xref: /freebsd/crypto/openssl/ssl/ssl_lib.c (revision 95d45410b5100e07f6f98450bcd841a8945d4726)
1 /*! \file ssl/ssl_lib.c
2  *  \brief Version independent SSL functions.
3  */
4 /* Copyright (C) 1995-1998 Eric Young (eay@cryptsoft.com)
5  * All rights reserved.
6  *
7  * This package is an SSL implementation written
8  * by Eric Young (eay@cryptsoft.com).
9  * The implementation was written so as to conform with Netscapes SSL.
10  *
11  * This library is free for commercial and non-commercial use as long as
12  * the following conditions are aheared to.  The following conditions
13  * apply to all code found in this distribution, be it the RC4, RSA,
14  * lhash, DES, etc., code; not just the SSL code.  The SSL documentation
15  * included with this distribution is covered by the same copyright terms
16  * except that the holder is Tim Hudson (tjh@cryptsoft.com).
17  *
18  * Copyright remains Eric Young's, and as such any Copyright notices in
19  * the code are not to be removed.
20  * If this package is used in a product, Eric Young should be given attribution
21  * as the author of the parts of the library used.
22  * This can be in the form of a textual message at program startup or
23  * in documentation (online or textual) provided with the package.
24  *
25  * Redistribution and use in source and binary forms, with or without
26  * modification, are permitted provided that the following conditions
27  * are met:
28  * 1. Redistributions of source code must retain the copyright
29  *    notice, this list of conditions and the following disclaimer.
30  * 2. Redistributions in binary form must reproduce the above copyright
31  *    notice, this list of conditions and the following disclaimer in the
32  *    documentation and/or other materials provided with the distribution.
33  * 3. All advertising materials mentioning features or use of this software
34  *    must display the following acknowledgement:
35  *    "This product includes cryptographic software written by
36  *     Eric Young (eay@cryptsoft.com)"
37  *    The word 'cryptographic' can be left out if the rouines from the library
38  *    being used are not cryptographic related :-).
39  * 4. If you include any Windows specific code (or a derivative thereof) from
40  *    the apps directory (application code) you must include an acknowledgement:
41  *    "This product includes software written by Tim Hudson (tjh@cryptsoft.com)"
42  *
43  * THIS SOFTWARE IS PROVIDED BY ERIC YOUNG ``AS IS'' AND
44  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
45  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
46  * ARE DISCLAIMED.  IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
47  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
48  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
49  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
50  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
51  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
52  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
53  * SUCH DAMAGE.
54  *
55  * The licence and distribution terms for any publically available version or
56  * derivative of this code cannot be changed.  i.e. this code cannot simply be
57  * copied and put under another distribution licence
58  * [including the GNU Public Licence.]
59  */
60 /* ====================================================================
61  * Copyright (c) 1998-2007 The OpenSSL Project.  All rights reserved.
62  *
63  * Redistribution and use in source and binary forms, with or without
64  * modification, are permitted provided that the following conditions
65  * are met:
66  *
67  * 1. Redistributions of source code must retain the above copyright
68  *    notice, this list of conditions and the following disclaimer.
69  *
70  * 2. Redistributions in binary form must reproduce the above copyright
71  *    notice, this list of conditions and the following disclaimer in
72  *    the documentation and/or other materials provided with the
73  *    distribution.
74  *
75  * 3. All advertising materials mentioning features or use of this
76  *    software must display the following acknowledgment:
77  *    "This product includes software developed by the OpenSSL Project
78  *    for use in the OpenSSL Toolkit. (http://www.openssl.org/)"
79  *
80  * 4. The names "OpenSSL Toolkit" and "OpenSSL Project" must not be used to
81  *    endorse or promote products derived from this software without
82  *    prior written permission. For written permission, please contact
83  *    openssl-core@openssl.org.
84  *
85  * 5. Products derived from this software may not be called "OpenSSL"
86  *    nor may "OpenSSL" appear in their names without prior written
87  *    permission of the OpenSSL Project.
88  *
89  * 6. Redistributions of any form whatsoever must retain the following
90  *    acknowledgment:
91  *    "This product includes software developed by the OpenSSL Project
92  *    for use in the OpenSSL Toolkit (http://www.openssl.org/)"
93  *
94  * THIS SOFTWARE IS PROVIDED BY THE OpenSSL PROJECT ``AS IS'' AND ANY
95  * EXPRESSED OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
96  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
97  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE OpenSSL PROJECT OR
98  * ITS CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
99  * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
100  * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
101  * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
102  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT,
103  * STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
104  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED
105  * OF THE POSSIBILITY OF SUCH DAMAGE.
106  * ====================================================================
107  *
108  * This product includes cryptographic software written by Eric Young
109  * (eay@cryptsoft.com).  This product includes software written by Tim
110  * Hudson (tjh@cryptsoft.com).
111  *
112  */
113 /* ====================================================================
114  * Copyright 2002 Sun Microsystems, Inc. ALL RIGHTS RESERVED.
115  * ECC cipher suite support in OpenSSL originally developed by
116  * SUN MICROSYSTEMS, INC., and contributed to the OpenSSL project.
117  */
118 /* ====================================================================
119  * Copyright 2005 Nokia. All rights reserved.
120  *
121  * The portions of the attached software ("Contribution") is developed by
122  * Nokia Corporation and is licensed pursuant to the OpenSSL open source
123  * license.
124  *
125  * The Contribution, originally written by Mika Kousa and Pasi Eronen of
126  * Nokia Corporation, consists of the "PSK" (Pre-Shared Key) ciphersuites
127  * support (see RFC 4279) to OpenSSL.
128  *
129  * No patent licenses or other rights except those expressly stated in
130  * the OpenSSL open source license shall be deemed granted or received
131  * expressly, by implication, estoppel, or otherwise.
132  *
133  * No assurances are provided by Nokia that the Contribution does not
134  * infringe the patent or other intellectual property rights of any third
135  * party or that the license provides you with all the necessary rights
136  * to make use of the Contribution.
137  *
138  * THE SOFTWARE IS PROVIDED "AS IS" WITHOUT WARRANTY OF ANY KIND. IN
139  * ADDITION TO THE DISCLAIMERS INCLUDED IN THE LICENSE, NOKIA
140  * SPECIFICALLY DISCLAIMS ANY LIABILITY FOR CLAIMS BROUGHT BY YOU OR ANY
141  * OTHER ENTITY BASED ON INFRINGEMENT OF INTELLECTUAL PROPERTY RIGHTS OR
142  * OTHERWISE.
143  */
144 
145 #ifdef REF_CHECK
146 #  include <assert.h>
147 #endif
148 #include <stdio.h>
149 #include "ssl_locl.h"
150 #include "kssl_lcl.h"
151 #include <openssl/objects.h>
152 #include <openssl/lhash.h>
153 #include <openssl/x509v3.h>
154 #include <openssl/rand.h>
155 #include <openssl/ocsp.h>
156 #ifndef OPENSSL_NO_DH
157 #include <openssl/dh.h>
158 #endif
159 #ifndef OPENSSL_NO_ENGINE
160 #include <openssl/engine.h>
161 #endif
162 
163 const char *SSL_version_str=OPENSSL_VERSION_TEXT;
164 
165 SSL3_ENC_METHOD ssl3_undef_enc_method={
166 	/* evil casts, but these functions are only called if there's a library bug */
167 	(int (*)(SSL *,int))ssl_undefined_function,
168 	(int (*)(SSL *, unsigned char *, int))ssl_undefined_function,
169 	ssl_undefined_function,
170 	(int (*)(SSL *, unsigned char *, unsigned char *, int))ssl_undefined_function,
171 	(int (*)(SSL*, int))ssl_undefined_function,
172 	(int (*)(SSL *,  const char*, int, unsigned char *))ssl_undefined_function,
173 	0,	/* finish_mac_length */
174 	(int (*)(SSL *, int, unsigned char *))ssl_undefined_function,
175 	NULL,	/* client_finished_label */
176 	0,	/* client_finished_label_len */
177 	NULL,	/* server_finished_label */
178 	0,	/* server_finished_label_len */
179 	(int (*)(int))ssl_undefined_function,
180 	(int (*)(SSL *, unsigned char *, size_t, const char *,
181 		 size_t, const unsigned char *, size_t,
182 		 int use_context)) ssl_undefined_function,
183 	};
184 
185 int SSL_clear(SSL *s)
186 	{
187 
188 	if (s->method == NULL)
189 		{
190 		SSLerr(SSL_F_SSL_CLEAR,SSL_R_NO_METHOD_SPECIFIED);
191 		return(0);
192 		}
193 
194 	if (ssl_clear_bad_session(s))
195 		{
196 		SSL_SESSION_free(s->session);
197 		s->session=NULL;
198 		}
199 
200 	s->error=0;
201 	s->hit=0;
202 	s->shutdown=0;
203 
204 #if 0 /* Disabled since version 1.10 of this file (early return not
205        * needed because SSL_clear is not called when doing renegotiation) */
206 	/* This is set if we are doing dynamic renegotiation so keep
207 	 * the old cipher.  It is sort of a SSL_clear_lite :-) */
208 	if (s->renegotiate) return(1);
209 #else
210 	if (s->renegotiate)
211 		{
212 		SSLerr(SSL_F_SSL_CLEAR,ERR_R_INTERNAL_ERROR);
213 		return 0;
214 		}
215 #endif
216 
217 	s->type=0;
218 
219 	s->state=SSL_ST_BEFORE|((s->server)?SSL_ST_ACCEPT:SSL_ST_CONNECT);
220 
221 	s->version=s->method->version;
222 	s->client_version=s->version;
223 	s->rwstate=SSL_NOTHING;
224 	s->rstate=SSL_ST_READ_HEADER;
225 #if 0
226 	s->read_ahead=s->ctx->read_ahead;
227 #endif
228 
229 	if (s->init_buf != NULL)
230 		{
231 		BUF_MEM_free(s->init_buf);
232 		s->init_buf=NULL;
233 		}
234 
235 	ssl_clear_cipher_ctx(s);
236 	ssl_clear_hash_ctx(&s->read_hash);
237 	ssl_clear_hash_ctx(&s->write_hash);
238 
239 	s->first_packet=0;
240 
241 #if 1
242 	/* Check to see if we were changed into a different method, if
243 	 * so, revert back if we are not doing session-id reuse. */
244 	if (!s->in_handshake && (s->session == NULL) && (s->method != s->ctx->method))
245 		{
246 		s->method->ssl_free(s);
247 		s->method=s->ctx->method;
248 		if (!s->method->ssl_new(s))
249 			return(0);
250 		}
251 	else
252 #endif
253 		s->method->ssl_clear(s);
254 	return(1);
255 	}
256 
257 /** Used to change an SSL_CTXs default SSL method type */
258 int SSL_CTX_set_ssl_version(SSL_CTX *ctx,const SSL_METHOD *meth)
259 	{
260 	STACK_OF(SSL_CIPHER) *sk;
261 
262 	ctx->method=meth;
263 
264 	sk=ssl_create_cipher_list(ctx->method,&(ctx->cipher_list),
265 		&(ctx->cipher_list_by_id),
266 		meth->version == SSL2_VERSION ? "SSLv2" : SSL_DEFAULT_CIPHER_LIST);
267 	if ((sk == NULL) || (sk_SSL_CIPHER_num(sk) <= 0))
268 		{
269 		SSLerr(SSL_F_SSL_CTX_SET_SSL_VERSION,SSL_R_SSL_LIBRARY_HAS_NO_CIPHERS);
270 		return(0);
271 		}
272 	return(1);
273 	}
274 
275 SSL *SSL_new(SSL_CTX *ctx)
276 	{
277 	SSL *s;
278 
279 	if (ctx == NULL)
280 		{
281 		SSLerr(SSL_F_SSL_NEW,SSL_R_NULL_SSL_CTX);
282 		return(NULL);
283 		}
284 	if (ctx->method == NULL)
285 		{
286 		SSLerr(SSL_F_SSL_NEW,SSL_R_SSL_CTX_HAS_NO_DEFAULT_SSL_VERSION);
287 		return(NULL);
288 		}
289 
290 	s=(SSL *)OPENSSL_malloc(sizeof(SSL));
291 	if (s == NULL) goto err;
292 	memset(s,0,sizeof(SSL));
293 
294 #ifndef	OPENSSL_NO_KRB5
295 	s->kssl_ctx = kssl_ctx_new();
296 #endif	/* OPENSSL_NO_KRB5 */
297 
298 	s->options=ctx->options;
299 	s->mode=ctx->mode;
300 	s->max_cert_list=ctx->max_cert_list;
301 
302 	if (ctx->cert != NULL)
303 		{
304 		/* Earlier library versions used to copy the pointer to
305 		 * the CERT, not its contents; only when setting new
306 		 * parameters for the per-SSL copy, ssl_cert_new would be
307 		 * called (and the direct reference to the per-SSL_CTX
308 		 * settings would be lost, but those still were indirectly
309 		 * accessed for various purposes, and for that reason they
310 		 * used to be known as s->ctx->default_cert).
