_FAILURE;
10149
    }
10150
10151
    /* print CRL Revoked Certs */
10152
    if (X509CRLPrintRevoked(bio, crl, 0) != WOLFSSL_SUCCESS) {
10153
        return WOLFSSL_FAILURE;
10154
    }
10155
10156
    if (X509CRLPrintSignature(bio, crl, 0, 4) != WOLFSSL_SUCCESS) {
10157
        return WOLFSSL_FAILURE;
10158
    }
10159
10160
    if (wolfSSL_BIO_write(bio, "\n\0", (int)XSTRLEN("\n\0")) <= 0) {
10161
        return WOLFSSL_FAILURE;
10162
    }
10163
10164
    return WOLFSSL_SUCCESS;
10165
}
10166
#endif /* !NO_BIO && XSNPRINTF */
10167
#endif /* HAVE_CRL */
10168
#endif /* OPENSSL_EXTRA */
10169
10170
#if defined(HAVE_CRL) && (defined(OPENSSL_EXTRA) || defined(WOLFSSL_WPAS_SMALL))
10171
void wolfSSL_X509_CRL_free(WOLFSSL_X509_CRL *crl)
10172
{
10173
    WOLFSSL_ENTER("wolfSSL_X509_CRL_free");
10174
10175
    if (crl)
10176
        FreeCRL(crl, 1);
10177
}
10178
#endif /* HAVE_CRL && (OPENSSL_EXTRA || WOLFSSL_WPAS_SMALL) */
10179
10180
#if defined(HAVE_CRL) && defined(OPENSSL_EXTRA)
10181
WOLFSSL_ASN1_TIME* wolfSSL_X509_CRL_get_lastUpdate(WOLFSSL_X509_CRL* crl)
10182
{
10183
    if ((crl != NULL) && (crl->crlList != NULL) &&
10184
        (crl->crlList->lastDateAsn1.data[0] != 0)) {
10185
        return &crl->crlList->lastDateAsn1;
10186
    }
10187
    return NULL;
10188
}
10189
10190
int wolfSSL_X509_CRL_set_lastUpdate(WOLFSSL_X509_CRL* crl,
10191
                                    const WOLFSSL_ASN1_TIME* time)
10192
{
10193
    if (crl != NULL && crl->crlList != NULL && time != NULL) {
10194
        crl->crlList->lastDateAsn1 = *time;
10195
        return WOLFSSL_SUCCESS;
10196
    }
10197
    return WOLFSSL_FAILURE;
10198
}
10199
10200
WOLFSSL_ASN1_TIME* wolfSSL_X509_CRL_get_nextUpdate(WOLFSSL_X509_CRL* crl)
10201
{
10202
    if ((crl != NULL) && (crl->crlList != NULL) &&
10203
        (crl->crlList->nextDateAsn1.data[0] != 0)) {
10204
        return &crl->crlList->nextDateAsn1;
10205
    }
10206
    return NULL;
10207
}
10208
10209
int wolfSSL_X509_CRL_set_nextUpdate(WOLFSSL_X509_CRL* crl,
10210
                                    const WOLFSSL_ASN1_TIME* time)
10211
{
10212
    if (crl != NULL && crl->crlList != NULL && time != NULL) {
10213
        crl->crlList->nextDateAsn1 = *time;
10214
        return WOLFSSL_SUCCESS;
10215
    }
10216
    return WOLFSSL_FAILURE;
10217
}
10218
10219
#ifndef NO_WOLFSSL_STUB
10220
int wolfSSL_X509_CRL_verify(WOLFSSL_X509_CRL* crl, WOLFSSL_EVP_PKEY* key)
10221
{
10222
    (void)crl;
10223
    (void)key;
10224
    WOLFSSL_STUB("X509_CRL_verify");
10225
    return 0;
10226
}
10227
#endif
10228
10229
/* Encode CRL to DER format in memory.
10230
 *
10231
 * If *out is NULL, allocates memory and returns it via *out.
10232
 * If *out is not NULL, writes DER data starting at *out.
10233
 *
10234
 * @param crl  CRL to encode
10235
 * @param out  Pointer to output buffer pointer
10236
 * @return     Size of DER encoding on success, WOLFSSL_FAILURE on failure
10237
 */
10238
int wolfSSL_i2d_X509_CRL(WOLFSSL_X509_CRL* crl, unsigned char** out)
10239
{
10240
    int ret;
10241
    long derSz = 0;
10242
    byte* der = NULL;
10243
    int alloced = 0;
10244
10245
    WOLFSSL_ENTER("wolfSSL_i2d_X509_CRL");
10246
10247
    if (crl == NULL) {
10248
        return BAD_FUNC_ARG;
10249
    }
10250
10251
    /* Get required size */
10252
    ret = BufferStoreCRL(crl, NULL, &derSz, WOLFSSL_FILETYPE_ASN1);
10253
    if (ret != WOLFSSL_SUCCESS || derSz <= 0) {
10254
        WOLFSSL_MSG("BufferStoreCRL failed to get size");
10255
        return WOLFSSL_FAILURE;
10256
    }
10257
10258
    if (out == NULL) {
10259
        /* Just return size */
10260
        return (int)derSz;
10261
    }
10262
10263
    if (*out == NULL) {
10264
        /* Allocate output buffer */
10265
        der = (byte*)XMALLOC((size_t)derSz, NULL, DYNAMIC_TYPE_OPENSSL);
10266
        if (der == NULL) {
10267
            WOLFSSL_MSG("Memory allocation failed");
10268
            return MEMORY_E;
10269
        }
10270
        alloced = 1;
10271
    }
10272
    else {
10273
        der = *out;
10274
    }
10275
10276
    /* Encode CRL to DER */
10277
    ret = BufferStoreCRL(crl, der, &derSz, WOLFSSL_FILETYPE_ASN1);
10278
    if (ret != WOLFSSL_SUCCESS) {
10279
        WOLFSSL_MSG("BufferStoreCRL failed to encode");
10280
        if (alloced) {
10281
            XFREE(der, NULL, DYNAMIC_TYPE_OPENSSL);
10282
        }
10283
        return WOLFSSL_FAILURE;
10284
    }
10285
10286
    if (alloced) {
10287
        *out = der;
10288
    }
10289
    else {
10290
        *out += derSz;
10291
    }
10292
10293
    return (int)derSz;
10294
}
10295
#endif /* HAVE_CRL && OPENSSL_EXTRA */
10296
10297
#if defined(WOLFSSL_CERT_EXT) && \
10298
    (defined(OPENSSL_EXTRA) || defined(OPENSSL_EXTRA_X509_SMALL))
10299
/* Set CRL Distribution Points from pre-encoded DER.
10300
 *
10301
 * x509  - Certificate to modify
10302
 * der   - Pre-encoded CRLDistributionPoints DER
10303
 * derSz - Size of DER in bytes
10304
 *
10305
 * Returns WOLFSSL_SUCCESS or WOLFSSL_FAILURE
10306
 */
10307
int wolfSSL_X509_CRL_set_dist_points(WOLFSSL_X509* x509,
10308
    const unsigned char* der, int derSz)
10309
{
10310
    WOLFSSL_ENTER("wolfSSL_X509_CRL_set_dist_points");
10311
10312
    if (x509 == NULL || der == NULL || derSz <= 0) {
10313
        return WOLFSSL_FAILURE;
10314
    }
10315
10316
    if (x509->rawCRLInfo != NULL) {
10317
        XFREE(x509->rawCRLInfo, x509->heap, DYNAMIC_TYPE_X509_EXT);
10318
    }
10319
    x509->rawCRLInfo = (byte*)XMALLOC((word32)derSz, x509->heap,
10320
                                       DYNAMIC_TYPE_X509_EXT);
10321
    if (x509->rawCRLInfo == NULL) {
10322
        return WOLFSSL_FAILURE;
10323
    }
10324
10325
    XMEMCPY(x509->rawCRLInfo, der, (word32)derSz);
10326
    x509->rawCRLInfoSz = derSz;
10327
    x509->CRLdistSet = 1;
10328
10329
    return WOLFSSL_SUCCESS;
10330
}
10331
10332
/* Add CRL Distribution Point URI.
10333
 * Encodes URI into proper CRLDistributionPoints DER format.
10334
 *
10335
 * x509     - Certificate to modify
10336
 * uri      - URI string (e.g., "http://crl.example.com/ca.crl")
10337
 * critical - Whether extension is critical
10338
 *
10339
 * Returns WOLFSSL_SUCCESS or WOLFSSL_FAILURE
10340
 */
10341
int wolfSSL_X509_CRL_add_dist_point(WOLFSSL_X509* x509,
10342
    const char* uri, int critical)
10343
{
10344
    word32 uriLen;
10345
    byte* derBuf = NULL;
10346
    word32 derSz;
10347
    word32 idx;
10348
    word32 uriTagLen;    /* [6] tag + length + URI */
10349
    word32 genNamesLen;  /* [0] IMPLICIT GeneralNames wrapper */
10350
    word32 distPtNmLen;  /* [0] EXPLICIT distributionPoint wrapper */
10351
    word32 distPtSeqLen; /* SEQUENCE for DistributionPoint */
10352
    word32 outerSeqLen;  /* SEQUENCE for CRLDistributionPoints */
10353
    int ret = WOLFSSL_SUCCESS;
10354
10355
    WOLFSSL_ENTER("wolfSSL_X509_CRL_add_dist_point");
10356
10357
    if (x509 == NULL || uri == NULL) {
10358
        return WOLFSSL_FAILURE;
10359
    }
10360
10361
    uriLen = (word32)XSTRLEN(uri);
10362
    if (uriLen == 0) {
10363
        WOLFSSL_MSG("URI empty");
10364
        return WOLFSSL_FAILURE;
10365
    }
10366
10367
    /*
10368
     * Encode CRL Distribution Points in DER format:
10369
     * CRLDistributionPoints ::= SEQUENCE OF DistributionPoint
10370
     * DistributionPoint ::= SEQUENCE {
10371
     *     distributionPoint [0] EXPLICIT DistributionPointName OPTIONAL
10372
     * }
10373
     * DistributionPointName ::= CHOICE {
10374
     *     fullName [0] IMPLICIT GeneralNames
10375
     * }
10376
     * GeneralNames ::= SEQUENCE OF GeneralName
10377
     * GeneralName ::= [6] IMPLICIT IA5String (uniformResourceIdentifier)
10378
     */
10379
10380
    /* Calculate sizes from innermost to outermost */
10381
    /* [6] tag (1 byte) + length encoding + URI data */
10382
    uriTagLen = ASN_TAG_SZ + SetLength(uriLen, NULL) + uriLen;
10383
    /* [0] CONSTRUCTED tag (1 byte) + length encoding + uriTagLen */
10384
    genNamesLen = ASN_TAG_SZ + SetLength(uriTagLen, NULL) + uriTagLen;
10385
    /* [0] CONSTRUCTED tag (1 byte) + length encoding + genNamesLen */
10386
    distPtNmLen = ASN_TAG_SZ + SetLength(genNamesLen, NULL) + genNamesLen;
10387
    /* SEQUENCE header + distPtNmLen */
10388
    distPtSeqLen = SetSequence(distPtNmLen, NULL) + distPtNmLen;
10389
    /* Outer SEQUENCE header + distPtSeqLen */
10390
    outerSeqLen = SetSequence(distPtSeqLen, NULL) + distPtSeqLen;
10391
10392
    derSz = outerSeqLen;
10393
10394
    /* Allocate buffer for DER encoding */
10395
    derBuf = (byte*)XMALLOC(derSz, x509->heap, DYNAMIC_TYPE_X509_EXT);
10396
    if (derBuf == NULL) {
10397
        return WOLFSSL_FAILURE;
10398
    }
10399
10400
    /* Build forward using SetSequence/SetHeader/SetLength */
10401
    idx = 0;
10402
10403
    /* SEQUENCE for CRLDistributionPoints (outer) */
10404
    idx += SetSequence(distPtSeqLen, derBuf + idx);
10405
10406
    /* SEQUENCE for DistributionPoint */
10407
    idx += SetSequence(distPtNmLen, derBuf + idx);
10408
10409
    /* [0] EXPLICIT wrapper for distributionPoint */
10410
    derBuf[idx++] = (ASN_CONTEXT_SPECIFIC | ASN_CONSTRUCTED);
10411
    idx += SetLength(genNamesLen, derBuf + idx);
10412
10413
    /* [0] IMPLICIT wrapper for GeneralNames (constructed) */
10414
    derBuf[idx++] = (ASN_CONTEXT_SPECIFIC | ASN_CONSTRUCTED);
10415
    idx += SetLength(uriTagLen, derBuf + idx);
10416
10417
    /* [6] IMPLICIT IA5String tag for URI (context-specific, primitive) */
10418
    derBuf[idx++] = (ASN_CONTEXT_SPECIFIC | 6); /* [6] tag */
10419
    idx += SetLength(uriLen, derBuf + idx);
10420
10421
    /* Copy URI string */
10422
    XMEMCPY(derBuf + idx, uri, uriLen);
10423
    idx += uriLen;
10424
10425
    /* Store the encoded CRL info in x509 */
10426
    {
10427
        ret = wolfSSL_X509_CRL_set_dist_points(x509, derBuf, (int)idx);
10428
        if (ret == WOLFSSL_SUCCESS && critical) {
10429
            x509->CRLdistCrit = 1;
10430
        }
10431
    }
10432
10433
    XFREE(derBuf, x509->heap, DYNAMIC_TYPE_X509_EXT);
10434
10435
    return ret;
10436
}
10437
#endif /* WOLFSSL_CERT_EXT && (OPENSSL_EXTRA || OPENSSL_EXTRA_X509_SMALL) */
10438
10439
#ifdef OPENSSL_EXTRA
10440
10441
10442
WOLFSSL_X509_VERIFY_PARAM* wolfSSL_X509_VERIFY_PARAM_new(void)
10443
{
10444
    WOLFSSL_X509_VERIFY_PARAM *param = NULL;
10445
    param = (WOLFSSL_X509_VERIFY_PARAM*)XMALLOC(
10446
            sizeof(WOLFSSL_X509_VERIFY_PARAM), NULL, DYNAMIC_TYPE_OPENSSL);
10447
    if (param != NULL)
10448
        XMEMSET(param, 0, sizeof(WOLFSSL_X509_VERIFY_PARAM ));
10449
10450
    return(param);
10451
}
10452
10453
10454
void wolfSSL_X509_VERIFY_PARAM_free(WOLFSSL_X509_VERIFY_PARAM *param)
10455
{
10456
    XFREE(param, NULL, DYNAMIC_TYPE_OPENSSL);
10457
}
10458
10459
10460
/* Sets flags by OR'ing with existing value. */
10461
int wolfSSL_X509_VERIFY_PARAM_set_flags(WOLFSSL_X509_VERIFY_PARAM *param,
10462
        unsigned long flags)
10463
{
10464
    int ret = WC_NO_ERR_TRACE(WOLFSSL_FAILURE);
10465
10466
    if (param != NULL) {
10467
        param->flags |= flags;
10468
        ret = WOLFSSL_SUCCESS;
10469
    }
10470
10471
    return ret;
10472
}
10473
10474
10475
int wolfSSL_X509_VERIFY_PARAM_get_flags(WOLFSSL_X509_VERIFY_PARAM *param)
10476
{
10477
    int ret = 0;
10478
10479
    if (param != NULL) {
10480
        ret = (int)param->flags;
10481
    }
10482
10483
    return ret;
10484
}
10485
10486
10487
int wolfSSL_X509_VERIFY_PARAM_clear_flags(WOLFSSL_X509_VERIFY_PARAM *param,
10488
        unsigned long flags)
10489
{
10490
    int ret = WC_NO_ERR_TRACE(WOLFSSL_FAILURE);
10491
10492
    if (param != NULL) {
10493
        param->flags &= ~flags;
10494
        ret = WOLFSSL_SUCCESS;
10495
    }
10496
10497
    return ret;
10498
}
10499
10500
/* note WOLFSSL_X509_VERIFY_PARAM does not record purpose, trust, depth, or
10501
 * auth_level.
10502
 */
10503
static const WOLFSSL_X509_VERIFY_PARAM x509_verify_param_builtins[] = {
10504
    {
10505
     "ssl_client",              /* name */
10506
     0,                         /* check_time */
10507
     0,                         /* inherit_flags */
10508
     0,                         /* flags */
10509
     "",                        /* hostname */
10510
     0,                         /* hostFlags */
10511
     ""                         /* ipasc */
10512
    },
10513
    {
10514
     "ssl_server",              /* name */
10515
     0,                         /* check_time */
10516
     0,                         /* inherit_flags */
10517
     0,                         /* flags */
10518
     "",                        /* hostname */
10519
     0,                         /* hostFlags */
10520
     ""                         /* ipasc */
10521
    }
10522
};
10523
10524
const WOLFSSL_X509_VERIFY_PARAM *wolfSSL_X509_VERIFY_PARAM_lookup(
10525
    const char *name)
10526
{
10527
    const WOLFSSL_X509_VERIFY_PARAM *param = &x509_verify_param_builtins[0],
10528
        *param_end = &x509_verify_param_builtins[
10529
                                         XELEM_CNT(x509_verify_param_builtins)];
10530
10531
    if (name == NULL) {
10532
        return NULL;
10533
    }
10534
    while (param < param_end) {
10535
        if (XSTRCMP(name, param->name) == 0)
10536
            return param;
10537
        ++param;
10538
    }
10539
    return NULL;
10540
}
10541
10542
/* inherits properties of param "to" to param "from"
10543
*
10544
* WOLFSSL_VPARAM_DEFAULT          any values in "src" is copied
10545
*                                 if "src" value is new for "to".
10546
* WOLFSSL_VPARAM_OVERWRITE        all values of "form" are copied to "to"
10547
* WOLFSSL_VPARAM_RESET_FLAGS      the flag values are copied, not Ored
10548
* WOLFSSL_VPARAM_LOCKED           don't copy any values
10549
* WOLFSSL_VPARAM_ONCE             the current inherit_flags is zerroed
10550
*/
10551
int wolfSSL_X509_VERIFY_PARAM_inherit(WOLFSSL_X509_VERIFY_PARAM *to,
10552
                                         const WOLFSSL_X509_VERIFY_PARAM *from)
10553
{
10554
    int ret = WOLFSSL_SUCCESS;
10555
    int isOverWrite = 0;
10556
    int isDefault = 0;
10557
    unsigned int flags;
10558
10559
    /* sanity check */
10560
    if (!to || !from) {
10561
        /* be compatible to openssl return value */
10562
        return WOLFSSL_SUCCESS;
10563
    }
10564
    flags = to->inherit_flags | from->inherit_flags;
10565
10566
    if (flags & WOLFSSL_VPARAM_LOCKED) {
10567
        return WOLFSSL_SUCCESS;
10568
    }
10569
10570
    if (flags & WOLFSSL_VPARAM_ONCE) {
10571
        to->inherit_flags = 0;
10572
    }
10573
10574
    isOverWrite = (flags & WOLFSSL_VPARAM_OVERWRITE);
10575
    isDefault = (flags & WOLFSSL_VPARAM_DEFAULT);
10576
10577
    /* copy check_time if check time is not set */
10578
    if ((to->flags & WOLFSSL_USE_CHECK_TIME) == 0 || isOverWrite) {
10579
           to->check_time = from->check_time;
10580
           to->flags &= ~WOLFSSL_USE_CHECK_TIME;
10581
    }
10582
    /* host name */
10583
    if (isOverWrite ||
10584
        (from->hostName[0] != 0 && (to->hostName[0] == 0 || isDefault))) {
10585
            if (!(ret = wolfSSL_X509_VERIFY_PARAM_set1_host(to, from->hostName,
10586
                (unsigned int)XSTRLEN(from->hostName))))
10587
                return ret;
10588
        to->hostFlags = from->hostFlags;
10589
    }
10590
    /* ip ascii */
10591
    if (isOverWrite ||
10592
        (from->ipasc[0] != 0 && (to->ipasc[0] == 0 || isDefault))) {
10593
10594
            if (!(ret = wolfSSL_X509_VERIFY_PARAM_set1_ip_asc(to, from->ipasc)))
10595
                return ret;
10596
    }
10597
10598
    if (flags & WOLFSSL_VPARAM_RESET_FLAGS)
10599
        to->flags = 0;
10600
10601
    to->flags |= from->flags;
10602
10603
    return ret;
10604
}
10605
10606
/******************************************************************************
10607
* wolfSSL_X509_VERIFY_PARAM_set1_host - sets the DNS hostname to name
10608
* hostnames is cleared if name is NULL or empty.
10609
*
10610
* RETURNS:
10611
*
10612
*/
10613
int wolfSSL_X509_VERIFY_PARAM_set1_host(WOLFSSL_X509_VERIFY_PARAM* pParam,
10614
                                         const char* name,
10615
                                         unsigned int nameSz)
10616
{
10617
    WOLFSSL_ENTER("wolfSSL_X509_VERIFY_PARAM_set1_host");
10618
10619
    if (pParam == NULL)
10620
        return WOLFSSL_FAILURE;
10621
10622
    /* If name is NULL, clear hostname. */
10623
    if (name == NULL) {
10624
        XMEMSET(pParam->hostName, 0, WOLFSSL_HOST_NAME_MAX);
10625
        return WOLFSSL_SUCCESS;
10626
    }
10627
10628
    /* If name is NULL-terminated, namelen can be set to zero. */
10629
    if (nameSz == 0) {
10630
        nameSz = (unsigned int)XSTRLEN(name);
10631
    }
10632
10633
    if (nameSz > 0 && name[nameSz - 1] == '\0')
10634
        nameSz--;
10635
10636
    if (nameSz > WOLFSSL_HOST_NAME_MAX-1) {
10637
        WOLFSSL_MSG("Truncating name");
10638
        nameSz = WOLFSSL_HOST_NAME_MAX-1;
10639
    }
10640
10641
    if (nameSz > 0) {
10642
        XMEMCPY(pParam->hostName, name, nameSz);
10643
        XMEMSET(pParam->hostName + nameSz, 0,
10644
                WOLFSSL_HOST_NAME_MAX - nameSz);
10645
    }
10646
10647
    pParam->hostName[nameSz] = '\0';
10648
10649
    return WOLFSSL_SUCCESS;
10650
}
10651
10652
/* Set VERIFY PARAM from "from" pointer to "to" pointer */
10653
int wolfSSL_X509_VERIFY_PARAM_set1(WOLFSSL_X509_VERIFY_PARAM *to,
10654
                                   const WOLFSSL_X509_VERIFY_PARAM *from)
10655
{
10656
    int ret = WC_NO_ERR_TRACE(WOLFSSL_FAILURE);
10657
    unsigned int _inherit_flags;
10658
10659
    if (!to) {
10660
        return ret;
10661
    }
10662
    /* keeps the inherit flags for save */
10663
    _inherit_flags = to->inherit_flags;
10664
10665
    /* Ored DEFAULT inherit flag property to copy "from" contents to "to"
10666
    *  contents
10667
    */
10668
    to->inherit_flags |= WOLFSSL_VPARAM_DEFAULT;
10669
10670
    ret = wolfSSL_X509_VERIFY_PARAM_inherit(to, from);
10671
10672
    /* restore inherit flag */
10673
    to->inherit_flags = _inherit_flags;
10674
10675
    return ret;
10676
}
10677
10678
/* Set the host flag in the X509_VERIFY_PARAM structure */
10679
void wolfSSL_X509_VERIFY_PARAM_set_hostflags(WOLFSSL_X509_VERIFY_PARAM* param,
10680
                                             unsigned int flags)
10681
{
10682
    if (param != NULL) {
10683
        param->hostFlags = flags;
10684
    }
10685
}
10686
10687
/* Sets the expected IP address to ipasc.
10688
 *
10689
 * param is a pointer to the X509_VERIFY_PARAM structure
10690
 * ipasc is a NULL-terminated string with N.N.N.N for IPv4 and
10691
 *       HH:HH ... HH:HH for IPv6. There is no validation performed on the
10692
 *       parameter, and it must be an exact match with the IP in the cert.
10693
 *
10694
 * return 1 for success and 0 for failure*/
10695
int wolfSSL_X509_VERIFY_PARAM_set1_ip_asc(WOLFSSL_X509_VERIFY_PARAM *param,
10696
        const char *ipasc)
10697
{
10698
    int ret = WC_NO_ERR_TRACE(WOLFSSL_FAILURE);
10699
10700
    if (param != NULL) {
10701
        if (ipasc == NULL) {
10702
            param->ipasc[0] = '\0';
10703
        }
10704
        else {
10705
            XSTRLCPY(param->ipasc, ipasc, WOLFSSL_MAX_IPSTR);
10706
            param->ipasc[WOLFSSL_MAX_IPSTR-1] = '\0';
10707
        }
10708
        ret = WOLFSSL_SUCCESS;
10709
    }
10710
10711
    return ret;
10712
}
10713
/* Sets the expected IP address to ip(asc)
10714
 *          by re-constructing IP address in ascii
10715
 * @param  param is a pointer to the X509_VERIFY_PARAM structure
10716
 * @param  ip    in binary format of ip address
10717
 * @param  iplen size of ip, 4 for ipv4, 16 for ipv6
10718
 * @return 1 for success and 0 for failure
10719
 */
10720
int wolfSSL_X509_VERIFY_PARAM_set1_ip(WOLFSSL_X509_VERIFY_PARAM* param,
10721
    const unsigned char* ip, size_t iplen)
10722
{
10723
    int ret = WC_NO_ERR_TRACE(WOLFSSL_FAILURE);
10724
#ifndef NO_FILESYSTEM
10725
    char* buf = NULL;
10726
    char* p = NULL;
10727
    word32 val = 0;
10728
    int i;
10729
    const size_t max_ipv6_len = 40;
10730
    byte write_zero = 0;
10731
#endif
10732
10733
    /* sanity check */
10734
    if (param == NULL || (iplen != 0 && iplen != 4 && iplen != 16)) {
10735
        WOLFSSL_MSG("bad function arg");
10736
        return ret;
10737
    }
10738
    if (ip == NULL && iplen != 0) {
10739
        WOLFSSL_MSG("bad function arg");
10740
        return ret;
10741
    }
10742
#ifndef NO_FILESYSTEM
10743
    if (iplen == 4) {
10744
        /* ipv4 www.xxx.yyy.zzz max 15 length + Null termination */
10745
        buf = (char*)XMALLOC(16, NULL, DYNAMIC_TYPE_TMP_BUFFER);
10746
        if (!buf) {
10747
            WOLFSSL_MSG("failed malloc");
10748
            return ret;
10749
        }
10750
10751
        (void)XSNPRINTF(buf, 16, "%d.%d.%d.%d", ip[0], ip[1], ip[2], ip[3]);
10752
        buf[15] = '\0'; /* null terminate */
10753
    }
10754
    else if (iplen == 16) {
10755
        /* ipv6 normal address scheme
10756
        *   y1:y2:y3:y4:y5:y6:y7:y8, len(yx):4, len(y1-y8):32. len(":"):7
10757
        *   Max len is 32 + 7 + 1(Termination) = 40 bytes
10758
        *
10759
        *   ipv6 dual address
10760
        *   Or y1:y2:y3:y4:y:y6:x.x.x.x yx is 4, y1-y6 is 24, ":" is 6
10761
        *   x.x.x.x is 15.
10762
        *   Max len is 24 + 6 + 15 + 1(Termination) = 46 bytes
10763
        *
10764
        *   Expect data in ip[16]
10765
        *   e.g (aaaa):(bbbb):(cccc):....(hhhh)
10766
        *   (aaaa) = (ip[0<<8)|ip[1]
10767
        *   ......
10768
        *   (hhhh) = (ip[14]<<8)|(ip[15])
10769
        *
10770
        *   e.g ::(gggg):(hhhh)
10771
        *   ip[0]-[11] = 0
10772
        *   (gggg) = (ip[12]<<8) |(ip[13])
10773
        *   (hhhh) = (ip[14]<<8) |(ip[15])
10774
        *
10775
        *   Because it is not able to know which ivp6 scheme uses from data to
10776
        *   reconstruct IP address, this function assumes
10777
        *   ivp6 normal address scheme, not dual address scheme,
10778
        *   to re-construct IP address in ascii.
10779
        */
10780
        buf = (char*)XMALLOC(max_ipv6_len, NULL, DYNAMIC_TYPE_TMP_BUFFER);
10781
        if (!buf) {
10782
            WOLFSSL_MSG("failed malloc");
10783
            return ret;
10784
        }
10785
        p = buf;
10786
        for (i = 0; i < 16; i += 2) {
10787
            val = (((word32)(ip[i]<<8)) | (ip[i+1])) & 0xFFFF;
10788
            if (val == 0) {
10789
                if (!write_zero) {
10790
                    *p = ':';
10791
                }
10792
                p++;
10793
                *p = '\0';
10794
                write_zero = 1;
10795
            }
10796
            else {
10797
                if (i != 0) {
10798
                    *p++ = ':';
10799
                }
10800
                (void)XSNPRINTF(p, max_ipv6_len - (size_t)(p - buf), "%x", val);
10801
            }
10802
            /* sanity check */
10803
            if (XSTRLEN(buf) > max_ipv6_len) {
10804
                WOLFSSL_MSG("The target ip address exceeds buffer length(40)");
10805
                XFREE(buf, NULL, DYNAMIC_TYPE_TMP_BUFFER);
10806
                buf = NULL;
10807
                break;
10808
            }
10809
            /* move the pointer to the last */
10810
            /* XSTRLEN includes NULL because of XSPRINTF use */
10811
            p = buf + (XSTRLEN(buf));
10812
        }
10813
        /* termination */
10814
        if (i == 16 && buf) {
10815
            p--;
10816
            if ((*p) == ':') {
10817
                /* when the last character is :, the following segments are zero
10818
                 * Therefore, adding : and null termination */
10819
                p++;
10820
                *p++ = ':';
10821
                *p = '\0';
10822
            }
10823
        }
10824
    }
10825
    else {
10826
        WOLFSSL_MSG("iplen is zero, do nothing");
10827
        return WOLFSSL_SUCCESS;
10828
    }
10829
10830
    if (buf) {
10831
        /* set address to ip asc */
10832
        ret = wolfSSL_X509_VERIFY_PARAM_set1_ip_asc(param, buf);
10833
        XFREE(buf, NULL, DYNAMIC_TYPE_TMP_BUFFER);
10834
    }
10835
#else
10836
    (void)param;
10837
    (void)ip;
10838
    (void)iplen;
10839
#endif
10840
10841
    return ret;
10842
}
10843
10844
#ifndef NO_WOLFSSL_STUB
10845
void wolfSSL_X509_OBJECT_free_contents(WOLFSSL_X509_OBJECT* obj)
10846
{
10847
    (void)obj;
10848
    WOLFSSL_STUB("X509_OBJECT_free_contents");
10849
}
10850
#endif
10851
10852
#ifndef NO_ASN_TIME
10853
int wolfSSL_X509_cmp_current_time(const WOLFSSL_ASN1_TIME* asnTime)
10854
{
10855
    return wolfSSL_X509_cmp_time(asnTime, NULL);
10856
}
10857
10858
/* return WOLFSSL_FATAL_ERROR if asnTime is earlier than or equal to cmpTime,
10859
 * and 1 otherwise
10860
 * return 0 on error
10861
 */
10862
int wolfSSL_X509_cmp_time(const WOLFSSL_ASN1_TIME* asnTime, time_t* cmpTime)
10863
{
10864
    int ret = WC_NO_ERR_TRACE(WOLFSSL_FAILURE);
10865
    time_t tmpTime, *pTime = &tmpTime;
10866
    struct tm ts, *tmpTs, *ct;
10867
#if defined(NEED_TMP_TIME)
10868
    /* for use with gmtime_r */
10869
    struct tm tmpTimeStorage;
10870
10871
    tmpTs = &tmpTimeStorage;
10872
#else
10873
    tmpTs = NULL;
10874
#endif
10875
    (void)tmpTs;
10876
10877
    if (asnTime == NULL) {
10878
        return WOLFSSL_FAILURE;
10879
    }
10880
10881
    if (cmpTime == NULL) {
10882
        /* Use current time */
10883
        *pTime = wc_Time(0);
10884
    }
10885
    else {
10886
        pTime = cmpTime;
10887
    }
10888
10889
    if (wolfSSL_ASN1_TIME_to_tm((WOLFSSL_ASN1_TIME*)asnTime, &ts) !=
10890
                                                              WOLFSSL_SUCCESS) {
10891
        WOLFSSL_MSG("Failed to convert WOLFSSL_ASN1_TIME to struct tm.");
10892
        return WOLFSSL_FAILURE;
10893
    }
10894
10895
    /* Convert to time struct*/
10896
    ct = XGMTIME(pTime, tmpTs);
10897
10898
    if (ct == NULL)
10899
        return GETTIME_ERROR;
10900
10901
    /* DateGreaterThan returns 1 for >; 0 for <= */
10902
    ret = DateGreaterThan(&ts, ct) ? 1 : -1;
10903
10904
    return ret;
10905
}
10906
#endif /* !NO_ASN_TIME */
10907
10908
#if (defined(OPENSSL_EXTRA) || defined(WOLFSSL_WPAS_SMALL)) && \
10909
    !defined(NO_ASN_TIME) && !defined(USER_TIME) && !defined(TIME_OVERRIDES)
10910
WOLFSSL_ASN1_TIME *wolfSSL_X509_time_adj_ex(WOLFSSL_ASN1_TIME *asnTime,
10911
    int offset_day, long offset_sec, time_t *in_tm)
10912
{
10913
    /* get current time if in_tm is null */
10914
    time_t t = in_tm ? *in_tm : wc_Time(0);
10915
    return wolfSSL_ASN1_TIME_adj(asnTime, t, offset_day, offset_sec);
10916
}
10917
10918
WOLFSSL_ASN1_TIME *wolfSSL_X509_time_adj(WOLFSSL_ASN1_TIME *asnTime,
10919
    long offset_sec, time_t *in_tm)
10920
{
10921
    return wolfSSL_X509_time_adj_ex(asnTime, 0, offset_sec, in_tm);
10922
}
10923
10924
WOLFSSL_ASN1_TIME* wolfSSL_X509_gmtime_adj(WOLFSSL_ASN1_TIME *s, long adj)
10925
{
10926
    return wolfSSL_X509_time_adj(s, adj, NULL);
10927
}
10928
#endif
10929
10930
int wolfSSL_sk_X509_REVOKED_num(WOLFSSL_STACK* sk)
10931
{
10932
    WOLFSSL_ENTER("wolfSSL_sk_X509_REVOKED_num");
10933
    if (sk != NULL) {
10934
        return (int)sk->num;
10935
    }
10936
    return 0;
10937
}
10938
10939
/* Free a WOLFSSL_X509_REVOKED and all its owned memory. */
10940
void wolfSSL_X509_REVOKED_free(WOLFSSL_X509_REVOKED* rev)
10941
{
10942
    if (rev == NULL) {
10943
        return;
10944
    }
10945
10946
    wolfSSL_ASN1_INTEGER_free(rev->serialNumber);
10947
    wolfSSL_ASN1_TIME_free(rev->revocationDate);
10948
10949
    if (rev->extensions != NULL) {
10950
        wolfSSL_sk_pop_free(rev->extensions, NULL);
10951
    }
10952
    if (rev->issuer != NULL) {
10953
        wolfSSL_sk_pop_free(rev->issuer, NULL);
10954
    }
10955
10956
    XFREE(rev, NULL, DYNAMIC_TYPE_OPENSSL);
10957
}
10958
10959
#ifdef HAVE_CRL
10960
/* Build a WOLFSSL_X509_REVOKED from an internal RevokedCert.
