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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
David Benjamin9e4e01e2015-09-15 01:48:04 -0400114#include <openssl/ssl.h>
115
Adam Langley95c29f32014-06-20 12:00:00 -0700116#include <assert.h>
117#include <limits.h>
Adam Langley95c29f32014-06-20 12:00:00 -0700118#include <string.h>
119
120#include <openssl/buf.h>
121#include <openssl/err.h>
122#include <openssl/evp.h>
123#include <openssl/mem.h>
Adam Langley95c29f32014-06-20 12:00:00 -0700124#include <openssl/rand.h>
Adam Langley95c29f32014-06-20 12:00:00 -0700125
David Benjamin17cf2cb2016-12-13 01:07:13 -0500126#include "../crypto/internal.h"
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 Benjamin86e95b82017-07-18 16:34:25 -0400130namespace bssl {
131
David Benjaminc11ea9422017-08-29 16:33:21 -0400132// TODO(davidben): 28 comes from the size of IP + UDP header. Is this reasonable
133// for these values? Notably, why is kMinMTU a function of the transport
134// protocol's overhead rather than, say, what's needed to hold a minimally-sized
135// handshake fragment plus protocol overhead.
Adam Langley95c29f32014-06-20 12:00:00 -0700136
David Benjaminc11ea9422017-08-29 16:33:21 -0400137// kMinMTU is the minimum acceptable MTU value.
David Benjamina18b6712015-01-11 19:31:22 -0500138static const unsigned int kMinMTU = 256 - 28;
139
David Benjaminc11ea9422017-08-29 16:33:21 -0400140// kDefaultMTU is the default MTU value to use if neither the user nor
141// the underlying BIO supplies one.
David Benjamina18b6712015-01-11 19:31:22 -0500142static const unsigned int kDefaultMTU = 1500 - 28;
143
David Benjamin9d632f42016-06-23 17:57:19 -0400144
David Benjaminc11ea9422017-08-29 16:33:21 -0400145// Receiving handshake messages.
David Benjamin9d632f42016-06-23 17:57:19 -0400146
David Benjaminec847ce2016-06-17 19:30:47 -0400147static void dtls1_hm_fragment_free(hm_fragment *frag) {
148 if (frag == NULL) {
149 return;
150 }
David Benjamin528bd262016-07-08 09:34:05 -0700151 OPENSSL_free(frag->data);
David Benjaminec847ce2016-06-17 19:30:47 -0400152 OPENSSL_free(frag->reassembly);
153 OPENSSL_free(frag);
154}
155
David Benjamin528bd262016-07-08 09:34:05 -0700156static hm_fragment *dtls1_hm_fragment_new(const struct hm_header_st *msg_hdr) {
David Benjamin1386aad2017-07-19 23:57:40 -0400157 ScopedCBB cbb;
David Benjamine8703a32017-07-09 16:17:55 -0400158 hm_fragment *frag = (hm_fragment *)OPENSSL_malloc(sizeof(hm_fragment));
Adam Langley71d8a082014-12-13 16:28:18 -0800159 if (frag == NULL) {
David Benjamin3570d732015-06-29 00:28:17 -0400160 OPENSSL_PUT_ERROR(SSL, ERR_R_MALLOC_FAILURE);
Adam Langley71d8a082014-12-13 16:28:18 -0800161 return NULL;
162 }
David Benjamin17cf2cb2016-12-13 01:07:13 -0500163 OPENSSL_memset(frag, 0, sizeof(hm_fragment));
David Benjamin528bd262016-07-08 09:34:05 -0700164 frag->type = msg_hdr->type;
165 frag->seq = msg_hdr->seq;
166 frag->msg_len = msg_hdr->msg_len;
Adam Langley95c29f32014-06-20 12:00:00 -0700167
David Benjaminc11ea9422017-08-29 16:33:21 -0400168 // Allocate space for the reassembled message and fill in the header.
David Benjamine8703a32017-07-09 16:17:55 -0400169 frag->data =
170 (uint8_t *)OPENSSL_malloc(DTLS1_HM_HEADER_LENGTH + msg_hdr->msg_len);
David Benjamin528bd262016-07-08 09:34:05 -0700171 if (frag->data == NULL) {
172 OPENSSL_PUT_ERROR(SSL, ERR_R_MALLOC_FAILURE);
173 goto err;
174 }
Adam Langley95c29f32014-06-20 12:00:00 -0700175
David Benjamin1386aad2017-07-19 23:57:40 -0400176 if (!CBB_init_fixed(cbb.get(), frag->data, DTLS1_HM_HEADER_LENGTH) ||
177 !CBB_add_u8(cbb.get(), msg_hdr->type) ||
178 !CBB_add_u24(cbb.get(), msg_hdr->msg_len) ||
179 !CBB_add_u16(cbb.get(), msg_hdr->seq) ||
180 !CBB_add_u24(cbb.get(), 0 /* frag_off */) ||
181 !CBB_add_u24(cbb.get(), msg_hdr->msg_len) ||
182 !CBB_finish(cbb.get(), NULL, NULL)) {
David Benjamin528bd262016-07-08 09:34:05 -0700183 OPENSSL_PUT_ERROR(SSL, ERR_R_MALLOC_FAILURE);
184 goto err;
185 }
186
David Benjaminc11ea9422017-08-29 16:33:21 -0400187 // If the handshake message is empty, |frag->reassembly| is NULL.
David Benjamin528bd262016-07-08 09:34:05 -0700188 if (msg_hdr->msg_len > 0) {
David Benjaminc11ea9422017-08-29 16:33:21 -0400189 // Initialize reassembly bitmask.
