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Adam Langley95c29f32014-06-20 12:00:00 -07001/*
2 * DTLS implementation written by Nagendra Modadugu
3 * (nagendra@cs.stanford.edu) for the OpenSSL project 2005.
4 */
5/* ====================================================================
6 * Copyright (c) 1998-2005 The OpenSSL Project. All rights reserved.
7 *
8 * Redistribution and use in source and binary forms, with or without
9 * modification, are permitted provided that the following conditions
10 * are met:
11 *
12 * 1. Redistributions of source code must retain the above copyright
13 * notice, this list of conditions and the following disclaimer.
14 *
15 * 2. Redistributions in binary form must reproduce the above copyright
16 * notice, this list of conditions and the following disclaimer in
17 * the documentation and/or other materials provided with the
18 * distribution.
19 *
20 * 3. All advertising materials mentioning features or use of this
21 * software must display the following acknowledgment:
22 * "This product includes software developed by the OpenSSL Project
23 * for use in the OpenSSL Toolkit. (http://www.openssl.org/)"
24 *
25 * 4. The names "OpenSSL Toolkit" and "OpenSSL Project" must not be used to
26 * endorse or promote products derived from this software without
27 * prior written permission. For written permission, please contact
28 * openssl-core@openssl.org.
29 *
30 * 5. Products derived from this software may not be called "OpenSSL"
31 * nor may "OpenSSL" appear in their names without prior written
32 * permission of the OpenSSL Project.
33 *
34 * 6. Redistributions of any form whatsoever must retain the following
35 * acknowledgment:
36 * "This product includes software developed by the OpenSSL Project
37 * for use in the OpenSSL Toolkit (http://www.openssl.org/)"
38 *
39 * THIS SOFTWARE IS PROVIDED BY THE OpenSSL PROJECT ``AS IS'' AND ANY
40 * EXPRESSED OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
41 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
42 * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE OpenSSL PROJECT OR
43 * ITS CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
44 * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
45 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
46 * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
47 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT,
48 * STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
49 * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED
50 * OF THE POSSIBILITY OF SUCH DAMAGE.
51 * ====================================================================
52 *
53 * This product includes cryptographic software written by Eric Young
54 * (eay@cryptsoft.com). This product includes software written by Tim
55 * Hudson (tjh@cryptsoft.com).
56 *
57 */
58/* Copyright (C) 1995-1998 Eric Young (eay@cryptsoft.com)
59 * All rights reserved.
60 *
61 * This package is an SSL implementation written
62 * by Eric Young (eay@cryptsoft.com).
63 * The implementation was written so as to conform with Netscapes SSL.
64 *
65 * This library is free for commercial and non-commercial use as long as
66 * the following conditions are aheared to. The following conditions
67 * apply to all code found in this distribution, be it the RC4, RSA,
68 * lhash, DES, etc., code; not just the SSL code. The SSL documentation
69 * included with this distribution is covered by the same copyright terms
70 * except that the holder is Tim Hudson (tjh@cryptsoft.com).
71 *
72 * Copyright remains Eric Young's, and as such any Copyright notices in
73 * the code are not to be removed.
74 * If this package is used in a product, Eric Young should be given attribution
75 * as the author of the parts of the library used.
76 * This can be in the form of a textual message at program startup or
77 * in documentation (online or textual) provided with the package.
78 *
79 * Redistribution and use in source and binary forms, with or without
80 * modification, are permitted provided that the following conditions
81 * are met:
82 * 1. Redistributions of source code must retain the copyright
83 * notice, this list of conditions and the following disclaimer.
84 * 2. Redistributions in binary form must reproduce the above copyright
85 * notice, this list of conditions and the following disclaimer in the
86 * documentation and/or other materials provided with the distribution.
87 * 3. All advertising materials mentioning features or use of this software
88 * must display the following acknowledgement:
89 * "This product includes cryptographic software written by
90 * Eric Young (eay@cryptsoft.com)"
91 * The word 'cryptographic' can be left out if the rouines from the library
92 * being used are not cryptographic related :-).
93 * 4. If you include any Windows specific code (or a derivative thereof) from
94 * the apps directory (application code) you must include an acknowledgement:
95 * "This product includes software written by Tim Hudson (tjh@cryptsoft.com)"
96 *
97 * THIS SOFTWARE IS PROVIDED BY ERIC YOUNG ``AS IS'' AND
98 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
99 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
100 * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
101 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
102 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
103 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
104 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
105 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
106 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
107 * SUCH DAMAGE.
108 *
109 * The licence and distribution terms for any publically available version or
110 * derivative of this code cannot be changed. i.e. this code cannot simply be
111 * copied and put under another distribution licence
112 * [including the GNU Public Licence.] */
113
114#include <assert.h>
115#include <limits.h>
116#include <stdio.h>
117#include <string.h>
118
119#include <openssl/buf.h>
