Additional "chain_cert" functions.
[openssl.git] / ssl / ssl_cert.c
1 /*! \file ssl/ssl_cert.c */
2 /* Copyright (C) 1995-1998 Eric Young (eay@cryptsoft.com)
3  * All rights reserved.
4  *
5  * This package is an SSL implementation written
6  * by Eric Young (eay@cryptsoft.com).
7  * The implementation was written so as to conform with Netscapes SSL.
8  * 
9  * This library is free for commercial and non-commercial use as long as
10  * the following conditions are aheared to.  The following conditions
11  * apply to all code found in this distribution, be it the RC4, RSA,
12  * lhash, DES, etc., code; not just the SSL code.  The SSL documentation
13  * included with this distribution is covered by the same copyright terms
14  * except that the holder is Tim Hudson (tjh@cryptsoft.com).
15  * 
16  * Copyright remains Eric Young's, and as such any Copyright notices in
17  * the code are not to be removed.
18  * If this package is used in a product, Eric Young should be given attribution
19  * as the author of the parts of the library used.
20  * This can be in the form of a textual message at program startup or
21  * in documentation (online or textual) provided with the package.
22  * 
23  * Redistribution and use in source and binary forms, with or without
24  * modification, are permitted provided that the following conditions
25  * are met:
26  * 1. Redistributions of source code must retain the copyright
27  *    notice, this list of conditions and the following disclaimer.
28  * 2. Redistributions in binary form must reproduce the above copyright
29  *    notice, this list of conditions and the following disclaimer in the
30  *    documentation and/or other materials provided with the distribution.
31  * 3. All advertising materials mentioning features or use of this software
32  *    must display the following acknowledgement:
33  *    "This product includes cryptographic software written by
34  *     Eric Young (eay@cryptsoft.com)"
35  *    The word 'cryptographic' can be left out if the rouines from the library
36  *    being used are not cryptographic related :-).
37  * 4. If you include any Windows specific code (or a derivative thereof) from 
38  *    the apps directory (application code) you must include an acknowledgement:
39  *    "This product includes software written by Tim Hudson (tjh@cryptsoft.com)"
40  * 
41  * THIS SOFTWARE IS PROVIDED BY ERIC YOUNG ``AS IS'' AND
42  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
43  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
44  * ARE DISCLAIMED.  IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
45  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
46  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
47  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
48  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
49  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
50  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
51  * SUCH DAMAGE.
52  * 
53  * The licence and distribution terms for any publically available version or
54  * derivative of this code cannot be changed.  i.e. this code cannot simply be
55  * copied and put under another distribution licence
56  * [including the GNU Public Licence.]
57  */
58 /* ====================================================================
59  * Copyright (c) 1998-2007 The OpenSSL Project.  All rights reserved.
60  *
61  * Redistribution and use in source and binary forms, with or without
62  * modification, are permitted provided that the following conditions
63  * are met:
64  *
65  * 1. Redistributions of source code must retain the above copyright
66  *    notice, this list of conditions and the following disclaimer. 
67  *
68  * 2. Redistributions in binary form must reproduce the above copyright
69  *    notice, this list of conditions and the following disclaimer in
70  *    the documentation and/or other materials provided with the
71  *    distribution.
72  *
73  * 3. All advertising materials mentioning features or use of this
74  *    software must display the following acknowledgment:
75  *    "This product includes software developed by the OpenSSL Project
76  *    for use in the OpenSSL Toolkit. (http://www.openssl.org/)"
77  *
78  * 4. The names "OpenSSL Toolkit" and "OpenSSL Project" must not be used to
79  *    endorse or promote products derived from this software without
80  *    prior written permission. For written permission, please contact
81  *    openssl-core@openssl.org.
82  *
83  * 5. Products derived from this software may not be called "OpenSSL"
84  *    nor may "OpenSSL" appear in their names without prior written
85  *    permission of the OpenSSL Project.
86  *
87  * 6. Redistributions of any form whatsoever must retain the following
88  *    acknowledgment:
89  *    "This product includes software developed by the OpenSSL Project
90  *    for use in the OpenSSL Toolkit (http://www.openssl.org/)"
91  *
92  * THIS SOFTWARE IS PROVIDED BY THE OpenSSL PROJECT ``AS IS'' AND ANY
93  * EXPRESSED OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
94  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
95  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE OpenSSL PROJECT OR
96  * ITS CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
97  * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
98  * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
99  * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
100  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT,
101  * STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
102  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED
103  * OF THE POSSIBILITY OF SUCH DAMAGE.
104  * ====================================================================
105  *
106  * This product includes cryptographic software written by Eric Young
107  * (eay@cryptsoft.com).  This product includes software written by Tim
108  * Hudson (tjh@cryptsoft.com).
109  *
110  */
111 /* ====================================================================
112  * Copyright 2002 Sun Microsystems, Inc. ALL RIGHTS RESERVED.
113  * ECC cipher suite support in OpenSSL originally developed by 
114  * SUN MICROSYSTEMS, INC., and contributed to the OpenSSL project.