10961
 * Caller takes ownership of the returned object. */
10962
static WOLFSSL_X509_REVOKED* RevokedCertToRevoked(RevokedCert* rc, int seq)
10963
{
10964
    WOLFSSL_X509_REVOKED* rev;
10965
    WOLFSSL_ASN1_INTEGER* serial;
10966
10967
    if (rc == NULL) {
10968
        return NULL;
10969
    }
10970
10971
    rev = (WOLFSSL_X509_REVOKED*)XMALLOC(sizeof(WOLFSSL_X509_REVOKED), NULL,
10972
                                          DYNAMIC_TYPE_OPENSSL);
10973
    if (rev == NULL) {
10974
        return NULL;
10975
    }
10976
    XMEMSET(rev, 0, sizeof(WOLFSSL_X509_REVOKED));
10977
10978
    /* Serial number */
10979
    serial = wolfSSL_ASN1_INTEGER_new();
10980
    if (serial == NULL) {
10981
        XFREE(rev, NULL, DYNAMIC_TYPE_OPENSSL);
10982
        return NULL;
10983
    }
10984
    if (rc->serialSz > 0 && rc->serialSz <= EXTERNAL_SERIAL_SIZE) {
10985
        serial->data = (unsigned char*)XMALLOC((size_t)rc->serialSz, NULL,
10986
                                               DYNAMIC_TYPE_OPENSSL);
10987
        if (serial->data == NULL) {
10988
            wolfSSL_ASN1_INTEGER_free(serial);
10989
            XFREE(rev, NULL, DYNAMIC_TYPE_OPENSSL);
10990
            return NULL;
10991
        }
10992
        XMEMCPY(serial->data, rc->serialNumber, (size_t)rc->serialSz);
10993
        serial->length = rc->serialSz;
10994
        serial->dataMax = rc->serialSz;
10995
        serial->isDynamic = 1;
10996
    }
10997
    rev->serialNumber = serial;
10998
10999
    /* Revocation date */
11000
    {
11001
        WOLFSSL_ASN1_TIME* revDate = wolfSSL_ASN1_TIME_new();
11002
        if (revDate != NULL) {
11003
            int dateLen = 0;
11004
            /* Determine date length from the format byte */
11005
            if (rc->revDateFormat == ASN_UTC_TIME ||
11006
                    rc->revDateFormat == ASN_GENERALIZED_TIME) {
11007
                /* Find actual length: dates are null-terminated strings in
11008
                 * revDate buffer up to MAX_DATE_SIZE */
11009
                while (dateLen < MAX_DATE_SIZE && rc->revDate[dateLen] != 0)
11010
                    dateLen++;
11011
            }
11012
            if (dateLen > 0 && dateLen < MAX_DATE_SIZE) {
11013
                XMEMCPY(revDate->data, rc->revDate, (size_t)dateLen);
11014
                revDate->length = dateLen;
11015
                revDate->type = rc->revDateFormat;
11016
            }
11017
        }
11018
        rev->revocationDate = revDate;
11019
    }
11020
11021
    /* Reason code */
11022
    rev->reason = rc->reasonCode;
11023
11024
    /* Sequence (load order) */
11025
    rev->sequence = seq;
11026
11027
    /* issuer: left as NULL (indirect CRL not yet supported) */
11028
    /* extensions: left as NULL for now (raw DER available in RevokedCert
11029
     * but decoded STACK_OF(X509_EXTENSION) build not yet implemented) */
11030
11031
    return rev;
11032
}
11033
#endif /* HAVE_CRL */
11034
11035
WOLFSSL_STACK* wolfSSL_X509_CRL_get_REVOKED(WOLFSSL_X509_CRL* crl)
11036
{
11037
    WOLFSSL_ENTER("wolfSSL_X509_CRL_get_REVOKED");
11038
11039
    if (crl == NULL) {
11040
        return NULL;
11041
    }
11042
11043
#if defined(OPENSSL_EXTRA) && defined(HAVE_CRL)
11044
    /* Return cached stack if already built */
11045
    if (crl->revokedStack != NULL) {
11046
        return crl->revokedStack;
11047
    }
11048
11049
    /* Build the stack from the internal RevokedCert linked list */
11050
    if (crl->crlList != NULL) {
11051
        WOLFSSL_STACK* sk;
11052
        RevokedCert* rc;
11053
        int seq = 0;
11054
11055
        sk = wolfSSL_sk_new_null();
11056
        if (sk == NULL) {
11057
            return NULL;
11058
        }
11059
        sk->type = STACK_TYPE_X509_REVOKED;
11060
11061
        for (rc = crl->crlList->certs; rc != NULL; rc = rc->next) {
11062
            WOLFSSL_X509_REVOKED* rev = RevokedCertToRevoked(rc, seq);
11063
            if (rev == NULL) {
11064
                /* Clean up on failure */
11065
                wolfSSL_sk_pop_free(sk, NULL);
11066
                return NULL;
11067
            }
11068
            /* Push to stack. wolfSSL_sk_push returns total count on success. */
11069
            if (wolfSSL_sk_push(sk, rev) <= 0) {
11070
                wolfSSL_X509_REVOKED_free(rev);
11071
                wolfSSL_sk_pop_free(sk, NULL);
11072
                return NULL;
11073
            }
11074
            seq++;
11075
        }
11076
11077
        crl->revokedStack = sk;
11078
        return sk;
11079
    }
11080
#endif /* OPENSSL_EXTRA && HAVE_CRL */
11081
11082
    return NULL;
11083
}
11084
11085
WOLFSSL_X509_REVOKED* wolfSSL_sk_X509_REVOKED_value(
11086
                                    WOLFSSL_STACK* sk, int idx)
11087
{
11088
    WOLFSSL_ENTER("wolfSSL_sk_X509_REVOKED_value");
11089
11090
    if (sk == NULL) {
11091
        return NULL;
11092
    }
11093
11094
    return (WOLFSSL_X509_REVOKED*)wolfSSL_sk_value(sk, idx);
11095
}
11096
11097
/* Extension accessors for WOLFSSL_X509_REVOKED */
11098
int wolfSSL_X509_REVOKED_get_ext_count(const WOLFSSL_X509_REVOKED* rev)
11099
{
11100
    WOLFSSL_ENTER("wolfSSL_X509_REVOKED_get_ext_count");
11101
    if (rev != NULL && rev->extensions != NULL) {
11102
        return (int)rev->extensions->num;
11103
    }
11104
    return 0;
11105
}
11106
11107
WOLFSSL_X509_EXTENSION* wolfSSL_X509_REVOKED_get_ext(
11108
                                     const WOLFSSL_X509_REVOKED* rev, int loc)
11109
{
11110
    WOLFSSL_ENTER("wolfSSL_X509_REVOKED_get_ext");
11111
    if (rev != NULL && rev->extensions != NULL) {
11112
        return (WOLFSSL_X509_EXTENSION*)wolfSSL_sk_value(rev->extensions, loc);
11113
    }
11114
    return NULL;
11115
}
11116
11117
#endif /* OPENSSL_EXTRA */
11118
11119
#if defined(OPENSSL_EXTRA) || defined(WOLFSSL_WPAS_SMALL)
11120
11121
WOLFSSL_ASN1_INTEGER* wolfSSL_X509_get_serialNumber(WOLFSSL_X509* x509)
11122
{
11123
    WOLFSSL_ASN1_INTEGER* a;
11124
    int i = 0;
11125
11126
    WOLFSSL_ENTER("wolfSSL_X509_get_serialNumber");
11127
11128
    if (x509 == NULL) {
11129
        WOLFSSL_MSG("NULL function argument");
11130
        return NULL;
11131
    }
11132
11133
    if (x509->serialNumber != NULL)
11134
       return x509->serialNumber;
11135
11136
    if (x509->serialSz < 0) {
11137
        WOLFSSL_MSG("Invalid serial number size");
11138
        return NULL;
11139
    }
11140
11141
    a = wolfSSL_ASN1_INTEGER_new();
11142
    if (a == NULL)
11143
        return NULL;
11144
11145
    /* Make sure there is space for the data, ASN.1 type and length. */
11146
    if (x509->serialSz > (WOLFSSL_ASN1_INTEGER_MAX - 2)) {
11147
        /* dynamically create data buffer, +2 for type and length */
11148
        a->data = (unsigned char*)XMALLOC(x509->serialSz + 2, NULL,
11149
                DYNAMIC_TYPE_OPENSSL);
11150
        if (a->data == NULL) {
11151
            wolfSSL_ASN1_INTEGER_free(a);
11152
            return NULL;
11153
        }
11154
        a->dataMax   = (unsigned int)x509->serialSz + 2;
11155
        a->isDynamic = 1;
11156
    }
11157
    else {
11158
        /* Use array instead of dynamic memory */
11159
        a->data    = a->intData;
11160
        a->dataMax = WOLFSSL_ASN1_INTEGER_MAX;
11161
    }
11162
11163
    #if defined(WOLFSSL_QT) || defined(WOLFSSL_HAPROXY)
11164
        XMEMCPY(&a->data[i], x509->serial, x509->serialSz);
11165
        a->length = x509->serialSz;
11166
    #else
11167
        a->data[i++] = ASN_INTEGER;
11168
        i += SetLength(x509->serialSz, a->data + i);
11169
        XMEMCPY(&a->data[i], x509->serial, x509->serialSz);
11170
        a->length = x509->serialSz + 2;
11171
    #endif
11172
11173
    x509->serialNumber = a;
11174
11175
    return a;
11176
}
11177
11178
#endif /* OPENSSL_EXTRA || WOLFSSL_WPAS_SMALL */
11179
11180
#if defined(OPENSSL_EXTRA) || defined(OPENSSL_EXTRA_X509_SMALL)
11181
11182
#if defined(OPENSSL_ALL) || defined(OPENSSL_EXTRA) || \
11183
    defined(WOLFSSL_APACHE_HTTPD) || defined(WOLFSSL_HAPROXY) || \
11184
    defined(WOLFSSL_WPAS)
11185
WOLFSSL_X509_ALGOR* wolfSSL_X509_ALGOR_new(void)
11186
{
11187
    WOLFSSL_X509_ALGOR* ret;
11188
    ret = (WOLFSSL_X509_ALGOR*)XMALLOC(sizeof(WOLFSSL_X509_ALGOR), NULL,
11189
                                       DYNAMIC_TYPE_OPENSSL);
11190
    if (ret) {
11191
        XMEMSET(ret, 0, sizeof(WOLFSSL_X509_ALGOR));
11192
    }
11193
    return ret;
11194
}
11195
11196
void wolfSSL_X509_ALGOR_free(WOLFSSL_X509_ALGOR *alg)
11197
{
11198
    if (alg) {
11199
        wolfSSL_ASN1_OBJECT_free(alg->algorithm);
11200
        wolfSSL_ASN1_TYPE_free(alg->parameter);
11201
        XFREE(alg, NULL, DYNAMIC_TYPE_OPENSSL);
11202
    }
11203
}
11204
11205
/* Returns X509_ALGOR struct with signature algorithm */
11206
const WOLFSSL_X509_ALGOR* wolfSSL_X509_get0_tbs_sigalg(const WOLFSSL_X509 *x509)
11207
{
11208
    WOLFSSL_ENTER("wolfSSL_X509_get0_tbs_sigalg");
11209
11210
    if (x509 == NULL) {
11211
        WOLFSSL_MSG("x509 struct NULL error");
11212
        return NULL;
11213
    }
11214
11215
    return &x509->algor;
11216
}
11217
11218
/* Sets paobj pointer to X509_ALGOR signature algorithm */
11219
void wolfSSL_X509_ALGOR_get0(const WOLFSSL_ASN1_OBJECT **paobj, int *pptype,
11220
                            const void **ppval, const WOLFSSL_X509_ALGOR *algor)
11221
{
11222
    WOLFSSL_ENTER("wolfSSL_X509_ALGOR_get0");
11223
11224
    if (!algor) {
11225
        WOLFSSL_MSG("algor object is NULL");
11226
        return;
11227
    }
11228
11229
    if (paobj)
11230
        *paobj = algor->algorithm;
11231
    if (ppval && algor->parameter)
11232
        *ppval = algor->parameter->value.ptr;
11233
    if (pptype) {
11234
        if (algor->parameter) {
11235
            *pptype = algor->parameter->type;
11236
        }
11237
        else {
11238
            /* Default to WOLFSSL_V_ASN1_OBJECT */
11239
            *pptype = WOLFSSL_V_ASN1_OBJECT;
11240
        }
11241
    }
11242
}
11243
11244
/**
11245
 * Populate algor members.
11246
 *
11247
 * @param algor The object to be set
11248
 * @param aobj The value to be set in algor->algorithm
11249
 * @param ptype The type of algor->parameter
11250
 * @param pval The value of algor->parameter
11251
 * @return WOLFSSL_SUCCESS on success
11252
 *         WOLFSSL_FAILURE on missing parameters or bad malloc
11253
 */
11254
int wolfSSL_X509_ALGOR_set0(WOLFSSL_X509_ALGOR *algor,
11255
                            WOLFSSL_ASN1_OBJECT *aobj, int ptype, void *pval)
11256
{
11257
    if (!algor) {
11258
        return WOLFSSL_FAILURE;
11259
    }
11260
11261
    if (!algor->parameter) {
11262
        algor->parameter = wolfSSL_ASN1_TYPE_new();
11263
        if (!algor->parameter) {
11264
            return WOLFSSL_FAILURE;
11265
        }
11266
    }
11267
11268
    if (aobj) {
11269
        algor->algorithm = aobj;
11270
    }
11271
    wolfSSL_ASN1_TYPE_set(algor->parameter, ptype, pval);
11272
11273
    return WOLFSSL_SUCCESS;
11274
}
11275
11276
/**
11277
 * Serialize object to DER encoding
11278
 *
11279
 * @param alg Object to serialize
11280
 * @param pp  Output
11281
 * @return Length on success
11282
 *         Negative number on failure
11283
 */
11284
int wolfSSL_i2d_X509_ALGOR(const WOLFSSL_X509_ALGOR* alg,
11285
        unsigned char** pp)
11286
{
11287
    int len;
11288
    word32 oid = 0;
11289
    word32 idx = 0;
11290
    unsigned char* buf = NULL;
11291
11292
    if (alg == NULL || alg->algorithm == 0) {
11293
        WOLFSSL_MSG("alg is NULL or algorithm not set");
11294
        return WOLFSSL_FATAL_ERROR;
11295
    }
11296
11297
    if (GetObjectId(alg->algorithm->obj, &idx, &oid,
11298
            (word32)alg->algorithm->grp, alg->algorithm->objSz) < 0) {
11299
        WOLFSSL_MSG("Issue getting OID of object");
11300
        return WOLFSSL_FATAL_ERROR;
11301
    }
11302
11303
    len = (int)SetAlgoID((int)oid, NULL, alg->algorithm->grp, 0);
11304
    if (len == 0) {
11305
        WOLFSSL_MSG("SetAlgoID error");
11306
        return WOLFSSL_FATAL_ERROR;
11307
    }
11308
11309
    if (pp != NULL) {
11310
        if (*pp != NULL)
11311
            buf = *pp;
11312
        else {
11313
            buf = (byte*)XMALLOC((size_t)len, NULL, DYNAMIC_TYPE_ASN1);
11314
            if (buf == NULL)
11315
                return WOLFSSL_FATAL_ERROR;
11316
        }
11317
11318
        len = (int)SetAlgoID((int)oid, buf, alg->algorithm->grp, 0);
11319
        if (len == 0) {
11320
            WOLFSSL_MSG("SetAlgoID error");
11321
            if (*pp == NULL)
11322
                XFREE(buf, NULL, DYNAMIC_TYPE_ASN1);
11323
            return WOLFSSL_FATAL_ERROR;
11324
        }
11325
11326
        if (*pp != NULL)
11327
            *pp += len;
11328
        else
11329
            *pp = buf;
11330
    }
11331
11332
    return len;
11333
}
11334
11335
WOLFSSL_X509_ALGOR* wolfSSL_d2i_X509_ALGOR(WOLFSSL_X509_ALGOR** out,
11336
        const byte** src, long len)
11337
{
11338
    WOLFSSL_X509_ALGOR* ret = NULL;
11339
    word32 idx = 0;
11340
    word32 oid = 0;
11341
    int grp;
11342
11343
    WOLFSSL_ENTER("wolfSSL_d2i_X509_ALGOR");
11344
11345
    if (src == NULL || *src == NULL || len <= 0)
11346
        return NULL;
11347
11348
    if (GetAlgoId(*src, &idx, &oid, oidIgnoreType, (word32)len) != 0)
11349
        return NULL;
11350
11351
    /* Try to guess the type */
11352
    for (grp = 0; grp < oidIgnoreType; grp++) {
11353
        word32 oidSz;
11354
        if (OidFromId(oid, (word32)grp, &oidSz) != NULL)
11355
            break;
11356
    }
11357
    if (grp == oidIgnoreType)
11358
        return NULL;
11359
11360
    ret = wolfSSL_X509_ALGOR_new();
11361
    if (ret == NULL)
11362
        return NULL;
11363
11364
    ret->algorithm = wolfSSL_OBJ_nid2obj(oid2nid(oid, grp));
11365
    if (ret->algorithm == NULL) {
11366
        wolfSSL_X509_ALGOR_free(ret);
11367
        return NULL;
11368
    }
11369
    *src += idx;
11370
11371
    if (out != NULL) {
11372
        if (*out != NULL)
11373
            wolfSSL_X509_ALGOR_free(*out);
11374
        *out = ret;
11375
    }
11376
11377
    return ret;
11378
}
11379
11380
/**
11381
 * Allocate a new WOLFSSL_X509_PUBKEY object.
11382
 *
11383
 * @return New zero'ed WOLFSSL_X509_PUBKEY object
11384
 */
11385
WOLFSSL_X509_PUBKEY *wolfSSL_X509_PUBKEY_new(void)
11386
{
11387
    WOLFSSL_X509_PUBKEY *ret;
11388
    ret = (WOLFSSL_X509_PUBKEY*)XMALLOC(sizeof(WOLFSSL_X509_PUBKEY), NULL,
11389
                                        DYNAMIC_TYPE_OPENSSL);
11390
    if (!ret) {
11391
        return NULL;
11392
    }
11393
    XMEMSET(ret, 0, sizeof(WOLFSSL_X509_PUBKEY));
11394
    ret->algor = wolfSSL_X509_ALGOR_new();
11395
    if (!ret->algor) {
11396
        wolfSSL_X509_PUBKEY_free(ret);
11397
        return NULL;
11398
    }
11399
    return ret;
11400
}
11401
11402
/**
11403
 * Free WOLFSSL_X509_PUBKEY and all its members.
11404
 *
11405
 * @param at Object to free
11406
 */
11407
void wolfSSL_X509_PUBKEY_free(WOLFSSL_X509_PUBKEY *x)
11408
{
11409
    if (x) {
11410
        if (x->algor) {
11411
            wolfSSL_X509_ALGOR_free(x->algor);
11412
        }
11413
        if (x->pkey) {
11414
            wolfSSL_EVP_PKEY_free(x->pkey);
11415
        }
11416
        XFREE(x, NULL, DYNAMIC_TYPE_OPENSSL);
11417
    }
11418
}
11419
11420
/* Returns X509_PUBKEY structure containing X509_ALGOR and EVP_PKEY */
11421
WOLFSSL_X509_PUBKEY* wolfSSL_X509_get_X509_PUBKEY(const WOLFSSL_X509* x509)
11422
{
11423
    WOLFSSL_ENTER("wolfSSL_X509_get_X509_PUBKEY");
11424
11425
    if (x509 == NULL) {
11426
        WOLFSSL_MSG("x509 struct NULL error");
11427
        return NULL;
11428
    }
11429
11430
    return (WOLFSSL_X509_PUBKEY*)&x509->key;
11431
}
11432
11433
/* Sets ppkalg pointer to X509_PUBKEY algorithm. Returns WOLFSSL_SUCCESS on
11434
    success or WOLFSSL_FAILURE on error. */
11435
int wolfSSL_X509_PUBKEY_get0_param(WOLFSSL_ASN1_OBJECT **ppkalg,
11436
     const unsigned char **pk, int *ppklen, WOLFSSL_X509_ALGOR **pa,
11437
     WOLFSSL_X509_PUBKEY *pub)
11438
{
11439
    WOLFSSL_ENTER("wolfSSL_X509_PUBKEY_get0_param");
11440
11441
    if (!pub || !pub->pubKeyOID) {
11442
        WOLFSSL_MSG("X509_PUBKEY struct not populated");
11443
        return WOLFSSL_FAILURE;
11444
    }
11445
11446
    if (!pub->algor) {
11447
        if (!(pub->algor = wolfSSL_X509_ALGOR_new())) {
11448
            return WOLFSSL_FAILURE;
11449
        }
11450
        pub->algor->algorithm = wolfSSL_OBJ_nid2obj(pub->pubKeyOID);
11451
        if (pub->algor->algorithm == NULL) {
11452
            WOLFSSL_MSG("Failed to create object from NID");
11453
            return WOLFSSL_FAILURE;
11454
        }
11455
    }
11456
11457
    if (pa)
11458
        *pa = pub->algor;
11459
    if (ppkalg)
11460
        *ppkalg = pub->algor->algorithm;
11461
    if (pk)
11462
        *pk = (unsigned char*)pub->pkey->pkey.ptr;
11463
    if (ppklen)
11464
        *ppklen = pub->pkey->pkey_sz;
11465
11466
    return WOLFSSL_SUCCESS;
11467
}
11468
11469
/* Returns a pointer to the pkey when passed a key */
11470
WOLFSSL_EVP_PKEY* wolfSSL_X509_PUBKEY_get(WOLFSSL_X509_PUBKEY* key)
11471
{
11472
    WOLFSSL_ENTER("wolfSSL_X509_PUBKEY_get");
11473
    if (key == NULL || key->pkey == NULL) {
11474
        WOLFSSL_LEAVE("wolfSSL_X509_PUBKEY_get", BAD_FUNC_ARG);
11475
        return NULL;
11476
    }
11477
    if (wolfSSL_EVP_PKEY_up_ref(key->pkey) != WOLFSSL_SUCCESS) {
11478
        WOLFSSL_LEAVE("wolfSSL_X509_PUBKEY_get", BAD_MUTEX_E);
11479
        return NULL;
11480
    }
11481
    WOLFSSL_LEAVE("wolfSSL_X509_PUBKEY_get", WOLFSSL_SUCCESS);
11482
    return key->pkey;
11483
}
11484
11485
int wolfSSL_X509_PUBKEY_set(WOLFSSL_X509_PUBKEY **x, WOLFSSL_EVP_PKEY *key)
11486
{
11487
    WOLFSSL_X509_PUBKEY *pk = NULL;
11488
    int ptype;
11489
    void *pval;
11490
#ifndef NO_DSA
11491
    WOLFSSL_ASN1_STRING *str;
11492
#endif
11493
#ifdef HAVE_ECC
11494
    int nid;
11495
    const WOLFSSL_EC_GROUP *group;
11496
#endif
11497
    WOLFSSL_ASN1_OBJECT *keyTypeObj;
11498
11499
    WOLFSSL_ENTER("wolfSSL_X509_PUBKEY_set");
11500
11501
    if (!x || !key) {
11502
        return WOLFSSL_FAILURE;
11503
    }
11504
11505
    if (!(pk = wolfSSL_X509_PUBKEY_new())) {
11506
        return WOLFSSL_FAILURE;
11507
    }
11508
11509
    switch (key->type) {
11510
#ifndef NO_RSA
11511
    case WC_EVP_PKEY_RSA:
11512
        pval = NULL;
11513
        ptype = WOLFSSL_V_ASN1_NULL;
11514
        pk->pubKeyOID = RSAk;
11515
        break;
11516
#endif
11517
#ifndef NO_DSA
11518
    case WC_EVP_PKEY_DSA:
11519
        if (!key->dsa->p || !key->dsa->q || !key->dsa->g)
11520
            goto error;
11521
11522
        str = wolfSSL_ASN1_STRING_new();
11523
        if (str == NULL)
11524
            goto error;
11525
11526
        str->length = wolfSSL_i2d_DSAparams(key->dsa,
11527
             (unsigned char **)&str->data);
11528
        if (str->length <= 0) {
11529
            wolfSSL_ASN1_STRING_free(str);
11530
            goto error;
11531
        }
11532
        str->isDynamic = 1;
11533
11534
        pval = str;
11535
        ptype = WOLFSSL_V_ASN1_SEQUENCE;
11536
        pk->pubKeyOID = DSAk;
11537
        break;
11538
#endif
11539
#ifdef HAVE_ECC
11540
    case WC_EVP_PKEY_EC:
11541
        group = wolfSSL_EC_KEY_get0_group(key->ecc);
11542
        if (!group)
11543
            goto error;
11544
11545
        nid = wolfSSL_EC_GROUP_get_curve_name(group);
11546
        if (nid <= 0) {
11547
            /* TODO: Add support for no nid case */
11548
            WOLFSSL_MSG("nid not found");
11549
            goto error;
11550
        }
11551
11552
        pval = wolfSSL_OBJ_nid2obj(nid);
11553
        if (!pval)
11554
            goto error;
11555
11556
        ptype = WOLFSSL_V_ASN1_OBJECT;
11557
        pk->pubKeyOID = ECDSAk;
11558
        break;
11559
#endif
11560
    default:
11561
        WOLFSSL_MSG("Unknown key type");
11562
        goto error;
11563
    }
11564
11565
    keyTypeObj = wolfSSL_OBJ_nid2obj(key->type);
11566
    if (keyTypeObj == NULL) {
11567
        if (ptype == WOLFSSL_V_ASN1_OBJECT)
11568
            wolfSSL_ASN1_OBJECT_free((WOLFSSL_ASN1_OBJECT *)pval);
11569
        else
11570
            wolfSSL_ASN1_STRING_free((WOLFSSL_ASN1_STRING *)pval);
11571
        goto error;
11572
    }
11573
    if (!wolfSSL_X509_ALGOR_set0(pk->algor, keyTypeObj, ptype, pval)) {
11574
        WOLFSSL_MSG("Failed to create algorithm object");
11575
        wolfSSL_ASN1_OBJECT_free(keyTypeObj);
11576
        if (ptype == WOLFSSL_V_ASN1_OBJECT)
11577
            wolfSSL_ASN1_OBJECT_free((WOLFSSL_ASN1_OBJECT *)pval);
11578
        else
11579
            wolfSSL_ASN1_STRING_free((WOLFSSL_ASN1_STRING *)pval);
11580
        goto error;
11581
    }
11582
11583
    if (!wolfSSL_EVP_PKEY_up_ref(key)) {
11584
        WOLFSSL_MSG("Failed to up key reference");
11585
        goto error;
11586
    }
11587
    pk->pkey = key;
11588
11589
    wolfSSL_X509_PUBKEY_free(*x);
11590
    *x = pk;
11591
    return WOLFSSL_SUCCESS;
11592
error:
11593
    if (pk) {
11594
        wolfSSL_X509_PUBKEY_free(pk);
11595
    }
11596
    return WOLFSSL_FAILURE;
11597
}
11598
11599
#endif /* OPENSSL_ALL || OPENSSL_EXTRA || WOLFSSL_APACHE_HTTPD ||
11600
        * WOLFSSL_HAPROXY || WOLFSSL_WPAS */
11601
11602
#if defined(OPENSSL_EXTRA) && !defined(NO_CERTS) && !defined(NO_ASN) && \
11603
    !defined(NO_PWDBASED)
11604
11605
int wolfSSL_i2d_X509_PUBKEY(WOLFSSL_X509_PUBKEY* x509_PubKey,
11606
    unsigned char** der)
11607
{
11608
    if (x509_PubKey == NULL)
11609
        return WOLFSSL_FATAL_ERROR;
11610
    return wolfSSL_i2d_PublicKey(x509_PubKey->pkey, der);
11611
}
11612
11613
#endif /* OPENSSL_EXTRA && !NO_CERTS && !NO_ASN && !NO_PWDBASED */
11614
11615
#endif /* OPENSSL_EXTRA || OPENSSL_EXTRA_X509_SMALL */
11616
11617
#if defined(OPENSSL_EXTRA) || defined(WOLFSSL_WPAS_SMALL)
11618
WOLFSSL_BASIC_CONSTRAINTS* wolfSSL_BASIC_CONSTRAINTS_new(void)
11619
{
11620
    WOLFSSL_BASIC_CONSTRAINTS* bc;
11621
    bc = (WOLFSSL_BASIC_CONSTRAINTS*)
11622
          XMALLOC(sizeof(WOLFSSL_BASIC_CONSTRAINTS), NULL,
11623
          DYNAMIC_TYPE_X509_EXT);
11624
    if (bc == NULL) {
11625
        WOLFSSL_MSG("Failed to malloc basic constraints");
11626
        return NULL;
11627
    }
11628
    XMEMSET(bc, 0, sizeof(WOLFSSL_BASIC_CONSTRAINTS));
11629
    return bc;
11630
}
11631
11632
/* frees the wolfSSL_BASIC_CONSTRAINTS object */
11633
void wolfSSL_BASIC_CONSTRAINTS_free(WOLFSSL_BASIC_CONSTRAINTS *bc)
11634
{
11635
    WOLFSSL_ENTER("wolfSSL_BASIC_CONSTRAINTS_free");
11636
    if (bc == NULL) {
11637
        WOLFSSL_MSG("Argument is NULL");
11638
        return;
11639
    }
11640
    if (bc->pathlen) {
11641
        wolfSSL_ASN1_INTEGER_free(bc->pathlen);
11642
    }
11643
    XFREE(bc, NULL, DYNAMIC_TYPE_OPENSSL);
11644
}
11645
11646
WOLFSSL_AUTHORITY_KEYID* wolfSSL_AUTHORITY_KEYID_new(void)
11647
{
11648
    WOLFSSL_AUTHORITY_KEYID* akey = (WOLFSSL_AUTHORITY_KEYID*)XMALLOC(
11649
          sizeof(WOLFSSL_AUTHORITY_KEYID), NULL, DYNAMIC_TYPE_OPENSSL);
11650
    if (!akey) {
11651
        WOLFSSL_MSG("Issue creating WOLFSSL_AUTHORITY_KEYID struct");
11652
        return NULL;
11653
    }
11654
    XMEMSET(akey, 0, sizeof(WOLFSSL_AUTHORITY_KEYID));
11655
    return akey;
11656
}
11657
11658
/* frees the wolfSSL_AUTHORITY_KEYID object */
11659
void wolfSSL_AUTHORITY_KEYID_free(WOLFSSL_AUTHORITY_KEYID *id)
11660
{
11661
    WOLFSSL_ENTER("wolfSSL_AUTHORITY_KEYID_free");
11662
    if (id == NULL) {
11663
        WOLFSSL_MSG("Argument is NULL");
11664
        return;
11665
    }
11666
    if (id->keyid) {
11667
        wolfSSL_ASN1_STRING_free(id->keyid);
11668
    }
11669
    if (id->issuer) {
11670
        wolfSSL_ASN1_OBJECT_free(id->issuer);
11671
    }
11672
    if (id->serial) {
11673
        wolfSSL_ASN1_INTEGER_free(id->serial);
11674
    }
11675
    XFREE(id, NULL, DYNAMIC_TYPE_OPENSSL);
11676
}
11677
11678
#endif /* OPENSSL_EXTRA || WOLFSSL_WPAS_SMALL */
11679
11680
#ifdef KEEP_PEER_CERT
11681
char*  wolfSSL_X509_get_subjectCN(WOLFSSL_X509* x509)
11682
{
11683
    if (x509 == NULL)
11684
        return NULL;
11685
11686
    return x509->subjectCN;
11687
}
11688
#endif /* KEEP_PEER_CERT */
11689
11690
#if defined(OPENSSL_EXTRA_X509_SMALL) || defined(OPENSSL_EXTRA)
11691
/* increments ref count of WOLFSSL_X509. Return 1 on success, 0 on error */
11692
int wolfSSL_X509_up_ref(WOLFSSL_X509* x509)
11693
{
11694
    if (x509) {
11695
        int ret;
11696
        wolfSSL_RefInc(&x509->ref, &ret);
11697
        if (ret != 0) {
11698
            WOLFSSL_MSG("Failed to lock x509 mutex");
11699
            return WOLFSSL_FAILURE;
11700
        }
11701
11702
        return WOLFSSL_SUCCESS;
11703
    }
11704
11705
    return WOLFSSL_FAILURE;
11706
}
11707
#endif /* OPENSSL_EXTRA_X509_SMALL || OPENSSL_EXTRA */
11708
11709
#if defined(OPENSSL_EXTRA) || defined(WOLFSSL_WPAS_SMALL)
11710
WOLF_STACK_OF(WOLFSSL_X509)* wolfSSL_X509_chain_up_ref(
11711
        WOLF_STACK_OF(WOLFSSL_X509)* chain)
11712
{
11713
    /* wolfSSL_sk_dup takes care of doing a deep copy */
11714
    return wolfSSL_sk_dup(chain);
11715
}
11716
#endif
11717
11718
#if defined(OPENSSL_EXTRA)
11719
11720
WOLF_STACK_OF(WOLFSSL_X509_OBJECT)* wolfSSL_sk_X509_OBJECT_deep_copy(
11721
    const WOLF_STACK_OF(WOLFSSL_X509_OBJECT)* sk,
11722
    WOLFSSL_X509_OBJECT* (*c)(const WOLFSSL_X509_OBJECT*),
11723
    void (*f)(WOLFSSL_X509_OBJECT*))
11724
{
11725
    (void)f; /* free function */
11726
    (void)c; /* copy function */
11727
    return wolfSSL_sk_dup((WOLFSSL_STACK*)sk);
11728
}
11729
#endif
11730
11731
#if defined(OPENSSL_EXTRA) || defined(OPENSSL_EXTRA_X509_SMALL)
11732
    void wolfSSL_X509_NAME_free(WOLFSSL_X509_NAME *name)
11733
    {
11734
        WOLFSSL_ENTER("wolfSSL_X509_NAME_free");
11735
        FreeX509Name(name);
11736
        if (name != NULL) {
11737
            XFREE(name, name->heap, DYNAMIC_TYPE_X509);
11738
        }
11739
    }
11740
11741
11742
    /* Malloc's a new WOLFSSL_X509_NAME structure
11743
     *
11744
     * returns NULL on failure, otherwise returns a new structure.
11745
     */
11746
    WOLFSSL_X509_NAME* wolfSSL_X509_NAME_new_ex(void *heap)
11747
    {
11748
        WOLFSSL_X509_NAME* name;
11749
11750
        WOLFSSL_ENTER("wolfSSL_X509_NAME_new_ex");
11751
11752
        name = (WOLFSSL_X509_NAME*)XMALLOC(sizeof(WOLFSSL_X509_NAME), heap,
11753
                DYNAMIC_TYPE_X509);
11754
        if (name != NULL) {
11755
            InitX509Name(name, 1, heap);
11756
        }
11757
        return name;
11758
    }
11759
11760
    WOLFSSL_X509_NAME* wolfSSL_X509_NAME_new(void) {
11761
        return wolfSSL_X509_NAME_new_ex(NULL);
11762
    }
11763
11764
    /* Creates a duplicate of a WOLFSSL_X509_NAME structure.
11765
       Returns a new WOLFSSL_X509_NAME structure or NULL on failure */
11766
    WOLFSSL_X509_NAME* wolfSSL_X509_NAME_dup(const WOLFSSL_X509_NAME *name)
11767
    {
11768
        WOLFSSL_X509_NAME* copy = NULL;
11769
11770
        WOLFSSL_ENTER("wolfSSL_X509_NAME_dup");
11771
11772
        if (name == NULL) {
11773
            WOLFSSL_MSG("NULL parameter");
11774
            return NULL;
11775
        }
11776
11777
        if (!(copy = wolfSSL_X509_NAME_new_ex(name->heap))) {
11778
            return NULL;
11779
        }
11780
11781
        /* copy contents */
11782
        InitX509Name(copy, 1, name->heap);
11783
        if (wolfSSL_X509_NAME_copy(name, copy) != WOLFSSL_SUCCESS) {
11784
            wolfSSL_X509_NAME_free(copy);
11785
            return NULL;
11786
        }
11787
11788
        return copy;
11789
    }
11790
11791
#ifdef WOLFSSL_CERT_GEN
11792
11793
#if defined(WOLFSSL_CERT_REQ) || defined(WOLFSSL_CERT_EXT) || \
11794
    defined(OPENSSL_EXTRA)
11795
    /* Helper function to copy cert name from a WOLFSSL_X509_NAME structure to
11796
    * a Cert structure.
11797
    *
11798
    * returns length of DER on success and a negative error value on failure
11799
    */
11800
    static int CopyX509NameToCert(WOLFSSL_X509_NAME* n, byte* out)
11801
    {
11802
        unsigned char* der = NULL;
11803
        int length = WC_NO_ERR_TRACE(BAD_FUNC_ARG), ret;
11804
        word32 idx = 0;
11805
11806
        ret = wolfSSL_i2d_X509_NAME(n, &der);
11807
        if (ret > (int)sizeof(CertName) || ret < 0) {
11808
            WOLFSSL_MSG("Name conversion error");
11809
            ret = MEMORY_E;
11810
        }
11811
11812
        if (ret > 0) {
11813
            /* strip off sequence, this gets added on certificate creation */
11814
            ret = GetSequence(der, &idx, &length, (word32)ret);
11815
        }
11816
11817
        if (ret > 0) {
11818
            XMEMCPY(out, der + idx, length);
11819
        }
11820
11821
        XFREE(der, NULL, DYNAMIC_TYPE_OPENSSL);
11822
11823
        return length;
11824
    }
11825
#endif
11826
11827
#ifdef WOLFSSL_CERT_REQ
11828
    static int ReqCertFromX509(Cert* cert, WOLFSSL_X509* req)
11829
    {
11830
        int ret;
11831
11832
        if (wc_InitCert(cert) != 0)
11833
            return WOLFSSL_FAILURE;
11834
11835
11836
        ret = CopyX509NameToCert(&req->subject, cert->sbjRaw);
11837
        if (ret < 0) {
11838
            WOLFSSL_MSG("REQ subject conversion error");
11839
            ret = MEMORY_E;
11840
        }
11841
        else {
11842
            ret = WOLFSSL_SUCCESS;
11843
        }
11844
11845
        if (ret == WOLFSSL_SUCCESS) {
11846
            cert->version = req->version;
11847
            cert->isCA = req->isCa;
11848
            cert->basicConstSet = req->basicConstSet;
11849
    #ifdef WOLFSSL_CERT_EXT
11850
            if (req->subjKeyIdSz != 0) {
11851
                if (req->subjKeyIdSz > CTC_MAX_SKID_SIZE) {
11852
                    WOLFSSL_MSG("Subject Key ID too large");
11853
                    WOLFSSL_ERROR_VERBOSE(BUFFER_E);
11854
                    ret = WOLFSSL_FAILURE;
11855
                }
11856
                else if (req->subjKeyId == NULL) {
11857
                    WOLFSSL_MSG("Subject Key ID missing");
11858
                    WOLFSSL_ERROR_VERBOSE(BAD_FUNC_ARG);
11859
                    ret = WOLFSSL_FAILURE;
11860
                }
11861
                else {
11862
                    XMEMCPY(cert->skid, req->subjKeyId,
11863
                            req->subjKeyIdSz);
11864
                    cert->skidSz = (int)req->subjKeyIdSz;
11865
                }
11866
            }
11867
            if (req->keyUsageSet)
11868
                cert->keyUsage = req->keyUsage;
11869
11870
            cert->extKeyUsage = req->extKeyUsage;
11871
    #endif
11872
        }
11873
11874
        if (ret == WOLFSSL_SUCCESS) {
11875
        #if defined(OPENSSL_ALL)
11876
            int idx;
11877
        #endif
11878
11879
            XMEMCPY(cert->challengePw, req->challengePw, CTC_NAME_SIZE);
11880
            cert->challengePwPrintableString = req->challengePw[0] != 0;
11881
11882
        #if defined(OPENSSL_ALL)
11883
            idx = wolfSSL_X509_REQ_get_attr_by_NID(req,
11884
                    WC_NID_pkcs9_unstructuredName, -1);
11885
            if (idx != WC_NO_ERR_TRACE(WOLFSSL_FATAL_ERROR)) {
11886
                WOLFSSL_X509_ATTRIBUTE *attr;
11887
                attr = wolfSSL_X509_REQ_get_attr(req, idx);
11888
                if (attr != NULL) {
11889
                    const unsigned char *attrData;
11890
                    int attrDataSz;
11891
11892
                    attrData = wolfSSL_ASN1_STRING_get0_data(
11893
                            attr->value->value.asn1_string);
11894
                    attrDataSz = wolfSSL_ASN1_STRING_length(
11895
                            attr->value->value.asn1_string);
11896
11897
                    /* +1 to make sure is terminated string */
11898
                    if (attrDataSz + 1 > CTC_NAME_SIZE) {
11899
                        WOLFSSL_MSG("attribute size was too large to copy");
11900
                        ret = REQ_ATTRIBUTE_E;
11901
                    }
11902
                    else {
11903
                        XMEMCPY(cert->unstructuredName, attrData, attrDataSz);
11904
                        cert->unstructuredName[attrDataSz] = '\0';
11905
                    }
11906
                }
11907
            }
11908
11909
        #ifdef WOLFSSL_CUSTOM_OID
11910
            if (ret == WOLFSSL_SUCCESS) {
11911
                if ((req->customExtCount < 0) ||
11912
                    (req->customExtCount >= NUM_CUSTOM_EXT)) {
11913
                    WOLFSSL_MSG("Bad value for customExtCount.");
11914
                    ret = WOLFSSL_FAILURE;
11915
                }
11916
11917
                if (ret == WOLFSSL_SUCCESS) {
11918
                    for (idx = 0; idx < req->customExtCount; idx++) {
11919
                        /* Note that ownership is NOT transferred.
