Coverage Report

Created: 2025-07-11 06:57

/src/openssl/crypto/x509/v3_utl.c
Line
Count
Source (jump to first uncovered line)
1
/*
2
 * Copyright 1999-2024 The OpenSSL Project Authors. All Rights Reserved.
3
 *
4
 * Licensed under the Apache License 2.0 (the "License").  You may not use
5
 * this file except in compliance with the License.  You can obtain a copy
6
 * in the file LICENSE in the source distribution or at
7
 * https://www.openssl.org/source/license.html
8
 */
9
10
/* X509 v3 extension utilities */
11
12
#include "internal/e_os.h"
13
#include "internal/cryptlib.h"
14
#include <stdio.h>
15
#include <string.h>
16
#include "crypto/ctype.h"
17
#include <openssl/conf.h>
18
#include <openssl/crypto.h>
19
#include <openssl/x509v3.h>
20
#include "crypto/x509.h"
21
#include <openssl/bn.h>
22
#include "ext_dat.h"
23
#include "x509_local.h"
24
25
static char *strip_spaces(char *name);
26
static int sk_strcmp(const char *const *a, const char *const *b);
27
static STACK_OF(OPENSSL_STRING) *get_email(const X509_NAME *name,
28
                                           GENERAL_NAMES *gens);
29
static void str_free(OPENSSL_STRING str);
30
static int append_ia5(STACK_OF(OPENSSL_STRING) **sk,
31
                      const ASN1_IA5STRING *email);
32
33
static int ipv4_from_asc(unsigned char *v4, const char *in);
34
static int ipv6_from_asc(unsigned char *v6, const char *in);
35
static int ipv6_cb(const char *elem, int len, void *usr);
36
static int ipv6_hex(unsigned char *out, const char *in, int inlen);
37
38
/* Add a CONF_VALUE name value pair to stack */
39
40
static int x509v3_add_len_value(const char *name, const char *value,
41
                                size_t vallen, STACK_OF(CONF_VALUE) **extlist)
42
0
{
43
0
    CONF_VALUE *vtmp = NULL;
44
0
    char *tname = NULL, *tvalue = NULL;
45
0
    int sk_allocated = (*extlist == NULL);
46
47
0
    if (name != NULL && (tname = OPENSSL_strdup(name)) == NULL)
48
0
        goto err;
49
0
    if (value != NULL) {
50
        /* We don't allow embedded NUL characters */
51
0
        if (memchr(value, 0, vallen) != NULL)
52
0
            goto err;
53
0
        tvalue = OPENSSL_strndup(value, vallen);
54
0
        if (tvalue == NULL)
55
0
            goto err;
56
0
    }
57
0
    if ((vtmp = OPENSSL_malloc(sizeof(*vtmp))) == NULL)
58
0
        goto err;
59
0
    if (sk_allocated && (*extlist = sk_CONF_VALUE_new_null()) == NULL) {
60
0
        ERR_raise(ERR_LIB_X509V3, ERR_R_CRYPTO_LIB);
61
0
        goto err;
62
0
    }
63
0
    vtmp->section = NULL;
64
0
    vtmp->name = tname;
65
0
    vtmp->value = tvalue;
66
0
    if (!sk_CONF_VALUE_push(*extlist, vtmp))
67
0
        goto err;
68
0
    return 1;
69
0
 err:
70
0
    if (sk_allocated) {
71
0
        sk_CONF_VALUE_free(*extlist);
72
0
        *extlist = NULL;
73
0
    }
74
0
    OPENSSL_free(vtmp);
75
0
    OPENSSL_free(tname);
76
0
    OPENSSL_free(tvalue);
77
0
    return 0;
78
0
}
79
80
int X509V3_add_value(const char *name, const char *value,
81
                     STACK_OF(CONF_VALUE) **extlist)
82
0
{
83
0
    return x509v3_add_len_value(name, value,
84
0
                                value != NULL ? strlen((const char *)value) : 0,
85
0
                                extlist);
86
0
}
87
88
int X509V3_add_value_uchar(const char *name, const unsigned char *value,
89
                           STACK_OF(CONF_VALUE) **extlist)
90
0
{
91
0
    return x509v3_add_len_value(name, (const char *)value,
92
0
                                value != NULL ? strlen((const char *)value) : 0,
93
0
                                extlist);
94
0
}
95
96
int x509v3_add_len_value_uchar(const char *name, const unsigned char *value,
97
                               size_t vallen, STACK_OF(CONF_VALUE) **extlist)
98
0
{
99
0
    return x509v3_add_len_value(name, (const char *)value, vallen, extlist);
100
0
}
101
102
/* Free function for STACK_OF(CONF_VALUE) */
103
104
void X509V3_conf_free(CONF_VALUE *conf)
105
0
{
106
0
    if (!conf)
107
0
        return;
108
0
    OPENSSL_free(conf->name);
109
0
    OPENSSL_free(conf->value);
110
0
    OPENSSL_free(conf->section);
111
0
    OPENSSL_free(conf);
112
0
}
113
114
int X509V3_add_value_bool(const char *name, int asn1_bool,
115
                          STACK_OF(CONF_VALUE) **extlist)
116
0
{
117
0
    if (asn1_bool)
118
0
        return X509V3_add_value(name, "TRUE", extlist);
119
0
    return X509V3_add_value(name, "FALSE", extlist);
120
0
}
121
122
int X509V3_add_value_bool_nf(const char *name, int asn1_bool,
123
                             STACK_OF(CONF_VALUE) **extlist)
124
0
{
125
0
    if (asn1_bool)
126
0
        return X509V3_add_value(name, "TRUE", extlist);
127
0
    return 1;
128
0
}
129
130
static char *bignum_to_string(const BIGNUM *bn)
131
0
{
132
0
    char *tmp, *ret;
133
0
    size_t len;
134
135
    /*
136
     * Display large numbers in hex and small numbers in decimal. Converting to
137
     * decimal takes quadratic time and is no more useful than hex for large
138
     * numbers.
