1 /* v3_utl.c */
2 /* Written by Dr Stephen N Henson (steve@openssl.org) for the OpenSSL
3 * project.
4 */
5 /* ====================================================================
6 * Copyright (c) 1999-2003 The OpenSSL Project. All rights reserved.
7 *
8 * Redistribution and use in source and binary forms, with or without
9 * modification, are permitted provided that the following conditions
10 * are met:
11 *
12 * 1. Redistributions of source code must retain the above copyright
13 * notice, this list of conditions and the following disclaimer.
14 *
15 * 2. Redistributions in binary form must reproduce the above copyright
16 * notice, this list of conditions and the following disclaimer in
17 * the documentation and/or other materials provided with the
18 * distribution.
19 *
20 * 3. All advertising materials mentioning features or use of this
21 * software must display the following acknowledgment:
22 * "This product includes software developed by the OpenSSL Project
23 * for use in the OpenSSL Toolkit. (http://www.OpenSSL.org/)"
24 *
25 * 4. The names "OpenSSL Toolkit" and "OpenSSL Project" must not be used to
26 * endorse or promote products derived from this software without
27 * prior written permission. For written permission, please contact
28 * licensing@OpenSSL.org.
29 *
30 * 5. Products derived from this software may not be called "OpenSSL"
31 * nor may "OpenSSL" appear in their names without prior written
32 * permission of the OpenSSL Project.
33 *
34 * 6. Redistributions of any form whatsoever must retain the following
35 * acknowledgment:
36 * "This product includes software developed by the OpenSSL Project
37 * for use in the OpenSSL Toolkit (http://www.OpenSSL.org/)"
38 *
39 * THIS SOFTWARE IS PROVIDED BY THE OpenSSL PROJECT ``AS IS'' AND ANY
40 * EXPRESSED OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
41 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
42 * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE OpenSSL PROJECT OR
43 * ITS CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
44 * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
45 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
46 * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
47 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT,
48 * STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
49 * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED
50 * OF THE POSSIBILITY OF SUCH DAMAGE.
51 * ====================================================================
52 *
53 * This product includes cryptographic software written by Eric Young
54 * (eay@cryptsoft.com). This product includes software written by Tim
55 * Hudson (tjh@cryptsoft.com).
56 *
57 */
58 /* X509 v3 extension utilities */
59
60
61 #include <ctype.h>
62 #include <stdio.h>
63 #include <string.h>
64
65 #include <openssl/bn.h>
66 #include <openssl/buf.h>
67 #include <openssl/conf.h>
68 #include <openssl/err.h>
69 #include <openssl/mem.h>
70 #include <openssl/obj.h>
71 #include <openssl/x509v3.h>
72
73 #include "../conf/internal.h"
74
75
76 static char *strip_spaces(char *name);
77 static int sk_strcmp(const OPENSSL_STRING *a, const OPENSSL_STRING *b);
78 static STACK_OF(OPENSSL_STRING) *get_email(X509_NAME *name, GENERAL_NAMES *gens);
79 static void str_free(OPENSSL_STRING str);
80 static int append_ia5(STACK_OF(OPENSSL_STRING) **sk, ASN1_IA5STRING *email);
81
82 static int ipv4_from_asc(unsigned char *v4, const char *in);
83 static int ipv6_from_asc(unsigned char *v6, const char *in);
84 static int ipv6_cb(const char *elem, int len, void *usr);
85 static int ipv6_hex(unsigned char *out, const char *in, int inlen);
86
87 /* Add a CONF_VALUE name value pair to stack */
88
X509V3_add_value(const char * name,const char * value,STACK_OF (CONF_VALUE)** extlist)89 int X509V3_add_value(const char *name, const char *value,
90 STACK_OF(CONF_VALUE) **extlist)
91 {
92 CONF_VALUE *vtmp = NULL;
93 char *tname = NULL, *tvalue = NULL;
94 if(name && !(tname = BUF_strdup(name))) goto err;
95 if(value && !(tvalue = BUF_strdup(value))) goto err;
96 if(!(vtmp = CONF_VALUE_new())) goto err;
97 if(!*extlist && !(*extlist = sk_CONF_VALUE_new_null())) goto err;
98 vtmp->section = NULL;
99 vtmp->name = tname;
100 vtmp->value = tvalue;
101 if(!sk_CONF_VALUE_push(*extlist, vtmp)) goto err;
102 return 1;
103 err:
104 OPENSSL_PUT_ERROR(X509V3, ERR_R_MALLOC_FAILURE);
105 if(vtmp) OPENSSL_free(vtmp);
106 if(tname) OPENSSL_free(tname);
107 if(tvalue) OPENSSL_free(tvalue);
108 return 0;
109 }
110
