d1_lib.c revision 279264
1/* ssl/d1_lib.c */
2/*
3 * DTLS implementation written by Nagendra Modadugu
4 * (nagendra@cs.stanford.edu) for the OpenSSL project 2005.
5 */
6/* ====================================================================
7 * Copyright (c) 1999-2005 The OpenSSL Project.  All rights reserved.
8 *
9 * Redistribution and use in source and binary forms, with or without
10 * modification, are permitted provided that the following conditions
11 * are met:
12 *
13 * 1. Redistributions of source code must retain the above copyright
14 *    notice, this list of conditions and the following disclaimer.
15 *
16 * 2. Redistributions in binary form must reproduce the above copyright
17 *    notice, this list of conditions and the following disclaimer in
18 *    the documentation and/or other materials provided with the
19 *    distribution.
20 *
21 * 3. All advertising materials mentioning features or use of this
22 *    software must display the following acknowledgment:
23 *    "This product includes software developed by the OpenSSL Project
24 *    for use in the OpenSSL Toolkit. (http://www.OpenSSL.org/)"
25 *
26 * 4. The names "OpenSSL Toolkit" and "OpenSSL Project" must not be used to
27 *    endorse or promote products derived from this software without
28 *    prior written permission. For written permission, please contact
29 *    openssl-core@OpenSSL.org.
30 *
31 * 5. Products derived from this software may not be called "OpenSSL"
32 *    nor may "OpenSSL" appear in their names without prior written
33 *    permission of the OpenSSL Project.
34 *
35 * 6. Redistributions of any form whatsoever must retain the following
36 *    acknowledgment:
37 *    "This product includes software developed by the OpenSSL Project
38 *    for use in the OpenSSL Toolkit (http://www.OpenSSL.org/)"
39 *
40 * THIS SOFTWARE IS PROVIDED BY THE OpenSSL PROJECT ``AS IS'' AND ANY
41 * EXPRESSED OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
42 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
43 * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE OpenSSL PROJECT OR
44 * ITS CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
45 * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
46 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
47 * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
48 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT,
49 * STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
50 * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED
51 * OF THE POSSIBILITY OF SUCH DAMAGE.
52 * ====================================================================
53 *
54 * This product includes cryptographic software written by Eric Young
55 * (eay@cryptsoft.com).  This product includes software written by Tim
56 * Hudson (tjh@cryptsoft.com).
57 *
58 */
59
60#include <stdio.h>
61#define USE_SOCKETS
62#include <openssl/objects.h>
63#include "ssl_locl.h"
64
65#if defined(OPENSSL_SYS_WIN32) || defined(OPENSSL_SYS_VMS)
66#include <sys/timeb.h>
67#endif
68
69static void get_current_time(struct timeval *t);
70const char dtls1_version_str[]="DTLSv1" OPENSSL_VERSION_PTEXT;
71int dtls1_listen(SSL *s, struct sockaddr *client);
72
73SSL3_ENC_METHOD DTLSv1_enc_data={
74    dtls1_enc,
75	tls1_mac,
76	tls1_setup_key_block,
77	tls1_generate_master_secret,
78	tls1_change_cipher_state,
79	tls1_final_finish_mac,
80	TLS1_FINISH_MAC_LENGTH,
81	tls1_cert_verify_mac,
82	TLS_MD_CLIENT_FINISH_CONST,TLS_MD_CLIENT_FINISH_CONST_SIZE,
83	TLS_MD_SERVER_FINISH_CONST,TLS_MD_SERVER_FINISH_CONST_SIZE,
84	tls1_alert_code,
85	tls1_export_keying_material,
86	};
87
88long dtls1_default_timeout(void)
89	{
90	/* 2 hours, the 24 hours mentioned in the DTLSv1 spec
91	 * is way too long for http, the cache would over fill */
92	return(60*60*2);
93	}
94
95int dtls1_new(SSL *s)
96	{
97	DTLS1_STATE *d1;
98
99	if (!ssl3_new(s)) return(0);
100	if ((d1=OPENSSL_malloc(sizeof *d1)) == NULL) return (0);
101	memset(d1,0, sizeof *d1);
102
103	/* d1->handshake_epoch=0; */
104
105	d1->unprocessed_rcds.q=pqueue_new();
106	d1->processed_rcds.q=pqueue_new();
107	d1->buffered_messages = pqueue_new();
108	d1->sent_messages=pqueue_new();
109	d1->buffered_app_data.q=pqueue_new();
110
111	if ( s->server)
112		{
113		d1->cookie_len = sizeof(s->d1->cookie);
114		}
115
116	d1->link_mtu = 0;
117	d1->mtu = 0;
118
119	if( ! d1->unprocessed_rcds.q || ! d1->processed_rcds.q