115  */
116
117 #include <stdio.h>
118
119 #include "e_os.h"
120 #ifndef NO_SYS_TYPES_H
121 # include <sys/types.h>
122 #endif
123
124 #include "o_dir.h"
125 #include <openssl/objects.h>
126 #include <openssl/bio.h>
127 #include <openssl/pem.h>
128 #include <openssl/x509v3.h>
129 #ifndef OPENSSL_NO_DH
130 #include <openssl/dh.h>
131 #endif
132 #include <openssl/bn.h>
133 #include "ssl_locl.h"
134
135 int SSL_get_ex_data_X509_STORE_CTX_idx(void)
136         {
137         static volatile int ssl_x509_store_ctx_idx= -1;
138         int got_write_lock = 0;
139
140         CRYPTO_r_lock(CRYPTO_LOCK_SSL_CTX);
141
142         if (ssl_x509_store_ctx_idx < 0)
143                 {
144                 CRYPTO_r_unlock(CRYPTO_LOCK_SSL_CTX);
145                 CRYPTO_w_lock(CRYPTO_LOCK_SSL_CTX);
146                 got_write_lock = 1;
147                 
148                 if (ssl_x509_store_ctx_idx < 0)
149                         {
150                         ssl_x509_store_ctx_idx=X509_STORE_CTX_get_ex_new_index(
151                                 0,"SSL for verify callback",NULL,NULL,NULL);
152                         }
153                 }
154
155         if (got_write_lock)
156                 CRYPTO_w_unlock(CRYPTO_LOCK_SSL_CTX);
157         else
158                 CRYPTO_r_unlock(CRYPTO_LOCK_SSL_CTX);
159         
160         return ssl_x509_store_ctx_idx;
161         }
162
163 void ssl_cert_set_default_md(CERT *cert)
164         {
165         /* Set digest values to defaults */
166 #ifndef OPENSSL_NO_DSA
167         cert->pkeys[SSL_PKEY_DSA_SIGN].digest = EVP_sha1();
168 #endif
169 #ifndef OPENSSL_NO_RSA
170         cert->pkeys[SSL_PKEY_RSA_SIGN].digest = EVP_sha1();
171         cert->pkeys[SSL_PKEY_RSA_ENC].digest = EVP_sha1();
172 #endif
173 #ifndef OPENSSL_NO_ECDSA
174         cert->pkeys[SSL_PKEY_ECC].digest = EVP_sha1();
175 #endif
176         }
177
178 CERT *ssl_cert_new(void)
179         {
180         CERT *ret;
181
182         ret=(CERT *)OPENSSL_malloc(sizeof(CERT));
183         if (ret == NULL)
184                 {
185                 SSLerr(SSL_F_SSL_CERT_NEW,ERR_R_MALLOC_FAILURE);
186                 return(NULL);
187                 }
188         memset(ret,0,sizeof(CERT));
189
190         ret->key= &(ret->pkeys[SSL_PKEY_RSA_ENC]);
191         ret->references=1;
192         ssl_cert_set_default_md(ret);
193         return(ret);
194         }
195
196 CERT *ssl_cert_dup(CERT *cert)
197         {
198         CERT *ret;
199         int i;
200
201         ret = (CERT *)OPENSSL_malloc(sizeof(CERT));
202         if (ret == NULL)
203                 {
204                 SSLerr(SSL_F_SSL_CERT_DUP, ERR_R_MALLOC_FAILURE);
205                 return(NULL);
206                 }
207
208         memset(ret, 0, sizeof(CERT));
209
210         ret->key = &ret->pkeys[cert->key - &cert->pkeys[0]];
211         /* or ret->key = ret->pkeys + (cert->key - cert->pkeys),
212          * if you find that more readable */
213
214         ret->valid = cert->valid;
215         ret->mask_k = cert->mask_k;
216         ret->mask_a = cert->mask_a;
217         ret->export_mask_k = cert->export_mask_k;
218         ret->export_mask_a = cert->export_mask_a;
219
220 #ifndef OPENSSL_NO_RSA
221         if (cert->rsa_tmp != NULL)
222                 {
223                 RSA_up_ref(cert->rsa_tmp);
224                 ret->rsa_tmp = cert->rsa_tmp;
225                 }
226         ret->rsa_tmp_cb = cert->rsa_tmp_cb;
227 #endif
228
229 #ifndef OPENSSL_NO_DH
230         if (cert->dh_tmp != NULL)
231                 {
232                 ret->dh_tmp = DHparams_dup(cert->dh_tmp);
233                 if (ret->dh_tmp == NULL)
234                         {
235                         SSLerr(SSL_F_SSL_CERT_DUP, ERR_R_DH_LIB);
236                         goto err;
237                         }
238                 if (cert->dh_tmp->priv_key)
239                         {
240                         BIGNUM *b = BN_dup(cert->dh_tmp->priv_key);
241                         if (!b)
242                                 {
243                                 SSLerr(SSL_F_SSL_CERT_DUP, ERR_R_BN_LIB);
244                                 goto err;
245                                 }
246                         ret->dh_tmp->priv_key = b;
247                         }
248                 if (cert->dh_tmp->pub_key)
249                         {
250                         BIGNUM *b = BN_dup(cert->dh_tmp->pub_key);
251                         if (!b)
252                                 {
253                                 SSLerr(SSL_F_SSL_CERT_DUP, ERR_R_BN_LIB);
254                                 goto err;
255                                 }
256                         ret->dh_tmp->pub_key = b;
257                         }
258                 }
259         ret->dh_tmp_cb = cert->dh_tmp_cb;
260 #endif
261
262 #ifndef OPENSSL_NO_ECDH
263         if (cert->ecdh_tmp)
264                 {
265                 ret->ecdh_tmp = EC_KEY_dup(cert->ecdh_tmp);
266                 if (ret->ecdh_tmp == NULL)
267                         {
268                         SSLerr(SSL_F_SSL_CERT_DUP, ERR_R_EC_LIB);
269                         goto err;
270                         }
271                 }
272         ret->ecdh_tmp_cb = cert->ecdh_tmp_cb;
273         ret->ecdh_tmp_auto = cert->ecdh_tmp_auto;
274 #endif
275
276         for (i = 0; i < SSL_PKEY_NUM; i++)
277                 {
278                 CERT_PKEY *cpk = cert->pkeys + i;
279                 CERT_PKEY *rpk = ret->pkeys + i;
280                 if (cpk->x509 != NULL)
281                         {
282                         rpk->x509 = cpk->x509;
283                         CRYPTO_add(&rpk->x509->references, 1, CRYPTO_LOCK_X509);
284                         }
285                 
286                 if (cpk->privatekey != NULL)
287                         {
288                         rpk->privatekey = cpk->privatekey;
289                         CRYPTO_add(&cpk->privatekey->references, 1,
290                                 CRYPTO_LOCK_EVP_PKEY);
291
292                         switch(i) 
293                                 {
294                                 /* If there was anything special to do for
295                                  * certain types of keys, we'd do it here.