X509V3_add_value_uchar(const char * name,const unsigned char * value,STACK_OF (CONF_VALUE)** extlist)111 int X509V3_add_value_uchar(const char *name, const unsigned char *value,
112 STACK_OF(CONF_VALUE) **extlist)
113 {
114 return X509V3_add_value(name,(const char *)value,extlist);
115 }
116
117 /* Free function for STACK_OF(CONF_VALUE) */
118
X509V3_conf_free(CONF_VALUE * conf)119 void X509V3_conf_free(CONF_VALUE *conf)
120 {
121 if(!conf) return;
122 if(conf->name) OPENSSL_free(conf->name);
123 if(conf->value) OPENSSL_free(conf->value);
124 if(conf->section) OPENSSL_free(conf->section);
125 OPENSSL_free(conf);
126 }
127
X509V3_add_value_bool(const char * name,int asn1_bool,STACK_OF (CONF_VALUE)** extlist)128 int X509V3_add_value_bool(const char *name, int asn1_bool,
129 STACK_OF(CONF_VALUE) **extlist)
130 {
131 if(asn1_bool) return X509V3_add_value(name, "TRUE", extlist);
132 return X509V3_add_value(name, "FALSE", extlist);
133 }
134
X509V3_add_value_bool_nf(char * name,int asn1_bool,STACK_OF (CONF_VALUE)** extlist)135 int X509V3_add_value_bool_nf(char *name, int asn1_bool,
136 STACK_OF(CONF_VALUE) **extlist)
137 {
138 if(asn1_bool) return X509V3_add_value(name, "TRUE", extlist);
139 return 1;
140 }
141
142
i2s_ASN1_ENUMERATED(X509V3_EXT_METHOD * method,ASN1_ENUMERATED * a)143 char *i2s_ASN1_ENUMERATED(X509V3_EXT_METHOD *method, ASN1_ENUMERATED *a)
144 {
145 BIGNUM *bntmp = NULL;
146 char *strtmp = NULL;
147 if(!a) return NULL;
148 if(!(bntmp = ASN1_ENUMERATED_to_BN(a, NULL)) ||
149 !(strtmp = BN_bn2dec(bntmp)) )
150 OPENSSL_PUT_ERROR(X509V3, ERR_R_MALLOC_FAILURE);
151 BN_free(bntmp);
152 return strtmp;
153 }
154
i2s_ASN1_INTEGER(X509V3_EXT_METHOD * method,ASN1_INTEGER * a)155 char *i2s_ASN1_INTEGER(X509V3_EXT_METHOD *method, ASN1_INTEGER *a)
156 {
157 BIGNUM *bntmp = NULL;
158 char *strtmp = NULL;
159 if(!a) return NULL;
160 if(!(bntmp = ASN1_INTEGER_to_BN(a, NULL)) ||
161 !(strtmp = BN_bn2dec(bntmp)) )
162 OPENSSL_PUT_ERROR(X509V3, ERR_R_MALLOC_FAILURE);
163 BN_free(bntmp);
164 return strtmp;
165 }
166
s2i_ASN1_INTEGER(X509V3_EXT_METHOD * method,char * value)167 ASN1_INTEGER *s2i_ASN1_INTEGER(X509V3_EXT_METHOD *method, char *value)
168 {
169 BIGNUM *bn = NULL;
170 ASN1_INTEGER *aint;
171 int isneg, ishex;
172 int ret;
173 if (!value) {
174 OPENSSL_PUT_ERROR(X509V3, X509V3_R_INVALID_NULL_VALUE);
175 return 0;
176 }
177 bn = BN_new();
178 if (value[0] == '-') {
179 value++;
180 isneg = 1;
181 } else isneg = 0;
182
183 if (value[0] == '0' && ((value[1] == 'x') || (value[1] == 'X'))) {
184 value += 2;
185 ishex = 1;
186 } else ishex = 0;
187
188 if (ishex) ret = BN_hex2bn(&bn, value);
189 else ret = BN_dec2bn(&bn, value);
190
191 if (!ret || value[ret]) {
192 BN_free(bn);
193 OPENSSL_PUT_ERROR(X509V3, X509V3_R_BN_DEC2BN_ERROR);
194 return 0;
195 }
196
197 if (isneg && BN_is_zero(bn)) isneg = 0;
198
199 aint = BN_to_ASN1_INTEGER(bn, NULL);
200 BN_free(bn);
201 if (!aint) {
202 OPENSSL_PUT_ERROR(X509V3, X509V3_R_BN_TO_ASN1_INTEGER_ERROR);
203 return 0;
204 }
205 if (isneg) aint->type |= V_ASN1_NEG;
206 return aint;
207 }
208
X509V3_add_value_int(const char * name,ASN1_INTEGER * aint,STACK_OF (CONF_VALUE)** extlist)209 int X509V3_add_value_int(const char *name, ASN1_INTEGER *aint,
210 STACK_OF(CONF_VALUE) **extlist)
211 {
212 char *strtmp;
213 int ret;
214 if(!aint) return 1;
215 if(!(strtmp = i2s_ASN1_INTEGER(NULL, aint))) return 0;
216 ret = X509V3_add_value(name, strtmp, extlist);
217 OPENSSL_free(strtmp);
218 return ret;
219 }
220
X509V3_get_value_bool(CONF_VALUE * value,int * asn1_bool)221 int X509V3_get_value_bool(CONF_VALUE *value, int *asn1_bool)
222 {
223 char *btmp;
224 if(!(btmp = value->value)) goto err;
225 if(!strcmp(btmp, "TRUE") || !strcmp(btmp, "true")
226 || !strcmp(btmp, "Y") || !strcmp(btmp, "y")
227 || !strcmp(btmp, "YES") || !strcmp(btmp, "yes")) {
228 *asn1_bool = 0xff;
229 return 1;
230 } else if(!strcmp(btmp, "FALSE") || !strcmp(btmp, "false")
231 || !strcmp(btmp, "N") || !strcmp(btmp, "n")
232 || !strcmp(btmp, "NO") || !strcmp(btmp, "no")) {
233 *asn1_bool = 0;
234 return 1;
235 }
236 err:
237 OPENSSL_PUT_ERROR(X509V3, X509V3_R_INVALID_BOOLEAN_STRING);
238 X509V3_conf_err(value);
239 return 0;
240 }
241
X509V3_get_value_int(CONF_VALUE * value,ASN1_INTEGER ** aint)242 int X509V3_get_value_int(CONF_VALUE *value, ASN1_INTEGER **aint)
243 {
244 ASN1_INTEGER *itmp;
245 if(!(itmp = s2i_ASN1_INTEGER(NULL, value->value))) {
246 X509V3_conf_err(value);
247 return 0;
248 }
249 *aint = itmp;
250 return 1;
251 }
252
253 #define HDR_NAME 1
254 #define HDR_VALUE 2
255