120#include <openssl/err.h>
121#include <openssl/evp.h>
122#include <openssl/mem.h>
123#include <openssl/obj.h>
124#include <openssl/rand.h>
125#include <openssl/x509.h>
126
David Benjamin2ee94aa2015-04-07 22:38:30 -0400127#include "internal.h"
Adam Langley95c29f32014-06-20 12:00:00 -0700128
Adam Langley95c29f32014-06-20 12:00:00 -0700129
David Benjamina18b6712015-01-11 19:31:22 -0500130/* TODO(davidben): 28 comes from the size of IP + UDP header. Is this reasonable
131 * for these values? Notably, why is kMinMTU a function of the transport
132 * protocol's overhead rather than, say, what's needed to hold a minimally-sized
133 * handshake fragment plus protocol overhead. */
Adam Langley95c29f32014-06-20 12:00:00 -0700134
David Benjamina18b6712015-01-11 19:31:22 -0500135/* kMinMTU is the minimum acceptable MTU value. */
136static const unsigned int kMinMTU = 256 - 28;
137
138/* kDefaultMTU is the default MTU value to use if neither the user nor
139 * the underlying BIO supplies one. */
140static const unsigned int kDefaultMTU = 1500 - 28;
141
David Benjamin75381222015-03-02 19:30:30 -0500142/* kMaxHandshakeBuffer is the maximum number of handshake messages ahead of the
143 * current one to buffer. */
144static const unsigned int kHandshakeBufferSize = 10;
145
Adam Langley71d8a082014-12-13 16:28:18 -0800146static void dtls1_fix_message_header(SSL *s, unsigned long frag_off,
147 unsigned long frag_len);
148static unsigned char *dtls1_write_message_header(SSL *s, unsigned char *p);
Adam Langley95c29f32014-06-20 12:00:00 -0700149
Adam Langley71d8a082014-12-13 16:28:18 -0800150static hm_fragment *dtls1_hm_fragment_new(unsigned long frag_len,
151 int reassembly) {
152 hm_fragment *frag = NULL;
David Benjamin75381222015-03-02 19:30:30 -0500153 uint8_t *buf = NULL;
154 uint8_t *bitmask = NULL;
Adam Langley95c29f32014-06-20 12:00:00 -0700155
Adam Langley71d8a082014-12-13 16:28:18 -0800156 frag = (hm_fragment *)OPENSSL_malloc(sizeof(hm_fragment));
157 if (frag == NULL) {
David Benjamin3570d732015-06-29 00:28:17 -0400158 OPENSSL_PUT_ERROR(SSL, ERR_R_MALLOC_FAILURE);
Adam Langley71d8a082014-12-13 16:28:18 -0800159 return NULL;
160 }
Adam Langley95c29f32014-06-20 12:00:00 -0700161
Adam Langley71d8a082014-12-13 16:28:18 -0800162 if (frag_len) {
David Benjamin75381222015-03-02 19:30:30 -0500163 buf = (uint8_t *)OPENSSL_malloc(frag_len);
Adam Langley71d8a082014-12-13 16:28:18 -0800164 if (buf == NULL) {
David Benjamin3570d732015-06-29 00:28:17 -0400165 OPENSSL_PUT_ERROR(SSL, ERR_R_MALLOC_FAILURE);
Adam Langley71d8a082014-12-13 16:28:18 -0800166 OPENSSL_free(frag);
167 return NULL;
168 }
169 }
Adam Langley95c29f32014-06-20 12:00:00 -0700170
Adam Langley71d8a082014-12-13 16:28:18 -0800171 /* zero length fragment gets zero frag->fragment */
172 frag->fragment = buf;
Adam Langley95c29f32014-06-20 12:00:00 -0700173
Adam Langley71d8a082014-12-13 16:28:18 -0800174 /* Initialize reassembly bitmask if necessary */
David Benjamin75381222015-03-02 19:30:30 -0500175 if (reassembly && frag_len > 0) {
David Benjaminee562b92015-03-02 20:52:52 -0500176 if (frag_len + 7 < frag_len) {
David Benjamin3570d732015-06-29 00:28:17 -0400177 OPENSSL_PUT_ERROR(SSL, ERR_R_OVERFLOW);
David Benjaminee562b92015-03-02 20:52:52 -0500178 return NULL;
179 }
180 size_t bitmask_len = (frag_len + 7) / 8;
181 bitmask = (uint8_t *)OPENSSL_malloc(bitmask_len);
Adam Langley71d8a082014-12-13 16:28:18 -0800182 if (bitmask == NULL) {
David Benjamin3570d732015-06-29 00:28:17 -0400183 OPENSSL_PUT_ERROR(SSL, ERR_R_MALLOC_FAILURE);
Adam Langley71d8a082014-12-13 16:28:18 -0800184 if (buf != NULL) {
185 OPENSSL_free(buf);
186 }
187 OPENSSL_free(frag);
188 return NULL;
189 }
David Benjaminee562b92015-03-02 20:52:52 -0500190 memset(bitmask, 0, bitmask_len);
Adam Langley71d8a082014-12-13 16:28:18 -0800191 }
Adam Langley95c29f32014-06-20 12:00:00 -0700192
Adam Langley71d8a082014-12-13 16:28:18 -0800193 frag->reassembly = bitmask;
Adam Langley95c29f32014-06-20 12:00:00 -0700194
Adam Langley71d8a082014-12-13 16:28:18 -0800195 return frag;
196}
Adam Langley95c29f32014-06-20 12:00:00 -0700197
Adam Langley71d8a082014-12-13 16:28:18 -0800198void dtls1_hm_fragment_free(hm_fragment *frag) {
David Benjamin5d1ec732015-04-22 13:38:00 -0400199 if (frag == NULL) {
200 return;
201 }
David Benjamin2755a3e2015-04-22 16:17:58 -0400202 OPENSSL_free(frag->fragment);
203 OPENSSL_free(frag->reassembly);
Adam Langley71d8a082014-12-13 16:28:18 -0800204 OPENSSL_free(frag);
205}
Adam Langley95c29f32014-06-20 12:00:00 -0700206
David Benjaminee562b92015-03-02 20:52:52 -0500207#if !defined(inline)
208#define inline __inline
209#endif
210
211/* bit_range returns a |uint8_t| with bits |start|, inclusive, to |end|,
212 * exclusive, set. */
213static inline uint8_t bit_range(size_t start, size_t end) {
214 return (uint8_t)(~((1u << start) - 1) & ((1u << end) - 1));
215}
216
217/* dtls1_hm_fragment_mark marks bytes |start|, inclusive, to |end|, exclusive,
218 * as received in |frag|. If |frag| becomes complete, it clears
219 * |frag->reassembly|. The range must be within the bounds of |frag|'s message
220 * and |frag->reassembly| must not be NULL. */
221static void dtls1_hm_fragment_mark(hm_fragment *frag, size_t start,
222 size_t end) {
223 size_t i;
224 size_t msg_len = frag->msg_header.msg_len;
225
226 if (frag->reassembly == NULL || start > end || end > msg_len) {
227 assert(0);
228 return;
229 }
230 /* A zero-length message will never have a pending reassembly. */
231 assert(msg_len > 0);
232
233 if ((start >> 3) == (end >> 3)) {
234 frag->reassembly[start >> 3] |= bit_range(start & 7, end & 7);
235 } else {
236 frag->reassembly[start >> 3] |= bit_range(start & 7, 8);
237 for (i = (start >> 3) + 1; i < (end >> 3); i++) {
238 frag->reassembly[i] = 0xff;
239 }
240 if ((end & 7) != 0) {
241 frag->reassembly[end >> 3] |= bit_range(0, end & 7);
242 }
243 }
244
245 /* Check if the fragment is complete. */
246 for (i = 0; i < (msg_len >> 3); i++) {
247 if (frag->reassembly[i] != 0xff) {
248 return;
249 }
250 }
251 if ((msg_len & 7) != 0 &&