139
     */
140
0
    if (BN_num_bits(bn) < 128)
141
0
        return BN_bn2dec(bn);
142
143
0
    tmp = BN_bn2hex(bn);
144
0
    if (tmp == NULL)
145
0
        return NULL;
146
147
0
    len = strlen(tmp) + 3;
148
0
    ret = OPENSSL_malloc(len);
149
0
    if (ret == NULL) {
150
0
        OPENSSL_free(tmp);
151
0
        return NULL;
152
0
    }
153
154
    /* Prepend "0x", but place it after the "-" if negative. */
155
0
    if (tmp[0] == '-') {
156
0
        OPENSSL_strlcpy(ret, "-0x", len);
157
0
        OPENSSL_strlcat(ret, tmp + 1, len);
158
0
    } else {
159
0
        OPENSSL_strlcpy(ret, "0x", len);
160
0
        OPENSSL_strlcat(ret, tmp, len);
161
0
    }
162
0
    OPENSSL_free(tmp);
163
0
    return ret;
164
0
}
165
166
char *i2s_ASN1_ENUMERATED(X509V3_EXT_METHOD *method, const ASN1_ENUMERATED *a)
167
0
{
168
0
    BIGNUM *bntmp = NULL;
169
0
    char *strtmp = NULL;
170
171
0
    if (!a)
172
0
        return NULL;
173
0
    if ((bntmp = ASN1_ENUMERATED_to_BN(a, NULL)) == NULL)
174
0
        ERR_raise(ERR_LIB_X509V3, ERR_R_ASN1_LIB);
175
0
    else if ((strtmp = bignum_to_string(bntmp)) == NULL)
176
0
        ERR_raise(ERR_LIB_X509V3, ERR_R_X509V3_LIB);
177
0
    BN_free(bntmp);
178
0
    return strtmp;
179
0
}
180
181
char *i2s_ASN1_INTEGER(X509V3_EXT_METHOD *method, const ASN1_INTEGER *a)
182
0
{
183
0
    BIGNUM *bntmp = NULL;
184
0
    char *strtmp = NULL;
185
186
0
    if (!a)
187
0
        return NULL;
188
0
    if ((bntmp = ASN1_INTEGER_to_BN(a, NULL)) == NULL)
189
0
        ERR_raise(ERR_LIB_X509V3, ERR_R_ASN1_LIB);
190
0
    else if ((strtmp = bignum_to_string(bntmp)) == NULL)
191
0
        ERR_raise(ERR_LIB_X509V3, ERR_R_X509V3_LIB);
192
0
    BN_free(bntmp);
193
0
    return strtmp;
194
0
}
195
196
ASN1_INTEGER *s2i_ASN1_INTEGER(X509V3_EXT_METHOD *method, const char *value)
197
0
{
198
0
    BIGNUM *bn = NULL;
199
0
    ASN1_INTEGER *aint;
200
0
    int isneg, ishex;
201
0
    int ret;
202
203
0
    if (value == NULL) {
204
0
        ERR_raise(ERR_LIB_X509V3, X509V3_R_INVALID_NULL_VALUE);
205
0
        return NULL;
206
0
    }
207
0
    bn = BN_new();
208
0
    if (bn == NULL) {
209
0
        ERR_raise(ERR_LIB_X509V3, ERR_R_BN_LIB);
210
0
        return NULL;
211
0
    }
212
0
    if (value[0] == '-') {
213
0
        value++;
214
0
        isneg = 1;
215
0
    } else {
216
0
        isneg = 0;
217
0
    }
218
219
0
    if (value[0] == '0' && ((value[1] == 'x') || (value[1] == 'X'))) {
220
0
        value += 2;
221
0
        ishex = 1;
222
0
    } else {
223
0
        ishex = 0;
224
0
    }
225
226
0
    if (ishex)
227
0
        ret = BN_hex2bn(&bn, value);
228
0
    else
229
0
        ret = BN_dec2bn(&bn, value);
230
231
0
    if (!ret || value[ret]) {
232
0
        BN_free(bn);
233
0
        ERR_raise(ERR_LIB_X509V3, X509V3_R_BN_DEC2BN_ERROR);
234
0
        return NULL;
235
0
    }
236
237
0
    if (isneg && BN_is_zero(bn))
238
0
        isneg = 0;
239
240
0
    aint = BN_to_ASN1_INTEGER(bn, NULL);
241
0
    BN_free(bn);
242
0
    if (!aint) {
243
0
        ERR_raise(ERR_LIB_X509V3, X509V3_R_BN_TO_ASN1_INTEGER_ERROR);
244
0
        return NULL;
245
0
    }
246
0
    if (isneg)
247
0
        aint->type |= V_ASN1_NEG;
248
0
    return aint;
249
0
}
250
251
int X509V3_add_value_int(const char *name, const ASN1_INTEGER *aint,
252
                         STACK_OF(CONF_VALUE) **extlist)
253
0
{
254
0
    char *strtmp;
255
0
    int ret;
256
257
0
    if (!aint)
258
0
        return 1;
259
0
    if ((strtmp = i2s_ASN1_INTEGER(NULL, aint)) == NULL)
260
0
        return 0;
261
0
    ret = X509V3_add_value(name, strtmp, extlist);
262
0
    OPENSSL_free(strtmp);
263
0
    return ret;
264
0
}
265
266
int X509V3_get_value_bool(const CONF_VALUE *value, int *asn1_bool)
267
0
{
268
0
    const char *btmp;
269
270
0
    if ((btmp = value->value) == NULL)
271
0
        goto err;
272
0
    if (strcmp(btmp, "TRUE") == 0
273
0
        || strcmp(btmp, "true") == 0
274
0
        || strcmp(btmp, "Y") == 0
275
0
        || strcmp(btmp, "y") == 0
276
0
        || strcmp(btmp, "YES") == 0
277
0
        || strcmp(btmp, "yes") == 0) {
278
0
        *asn1_bool = 0xff;
279
0
        return 1;
280
0
    }
281
0
    if (strcmp(btmp, "FALSE") == 0
282
0
        || strcmp(btmp, "false") == 0
283
0
        || strcmp(btmp, "N") == 0
284
0
        || strcmp(btmp, "n") == 0
285
0
        || strcmp(btmp, "NO") == 0
286
0
        || strcmp(btmp, "no") == 0) {
287
0
        *asn1_bool = 0;
288
0
        return 1;
289
0
    }
290
0
 err:
291
0
    ERR_raise(ERR_LIB_X509V3, X509V3_R_INVALID_BOOLEAN_STRING);
292
0
    X509V3_conf_add_error_name_value(value);
293
0
    return 0;
294
0
}
295
296
int X509V3_get_value_int(const CONF_VALUE *value, ASN1_INTEGER **aint)
297
0
{
298
0
    ASN1_INTEGER *itmp;
299
300
0
    if ((itmp = s2i_ASN1_INTEGER(NULL, value->value)) == NULL) {
301
0
        X509V3_conf_add_error_name_value(value);
302
0
        return 0;
303
0
    }
304
0
    *aint = itmp;
305
0
    return 1;
306
0
}
307
308
0
#define HDR_NAME        1
309
0
#define HDR_VALUE       2
310
311
/*
312
 * #define DEBUG
313
 */
314
315
STACK_OF(CONF_VALUE) *X509V3_parse_list(const char *line)
316
0
{
317
0
    char *p, *q, c;
318
0
    char *ntmp, *vtmp;
319
0
    STACK_OF(CONF_VALUE) *values = NULL;
320
0
    char *linebuf;
321
0
    int state;
322
323
    /* We are going to modify the line so copy it first */
324
0
    linebuf = OPENSSL_strdup(line);
325
0
    if (linebuf == NULL)
326
0
        goto err;
327
0
    state = HDR_NAME;
328
0
    ntmp = NULL;
329
    /* Go through all characters */
330
0
    for (p = linebuf, q = linebuf; (c = *p) && (c != '\r') && (c != '\n');
331
0
         p++) {
332
333
0
        switch (state) {
334
0
        case HDR_NAME:
335
0
            if (c == ':') {
336
0
                state = HDR_VALUE;
337
0
                *p = 0;
338
0
                ntmp = strip_spaces(q);
339
0
                if (!ntmp) {
340
0
                    ERR_raise(ERR_LIB_X509V3, X509V3_R_INVALID_EMPTY_NAME);
341
0
                    goto err;
342
0
                }
343
0
                q = p + 1;
344
0
            } else if (c == ',') {
345
0
                *p = 0;
346
0
                ntmp = strip_spaces(q);
347
0
                q = p + 1;
348
0
                if (!ntmp) {
349
0
                    ERR_raise(ERR_LIB_X509V3, X509V3_R_INVALID_EMPTY_NAME);
350
0
                    goto err;
351
0
                }
352
0
                if (!X509V3_add_value(ntmp, NULL, &values)) {
353
0
                    goto err;
354
0
                }
355
0
            }
356
0
            break;
357
358
0
        case HDR_VALUE:
359
0
            if (c == ',') {
360
0
                state = HDR_NAME;
361
0
                *p = 0;
362
0
                vtmp = strip_spaces(q);
363
0
                if (!vtmp) {
364
0
                    ERR_raise(ERR_LIB_X509V3, X509V3_R_INVALID_NULL_VALUE);
365
0
                    goto err;
366
0
                }
367
0
                if (!X509V3_add_value(ntmp, vtmp, &values)) {
368
0
                    goto err;