256 /*#define DEBUG*/
257
STACK_OF(CONF_VALUE)258 STACK_OF(CONF_VALUE) *X509V3_parse_list(const char *line)
259 {
260 char *p, *q, c;
261 char *ntmp, *vtmp;
262 STACK_OF(CONF_VALUE) *values = NULL;
263 char *linebuf;
264 int state;
265 /* We are going to modify the line so copy it first */
266 linebuf = BUF_strdup(line);
267 if (linebuf == NULL)
268 {
269 OPENSSL_PUT_ERROR(X509V3, ERR_R_MALLOC_FAILURE);
270 goto err;
271 }
272 state = HDR_NAME;
273 ntmp = NULL;
274 /* Go through all characters */
275 for(p = linebuf, q = linebuf; (c = *p) && (c!='\r') && (c!='\n'); p++) {
276
277 switch(state) {
278 case HDR_NAME:
279 if(c == ':') {
280 state = HDR_VALUE;
281 *p = 0;
282 ntmp = strip_spaces(q);
283 if(!ntmp) {
284 OPENSSL_PUT_ERROR(X509V3, X509V3_R_INVALID_NULL_NAME);
285 goto err;
286 }
287 q = p + 1;
288 } else if(c == ',') {
289 *p = 0;
290 ntmp = strip_spaces(q);
291 q = p + 1;
292 #if 0
293 printf("%s\n", ntmp);
294 #endif
295 if(!ntmp) {
296 OPENSSL_PUT_ERROR(X509V3, X509V3_R_INVALID_NULL_NAME);
297 goto err;
298 }
299 X509V3_add_value(ntmp, NULL, &values);
300 }
301 break ;
302
303 case HDR_VALUE:
304 if(c == ',') {
305 state = HDR_NAME;
306 *p = 0;
307 vtmp = strip_spaces(q);
308 #if 0
309 printf("%s\n", ntmp);
310 #endif
311 if(!vtmp) {
312 OPENSSL_PUT_ERROR(X509V3, X509V3_R_INVALID_NULL_VALUE);
313 goto err;
314 }
315 X509V3_add_value(ntmp, vtmp, &values);
316 ntmp = NULL;
317 q = p + 1;
318 }
319
320 }
321 }
322
323 if(state == HDR_VALUE) {
324 vtmp = strip_spaces(q);
325 #if 0
326 printf("%s=%s\n", ntmp, vtmp);
327 #endif
328 if(!vtmp) {
329 OPENSSL_PUT_ERROR(X509V3, X509V3_R_INVALID_NULL_VALUE);
330 goto err;
331 }
332 X509V3_add_value(ntmp, vtmp, &values);
333 } else {
334 ntmp = strip_spaces(q);
335 #if 0
336 printf("%s\n", ntmp);
337 #endif
338 if(!ntmp) {
339 OPENSSL_PUT_ERROR(X509V3, X509V3_R_INVALID_NULL_NAME);
340 goto err;
341 }
342 X509V3_add_value(ntmp, NULL, &values);
343 }
344 OPENSSL_free(linebuf);
345 return values;
346
347 err:
348 OPENSSL_free(linebuf);
349 sk_CONF_VALUE_pop_free(values, X509V3_conf_free);
350 return NULL;
351
352 }
353
354 /* Delete leading and trailing spaces from a string */
strip_spaces(char * name)355 static char *strip_spaces(char *name)
356 {
357 char *p, *q;
358 /* Skip over leading spaces */
359 p = name;
360 while(*p && isspace((unsigned char)*p)) p++;
361 if(!*p) return NULL;
362 q = p + strlen(p) - 1;
363 while((q != p) && isspace((unsigned char)*q)) q--;
364 if(p != q) q[1] = 0;
365 if(!*p) return NULL;
366 return p;
367 }
368
369 /* hex string utilities */
370
371 /* Given a buffer of length 'len' return a OPENSSL_malloc'ed string with its
372 * hex representation
373 * @@@ (Contents of buffer are always kept in ASCII, also on EBCDIC machines)
374 */
375
hex_to_string(const unsigned char * buffer,long len)376 char *hex_to_string(const unsigned char *buffer, long len)
377 {
378 char *tmp, *q;
379 const unsigned char *p;
380 int i;
381 static const char hexdig[] = "0123456789ABCDEF";
382 if(!buffer || !len) return NULL;
383 if(!(tmp = OPENSSL_malloc(len * 3 + 1))) {
384 OPENSSL_PUT_ERROR(X509V3, ERR_R_MALLOC_FAILURE);
385 return NULL;
386 }
387 q = tmp;
388 for(i = 0, p = buffer; i < len; i++,p++) {
389 *q++ = hexdig[(*p >> 4) & 0xf];
390 *q++ = hexdig[*p & 0xf];
391 *q++ = ':';
392 }
393 q[-1] = 0;
394
395 return tmp;
396 }
397
398 /* Give a string of hex digits convert to
399 * a buffer
400 */
401
string_to_hex(const char * str,long * len)402 unsigned char *string_to_hex(const char *str, long *len)
403 {
404 unsigned char *hexbuf, *q;
405 unsigned char ch, cl, *p;
406 if(!str) {
407 OPENSSL_PUT_ERROR(X509V3, X509V3_R_INVALID_NULL_ARGUMENT);
408 return NULL;
409 }
410 if(!(hexbuf = OPENSSL_malloc(strlen(str) >> 1))) goto err;
411 for(p = (unsigned char *)str, q = hexbuf; *p;) {
412 ch = *p++;
413 if(ch == ':') continue;
414 cl = *p++;
415 if(!cl) {
416 OPENSSL_PUT_ERROR(X509V3, X509V3_R_ODD_NUMBER_OF_DIGITS);
417 OPENSSL_free(hexbuf);
418 return NULL;
419 }
420 if(isupper(ch)) ch = tolower(ch);
421 if(isupper(cl)) cl = tolower(cl);
422
423 if((ch >= '0') && (ch <= '9')) ch -= '0';
424 else if ((ch >= 'a') && (ch <= 'f')) ch -= 'a' - 10;
425 else goto badhex;
426
427 if((cl >= '0') && (cl <= '9')) cl -= '0';
428 else if ((cl >= 'a') && (cl <= 'f')) cl -= 'a' - 10;
429 else goto badhex;
430
431 *q++ = (ch << 4) | cl;
432 }
433
434 if(len) *len = q - hexbuf;
435
436 return hexbuf;
437
438 err:
439 if(hexbuf) OPENSSL_free(hexbuf);
440 OPENSSL_PUT_ERROR(X509V3, ERR_R_MALLOC_FAILURE);
441 return NULL;
442
443 badhex:
444 OPENSSL_free(hexbuf);
445 OPENSSL_PUT_ERROR(X509V3, X509V3_R_ILLEGAL_HEX_DIGIT);
446 return NULL;
447
448 }
449
450 /* V2I name comparison function: returns zero if 'name' matches
451 * cmp or cmp.*
452 */
453
name_cmp(const char * name,const char * cmp)454 int name_cmp(const char *name, const char *cmp)
455 {
456 int len, ret;
457 char c;
458 len = strlen(cmp);
459 if((ret = strncmp(name, cmp, len))) return ret;
460 c = name[len];
461 if(!c || (c=='.')) return 0;
462 return 1;
463 }
464
sk_strcmp(const OPENSSL_STRING * a,const OPENSSL_STRING * b)465 static int sk_strcmp(const OPENSSL_STRING *a, const OPENSSL_STRING *b)
466 {
467 return strcmp(*a, *b);
468 }
469
STACK_OF(OPENSSL_STRING)470 STACK_OF(OPENSSL_STRING) *X509_get1_email(X509 *x)
471 {
472 GENERAL_NAMES *gens;
473 STACK_OF(OPENSSL_STRING) *ret;
474
475 gens = X509_get_ext_d2i(x, NID_subject_alt_name, NULL, NULL);
476 ret = get_email(X509_get_subject_name(x), gens);
477 sk_GENERAL_NAME_pop_free(gens, GENERAL_NAME_free);
478 return ret;
479 }
480
STACK_OF(OPENSSL_STRING)481 STACK_OF(OPENSSL_STRING) *X509_get1_ocsp(X509 *x)
482 {
483 AUTHORITY_INFO_ACCESS *info;
484 STACK_OF(OPENSSL_STRING) *ret = NULL;
485 size_t i;
486
487 info = X509_get_ext_d2i(x, NID_info_access, NULL, NULL);
488 if (!info)
489 return NULL;
490 for (i = 0; i < sk_ACCESS_DESCRIPTION_num(info); i++)
491 {
492 ACCESS_DESCRIPTION *ad = sk_ACCESS_DESCRIPTION_value(info, i);
493 if (OBJ_obj2nid(ad->method) == NID_ad_OCSP)
494 {
495 if (ad->location->type == GEN_URI)
496 {
497 if (!append_ia5(&ret, ad->location->d.uniformResourceIdentifier))
498 break;
499 }
500 }
501 }
502 AUTHORITY_INFO_ACCESS_free(info);
503 return ret;
504 }
505
STACK_OF(OPENSSL_STRING)506 STACK_OF(OPENSSL_STRING) *X509_REQ_get1_email(X509_REQ *x)
507 {
508 GENERAL_NAMES *gens;
509 STACK_OF(X509_EXTENSION) *exts;
510 STACK_OF(OPENSSL_STRING) *ret;
511
512 exts = X509_REQ_get_extensions(x);
513 gens = X509V3_get_d2i(exts, NID_subject_alt_name, NULL, NULL);
514 ret = get_email(X509_REQ_get_subject_name(x), gens);
515 sk_GENERAL_NAME_pop_free(gens, GENERAL_NAME_free);
516 sk_X509_EXTENSION_pop_free(exts, X509_EXTENSION_free);
517 return ret;
518 }
519
520
STACK_OF(OPENSSL_STRING)521 static STACK_OF(OPENSSL_STRING) *get_email(X509_NAME *name, GENERAL_NAMES *gens)
522 {
523 STACK_OF(OPENSSL_STRING) *ret = NULL;
524 X509_NAME_ENTRY *ne;
525 ASN1_IA5STRING *email;
526 GENERAL_NAME *gen;
527 int i;
528 size_t j;
529 /* Now add any email address(es) to STACK */
530 i = -1;
531 /* First supplied X509_NAME */
532 while((i = X509_NAME_get_index_by_NID(name,
533 NID_pkcs9_emailAddress, i)) >= 0) {
534 ne = X509_NAME_get_entry(name, i);
535 email = X509_NAME_ENTRY_get_data(ne);
536 if(!append_ia5(&ret, email)) return NULL;
537 }
538 for(j = 0; j < sk_GENERAL_NAME_num(gens); j++)
539 {
540 gen = sk_GENERAL_NAME_value(gens, j);
541 if(gen->type != GEN_EMAIL) continue;
542 if(!append_ia5(&ret, gen->d.ia5)) return NULL;
543 }
544 return ret;
545 }
546
str_free(OPENSSL_STRING str)547 static void str_free(OPENSSL_STRING str)
548 {
549 OPENSSL_free(str);
550 }
551
append_ia5(STACK_OF (OPENSSL_STRING)** sk,ASN1_IA5STRING * email)552 static int append_ia5(STACK_OF(OPENSSL_STRING) **sk, ASN1_IA5STRING *email)
553 {
554 char *emtmp;
555 /* First some sanity checks */
556 if(email->type != V_ASN1_IA5STRING) return 1;
557 if(!email->data || !email->length) return 1;
558 if(!*sk) *sk = sk_OPENSSL_STRING_new(sk_strcmp);
559 if(!*sk) return 0;
560 /* Don't add duplicates */
561 if(sk_OPENSSL_STRING_find(*sk, NULL, (char *)email->data)) return 1;
562 emtmp = BUF_strdup((char *)email->data);
563 if(!emtmp || !sk_OPENSSL_STRING_push(*sk, emtmp)) {
564 X509_email_free(*sk);
565 *sk = NULL;
566 return 0;
567 }
568 return 1;
569 }
570
X509_email_free(STACK_OF (OPENSSL_STRING)* sk)571 void X509_email_free(STACK_OF(OPENSSL_STRING) *sk)
572 {
573 sk_OPENSSL_STRING_pop_free(sk, str_free);
574 }
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 */
skip_prefix(const unsigned char ** p,size_t * plen,const unsigned char * subject,size_t subject_len,unsigned int flags)581 static void skip_prefix(const unsigned char **p, size_t *plen,
582 const unsigned char *subject, size_t subject_len,
583 unsigned int flags)
584 {
585 const unsigned char *pattern = *p;
586 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 if ((flags & _X509_CHECK_FLAG_DOT_SUBDOMAINS) == 0)
595 return;
596
597 while (pattern_len > subject_len && *pattern)
598 {
599 if ((flags & X509_CHECK_FLAG_SINGLE_LABEL_SUBDOMAINS) &&
600 *pattern == '.')