David Benjamin528bd262016-07-08 09:34:05 -0700190 if (msg_hdr->msg_len + 7 < msg_hdr->msg_len) {
David Benjamin29a83c52016-06-17 19:12:54 -0400191 OPENSSL_PUT_ERROR(SSL, ERR_R_OVERFLOW);
192 goto err;
Adam Langley71d8a082014-12-13 16:28:18 -0800193 }
David Benjamin528bd262016-07-08 09:34:05 -0700194 size_t bitmask_len = (msg_hdr->msg_len + 7) / 8;
David Benjamine8703a32017-07-09 16:17:55 -0400195 frag->reassembly = (uint8_t *)OPENSSL_malloc(bitmask_len);
David Benjamin29a83c52016-06-17 19:12:54 -0400196 if (frag->reassembly == NULL) {
197 OPENSSL_PUT_ERROR(SSL, ERR_R_MALLOC_FAILURE);
198 goto err;
199 }
David Benjamin17cf2cb2016-12-13 01:07:13 -0500200 OPENSSL_memset(frag->reassembly, 0, bitmask_len);
Adam Langley71d8a082014-12-13 16:28:18 -0800201 }
Adam Langley95c29f32014-06-20 12:00:00 -0700202
Adam Langley71d8a082014-12-13 16:28:18 -0800203 return frag;
David Benjaminc99807d2015-09-12 18:21:35 -0400204
205err:
206 dtls1_hm_fragment_free(frag);
207 return NULL;
Adam Langley71d8a082014-12-13 16:28:18 -0800208}
Adam Langley95c29f32014-06-20 12:00:00 -0700209
David Benjaminc11ea9422017-08-29 16:33:21 -0400210// bit_range returns a |uint8_t| with bits |start|, inclusive, to |end|,
211// exclusive, set.
David Benjamindca125e2016-06-23 17:52:47 -0400212static uint8_t bit_range(size_t start, size_t end) {
David Benjaminee562b92015-03-02 20:52:52 -0500213 return (uint8_t)(~((1u << start) - 1) & ((1u << end) - 1));
214}
215
David Benjaminc11ea9422017-08-29 16:33:21 -0400216// dtls1_hm_fragment_mark marks bytes |start|, inclusive, to |end|, exclusive,
217// as received in |frag|. If |frag| becomes complete, it clears
218// |frag->reassembly|. The range must be within the bounds of |frag|'s message
219// and |frag->reassembly| must not be NULL.
David Benjaminee562b92015-03-02 20:52:52 -0500220static void dtls1_hm_fragment_mark(hm_fragment *frag, size_t start,
221 size_t end) {
David Benjamin528bd262016-07-08 09:34:05 -0700222 size_t msg_len = frag->msg_len;
David Benjaminee562b92015-03-02 20:52:52 -0500223
224 if (frag->reassembly == NULL || start > end || end > msg_len) {
225 assert(0);
226 return;
227 }
David Benjaminc11ea9422017-08-29 16:33:21 -0400228 // A zero-length message will never have a pending reassembly.
David Benjaminee562b92015-03-02 20:52:52 -0500229 assert(msg_len > 0);
230
David Benjamine51fb0f2017-09-07 11:51:46 -0400231 if (start == end) {
232 return;
233 }
234
David Benjaminee562b92015-03-02 20:52:52 -0500235 if ((start >> 3) == (end >> 3)) {
236 frag->reassembly[start >> 3] |= bit_range(start & 7, end & 7);
237 } else {
238 frag->reassembly[start >> 3] |= bit_range(start & 7, 8);
David Benjamin54091232016-09-05 12:47:25 -0400239 for (size_t i = (start >> 3) + 1; i < (end >> 3); i++) {
David Benjaminee562b92015-03-02 20:52:52 -0500240 frag->reassembly[i] = 0xff;
241 }
242 if ((end & 7) != 0) {
243 frag->reassembly[end >> 3] |= bit_range(0, end & 7);
244 }
245 }
246
David Benjaminc11ea9422017-08-29 16:33:21 -0400247 // Check if the fragment is complete.
David Benjamin54091232016-09-05 12:47:25 -0400248 for (size_t i = 0; i < (msg_len >> 3); i++) {
David Benjaminee562b92015-03-02 20:52:52 -0500249 if (frag->reassembly[i] != 0xff) {
250 return;
251 }
252 }
253 if ((msg_len & 7) != 0 &&
254 frag->reassembly[msg_len >> 3] != bit_range(0, msg_len & 7)) {
255 return;
256 }
257
258 OPENSSL_free(frag->reassembly);
259 frag->reassembly = NULL;
260}
261
David Benjaminc11ea9422017-08-29 16:33:21 -0400262// dtls1_is_current_message_complete returns one if the current handshake
263// message is complete and zero otherwise.
David Benjamin61672812016-07-14 23:10:43 -0400264static int dtls1_is_current_message_complete(const SSL *ssl) {
David Benjamin9d632f42016-06-23 17:57:19 -0400265 hm_fragment *frag = ssl->d1->incoming_messages[ssl->d1->handshake_read_seq %
266 SSL_MAX_HANDSHAKE_FLIGHT];
267 return frag != NULL && frag->reassembly == NULL;
268}
269
David Benjaminc11ea9422017-08-29 16:33:21 -0400270// dtls1_get_incoming_message returns the incoming message corresponding to
271// |msg_hdr|. If none exists, it creates a new one and inserts it in the
272// queue. Otherwise, it checks |msg_hdr| is consistent with the existing one. It
273// returns NULL on failure. The caller does not take ownership of the result.
David Benjamin9d632f42016-06-23 17:57:19 -0400274static hm_fragment *dtls1_get_incoming_message(
275 SSL *ssl, const struct hm_header_st *msg_hdr) {
276 if (msg_hdr->seq < ssl->d1->handshake_read_seq ||
277 msg_hdr->seq - ssl->d1->handshake_read_seq >= SSL_MAX_HANDSHAKE_FLIGHT) {
278 return NULL;
279 }
280
281 size_t idx = msg_hdr->seq % SSL_MAX_HANDSHAKE_FLIGHT;
282 hm_fragment *frag = ssl->d1->incoming_messages[idx];
283 if (frag != NULL) {
David Benjamin528bd262016-07-08 09:34:05 -0700284 assert(frag->seq == msg_hdr->seq);
David Benjaminc11ea9422017-08-29 16:33:21 -0400285 // The new fragment must be compatible with the previous fragments from this
286 // message.