369
0
                }
370
0
                ntmp = NULL;
371
0
                q = p + 1;
372
0
            }
373
374
0
        }
375
0
    }
376
377
0
    if (state == HDR_VALUE) {
378
0
        vtmp = strip_spaces(q);
379
0
        if (!vtmp) {
380
0
            ERR_raise(ERR_LIB_X509V3, X509V3_R_INVALID_NULL_VALUE);
381
0
            goto err;
382
0
        }
383
0
        if (!X509V3_add_value(ntmp, vtmp, &values)) {
384
0
            goto err;
385
0
        }
386
0
    } else {
387
0
        ntmp = strip_spaces(q);
388
0
        if (!ntmp) {
389
0
            ERR_raise(ERR_LIB_X509V3, X509V3_R_INVALID_EMPTY_NAME);
390
0
            goto err;
391
0
        }
392
0
        if (!X509V3_add_value(ntmp, NULL, &values)) {
393
0
            goto err;
394
0
        }
395
0
    }
396
0
    OPENSSL_free(linebuf);
397
0
    return values;
398
399
0
 err:
400
0
    OPENSSL_free(linebuf);
401
0
    sk_CONF_VALUE_pop_free(values, X509V3_conf_free);
402
0
    return NULL;
403
404
0
}
405
406
/* Delete leading and trailing spaces from a string */
407
static char *strip_spaces(char *name)
408
0
{
409
0
    char *p, *q;
410
411
    /* Skip over leading spaces */
412
0
    p = name;
413
0
    while (*p && ossl_isspace(*p))
414
0
        p++;
415
0
    if (*p == '\0')
416
0
        return NULL;
417
0
    q = p + strlen(p) - 1;
418
0
    while ((q != p) && ossl_isspace(*q))
419
0
        q--;
420
0
    if (p != q)
421
0
        q[1] = 0;
422
0
    if (*p == '\0')
423
0
        return NULL;
424
0
    return p;
425
0
}
426
427
428
/*
429
 * V2I name comparison function: returns zero if 'name' matches cmp or cmp.*
430
 */
431
432
int ossl_v3_name_cmp(const char *name, const char *cmp)
433
0
{
434
0
    size_t len;
435
0
    int ret;
436
0
    char c;
437
438
0
    len = strlen(cmp);
439
0
    if ((ret = strncmp(name, cmp, len)))
440
0
        return ret;
441
0
    c = name[len];
442
0
    if (!c || (c == '.'))
443
0
        return 0;
444
0
    return 1;
445
0
}
446
447
static int sk_strcmp(const char *const *a, const char *const *b)
448
0
{
449
0
    return strcmp(*a, *b);
450
0
}
451
452
STACK_OF(OPENSSL_STRING) *X509_get1_email(X509 *x)
453
0
{
454
0
    GENERAL_NAMES *gens;
455
0
    STACK_OF(OPENSSL_STRING) *ret;
456
457
0
    gens = X509_get_ext_d2i(x, NID_subject_alt_name, NULL, NULL);
458
0
    ret = get_email(X509_get_subject_name(x), gens);
459
0
    sk_GENERAL_NAME_pop_free(gens, GENERAL_NAME_free);
460
0
    return ret;
461
0
}
462
463
STACK_OF(OPENSSL_STRING) *X509_get1_ocsp(X509 *x)
464
0
{
465
0
    AUTHORITY_INFO_ACCESS *info;
466
0
    STACK_OF(OPENSSL_STRING) *ret = NULL;
467
0
    int i;
468
469
0
    info = X509_get_ext_d2i(x, NID_info_access, NULL, NULL);
470
0
    if (!info)
471
0
        return NULL;
472
0
    for (i = 0; i < sk_ACCESS_DESCRIPTION_num(info); i++) {
473
0
        ACCESS_DESCRIPTION *ad = sk_ACCESS_DESCRIPTION_value(info, i);
474
0
        if (OBJ_obj2nid(ad->method) == NID_ad_OCSP) {
475
0
            if (ad->location->type == GEN_URI) {
476
0
                if (!append_ia5
477
0
                    (&ret, ad->location->d.uniformResourceIdentifier))
478
0
                    break;
479
0
            }
480
0
        }
481
0
    }
482
0
    AUTHORITY_INFO_ACCESS_free(info);
483
0
    return ret;
484
0
}
485
486
STACK_OF(OPENSSL_STRING) *X509_REQ_get1_email(X509_REQ *x)
487
0
{
488
0
    GENERAL_NAMES *gens;
489
0
    STACK_OF(X509_EXTENSION) *exts;
490
0
    STACK_OF(OPENSSL_STRING) *ret;
491
492
0
    exts = X509_REQ_get_extensions(x);
493
0
    gens = X509V3_get_d2i(exts, NID_subject_alt_name, NULL, NULL);
494
0
    ret = get_email(X509_REQ_get_subject_name(x), gens);
495
0
    sk_GENERAL_NAME_pop_free(gens, GENERAL_NAME_free);
496
0
    sk_X509_EXTENSION_pop_free(exts, X509_EXTENSION_free);
497
0
    return ret;
498
0
}
499
500
static STACK_OF(OPENSSL_STRING) *get_email(const X509_NAME *name,
501
                                           GENERAL_NAMES *gens)
502
0
{
503
0
    STACK_OF(OPENSSL_STRING) *ret = NULL;
504
0
    X509_NAME_ENTRY *ne;
505
0
    const ASN1_IA5STRING *email;
506
0
    GENERAL_NAME *gen;
507
0
    int i = -1;
508
509
    /* Now add any email address(es) to STACK */
510
    /* First supplied X509_NAME */
511
0
    while ((i = X509_NAME_get_index_by_NID(name,
512
0
                                           NID_pkcs9_emailAddress, i)) >= 0) {
513
0
        ne = X509_NAME_get_entry(name, i);
514
0
        email = X509_NAME_ENTRY_get_data(ne);
515
0
        if (!append_ia5(&ret, email))
516
0
            return NULL;
517
0
    }
518
0
    for (i = 0; i < sk_GENERAL_NAME_num(gens); i++) {
519
0
        gen = sk_GENERAL_NAME_value(gens, i);
520
0
        if (gen->type != GEN_EMAIL)
521
0
            continue;
522
0
        if (!append_ia5(&ret, gen->d.ia5))
523
0
            return NULL;
524
0
    }
525
0
    return ret;
526
0
}
527
528
static void str_free(OPENSSL_STRING str)
529
0
{
530
0
    OPENSSL_free(str);
531
0
}
532
533
static int append_ia5(STACK_OF(OPENSSL_STRING) **sk,
534
                      const ASN1_IA5STRING *email)
535
0
{
536
0
    char *emtmp;
537
538
    /* First some sanity checks */
539
0
    if (email->type != V_ASN1_IA5STRING)
540
0
        return 1;
541
0
    if (email->data == NULL || email->length == 0)
542
0
        return 1;
543
0
    if (memchr(email->data, 0, email->length) != NULL)
544
0
        return 1;
545
0
    if (*sk == NULL)
546
0
        *sk = sk_OPENSSL_STRING_new(sk_strcmp);
547
0
    if (*sk == NULL)
548
0
        return 0;
549
550
0
    emtmp = OPENSSL_strndup((char *)email->data, email->length);
551
0
    if (emtmp == NULL) {
552
0
        X509_email_free(*sk);
553
0
        *sk = NULL;
554
0
        return 0;
555
0
    }
556
557
    /* Don't add duplicates */
558
0
    if (sk_OPENSSL_STRING_find(*sk, emtmp) != -1) {
559
0
        OPENSSL_free(emtmp);
560
0
        return 1;
561
0
    }
562
0
    if (!sk_OPENSSL_STRING_push(*sk, emtmp)) {
563
0
        OPENSSL_free(emtmp); /* free on push failure */
564
0
        X509_email_free(*sk);
565
0
        *sk = NULL;
566
0
        return 0;
567
0
    }
568
0
    return 1;
569
0
}
570
571
void X509_email_free(STACK_OF(OPENSSL_STRING) *sk)
572
0
{
573
0
    sk_OPENSSL_STRING_pop_free(sk, str_free);
574
0
}
575
576
typedef int (*equal_fn) (const unsigned char *pattern, size_t pattern_len,
577
                         const unsigned char *subject, size_t subject_len,
578
                         unsigned int flags);
579
580
/* Skip pattern prefix to match "wildcard" subject */
581
static void skip_prefix(const unsigned char **p, size_t *plen,
582
                        size_t subject_len,
583
                        unsigned int flags)
584
0
{
585
0
    const unsigned char *pattern = *p;
586
0
    size_t pattern_len = *plen;
587
588
    /*
589
     * If subject starts with a leading '.' followed by more octets, and
590
     * pattern is longer, compare just an equal-length suffix with the
591
     * full subject (starting at the '.'), provided the prefix contains
592
     * no NULs.