296                                  * (Nothing at the moment, I think.) */
297
298                         case SSL_PKEY_RSA_ENC:
299                         case SSL_PKEY_RSA_SIGN:
300                                 /* We have an RSA key. */
301                                 break;
302                                 
303                         case SSL_PKEY_DSA_SIGN:
304                                 /* We have a DSA key. */
305                                 break;
306                                 
307                         case SSL_PKEY_DH_RSA:
308                         case SSL_PKEY_DH_DSA:
309                                 /* We have a DH key. */
310                                 break;
311
312                         case SSL_PKEY_ECC:
313                                 /* We have an ECC key */
314                                 break;
315
316                         default:
317                                 /* Can't happen. */
318                                 SSLerr(SSL_F_SSL_CERT_DUP, SSL_R_LIBRARY_BUG);
319                                 }
320                         }
321
322                 if (cpk->chain)
323                         {
324                         rpk->chain = X509_chain_up_ref(cpk->chain);
325                         if (!rpk->chain)
326                                 {
327                                 SSLerr(SSL_F_SSL_CERT_DUP, ERR_R_MALLOC_FAILURE);
328                                 goto err;
329                                 }
330                         }
331                 rpk->valid_flags = 0;
332 #ifndef OPENSSL_NO_TLSEXT
333      if (cert->pkeys[i].authz != NULL)
334                         {
335                         /* Just copy everything. */
336                         ret->pkeys[i].authz_length =
337                                 cert->pkeys[i].authz_length;
338                         ret->pkeys[i].authz =
339                                 OPENSSL_malloc(ret->pkeys[i].authz_length);
340                         if (ret->pkeys[i].authz == NULL)
341                                 {
342                                 SSLerr(SSL_F_SSL_CERT_DUP, ERR_R_MALLOC_FAILURE);
343                                 return NULL;
344                                 }
345                         memcpy(ret->pkeys[i].authz,
346                                cert->pkeys[i].authz,
347                                cert->pkeys[i].authz_length);
348                         }
349
350                 if (cert->pkeys[i].serverinfo != NULL)
351                         {
352                         /* Just copy everything. */
353                         ret->pkeys[i].serverinfo =
354                                 OPENSSL_malloc(cert->pkeys[i].serverinfo_length);
355                         if (ret->pkeys[i].serverinfo == NULL)
356                                 {
357                                 SSLerr(SSL_F_SSL_CERT_DUP, ERR_R_MALLOC_FAILURE);
358                                 return NULL;
359                                 }
360                         ret->pkeys[i].serverinfo_length =
361                                 cert->pkeys[i].serverinfo_length;
362                         memcpy(ret->pkeys[i].serverinfo,
363                                cert->pkeys[i].serverinfo,
364                                cert->pkeys[i].serverinfo_length);
365                         }
366 #endif
367                 }
368         
369         ret->references=1;
370         /* Set digests to defaults. NB: we don't copy existing values as they
371          * will be set during handshake.
372          */
373         ssl_cert_set_default_md(ret);
374         /* Peer sigalgs set to NULL as we get these from handshake too */
375         ret->peer_sigalgs = NULL;
376         ret->peer_sigalgslen = 0;
377         /* Configured sigalgs however we copy across */
378
379         if (cert->conf_sigalgs)
380                 {
381                 ret->conf_sigalgs = OPENSSL_malloc(cert->conf_sigalgslen);
382                 if (!ret->conf_sigalgs)
383                         goto err;
384                 memcpy(ret->conf_sigalgs, cert->conf_sigalgs,
385                                                 cert->conf_sigalgslen);
386                 ret->conf_sigalgslen = cert->conf_sigalgslen;
387                 }
388         else
389                 ret->conf_sigalgs = NULL;
390
391         if (cert->client_sigalgs)
392                 {
393                 ret->client_sigalgs = OPENSSL_malloc(cert->client_sigalgslen);
394                 if (!ret->client_sigalgs)
395                         goto err;
396                 memcpy(ret->client_sigalgs, cert->client_sigalgs,
397                                                 cert->client_sigalgslen);
398                 ret->client_sigalgslen = cert->client_sigalgslen;
399                 }
400         else
401                 ret->client_sigalgs = NULL;
402         /* Shared sigalgs also NULL */
403         ret->shared_sigalgs = NULL;
404         /* Copy any custom client certificate types */
405         if (cert->ctypes)
406                 {
407                 ret->ctypes = OPENSSL_malloc(cert->ctype_num);
408                 if (!ret->ctypes)
409                         goto err;
410                 memcpy(ret->ctypes, cert->ctypes, cert->ctype_num);
411                 ret->ctype_num = cert->ctype_num;
412                 }
413
414         ret->cert_flags = cert->cert_flags;
415
416         ret->cert_cb = cert->cert_cb;
417         ret->cert_cb_arg = cert->cert_cb_arg;
418
419         if (cert->verify_store)
420                 {
421                 CRYPTO_add(&cert->verify_store->references, 1, CRYPTO_LOCK_X509_STORE);
422                 ret->verify_store = cert->verify_store;
423                 }
424
425         if (cert->chain_store)
426                 {
427                 CRYPTO_add(&cert->chain_store->references, 1, CRYPTO_LOCK_X509_STORE);
428                 ret->chain_store = cert->chain_store;
429                 }
430
431         ret->ciphers_raw = NULL;
432
433         return(ret);
434         
435 #if !defined(OPENSSL_NO_DH) || !defined(OPENSSL_NO_ECDH)
436 err:
437 #endif
438 #ifndef OPENSSL_NO_RSA
439         if (ret->rsa_tmp != NULL)
440                 RSA_free(ret->rsa_tmp);
441 #endif
442 #ifndef OPENSSL_NO_DH
443         if (ret->dh_tmp != NULL)
444                 DH_free(ret->dh_tmp);
445 #endif
446 #ifndef OPENSSL_NO_ECDH
447         if (ret->ecdh_tmp != NULL)
448                 EC_KEY_free(ret->ecdh_tmp);
449 #endif
450
451         ssl_cert_clear_certs(ret);
452
453         return NULL;
454         }
455
456 /* Free up and clear all certificates and chains */
457
458 void ssl_cert_clear_certs(CERT *c)
459         {
460         int i;
461         if (c == NULL)
462                 return;
463         for (i = 0; i<SSL_PKEY_NUM; i++)
464                 {