David Benjamin528bd262016-07-08 09:34:05 -0700287 if (frag->type != msg_hdr->type ||
288 frag->msg_len != msg_hdr->msg_len) {
David Benjamin9d632f42016-06-23 17:57:19 -0400289 OPENSSL_PUT_ERROR(SSL, SSL_R_FRAGMENT_MISMATCH);
290 ssl3_send_alert(ssl, SSL3_AL_FATAL, SSL_AD_ILLEGAL_PARAMETER);
291 return NULL;
292 }
293 return frag;
294 }
295
David Benjaminc11ea9422017-08-29 16:33:21 -0400296 // This is the first fragment from this message.
David Benjamin528bd262016-07-08 09:34:05 -0700297 frag = dtls1_hm_fragment_new(msg_hdr);
David Benjamin9d632f42016-06-23 17:57:19 -0400298 if (frag == NULL) {
299 return NULL;
300 }
David Benjamin9d632f42016-06-23 17:57:19 -0400301 ssl->d1->incoming_messages[idx] = frag;
302 return frag;
303}
304
David Benjamin7934f082017-08-01 16:32:25 -0400305int dtls1_read_message(SSL *ssl) {
David Benjamin9d632f42016-06-23 17:57:19 -0400306 SSL3_RECORD *rr = &ssl->s3->rrec;
David Benjamin9d632f42016-06-23 17:57:19 -0400307 if (rr->length == 0) {
308 int ret = dtls1_get_record(ssl);
309 if (ret <= 0) {
310 return ret;
311 }
312 }
313
David Benjaminb0c761e2017-06-25 22:42:55 -0400314 switch (rr->type) {
315 case SSL3_RT_APPLICATION_DATA:
David Benjaminc11ea9422017-08-29 16:33:21 -0400316 // Unencrypted application data records are always illegal.
David Benjaminb0c761e2017-06-25 22:42:55 -0400317 if (ssl->s3->aead_read_ctx->is_null_cipher()) {
318 ssl3_send_alert(ssl, SSL3_AL_FATAL, SSL_AD_UNEXPECTED_MESSAGE);
319 OPENSSL_PUT_ERROR(SSL, SSL_R_UNEXPECTED_RECORD);
320 return -1;
321 }
David Benjamin9d632f42016-06-23 17:57:19 -0400322
David Benjaminc11ea9422017-08-29 16:33:21 -0400323 // Out-of-order application data may be received between ChangeCipherSpec
324 // and finished. Discard it.
David Benjaminb0c761e2017-06-25 22:42:55 -0400325 rr->length = 0;
326 ssl_read_buffer_discard(ssl);
327 return 1;
328
329 case SSL3_RT_CHANGE_CIPHER_SPEC:
David Benjaminc11ea9422017-08-29 16:33:21 -0400330 // We do not support renegotiation, so encrypted ChangeCipherSpec records
331 // are illegal.
David Benjaminb0c761e2017-06-25 22:42:55 -0400332 if (!ssl->s3->aead_read_ctx->is_null_cipher()) {
333 ssl3_send_alert(ssl, SSL3_AL_FATAL, SSL_AD_UNEXPECTED_MESSAGE);
334 OPENSSL_PUT_ERROR(SSL, SSL_R_UNEXPECTED_RECORD);
335 return -1;
336 }
337
338 if (rr->length != 1 || rr->data[0] != SSL3_MT_CCS) {
339 OPENSSL_PUT_ERROR(SSL, SSL_R_BAD_CHANGE_CIPHER_SPEC);
340 ssl3_send_alert(ssl, SSL3_AL_FATAL, SSL_AD_ILLEGAL_PARAMETER);
341 return -1;
342 }
343
David Benjaminc11ea9422017-08-29 16:33:21 -0400344 // Flag the ChangeCipherSpec for later.
David Benjaminb0c761e2017-06-25 22:42:55 -0400345 ssl->d1->has_change_cipher_spec = true;
346 ssl_do_msg_callback(ssl, 0 /* read */, SSL3_RT_CHANGE_CIPHER_SPEC,
347 rr->data, rr->length);
348
349 rr->length = 0;
350 ssl_read_buffer_discard(ssl);
351 return 1;
352
353 case SSL3_RT_HANDSHAKE:
David Benjaminc11ea9422017-08-29 16:33:21 -0400354 // Break out to main processing.
David Benjaminb0c761e2017-06-25 22:42:55 -0400355 break;
356
357 default:
358 ssl3_send_alert(ssl, SSL3_AL_FATAL, SSL_AD_UNEXPECTED_MESSAGE);
359 OPENSSL_PUT_ERROR(SSL, SSL_R_UNEXPECTED_RECORD);
360 return -1;
David Benjamin9d632f42016-06-23 17:57:19 -0400361 }
362
363 CBS cbs;
364 CBS_init(&cbs, rr->data, rr->length);
365
366 while (CBS_len(&cbs) > 0) {
David Benjaminc11ea9422017-08-29 16:33:21 -0400367 // Read a handshake fragment.
David Benjamin9d632f42016-06-23 17:57:19 -0400368 struct hm_header_st msg_hdr;
369 CBS body;
370 if (!dtls1_parse_fragment(&cbs, &msg_hdr, &body)) {
371 OPENSSL_PUT_ERROR(SSL, SSL_R_BAD_HANDSHAKE_RECORD);
372 ssl3_send_alert(ssl, SSL3_AL_FATAL, SSL_AD_DECODE_ERROR);
373 return -1;
374 }
375
376 const size_t frag_off = msg_hdr.frag_off;
377 const size_t frag_len = msg_hdr.frag_len;
378 const size_t msg_len = msg_hdr.msg_len;
379 if (frag_off > msg_len || frag_off + frag_len < frag_off ||
380 frag_off + frag_len > msg_len ||
381 msg_len > ssl_max_handshake_message_len(ssl)) {
382 OPENSSL_PUT_ERROR(SSL, SSL_R_EXCESSIVE_MESSAGE_SIZE);
383 ssl3_send_alert(ssl, SSL3_AL_FATAL, SSL_AD_ILLEGAL_PARAMETER);
384 return -1;
385 }
386
David Benjaminc11ea9422017-08-29 16:33:21 -0400387 // The encrypted epoch in DTLS has only one handshake message.