601 break;
602 ++pattern;
603 --pattern_len;
604 }
605
606 /* Skip if entire prefix acceptable */
607 if (pattern_len == subject_len)
608 {
609 *p = pattern;
610 *plen = pattern_len;
611 }
612 }
613
614 /* Compare while ASCII ignoring case. */
equal_nocase(const unsigned char * pattern,size_t pattern_len,const unsigned char * subject,size_t subject_len,unsigned int flags)615 static int equal_nocase(const unsigned char *pattern, size_t pattern_len,
616 const unsigned char *subject, size_t subject_len,
617 unsigned int flags)
618 {
619 skip_prefix(&pattern, &pattern_len, subject, subject_len, flags);
620 if (pattern_len != subject_len)
621 return 0;
622 while (pattern_len)
623 {
624 unsigned char l = *pattern;
625 unsigned char r = *subject;
626 /* The pattern must not contain NUL characters. */
627 if (l == 0)
628 return 0;
629 if (l != r)
630 {
631 if ('A' <= l && l <= 'Z')
632 l = (l - 'A') + 'a';
633 if ('A' <= r && r <= 'Z')
634 r = (r - 'A') + 'a';
635 if (l != r)
636 return 0;
637 }
638 ++pattern;
639 ++subject;
640 --pattern_len;
641 }
642 return 1;
643 }
644
645 /* Compare using memcmp. */
equal_case(const unsigned char * pattern,size_t pattern_len,const unsigned char * subject,size_t subject_len,unsigned int flags)646 static int equal_case(const unsigned char *pattern, size_t pattern_len,
647 const unsigned char *subject, size_t subject_len,
648 unsigned int flags)
649 {
650 skip_prefix(&pattern, &pattern_len, subject, subject_len, flags);
651 if (pattern_len != subject_len)
652 return 0;
653 return !memcmp(pattern, subject, pattern_len);
654 }
655
656 /* RFC 5280, section 7.5, requires that only the domain is compared in
657 a case-insensitive manner. */
equal_email(const unsigned char * a,size_t a_len,const unsigned char * b,size_t b_len,unsigned int unused_flags)658 static int equal_email(const unsigned char *a, size_t a_len,
659 const unsigned char *b, size_t b_len,
660 unsigned int unused_flags)
661 {
662 size_t i = a_len;
663 if (a_len != b_len)
664 return 0;
665 /* We search backwards for the '@' character, so that we do
666 not have to deal with quoted local-parts. The domain part
667 is compared in a case-insensitive manner. */
668 while (i > 0)
669 {
670 --i;
671 if (a[i] == '@' || b[i] == '@')
672 {
673 if (!equal_nocase(a + i, a_len - i,
674 b + i, a_len - i, 0))
675 return 0;
676 break;
677 }
678 }
679 if (i == 0)
680 i = a_len;
681 return equal_case(a, i, b, i, 0);
682 }
683
684 /* Compare the prefix and suffix with the subject, and check that the
685 characters in-between are valid. */
wildcard_match(const unsigned char * prefix,size_t prefix_len,const unsigned char * suffix,size_t suffix_len,const unsigned char * subject,size_t subject_len,unsigned int flags)686 static int wildcard_match(const unsigned char *prefix, size_t prefix_len,
687 const unsigned char *suffix, size_t suffix_len,
688 const unsigned char *subject, size_t subject_len,
689 unsigned int flags)
690 {
691 const unsigned char *wildcard_start;
692 const unsigned char *wildcard_end;
693 const unsigned char *p;
694 int allow_multi = 0;
695 int allow_idna = 0;
696
697 if (subject_len < prefix_len + suffix_len)
698 return 0;
699 if (!equal_nocase(prefix, prefix_len, subject, prefix_len, flags))
700 return 0;
701 wildcard_start = subject + prefix_len;
702 wildcard_end = subject + (subject_len - suffix_len);
703 if (!equal_nocase(wildcard_end, suffix_len, suffix, suffix_len, flags))
704 return 0;
705 /*
706 * If the wildcard makes up the entire first label, it must match at
707 * least one character.
708 */
709 if (prefix_len == 0 && *suffix == '.')
710 {
711 if (wildcard_start == wildcard_end)
712 return 0;
713 allow_idna = 1;
714 if (flags & X509_CHECK_FLAG_MULTI_LABEL_WILDCARDS)
715 allow_multi = 1;
716 }
717 /* IDNA labels cannot match partial wildcards */
718 if (!allow_idna &&
719 subject_len >= 4 && OPENSSL_strncasecmp((char *)subject, "xn--", 4) == 0)
720 return 0;
721 /* The wildcard may match a literal '*' */
722 if (wildcard_end == wildcard_start + 1 && *wildcard_start == '*')
723 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 for (p = wildcard_start; p != wildcard_end; ++p)
730 if (!(('0' <= *p && *p <= '9') ||
731 ('A' <= *p && *p <= 'Z') ||
732 ('a' <= *p && *p <= 'z') ||
733 *p == '-' || (allow_multi && *p == '.')))
734 return 0;
735 return 1;
736 }
737
738 #define LABEL_START (1 << 0)
739 #define LABEL_END (1 << 1)
740 #define LABEL_HYPHEN (1 << 2)
741 #define LABEL_IDNA (1 << 3)
742
valid_star(const unsigned char * p,size_t len,unsigned int flags)743 static const unsigned char *valid_star(const unsigned char *p, size_t len,
744 unsigned int flags)
745 {
746 const unsigned char *star = 0;
747 size_t i;
748 int state = LABEL_START;
749 int dots = 0;
750 for (i = 0; i < len; ++i)
751 {
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 if (p[i] == '*')
757 {
758 int atstart = (state & LABEL_START);
759 int atend = (i == len - 1 || p[i+1] == '.');
760 /*
761 * At most one wildcard per pattern.
762 * No wildcards in IDNA labels.
763 * No wildcards after the first label.
764 */
765 if (star != NULL || (state & LABEL_IDNA) != 0 || dots)
766 return NULL;
767 /* Only full-label '*.example.com' wildcards? */
768 if ((flags & X509_CHECK_FLAG_NO_PARTIAL_WILDCARDS)
769 && (!atstart || !atend))
770 return NULL;
771 /* No 'foo*bar' wildcards */
772 if (!atstart && !atend)
773 return NULL;
774 star = &p[i];
775 state &= ~LABEL_START;
776 }
777 else if ((state & LABEL_START) != 0)
778 {
779 /*
780 * At the start of a label, skip any "xn--" and
781 * remain in the LABEL_START state, but set the
782 * IDNA label state
783 */
784 if ((state & LABEL_IDNA) == 0 && len - i >= 4
785 && OPENSSL_strncasecmp((char *)&p[i], "xn--", 4) == 0)
786 {
787 i += 3;
788 state |= LABEL_IDNA;
789 continue;
790 }
791 /* Labels must start with a letter or digit */
792 state &= ~LABEL_START;
793 if (('a' <= p[i] && p[i] <= 'z')
794 || ('A' <= p[i] && p[i] <= 'Z')
795 || ('0' <= p[i] && p[i] <= '9'))
796 continue;
797 return NULL;
798 }
799 else if (('a' <= p[i] && p[i] <= 'z')
800 || ('A' <= p[i] && p[i] <= 'Z')
801 || ('0' <= p[i] && p[i] <= '9'))
802 {
803 state &= LABEL_IDNA;
804 continue;
805 }
806 else if (p[i] == '.')