120        || ! d1->buffered_messages || ! d1->sent_messages || ! d1->buffered_app_data.q)
121		{
122        if ( d1->unprocessed_rcds.q) pqueue_free(d1->unprocessed_rcds.q);
123        if ( d1->processed_rcds.q) pqueue_free(d1->processed_rcds.q);
124        if ( d1->buffered_messages) pqueue_free(d1->buffered_messages);
125		if ( d1->sent_messages) pqueue_free(d1->sent_messages);
126		if ( d1->buffered_app_data.q) pqueue_free(d1->buffered_app_data.q);
127		OPENSSL_free(d1);
128		return (0);
129		}
130
131	s->d1=d1;
132	s->method->ssl_clear(s);
133	return(1);
134	}
135
136static void dtls1_clear_queues(SSL *s)
137	{
138    pitem *item = NULL;
139    hm_fragment *frag = NULL;
140	DTLS1_RECORD_DATA *rdata;
141
142    while( (item = pqueue_pop(s->d1->unprocessed_rcds.q)) != NULL)
143        {
144		rdata = (DTLS1_RECORD_DATA *) item->data;
145		if (rdata->rbuf.buf)
146			{
147			OPENSSL_free(rdata->rbuf.buf);
148			}
149        OPENSSL_free(item->data);
150        pitem_free(item);
151        }
152
153    while( (item = pqueue_pop(s->d1->processed_rcds.q)) != NULL)
154        {
155		rdata = (DTLS1_RECORD_DATA *) item->data;
156		if (rdata->rbuf.buf)
157			{
158			OPENSSL_free(rdata->rbuf.buf);
159			}
160        OPENSSL_free(item->data);
161        pitem_free(item);
162        }
163
164    while( (item = pqueue_pop(s->d1->buffered_messages)) != NULL)
165        {
166        frag = (hm_fragment *)item->data;
167        dtls1_hm_fragment_free(frag);
168        pitem_free(item);
169        }
170
171    while ( (item = pqueue_pop(s->d1->sent_messages)) != NULL)
172        {
173        frag = (hm_fragment *)item->data;
174        dtls1_hm_fragment_free(frag);
175        pitem_free(item);
176        }
177
178	while ( (item = pqueue_pop(s->d1->buffered_app_data.q)) != NULL)
179		{
180		rdata = (DTLS1_RECORD_DATA *) item->data;
181		if (rdata->rbuf.buf)
182			{
183			OPENSSL_free(rdata->rbuf.buf);
184			}
185		OPENSSL_free(item->data);
186		pitem_free(item);
187		}
188	}
189
190void dtls1_free(SSL *s)
191	{
192	ssl3_free(s);
193
194	dtls1_clear_queues(s);
195
196    pqueue_free(s->d1->unprocessed_rcds.q);
197    pqueue_free(s->d1->processed_rcds.q);
198    pqueue_free(s->d1->buffered_messages);
199	pqueue_free(s->d1->sent_messages);
200	pqueue_free(s->d1->buffered_app_data.q);
201
202	OPENSSL_free(s->d1);
203	s->d1 = NULL;
204	}
205
206void dtls1_clear(SSL *s)
207	{
208    pqueue unprocessed_rcds;
209    pqueue processed_rcds;
210    pqueue buffered_messages;
211	pqueue sent_messages;
212	pqueue buffered_app_data;
213	unsigned int mtu;
214	unsigned int link_mtu;
215
216	if (s->d1)
217		{
218		unprocessed_rcds = s->d1->unprocessed_rcds.q;
219		processed_rcds = s->d1->processed_rcds.q;
220		buffered_messages = s->d1->buffered_messages;
221		sent_messages = s->d1->sent_messages;
222		buffered_app_data = s->d1->buffered_app_data.q;
223		mtu = s->d1->mtu;
224		link_mtu = s->d1->link_mtu;
225
226		dtls1_clear_queues(s);
227
228		memset(s->d1, 0, sizeof(*(s->d1)));
229
230		if (s->server)
231			{
232			s->d1->cookie_len = sizeof(s->d1->cookie);
233			}
234
235		if (SSL_get_options(s) & SSL_OP_NO_QUERY_MTU)
236			{
237			s->d1->mtu = mtu;
238			s->d1->link_mtu = link_mtu;
239			}
240
241		s->d1->unprocessed_rcds.q = unprocessed_rcds;
242		s->d1->processed_rcds.q = processed_rcds;
243		s->d1->buffered_messages = buffered_messages;
244		s->d1->sent_messages = sent_messages;
245		s->d1->buffered_app_data.q = buffered_app_data;
246		}
247
248	ssl3_clear(s);
249	if (s->options & SSL_OP_CISCO_ANYCONNECT)
250		s->version=DTLS1_BAD_VER;
251	else
252		s->version=DTLS1_VERSION;
253	}
254
255long dtls1_ctrl(SSL *s, int cmd, long larg, void *parg)
256	{
257	int ret=0;
258
259	switch (cmd)
260		{
261	case DTLS_CTRL_GET_TIMEOUT:
262		if (dtls1_get_timeout(s, (struct timeval*) parg) != NULL)
263			{
264			ret = 1;
265			}
266		break;
267	case DTLS_CTRL_HANDLE_TIMEOUT:
268		ret = dtls1_handle_timeout(s);
269		break;
270	case DTLS_CTRL_LISTEN:
271		ret = dtls1_listen(s, parg);
272		break;
273	case SSL_CTRL_CHECK_PROTO_VERSION:
274		/* For library-internal use; checks that the current protocol
275		 * is the highest enabled version (according to s->ctx->method,
276		 * as version negotiation may have changed s->method). */
277#if DTLS_MAX_VERSION != DTLS1_VERSION
278#  error Code needs update for DTLS_method() support beyond DTLS1_VERSION.