David Benjamin02edcd02016-07-27 17:40:37 -0400388 if (ssl->d1->r_epoch == 1 && msg_hdr.seq != ssl->d1->handshake_read_seq) {
389 OPENSSL_PUT_ERROR(SSL, SSL_R_UNEXPECTED_RECORD);
390 ssl3_send_alert(ssl, SSL3_AL_FATAL, SSL_AD_UNEXPECTED_MESSAGE);
391 return -1;
392 }
393
David Benjamin9d632f42016-06-23 17:57:19 -0400394 if (msg_hdr.seq < ssl->d1->handshake_read_seq ||
395 msg_hdr.seq >
396 (unsigned)ssl->d1->handshake_read_seq + SSL_MAX_HANDSHAKE_FLIGHT) {
David Benjaminc11ea9422017-08-29 16:33:21 -0400397 // Ignore fragments from the past, or ones too far in the future.
David Benjamin9d632f42016-06-23 17:57:19 -0400398 continue;
399 }
400
401 hm_fragment *frag = dtls1_get_incoming_message(ssl, &msg_hdr);
402 if (frag == NULL) {
403 return -1;
404 }
David Benjamin528bd262016-07-08 09:34:05 -0700405 assert(frag->msg_len == msg_len);
David Benjamin9d632f42016-06-23 17:57:19 -0400406
407 if (frag->reassembly == NULL) {
David Benjaminc11ea9422017-08-29 16:33:21 -0400408 // The message is already assembled.
David Benjamin9d632f42016-06-23 17:57:19 -0400409 continue;
410 }
411 assert(msg_len > 0);
412
David Benjaminc11ea9422017-08-29 16:33:21 -0400413 // Copy the body into the fragment.
David Benjamin1a999cf2017-01-03 10:30:35 -0500414 OPENSSL_memcpy(frag->data + DTLS1_HM_HEADER_LENGTH + frag_off,
415 CBS_data(&body), CBS_len(&body));
David Benjamin9d632f42016-06-23 17:57:19 -0400416 dtls1_hm_fragment_mark(frag, frag_off, frag_off + frag_len);
417 }
418
419 rr->length = 0;
420 ssl_read_buffer_discard(ssl);
421 return 1;
422}
423
David Benjamin7934f082017-08-01 16:32:25 -0400424bool dtls1_get_message(SSL *ssl, SSLMessage *out) {
425 if (!dtls1_is_current_message_complete(ssl)) {
426 return false;
David Benjamin9d632f42016-06-23 17:57:19 -0400427 }
428
David Benjamin528bd262016-07-08 09:34:05 -0700429 hm_fragment *frag = ssl->d1->incoming_messages[ssl->d1->handshake_read_seq %
430 SSL_MAX_HANDSHAKE_FLIGHT];
David Benjamin7934f082017-08-01 16:32:25 -0400431 out->type = frag->type;
432 CBS_init(&out->body, frag->data + DTLS1_HM_HEADER_LENGTH, frag->msg_len);
433 CBS_init(&out->raw, frag->data, DTLS1_HM_HEADER_LENGTH + frag->msg_len);
434 out->is_v2_hello = false;
435 if (!ssl->s3->has_message) {
David Benjamin78b8b992017-08-01 18:38:41 -0400436 ssl_do_msg_callback(ssl, 0 /* read */, SSL3_RT_HANDSHAKE, frag->data,
437 frag->msg_len + DTLS1_HM_HEADER_LENGTH);
David Benjamin046bc1f2017-08-31 15:06:42 -0400438 ssl->s3->has_message = true;
David Benjamin78b8b992017-08-01 18:38:41 -0400439 }
David Benjamin7934f082017-08-01 16:32:25 -0400440 return true;
David Benjamin9d632f42016-06-23 17:57:19 -0400441}
442
David Benjamin8f94c312017-08-01 17:35:55 -0400443void dtls1_next_message(SSL *ssl) {
David Benjamin7934f082017-08-01 16:32:25 -0400444 assert(ssl->s3->has_message);
David Benjamin4497e582016-07-27 17:51:49 -0400445 assert(dtls1_is_current_message_complete(ssl));
446 size_t index = ssl->d1->handshake_read_seq % SSL_MAX_HANDSHAKE_FLIGHT;
447 dtls1_hm_fragment_free(ssl->d1->incoming_messages[index]);
448 ssl->d1->incoming_messages[index] = NULL;
449 ssl->d1->handshake_read_seq++;
David Benjamin046bc1f2017-08-31 15:06:42 -0400450 ssl->s3->has_message = false;
David Benjaminc11ea9422017-08-29 16:33:21 -0400451 // If we previously sent a flight, mark it as having a reply, so
452 // |on_handshake_complete| can manage post-handshake retransmission.
David Benjamin302b8182017-08-22 14:47:22 -0700453 if (ssl->d1->outgoing_messages_complete) {
454 ssl->d1->flight_has_reply = true;
455 }
David Benjamin4497e582016-07-27 17:51:49 -0400456}
457
David Benjamin9d632f42016-06-23 17:57:19 -0400458void dtls_clear_incoming_messages(SSL *ssl) {
David Benjamin61672812016-07-14 23:10:43 -0400459 for (size_t i = 0; i < SSL_MAX_HANDSHAKE_FLIGHT; i++) {
David Benjamin9d632f42016-06-23 17:57:19 -0400460 dtls1_hm_fragment_free(ssl->d1->incoming_messages[i]);
461 ssl->d1->incoming_messages[i] = NULL;
462 }
463}
464
David Benjamin61672812016-07-14 23:10:43 -0400465int dtls_has_incoming_messages(const SSL *ssl) {
David Benjamin61672812016-07-14 23:10:43 -0400466 size_t current = ssl->d1->handshake_read_seq % SSL_MAX_HANDSHAKE_FLIGHT;
467 for (size_t i = 0; i < SSL_MAX_HANDSHAKE_FLIGHT; i++) {
David Benjaminc11ea9422017-08-29 16:33:21 -0400468 // Skip the current message.