465                 CERT_PKEY *cpk = c->pkeys + i;
466                 if (cpk->x509)
467                         {
468                         X509_free(cpk->x509);
469                         cpk->x509 = NULL;
470                         }
471                 if (cpk->privatekey)
472                         {
473                         EVP_PKEY_free(cpk->privatekey);
474                         cpk->privatekey = NULL;
475                         }
476                 if (cpk->chain)
477                         {
478                         sk_X509_pop_free(cpk->chain, X509_free);
479                         cpk->chain = NULL;
480                         }
481 #ifndef OPENSSL_NO_TLSEXT
482                 if (cpk->authz)
483                         {
484                         OPENSSL_free(cpk->authz);
485                         cpk->authz = NULL;
486                         }
487                 if (cpk->serverinfo)
488                         {
489                         OPENSSL_free(cpk->serverinfo);
490                         cpk->serverinfo = NULL;
491                         cpk->serverinfo_length = 0;
492                         }
493 #endif
494                 /* Clear all flags apart from explicit sign */
495                 cpk->valid_flags &= CERT_PKEY_EXPLICIT_SIGN;
496                 }
497         }
498
499 void ssl_cert_free(CERT *c)
500         {
501         int i;
502
503         if(c == NULL)
504             return;
505
506         i=CRYPTO_add(&c->references,-1,CRYPTO_LOCK_SSL_CERT);
507 #ifdef REF_PRINT
508         REF_PRINT("CERT",c);
509 #endif
510         if (i > 0) return;
511 #ifdef REF_CHECK
512         if (i < 0)
513                 {
514                 fprintf(stderr,"ssl_cert_free, bad reference count\n");
515                 abort(); /* ok */
516                 }
517 #endif
518
519 #ifndef OPENSSL_NO_RSA
520         if (c->rsa_tmp) RSA_free(c->rsa_tmp);
521 #endif
522 #ifndef OPENSSL_NO_DH
523         if (c->dh_tmp) DH_free(c->dh_tmp);
524 #endif
525 #ifndef OPENSSL_NO_ECDH
526         if (c->ecdh_tmp) EC_KEY_free(c->ecdh_tmp);
527 #endif
528
529         ssl_cert_clear_certs(c);
530         if (c->peer_sigalgs)
531                 OPENSSL_free(c->peer_sigalgs);
532         if (c->conf_sigalgs)
533                 OPENSSL_free(c->conf_sigalgs);
534         if (c->client_sigalgs)
535                 OPENSSL_free(c->client_sigalgs);
536         if (c->shared_sigalgs)
537                 OPENSSL_free(c->shared_sigalgs);
538         if (c->ctypes)
539                 OPENSSL_free(c->ctypes);
540         if (c->verify_store)
541                 X509_STORE_free(c->verify_store);
542         if (c->chain_store)
543                 X509_STORE_free(c->chain_store);
544         if (c->ciphers_raw)
545                 OPENSSL_free(c->ciphers_raw);
546         OPENSSL_free(c);
547         }
548
549 int ssl_cert_inst(CERT **o)
550         {
551         /* Create a CERT if there isn't already one
552          * (which cannot really happen, as it is initially created in
553          * SSL_CTX_new; but the earlier code usually allows for that one
554          * being non-existant, so we follow that behaviour, as it might
555          * turn out that there actually is a reason for it -- but I'm
556          * not sure that *all* of the existing code could cope with
557          * s->cert being NULL, otherwise we could do without the
558          * initialization in SSL_CTX_new).
559          */
560         
561         if (o == NULL) 
562                 {
563                 SSLerr(SSL_F_SSL_CERT_INST, ERR_R_PASSED_NULL_PARAMETER);
564                 return(0);
565                 }
566         if (*o == NULL)
567                 {
568                 if ((*o = ssl_cert_new()) == NULL)
569                         {
570                         SSLerr(SSL_F_SSL_CERT_INST, ERR_R_MALLOC_FAILURE);
571                         return(0);
572                         }
573                 }
574         return(1);
575         }
576
577 int ssl_cert_set0_chain(CERT *c, STACK_OF(X509) *chain)
578         {
579         CERT_PKEY *cpk = c->key;
580         if (!cpk)
581                 return 0;
582         if (cpk->chain)
583                 sk_X509_pop_free(cpk->chain, X509_free);
584         cpk->chain = chain;
585         return 1;
586         }
587
588 int ssl_cert_set1_chain(CERT *c, STACK_OF(X509) *chain)
589         {
590         STACK_OF(X509) *dchain;
591         if (!chain)
592                 return ssl_cert_set0_chain(c, NULL);
593         dchain = X509_chain_up_ref(chain);
594         if (!dchain)
595                 return 0;
596         if (!ssl_cert_set0_chain(c, dchain))
597                 {
598                 sk_X509_pop_free(dchain, X509_free);
599                 return 0;
600                 }
601         return 1;
602         }
603
604 int ssl_cert_add0_chain_cert(CERT *c, X509 *x)
605         {
606         CERT_PKEY *cpk = c->key;
607         if (!cpk)
608                 return 0;
609         if (!cpk->chain)
610                 cpk->chain = sk_X509_new_null();
611         if (!cpk->chain || !sk_X509_push(cpk->chain, x))
612                 return 0;
613         return 1;
614         }
615
616 int ssl_cert_add1_chain_cert(CERT *c, X509 *x)
617         {
618         if (!ssl_cert_add0_chain_cert(c, x))
619                 return 0;
620         CRYPTO_add(&x->references, 1, CRYPTO_LOCK_X509);
621         return 1;
622         }
623
624 int ssl_cert_select_current(CERT *c, X509 *x)
625         {
626         int i;
627         for (i = 0; i < SSL_PKEY_NUM; i++)
628                 {
629                 if (c->pkeys[i].x509 == x)
630                         {
631                         c->key = &c->pkeys[i];
632                         return 1;
633                         }
634                 }
635         return 0;
636         }
637
638 void ssl_cert_set_cert_cb(CERT *c, int (*cb)(SSL *ssl, void *arg), void *arg)
639         {
640         c->cert_cb = cb;
641         c->cert_cb_arg = arg;
642         }
643
644 SESS_CERT *ssl_sess_cert_new(void)
645         {
646         SESS_CERT *ret;
647
648         ret = OPENSSL_malloc(sizeof *ret);
649         if (ret == NULL)
650                 {
651                 SSLerr(SSL_F_SSL_SESS_CERT_NEW, ERR_R_MALLOC_FAILURE);
652                 return NULL;
653                 }
654
655         memset(ret, 0 ,sizeof *ret);
656         ret->peer_key = &(ret->peer_pkeys[SSL_PKEY_RSA_ENC]);
657         ret->references = 1;
658
659         return ret;
660         }
661
662 void ssl_sess_cert_free(SESS_CERT *sc)
663         {
664         int i;
665
666         if (sc == NULL)
667                 return;
668
669         i = CRYPTO_add(&sc->references, -1, CRYPTO_LOCK_SSL_SESS_CERT);
670 #ifdef REF_PRINT
671         REF_PRINT("SESS_CERT", sc);
672 #endif
673         if (i > 0)
674                 return;
675 #ifdef REF_CHECK