311 		 * Now we don't look at the SSL_CTX's CERT after having
312 		 * duplicated it once. */
313 
314 		s->cert = ssl_cert_dup(ctx->cert);
315 		if (s->cert == NULL)
316 			goto err;
317 		}
318 	else
319 		s->cert=NULL; /* Cannot really happen (see SSL_CTX_new) */
320 
321 	s->read_ahead=ctx->read_ahead;
322 	s->msg_callback=ctx->msg_callback;
323 	s->msg_callback_arg=ctx->msg_callback_arg;
324 	s->verify_mode=ctx->verify_mode;
325 #if 0
326 	s->verify_depth=ctx->verify_depth;
327 #endif
328 	s->sid_ctx_length=ctx->sid_ctx_length;
329 	OPENSSL_assert(s->sid_ctx_length <= sizeof s->sid_ctx);
330 	memcpy(&s->sid_ctx,&ctx->sid_ctx,sizeof(s->sid_ctx));
331 	s->verify_callback=ctx->default_verify_callback;
332 	s->generate_session_id=ctx->generate_session_id;
333 
334 	s->param = X509_VERIFY_PARAM_new();
335 	if (!s->param)
336 		goto err;
337 	X509_VERIFY_PARAM_inherit(s->param, ctx->param);
338 #if 0
339 	s->purpose = ctx->purpose;
340 	s->trust = ctx->trust;
341 #endif
342 	s->quiet_shutdown=ctx->quiet_shutdown;
343 	s->max_send_fragment = ctx->max_send_fragment;
344 
345 	CRYPTO_add(&ctx->references,1,CRYPTO_LOCK_SSL_CTX);
346 	s->ctx=ctx;
347 #ifndef OPENSSL_NO_TLSEXT
348 	s->tlsext_debug_cb = 0;
349 	s->tlsext_debug_arg = NULL;
350 	s->tlsext_ticket_expected = 0;
351 	s->tlsext_status_type = -1;
352 	s->tlsext_status_expected = 0;
353 	s->tlsext_ocsp_ids = NULL;
354 	s->tlsext_ocsp_exts = NULL;
355 	s->tlsext_ocsp_resp = NULL;
356 	s->tlsext_ocsp_resplen = -1;
357 	CRYPTO_add(&ctx->references,1,CRYPTO_LOCK_SSL_CTX);
358 	s->initial_ctx=ctx;
359 # ifndef OPENSSL_NO_NEXTPROTONEG
360 	s->next_proto_negotiated = NULL;
361 # endif
362 #endif
363 
364 	s->verify_result=X509_V_OK;
365 
366 	s->method=ctx->method;
367 
368 	if (!s->method->ssl_new(s))
369 		goto err;
370 
371 	s->references=1;
372 	s->server=(ctx->method->ssl_accept == ssl_undefined_function)?0:1;
373 
374 	SSL_clear(s);
375 
376 	CRYPTO_new_ex_data(CRYPTO_EX_INDEX_SSL, s, &s->ex_data);
377 
378 #ifndef OPENSSL_NO_PSK
379 	s->psk_client_callback=ctx->psk_client_callback;
380 	s->psk_server_callback=ctx->psk_server_callback;
381 #endif
382 
383 	return(s);
384 err:
385 	if (s != NULL)
386 		{
387 		if (s->cert != NULL)
388 			ssl_cert_free(s->cert);
389 		if (s->ctx != NULL)
390 			SSL_CTX_free(s->ctx); /* decrement reference count */
391 		OPENSSL_free(s);
392 		}
393 	SSLerr(SSL_F_SSL_NEW,ERR_R_MALLOC_FAILURE);
394 	return(NULL);
395 	}
396 
397 int SSL_CTX_set_session_id_context(SSL_CTX *ctx,const unsigned char *sid_ctx,
398 				   unsigned int sid_ctx_len)
399     {
400     if(sid_ctx_len > sizeof ctx->sid_ctx)
401 	{
402 	SSLerr(SSL_F_SSL_CTX_SET_SESSION_ID_CONTEXT,SSL_R_SSL_SESSION_ID_CONTEXT_TOO_LONG);
403 	return 0;
404 	}
405     ctx->sid_ctx_length=sid_ctx_len;
406     memcpy(ctx->sid_ctx,sid_ctx,sid_ctx_len);
407 
408     return 1;
409     }
410 
411 int SSL_set_session_id_context(SSL *ssl,const unsigned char *sid_ctx,
412 			       unsigned int sid_ctx_len)
413     {
414     if(sid_ctx_len > SSL_MAX_SID_CTX_LENGTH)
415 	{
416 	SSLerr(SSL_F_SSL_SET_SESSION_ID_CONTEXT,SSL_R_SSL_SESSION_ID_CONTEXT_TOO_LONG);
417 	return 0;
418 	}
419     ssl->sid_ctx_length=sid_ctx_len;
420     memcpy(ssl->sid_ctx,sid_ctx,sid_ctx_len);
421 
422     return 1;
423     }
424 
425 int SSL_CTX_set_generate_session_id(SSL_CTX *ctx, GEN_SESSION_CB cb)
426 	{
427 	CRYPTO_w_lock(CRYPTO_LOCK_SSL_CTX);
428 	ctx->generate_session_id = cb;
429 	CRYPTO_w_unlock(CRYPTO_LOCK_SSL_CTX);
430 	return 1;
431 	}
432 
433 int SSL_set_generate_session_id(SSL *ssl, GEN_SESSION_CB cb)
434 	{
435 	CRYPTO_w_lock(CRYPTO_LOCK_SSL);
436 	ssl->generate_session_id = cb;
437 	CRYPTO_w_unlock(CRYPTO_LOCK_SSL);
438 	return 1;
439 	}
440 
441 int SSL_has_matching_session_id(const SSL *ssl, const unsigned char *id,
442 				unsigned int id_len)
443 	{
444 	/* A quick examination of SSL_SESSION_hash and SSL_SESSION_cmp shows how
445 	 * we can "construct" a session to give us the desired check - ie. to
446 	 * find if there's a session in the hash table that would conflict with
447 	 * any new session built out of this id/id_len and the ssl_version in
448 	 * use by this SSL. */
449 	SSL_SESSION r, *p;
450 
451 	if(id_len > sizeof r.session_id)
452 		return 0;
453 
454 	r.ssl_version = ssl->version;
455 	r.session_id_length = id_len;
456 	memcpy(r.session_id, id, id_len);
457 	/* NB: SSLv2 always uses a fixed 16-byte session ID, so even if a
458 	 * callback is calling us to check the uniqueness of a shorter ID, it
459 	 * must be compared as a padded-out ID because that is what it will be
460 	 * converted to when the callback has finished choosing it. */
461 	if((r.ssl_version == SSL2_VERSION) &&
462 			(id_len < SSL2_SSL_SESSION_ID_LENGTH))
463 		{
464 		memset(r.session_id + id_len, 0,
465 			SSL2_SSL_SESSION_ID_LENGTH - id_len);
466 		r.session_id_length = SSL2_SSL_SESSION_ID_LENGTH;
467 		}
468 
469 	CRYPTO_r_lock(CRYPTO_LOCK_SSL_CTX);
470 	p = lh_SSL_SESSION_retrieve(ssl->ctx->sessions, &r);
471 	CRYPTO_r_unlock(CRYPTO_LOCK_SSL_CTX);
472 	return (p != NULL);
473 	}
474 
475 int SSL_CTX_set_purpose(SSL_CTX *s, int purpose)
476 	{
477 	return X509_VERIFY_PARAM_set_purpose(s->param, purpose);
478 	}
479 
480 int SSL_set_purpose(SSL *s, int purpose)
481 	{
482 	return X509_VERIFY_PARAM_set_purpose(s->param, purpose);
483 	}
484 
485 int SSL_CTX_set_trust(SSL_CTX *s, int trust)
486 	{
487 	return X509_VERIFY_PARAM_set_trust(s->param, trust);
488 	}
489 
490 int SSL_set_trust(SSL *s, int trust)
491 	{
492 	return X509_VERIFY_PARAM_set_trust(s->param, trust);
493 	}
494 
495 int SSL_CTX_set1_param(SSL_CTX *ctx, X509_VERIFY_PARAM *vpm)
496 	{
497 	return X509_VERIFY_PARAM_set1(ctx->param, vpm);
498 	}
499 
500 int SSL_set1_param(SSL *ssl, X509_VERIFY_PARAM *vpm)
501 	{
502 	return X509_VERIFY_PARAM_set1(ssl->param, vpm);
503 	}
504 
505 void SSL_free(SSL *s)
506 	{
507 	int i;
508 
509 	if(s == NULL)
510 	    return;
511 
512 	i=CRYPTO_add(&s->references,-1,CRYPTO_LOCK_SSL);
513 #ifdef REF_PRINT
514 	REF_PRINT("SSL",s);
515 #endif
516 	if (i > 0) return;
517 #ifdef REF_CHECK
518 	if (i < 0)
519 		{
520 		fprintf(stderr,"SSL_free, bad reference count\n");
521 		abort(); /* ok */
522 		}
523 #endif
524 
525 	if (s->param)
526 		X509_VERIFY_PARAM_free(s->param);
527 
528 	CRYPTO_free_ex_data(CRYPTO_EX_INDEX_SSL, s, &s->ex_data);
529 
530 	if (s->bbio != NULL)
531 		{
532 		/* If the buffering BIO is in place, pop it off */
533 		if (s->bbio == s->wbio)
534 			{
535 			s->wbio=BIO_pop(s->wbio);
536 			}
537 		BIO_free(s->bbio);
538 		s->bbio=NULL;
539 		}
540 	if (s->rbio != NULL)
541 		BIO_free_all(s->rbio);
542 	if ((s->wbio != NULL) && (s->wbio != s->rbio))
543 		BIO_free_all(s->wbio);
544 
545 	if (s->init_buf != NULL) BUF_MEM_free(s->init_buf);
546 
547 	/* add extra stuff */
548 	if (s->cipher_list != NULL) sk_SSL_CIPHER_free(s->cipher_list);
549 	if (s->cipher_list_by_id != NULL) sk_SSL_CIPHER_free(s->cipher_list_by_id);
550 
551 	/* Make the next call work :-) */
552 	if (s->session != NULL)
553 		{
554 		ssl_clear_bad_session(s);
555 		SSL_SESSION_free(s->session);
556 		}
557 
558 	ssl_clear_cipher_ctx(s);
559 	ssl_clear_hash_ctx(&s->read_hash);
560 	ssl_clear_hash_ctx(&s->write_hash);
561 
562 	if (s->cert != NULL) ssl_cert_free(s->cert);
563 	/* Free up if allocated */
564 
565 #ifndef OPENSSL_NO_TLSEXT
566 	if (s->tlsext_hostname)
567 		OPENSSL_free(s->tlsext_hostname);
568 	if (s->initial_ctx) SSL_CTX_free(s->initial_ctx);
569 #ifndef OPENSSL_NO_EC
570 	if (s->tlsext_ecpointformatlist) OPENSSL_free(s->tlsext_ecpointformatlist);
571 	if (s->tlsext_ellipticcurvelist) OPENSSL_free(s->tlsext_ellipticcurvelist);
572 #endif /* OPENSSL_NO_EC */
573 	if (s->tlsext_opaque_prf_input) OPENSSL_free(s->tlsext_opaque_prf_input);
574 	if (s->tlsext_ocsp_exts)
575 		sk_X509_EXTENSION_pop_free(s->tlsext_ocsp_exts,
576 						X509_EXTENSION_free);
577 	if (s->tlsext_ocsp_ids)
578 		sk_OCSP_RESPID_pop_free(s->tlsext_ocsp_ids, OCSP_RESPID_free);
579 	if (s->tlsext_ocsp_resp)
580 		OPENSSL_free(s->tlsext_ocsp_resp);
581 #endif
582 
583 	if (s->client_CA != NULL)
584 		sk_X509_NAME_pop_free(s->client_CA,X509_NAME_free);
585 
586 	if (s->method != NULL) s->method->ssl_free(s);
587 
588 	if (s->ctx) SSL_CTX_free(s->ctx);
589 
590 #ifndef	OPENSSL_NO_KRB5
591 	if (s->kssl_ctx != NULL)
592 		kssl_ctx_free(s->kssl_ctx);
593 #endif	/* OPENSSL_NO_KRB5 */
594 
595 #if !defined(OPENSSL_NO_TLSEXT) && !defined(OPENSSL_NO_NEXTPROTONEG)
596 	if (s->next_proto_negotiated)
597 		OPENSSL_free(s->next_proto_negotiated);
598 #endif
599 
600 #ifndef OPENSSL_NO_SRTP
601         if (s->srtp_profiles)
602             sk_SRTP_PROTECTION_PROFILE_free(s->srtp_profiles);
603 #endif
604 
605 	OPENSSL_free(s);
606 	}
607 
608 void SSL_set_bio(SSL *s,BIO *rbio,BIO *wbio)
609 	{
610 	/* If the output buffering BIO is still in place, remove it
611 	 */
612 	if (s->bbio != NULL)
613 		{
614 		if (s->wbio == s->bbio)
615 			{
616 			s->wbio=s->wbio->next_bio;
617 			s->bbio->next_bio=NULL;
618 			}
619 		}
620 	if ((s->rbio != NULL) && (s->rbio != rbio))
621 		BIO_free_all(s->rbio);
622 	if ((s->wbio != NULL) && (s->wbio != wbio) && (s->rbio != s->wbio))
623 		BIO_free_all(s->wbio);
624 	s->rbio=rbio;
625 	s->wbio=wbio;
626 	}
627 
628 BIO *SSL_get_rbio(const SSL *s)
629 	{ return(s->rbio); }
630 
631 BIO *SSL_get_wbio(const SSL *s)
632 	{ return(s->wbio); }
633 
634 int SSL_get_fd(const SSL *s)
635 	{
636 	return(SSL_get_rfd(s));
637 	}
638 
639 int SSL_get_rfd(const SSL *s)
640 	{
641 	int ret= -1;
642 	BIO *b,*r;
643 
644 	b=SSL_get_rbio(s);
645 	r=BIO_find_type(b,BIO_TYPE_DESCRIPTOR);
646 	if (r != NULL)
647 		BIO_get_fd(r,&ret);
648 	return(ret);
649 	}
650 
651 int SSL_get_wfd(const SSL *s)
652 	{
653 	int ret= -1;
654 	BIO *b,*r;
655 
656 	b=SSL_get_wbio(s);
657 	r=BIO_find_type(b,BIO_TYPE_DESCRIPTOR);
658 	if (r != NULL)
659 		BIO_get_fd(r,&ret);
660 	return(ret);
661 	}
662 
663 #ifndef OPENSSL_NO_SOCK
664 int SSL_set_fd(SSL *s,int fd)
665 	{
666 	int ret=0;
667 	BIO *bio=NULL;
668 
669 	bio=BIO_new(BIO_s_socket());
670 
671 	if (bio == NULL)
672 		{
673 		SSLerr(SSL_F_SSL_SET_FD,ERR_R_BUF_LIB);
674 		goto err;
675 		}
676 	BIO_set_fd(bio,fd,BIO_NOCLOSE);
677 	SSL_set_bio(s,bio,bio);
678 	ret=1;
679 err:
680 	return(ret);
681 	}
682 
683 int SSL_set_wfd(SSL *s,int fd)
684 	{
685 	int ret=0;
686 	BIO *bio=NULL;
687 
688 	if ((s->rbio == NULL) || (BIO_method_type(s->rbio) != BIO_TYPE_SOCKET)
689 		|| ((int)BIO_get_fd(s->rbio,NULL) != fd))
690 		{
691 		bio=BIO_new(BIO_s_socket());
692 
693 		if (bio == NULL)
694 			{ SSLerr(SSL_F_SSL_SET_WFD,ERR_R_BUF_LIB); goto err; }
695 		BIO_set_fd(bio,fd,BIO_NOCLOSE);
696 		SSL_set_bio(s,SSL_get_rbio(s),bio);
697 		}
698 	else
699 		SSL_set_bio(s,SSL_get_rbio(s),SSL_get_rbio(s));
700 	ret=1;
701 err:
702 	return(ret);
703 	}
704 
705 int SSL_set_rfd(SSL *s,int fd)
706 	{
707 	int ret=0;
708 	BIO *bio=NULL;
709 
710 	if ((s->wbio == NULL) || (BIO_method_type(s->wbio) != BIO_TYPE_SOCKET)
711 		|| ((int)BIO_get_fd(s->wbio,NULL) != fd))
712 		{
713 		bio=BIO_new(BIO_s_socket());
714 
715 		if (bio == NULL)
716 			{
717 			SSLerr(SSL_F_SSL_SET_RFD,ERR_R_BUF_LIB);
718 			goto err;
719 			}
720 		BIO_set_fd(bio,fd,BIO_NOCLOSE);
721 		SSL_set_bio(s,bio,SSL_get_wbio(s));
722 		}
723 	else
724 		SSL_set_bio(s,SSL_get_wbio(s),SSL_get_wbio(s));
725 	ret=1;
726 err:
727 	return(ret);
728 	}
729 #endif
730 
731 
732 /* return length of latest Finished message we sent, copy to 'buf' */
733 size_t SSL_get_finished(const SSL *s, void *buf, size_t count)
734 	{
735 	size_t ret = 0;
736 
737 	if (s->s3 != NULL)
738 		{
739 		ret = s->s3->tmp.finish_md_len;
740 		if (count > ret)
741 			count = ret;
742 		memcpy(buf, s->s3->tmp.finish_md, count);
743 		}
744 	return ret;
745 	}
746 
747 /* return length of latest Finished message we expected, copy to 'buf' */
748 size_t SSL_get_peer_finished(const SSL *s, void *buf, size_t count)
749 	{
750 	size_t ret = 0;
751 
752 	if (s->s3 != NULL)
753 		{
754 		ret = s->s3->tmp.peer_finish_md_len;
755 		if (count > ret)
756 			count = ret;
757 		memcpy(buf, s->s3->tmp.peer_finish_md, count);
758 		}
759 	return ret;
760 	}
761 
762 
763 int SSL_get_verify_mode(const SSL *s)
764 	{
765 	return(s->verify_mode);
766 	}
767 
768 int SSL_get_verify_depth(const SSL *s)
769 	{
770 	return X509_VERIFY_PARAM_get_depth(s->param);
771 	}
772 
773 int (*SSL_get_verify_callback(const SSL *s))(int,X509_STORE_CTX *)
774 	{
775 	return(s->verify_callback);
776 	}
777 
778 int SSL_CTX_get_verify_mode(const SSL_CTX *ctx)
779 	{
780 	return(ctx->verify_mode);
781 	}
782 
783 int SSL_CTX_get_verify_depth(const SSL_CTX *ctx)
784 	{
785 	return X509_VERIFY_PARAM_get_depth(ctx->param);
786 	}
787 
788 int (*SSL_CTX_get_verify_callback(const SSL_CTX *ctx))(int,X509_STORE_CTX *)
789 	{
790 	return(ctx->default_verify_callback);
791 	}
792 
793 void SSL_set_verify(SSL *s,int mode,
794 		    int (*callback)(int ok,X509_STORE_CTX *ctx))
795 	{
796 	s->verify_mode=mode;
797 	if (callback != NULL)
798 		s->verify_callback=callback;
799 	}
800 
801 void SSL_set_verify_depth(SSL *s,int depth)
802 	{
803 	X509_VERIFY_PARAM_set_depth(s->param, depth);
804 	}
805 
806 void SSL_set_read_ahead(SSL *s,int yes)
807 	{
808 	s->read_ahead=yes;
809 	}
810 
811 int SSL_get_read_ahead(const SSL *s)
812 	{
813 	return(s->read_ahead);
814 	}
815 
816 int SSL_pending(const SSL *s)
817 	{
818 	/* SSL_pending cannot work properly if read-ahead is enabled
819 	 * (SSL_[CTX_]ctrl(..., SSL_CTRL_SET_READ_AHEAD, 1, NULL)),
820 	 * and it is impossible to fix since SSL_pending cannot report
821 	 * errors that may be observed while scanning the new data.
822 	 * (Note that SSL_pending() is often used as a boolean value,
823 	 * so we'd better not return -1.)