593
     */
594
0
    if ((flags & _X509_CHECK_FLAG_DOT_SUBDOMAINS) == 0)
595
0
        return;
596
597
0
    while (pattern_len > subject_len && *pattern) {
598
0
        if ((flags & X509_CHECK_FLAG_SINGLE_LABEL_SUBDOMAINS) &&
599
0
            *pattern == '.')
600
0
            break;
601
0
        ++pattern;
602
0
        --pattern_len;
603
0
    }
604
605
    /* Skip if entire prefix acceptable */
606
0
    if (pattern_len == subject_len) {
607
0
        *p = pattern;
608
0
        *plen = pattern_len;
609
0
    }
610
0
}
611
612
/* Compare while ASCII ignoring case. */
613
static int equal_nocase(const unsigned char *pattern, size_t pattern_len,
614
                        const unsigned char *subject, size_t subject_len,
615
                        unsigned int flags)
616
0
{
617
0
    skip_prefix(&pattern, &pattern_len, subject_len, flags);
618
0
    if (pattern_len != subject_len)
619
0
        return 0;
620
0
    while (pattern_len != 0) {
621
0
        unsigned char l = *pattern;
622
0
        unsigned char r = *subject;
623
624
        /* The pattern must not contain NUL characters. */
625
0
        if (l == 0)
626
0
            return 0;
627
0
        if (l != r) {
628
0
            if ('A' <= l && l <= 'Z')
629
0
                l = (l - 'A') + 'a';
630
0
            if ('A' <= r && r <= 'Z')
631
0
                r = (r - 'A') + 'a';
632
0
            if (l != r)
633
0
                return 0;
634
0
        }
635
0
        ++pattern;
636
0
        ++subject;
637
0
        --pattern_len;
638
0
    }
639
0
    return 1;
640
0
}
641
642
/* Compare using memcmp. */
643
static int equal_case(const unsigned char *pattern, size_t pattern_len,
644
                      const unsigned char *subject, size_t subject_len,
645
                      unsigned int flags)
646
0
{
647
0
    skip_prefix(&pattern, &pattern_len, subject_len, flags);
648
0
    if (pattern_len != subject_len)
649
0
        return 0;
650
0
    return !memcmp(pattern, subject, pattern_len);
651
0
}
652
653
/*
654
 * RFC 5280, section 7.5, requires that only the domain is compared in a
655
 * case-insensitive manner.
656
 */
657
static int equal_email(const unsigned char *a, size_t a_len,
658
                       const unsigned char *b, size_t b_len,
659
                       unsigned int unused_flags)
660
0
{
661
0
    size_t i = a_len;
662
663
0
    if (a_len != b_len)
664
0
        return 0;
665
    /*
666
     * We search backwards for the '@' character, so that we do not have to
667
     * deal with quoted local-parts.  The domain part is compared in a
668
     * case-insensitive manner.
669
     */
670
0
    while (i > 0) {
671
0
        --i;
672
0
        if (a[i] == '@' || b[i] == '@') {
673
0
            if (!equal_nocase(a + i, a_len - i, b + i, a_len - i, 0))
674
0
                return 0;
675
0
            break;
676
0
        }
677
0
    }
678
0
    if (i == 0)
679
0
        i = a_len;
680
0
    return equal_case(a, i, b, i, 0);
681
0
}
682
683
/*
684
 * Compare the prefix and suffix with the subject, and check that the
685
 * characters in-between are valid.
686
 */
687
static int wildcard_match(const unsigned char *prefix, size_t prefix_len,
688
                          const unsigned char *suffix, size_t suffix_len,
689
                          const unsigned char *subject, size_t subject_len,
690
                          unsigned int flags)
691
0
{
692
0
    const unsigned char *wildcard_start;
693
0
    const unsigned char *wildcard_end;
694
0
    const unsigned char *p;
695
0
    int allow_multi = 0;
696
0
    int allow_idna = 0;
697
698
0
    if (subject_len < prefix_len + suffix_len)
699
0
        return 0;
700
0
    if (!equal_nocase(prefix, prefix_len, subject, prefix_len, flags))
701
0
        return 0;
702
0
    wildcard_start = subject + prefix_len;
703
0
    wildcard_end = subject + (subject_len - suffix_len);
704
0
    if (!equal_nocase(wildcard_end, suffix_len, suffix, suffix_len, flags))
705
0
        return 0;
706
    /*
707
     * If the wildcard makes up the entire first label, it must match at
708
     * least one character.
709
     */
710
0
    if (prefix_len == 0 && *suffix == '.') {
711
0
        if (wildcard_start == wildcard_end)
712
0
            return 0;
713
0
        allow_idna = 1;
714
0
        if (flags & X509_CHECK_FLAG_MULTI_LABEL_WILDCARDS)
715
0
            allow_multi = 1;
716
0
    }
717
    /* IDNA labels cannot match partial wildcards */
718
0
    if (!allow_idna &&
719
0
        subject_len >= 4 && HAS_CASE_PREFIX((const char *)subject, "xn--"))
720
0
        return 0;
721
    /* The wildcard may match a literal '*' */
722
0
    if (wildcard_end == wildcard_start + 1 && *wildcard_start == '*')
723
0
        return 1;
724
    /*
725
     * Check that the part matched by the wildcard contains only
726
     * permitted characters and only matches a single label unless
727
     * allow_multi is set.
728
     */
729
0
    for (p = wildcard_start; p != wildcard_end; ++p)
730
0
        if (!(('0' <= *p && *p <= '9') ||
731
0
              ('A' <= *p && *p <= 'Z') ||
732
0
              ('a' <= *p && *p <= 'z') ||
733
0
              *p == '-' || (allow_multi && *p == '.')))