279#endif
280		/* Just one protocol version is supported so far;
281		 * fail closed if the version is not as expected. */
282		return s->version == DTLS_MAX_VERSION;
283	case DTLS_CTRL_SET_LINK_MTU:
284		if (larg < (long)dtls1_link_min_mtu())
285			return 0;
286		s->d1->link_mtu = larg;
287		return 1;
288	case DTLS_CTRL_GET_LINK_MIN_MTU:
289		return (long)dtls1_link_min_mtu();
290	case SSL_CTRL_SET_MTU:
291		/*
292		 *  We may not have a BIO set yet so can't call dtls1_min_mtu()
293		 *  We'll have to make do with dtls1_link_min_mtu() and max overhead
294		 */
295		if (larg < (long)dtls1_link_min_mtu() - DTLS1_MAX_MTU_OVERHEAD)
296			return 0;
297		s->d1->mtu = larg;
298		return larg;
299	default:
300		ret = ssl3_ctrl(s, cmd, larg, parg);
301		break;
302		}
303	return(ret);
304	}
305
306/*
307 * As it's impossible to use stream ciphers in "datagram" mode, this
308 * simple filter is designed to disengage them in DTLS. Unfortunately
309 * there is no universal way to identify stream SSL_CIPHER, so we have
310 * to explicitly list their SSL_* codes. Currently RC4 is the only one
311 * available, but if new ones emerge, they will have to be added...
312 */
313const SSL_CIPHER *dtls1_get_cipher(unsigned int u)
314	{
315	const SSL_CIPHER *ciph = ssl3_get_cipher(u);
316
317	if (ciph != NULL)
318		{
319		if (ciph->algorithm_enc == SSL_RC4)
320			return NULL;
321		}
322
323	return ciph;
324	}
325
326void dtls1_start_timer(SSL *s)
327	{
328#ifndef OPENSSL_NO_SCTP
329	/* Disable timer for SCTP */
330	if (BIO_dgram_is_sctp(SSL_get_wbio(s)))
331		{
332		memset(&(s->d1->next_timeout), 0, sizeof(struct timeval));
333		return;
334		}
335#endif
336
337	/* If timer is not set, initialize duration with 1 second */
338	if (s->d1->next_timeout.tv_sec == 0 && s->d1->next_timeout.tv_usec == 0)
339		{
340		s->d1->timeout_duration = 1;
341		}
342
343	/* Set timeout to current time */
344	get_current_time(&(s->d1->next_timeout));
345
346	/* Add duration to current time */
347	s->d1->next_timeout.tv_sec += s->d1->timeout_duration;
348	BIO_ctrl(SSL_get_rbio(s), BIO_CTRL_DGRAM_SET_NEXT_TIMEOUT, 0, &(s->d1->next_timeout));
349	}
350
351struct timeval* dtls1_get_timeout(SSL *s, struct timeval* timeleft)
352	{
353	struct timeval timenow;
354
355	/* If no timeout is set, just return NULL */
356	if (s->d1->next_timeout.tv_sec == 0 && s->d1->next_timeout.tv_usec == 0)
357		{
358		return NULL;
359		}
360
361	/* Get current time */
362	get_current_time(&timenow);
363
364	/* If timer already expired, set remaining time to 0 */
365	if (s->d1->next_timeout.tv_sec < timenow.tv_sec ||
366		(s->d1->next_timeout.tv_sec == timenow.tv_sec &&
367		 s->d1->next_timeout.tv_usec <= timenow.tv_usec))
368		{
369		memset(timeleft, 0, sizeof(struct timeval));
370		return timeleft;
371		}
372
373	/* Calculate time left until timer expires */
374	memcpy(timeleft, &(s->d1->next_timeout), sizeof(struct timeval));
375	timeleft->tv_sec -= timenow.tv_sec;
376	timeleft->tv_usec -= timenow.tv_usec;
377	if (timeleft->tv_usec < 0)
378		{
379		timeleft->tv_sec--;
380		timeleft->tv_usec += 1000000;
381		}
382
383	/* If remaining time is less than 15 ms, set it to 0
384	 * to prevent issues because of small devergences with
385	 * socket timeouts.