824 	 */
825 	return(s->method->ssl_pending(s));
826 	}
827 
828 X509 *SSL_get_peer_certificate(const SSL *s)
829 	{
830 	X509 *r;
831 
832 	if ((s == NULL) || (s->session == NULL))
833 		r=NULL;
834 	else
835 		r=s->session->peer;
836 
837 	if (r == NULL) return(r);
838 
839 	CRYPTO_add(&r->references,1,CRYPTO_LOCK_X509);
840 
841 	return(r);
842 	}
843 
844 STACK_OF(X509) *SSL_get_peer_cert_chain(const SSL *s)
845 	{
846 	STACK_OF(X509) *r;
847 
848 	if ((s == NULL) || (s->session == NULL) || (s->session->sess_cert == NULL))
849 		r=NULL;
850 	else
851 		r=s->session->sess_cert->cert_chain;
852 
853 	/* If we are a client, cert_chain includes the peer's own
854 	 * certificate; if we are a server, it does not. */
855 
856 	return(r);
857 	}
858 
859 /* Now in theory, since the calling process own 't' it should be safe to
860  * modify.  We need to be able to read f without being hassled */
861 void SSL_copy_session_id(SSL *t,const SSL *f)
862 	{
863 	CERT *tmp;
864 
865 	/* Do we need to to SSL locking? */
866 	SSL_set_session(t,SSL_get_session(f));
867 
868 	/* what if we are setup as SSLv2 but want to talk SSLv3 or
869 	 * vice-versa */
870 	if (t->method != f->method)
871 		{
872 		t->method->ssl_free(t);	/* cleanup current */
873 		t->method=f->method;	/* change method */
874 		t->method->ssl_new(t);	/* setup new */
875 		}
876 
877 	tmp=t->cert;
878 	if (f->cert != NULL)
879 		{
880 		CRYPTO_add(&f->cert->references,1,CRYPTO_LOCK_SSL_CERT);
881 		t->cert=f->cert;
882 		}
883 	else
884 		t->cert=NULL;
885 	if (tmp != NULL) ssl_cert_free(tmp);
886 	SSL_set_session_id_context(t,f->sid_ctx,f->sid_ctx_length);
887 	}
888 
889 /* Fix this so it checks all the valid key/cert options */
890 int SSL_CTX_check_private_key(const SSL_CTX *ctx)
891 	{
892 	if (	(ctx == NULL) ||
893 		(ctx->cert == NULL) ||
894 		(ctx->cert->key->x509 == NULL))
895 		{
896 		SSLerr(SSL_F_SSL_CTX_CHECK_PRIVATE_KEY,SSL_R_NO_CERTIFICATE_ASSIGNED);
897 		return(0);
898 		}
899 	if 	(ctx->cert->key->privatekey == NULL)
900 		{
901 		SSLerr(SSL_F_SSL_CTX_CHECK_PRIVATE_KEY,SSL_R_NO_PRIVATE_KEY_ASSIGNED);
902 		return(0);
903 		}
904 	return(X509_check_private_key(ctx->cert->key->x509, ctx->cert->key->privatekey));
905 	}
906 
907 /* Fix this function so that it takes an optional type parameter */
908 int SSL_check_private_key(const SSL *ssl)
909 	{
910 	if (ssl == NULL)
911 		{
912 		SSLerr(SSL_F_SSL_CHECK_PRIVATE_KEY,ERR_R_PASSED_NULL_PARAMETER);
913 		return(0);
914 		}
915 	if (ssl->cert == NULL)
916 		{
917 		SSLerr(SSL_F_SSL_CHECK_PRIVATE_KEY,SSL_R_NO_CERTIFICATE_ASSIGNED);
918 		return 0;
919 		}
920 	if (ssl->cert->key->x509 == NULL)
921 		{
922 		SSLerr(SSL_F_SSL_CHECK_PRIVATE_KEY,SSL_R_NO_CERTIFICATE_ASSIGNED);
923 		return(0);
924 		}
925 	if (ssl->cert->key->privatekey == NULL)
926 		{
927 		SSLerr(SSL_F_SSL_CHECK_PRIVATE_KEY,SSL_R_NO_PRIVATE_KEY_ASSIGNED);
928 		return(0);
929 		}
930 	return(X509_check_private_key(ssl->cert->key->x509,
931 		ssl->cert->key->privatekey));
932 	}
933 
934 int SSL_accept(SSL *s)
935 	{
936 	if (s->handshake_func == 0)
937 		/* Not properly initialized yet */
938 		SSL_set_accept_state(s);
939 
940 	return(s->method->ssl_accept(s));
941 	}
942 
943 int SSL_connect(SSL *s)
944 	{
945 	if (s->handshake_func == 0)
946 		/* Not properly initialized yet */
947 		SSL_set_connect_state(s);
948 
949 	return(s->method->ssl_connect(s));
950 	}
951 
952 long SSL_get_default_timeout(const SSL *s)
953 	{
954 	return(s->method->get_timeout());
955 	}
956 
957 int SSL_read(SSL *s,void *buf,int num)
958 	{
959 	if (s->handshake_func == 0)
960 		{
961 		SSLerr(SSL_F_SSL_READ, SSL_R_UNINITIALIZED);
962 		return -1;
963 		}
964 
965 	if (s->shutdown & SSL_RECEIVED_SHUTDOWN)
966 		{
967 		s->rwstate=SSL_NOTHING;
968 		return(0);
969 		}
970 	return(s->method->ssl_read(s,buf,num));
971 	}
972 
973 int SSL_peek(SSL *s,void *buf,int num)
974 	{
975 	if (s->handshake_func == 0)
976 		{
977 		SSLerr(SSL_F_SSL_PEEK, SSL_R_UNINITIALIZED);
978 		return -1;
979 		}
980 
981 	if (s->shutdown & SSL_RECEIVED_SHUTDOWN)
982 		{
983 		return(0);
984 		}
985 	return(s->method->ssl_peek(s,buf,num));
986 	}
987 
988 int SSL_write(SSL *s,const void *buf,int num)
989 	{
990 	if (s->handshake_func == 0)
991 		{
992 		SSLerr(SSL_F_SSL_WRITE, SSL_R_UNINITIALIZED);
993 		return -1;
994 		}
995 
996 	if (s->shutdown & SSL_SENT_SHUTDOWN)
997 		{
998 		s->rwstate=SSL_NOTHING;
999 		SSLerr(SSL_F_SSL_WRITE,SSL_R_PROTOCOL_IS_SHUTDOWN);
1000 		return(-1);
1001 		}
1002 	return(s->method->ssl_write(s,buf,num));
1003 	}
1004 
1005 int SSL_shutdown(SSL *s)
1006 	{
1007 	/* Note that this function behaves differently from what one might
1008 	 * expect.  Return values are 0 for no success (yet),
1009 	 * 1 for success; but calling it once is usually not enough,
1010 	 * even if blocking I/O is used (see ssl3_shutdown).
1011 	 */
1012 
1013 	if (s->handshake_func == 0)
1014 		{
1015 		SSLerr(SSL_F_SSL_SHUTDOWN, SSL_R_UNINITIALIZED);
1016 		return -1;
1017 		}
1018 
1019 	if ((s != NULL) && !SSL_in_init(s))
1020 		return(s->method->ssl_shutdown(s));
1021 	else
1022 		return(1);
1023 	}
1024 
1025 int SSL_renegotiate(SSL *s)
1026 	{
1027 	if (s->renegotiate == 0)
1028 		s->renegotiate=1;
1029 
1030 	s->new_session=1;
1031 
1032 	return(s->method->ssl_renegotiate(s));
1033 	}
1034 
1035 int SSL_renegotiate_abbreviated(SSL *s)
1036 	{
1037 	if (s->renegotiate == 0)
1038 		s->renegotiate=1;
1039 
1040 	s->new_session=0;
1041 
1042 	return(s->method->ssl_renegotiate(s));
1043 	}
1044 
1045 int SSL_renegotiate_pending(SSL *s)
1046 	{
1047 	/* becomes true when negotiation is requested;
1048 	 * false again once a handshake has finished */
1049 	return (s->renegotiate != 0);
1050 	}
1051 
1052 long SSL_ctrl(SSL *s,int cmd,long larg,void *parg)
1053 	{
1054 	long l;
1055 
1056 	switch (cmd)
1057 		{
1058 	case SSL_CTRL_GET_READ_AHEAD:
1059 		return(s->read_ahead);
1060 	case SSL_CTRL_SET_READ_AHEAD:
1061 		l=s->read_ahead;
1062 		s->read_ahead=larg;
1063 		return(l);
1064 
1065 	case SSL_CTRL_SET_MSG_CALLBACK_ARG:
1066 		s->msg_callback_arg = parg;
1067 		return 1;
1068 
1069 	case SSL_CTRL_OPTIONS:
1070 		return(s->options|=larg);
1071 	case SSL_CTRL_CLEAR_OPTIONS:
1072 		return(s->options&=~larg);
1073 	case SSL_CTRL_MODE:
1074 		return(s->mode|=larg);
1075 	case SSL_CTRL_CLEAR_MODE:
1076 		return(s->mode &=~larg);
1077 	case SSL_CTRL_GET_MAX_CERT_LIST:
1078 		return(s->max_cert_list);
1079 	case SSL_CTRL_SET_MAX_CERT_LIST:
1080 		l=s->max_cert_list;
1081 		s->max_cert_list=larg;
1082 		return(l);
1083 	case SSL_CTRL_SET_MTU:
1084 #ifndef OPENSSL_NO_DTLS1
1085 		if (larg < (long)dtls1_min_mtu())
1086 			return 0;
1087 #endif
1088 
1089 		if (SSL_version(s) == DTLS1_VERSION ||
1090 		    SSL_version(s) == DTLS1_BAD_VER)
1091 			{
1092 			s->d1->mtu = larg;
1093 			return larg;
1094 			}
1095 		return 0;
1096 	case SSL_CTRL_SET_MAX_SEND_FRAGMENT:
1097 		if (larg < 512 || larg > SSL3_RT_MAX_PLAIN_LENGTH)
1098 			return 0;
1099 		s->max_send_fragment = larg;
1100 		return 1;
1101 	case SSL_CTRL_GET_RI_SUPPORT:
1102 		if (s->s3)
1103 			return s->s3->send_connection_binding;
1104 		else return 0;
1105 	default:
1106 		return(s->method->ssl_ctrl(s,cmd,larg,parg));
1107 		}
1108 	}
1109 
1110 long SSL_callback_ctrl(SSL *s, int cmd, void (*fp)(void))
1111 	{
1112 	switch(cmd)
1113 		{
1114 	case SSL_CTRL_SET_MSG_CALLBACK:
1115 		s->msg_callback = (void (*)(int write_p, int version, int content_type, const void *buf, size_t len, SSL *ssl, void *arg))(fp);
1116 		return 1;
1117 
1118 	default:
1119 		return(s->method->ssl_callback_ctrl(s,cmd,fp));
1120 		}
1121 	}
1122 
1123 LHASH_OF(SSL_SESSION) *SSL_CTX_sessions(SSL_CTX *ctx)
1124 	{
1125 	return ctx->sessions;
1126 	}
1127 
1128 long SSL_CTX_ctrl(SSL_CTX *ctx,int cmd,long larg,void *parg)
1129 	{
1130 	long l;
1131 
1132 	switch (cmd)
1133 		{
1134 	case SSL_CTRL_GET_READ_AHEAD:
1135 		return(ctx->read_ahead);
1136 	case SSL_CTRL_SET_READ_AHEAD:
1137 		l=ctx->read_ahead;
1138 		ctx->read_ahead=larg;
1139 		return(l);
1140 
1141 	case SSL_CTRL_SET_MSG_CALLBACK_ARG:
1142 		ctx->msg_callback_arg = parg;
1143 		return 1;
1144 
1145 	case SSL_CTRL_GET_MAX_CERT_LIST:
1146 		return(ctx->max_cert_list);
1147 	case SSL_CTRL_SET_MAX_CERT_LIST:
1148 		l=ctx->max_cert_list;
1149 		ctx->max_cert_list=larg;
1150 		return(l);
1151 
1152 	case SSL_CTRL_SET_SESS_CACHE_SIZE:
1153 		l=ctx->session_cache_size;
1154 		ctx->session_cache_size=larg;
1155 		return(l);
1156 	case SSL_CTRL_GET_SESS_CACHE_SIZE:
1157 		return(ctx->session_cache_size);
1158 	case SSL_CTRL_SET_SESS_CACHE_MODE:
1159 		l=ctx->session_cache_mode;
1160 		ctx->session_cache_mode=larg;
1161 		return(l);
1162 	case SSL_CTRL_GET_SESS_CACHE_MODE:
1163 		return(ctx->session_cache_mode);
1164 
1165 	case SSL_CTRL_SESS_NUMBER:
1166 		return(lh_SSL_SESSION_num_items(ctx->sessions));
1167 	case SSL_CTRL_SESS_CONNECT:
1168 		return(ctx->stats.sess_connect);
1169 	case SSL_CTRL_SESS_CONNECT_GOOD:
1170 		return(ctx->stats.sess_connect_good);
1171 	case SSL_CTRL_SESS_CONNECT_RENEGOTIATE:
1172 		return(ctx->stats.sess_connect_renegotiate);
1173 	case SSL_CTRL_SESS_ACCEPT:
1174 		return(ctx->stats.sess_accept);
1175 	case SSL_CTRL_SESS_ACCEPT_GOOD:
1176 		return(ctx->stats.sess_accept_good);
1177 	case SSL_CTRL_SESS_ACCEPT_RENEGOTIATE:
1178 		return(ctx->stats.sess_accept_renegotiate);
1179 	case SSL_CTRL_SESS_HIT:
1180 		return(ctx->stats.sess_hit);
1181 	case SSL_CTRL_SESS_CB_HIT:
1182 		return(ctx->stats.sess_cb_hit);
1183 	case SSL_CTRL_SESS_MISSES:
1184 		return(ctx->stats.sess_miss);
1185 	case SSL_CTRL_SESS_TIMEOUTS:
1186 		return(ctx->stats.sess_timeout);
1187 	case SSL_CTRL_SESS_CACHE_FULL:
1188 		return(ctx->stats.sess_cache_full);
1189 	case SSL_CTRL_OPTIONS:
1190 		return(ctx->options|=larg);
1191 	case SSL_CTRL_CLEAR_OPTIONS:
1192 		return(ctx->options&=~larg);
1193 	case SSL_CTRL_MODE:
1194 		return(ctx->mode|=larg);
1195 	case SSL_CTRL_CLEAR_MODE:
1196 		return(ctx->mode&=~larg);
1197 	case SSL_CTRL_SET_MAX_SEND_FRAGMENT:
1198 		if (larg < 512 || larg > SSL3_RT_MAX_PLAIN_LENGTH)
1199 			return 0;
1200 		ctx->max_send_fragment = larg;
1201 		return 1;
1202 	default:
1203 		return(ctx->method->ssl_ctx_ctrl(ctx,cmd,larg,parg));
1204 		}
1205 	}
1206 
1207 long SSL_CTX_callback_ctrl(SSL_CTX *ctx, int cmd, void (*fp)(void))
1208 	{
1209 	switch(cmd)
1210 		{
1211 	case SSL_CTRL_SET_MSG_CALLBACK:
1212 		ctx->msg_callback = (void (*)(int write_p, int version, int content_type, const void *buf, size_t len, SSL *ssl, void *arg))(fp);
1213 		return 1;
1214 
1215 	default:
1216 		return(ctx->method->ssl_ctx_callback_ctrl(ctx,cmd,fp));
1217 		}
1218 	}
1219 
1220 int ssl_cipher_id_cmp(const SSL_CIPHER *a, const SSL_CIPHER *b)
1221 	{
1222 	long l;
1223 
1224 	l=a->id-b->id;
1225 	if (l == 0L)
1226 		return(0);
1227 	else
1228 		return((l > 0)?1:-1);
1229 	}
1230 
1231 int ssl_cipher_ptr_id_cmp(const SSL_CIPHER * const *ap,
1232 			const SSL_CIPHER * const *bp)
1233 	{
1234 	long l;
1235 
1236 	l=(*ap)->id-(*bp)->id;
1237 	if (l == 0L)
1238 		return(0);
1239 	else
1240 		return((l > 0)?1:-1);
1241 	}
1242 
1243 /** return a STACK of the ciphers available for the SSL and in order of
1244  * preference */
1245 STACK_OF(SSL_CIPHER) *SSL_get_ciphers(const SSL *s)
1246 	{
1247 	if (s != NULL)
1248 		{
1249 		if (s->cipher_list != NULL)
1250 			{
1251 			return(s->cipher_list);
1252 			}
1253 		else if ((s->ctx != NULL) &&
1254 			(s->ctx->cipher_list != NULL))
1255 			{
1256 			return(s->ctx->cipher_list);
1257 			}
1258 		}
1259 	return(NULL);
1260 	}
1261 
1262 /** return a STACK of the ciphers available for the SSL and in order of
1263  * algorithm id */
1264 STACK_OF(SSL_CIPHER) *ssl_get_ciphers_by_id(SSL *s)
1265 	{
1266 	if (s != NULL)
1267 		{
1268 		if (s->cipher_list_by_id != NULL)
1269 			{