252 frag->reassembly[msg_len >> 3] != bit_range(0, msg_len & 7)) {
253 return;
254 }
255
256 OPENSSL_free(frag->reassembly);
257 frag->reassembly = NULL;
258}
259
Adam Langley71d8a082014-12-13 16:28:18 -0800260/* send s->init_buf in records of type 'type' (SSL3_RT_HANDSHAKE or
261 * SSL3_RT_CHANGE_CIPHER_SPEC) */
David Benjamin3e3090d2015-04-05 12:48:30 -0400262int dtls1_do_write(SSL *s, int type, enum dtls1_use_epoch_t use_epoch) {
Adam Langley71d8a082014-12-13 16:28:18 -0800263 int ret;
264 int curr_mtu;
David Benjamine95d20d2014-12-23 11:16:01 -0500265 unsigned int len, frag_off;
Adam Langley95c29f32014-06-20 12:00:00 -0700266
Adam Langley71d8a082014-12-13 16:28:18 -0800267 /* AHA! Figure out the MTU, and stick to the right size */
268 if (s->d1->mtu < dtls1_min_mtu() &&
269 !(SSL_get_options(s) & SSL_OP_NO_QUERY_MTU)) {
David Benjamin80cee912015-01-11 19:36:58 -0500270 long mtu = BIO_ctrl(SSL_get_wbio(s), BIO_CTRL_DGRAM_QUERY_MTU, 0, NULL);
271 if (mtu >= 0 && mtu <= (1 << 30) && (unsigned)mtu >= dtls1_min_mtu()) {
272 s->d1->mtu = (unsigned)mtu;
273 } else {
David Benjamina18b6712015-01-11 19:31:22 -0500274 s->d1->mtu = kDefaultMTU;
Adam Langley71d8a082014-12-13 16:28:18 -0800275 BIO_ctrl(SSL_get_wbio(s), BIO_CTRL_DGRAM_SET_MTU, s->d1->mtu, NULL);
276 }
277 }
Adam Langley95c29f32014-06-20 12:00:00 -0700278
Adam Langley71d8a082014-12-13 16:28:18 -0800279 /* should have something reasonable now */
280 assert(s->d1->mtu >= dtls1_min_mtu());
Adam Langley95c29f32014-06-20 12:00:00 -0700281
Adam Langley71d8a082014-12-13 16:28:18 -0800282 if (s->init_off == 0 && type == SSL3_RT_HANDSHAKE) {
283 assert(s->init_num ==
284 (int)s->d1->w_msg_hdr.msg_len + DTLS1_HM_HEADER_LENGTH);
285 }
Adam Langley95c29f32014-06-20 12:00:00 -0700286
David Benjamine95d20d2014-12-23 11:16:01 -0500287 /* Determine the maximum overhead of the current cipher. */
David Benjamin31a07792015-03-03 14:20:26 -0500288 size_t max_overhead = SSL_AEAD_CTX_max_overhead(s->aead_write_ctx);
Adam Langley95c29f32014-06-20 12:00:00 -0700289
Adam Langley71d8a082014-12-13 16:28:18 -0800290 frag_off = 0;
291 while (s->init_num) {
David Benjamin17a5f852015-01-11 19:46:52 -0500292 /* Account for data in the buffering BIO; multiple records may be packed
293 * into a single packet during the handshake.
294 *
295 * TODO(davidben): This is buggy; if the MTU is larger than the buffer size,
296 * the large record will be split across two packets. Moreover, in that
297 * case, the |dtls1_write_bytes| call may not return synchronously. This
298 * will break on retry as the |s->init_off| and |s->init_num| adjustment
299 * will run a second time. */
Adam Langley71d8a082014-12-13 16:28:18 -0800300 curr_mtu = s->d1->mtu - BIO_wpending(SSL_get_wbio(s)) -
David Benjamine95d20d2014-12-23 11:16:01 -0500301 DTLS1_RT_HEADER_LENGTH - max_overhead;
Adam Langley95c29f32014-06-20 12:00:00 -0700302
Adam Langley71d8a082014-12-13 16:28:18 -0800303 if (curr_mtu <= DTLS1_HM_HEADER_LENGTH) {
David Benjamin17a5f852015-01-11 19:46:52 -0500304 /* Flush the buffer and continue with a fresh packet.
305 *
306 * TODO(davidben): If |BIO_flush| is not synchronous and requires multiple
307 * calls to |dtls1_do_write|, |frag_off| will be wrong. */
Adam Langley71d8a082014-12-13 16:28:18 -0800308 ret = BIO_flush(SSL_get_wbio(s));
309 if (ret <= 0) {
310 return ret;
311 }
David Benjamin17a5f852015-01-11 19:46:52 -0500312 assert(BIO_wpending(SSL_get_wbio(s)) == 0);
David Benjamine95d20d2014-12-23 11:16:01 -0500313 curr_mtu = s->d1->mtu - DTLS1_RT_HEADER_LENGTH - max_overhead;
Adam Langley71d8a082014-12-13 16:28:18 -0800314 }
Adam Langley95c29f32014-06-20 12:00:00 -0700315
Adam Langley71d8a082014-12-13 16:28:18 -0800316 /* XDTLS: this function is too long. split out the CCS part */
317 if (type == SSL3_RT_HANDSHAKE) {
David Benjamin5a3cc032015-01-11 19:25:32 -0500318 /* If this isn't the first fragment, reserve space to prepend a new
319 * fragment header. This will override the body of a previous fragment. */
Adam Langley71d8a082014-12-13 16:28:18 -0800320 if (s->init_off != 0) {
321 assert(s->init_off > DTLS1_HM_HEADER_LENGTH);
322 s->init_off -= DTLS1_HM_HEADER_LENGTH;
323 s->init_num += DTLS1_HM_HEADER_LENGTH;
Adam Langley71d8a082014-12-13 16:28:18 -0800324 }
Adam Langley95c29f32014-06-20 12:00:00 -0700325
David Benjamind9778fb2015-01-11 17:24:51 -0500326 if (curr_mtu <= DTLS1_HM_HEADER_LENGTH) {
327 /* To make forward progress, the MTU must, at minimum, fit the handshake
328 * header and one byte of handshake body. */
David Benjamin3570d732015-06-29 00:28:17 -0400329 OPENSSL_PUT_ERROR(SSL, SSL_R_MTU_TOO_SMALL);
David Benjamind9778fb2015-01-11 17:24:51 -0500330 return -1;
331 }
Adam Langley95c29f32014-06-20 12:00:00 -0700332
David Benjamind9778fb2015-01-11 17:24:51 -0500333 if (s->init_num > curr_mtu) {
334 len = curr_mtu;
335 } else {
336 len = s->init_num;
337 }
338 assert(len >= DTLS1_HM_HEADER_LENGTH);
339
340 dtls1_fix_message_header(s, frag_off, len - DTLS1_HM_HEADER_LENGTH);
Adam Langley71d8a082014-12-13 16:28:18 -0800341 dtls1_write_message_header(
342 s, (uint8_t *)&s->init_buf->data[s->init_off]);
David Benjamind9778fb2015-01-11 17:24:51 -0500343 } else {
344 assert(type == SSL3_RT_CHANGE_CIPHER_SPEC);
345 /* ChangeCipherSpec cannot be fragmented. */
346 if (s->init_num > curr_mtu) {
David Benjamin3570d732015-06-29 00:28:17 -0400347 OPENSSL_PUT_ERROR(SSL, SSL_R_MTU_TOO_SMALL);
David Benjamind9778fb2015-01-11 17:24:51 -0500348 return -1;
349 }
350 len = s->init_num;
Adam Langley71d8a082014-12-13 16:28:18 -0800351 }
Adam Langley95c29f32014-06-20 12:00:00 -0700352
David Benjamin3e3090d2015-04-05 12:48:30 -0400353 ret = dtls1_write_bytes(s, type, &s->init_buf->data[s->init_off], len,
354 use_epoch);
Adam Langley71d8a082014-12-13 16:28:18 -0800355 if (ret < 0) {
David Benjamin5a3cc032015-01-11 19:25:32 -0500356 return -1;
Adam Langley71d8a082014-12-13 16:28:18 -0800357 }
David Benjamin5a3cc032015-01-11 19:25:32 -0500358
359 /* bad if this assert fails, only part of the handshake message got sent.