David Benjamin7934f082017-08-01 16:32:25 -0400469 if (ssl->s3->has_message && i == current) {
David Benjamin4497e582016-07-27 17:51:49 -0400470 assert(dtls1_is_current_message_complete(ssl));
471 continue;
472 }
473 if (ssl->d1->incoming_messages[i] != NULL) {
David Benjamin61672812016-07-14 23:10:43 -0400474 return 1;
475 }
476 }
477 return 0;
478}
479
David Benjamin9d632f42016-06-23 17:57:19 -0400480int dtls1_parse_fragment(CBS *cbs, struct hm_header_st *out_hdr,
481 CBS *out_body) {
David Benjamin17cf2cb2016-12-13 01:07:13 -0500482 OPENSSL_memset(out_hdr, 0x00, sizeof(struct hm_header_st));
David Benjamin9d632f42016-06-23 17:57:19 -0400483
484 if (!CBS_get_u8(cbs, &out_hdr->type) ||
485 !CBS_get_u24(cbs, &out_hdr->msg_len) ||
486 !CBS_get_u16(cbs, &out_hdr->seq) ||
487 !CBS_get_u24(cbs, &out_hdr->frag_off) ||
488 !CBS_get_u24(cbs, &out_hdr->frag_len) ||
489 !CBS_get_bytes(cbs, out_body, out_hdr->frag_len)) {
490 return 0;
491 }
492
493 return 1;
494}
495
David Benjaminb0c761e2017-06-25 22:42:55 -0400496int dtls1_read_change_cipher_spec(SSL *ssl) {
David Benjaminc11ea9422017-08-29 16:33:21 -0400497 // Process handshake records until there is a ChangeCipherSpec.
David Benjaminb0c761e2017-06-25 22:42:55 -0400498 while (!ssl->d1->has_change_cipher_spec) {
David Benjamin7934f082017-08-01 16:32:25 -0400499 int ret = dtls1_read_message(ssl);
David Benjaminb0c761e2017-06-25 22:42:55 -0400500 if (ret <= 0) {
501 return ret;
502 }
503 }
504
505 ssl->d1->has_change_cipher_spec = false;
506 return 1;
507}
508
David Benjamin9d632f42016-06-23 17:57:19 -0400509
David Benjaminc11ea9422017-08-29 16:33:21 -0400510// Sending handshake messages.
David Benjamin9d632f42016-06-23 17:57:19 -0400511
David Benjamin75836432016-06-17 18:48:29 -0400512void dtls_clear_outgoing_messages(SSL *ssl) {
David Benjamin54091232016-09-05 12:47:25 -0400513 for (size_t i = 0; i < ssl->d1->outgoing_messages_len; i++) {
David Benjamin75836432016-06-17 18:48:29 -0400514 OPENSSL_free(ssl->d1->outgoing_messages[i].data);
515 ssl->d1->outgoing_messages[i].data = NULL;
516 }
517 ssl->d1->outgoing_messages_len = 0;
David Benjamin1a999cf2017-01-03 10:30:35 -0500518 ssl->d1->outgoing_written = 0;
519 ssl->d1->outgoing_offset = 0;
David Benjamin9bbdf582017-08-02 19:46:29 -0400520 ssl->d1->outgoing_messages_complete = false;
David Benjamin302b8182017-08-22 14:47:22 -0700521 ssl->d1->flight_has_reply = false;
David Benjamin75836432016-06-17 18:48:29 -0400522}
523
524int dtls1_init_message(SSL *ssl, CBB *cbb, CBB *body, uint8_t type) {
David Benjaminc11ea9422017-08-29 16:33:21 -0400525 // Pick a modest size hint to save most of the |realloc| calls.
David Benjamin75836432016-06-17 18:48:29 -0400526 if (!CBB_init(cbb, 64) ||
527 !CBB_add_u8(cbb, type) ||
528 !CBB_add_u24(cbb, 0 /* length (filled in later) */) ||
529 !CBB_add_u16(cbb, ssl->d1->handshake_write_seq) ||
530 !CBB_add_u24(cbb, 0 /* offset */) ||
531 !CBB_add_u24_length_prefixed(cbb, body)) {
532 return 0;
533 }
534
535 return 1;
536}
537
David Benjamin879efc32017-09-21 11:20:53 -0400538int dtls1_finish_message(SSL *ssl, CBB *cbb, Array<uint8_t> *out_msg) {
539 if (!CBBFinishArray(cbb, out_msg) ||
540 out_msg->size() < DTLS1_HM_HEADER_LENGTH) {
David Benjamin75836432016-06-17 18:48:29 -0400541 OPENSSL_PUT_ERROR(SSL, ERR_R_INTERNAL_ERROR);
David Benjamin75836432016-06-17 18:48:29 -0400542 return 0;
543 }
544
David Benjaminc11ea9422017-08-29 16:33:21 -0400545 // Fix up the header. Copy the fragment length into the total message
546 // length.
David Benjamin879efc32017-09-21 11:20:53 -0400547 OPENSSL_memcpy(out_msg->data() + 1,
548 out_msg->data() + DTLS1_HM_HEADER_LENGTH - 3, 3);
Steven Valdez5eead162016-11-11 22:23:25 -0500549 return 1;
550}
David Benjamin75836432016-06-17 18:48:29 -0400551
David Benjaminc11ea9422017-08-29 16:33:21 -0400552// add_outgoing adds a new handshake message or ChangeCipherSpec to the current
553// outgoing flight. It returns one on success and zero on error. In both cases,
554// it takes ownership of |data| and releases it with |OPENSSL_free| when
555// done.
David Benjamin879efc32017-09-21 11:20:53 -0400556static int add_outgoing(SSL *ssl, int is_ccs, Array<uint8_t> data) {
David Benjamin9bbdf582017-08-02 19:46:29 -0400557 if (ssl->d1->outgoing_messages_complete) {
David Benjaminc11ea9422017-08-29 16:33:21 -0400558 // If we've begun writing a new flight, we received the peer flight. Discard
559 // the timer and the our flight.