1270 			return(s->cipher_list_by_id);
1271 			}
1272 		else if ((s->ctx != NULL) &&
1273 			(s->ctx->cipher_list_by_id != NULL))
1274 			{
1275 			return(s->ctx->cipher_list_by_id);
1276 			}
1277 		}
1278 	return(NULL);
1279 	}
1280 
1281 /** The old interface to get the same thing as SSL_get_ciphers() */
1282 const char *SSL_get_cipher_list(const SSL *s,int n)
1283 	{
1284 	SSL_CIPHER *c;
1285 	STACK_OF(SSL_CIPHER) *sk;
1286 
1287 	if (s == NULL) return(NULL);
1288 	sk=SSL_get_ciphers(s);
1289 	if ((sk == NULL) || (sk_SSL_CIPHER_num(sk) <= n))
1290 		return(NULL);
1291 	c=sk_SSL_CIPHER_value(sk,n);
1292 	if (c == NULL) return(NULL);
1293 	return(c->name);
1294 	}
1295 
1296 /** specify the ciphers to be used by default by the SSL_CTX */
1297 int SSL_CTX_set_cipher_list(SSL_CTX *ctx, const char *str)
1298 	{
1299 	STACK_OF(SSL_CIPHER) *sk;
1300 
1301 	sk=ssl_create_cipher_list(ctx->method,&ctx->cipher_list,
1302 		&ctx->cipher_list_by_id,str);
1303 	/* ssl_create_cipher_list may return an empty stack if it
1304 	 * was unable to find a cipher matching the given rule string
1305 	 * (for example if the rule string specifies a cipher which
1306 	 * has been disabled). This is not an error as far as
1307 	 * ssl_create_cipher_list is concerned, and hence
1308 	 * ctx->cipher_list and ctx->cipher_list_by_id has been
1309 	 * updated. */
1310 	if (sk == NULL)
1311 		return 0;
1312 	else if (sk_SSL_CIPHER_num(sk) == 0)
1313 		{
1314 		SSLerr(SSL_F_SSL_CTX_SET_CIPHER_LIST, SSL_R_NO_CIPHER_MATCH);
1315 		return 0;
1316 		}
1317 	return 1;
1318 	}
1319 
1320 /** specify the ciphers to be used by the SSL */
1321 int SSL_set_cipher_list(SSL *s,const char *str)
1322 	{
1323 	STACK_OF(SSL_CIPHER) *sk;
1324 
1325 	sk=ssl_create_cipher_list(s->ctx->method,&s->cipher_list,
1326 		&s->cipher_list_by_id,str);
1327 	/* see comment in SSL_CTX_set_cipher_list */
1328 	if (sk == NULL)
1329 		return 0;
1330 	else if (sk_SSL_CIPHER_num(sk) == 0)
1331 		{
1332 		SSLerr(SSL_F_SSL_SET_CIPHER_LIST, SSL_R_NO_CIPHER_MATCH);
1333 		return 0;
1334 		}
1335 	return 1;
1336 	}
1337 
1338 /* works well for SSLv2, not so good for SSLv3 */
1339 char *SSL_get_shared_ciphers(const SSL *s,char *buf,int len)
1340 	{
1341 	char *p;
1342 	STACK_OF(SSL_CIPHER) *sk;
1343 	SSL_CIPHER *c;
1344 	int i;
1345 
1346 	if ((s->session == NULL) || (s->session->ciphers == NULL) ||
1347 		(len < 2))
1348 		return(NULL);
1349 
1350 	p=buf;
1351 	sk=s->session->ciphers;
1352 
1353 	if (sk_SSL_CIPHER_num(sk) == 0)
1354 		return NULL;
1355 
1356 	for (i=0; i<sk_SSL_CIPHER_num(sk); i++)
1357 		{
1358 		int n;
1359 
1360 		c=sk_SSL_CIPHER_value(sk,i);
1361 		n=strlen(c->name);
1362 		if (n+1 > len)
1363 			{
1364 			if (p != buf)
1365 				--p;
1366 			*p='\0';
1367 			return buf;
1368 			}
1369 		strcpy(p,c->name);
1370 		p+=n;
1371 		*(p++)=':';
1372 		len-=n+1;
1373 		}
1374 	p[-1]='\0';
1375 	return(buf);
1376 	}
1377 
1378 int ssl_cipher_list_to_bytes(SSL *s,STACK_OF(SSL_CIPHER) *sk,unsigned char *p,
1379 			     int (*put_cb)(const SSL_CIPHER *, unsigned char *))
1380 	{
1381 	int i,j=0;
1382 	SSL_CIPHER *c;
1383 	unsigned char *q;
1384 #ifndef OPENSSL_NO_KRB5
1385 	int nokrb5 = !kssl_tgt_is_available(s->kssl_ctx);
1386 #endif /* OPENSSL_NO_KRB5 */
1387 
1388 	if (sk == NULL) return(0);
1389 	q=p;
1390 
1391 	for (i=0; i<sk_SSL_CIPHER_num(sk); i++)
1392 		{
1393 		c=sk_SSL_CIPHER_value(sk,i);
1394 		/* Skip TLS v1.2 only ciphersuites if lower than v1.2 */
1395 		if ((c->algorithm_ssl & SSL_TLSV1_2) &&
1396 			(TLS1_get_client_version(s) < TLS1_2_VERSION))
1397 			continue;
1398 #ifndef OPENSSL_NO_KRB5
1399 		if (((c->algorithm_mkey & SSL_kKRB5) || (c->algorithm_auth & SSL_aKRB5)) &&
1400 		    nokrb5)
1401 		    continue;
1402 #endif /* OPENSSL_NO_KRB5 */
1403 #ifndef OPENSSL_NO_PSK
1404 		/* with PSK there must be client callback set */
1405 		if (((c->algorithm_mkey & SSL_kPSK) || (c->algorithm_auth & SSL_aPSK)) &&
1406 		    s->psk_client_callback == NULL)
1407 			continue;
1408 #endif /* OPENSSL_NO_PSK */
1409 		j = put_cb ? put_cb(c,p) : ssl_put_cipher_by_char(s,c,p);
1410 		p+=j;
1411 		}
1412 	/* If p == q, no ciphers and caller indicates an error. Otherwise
1413 	 * add SCSV if not renegotiating.
1414 	 */
1415 	if (p != q && !s->renegotiate)
1416 		{
1417 		static SSL_CIPHER scsv =
1418 			{
1419 			0, NULL, SSL3_CK_SCSV, 0, 0, 0, 0, 0, 0, 0, 0, 0
1420 			};
1421 		j = put_cb ? put_cb(&scsv,p) : ssl_put_cipher_by_char(s,&scsv,p);
1422 		p+=j;
1423 #ifdef OPENSSL_RI_DEBUG
1424 		fprintf(stderr, "SCSV sent by client\n");
1425 #endif
1426 		}
1427 
1428 	return(p-q);
1429 	}
1430 
1431 STACK_OF(SSL_CIPHER) *ssl_bytes_to_cipher_list(SSL *s,unsigned char *p,int num,
1432 					       STACK_OF(SSL_CIPHER) **skp)
1433 	{
1434 	const SSL_CIPHER *c;
1435 	STACK_OF(SSL_CIPHER) *sk;
1436 	int i,n;
1437 	if (s->s3)
1438 		s->s3->send_connection_binding = 0;
1439 
1440 	n=ssl_put_cipher_by_char(s,NULL,NULL);
1441 	if ((num%n) != 0)
1442 		{
1443 		SSLerr(SSL_F_SSL_BYTES_TO_CIPHER_LIST,SSL_R_ERROR_IN_RECEIVED_CIPHER_LIST);
1444 		return(NULL);
1445 		}
1446 	if ((skp == NULL) || (*skp == NULL))
1447 		sk=sk_SSL_CIPHER_new_null(); /* change perhaps later */
1448 	else
1449 		{
1450 		sk= *skp;
1451 		sk_SSL_CIPHER_zero(sk);
1452 		}
1453 
1454 	for (i=0; i<num; i+=n)
1455 		{
1456 		/* Check for SCSV */
1457 		if (s->s3 && (n != 3 || !p[0]) &&
1458 			(p[n-2] == ((SSL3_CK_SCSV >> 8) & 0xff)) &&
1459 			(p[n-1] == (SSL3_CK_SCSV & 0xff)))
1460 			{
1461 			/* SCSV fatal if renegotiating */
1462 			if (s->renegotiate)
1463 				{
1464 				SSLerr(SSL_F_SSL_BYTES_TO_CIPHER_LIST,SSL_R_SCSV_RECEIVED_WHEN_RENEGOTIATING);
1465 				ssl3_send_alert(s,SSL3_AL_FATAL,SSL_AD_HANDSHAKE_FAILURE);
1466 				goto err;
1467 				}
1468 			s->s3->send_connection_binding = 1;
1469 			p += n;
1470 #ifdef OPENSSL_RI_DEBUG
1471 			fprintf(stderr, "SCSV received by server\n");
1472 #endif
1473 			continue;
1474 			}
1475 
1476 		c=ssl_get_cipher_by_char(s,p);
1477 		p+=n;
1478 		if (c != NULL)
1479 			{
1480 			if (!sk_SSL_CIPHER_push(sk,c))
1481 				{
1482 				SSLerr(SSL_F_SSL_BYTES_TO_CIPHER_LIST,ERR_R_MALLOC_FAILURE);
1483 				goto err;
1484 				}
1485 			}
1486 		}
1487 
1488 	if (skp != NULL)
1489 		*skp=sk;
1490 	return(sk);
1491 err:
1492 	if ((skp == NULL) || (*skp == NULL))
1493 		sk_SSL_CIPHER_free(sk);
1494 	return(NULL);
1495 	}
1496 
1497 
1498 #ifndef OPENSSL_NO_TLSEXT
1499 /** return a servername extension value if provided in Client Hello, or NULL.
1500  * So far, only host_name types are defined (RFC 3546).
1501  */
1502 
1503 const char *SSL_get_servername(const SSL *s, const int type)
1504 	{
1505 	if (type != TLSEXT_NAMETYPE_host_name)
1506 		return NULL;
1507 
1508 	return s->session && !s->tlsext_hostname ?
1509 		s->session->tlsext_hostname :
1510 		s->tlsext_hostname;
1511 	}
1512 
1513 int SSL_get_servername_type(const SSL *s)
1514 	{
1515 	if (s->session && (!s->tlsext_hostname ? s->session->tlsext_hostname : s->tlsext_hostname))
1516 		return TLSEXT_NAMETYPE_host_name;
1517 	return -1;
1518 	}
1519 
1520 # ifndef OPENSSL_NO_NEXTPROTONEG
1521 /* SSL_select_next_proto implements the standard protocol selection. It is
1522  * expected that this function is called from the callback set by
1523  * SSL_CTX_set_next_proto_select_cb.
1524  *
1525  * The protocol data is assumed to be a vector of 8-bit, length prefixed byte
1526  * strings. The length byte itself is not included in the length. A byte
1527  * string of length 0 is invalid. No byte string may be truncated.
1528  *
1529  * The current, but experimental algorithm for selecting the protocol is:
1530  *
1531  * 1) If the server doesn't support NPN then this is indicated to the
1532  * callback. In this case, the client application has to abort the connection
1533  * or have a default application level protocol.
1534  *
1535  * 2) If the server supports NPN, but advertises an empty list then the
1536  * client selects the first protcol in its list, but indicates via the
1537  * API that this fallback case was enacted.
1538  *
1539  * 3) Otherwise, the client finds the first protocol in the server's list
1540  * that it supports and selects this protocol. This is because it's
1541  * assumed that the server has better information about which protocol
1542  * a client should use.
1543  *
1544  * 4) If the client doesn't support any of the server's advertised
1545  * protocols, then this is treated the same as case 2.
1546  *
1547  * It returns either
1548  * OPENSSL_NPN_NEGOTIATED if a common protocol was found, or
1549  * OPENSSL_NPN_NO_OVERLAP if the fallback case was reached.
1550  */
1551 int SSL_select_next_proto(unsigned char **out, unsigned char *outlen, const unsigned char *server, unsigned int server_len, const unsigned char *client, unsigned int client_len)
1552 	{
1553 	unsigned int i, j;
1554 	const unsigned char *result;
1555 	int status = OPENSSL_NPN_UNSUPPORTED;
1556 
1557 	/* For each protocol in server preference order, see if we support it. */
1558 	for (i = 0; i < server_len; )
1559 		{
1560 		for (j = 0; j < client_len; )
1561 			{
1562 			if (server[i] == client[j] &&
1563 			    memcmp(&server[i+1], &client[j+1], server[i]) == 0)
1564 				{
1565 				/* We found a match */
1566 				result = &server[i];
1567 				status = OPENSSL_NPN_NEGOTIATED;
1568 				goto found;
1569 				}
1570 			j += client[j];
1571 			j++;
1572 			}
1573 		i += server[i];
1574 		i++;
1575 		}
1576 
1577 	/* There's no overlap between our protocols and the server's list. */
1578 	result = client;
1579 	status = OPENSSL_NPN_NO_OVERLAP;
1580 
1581 	found:
1582 	*out = (unsigned char *) result + 1;
1583 	*outlen = result[0];
1584 	return status;
1585 	}
1586 
1587 /* SSL_get0_next_proto_negotiated sets *data and *len to point to the client's
1588  * requested protocol for this connection and returns 0. If the client didn't
1589  * request any protocol, then *data is set to NULL.
1590  *
1591  * Note that the client can request any protocol it chooses. The value returned
1592  * from this function need not be a member of the list of supported protocols
1593  * provided by the callback.
1594  */
1595 void SSL_get0_next_proto_negotiated(const SSL *s, const unsigned char **data, unsigned *len)
1596 	{
1597 	*data = s->next_proto_negotiated;
1598 	if (!*data) {
1599 		*len = 0;
1600 	} else {
1601 		*len = s->next_proto_negotiated_len;
1602 	}
1603 }
1604 
1605 /* SSL_CTX_set_next_protos_advertised_cb sets a callback that is called when a
1606  * TLS server needs a list of supported protocols for Next Protocol
1607  * Negotiation. The returned list must be in wire format.  The list is returned
1608  * by setting |out| to point to it and |outlen| to its length. This memory will
1609  * not be modified, but one should assume that the SSL* keeps a reference to
1610  * it.
1611  *
1612  * The callback should return SSL_TLSEXT_ERR_OK if it wishes to advertise. Otherwise, no
1613  * such extension will be included in the ServerHello. */
1614 void SSL_CTX_set_next_protos_advertised_cb(SSL_CTX *ctx, int (*cb) (SSL *ssl, const unsigned char **out, unsigned int *outlen, void *arg), void *arg)
1615 	{
1616 	ctx->next_protos_advertised_cb = cb;
1617 	ctx->next_protos_advertised_cb_arg = arg;
1618 	}
1619 
1620 /* SSL_CTX_set_next_proto_select_cb sets a callback that is called when a
1621  * client needs to select a protocol from the server's provided list. |out|
1622  * must be set to point to the selected protocol (which may be within |in|).
1623  * The length of the protocol name must be written into |outlen|. The server's
1624  * advertised protocols are provided in |in| and |inlen|. The callback can
1625  * assume that |in| is syntactically valid.
1626  *
1627  * The client must select a protocol. It is fatal to the connection if this
1628  * callback returns a value other than SSL_TLSEXT_ERR_OK.