734
0
            return 0;
735
0
    return 1;
736
0
}
737
738
0
#define LABEL_START     (1 << 0)
739
#define LABEL_END       (1 << 1)
740
0
#define LABEL_HYPHEN    (1 << 2)
741
0
#define LABEL_IDNA      (1 << 3)
742
743
static const unsigned char *valid_star(const unsigned char *p, size_t len,
744
                                       unsigned int flags)
745
0
{
746
0
    const unsigned char *star = 0;
747
0
    size_t i;
748
0
    int state = LABEL_START;
749
0
    int dots = 0;
750
751
0
    for (i = 0; i < len; ++i) {
752
        /*
753
         * Locate first and only legal wildcard, either at the start
754
         * or end of a non-IDNA first and not final label.
755
         */
756
0
        if (p[i] == '*') {
757
0
            int atstart = (state & LABEL_START);
758
0
            int atend = (i == len - 1 || p[i + 1] == '.');
759
            /*-
760
             * At most one wildcard per pattern.
761
             * No wildcards in IDNA labels.
762
             * No wildcards after the first label.
763
             */
764
0
            if (star != NULL || (state & LABEL_IDNA) != 0 || dots)
765
0
                return NULL;
766
            /* Only full-label '*.example.com' wildcards? */
767
0
            if ((flags & X509_CHECK_FLAG_NO_PARTIAL_WILDCARDS)
768
0
                && (!atstart || !atend))
769
0
                return NULL;
770
            /* No 'foo*bar' wildcards */
771
0
            if (!atstart && !atend)
772
0
                return NULL;
773
0
            star = &p[i];
774
0
            state &= ~LABEL_START;
775
0
        } else if (('a' <= p[i] && p[i] <= 'z')
776
0
                   || ('A' <= p[i] && p[i] <= 'Z')
777
0
                   || ('0' <= p[i] && p[i] <= '9')) {
778
0
            if ((state & LABEL_START) != 0
779
0
                && len - i >= 4 && HAS_CASE_PREFIX((const char *)&p[i], "xn--"))
780
0
                state |= LABEL_IDNA;
781
0
            state &= ~(LABEL_HYPHEN | LABEL_START);
782
0
        } else if (p[i] == '.') {
783
0
            if ((state & (LABEL_HYPHEN | LABEL_START)) != 0)
784
0
                return NULL;
785
0
            state = LABEL_START;
786
0
            ++dots;
787
0
        } else if (p[i] == '-') {
788
            /* no domain/subdomain starts with '-' */
789
0
            if ((state & LABEL_START) != 0)
790
0
                return NULL;
791
0
            state |= LABEL_HYPHEN;
792
0
        } else {
793
0
            return NULL;
794
0
        }
795
0
    }
796
797
    /*
798
     * The final label must not end in a hyphen or ".", and
799
     * there must be at least two dots after the star.
800
     */
801
0
    if ((state & (LABEL_START | LABEL_HYPHEN)) != 0 || dots < 2)
802
0
        return NULL;
803
0
    return star;
804
0
}
805
806
/* Compare using wildcards. */
807
static int equal_wildcard(const unsigned char *pattern, size_t pattern_len,
808
                          const unsigned char *subject, size_t subject_len,
809
                          unsigned int flags)
810
0
{
811
0
    const unsigned char *star = NULL;
812
813
    /*
814
     * Subject names starting with '.' can only match a wildcard pattern
815
     * via a subject sub-domain pattern suffix match.
816
     */
817
0
    if (!(subject_len > 1 && subject[0] == '.'))
818
0
        star = valid_star(pattern, pattern_len, flags);
819
0
    if (star == NULL)
820
0
        return equal_nocase(pattern, pattern_len,
821
0
                            subject, subject_len, flags);
822
0
    return wildcard_match(pattern, star - pattern,
823
0
                          star + 1, (pattern + pattern_len) - star - 1,
824
0
                          subject, subject_len, flags);
825
0
}
826
827
/*
828
 * Compare an ASN1_STRING to a supplied string. If they match return 1. If
829
 * cmp_type > 0 only compare if string matches the type, otherwise convert it
830
 * to UTF8.
831
 */
832
833
static int do_check_string(const ASN1_STRING *a, int cmp_type, equal_fn equal,
834
                           unsigned int flags, const char *b, size_t blen,
835
                           char **peername)
836
0
{
837
0
    int rv = 0;
838
839
0
    if (!a->data || !a->length)
840
0
        return 0;
841
0
    if (cmp_type > 0) {
842
0
        if (cmp_type != a->type)
843
0
            return 0;
844
0
        if (cmp_type == V_ASN1_IA5STRING)
845
0
            rv = equal(a->data, a->length, (unsigned char *)b, blen, flags);
846
0
        else if (a->length == (int)blen && !memcmp(a->data, b, blen))
847
0
            rv = 1;
848
0
        if (rv > 0 && peername != NULL) {
849
0
            *peername = OPENSSL_strndup((char *)a->data, a->length);
850
0
            if (*peername == NULL)
851
0
                return -1;
852
0
        }
853
0
    } else {
854
0
        int astrlen;
855
0
        unsigned char *astr;
856
0
        astrlen = ASN1_STRING_to_UTF8(&astr, a);
857
0
        if (astrlen < 0) {
858
            /*
859
             * -1 could be an internal malloc failure or a decoding error from
860
             * malformed input; we can't distinguish.
861
             */
862
0
            return -1;
863
0
        }
864
0
        rv = equal(astr, astrlen, (unsigned char *)b, blen, flags);
865
0
        if (rv > 0 && peername != NULL) {
866
0
            *peername = OPENSSL_strndup((char *)astr, astrlen);
867
0
            if (*peername == NULL) {
868
0
                OPENSSL_free(astr);
869
0
                return -1;
870
0
            }
871
0
        }
872
0
        OPENSSL_free(astr);
873
0
    }
874
0
    return rv;
875
0
}
876
877
static int do_x509_check(X509 *x, const char *chk, size_t chklen,
878
                         unsigned int flags, int check_type, char **peername)
879
0
{
880
0
    GENERAL_NAMES *gens = NULL;
881
0
    const X509_NAME *name = NULL;
882
0
    int i;
883
0
    int cnid = NID_undef;
884
0
    int alt_type;
885
0
    int san_present = 0;
886
0
    int rv = 0;
887
0
    equal_fn equal;
888
889
    /* See below, this flag is internal-only */
890
0
    flags &= ~_X509_CHECK_FLAG_DOT_SUBDOMAINS;
891
0
    if (check_type == GEN_EMAIL) {
892
0
        cnid = NID_pkcs9_emailAddress;
893
0
        alt_type = V_ASN1_IA5STRING;
894
0
        equal = equal_email;
895
0
    } else if (check_type == GEN_DNS) {
896
0
        cnid = NID_commonName;
897
        /* Implicit client-side DNS sub-domain pattern */
898
0
        if (chklen > 1 && chk[0] == '.')