11920
                         * req->custom_exts buffers still need to be cleaned
11921
                         * up. */
11922
                        cert->customCertExt[idx] = req->custom_exts[idx];
11923
                    }
11924
                    cert->customCertExtCount = req->customExtCount;
11925
                }
11926
            }
11927
        #endif /* WOLFSSL_CUSTOM_OID */
11928
        #endif /* OPENSSL_ALL */
11929
11930
    #ifdef WOLFSSL_ALT_NAMES
11931
            if (ret == WOLFSSL_SUCCESS) {
11932
                cert->altNamesSz = FlattenAltNames(cert->altNames,
11933
                        sizeof(cert->altNames), req->altNames);
11934
            }
11935
    #endif /* WOLFSSL_ALT_NAMES */
11936
        }
11937
11938
        return ret;
11939
    }
11940
#endif /* WOLFSSL_CERT_REQ */
11941
11942
/* converts WOLFSSL_AN1_TIME to Cert form, returns positive size on
11943
 * success */
11944
static int CertDateFromX509(byte* out, int outSz, WOLFSSL_ASN1_TIME* t)
11945
{
11946
    int sz, i;
11947
11948
    if (t->length + 1 >= outSz) {
11949
        return BUFFER_E;
11950
    }
11951
11952
    out[0] = (byte) t->type;
11953
    sz = (int)SetLength((word32)t->length, out + 1) + 1;  /* gen tag */
11954
    for (i = 0; i < t->length; i++) {
11955
        out[sz + i] = t->data[i];
11956
    }
11957
    return t->length + sz;
11958
}
11959
11960
/* convert a WOLFSSL_X509 to a Cert structure for writing out */
11961
static int CertFromX509(Cert* cert, WOLFSSL_X509* x509)
11962
{
11963
    int ret;
11964
#ifdef WOLFSSL_CERT_EXT
11965
    int i;
11966
#endif
11967
11968
    WOLFSSL_ENTER("wolfSSL_X509_to_Cert");
11969
11970
    if (x509 == NULL || cert == NULL) {
11971
        return BAD_FUNC_ARG;
11972
    }
11973
11974
    wc_InitCert(cert);
11975
11976
    cert->version = (int)wolfSSL_X509_get_version(x509);
11977
11978
    if (x509->notBefore.length > 0) {
11979
        cert->beforeDateSz = CertDateFromX509(cert->beforeDate,
11980
                    CTC_DATE_SIZE, &x509->notBefore);
11981
        if (cert->beforeDateSz <= 0) {
11982
            WOLFSSL_MSG("Error converting WOLFSSL_X509 not before date");
11983
            return WOLFSSL_FAILURE;
11984
        }
11985
    }
11986
    else {
11987
        cert->beforeDateSz = 0;
11988
    }
11989
11990
    if (x509->notAfter.length > 0) {
11991
        cert->afterDateSz = CertDateFromX509(cert->afterDate,
11992
                    CTC_DATE_SIZE, &x509->notAfter);
11993
        if (cert->afterDateSz <= 0) {
11994
            WOLFSSL_MSG("Error converting WOLFSSL_X509 not after date");
11995
            return WOLFSSL_FAILURE;
11996
        }
11997
    }
11998
    else {
11999
        cert->afterDateSz = 0;
12000
    }
12001
12002
#ifdef WOLFSSL_ALT_NAMES
12003
    cert->altNamesSz = FlattenAltNames(cert->altNames,
12004
            sizeof(cert->altNames), x509->altNames);
12005
#endif /* WOLFSSL_ALT_NAMES */
12006
12007
    cert->sigType = wolfSSL_X509_get_signature_type(x509);
12008
    cert->keyType = x509->pubKeyOID;
12009
    cert->isCA    = wolfSSL_X509_get_isCA(x509);
12010
    cert->basicConstCrit = x509->basicConstCrit;
12011
    cert->basicConstSet = x509->basicConstSet;
12012
    cert->pathLen = (byte)x509->pathLength;
12013
    cert->pathLenSet = x509->pathLengthSet;
12014
12015
#ifdef WOLFSSL_CERT_EXT
12016
    if (x509->subjKeyIdSz <= CTC_MAX_SKID_SIZE) {
12017
        if (x509->subjKeyId) {
12018
            XMEMCPY(cert->skid, x509->subjKeyId, x509->subjKeyIdSz);
12019
        }
12020
        cert->skidSz = (int)x509->subjKeyIdSz;
12021
    }
12022
    else {
12023
        WOLFSSL_MSG("Subject Key ID too large");
12024
        WOLFSSL_ERROR_VERBOSE(BUFFER_E);
12025
        return WOLFSSL_FAILURE;
12026
    }
12027
12028
    #ifdef WOLFSSL_AKID_NAME
12029
    cert->rawAkid = 0;
12030
    if (x509->authKeyIdSrc) {
12031
        if (x509->authKeyIdSrcSz > sizeof(cert->akid)) {
12032
            WOLFSSL_MSG("Auth Key ID too large");
12033
            WOLFSSL_ERROR_VERBOSE(BUFFER_E);
12034
            return WOLFSSL_FAILURE;
12035
        }
12036
        XMEMCPY(cert->akid, x509->authKeyIdSrc, x509->authKeyIdSrcSz);
12037
        cert->akidSz = (int)x509->authKeyIdSrcSz;
12038
        cert->rawAkid = 1;
12039
    }
12040
    else
12041
    #endif
12042
    if (x509->authKeyId) {
12043
        if (x509->authKeyIdSz > sizeof(cert->akid)) {
12044
            WOLFSSL_MSG("Auth Key ID too large");
12045
            WOLFSSL_ERROR_VERBOSE(BUFFER_E);
12046
            return WOLFSSL_FAILURE;
12047
        }
12048
        XMEMCPY(cert->akid, x509->authKeyId, x509->authKeyIdSz);
12049
        cert->akidSz = (int)x509->authKeyIdSz;
12050
    }
12051
12052
    for (i = 0; i < x509->certPoliciesNb; i++) {
12053
        /* copy the smaller of MAX macros, by default they are currently equal*/
12054
        if ((int)CTC_MAX_CERTPOL_SZ <= (int)MAX_CERTPOL_SZ) {
12055
            XMEMCPY(cert->certPolicies[i], x509->certPolicies[i],
12056
                    CTC_MAX_CERTPOL_SZ);
12057
        }
12058
        else {
12059
            XMEMCPY(cert->certPolicies[i], x509->certPolicies[i],
12060
                    MAX_CERTPOL_SZ);
12061
        }
12062
    }
12063
    cert->certPoliciesNb = (word16)x509->certPoliciesNb;
12064
12065
    cert->keyUsage = x509->keyUsage;
12066
    cert->extKeyUsage = x509->extKeyUsage;
12067
    cert->nsCertType = x509->nsCertType;
12068
12069
    if (x509->rawCRLInfo != NULL) {
12070
        if (x509->rawCRLInfoSz > CTC_MAX_CRLINFO_SZ) {
12071
            WOLFSSL_MSG("CRL Info too large");
12072
            WOLFSSL_ERROR_VERBOSE(BUFFER_E);
12073
            return WOLFSSL_FAILURE;
12074
        }
12075
        XMEMCPY(cert->crlInfo, x509->rawCRLInfo, x509->rawCRLInfoSz);
12076
        cert->crlInfoSz = x509->rawCRLInfoSz;
12077
    }
12078
12079
#ifdef WOLFSSL_DUAL_ALG_CERTS
12080
    /* We point to instance in x509 so DON'T need to be free'd. */
12081
    cert->sapkiDer = x509->sapkiDer;
12082
    cert->sapkiLen = x509->sapkiLen;
12083
    cert->sapkiCrit = x509->sapkiCrit;
12084
    cert->altSigAlgDer = x509->altSigAlgDer;
12085
    cert->altSigAlgLen  = x509->altSigAlgLen;
12086
    cert->altSigAlgCrit = x509->altSigAlgCrit;
12087
    cert->altSigValDer = x509->altSigValDer;
12088
    cert->altSigValLen = x509->altSigValLen;
12089
    cert->altSigValCrit = x509->altSigValCrit;
12090
#endif /* WOLFSSL_DUAL_ALG_CERTS */
12091
12092
#if defined(WOLFSSL_ASN_TEMPLATE) && defined(WOLFSSL_CUSTOM_OID) && \
12093
    defined(HAVE_OID_ENCODING)
12094
12095
    if ((x509->customExtCount < 0) ||
12096
            (x509->customExtCount >= NUM_CUSTOM_EXT)) {
12097
        WOLFSSL_MSG("Bad value for customExtCount.");
12098
        return WOLFSSL_FAILURE;
12099
    }
12100
12101
    for (i = 0; i < x509->customExtCount; i++) {
12102
        if (wc_SetCustomExtension(cert, x509->custom_exts[i].crit,
12103
                x509->custom_exts[i].oid, x509->custom_exts[i].val,
12104
                x509->custom_exts[i].valSz))
12105
        {
12106
            return WOLFSSL_FAILURE;
12107
        }
12108
    }
12109
#endif /* WOLFSSL_ASN_TEMPLATE && WOLFSSL_CUSTOM_OID && HAVE_OID_ENCODING */
12110
12111
#endif /* WOLFSSL_CERT_EXT */
12112
12113
#ifdef WOLFSSL_CERT_REQ
12114
    /* copy over challenge password for REQ certs */
12115
    XMEMCPY(cert->challengePw, x509->challengePw, CTC_NAME_SIZE);
12116
#endif
12117
12118
    /* Only makes sense to do this for OPENSSL_EXTRA because without
12119
     * this define the function will error out below */
12120
    #ifdef OPENSSL_EXTRA
12121
    if (x509->serialSz == 0 && x509->serialNumber != NULL &&
12122
            /* Check if the buffer contains more than just the
12123
             * ASN tag and length */
12124
            x509->serialNumber->length > 2) {
12125
        if (wolfSSL_X509_set_serialNumber(x509, x509->serialNumber)
12126
                != WOLFSSL_SUCCESS) {
12127
            WOLFSSL_MSG("Failed to set serial number");
12128
            return WOLFSSL_FAILURE;
12129
        }
12130
    }
12131
    #endif
12132
12133
    /* set serial number */
12134
    if (x509->serialSz > 0) {
12135
    #if defined(OPENSSL_EXTRA)
12136
        byte serial[EXTERNAL_SERIAL_SIZE];
12137
        int  serialSz = EXTERNAL_SERIAL_SIZE;
12138
12139
        ret = wolfSSL_X509_get_serial_number(x509, serial, &serialSz);
12140
        if (ret != WOLFSSL_SUCCESS) {
12141
            WOLFSSL_MSG("Serial size error");
12142
            return WOLFSSL_FAILURE;
12143
        }
12144
12145
        if (serialSz > EXTERNAL_SERIAL_SIZE ||
12146
                serialSz > CTC_SERIAL_SIZE) {
12147
            WOLFSSL_MSG("Serial size too large error");
12148
            WOLFSSL_ERROR_VERBOSE(BUFFER_E);
12149
            return WOLFSSL_FAILURE;
12150
        }
12151
        XMEMCPY(cert->serial, serial, serialSz);
12152
        cert->serialSz = serialSz;
12153
    #else
12154
        WOLFSSL_MSG("Getting X509 serial number not supported");
12155
        return WOLFSSL_FAILURE;
12156
    #endif
12157
    }
12158
12159
    /* copy over Name structures */
12160
    if (x509->issuerSet)
12161
        cert->selfSigned = 0;
12162
12163
#if defined(WOLFSSL_CERT_EXT) || defined(OPENSSL_EXTRA)
12164
    ret = CopyX509NameToCert(&x509->subject, cert->sbjRaw);
12165
    if (ret < 0) {
12166
        WOLFSSL_MSG("Subject conversion error");
12167
        return MEMORY_E;
12168
    }
12169
    if (cert->selfSigned) {
12170
        XMEMCPY(cert->issRaw, cert->sbjRaw, sizeof(CertName));
12171
    }
12172
    else {
12173
        ret = CopyX509NameToCert(&x509->issuer, cert->issRaw);
12174
        if (ret < 0) {
12175
            WOLFSSL_MSG("Issuer conversion error");
12176
            return MEMORY_E;
12177
        }
12178
    }
12179
#endif
12180
12181
    cert->heap = x509->heap;
12182
12183
    (void)ret;
12184
    return WOLFSSL_SUCCESS;
12185
}
12186
12187
12188
    /* returns the sig type to use on success i.e CTC_SHAwRSA and WOLFSSL_FALURE
12189
     * on fail case */
12190
    static int wolfSSL_sigTypeFromPKEY(WOLFSSL_EVP_MD* md,
12191
            WOLFSSL_EVP_PKEY* pkey)
12192
    {
12193
    #if !defined(NO_PWDBASED) && defined(OPENSSL_EXTRA)
12194
        int hashType;
12195
        int sigType = WOLFSSL_FAILURE;
12196
12197
        /* Convert key type and hash algorithm to a signature algorithm */
12198
        if (wolfSSL_EVP_get_hashinfo(md, &hashType, NULL)
12199
            == WC_NO_ERR_TRACE(WOLFSSL_FAILURE))
12200
        {
12201
            return WOLFSSL_FAILURE;
12202
        }
12203
12204
        if (pkey->type == WC_EVP_PKEY_RSA) {
12205
            switch (hashType) {
12206
                case WC_HASH_TYPE_SHA:
12207
                    sigType = CTC_SHAwRSA;
12208
                    break;
12209
                case WC_HASH_TYPE_SHA224:
12210
                    sigType = CTC_SHA224wRSA;
12211
                    break;
12212
                case WC_HASH_TYPE_SHA256:
12213
                    sigType = CTC_SHA256wRSA;
12214
                    break;
12215
                case WC_HASH_TYPE_SHA384:
12216
                    sigType = CTC_SHA384wRSA;
12217
                    break;
12218
                case WC_HASH_TYPE_SHA512:
12219
                    sigType = CTC_SHA512wRSA;
12220
                    break;
12221
            #ifdef WOLFSSL_SHA3
12222
                case WC_HASH_TYPE_SHA3_224:
12223
                    sigType = CTC_SHA3_224wRSA;
12224
                    break;
12225
                case WC_HASH_TYPE_SHA3_256:
12226
                    sigType = CTC_SHA3_256wRSA;
12227
                    break;
12228
                case WC_HASH_TYPE_SHA3_384:
12229
                    sigType = CTC_SHA3_384wRSA;
12230
                    break;
12231
                case WC_HASH_TYPE_SHA3_512:
12232
                    sigType = CTC_SHA3_512wRSA;
12233
                    break;
12234
            #endif
12235
                default:
12236
                    return WOLFSSL_FAILURE;
12237
            }
12238
        }
12239
        else if (pkey->type == WC_EVP_PKEY_EC) {
12240
            switch (hashType) {
12241
                case WC_HASH_TYPE_SHA:
12242
                    sigType = CTC_SHAwECDSA;
12243
                    break;
12244
                case WC_HASH_TYPE_SHA224:
12245
                    sigType = CTC_SHA224wECDSA;
12246
                    break;
12247
                case WC_HASH_TYPE_SHA256:
12248
                    sigType = CTC_SHA256wECDSA;
12249
                    break;
12250
                case WC_HASH_TYPE_SHA384:
12251
                    sigType = CTC_SHA384wECDSA;
12252
                    break;
12253
                case WC_HASH_TYPE_SHA512:
12254
                    sigType = CTC_SHA512wECDSA;
12255
                    break;
12256
            #ifdef WOLFSSL_SHA3
12257
                case WC_HASH_TYPE_SHA3_224:
12258
                    sigType = CTC_SHA3_224wECDSA;
12259
                    break;
12260
                case WC_HASH_TYPE_SHA3_256:
12261
                    sigType = CTC_SHA3_256wECDSA;
12262
                    break;
12263
                case WC_HASH_TYPE_SHA3_384:
12264
                    sigType = CTC_SHA3_384wECDSA;
12265
                    break;
12266
                case WC_HASH_TYPE_SHA3_512:
12267
                    sigType = CTC_SHA3_512wECDSA;
12268
                    break;
12269
            #endif
12270
                default:
12271
                    return WOLFSSL_FAILURE;
12272
            }
12273
        }
12274
        else
12275
            return WOLFSSL_FAILURE;
12276
        return sigType;
12277
#else
12278
        (void)md;
12279
        (void)pkey;
12280
        WOLFSSL_MSG("Cannot get hashinfo when NO_PWDBASED is defined");
12281
        return WOLFSSL_FAILURE;
12282
#endif /* !NO_PWDBASED && OPENSSL_EXTRA */
12283
    }
12284
12285
12286
    /* generates DER buffer from WOLFSSL_X509
12287
     * If req == 1 then creates a request DER buffer
12288
     *
12289
     * updates derSz with certificate body size on success
12290
     * return WOLFSSL_SUCCESS on success
12291
     */
12292
    static int wolfssl_x509_make_der(WOLFSSL_X509* x509, int req,
12293
            unsigned char* der, int* derSz, int includeSig)
12294
    {
12295
        int ret = WC_NO_ERR_TRACE(WOLFSSL_FAILURE);
12296
        int totalLen;
12297
        Cert* cert = NULL;
12298
        void* key = NULL;
12299
        int type = -1;
12300
    #ifndef NO_RSA
12301
        RsaKey* rsa = NULL;
12302
    #endif
12303
    #ifdef HAVE_ECC
12304
        ecc_key* ecc = NULL;
12305
    #endif
12306
    #ifndef NO_DSA
12307
        DsaKey* dsa = NULL;
12308
    #endif
12309
    #if defined(HAVE_FALCON)
12310
        falcon_key* falcon = NULL;
12311
    #endif
12312
    #if defined(WOLFSSL_HAVE_MLDSA)
12313
        wc_MlDsaKey* mldsa = NULL;
12314
    #endif
12315
    #if defined(WOLFSSL_HAVE_SLHDSA)
12316
        SlhDsaKey* slhdsa = NULL;
12317
    #endif
12318
        WC_RNG rng;
12319
        word32 idx = 0;
12320
12321
        if (x509 == NULL || der == NULL || derSz == NULL)
12322
            return BAD_FUNC_ARG;
12323
12324
    #ifndef WOLFSSL_CERT_REQ
12325
        if (req) {
12326
            WOLFSSL_MSG("WOLFSSL_CERT_REQ needed for certificate request");
12327
            return WOLFSSL_FAILURE;
12328
        }
12329
    #endif
12330
12331
        /* allocate Cert struct on heap since it is large */
12332
        cert = (Cert*)XMALLOC(sizeof(Cert), NULL, DYNAMIC_TYPE_CERT);
12333
        if (cert == NULL) {
12334
            WOLFSSL_MSG("Failed to allocate memory for Cert struct");
12335
            return WOLFSSL_FAILURE;
12336
        }
12337
        XMEMSET(cert, 0, sizeof(Cert));
12338
12339
    #ifdef WOLFSSL_CERT_REQ
12340
        if (req) {
12341
            if (ReqCertFromX509(cert, x509) != WOLFSSL_SUCCESS) {
12342
                XFREE(cert, NULL, DYNAMIC_TYPE_CERT);
12343
                return WOLFSSL_FAILURE;
12344
            }
12345
        }
12346
        else
12347
    #endif
12348
        {
12349
            /* Create a Cert that has the certificate fields. */
12350
            if (CertFromX509(cert, x509) != WOLFSSL_SUCCESS) {
12351
                XFREE(cert, NULL, DYNAMIC_TYPE_CERT);
12352
                return WOLFSSL_FAILURE;
12353
            }
12354
        }
12355
12356
        /* Create a public key object from requests public key. */
12357
    #ifndef NO_RSA
12358
        if (x509->pubKeyOID == RSAk) {
12359
12360
            rsa = (RsaKey*)XMALLOC(sizeof(RsaKey), NULL, DYNAMIC_TYPE_RSA);
12361
            if (rsa == NULL) {
12362
                WOLFSSL_MSG("Failed to allocate memory for RsaKey");
12363
                XFREE(cert, NULL, DYNAMIC_TYPE_CERT);
12364
                return WOLFSSL_FAILURE;
12365
            }
12366
12367
            type = RSA_TYPE;
12368
            ret = wc_InitRsaKey(rsa, x509->heap);
12369
            if (ret != 0) {
12370
                XFREE(rsa, NULL, DYNAMIC_TYPE_RSA);
12371
                XFREE(cert, NULL, DYNAMIC_TYPE_CERT);
12372
                return ret;
12373
            }
12374
            ret = wc_RsaPublicKeyDecode(x509->pubKey.buffer, &idx, rsa,
12375
                                                           x509->pubKey.length);
12376
            if (ret != 0) {
12377
                WOLFSSL_ERROR_VERBOSE(ret);
12378
                wc_FreeRsaKey(rsa);
12379
                XFREE(rsa, NULL, DYNAMIC_TYPE_RSA);
12380
                XFREE(cert, NULL, DYNAMIC_TYPE_CERT);
12381
                return ret;
12382
            }
12383
            key = (void*)rsa;
12384
        }
12385
    #endif
12386
    #ifdef HAVE_ECC
12387
        if (x509->pubKeyOID == ECDSAk) {
12388
12389
            ecc = (ecc_key*)XMALLOC(sizeof(ecc_key), NULL, DYNAMIC_TYPE_ECC);
12390
            if (ecc == NULL) {
12391
                WOLFSSL_MSG("Failed to allocate memory for ecc_key");
12392
                XFREE(cert, NULL, DYNAMIC_TYPE_CERT);
12393
                return WOLFSSL_FAILURE;
12394
            }
12395
12396
            type = ECC_TYPE;
12397
            ret = wc_ecc_init(ecc);
12398
            if (ret != 0) {
12399
                XFREE(ecc, NULL, DYNAMIC_TYPE_ECC);
12400
                XFREE(cert, NULL, DYNAMIC_TYPE_CERT);
12401
                return ret;
12402
            }
12403
            ret = wc_EccPublicKeyDecode(x509->pubKey.buffer, &idx, ecc,
12404
                                                           x509->pubKey.length);
12405
            if (ret != 0) {
12406
                WOLFSSL_ERROR_VERBOSE(ret);
12407
                wc_ecc_free(ecc);
12408
                XFREE(ecc, NULL, DYNAMIC_TYPE_ECC);
12409
                XFREE(cert, NULL, DYNAMIC_TYPE_CERT);
12410
                return ret;
12411
            }
12412
            key = (void*)ecc;
12413
        }
12414
    #endif
12415
    #ifndef NO_DSA
12416
        if (x509->pubKeyOID == DSAk) {
12417
12418
            dsa = (DsaKey*)XMALLOC(sizeof(DsaKey), NULL, DYNAMIC_TYPE_DSA);
12419
            if (dsa == NULL) {
12420
                WOLFSSL_MSG("Failed to allocate memory for DsaKey");
12421
                XFREE(cert, NULL, DYNAMIC_TYPE_CERT);
12422
                return WOLFSSL_FAILURE;
12423
            }
12424
12425
            type = DSA_TYPE;
12426
            ret = wc_InitDsaKey(dsa);
12427
            if (ret != 0) {
12428
                XFREE(dsa, NULL, DYNAMIC_TYPE_DSA);
12429
                XFREE(cert, NULL, DYNAMIC_TYPE_CERT);
12430
                return ret;
12431
            }
12432
            ret = wc_DsaPublicKeyDecode(x509->pubKey.buffer, &idx, dsa,
12433
                                                           x509->pubKey.length);
12434
            if (ret != 0) {
12435
                WOLFSSL_ERROR_VERBOSE(ret);
12436
                wc_FreeDsaKey(dsa);
12437
                XFREE(dsa, NULL, DYNAMIC_TYPE_DSA);
12438
                XFREE(cert, NULL, DYNAMIC_TYPE_CERT);
12439
                return ret;
12440
            }
12441
            key = (void*)dsa;
12442
        }
12443
    #endif
12444
    #if defined(HAVE_FALCON)
12445
        if ((x509->pubKeyOID == FALCON_LEVEL1k) ||
12446
            (x509->pubKeyOID == FALCON_LEVEL5k)) {
12447
            falcon = (falcon_key*)XMALLOC(sizeof(falcon_key), NULL,
12448
                                          DYNAMIC_TYPE_FALCON);
12449
            if (falcon == NULL) {
12450
                WOLFSSL_MSG("Failed to allocate memory for falcon_key");
12451
                XFREE(cert, NULL, DYNAMIC_TYPE_CERT);
12452
                return WOLFSSL_FAILURE;
12453
            }
12454
12455
            ret = wc_falcon_init(falcon);
12456
            if (ret != 0) {
12457
                XFREE(falcon, NULL, DYNAMIC_TYPE_FALCON);
12458
                XFREE(cert, NULL, DYNAMIC_TYPE_CERT);
12459
                return ret;
12460
            }
12461
12462
            if (x509->pubKeyOID == FALCON_LEVEL1k) {
12463
                type = FALCON_LEVEL1_TYPE;
12464
                wc_falcon_set_level(falcon, 1);
12465
            }
12466
            else if (x509->pubKeyOID == FALCON_LEVEL5k) {
12467
                type = FALCON_LEVEL5_TYPE;
12468
                wc_falcon_set_level(falcon, 5);
12469
            }
12470
12471
            ret = wc_Falcon_PublicKeyDecode(x509->pubKey.buffer, &idx, falcon,
12472
                                            x509->pubKey.length);
12473
            if (ret != 0) {
12474
                WOLFSSL_ERROR_VERBOSE(ret);
12475
                wc_falcon_free(falcon);
12476
                XFREE(falcon, NULL, DYNAMIC_TYPE_FALCON);
12477
                XFREE(cert, NULL, DYNAMIC_TYPE_CERT);
12478
                return ret;
12479
            }
12480
            key = (void*)falcon;
12481
        }
12482
    #endif
12483
    #if defined(WOLFSSL_HAVE_MLDSA)
12484
        if ((x509->pubKeyOID == ML_DSA_44k) ||
12485
            (x509->pubKeyOID == ML_DSA_65k) ||
12486
            (x509->pubKeyOID == ML_DSA_87k)
12487
            #ifdef WOLFSSL_MLDSA_FIPS204_DRAFT
12488
         || (x509->pubKeyOID == DILITHIUM_LEVEL2k)
12489
         || (x509->pubKeyOID == DILITHIUM_LEVEL3k)
12490
         || (x509->pubKeyOID == DILITHIUM_LEVEL5k)
12491
            #endif /* WOLFSSL_MLDSA_FIPS204_DRAFT */
12492
            ) {
12493
            mldsa = (wc_MlDsaKey*)XMALLOC(sizeof(wc_MlDsaKey), NULL,
12494
                                          DYNAMIC_TYPE_MLDSA);
12495
            if (mldsa == NULL) {
12496
                WOLFSSL_MSG("Failed to allocate memory for wc_MlDsaKey");
12497
                XFREE(cert, NULL, DYNAMIC_TYPE_CERT);
12498
                return WOLFSSL_FAILURE;
12499
            }
12500
12501
            ret = wc_MlDsaKey_Init(mldsa, NULL, INVALID_DEVID);
12502
            if (ret != 0) {
12503
                XFREE(mldsa, NULL, DYNAMIC_TYPE_MLDSA);
12504
                XFREE(cert, NULL, DYNAMIC_TYPE_CERT);
12505
                return ret;
12506
            }
12507
12508
            if (x509->pubKeyOID == ML_DSA_44k) {
12509
                type = ML_DSA_44_TYPE;
12510
                wc_MlDsaKey_SetParams(mldsa, WC_ML_DSA_44);
12511
            }
12512
            else if (x509->pubKeyOID == ML_DSA_65k) {
12513
                type = ML_DSA_65_TYPE;
12514
                wc_MlDsaKey_SetParams(mldsa, WC_ML_DSA_65);
12515
            }
12516
            else if (x509->pubKeyOID == ML_DSA_87k) {
12517
                type = ML_DSA_87_TYPE;
12518
                wc_MlDsaKey_SetParams(mldsa, WC_ML_DSA_87);
12519
            }
12520
            #ifdef WOLFSSL_MLDSA_FIPS204_DRAFT
12521
            else if (x509->pubKeyOID == DILITHIUM_LEVEL2k) {
12522
                type = DILITHIUM_LEVEL2_TYPE;
12523
                wc_MlDsaKey_SetParams(mldsa, WC_ML_DSA_44_DRAFT);
12524
            }
12525
            else if (x509->pubKeyOID == DILITHIUM_LEVEL3k) {
12526
                type = DILITHIUM_LEVEL3_TYPE;
12527
                wc_MlDsaKey_SetParams(mldsa, WC_ML_DSA_65_DRAFT);
12528
            }
12529
            else if (x509->pubKeyOID == DILITHIUM_LEVEL5k) {
12530
                type = DILITHIUM_LEVEL5_TYPE;
12531
                wc_MlDsaKey_SetParams(mldsa, WC_ML_DSA_87_DRAFT);
12532
            }
12533
            #endif /* WOLFSSL_MLDSA_FIPS204_DRAFT */
12534
12535
            ret = wc_MlDsaKey_PublicKeyDecode(mldsa, x509->pubKey.buffer,
12536
                                    x509->pubKey.length, &idx);
12537
            if (ret != 0) {
12538
                WOLFSSL_ERROR_VERBOSE(ret);
12539
                wc_MlDsaKey_Free(mldsa);
12540
                XFREE(mldsa, NULL, DYNAMIC_TYPE_MLDSA);
12541
                XFREE(cert, NULL, DYNAMIC_TYPE_CERT);
12542
                return ret;
12543
            }
12544
            key = (void*)mldsa;
12545
        }
12546
    #endif
12547
    #if defined(WOLFSSL_HAVE_SLHDSA)
12548
        if (wc_IsSlhDsaOid(x509->pubKeyOID)) {
12549
            int paramInt = wc_SlhDsaOidToParam(x509->pubKeyOID);
12550
            int certType = wc_SlhDsaOidToCertType(x509->pubKeyOID);
12551
12552
            /* The OID is a recognised SLH-DSA OID but the parameter set
12553
             * isn't built in; surface NOT_COMPILED_IN directly so
12554
             * callers can render an accurate diagnostic. */
12555
            if (paramInt == WC_NO_ERR_TRACE(NOT_COMPILED_IN) ||
12556
                    certType == WC_NO_ERR_TRACE(NOT_COMPILED_IN)) {
12557
                WOLFSSL_MSG("SLH-DSA variant not compiled in");
12558
                XFREE(cert, NULL, DYNAMIC_TYPE_CERT);
12559
                return NOT_COMPILED_IN;
12560
            }
12561
            /* Defensive: wc_IsSlhDsaOid already implies both lookups
12562
             * succeed, but check explicitly so any future drift between the
12563
             * three OID helpers surfaces as a clean failure rather than
12564
             * undefined behaviour from casting -1 to enum SlhDsaParam. */
12565
            if (paramInt < 0 || certType < 0) {
12566
                WOLFSSL_MSG("SLH-DSA OID helper mismatch");
12567
                XFREE(cert, NULL, DYNAMIC_TYPE_CERT);
12568
                return WOLFSSL_FAILURE;
12569
            }
12570
12571
            slhdsa = (SlhDsaKey*)XMALLOC(sizeof(SlhDsaKey), NULL,
12572
                                          DYNAMIC_TYPE_SLHDSA);
12573
            if (slhdsa == NULL) {
12574
                WOLFSSL_MSG("Failed to allocate memory for SlhDsaKey");
12575
                XFREE(cert, NULL, DYNAMIC_TYPE_CERT);
12576
                return WOLFSSL_FAILURE;
12577
            }
12578
12579
            type = certType;
12580
12581
            ret = wc_SlhDsaKey_Init(slhdsa, (enum SlhDsaParam)paramInt, NULL,
12582
                                    INVALID_DEVID);
12583
            if (ret != 0) {
12584
                XFREE(slhdsa, NULL, DYNAMIC_TYPE_SLHDSA);
12585
                XFREE(cert, NULL, DYNAMIC_TYPE_CERT);
12586
                return ret;
12587
            }
12588
12589
            ret = wc_SlhDsaKey_PublicKeyDecode(x509->pubKey.buffer, &idx,
12590
                                               slhdsa, x509->pubKey.length);
12591
            if (ret != 0) {
12592
                WOLFSSL_ERROR_VERBOSE(ret);
12593
                wc_SlhDsaKey_Free(slhdsa);
12594
                XFREE(slhdsa, NULL, DYNAMIC_TYPE_SLHDSA);
12595
                XFREE(cert, NULL, DYNAMIC_TYPE_CERT);
12596
                return ret;
12597
            }
12598
            key = (void*)slhdsa;
12599
        }
12600
    #endif
12601
        if (key == NULL) {
12602
            WOLFSSL_MSG("No public key found for certificate");
12603
            XFREE(cert, NULL, DYNAMIC_TYPE_CERT);
12604
            return WOLFSSL_FAILURE;
12605
        }
12606
12607
        /* Make the body of the certificate request. */
12608
    #ifdef WOLFSSL_CERT_REQ
12609
        if (req) {
12610
            ret = wc_MakeCertReq_ex(cert, der, *derSz, type, key);
12611
        }
12612
        else
12613
    #endif
12614
        {
12615
            ret = wc_InitRng(&rng);
12616
            if (ret != 0) {
12617
                ret = WOLFSSL_FAILURE;
12618
                goto cleanup;
12619
            }
12620
12621
            ret = wc_MakeCert_ex(cert, der, *derSz, type, key, &rng);
12622
            wc_FreeRng(&rng);
12623
        }
12624
        if (ret <= 0) {
12625
            WOLFSSL_ERROR_VERBOSE(ret);
12626
            ret = WOLFSSL_FAILURE;
12627
            goto cleanup;
12628
        }
12629
12630
        if ((x509->serialSz == 0) &&
12631
                (cert->serialSz <= EXTERNAL_SERIAL_SIZE) &&
12632
                (cert->serialSz > 0)) {
12633
        #if defined(OPENSSL_EXTRA)
12634
            WOLFSSL_ASN1_INTEGER *i = wolfSSL_ASN1_INTEGER_new();
12635
12636
            if (i == NULL) {
12637
                WOLFSSL_MSG("wolfSSL_ASN1_INTEGER_new error");
12638
                ret = WOLFSSL_FAILURE;
12639
                goto cleanup;
12640
            }
12641
            else {
12642
                i->length = cert->serialSz + 2;
12643
                i->data[0] = ASN_INTEGER;
12644
                i->data[1] = (unsigned char)cert->serialSz;
12645
                XMEMCPY(i->data + 2, cert->serial, cert->serialSz);
12646
                if (wolfSSL_X509_set_serialNumber(x509, i) != WOLFSSL_SUCCESS) {
12647
                    WOLFSSL_MSG("Issue setting generated serial number");
12648
                    wolfSSL_ASN1_INTEGER_free(i);
12649
                    ret = WOLFSSL_FAILURE;
12650
                    goto cleanup;
12651
                }
12652
                wolfSSL_ASN1_INTEGER_free(i);
12653
            }
12654
        #else
12655
            WOLFSSL_MSG("ASN1_INTEGER API not in build");
12656
12657
            ret = WOLFSSL_FAILURE;
12658
            goto cleanup;
12659
        #endif /* OPENSSL_EXTRA */
12660
        }
12661
12662
        if (includeSig) {
12663
            if (!x509->sig.buffer) {
12664
                WOLFSSL_MSG("No signature buffer");
12665
                ret = WOLFSSL_FAILURE;
12666
                goto cleanup;
12667
            }
12668
            totalLen = AddSignature(NULL, ret, NULL, x509->sig.length,
12669
                                  x509->sigOID);
12670
            if (totalLen > *derSz) {
12671
                WOLFSSL_MSG("Output der buffer too short");
12672
                ret = WOLFSSL_FAILURE;
12673
                goto cleanup;
12674
            }
12675
            ret = AddSignature(der, ret, x509->sig.buffer,
12676
                               x509->sig.length, x509->sigOID);
12677
        }
12678
12679
        *derSz = ret;
12680
        ret = WOLFSSL_SUCCESS;
12681
cleanup:
12682
        /* Dispose of the public key object. */
12683
    #ifndef NO_RSA
12684
        if (x509->pubKeyOID == RSAk) {
12685
            wc_FreeRsaKey(rsa);
12686
            XFREE(rsa, NULL, DYNAMIC_TYPE_RSA);
12687
        }
12688
    #endif
12689
    #ifdef HAVE_ECC
12690
        if (x509->pubKeyOID == ECDSAk) {
12691
            wc_ecc_free(ecc);
12692
            XFREE(ecc, NULL, DYNAMIC_TYPE_ECC);
12693
        }
12694
    #endif
12695
    #ifndef NO_DSA
12696
        if (x509->pubKeyOID == DSAk) {
12697
            wc_FreeDsaKey(dsa);
12698
            XFREE(dsa, NULL, DYNAMIC_TYPE_DSA);
12699
        }
12700
    #endif
12701
    #if defined(HAVE_FALCON)
12702
        if ((x509->pubKeyOID == FALCON_LEVEL1k) ||
12703
            (x509->pubKeyOID == FALCON_LEVEL5k)) {
12704
            wc_falcon_free(falcon);
12705
            XFREE(falcon, NULL, DYNAMIC_TYPE_FALCON);
12706
        }
12707
    #endif
12708
    #if defined(WOLFSSL_HAVE_MLDSA)
12709
        if ((x509->pubKeyOID == ML_DSA_44k) ||
12710
            (x509->pubKeyOID == ML_DSA_65k) ||
12711
            (x509->pubKeyOID == ML_DSA_87k)
12712
        #ifdef WOLFSSL_MLDSA_FIPS204_DRAFT
12713
         || (x509->pubKeyOID == DILITHIUM_LEVEL2k)
12714
         || (x509->pubKeyOID == DILITHIUM_LEVEL3k)
12715
         || (x509->pubKeyOID == DILITHIUM_LEVEL5k)
12716
        #endif
12717
        ) {
12718
            wc_MlDsaKey_Free(mldsa);
12719
            XFREE(mldsa, NULL, DYNAMIC_TYPE_MLDSA);
12720
        }
12721
    #endif
12722
    #if defined(WOLFSSL_HAVE_SLHDSA)
12723
        /* wc_IsSlhDsaOid returns 1 even for OIDs whose backend is
12724
         * NOT_COMPILED_IN; the early-return at the top of the SLH-DSA
12725
         * branch keeps slhdsa==NULL in that case. Guard the cleanup so
12726
         * future restructuring (a goto cleanup from inside the
12727
         * unbuilt-variant handler) cannot dereference a NULL key. */
12728
        if (wc_IsSlhDsaOid(x509->pubKeyOID) && slhdsa != NULL) {
12729
            wc_SlhDsaKey_Free(slhdsa);
12730
            XFREE(slhdsa, NULL, DYNAMIC_TYPE_SLHDSA);
12731
        }
12732
    #endif
12733
        XFREE(cert, NULL, DYNAMIC_TYPE_CERT);
12734
12735
        return ret;
12736
    }
12737
12738
12739
    /* signs a der buffer for the WOLFSSL_X509 structure using the PKEY and MD
12740
     * hash passed in
12741
     *
12742
     * WARNING: this free's and replaces the existing DER buffer in the
12743
     *          WOLFSSL_X509 with the newly signed buffer.
12744
     * returns size of signed buffer on success and negative values on fail
12745
     */
12746
    static int wolfSSL_X509_resign_cert(WOLFSSL_X509* x509, int req,
12747
            unsigned char* der, int derSz, int certBodySz, WOLFSSL_EVP_MD* md,
12748
            WOLFSSL_EVP_PKEY* pkey)
12749
    {
12750
        int ret;
12751
        void* key = NULL;
12752
        int type = -1;
12753
        int sigType;
12754
        WC_RNG rng;
12755
12756
        (void)req;
12757
        WOLFSSL_ENTER("wolfSSL_X509_resign_cert");
12758
12759
        sigType = wolfSSL_sigTypeFromPKEY(md, pkey);
12760
        if (sigType == WC_NO_ERR_TRACE(WOLFSSL_FAILURE)) {
12761
            WOLFSSL_MSG("Error getting signature type from pkey");
12762
            return WOLFSSL_FATAL_ERROR;
12763
        }
12764
12765
12766
        /* Get the private key object and type from pkey. */
12767
    #ifndef NO_RSA
12768
        if (pkey->type == WC_EVP_PKEY_RSA) {
12769
            type = RSA_TYPE;
12770
            key = pkey->rsa->internal;
12771
        }
12772
    #endif
12773
    #ifdef HAVE_ECC
12774
        if (pkey->type == WC_EVP_PKEY_EC) {
12775
            type = ECC_TYPE;
12776
            key = pkey->ecc->internal;
12777
        }
12778
    #endif
12779
12780
        /* Sign the certificate (request) body. */
12781
        ret = wc_InitRng(&rng);
12782
        if (ret != 0)
12783
            return ret;
12784
        ret = wc_SignCert_ex(certBodySz, sigType, der, (word32)derSz, type, key,
12785
            &rng);
12786
        wc_FreeRng(&rng);
12787
        if (ret < 0) {
12788
            WOLFSSL_LEAVE("wolfSSL_X509_resign_cert", ret);
12789
            return ret;
12790
        }
12791
        derSz = ret;
12792
12793
        /* Extract signature from buffer */
12794
        {
12795
            word32 idx = 0;
12796
            int    len = 0;
12797
12798
            /* Read top level sequence */
12799
            if (GetSequence(der, &idx, &len, (word32)derSz) < 0) {
12800
                WOLFSSL_MSG("GetSequence error");
12801
                return WOLFSSL_FATAL_ERROR;
12802
            }
12803
            /* Move idx to signature */
12804
            idx += certBodySz;
12805
            /* Read signature algo sequence */
12806
            if (GetSequence(der, &idx, &len, (word32)derSz) < 0) {
12807
                WOLFSSL_MSG("GetSequence error");
12808
                return WOLFSSL_FATAL_ERROR;
12809
            }
12810
            idx += len;
12811
            /* Read signature bit string */
12812
            if (CheckBitString(der, &idx, &len, (word32)derSz, 0, NULL) != 0) {
12813
                WOLFSSL_MSG("CheckBitString error");
12814
                return WOLFSSL_FATAL_ERROR;
12815
            }
12816
            /* Sanity check */
12817
            if (idx + len != (word32)derSz) {
12818
                WOLFSSL_MSG("unexpected asn1 structure");
12819
                return WOLFSSL_FATAL_ERROR;
12820
            }
12821
            x509->sig.length = 0;
12822
            if (x509->sig.buffer)
12823
                XFREE(x509->sig.buffer, x509->heap, DYNAMIC_TYPE_SIGNATURE);
12824
            x509->sig.buffer = (byte*)XMALLOC(len, x509->heap,
12825
                                              DYNAMIC_TYPE_SIGNATURE);
12826
            if (!x509->sig.buffer) {
12827
                WOLFSSL_MSG("malloc error");
12828
                return WOLFSSL_FATAL_ERROR;
12829
            }
12830
            XMEMCPY(x509->sig.buffer, der + idx, len);
12831
            x509->sig.length = (unsigned int)len;
12832
        }
12833
12834
        /* Put in the new certificate encoding into the x509 object. */
12835
        FreeDer(&x509->derCert);
12836
        type = CERT_TYPE;
12837
    #ifdef WOLFSSL_CERT_REQ
12838
        if (req) {
12839
            type = CERTREQ_TYPE;
12840
        }
12841
    #endif
12842
        if (AllocDer(&x509->derCert, (word32)derSz, type, NULL) != 0)
12843
            return WOLFSSL_FATAL_ERROR;
12844
        XMEMCPY(x509->derCert->buffer, der, derSz);
12845
        x509->derCert->length = (word32)derSz;
12846
12847
        return ret;
12848
    }
12849
12850
12851
#ifndef WC_MAX_X509_GEN
12852
    /* able to override max size until dynamic buffer created */
12853
    #define WC_MAX_X509_GEN 4096
12854
#endif
12855
12856
/* returns the size of signature on success */
12857
int wolfSSL_X509_sign(WOLFSSL_X509* x509, WOLFSSL_EVP_PKEY* pkey,
12858
        const WOLFSSL_EVP_MD* md)
12859
{
12860
    int  ret;
12861
    /* @TODO dynamic set based on expected cert size */
12862
    byte *der = (byte *)XMALLOC(WC_MAX_X509_GEN, NULL, DYNAMIC_TYPE_TMP_BUFFER);
12863
    int  derSz = WC_MAX_X509_GEN;
12864
12865
    WOLFSSL_ENTER("wolfSSL_X509_sign");
12866
12867
    if (x509 == NULL || pkey == NULL || md == NULL) {
12868
        ret = WOLFSSL_FAILURE;
12869
        goto out;
12870
    }
12871
12872
    x509->sigOID = wolfSSL_sigTypeFromPKEY((WOLFSSL_EVP_MD*)md, pkey);
12873
    if ((ret = wolfssl_x509_make_der(x509, 0, der, &derSz, 0)) !=
12874
            WOLFSSL_SUCCESS) {
12875
        WOLFSSL_MSG("Unable to make DER for X509");
12876
        WOLFSSL_LEAVE("wolfSSL_X509_sign", ret);
12877
        (void)ret;
12878
        ret = WOLFSSL_FAILURE;
12879
        goto out;
12880
    }
12881
12882
    ret = wolfSSL_X509_resign_cert(x509, 0, der, WC_MAX_X509_GEN, derSz,
12883
            (WOLFSSL_EVP_MD*)md, pkey);
12884
    if (ret <= 0) {
12885
        WOLFSSL_LEAVE("wolfSSL_X509_sign", ret);
12886
        ret = WOLFSSL_FAILURE;
12887
        goto out;
12888
    }
12889
12890
out:
12891
    XFREE(der, NULL, DYNAMIC_TYPE_TMP_BUFFER);
12892
12893
    return ret;
12894
}
12895
12896
#if defined(OPENSSL_EXTRA)
12897
int wolfSSL_X509_sign_ctx(WOLFSSL_X509 *x509, WOLFSSL_EVP_MD_CTX *ctx)
12898
{
12899
    WOLFSSL_ENTER("wolfSSL_X509_sign_ctx");
12900
12901
    if (!x509 || !ctx || !ctx->pctx || !ctx->pctx->pkey) {
12902
        WOLFSSL_MSG("Bad parameter");
12903
        return WOLFSSL_FAILURE;
12904
    }
12905
12906
    return wolfSSL_X509_sign(x509, ctx->pctx->pkey,
12907
        wolfSSL_EVP_MD_CTX_md(ctx));
12908
}
12909
#endif /* OPENSSL_EXTRA */
12910
#endif /* WOLFSSL_CERT_GEN */
12911
12912
12913
#if defined(OPENSSL_ALL) || defined(OPENSSL_EXTRA) || \
12914
    defined(OPENSSL_EXTRA_X509_SMALL) || defined(WOLFSSL_WPAS_SMALL)
12915
/* Converts from WC_NID_* value to wolfSSL value if needed.