1629  */
1630 void SSL_CTX_set_next_proto_select_cb(SSL_CTX *ctx, int (*cb) (SSL *s, unsigned char **out, unsigned char *outlen, const unsigned char *in, unsigned int inlen, void *arg), void *arg)
1631 	{
1632 	ctx->next_proto_select_cb = cb;
1633 	ctx->next_proto_select_cb_arg = arg;
1634 	}
1635 # endif
1636 #endif
1637 
1638 int SSL_export_keying_material(SSL *s, unsigned char *out, size_t olen,
1639 	const char *label, size_t llen, const unsigned char *p, size_t plen,
1640 	int use_context)
1641 	{
1642 	if (s->version < TLS1_VERSION)
1643 		return -1;
1644 
1645 	return s->method->ssl3_enc->export_keying_material(s, out, olen, label,
1646 							   llen, p, plen,
1647 							   use_context);
1648 	}
1649 
1650 static unsigned long ssl_session_hash(const SSL_SESSION *a)
1651 	{
1652 	unsigned long l;
1653 
1654 	l=(unsigned long)
1655 		((unsigned int) a->session_id[0]     )|
1656 		((unsigned int) a->session_id[1]<< 8L)|
1657 		((unsigned long)a->session_id[2]<<16L)|
1658 		((unsigned long)a->session_id[3]<<24L);
1659 	return(l);
1660 	}
1661 
1662 /* NB: If this function (or indeed the hash function which uses a sort of
1663  * coarser function than this one) is changed, ensure
1664  * SSL_CTX_has_matching_session_id() is checked accordingly. It relies on being
1665  * able to construct an SSL_SESSION that will collide with any existing session
1666  * with a matching session ID. */
1667 static int ssl_session_cmp(const SSL_SESSION *a,const SSL_SESSION *b)
1668 	{
1669 	if (a->ssl_version != b->ssl_version)
1670 		return(1);
1671 	if (a->session_id_length != b->session_id_length)
1672 		return(1);
1673 	return(memcmp(a->session_id,b->session_id,a->session_id_length));
1674 	}
1675 
1676 /* These wrapper functions should remain rather than redeclaring
1677  * SSL_SESSION_hash and SSL_SESSION_cmp for void* types and casting each
1678  * variable. The reason is that the functions aren't static, they're exposed via
1679  * ssl.h. */
1680 static IMPLEMENT_LHASH_HASH_FN(ssl_session, SSL_SESSION)
1681 static IMPLEMENT_LHASH_COMP_FN(ssl_session, SSL_SESSION)
1682 
1683 SSL_CTX *SSL_CTX_new(const SSL_METHOD *meth)
1684 	{
1685 	SSL_CTX *ret=NULL;
1686 
1687 	if (meth == NULL)
1688 		{
1689 		SSLerr(SSL_F_SSL_CTX_NEW,SSL_R_NULL_SSL_METHOD_PASSED);
1690 		return(NULL);
1691 		}
1692 
1693 #ifdef OPENSSL_FIPS
1694 	if (FIPS_mode() && (meth->version < TLS1_VERSION))
1695 		{
1696 		SSLerr(SSL_F_SSL_CTX_NEW, SSL_R_ONLY_TLS_ALLOWED_IN_FIPS_MODE);
1697 		return NULL;
1698 		}
1699 #endif
1700 
1701 	if (SSL_get_ex_data_X509_STORE_CTX_idx() < 0)
1702 		{
1703 		SSLerr(SSL_F_SSL_CTX_NEW,SSL_R_X509_VERIFICATION_SETUP_PROBLEMS);
1704 		goto err;
1705 		}
1706 	ret=(SSL_CTX *)OPENSSL_malloc(sizeof(SSL_CTX));
1707 	if (ret == NULL)
1708 		goto err;
1709 
1710 	memset(ret,0,sizeof(SSL_CTX));
1711 
1712 	ret->method=meth;
1713 
1714 	ret->cert_store=NULL;
1715 	ret->session_cache_mode=SSL_SESS_CACHE_SERVER;
1716 	ret->session_cache_size=SSL_SESSION_CACHE_MAX_SIZE_DEFAULT;
1717 	ret->session_cache_head=NULL;
1718 	ret->session_cache_tail=NULL;
1719 
1720 	/* We take the system default */
1721 	ret->session_timeout=meth->get_timeout();
1722 
1723 	ret->new_session_cb=0;
1724 	ret->remove_session_cb=0;
1725 	ret->get_session_cb=0;
1726 	ret->generate_session_id=0;
1727 
1728 	memset((char *)&ret->stats,0,sizeof(ret->stats));
1729 
1730 	ret->references=1;
1731 	ret->quiet_shutdown=0;
1732 
1733 /*	ret->cipher=NULL;*/
1734 /*	ret->s2->challenge=NULL;
1735 	ret->master_key=NULL;
1736 	ret->key_arg=NULL;
1737 	ret->s2->conn_id=NULL; */
1738 
1739 	ret->info_callback=NULL;
1740 
1741 	ret->app_verify_callback=0;
1742 	ret->app_verify_arg=NULL;
1743 
1744 	ret->max_cert_list=SSL_MAX_CERT_LIST_DEFAULT;
1745 	ret->read_ahead=0;
1746 	ret->msg_callback=0;
1747 	ret->msg_callback_arg=NULL;
1748 	ret->verify_mode=SSL_VERIFY_NONE;
1749 #if 0
1750 	ret->verify_depth=-1; /* Don't impose a limit (but x509_lu.c does) */
1751 #endif
1752 	ret->sid_ctx_length=0;
1753 	ret->default_verify_callback=NULL;
1754 	if ((ret->cert=ssl_cert_new()) == NULL)
1755 		goto err;
1756 
1757 	ret->default_passwd_callback=0;
1758 	ret->default_passwd_callback_userdata=NULL;
1759 	ret->client_cert_cb=0;
1760 	ret->app_gen_cookie_cb=0;
1761 	ret->app_verify_cookie_cb=0;
1762 
1763 	ret->sessions=lh_SSL_SESSION_new();
1764 	if (ret->sessions == NULL) goto err;
1765 	ret->cert_store=X509_STORE_new();
1766 	if (ret->cert_store == NULL) goto err;
1767 
1768 	ssl_create_cipher_list(ret->method,
1769 		&ret->cipher_list,&ret->cipher_list_by_id,
1770 		meth->version == SSL2_VERSION ? "SSLv2" : SSL_DEFAULT_CIPHER_LIST);
1771 	if (ret->cipher_list == NULL
1772 	    || sk_SSL_CIPHER_num(ret->cipher_list) <= 0)
1773 		{
1774 		SSLerr(SSL_F_SSL_CTX_NEW,SSL_R_LIBRARY_HAS_NO_CIPHERS);
1775 		goto err2;
1776 		}
1777 
1778 	ret->param = X509_VERIFY_PARAM_new();
1779 	if (!ret->param)
1780 		goto err;
1781 
1782 	if ((ret->rsa_md5=EVP_get_digestbyname("ssl2-md5")) == NULL)
1783 		{
1784 		SSLerr(SSL_F_SSL_CTX_NEW,SSL_R_UNABLE_TO_LOAD_SSL2_MD5_ROUTINES);
1785 		goto err2;
1786 		}
1787 	if ((ret->md5=EVP_get_digestbyname("ssl3-md5")) == NULL)
1788 		{
1789 		SSLerr(SSL_F_SSL_CTX_NEW,SSL_R_UNABLE_TO_LOAD_SSL3_MD5_ROUTINES);
1790 		goto err2;
1791 		}
1792 	if ((ret->sha1=EVP_get_digestbyname("ssl3-sha1")) == NULL)
1793 		{
1794 		SSLerr(SSL_F_SSL_CTX_NEW,SSL_R_UNABLE_TO_LOAD_SSL3_SHA1_ROUTINES);
1795 		goto err2;
1796 		}
1797 
1798 	if ((ret->client_CA=sk_X509_NAME_new_null()) == NULL)
1799 		goto err;
1800 
1801 	CRYPTO_new_ex_data(CRYPTO_EX_INDEX_SSL_CTX, ret, &ret->ex_data);
1802 
1803 	ret->extra_certs=NULL;
1804 	/* No compression for DTLS */
1805 	if (meth->version != DTLS1_VERSION)
1806 		ret->comp_methods=SSL_COMP_get_compression_methods();
1807 
1808 	ret->max_send_fragment = SSL3_RT_MAX_PLAIN_LENGTH;
1809 
1810 #ifndef OPENSSL_NO_TLSEXT
1811 	ret->tlsext_servername_callback = 0;
1812 	ret->tlsext_servername_arg = NULL;
1813 	/* Setup RFC4507 ticket keys */
1814 	if ((RAND_pseudo_bytes(ret->tlsext_tick_key_name, 16) <= 0)
1815 		|| (RAND_bytes(ret->tlsext_tick_hmac_key, 16) <= 0)
1816 		|| (RAND_bytes(ret->tlsext_tick_aes_key, 16) <= 0))
1817 		ret->options |= SSL_OP_NO_TICKET;
1818 
1819 	ret->tlsext_status_cb = 0;
1820 	ret->tlsext_status_arg = NULL;
1821 
1822 # ifndef OPENSSL_NO_NEXTPROTONEG
1823 	ret->next_protos_advertised_cb = 0;
1824 	ret->next_proto_select_cb = 0;
1825 # endif
1826 #endif
1827 #ifndef OPENSSL_NO_PSK
1828 	ret->psk_identity_hint=NULL;
1829 	ret->psk_client_callback=NULL;
1830 	ret->psk_server_callback=NULL;
1831 #endif
1832 #ifndef OPENSSL_NO_SRP
1833 	SSL_CTX_SRP_CTX_init(ret);
1834 #endif
1835 #ifndef OPENSSL_NO_BUF_FREELISTS
1836 	ret->freelist_max_len = SSL_MAX_BUF_FREELIST_LEN_DEFAULT;
1837 	ret->rbuf_freelist = OPENSSL_malloc(sizeof(SSL3_BUF_FREELIST));
1838 	if (!ret->rbuf_freelist)
1839 		goto err;
1840 	ret->rbuf_freelist->chunklen = 0;
1841 	ret->rbuf_freelist->len = 0;
1842 	ret->rbuf_freelist->head = NULL;
1843 	ret->wbuf_freelist = OPENSSL_malloc(sizeof(SSL3_BUF_FREELIST));
1844 	if (!ret->wbuf_freelist)
1845 		{
1846 		OPENSSL_free(ret->rbuf_freelist);
1847 		goto err;
1848 		}
1849 	ret->wbuf_freelist->chunklen = 0;
1850 	ret->wbuf_freelist->len = 0;
1851 	ret->wbuf_freelist->head = NULL;
1852 #endif
1853 #ifndef OPENSSL_NO_ENGINE
1854 	ret->client_cert_engine = NULL;
1855 #ifdef OPENSSL_SSL_CLIENT_ENGINE_AUTO
1856 #define eng_strx(x)	#x
1857 #define eng_str(x)	eng_strx(x)
1858 	/* Use specific client engine automatically... ignore errors */
1859 	{
1860 	ENGINE *eng;
1861 	eng = ENGINE_by_id(eng_str(OPENSSL_SSL_CLIENT_ENGINE_AUTO));
1862 	if (!eng)
1863 		{
1864 		ERR_clear_error();
1865 		ENGINE_load_builtin_engines();
1866 		eng = ENGINE_by_id(eng_str(OPENSSL_SSL_CLIENT_ENGINE_AUTO));
1867 		}
1868 	if (!eng || !SSL_CTX_set_client_cert_engine(ret, eng))
1869 		ERR_clear_error();
1870 	}
1871 #endif
1872 #endif
1873 	/* Default is to connect to non-RI servers. When RI is more widely
1874 	 * deployed might change this.
1875 	 */
1876 	ret->options |= SSL_OP_LEGACY_SERVER_CONNECT;
1877 
1878 	return(ret);
1879 err:
1880 	SSLerr(SSL_F_SSL_CTX_NEW,ERR_R_MALLOC_FAILURE);
1881 err2:
1882 	if (ret != NULL) SSL_CTX_free(ret);
1883 	return(NULL);
1884 	}
1885 
1886 #if 0
1887 static void SSL_COMP_free(SSL_COMP *comp)
1888     { OPENSSL_free(comp); }
1889 #endif
1890 
1891 #ifndef OPENSSL_NO_BUF_FREELISTS
1892 static void
1893 ssl_buf_freelist_free(SSL3_BUF_FREELIST *list)
1894 	{
1895 	SSL3_BUF_FREELIST_ENTRY *ent, *next;
1896 	for (ent = list->head; ent; ent = next)
1897 		{
1898 		next = ent->next;
1899 		OPENSSL_free(ent);
1900 		}
1901 	OPENSSL_free(list);
1902 	}
1903 #endif
1904 
1905 void SSL_CTX_free(SSL_CTX *a)
1906 	{
1907 	int i;
1908 
1909 	if (a == NULL) return;
1910 
1911 	i=CRYPTO_add(&a->references,-1,CRYPTO_LOCK_SSL_CTX);
1912 #ifdef REF_PRINT
1913 	REF_PRINT("SSL_CTX",a);
1914 #endif
1915 	if (i > 0) return;
1916 #ifdef REF_CHECK
1917 	if (i < 0)
1918 		{
1919 		fprintf(stderr,"SSL_CTX_free, bad reference count\n");
1920 		abort(); /* ok */
1921 		}
1922 #endif
1923 
1924 	if (a->param)
1925 		X509_VERIFY_PARAM_free(a->param);
1926 
1927 	/*
1928 	 * Free internal session cache. However: the remove_cb() may reference
1929 	 * the ex_data of SSL_CTX, thus the ex_data store can only be removed
1930 	 * after the sessions were flushed.
1931 	 * As the ex_data handling routines might also touch the session cache,
1932 	 * the most secure solution seems to be: empty (flush) the cache, then
1933 	 * free ex_data, then finally free the cache.
1934 	 * (See ticket [openssl.org #212].)
1935 	 */
1936 	if (a->sessions != NULL)
1937 		SSL_CTX_flush_sessions(a,0);
1938 
1939 	CRYPTO_free_ex_data(CRYPTO_EX_INDEX_SSL_CTX, a, &a->ex_data);
1940 
1941 	if (a->sessions != NULL)
1942 		lh_SSL_SESSION_free(a->sessions);
1943 
1944 	if (a->cert_store != NULL)
1945 		X509_STORE_free(a->cert_store);
1946 	if (a->cipher_list != NULL)
1947 		sk_SSL_CIPHER_free(a->cipher_list);
1948 	if (a->cipher_list_by_id != NULL)
1949 		sk_SSL_CIPHER_free(a->cipher_list_by_id);
1950 	if (a->cert != NULL)
1951 		ssl_cert_free(a->cert);
1952 	if (a->client_CA != NULL)
1953 		sk_X509_NAME_pop_free(a->client_CA,X509_NAME_free);
1954 	if (a->extra_certs != NULL)
1955 		sk_X509_pop_free(a->extra_certs,X509_free);
1956 #if 0 /* This should never be done, since it removes a global database */
1957 	if (a->comp_methods != NULL)
1958 		sk_SSL_COMP_pop_free(a->comp_methods,SSL_COMP_free);
1959 #else
1960 	a->comp_methods = NULL;
1961 #endif
1962 
1963 #ifndef OPENSSL_NO_SRTP
1964         if (a->srtp_profiles)
1965                 sk_SRTP_PROTECTION_PROFILE_free(a->srtp_profiles);
1966 #endif
1967 
1968 #ifndef OPENSSL_NO_PSK
1969 	if (a->psk_identity_hint)
1970 		OPENSSL_free(a->psk_identity_hint);
1971 #endif
1972 #ifndef OPENSSL_NO_SRP
1973 	SSL_CTX_SRP_CTX_free(a);
1974 #endif
1975 #ifndef OPENSSL_NO_ENGINE
1976 	if (a->client_cert_engine)
1977 		ENGINE_finish(a->client_cert_engine);
1978 #endif
1979 
1980 #ifndef OPENSSL_NO_BUF_FREELISTS
1981 	if (a->wbuf_freelist)
1982 		ssl_buf_freelist_free(a->wbuf_freelist);
1983 	if (a->rbuf_freelist)
1984 		ssl_buf_freelist_free(a->rbuf_freelist);
1985 #endif
1986 
1987 	OPENSSL_free(a);
1988 	}
1989 
1990 void SSL_CTX_set_default_passwd_cb(SSL_CTX *ctx, pem_password_cb *cb)
1991 	{
1992 	ctx->default_passwd_callback=cb;
1993 	}
1994 
1995 void SSL_CTX_set_default_passwd_cb_userdata(SSL_CTX *ctx,void *u)
1996 	{
1997 	ctx->default_passwd_callback_userdata=u;
1998 	}
1999 
2000 void SSL_CTX_set_cert_verify_callback(SSL_CTX *ctx, int (*cb)(X509_STORE_CTX *,void *), void *arg)
2001 	{
2002 	ctx->app_verify_callback=cb;
2003 	ctx->app_verify_arg=arg;
2004 	}
2005 
2006 void SSL_CTX_set_verify(SSL_CTX *ctx,int mode,int (*cb)(int, X509_STORE_CTX *))
2007 	{
2008 	ctx->verify_mode=mode;
2009 	ctx->default_verify_callback=cb;
2010 	}
2011 
2012 void SSL_CTX_set_verify_depth(SSL_CTX *ctx,int depth)
2013 	{
2014 	X509_VERIFY_PARAM_set_depth(ctx->param, depth);
2015 	}
2016 
2017 void ssl_set_cert_masks(CERT *c, const SSL_CIPHER *cipher)
2018 	{
2019 	CERT_PKEY *cpk;
2020 	int rsa_enc,rsa_tmp,rsa_sign,dh_tmp,dh_rsa,dh_dsa,dsa_sign;
2021 	int rsa_enc_export,dh_rsa_export,dh_dsa_export;
2022 	int rsa_tmp_export,dh_tmp_export,kl;
2023 	unsigned long mask_k,mask_a,emask_k,emask_a;
2024 	int have_ecc_cert, ecdh_ok, ecdsa_ok, ecc_pkey_size;
2025 #ifndef OPENSSL_NO_ECDH
2026 	int have_ecdh_tmp;
2027 #endif
2028 	X509 *x = NULL;
2029 	EVP_PKEY *ecc_pkey = NULL;
2030 	int signature_nid = 0, pk_nid = 0, md_nid = 0;
2031 
2032 	if (c == NULL) return;
2033 
2034 	kl=SSL_C_EXPORT_PKEYLENGTH(cipher);
2035 
2036 #ifndef OPENSSL_NO_RSA
2037 	rsa_tmp=(c->rsa_tmp != NULL || c->rsa_tmp_cb != NULL);
2038 	rsa_tmp_export=(c->rsa_tmp_cb != NULL ||
2039 		(rsa_tmp && RSA_size(c->rsa_tmp)*8 <= kl));
2040 #else
2041 	rsa_tmp=rsa_tmp_export=0;
2042 #endif
2043 #ifndef OPENSSL_NO_DH
2044 	dh_tmp=(c->dh_tmp != NULL || c->dh_tmp_cb != NULL);
2045 	dh_tmp_export=(c->dh_tmp_cb != NULL ||
2046 		(dh_tmp && DH_size(c->dh_tmp)*8 <= kl));
2047 #else
2048 	dh_tmp=dh_tmp_export=0;
2049 #endif
2050 
2051 #ifndef OPENSSL_NO_ECDH
2052 	have_ecdh_tmp=(c->ecdh_tmp != NULL || c->ecdh_tmp_cb != NULL);
2053 #endif
2054 	cpk= &(c->pkeys[SSL_PKEY_RSA_ENC]);
2055 	rsa_enc= (cpk->x509 != NULL && cpk->privatekey != NULL);
2056 	rsa_enc_export=(rsa_enc && EVP_PKEY_size(cpk->privatekey)*8 <= kl);
2057 	cpk= &(c->pkeys[SSL_PKEY_RSA_SIGN]);
2058 	rsa_sign=(cpk->x509 != NULL && cpk->privatekey != NULL);
2059 	cpk= &(c->pkeys[SSL_PKEY_DSA_SIGN]);
2060 	dsa_sign=(cpk->x509 != NULL && cpk->privatekey != NULL);
2061 	cpk= &(c->pkeys[SSL_PKEY_DH_RSA]);
2062 	dh_rsa=  (cpk->x509 != NULL && cpk->privatekey != NULL);
2063 	dh_rsa_export=(dh_rsa && EVP_PKEY_size(cpk->privatekey)*8 <= kl);
2064 	cpk= &(c->pkeys[SSL_PKEY_DH_DSA]);
2065 /* FIX THIS EAY EAY EAY */
2066 	dh_dsa=  (cpk->x509 != NULL && cpk->privatekey != NULL);
2067 	dh_dsa_export=(dh_dsa && EVP_PKEY_size(cpk->privatekey)*8 <= kl);
2068 	cpk= &(c->pkeys[SSL_PKEY_ECC]);
2069 	have_ecc_cert= (cpk->x509 != NULL && cpk->privatekey != NULL);
2070 	mask_k=0;
2071 	mask_a=0;
2072 	emask_k=0;
2073 	emask_a=0;
2074 
2075 
2076 
2077 #ifdef CIPHER_DEBUG
2078 	printf("rt=%d rte=%d dht=%d ecdht=%d re=%d ree=%d rs=%d ds=%d dhr=%d dhd=%d\n",
2079 	        rsa_tmp,rsa_tmp_export,dh_tmp,have_ecdh_tmp,
2080 		rsa_enc,rsa_enc_export,rsa_sign,dsa_sign,dh_rsa,dh_dsa);
2081 #endif
2082 
2083 	cpk = &(c->pkeys[SSL_PKEY_GOST01]);
2084 	if (cpk->x509 != NULL && cpk->privatekey !=NULL) {
2085 		mask_k |= SSL_kGOST;
2086 		mask_a |= SSL_aGOST01;
2087 	}
2088 	cpk = &(c->pkeys[SSL_PKEY_GOST94]);
2089 	if (cpk->x509 != NULL && cpk->privatekey !=NULL) {
2090 		mask_k |= SSL_kGOST;
2091 		mask_a |= SSL_aGOST94;
2092 	}
2093 
2094 	if (rsa_enc || (rsa_tmp && rsa_sign))
2095 		mask_k|=SSL_kRSA;
2096 	if (rsa_enc_export || (rsa_tmp_export && (rsa_sign || rsa_enc)))
2097 		emask_k|=SSL_kRSA;
2098 
2099 #if 0
2100 	/* The match needs to be both kEDH and aRSA or aDSA, so don't worry */
2101 	if (	(dh_tmp || dh_rsa || dh_dsa) &&
2102 		(rsa_enc || rsa_sign || dsa_sign))
2103 		mask_k|=SSL_kEDH;
2104 	if ((dh_tmp_export || dh_rsa_export || dh_dsa_export) &&
2105 		(rsa_enc || rsa_sign || dsa_sign))
2106 		emask_k|=SSL_kEDH;
2107 #endif
2108 
2109 	if (dh_tmp_export)
2110 		emask_k|=SSL_kEDH;
2111 
2112 	if (dh_tmp)
2113 		mask_k|=SSL_kEDH;
2114 
2115 	if (dh_rsa) mask_k|=SSL_kDHr;
2116 	if (dh_rsa_export) emask_k|=SSL_kDHr;
2117 
2118 	if (dh_dsa) mask_k|=SSL_kDHd;
2119 	if (dh_dsa_export) emask_k|=SSL_kDHd;
2120 
2121 	if (rsa_enc || rsa_sign)
2122 		{
2123 		mask_a|=SSL_aRSA;
2124 		emask_a|=SSL_aRSA;
2125 		}
2126 
2127 	if (dsa_sign)
2128 		{
2129 		mask_a|=SSL_aDSS;
2130 		emask_a|=SSL_aDSS;
2131 		}
2132 
2133 	mask_a|=SSL_aNULL;
2134 	emask_a|=SSL_aNULL;
2135 
2136 #ifndef OPENSSL_NO_KRB5
2137 	mask_k|=SSL_kKRB5;
2138 	mask_a|=SSL_aKRB5;
2139 	emask_k|=SSL_kKRB5;
2140 	emask_a|=SSL_aKRB5;
2141 #endif
2142 
2143 	/* An ECC certificate may be usable for ECDH and/or
2144 	 * ECDSA cipher suites depending on the key usage extension.