807 {
808 if (state & (LABEL_HYPHEN | LABEL_START))
809 return NULL;
810 state = LABEL_START;
811 ++dots;
812 }
813 else if (p[i] == '-')
814 {
815 if (state & LABEL_HYPHEN)
816 return NULL;
817 state |= LABEL_HYPHEN;
818 }
819 else
820 return NULL;
821 }
822
823 /*
824 * The final label must not end in a hyphen or ".", and
825 * there must be at least two dots after the star.
826 */
827 if ((state & (LABEL_START | LABEL_HYPHEN)) != 0
828 || dots < 2)
829 return NULL;
830 return star;
831 }
832
833 /* Compare using wildcards. */
equal_wildcard(const unsigned char * pattern,size_t pattern_len,const unsigned char * subject,size_t subject_len,unsigned int flags)834 static int equal_wildcard(const unsigned char *pattern, size_t pattern_len,
835 const unsigned char *subject, size_t subject_len,
836 unsigned int flags)
837 {
838 const unsigned char *star = NULL;
839
840 /*
841 * Subject names starting with '.' can only match a wildcard pattern
842 * via a subject sub-domain pattern suffix match.
843 */
844 if (!(subject_len > 1 && subject[0] == '.'))
845 star = valid_star(pattern, pattern_len, flags);
846 if (star == NULL)
847 return equal_nocase(pattern, pattern_len,
848 subject, subject_len, flags);
849 return wildcard_match(pattern, star - pattern,
850 star + 1, (pattern + pattern_len) - star - 1,
851 subject, subject_len, flags);
852 }
853
854 /* Compare an ASN1_STRING to a supplied string. If they match
855 * return 1. If cmp_type > 0 only compare if string matches the
856 * type, otherwise convert it to UTF8.
857 */
858
do_check_string(ASN1_STRING * a,int cmp_type,equal_fn equal,unsigned int flags,const char * b,size_t blen,char ** peername)859 static int do_check_string(ASN1_STRING *a, int cmp_type, equal_fn equal,
860 unsigned int flags, const char *b, size_t blen,
861 char **peername)
862 {
863 int rv = 0;
864
865 if (!a->data || !a->length)
866 return 0;
867 if (cmp_type > 0)
868 {
869 if (cmp_type != a->type)
870 return 0;
871 if (cmp_type == V_ASN1_IA5STRING)
872 rv = equal(a->data, a->length,
873 (unsigned char *)b, blen, flags);
874 else if (a->length == (int)blen && !memcmp(a->data, b, blen))
875 rv = 1;
876 if (rv > 0 && peername)
877 *peername = BUF_strndup((char *)a->data, a->length);
878 }
879 else
880 {
881 int astrlen;
882 unsigned char *astr;
883 astrlen = ASN1_STRING_to_UTF8(&astr, a);
884 if (astrlen < 0)
885 return -1;
886 rv = equal(astr, astrlen, (unsigned char *)b, blen, flags);
887 if (rv > 0 && peername)
888 *peername = BUF_strndup((char *)astr, astrlen);
889 OPENSSL_free(astr);
890 }
891 return rv;
892 }
893
do_x509_check(X509 * x,const char * chk,size_t chklen,unsigned int flags,int check_type,char ** peername)894 static int do_x509_check(X509 *x, const char *chk, size_t chklen,
895 unsigned int flags, int check_type,
896 char **peername)
897 {
898 GENERAL_NAMES *gens = NULL;
899 X509_NAME *name = NULL;
900 size_t i;
901 int j;
902 int cnid = NID_undef;
903 int alt_type;
904 int san_present = 0;
905 int rv = 0;
906 equal_fn equal;
907
908 /* See below, this flag is internal-only */
909 flags &= ~_X509_CHECK_FLAG_DOT_SUBDOMAINS;
910 if (check_type == GEN_EMAIL)
911 {
912 cnid = NID_pkcs9_emailAddress;
913 alt_type = V_ASN1_IA5STRING;
914 equal = equal_email;
915 }
916 else if (check_type == GEN_DNS)
917 {
918 cnid = NID_commonName;
919 /* Implicit client-side DNS sub-domain pattern */
920 if (chklen > 1 && chk[0] == '.')