12916
 *
12917
 * @param [in] nid  Numeric Id of a domain name component.
12918
 * @return  Domain name tag values - wolfSSL internal values.
12919
 * @return  -1 when nid isn't known.
12920
 */
12921
static int ConvertNIDToWolfSSL(int nid)
12922
{
12923
    switch (nid) {
12924
        case WC_NID_commonName : return ASN_COMMON_NAME;
12925
    #ifdef WOLFSSL_CERT_NAME_ALL
12926
        case WC_NID_name :       return ASN_NAME;
12927
        case WC_NID_givenName:   return ASN_GIVEN_NAME;
12928
        case WC_NID_dnQualifier :   return ASN_DNQUALIFIER;
12929
        case WC_NID_initials:   return ASN_INITIALS;
12930
    #endif /* WOLFSSL_CERT_NAME_ALL */
12931
        case WC_NID_surname :    return ASN_SUR_NAME;
12932
        case WC_NID_countryName: return ASN_COUNTRY_NAME;
12933
        case WC_NID_localityName: return ASN_LOCALITY_NAME;
12934
        case WC_NID_stateOrProvinceName: return ASN_STATE_NAME;
12935
        case WC_NID_streetAddress: return ASN_STREET_ADDR;
12936
        case WC_NID_organizationName: return ASN_ORG_NAME;
12937
        case WC_NID_organizationalUnitName: return ASN_ORGUNIT_NAME;
12938
        case WC_NID_emailAddress: return ASN_EMAIL_NAME;
12939
        case WC_NID_pkcs9_contentType: return ASN_CONTENT_TYPE;
12940
        case WC_NID_serialNumber: return ASN_SERIAL_NUMBER;
12941
        case WC_NID_userId: return ASN_USER_ID;
12942
        case WC_NID_businessCategory: return ASN_BUS_CAT;
12943
        case WC_NID_domainComponent: return ASN_DOMAIN_COMPONENT;
12944
        case WC_NID_postalCode: return ASN_POSTAL_CODE;
12945
        case WC_NID_rfc822Mailbox: return ASN_RFC822_MAILBOX;
12946
        case WC_NID_favouriteDrink: return ASN_FAVOURITE_DRINK;
12947
        default:
12948
            WOLFSSL_MSG("Attribute NID not found");
12949
            return WOLFSSL_FATAL_ERROR;
12950
    }
12951
}
12952
#endif /* OPENSSL_ALL || OPENSSL_EXTRA ||
12953
          OPENSSL_EXTRA_X509_SMALL || WOLFSSL_WPAS_SMALL*/
12954
12955
#if defined(OPENSSL_ALL) || defined(OPENSSL_EXTRA) || \
12956
    defined(OPENSSL_EXTRA_X509_SMALL)
12957
/* This is to convert the x509 name structure into canonical DER format     */
12958
/*  , which has the following rules:                                        */
12959
/*   convert to UTF8                                                        */
12960
/*   convert to lower case                                                  */
12961
/*   multi-spaces collapsed                                                 */
12962
/*   leading SEQUENCE header is skipped                                     */
12963
/* @param  name a pointer to X509_NAME that is to be converted              */
12964
/* @param  out  a pointer to converted data                                 */
12965
/* @return a number of converted bytes, otherwise <=0 error code            */
12966
int wolfSSL_i2d_X509_NAME_canon(WOLFSSL_X509_NAME* name, unsigned char** out)
12967
{
12968
    int  totalBytes = 0, i, idx;
12969
    byte *output, *local = NULL;
12970
    WC_DECLARE_VAR(names, EncodedName, MAX_NAME_ENTRIES, 0);
12971
12972
    if (name == NULL)
12973
        return BAD_FUNC_ARG;
12974
12975
    WC_ALLOC_VAR_EX(names, EncodedName, MAX_NAME_ENTRIES, NULL,
12976
        DYNAMIC_TYPE_TMP_BUFFER, return MEMORY_E);
12977
12978
    XMEMSET(names, 0, sizeof(EncodedName) * MAX_NAME_ENTRIES);
12979
12980
    for (i = 0; i < MAX_NAME_ENTRIES; i++) {
12981
        WOLFSSL_X509_NAME_ENTRY* entry;
12982
        int ret;
12983
12984
        entry = wolfSSL_X509_NAME_get_entry(name, i);
12985
        if (entry != NULL && entry->set >= 1) {
12986
            const char* nameStr;
12987
            WOLFSSL_ASN1_STRING* data;
12988
            WOLFSSL_ASN1_STRING* cano_data;
12989
12990
            cano_data = wolfSSL_ASN1_STRING_new();
12991
            if (cano_data == NULL) {
12992
                WC_FREE_VAR_EX(names, NULL, DYNAMIC_TYPE_TMP_BUFFER);
12993
                return MEMORY_E;
12994
            }
12995
12996
            data = wolfSSL_X509_NAME_ENTRY_get_data(entry);
12997
            if (data == NULL) {
12998
                WC_FREE_VAR_EX(names, NULL, DYNAMIC_TYPE_TMP_BUFFER);
12999
                wolfSSL_ASN1_STRING_free(cano_data);
13000
                WOLFSSL_MSG("Error getting entry data");
13001
                return WOLFSSL_FATAL_ERROR;
13002
            }
13003
            if (wolfSSL_ASN1_STRING_canon(cano_data, data) != WOLFSSL_SUCCESS) {
13004
                WC_FREE_VAR_EX(names, NULL, DYNAMIC_TYPE_TMP_BUFFER);
13005
                wolfSSL_ASN1_STRING_free(cano_data);
13006
                return WOLFSSL_FAILURE;
13007
            }
13008
            nameStr = (const char*)wolfSSL_ASN1_STRING_data(cano_data);
13009
13010
            /* allow for blank values in the name structure, eg OU= */
13011
            if (nameStr)
13012
            {
13013
                ret = wc_EncodeNameCanonical(&names[i], nameStr, CTC_UTF8,
13014
                    (byte)ConvertNIDToWolfSSL(entry->nid));
13015
                if (ret < 0) {
13016
                    WC_FREE_VAR_EX(names, NULL, DYNAMIC_TYPE_TMP_BUFFER);
13017
                    wolfSSL_ASN1_STRING_free(cano_data);
13018
                    WOLFSSL_MSG("EncodeName failed");
13019
                    return WOLFSSL_FATAL_ERROR;
13020
                }
13021
                totalBytes += ret;
13022
            }
13023
13024
            wolfSSL_ASN1_STRING_free(cano_data);
13025
        }
13026
    }
13027
13028
    if (out == NULL) {
13029
        /* If out is NULL, caller just wants length. */
13030
        WC_FREE_VAR_EX(names, NULL, DYNAMIC_TYPE_TMP_BUFFER);
13031
        return totalBytes;
13032
    }
13033
13034
    /* skip header */
13035
    /* check if using buffer passed in */
13036
    if (*out == NULL) {
13037
        *out = local = (unsigned char*)XMALLOC(totalBytes, NULL,
13038
                DYNAMIC_TYPE_OPENSSL);
13039
        if (*out == NULL) {
13040
            return MEMORY_E;
13041
        }
13042
    }
13043
    output = *out;
13044
    idx = 0;
13045
13046
    for (i = 0; i < MAX_NAME_ENTRIES; i++) {
13047
        if (names[i].used) {
13048
            XMEMCPY(output + idx, names[i].encoded, names[i].totalLen);
13049
            idx += names[i].totalLen;
13050
        }
13051
    }
13052
13053
    WC_FREE_VAR_EX(names, NULL, DYNAMIC_TYPE_TMP_BUFFER);
13054
13055
    /* used existing buffer passed in, so increment pointer */
13056
    if (local == NULL) {
13057
        *out += totalBytes;
13058
    }
13059
    return totalBytes;
13060
}
13061
#endif /* OPENSSL_ALL || OPENSSL_EXTRA || OPENSSL_EXTRA_X509_SMALL */
13062
13063
#ifdef WOLFSSL_CERT_GEN
13064
/* Guarded by either
13065
 * A) WOLFSSL_WPAS_SMALL is on or
13066
 * B) (OPENSSL_EXTRA or OPENSSL_EXTRA_X509_SMALL) + WOLFSSL_CERT_GEN +
13067
 *    (WOLFSSL_CERT_REQ or WOLFSSL_CERT_EXT or OPENSSL_EXTRA) has been
13068
 *    defined
13069
 */
13070
#if defined(WOLFSSL_WPAS_SMALL) || \
13071
    (defined(OPENSSL_EXTRA) || defined(OPENSSL_EXTRA_X509_SMALL)) && \
13072
    defined(WOLFSSL_CERT_GEN) && \
13073
    (defined(WOLFSSL_CERT_REQ) || defined(WOLFSSL_CERT_EXT) || \
13074
     defined(OPENSSL_EXTRA))
13075
13076
/* Converts the x509 name structure into DER format.
13077
 *
13078
 * out  pointer to either a pre setup buffer or a pointer to null for
13079
 *      creating a dynamic buffer. In the case that a pre-existing buffer is
13080
 *      used out will be incremented the size of the DER buffer on success. If
13081
 *      out is NULL, the function returns the necessary output buffer length.
13082
 *
13083
 * returns the size of the buffer on success, or negative value with failure
13084
 */
13085
int wolfSSL_i2d_X509_NAME(WOLFSSL_X509_NAME* name, unsigned char** out)
13086
{
13087
    int  totalBytes = 0, i, idx;
13088
    byte temp[MAX_SEQ_SZ];
13089
    byte *output, *local = NULL;
13090
    WC_DECLARE_VAR(names, EncodedName, MAX_NAME_ENTRIES, 0);
13091
13092
    if (name == NULL)
13093
        return BAD_FUNC_ARG;
13094
13095
    WC_ALLOC_VAR_EX(names, EncodedName, MAX_NAME_ENTRIES, NULL,
13096
        DYNAMIC_TYPE_TMP_BUFFER, return MEMORY_E);
13097
13098
    XMEMSET(names, 0, sizeof(EncodedName) * MAX_NAME_ENTRIES);
13099
13100
    for (i = 0; i < MAX_NAME_ENTRIES; i++) {
13101
        WOLFSSL_X509_NAME_ENTRY* entry;
13102
        int ret;
13103
13104
        entry = wolfSSL_X509_NAME_get_entry(name, i);
13105
        if (entry != NULL && entry->set >= 1) {
13106
            const char* nameStr;
13107
            int type;
13108
            WOLFSSL_ASN1_STRING* data;
13109
13110
            data = wolfSSL_X509_NAME_ENTRY_get_data(entry);
13111
            if (data == NULL) {
13112
                WC_FREE_VAR_EX(names, NULL, DYNAMIC_TYPE_TMP_BUFFER);
13113
                WOLFSSL_MSG("Error getting entry data");
13114
                return WOLFSSL_FATAL_ERROR;
13115
            }
13116
13117
            nameStr = (const char*)wolfSSL_ASN1_STRING_data(data);
13118
            type    = wolfSSL_ASN1_STRING_type(data);
13119
13120
            switch (type) {
13121
                case WOLFSSL_MBSTRING_UTF8:
13122
                    type = CTC_UTF8;
13123
                    break;
13124
                case WOLFSSL_MBSTRING_ASC:
13125
                case WOLFSSL_V_ASN1_PRINTABLESTRING:
13126
                    type = CTC_PRINTABLE;
13127
                    break;
13128
                default:
13129
                    WOLFSSL_MSG(
13130
                        "Unknown encoding type conversion UTF8 by default");
13131
                    type = CTC_UTF8;
13132
            }
13133
            ret = wc_EncodeName(&names[i], nameStr, (char)type,
13134
                (byte)ConvertNIDToWolfSSL(entry->nid));
13135
            if (ret < 0) {
13136
                WC_FREE_VAR_EX(names, NULL, DYNAMIC_TYPE_TMP_BUFFER);
13137
                WOLFSSL_MSG("EncodeName failed");
13138
                return WOLFSSL_FATAL_ERROR;
13139
            }
13140
            totalBytes += ret;
13141
        }
13142
    }
13143
13144
    /* header */
13145
    idx = (int)SetSequence((word32)totalBytes, temp);
13146
    if (totalBytes + idx > ASN_NAME_MAX) {
13147
        WC_FREE_VAR_EX(names, NULL, DYNAMIC_TYPE_TMP_BUFFER);
13148
        WOLFSSL_MSG("Total Bytes is greater than ASN_NAME_MAX");
13149
        return BUFFER_E;
13150
    }
13151
13152
    if (out == NULL) {
13153
        /* If out is NULL, caller just wants length. */
13154
        totalBytes += idx;
13155
        WC_FREE_VAR_EX(names, NULL, DYNAMIC_TYPE_TMP_BUFFER);
13156
        return totalBytes;
13157
    }
13158
13159
    /* check if using buffer passed in */
13160
    if (*out == NULL) {
13161
        *out = local = (unsigned char*)XMALLOC(totalBytes + idx, name->heap,
13162
                DYNAMIC_TYPE_OPENSSL);
13163
        if (*out == NULL) {
13164
            return MEMORY_E;
13165
        }
13166
    }
13167
    output = *out;
13168
13169
    idx = (int)SetSequence((word32)totalBytes, output);
13170
    totalBytes += idx;
13171
    for (i = 0; i < MAX_NAME_ENTRIES; i++) {
13172
        if (names[i].used) {
13173
            XMEMCPY(output + idx, names[i].encoded, names[i].totalLen);
13174
            idx += names[i].totalLen;
13175
        }
13176
    }
13177
13178
    WC_FREE_VAR_EX(names, NULL, DYNAMIC_TYPE_TMP_BUFFER);
13179
13180
    /* used existing buffer passed in, so increment pointer */
13181
    if (local == NULL) {
13182
        *out += totalBytes;
13183
    }
13184
    return totalBytes;
13185
}
13186
#endif /* OPENSSL_EXTRA || WOLFSSL_WPAS_SMALL */
13187
#endif /* WOLFSSL_CERT_GEN */
13188
13189
#if defined(OPENSSL_EXTRA) || defined(OPENSSL_ALL) || \
13190
    defined (WOLFSSL_WPAS_SMALL)
13191
13192
    WOLFSSL_X509_NAME *wolfSSL_d2i_X509_NAME(WOLFSSL_X509_NAME **name,
13193
                                             unsigned char **in, long length)
13194
    {
13195
        WOLFSSL_X509_NAME* tmp = NULL;
13196
        WC_DECLARE_VAR(cert, DecodedCert, 1, 0);
13197
13198
        WOLFSSL_ENTER("wolfSSL_d2i_X509_NAME");
13199
13200
        if (!in || !*in || length <= 0) {
13201
            WOLFSSL_MSG("Bad argument");
13202
            return NULL;
13203
        }
13204
13205
        WC_ALLOC_VAR_EX(cert, DecodedCert, 1, NULL, DYNAMIC_TYPE_DCERT,
13206
            return NULL);
13207
13208
        /* Set the X509_NAME buffer as the input data for cert.
13209
         * in is NOT a full certificate. Just the name. */
13210
        InitDecodedCert(cert, *in, (word32)length, NULL);
13211
13212
        /* Parse the X509 subject name */
13213
        if (GetName(cert, ASN_SUBJECT, (int)length) != 0) {
13214
            WOLFSSL_MSG("WOLFSSL_X509_NAME parse error");
13215
            goto cleanup;
13216
        }
13217
13218
        if (!(tmp = wolfSSL_X509_NAME_new_ex(cert->heap))) {
13219
            WOLFSSL_MSG("wolfSSL_X509_NAME_new_ex error");
13220
            goto cleanup;
13221
        }
13222
13223
        if (wolfSSL_X509_NAME_copy((WOLFSSL_X509_NAME*)cert->subjectName,
13224
                    tmp) != WOLFSSL_SUCCESS) {
13225
            wolfSSL_X509_NAME_free(tmp);
13226
            tmp = NULL;
13227
            goto cleanup;
13228
        }
13229
13230
        if (name)
13231
            *name = tmp;
13232
cleanup:
13233
        FreeDecodedCert(cert);
13234
        WC_FREE_VAR_EX(cert, NULL, DYNAMIC_TYPE_DCERT);
13235
        return tmp;
13236
    }
13237
#endif /* OPENSSL_EXTRA || OPENSSL_ALL || WOLFSSL_WPAS_SMALL */
13238
13239
13240
#if defined(OPENSSL_EXTRA) || defined(OPENSSL_ALL)
13241
13242
    /* Compares the two X509 names. If the size of x is larger then y then a
13243
     * positive value is returned if x is smaller a negative value is returned.
13244
     * In the case that the sizes are equal a the value of strcmp between the
13245
     * two names is returned.
13246
     *
13247
     * x First name for comparison
13248
     * y Second name to compare with x
13249
     */
13250
    int wolfSSL_X509_NAME_cmp(const WOLFSSL_X509_NAME* x,
13251
            const WOLFSSL_X509_NAME* y)
13252
    {
13253
        const char* _x;
13254
        const char* _y;
13255
        WOLFSSL_ENTER("wolfSSL_X509_NAME_cmp");
13256
13257
        if (x == NULL || y == NULL) {
13258
            WOLFSSL_MSG("Bad argument passed in");
13259
            return -2;
13260
        }
13261
13262
        if (x == y) {
13263
            return 0; /* match */
13264
        }
13265
13266
        if (x->sz != y->sz) {
13267
            return x->sz - y->sz;
13268
        }
13269
13270
        /*
13271
         * If the name member is not set or is immediately null terminated then
13272
         * compare the staticName member
13273
         */
13274
        _x = (x->name && *x->name) ? x->name : x->staticName;
13275
        _y = (y->name && *y->name) ? y->name : y->staticName;
13276
13277
        return XSTRNCASECMP(_x, _y, x->sz); /* y sz is the same */
13278
    }
13279
13280
#ifndef NO_BIO
13281
13282
static WOLFSSL_X509 *loadX509orX509REQFromPemBio(WOLFSSL_BIO *bp,
13283
        WOLFSSL_X509 **x, wc_pem_password_cb *cb, void *u, int type)
13284
{
13285
    WOLFSSL_X509* x509 = NULL;
13286
#if defined(WOLFSSL_PEM_TO_DER) || defined(WOLFSSL_DER_TO_PEM)
13287
    unsigned char* pem = NULL;
13288
    int pemSz;
13289
    long  i = 0, l, footerSz;
13290
    const char* footer = NULL;
13291
    int streaming = 0;  /* Flag to indicate if source is streaming (FIFO) */
13292
    const char* altFooter = NULL;
13293
    long altFooterSz = 0;
13294
13295
    WOLFSSL_ENTER("loadX509orX509REQFromPemBio");
13296
13297
    if (bp == NULL || (type != CERT_TYPE && type != CERTREQ_TYPE &&
13298
                       type != TRUSTED_CERT_TYPE)) {
13299
        WOLFSSL_LEAVE("wolfSSL_PEM_read_bio_X509", BAD_FUNC_ARG);
13300
        return NULL;
13301
    }
13302
13303
    if ((l = wolfSSL_BIO_get_len(bp)) <= 0) {
13304
        /* No certificate size available - could be FIFO or other streaming
13305
         * source. Use MAX_X509_SIZE as initial buffer, will resize if needed. */
13306
        l = MAX_X509_SIZE;
13307
        streaming = 1;
13308
    }
13309
13310
    pemSz = (int)l;
13311
    pem   = (unsigned char*)XMALLOC(pemSz, 0, DYNAMIC_TYPE_PEM);
13312
    if (pem == NULL)
13313
        return NULL;
13314
    XMEMSET(pem, 0, pemSz);
13315
13316
    i = 0;
13317
    if (wc_PemGetHeaderFooter(type, NULL, &footer) != 0) {
13318
        XFREE(pem, 0, DYNAMIC_TYPE_PEM);
13319
        return NULL;
13320
    }
13321
    footerSz = (long)XSTRLEN(footer);
13322
13323
    /* For TRUSTED_CERT_TYPE, also prepare to check for regular CERT footer
13324
     * as the file might contain regular certificates instead of TRUSTED
13325
     * format */
13326
    if (type == TRUSTED_CERT_TYPE) {
13327
        wc_PemGetHeaderFooter(CERT_TYPE, NULL, &altFooter);
13328
        if (altFooter != NULL) {
13329
            altFooterSz = (long)XSTRLEN(altFooter);
13330
        }
13331
    }
13332
13333
    /* TODO: Inefficient
13334
     * reading in one byte at a time until see the footer
13335
     */
13336
    while ((l = wolfSSL_BIO_read(bp, (char *)&pem[i], 1)) == 1) {
13337
        int foundFooter = 0;
13338
        i++;
13339
        /* Check if buffer is full and we're reading from streaming source */
13340
        if (i >= pemSz && streaming) {
13341
            /* Double the buffer size for streaming sources */
13342
            int newSz = pemSz * 2;
13343
            unsigned char* newPem;
13344
13345
            /* Sanity check: don't grow beyond reasonable limit */
13346
            if (newSz > MAX_BIO_READ_BUFFER) {
13347
                WOLFSSL_MSG("PEM data too large for streaming source");
13348
                XFREE(pem, 0, DYNAMIC_TYPE_PEM);
13349
                return NULL;
13350
            }
13351
13352
            newPem = (unsigned char*)XREALLOC(pem, newSz, 0, DYNAMIC_TYPE_PEM);
13353
            if (newPem == NULL) {
13354
                WOLFSSL_MSG("Failed to resize PEM buffer");
13355
                XFREE(pem, 0, DYNAMIC_TYPE_PEM);
13356
                return NULL;
13357
            }
13358
13359
            pem = newPem;
13360
            pemSz = newSz;
13361
        }
13362
        else if (i >= pemSz) {
13363
            /* Buffer full for non-streaming source - this shouldn't happen */
13364
            break;
13365
        }
13366
13367
        /* Check for the expected footer OR alternate footer (for
13368
         * TRUSTED_CERT_TYPE) */
13369
        if (i > footerSz &&
13370
            XMEMCMP((char *)&pem[i-footerSz], footer, footerSz) == 0) {
13371
            foundFooter = 1;
13372
        }
13373
        else if (i > altFooterSz && altFooter != NULL &&
13374
            XMEMCMP((char *)&pem[i-altFooterSz], altFooter, altFooterSz) == 0) {
13375
            foundFooter = 1;
13376
        }
13377
13378
        if (foundFooter) {
13379
            if (i < pemSz && wolfSSL_BIO_read(bp, (char *)&pem[i], 1) == 1) {
13380
                /* attempt to read newline following footer */
13381
                i++;
13382
                if (i < pemSz && pem[i-1] == '\r') {
13383
                    /* found \r , Windows line ending is \r\n so try to read one
13384
                     * more byte for \n, ignoring return value */
13385
                    (void)wolfSSL_BIO_read(bp, (char *)&pem[i++], 1);
13386
                }
13387
            }
13388
            break;
13389
        }
13390
    }
13391
    if (l == 0 && i == 0) {
13392
        WOLFSSL_ERROR(ASN_NO_PEM_HEADER);
13393
    }
13394
    if (i > pemSz) {
13395
        WOLFSSL_MSG("Error parsing PEM");
13396
    }
13397
    else {
13398
        pemSz = (int)i;
13399
    #ifdef WOLFSSL_CERT_REQ
13400
        if (type == CERTREQ_TYPE)
13401
            x509 = loadX509orX509REQFromBuffer(pem, pemSz, WOLFSSL_FILETYPE_PEM,
13402
                CERTREQ_TYPE, cb, u);
13403
        else
13404
    #endif
13405
        /* Use TRUSTED_CERT_TYPE if input was TRUSTED CERTIFICATE format,
13406
         * otherwise use CERT_TYPE for regular certificates */
13407
        if (type == TRUSTED_CERT_TYPE)
13408
            x509 = loadX509orX509REQFromBuffer(pem, pemSz, WOLFSSL_FILETYPE_PEM,
13409
                TRUSTED_CERT_TYPE, cb, u);
13410
        else
13411
            x509 = loadX509orX509REQFromBuffer(pem, pemSz, WOLFSSL_FILETYPE_PEM,
13412
                CERT_TYPE, cb, u);
13413
    }
13414
13415
    if (x != NULL) {
13416
        *x = x509;
13417
    }
13418
13419
    XFREE(pem, NULL, DYNAMIC_TYPE_PEM);
13420
13421
#endif /* WOLFSSL_PEM_TO_DER || WOLFSSL_DER_TO_PEM */
13422
    (void)bp;
13423
    (void)x;
13424
    (void)cb;
13425
    (void)u;
13426
13427
    return x509;
13428
}
13429
13430
13431
WC_MAYBE_UNUSED
13432
static unsigned char* ReadPemFromBioToBuffer(WOLFSSL_BIO *bp, int *pemSz)
13433
{
13434
    unsigned char* pem = NULL;
13435
13436
    WOLFSSL_ENTER("ReadPemFromBioToBuffer");
13437
13438
    if (bp == NULL || pemSz == NULL) {
13439
        WOLFSSL_LEAVE("ReadPemFromBioToBuffer", BAD_FUNC_ARG);
13440
        return NULL;
13441
    }
13442
13443
    if ((*pemSz = wolfSSL_BIO_get_len(bp)) <= 0) {
13444
        /* No certificate size available - could be FIFO or other streaming
13445
         * source. Use MAX_X509_SIZE as initial buffer, read in loop. */
13446
        int totalRead = 0;
13447
        int readSz;
13448
13449
        *pemSz = MAX_X509_SIZE;
13450
        pem = (unsigned char*)XMALLOC(*pemSz, 0, DYNAMIC_TYPE_PEM);
13451
        if (pem == NULL) {
13452
            return NULL;
13453
        }
13454
13455
        /* Read from streaming source until EOF or buffer full */
13456
        while ((readSz = wolfSSL_BIO_read(bp, pem + totalRead,
13457
                                          *pemSz - totalRead)) > 0) {
13458
            totalRead += readSz;
13459
13460
            /* If buffer is full, try to grow it */
13461
            if (totalRead >= *pemSz) {
13462
                int newSz = *pemSz * 2;
13463
                unsigned char* newPem;
13464
13465
                /* Sanity check */
13466
                if (newSz > MAX_BIO_READ_BUFFER) {
13467
                    WOLFSSL_MSG("PEM data too large for streaming source");
13468
                    XFREE(pem, NULL, DYNAMIC_TYPE_PEM);
13469
                    return NULL;
13470
                }
13471
13472
                newPem = (unsigned char*)XREALLOC(pem, newSz, 0,
13473
                        DYNAMIC_TYPE_PEM);
13474
                if (newPem == NULL) {
13475
                    XFREE(pem, NULL, DYNAMIC_TYPE_PEM);
13476
                    return NULL;
13477
                }
13478
                pem = newPem;
13479
                *pemSz = newSz;
13480
            }
13481
        }
13482
13483
        *pemSz = totalRead;
13484
        if (*pemSz <= 0) {
13485
            XFREE(pem, NULL, DYNAMIC_TYPE_PEM);
13486
            return NULL;
13487
        }
13488
    }
13489
    else {
13490
        /* Known size - allocate and read */
13491
        pem = (unsigned char*)XMALLOC(*pemSz, 0, DYNAMIC_TYPE_PEM);
13492
        if (pem == NULL) {
13493
            return NULL;
13494
        }
13495
13496
        XMEMSET(pem, 0, *pemSz);
13497
13498
        *pemSz = wolfSSL_BIO_read(bp, pem, *pemSz);
13499
        if (*pemSz <= 0) {
13500
            XFREE(pem, NULL, DYNAMIC_TYPE_PEM);
13501
            return NULL;
13502
        }
13503
    }
13504
13505
    WOLFSSL_LEAVE("ReadPemFromBioToBuffer", 0);
13506
    return pem;
13507
}
13508
13509
13510
13511
#if defined(WOLFSSL_ACERT)
13512
    WOLFSSL_X509_ACERT *wolfSSL_PEM_read_bio_X509_ACERT(WOLFSSL_BIO *bp,
13513
                                                        WOLFSSL_X509_ACERT **x,
13514
                                                        wc_pem_password_cb *cb,
13515
                                                        void *u)
13516
    {
13517
        WOLFSSL_X509_ACERT* x509 = NULL;
13518
#if defined(WOLFSSL_PEM_TO_DER) || defined(WOLFSSL_DER_TO_PEM)
13519
        unsigned char * pem = NULL;
13520
        int             pemSz;
13521
13522
        WOLFSSL_ENTER("wolfSSL_PEM_read_bio_X509_ACERT");
13523
13524
        if (bp == NULL) {
13525
            return NULL;
13526
        }
13527
13528
        pem = ReadPemFromBioToBuffer(bp, &pemSz);
13529
        if (pem == NULL) {
13530
            return NULL;
13531
        }
13532
13533
        x509 = wolfSSL_X509_ACERT_load_certificate_buffer(pem, pemSz,
13534
                                                          WOLFSSL_FILETYPE_PEM);
13535
13536
        if (x != NULL) {
13537
            *x = x509;
13538
        }
13539
13540
        XFREE(pem, NULL, DYNAMIC_TYPE_PEM);
13541
13542
#endif /* WOLFSSL_PEM_TO_DER || WOLFSSL_DER_TO_PEM */
13543
        (void)bp;
13544
        (void)x;
13545
        (void)cb;
13546
        (void)u;
13547
13548
        return x509;
13549
13550
    }
13551
#endif /* WOLFSSL_ACERT */
13552
13553
    WOLFSSL_X509 *wolfSSL_PEM_read_bio_X509(WOLFSSL_BIO *bp, WOLFSSL_X509 **x,
13554
                                            wc_pem_password_cb *cb, void *u)
13555
    {
13556
        return loadX509orX509REQFromPemBio(bp, x, cb, u, CERT_TYPE);
13557
    }
13558
13559
    /*
13560
     * bp : bio to read X509 from
13561
     * x  : x509 to write to
13562
     * cb : password call back for reading PEM
13563
     * u  : password
13564
     * _AUX is for working with a trusted X509 certificate
13565
     */
13566
    WOLFSSL_X509 *wolfSSL_PEM_read_bio_X509_AUX(WOLFSSL_BIO *bp,
13567
                               WOLFSSL_X509 **x, wc_pem_password_cb *cb,
13568
                               void *u)
13569
    {
13570
        WOLFSSL_ENTER("wolfSSL_PEM_read_bio_X509_AUX");
13571
13572
        /* AUX info is; trusted/rejected uses, friendly name, private key id,
13573
         * and potentially a stack of "other" info. wolfSSL does not store
13574
         * friendly name or private key id yet in WOLFSSL_X509 for human
13575
         * readability and does not support extra trusted/rejected uses for
13576
         * root CA. Use TRUSTED_CERT_TYPE to properly parse TRUSTED CERTIFICATE
13577
         * format and strip auxiliary data. */
13578
        return loadX509orX509REQFromPemBio(bp, x, cb, u, TRUSTED_CERT_TYPE);
13579
    }
13580
13581
#ifdef WOLFSSL_CERT_REQ
13582
WOLFSSL_X509 *wolfSSL_PEM_read_bio_X509_REQ(WOLFSSL_BIO *bp, WOLFSSL_X509 **x,
13583
                                                wc_pem_password_cb *cb, void *u)
13584
{
13585
    return loadX509orX509REQFromPemBio(bp, x, cb, u, CERTREQ_TYPE);
13586
}
13587
13588
#ifndef NO_FILESYSTEM
13589
    WOLFSSL_X509* wolfSSL_PEM_read_X509_REQ(XFILE fp, WOLFSSL_X509** x,
13590
                                            wc_pem_password_cb* cb, void* u)
13591
    {
13592
        int err = 0;
13593
        WOLFSSL_X509* ret = NULL;
13594
        WOLFSSL_BIO* bio = NULL;
13595
13596
        WOLFSSL_ENTER("wolfSSL_PEM_read_X509_REQ");
13597
13598
        if (fp == XBADFILE) {
13599
            WOLFSSL_MSG("Invalid file.");
13600
            err = 1;
13601
        }
13602
13603
        if (err == 0) {
13604
            bio = wolfSSL_BIO_new(wolfSSL_BIO_s_file());
13605
            if (bio == NULL) {
13606
                WOLFSSL_MSG("Failed to create new BIO with input file.");
13607
                err = 1;
13608
            }
13609
        }
13610
        if (err == 0 && wolfSSL_BIO_set_fp(bio, fp, WOLFSSL_BIO_CLOSE)
13611
                != WOLFSSL_SUCCESS) {
13612
            WOLFSSL_MSG("Failed to set BIO file pointer.");
13613
            err = 1;
13614
        }
13615
        if (err == 0) {
13616
            ret = wolfSSL_PEM_read_bio_X509_REQ(bio, x, cb, u);
13617
        }
13618
13619
        wolfSSL_BIO_free(bio);
13620
13621
        return ret;
13622
    }
13623
#endif /* !NO_FILESYSTEM */
13624
#endif /* WOLFSSL_CERT_REQ */
13625
13626
    WOLFSSL_X509_CRL *wolfSSL_PEM_read_bio_X509_CRL(WOLFSSL_BIO *bp,
13627
            WOLFSSL_X509_CRL **x, wc_pem_password_cb *cb, void *u)
13628
    {
13629
#if defined(WOLFSSL_PEM_TO_DER) && defined(HAVE_CRL)
13630
        WOLFSSL_X509_CRL* crl = NULL;
13631
13632
        WOLFSSL_ENTER("wolfSSL_PEM_read_bio_X509_CRL");
13633
13634
        /* OpenSSL's PEM_read_bio_X509_CRL skips intervening cert/key blocks
13635
         * and returns the next CRL in the stream (NULL only at EOF). Mirror
13636
         * that by looping over the per-block reader until we get a CRL or
13637
         * the BIO has nothing left to parse. */
13638
        for (;;) {
13639
            WOLFSSL_X509*      x509   = NULL;
13640
            WOLFSSL_X509_PKEY* x_pkey = NULL;
13641
            if (wolfSSL_PEM_X509_X509_CRL_X509_PKEY_read_bio(bp, cb,
13642
                        &x509, &crl, &x_pkey) != WOLFSSL_SUCCESS) {
13643
                break;
13644
            }
13645
            if (crl != NULL) {
13646
                break;
13647
            }
13648
            wolfSSL_X509_free(x509);
13649
            wolfSSL_X509_PKEY_free(x_pkey);
13650
        }
13651
13652
        if (x != NULL) {
13653
            if (*x != NULL && *x != crl) {
13654
                wolfSSL_X509_CRL_free(*x);
13655
            }
13656
            *x = crl;
13657
        }
13658
13659
        (void)u;
13660
13661
        return crl;
13662
#else
13663
        (void)bp;
13664
        (void)x;
13665
        (void)cb;
13666
        (void)u;
13667
13668
        return NULL;
13669
#endif
13670
    }
13671
13672
#endif /* !NO_BIO */
13673
13674
#if !defined(NO_FILESYSTEM)
13675
static void* wolfSSL_PEM_read_X509_ex(XFILE fp, void **x,
13676
    wc_pem_password_cb *cb, void *u, int type)
13677
{
13678
    unsigned char* pem = NULL;
13679
    int pemSz;
13680
    long i = 0, l;
13681
    void *newx509;
13682
    int derSz;
13683
    DerBuffer* der = NULL;
13684
13685
    WOLFSSL_ENTER("wolfSSL_PEM_read_X509");
13686
13687
    if (fp == XBADFILE) {
13688
        WOLFSSL_LEAVE("wolfSSL_PEM_read_X509", BAD_FUNC_ARG);
13689
        return NULL;
13690
    }
13691
    /* Read cert from file */
13692
    i = XFTELL(fp);
13693
    if (i < 0) {
13694
        WOLFSSL_LEAVE("wolfSSL_PEM_read_X509", BAD_FUNC_ARG);
13695
        return NULL;
13696
    }
13697
13698
    if (XFSEEK(fp, 0, XSEEK_END) != 0)
13699
        return NULL;
13700
    l = XFTELL(fp);
13701
    if (l < 0)
13702
        return NULL;
13703
    if (XFSEEK(fp, i, SEEK_SET) != 0)
13704
        return NULL;
13705
    pemSz = (int)(l - i);
13706
13707
    /* check calculated length */
13708
    if (pemSz > MAX_WOLFSSL_FILE_SIZE || pemSz <= 0) {
13709
        WOLFSSL_MSG("PEM_read_X509_ex file size error");
13710
        return NULL;
13711
    }
13712
13713
    /* allocate pem buffer */
13714
    pem = (unsigned char*)XMALLOC(pemSz, NULL, DYNAMIC_TYPE_PEM);
13715
    if (pem == NULL)
13716
        return NULL;
13717
13718
    if ((int)XFREAD((char *)pem, 1, (size_t)pemSz, fp) != pemSz)
13719
        goto err_exit;
13720
13721
    switch (type) {
13722
        case CERT_TYPE:
13723
            newx509 = (void *)wolfSSL_X509_load_certificate_buffer(pem,
13724
                pemSz, WOLFSSL_FILETYPE_PEM);
13725
            break;
13726
13727
    #ifdef HAVE_CRL
13728
        case CRL_TYPE:
13729
            if ((PemToDer(pem, pemSz, CRL_TYPE, &der, NULL, NULL, NULL)) < 0)
13730
                goto err_exit;
13731
            derSz = (int)der->length;
13732
            newx509 = (void*)wolfSSL_d2i_X509_CRL((WOLFSSL_X509_CRL **)x,
13733
                (const unsigned char *)der->buffer, derSz);
13734
            if (newx509 == NULL)
13735
                goto err_exit;
13736
            FreeDer(&der);
13737
            break;
13738
    #endif
13739
13740
        default:
13741
            goto err_exit;
13742
    }
13743
    if (x != NULL) {
13744
        *x = newx509;
13745
    }
13746
    XFREE(pem, NULL, DYNAMIC_TYPE_PEM);
13747
    return newx509;
13748
13749
err_exit:
13750
    XFREE(pem, NULL, DYNAMIC_TYPE_PEM);
13751
    if (der != NULL)
13752
        FreeDer(&der);
13753
13754
    /* unused */
13755
    (void)cb;
13756
    (void)u;
13757
    (void)derSz;
13758
13759
    return NULL;
13760
}
13761
13762
WOLFSSL_X509* wolfSSL_PEM_read_X509(XFILE fp, WOLFSSL_X509 **x,
13763
                                                wc_pem_password_cb *cb, void *u)
13764
{
13765
    return (WOLFSSL_X509* )wolfSSL_PEM_read_X509_ex(fp, (void **)x, cb, u,
13766
         CERT_TYPE);
13767
}
13768
13769
#if defined(HAVE_CRL)
13770
WOLFSSL_X509_CRL* wolfSSL_PEM_read_X509_CRL(XFILE fp,
13771
                        WOLFSSL_X509_CRL **crl, wc_pem_password_cb *cb, void *u)
13772
{
13773
    return (WOLFSSL_X509_CRL* )wolfSSL_PEM_read_X509_ex(fp, (void **)crl, cb, u,
13774
         CRL_TYPE);
13775
}
13776
13777
/* Store CRL to file in DER or PEM format.
13778
 * Returns WOLFSSL_SUCCESS on success, negative on failure.