2145 	 */
2146 	if (have_ecc_cert)
2147 		{
2148 		/* This call populates extension flags (ex_flags) */
2149 		x = (c->pkeys[SSL_PKEY_ECC]).x509;
2150 		X509_check_purpose(x, -1, 0);
2151 		ecdh_ok = (x->ex_flags & EXFLAG_KUSAGE) ?
2152 		    (x->ex_kusage & X509v3_KU_KEY_AGREEMENT) : 1;
2153 		ecdsa_ok = (x->ex_flags & EXFLAG_KUSAGE) ?
2154 		    (x->ex_kusage & X509v3_KU_DIGITAL_SIGNATURE) : 1;
2155 		ecc_pkey = X509_get_pubkey(x);
2156 		ecc_pkey_size = (ecc_pkey != NULL) ?
2157 		    EVP_PKEY_bits(ecc_pkey) : 0;
2158 		EVP_PKEY_free(ecc_pkey);
2159 		if ((x->sig_alg) && (x->sig_alg->algorithm))
2160 			{
2161 			signature_nid = OBJ_obj2nid(x->sig_alg->algorithm);
2162 			OBJ_find_sigid_algs(signature_nid, &md_nid, &pk_nid);
2163 			}
2164 #ifndef OPENSSL_NO_ECDH
2165 		if (ecdh_ok)
2166 			{
2167 
2168 			if (pk_nid == NID_rsaEncryption || pk_nid == NID_rsa)
2169 				{
2170 				mask_k|=SSL_kECDHr;
2171 				mask_a|=SSL_aECDH;
2172 				if (ecc_pkey_size <= 163)
2173 					{
2174 					emask_k|=SSL_kECDHr;
2175 					emask_a|=SSL_aECDH;
2176 					}
2177 				}
2178 
2179 			if (pk_nid == NID_X9_62_id_ecPublicKey)
2180 				{
2181 				mask_k|=SSL_kECDHe;
2182 				mask_a|=SSL_aECDH;
2183 				if (ecc_pkey_size <= 163)
2184 					{
2185 					emask_k|=SSL_kECDHe;
2186 					emask_a|=SSL_aECDH;
2187 					}
2188 				}
2189 			}
2190 #endif
2191 #ifndef OPENSSL_NO_ECDSA
2192 		if (ecdsa_ok)
2193 			{
2194 			mask_a|=SSL_aECDSA;
2195 			emask_a|=SSL_aECDSA;
2196 			}
2197 #endif
2198 		}
2199 
2200 #ifndef OPENSSL_NO_ECDH
2201 	if (have_ecdh_tmp)
2202 		{
2203 		mask_k|=SSL_kEECDH;
2204 		emask_k|=SSL_kEECDH;
2205 		}
2206 #endif
2207 
2208 #ifndef OPENSSL_NO_PSK
2209 	mask_k |= SSL_kPSK;
2210 	mask_a |= SSL_aPSK;
2211 	emask_k |= SSL_kPSK;
2212 	emask_a |= SSL_aPSK;
2213 #endif
2214 
2215 	c->mask_k=mask_k;
2216 	c->mask_a=mask_a;
2217 	c->export_mask_k=emask_k;
2218 	c->export_mask_a=emask_a;
2219 	c->valid=1;
2220 	}
2221 
2222 /* This handy macro borrowed from crypto/x509v3/v3_purp.c */
2223 #define ku_reject(x, usage) \
2224 	(((x)->ex_flags & EXFLAG_KUSAGE) && !((x)->ex_kusage & (usage)))
2225 
2226 #ifndef OPENSSL_NO_EC
2227 
2228 int ssl_check_srvr_ecc_cert_and_alg(X509 *x, SSL *s)
2229 	{
2230 	unsigned long alg_k, alg_a;
2231 	EVP_PKEY *pkey = NULL;
2232 	int keysize = 0;
2233 	int signature_nid = 0, md_nid = 0, pk_nid = 0;
2234 	const SSL_CIPHER *cs = s->s3->tmp.new_cipher;
2235 
2236 	alg_k = cs->algorithm_mkey;
2237 	alg_a = cs->algorithm_auth;
2238 
2239 	if (SSL_C_IS_EXPORT(cs))
2240 		{
2241 		/* ECDH key length in export ciphers must be <= 163 bits */
2242 		pkey = X509_get_pubkey(x);
2243 		if (pkey == NULL) return 0;
2244 		keysize = EVP_PKEY_bits(pkey);
2245 		EVP_PKEY_free(pkey);
2246 		if (keysize > 163) return 0;
2247 		}
2248 
2249 	/* This call populates the ex_flags field correctly */
2250 	X509_check_purpose(x, -1, 0);
2251 	if ((x->sig_alg) && (x->sig_alg->algorithm))
2252 		{
2253 		signature_nid = OBJ_obj2nid(x->sig_alg->algorithm);
2254 		OBJ_find_sigid_algs(signature_nid, &md_nid, &pk_nid);
2255 		}
2256 	if (alg_k & SSL_kECDHe || alg_k & SSL_kECDHr)
2257 		{
2258 		/* key usage, if present, must allow key agreement */
2259 		if (ku_reject(x, X509v3_KU_KEY_AGREEMENT))
2260 			{
2261 			SSLerr(SSL_F_SSL_CHECK_SRVR_ECC_CERT_AND_ALG, SSL_R_ECC_CERT_NOT_FOR_KEY_AGREEMENT);
2262 			return 0;
2263 			}
2264 		if ((alg_k & SSL_kECDHe) && TLS1_get_version(s) < TLS1_2_VERSION)
2265 			{
2266 			/* signature alg must be ECDSA */
2267 			if (pk_nid != NID_X9_62_id_ecPublicKey)
2268 				{
2269 				SSLerr(SSL_F_SSL_CHECK_SRVR_ECC_CERT_AND_ALG, SSL_R_ECC_CERT_SHOULD_HAVE_SHA1_SIGNATURE);
2270 				return 0;
2271 				}
2272 			}
2273 		if ((alg_k & SSL_kECDHr) && TLS1_get_version(s) < TLS1_2_VERSION)
2274 			{
2275 			/* signature alg must be RSA */
2276 
2277 			if (pk_nid != NID_rsaEncryption && pk_nid != NID_rsa)
2278 				{
2279 				SSLerr(SSL_F_SSL_CHECK_SRVR_ECC_CERT_AND_ALG, SSL_R_ECC_CERT_SHOULD_HAVE_RSA_SIGNATURE);
2280 				return 0;
2281 				}
2282 			}
2283 		}
2284 	if (alg_a & SSL_aECDSA)
2285 		{
2286 		/* key usage, if present, must allow signing */
2287 		if (ku_reject(x, X509v3_KU_DIGITAL_SIGNATURE))
2288 			{
2289 			SSLerr(SSL_F_SSL_CHECK_SRVR_ECC_CERT_AND_ALG, SSL_R_ECC_CERT_NOT_FOR_SIGNING);
2290 			return 0;
2291 			}
2292 		}
2293 
2294 	return 1;  /* all checks are ok */
2295 	}
2296 
2297 #endif
2298 
2299 /* THIS NEEDS CLEANING UP */
2300 CERT_PKEY *ssl_get_server_send_pkey(const SSL *s)
2301 	{
2302 	unsigned long alg_k,alg_a;
2303 	CERT *c;
2304 	int i;
2305 
2306 	c=s->cert;
2307 	ssl_set_cert_masks(c, s->s3->tmp.new_cipher);
2308 
2309 	alg_k = s->s3->tmp.new_cipher->algorithm_mkey;
2310 	alg_a = s->s3->tmp.new_cipher->algorithm_auth;
2311 
2312 	if (alg_k & (SSL_kECDHr|SSL_kECDHe))
2313 		{
2314 		/* we don't need to look at SSL_kEECDH
2315 		 * since no certificate is needed for
2316 		 * anon ECDH and for authenticated
2317 		 * EECDH, the check for the auth
2318 		 * algorithm will set i correctly
2319 		 * NOTE: For ECDH-RSA, we need an ECC
2320 		 * not an RSA cert but for EECDH-RSA
2321 		 * we need an RSA cert. Placing the
2322 		 * checks for SSL_kECDH before RSA
2323 		 * checks ensures the correct cert is chosen.
2324 		 */
2325 		i=SSL_PKEY_ECC;
2326 		}
2327 	else if (alg_a & SSL_aECDSA)
2328 		{
2329 		i=SSL_PKEY_ECC;
2330 		}
2331 	else if (alg_k & SSL_kDHr)
2332 		i=SSL_PKEY_DH_RSA;
2333 	else if (alg_k & SSL_kDHd)
2334 		i=SSL_PKEY_DH_DSA;
2335 	else if (alg_a & SSL_aDSS)
2336 		i=SSL_PKEY_DSA_SIGN;
2337 	else if (alg_a & SSL_aRSA)
2338 		{
2339 		if (c->pkeys[SSL_PKEY_RSA_ENC].x509 == NULL)
2340 			i=SSL_PKEY_RSA_SIGN;
2341 		else
2342 			i=SSL_PKEY_RSA_ENC;
2343 		}
2344 	else if (alg_a & SSL_aKRB5)
2345 		{
2346 		/* VRS something else here? */
2347 		return(NULL);
2348 		}
2349 	else if (alg_a & SSL_aGOST94)
2350 		i=SSL_PKEY_GOST94;
2351 	else if (alg_a & SSL_aGOST01)
2352 		i=SSL_PKEY_GOST01;
2353 	else /* if (alg_a & SSL_aNULL) */
2354 		{
2355 		SSLerr(SSL_F_SSL_GET_SERVER_SEND_PKEY,ERR_R_INTERNAL_ERROR);
2356 		return(NULL);
2357 		}
2358 
2359 	return c->pkeys + i;
2360 	}
2361 
2362 X509 *ssl_get_server_send_cert(const SSL *s)
2363 	{
2364 	CERT_PKEY *cpk;
2365 	cpk = ssl_get_server_send_pkey(s);
2366 	if (!cpk)
2367 		return NULL;
2368 	return cpk->x509;
2369 	}
2370 
2371 EVP_PKEY *ssl_get_sign_pkey(SSL *s,const SSL_CIPHER *cipher, const EVP_MD **pmd)
2372 	{
2373 	unsigned long alg_a;
2374 	CERT *c;
2375 	int idx = -1;
2376 
2377 	alg_a = cipher->algorithm_auth;
2378 	c=s->cert;
2379 
2380 	if ((alg_a & SSL_aDSS) &&
2381 		(c->pkeys[SSL_PKEY_DSA_SIGN].privatekey != NULL))
2382 		idx = SSL_PKEY_DSA_SIGN;
2383 	else if (alg_a & SSL_aRSA)
2384 		{
2385 		if (c->pkeys[SSL_PKEY_RSA_SIGN].privatekey != NULL)
2386 			idx = SSL_PKEY_RSA_SIGN;
2387 		else if (c->pkeys[SSL_PKEY_RSA_ENC].privatekey != NULL)
2388 			idx = SSL_PKEY_RSA_ENC;
2389 		}
2390 	else if ((alg_a & SSL_aECDSA) &&
2391 	         (c->pkeys[SSL_PKEY_ECC].privatekey != NULL))
2392 		idx = SSL_PKEY_ECC;
2393 	if (idx == -1)
2394 		{
2395 		SSLerr(SSL_F_SSL_GET_SIGN_PKEY,ERR_R_INTERNAL_ERROR);
2396 		return(NULL);
2397 		}
2398 	if (pmd)
2399 		*pmd = c->pkeys[idx].digest;
2400 	return c->pkeys[idx].privatekey;
2401 	}
2402 
2403 void ssl_update_cache(SSL *s,int mode)
2404 	{
2405 	int i;
2406 
2407 	/* If the session_id_length is 0, we are not supposed to cache it,
2408 	 * and it would be rather hard to do anyway :-) */
2409 	if (s->session->session_id_length == 0) return;
2410 
2411 	i=s->session_ctx->session_cache_mode;
2412 	if ((i & mode) && (!s->hit)
2413 		&& ((i & SSL_SESS_CACHE_NO_INTERNAL_STORE)
2414 		    || SSL_CTX_add_session(s->session_ctx,s->session))
2415 		&& (s->session_ctx->new_session_cb != NULL))
2416 		{
2417 		CRYPTO_add(&s->session->references,1,CRYPTO_LOCK_SSL_SESSION);
2418 		if (!s->session_ctx->new_session_cb(s,s->session))
2419 			SSL_SESSION_free(s->session);
2420 		}
2421 
2422 	/* auto flush every 255 connections */
2423 	if ((!(i & SSL_SESS_CACHE_NO_AUTO_CLEAR)) &&
2424 		((i & mode) == mode))
2425 		{
2426 		if (  (((mode & SSL_SESS_CACHE_CLIENT)
2427 			?s->session_ctx->stats.sess_connect_good
2428 			:s->session_ctx->stats.sess_accept_good) & 0xff) == 0xff)
2429 			{
2430 			SSL_CTX_flush_sessions(s->session_ctx,(unsigned long)time(NULL));
2431 			}
2432 		}
2433 	}
2434 
2435 const SSL_METHOD *SSL_get_ssl_method(SSL *s)
2436 	{
2437 	return(s->method);
2438 	}
2439 
2440 int SSL_set_ssl_method(SSL *s, const SSL_METHOD *meth)
2441 	{
2442 	int conn= -1;
2443 	int ret=1;
2444 
2445 	if (s->method != meth)
2446 		{
2447 		if (s->handshake_func != NULL)
2448 			conn=(s->handshake_func == s->method->ssl_connect);
2449 
2450 		if (s->method->version == meth->version)
2451 			s->method=meth;
2452 		else
2453 			{
2454 			s->method->ssl_free(s);
2455 			s->method=meth;
2456 			ret=s->method->ssl_new(s);
2457 			}
2458 
2459 		if (conn == 1)
2460 			s->handshake_func=meth->ssl_connect;
2461 		else if (conn == 0)
2462 			s->handshake_func=meth->ssl_accept;
2463 		}
2464 	return(ret);
2465 	}
2466 
2467 int SSL_get_error(const SSL *s,int i)
2468 	{
2469 	int reason;
2470 	unsigned long l;
2471 	BIO *bio;
2472 
2473 	if (i > 0) return(SSL_ERROR_NONE);
2474 
2475 	/* Make things return SSL_ERROR_SYSCALL when doing SSL_do_handshake
2476 	 * etc, where we do encode the error */
2477 	if ((l=ERR_peek_error()) != 0)
2478 		{
2479 		if (ERR_GET_LIB(l) == ERR_LIB_SYS)
2480 			return(SSL_ERROR_SYSCALL);
2481 		else
2482 			return(SSL_ERROR_SSL);
2483 		}
2484 
2485 	if ((i < 0) && SSL_want_read(s))
2486 		{
2487 		bio=SSL_get_rbio(s);
2488 		if (BIO_should_read(bio))
2489 			return(SSL_ERROR_WANT_READ);
2490 		else if (BIO_should_write(bio))
2491 			/* This one doesn't make too much sense ... We never try
2492 			 * to write to the rbio, and an application program where
2493 			 * rbio and wbio are separate couldn't even know what it
2494 			 * should wait for.