360 * But why would this happen? */
361 assert(len == (unsigned int)ret);
362
363 if (ret == s->init_num) {
364 if (s->msg_callback) {
365 s->msg_callback(1, s->version, type, s->init_buf->data,
366 (size_t)(s->init_off + s->init_num), s,
367 s->msg_callback_arg);
368 }
369
370 s->init_off = 0; /* done writing this message */
371 s->init_num = 0;
372
373 return 1;
374 }
375 s->init_off += ret;
376 s->init_num -= ret;
377 frag_off += (ret -= DTLS1_HM_HEADER_LENGTH);
Adam Langley71d8a082014-12-13 16:28:18 -0800378 }
379
380 return 0;
381}
Adam Langley95c29f32014-06-20 12:00:00 -0700382
David Benjamin75381222015-03-02 19:30:30 -0500383/* dtls1_is_next_message_complete returns one if the next handshake message is
384 * complete and zero otherwise. */
385static int dtls1_is_next_message_complete(SSL *s) {
386 pitem *item = pqueue_peek(s->d1->buffered_messages);
387 if (item == NULL) {
388 return 0;
389 }
390
391 hm_fragment *frag = (hm_fragment *)item->data;
392 assert(s->d1->handshake_read_seq <= frag->msg_header.seq);
393
394 return s->d1->handshake_read_seq == frag->msg_header.seq &&
395 frag->reassembly == NULL;
396}
397
398/* dtls1_discard_fragment_body discards a handshake fragment body of length
399 * |frag_len|. It returns one on success and zero on error.
400 *
401 * TODO(davidben): This function will go away when ssl_read_bytes is gone from
402 * the DTLS side. */
403static int dtls1_discard_fragment_body(SSL *s, size_t frag_len) {
404 uint8_t discard[256];
405 while (frag_len > 0) {
406 size_t chunk = frag_len < sizeof(discard) ? frag_len : sizeof(discard);
David Benjamina6022772015-05-30 16:22:10 -0400407 int ret = dtls1_read_bytes(s, SSL3_RT_HANDSHAKE, discard, chunk, 0);
David Benjamin75381222015-03-02 19:30:30 -0500408 if (ret != chunk) {
409 return 0;
410 }
411 frag_len -= chunk;
412 }
413 return 1;
414}
415
416/* dtls1_get_buffered_message returns the buffered message corresponding to
417 * |msg_hdr|. If none exists, it creates a new one and inserts it in the
418 * queue. Otherwise, it checks |msg_hdr| is consistent with the existing one. It
419 * returns NULL on failure. The caller does not take ownership of the result. */
420static hm_fragment *dtls1_get_buffered_message(
421 SSL *s, const struct hm_header_st *msg_hdr) {
422 uint8_t seq64be[8];
423 memset(seq64be, 0, sizeof(seq64be));
424 seq64be[6] = (uint8_t)(msg_hdr->seq >> 8);
425 seq64be[7] = (uint8_t)msg_hdr->seq;
426 pitem *item = pqueue_find(s->d1->buffered_messages, seq64be);
427
428 hm_fragment *frag;
429 if (item == NULL) {
430 /* This is the first fragment from this message. */
431 frag = dtls1_hm_fragment_new(msg_hdr->msg_len,
432 1 /* reassembly buffer needed */);
433 if (frag == NULL) {
434 return NULL;
435 }
436 memcpy(&frag->msg_header, msg_hdr, sizeof(*msg_hdr));
437 item = pitem_new(seq64be, frag);
438 if (item == NULL) {
439 dtls1_hm_fragment_free(frag);
440 return NULL;
441 }
442 item = pqueue_insert(s->d1->buffered_messages, item);
443 /* |pqueue_insert| fails iff a duplicate item is inserted, but |item| cannot
444 * be a duplicate. */
445 assert(item != NULL);
446 } else {
447 frag = item->data;
448 assert(frag->msg_header.seq == msg_hdr->seq);
449 if (frag->msg_header.type != msg_hdr->type ||
450 frag->msg_header.msg_len != msg_hdr->msg_len) {
451 /* The new fragment must be compatible with the previous fragments from
452 * this message. */
David Benjamin3570d732015-06-29 00:28:17 -0400453 OPENSSL_PUT_ERROR(SSL, SSL_R_FRAGMENT_MISMATCH);
David Benjamin75381222015-03-02 19:30:30 -0500454 ssl3_send_alert(s, SSL3_AL_FATAL, SSL_AD_ILLEGAL_PARAMETER);
455 return NULL;
456 }
457 }
458 return frag;
459}
460
461/* dtls1_max_handshake_message_len returns the maximum number of bytes
462 * permitted in a DTLS handshake message for |s|. The minimum is 16KB, but may
463 * be greater if the maximum certificate list size requires it. */
464static size_t dtls1_max_handshake_message_len(const SSL *s) {
465 size_t max_len = DTLS1_HM_HEADER_LENGTH + SSL3_RT_MAX_ENCRYPTED_LENGTH;
David Benjamin1d0a1942015-04-26 15:35:35 -0400466 if (max_len < s->max_cert_list) {
467 return s->max_cert_list;
David Benjamin75381222015-03-02 19:30:30 -0500468 }
469 return max_len;
470}
471
472/* dtls1_process_fragment reads a handshake fragment and processes it. It
473 * returns one if a fragment was successfully processed and 0 or -1 on error. */
474static int dtls1_process_fragment(SSL *s) {
David Benjamin11fc66a2015-06-16 11:40:24 -0400475 /* Read handshake message header. */
David Benjamin75381222015-03-02 19:30:30 -0500476 uint8_t header[DTLS1_HM_HEADER_LENGTH];
David Benjamina6022772015-05-30 16:22:10 -0400477 int ret = dtls1_read_bytes(s, SSL3_RT_HANDSHAKE, header,
478 DTLS1_HM_HEADER_LENGTH, 0);