13779
 */
13780
int wolfSSL_write_X509_CRL(WOLFSSL_X509_CRL* crl, const char* path, int type)
13781
{
13782
    int ret;
13783
    WOLFSSL_ENTER("wolfSSL_write_X509_CRL");
13784
    ret = StoreCRL(crl, path, type);
13785
    WOLFSSL_LEAVE("wolfSSL_write_X509_CRL", ret);
13786
    return ret;
13787
}
13788
#endif
13789
13790
#ifdef WOLFSSL_CERT_GEN
13791
#ifndef NO_BIO
13792
    int wolfSSL_PEM_write_X509(XFILE fp, WOLFSSL_X509* x)
13793
    {
13794
        int ret;
13795
        WOLFSSL_BIO* bio;
13796
13797
        if (x == NULL || fp == XBADFILE)
13798
            return 0;
13799
13800
        bio = wolfSSL_BIO_new(wolfSSL_BIO_s_file());
13801
        if (bio == NULL)
13802
            return 0;
13803
13804
        if (wolfSSL_BIO_set_fp(bio, fp, WOLFSSL_BIO_NOCLOSE) != WOLFSSL_SUCCESS) {
13805
            wolfSSL_BIO_free(bio);
13806
            bio = NULL;
13807
        }
13808
13809
        ret = wolfSSL_PEM_write_bio_X509(bio, x);
13810
13811
        if (bio != NULL)
13812
            wolfSSL_BIO_free(bio);
13813
13814
        return ret;
13815
    }
13816
#endif /* !NO_BIO */
13817
#endif /* WOLFSSL_CERT_GEN */
13818
#endif /* !NO_FILESYSTEM */
13819
13820
#endif /* OPENSSL_EXTRA || OPENSSL_ALL */
13821
#if defined(OPENSSL_EXTRA) || defined(OPENSSL_ALL)
13822
13823
#ifndef NO_BIO
13824
    /* create and return a new WOLFSSL_X509_PKEY structure or NULL on failure */
13825
    static WOLFSSL_X509_PKEY* wolfSSL_X509_PKEY_new(void* heap)
13826
    {
13827
        WOLFSSL_X509_PKEY* ret;
13828
13829
        ret = (WOLFSSL_X509_PKEY*)XMALLOC(sizeof(WOLFSSL_X509_PKEY), heap,
13830
            DYNAMIC_TYPE_KEY);
13831
        if (ret != NULL) {
13832
            XMEMSET(ret, 0, sizeof(WOLFSSL_X509_PKEY));
13833
            ret->heap = heap;
13834
        }
13835
        return ret;
13836
    }
13837
#endif /* !NO_BIO */
13838
13839
13840
    /* free up all memory used by "xPkey" passed in */
13841
    void wolfSSL_X509_PKEY_free(WOLFSSL_X509_PKEY* xPkey)
13842
    {
13843
        if (xPkey != NULL) {
13844
            wolfSSL_EVP_PKEY_free(xPkey->dec_pkey);
13845
            XFREE(xPkey, xPkey->heap, DYNAMIC_TYPE_KEY);
13846
        }
13847
    }
13848
13849
13850
#ifndef NO_BIO
13851
13852
#define PEM_COMPARE_HEADER(start, end, header) \
13853
        ((end) - (start) == XSTR_SIZEOF(header) && XMEMCMP(start, header, \
13854
                XSTR_SIZEOF(header)) == 0)
13855
13856
    /**
13857
     * This read one structure from bio and returns the read structure
13858
     * in the appropriate output parameter (x509, crl, x_pkey). The
13859
     * output parameters must be set to NULL.
13860
     * @param bio    Input for reading structures
13861
     * @param cb     Password callback
13862
     * @param x509   Output
13863
     * @param crl    Output
13864
     * @param x_pkey Output
13865
     * @return WOLFSSL_SUCCESS on success and WOLFSSL_FAILURE otherwise
13866
     */
13867
    int wolfSSL_PEM_X509_X509_CRL_X509_PKEY_read_bio(
13868
            WOLFSSL_BIO* bio, wc_pem_password_cb* cb, WOLFSSL_X509** x509,
13869
            WOLFSSL_X509_CRL** crl, WOLFSSL_X509_PKEY** x_pkey)
13870
    {
13871
13872
#if defined(WOLFSSL_PEM_TO_DER) || defined(WOLFSSL_DER_TO_PEM)
13873
        char* pem = NULL;
13874
        long  i = pem_struct_min_sz, l;
13875
        const char* header = NULL;
13876
        const char* headerEnd = NULL;
13877
        const char* footer = NULL;
13878
        const char* footerEnd = NULL;
13879
    #ifdef HAVE_CRL
13880
        DerBuffer* der = NULL;
13881
    #endif
13882
        WOLFSSL_BIO* pemBio = NULL;
13883
13884
        if (!bio || !x509 || *x509 || !crl || *crl || !x_pkey || *x_pkey) {
13885
            WOLFSSL_MSG("Bad input parameter or output parameters "
13886
                        "not set to a NULL value.");
13887
            return WOLFSSL_FAILURE;
13888
        }
13889
13890
        l = wolfSSL_BIO_get_len(bio);
13891
13892
        if (l < 0) {
13893
            WOLFSSL_ERROR(BAD_FUNC_ARG);
13894
            return WOLFSSL_FAILURE;
13895
        }
13896
13897
        if (l == 0) {
13898
            /* Streaming BIO (pipe/FIFO/socket): size unknown, use the cap. */
13899
            l = MAX_BIO_READ_BUFFER;
13900
        }
13901
        else if (l <= pem_struct_min_sz) {
13902
            /* No certificate in buffer */
13903
            WOLFSSL_ERROR(ASN_NO_PEM_HEADER);
13904
            return WOLFSSL_FAILURE;
13905
        }
13906
13907
        pem = (char*)XMALLOC(l, 0, DYNAMIC_TYPE_PEM);
13908
        if (pem == NULL)
13909
            return WOLFSSL_FAILURE;
13910
13911
        if (wolfSSL_BIO_read(bio, &pem[0], pem_struct_min_sz) !=
13912
                pem_struct_min_sz) {
13913
            WOLFSSL_ERROR(ASN_NO_PEM_HEADER);
13914
            goto err;
13915
        }
13916
13917
        /* Read the header and footer */
13918
        while (i < l && wolfSSL_BIO_read(bio, &pem[i], 1) == 1) {
13919
            i++;
13920
            if (!header) {
13921
                header = XSTRNSTR(pem, "-----BEGIN ", i);
13922
            }
13923
            else if (!headerEnd) {
13924
                headerEnd = XSTRNSTR(header + XSTR_SIZEOF("-----BEGIN "),
13925
                        "-----",
13926
                        i - (header + XSTR_SIZEOF("-----BEGIN ") - pem));
13927
                if (headerEnd) {
13928
                    headerEnd += XSTR_SIZEOF("-----");
13929
                    /* Read in the newline */
13930
                    if (wolfSSL_BIO_read(bio, &pem[i], 1) != 1) {
13931
                        WOLFSSL_MSG("wolfSSL_BIO_read error");
13932
                        goto err;
13933
                    }
13934
                    i++;
13935
                    if (*headerEnd != '\n' && *headerEnd != '\r') {
13936
                        WOLFSSL_MSG("Missing newline after header");
13937
                        goto err;
13938
                    }
13939
                }
13940
            }
13941
            else if (!footer) {
13942
                footer = XSTRNSTR(headerEnd, "-----END ",
13943
                        i - (headerEnd - pem));
13944
            }
13945
            else if (!footerEnd) {
13946
                footerEnd = XSTRNSTR(footer + XSTR_SIZEOF("-----"),
13947
                        "-----",
13948
                        i - (footer + XSTR_SIZEOF("-----") - pem));
13949
                if (footerEnd) {
13950
                    footerEnd += XSTR_SIZEOF("-----");
13951
                    /* Now check that footer matches header */
13952
                    if ((headerEnd - (header + XSTR_SIZEOF("-----BEGIN "))) ==
13953
                        (footerEnd - (footer + XSTR_SIZEOF("-----END "))) &&
13954
                        XMEMCMP(header + XSTR_SIZEOF("-----BEGIN "),
13955
                                footer + XSTR_SIZEOF("-----END "),
13956
                        headerEnd - (header + XSTR_SIZEOF("-----BEGIN ")))
13957
                            != 0) {
13958
                        WOLFSSL_MSG("Header and footer don't match");
13959
                        goto err;
13960
                    }
13961
                    /* header and footer match */
13962
                    break;
13963
                }
13964
            }
13965
        }
13966
        if (!footerEnd) {
13967
            /* Only check footerEnd since it is set last */
13968
            WOLFSSL_ERROR(ASN_NO_PEM_HEADER);
13969
            goto err;
13970
        }
13971
        else {
13972
            if (PEM_COMPARE_HEADER(header, headerEnd,
13973
                    "-----BEGIN CERTIFICATE-----")) {
13974
                /* We have a certificate */
13975
                WOLFSSL_MSG("Parsing x509 cert");
13976
                *x509 = wolfSSL_X509_load_certificate_buffer(
13977
                        (const unsigned char*) header,
13978
                        (int)(footerEnd - header), WOLFSSL_FILETYPE_PEM);
13979
                if (!*x509) {
13980
                    WOLFSSL_MSG("wolfSSL_X509_load_certificate_buffer error");
13981
                    goto err;
13982
                }
13983
            }
13984
    #ifdef HAVE_CRL
13985
            else if (PEM_COMPARE_HEADER(header, headerEnd,
13986
                        "-----BEGIN X509 CRL-----")) {
13987
                /* We have a crl */
13988
                WOLFSSL_MSG("Parsing crl");
13989
                if ((PemToDer((const unsigned char*) header,
13990
                        (long)(footerEnd - header), CRL_TYPE, &der, NULL, NULL,
13991
                        NULL)) < 0) {
13992
                    WOLFSSL_MSG("PemToDer error");
13993
                    goto err;
13994
                }
13995
                *crl = wolfSSL_d2i_X509_CRL(NULL, der->buffer, der->length);
13996
                if (!*crl) {
13997
                    WOLFSSL_MSG("wolfSSL_d2i_X509_CRL error");
13998
                    goto err;
13999
                }
14000
            }
14001
    #endif
14002
            else {
14003
                WOLFSSL_MSG("Parsing x509 key");
14004
14005
                if (!(*x_pkey = wolfSSL_X509_PKEY_new(NULL))) {
14006
                    WOLFSSL_MSG("wolfSSL_X509_PKEY_new error");
14007
                    goto err;
14008
                }
14009
14010
                if (!(pemBio = wolfSSL_BIO_new(wolfSSL_BIO_s_mem()))) {
14011
                    WOLFSSL_MSG("wolfSSL_BIO_new error");
14012
                    goto err;
14013
                }
14014
14015
                if (wolfSSL_BIO_write(pemBio, header,
14016
                        (int)(footerEnd - header)) != footerEnd - header) {
14017
                    WOLFSSL_MSG("wolfSSL_BIO_new error");
14018
                    goto err;
14019
                }
14020
14021
                if (wolfSSL_PEM_read_bio_PrivateKey(pemBio,
14022
                        &(*x_pkey)->dec_pkey, cb, NULL) == NULL) {
14023
                    WOLFSSL_MSG("wolfSSL_PEM_read_bio_PrivateKey error");
14024
                    goto err;
14025
                }
14026
14027
                wolfSSL_BIO_free(pemBio);
14028
            }
14029
        }
14030
14031
        XFREE(pem, 0, DYNAMIC_TYPE_PEM);
14032
    #ifdef HAVE_CRL
14033
        if (der)
14034
            FreeDer(&der);
14035
    #endif
14036
        return WOLFSSL_SUCCESS;
14037
err:
14038
        XFREE(pem, 0, DYNAMIC_TYPE_PEM);
14039
    #ifdef HAVE_CRL
14040
        if (der)
14041
            FreeDer(&der);
14042
    #endif
14043
        if (*x_pkey) {
14044
            wolfSSL_X509_PKEY_free(*x_pkey);
14045
            *x_pkey = NULL;
14046
        }
14047
        if (pemBio)
14048
            wolfSSL_BIO_free(pemBio);
14049
        return WOLFSSL_FAILURE;
14050
#else /* ! (WOLFSSL_PEM_TO_DER || WOLFSSL_DER_TO_PEM) */
14051
        return WOLFSSL_FAILURE;
14052
#endif /* WOLFSSL_PEM_TO_DER || WOLFSSL_DER_TO_PEM */
14053
    }
14054
14055
#endif /* OPENSSL_EXTRA || OPENSSL_ALL */
14056
#ifdef OPENSSL_ALL
14057
14058
#ifndef NO_FILESYSTEM
14059
    WOLF_STACK_OF(WOLFSSL_X509_INFO)* wolfSSL_PEM_X509_INFO_read(
14060
            XFILE fp, WOLF_STACK_OF(WOLFSSL_X509_INFO)* sk,
14061
            pem_password_cb* cb, void* u)
14062
    {
14063
        WOLFSSL_BIO* fileBio = wolfSSL_BIO_new_fp(fp, WOLFSSL_BIO_NOCLOSE);
14064
        WOLF_STACK_OF(WOLFSSL_X509_INFO)* ret = NULL;
14065
14066
        WOLFSSL_ENTER("wolfSSL_PEM_X509_INFO_read");
14067
        if (fileBio != NULL) {
14068
            ret = wolfSSL_PEM_X509_INFO_read_bio(fileBio, sk, cb, u);
14069
            wolfSSL_BIO_free(fileBio);
14070
        }
14071
        return ret;
14072
    }
14073
#endif /* !NO_FILESYSTEM */
14074
14075
    /*
14076
     * bio WOLFSSL_BIO to read certificates from
14077
     * sk  possible stack to push more X509_INFO structs to. Can be NULL
14078
     * cb  callback password for encrypted PEM certificates
14079
     * u   user input such as password
14080
     *
14081
     * returns stack on success and NULL or default stack passed in on fail
14082
     */
14083
    WOLF_STACK_OF(WOLFSSL_X509_INFO)* wolfSSL_PEM_X509_INFO_read_bio(
14084
        WOLFSSL_BIO* bio, WOLF_STACK_OF(WOLFSSL_X509_INFO)* sk,
14085
        wc_pem_password_cb* cb, void* u)
14086
    {
14087
        WOLF_STACK_OF(WOLFSSL_X509_INFO)* localSk = NULL;
14088
        int ret = WOLFSSL_SUCCESS;
14089
        WOLFSSL_X509_INFO* current = NULL;
14090
        WOLFSSL_X509*      x509 = NULL;
14091
        WOLFSSL_X509_CRL*  crl  = NULL;
14092
        WOLFSSL_X509_PKEY* x_pkey = NULL;
14093
14094
        (void)u;
14095
14096
        WOLFSSL_ENTER("wolfSSL_PEM_X509_INFO_read_bio");
14097
14098
        /* attempt to use passed in stack or create a new one */
14099
        if (sk != NULL) {
14100
            localSk = sk;
14101
        }
14102
        else {
14103
            localSk = wolfSSL_sk_X509_INFO_new_null();
14104
        }
14105
        if (localSk == NULL) {
14106
            WOLFSSL_LEAVE("wolfSSL_PEM_X509_INFO_read_bio",
14107
                    MEMORY_E);
14108
            return NULL;
14109
        }
14110
14111
        /* parse through BIO and push new info's found onto stack */
14112
        while (1) {
14113
            x509 = NULL;
14114
            crl  = NULL;
14115
            x_pkey = NULL;
14116
14117
            if (wolfSSL_PEM_X509_X509_CRL_X509_PKEY_read_bio(bio, cb,
14118
                    &x509, &crl, &x_pkey) == WOLFSSL_SUCCESS) {
14119
                if (current == NULL ||
14120
                        (x509 && current->x509) ||
14121
                        (crl && current->crl) ||
14122
                        (x_pkey && current->x_pkey)) {
14123
                    /* Need to create new current since existing one already
14124
                     * has the member filled or this is the first successful
14125
                     * read. */
14126
                    current = wolfSSL_X509_INFO_new();
14127
                    if (current == NULL) {
14128
                        ret = MEMORY_E;
14129
                        break;
14130
                    }
14131
                    if (wolfSSL_sk_X509_INFO_push(localSk, current) <= 0) {
14132
                        wolfSSL_X509_INFO_free(current);
14133
                        current = NULL;
14134
                        ret = WOLFSSL_FAILURE;
14135
                        break;
14136
                    }
14137
                }
14138
14139
                if (x509) {
14140
                    current->x509 = x509;
14141
                }
14142
                else if (crl) {
14143
                    current->crl = crl;
14144
                }
14145
                else if (x_pkey) {
14146
                    current->x_pkey = x_pkey;
14147
                }
14148
                else {
14149
                    WOLFSSL_MSG("No output parameters set");
14150
                    ret = WOLFSSL_FAILURE;
14151
                    break;
14152
                }
14153
            }
14154
            else {
14155
#ifdef WOLFSSL_HAVE_ERROR_QUEUE
14156
                unsigned long err;
14157
                CLEAR_ASN_NO_PEM_HEADER_ERROR(err);
14158
                if (ERR_GET_LIB(err) != ERR_LIB_PEM ||
14159
                    ERR_GET_REASON(err) != PEM_R_NO_START_LINE) {
14160
                    ret = WOLFSSL_FAILURE;
14161
                }
14162
#else
14163
                if (wolfSSL_sk_X509_INFO_num(localSk) > 0) {
14164
                    WOLFSSL_MSG("At least one X509_INFO object on stack."
14165
                                "Assuming error means EOF or no more PEM"
14166
                                "headers found.");
14167
                }
14168
                else {
14169
                    ret = WOLFSSL_FAILURE;
14170
                }
14171
#endif
14172
                break;
14173
            }
14174
        }
14175
        if (ret != WOLFSSL_SUCCESS ||
14176
                wolfSSL_sk_X509_INFO_num(localSk) == 0) {
14177
            /* current should always be pushed onto the localsk stack at this
14178
             * point. The only case when it isn't is when
14179
             * wolfSSL_sk_X509_INFO_push fails but in that case the current
14180
             * free is handled inside the loop. */
14181
            if (localSk != sk) {
14182
                wolfSSL_sk_pop_free(localSk, NULL);
14183
            }
14184
            wolfSSL_X509_free(x509);
14185
#ifdef HAVE_CRL
14186
            wolfSSL_X509_CRL_free(crl);
14187
#endif
14188
            wolfSSL_X509_PKEY_free(x_pkey);
14189
            localSk = NULL;
14190
        }
14191
        WOLFSSL_LEAVE("wolfSSL_PEM_X509_INFO_read_bio", ret);
14192
        return localSk;
14193
    }
14194
#endif /* !NO_BIO */
14195
#endif /* OPENSSL_EXTRA || OPENSSL_ALL */
14196
14197
    void wolfSSL_X509_NAME_ENTRY_free(WOLFSSL_X509_NAME_ENTRY* ne)
14198
    {
14199
        WOLFSSL_ENTER("wolfSSL_X509_NAME_ENTRY_free");
14200
        if (ne != NULL) {
14201
            wolfSSL_ASN1_OBJECT_free(ne->object);
14202
            if (ne->value != NULL) {
14203
                wolfSSL_ASN1_STRING_free(ne->value);
14204
            }
14205
            XFREE(ne, NULL, DYNAMIC_TYPE_NAME_ENTRY);
14206
        }
14207
    }
14208
14209
14210
    WOLFSSL_X509_NAME_ENTRY* wolfSSL_X509_NAME_ENTRY_new(void)
14211
    {
14212
        WOLFSSL_X509_NAME_ENTRY* ne;
14213
14214
        ne = (WOLFSSL_X509_NAME_ENTRY*)XMALLOC(sizeof(WOLFSSL_X509_NAME_ENTRY),
14215
                NULL, DYNAMIC_TYPE_NAME_ENTRY);
14216
        if (ne != NULL) {
14217
            XMEMSET(ne, 0, sizeof(WOLFSSL_X509_NAME_ENTRY));
14218
        }
14219
14220
        return ne;
14221
    }
14222
14223
14224
    static void wolfssl_x509_name_entry_set(WOLFSSL_X509_NAME_ENTRY* ne,
14225
        int nid, int type, const unsigned char *data, int dataSz)
14226
    {
14227
        ne->nid = nid;
14228
        /* Reuse the object if already available. */
14229
        ne->object = wolfSSL_OBJ_nid2obj_ex(nid, ne->object);
14230
        if (ne->value == NULL) {
14231
            ne->value = wolfSSL_ASN1_STRING_type_new(type);
14232
        }
14233
        if (ne->value != NULL) {
14234
            if (wolfSSL_ASN1_STRING_set(ne->value, (const void*)data,
14235
                                            dataSz) == WOLFSSL_SUCCESS) {
14236
                ne->set = 1;
14237
            }
14238
            else {
14239
                /* Free the ASN1_STRING if it is not set. */
14240
                wolfSSL_ASN1_STRING_free(ne->value);
14241
                ne->value = NULL;
14242
            }
14243
        }
14244
    }
14245
14246
    /* Create a new WOLFSSL_X509_NAME_ENTRY structure based on the text passed
14247
     * in. Returns NULL on failure */
14248
    WOLFSSL_X509_NAME_ENTRY* wolfSSL_X509_NAME_ENTRY_create_by_txt(
14249
            WOLFSSL_X509_NAME_ENTRY **neIn, const char *txt, int type,
14250
            const unsigned char *data, int dataSz)
14251
    {
14252
        int nid = -1;
14253
        WOLFSSL_X509_NAME_ENTRY* ne = NULL;
14254
14255
        WOLFSSL_ENTER("wolfSSL_X509_NAME_ENTRY_create_by_txt");
14256
14257
        if (txt == NULL) {
14258
            return NULL;
14259
        }
14260
14261
        if (neIn != NULL) {
14262
            ne = *neIn;
14263
        }
14264
14265
        nid = wolfSSL_OBJ_txt2nid(txt);
14266
        if (nid == WC_NID_undef) {
14267
            WOLFSSL_MSG("Unable to find text");
14268
            ne = NULL;
14269
        }
14270
        else {
14271
            if (ne == NULL) {
14272
                ne = wolfSSL_X509_NAME_ENTRY_new();
14273
                if (ne == NULL) {
14274
                    return NULL;
14275
                }
14276
            }
14277
14278
            wolfssl_x509_name_entry_set(ne, nid, type, data, dataSz);
14279
        }
14280
14281
        return ne;
14282
    }
14283
14284
14285
    /* Creates a new entry given the NID, type, and data
14286
     * "dataSz" is number of bytes in data, if set to -1 then XSTRLEN is used
14287
     * "out" can be used to store the new entry data in an existing structure
14288
     *       if NULL then a new WOLFSSL_X509_NAME_ENTRY structure is created
14289
     * returns a pointer to WOLFSSL_X509_NAME_ENTRY on success and NULL on fail
14290
     */
14291
    WOLFSSL_X509_NAME_ENTRY* wolfSSL_X509_NAME_ENTRY_create_by_NID(
14292
            WOLFSSL_X509_NAME_ENTRY** out, int nid, int type,
14293
            const unsigned char* data, int dataSz)
14294
    {
14295
        WOLFSSL_X509_NAME_ENTRY* ne;
14296
14297
#ifdef WOLFSSL_DEBUG_OPENSSL
14298
        WOLFSSL_ENTER("wolfSSL_X509_NAME_ENTRY_create_by_NID");
14299
#endif
14300
14301
        if (!data) {
14302
            WOLFSSL_MSG("Bad parameter");
14303
            return NULL;
14304
        }
14305
14306
        if (out == NULL || *out == NULL) {
14307
            ne = wolfSSL_X509_NAME_ENTRY_new();
14308
            if (ne == NULL) {
14309
                return NULL;
14310
            }
14311
            if (out != NULL) {
14312
                *out = ne;
14313
            }
14314
        }
14315
        else {
14316
            ne = *out;
14317
        }
14318
14319
        wolfssl_x509_name_entry_set(ne, nid, type, data, dataSz);
14320
14321
        return ne;
14322
    }
14323
#endif /* OPENSSL_EXTRA || OPENSSL_EXTRA_X509_SMALL */
14324
14325
#if defined(OPENSSL_EXTRA) || defined(OPENSSL_EXTRA_X509_SMALL) || \
14326
    defined(HAVE_LIGHTY) || defined(WOLFSSL_MYSQL_COMPATIBLE) || \
14327
    defined(HAVE_STUNNEL) || defined(WOLFSSL_NGINX) || \
14328
    defined(HAVE_POCO_LIB) || defined(WOLFSSL_HAPROXY)
14329
WOLFSSL_ASN1_OBJECT* wolfSSL_X509_NAME_ENTRY_get_object(
14330
    WOLFSSL_X509_NAME_ENTRY *ne)
14331
{
14332
    WOLFSSL_ASN1_OBJECT* object = NULL;
14333
14334
#ifdef WOLFSSL_DEBUG_OPENSSL
14335
    WOLFSSL_ENTER("wolfSSL_X509_NAME_ENTRY_get_object");
14336
#endif
14337
14338
    if (ne != NULL) {
14339
        /* Create object from nid - reuse existing object if possible. */
14340
        object = wolfSSL_OBJ_nid2obj_ex(ne->nid, ne->object);
14341
        if (object != NULL) {
14342
            /* Set the object when no error. */
14343
            ne->object = object;
14344
        }
14345
    }
14346
14347
    return object;
14348
}
14349
#endif /* OPENSSL_ALL || HAVE_LIGHTY || WOLFSSL_MYSQL_COMPATIBLE ||
14350
        * HAVE_STUNNEL || WOLFSSL_NGINX || HAVE_POCO_LIB || WOLFSSL_HAPROXY */
14351
14352
#if defined(OPENSSL_EXTRA) || defined(OPENSSL_EXTRA_X509_SMALL)
14353
    /* add all entry of type "nid" to the buffer "fullName" and advance "idx"
14354
     * since number of entries is small, a brute force search is used here
14355
     * returns the number of entries added
14356
     */
14357
    static int AddAllEntry(WOLFSSL_X509_NAME* name, char* fullName,
14358
            int fullNameSz, int* idx)
14359
    {
14360
        int i;
14361
        int ret = 0;
14362
14363
        for (i = 0; i < MAX_NAME_ENTRIES; i++) {
14364
            if (name->entry[i].set) {
14365
                WOLFSSL_X509_NAME_ENTRY* e;
14366
                WOLFSSL_ASN1_OBJECT* obj;
14367
14368
                int sz;
14369
                unsigned char* data;
14370
14371
                e = &name->entry[i];
14372
                obj = wolfSSL_X509_NAME_ENTRY_get_object(e);
14373
                if (obj == NULL) {
14374
                    return BAD_FUNC_ARG;
14375
                }
14376
14377
                XMEMCPY(fullName + *idx, "/", 1); *idx = *idx + 1;
14378
                sz = (int)XSTRLEN(obj->sName);
14379
                XMEMCPY(fullName + *idx, obj->sName, sz);
14380
                *idx += sz;
14381
                XMEMCPY(fullName + *idx, "=", 1); *idx = *idx + 1;
14382
14383
                data = wolfSSL_ASN1_STRING_data(e->value);
14384
                if (data != NULL) {
14385
                    sz = (int)XSTRLEN((const char*)data);
14386
                    XMEMCPY(fullName + *idx, data, sz);
14387
                    *idx += sz;
14388
                }
14389
14390
                ret++;
14391
            }
14392
        }
14393
        (void)fullNameSz;
14394
        return ret;
14395
    }
14396
14397
14398
    /* Converts a list of entries in WOLFSSL_X509_NAME struct into a string
14399
     * returns 0 on success */
14400
    static int RebuildFullName(WOLFSSL_X509_NAME* name)
14401
    {
14402
        int totalLen = 0, i, idx, entryCount = 0;
14403
14404
        if (name == NULL)
14405
            return BAD_FUNC_ARG;
14406
14407
        for (i = 0; i < MAX_NAME_ENTRIES; i++) {
14408
            if (name->entry[i].set) {
14409
                WOLFSSL_X509_NAME_ENTRY* e;
14410
                WOLFSSL_ASN1_OBJECT* obj;
14411
14412
                e = &name->entry[i];
14413
                obj = wolfSSL_X509_NAME_ENTRY_get_object(e);
14414
                if (obj == NULL)
14415
                    return BAD_FUNC_ARG;
14416
14417
                totalLen += (int)XSTRLEN(obj->sName) + 2;/*+2 for '/' and '=' */
14418
                totalLen += wolfSSL_ASN1_STRING_length(e->value);
14419
            }
14420
        }
14421
14422
        if (name->dynamicName) {
14423
            XFREE(name->name, name->heap, DYNAMIC_TYPE_X509);
14424
            name->name = name->staticName;
14425
            name->dynamicName = 0;
14426
        }
14427
14428
        if (totalLen >= ASN_NAME_MAX) {
14429
            name->name = (char*)XMALLOC(totalLen + 1, name->heap,
14430
                    DYNAMIC_TYPE_X509);
14431
            if (name->name == NULL)
14432
                return MEMORY_E;
14433
            name->dynamicName = 1;
14434
        }
14435
14436
        idx = 0;
14437
        entryCount = AddAllEntry(name, name->name, totalLen, &idx);
14438
        if (entryCount < 0)
14439
            return entryCount;
14440
14441
        name->name[idx] = '\0';
14442
        name->sz = idx + 1; /* size includes null terminator */
14443
        name->entrySz = entryCount;
14444
14445
        return 0;
14446
    }
14447
14448
    /* Copies entry into name. With it being copied freeing entry becomes the
14449
     * callers responsibility.
14450
     * returns 1 for success and 0 for error */
14451
    int wolfSSL_X509_NAME_add_entry(WOLFSSL_X509_NAME* name,
14452
            WOLFSSL_X509_NAME_ENTRY* entry, int idx, int set)
14453
    {
14454
        WOLFSSL_X509_NAME_ENTRY* current = NULL;
14455
        int ret, i;
14456
14457
#ifdef WOLFSSL_DEBUG_OPENSSL
14458
        WOLFSSL_ENTER("wolfSSL_X509_NAME_add_entry");
14459
#endif
14460
14461
        if (name == NULL || entry == NULL || entry->value == NULL) {
14462
            WOLFSSL_MSG("NULL argument passed in");
14463
            return WOLFSSL_FAILURE;
14464
        }
14465
14466
        if (idx >= 0) {
14467
            /* place in specific index */
14468
14469
            if (idx >= MAX_NAME_ENTRIES) {
14470
                WOLFSSL_MSG("Error index to insert entry is larger than array");
14471
                return WOLFSSL_FAILURE;
14472
            }
14473
            i = idx;
14474
        }
14475
        else {
14476
            /* iterate through and find first open spot */
14477
            for (i = 0; i < MAX_NAME_ENTRIES; i++) {
14478
                if (name->entry[i].set == 0) { /* not set so overwritten */
14479
                    WOLFSSL_MSG("Found place for name entry");
14480
                    break;
14481
                }
14482
            }
14483
14484
            if (i == MAX_NAME_ENTRIES) {
14485
                WOLFSSL_MSG("No spot found for name entry");
14486
                return WOLFSSL_FAILURE;
14487
            }
14488
        }
14489
14490
        current = &name->entry[i];
14491
        if (current->set == 0)
14492
            name->entrySz++;
14493
14494
        if (wolfSSL_X509_NAME_ENTRY_create_by_NID(&current,
14495
                            entry->nid,
14496
                            wolfSSL_ASN1_STRING_type(entry->value),
14497
                            wolfSSL_ASN1_STRING_data(entry->value),
14498
                            wolfSSL_ASN1_STRING_length(entry->value)) != NULL)
14499
        {
14500
            ret = WOLFSSL_SUCCESS;
14501
        #ifdef OPENSSL_ALL
14502
            if (name->entries == NULL) {
14503
                name->entries = wolfSSL_sk_X509_NAME_new(NULL);
14504
            }
14505
            if (wolfSSL_sk_X509_NAME_ENTRY_push(name->entries, current) <= 0) {
14506
                ret = WOLFSSL_FAILURE;
14507
            }
14508
        #endif
14509
        }
14510
        else {
14511
            ret = WOLFSSL_FAILURE;
14512
        }
14513
14514
        if (ret != WOLFSSL_SUCCESS) {
14515
            WOLFSSL_MSG("Error adding the name entry");
14516
            if (current->set == 0)
14517
                name->entrySz--;
14518
            return WOLFSSL_FAILURE;
14519
        }
14520
14521
#ifdef WOLFSSL_PYTHON
14522
        /* Set name index for OpenSSL stack index position and so Python can
14523
         * generate tuples/sets from the list. */
14524
        for (i = 0; i < MAX_NAME_ENTRIES; i++) {
14525
            if (name->entry[i].set != 0)
14526
                name->entry[i].set = i + 1;
14527
        }
14528
#endif
14529
14530
        if (RebuildFullName(name) != 0)
14531
            return WOLFSSL_FAILURE;
14532
14533
        (void)set;
14534
        return WOLFSSL_SUCCESS;
14535
    }
14536
14537
    int wolfSSL_X509_NAME_add_entry_by_txt(WOLFSSL_X509_NAME *name,
14538
                                           const char *field, int type,
14539
                                           const unsigned char *bytes, int len,
14540
                                           int loc, int set)
14541
    {
14542
        int ret = WC_NO_ERR_TRACE(WOLFSSL_FAILURE);
14543
        int nid;
14544
        WOLFSSL_X509_NAME_ENTRY* entry;
14545
14546
        (void)type;
14547
        WOLFSSL_ENTER("wolfSSL_X509_NAME_add_entry_by_txt");
14548
14549
        if (name == NULL || field == NULL)
14550
            return WOLFSSL_FAILURE;
14551
14552
        if ((nid = wolfSSL_OBJ_txt2nid(field)) == WC_NID_undef) {
14553
            WOLFSSL_MSG("Unable convert text to NID");
14554
            return WOLFSSL_FAILURE;
14555
        }
14556
14557
        entry = wolfSSL_X509_NAME_ENTRY_create_by_NID(NULL,
14558
                  nid, type, (unsigned char*)bytes, len);
14559
        if (entry == NULL)
14560
            return WOLFSSL_FAILURE;
14561
14562
        ret = wolfSSL_X509_NAME_add_entry(name, entry, loc, set);
14563
        wolfSSL_X509_NAME_ENTRY_free(entry);
14564
14565
        return ret;
14566
    }
14567
14568
    int wolfSSL_X509_NAME_add_entry_by_NID(WOLFSSL_X509_NAME *name, int nid,
14569
                                           int type, const unsigned char *bytes,
14570
                                           int len, int loc, int set)
14571
    {
14572
        int ret;
14573
        WOLFSSL_X509_NAME_ENTRY* entry;
14574
        WOLFSSL_ENTER("wolfSSL_X509_NAME_add_entry_by_NID");
14575
        entry = wolfSSL_X509_NAME_ENTRY_create_by_NID(NULL, nid, type, bytes,
14576
                len);
14577
        if (entry == NULL)
14578
            return WOLFSSL_FAILURE;
14579
        ret = wolfSSL_X509_NAME_add_entry(name, entry, loc, set);
14580
        wolfSSL_X509_NAME_ENTRY_free(entry);
14581
        return ret;
14582
    }
14583
14584
    WOLFSSL_X509_NAME_ENTRY *wolfSSL_X509_NAME_delete_entry(
14585
            WOLFSSL_X509_NAME *name, int loc)
14586
    {
14587
        WOLFSSL_X509_NAME_ENTRY* ret;
14588
        WOLFSSL_ENTER("wolfSSL_X509_NAME_delete_entry");
14589
14590
        if (!name) {
14591
            WOLFSSL_MSG("Bad parameter");
14592
            return NULL;
14593
        }
14594
14595
        ret = wolfSSL_X509_NAME_get_entry(name, loc);
14596
        if (!ret) {
14597
            WOLFSSL_MSG("loc entry not found");
14598
            return NULL;
14599
        }
14600
        name->entry[loc].set = 0;
14601
#ifdef WOLFSSL_PYTHON
14602
        {
14603
            int i;
14604
            /* Set name index for OpenSSL stack index position and so Python can
14605
            * generate tuples/sets from the list. */
14606
            for (i = 0; i < MAX_NAME_ENTRIES; i++) {
14607
                if (name->entry[i].set != 0)
14608
                    name->entry[i].set = i + 1;
14609
            }
14610
        }
14611
#endif
14612
        return ret;
14613
    }
14614
14615
#endif /* OPENSSL_EXTRA || OPENSSL_EXTRA_X509_SMALL */
14616
14617
#if defined(OPENSSL_EXTRA) && !defined(NO_ASN)
14618
    int wolfSSL_X509_NAME_get_index_by_OBJ(WOLFSSL_X509_NAME *name,
14619
                                           const WOLFSSL_ASN1_OBJECT *obj,
14620
                                           int idx) {
14621
        if (!name || idx >= MAX_NAME_ENTRIES ||
14622
                !obj || !obj->obj) {
14623
            return WOLFSSL_FATAL_ERROR;
14624
        }
14625
14626
        if (idx < 0) {
14627
            idx = -1;
14628
        }
14629
14630
        for (idx++; idx < MAX_NAME_ENTRIES; idx++) {
14631
            /* Find index of desired name */
14632
            if (name->entry[idx].set) {
14633
                if (XSTRLEN(obj->sName) ==
14634
                        XSTRLEN(name->entry[idx].object->sName) &&
14635
                    XSTRNCMP((const char*) obj->sName,
14636
                        name->entry[idx].object->sName, obj->objSz - 1) == 0) {
14637
                    return idx;
14638
                }
14639
            }
14640
        }
14641
        return WOLFSSL_FATAL_ERROR;
14642
    }
14643
#endif
14644
14645
#if defined(OPENSSL_EXTRA) || defined(WOLFSSL_WPAS_SMALL) || \
14646
    defined(OPENSSL_EXTRA_X509_SMALL)
14647
14648
#ifdef OPENSSL_EXTRA
14649
    int wolfSSL_X509_NAME_ENTRY_set(const WOLFSSL_X509_NAME_ENTRY *ne)
14650
    {
14651
        if (ne != NULL) {
14652
            return ne->set;
14653
        }
14654
        return 0;
14655
    }
14656
#endif
14657
14658
14659
    /* returns a pointer to the internal entry at location 'loc' on success,
14660
     * a null pointer is returned in fail cases */
14661
    WOLFSSL_X509_NAME_ENTRY *wolfSSL_X509_NAME_get_entry(
14662
                                        const WOLFSSL_X509_NAME *name, int loc)
14663
    {
14664
#ifdef WOLFSSL_DEBUG_OPENSSL
14665
        WOLFSSL_ENTER("wolfSSL_X509_NAME_get_entry");
14666
#endif
14667
14668
        if (name == NULL) {
14669
            return NULL;
14670
        }
14671
14672
        if (loc < 0 || loc >= MAX_NAME_ENTRIES) {
14673
            WOLFSSL_MSG("Bad argument");
14674
            return NULL;
14675
        }
14676
14677
        if (name->entry[loc].set) {
14678
            return (WOLFSSL_X509_NAME_ENTRY*)&name->entry[loc];
14679
        }
14680
        else {
14681
            return NULL;
14682
        }
14683
    }
14684
#endif /* OPENSSL_EXTRA || WOLFSSL_WPAS_SMALL */
14685
14686
#ifdef OPENSSL_EXTRA
14687
14688
int wolfSSL_X509_check_private_key(WOLFSSL_X509 *x509, WOLFSSL_EVP_PKEY *key)
14689
{
14690
    WOLFSSL_ENTER("wolfSSL_X509_check_private_key");
14691
14692
    if (!x509 || !key) {
14693
        WOLFSSL_MSG("Bad parameter");
14694
        return WOLFSSL_FAILURE;
14695
    }
14696
14697
#ifndef NO_CHECK_PRIVATE_KEY
14698
    return wc_CheckPrivateKey((byte*)key->pkey.ptr, key->pkey_sz,
14699
            x509->pubKey.buffer, x509->pubKey.length,
14700
            (enum Key_Sum)x509->pubKeyOID, key->heap) == 1 ?