2495 			 * However if we ever set s->rwstate incorrectly
2496 			 * (so that we have SSL_want_read(s) instead of
2497 			 * SSL_want_write(s)) and rbio and wbio *are* the same,
2498 			 * this test works around that bug; so it might be safer
2499 			 * to keep it. */
2500 			return(SSL_ERROR_WANT_WRITE);
2501 		else if (BIO_should_io_special(bio))
2502 			{
2503 			reason=BIO_get_retry_reason(bio);
2504 			if (reason == BIO_RR_CONNECT)
2505 				return(SSL_ERROR_WANT_CONNECT);
2506 			else if (reason == BIO_RR_ACCEPT)
2507 				return(SSL_ERROR_WANT_ACCEPT);
2508 			else
2509 				return(SSL_ERROR_SYSCALL); /* unknown */
2510 			}
2511 		}
2512 
2513 	if ((i < 0) && SSL_want_write(s))
2514 		{
2515 		bio=SSL_get_wbio(s);
2516 		if (BIO_should_write(bio))
2517 			return(SSL_ERROR_WANT_WRITE);
2518 		else if (BIO_should_read(bio))
2519 			/* See above (SSL_want_read(s) with BIO_should_write(bio)) */
2520 			return(SSL_ERROR_WANT_READ);
2521 		else if (BIO_should_io_special(bio))
2522 			{
2523 			reason=BIO_get_retry_reason(bio);
2524 			if (reason == BIO_RR_CONNECT)
2525 				return(SSL_ERROR_WANT_CONNECT);
2526 			else if (reason == BIO_RR_ACCEPT)
2527 				return(SSL_ERROR_WANT_ACCEPT);
2528 			else
2529 				return(SSL_ERROR_SYSCALL);
2530 			}
2531 		}
2532 	if ((i < 0) && SSL_want_x509_lookup(s))
2533 		{
2534 		return(SSL_ERROR_WANT_X509_LOOKUP);
2535 		}
2536 
2537 	if (i == 0)
2538 		{
2539 		if (s->version == SSL2_VERSION)
2540 			{
2541 			/* assume it is the socket being closed */
2542 			return(SSL_ERROR_ZERO_RETURN);
2543 			}
2544 		else
2545 			{
2546 			if ((s->shutdown & SSL_RECEIVED_SHUTDOWN) &&
2547 				(s->s3->warn_alert == SSL_AD_CLOSE_NOTIFY))
2548 				return(SSL_ERROR_ZERO_RETURN);
2549 			}
2550 		}
2551 	return(SSL_ERROR_SYSCALL);
2552 	}
2553 
2554 int SSL_do_handshake(SSL *s)
2555 	{
2556 	int ret=1;
2557 
2558 	if (s->handshake_func == NULL)
2559 		{
2560 		SSLerr(SSL_F_SSL_DO_HANDSHAKE,SSL_R_CONNECTION_TYPE_NOT_SET);
2561 		return(-1);
2562 		}
2563 
2564 	s->method->ssl_renegotiate_check(s);
2565 
2566 	if (SSL_in_init(s) || SSL_in_before(s))
2567 		{
2568 		ret=s->handshake_func(s);
2569 		}
2570 	return(ret);
2571 	}
2572 
2573 /* For the next 2 functions, SSL_clear() sets shutdown and so
2574  * one of these calls will reset it */
2575 void SSL_set_accept_state(SSL *s)
2576 	{
2577 	s->server=1;
2578 	s->shutdown=0;
2579 	s->state=SSL_ST_ACCEPT|SSL_ST_BEFORE;
2580 	s->handshake_func=s->method->ssl_accept;
2581 	/* clear the current cipher */
2582 	ssl_clear_cipher_ctx(s);
2583 	ssl_clear_hash_ctx(&s->read_hash);
2584 	ssl_clear_hash_ctx(&s->write_hash);
2585 	}
2586 
2587 void SSL_set_connect_state(SSL *s)
2588 	{
2589 	s->server=0;
2590 	s->shutdown=0;
2591 	s->state=SSL_ST_CONNECT|SSL_ST_BEFORE;
2592 	s->handshake_func=s->method->ssl_connect;
2593 	/* clear the current cipher */
2594 	ssl_clear_cipher_ctx(s);
2595 	ssl_clear_hash_ctx(&s->read_hash);
2596 	ssl_clear_hash_ctx(&s->write_hash);
2597 	}
2598 
2599 int ssl_undefined_function(SSL *s)
2600 	{
2601 	SSLerr(SSL_F_SSL_UNDEFINED_FUNCTION,ERR_R_SHOULD_NOT_HAVE_BEEN_CALLED);
2602 	return(0);
2603 	}
2604 
2605 int ssl_undefined_void_function(void)
2606 	{
2607 	SSLerr(SSL_F_SSL_UNDEFINED_VOID_FUNCTION,ERR_R_SHOULD_NOT_HAVE_BEEN_CALLED);
2608 	return(0);
2609 	}
2610 
2611 int ssl_undefined_const_function(const SSL *s)
2612 	{
2613 	SSLerr(SSL_F_SSL_UNDEFINED_CONST_FUNCTION,ERR_R_SHOULD_NOT_HAVE_BEEN_CALLED);
2614 	return(0);
2615 	}
2616 
2617 SSL_METHOD *ssl_bad_method(int ver)
2618 	{
2619 	SSLerr(SSL_F_SSL_BAD_METHOD,ERR_R_SHOULD_NOT_HAVE_BEEN_CALLED);
2620 	return(NULL);
2621 	}
2622 
2623 const char *SSL_get_version(const SSL *s)
2624 	{
2625 	if (s->version == TLS1_2_VERSION)
2626 		return("TLSv1.2");
2627 	else if (s->version == TLS1_1_VERSION)
2628 		return("TLSv1.1");
2629 	else if (s->version == TLS1_VERSION)
2630 		return("TLSv1");
2631 	else if (s->version == SSL3_VERSION)
2632 		return("SSLv3");
2633 	else if (s->version == SSL2_VERSION)
2634 		return("SSLv2");
2635 	else
2636 		return("unknown");
2637 	}
2638 
2639 SSL *SSL_dup(SSL *s)
2640 	{
2641 	STACK_OF(X509_NAME) *sk;
2642 	X509_NAME *xn;
2643 	SSL *ret;
2644 	int i;
2645 
2646 	if ((ret=SSL_new(SSL_get_SSL_CTX(s))) == NULL)
2647 	    return(NULL);
2648 
2649 	ret->version = s->version;
2650 	ret->type = s->type;
2651 	ret->method = s->method;
2652 
2653 	if (s->session != NULL)
2654 		{
2655 		/* This copies session-id, SSL_METHOD, sid_ctx, and 'cert' */
2656 		SSL_copy_session_id(ret,s);
2657 		}
2658 	else
2659 		{
2660 		/* No session has been established yet, so we have to expect
2661 		 * that s->cert or ret->cert will be changed later --
2662 		 * they should not both point to the same object,
2663 		 * and thus we can't use SSL_copy_session_id. */
2664 
2665 		ret->method->ssl_free(ret);
2666 		ret->method = s->method;
2667 		ret->method->ssl_new(ret);
2668 
2669 		if (s->cert != NULL)
2670 			{
2671 			if (ret->cert != NULL)
2672 				{
2673 				ssl_cert_free(ret->cert);
2674 				}
2675 			ret->cert = ssl_cert_dup(s->cert);
2676 			if (ret->cert == NULL)
2677 				goto err;
2678 			}
2679 
2680 		SSL_set_session_id_context(ret,
2681 			s->sid_ctx, s->sid_ctx_length);
2682 		}
2683 
2684 	ret->options=s->options;
2685 	ret->mode=s->mode;
2686 	SSL_set_max_cert_list(ret,SSL_get_max_cert_list(s));
2687 	SSL_set_read_ahead(ret,SSL_get_read_ahead(s));
2688 	ret->msg_callback = s->msg_callback;
2689 	ret->msg_callback_arg = s->msg_callback_arg;
2690 	SSL_set_verify(ret,SSL_get_verify_mode(s),
2691 		SSL_get_verify_callback(s));
2692 	SSL_set_verify_depth(ret,SSL_get_verify_depth(s));
2693 	ret->generate_session_id = s->generate_session_id;
2694 
2695 	SSL_set_info_callback(ret,SSL_get_info_callback(s));
2696 
2697 	ret->debug=s->debug;
2698 
2699 	/* copy app data, a little dangerous perhaps */
2700 	if (!CRYPTO_dup_ex_data(CRYPTO_EX_INDEX_SSL, &ret->ex_data, &s->ex_data))
2701 		goto err;
2702 
2703 	/* setup rbio, and wbio */
2704 	if (s->rbio != NULL)
2705 		{
2706 		if (!BIO_dup_state(s->rbio,(char *)&ret->rbio))
2707 			goto err;
2708 		}
2709 	if (s->wbio != NULL)
2710 		{
2711 		if (s->wbio != s->rbio)
2712 			{
2713 			if (!BIO_dup_state(s->wbio,(char *)&ret->wbio))
2714 				goto err;
2715 			}
2716 		else
2717 			ret->wbio=ret->rbio;
2718 		}
2719 	ret->rwstate = s->rwstate;
2720 	ret->in_handshake = s->in_handshake;
2721 	ret->handshake_func = s->handshake_func;
2722 	ret->server = s->server;
2723 	ret->renegotiate = s->renegotiate;
2724 	ret->new_session = s->new_session;
2725 	ret->quiet_shutdown = s->quiet_shutdown;
2726 	ret->shutdown=s->shutdown;
2727 	ret->state=s->state; /* SSL_dup does not really work at any state, though */
2728 	ret->rstate=s->rstate;
2729 	ret->init_num = 0; /* would have to copy ret->init_buf, ret->init_msg, ret->init_num, ret->init_off */
2730 	ret->hit=s->hit;
2731 
2732 	X509_VERIFY_PARAM_inherit(ret->param, s->param);
2733 
2734 	/* dup the cipher_list and cipher_list_by_id stacks */
2735 	if (s->cipher_list != NULL)
2736 		{
2737 		if ((ret->cipher_list=sk_SSL_CIPHER_dup(s->cipher_list)) == NULL)
2738 			goto err;
2739 		}
2740 	if (s->cipher_list_by_id != NULL)
2741 		if ((ret->cipher_list_by_id=sk_SSL_CIPHER_dup(s->cipher_list_by_id))
2742 			== NULL)
2743 			goto err;
2744 
2745 	/* Dup the client_CA list */
2746 	if (s->client_CA != NULL)
2747 		{
2748 		if ((sk=sk_X509_NAME_dup(s->client_CA)) == NULL) goto err;
2749 		ret->client_CA=sk;
2750 		for (i=0; i<sk_X509_NAME_num(sk); i++)
2751 			{
2752 			xn=sk_X509_NAME_value(sk,i);
2753 			if (sk_X509_NAME_set(sk,i,X509_NAME_dup(xn)) == NULL)
2754 				{
2755 				X509_NAME_free(xn);
2756 				goto err;
2757 				}
2758 			}
2759 		}
2760 
2761 	if (0)
2762 		{
2763 err:
2764 		if (ret != NULL) SSL_free(ret);
2765 		ret=NULL;
2766 		}
2767 	return(ret);
2768 	}
2769 
2770 void ssl_clear_cipher_ctx(SSL *s)
2771 	{
2772 	if (s->enc_read_ctx != NULL)
2773 		{
2774 		EVP_CIPHER_CTX_cleanup(s->enc_read_ctx);
2775 		OPENSSL_free(s->enc_read_ctx);
2776 		s->enc_read_ctx=NULL;
2777 		}
2778 	if (s->enc_write_ctx != NULL)
2779 		{
2780 		EVP_CIPHER_CTX_cleanup(s->enc_write_ctx);
2781 		OPENSSL_free(s->enc_write_ctx);
2782 		s->enc_write_ctx=NULL;
2783 		}
2784 #ifndef OPENSSL_NO_COMP
2785 	if (s->expand != NULL)
2786 		{
2787 		COMP_CTX_free(s->expand);
2788 		s->expand=NULL;
2789 		}
2790 	if (s->compress != NULL)
2791 		{
2792 		COMP_CTX_free(s->compress);
2793 		s->compress=NULL;
2794 		}
2795 #endif
2796 	}
2797 
2798 /* Fix this function so that it takes an optional type parameter */
2799 X509 *SSL_get_certificate(const SSL *s)
2800 	{
2801 	if (s->cert != NULL)
2802 		return(s->cert->key->x509);
2803 	else
2804 		return(NULL);
2805 	}
2806 
2807 /* Fix this function so that it takes an optional type parameter */
2808 EVP_PKEY *SSL_get_privatekey(SSL *s)
2809 	{
2810 	if (s->cert != NULL)
2811 		return(s->cert->key->privatekey);
2812 	else
2813 		return(NULL);
2814 	}
2815 
2816 const SSL_CIPHER *SSL_get_current_cipher(const SSL *s)
2817 	{
2818 	if ((s->session != NULL) && (s->session->cipher != NULL))
2819 		return(s->session->cipher);
2820 	return(NULL);
2821 	}
2822 #ifdef OPENSSL_NO_COMP
2823 const void *SSL_get_current_compression(SSL *s)
2824 	{
2825 	return NULL;
2826 	}
2827 const void *SSL_get_current_expansion(SSL *s)
2828 	{
2829 	return NULL;
2830 	}
2831 #else
2832 
2833 const COMP_METHOD *SSL_get_current_compression(SSL *s)
2834 	{
2835 	if (s->compress != NULL)
2836 		return(s->compress->meth);
2837 	return(NULL);
2838 	}
2839 
2840 const COMP_METHOD *SSL_get_current_expansion(SSL *s)
2841 	{
2842 	if (s->expand != NULL)
2843 		return(s->expand->meth);
2844 	return(NULL);
2845 	}
2846 #endif
2847 
2848 int ssl_init_wbio_buffer(SSL *s,int push)
2849 	{
2850 	BIO *bbio;
2851 
2852 	if (s->bbio == NULL)
2853 		{
2854 		bbio=BIO_new(BIO_f_buffer());
2855 		if (bbio == NULL) return(0);
2856 		s->bbio=bbio;
2857 		}
2858 	else
2859 		{
2860 		bbio=s->bbio;
2861 		if (s->bbio == s->wbio)
2862 			s->wbio=BIO_pop(s->wbio);
2863 		}
2864 	(void)BIO_reset(bbio);
2865 /*	if (!BIO_set_write_buffer_size(bbio,16*1024)) */
2866 	if (!BIO_set_read_buffer_size(bbio,1))
2867 		{
2868 		SSLerr(SSL_F_SSL_INIT_WBIO_BUFFER,ERR_R_BUF_LIB);
2869 		return(0);
2870 		}
2871 	if (push)
2872 		{
2873 		if (s->wbio != bbio)
2874 			s->wbio=BIO_push(bbio,s->wbio);
2875 		}
2876 	else
2877 		{
2878 		if (s->wbio == bbio)
2879 			s->wbio=BIO_pop(bbio);
2880 		}
2881 	return(1);
2882 	}
2883 
2884 void ssl_free_wbio_buffer(SSL *s)
2885 	{
2886 	if (s->bbio == NULL) return;
2887 
2888 	if (s->bbio == s->wbio)
2889 		{
2890 		/* remove buffering */
2891 		s->wbio=BIO_pop(s->wbio);
2892 #ifdef REF_CHECK /* not the usual REF_CHECK, but this avoids adding one more preprocessor symbol */
2893 		assert(s->wbio != NULL);
2894 #endif
2895 	}
2896 	BIO_free(s->bbio);
2897 	s->bbio=NULL;
2898 	}
2899 