899
0
            flags |= _X509_CHECK_FLAG_DOT_SUBDOMAINS;
900
0
        alt_type = V_ASN1_IA5STRING;
901
0
        if (flags & X509_CHECK_FLAG_NO_WILDCARDS)
902
0
            equal = equal_nocase;
903
0
        else
904
0
            equal = equal_wildcard;
905
0
    } else {
906
0
        alt_type = V_ASN1_OCTET_STRING;
907
0
        equal = equal_case;
908
0
    }
909
910
0
    if (chklen == 0)
911
0
        chklen = strlen(chk);
912
913
0
    gens = X509_get_ext_d2i(x, NID_subject_alt_name, NULL, NULL);
914
0
    if (gens) {
915
0
        for (i = 0; i < sk_GENERAL_NAME_num(gens); i++) {
916
0
            GENERAL_NAME *gen;
917
0
            ASN1_STRING *cstr;
918
919
0
            gen = sk_GENERAL_NAME_value(gens, i);
920
0
            switch (gen->type) {
921
0
            default:
922
0
                continue;
923
0
            case GEN_OTHERNAME:
924
0
    switch (OBJ_obj2nid(gen->d.otherName->type_id)) {
925
0
                default:
926
0
                    continue;
927
0
                case NID_id_on_SmtpUTF8Mailbox:
928
                    /*-
929
                     * https://datatracker.ietf.org/doc/html/rfc8398#section-3
930
                     *
931
                     *   Due to name constraint compatibility reasons described
932
                     *   in Section 6, SmtpUTF8Mailbox subjectAltName MUST NOT
933
                     *   be used unless the local-part of the email address
934
                     *   contains non-ASCII characters. When the local-part is
935
                     *   ASCII, rfc822Name subjectAltName MUST be used instead
936
                     *   of SmtpUTF8Mailbox. This is compatible with legacy
937
                     *   software that supports only rfc822Name (and not
938
                     *   SmtpUTF8Mailbox). [...]
939
                     *
940
                     *   SmtpUTF8Mailbox is encoded as UTF8String.
941
                     *
942
                     * If it is not a UTF8String then that is unexpected, and
943
                     * we ignore the invalid SAN (neither set san_present nor
944
                     * consider it a candidate for equality).  This does mean
945
                     * that the subject CN may be considered, as would be the
946
                     * case when the malformed SmtpUtf8Mailbox SAN is instead
947
                     * simply absent.
948
                     *
949
                     * When CN-ID matching is not desirable, applications can
950
                     * choose to turn it off, doing so is at this time a best
951
                     * practice.
952
                     */
953
0
                    if (check_type != GEN_EMAIL
954
0
                        || gen->d.otherName->value->type != V_ASN1_UTF8STRING)
955
0
                        continue;
956
0
                    alt_type = 0;
957
0
                    cstr = gen->d.otherName->value->value.utf8string;
958
0
                    break;
959
0
                }
960
0
                break;
961
0
            case GEN_EMAIL:
962
0
                if (check_type != GEN_EMAIL)
963
0
                    continue;
964
0
                cstr = gen->d.rfc822Name;
965
0
                break;
966
0
            case GEN_DNS:
967
0
                if (check_type != GEN_DNS)
968
0
                    continue;
969
0
                cstr = gen->d.dNSName;
970
0
                break;
971
0
            case GEN_IPADD:
972
0
                if (check_type != GEN_IPADD)
973
0
                    continue;
974
0
                cstr = gen->d.iPAddress;
975
0
                break;
976
0
            }
977
0
            san_present = 1;
978
            /* Positive on success, negative on error! */
979
0
            if ((rv = do_check_string(cstr, alt_type, equal, flags,
980
0
                                      chk, chklen, peername)) != 0)
981
0
                break;
982
0
        }
983
0
        GENERAL_NAMES_free(gens);
984
0
        if (rv != 0)
985
0
            return rv;
986
0
        if (san_present && !(flags & X509_CHECK_FLAG_ALWAYS_CHECK_SUBJECT))
987
0
            return 0;
988
0
    }
989
990
    /* We're done if CN-ID is not pertinent */
991
0
    if (cnid == NID_undef || (flags & X509_CHECK_FLAG_NEVER_CHECK_SUBJECT))
992
0
        return 0;
993
994
0
    i = -1;
995
0
    name = X509_get_subject_name(x);
996
0
    while ((i = X509_NAME_get_index_by_NID(name, cnid, i)) >= 0) {
997
0
        const X509_NAME_ENTRY *ne = X509_NAME_get_entry(name, i);
998
0
        const ASN1_STRING *str = X509_NAME_ENTRY_get_data(ne);
999
1000
        /* Positive on success, negative on error! */
1001
0
        if ((rv = do_check_string(str, -1, equal, flags,
1002
0
                                  chk, chklen, peername)) != 0)
1003
0
            return rv;
1004
0
    }
1005
0
    return 0;
1006
0
}
1007
1008
int X509_check_host(X509 *x, const char *chk, size_t chklen,
1009
                    unsigned int flags, char **peername)
1010
0
{
1011
0
    if (chk == NULL)
1012
0
        return -2;
1013
    /*
1014
     * Embedded NULs are disallowed, except as the last character of a
1015
     * string of length 2 or more (tolerate caller including terminating
1016
     * NUL in string length).
1017
     */
1018
0
    if (chklen == 0)
1019
0
        chklen = strlen(chk);
1020
0
    else if (memchr(chk, '\0', chklen > 1 ? chklen - 1 : chklen))
1021
0
        return -2;
1022
0
    if (chklen > 1 && chk[chklen - 1] == '\0')
1023
0
        --chklen;
1024
0
    return do_x509_check(x, chk, chklen, flags, GEN_DNS, peername);
1025
0
}
1026
1027
int X509_check_email(X509 *x, const char *chk, size_t chklen,
1028
                     unsigned int flags)
1029
0
{
1030
0
    if (chk == NULL)
1031
0
        return -2;
1032
    /*
1033
     * Embedded NULs are disallowed, except as the last character of a
1034
     * string of length 2 or more (tolerate caller including terminating
1035
     * NUL in string length).
1036
     */
1037
0
    if (chklen == 0)
1038
0
        chklen = strlen((char *)chk);
1039
0
    else if (memchr(chk, '\0', chklen > 1 ? chklen - 1 : chklen))
1040
0
        return -2;
1041
0
    if (chklen > 1 && chk[chklen - 1] == '\0')
1042
0
        --chklen;
1043
0
    return do_x509_check(x, chk, chklen, flags, GEN_EMAIL, NULL);
1044
0
}
1045
1046
int X509_check_ip(X509 *x, const unsigned char *chk, size_t chklen,
1047
                  unsigned int flags)
1048
0
{
1049
0
    if (chk == NULL)
1050
0
        return -2;
1051
0
    return do_x509_check(x, (char *)chk, chklen, flags, GEN_IPADD, NULL);
1052
0
}
1053
1054
int X509_check_ip_asc(X509 *x, const char *ipasc, unsigned int flags)
1055
0
{
1056
0
    unsigned char ipout[16];
1057
0
    size_t iplen;
1058
1059
0
    if (ipasc == NULL)
1060
0
        return -2;
1061
0
    iplen = (size_t)ossl_a2i_ipadd(ipout, ipasc);
1062
0
    if (iplen == 0)
1063
0
        return -2;
1064
0
    return do_x509_check(x, (char *)ipout, iplen, flags, GEN_IPADD, NULL);
1065
0
}
1066
1067
char *ossl_ipaddr_to_asc(unsigned char *p, int len)
1068
0
{
1069
    /*
1070
     * 40 is enough space for the longest IPv6 address + nul terminator byte
1071
     * XXXX:XXXX:XXXX:XXXX:XXXX:XXXX:XXXX:XXXX\0
1072
     */
1073
0
    char buf[40], *out;
1074
0
    int i = 0, remain = 0, bytes = 0;
1075
1076
0
    switch (len) {
1077
0
    case 4: /* IPv4 */
1078
0
        BIO_snprintf(buf, sizeof(buf), "%d.%d.%d.%d", p[0], p[1], p[2], p[3]);
1079
0
        break;
1080
0
    case 16: /* IPv6 */
1081
0
        for (out = buf, i = 8, remain = sizeof(buf);
1082
0
             i-- > 0 && bytes >= 0;
1083
0
             remain -= bytes, out += bytes) {
1084
0
            const char *template = (i > 0 ? "%X:" : "%X");
1085
1086
0
            bytes = BIO_snprintf(out, remain, template, p[0] << 8 | p[1]);
1087
0
            p += 2;
1088
0
        }
1089
0
        break;
1090
0
    default:
1091
0
        BIO_snprintf(buf, sizeof(buf), "<invalid length=%d>", len);
1092
0
        break;
1093
0
    }
1094
0
    return OPENSSL_strdup(buf);
1095
0
}
1096
1097
/*
1098
 * Convert IP addresses both IPv4 and IPv6 into an OCTET STRING compatible
1099
 * with RFC3280.