David Benjamin75381222015-03-02 19:30:30 -0500479 if (ret <= 0) {
David Benjamin75381222015-03-02 19:30:30 -0500480 return ret;
481 }
482 if (ret != DTLS1_HM_HEADER_LENGTH) {
David Benjamin3570d732015-06-29 00:28:17 -0400483 OPENSSL_PUT_ERROR(SSL, SSL_R_UNEXPECTED_MESSAGE);
David Benjamin75381222015-03-02 19:30:30 -0500484 ssl3_send_alert(s, SSL3_AL_FATAL, SSL_AD_UNEXPECTED_MESSAGE);
485 return -1;
486 }
487
488 /* Parse the message fragment header. */
489 struct hm_header_st msg_hdr;
490 dtls1_get_message_header(header, &msg_hdr);
491
David Benjamin11fc66a2015-06-16 11:40:24 -0400492 /* TODO(davidben): dtls1_read_bytes is the wrong abstraction for DTLS. There
493 * should be no need to reach into |s->s3->rrec.length|. */
David Benjamin75381222015-03-02 19:30:30 -0500494 const size_t frag_off = msg_hdr.frag_off;
495 const size_t frag_len = msg_hdr.frag_len;
496 const size_t msg_len = msg_hdr.msg_len;
497 if (frag_off > msg_len || frag_off + frag_len < frag_off ||
498 frag_off + frag_len > msg_len ||
David Benjamin11fc66a2015-06-16 11:40:24 -0400499 msg_len > dtls1_max_handshake_message_len(s) ||
500 frag_len > s->s3->rrec.length) {
David Benjamin3570d732015-06-29 00:28:17 -0400501 OPENSSL_PUT_ERROR(SSL, SSL_R_EXCESSIVE_MESSAGE_SIZE);
David Benjamin75381222015-03-02 19:30:30 -0500502 ssl3_send_alert(s, SSL3_AL_FATAL, SSL_AD_ILLEGAL_PARAMETER);
503 return -1;
504 }
505
506 if (msg_hdr.seq < s->d1->handshake_read_seq ||
507 msg_hdr.seq > (unsigned)s->d1->handshake_read_seq +
508 kHandshakeBufferSize) {
509 /* Ignore fragments from the past, or ones too far in the future. */
510 if (!dtls1_discard_fragment_body(s, frag_len)) {
511 return -1;
512 }
513 return 1;
514 }
515
516 hm_fragment *frag = dtls1_get_buffered_message(s, &msg_hdr);
517 if (frag == NULL) {
518 return -1;
519 }
520 assert(frag->msg_header.msg_len == msg_len);
521
522 if (frag->reassembly == NULL) {
523 /* The message is already assembled. */
524 if (!dtls1_discard_fragment_body(s, frag_len)) {
525 return -1;
526 }
527 return 1;
528 }
529 assert(msg_len > 0);
530
531 /* Read the body of the fragment. */
David Benjamina6022772015-05-30 16:22:10 -0400532 ret = dtls1_read_bytes(s, SSL3_RT_HANDSHAKE, frag->fragment + frag_off,
533 frag_len, 0);
David Benjamin75381222015-03-02 19:30:30 -0500534 if (ret != frag_len) {
David Benjamin3570d732015-06-29 00:28:17 -0400535 OPENSSL_PUT_ERROR(SSL, ERR_R_INTERNAL_ERROR);
David Benjamin11fc66a2015-06-16 11:40:24 -0400536 ssl3_send_alert(s, SSL3_AL_FATAL, SSL_AD_INTERNAL_ERROR);
David Benjamin75381222015-03-02 19:30:30 -0500537 return -1;
538 }
David Benjaminee562b92015-03-02 20:52:52 -0500539 dtls1_hm_fragment_mark(frag, frag_off, frag_off + frag_len);
David Benjamin75381222015-03-02 19:30:30 -0500540
David Benjamin75381222015-03-02 19:30:30 -0500541 return 1;
542}
Adam Langley95c29f32014-06-20 12:00:00 -0700543
David Benjaminbcb2d912015-02-24 23:45:43 -0500544/* dtls1_get_message reads a handshake message of message type |msg_type| (any
545 * if |msg_type| == -1), maximum acceptable body length |max|. Read an entire
546 * handshake message. Handshake messages arrive in fragments. */
547long dtls1_get_message(SSL *s, int st1, int stn, int msg_type, long max,
David Benjamin5ca39fb2015-03-01 23:57:54 -0500548 enum ssl_hash_message_t hash_message, int *ok) {
David Benjamin75381222015-03-02 19:30:30 -0500549 pitem *item = NULL;
550 hm_fragment *frag = NULL;
551 int al;
Adam Langley95c29f32014-06-20 12:00:00 -0700552
Adam Langley71d8a082014-12-13 16:28:18 -0800553 /* s3->tmp is used to store messages that are unexpected, caused
554 * by the absence of an optional handshake message */
555 if (s->s3->tmp.reuse_message) {
David Benjamin5ca39fb2015-03-01 23:57:54 -0500556 /* A ssl_dont_hash_message call cannot be combined with reuse_message; the
557 * ssl_dont_hash_message would have to have been applied to the previous
558 * call. */
559 assert(hash_message == ssl_hash_message);
Adam Langley71d8a082014-12-13 16:28:18 -0800560 s->s3->tmp.reuse_message = 0;
David Benjaminbcb2d912015-02-24 23:45:43 -0500561 if (msg_type >= 0 && s->s3->tmp.message_type != msg_type) {
Adam Langley71d8a082014-12-13 16:28:18 -0800562 al = SSL_AD_UNEXPECTED_MESSAGE;
David Benjamin3570d732015-06-29 00:28:17 -0400563 OPENSSL_PUT_ERROR(SSL, SSL_R_UNEXPECTED_MESSAGE);
Adam Langley71d8a082014-12-13 16:28:18 -0800564 goto f_err;
565 }
566 *ok = 1;
567 s->init_msg = (uint8_t *)s->init_buf->data + DTLS1_HM_HEADER_LENGTH;
568 s->init_num = (int)s->s3->tmp.message_size;
569 return s->init_num;
570 }
Adam Langley95c29f32014-06-20 12:00:00 -0700571
David Benjamin75381222015-03-02 19:30:30 -0500572 /* Process fragments until one is found. */
573 while (!dtls1_is_next_message_complete(s)) {
574 int ret = dtls1_process_fragment(s);
575 if (ret <= 0) {