2900 void SSL_CTX_set_quiet_shutdown(SSL_CTX *ctx,int mode)
2901 	{
2902 	ctx->quiet_shutdown=mode;
2903 	}
2904 
2905 int SSL_CTX_get_quiet_shutdown(const SSL_CTX *ctx)
2906 	{
2907 	return(ctx->quiet_shutdown);
2908 	}
2909 
2910 void SSL_set_quiet_shutdown(SSL *s,int mode)
2911 	{
2912 	s->quiet_shutdown=mode;
2913 	}
2914 
2915 int SSL_get_quiet_shutdown(const SSL *s)
2916 	{
2917 	return(s->quiet_shutdown);
2918 	}
2919 
2920 void SSL_set_shutdown(SSL *s,int mode)
2921 	{
2922 	s->shutdown=mode;
2923 	}
2924 
2925 int SSL_get_shutdown(const SSL *s)
2926 	{
2927 	return(s->shutdown);
2928 	}
2929 
2930 int SSL_version(const SSL *s)
2931 	{
2932 	return(s->version);
2933 	}
2934 
2935 SSL_CTX *SSL_get_SSL_CTX(const SSL *ssl)
2936 	{
2937 	return(ssl->ctx);
2938 	}
2939 
2940 SSL_CTX *SSL_set_SSL_CTX(SSL *ssl, SSL_CTX* ctx)
2941 	{
2942 	if (ssl->ctx == ctx)
2943 		return ssl->ctx;
2944 #ifndef OPENSSL_NO_TLSEXT
2945 	if (ctx == NULL)
2946 		ctx = ssl->initial_ctx;
2947 #endif
2948 	if (ssl->cert != NULL)
2949 		ssl_cert_free(ssl->cert);
2950 	ssl->cert = ssl_cert_dup(ctx->cert);
2951 	CRYPTO_add(&ctx->references,1,CRYPTO_LOCK_SSL_CTX);
2952 	if (ssl->ctx != NULL)
2953 		SSL_CTX_free(ssl->ctx); /* decrement reference count */
2954 	ssl->ctx = ctx;
2955 	return(ssl->ctx);
2956 	}
2957 
2958 #ifndef OPENSSL_NO_STDIO
2959 int SSL_CTX_set_default_verify_paths(SSL_CTX *ctx)
2960 	{
2961 	return(X509_STORE_set_default_paths(ctx->cert_store));
2962 	}
2963 
2964 int SSL_CTX_load_verify_locations(SSL_CTX *ctx, const char *CAfile,
2965 		const char *CApath)
2966 	{
2967 	return(X509_STORE_load_locations(ctx->cert_store,CAfile,CApath));
2968 	}
2969 #endif
2970 
2971 void SSL_set_info_callback(SSL *ssl,
2972 	void (*cb)(const SSL *ssl,int type,int val))
2973 	{
2974 	ssl->info_callback=cb;
2975 	}
2976 
2977 /* One compiler (Diab DCC) doesn't like argument names in returned
2978    function pointer.  */
2979 void (*SSL_get_info_callback(const SSL *ssl))(const SSL * /*ssl*/,int /*type*/,int /*val*/)
2980 	{
2981 	return ssl->info_callback;
2982 	}
2983 
2984 int SSL_state(const SSL *ssl)
2985 	{
2986 	return(ssl->state);
2987 	}
2988 
2989 void SSL_set_state(SSL *ssl, int state)
2990 	{
2991 	ssl->state = state;
2992 	}
2993 
2994 void SSL_set_verify_result(SSL *ssl,long arg)
2995 	{
2996 	ssl->verify_result=arg;
2997 	}
2998 
2999 long SSL_get_verify_result(const SSL *ssl)
3000 	{
3001 	return(ssl->verify_result);
3002 	}
3003 
3004 int SSL_get_ex_new_index(long argl,void *argp,CRYPTO_EX_new *new_func,
3005 			 CRYPTO_EX_dup *dup_func,CRYPTO_EX_free *free_func)
3006 	{
3007 	return CRYPTO_get_ex_new_index(CRYPTO_EX_INDEX_SSL, argl, argp,
3008 				new_func, dup_func, free_func);
3009 	}
3010 
3011 int SSL_set_ex_data(SSL *s,int idx,void *arg)
3012 	{
3013 	return(CRYPTO_set_ex_data(&s->ex_data,idx,arg));
3014 	}
3015 
3016 void *SSL_get_ex_data(const SSL *s,int idx)
3017 	{
3018 	return(CRYPTO_get_ex_data(&s->ex_data,idx));
3019 	}
3020 
3021 int SSL_CTX_get_ex_new_index(long argl,void *argp,CRYPTO_EX_new *new_func,
3022 			     CRYPTO_EX_dup *dup_func,CRYPTO_EX_free *free_func)
3023 	{
3024 	return CRYPTO_get_ex_new_index(CRYPTO_EX_INDEX_SSL_CTX, argl, argp,
3025 				new_func, dup_func, free_func);
3026 	}
3027 
3028 int SSL_CTX_set_ex_data(SSL_CTX *s,int idx,void *arg)
3029 	{
3030 	return(CRYPTO_set_ex_data(&s->ex_data,idx,arg));
3031 	}
3032 
3033 void *SSL_CTX_get_ex_data(const SSL_CTX *s,int idx)
3034 	{
3035 	return(CRYPTO_get_ex_data(&s->ex_data,idx));
3036 	}
3037 
3038 int ssl_ok(SSL *s)
3039 	{
3040 	return(1);
3041 	}
3042 
3043 X509_STORE *SSL_CTX_get_cert_store(const SSL_CTX *ctx)
3044 	{
3045 	return(ctx->cert_store);
3046 	}
3047 
3048 void SSL_CTX_set_cert_store(SSL_CTX *ctx,X509_STORE *store)
3049 	{
3050 	if (ctx->cert_store != NULL)
3051 		X509_STORE_free(ctx->cert_store);
3052 	ctx->cert_store=store;
3053 	}
3054 
3055 int SSL_want(const SSL *s)
3056 	{
3057 	return(s->rwstate);
3058 	}
3059 
3060 /*!
3061  * \brief Set the callback for generating temporary RSA keys.
3062  * \param ctx the SSL context.
3063  * \param cb the callback
3064  */
3065 
3066 #ifndef OPENSSL_NO_RSA
3067 void SSL_CTX_set_tmp_rsa_callback(SSL_CTX *ctx,RSA *(*cb)(SSL *ssl,
3068 							  int is_export,
3069 							  int keylength))
3070     {
3071     SSL_CTX_callback_ctrl(ctx,SSL_CTRL_SET_TMP_RSA_CB,(void (*)(void))cb);
3072     }
3073 
3074 void SSL_set_tmp_rsa_callback(SSL *ssl,RSA *(*cb)(SSL *ssl,
3075 						  int is_export,
3076 						  int keylength))
3077     {
3078     SSL_callback_ctrl(ssl,SSL_CTRL_SET_TMP_RSA_CB,(void (*)(void))cb);
3079     }
3080 #endif
3081 
3082 #ifdef DOXYGEN
3083 /*!
3084  * \brief The RSA temporary key callback function.
3085  * \param ssl the SSL session.
3086  * \param is_export \c TRUE if the temp RSA key is for an export ciphersuite.
3087  * \param keylength if \c is_export is \c TRUE, then \c keylength is the size
3088  * of the required key in bits.
3089  * \return the temporary RSA key.
3090  * \sa SSL_CTX_set_tmp_rsa_callback, SSL_set_tmp_rsa_callback
3091  */
3092 
3093 RSA *cb(SSL *ssl,int is_export,int keylength)
3094     {}
3095 #endif
3096 
3097 /*!
3098  * \brief Set the callback for generating temporary DH keys.
3099  * \param ctx the SSL context.
3100  * \param dh the callback
3101  */
3102 
3103 #ifndef OPENSSL_NO_DH
3104 void SSL_CTX_set_tmp_dh_callback(SSL_CTX *ctx,DH *(*dh)(SSL *ssl,int is_export,
3105                                                         int keylength))
3106 	{
3107 	SSL_CTX_callback_ctrl(ctx,SSL_CTRL_SET_TMP_DH_CB,(void (*)(void))dh);
3108 	}
3109 
3110 void SSL_set_tmp_dh_callback(SSL *ssl,DH *(*dh)(SSL *ssl,int is_export,
3111                                                 int keylength))
3112 	{
3113 	SSL_callback_ctrl(ssl,SSL_CTRL_SET_TMP_DH_CB,(void (*)(void))dh);
3114 	}
3115 #endif
3116 
3117 #ifndef OPENSSL_NO_ECDH
3118 void SSL_CTX_set_tmp_ecdh_callback(SSL_CTX *ctx,EC_KEY *(*ecdh)(SSL *ssl,int is_export,
3119                                                                 int keylength))
3120 	{
3121 	SSL_CTX_callback_ctrl(ctx,SSL_CTRL_SET_TMP_ECDH_CB,(void (*)(void))ecdh);
3122 	}
3123 
3124 void SSL_set_tmp_ecdh_callback(SSL *ssl,EC_KEY *(*ecdh)(SSL *ssl,int is_export,
3125                                                         int keylength))
3126 	{
3127 	SSL_callback_ctrl(ssl,SSL_CTRL_SET_TMP_ECDH_CB,(void (*)(void))ecdh);
3128 	}
3129 #endif
3130 
3131 #ifndef OPENSSL_NO_PSK
3132 int SSL_CTX_use_psk_identity_hint(SSL_CTX *ctx, const char *identity_hint)
3133 	{
3134 	if (identity_hint != NULL && strlen(identity_hint) > PSK_MAX_IDENTITY_LEN)
3135 		{
3136 		SSLerr(SSL_F_SSL_CTX_USE_PSK_IDENTITY_HINT, SSL_R_DATA_LENGTH_TOO_LONG);
3137 		return 0;
3138 		}
3139 	if (ctx->psk_identity_hint != NULL)
3140 		OPENSSL_free(ctx->psk_identity_hint);
3141 	if (identity_hint != NULL)
3142 		{
3143 		ctx->psk_identity_hint = BUF_strdup(identity_hint);
3144 		if (ctx->psk_identity_hint == NULL)
3145 			return 0;
3146 		}
3147 	else
3148 		ctx->psk_identity_hint = NULL;
3149 	return 1;
3150 	}
3151 
3152 int SSL_use_psk_identity_hint(SSL *s, const char *identity_hint)
3153 	{
3154 	if (s == NULL)
3155 		return 0;
3156 
3157 	if (s->session == NULL)
3158 		return 1; /* session not created yet, ignored */
3159 
3160 	if (identity_hint != NULL && strlen(identity_hint) > PSK_MAX_IDENTITY_LEN)
3161 		{
3162 		SSLerr(SSL_F_SSL_USE_PSK_IDENTITY_HINT, SSL_R_DATA_LENGTH_TOO_LONG);
3163 		return 0;
3164 		}
3165 	if (s->session->psk_identity_hint != NULL)
3166 		OPENSSL_free(s->session->psk_identity_hint);
3167 	if (identity_hint != NULL)
3168 		{
3169 		s->session->psk_identity_hint = BUF_strdup(identity_hint);
3170 		if (s->session->psk_identity_hint == NULL)
3171 			return 0;
3172 		}
3173 	else
3174 		s->session->psk_identity_hint = NULL;
3175 	return 1;
3176 	}
3177 
3178 const char *SSL_get_psk_identity_hint(const SSL *s)
3179 	{
3180 	if (s == NULL || s->session == NULL)
3181 		return NULL;
3182 	return(s->session->psk_identity_hint);
3183 	}
3184 
3185 const char *SSL_get_psk_identity(const SSL *s)
3186 	{
3187 	if (s == NULL || s->session == NULL)
3188 		return NULL;
3189 	return(s->session->psk_identity);
3190 	}
3191 
3192 void SSL_set_psk_client_callback(SSL *s,
3193     unsigned int (*cb)(SSL *ssl, const char *hint,
3194                        char *identity, unsigned int max_identity_len, unsigned char *psk,
3195                        unsigned int max_psk_len))
3196 	{
3197 	s->psk_client_callback = cb;
3198 	}
3199 
3200 void SSL_CTX_set_psk_client_callback(SSL_CTX *ctx,
3201     unsigned int (*cb)(SSL *ssl, const char *hint,
3202                        char *identity, unsigned int max_identity_len, unsigned char *psk,
3203                        unsigned int max_psk_len))
3204 	{
3205 	ctx->psk_client_callback = cb;
3206 	}
3207 
3208 void SSL_set_psk_server_callback(SSL *s,
3209     unsigned int (*cb)(SSL *ssl, const char *identity,
3210                        unsigned char *psk, unsigned int max_psk_len))
3211 	{
3212 	s->psk_server_callback = cb;
3213 	}
3214 
3215 void SSL_CTX_set_psk_server_callback(SSL_CTX *ctx,
3216     unsigned int (*cb)(SSL *ssl, const char *identity,
3217                        unsigned char *psk, unsigned int max_psk_len))
3218 	{
3219 	ctx->psk_server_callback = cb;
3220 	}
3221 #endif
3222 
3223 void SSL_CTX_set_msg_callback(SSL_CTX *ctx, void (*cb)(int write_p, int version, int content_type, const void *buf, size_t len, SSL *ssl, void *arg))
3224 	{
3225 	SSL_CTX_callback_ctrl(ctx, SSL_CTRL_SET_MSG_CALLBACK, (void (*)(void))cb);
3226 	}
3227 void SSL_set_msg_callback(SSL *ssl, void (*cb)(int write_p, int version, int content_type, const void *buf, size_t len, SSL *ssl, void *arg))
3228 	{
3229 	SSL_callback_ctrl(ssl, SSL_CTRL_SET_MSG_CALLBACK, (void (*)(void))cb);
3230 	}
3231 
3232 /* Allocates new EVP_MD_CTX and sets pointer to it into given pointer
3233  * vairable, freeing  EVP_MD_CTX previously stored in that variable, if
3234  * any. If EVP_MD pointer is passed, initializes ctx with this md
3235  * Returns newly allocated ctx;
3236  */
3237 
3238 EVP_MD_CTX *ssl_replace_hash(EVP_MD_CTX **hash,const EVP_MD *md)
3239 {
3240 	ssl_clear_hash_ctx(hash);
3241 	*hash = EVP_MD_CTX_create();
3242 	if (md) EVP_DigestInit_ex(*hash,md,NULL);
3243 	return *hash;
3244 }
3245 void ssl_clear_hash_ctx(EVP_MD_CTX **hash)
3246 {
3247 
3248 	if (*hash) EVP_MD_CTX_destroy(*hash);
3249 	*hash=NULL;
3250 }
3251 
3252 void SSL_set_debug(SSL *s, int debug)
3253 	{
3254 	s->debug = debug;
3255 	}
3256 
3257 int SSL_cache_hit(SSL *s)
3258 	{
3259 	return s->hit;
3260 	}
3261 
3262 #if defined(_WINDLL) && defined(OPENSSL_SYS_WIN16)
3263 #include "../crypto/bio/bss_file.c"
3264 #endif
3265 
3266 IMPLEMENT_STACK_OF(SSL_CIPHER)
3267 IMPLEMENT_STACK_OF(SSL_COMP)
3268 IMPLEMENT_OBJ_BSEARCH_GLOBAL_CMP_FN(SSL_CIPHER, SSL_CIPHER,
3269 				    ssl_cipher_id);
3270