386	 */
387	if (timeleft->tv_sec == 0 && timeleft->tv_usec < 15000)
388		{
389		memset(timeleft, 0, sizeof(struct timeval));
390		}
391
392
393	return timeleft;
394	}
395
396int dtls1_is_timer_expired(SSL *s)
397	{
398	struct timeval timeleft;
399
400	/* Get time left until timeout, return false if no timer running */
401	if (dtls1_get_timeout(s, &timeleft) == NULL)
402		{
403		return 0;
404		}
405
406	/* Return false if timer is not expired yet */
407	if (timeleft.tv_sec > 0 || timeleft.tv_usec > 0)
408		{
409		return 0;
410		}
411
412	/* Timer expired, so return true */
413	return 1;
414	}
415
416void dtls1_double_timeout(SSL *s)
417	{
418	s->d1->timeout_duration *= 2;
419	if (s->d1->timeout_duration > 60)
420		s->d1->timeout_duration = 60;
421	dtls1_start_timer(s);
422	}
423
424void dtls1_stop_timer(SSL *s)
425	{
426	/* Reset everything */
427	memset(&(s->d1->timeout), 0, sizeof(struct dtls1_timeout_st));
428	memset(&(s->d1->next_timeout), 0, sizeof(struct timeval));
429	s->d1->timeout_duration = 1;
430	BIO_ctrl(SSL_get_rbio(s), BIO_CTRL_DGRAM_SET_NEXT_TIMEOUT, 0, &(s->d1->next_timeout));
431	/* Clear retransmission buffer */
432	dtls1_clear_record_buffer(s);
433	}
434
435int dtls1_check_timeout_num(SSL *s)
436	{
437	unsigned int mtu;
438
439	s->d1->timeout.num_alerts++;
440
441	/* Reduce MTU after 2 unsuccessful retransmissions */
442	if (s->d1->timeout.num_alerts > 2
443			&& !(SSL_get_options(s) & SSL_OP_NO_QUERY_MTU))
444		{
445		mtu = BIO_ctrl(SSL_get_wbio(s), BIO_CTRL_DGRAM_GET_FALLBACK_MTU, 0, NULL);
446		if(mtu < s->d1->mtu)
447			s->d1->mtu = mtu;
448		}
449
450	if (s->d1->timeout.num_alerts > DTLS1_TMO_ALERT_COUNT)
451		{
452		/* fail the connection, enough alerts have been sent */
453		SSLerr(SSL_F_DTLS1_CHECK_TIMEOUT_NUM,SSL_R_READ_TIMEOUT_EXPIRED);
454		return -1;
455		}
456
457	return 0;
458	}
459
460int dtls1_handle_timeout(SSL *s)
461	{
462	/* if no timer is expired, don't do anything */
463	if (!dtls1_is_timer_expired(s))
464		{
465		return 0;
466		}
467
468	dtls1_double_timeout(s);
469
470	if (dtls1_check_timeout_num(s) < 0)
471		return -1;
472
473	s->d1->timeout.read_timeouts++;
474	if (s->d1->timeout.read_timeouts > DTLS1_TMO_READ_COUNT)
475		{
476		s->d1->timeout.read_timeouts = 1;
477		}
478
479#ifndef OPENSSL_NO_HEARTBEATS
480	if (s->tlsext_hb_pending)
481		{
482		s->tlsext_hb_pending = 0;
483		return dtls1_heartbeat(s);
484		}
485#endif
486
487	dtls1_start_timer(s);
488	return dtls1_retransmit_buffered_messages(s);
489	}
490
491static void get_current_time(struct timeval *t)
492{
493#ifdef OPENSSL_SYS_WIN32
494	struct _timeb tb;
495	_ftime(&tb);
496	t->tv_sec = (long)tb.time;
497	t->tv_usec = (long)tb.millitm * 1000;
498#elif defined(OPENSSL_SYS_VMS)
499	struct timeb tb;
500	ftime(&tb);
501	t->tv_sec = (long)tb.time;
502	t->tv_usec = (long)tb.millitm * 1000;
503#else
504	gettimeofday(t, NULL);
505#endif
506}
507
508int dtls1_listen(SSL *s, struct sockaddr *client)
509	{
510	int ret;
511
512	SSL_set_options(s, SSL_OP_COOKIE_EXCHANGE);
513	s->d1->listen = 1;
514
515	ret = SSL_accept(s);
516	if (ret <= 0) return ret;
517
518	(void) BIO_dgram_get_peer(SSL_get_rbio(s), client);
519	return 1;
520	}
521