676         if (i < 0)
677                 {
678                 fprintf(stderr,"ssl_sess_cert_free, bad reference count\n");
679                 abort(); /* ok */
680                 }
681 #endif
682
683         /* i == 0 */
684         if (sc->cert_chain != NULL)
685                 sk_X509_pop_free(sc->cert_chain, X509_free);
686         for (i = 0; i < SSL_PKEY_NUM; i++)
687                 {
688                 if (sc->peer_pkeys[i].x509 != NULL)
689                         X509_free(sc->peer_pkeys[i].x509);
690 #if 0 /* We don't have the peer's private key.  These lines are just
691            * here as a reminder that we're still using a not-quite-appropriate
692            * data structure. */
693                 if (sc->peer_pkeys[i].privatekey != NULL)
694                         EVP_PKEY_free(sc->peer_pkeys[i].privatekey);
695 #endif
696                 }
697
698 #ifndef OPENSSL_NO_RSA
699         if (sc->peer_rsa_tmp != NULL)
700                 RSA_free(sc->peer_rsa_tmp);
701 #endif
702 #ifndef OPENSSL_NO_DH
703         if (sc->peer_dh_tmp != NULL)
704                 DH_free(sc->peer_dh_tmp);
705 #endif
706 #ifndef OPENSSL_NO_ECDH
707         if (sc->peer_ecdh_tmp != NULL)
708                 EC_KEY_free(sc->peer_ecdh_tmp);
709 #endif
710
711         OPENSSL_free(sc);
712         }
713
714 int ssl_set_peer_cert_type(SESS_CERT *sc,int type)
715         {
716         sc->peer_cert_type = type;
717         return(1);
718         }
719
720 #ifndef OPENSSL_NO_DANE
721 /*
722  * return value:
723  * -1:  format or digest error
724  *  0:  match
725  *  1:  no match
726  */
727 int tlsa_cmp(const X509 *cert, const unsigned char *tlsa_record, unsigned int reclen)
728 {
729         const EVP_MD *md;
730         unsigned char digest[EVP_MAX_MD_SIZE];
731         unsigned int len, selector, matching_type;
732         int ret;
733
734         if (reclen<3) return -1;
735
736         selector      = tlsa_record[1];
737         matching_type = tlsa_record[2];
738         tlsa_record   += 3;
739         reclen        -= 3;
740
741         switch (matching_type) {
742         case 0:                         /* exact match */
743                 if (selector==0) {      /* full certificate */
744                         ret = EVP_Digest(tlsa_record,reclen,digest,&len,EVP_sha1(),NULL);
745                         return ret ? memcmp(cert->sha1_hash,digest,len)!=0 : -1;
746                 }
747                 else if (selector==1) { /* SubjectPublicKeyInfo */
748                         ASN1_BIT_STRING *key = X509_get0_pubkey_bitstr(cert);
749
750                         if (key == NULL) return -1;
751                         if (key->length != reclen) return 1;
752
753                         return memcmp(key->data,tlsa_record,reclen)!=0;
754                 }
755                 return -1;
756
757         case 1:                         /* SHA256 */
758         case 2:                         /* SHA512 */
759                 md = matching_type==1 ? EVP_sha256() : EVP_sha512();
760
761                 if (reclen!=EVP_MD_size(md)) return -1;
762
763                 if (selector==0) {      /* full certificate */
764                         ret = X509_digest(cert,md,digest,&len);
765                 }
766                 else if (selector==1) { /* SubjectPublicKeyInfo */
767                         ret = X509_pubkey_digest(cert,md,digest,&len);
768                 }
769                 else
770                         return -1;
771
772                 return ret ? memcmp(tlsa_record,digest,len)!=0 : -1;
773         default:
774                 return -1;
775         }
776 }
777
778 int dane_verify_callback(int ok, X509_STORE_CTX *ctx)
779 {
780         SSL *s = X509_STORE_CTX_get_ex_data(ctx,SSL_get_ex_data_X509_STORE_CTX_idx());
781         int depth=X509_STORE_CTX_get_error_depth(ctx);
782         X509 *cert = sk_X509_value(ctx->chain,depth);
783         unsigned int reclen, certificate_usage, witness_usage=0x100;
784         const unsigned char *tlsa_record = s->tlsa_record;
785         int tlsa_ret = -1;
786
787         if (s->verify_callback) ok = s->verify_callback(ok,ctx);
788
789         if (tlsa_record == NULL) return ok;
790
791         if (tlsa_record == (void*)-1) {
792                 ctx->error = X509_V_ERR_INVALID_CA;     /* temporary code? */
793                 return 0;
794         }
795
796         while ((reclen = *(unsigned int *)tlsa_record)) {
797                 tlsa_record += sizeof(unsigned int);
798
799                 /*
800                  * tlsa_record[0]       Certificate Usage field
801                  * tlsa_record[1]       Selector field
802                  * tlsa_record[2]       Matching Type Field
803                  * tlsa_record+3        Certificate Association data
804                  */
805                 certificate_usage = tlsa_record[0];
806
807                 if (depth==0 || certificate_usage==0 || certificate_usage==2) {
808                         tlsa_ret = tlsa_cmp(cert,tlsa_record,reclen);
809                         if (tlsa_ret==0) {
810                                 s->tlsa_witness = depth<<8|certificate_usage;
811                                 break;
812                         }
813                         else if (tlsa_ret==-1)
814                                 s->tlsa_witness = -1;   /* something phishy? */
815                 }
816
817                 tlsa_record += reclen;
818         }
819
820         if (depth==0) {
821                 switch (s->tlsa_witness&0xff) {         /* witnessed usage */
822                 case 0: /* CA constraint */
823                         if (s->tlsa_witness<0 && ctx->error==X509_V_OK)
824                                 ctx->error = X509_V_ERR_INVALID_CA;
825                         return 0;
826                 case 1: /* service certificate constraint */
827                         if (tlsa_ret!=0 && ctx->error==X509_V_OK)
828                                 ctx->error = X509_V_ERR_CERT_UNTRUSTED;
829                         return 0;
830                 case 2: /* trust anchor assertion */
831                         if ((s->tlsa_witness>>8)>0 && ctx->error==X509_V_ERR_UNABLE_TO_GET_ISSUER_CERT_LOCALLY)
832                                 ctx->error = X509_V_OK;
833                         break;
834                 case 3: /* domain-issued certificate */
835                         if (tlsa_ret==0)
836                                 ctx->error = X509_V_OK; /* override all errors? */
837                         break;
838                 default:/* there were TLSA records, but something phishy happened */
839                         ctx->error = X509_V_ERR_CERT_UNTRUSTED;
840                         return ok;
841                 }
842         }
843
844         /*
845          * returning 1 makes verify procedure traverse the whole chain,
846          * not actually approve it...