576 *ok = 0;
577 return ret;
578 }
Adam Langley71d8a082014-12-13 16:28:18 -0800579 }
Adam Langley95c29f32014-06-20 12:00:00 -0700580
David Benjamin75381222015-03-02 19:30:30 -0500581 /* Read out the next complete handshake message. */
582 item = pqueue_pop(s->d1->buffered_messages);
583 assert(item != NULL);
584 frag = (hm_fragment *)item->data;
585 assert(s->d1->handshake_read_seq == frag->msg_header.seq);
586 assert(frag->reassembly == NULL);
587
David Benjaminbf0df922015-03-10 00:02:26 -0400588 if (frag->msg_header.msg_len > (size_t)max) {
David Benjamin3570d732015-06-29 00:28:17 -0400589 OPENSSL_PUT_ERROR(SSL, SSL_R_EXCESSIVE_MESSAGE_SIZE);
David Benjamin75381222015-03-02 19:30:30 -0500590 goto err;
591 }
592
David Benjamina8653202015-06-28 01:26:10 -0400593 /* Reconstruct the assembled message. */
594 size_t len;
David Benjamin75381222015-03-02 19:30:30 -0500595 CBB cbb;
David Benjamina8653202015-06-28 01:26:10 -0400596 CBB_zero(&cbb);
David Benjamin75381222015-03-02 19:30:30 -0500597 if (!BUF_MEM_grow(s->init_buf,
598 (size_t)frag->msg_header.msg_len +
599 DTLS1_HM_HEADER_LENGTH) ||
David Benjamina8653202015-06-28 01:26:10 -0400600 !CBB_init_fixed(&cbb, (uint8_t *)s->init_buf->data, s->init_buf->max) ||
601 !CBB_add_u8(&cbb, frag->msg_header.type) ||
David Benjamin75381222015-03-02 19:30:30 -0500602 !CBB_add_u24(&cbb, frag->msg_header.msg_len) ||
603 !CBB_add_u16(&cbb, frag->msg_header.seq) ||
604 !CBB_add_u24(&cbb, 0 /* frag_off */) ||
605 !CBB_add_u24(&cbb, frag->msg_header.msg_len) ||
606 !CBB_add_bytes(&cbb, frag->fragment, frag->msg_header.msg_len) ||
607 !CBB_finish(&cbb, NULL, &len)) {
608 CBB_cleanup(&cbb);
David Benjamin3570d732015-06-29 00:28:17 -0400609 OPENSSL_PUT_ERROR(SSL, ERR_R_MALLOC_FAILURE);
David Benjamin75381222015-03-02 19:30:30 -0500610 goto err;
611 }
612 assert(len == (size_t)frag->msg_header.msg_len + DTLS1_HM_HEADER_LENGTH);
613
614 s->d1->handshake_read_seq++;
615
616 /* TODO(davidben): This function has a lot of implicit outputs. Simplify the
617 * |ssl_get_message| API. */
618 s->s3->tmp.message_type = frag->msg_header.type;
619 s->s3->tmp.message_size = frag->msg_header.msg_len;
620 s->init_msg = (uint8_t *)s->init_buf->data + DTLS1_HM_HEADER_LENGTH;
621 s->init_num = frag->msg_header.msg_len;
622
623 if (msg_type >= 0 && s->s3->tmp.message_type != msg_type) {
David Benjaminbcb2d912015-02-24 23:45:43 -0500624 al = SSL_AD_UNEXPECTED_MESSAGE;
David Benjamin3570d732015-06-29 00:28:17 -0400625 OPENSSL_PUT_ERROR(SSL, SSL_R_UNEXPECTED_MESSAGE);
David Benjaminbcb2d912015-02-24 23:45:43 -0500626 goto f_err;
627 }
David Benjamin5ca39fb2015-03-01 23:57:54 -0500628 if (hash_message == ssl_hash_message && !ssl3_hash_current_message(s)) {
David Benjaminfbdfefb2015-02-16 19:33:53 -0500629 goto err;
Adam Langley71d8a082014-12-13 16:28:18 -0800630 }
631 if (s->msg_callback) {
David Benjamin75381222015-03-02 19:30:30 -0500632 s->msg_callback(0, s->version, SSL3_RT_HANDSHAKE, s->init_buf->data,
633 s->init_num + DTLS1_HM_HEADER_LENGTH, s,
Adam Langley71d8a082014-12-13 16:28:18 -0800634 s->msg_callback_arg);
635 }
Adam Langley95c29f32014-06-20 12:00:00 -0700636
David Benjamin75381222015-03-02 19:30:30 -0500637 pitem_free(item);
638 dtls1_hm_fragment_free(frag);
Adam Langley95c29f32014-06-20 12:00:00 -0700639
David Benjamin75381222015-03-02 19:30:30 -0500640 s->state = stn;
641 *ok = 1;
Adam Langley71d8a082014-12-13 16:28:18 -0800642 return s->init_num;
Adam Langley95c29f32014-06-20 12:00:00 -0700643
644f_err:
Adam Langley71d8a082014-12-13 16:28:18 -0800645 ssl3_send_alert(s, SSL3_AL_FATAL, al);
David Benjaminfbdfefb2015-02-16 19:33:53 -0500646err:
David Benjamin2755a3e2015-04-22 16:17:58 -0400647 pitem_free(item);
648 dtls1_hm_fragment_free(frag);
Adam Langley71d8a082014-12-13 16:28:18 -0800649 *ok = 0;
Adam Langley71d8a082014-12-13 16:28:18 -0800650 return -1;
651}
Adam Langley95c29f32014-06-20 12:00:00 -0700652
653/* for these 2 messages, we need to
654 * ssl->enc_read_ctx re-init
655 * ssl->s3->read_sequence zero
656 * ssl->s3->read_mac_secret re-init
657 * ssl->session->read_sym_enc assign
658 * ssl->session->read_compression assign
Adam Langley71d8a082014-12-13 16:28:18 -0800659 * ssl->session->read_hash assign */
660int dtls1_send_change_cipher_spec(SSL *s, int a, int b) {
661 uint8_t *p;
Adam Langley95c29f32014-06-20 12:00:00 -0700662
Adam Langley71d8a082014-12-13 16:28:18 -0800663 if (s->state == a) {
664 p = (uint8_t *)s->init_buf->data;
665 *p++ = SSL3_MT_CCS;
666 s->d1->handshake_write_seq = s->d1->next_handshake_write_seq;
667 s->init_num = DTLS1_CCS_HEADER_LENGTH;
Adam Langley95c29f32014-06-20 12:00:00 -0700668
Adam Langley71d8a082014-12-13 16:28:18 -0800669 s->init_off = 0;
Adam Langley95c29f32014-06-20 12:00:00 -0700670