14701
                    WOLFSSL_SUCCESS : WOLFSSL_FAILURE;
14702
#else
14703
    /* not compiled in */
14704
    return WOLFSSL_SUCCESS;
14705
#endif
14706
}
14707
14708
#endif /* OPENSSL_EXTRA */
14709
14710
#if defined(HAVE_LIGHTY) || defined(HAVE_STUNNEL) \
14711
    || defined(WOLFSSL_MYSQL_COMPATIBLE) || defined(OPENSSL_EXTRA)
14712
#ifndef NO_BIO
14713
14714
#ifdef WOLFSSL_CERT_GEN
14715
14716
#ifdef WOLFSSL_CERT_REQ
14717
/* writes the x509 from x to the WOLFSSL_BIO bp
14718
 *
14719
 * returns WOLFSSL_SUCCESS on success and WOLFSSL_FAILURE on fail
14720
 */
14721
int wolfSSL_PEM_write_bio_X509_REQ(WOLFSSL_BIO *bp, WOLFSSL_X509 *x)
14722
{
14723
    byte* pem;
14724
    int   pemSz = 0;
14725
    const unsigned char* der;
14726
    int derSz;
14727
    int ret;
14728
14729
    WOLFSSL_ENTER("wolfSSL_PEM_write_bio_X509_REQ");
14730
14731
    if (x == NULL || bp == NULL) {
14732
        return WOLFSSL_FAILURE;
14733
    }
14734
14735
    der = wolfSSL_X509_get_der(x, &derSz);
14736
    if (der == NULL) {
14737
        return WOLFSSL_FAILURE;
14738
    }
14739
14740
    /* get PEM size */
14741
    pemSz = wc_DerToPemEx(der, (word32)derSz, NULL, 0, NULL, CERTREQ_TYPE);
14742
    if (pemSz < 0) {
14743
        return WOLFSSL_FAILURE;
14744
    }
14745
14746
    /* create PEM buffer and convert from DER */
14747
    pem = (byte*)XMALLOC(pemSz, NULL, DYNAMIC_TYPE_TMP_BUFFER);
14748
    if (pem == NULL) {
14749
        return WOLFSSL_FAILURE;
14750
    }
14751
    if (wc_DerToPemEx(der, (word32)derSz, pem, pemSz, NULL, CERTREQ_TYPE) < 0) {
14752
        XFREE(pem, NULL, DYNAMIC_TYPE_TMP_BUFFER);
14753
        return WOLFSSL_FAILURE;
14754
    }
14755
14756
    /* write the PEM to BIO */
14757
    ret = wolfSSL_BIO_write(bp, pem, pemSz);
14758
    XFREE(pem, NULL, DYNAMIC_TYPE_TMP_BUFFER);
14759
14760
    if (ret <= 0) return WOLFSSL_FAILURE;
14761
    return WOLFSSL_SUCCESS;
14762
}
14763
#endif /* WOLFSSL_CERT_REQ */
14764
14765
14766
/* writes the x509 from x to the WOLFSSL_BIO bp
14767
 *
14768
 * returns WOLFSSL_SUCCESS on success and WOLFSSL_FAILURE on fail
14769
 */
14770
int wolfSSL_PEM_write_bio_X509_AUX(WOLFSSL_BIO *bp, WOLFSSL_X509 *x)
14771
{
14772
    byte* pem;
14773
    int   pemSz = 0;
14774
    const unsigned char* der;
14775
    int derSz;
14776
    int ret;
14777
14778
    WOLFSSL_ENTER("wolfSSL_PEM_write_bio_X509_AUX");
14779
14780
    if (bp == NULL || x == NULL) {
14781
        WOLFSSL_MSG("NULL argument passed in");
14782
        return WOLFSSL_FAILURE;
14783
    }
14784
14785
    der = wolfSSL_X509_get_der(x, &derSz);
14786
    if (der == NULL) {
14787
        return WOLFSSL_FAILURE;
14788
    }
14789
14790
    /* get PEM size */
14791
    pemSz = wc_DerToPemEx(der, (word32)derSz, NULL, 0, NULL, CERT_TYPE);
14792
    if (pemSz < 0) {
14793
        return WOLFSSL_FAILURE;
14794
    }
14795
14796
    /* create PEM buffer and convert from DER */
14797
    pem = (byte*)XMALLOC(pemSz, NULL, DYNAMIC_TYPE_TMP_BUFFER);
14798
    if (pem == NULL) {
14799
        return WOLFSSL_FAILURE;
14800
    }
14801
    if (wc_DerToPemEx(der, (word32)derSz, pem, pemSz, NULL, CERT_TYPE) < 0) {
14802
        XFREE(pem, NULL, DYNAMIC_TYPE_TMP_BUFFER);
14803
        return WOLFSSL_FAILURE;
14804
    }
14805
14806
    /* write the PEM to BIO */
14807
    ret = wolfSSL_BIO_write(bp, pem, pemSz);
14808
    XFREE(pem, NULL, DYNAMIC_TYPE_TMP_BUFFER);
14809
14810
    if (ret <= 0) return WOLFSSL_FAILURE;
14811
    return WOLFSSL_SUCCESS;
14812
}
14813
14814
int wolfSSL_PEM_write_bio_X509(WOLFSSL_BIO *bio, WOLFSSL_X509 *cert)
14815
{
14816
    byte* pem = NULL;
14817
    int   pemSz = 0;
14818
    /* Get large buffer to hold cert der */
14819
    const byte* der = NULL;
14820
    int derSz = X509_BUFFER_SZ;
14821
    int ret;
14822
14823
    WOLFSSL_ENTER("wolfSSL_PEM_write_bio_X509");
14824
14825
    if (bio == NULL || cert == NULL) {
14826
        WOLFSSL_MSG("NULL argument passed in");
14827
        return WOLFSSL_FAILURE;
14828
    }
14829
14830
    /* Do not call wolfssl_x509_make_der() here. If we did, then need to re-sign
14831
     * because we don't know the original order of the extensions and so we must
14832
     * assume our extensions are in a different order, thus need to re-sign. */
14833
    der = wolfSSL_X509_get_der(cert, &derSz);
14834
    if (der == NULL) {
14835
        goto error;
14836
    }
14837
14838
    /* get PEM size */
14839
    pemSz = wc_DerToPemEx(der, (word32)derSz, NULL, 0, NULL, CERT_TYPE);
14840
    if (pemSz < 0) {
14841
        goto error;
14842
    }
14843
14844
    /* create PEM buffer and convert from DER */
14845
    pem = (byte*)XMALLOC(pemSz, NULL, DYNAMIC_TYPE_TMP_BUFFER);
14846
    if (pem == NULL) {
14847
        goto error;
14848
    }
14849
    if (wc_DerToPemEx(der, (word32)derSz, pem, pemSz, NULL, CERT_TYPE) < 0) {
14850
        goto error;
14851
    }
14852
14853
    /* write the PEM to BIO */
14854
    ret = wolfSSL_BIO_write(bio, pem, pemSz);
14855
    XFREE(pem, NULL, DYNAMIC_TYPE_TMP_BUFFER);
14856
14857
    if (ret <= 0) return WOLFSSL_FAILURE;
14858
    return WOLFSSL_SUCCESS;
14859
14860
error:
14861
    XFREE(pem, NULL, DYNAMIC_TYPE_TMP_BUFFER);
14862
    return WOLFSSL_FAILURE;
14863
}
14864
#endif /* WOLFSSL_CERT_GEN */
14865
14866
#endif /* !NO_BIO */
14867
#endif /* HAVE_LIGHTY || HAVE_STUNNEL || WOLFSSL_MYSQL_COMPATIBLE */
14868
14869
#if defined(OPENSSL_EXTRA) || defined(HAVE_STUNNEL) || \
14870
        defined(WOLFSSL_NGINX) || defined(HAVE_LIGHTY) || \
14871
        defined(WOLFSSL_HAPROXY) || defined(WOLFSSL_OPENSSH) || \
14872
        defined(HAVE_SBLIM_SFCB)
14873
14874
WOLF_STACK_OF(WOLFSSL_X509_NAME)* wolfSSL_sk_X509_NAME_new(
14875
        WOLF_SK_COMPARE_CB(WOLFSSL_X509_NAME, cb))
14876
{
14877
    WOLFSSL_STACK* sk;
14878
    (void)cb;
14879
14880
    WOLFSSL_ENTER("wolfSSL_sk_X509_NAME_new");
14881
14882
    sk = wolfSSL_sk_new_node(NULL);
14883
    if (sk != NULL) {
14884
        sk->type = STACK_TYPE_X509_NAME;
14885
    }
14886
14887
    return sk;
14888
}
14889
14890
int wolfSSL_sk_X509_NAME_num(const WOLF_STACK_OF(WOLFSSL_X509_NAME) *sk)
14891
{
14892
    WOLFSSL_ENTER("wolfSSL_sk_X509_NAME_num");
14893
14894
    if (sk == NULL)
14895
        return BAD_FUNC_ARG;
14896
14897
    return (int)sk->num;
14898
}
14899
14900
/* Getter function for WOLFSSL_X509_NAME pointer
14901
 *
14902
 * sk is the stack to retrieve pointer from
14903
 * i  is the index value in stack
14904
 *
14905
 * returns a pointer to a WOLFSSL_X509_NAME structure on success and NULL on
14906
 *         fail
14907
 */
14908
WOLFSSL_X509_NAME* wolfSSL_sk_X509_NAME_value(
14909
    const WOLF_STACK_OF(WOLFSSL_X509_NAME)* sk, int i)
14910
{
14911
    WOLFSSL_ENTER("wolfSSL_sk_X509_NAME_value");
14912
    return (WOLFSSL_X509_NAME*)wolfSSL_sk_value(sk, i);
14913
}
14914
14915
WOLFSSL_X509_NAME* wolfSSL_sk_X509_NAME_pop(
14916
    WOLF_STACK_OF(WOLFSSL_X509_NAME)* sk)
14917
{
14918
    return (WOLFSSL_X509_NAME*)wolfSSL_sk_pop(sk);
14919
}
14920
14921
void wolfSSL_sk_X509_NAME_pop_free(WOLF_STACK_OF(WOLFSSL_X509_NAME)* sk,
14922
    void (*f) (WOLFSSL_X509_NAME*))
14923
{
14924
    WOLFSSL_ENTER("wolfSSL_sk_X509_NAME_pop_free");
14925
    wolfSSL_sk_pop_free(sk, (wolfSSL_sk_freefunc)f);
14926
}
14927
14928
/* Free only the sk structure, NOT X509_NAME members */
14929
void wolfSSL_sk_X509_NAME_free(WOLF_STACK_OF(WOLFSSL_X509_NAME)* sk)
14930
{
14931
    WOLFSSL_ENTER("wolfSSL_sk_X509_NAME_free");
14932
    wolfSSL_sk_free(sk);
14933
}
14934
14935
int wolfSSL_sk_X509_NAME_push(WOLF_STACK_OF(WOLFSSL_X509_NAME)* sk,
14936
    WOLFSSL_X509_NAME* name)
14937
{
14938
    WOLFSSL_ENTER("wolfSSL_sk_X509_NAME_push");
14939
14940
    return wolfSSL_sk_push(sk, name);
14941
}
14942
14943
/* return index of found, or negative to indicate not found */
14944
int wolfSSL_sk_X509_NAME_find(const WOLF_STACK_OF(WOLFSSL_X509_NAME) *sk,
14945
    WOLFSSL_X509_NAME *name)
14946
{
14947
    int i;
14948
14949
    WOLFSSL_ENTER("wolfSSL_sk_X509_NAME_find");
14950
14951
    if (sk == NULL)
14952
        return BAD_FUNC_ARG;
14953
14954
    for (i = 0; sk; i++, sk = sk->next) {
14955
        if (wolfSSL_X509_NAME_cmp(sk->data.name, name) == 0) {
14956
            return i;
14957
        }
14958
    }
14959
    return WOLFSSL_FATAL_ERROR;
14960
}
14961
14962
/* Name Entry */
14963
WOLF_STACK_OF(WOLFSSL_X509_NAME_ENTRY)* wolfSSL_sk_X509_NAME_ENTRY_new(
14964
    WOLF_SK_COMPARE_CB(WOLFSSL_X509_NAME_ENTRY, cb))
14965
{
14966
    WOLFSSL_STACK* sk = wolfSSL_sk_new_node(NULL);
14967
    if (sk != NULL) {
14968
        sk->type = STACK_TYPE_X509_NAME_ENTRY;
14969
        (void)cb;
14970
    }
14971
    return sk;
14972
}
14973
14974
int wolfSSL_sk_X509_NAME_ENTRY_push(WOLF_STACK_OF(WOLFSSL_X509_NAME_ENTRY)* sk,
14975
    WOLFSSL_X509_NAME_ENTRY* name_entry)
14976
{
14977
    return wolfSSL_sk_push(sk, name_entry);
14978
}
14979
14980
WOLFSSL_X509_NAME_ENTRY* wolfSSL_sk_X509_NAME_ENTRY_value(
14981
    const WOLF_STACK_OF(WOLFSSL_X509_NAME_ENTRY)* sk, int i)
14982
{
14983
    return (WOLFSSL_X509_NAME_ENTRY*)wolfSSL_sk_value(sk, i);
14984
}
14985
14986
int wolfSSL_sk_X509_NAME_ENTRY_num(
14987
    const WOLF_STACK_OF(WOLFSSL_X509_NAME_ENTRY)* sk)
14988
{
14989
    if (sk == NULL)
14990
        return BAD_FUNC_ARG;
14991
    return (int)sk->num;
14992
}
14993
14994
void wolfSSL_sk_X509_NAME_ENTRY_free(WOLF_STACK_OF(WOLFSSL_X509_NAME_ENTRY)* sk)
14995
{
14996
    wolfSSL_sk_free(sk);
14997
}
14998
14999
#endif /* OPENSSL_EXTRA || HAVE_STUNNEL || WOLFSSL_NGINX ||
15000
            HAVE_LIGHTY || WOLFSSL_HAPROXY ||
15001
            WOLFSSL_OPENSSH || HAVE_SBLIM_SFCB */
15002
15003
#if defined(OPENSSL_ALL) || defined(OPENSSL_EXTRA) || \
15004
    (defined(HAVE_STUNNEL) || defined(WOLFSSL_NGINX) || \
15005
    defined(HAVE_LIGHTY) || defined(WOLFSSL_HAPROXY) || \
15006
    defined(WOLFSSL_OPENSSH) || defined(HAVE_SBLIM_SFCB))
15007
15008
#if defined(OPENSSL_ALL)
15009
WOLFSSL_X509_INFO* wolfSSL_X509_INFO_new(void)
15010
{
15011
    WOLFSSL_X509_INFO* info;
15012
    info = (WOLFSSL_X509_INFO*)XMALLOC(sizeof(WOLFSSL_X509_INFO), NULL,
15013
        DYNAMIC_TYPE_X509);
15014
    if (info) {
15015
        XMEMSET(info, 0, sizeof(*info));
15016
    }
15017
    return info;
15018
}
15019
15020
void wolfSSL_X509_INFO_free(WOLFSSL_X509_INFO* info)
15021
{
15022
    if (info == NULL)
15023
        return;
15024
15025
    if (info->x509) {
15026
        wolfSSL_X509_free(info->x509);
15027
        info->x509 = NULL;
15028
    }
15029
#ifdef HAVE_CRL
15030
    if (info->crl) {
15031
        wolfSSL_X509_CRL_free(info->crl);
15032
        info->crl = NULL;
15033
    }
15034
#endif
15035
    wolfSSL_X509_PKEY_free(info->x_pkey);
15036
    info->x_pkey = NULL;
15037
15038
    XFREE(info, NULL, DYNAMIC_TYPE_X509);
15039
}
15040
#endif
15041
15042
WOLFSSL_STACK* wolfSSL_sk_X509_INFO_new_null(void)
15043
{
15044
    WOLFSSL_STACK* sk = wolfSSL_sk_new_node(NULL);
15045
    if (sk) {
15046
        sk->type = STACK_TYPE_X509_INFO;
15047
    }
15048
    return sk;
15049
}
15050
15051
int wolfSSL_sk_X509_INFO_num(const WOLF_STACK_OF(WOLFSSL_X509_INFO) *sk)
15052
{
15053
    WOLFSSL_ENTER("wolfSSL_sk_X509_INFO_num");
15054
15055
    return wolfSSL_sk_num(sk);
15056
}
15057
15058
WOLFSSL_X509_INFO* wolfSSL_sk_X509_INFO_value(
15059
        const WOLF_STACK_OF(WOLFSSL_X509_INFO) *sk, int i)
15060
{
15061
    WOLFSSL_ENTER("wolfSSL_sk_X509_INFO_value");
15062
15063
    return (WOLFSSL_X509_INFO *)wolfSSL_sk_value(sk, i);
15064
}
15065
15066
WOLFSSL_X509_INFO* wolfSSL_sk_X509_INFO_pop(
15067
        WOLF_STACK_OF(WOLFSSL_X509_INFO)* sk)
15068
{
15069
    return (WOLFSSL_X509_INFO*)wolfSSL_sk_pop(sk);
15070
}
15071
15072
#if defined(OPENSSL_ALL)
15073
void wolfSSL_sk_X509_INFO_pop_free(WOLF_STACK_OF(WOLFSSL_X509_INFO)* sk,
15074
    void (*f) (WOLFSSL_X509_INFO*))
15075
{
15076
    WOLFSSL_ENTER("wolfSSL_sk_X509_INFO_pop_free");
15077
    wolfSSL_sk_pop_free(sk, (wolfSSL_sk_freefunc)f);
15078
}
15079
15080
void wolfSSL_sk_X509_INFO_free(WOLF_STACK_OF(WOLFSSL_X509_INFO) *sk)
15081
{
15082
    WOLFSSL_ENTER("wolfSSL_sk_X509_INFO_free");
15083
    wolfSSL_sk_free(sk);
15084
}
15085
15086
/* Adds the WOLFSSL_X509_INFO to the stack "sk". "sk" takes control of "in" and
15087
 * tries to free it when the stack is free'd.
15088
 *
15089
 * return number of elements on success 0 on fail
15090
 */
15091
int wolfSSL_sk_X509_INFO_push(WOLF_STACK_OF(WOLFSSL_X509_INFO)* sk,
15092
                                                      WOLFSSL_X509_INFO* in)
15093
{
15094
    return wolfSSL_sk_push(sk, in);
15095
}
15096
15097
/* Creates a duplicate of WOLF_STACK_OF(WOLFSSL_X509_NAME).
15098
 * Returns a new WOLF_STACK_OF(WOLFSSL_X509_NAME) or NULL on failure */
15099
WOLF_STACK_OF(WOLFSSL_X509_NAME) *wolfSSL_dup_CA_list(
15100
    WOLF_STACK_OF(WOLFSSL_X509_NAME)* sk)
15101
{
15102
    int i;
15103
    const int num = wolfSSL_sk_X509_NAME_num(sk);
15104
    WOLF_STACK_OF(WOLFSSL_X509_NAME) *copy;
15105
    WOLFSSL_X509_NAME *name;
15106
15107
    WOLFSSL_ENTER("wolfSSL_dup_CA_list");
15108
15109
    copy = wolfSSL_sk_X509_NAME_new(NULL);
15110
    if (copy == NULL) {
15111
        WOLFSSL_MSG("Memory error");
15112
        return NULL;
15113
    }
15114
15115
    for (i = 0; i < num; i++) {
15116
        name = wolfSSL_X509_NAME_dup(wolfSSL_sk_X509_NAME_value(sk, i));
15117
        if (name == NULL || wolfSSL_sk_X509_NAME_push(copy, name) <= 0) {
15118
            WOLFSSL_MSG("Memory error");
15119
            wolfSSL_sk_X509_NAME_pop_free(copy, wolfSSL_X509_NAME_free);
15120
            wolfSSL_X509_NAME_free(name);
15121
            return NULL;
15122
        }
15123
    }
15124
15125
    return copy;
15126
}
15127
15128
void* wolfSSL_sk_X509_OBJECT_value(WOLF_STACK_OF(WOLFSSL_X509_OBJECT)* sk,
15129
    int i)
15130
{
15131
    WOLFSSL_ENTER("wolfSSL_sk_X509_OBJECT_value");
15132
    for (; sk != NULL && i > 0; i--)
15133
        sk = sk->next;
15134
15135
    if (i != 0 || sk == NULL)
15136
        return NULL;
15137
    return sk->data.x509_obj;
15138
}
15139
15140
int wolfSSL_sk_X509_OBJECT_num(const WOLF_STACK_OF(WOLFSSL_X509_OBJECT) *s)
15141
{
15142
    WOLFSSL_ENTER("wolfSSL_sk_X509_OBJECT_num");
15143
    if (s) {
15144
        return (int)s->num;
15145
    }
15146
    else {
15147
        return 0;
15148
    }
15149
}
15150
15151
int wolfSSL_sk_X509_NAME_set_cmp_func(WOLF_STACK_OF(WOLFSSL_X509_NAME)* sk,
15152
    WOLF_SK_COMPARE_CB(WOLFSSL_X509_NAME, cb))
15153
{
15154
    WOLFSSL_ENTER("wolfSSL_sk_X509_NAME_set_cmp_func");
15155
15156
    if (sk == NULL)
15157
        return BAD_FUNC_ARG;
15158
15159
    WOLFSSL_MSG("Stack comparison not used in wolfSSL");
15160
    (void)cb;
15161
    return 0;
15162
}
15163
#endif /* OPENSSL_ALL */
15164
15165
#ifndef NO_BIO
15166
15167
/* Helper function for X509_NAME_print_ex. Sets *buf to string for domain
15168
   name attribute based on NID. Returns size of buf */
15169
static int get_dn_attr_by_nid(int n, const char** buf)
15170
{
15171
    int len = 0;
15172
    const char *str;
15173
15174
    switch(n)
15175
    {
15176
        case WC_NID_commonName :
15177
            str = "CN";
15178
            len = 2;
15179
            break;
15180
        case WC_NID_countryName:
15181
            str = "C";
15182
            len = 1;
15183
            break;
15184
        case WC_NID_localityName:
15185
            str = "L";
15186
            len = 1;
15187
            break;
15188
        case WC_NID_stateOrProvinceName:
15189
            str = "ST";
15190
            len = 2;
15191
            break;
15192
        case WC_NID_streetAddress:
15193
            str = "street";
15194
            len = 6;
15195
            break;
15196
        case WC_NID_organizationName:
15197
            str = "O";
15198
            len = 1;
15199
            break;
15200
        case WC_NID_organizationalUnitName:
15201
            str = "OU";
15202
            len = 2;
15203
            break;
15204
        case WC_NID_postalCode:
15205
            str = "postalCode";
15206
            len = 10;
15207
            break;
15208
        case WC_NID_emailAddress:
15209
            str = "emailAddress";
15210
            len = 12;
15211
            break;
15212
        case WC_NID_surname:
15213
            str = "SN";
15214
            len = 2;
15215
            break;
15216
        case WC_NID_givenName:
15217
            str = "GN";
15218
            len = 2;
15219
            break;
15220
        case WC_NID_dnQualifier:
15221
            str = "dnQualifier";
15222
            len = 11;
15223
            break;
15224
        case WC_NID_name:
15225
            str = "name";
15226
            len = 4;
15227
            break;
15228
        case WC_NID_initials:
15229
            str = "initials";
15230
            len = 8;
15231
            break;
15232
        case WC_NID_domainComponent:
15233
            str = "DC";
15234
            len = 2;
15235
            break;
15236
        case WC_NID_pkcs9_contentType:
15237
            str = "contentType";
15238
            len = 11;
15239
            break;
15240
        case WC_NID_userId:
15241
            str = "UID";
15242
            len = 3;
15243
            break;
15244
        case WC_NID_serialNumber:
15245
            str = "serialNumber";
15246
            len = 12;
15247
            break;
15248
        case WC_NID_title:
15249
            str = "title";
15250
            len = 5;
15251
            break;
15252
        case WC_NID_rfc822Mailbox:
15253
            str = "mail";
15254
            len = 4;
15255
            break;
15256
        default:
15257
            WOLFSSL_MSG("Attribute type not found");
15258
            str = NULL;
15259
15260
    }
15261
    if (buf != NULL)
15262
        *buf = str;
15263
    return len;
15264
}
15265
15266
/**
15267
 * Escape input string for RFC2253 requirements. The following characters
15268
 * are escaped with a backslash (\):
15269
 *
15270
 *     1. A space or '#' at the beginning of the string
15271
 *     2. A space at the end of the string
15272
 *     3. One of: ",", "+", """, "\", "<", ">", ";"
15273
 *
15274
 * in    - input string to escape
15275
 * inSz  - length of in, not including the null terminator
15276
 * out   - buffer for output string to be written, will be null terminated
15277
 * outSz - size of out
15278
 *
15279
 * Returns size of output string (not counting NULL terminator) on success,
15280
 * negative on error.
15281
 */
15282
static int wolfSSL_EscapeString_RFC2253(char* in, word32 inSz,
15283
                                        char* out, word32 outSz)
15284
{
15285
    word32 inIdx = 0;
15286
    word32 outIdx = 0;
15287
15288
    if (in == NULL || out == NULL || inSz == 0 || outSz == 0) {
15289
        return BAD_FUNC_ARG;
15290
    }
15291
15292
    for (inIdx = 0; inIdx < inSz; inIdx++) {
15293
15294
        char c = in[inIdx];
15295
15296
        if (((inIdx == 0) && (c == ' ' || c == '#')) ||
15297
            ((inIdx == (inSz-1)) && (c == ' ')) ||
15298
            c == ',' || c == '+' || c == '"' || c == '\\' ||
15299
            c == '<' || c == '>' || c == ';') {
15300
15301
            if (outIdx > (outSz - 1)) {
15302
                return BUFFER_E;
15303
            }
15304
            out[outIdx] = '\\';
15305
            outIdx++;
15306
        }
15307
        if (outIdx > (outSz - 1)) {
15308
            return BUFFER_E;
15309
        }
15310
        out[outIdx] = c;
15311
        outIdx++;
15312
    }
15313
15314
    /* null terminate out */
15315
    if (outIdx > (outSz -1)) {
15316
        return BUFFER_E;
15317
    }
15318
    out[outIdx] = '\0';
15319
15320
    return (int)outIdx;
15321
}
15322
15323
/*
15324
 * Print human readable version of X509_NAME to provided BIO.
15325
 *
15326
 * bio    - output BIO to place name string. Does not include null terminator.
15327
 * name   - input name to convert to string
15328
 * indent - number of indent spaces to prepend to name string
15329
 * flags  - flags to control function behavior. Not all flags are currently
15330
 *          supported/implemented. Currently supported are:
15331
 *              XN_FLAG_RFC2253 - only the backslash escape requirements from
15332
 *                                RFC22523 currently implemented.
15333
 *              XN_FLAG_DN_REV  - print name reversed. Automatically done by
15334
 *                                XN_FLAG_RFC2253.
15335
 *              XN_FLAG_SPC_EQ  - spaces before and after '=' character
15336
 *
15337
 * Returns WOLFSSL_SUCCESS (1) on success, WOLFSSL_FAILURE (0) on failure.
15338
 */
15339
int wolfSSL_X509_NAME_print_ex(WOLFSSL_BIO* bio, WOLFSSL_X509_NAME* name,
15340
                int indent, unsigned long flags)
15341
{
15342
    int i, count = 0, nameStrSz = 0, escapeSz = 0;
15343
    int eqSpace  = 0;
15344
    char eqStr[4];
15345
    char* tmp = NULL;
15346
    char* nameStr = NULL;
15347
    const char *buf = NULL;
15348
    WOLFSSL_X509_NAME_ENTRY* ne;
15349
    WOLFSSL_ASN1_STRING* str;
15350
    char escaped[ASN_NAME_MAX];
15351
15352
    WOLFSSL_ENTER("wolfSSL_X509_NAME_print_ex");
15353
15354
    if ((name == NULL) || (bio == NULL))
15355
        return WOLFSSL_FAILURE;
15356
15357
    XMEMSET(eqStr, 0, sizeof(eqStr));
15358
    if (flags & WOLFSSL_XN_FLAG_SPC_EQ) {
15359
        eqSpace = 2;
15360
        XSTRNCPY(eqStr, " = ", 4);
15361
    }
15362
    else {
15363
        XSTRNCPY(eqStr, "=", 4);
15364
    }
15365
15366
    for (i = 0; i < indent; i++) {
15367
        if (wolfSSL_BIO_write(bio, " ", 1) != 1)
15368
            return WOLFSSL_FAILURE;
15369
    }
15370
15371
    count = wolfSSL_X509_NAME_entry_count(name);
15372
15373
    for (i = 0; i < count; i++) {
15374
        int len;
15375
        int tmpSz;
15376
15377
        /* reverse name order for RFC2253 and DN_REV */
15378
        if ((flags & WOLFSSL_XN_FLAG_RFC2253) ||
15379
            (flags & WOLFSSL_XN_FLAG_DN_REV)) {
15380
            ne = wolfSSL_X509_NAME_get_entry(name, count - i - 1);
15381
        }
15382
        else {
15383
            ne = wolfSSL_X509_NAME_get_entry(name, i);
15384
        }
15385
        if (ne == NULL)
15386
            return WOLFSSL_FAILURE;
15387
15388
        str = wolfSSL_X509_NAME_ENTRY_get_data(ne);
15389
        if (str == NULL)
15390
            return WOLFSSL_FAILURE;
15391
15392
        if (flags & WOLFSSL_XN_FLAG_RFC2253) {
15393
            /* escape string for RFC 2253, ret sz not counting null term */
15394
            escapeSz = wolfSSL_EscapeString_RFC2253(str->data,
15395
                            str->length, escaped, sizeof(escaped));
15396
            if (escapeSz < 0)
15397
                return WOLFSSL_FAILURE;
15398
15399
            nameStr = escaped;
15400
            nameStrSz = escapeSz;
15401
        }
15402
        else {
15403
            nameStr = str->data;
15404
            nameStrSz = str->length;
15405
        }
15406
15407
        /* len is without null terminator */
15408
        len = get_dn_attr_by_nid(ne->nid, &buf);
15409
        if (len == 0 || buf == NULL)
15410
            return WOLFSSL_FAILURE;
15411
15412
        /* + 4 for '=', comma space and '\0'*/
15413
        tmpSz = nameStrSz + len + 4 + eqSpace;
15414
        tmp = (char*)XMALLOC(tmpSz, NULL, DYNAMIC_TYPE_TMP_BUFFER);
15415
        if (tmp == NULL) {
15416
            return WOLFSSL_FAILURE;
15417
        }
15418
15419
        if (i < count - 1) {
15420
            if (XSNPRINTF(tmp, (size_t)tmpSz, "%s%s%s, ", buf, eqStr, nameStr)
15421
                >= tmpSz)
15422
            {
15423
                WOLFSSL_MSG("buffer overrun");
15424
                XFREE(tmp, NULL, DYNAMIC_TYPE_TMP_BUFFER);
15425
                return WOLFSSL_FAILURE;
15426
            }
15427
15428
            tmpSz = len + nameStrSz + 3 + eqSpace; /* 3 for '=', comma space */
15429
        }
15430
        else {
15431
            if (XSNPRINTF(tmp, (size_t)tmpSz, "%s%s%s", buf, eqStr, nameStr)
15432
                >= tmpSz)
15433
            {
15434
                WOLFSSL_MSG("buffer overrun");
15435
                XFREE(tmp, NULL, DYNAMIC_TYPE_TMP_BUFFER);
15436
                return WOLFSSL_FAILURE;
15437
            }
15438
            tmpSz = len + nameStrSz + 1 + eqSpace; /* 1 for '=' */
15439
            if (bio->type != WOLFSSL_BIO_FILE &&
15440
                                              bio->type != WOLFSSL_BIO_MEMORY) {
15441
                ++tmpSz; /* include the terminating null when not writing to a
15442
                          * file.