847          */
848         return 1;
849 }
850 #endif
851
852 int ssl_verify_cert_chain(SSL *s,STACK_OF(X509) *sk)
853         {
854         X509 *x;
855         int i;
856         X509_STORE *verify_store;
857         X509_STORE_CTX ctx;
858
859         if (s->cert->verify_store)
860                 verify_store = s->cert->verify_store;
861         else
862                 verify_store = s->ctx->cert_store;
863
864         if ((sk == NULL) || (sk_X509_num(sk) == 0))
865                 return(0);
866
867         x=sk_X509_value(sk,0);
868         if(!X509_STORE_CTX_init(&ctx,verify_store,x,sk))
869                 {
870                 SSLerr(SSL_F_SSL_VERIFY_CERT_CHAIN,ERR_R_X509_LIB);
871                 return(0);
872                 }
873         /* Set suite B flags if needed */
874         X509_STORE_CTX_set_flags(&ctx, tls1_suiteb(s));
875 #if 0
876         if (SSL_get_verify_depth(s) >= 0)
877                 X509_STORE_CTX_set_depth(&ctx, SSL_get_verify_depth(s));
878 #endif
879         X509_STORE_CTX_set_ex_data(&ctx,SSL_get_ex_data_X509_STORE_CTX_idx(),s);
880
881         /* We need to inherit the verify parameters. These can be determined by
882          * the context: if its a server it will verify SSL client certificates
883          * or vice versa.
884          */
885
886         X509_STORE_CTX_set_default(&ctx,
887                                 s->server ? "ssl_client" : "ssl_server");
888         /* Anything non-default in "param" should overwrite anything in the
889          * ctx.
890          */
891         X509_VERIFY_PARAM_set1(X509_STORE_CTX_get0_param(&ctx), s->param);
892
893 #ifndef OPENSSL_NO_DANE
894         X509_STORE_CTX_set_verify_cb(&ctx, dane_verify_callback);
895         s->tlsa_witness = -1;
896 #else
897         if (s->verify_callback)
898                 X509_STORE_CTX_set_verify_cb(&ctx, s->verify_callback);
899 #endif
900
901         if (s->ctx->app_verify_callback != NULL)
902 #if 1 /* new with OpenSSL 0.9.7 */
903                 i=s->ctx->app_verify_callback(&ctx, s->ctx->app_verify_arg); 
904 #else
905                 i=s->ctx->app_verify_callback(&ctx); /* should pass app_verify_arg */
906 #endif
907         else
908                 {
909 #ifndef OPENSSL_NO_X509_VERIFY
910                 i=X509_verify_cert(&ctx);
911 #else
912                 i=0;
913                 ctx.error=X509_V_ERR_APPLICATION_VERIFICATION;
914                 SSLerr(SSL_F_SSL_VERIFY_CERT_CHAIN,SSL_R_NO_VERIFY_CALLBACK);
915 #endif
916                 }
917
918         s->verify_result=ctx.error;
919         X509_STORE_CTX_cleanup(&ctx);
920
921         return(i);
922         }
923
924 static void set_client_CA_list(STACK_OF(X509_NAME) **ca_list,STACK_OF(X509_NAME) *name_list)
925         {
926         if (*ca_list != NULL)
927                 sk_X509_NAME_pop_free(*ca_list,X509_NAME_free);
928
929         *ca_list=name_list;
930         }
931
932 STACK_OF(X509_NAME) *SSL_dup_CA_list(STACK_OF(X509_NAME) *sk)
933         {
934         int i;
935         STACK_OF(X509_NAME) *ret;
936         X509_NAME *name;
937
938         ret=sk_X509_NAME_new_null();
939         for (i=0; i<sk_X509_NAME_num(sk); i++)
940                 {
941                 name=X509_NAME_dup(sk_X509_NAME_value(sk,i));
942                 if ((name == NULL) || !sk_X509_NAME_push(ret,name))
943                         {
944                         sk_X509_NAME_pop_free(ret,X509_NAME_free);
945                         return(NULL);
946                         }
947                 }
948         return(ret);
949         }
950
951 void SSL_set_client_CA_list(SSL *s,STACK_OF(X509_NAME) *name_list)
952         {
953         set_client_CA_list(&(s->client_CA),name_list);
954         }
955
956 void SSL_CTX_set_client_CA_list(SSL_CTX *ctx,STACK_OF(X509_NAME) *name_list)
957         {
958         set_client_CA_list(&(ctx->client_CA),name_list);
959         }
960
961 STACK_OF(X509_NAME) *SSL_CTX_get_client_CA_list(const SSL_CTX *ctx)
962         {
963         return(ctx->client_CA);
964         }
965
966 STACK_OF(X509_NAME) *SSL_get_client_CA_list(const SSL *s)
967         {
968         if (s->type == SSL_ST_CONNECT)
969                 { /* we are in the client */
970                 if (((s->version>>8) == SSL3_VERSION_MAJOR) &&
971                         (s->s3 != NULL))
972                         return(s->s3->tmp.ca_names);
973                 else
974                         return(NULL);
975                 }
976         else
977                 {
978                 if (s->client_CA != NULL)
979                         return(s->client_CA);
980                 else
981                         return(s->ctx->client_CA);
982                 }
983         }
984
985 static int add_client_CA(STACK_OF(X509_NAME) **sk,X509 *x)
986         {
987         X509_NAME *name;
988
989         if (x == NULL) return(0);
990         if ((*sk == NULL) && ((*sk=sk_X509_NAME_new_null()) == NULL))
991                 return(0);
992                 
993         if ((name=X509_NAME_dup(X509_get_subject_name(x))) == NULL)
994                 return(0);
995
996         if (!sk_X509_NAME_push(*sk,name))
997                 {
998                 X509_NAME_free(name);
999                 return(0);
1000                 }
1001         return(1);
1002         }
1003
1004 int SSL_add_client_CA(SSL *ssl,X509 *x)
1005         {
1006         return(add_client_CA(&(ssl->client_CA),x));
1007         }
1008
1009 int SSL_CTX_add_client_CA(SSL_CTX *ctx,X509 *x)
1010         {
1011         return(add_client_CA(&(ctx->client_CA),x));
1012         }
1013
1014 static int xname_cmp(const X509_NAME * const *a, const X509_NAME * const *b)
1015         {
1016         return(X509_NAME_cmp(*a,*b));
1017         }
1018
1019 #ifndef OPENSSL_NO_STDIO
1020 /*!
1021  * Load CA certs from a file into a ::STACK. Note that it is somewhat misnamed;
1022  * it doesn't really have anything to do with clients (except that a common use
1023  * for a stack of CAs is to send it to the client). Actually, it doesn't have
1024  * much to do with CAs, either, since it will load any old cert.
1025  * \param file the file containing one or more certs.
1026  * \return a ::STACK containing the certs.