David Benjamin16d031a2014-12-14 18:52:44 -0500671 dtls1_set_message_header(s, SSL3_MT_CCS, 0, s->d1->handshake_write_seq, 0,
672 0);
Adam Langley95c29f32014-06-20 12:00:00 -0700673
Adam Langley71d8a082014-12-13 16:28:18 -0800674 /* buffer the message to handle re-xmits */
675 dtls1_buffer_message(s, 1);
Adam Langley95c29f32014-06-20 12:00:00 -0700676
Adam Langley71d8a082014-12-13 16:28:18 -0800677 s->state = b;
678 }
Adam Langley95c29f32014-06-20 12:00:00 -0700679
Adam Langley71d8a082014-12-13 16:28:18 -0800680 /* SSL3_ST_CW_CHANGE_B */
David Benjamin3e3090d2015-04-05 12:48:30 -0400681 return dtls1_do_write(s, SSL3_RT_CHANGE_CIPHER_SPEC, dtls1_use_current_epoch);
Adam Langley71d8a082014-12-13 16:28:18 -0800682}
Adam Langley95c29f32014-06-20 12:00:00 -0700683
Adam Langley71d8a082014-12-13 16:28:18 -0800684int dtls1_read_failed(SSL *s, int code) {
685 if (code > 0) {
Adam Langleyd3459fb2015-02-13 14:56:28 -0800686 assert(0);
Adam Langley71d8a082014-12-13 16:28:18 -0800687 return 1;
688 }
Adam Langley95c29f32014-06-20 12:00:00 -0700689
Adam Langley71d8a082014-12-13 16:28:18 -0800690 if (!dtls1_is_timer_expired(s)) {
691 /* not a timeout, none of our business, let higher layers handle this. In
692 * fact, it's probably an error */
693 return code;
694 }
Adam Langley95c29f32014-06-20 12:00:00 -0700695
Adam Langley71d8a082014-12-13 16:28:18 -0800696 if (!SSL_in_init(s)) {
697 /* done, no need to send a retransmit */
698 BIO_set_flags(SSL_get_rbio(s), BIO_FLAGS_READ);
699 return code;
700 }
Adam Langley95c29f32014-06-20 12:00:00 -0700701
David Benjamin8c249802015-05-05 09:44:18 -0400702 return DTLSv1_handle_timeout(s);
Adam Langley71d8a082014-12-13 16:28:18 -0800703}
Adam Langley95c29f32014-06-20 12:00:00 -0700704
Adam Langley71d8a082014-12-13 16:28:18 -0800705int dtls1_get_queue_priority(unsigned short seq, int is_ccs) {
706 /* The index of the retransmission queue actually is the message sequence
707 * number, since the queue only contains messages of a single handshake.
708 * However, the ChangeCipherSpec has no message sequence number and so using
709 * only the sequence will result in the CCS and Finished having the same
710 * index. To prevent this, the sequence number is multiplied by 2. In case of
711 * a CCS 1 is subtracted. This does not only differ CSS and Finished, it also
712 * maintains the order of the index (important for priority queues) and fits
713 * in the unsigned short variable. */
714 return seq * 2 - is_ccs;
715}
Adam Langley95c29f32014-06-20 12:00:00 -0700716
Adam Langleybcc4e232015-02-19 15:51:58 -0800717static int dtls1_retransmit_message(SSL *s, hm_fragment *frag) {
Adam Langley71d8a082014-12-13 16:28:18 -0800718 int ret;
719 /* XDTLS: for now assuming that read/writes are blocking */
Adam Langley71d8a082014-12-13 16:28:18 -0800720 unsigned long header_length;
Adam Langley95c29f32014-06-20 12:00:00 -0700721
Adam Langley71d8a082014-12-13 16:28:18 -0800722 /* assert(s->init_num == 0);
723 assert(s->init_off == 0); */
Adam Langley95c29f32014-06-20 12:00:00 -0700724
Adam Langley71d8a082014-12-13 16:28:18 -0800725 if (frag->msg_header.is_ccs) {
726 header_length = DTLS1_CCS_HEADER_LENGTH;
727 } else {
728 header_length = DTLS1_HM_HEADER_LENGTH;
729 }
Adam Langley95c29f32014-06-20 12:00:00 -0700730
Adam Langley71d8a082014-12-13 16:28:18 -0800731 memcpy(s->init_buf->data, frag->fragment,
732 frag->msg_header.msg_len + header_length);
733 s->init_num = frag->msg_header.msg_len + header_length;
Adam Langley95c29f32014-06-20 12:00:00 -0700734
David Benjamin16d031a2014-12-14 18:52:44 -0500735 dtls1_set_message_header(s, frag->msg_header.type,
736 frag->msg_header.msg_len, frag->msg_header.seq,
737 0, frag->msg_header.frag_len);
Adam Langley95c29f32014-06-20 12:00:00 -0700738
David Benjaminafbc63f2015-02-01 02:33:59 -0500739 /* DTLS renegotiation is unsupported, so only epochs 0 (NULL cipher) and 1
740 * (negotiated cipher) exist. */
David Benjamin3e3090d2015-04-05 12:48:30 -0400741 assert(s->d1->w_epoch == 0 || s->d1->w_epoch == 1);
742 assert(frag->msg_header.epoch <= s->d1->w_epoch);
743 enum dtls1_use_epoch_t use_epoch = dtls1_use_current_epoch;
744 if (s->d1->w_epoch == 1 && frag->msg_header.epoch == 0) {
745 use_epoch = dtls1_use_previous_epoch;
Adam Langley71d8a082014-12-13 16:28:18 -0800746 }
747
748 ret = dtls1_do_write(s, frag->msg_header.is_ccs ? SSL3_RT_CHANGE_CIPHER_SPEC
David Benjamin3e3090d2015-04-05 12:48:30 -0400749 : SSL3_RT_HANDSHAKE,
750 use_epoch);
Adam Langley71d8a082014-12-13 16:28:18 -0800751
Adam Langley71d8a082014-12-13 16:28:18 -0800752 (void)BIO_flush(SSL_get_wbio(s));
753 return ret;
754}
Adam Langley95c29f32014-06-20 12:00:00 -0700755
Adam Langleybcc4e232015-02-19 15:51:58 -0800756
757int dtls1_retransmit_buffered_messages(SSL *s) {
758 pqueue sent = s->d1->sent_messages;