David Benjamin9bbdf582017-08-02 19:46:29 -0400560 dtls1_stop_timer(ssl);
561 dtls_clear_outgoing_messages(ssl);
562 }
563
David Benjamina3d76d02017-07-14 19:36:07 -0400564 static_assert(SSL_MAX_HANDSHAKE_FLIGHT <
565 (1 << 8 * sizeof(ssl->d1->outgoing_messages_len)),
566 "outgoing_messages_len is too small");
David Benjamin879efc32017-09-21 11:20:53 -0400567 if (ssl->d1->outgoing_messages_len >= SSL_MAX_HANDSHAKE_FLIGHT ||
568 data.size() > 0xffffffff) {
David Benjamin1a999cf2017-01-03 10:30:35 -0500569 assert(0);
570 OPENSSL_PUT_ERROR(SSL, ERR_R_INTERNAL_ERROR);
David Benjamin1a999cf2017-01-03 10:30:35 -0500571 return 0;
572 }
David Benjamin75836432016-06-17 18:48:29 -0400573
David Benjamin1a999cf2017-01-03 10:30:35 -0500574 if (!is_ccs) {
David Benjaminc11ea9422017-08-29 16:33:21 -0400575 // TODO(svaldez): Move this up a layer to fix abstraction for SSLTranscript
576 // on hs.
Steven Valdez908ac192017-01-12 13:17:07 -0500577 if (ssl->s3->hs != NULL &&
David Benjamin879efc32017-09-21 11:20:53 -0400578 !ssl->s3->hs->transcript.Update(data.data(), data.size())) {
Steven Valdez908ac192017-01-12 13:17:07 -0500579 OPENSSL_PUT_ERROR(SSL, ERR_R_INTERNAL_ERROR);
Steven Valdez908ac192017-01-12 13:17:07 -0500580 return 0;
581 }
David Benjamin1a999cf2017-01-03 10:30:35 -0500582 ssl->d1->handshake_write_seq++;
583 }
584
585 DTLS_OUTGOING_MESSAGE *msg =
586 &ssl->d1->outgoing_messages[ssl->d1->outgoing_messages_len];
David Benjamin879efc32017-09-21 11:20:53 -0400587 size_t len;
588 data.Release(&msg->data, &len);
David Benjamin1a999cf2017-01-03 10:30:35 -0500589 msg->len = len;
590 msg->epoch = ssl->d1->w_epoch;
591 msg->is_ccs = is_ccs;
592
593 ssl->d1->outgoing_messages_len++;
594 return 1;
595}
596
David Benjamin879efc32017-09-21 11:20:53 -0400597int dtls1_add_message(SSL *ssl, Array<uint8_t> data) {
598 return add_outgoing(ssl, 0 /* handshake */, std::move(data));
David Benjamin75836432016-06-17 18:48:29 -0400599}
600
David Benjamindaf207a2017-01-03 18:37:41 -0500601int dtls1_add_change_cipher_spec(SSL *ssl) {
David Benjamin879efc32017-09-21 11:20:53 -0400602 return add_outgoing(ssl, 1 /* ChangeCipherSpec */, Array<uint8_t>());
David Benjamin1a999cf2017-01-03 10:30:35 -0500603}
604
David Benjamindaf207a2017-01-03 18:37:41 -0500605int dtls1_add_alert(SSL *ssl, uint8_t level, uint8_t desc) {
David Benjaminc11ea9422017-08-29 16:33:21 -0400606 // The |add_alert| path is only used for warning alerts for now, which DTLS
607 // never sends. This will be implemented later once closure alerts are
608 // converted.
David Benjamindaf207a2017-01-03 18:37:41 -0500609 assert(0);
610 OPENSSL_PUT_ERROR(SSL, ERR_R_INTERNAL_ERROR);
611 return 0;
612}
613
David Benjaminc11ea9422017-08-29 16:33:21 -0400614// dtls1_update_mtu updates the current MTU from the BIO, ensuring it is above
615// the minimum.
David Benjamin1a999cf2017-01-03 10:30:35 -0500616static void dtls1_update_mtu(SSL *ssl) {
David Benjaminc11ea9422017-08-29 16:33:21 -0400617 // TODO(davidben): No consumer implements |BIO_CTRL_DGRAM_SET_MTU| and the
618 // only |BIO_CTRL_DGRAM_QUERY_MTU| implementation could use
619 // |SSL_set_mtu|. Does this need to be so complex?
David Benjamin1a999cf2017-01-03 10:30:35 -0500620 if (ssl->d1->mtu < dtls1_min_mtu() &&
621 !(SSL_get_options(ssl) & SSL_OP_NO_QUERY_MTU)) {
622 long mtu = BIO_ctrl(ssl->wbio, BIO_CTRL_DGRAM_QUERY_MTU, 0, NULL);
623 if (mtu >= 0 && mtu <= (1 << 30) && (unsigned)mtu >= dtls1_min_mtu()) {
624 ssl->d1->mtu = (unsigned)mtu;
625 } else {
626 ssl->d1->mtu = kDefaultMTU;
627 BIO_ctrl(ssl->wbio, BIO_CTRL_DGRAM_SET_MTU, ssl->d1->mtu, NULL);
628 }
629 }
630
David Benjaminc11ea9422017-08-29 16:33:21 -0400631 // The MTU should be above the minimum now.
David Benjamin1a999cf2017-01-03 10:30:35 -0500632 assert(ssl->d1->mtu >= dtls1_min_mtu());
633}
634
635enum seal_result_t {
636 seal_error,
637 seal_no_progress,
638 seal_partial,
639 seal_success,
640};
641
David Benjaminc11ea9422017-08-29 16:33:21 -0400642// seal_next_message seals |msg|, which must be the next message, to |out|. If
643// progress was made, it returns |seal_partial| or |seal_success| and sets
644// |*out_len| to the number of bytes written.