921 flags |= _X509_CHECK_FLAG_DOT_SUBDOMAINS;
922 alt_type = V_ASN1_IA5STRING;
923 if (flags & X509_CHECK_FLAG_NO_WILDCARDS)
924 equal = equal_nocase;
925 else
926 equal = equal_wildcard;
927 }
928 else
929 {
930 alt_type = V_ASN1_OCTET_STRING;
931 equal = equal_case;
932 }
933
934 gens = X509_get_ext_d2i(x, NID_subject_alt_name, NULL, NULL);
935 if (gens)
936 {
937 for (i = 0; i < sk_GENERAL_NAME_num(gens); i++)
938 {
939 GENERAL_NAME *gen;
940 ASN1_STRING *cstr;
941 gen = sk_GENERAL_NAME_value(gens, i);
942 if (gen->type != check_type)
943 continue;
944 san_present = 1;
945 if (check_type == GEN_EMAIL)
946 cstr = gen->d.rfc822Name;
947 else if (check_type == GEN_DNS)
948 cstr = gen->d.dNSName;
949 else
950 cstr = gen->d.iPAddress;
951 /* Positive on success, negative on error! */
952 if ((rv = do_check_string(cstr, alt_type, equal, flags,
953 chk, chklen, peername)) != 0)
954 break;
955 }
956 GENERAL_NAMES_free(gens);
957 if (rv != 0)
958 return rv;
959 if (cnid == NID_undef
960 || (san_present
961 && !(flags & X509_CHECK_FLAG_ALWAYS_CHECK_SUBJECT)))
962 return 0;
963 }
964
965 /* We're done if CN-ID is not pertinent */
966 if (cnid == NID_undef)
967 return 0;
968
969 j = -1;
970 name = X509_get_subject_name(x);
971 while((j = X509_NAME_get_index_by_NID(name, cnid, j)) >= 0)
972 {
973 X509_NAME_ENTRY *ne;
974 ASN1_STRING *str;
975 ne = X509_NAME_get_entry(name, j);
976 str = X509_NAME_ENTRY_get_data(ne);
977 /* Positive on success, negative on error! */
978 if ((rv = do_check_string(str, -1, equal, flags,
979 chk, chklen, peername)) != 0)
980 return rv;
981 }
982 return 0;
983 }
984
X509_check_host(X509 * x,const char * chk,size_t chklen,unsigned int flags,char ** peername)985 int X509_check_host(X509 *x, const char *chk, size_t chklen,
986 unsigned int flags, char **peername)
987 {
988 if (chk == NULL)
989 return -2;
990 if (memchr(chk, '\0', chklen))
991 return -2;
992 return do_x509_check(x, chk, chklen, flags, GEN_DNS, peername);
993 }
994
X509_check_email(X509 * x,const char * chk,size_t chklen,unsigned int flags)995 int X509_check_email(X509 *x, const char *chk, size_t chklen,
996 unsigned int flags)
997 {
998 if (chk == NULL)
999 return -2;
1000 if (memchr(chk, '\0', chklen))
1001 return -2;
1002 return do_x509_check(x, chk, chklen, flags, GEN_EMAIL, NULL);
1003 }
1004
X509_check_ip(X509 * x,const unsigned char * chk,size_t chklen,unsigned int flags)1005 int X509_check_ip(X509 *x, const unsigned char *chk, size_t chklen,
1006 unsigned int flags)
1007 {
1008 if (chk == NULL)
1009 return -2;
1010 return do_x509_check(x, (char *)chk, chklen, flags, GEN_IPADD, NULL);
1011 }
1012
X509_check_ip_asc(X509 * x,const char * ipasc,unsigned int flags)1013 int X509_check_ip_asc(X509 *x, const char *ipasc, unsigned int flags)
1014 {
1015 unsigned char ipout[16];
1016 size_t iplen;
1017
1018 if (ipasc == NULL)
1019 return -2;
1020 iplen = (size_t) a2i_ipadd(ipout, ipasc);
1021 if (iplen == 0)
1022 return -2;
1023 return do_x509_check(x, (char *)ipout, iplen, flags, GEN_IPADD, NULL);
1024 }
1025
1026 /* Convert IP addresses both IPv4 and IPv6 into an
1027 * OCTET STRING compatible with RFC3280.
1028 */
1029
a2i_IPADDRESS(const char * ipasc)1030 ASN1_OCTET_STRING *a2i_IPADDRESS(const char *ipasc)
1031 {
1032 unsigned char ipout[16];
1033 ASN1_OCTET_STRING *ret;
1034 int iplen;
1035
1036 /* If string contains a ':' assume IPv6 */
1037
1038 iplen = a2i_ipadd(ipout, ipasc);
1039
1040 if (!iplen)
1041 return NULL;
1042
1043 ret = ASN1_OCTET_STRING_new();
1044 if (!ret)
1045 return NULL;
1046 if (!ASN1_OCTET_STRING_set(ret, ipout, iplen))
1047 {
1048 ASN1_OCTET_STRING_free(ret);
1049 return NULL;
1050 }
1051 return ret;
1052 }
1053
a2i_IPADDRESS_NC(const char * ipasc)1054 ASN1_OCTET_STRING *a2i_IPADDRESS_NC(const char *ipasc)
1055 {
1056 ASN1_OCTET_STRING *ret = NULL;
1057 unsigned char ipout[32];
1058 char *iptmp = NULL, *p;
1059 int iplen1, iplen2;
1060 p = strchr(ipasc,'/');
1061 if (!p)
1062 return NULL;
1063 iptmp = BUF_strdup(ipasc);
1064 if (!iptmp)
1065 return NULL;
1066 p = iptmp + (p - ipasc);
1067 *p++ = 0;
1068
1069 iplen1 = a2i_ipadd(ipout, iptmp);
1070
1071 if (!iplen1)
1072 goto err;
1073
1074 iplen2 = a2i_ipadd(ipout + iplen1, p);
1075
1076 OPENSSL_free(iptmp);
1077 iptmp = NULL;
1078
1079 if (!iplen2 || (iplen1 != iplen2))
1080 goto err;
1081
1082 ret = ASN1_OCTET_STRING_new();
1083 if (!ret)
1084 goto err;
1085 if (!ASN1_OCTET_STRING_set(ret, ipout, iplen1 + iplen2))
1086 goto err;
1087
1088 return ret;
1089
1090 err:
1091 if (iptmp)
1092 OPENSSL_free(iptmp);
1093 if (ret)
1094 ASN1_OCTET_STRING_free(ret);
1095 return NULL;
1096 }
1097
1098
a2i_ipadd(unsigned char * ipout,const char * ipasc)1099 int a2i_ipadd(unsigned char *ipout, const char *ipasc)
1100 {
1101 /* If string contains a ':' assume IPv6 */
1102
1103 if (strchr(ipasc, ':'))
1104 {
1105 if (!ipv6_from_asc(ipout, ipasc))
1106 return 0;
1107 return 16;
1108 }
1109 else
1110 {
1111 if (!ipv4_from_asc(ipout, ipasc))
1112 return 0;
1113 return 4;
1114 }
1115 }
1116
ipv4_from_asc(unsigned char * v4,const char * in)1117 static int ipv4_from_asc(unsigned char *v4, const char *in)
1118 {
1119 int a0, a1, a2, a3;
1120 if (sscanf(in, "%d.%d.%d.%d", &a0, &a1, &a2, &a3) != 4)
1121 return 0;
1122 if ((a0 < 0) || (a0 > 255) || (a1 < 0) || (a1 > 255)
1123 || (a2 < 0) || (a2 > 255) || (a3 < 0) || (a3 > 255))
1124 return 0;
1125 v4[0] = a0;
1126 v4[1] = a1;
1127 v4[2] = a2;
1128 v4[3] = a3;
1129 return 1;
1130 }
1131
1132 typedef struct {
1133 /* Temporary store for IPV6 output */
1134 unsigned char tmp[16];
1135 /* Total number of bytes in tmp */
1136 int total;
1137 /* The position of a zero (corresponding to '::') */
1138 int zero_pos;
1139 /* Number of zeroes */
1140 int zero_cnt;
1141 } IPV6_STAT;
1142
1143
ipv6_from_asc(unsigned char * v6,const char * in)1144 static int ipv6_from_asc(unsigned char *v6, const char *in)
1145 {
1146 IPV6_STAT v6stat;
1147 v6stat.total = 0;
1148 v6stat.zero_pos = -1;
1149 v6stat.zero_cnt = 0;
1150 /* Treat the IPv6 representation as a list of values
1151 * separated by ':'. The presence of a '::' will parse
1152 * as one, two or three zero length elements.