1027  */
1028 STACK_OF(X509_NAME) *SSL_load_client_CA_file(const char *file)
1029         {
1030         BIO *in;
1031         X509 *x=NULL;
1032         X509_NAME *xn=NULL;
1033         STACK_OF(X509_NAME) *ret = NULL,*sk;
1034
1035         sk=sk_X509_NAME_new(xname_cmp);
1036
1037         in=BIO_new(BIO_s_file_internal());
1038
1039         if ((sk == NULL) || (in == NULL))
1040                 {
1041                 SSLerr(SSL_F_SSL_LOAD_CLIENT_CA_FILE,ERR_R_MALLOC_FAILURE);
1042                 goto err;
1043                 }
1044         
1045         if (!BIO_read_filename(in,file))
1046                 goto err;
1047
1048         for (;;)
1049                 {
1050                 if (PEM_read_bio_X509(in,&x,NULL,NULL) == NULL)
1051                         break;
1052                 if (ret == NULL)
1053                         {
1054                         ret = sk_X509_NAME_new_null();
1055                         if (ret == NULL)
1056                                 {
1057                                 SSLerr(SSL_F_SSL_LOAD_CLIENT_CA_FILE,ERR_R_MALLOC_FAILURE);
1058                                 goto err;
1059                                 }
1060                         }
1061                 if ((xn=X509_get_subject_name(x)) == NULL) goto err;
1062                 /* check for duplicates */
1063                 xn=X509_NAME_dup(xn);
1064                 if (xn == NULL) goto err;
1065                 if (sk_X509_NAME_find(sk,xn) >= 0)
1066                         X509_NAME_free(xn);
1067                 else
1068                         {
1069                         sk_X509_NAME_push(sk,xn);
1070                         sk_X509_NAME_push(ret,xn);
1071                         }
1072                 }
1073
1074         if (0)
1075                 {
1076 err:
1077                 if (ret != NULL) sk_X509_NAME_pop_free(ret,X509_NAME_free);
1078                 ret=NULL;
1079                 }
1080         if (sk != NULL) sk_X509_NAME_free(sk);
1081         if (in != NULL) BIO_free(in);
1082         if (x != NULL) X509_free(x);
1083         if (ret != NULL)
1084                 ERR_clear_error();
1085         return(ret);
1086         }
1087 #endif
1088
1089 /*!
1090  * Add a file of certs to a stack.
1091  * \param stack the stack to add to.
1092  * \param file the file to add from. All certs in this file that are not
1093  * already in the stack will be added.
1094  * \return 1 for success, 0 for failure. Note that in the case of failure some
1095  * certs may have been added to \c stack.
1096  */
1097
1098 int SSL_add_file_cert_subjects_to_stack(STACK_OF(X509_NAME) *stack,
1099                                         const char *file)
1100         {
1101         BIO *in;
1102         X509 *x=NULL;
1103         X509_NAME *xn=NULL;
1104         int ret=1;
1105         int (*oldcmp)(const X509_NAME * const *a, const X509_NAME * const *b);
1106         
1107         oldcmp=sk_X509_NAME_set_cmp_func(stack,xname_cmp);
1108         
1109         in=BIO_new(BIO_s_file_internal());
1110         
1111         if (in == NULL)
1112                 {
1113                 SSLerr(SSL_F_SSL_ADD_FILE_CERT_SUBJECTS_TO_STACK,ERR_R_MALLOC_FAILURE);
1114                 goto err;
1115                 }
1116         
1117         if (!BIO_read_filename(in,file))
1118                 goto err;
1119         
1120         for (;;)
1121                 {
1122                 if (PEM_read_bio_X509(in,&x,NULL,NULL) == NULL)
1123                         break;
1124                 if ((xn=X509_get_subject_name(x)) == NULL) goto err;
1125                 xn=X509_NAME_dup(xn);
1126                 if (xn == NULL) goto err;
1127                 if (sk_X509_NAME_find(stack,xn) >= 0)
1128                         X509_NAME_free(xn);
1129                 else
1130                         sk_X509_NAME_push(stack,xn);
1131                 }
1132
1133         ERR_clear_error();
1134
1135         if (0)
1136                 {
1137 err:
1138                 ret=0;
1139                 }
1140         if(in != NULL)
1141                 BIO_free(in);
1142         if(x != NULL)
1143                 X509_free(x);
1144         
1145         (void)sk_X509_NAME_set_cmp_func(stack,oldcmp);
1146
1147         return ret;
1148         }
1149
1150 /*!
1151  * Add a directory of certs to a stack.
1152  * \param stack the stack to append to.
1153  * \param dir the directory to append from. All files in this directory will be
1154  * examined as potential certs. Any that are acceptable to
1155  * SSL_add_dir_cert_subjects_to_stack() that are not already in the stack will be
1156  * included.
1157  * \return 1 for success, 0 for failure. Note that in the case of failure some
1158  * certs may have been added to \c stack.
1159  */
1160
1161 int SSL_add_dir_cert_subjects_to_stack(STACK_OF(X509_NAME) *stack,
1162                                        const char *dir)
1163         {
1164         OPENSSL_DIR_CTX *d = NULL;
1165         const char *filename;
1166         int ret = 0;
1167
1168         CRYPTO_w_lock(CRYPTO_LOCK_READDIR);
1169
1170         /* Note that a side effect is that the CAs will be sorted by name */
1171
1172         while((filename = OPENSSL_DIR_read(&d, dir)))
1173                 {
1174                 char buf[1024];
1175                 int r;
1176
1177                 if(strlen(dir)+strlen(filename)+2 > sizeof buf)
1178                         {
1179                         SSLerr(SSL_F_SSL_ADD_DIR_CERT_SUBJECTS_TO_STACK,SSL_R_PATH_TOO_LONG);
1180                         goto err;
1181                         }
1182
1183 #ifdef OPENSSL_SYS_VMS
1184                 r = BIO_snprintf(buf,sizeof buf,"%s%s",dir,filename);
1185 #else
1186                 r = BIO_snprintf(buf,sizeof buf,"%s/%s",dir,filename);
1187 #endif
1188                 if (r <= 0 || r >= (int)sizeof(buf))
1189                         goto err;
1190                 if(!SSL_add_file_cert_subjects_to_stack(stack,buf))
1191                         goto err;
1192                 }
1193
1194         if (errno)
1195                 {
1196                 SYSerr(SYS_F_OPENDIR, get_last_sys_error());
1197                 ERR_add_error_data(3, "OPENSSL_DIR_read(&ctx, '", dir, "')");
1198                 SSLerr(SSL_F_SSL_ADD_DIR_CERT_SUBJECTS_TO_STACK, ERR_R_SYS_LIB);
1199                 goto err;
1200                 }
1201
1202         ret = 1;
1203
1204 err:
1205         if (d) OPENSSL_DIR_end(&d);
1206         CRYPTO_w_unlock(CRYPTO_LOCK_READDIR);
1207         return ret;
1208         }
1209
1210 /* Add a certificate to a BUF_MEM structure */
1211
1212 static int ssl_add_cert_to_buf(BUF_MEM *buf, unsigned long *l, X509 *x)
1213         {
1214         int n;
1215         unsigned char *p;
1216
1217         n=i2d_X509(x,NULL);
1218         if (!BUF_MEM_grow_clean(buf,(int)(n+(*l)+3)))
1219                 {
1220                 SSLerr(SSL_F_SSL_ADD_CERT_TO_BUF,ERR_R_BUF_LIB);
1221                 return 0;
1222                 }
1223         p=(unsigned char *)&(buf->data[*l]);
1224         l2n3(n,p);
1225         i2d_X509(x,&p);
1226         *l+=n+3;
1227
1228         return 1;
1229         }
1230
1231 /* Add certificate chain to internal SSL BUF_MEM strcuture */
1232 int ssl_add_cert_chain(SSL *s, CERT_PKEY *cpk, unsigned long *l)
1233         {
1234         BUF_MEM *buf = s->init_buf;
1235         int no_chain;
1236         int i;
1237
1238         X509 *x;
1239         STACK_OF(X509) *extra_certs;
1240         X509_STORE *chain_store;
1241
1242         if (cpk)
1243                 x = cpk->x509;
1244         else
1245                 x = NULL;
1246
1247         if (s->cert->chain_store)
1248                 chain_store = s->cert->chain_store;
1249         else
1250                 chain_store = s->ctx->cert_store;
1251
1252         /* If we have a certificate specific chain use it, else use
1253          * parent ctx.