1100
 */
1101
1102
ASN1_OCTET_STRING *a2i_IPADDRESS(const char *ipasc)
1103
0
{
1104
0
    unsigned char ipout[16];
1105
0
    ASN1_OCTET_STRING *ret;
1106
0
    int iplen;
1107
1108
    /* If string contains a ':' assume IPv6 */
1109
1110
0
    iplen = ossl_a2i_ipadd(ipout, ipasc);
1111
1112
0
    if (!iplen)
1113
0
        return NULL;
1114
1115
0
    ret = ASN1_OCTET_STRING_new();
1116
0
    if (ret == NULL)
1117
0
        return NULL;
1118
0
    if (!ASN1_OCTET_STRING_set(ret, ipout, iplen)) {
1119
0
        ASN1_OCTET_STRING_free(ret);
1120
0
        return NULL;
1121
0
    }
1122
0
    return ret;
1123
0
}
1124
1125
ASN1_OCTET_STRING *a2i_IPADDRESS_NC(const char *ipasc)
1126
0
{
1127
0
    ASN1_OCTET_STRING *ret = NULL;
1128
0
    unsigned char ipout[32];
1129
0
    char *iptmp = NULL, *p;
1130
0
    int iplen1, iplen2;
1131
1132
0
    p = strchr(ipasc, '/');
1133
0
    if (p == NULL)
1134
0
        return NULL;
1135
0
    iptmp = OPENSSL_strdup(ipasc);
1136
0
    if (iptmp == NULL)
1137
0
        return NULL;
1138
0
    p = iptmp + (p - ipasc);
1139
0
    *p++ = 0;
1140
1141
0
    iplen1 = ossl_a2i_ipadd(ipout, iptmp);
1142
1143
0
    if (!iplen1)
1144
0
        goto err;
1145
1146
0
    iplen2 = ossl_a2i_ipadd(ipout + iplen1, p);
1147
1148
0
    OPENSSL_free(iptmp);
1149
0
    iptmp = NULL;
1150
1151
0
    if (!iplen2 || (iplen1 != iplen2))
1152
0
        goto err;
1153
1154
0
    ret = ASN1_OCTET_STRING_new();
1155
0
    if (ret == NULL)
1156
0
        goto err;
1157
0
    if (!ASN1_OCTET_STRING_set(ret, ipout, iplen1 + iplen2))
1158
0
        goto err;
1159
1160
0
    return ret;
1161
1162
0
 err:
1163
0
    OPENSSL_free(iptmp);
1164
0
    ASN1_OCTET_STRING_free(ret);
1165
0
    return NULL;
1166
0
}
1167
1168
int ossl_a2i_ipadd(unsigned char *ipout, const char *ipasc)
1169
0
{
1170
    /* If string contains a ':' assume IPv6 */
1171
1172
0
    if (strchr(ipasc, ':')) {
1173
0
        if (!ipv6_from_asc(ipout, ipasc))
1174
0
            return 0;
1175
0
        return 16;
1176
0
    } else {
1177
0
        if (!ipv4_from_asc(ipout, ipasc))
1178
0
            return 0;
1179
0
        return 4;
1180
0
    }
1181
0
}
1182
1183
/*
1184
 * get_ipv4_component consumes one IPv4 component, terminated by either '.' or
1185
 * the end of the string, from *str. On success, it returns one, sets *out
1186
 * to the component, and advances *str to the first unconsumed character. On
1187
 * invalid input, it returns zero.
1188
 */
1189
0
static int get_ipv4_component(uint8_t *out_byte, const char **str) {
1190
    /* Store a slightly larger intermediary so the overflow check is easier. */
1191
0
    uint32_t out = 0;
1192
1193
0
    for (;;) {
1194
0
        if (!ossl_isdigit(**str)) {
1195
0
            return 0;
1196
0
        }
1197
0
        out = (out * 10) + (**str - '0');
1198
0
        if (out > 255) {
1199
            /* Components must be 8-bit. */
1200
0
            return 0;
1201
0
        }
1202
0
        (*str)++;
1203
0
        if ((**str) == '.' || (**str) == '\0') {
1204
0
            *out_byte = (uint8_t)out;
1205
0
            return 1;
1206
0
        }
1207
0
        if (out == 0) {
1208
      /* Reject extra leading zeros. Parsers sometimes treat them as
1209
             * octal, so accepting them would misinterpret input.
1210
             */
1211
0
            return 0;
1212
0
        }
1213
0
    }
1214
0
}
1215
1216
/*
1217
 * get_ipv4_dot consumes a '.' from *str and advances it. It returns one on
1218
 * success and zero if *str does not point to a '.'.
1219
 */
1220
static int get_ipv4_dot(const char **str)
1221
0
{
1222
0
    if (**str != '.') {
1223
0
        return 0;
1224
0
    }
1225
0
    (*str)++;
1226
0
    return 1;
1227
0
}
1228
1229
static int ipv4_from_asc(unsigned char *v4, const char *in)
1230
0
{
1231
0
    if (!get_ipv4_component(&v4[0], &in) || !get_ipv4_dot(&in)
1232
0
        || !get_ipv4_component(&v4[1], &in) || !get_ipv4_dot(&in)
1233
0
        || !get_ipv4_component(&v4[2], &in) || !get_ipv4_dot(&in)
1234
0
        || !get_ipv4_component(&v4[3], &in) || *in != '\0') {
1235
0
         return 0;
1236
0
    }
1237
0
    return 1;
1238
0
}
1239
1240
typedef struct {
1241
    /* Temporary store for IPV6 output */
1242
    unsigned char tmp[16];
1243
    /* Total number of bytes in tmp */
1244
    int total;
1245
    /* The position of a zero (corresponding to '::') */
1246
    int zero_pos;
1247
    /* Number of zeroes */
1248
    int zero_cnt;
1249
} IPV6_STAT;
1250
1251
static int ipv6_from_asc(unsigned char *v6, const char *in)
1252
0
{
1253
0
    IPV6_STAT v6stat;
1254
1255
0
    v6stat.total = 0;
1256
0
    v6stat.zero_pos = -1;
1257
0
    v6stat.zero_cnt = 0;
1258
    /*
1259
     * Treat the IPv6 representation as a list of values separated by ':'.
1260
     * The presence of a '::' will parse as one, two or three zero length
1261
     * elements.