15443
                          */
15444
            }
15445
        }
15446
15447
        if (wolfSSL_BIO_write(bio, tmp, tmpSz) != tmpSz) {
15448
            XFREE(tmp, NULL, DYNAMIC_TYPE_TMP_BUFFER);
15449
            return WOLFSSL_FAILURE;
15450
        }
15451
15452
        XFREE(tmp, NULL, DYNAMIC_TYPE_TMP_BUFFER);
15453
    }
15454
15455
    return WOLFSSL_SUCCESS;
15456
}
15457
15458
#ifndef NO_FILESYSTEM
15459
int wolfSSL_X509_NAME_print_ex_fp(XFILE file, WOLFSSL_X509_NAME* name,
15460
        int indent, unsigned long flags)
15461
{
15462
    WOLFSSL_BIO* bio;
15463
    int ret;
15464
15465
    WOLFSSL_ENTER("wolfSSL_X509_NAME_print_ex_fp");
15466
15467
    if (!(bio = wolfSSL_BIO_new_fp(file, WOLFSSL_BIO_NOCLOSE))) {
15468
        WOLFSSL_MSG("wolfSSL_BIO_new_fp error");
15469
        return WOLFSSL_FAILURE;
15470
    }
15471
15472
    ret = wolfSSL_X509_NAME_print_ex(bio, name, indent, flags);
15473
15474
    wolfSSL_BIO_free(bio);
15475
15476
    return ret;
15477
}
15478
#endif /* NO_FILESYSTEM */
15479
#endif /* !NO_BIO */
15480
15481
#ifndef NO_WOLFSSL_STUB
15482
WOLFSSL_ASN1_BIT_STRING* wolfSSL_X509_get0_pubkey_bitstr(const WOLFSSL_X509* x)
15483
{
15484
    (void)x;
15485
    WOLFSSL_ENTER("wolfSSL_X509_get0_pubkey_bitstr");
15486
    WOLFSSL_STUB("X509_get0_pubkey_bitstr");
15487
15488
    return NULL;
15489
}
15490
#endif
15491
15492
#ifdef OPENSSL_ALL
15493
WOLFSSL_X509_LOOKUP_TYPE wolfSSL_X509_OBJECT_get_type(
15494
        const WOLFSSL_X509_OBJECT* obj)
15495
{
15496
    if (obj == NULL)
15497
        return WOLFSSL_X509_LU_NONE;
15498
    return obj->type;
15499
}
15500
15501
WOLFSSL_X509_OBJECT* wolfSSL_X509_OBJECT_new(void)
15502
{
15503
    WOLFSSL_X509_OBJECT* ret = (WOLFSSL_X509_OBJECT*)
15504
            XMALLOC(sizeof(WOLFSSL_X509_OBJECT), NULL, DYNAMIC_TYPE_OPENSSL);
15505
    if (ret != NULL)
15506
        XMEMSET(ret, 0, sizeof(WOLFSSL_X509_OBJECT));
15507
    return ret;
15508
}
15509
15510
void wolfSSL_X509_OBJECT_free(WOLFSSL_X509_OBJECT *obj)
15511
{
15512
    WOLFSSL_ENTER("wolfSSL_X509_OBJECT_free");
15513
    if (obj != NULL) {
15514
        if (obj->type == WOLFSSL_X509_LU_X509) {
15515
            wolfSSL_X509_free(obj->data.x509);
15516
        }
15517
    #ifdef HAVE_CRL
15518
        else if (obj->type == WOLFSSL_X509_LU_CRL) {
15519
            wolfSSL_X509_CRL_free(obj->data.crl);
15520
        }
15521
    #endif
15522
        else {
15523
            /* We don't free as this will point to
15524
             * store->cm->crl which we don't own */
15525
            WOLFSSL_MSG("Not free'ing CRL in WOLFSSL_X509_OBJECT");
15526
        }
15527
        XFREE(obj, NULL, DYNAMIC_TYPE_OPENSSL);
15528
    }
15529
}
15530
15531
WOLFSSL_X509_OBJECT *wolfSSL_X509_OBJECT_retrieve_by_subject(
15532
        WOLF_STACK_OF(WOLFSSL_X509_OBJECT) *sk,
15533
        WOLFSSL_X509_LOOKUP_TYPE type,
15534
        WOLFSSL_X509_NAME *name)
15535
{
15536
    int i;
15537
15538
    WOLFSSL_ENTER("wolfSSL_X509_OBJECT_retrieve_by_subject");
15539
15540
    if (sk == NULL || name == NULL)
15541
        return NULL;
15542
15543
    for (i = 0; i < wolfSSL_sk_X509_OBJECT_num(sk); i++) {
15544
        WOLFSSL_X509_OBJECT* obj = (WOLFSSL_X509_OBJECT *)
15545
            wolfSSL_sk_X509_OBJECT_value(sk, i);
15546
        if (obj != NULL && obj->type == type &&
15547
            wolfSSL_X509_NAME_cmp(
15548
                wolfSSL_X509_get_subject_name(obj->data.x509), name) == 0)
15549
            return obj;
15550
    }
15551
    return NULL;
15552
}
15553
#endif /* OPENSSL_ALL */
15554
15555
#ifndef NO_WOLFSSL_STUB
15556
WOLFSSL_X509_OBJECT* wolfSSL_sk_X509_OBJECT_delete(
15557
    WOLF_STACK_OF(WOLFSSL_X509_OBJECT)* sk, int i)
15558
{
15559
    WOLFSSL_ENTER("wolfSSL_sk_X509_OBJECT_delete");
15560
    WOLFSSL_STUB("wolfSSL_sk_X509_OBJECT_delete");
15561
    (void)sk;
15562
    (void)i;
15563
    return NULL;
15564
}
15565
#endif
15566
15567
WOLFSSL_X509 *wolfSSL_X509_OBJECT_get0_X509(const WOLFSSL_X509_OBJECT *obj)
15568
{
15569
    if (obj != NULL && obj->type == WOLFSSL_X509_LU_X509)
15570
        return obj->data.x509;
15571
    return NULL;
15572
}
15573
15574
WOLFSSL_X509_CRL *wolfSSL_X509_OBJECT_get0_X509_CRL(WOLFSSL_X509_OBJECT *obj)
15575
{
15576
    if (obj != NULL && obj->type == WOLFSSL_X509_LU_CRL)
15577
        return obj->data.crl;
15578
    return NULL;
15579
}
15580
15581
#endif /* OPENSSL_ALL || (OPENSSL_EXTRA && (HAVE_STUNNEL || WOLFSSL_NGINX ||
15582
        * HAVE_LIGHTY || WOLFSSL_HAPROXY || WOLFSSL_OPENSSH ||
15583
        * HAVE_SBLIM_SFCB)) */
15584
15585
15586
#if defined(OPENSSL_EXTRA)
15587
15588
int wolfSSL_sk_X509_num(const WOLF_STACK_OF(WOLFSSL_X509) *s)
15589
{
15590
    WOLFSSL_ENTER("wolfSSL_sk_X509_num");
15591
15592
    if (s == NULL)
15593
        return WOLFSSL_FATAL_ERROR;
15594
    return (int)s->num;
15595
}
15596
15597
#endif /* OPENSSL_EXTRA */
15598
15599
#ifdef HAVE_EX_DATA_CRYPTO
15600
int wolfSSL_X509_get_ex_new_index(int idx, void *arg,
15601
                                  WOLFSSL_CRYPTO_EX_new* new_func,
15602
                                  WOLFSSL_CRYPTO_EX_dup* dup_func,
15603
                                  WOLFSSL_CRYPTO_EX_free* free_func)
15604
{
15605
    WOLFSSL_ENTER("wolfSSL_X509_get_ex_new_index");
15606
15607
    return wolfssl_local_get_ex_new_index(WOLF_CRYPTO_EX_INDEX_X509, idx, arg,
15608
                                    new_func, dup_func, free_func);
15609
}
15610
#endif
15611
15612
#if defined(OPENSSL_EXTRA) || defined(OPENSSL_EXTRA_X509_SMALL)
15613
void *wolfSSL_X509_get_ex_data(WOLFSSL_X509 *x509, int idx)
15614
{
15615
    WOLFSSL_ENTER("wolfSSL_X509_get_ex_data");
15616
#ifdef HAVE_EX_DATA
15617
    if (x509 != NULL) {
15618
        return wolfSSL_CRYPTO_get_ex_data(&x509->ex_data, idx);
15619
    }
15620
#else
15621
    (void)x509;
15622
    (void)idx;
15623
#endif
15624
    return NULL;
15625
}
15626
15627
int wolfSSL_X509_set_ex_data(WOLFSSL_X509 *x509, int idx, void *data)
15628
{
15629
    WOLFSSL_ENTER("wolfSSL_X509_set_ex_data");
15630
#ifdef HAVE_EX_DATA
15631
    if (x509 != NULL) {
15632
        return wolfSSL_CRYPTO_set_ex_data(&x509->ex_data, idx, data);
15633
    }
15634
#else
15635
    (void)x509;
15636
    (void)idx;
15637
    (void)data;
15638
#endif
15639
    return WOLFSSL_FAILURE;
15640
}
15641
15642
#ifdef HAVE_EX_DATA_CLEANUP_HOOKS
15643
int wolfSSL_X509_set_ex_data_with_cleanup(
15644
    WOLFSSL_X509 *x509,
15645
    int idx,
15646
    void *data,
15647
    wolfSSL_ex_data_cleanup_routine_t cleanup_routine)
15648
{
15649
    WOLFSSL_ENTER("wolfSSL_X509_set_ex_data_with_cleanup");
15650
    if (x509 != NULL)
15651
    {
15652
        return wolfSSL_CRYPTO_set_ex_data_with_cleanup(&x509->ex_data, idx,
15653
                                                       data, cleanup_routine);
15654
    }
15655
    return WOLFSSL_FAILURE;
15656
}
15657
#endif /* HAVE_EX_DATA_CLEANUP_HOOKS */
15658
#endif /* OPENSSL_EXTRA || OPENSSL_EXTRA_X509_SMALL */
15659
15660
15661
#ifndef NO_ASN
15662
int wolfSSL_X509_check_host(WOLFSSL_X509 *x, const char *chk, size_t chklen,
15663
                    unsigned int flags, char **peername)
15664
0
{
15665
0
    int         ret;
15666
0
    size_t      i;
15667
0
    WC_DECLARE_VAR(dCert, DecodedCert, 1, 0);
15668
15669
0
    WOLFSSL_ENTER("wolfSSL_X509_check_host");
15670
15671
    /* flags and peername not needed for Nginx. */
15672
0
    (void)peername;
15673
15674
0
    if ((x == NULL) || (chk == NULL)) {
15675
0
        WOLFSSL_MSG("Invalid parameter");
15676
0
        return WOLFSSL_FAILURE;
15677
0
    }
15678
15679
0
    if (flags & WOLFSSL_NO_WILDCARDS) {
15680
0
        WOLFSSL_MSG("X509_CHECK_FLAG_NO_WILDCARDS not yet implemented");
15681
0
        return WOLFSSL_FAILURE;
15682
0
    }
15683
0
    if (flags & WOLFSSL_NO_PARTIAL_WILDCARDS) {
15684
0
        WOLFSSL_MSG("X509_CHECK_FLAG_NO_PARTIAL_WILDCARDS not yet implemented");
15685
0
        return WOLFSSL_FAILURE;
15686
0
    }
15687
0
    if (flags & WOLFSSL_MULTI_LABEL_WILDCARDS) {
15688
0
        WOLFSSL_MSG("X509_CHECK_FLAG_NO_PARTIAL_WILDCARDS not yet implemented");
15689
0
        return WOLFSSL_FAILURE;
15690
0
    }
15691
15692
0
#ifdef WOLFSSL_SMALL_STACK
15693
0
    dCert = (DecodedCert *)XMALLOC(sizeof(*dCert), x->heap,
15694
0
                                   DYNAMIC_TYPE_DCERT);
15695
0
    if (dCert == NULL) {
15696
0
        WOLFSSL_MSG("\tout of memory");
15697
0
        return WOLFSSL_FATAL_ERROR;
15698
0
    }
15699
0
#endif
15700
15701
0
    InitDecodedCert(dCert, x->derCert->buffer, x->derCert->length, NULL);
15702
0
    ret = ParseCertRelative(dCert, CERT_TYPE, 0, NULL, NULL);
15703
0
    if (ret != 0) {
15704
0
        goto out;
15705
0
    }
15706
15707
    /* Replicate openssl behavior for checklen */
15708
0
    if (chklen == 0) {
15709
0
        chklen = (size_t)(XSTRLEN(chk));
15710
0
    }
15711
0
    else {
15712
0
        for (i = 0; i < (chklen > 1 ? chklen - 1 : chklen); i++) {
15713
0
            if (chk[i] == '\0') {
15714
0
                ret = WOLFSSL_FATAL_ERROR;
15715
0
                goto out;
15716
0
            }
15717
0
        }
15718
0
    }
15719
0
    if (chklen > 1 && (chk[chklen - 1] == '\0')) {
15720
0
        chklen--;
15721
0
    }
15722
15723
#ifdef WOLFSSL_IP_ALT_NAME
15724
    ret = CheckIPAddr(dCert, (char *)chk);
15725
    if (ret == 0) {
15726
        goto out;
15727
    }
15728
#endif /* WOLFSSL_IP_ALT_NAME */
15729
15730
0
    ret = CheckHostName(dCert, (char *)chk, chklen, flags, 0);
15731
15732
0
out:
15733
15734
0
    FreeDecodedCert(dCert);
15735
0
    WC_FREE_VAR_EX(dCert, x->heap, DYNAMIC_TYPE_DCERT);
15736
15737
0
    if (ret != 0)
15738
0
        return WOLFSSL_FAILURE;
15739
0
    return WOLFSSL_SUCCESS;
15740
0
}
15741
15742
15743
int wolfSSL_X509_check_ip_asc(WOLFSSL_X509 *x, const char *ipasc,
15744
        unsigned int flags)
15745
0
{
15746
0
    int ret = WC_NO_ERR_TRACE(WOLFSSL_FAILURE);
15747
0
    WC_DECLARE_VAR(dCert, DecodedCert, 1, 0);
15748
15749
0
    WOLFSSL_ENTER("wolfSSL_X509_check_ip_asc");
15750
15751
    /* flags not yet implemented */
15752
0
    (void)flags;
15753
15754
0
    if ((x == NULL) || (x->derCert == NULL) || (ipasc == NULL)) {
15755
0
        WOLFSSL_MSG("Invalid parameter");
15756
0
    }
15757
0
    else {
15758
0
        ret = WOLFSSL_SUCCESS;
15759
0
    }
15760
15761
0
#ifdef WOLFSSL_SMALL_STACK
15762
0
    if (ret == WOLFSSL_SUCCESS) {
15763
0
        dCert = (DecodedCert *)XMALLOC(sizeof(*dCert), x->heap,
15764
0
                                       DYNAMIC_TYPE_DCERT);
15765
0
        if (dCert == NULL) {
15766
0
            WOLFSSL_MSG("\tout of memory");
15767
0
            ret = WOLFSSL_FAILURE;
15768
0
        }
15769
0
    }
15770
0
#endif
15771
15772
0
    if (ret == WOLFSSL_SUCCESS) {
15773
0
        InitDecodedCert(dCert, x->derCert->buffer, x->derCert->length, NULL);
15774
0
        ret = ParseCertRelative(dCert, CERT_TYPE, 0, NULL, NULL);
15775
0
        if (ret != 0) {
15776
0
            ret = WOLFSSL_FAILURE;
15777
0
        }
15778
0
        else {
15779
0
            ret = CheckIPAddr(dCert, ipasc);
15780
0
            if (ret != 0) {
15781
0
                ret = WOLFSSL_FAILURE;
15782
0
            }
15783
0
            else {
15784
0
                ret = WOLFSSL_SUCCESS;
15785
0
            }
15786
0
        }
15787
0
        FreeDecodedCert(dCert);
15788
0
    }
15789
15790
0
#ifdef WOLFSSL_SMALL_STACK
15791
0
    if (x != NULL) {
15792
0
        XFREE(dCert, x->heap, DYNAMIC_TYPE_DCERT);
15793
0
    }
15794
0
#endif
15795
15796
0
    return ret;
15797
0
}
15798
#endif
15799
15800
#if defined(OPENSSL_EXTRA) && defined(WOLFSSL_CERT_GEN)
15801
int wolfSSL_X509_check_email(WOLFSSL_X509 *x, const char *chk, size_t chkLen,
15802
                             unsigned int flags)
15803
{
15804
    WOLFSSL_X509_NAME *subjName;
15805
    int emailLen;
15806
    char *emailBuf;
15807
15808
    (void)flags;
15809
15810
    WOLFSSL_ENTER("wolfSSL_X509_check_email");
15811
15812
    if ((x == NULL) || (chk == NULL)) {
15813
        WOLFSSL_MSG("Invalid parameter");
15814
        return WOLFSSL_FAILURE;
15815
    }
15816
15817
    subjName = wolfSSL_X509_get_subject_name(x);
15818
    if (subjName == NULL)
15819
        return WOLFSSL_FAILURE;
15820
15821
    /* Call with NULL buffer to get required length. */
15822
    emailLen = wolfSSL_X509_NAME_get_text_by_NID(subjName, WC_NID_emailAddress,
15823
                                                 NULL, 0);
15824
    if (emailLen < 0)
15825
        return WOLFSSL_FAILURE;
15826
15827
    ++emailLen; /* Add 1 for the NUL. */
15828
15829
    emailBuf = (char*)XMALLOC(emailLen, x->heap, DYNAMIC_TYPE_OPENSSL);
15830
    if (emailBuf == NULL)
15831
        return WOLFSSL_FAILURE;
15832
15833
    emailLen = wolfSSL_X509_NAME_get_text_by_NID(subjName, WC_NID_emailAddress,
15834
                                                 emailBuf, emailLen);
15835
    if (emailLen < 0) {
15836
        XFREE(emailBuf, x->heap, DYNAMIC_TYPE_OPENSSL);
15837
        return WOLFSSL_FAILURE;
15838
    }
15839
15840
    if (chkLen == 0)
15841
        chkLen = XSTRLEN(chk);
15842
15843
    if (chkLen != (size_t)emailLen
15844
     || XSTRNCMP(chk, emailBuf, chkLen)) {
15845
        XFREE(emailBuf, x->heap, DYNAMIC_TYPE_OPENSSL);
15846
        return WOLFSSL_FAILURE;
15847
    }
15848
15849
    XFREE(emailBuf, x->heap, DYNAMIC_TYPE_OPENSSL);
15850
    return WOLFSSL_SUCCESS;
15851
}
15852
#endif /* OPENSSL_EXTRA && WOLFSSL_CERT_GEN */
15853
15854
#if defined(OPENSSL_ALL) || defined(WOLFSSL_NGINX) || defined(WOLFSSL_HAPROXY) \
15855
    || defined(OPENSSL_EXTRA) || defined(HAVE_LIGHTY)
15856
15857
int wolfSSL_X509_NAME_digest(const WOLFSSL_X509_NAME *name,
15858
        const WOLFSSL_EVP_MD *type, unsigned char *md, unsigned int *len)
15859
{
15860
    WOLFSSL_ENTER("wolfSSL_X509_NAME_digest");
15861
15862
    if (name == NULL || type == NULL)
15863
        return WOLFSSL_FAILURE;
15864
15865
#if !defined(NO_FILESYSTEM) && !defined(NO_PWDBASED)
15866
    return wolfSSL_EVP_Digest((unsigned char*)name->name,
15867
                              name->sz, md, len, type, NULL);
15868
#else
15869
    (void)md;
15870
    (void)len;
15871
    return NOT_COMPILED_IN;
15872
#endif
15873
}
15874
15875
#endif /* OPENSSL_ALL || WOLFSSL_NGINX || WOLFSSL_HAPROXY ||
15876
    OPENSSL_EXTRA || HAVE_LIGHTY */
15877
15878
#if defined(WOLFSSL_NGINX) || defined(WOLFSSL_HAPROXY) || \
15879
    defined(OPENSSL_EXTRA) || defined(OPENSSL_ALL)
15880
15881
void wolfSSL_X509_email_free(WOLF_STACK_OF(WOLFSSL_STRING) *sk)
15882
{
15883
    wolfSSL_sk_pop_free(sk, NULL);
15884
}
15885
15886
static int x509_aia_append_string(WOLFSSL_STACK* list, const byte* uri,
15887
        word32 uriSz)
15888
{
15889
    WOLFSSL_STRING url = (WOLFSSL_STRING)XMALLOC(uriSz + 1, NULL,
15890
            DYNAMIC_TYPE_OPENSSL);
15891
    if (url == NULL)
15892
        return -1;
15893
    XMEMCPY(url, uri, uriSz);
15894
    url[uriSz] = '\0';
15895
15896
    if (wolfSSL_sk_push(list, url) <= 0) {
15897
        XFREE(url, NULL, DYNAMIC_TYPE_OPENSSL);
15898
        return -1;
15899
    }
15900
15901
    return 0;
15902
}
15903
15904
static WOLFSSL_STACK* x509_get1_aia_by_method(WOLFSSL_X509* x, word32 method,
15905
    const byte* fallback, int fallbackSz)
15906
{
15907
    WOLFSSL_STACK* ret = NULL;
15908
    int i;
15909
15910
    if (x == NULL)
15911
        return NULL;
15912
15913
    ret = wolfSSL_sk_WOLFSSL_STRING_new();
15914
    if (ret == NULL)
15915
        return NULL;
15916
15917
    /* Build from multi-entry list when available; otherwise fall back to the
15918
     * legacy single-entry fields to preserve previous behavior. */
15919
    if (x->authInfoListSz > 0) {
15920
        for (i = 0; i < x->authInfoListSz; i++) {
15921
            if (x->authInfoList[i].method != method ||
15922
                    x->authInfoList[i].uri == NULL ||
15923
                    x->authInfoList[i].uriSz == 0) {
15924
                continue;
15925
            }
15926
15927
            if (x509_aia_append_string(ret, x->authInfoList[i].uri,
15928
                    x->authInfoList[i].uriSz) != 0) {
15929
                wolfSSL_X509_email_free(ret);
15930
                return NULL;
15931
            }
15932
        }
15933
    }
15934
    /* Only use fallback when nothing was found in the list */
15935
    if (wolfSSL_sk_num(ret) == 0 && fallback != NULL && fallbackSz > 0) {
15936
        if (x509_aia_append_string(ret, fallback, (word32)fallbackSz) != 0) {
15937
            wolfSSL_X509_email_free(ret);
15938
            return NULL;
15939
        }
15940
    }
15941
15942
    /* Return NULL when empty */
15943
    if (wolfSSL_sk_num(ret) == 0) {
15944
        wolfSSL_X509_email_free(ret);
15945
        ret = NULL;
15946
    }
15947
15948
    return ret;
15949
}
15950
15951
WOLF_STACK_OF(WOLFSSL_STRING) *wolfSSL_X509_get1_ocsp(WOLFSSL_X509 *x)
15952
{
15953
    if (x == NULL)
15954
        return NULL;
15955
    return x509_get1_aia_by_method(x, AIA_OCSP_OID, x->authInfo, x->authInfoSz);
15956
}
15957
15958
int wolfSSL_X509_get_aia_overflow(WOLFSSL_X509 *x)
15959
{
15960
    int overflow = 0;
15961
15962
    WOLFSSL_ENTER("wolfSSL_X509_get_aia_overflow");
15963
15964
    if (x != NULL) {
15965
        overflow = x->authInfoListOverflow;
15966
    }
15967
15968
    WOLFSSL_LEAVE("wolfSSL_X509_get_aia_overflow", overflow);
15969
15970
    return overflow;
15971
}
15972
15973
#ifdef WOLFSSL_ASN_CA_ISSUER
15974
WOLF_STACK_OF(WOLFSSL_STRING) *wolfSSL_X509_get1_ca_issuers(WOLFSSL_X509 *x)
15975
{
15976
    if (x == NULL)
15977
        return NULL;
15978
    return x509_get1_aia_by_method(x, AIA_CA_ISSUER_OID, x->authInfoCaIssuer,
15979
            x->authInfoCaIssuerSz);
15980
}
15981
#endif /* WOLFSSL_ASN_CA_ISSUER */
15982
15983
int wolfSSL_X509_check_issued(WOLFSSL_X509 *issuer, WOLFSSL_X509 *subject)
15984
{
15985
    WOLFSSL_X509_NAME *issuerName = wolfSSL_X509_get_issuer_name(subject);
15986
    WOLFSSL_X509_NAME *subjectName = wolfSSL_X509_get_subject_name(issuer);
15987
15988
    if (issuerName == NULL || subjectName == NULL)
15989
        return WOLFSSL_X509_V_ERR_SUBJECT_ISSUER_MISMATCH;
15990
15991
    /* Literal matching of encoded names and key ids. */
15992
    if (issuerName->sz != subjectName->sz ||
15993
           XMEMCMP(issuerName->name, subjectName->name, subjectName->sz) != 0) {
15994
        return WOLFSSL_X509_V_ERR_SUBJECT_ISSUER_MISMATCH;
15995
    }
15996
15997
    if (subject->authKeyId != NULL && issuer->subjKeyId != NULL) {
15998
        if (subject->authKeyIdSz != issuer->subjKeyIdSz ||
15999
                XMEMCMP(subject->authKeyId, issuer->subjKeyId,
16000
                        issuer->subjKeyIdSz) != 0) {
16001
            return WOLFSSL_X509_V_ERR_SUBJECT_ISSUER_MISMATCH;
16002
        }
16003
    }
16004
16005
    return WOLFSSL_X509_V_OK;
16006
}
16007
16008
#endif /* WOLFSSL_NGINX || WOLFSSL_HAPROXY || OPENSSL_EXTRA || OPENSSL_ALL */
16009
16010
#if defined(OPENSSL_EXTRA) || defined(WOLFSSL_WPAS_SMALL) || \
16011
    defined(KEEP_PEER_CERT) || defined(SESSION_CERTS)
16012
WOLFSSL_X509* wolfSSL_X509_dup(WOLFSSL_X509 *x)
16013
{
16014
    WOLFSSL_ENTER("wolfSSL_X509_dup");
16015
16016
    if (x == NULL) {
16017
        WOLFSSL_MSG("Error: NULL input");
16018
        return NULL;
16019
    }
16020
16021
    if (x->derCert == NULL) {
16022
        WOLFSSL_MSG("Error: NULL derCert parameter");
16023
        return NULL;
16024
    }
16025
16026
    return wolfSSL_X509_d2i_ex(NULL, x->derCert->buffer, x->derCert->length,
16027
        x->heap);
16028
}
16029
#endif /* OPENSSL_EXTRA || WOLFSSL_WPAS_SMALL || KEEP_PEER_CERT || \
16030
          SESSION_CERTS */
16031
16032
#if defined(OPENSSL_EXTRA)
16033
int wolfSSL_X509_check_ca(WOLFSSL_X509 *x509)
16034
{
16035
    WOLFSSL_ENTER("wolfSSL_X509_check_ca");
16036
16037
    if (x509 == NULL)
16038
        return WOLFSSL_FAILURE;
16039
    if (x509->isCa)
16040
        return 1;
16041
    if (x509->extKeyUsageCrit)
16042
        return 4;
16043
16044
    return 0;
16045
}
16046
#endif /* OPENSSL_EXTRA */
16047
16048
#if defined(OPENSSL_EXTRA) || defined(OPENSSL_EXTRA_X509_SMALL)
16049
long wolfSSL_X509_get_version(const WOLFSSL_X509 *x509)
16050
{
16051
    int version = 0;
16052
16053
    WOLFSSL_ENTER("wolfSSL_X509_get_version");
16054
16055
    if (x509 == NULL) {
16056
        WOLFSSL_MSG("invalid parameter");
16057
        return 0L;
16058
    }
16059
    version = x509->version;
16060
    if (version != 0)
16061
        return (long)version - 1L;
16062
16063
    return 0L;
16064
}
16065
#endif /* OPENSSL_EXTRA || OPENSSL_EXTRA_X509_SMALL */
16066
16067
#if defined(OPENSSL_EXTRA)
16068
int wolfSSL_X509_get_signature_nid(const WOLFSSL_X509 *x)
16069
{
16070
    if (x == NULL)
16071
        return 0;
16072
16073
    return oid2nid((word32)x->sigOID, oidSigType);
16074
}
16075
#endif  /* OPENSSL_EXTRA */
16076
16077
#if defined(OPENSSL_EXTRA)
16078
WOLFSSL_STACK* wolfSSL_sk_X509_new(WOLF_SK_COMPARE_CB(WOLFSSL_X509, cb))
16079
{
16080
    (void)cb;
16081
    return wolfSSL_sk_X509_new_null();
16082
}
16083
16084
WOLFSSL_STACK* wolfSSL_sk_X509_new_null(void)
16085
{
16086
    WOLFSSL_STACK* s = (WOLFSSL_STACK*)XMALLOC(sizeof(WOLFSSL_STACK), NULL,
16087
            DYNAMIC_TYPE_OPENSSL);
16088
    if (s != NULL) {
16089
        XMEMSET(s, 0, sizeof(*s));
16090
        s->type = STACK_TYPE_X509;
16091
    }
16092
16093
    return s;
16094
}
16095
#endif  /* OPENSSL_EXTRA */
16096
16097
#ifdef OPENSSL_ALL
16098
16099
WOLFSSL_STACK* wolfSSL_sk_X509_OBJECT_new(void)
16100
{
16101
    WOLFSSL_STACK* s = (WOLFSSL_STACK*)XMALLOC(sizeof(WOLFSSL_STACK), NULL,
16102
            DYNAMIC_TYPE_OPENSSL);
16103
    WOLFSSL_ENTER("wolfSSL_sk_X509_OBJECT_new");
16104
    if (s != NULL) {
16105
        XMEMSET(s, 0, sizeof(*s));
16106
        s->type = STACK_TYPE_X509_OBJ;
16107
    }
16108
    return s;
16109
}
16110
16111
void wolfSSL_sk_X509_OBJECT_free(WOLFSSL_STACK* s)
16112
{
16113
    WOLFSSL_ENTER("wolfSSL_sk_X509_OBJECT_free");
16114
    wolfSSL_sk_free(s);
16115
}
16116
16117
void wolfSSL_sk_X509_OBJECT_pop_free(WOLFSSL_STACK* s,
16118
        void (*f) (WOLFSSL_X509_OBJECT*))
16119
{
16120
    WOLFSSL_ENTER("wolfSSL_sk_X509_OBJECT_pop_free");
16121
    wolfSSL_sk_pop_free(s, (wolfSSL_sk_freefunc)f);
16122
}
16123
16124
int wolfSSL_sk_X509_OBJECT_push(WOLFSSL_STACK* sk, WOLFSSL_X509_OBJECT* obj)
16125
{
16126
    WOLFSSL_ENTER("wolfSSL_sk_X509_OBJECT_push");
16127
16128
    if (sk == NULL || obj == NULL) {
16129
        return WOLFSSL_FAILURE;
16130
    }
16131
16132
    return wolfSSL_sk_push(sk, obj);
16133
}
16134
16135
#endif /* OPENSSL_ALL */
16136
16137
#if defined(OPENSSL_EXTRA) || defined(OPENSSL_EXTRA_X509_SMALL)
16138
/* unlike wolfSSL_X509_NAME_dup this does not malloc a duplicate, only deep
16139
 * copy. "to" is expected to be a fresh blank name, if not pointers could be
16140
 * lost */
16141
int wolfSSL_X509_NAME_copy(const WOLFSSL_X509_NAME* from, WOLFSSL_X509_NAME* to)
16142
{
16143
    int i;
16144
16145
    WOLFSSL_ENTER("wolfSSL_X509_NAME_copy");
16146
16147
    if (from == NULL || to == NULL) {
16148
        WOLFSSL_MSG("NULL parameter");
16149
        return BAD_FUNC_ARG;
16150
    }
16151
16152
#if defined(OPENSSL_ALL) || defined(WOLFSSL_NGINX) || defined(HAVE_LIGHTY)
16153
    if (from->rawLen > 0) {
16154
        if (from->rawLen > ASN_NAME_MAX) {
16155
            WOLFSSL_MSG("Bad raw size");
16156
            return BAD_FUNC_ARG;
16157
        }
16158
        XMEMCPY(to->raw, from->raw, from->rawLen);
16159
        to->rawLen = from->rawLen;
16160
    }
16161
#endif
16162
16163
    if (from->dynamicName) {
16164
        to->name = (char*)XMALLOC(from->sz, to->heap, DYNAMIC_TYPE_SUBJECT_CN);
16165
        if (to->name == NULL)
16166
            return WOLFSSL_FAILURE;
16167
        to->dynamicName = 1;
16168
    }
16169
    XMEMCPY(to->name, from->name, from->sz);
16170
    to->sz = from->sz;
16171
16172
    for (i = 0; i < MAX_NAME_ENTRIES; i++) {
16173
        WOLFSSL_X509_NAME_ENTRY* ne = wolfSSL_X509_NAME_get_entry(from, i);
16174
        if (ne != NULL) {
16175
            if (wolfSSL_X509_NAME_add_entry(to, ne, i, 1) != WOLFSSL_SUCCESS) {
16176
                return WOLFSSL_FAILURE;
16177
            }
16178
        }
16179
    }
16180
    to->entrySz = from->entrySz;
16181
    return WOLFSSL_SUCCESS;
16182
}
16183
16184
16185
/* copies over information from "name" to the "cert" subject name
16186
 * returns WOLFSSL_SUCCESS on success */
16187
int wolfSSL_X509_set_subject_name(WOLFSSL_X509 *cert, WOLFSSL_X509_NAME *name)
16188
{
16189
    WOLFSSL_ENTER("wolfSSL_X509_set_subject_name");
16190
    if (cert == NULL || name == NULL)
16191
        return WOLFSSL_FAILURE;
16192
16193
    FreeX509Name(&cert->subject);
16194
    InitX509Name(&cert->subject, 0, cert->heap);
16195
16196
    if (wolfSSL_X509_NAME_copy(name, &cert->subject) != WOLFSSL_SUCCESS) {
16197
        FreeX509Name(&cert->subject);
16198
        return WOLFSSL_FAILURE;
16199
    }
16200
16201
    cert->subject.x509 = cert;
16202
    return WOLFSSL_SUCCESS;
16203
}
16204
16205
16206
/* copies over information from "name" to the "cert" issuer name
16207
 * returns WOLFSSL_SUCCESS on success */
16208
int wolfSSL_X509_set_issuer_name(WOLFSSL_X509 *cert, WOLFSSL_X509_NAME *name)
16209
{
16210
    WOLFSSL_ENTER("wolfSSL_X509_set_issuer_name");
16211
    if (cert == NULL || name == NULL)
16212
        return WOLFSSL_FAILURE;
16213
16214
    FreeX509Name(&cert->issuer);
16215
    InitX509Name(&cert->issuer, 0, cert->heap);
16216
16217
    if (wolfSSL_X509_NAME_copy(name, &cert->issuer) != WOLFSSL_SUCCESS) {
16218
        FreeX509Name(&cert->issuer);
16219
        return WOLFSSL_FAILURE;
16220
    }
16221
16222
    cert->issuer.x509 = cert;
16223
    cert->issuerSet = 1;
16224
16225
    return WOLFSSL_SUCCESS;
16226
}
16227
16228
16229
int wolfSSL_X509_set_notAfter(WOLFSSL_X509* x509, const WOLFSSL_ASN1_TIME* t)
16230
{
16231
    if (x509 == NULL || t == NULL) {
16232
        return WOLFSSL_FAILURE;
16233
    }
16234
16235
    if (t->length < 0 || t->length > CTC_DATE_SIZE - 2) {
16236
        return WOLFSSL_FAILURE;
16237
    }
16238
16239
    x509->notAfter.type = t->type;
16240
    x509->notAfter.length = t->length;
16241
16242
    XMEMCPY(x509->notAfter.data, t->data, CTC_DATE_SIZE);
16243
16244
    return WOLFSSL_SUCCESS;
16245
}
16246
16247
int wolfSSL_X509_set_notBefore(WOLFSSL_X509* x509, const WOLFSSL_ASN1_TIME* t)
16248
{
16249
    if (x509 == NULL || t == NULL) {
16250
        return WOLFSSL_FAILURE;
16251
    }
16252
16253
    if (t->length < 0 || t->length > CTC_DATE_SIZE - 2) {
16254
        return WOLFSSL_FAILURE;
16255
    }
16256
16257
    x509->notBefore.type = t->type;
16258
    x509->notBefore.length = t->length;
16259
16260
    XMEMCPY(x509->notBefore.data, t->data, CTC_DATE_SIZE);
16261
16262
    return WOLFSSL_SUCCESS;
16263
}
16264
16265
int wolfSSL_X509_set1_notAfter(WOLFSSL_X509* x509, const WOLFSSL_ASN1_TIME *t)
16266
{
16267
    return wolfSSL_X509_set_notAfter(x509, t);
16268
}
16269
16270
int wolfSSL_X509_set1_notBefore(WOLFSSL_X509* x509, const WOLFSSL_ASN1_TIME *t)
16271
{
16272
    return wolfSSL_X509_set_notBefore(x509, t);
16273
}
16274
16275
int wolfSSL_X509_set_serialNumber(WOLFSSL_X509* x509, WOLFSSL_ASN1_INTEGER* s)
16276
{
16277
    WOLFSSL_ENTER("wolfSSL_X509_set_serialNumber");
16278
    if (x509 == NULL || s == NULL || s->data == NULL ||
16279
            s->length >= EXTERNAL_SERIAL_SIZE)
16280
        return WOLFSSL_FAILURE;
16281
16282
    /* WOLFSSL_ASN1_INTEGER has type | size | data
16283
     * Sanity check that the data is actually in ASN format */
16284
    if (s->length < 3 || s->data[0] != ASN_INTEGER ||
16285
            s->data[1] != s->length - 2) {
16286
        return WOLFSSL_FAILURE;
16287
    }
16288
    XMEMCPY(x509->serial, s->data + 2, s->length - 2);
16289
    x509->serialSz = s->length - 2;
16290
    x509->serial[x509->serialSz] = 0;
16291
16292
    return WOLFSSL_SUCCESS;
16293
}
16294
16295
16296
int wolfSSL_X509_set_pubkey(WOLFSSL_X509 *cert, WOLFSSL_EVP_PKEY *pkey)
16297
{
16298
    byte* p = NULL;
16299
    int derSz = 0;
16300
    WOLFSSL_ENTER("wolfSSL_X509_set_pubkey");
16301
16302
    if (cert == NULL || pkey == NULL)
16303
        return WOLFSSL_FAILURE;
16304
16305
    /* Regenerate since pkey->pkey.ptr may contain private key */
16306
    switch (pkey->type) {
16307
#if (defined(WOLFSSL_KEY_GEN) || defined(OPENSSL_EXTRA)) && !defined(NO_RSA)
16308
    case WC_EVP_PKEY_RSA:
16309
        {
16310
            RsaKey* rsa;
16311
16312
            if (pkey->rsa == NULL || pkey->rsa->internal == NULL)
16313
                return WOLFSSL_FAILURE;
16314
16315
            rsa = (RsaKey*)pkey->rsa->internal;
16316
            derSz = wc_RsaPublicKeyDerSize(rsa, 1);
16317
            if (derSz <= 0)
16318
                return WOLFSSL_FAILURE;
16319
16320
            p = (byte*)XMALLOC(derSz, cert->heap, DYNAMIC_TYPE_PUBLIC_KEY);
16321
            if (p == NULL)
16322
                return WOLFSSL_FAILURE;
16323
16324
            if ((derSz = wc_RsaKeyToPublicDer(rsa, p, (word32)derSz)) <= 0) {
16325
                XFREE(p, cert->heap, DYNAMIC_TYPE_PUBLIC_KEY);
16326
                return WOLFSSL_FAILURE;
16327
            }
16328
            cert->pubKeyOID = RSAk;
16329
        }
16330
        break;
16331
#endif /* (WOLFSSL_KEY_GEN || OPENSSL_EXTRA) && !NO_RSA */
16332
#if !defined(HAVE_SELFTEST) && (defined(WOLFSSL_KEY_GEN) || \
16333
        defined(WOLFSSL_CERT_GEN)) && !defined(NO_DSA)
16334
    case WC_EVP_PKEY_DSA:
16335
        {
16336
            DsaKey* dsa;
16337
16338
            if (pkey->dsa == NULL || pkey->dsa->internal == NULL)
16339
                return WOLFSSL_FAILURE;
16340
16341
            dsa = (DsaKey*)pkey->dsa->internal;
16342
            /* size of pub, priv, p, q, g + ASN.1 additional information */
16343
            derSz = 5 * mp_unsigned_bin_size(&dsa->g) + MAX_ALGO_SZ;
16344
            p = (byte*)XMALLOC(derSz, cert->heap, DYNAMIC_TYPE_PUBLIC_KEY);
16345
            if (p == NULL)
16346
                return WOLFSSL_FAILURE;
16347
16348
            if ((derSz = wc_DsaKeyToPublicDer(dsa, p, (word32)derSz)) <= 0) {
16349
                XFREE(p, cert->heap, DYNAMIC_TYPE_PUBLIC_KEY);
16350
                return WOLFSSL_FAILURE;
16351
            }
16352
            cert->pubKeyOID = DSAk;
16353
        }
16354
        break;
16355
#endif /* !HAVE_SELFTEST && (WOLFSSL_KEY_GEN || WOLFSSL_CERT_GEN) && !NO_DSA */
16356
#ifdef HAVE_ECC
16357
    case WC_EVP_PKEY_EC:
16358
        {
16359
            ecc_key* ecc;
16360
16361
            if (pkey->ecc == NULL || pkey->ecc->internal == NULL)
16362
                return WOLFSSL_FAILURE;
16363
16364
            ecc = (ecc_key*)pkey->ecc->internal;
16365
            derSz = wc_EccPublicKeyDerSize(ecc, 1);
16366
            if (derSz <= 0)
16367
                return WOLFSSL_FAILURE;
16368
16369
            p = (byte*)XMALLOC(derSz, cert->heap, DYNAMIC_TYPE_PUBLIC_KEY);
16370
            if (p == NULL)
16371
                return WOLFSSL_FAILURE;
16372
16373
            if ((derSz = wc_EccPublicKeyToDer(ecc, p, (word32)derSz, 1)) <= 0) {
16374
                XFREE(p, cert->heap, DYNAMIC_TYPE_PUBLIC_KEY);
16375
                return WOLFSSL_FAILURE;
16376
            }
16377
            cert->pubKeyOID = ECDSAk;
16378
        }
16379
        break;
16380
#endif
16381
    default:
16382
        return WOLFSSL_FAILURE;
16383
    }
16384
    XFREE(cert->pubKey.buffer, cert->heap, DYNAMIC_TYPE_PUBLIC_KEY);
16385
    cert->pubKey.buffer = p;
16386
    cert->pubKey.length = (unsigned int)derSz;
16387
16388
    return WOLFSSL_SUCCESS;
16389
}
16390
16391
int wolfSSL_X509_set_version(WOLFSSL_X509* x509, long v)
16392
{
16393
    WOLFSSL_ENTER("wolfSSL_X509_set_version");
16394
    if ((x509 == NULL) || (v < 0) || (v >= INT_MAX)) {
16395
        return WOLFSSL_FAILURE;
16396
    }
16397
    x509->version = (int) v + 1;
16398
16399
    return WOLFSSL_SUCCESS;
16400
}
16401
16402
#ifdef WOLFSSL_CERT_EXT
16403
/* Set Subject Key Identifier from raw bytes.
16404
 *
16405
 * x509  - Certificate to modify
16406
 * skid  - Raw SKID bytes
16407
 * skidSz - Size of SKID in bytes
16408
 *
16409
 * Returns WOLFSSL_SUCCESS or WOLFSSL_FAILURE
16410
 */
16411
int wolfSSL_X509_set_subject_key_id(WOLFSSL_X509* x509,
16412
    const unsigned char* skid, int skidSz)
16413
{
16414
    WOLFSSL_ENTER("wolfSSL_X509_set_subject_key_id");
16415
16416
    if (x509 == NULL || skid == NULL || skidSz <= 0) {
16417
        return WOLFSSL_FAILURE;
16418
    }
16419
16420
    /* Allocate/reallocate memory for subjKeyId */
16421
    if (x509->subjKeyId == NULL || (int)x509->subjKeyIdSz < skidSz) {
16422
        if (x509->subjKeyId != NULL) {
16423
            XFREE(x509->subjKeyId, x509->heap, DYNAMIC_TYPE_X509_EXT);
16424
        }
16425
        x509->subjKeyId = (byte*)XMALLOC((word32)skidSz, x509->heap,
16426
                                          DYNAMIC_TYPE_X509_EXT);
16427
        if (x509->subjKeyId == NULL) {
16428
            return WOLFSSL_FAILURE;
16429
        }
16430
    }
16431
16432
    XMEMCPY(x509->subjKeyId, skid, (word32)skidSz);
16433
    x509->subjKeyIdSz = (word32)skidSz;
16434
    x509->subjKeyIdSet = 1;
16435
16436
    return WOLFSSL_SUCCESS;
16437
}
16438
16439
#ifndef NO_SHA
16440
/* Set Subject Key Identifier by computing SHA-1 hash of the public key.
16441
 *
16442
 * x509 - Certificate to modify (must have public key set)
16443
 *
16444
 * Returns WOLFSSL_SUCCESS or WOLFSSL_FAILURE
16445
 */
16446
int wolfSSL_X509_set_subject_key_id_ex(WOLFSSL_X509* x509)
16447
{
16448
    byte hash[WC_SHA_DIGEST_SIZE];
16449
    int ret;
16450
16451
    WOLFSSL_ENTER("wolfSSL_X509_set_subject_key_id_ex");
16452
16453
    if (x509 == NULL) {
16454
        return WOLFSSL_FAILURE;
16455
    }
16456
16457
    /* Check if public key has been set */
16458
    if (x509->pubKey.buffer == NULL || x509->pubKey.length == 0) {
16459
        WOLFSSL_MSG("Public key not set");
16460
        return WOLFSSL_FAILURE;
16461
    }
16462
16463
    /* Compute SHA-1 hash of the public key */
16464
    ret = wc_ShaHash(x509->pubKey.buffer, x509->pubKey.length, hash);
16465
    if (ret != 0) {
16466
        WOLFSSL_MSG("wc_ShaHash failed");
16467
        return WOLFSSL_FAILURE;
16468
    }
16469
16470
    return wolfSSL_X509_set_subject_key_id(x509, hash, WC_SHA_DIGEST_SIZE);
16471
}
16472
#endif /* !NO_SHA */
16473
16474
/* Set Authority Key Identifier from raw bytes.
16475
 * The bytes passed in are the keyIdentifier OCTET STRING contents only,
16476
 * they must not be a pre-encoded AuthorityKeyIdentifier SEQUENCE.
16477
 * The cert encoder wraps them in SEQUENCE { [0] keyIdentifier } at sign time.
16478
 *
16479
 * x509   - Certificate to modify
16480
 * akid   - Raw AKID bytes
16481
 * akidSz - Size of AKID in bytes
16482
 *
16483
 * Returns WOLFSSL_SUCCESS or WOLFSSL_FAILURE
16484
 */
16485
int wolfSSL_X509_set_authority_key_id(WOLFSSL_X509* x509,
16486
    const unsigned char* akid, int akidSz)
16487
{
16488
    byte* newAkid = NULL;
16489
16490
    WOLFSSL_ENTER("wolfSSL_X509_set_authority_key_id");
16491
16492
    if (x509 == NULL || akid == NULL || akidSz <= 0) {
16493
        return WOLFSSL_FAILURE;
16494
    }
16495
16496
    /* Allocate new buffer up front so failure leaves prior state intact */
16497
    newAkid = (byte*)XMALLOC((word32)akidSz, x509->heap, DYNAMIC_TYPE_X509_EXT);
16498
    if (newAkid == NULL) {
16499
        return WOLFSSL_FAILURE;
16500
    }
16501
    XMEMCPY(newAkid, akid, (word32)akidSz);
16502
16503
    /* Free any prior storage. authKeyIdSrc may be populated from a prior
16504
     * parse cert operation. authKeyId aliases inside that buffer, so
16505
     * authKeyIdSrc must be freed first to avoid a dangling authKeyId. */
16506
    if (x509->authKeyIdSrc != NULL) {
16507
        XFREE(x509->authKeyIdSrc, x509->heap, DYNAMIC_TYPE_X509_EXT);
16508
        x509->authKeyIdSrc = NULL;
16509
        x509->authKeyIdSrcSz = 0;
16510
    }
16511
    else if (x509->authKeyId != NULL) {
16512
        XFREE(x509->authKeyId, x509->heap, DYNAMIC_TYPE_X509_EXT);
16513
    }
16514
16515
    /* Store newAkid as authKeyId only, do not populate authKeyIdSrc.
16516
     * When authKeyIdSrc is non-NULL, the encoder writes those bytes without
16517
     * SEQUENCE/[0] wrapper. authKeyIdSrc must be NULL here so encoder does
16518
     * wrap them. */
16519
    x509->authKeyId = newAkid;
16520
    x509->authKeyIdSz = (word32)akidSz;
16521
    x509->authKeyIdSet = 1;
16522
16523
    return WOLFSSL_SUCCESS;
16524
}
16525
16526
#ifndef NO_SHA
16527
/* Set Authority Key Identifier from issuer certificate.
16528
 * Extracts SKID from issuer (or computes from issuer's public key).
16529
 *
16530
 * x509   - Certificate to modify
16531
 * issuer - Issuer certificate
16532
 *
16533
 * Returns WOLFSSL_SUCCESS or WOLFSSL_FAILURE
16534
 */
16535
int wolfSSL_X509_set_authority_key_id_ex(WOLFSSL_X509* x509,
16536
    WOLFSSL_X509* issuer)
16537
{
16538
    byte hash[WC_SHA_DIGEST_SIZE];
16539
    int ret;
16540
16541
    WOLFSSL_ENTER("wolfSSL_X509_set_authority_key_id_ex");
16542
16543
    if (x509 == NULL || issuer == NULL) {
16544
        return WOLFSSL_FAILURE;
16545
    }
16546
16547
    /* First try to use issuer's SKID if it's set */
16548
    if (issuer->subjKeyIdSet && issuer->subjKeyId != NULL &&
16549
        issuer->subjKeyIdSz > 0) {
16550
        return wolfSSL_X509_set_authority_key_id(x509, issuer->subjKeyId,
16551
                                                  (int)issuer->subjKeyIdSz);
16552
    }
16553
16554
    /* Otherwise compute from issuer's public key */
16555
    if (issuer->pubKey.buffer == NULL || issuer->pubKey.length == 0) {
16556
        WOLFSSL_MSG("Issuer public key not available");
16557
        return WOLFSSL_FAILURE;
16558
    }
16559
16560
    ret = wc_ShaHash(issuer->pubKey.buffer, issuer->pubKey.length, hash);
16561
    if (ret != 0) {
16562
        WOLFSSL_MSG("wc_ShaHash failed");
16563
        return WOLFSSL_FAILURE;
16564
    }
16565
16566
    return wolfSSL_X509_set_authority_key_id(x509, hash, WC_SHA_DIGEST_SIZE);
16567
}
16568
#endif /* !NO_SHA */
16569
#endif /* WOLFSSL_CERT_EXT */
16570
16571
#ifndef IGNORE_NETSCAPE_CERT_TYPE
16572
/* Set Netscape Certificate Type extension.
16573
 *
16574
 * x509       - Certificate to modify
16575
 * nsCertType - Bitwise OR of NS_SSL_CLIENT, NS_SSL_SERVER, etc.