759 piterator iter = pqueue_iterator(sent);
760 pitem *item;
761
762 for (item = pqueue_next(&iter); item != NULL; item = pqueue_next(&iter)) {
763 hm_fragment *frag = (hm_fragment *)item->data;
764 if (dtls1_retransmit_message(s, frag) <= 0) {
765 return -1;
766 }
767 }
768
769 return 1;
770}
771
772int dtls1_buffer_message(SSL *s, int is_ccs) {
773 pitem *item;
774 hm_fragment *frag;
775 uint8_t seq64be[8];
776
777 /* this function is called immediately after a message has
778 * been serialized */
779 assert(s->init_off == 0);
780
781 frag = dtls1_hm_fragment_new(s->init_num, 0);
782 if (!frag) {
783 return 0;
784 }
785
786 memcpy(frag->fragment, s->init_buf->data, s->init_num);
787
788 if (is_ccs) {
789 assert(s->d1->w_msg_hdr.msg_len + DTLS1_CCS_HEADER_LENGTH ==
790 (unsigned int)s->init_num);
791 } else {
792 assert(s->d1->w_msg_hdr.msg_len + DTLS1_HM_HEADER_LENGTH ==
793 (unsigned int)s->init_num);
794 }
795
796 frag->msg_header.msg_len = s->d1->w_msg_hdr.msg_len;
797 frag->msg_header.seq = s->d1->w_msg_hdr.seq;
798 frag->msg_header.type = s->d1->w_msg_hdr.type;
799 frag->msg_header.frag_off = 0;
800 frag->msg_header.frag_len = s->d1->w_msg_hdr.msg_len;
801 frag->msg_header.is_ccs = is_ccs;
802 frag->msg_header.epoch = s->d1->w_epoch;
803
804 memset(seq64be, 0, sizeof(seq64be));
805 seq64be[6] = (uint8_t)(
806 dtls1_get_queue_priority(frag->msg_header.seq, frag->msg_header.is_ccs) >>
807 8);
808 seq64be[7] = (uint8_t)(
809 dtls1_get_queue_priority(frag->msg_header.seq, frag->msg_header.is_ccs));
810
811 item = pitem_new(seq64be, frag);
812 if (item == NULL) {
813 dtls1_hm_fragment_free(frag);
814 return 0;
815 }
816
817 pqueue_insert(s->d1->sent_messages, item);
818 return 1;
819}
820
Adam Langley95c29f32014-06-20 12:00:00 -0700821/* call this function when the buffered messages are no longer needed */
Adam Langley71d8a082014-12-13 16:28:18 -0800822void dtls1_clear_record_buffer(SSL *s) {
823 pitem *item;
Adam Langley95c29f32014-06-20 12:00:00 -0700824
Adam Langley71d8a082014-12-13 16:28:18 -0800825 for (item = pqueue_pop(s->d1->sent_messages); item != NULL;
826 item = pqueue_pop(s->d1->sent_messages)) {
827 dtls1_hm_fragment_free((hm_fragment *)item->data);
828 pitem_free(item);
829 }
830}
Adam Langley95c29f32014-06-20 12:00:00 -0700831
Adam Langley95c29f32014-06-20 12:00:00 -0700832/* don't actually do the writing, wait till the MTU has been retrieved */
David Benjamin16d031a2014-12-14 18:52:44 -0500833void dtls1_set_message_header(SSL *s, uint8_t mt, unsigned long len,
834 unsigned short seq_num, unsigned long frag_off,
835 unsigned long frag_len) {
Adam Langley71d8a082014-12-13 16:28:18 -0800836 struct hm_header_st *msg_hdr = &s->d1->w_msg_hdr;
Adam Langley95c29f32014-06-20 12:00:00 -0700837
Adam Langley71d8a082014-12-13 16:28:18 -0800838 msg_hdr->type = mt;
839 msg_hdr->msg_len = len;
840 msg_hdr->seq = seq_num;
841 msg_hdr->frag_off = frag_off;
842 msg_hdr->frag_len = frag_len;
843}
Adam Langley95c29f32014-06-20 12:00:00 -0700844
Adam Langley71d8a082014-12-13 16:28:18 -0800845static void dtls1_fix_message_header(SSL *s, unsigned long frag_off,
846 unsigned long frag_len) {
847 struct hm_header_st *msg_hdr = &s->d1->w_msg_hdr;
Adam Langley95c29f32014-06-20 12:00:00 -0700848
Adam Langley71d8a082014-12-13 16:28:18 -0800849 msg_hdr->frag_off = frag_off;
850 msg_hdr->frag_len = frag_len;
851}
Adam Langley95c29f32014-06-20 12:00:00 -0700852
Adam Langley71d8a082014-12-13 16:28:18 -0800853static uint8_t *dtls1_write_message_header(SSL *s, uint8_t *p) {
854 struct hm_header_st *msg_hdr = &s->d1->w_msg_hdr;
Adam Langley95c29f32014-06-20 12:00:00 -0700855
Adam Langley71d8a082014-12-13 16:28:18 -0800856 *p++ = msg_hdr->type;
857 l2n3(msg_hdr->msg_len, p);
Adam Langley95c29f32014-06-20 12:00:00 -0700858
Adam Langley71d8a082014-12-13 16:28:18 -0800859 s2n(msg_hdr->seq, p);
860 l2n3(msg_hdr->frag_off, p);
861 l2n3(msg_hdr->frag_len, p);
Adam Langley95c29f32014-06-20 12:00:00 -0700862
Adam Langley71d8a082014-12-13 16:28:18 -0800863 return p;
864}
Adam Langley95c29f32014-06-20 12:00:00 -0700865
Adam Langley71d8a082014-12-13 16:28:18 -0800866unsigned int dtls1_min_mtu(void) {
David Benjamina18b6712015-01-11 19:31:22 -0500867 return kMinMTU;
Adam Langley71d8a082014-12-13 16:28:18 -0800868}
Adam Langley95c29f32014-06-20 12:00:00 -0700869
Adam Langley71d8a082014-12-13 16:28:18 -0800870void dtls1_get_message_header(uint8_t *data,
871 struct hm_header_st *msg_hdr) {
872 memset(msg_hdr, 0x00, sizeof(struct hm_header_st));
873 msg_hdr->type = *(data++);
874 n2l3(data, msg_hdr->msg_len);
Adam Langley95c29f32014-06-20 12:00:00 -0700875
Adam Langley71d8a082014-12-13 16:28:18 -0800876 n2s(data, msg_hdr->seq);
877 n2l3(data, msg_hdr->frag_off);
878 n2l3(data, msg_hdr->frag_len);
879}