1153 */
1154 if (!CONF_parse_list(in, ':', 0, ipv6_cb, &v6stat))
1155 return 0;
1156
1157 /* Now for some sanity checks */
1158
1159 if (v6stat.zero_pos == -1)
1160 {
1161 /* If no '::' must have exactly 16 bytes */
1162 if (v6stat.total != 16)
1163 return 0;
1164 }
1165 else
1166 {
1167 /* If '::' must have less than 16 bytes */
1168 if (v6stat.total == 16)
1169 return 0;
1170 /* More than three zeroes is an error */
1171 if (v6stat.zero_cnt > 3)
1172 return 0;
1173 /* Can only have three zeroes if nothing else present */
1174 else if (v6stat.zero_cnt == 3)
1175 {
1176 if (v6stat.total > 0)
1177 return 0;
1178 }
1179 /* Can only have two zeroes if at start or end */
1180 else if (v6stat.zero_cnt == 2)
1181 {
1182 if ((v6stat.zero_pos != 0)
1183 && (v6stat.zero_pos != v6stat.total))
1184 return 0;
1185 }
1186 else
1187 /* Can only have one zero if *not* start or end */
1188 {
1189 if ((v6stat.zero_pos == 0)
1190 || (v6stat.zero_pos == v6stat.total))
1191 return 0;
1192 }
1193 }
1194
1195 /* Format result */
1196
1197 if (v6stat.zero_pos >= 0)
1198 {
1199 /* Copy initial part */
1200 memcpy(v6, v6stat.tmp, v6stat.zero_pos);
1201 /* Zero middle */
1202 memset(v6 + v6stat.zero_pos, 0, 16 - v6stat.total);
1203 /* Copy final part */
1204 if (v6stat.total != v6stat.zero_pos)
1205 memcpy(v6 + v6stat.zero_pos + 16 - v6stat.total,
1206 v6stat.tmp + v6stat.zero_pos,
1207 v6stat.total - v6stat.zero_pos);
1208 }
1209 else
1210 memcpy(v6, v6stat.tmp, 16);
1211
1212 return 1;
1213 }
1214
ipv6_cb(const char * elem,int len,void * usr)1215 static int ipv6_cb(const char *elem, int len, void *usr)
1216 {
1217 IPV6_STAT *s = usr;
1218 /* Error if 16 bytes written */
1219 if (s->total == 16)
1220 return 0;
1221 if (len == 0)
1222 {
1223 /* Zero length element, corresponds to '::' */
1224 if (s->zero_pos == -1)
1225 s->zero_pos = s->total;
1226 /* If we've already got a :: its an error */
1227 else if (s->zero_pos != s->total)
1228 return 0;
1229 s->zero_cnt++;
1230 }
1231 else
1232 {
1233 /* If more than 4 characters could be final a.b.c.d form */
1234 if (len > 4)
1235 {
1236 /* Need at least 4 bytes left */
1237 if (s->total > 12)
1238 return 0;
1239 /* Must be end of string */
1240 if (elem[len])
1241 return 0;
1242 if (!ipv4_from_asc(s->tmp + s->total, elem))
1243 return 0;
1244 s->total += 4;
1245 }
1246 else
1247 {
1248 if (!ipv6_hex(s->tmp + s->total, elem, len))
1249 return 0;
1250 s->total += 2;
1251 }
1252 }
1253 return 1;
1254 }
1255
1256 /* Convert a string of up to 4 hex digits into the corresponding
1257 * IPv6 form.
1258 */
1259
ipv6_hex(unsigned char * out,const char * in,int inlen)1260 static int ipv6_hex(unsigned char *out, const char *in, int inlen)
1261 {
1262 unsigned char c;
1263 unsigned int num = 0;
1264 if (inlen > 4)
1265 return 0;
1266 while(inlen--)
1267 {
1268 c = *in++;
1269 num <<= 4;
1270 if ((c >= '0') && (c <= '9'))
1271 num |= c - '0';
1272 else if ((c >= 'A') && (c <= 'F'))
1273 num |= c - 'A' + 10;
1274 else if ((c >= 'a') && (c <= 'f'))
1275 num |= c - 'a' + 10;
1276 else
1277 return 0;
1278 }
1279 out[0] = num >> 8;
1280 out[1] = num & 0xff;
1281 return 1;
1282 }
1283
1284
X509V3_NAME_from_section(X509_NAME * nm,STACK_OF (CONF_VALUE)* dn_sk,unsigned long chtype)1285 int X509V3_NAME_from_section(X509_NAME *nm, STACK_OF(CONF_VALUE)*dn_sk,
1286 unsigned long chtype)
1287 {
1288 CONF_VALUE *v;
1289 int mval;
1290 size_t i;
1291 char *p, *type;
1292 if (!nm)
1293 return 0;
1294
1295 for (i = 0; i < sk_CONF_VALUE_num(dn_sk); i++)
1296 {
1297 v=sk_CONF_VALUE_value(dn_sk,i);
1298 type=v->name;
1299 /* Skip past any leading X. X: X, etc to allow for
1300 * multiple instances
1301 */
1302 for(p = type; *p ; p++)
1303 if ((*p == ':') || (*p == ',') || (*p == '.'))
1304 {
1305 p++;
1306 if(*p) type = p;
1307 break;
1308 }
1309 if (*type == '+')
1310 {
1311 mval = -1;
1312 type++;
1313 }
1314 else
1315 mval = 0;
1316 if (!X509_NAME_add_entry_by_txt(nm,type, chtype,
1317 (unsigned char *) v->value,-1,-1,mval))
1318 return 0;
1319
1320 }
1321 return 1;
1322 }
1323