16576
 *
16577
 * Returns WOLFSSL_SUCCESS or WOLFSSL_FAILURE
16578
 */
16579
int wolfSSL_X509_set_ns_cert_type(WOLFSSL_X509* x509, int nsCertType)
16580
{
16581
    WOLFSSL_ENTER("wolfSSL_X509_set_ns_cert_type");
16582
16583
    if (x509 == NULL) {
16584
        return WOLFSSL_FAILURE;
16585
    }
16586
16587
    x509->nsCertType = (byte)nsCertType;
16588
16589
    return WOLFSSL_SUCCESS;
16590
}
16591
#endif /* !IGNORE_NETSCAPE_CERT_TYPE */
16592
16593
#endif /* (OPENSSL_EXTRA || OPENSSL_EXTRA_X509_SMALL) && WOLFSSL_CERT_GEN */
16594
16595
#if (defined(OPENSSL_ALL) || defined(OPENSSL_EXTRA)) &&           \
16596
    defined(WOLFSSL_CERT_GEN) && defined(WOLFSSL_CERT_REQ)
16597
16598
void wolfSSL_X509V3_set_ctx(WOLFSSL_X509V3_CTX* ctx, WOLFSSL_X509* issuer,
16599
        WOLFSSL_X509* subject, WOLFSSL_X509* req, WOLFSSL_X509_CRL* crl,
16600
        int flag)
16601
{
16602
    int ret = WOLFSSL_SUCCESS;
16603
    WOLFSSL_ENTER("wolfSSL_X509V3_set_ctx");
16604
    if (!ctx) {
16605
        ret = WOLFSSL_FAILURE;
16606
        WOLFSSL_MSG("wolfSSL_X509V3_set_ctx() called with null ctx.");
16607
    }
16608
16609
    if (ret == WOLFSSL_SUCCESS && (ctx->x509 != NULL)) {
16610
        ret = WOLFSSL_FAILURE;
16611
        WOLFSSL_MSG("wolfSSL_X509V3_set_ctx() called "
16612
                    "with ctx->x509 already allocated.");
16613
    }
16614
16615
    if (ret == WOLFSSL_SUCCESS) {
16616
        ctx->x509 = wolfSSL_X509_new_ex(
16617
            (issuer && issuer->heap) ? issuer->heap :
16618
            (subject && subject->heap) ? subject->heap :
16619
            (req && req->heap) ? req->heap :
16620
            NULL);
16621
        if (!ctx->x509) {
16622
            ret = WOLFSSL_FAILURE;
16623
            WOLFSSL_MSG("wolfSSL_X509_new_ex() failed "
16624
                        "in wolfSSL_X509V3_set_ctx().");
16625
        }
16626
    }
16627
16628
    /* Set parameters in ctx as long as ret == WOLFSSL_SUCCESS */
16629
    if (ret == WOLFSSL_SUCCESS && issuer)
16630
        ret = wolfSSL_X509_set_issuer_name(ctx->x509, &issuer->issuer);
16631
16632
    if (ret == WOLFSSL_SUCCESS && subject)
16633
        ret = wolfSSL_X509_set_subject_name(ctx->x509, &subject->subject);
16634
16635
    if (ret == WOLFSSL_SUCCESS && req) {
16636
        WOLFSSL_MSG("req not implemented.");
16637
    }
16638
16639
    if (ret == WOLFSSL_SUCCESS && crl) {
16640
        WOLFSSL_MSG("crl not implemented.");
16641
    }
16642
16643
    if (ret == WOLFSSL_SUCCESS && flag) {
16644
        WOLFSSL_MSG("flag not implemented.");
16645
    }
16646
16647
    if (ret != WOLFSSL_SUCCESS) {
16648
        WOLFSSL_MSG("Error setting WOLFSSL_X509V3_CTX parameters.");
16649
    }
16650
}
16651
16652
#ifndef NO_BIO
16653
int wolfSSL_i2d_X509_REQ(WOLFSSL_X509* req, unsigned char** out)
16654
{
16655
    int derSz = 0;
16656
    int ret = WC_NO_ERR_TRACE(WOLFSSL_FAILURE);
16657
    WOLFSSL_BIO* bio = NULL;
16658
    WOLFSSL_ENTER("wolfSSL_i2d_X509_REQ");
16659
16660
    if (req == NULL || out == NULL) {
16661
        return BAD_FUNC_ARG;
16662
    }
16663
16664
    if (!(bio = wolfSSL_BIO_new(wolfSSL_BIO_s_mem()))) {
16665
        return WOLFSSL_FAILURE;
16666
    }
16667
16668
    if (wolfSSL_i2d_X509_REQ_bio(bio, req) != WOLFSSL_SUCCESS) {
16669
        WOLFSSL_MSG("wolfSSL_i2d_X509_REQ_bio error");
16670
        goto cleanup;
16671
    }
16672
16673
    derSz = wolfSSL_BIO_get_len(bio);
16674
16675
    if (*out == NULL) {
16676
        *out = (unsigned char*)XMALLOC(derSz, NULL, DYNAMIC_TYPE_OPENSSL);
16677
        if (!*out) {
16678
            WOLFSSL_MSG("malloc error");
16679
            ret = MEMORY_E;
16680
            goto cleanup;
16681
        }
16682
    }
16683
16684
    if (wolfSSL_BIO_read(bio, *out, derSz) != derSz) {
16685
        WOLFSSL_MSG("wolfSSL_BIO_read error");
16686
        goto cleanup;
16687
    }
16688
16689
    ret = derSz;
16690
cleanup:
16691
    wolfSSL_BIO_free(bio);
16692
16693
    return ret;
16694
}
16695
#endif /* !NO_BIO */
16696
16697
WOLFSSL_X509* wolfSSL_X509_REQ_new(void)
16698
{
16699
    return wolfSSL_X509_new();
16700
}
16701
16702
void wolfSSL_X509_REQ_free(WOLFSSL_X509* req)
16703
{
16704
    wolfSSL_X509_free(req);
16705
}
16706
16707
int wolfSSL_X509_REQ_set_version(WOLFSSL_X509 *x, long version)
16708
{
16709
    WOLFSSL_ENTER("wolfSSL_X509_REQ_set_version");
16710
    if ((x == NULL) || (version < 0) || (version >= INT_MAX)) {
16711
        return WOLFSSL_FAILURE;
16712
    }
16713
    x->version = (int)version;
16714
    return WOLFSSL_SUCCESS;
16715
}
16716
16717
long wolfSSL_X509_REQ_get_version(const WOLFSSL_X509 *req)
16718
{
16719
    WOLFSSL_ENTER("wolfSSL_X509_REQ_get_version");
16720
    if (req == NULL) {
16721
        return 0; /* invalid arg */
16722
    }
16723
    return (long)req->version;
16724
}
16725
16726
int wolfSSL_X509_REQ_sign(WOLFSSL_X509 *req, WOLFSSL_EVP_PKEY *pkey,
16727
                          const WOLFSSL_EVP_MD *md)
16728
{
16729
    int ret;
16730
    WC_DECLARE_VAR(der, byte, 2048, 0);
16731
    int derSz = 2048;
16732
16733
    if (req == NULL || pkey == NULL || md == NULL) {
16734
        WOLFSSL_LEAVE("wolfSSL_X509_REQ_sign", BAD_FUNC_ARG);
16735
        return WOLFSSL_FAILURE;
16736
    }
16737
16738
    WC_ALLOC_VAR_EX(der, byte, derSz, NULL, DYNAMIC_TYPE_TMP_BUFFER,
16739
        return WOLFSSL_FAILURE);
16740
16741
    /* Create a Cert that has the certificate request fields. */
16742
    req->sigOID = wolfSSL_sigTypeFromPKEY((WOLFSSL_EVP_MD*)md, pkey);
16743
    ret = wolfssl_x509_make_der(req, 1, der, &derSz, 0);
16744
    if (ret != WOLFSSL_SUCCESS) {
16745
        WC_FREE_VAR_EX(der, NULL, DYNAMIC_TYPE_TMP_BUFFER);
16746
        WOLFSSL_MSG("Unable to make DER for X509");
16747
        WOLFSSL_LEAVE("wolfSSL_X509_REQ_sign", ret);
16748
        return WOLFSSL_FAILURE;
16749
    }
16750
16751
    if (wolfSSL_X509_resign_cert(req, 1, der, 2048, derSz,
16752
            (WOLFSSL_EVP_MD*)md, pkey) <= 0) {
16753
        WC_FREE_VAR_EX(der, NULL, DYNAMIC_TYPE_TMP_BUFFER);
16754
        return WOLFSSL_FAILURE;
16755
    }
16756
    WC_FREE_VAR_EX(der, NULL, DYNAMIC_TYPE_TMP_BUFFER);
16757
    return WOLFSSL_SUCCESS;
16758
}
16759
16760
int wolfSSL_X509_REQ_sign_ctx(WOLFSSL_X509 *req,
16761
                              WOLFSSL_EVP_MD_CTX* md_ctx)
16762
{
16763
    if (md_ctx && md_ctx->pctx)
16764
        return wolfSSL_X509_REQ_sign(req, md_ctx->pctx->pkey,
16765
                wolfSSL_EVP_MD_CTX_md(md_ctx));
16766
    else
16767
        return WOLFSSL_FAILURE;
16768
}
16769
16770
static int regenX509REQDerBuffer(WOLFSSL_X509* x509)
16771
{
16772
    int derSz = X509_BUFFER_SZ;
16773
    int ret = WC_NO_ERR_TRACE(WOLFSSL_FAILURE);
16774
#ifndef WOLFSSL_SMALL_STACK
16775
    byte der[X509_BUFFER_SZ];
16776
#else
16777
    byte* der;
16778
16779
    der = (byte*)XMALLOC(derSz, NULL, DYNAMIC_TYPE_TMP_BUFFER);
16780
    if (!der) {
16781
        WOLFSSL_MSG("malloc failed");
16782
        return WOLFSSL_FAILURE;
16783
    }
16784
#endif
16785
16786
    if (wolfssl_x509_make_der(x509, 1, der, &derSz, 0) == WOLFSSL_SUCCESS) {
16787
        FreeDer(&x509->derCert);
16788
        if (AllocDer(&x509->derCert, (word32)derSz, CERT_TYPE,
16789
                                                             x509->heap) == 0) {
16790
            XMEMCPY(x509->derCert->buffer, der, derSz);
16791
            ret = WOLFSSL_SUCCESS;
16792
        }
16793
        else {
16794
            WOLFSSL_MSG("Failed to allocate DER buffer for X509");
16795
        }
16796
    }
16797
    else {
16798
        WOLFSSL_MSG("Unable to make DER for X509 REQ");
16799
    }
16800
    WC_FREE_VAR_EX(der, NULL, DYNAMIC_TYPE_TMP_BUFFER);
16801
    return ret;
16802
}
16803
16804
int wolfSSL_X509_REQ_add_extensions(WOLFSSL_X509* req,
16805
        WOLF_STACK_OF(WOLFSSL_X509_EXTENSION)* ext_sk)
16806
{
16807
    WOLFSSL_X509_EXTENSION* ext = NULL;
16808
16809
    if (!req || !ext_sk) {
16810
        WOLFSSL_MSG("Bad parameter");
16811
        return WOLFSSL_FAILURE;
16812
    }
16813
16814
    /* It is not an error if the stack is empty. */
16815
    ext = ext_sk->data.ext;
16816
    if (ext == NULL) {
16817
        return WOLFSSL_SUCCESS;
16818
    }
16819
16820
    while (ext_sk) {
16821
        ext = ext_sk->data.ext;
16822
16823
        if (wolfSSL_X509_add_ext(req, ext, -1) != WOLFSSL_SUCCESS) {
16824
            WOLFSSL_MSG("wolfSSL_X509_add_ext error");
16825
            return WOLFSSL_FAILURE;
16826
        }
16827
16828
        ext_sk = ext_sk->next;
16829
    }
16830
16831
    return regenX509REQDerBuffer(req);
16832
}
16833
16834
int wolfSSL_X509_REQ_add1_attr_by_txt(WOLFSSL_X509 *req,
16835
                              const char *attrname, int type,
16836
                              const unsigned char *bytes, int len)
16837
{
16838
    WOLFSSL_ENTER("wolfSSL_X509_REQ_add1_attr_by_txt");
16839
16840
#ifdef HAVE_LIBEST
16841
    if (!req || !attrname || !bytes || type != MBSTRING_ASC) {
16842
        WOLFSSL_MSG("Bad parameter");
16843
        return WOLFSSL_FAILURE;
16844
    }
16845
16846
    if (len < 0) {
16847
        len = (int)XSTRLEN((char*)bytes);
16848
    }
16849
16850
    /* For now just pretend that we support this for libest testing */
16851
    if (len == XSTR_SIZEOF("1.3.6.1.1.1.1.22") &&
16852
            XMEMCMP("1.3.6.1.1.1.1.22", bytes, len) == 0) {
16853
        /* MAC Address */
16854
    }
16855
    else if (len == XSTR_SIZEOF("1.2.840.10045.2.1") &&
16856
            XMEMCMP("1.2.840.10045.2.1", bytes, len) == 0) {
16857
        /* ecPublicKey */
16858
    }
16859
    else if (len == XSTR_SIZEOF("1.2.840.10045.4.3.3") &&
16860
            XMEMCMP("1.2.840.10045.4.3.3", bytes, len) == 0) {
16861
        /* ecdsa-with-SHA384 */
16862
    }
16863
    else {
16864
        return WOLFSSL_FAILURE;
16865
    }
16866
16867
    /* return error if not built for libest */
16868
    return WOLFSSL_SUCCESS;
16869
#else
16870
    (void)req;
16871
    (void)attrname;
16872
    (void)type;
16873
    (void)bytes;
16874
    (void)len;
16875
    return WOLFSSL_FAILURE;
16876
#endif
16877
}
16878
16879
16880
static int wolfSSL_X509_ATTRIBUTE_set(WOLFSSL_X509_ATTRIBUTE* attr,
16881
        const char* data, int dataSz, int type, int nid)
16882
{
16883
    if (attr) {
16884
        attr->value->value.asn1_string = wolfSSL_ASN1_STRING_new();
16885
        if (wolfSSL_ASN1_STRING_set(attr->value->value.asn1_string,
16886
                data, dataSz) != WOLFSSL_SUCCESS) {
16887
            wolfSSL_ASN1_STRING_free(attr->value->value.asn1_string);
16888
            WOLFSSL_MSG("wolfSSL_ASN1_STRING_set error");
16889
            return WOLFSSL_FAILURE;
16890
        }
16891
        attr->value->type = type;
16892
        attr->object->nid = nid;
16893
    }
16894
    else {
16895
        WOLFSSL_MSG("wolfSSL_X509_ATTRIBUTE_new error");
16896
        return WOLFSSL_FAILURE;
16897
    }
16898
16899
    return WOLFSSL_SUCCESS;
16900
}
16901
16902
16903
int wolfSSL_X509_REQ_add1_attr_by_NID(WOLFSSL_X509 *req,
16904
                                      int nid, int type,
16905
                                      const unsigned char *bytes,
16906
                                      int len)
16907
{
16908
    int ret;
16909
    WOLFSSL_X509_ATTRIBUTE* attr;
16910
16911
    WOLFSSL_ENTER("wolfSSL_X509_REQ_add1_attr_by_NID");
16912
16913
    if (!req || !bytes || type != WOLFSSL_MBSTRING_ASC) {
16914
        WOLFSSL_MSG("Bad parameter");
16915
        return WOLFSSL_FAILURE;
16916
    }
16917
16918
    switch (nid) {
16919
    case WC_NID_pkcs9_challengePassword:
16920
        if (len < 0)
16921
            len = (int)XSTRLEN((char*)bytes);
16922
        if (len < CTC_NAME_SIZE) {
16923
            XMEMCPY(req->challengePw, bytes, len);
16924
            req->challengePw[len] = '\0';
16925
        }
16926
        else {
16927
            WOLFSSL_MSG("Challenge password too long");
16928
            WOLFSSL_ERROR_VERBOSE(BUFFER_E);
16929
            return WOLFSSL_FAILURE;
16930
        }
16931
        break;
16932
    case WC_NID_serialNumber:
16933
        if (len < 0)
16934
            len = (int)XSTRLEN((char*)bytes);
16935
        if (len + 1 > EXTERNAL_SERIAL_SIZE) {
16936
            WOLFSSL_MSG("SerialNumber too long");
16937
            WOLFSSL_ERROR_VERBOSE(BUFFER_E);
16938
            return WOLFSSL_FAILURE;
16939
        }
16940
        XMEMCPY(req->serial, bytes, len);
16941
        req->serialSz = len;
16942
        break;
16943
16944
    case WC_NID_pkcs9_unstructuredName:
16945
    case WC_NID_pkcs9_contentType:
16946
    case WC_NID_surname:
16947
    case WC_NID_initials:
16948
    case WC_NID_givenName:
16949
    case WC_NID_dnQualifier:
16950
        break;
16951
16952
    default:
16953
        WOLFSSL_MSG("Unsupported attribute");
16954
        return WOLFSSL_FAILURE;
16955
    }
16956
16957
    attr = wolfSSL_X509_ATTRIBUTE_new();
16958
    ret = wolfSSL_X509_ATTRIBUTE_set(attr, (const char*)bytes, len,
16959
            WOLFSSL_V_ASN1_PRINTABLESTRING, nid);
16960
    if (ret != WOLFSSL_SUCCESS) {
16961
        wolfSSL_X509_ATTRIBUTE_free(attr);
16962
    }
16963
    else {
16964
        if (req->reqAttributes == NULL) {
16965
            req->reqAttributes = wolfSSL_sk_new_node(req->heap);
16966
            if (req->reqAttributes != NULL) {
16967
                req->reqAttributes->type = STACK_TYPE_X509_REQ_ATTR;
16968
            }
16969
        }
16970
        if ((req->reqAttributes != NULL) &&
16971
                (req->reqAttributes->type == STACK_TYPE_X509_REQ_ATTR)) {
16972
            /* Using wolfSSL_sk_insert to maintain backwards compatibility with
16973
             * earlier versions of _push API that pushed items to the start of
16974
             * the list instead of the end. */
16975
            ret = wolfSSL_sk_insert(req->reqAttributes, attr, 0) > 0
16976
                    ? WOLFSSL_SUCCESS : WOLFSSL_FAILURE;
16977
        }
16978
        else {
16979
            ret = WOLFSSL_FAILURE;
16980
        }
16981
        if (ret != WOLFSSL_SUCCESS)
16982
            wolfSSL_X509_ATTRIBUTE_free(attr);
16983
    }
16984
16985
    return ret;
16986
}
16987
16988
WOLFSSL_X509 *wolfSSL_X509_to_X509_REQ(WOLFSSL_X509 *x,
16989
        WOLFSSL_EVP_PKEY *pkey, const WOLFSSL_EVP_MD *md)
16990
{
16991
    WOLFSSL_ENTER("wolfSSL_X509_to_X509_REQ");
16992
    (void)pkey;
16993
    (void)md;
16994
    return wolfSSL_X509_dup(x);
16995
}
16996
16997
int wolfSSL_X509_REQ_set_subject_name(WOLFSSL_X509 *req,
16998
                                      WOLFSSL_X509_NAME *name)
16999
{
17000
    return wolfSSL_X509_set_subject_name(req, name);
17001
}
17002
17003
int wolfSSL_X509_REQ_set_pubkey(WOLFSSL_X509 *req, WOLFSSL_EVP_PKEY *pkey)
17004
{
17005
    return wolfSSL_X509_set_pubkey(req, pkey);
17006
}
17007
#endif /* OPENSSL_ALL && WOLFSSL_CERT_GEN && WOLFSSL_CERT_REQ */
17008
17009
#if (defined(OPENSSL_ALL) || defined(OPENSSL_EXTRA)) && \
17010
    (defined(WOLFSSL_CERT_GEN) || defined(WOLFSSL_CERT_REQ))
17011
17012
WOLFSSL_ASN1_TYPE *wolfSSL_X509_ATTRIBUTE_get0_type(
17013
        WOLFSSL_X509_ATTRIBUTE *attr, int idx)
17014
{
17015
    WOLFSSL_ENTER("wolfSSL_X509_ATTRIBUTE_get0_type");
17016
17017
    if (!attr || idx != 0) {
17018
        WOLFSSL_MSG("Bad parameter");
17019
        return NULL;
17020
    }
17021
17022
    return attr->value;
17023
}
17024
17025
17026
/**
17027
 * @param req X509_REQ containing attribute
17028
 * @return the number of attributes
17029
 */
17030
int wolfSSL_X509_REQ_get_attr_count(const WOLFSSL_X509 *req)
17031
{
17032
    if (req == NULL || req->reqAttributes == NULL)
17033
        return 0;
17034
17035
    return wolfSSL_sk_num(req->reqAttributes);
17036
}
17037
17038
17039
/**
17040
 * @param req X509_REQ containing attribute
17041
 * @param loc NID of the attribute to return
17042
 */
17043
WOLFSSL_X509_ATTRIBUTE *wolfSSL_X509_REQ_get_attr(
17044
        const WOLFSSL_X509 *req, int loc)
17045
{
17046
    WOLFSSL_ENTER("wolfSSL_X509_REQ_get_attr");
17047
17048
    if (!req || req->reqAttributes == NULL) {
17049
        WOLFSSL_MSG("Bad parameter");
17050
        return NULL;
17051
    }
17052
17053
    return (WOLFSSL_X509_ATTRIBUTE*)wolfSSL_sk_value(req->reqAttributes, loc);
17054
}
17055
17056
/* Return NID as the attr index */
17057
int wolfSSL_X509_REQ_get_attr_by_NID(const WOLFSSL_X509 *req,
17058
        int nid, int lastpos)
17059
{
17060
    int idx;
17061
17062
    WOLFSSL_ENTER("wolfSSL_X509_REQ_get_attr_by_NID");
17063
17064
    if (!req) {
17065
        WOLFSSL_MSG("Bad parameter");
17066
        return WOLFSSL_FATAL_ERROR;
17067
    }
17068
17069
    /* search through stack for first matching nid */
17070
    for (idx = lastpos + 1; idx < wolfSSL_sk_num(req->reqAttributes); idx++) {
17071
        WOLFSSL_X509_ATTRIBUTE* attr =
17072
             (WOLFSSL_X509_ATTRIBUTE*)wolfSSL_sk_value(req->reqAttributes, idx);
17073
        if (attr != NULL && attr->object != NULL && attr->object->nid == nid)
17074
            return idx;
17075
    }
17076
17077
    return WOLFSSL_FATAL_ERROR;
17078
}
17079
17080
WOLFSSL_X509_ATTRIBUTE* wolfSSL_X509_ATTRIBUTE_new(void)
17081
{
17082
    WOLFSSL_X509_ATTRIBUTE* ret;
17083
    WOLFSSL_ENTER("wolfSSL_X509_ATTRIBUTE_new");
17084
    ret = (WOLFSSL_X509_ATTRIBUTE*)XMALLOC(sizeof(WOLFSSL_X509_ATTRIBUTE),
17085
            NULL, DYNAMIC_TYPE_OPENSSL);
17086
    if (!ret) {
17087
        WOLFSSL_MSG("malloc error");
17088
        return NULL;
17089
    }
17090
    XMEMSET(ret, 0, sizeof(WOLFSSL_X509_ATTRIBUTE));
17091
    ret->object = wolfSSL_ASN1_OBJECT_new();
17092
    ret->value = wolfSSL_ASN1_TYPE_new();
17093
    /* Don't allocate ret->set since WOLFSSL_ASN1_TYPE
17094
     * is not supported as a stack type */
17095
    if (!ret->object || !ret->value) {
17096
        WOLFSSL_MSG("wolfSSL_ASN1_OBJECT_new or wolfSSL_ASN1_TYPE_new error");
17097
        wolfSSL_X509_ATTRIBUTE_free(ret);
17098
        return NULL;
17099
    }
17100
    return ret;
17101
}
17102
17103
void wolfSSL_X509_ATTRIBUTE_free(WOLFSSL_X509_ATTRIBUTE* attr)
17104
{
17105
    WOLFSSL_ENTER("wolfSSL_X509_ATTRIBUTE_free");
17106
    if (attr) {
17107
        if (attr->object) {
17108
            wolfSSL_ASN1_OBJECT_free(attr->object);
17109
        }
17110
        if (attr->value) {
17111
            wolfSSL_ASN1_TYPE_free(attr->value);
17112
        }
17113
        if (attr->set) {
17114
            wolfSSL_sk_pop_free(attr->set, NULL);
17115
        }
17116
        XFREE(attr, NULL, DYNAMIC_TYPE_OPENSSL);
17117
    }
17118
}
17119
#endif /* (OPENSSL_ALL || OPENSSL_EXTRA) &&
17120
          (WOLFSSL_CERT_GEN || WOLFSSL_CERT_REQ) */
17121
17122
#if defined(WOLFSSL_ACERT) && \
17123
   (defined(OPENSSL_EXTRA_X509_SMALL) || defined(OPENSSL_EXTRA))
17124
17125
/* Allocate and return a new WOLFSSL_X509_ACERT struct pointer.
17126
 *
17127
 * @param [in]      heap        heap hint
17128
 *
17129
 * @return  pointer  on success
17130
 * @return  NULL     on error
17131
 * */
17132
WOLFSSL_X509_ACERT * wolfSSL_X509_ACERT_new_ex(void* heap)
17133
{
17134
    WOLFSSL_X509_ACERT * x509 = NULL;
17135
17136
    WOLFSSL_ENTER("wolfSSL_X509_ACERT_new");
17137
17138
    x509 = (WOLFSSL_X509_ACERT*) XMALLOC(sizeof(WOLFSSL_X509_ACERT), heap,
17139
                                         DYNAMIC_TYPE_X509_ACERT);
17140
17141
    if (x509 != NULL) {
17142
        wolfSSL_X509_ACERT_init(x509, 1, heap);
17143
    }
17144
17145
    return x509;
17146
}
17147
17148
WOLFSSL_X509_ACERT * wolfSSL_X509_ACERT_new(void)
17149
{
17150
    return wolfSSL_X509_ACERT_new_ex(NULL);
17151
}
17152
17153
/* Initialize a WOLFSSL_X509_ACERT struct.
17154
 *
17155
 * If dynamic == 1, then the x509 pointer will be freed
17156
 * in wolfSSL_X509_ACERT_free.
17157
 *
17158
 * @param [in]      x509        x509 acert pointer
17159
 * @param [in]      dynamic     dynamic mem flag
17160
 * @param [in]      heap        heap hint
17161
 *
17162
 * @return  void
17163
 * */
17164
void wolfSSL_X509_ACERT_init(WOLFSSL_X509_ACERT * x509, int dynamic, void* heap)
17165
{
17166
    WOLFSSL_ENTER("wolfSSL_X509_ACERT_init");
17167
17168
    if (x509 == NULL) {
17169
        WOLFSSL_MSG("error: InitX509Acert: null parameter");
17170
        return;
17171
    }
17172
17173
    XMEMSET(x509, 0, sizeof(*x509));
17174
17175
    x509->heap = heap;
17176
    x509->dynamic = dynamic;
17177
}
17178
17179
/* Free a WOLFSSL_X509_ACERT struct and its sub-fields.
17180
 *
17181
 * If this ACERT was initialized with dynamic == 1, then
17182
 * the x509 pointer itself will be freed as well.
17183
 *
17184
 * @param [in]      x509        x509 acert pointer
17185
 *
17186
 * @return  void
17187
 * */
17188
void wolfSSL_X509_ACERT_free(WOLFSSL_X509_ACERT * x509)
17189
{
17190
    int    dynamic = 0;
17191
    void * heap = NULL;
17192
17193
    WOLFSSL_ENTER("wolfSSL_X509_ACERT_free");
17194
17195
    if (x509 == NULL) {
17196
        WOLFSSL_MSG("error: wolfSSL_X509_ACERT_free: null parameter");
17197
        return;
17198
    }
17199
17200
    dynamic = x509->dynamic;
17201
    heap = x509->heap;
17202
17203
    /* Free holder and att cert issuer structures. */
17204
    if (x509->holderIssuerName) {
17205
        FreeAltNames(x509->holderIssuerName, heap);
17206
        x509->holderIssuerName = NULL;
17207
    }
17208
17209
    if (x509->holderEntityName) {
17210
        FreeAltNames(x509->holderEntityName, heap);
17211
        x509->holderEntityName = NULL;
17212
    }
17213
17214
    if (x509->AttCertIssuerName) {
17215
        FreeAltNames(x509->AttCertIssuerName, heap);
17216
        x509->AttCertIssuerName = NULL;
17217
    }
17218
17219
    if (x509->rawAttr != NULL) {
17220
        XFREE(x509->rawAttr, heap, DYNAMIC_TYPE_X509_EXT);
17221
        x509->rawAttr = NULL;
17222
        x509->rawAttrLen = 0;
17223
    }
17224
17225
    /* Free derCert source and signature buffer. */
17226
    FreeDer(&x509->derCert);
17227
17228
    if (x509->sig.buffer != NULL) {
17229
        XFREE(x509->sig.buffer, heap, DYNAMIC_TYPE_SIGNATURE);
17230
        x509->sig.buffer = NULL;
17231
    }
17232
17233
    /* Finally memset and free x509 acert structure. */
17234
    XMEMSET(x509, 0, sizeof(*x509));
17235
17236
    if (dynamic == 1) {
17237
        XFREE(x509, heap, DYNAMIC_TYPE_X509_ACERT);
17238
    }
17239
17240
    return;
17241
}
17242
17243
#if defined(OPENSSL_EXTRA)
17244
long wolfSSL_X509_ACERT_get_version(const WOLFSSL_X509_ACERT* x509)
17245
{
17246
    int version = 0;
17247
17248
    if (x509 == NULL) {
17249
        return 0L;
17250
    }
17251
17252
    version = x509->version;
17253
17254
    return version != 0 ? (long)version - 1L : 0L;
17255
}
17256
#endif /* OPENSSL_EXTRA */
17257
17258
int wolfSSL_X509_ACERT_version(WOLFSSL_X509_ACERT* x509)
17259
{
17260
    if (x509 == NULL) {
17261
        return 0;
17262
    }
17263
17264
    return x509->version;
17265
}
17266
17267
/* Retrieve the serial number from an ACERT.
17268
 *
17269
 * @param [in]       x509    the x509 attribute certificate
17270
 * @param [in, out]  buf     the serial number buffer pointer
17271
 * @param [in, out]  bufSz   the serial number buffer size pointer
17272
 *
17273
 * buf may be null, but bufSz is required. On success, sets
17274
 * bufSz pointer to signature length, and copies signature
17275
 * to buf if provided.
17276
 *
17277
 * Returns  WWOLFSSL_FATAL_ERROR if bufSz is null or too small.
17278
 * Returns  WOLFSSL_SUCCESS on success.
17279
 */
17280
int wolfSSL_X509_ACERT_get_serial_number(WOLFSSL_X509_ACERT* x509,
17281
                                         byte* buf, int* bufSz)
17282
{
17283
    WOLFSSL_ENTER("wolfSSL_X509_ACERT_get_serial_number");
17284
17285
    if (x509 == NULL || bufSz == NULL) {
17286
        WOLFSSL_MSG("error: null argument passed in");
17287
        return BAD_FUNC_ARG;
17288
    }
17289
17290
    if (buf != NULL) {
17291
        if (*bufSz < x509->serialSz) {
17292
            WOLFSSL_MSG("error: serial buffer too small");
17293
            return BUFFER_E;
17294
        }
17295
17296
        XMEMCPY(buf, x509->serial, x509->serialSz);
17297
    }
17298
17299
    *bufSz = x509->serialSz;
17300
17301
    return WOLFSSL_SUCCESS;
17302
}
17303
17304
/* Sets buf pointer and len to raw Attribute buffer and buffer len
17305
 * in X509 struct.
17306
 *
17307
 * Returns WOLFSSL_SUCCESS on success.
17308
 * Returns BAD_FUNC_ARG if input pointers are null.
17309
 * */
17310
int wolfSSL_X509_ACERT_get_attr_buf(const WOLFSSL_X509_ACERT* x509,
17311
                                                const byte ** rawAttr,
17312
                                                word32 * rawAttrLen)
17313
{
17314
    if (x509 == NULL || rawAttr == NULL || rawAttrLen == NULL) {
17315
        return BAD_FUNC_ARG;
17316
    }
17317
17318
    *rawAttr = x509->rawAttr;
17319
    *rawAttrLen = x509->rawAttrLen;
17320
17321
    return WOLFSSL_SUCCESS;
17322
}
17323
17324
#ifndef NO_WOLFSSL_STUB
17325
int wolfSSL_X509_ACERT_sign(WOLFSSL_X509_ACERT * x509,
17326
                                        WOLFSSL_EVP_PKEY * pkey,
17327
                                        const WOLFSSL_EVP_MD * md)
17328
{
17329
    WOLFSSL_STUB("X509_ACERT_sign");
17330
    (void) x509;
17331
    (void) pkey;
17332
    (void) md;
17333
    return WOLFSSL_NOT_IMPLEMENTED;
17334
}
17335
#endif /* NO_WOLFSSL_STUB */
17336
17337
/* Helper function for ACERT_verify.
17338
 *
17339
 * @param [in]       x509    the x509 attribute certificate
17340
 * @param [in, out]  outSz   the x509 der length
17341
 *
17342
 * @return  der buffer on success
17343
 * @return  NULL on error
17344
 * */
17345
static const byte* acert_get_der(WOLFSSL_X509_ACERT * x509, int* outSz)
17346
{
17347
    if (x509 == NULL || x509->derCert == NULL || outSz == NULL) {
17348
        return NULL;
17349
    }
17350
17351
    *outSz = (int)x509->derCert->length;
17352
    return x509->derCert->buffer;
17353
}
17354
17355
/* Given an X509_ACERT and EVP_PKEY, verify the acert's signature.
17356
 *
17357
 * @param [in]    x509    the x509 attribute certificate
17358
 * @param [in]    pkey    the evp_pkey
17359
 *
17360
 * @return  WOLFSSL_SUCCESS on verify success
17361
 * @return  < 0 on error
17362
 * */
17363
int wolfSSL_X509_ACERT_verify(WOLFSSL_X509_ACERT* x509, WOLFSSL_EVP_PKEY* pkey)
17364
{
17365
    int          ret = 0;
17366
    const byte * der = NULL;
17367
    int          derSz = 0;
17368
    int          pkey_type;
17369
17370
    if (x509 == NULL || pkey == NULL) {
17371
        WOLFSSL_MSG("error: wolfSSL_X509_ACERT_verify: bad arg");
17372
        return WOLFSSL_FATAL_ERROR;
17373
    }
17374
17375
    WOLFSSL_ENTER("wolfSSL_X509_ACERT_verify");
17376
17377
    der = acert_get_der(x509, &derSz);
17378
17379
    if (der == NULL || derSz <= 0) {
17380
        WOLFSSL_MSG("error: wolfSSL_X509_ACERT_verify: get der failed");
17381
        return WOLFSSL_FATAL_ERROR;
17382
    }
17383
17384
    switch (pkey->type) {
17385
    case WC_EVP_PKEY_RSA:
17386
        pkey_type = RSAk;
17387
        break;
17388
17389
    case WC_EVP_PKEY_EC:
17390
        pkey_type = ECDSAk;
17391
        break;
17392
17393
    case WC_EVP_PKEY_DSA:
17394
        pkey_type = DSAk;
17395
        break;
17396
17397
    default:
17398
        WOLFSSL_MSG("error: wolfSSL_X509_ACERT_verify: unknown pkey type");
17399
        return WOLFSSL_FATAL_ERROR;
17400
    }
17401
17402
17403
    ret = VerifyX509Acert(der, (word32)derSz,
17404
                          (const byte *)pkey->pkey.ptr, pkey->pkey_sz,
17405
                          pkey_type, x509->heap);
17406
17407
    return ret == 0 ? WOLFSSL_SUCCESS : WOLFSSL_FAILURE;
17408
}
17409
17410
/* Loads an x509 attribute certificate from buffer, and returns
17411
 * pointer to new WOLFSSL_X509_ACERT struct on success.
17412
 *
17413
 * @param [in]  buf    The acert buffer to load.
17414
 * @param [in]  sz     The size of the buffer.
17415
 * @param [in]  format The format of the buffer data.
17416
 * @param [in]  heap   Dynamic memory allocation hint.
17417
 *
17418
 * @return  pointer to WOLFSSL_X509_ACERT on success.
17419
 * @return  NULL on error.
17420
 * */
17421
WOLFSSL_X509_ACERT * wolfSSL_X509_ACERT_load_certificate_buffer_ex(
17422
    const unsigned char* buf, int sz, int format, void * heap)
17423
{
17424
    int                  ret = 0;
17425
    WOLFSSL_X509_ACERT * x509 = NULL;
17426
    DerBuffer *          der = NULL;
17427
    WC_DECLARE_VAR(acert, DecodedAcert, 1, 0);
17428
17429
    WOLFSSL_ENTER("wolfSSL_X509_ACERT_load_certificate_buffer");
17430
17431
    if (format == WOLFSSL_FILETYPE_PEM) {
17432
    #ifdef WOLFSSL_PEM_TO_DER
17433
        ret = PemToDer(buf, sz, ACERT_TYPE, &der, heap, NULL, NULL);
17434
17435
        if (ret != 0 || der == NULL || der->buffer == NULL) {
17436
            WOLFSSL_ERROR(ret);
17437
17438
            if (der != NULL) {
17439
                FreeDer(&der);
17440
            }
17441
17442
            return NULL;
17443
        }
17444
    #else
17445
        WOLFSSL_ERROR(NOT_COMPILED_IN);
17446
        return NULL;
17447
    #endif
17448
    }
17449
    else {
17450
        ret = AllocDer(&der, (word32)sz, ACERT_TYPE, heap);
17451
17452
        if (ret != 0 || der == NULL || der->buffer == NULL) {
17453
            WOLFSSL_ERROR(ret);
17454
            return NULL;
17455
        }
17456
17457
        XMEMCPY(der->buffer, buf, sz);
17458
    }
17459
17460
    #ifdef WOLFSSL_SMALL_STACK
17461
    acert = (DecodedAcert*)XMALLOC(sizeof(DecodedAcert), heap,
17462
                                   DYNAMIC_TYPE_DCERT);
17463
    if (acert == NULL) {
17464
        WOLFSSL_ERROR(MEMORY_ERROR);
17465
        FreeDer(&der);
17466
        return NULL;
17467
    }
17468
    #endif
17469
17470
    InitDecodedAcert(acert, der->buffer, der->length, heap);
17471
17472
    ret = ParseX509Acert(acert, VERIFY_SKIP_DATE);
17473
17474
    if (ret == 0) {
17475
        x509 = wolfSSL_X509_ACERT_new_ex(heap);
17476
17477
        if (x509 != NULL) {
17478
            ret = CopyDecodedAcertToX509(x509, acert);
17479
17480
            if (ret != 0) {
17481
                wolfSSL_X509_ACERT_free(x509);
17482
                x509 = NULL;
17483
            }
17484
        }
17485
        else {
17486
            ret = MEMORY_ERROR;
17487
        }
17488
    }
17489
17490
    FreeDecodedAcert(acert);
17491
17492
    WC_FREE_VAR_EX(acert, heap, DYNAMIC_TYPE_DCERT);
17493
17494
    FreeDer(&der);
17495
17496
    if (ret != 0) {
17497
        WOLFSSL_ERROR(ret);
17498
    }
17499
17500
    return x509;
17501
}
17502
17503
WOLFSSL_X509_ACERT * wolfSSL_X509_ACERT_load_certificate_buffer(
17504
    const unsigned char* buf, int sz, int format)
17505
{
17506
    return wolfSSL_X509_ACERT_load_certificate_buffer_ex(buf, sz, format, NULL);
17507
}
17508
17509
/* Retrieve the signature from an ACERT.
17510
 *
17511
 * @param [in]       x509    the x509 attribute certificate
17512
 * @param [in, out]  buf     the signature buffer pointer
17513
 * @param [in, out]  bufSz   the signature buffer size pointer
17514
 *
17515
 * buf may be null, but bufSz is required. On success, sets
17516
 * bufSz pointer to signature length, and copies signature
17517
 * to buf if provided.
17518
 *
17519
 * Returns  WWOLFSSL_FATAL_ERROR if bufSz is null or too small.
17520
 * Returns  WOLFSSL_SUCCESS on success.
17521
 */
17522
int wolfSSL_X509_ACERT_get_signature(WOLFSSL_X509_ACERT* x509,
17523
                                     unsigned char* buf, int* bufSz)
17524
{
17525
    WOLFSSL_ENTER("wolfSSL_X509_ACERT_get_signature");
17526
17527
    if (x509 == NULL || bufSz == NULL) {
17528
        return WOLFSSL_FATAL_ERROR;
17529
    }
17530
17531
    /* If buf array is provided, it must be long enough. */
17532
    if (buf != NULL && *bufSz < (int)x509->sig.length) {
17533
        return WOLFSSL_FATAL_ERROR;
17534
    }
17535
17536
    if (buf != NULL) {
17537
        /* Copy in buffer if provided. */
17538
        XMEMCPY(buf, x509->sig.buffer, x509->sig.length);
17539
    }
17540
17541
    *bufSz = (int)x509->sig.length;
17542
17543
    return WOLFSSL_SUCCESS;
17544
}
17545
#endif /* WOLFSSL_ACERT && (OPENSSL_EXTRA_X509_SMALL || OPENSSL_EXTRA) */
17546
17547
#endif /* !NO_CERTS */
17548
17549
#endif /* !WOLFCRYPT_ONLY */
17550
17551
#endif /* WOLFSSL_X509_INCLUDED */