1262
     */
1263
0
    if (!CONF_parse_list(in, ':', 0, ipv6_cb, &v6stat))
1264
0
        return 0;
1265
1266
    /* Now for some sanity checks */
1267
1268
0
    if (v6stat.zero_pos == -1) {
1269
        /* If no '::' must have exactly 16 bytes */
1270
0
        if (v6stat.total != 16)
1271
0
            return 0;
1272
0
    } else {
1273
        /* If '::' must have less than 16 bytes */
1274
0
        if (v6stat.total == 16)
1275
0
            return 0;
1276
        /* More than three zeroes is an error */
1277
0
        if (v6stat.zero_cnt > 3) {
1278
0
            return 0;
1279
        /* Can only have three zeroes if nothing else present */
1280
0
        } else if (v6stat.zero_cnt == 3) {
1281
0
            if (v6stat.total > 0)
1282
0
                return 0;
1283
0
        } else if (v6stat.zero_cnt == 2) {
1284
            /* Can only have two zeroes if at start or end */
1285
0
            if ((v6stat.zero_pos != 0)
1286
0
                && (v6stat.zero_pos != v6stat.total))
1287
0
                return 0;
1288
0
        } else {
1289
            /* Can only have one zero if *not* start or end */
1290
0
            if ((v6stat.zero_pos == 0)
1291
0
                || (v6stat.zero_pos == v6stat.total))
1292
0
                return 0;
1293
0
        }
1294
0
    }
1295
1296
    /* Format result */
1297
1298
0
    if (v6stat.zero_pos >= 0) {
1299
        /* Copy initial part */
1300
0
        memcpy(v6, v6stat.tmp, v6stat.zero_pos);
1301
        /* Zero middle */
1302
0
        memset(v6 + v6stat.zero_pos, 0, 16 - v6stat.total);
1303
        /* Copy final part */
1304
0
        if (v6stat.total != v6stat.zero_pos)
1305
0
            memcpy(v6 + v6stat.zero_pos + 16 - v6stat.total,
1306
0
                   v6stat.tmp + v6stat.zero_pos,
1307
0
                   v6stat.total - v6stat.zero_pos);
1308
0
    } else {
1309
0
        memcpy(v6, v6stat.tmp, 16);
1310
0
    }
1311
1312
0
    return 1;
1313
0
}
1314
1315
static int ipv6_cb(const char *elem, int len, void *usr)
1316
0
{
1317
0
    IPV6_STAT *s = usr;
1318
1319
    /* Error if 16 bytes written */
1320
0
    if (s->total == 16)
1321
0
        return 0;
1322
0
    if (len == 0) {
1323
        /* Zero length element, corresponds to '::' */
1324
0
        if (s->zero_pos == -1)
1325
0
            s->zero_pos = s->total;
1326
        /* If we've already got a :: its an error */
1327
0
        else if (s->zero_pos != s->total)
1328
0
            return 0;
1329
0
        s->zero_cnt++;
1330
0
    } else {
1331
        /* If more than 4 characters could be final a.b.c.d form */
1332
0
        if (len > 4) {
1333
            /* Need at least 4 bytes left */
1334
0
            if (s->total > 12)
1335
0
                return 0;
1336
            /* Must be end of string */
1337
0
            if (elem[len])
1338
0
                return 0;
1339
0
            if (!ipv4_from_asc(s->tmp + s->total, elem))
1340
0
                return 0;
1341
0
            s->total += 4;
1342
0
        } else {
1343
0
            if (!ipv6_hex(s->tmp + s->total, elem, len))
1344
0
                return 0;
1345
0
            s->total += 2;
1346
0
        }
1347
0
    }
1348
0
    return 1;
1349
0
}
1350
1351
/*
1352
 * Convert a string of up to 4 hex digits into the corresponding IPv6 form.
1353
 */
1354
1355
static int ipv6_hex(unsigned char *out, const char *in, int inlen)
1356
0
{
1357
0
    unsigned char c;
1358
0
    unsigned int num = 0;
1359
0
    int x;
1360
1361
0
    if (inlen > 4)
1362
0
        return 0;
1363
0
    while (inlen--) {
1364
0
        c = *in++;
1365
0
        num <<= 4;
1366
0
        x = OPENSSL_hexchar2int(c);
1367
0
        if (x < 0)
1368
0
            return 0;
1369
0
        num |= (char)x;
1370
0
    }
1371
0
    out[0] = num >> 8;
1372
0
    out[1] = num & 0xff;
1373
0
    return 1;
1374
0
}
1375
1376
int X509V3_NAME_from_section(X509_NAME *nm, STACK_OF(CONF_VALUE) *dn_sk,
1377
                             unsigned long chtype)
1378
0
{
1379
0
    CONF_VALUE *v;
1380
0
    int i, mval, spec_char, plus_char;
1381
0
    char *p, *type;
1382
1383
0
    if (!nm)
1384
0
        return 0;
1385
1386
0
    for (i = 0; i < sk_CONF_VALUE_num(dn_sk); i++) {
1387
0
        v = sk_CONF_VALUE_value(dn_sk, i);
1388
0
        type = v->name;
1389
        /*
1390
         * Skip past any leading X. X: X, etc to allow for multiple instances
1391
         */
1392
0
        for (p = type; *p; p++) {
1393
0
#ifndef CHARSET_EBCDIC
1394
0
            spec_char = ((*p == ':') || (*p == ',') || (*p == '.'));
1395
#else
1396
            spec_char = ((*p == os_toascii[':']) || (*p == os_toascii[','])
1397
                         || (*p == os_toascii['.']));
1398
#endif
1399
0
            if (spec_char) {
1400
0
                p++;
1401
0
                if (*p)
1402
0
                    type = p;
1403
0
                break;
1404
0
            }
1405
0
        }
1406
0
#ifndef CHARSET_EBCDIC
1407
0
        plus_char = (*type == '+');
1408
#else
1409
        plus_char = (*type == os_toascii['+']);
1410
#endif
1411
0
        if (plus_char) {
1412
0
            mval = -1;
1413
0
            type++;
1414
0
        } else {
1415
0
            mval = 0;
1416
0
        }
1417
0
        if (!X509_NAME_add_entry_by_txt(nm, type, chtype,
1418
0
                                        (unsigned char *)v->value, -1, -1,
1419
0
                                        mval))
1420
0
            return 0;
1421
1422
0
    }
1423
0
    return 1;
1424
0
}
1425
1426
int OSSL_GENERAL_NAMES_print(BIO *out, GENERAL_NAMES *gens, int indent)
1427
0
{
1428
0
    int i;
1429
1430
0
    for (i = 0; i < sk_GENERAL_NAME_num(gens); i++) {
1431
0
        if (i > 0)
1432
0
            BIO_puts(out, "\n");
1433
0
        BIO_printf(out, "%*s", indent + 2, "");
1434
0
        GENERAL_NAME_print(out, sk_GENERAL_NAME_value(gens, i));
1435
0
    }
1436
0
    return 1;
1437
0
}
1438
1439
int ossl_bio_print_hex(BIO *out, unsigned char *buf, int len)
1440
0
{
1441
0
    int result;
1442
0
    char *hexbuf;
1443
1444
0
    if (len == 0)
1445
0
        return 1;
1446
1447
0
    hexbuf = OPENSSL_buf2hexstr(buf, len);
1448
0
    if (hexbuf == NULL)
1449
0
        return 0;
1450
0
    result = BIO_puts(out, hexbuf) > 0;
1451
1452
0
    OPENSSL_free(hexbuf);
1453
0
    return result;
1454
0
}