David Benjamin1a999cf2017-01-03 10:30:35 -0500645static enum seal_result_t seal_next_message(SSL *ssl, uint8_t *out,
646 size_t *out_len, size_t max_out,
647 const DTLS_OUTGOING_MESSAGE *msg) {
648 assert(ssl->d1->outgoing_written < ssl->d1->outgoing_messages_len);
649 assert(msg == &ssl->d1->outgoing_messages[ssl->d1->outgoing_written]);
650
David Benjamin3e3090d2015-04-05 12:48:30 -0400651 enum dtls1_use_epoch_t use_epoch = dtls1_use_current_epoch;
David Benjamincfc11c22017-07-18 22:45:18 -0400652 if (ssl->d1->w_epoch >= 1 && msg->epoch == ssl->d1->w_epoch - 1) {
David Benjamin3e3090d2015-04-05 12:48:30 -0400653 use_epoch = dtls1_use_previous_epoch;
David Benjamincfc11c22017-07-18 22:45:18 -0400654 } else if (msg->epoch != ssl->d1->w_epoch) {
655 OPENSSL_PUT_ERROR(SSL, ERR_R_INTERNAL_ERROR);
656 return seal_error;
Adam Langley71d8a082014-12-13 16:28:18 -0800657 }
David Benjamincfc11c22017-07-18 22:45:18 -0400658
David Benjamin1a999cf2017-01-03 10:30:35 -0500659 size_t overhead = dtls_max_seal_overhead(ssl, use_epoch);
660 size_t prefix = dtls_seal_prefix_len(ssl, use_epoch);
Adam Langley71d8a082014-12-13 16:28:18 -0800661
David Benjamin29a83c52016-06-17 19:12:54 -0400662 if (msg->is_ccs) {
David Benjaminc11ea9422017-08-29 16:33:21 -0400663 // Check there is room for the ChangeCipherSpec.
David Benjamin1a999cf2017-01-03 10:30:35 -0500664 static const uint8_t kChangeCipherSpec[1] = {SSL3_MT_CCS};
665 if (max_out < sizeof(kChangeCipherSpec) + overhead) {
666 return seal_no_progress;
667 }
668
669 if (!dtls_seal_record(ssl, out, out_len, max_out,
670 SSL3_RT_CHANGE_CIPHER_SPEC, kChangeCipherSpec,
671 sizeof(kChangeCipherSpec), use_epoch)) {
672 return seal_error;
673 }
674
675 ssl_do_msg_callback(ssl, 1 /* write */, SSL3_RT_CHANGE_CIPHER_SPEC,
676 kChangeCipherSpec, sizeof(kChangeCipherSpec));
677 return seal_success;
David Benjamina97b7372015-11-03 14:54:39 -0500678 }
679
David Benjaminc11ea9422017-08-29 16:33:21 -0400680 // DTLS messages are serialized as a single fragment in |msg|.
David Benjamin1a999cf2017-01-03 10:30:35 -0500681 CBS cbs, body;
682 struct hm_header_st hdr;
683 CBS_init(&cbs, msg->data, msg->len);
684 if (!dtls1_parse_fragment(&cbs, &hdr, &body) ||
685 hdr.frag_off != 0 ||
686 hdr.frag_len != CBS_len(&body) ||
687 hdr.msg_len != CBS_len(&body) ||
688 !CBS_skip(&body, ssl->d1->outgoing_offset) ||
689 CBS_len(&cbs) != 0) {
690 OPENSSL_PUT_ERROR(SSL, ERR_R_INTERNAL_ERROR);
691 return seal_error;
692 }
693
David Benjaminc11ea9422017-08-29 16:33:21 -0400694 // Determine how much progress can be made.
David Benjamin1a999cf2017-01-03 10:30:35 -0500695 if (max_out < DTLS1_HM_HEADER_LENGTH + 1 + overhead || max_out < prefix) {
696 return seal_no_progress;
697 }
698 size_t todo = CBS_len(&body);
699 if (todo > max_out - DTLS1_HM_HEADER_LENGTH - overhead) {
700 todo = max_out - DTLS1_HM_HEADER_LENGTH - overhead;
701 }
702
David Benjaminc11ea9422017-08-29 16:33:21 -0400703 // Assemble a fragment, to be sealed in-place.
David Benjamin1386aad2017-07-19 23:57:40 -0400704 ScopedCBB cbb;
David Benjamin1a999cf2017-01-03 10:30:35 -0500705 uint8_t *frag = out + prefix;
706 size_t max_frag = max_out - prefix, frag_len;
David Benjamin1386aad2017-07-19 23:57:40 -0400707 if (!CBB_init_fixed(cbb.get(), frag, max_frag) ||
708 !CBB_add_u8(cbb.get(), hdr.type) ||
709 !CBB_add_u24(cbb.get(), hdr.msg_len) ||
710 !CBB_add_u16(cbb.get(), hdr.seq) ||
711 !CBB_add_u24(cbb.get(), ssl->d1->outgoing_offset) ||
712 !CBB_add_u24(cbb.get(), todo) ||
713 !CBB_add_bytes(cbb.get(), CBS_data(&body), todo) ||
714 !CBB_finish(cbb.get(), NULL, &frag_len)) {
David Benjamin1a999cf2017-01-03 10:30:35 -0500715 OPENSSL_PUT_ERROR(SSL, ERR_R_INTERNAL_ERROR);
716 return seal_error;
717 }
718
719 ssl_do_msg_callback(ssl, 1 /* write */, SSL3_RT_HANDSHAKE, frag, frag_len);
720
721 if (!dtls_seal_record(ssl, out, out_len, max_out, SSL3_RT_HANDSHAKE,
722 out + prefix, frag_len, use_epoch)) {
723 return seal_error;
724 }
725
726 if (todo == CBS_len(&body)) {
David Benjaminc11ea9422017-08-29 16:33:21 -0400727 // The next message is complete.
David Benjamin1a999cf2017-01-03 10:30:35 -0500728 ssl->d1->outgoing_offset = 0;
729 return seal_success;
730 }
731
732 ssl->d1->outgoing_offset += todo;
733 return seal_partial;
Adam Langley71d8a082014-12-13 16:28:18 -0800734}
Adam Langley95c29f32014-06-20 12:00:00 -0700735
David Benjaminc11ea9422017-08-29 16:33:21 -0400736// seal_next_packet writes as much of the next flight as possible to |out| and
737// advances |ssl->d1->outgoing_written| and |ssl->d1->outgoing_offset| as
738// appropriate.