1254          */
1255         if (cpk && cpk->chain)
1256                 extra_certs = cpk->chain;
1257         else
1258                 extra_certs = s->ctx->extra_certs;
1259
1260         if ((s->mode & SSL_MODE_NO_AUTO_CHAIN) || extra_certs)
1261                 no_chain = 1;
1262         else
1263                 no_chain = 0;
1264
1265         /* TLSv1 sends a chain with nothing in it, instead of an alert */
1266         if (!BUF_MEM_grow_clean(buf,10))
1267                 {
1268                 SSLerr(SSL_F_SSL_ADD_CERT_CHAIN,ERR_R_BUF_LIB);
1269                 return 0;
1270                 }
1271         if (x != NULL)
1272                 {
1273                 if (no_chain)
1274                         {
1275                         if (!ssl_add_cert_to_buf(buf, l, x))
1276                                 return 0;
1277                         }
1278                 else
1279                         {
1280                         X509_STORE_CTX xs_ctx;
1281
1282                         if (!X509_STORE_CTX_init(&xs_ctx,chain_store,x,NULL))
1283                                 {
1284                                 SSLerr(SSL_F_SSL_ADD_CERT_CHAIN,ERR_R_X509_LIB);
1285                                 return(0);
1286                                 }
1287                         X509_verify_cert(&xs_ctx);
1288                         /* Don't leave errors in the queue */
1289                         ERR_clear_error();
1290                         for (i=0; i < sk_X509_num(xs_ctx.chain); i++)
1291                                 {
1292                                 x = sk_X509_value(xs_ctx.chain, i);
1293
1294                                 if (!ssl_add_cert_to_buf(buf, l, x))
1295                                         {
1296                                         X509_STORE_CTX_cleanup(&xs_ctx);
1297                                         return 0;
1298                                         }
1299                                 }
1300                         X509_STORE_CTX_cleanup(&xs_ctx);
1301                         }
1302                 }
1303         for (i=0; i<sk_X509_num(extra_certs); i++)
1304                 {
1305                 x=sk_X509_value(extra_certs,i);
1306                 if (!ssl_add_cert_to_buf(buf, l, x))
1307                         return 0;
1308                 }
1309
1310         return 1;
1311         }
1312
1313 /* Build a certificate chain for current certificate */
1314 int ssl_build_cert_chain(CERT *c, X509_STORE *chain_store, int flags)
1315         {
1316         CERT_PKEY *cpk = c->key;
1317         X509_STORE_CTX xs_ctx;
1318         STACK_OF(X509) *chain = NULL, *untrusted = NULL;
1319         X509 *x;
1320         int i;
1321
1322         if (!cpk->x509)
1323                 {
1324                 SSLerr(SSL_F_SSL_BUILD_CERT_CHAIN, SSL_R_NO_CERTIFICATE_SET);
1325                 return 0;
1326                 }
1327
1328         if (c->chain_store)
1329                 chain_store = c->chain_store;
1330
1331         if (flags & SSL_BUILD_CHAIN_FLAG_UNTRUSTED)
1332                 untrusted = cpk->chain;
1333
1334         if (!X509_STORE_CTX_init(&xs_ctx, chain_store, cpk->x509, untrusted))
1335                 {
1336                 SSLerr(SSL_F_SSL_BUILD_CERT_CHAIN, ERR_R_X509_LIB);
1337                 return 0;
1338                 }
1339         /* Set suite B flags if needed */
1340         X509_STORE_CTX_set_flags(&xs_ctx, c->cert_flags & SSL_CERT_FLAG_SUITEB_128_LOS);
1341
1342         i = X509_verify_cert(&xs_ctx);
1343         if (i > 0)
1344                 chain = X509_STORE_CTX_get1_chain(&xs_ctx);
1345         X509_STORE_CTX_cleanup(&xs_ctx);
1346         if (i <= 0)
1347                 {
1348                 SSLerr(SSL_F_SSL_BUILD_CERT_CHAIN, SSL_R_CERTIFICATE_VERIFY_FAILED);
1349                 return 0;
1350                 }
1351         if (cpk->chain)
1352                 sk_X509_pop_free(cpk->chain, X509_free);
1353         /* Remove EE certificate from chain */
1354         x = sk_X509_shift(chain);
1355         X509_free(x);
1356         if (flags & SSL_BUILD_CHAIN_FLAG_NO_ROOT)
1357                 {
1358                 x = sk_X509_pop(chain);
1359                 X509_free(x);
1360                 }
1361         cpk->chain = chain;
1362
1363         return 1;
1364         }
1365
1366 int ssl_cert_set_cert_store(CERT *c, X509_STORE *store, int chain, int ref)
1367         {
1368         X509_STORE **pstore;
1369         if (chain)
1370                 pstore = &c->chain_store;
1371         else
1372                 pstore = &c->verify_store;
1373         if (*pstore)
1374                 X509_STORE_free(*pstore);
1375         *pstore = store;
1376         if (ref && store)
1377                 CRYPTO_add(&store->references, 1, CRYPTO_LOCK_X509_STORE);
1378         return 1;
1379         }
1380