David Benjamin1a999cf2017-01-03 10:30:35 -0500739static int seal_next_packet(SSL *ssl, uint8_t *out, size_t *out_len,
740 size_t max_out) {
741 int made_progress = 0;
742 size_t total = 0;
743 assert(ssl->d1->outgoing_written < ssl->d1->outgoing_messages_len);
744 for (; ssl->d1->outgoing_written < ssl->d1->outgoing_messages_len;
745 ssl->d1->outgoing_written++) {
746 const DTLS_OUTGOING_MESSAGE *msg =
747 &ssl->d1->outgoing_messages[ssl->d1->outgoing_written];
748 size_t len;
749 enum seal_result_t ret = seal_next_message(ssl, out, &len, max_out, msg);
750 switch (ret) {
751 case seal_error:
752 return 0;
753
754 case seal_no_progress:
755 goto packet_full;
756
757 case seal_partial:
758 case seal_success:
759 out += len;
760 max_out -= len;
761 total += len;
762 made_progress = 1;
763
764 if (ret == seal_partial) {
765 goto packet_full;
766 }
767 break;
768 }
David Benjamin30152fd2016-05-05 20:45:48 -0400769 }
David Benjamin1a999cf2017-01-03 10:30:35 -0500770
771packet_full:
David Benjaminc11ea9422017-08-29 16:33:21 -0400772 // The MTU was too small to make any progress.
David Benjamin1a999cf2017-01-03 10:30:35 -0500773 if (!made_progress) {
774 OPENSSL_PUT_ERROR(SSL, SSL_R_MTU_TOO_SMALL);
775 return 0;
776 }
777
778 *out_len = total;
779 return 1;
780}
781
David Benjamin9bbdf582017-08-02 19:46:29 -0400782static int send_flight(SSL *ssl) {
David Benjamin1a999cf2017-01-03 10:30:35 -0500783 dtls1_update_mtu(ssl);
Adam Langleybcc4e232015-02-19 15:51:58 -0800784
David Benjamin30152fd2016-05-05 20:45:48 -0400785 int ret = -1;
David Benjamine8703a32017-07-09 16:17:55 -0400786 uint8_t *packet = (uint8_t *)OPENSSL_malloc(ssl->d1->mtu);
David Benjamin1a999cf2017-01-03 10:30:35 -0500787 if (packet == NULL) {
788 OPENSSL_PUT_ERROR(SSL, ERR_R_MALLOC_FAILURE);
789 goto err;
790 }
791
792 while (ssl->d1->outgoing_written < ssl->d1->outgoing_messages_len) {
793 uint8_t old_written = ssl->d1->outgoing_written;
794 uint32_t old_offset = ssl->d1->outgoing_offset;
795
796 size_t packet_len;
797 if (!seal_next_packet(ssl, packet, &packet_len, ssl->d1->mtu)) {
798 goto err;
799 }
800
801 int bio_ret = BIO_write(ssl->wbio, packet, packet_len);
802 if (bio_ret <= 0) {
David Benjaminc11ea9422017-08-29 16:33:21 -0400803 // Retry this packet the next time around.
David Benjamin1a999cf2017-01-03 10:30:35 -0500804 ssl->d1->outgoing_written = old_written;
805 ssl->d1->outgoing_offset = old_offset;
806 ssl->rwstate = SSL_WRITING;
807 ret = bio_ret;
David Benjamin30152fd2016-05-05 20:45:48 -0400808 goto err;
Adam Langleybcc4e232015-02-19 15:51:58 -0800809 }
810 }
811
David Benjamin42e3e192017-01-27 10:06:07 -0500812 if (BIO_flush(ssl->wbio) <= 0) {
David Benjamin27309552016-05-05 21:17:53 -0400813 ssl->rwstate = SSL_WRITING;
David Benjamin42e3e192017-01-27 10:06:07 -0500814 goto err;
David Benjamin27309552016-05-05 21:17:53 -0400815 }
David Benjamin30152fd2016-05-05 20:45:48 -0400816
David Benjamin42e3e192017-01-27 10:06:07 -0500817 ret = 1;
818
David Benjamin30152fd2016-05-05 20:45:48 -0400819err:
David Benjamin1a999cf2017-01-03 10:30:35 -0500820 OPENSSL_free(packet);
David Benjamin30152fd2016-05-05 20:45:48 -0400821 return ret;
Adam Langleybcc4e232015-02-19 15:51:58 -0800822}
823
David Benjamin9bbdf582017-08-02 19:46:29 -0400824int dtls1_flush_flight(SSL *ssl) {
825 ssl->d1->outgoing_messages_complete = true;
David Benjaminc11ea9422017-08-29 16:33:21 -0400826 // Start the retransmission timer for the next flight (if any).
David Benjamin9bbdf582017-08-02 19:46:29 -0400827 dtls1_start_timer(ssl);
828 return send_flight(ssl);
829}
830
David Benjamin1a999cf2017-01-03 10:30:35 -0500831int dtls1_retransmit_outgoing_messages(SSL *ssl) {
David Benjaminc11ea9422017-08-29 16:33:21 -0400832 // Rewind to the start of the flight and write it again.
833 //
834 // TODO(davidben): This does not allow retransmits to be resumed on
835 // non-blocking write.
David Benjamin1a999cf2017-01-03 10:30:35 -0500836 ssl->d1->outgoing_written = 0;
837 ssl->d1->outgoing_offset = 0;
838
David Benjamin9bbdf582017-08-02 19:46:29 -0400839 return send_flight(ssl);
David Benjamina97b7372015-11-03 14:54:39 -0500840}
841
Adam Langley71d8a082014-12-13 16:28:18 -0800842unsigned int dtls1_min_mtu(void) {
David Benjamina18b6712015-01-11 19:31:22 -0500843 return kMinMTU;
Adam Langley71d8a082014-12-13 16:28:18 -0800844}
David Benjamin86e95b82017-07-18 16:34:25 -0400845
846} // namespace bssl