Coverage Report

Created: 2023-06-08 06:43

/src/openssl30/ssl/statem/statem_dtls.c
Line
Count
Source (jump to first uncovered line)
1
/*
2
 * Copyright 2005-2022 The OpenSSL Project Authors. All Rights Reserved.
3
 *
4
 * Licensed under the Apache License 2.0 (the "License").  You may not use
5
 * this file except in compliance with the License.  You can obtain a copy
6
 * in the file LICENSE in the source distribution or at
7
 * https://www.openssl.org/source/license.html
8
 */
9
10
#include <limits.h>
11
#include <string.h>
12
#include <stdio.h>
13
#include "../ssl_local.h"
14
#include "statem_local.h"
15
#include "internal/cryptlib.h"
16
#include <openssl/buffer.h>
17
#include <openssl/objects.h>
18
#include <openssl/evp.h>
19
#include <openssl/x509.h>
20
21
#define RSMBLY_BITMASK_SIZE(msg_len) (((msg_len) + 7) / 8)
22
23
0
#define RSMBLY_BITMASK_MARK(bitmask, start, end) { \
24
0
                        if ((end) - (start) <= 8) { \
25
0
                                long ii; \
26
0
                                for (ii = (start); ii < (end); ii++) bitmask[((ii) >> 3)] |= (1 << ((ii) & 7)); \
27
0
                        } else { \
28
0
                                long ii; \
29
0
                                bitmask[((start) >> 3)] |= bitmask_start_values[((start) & 7)]; \
30
0
                                for (ii = (((start) >> 3) + 1); ii < ((((end) - 1)) >> 3); ii++) bitmask[ii] = 0xff; \
31
0
                                bitmask[(((end) - 1) >> 3)] |= bitmask_end_values[((end) & 7)]; \
32
0
                        } }
33
34
0
#define RSMBLY_BITMASK_IS_COMPLETE(bitmask, msg_len, is_complete) { \
35
0
                        long ii; \
36
0
                        is_complete = 1; \
37
0
                        if (bitmask[(((msg_len) - 1) >> 3)] != bitmask_end_values[((msg_len) & 7)]) is_complete = 0; \
38
0
                        if (is_complete) for (ii = (((msg_len) - 1) >> 3) - 1; ii >= 0 ; ii--) \
39
0
                                if (bitmask[ii] != 0xff) { is_complete = 0; break; } }
40
41
static unsigned char bitmask_start_values[] =
42
    { 0xff, 0xfe, 0xfc, 0xf8, 0xf0, 0xe0, 0xc0, 0x80 };
43
static unsigned char bitmask_end_values[] =
44
    { 0xff, 0x01, 0x03, 0x07, 0x0f, 0x1f, 0x3f, 0x7f };
45
46
static void dtls1_fix_message_header(SSL *s, size_t frag_off,
47
                                     size_t frag_len);
48
static unsigned char *dtls1_write_message_header(SSL *s, unsigned char *p);
49
static void dtls1_set_message_header_int(SSL *s, unsigned char mt,
50
                                         size_t len,
51
                                         unsigned short seq_num,
52
                                         size_t frag_off,
53
                                         size_t frag_len);
54
static int dtls_get_reassembled_message(SSL *s, int *errtype, size_t *len);
55
56
static hm_fragment *dtls1_hm_fragment_new(size_t frag_len, int reassembly)
57
0
{
58
0
    hm_fragment *frag = NULL;
59
0
    unsigned char *buf = NULL;
60
0
    unsigned char *bitmask = NULL;
61
62
0
    if ((frag = OPENSSL_malloc(sizeof(*frag))) == NULL) {
63
0
        ERR_raise(ERR_LIB_SSL, ERR_R_MALLOC_FAILURE);
64
0
        return NULL;
65
0
    }
66
67
0
    if (frag_len) {
68
0
        if ((buf = OPENSSL_malloc(frag_len)) == NULL) {
69
0
            ERR_raise(ERR_LIB_SSL, ERR_R_MALLOC_FAILURE);
70
0
            OPENSSL_free(frag);
71
0
            return NULL;
72
0
        }
73
0
    }
74
75
    /* zero length fragment gets zero frag->fragment */
76
0
    frag->fragment = buf;
77
78
    /* Initialize reassembly bitmask if necessary */
79
0
    if (reassembly) {
80
0
        bitmask = OPENSSL_zalloc(RSMBLY_BITMASK_SIZE(frag_len));
81
0
        if (bitmask == NULL) {
82
0
            ERR_raise(ERR_LIB_SSL, ERR_R_MALLOC_FAILURE);
83
0
            OPENSSL_free(buf);
84
0
            OPENSSL_free(frag);
85
0
            return NULL;
86
0
        }
87
0
    }
88
89
0
    frag->reassembly = bitmask;
90
91
0
    return frag;
92
0
}
93
94
void dtls1_hm_fragment_free(hm_fragment *frag)
95
0
{
96
0
    if (!frag)
97
0
        return;
98
0
    if (frag->msg_header.is_ccs) {
99
0
        EVP_CIPHER_CTX_free(frag->msg_header.
100
0
                            saved_retransmit_state.enc_write_ctx);
101
0
        EVP_MD_CTX_free(frag->msg_header.saved_retransmit_state.write_hash);
102
0
    }
103
0
    OPENSSL_free(frag->fragment);
104
0
    OPENSSL_free(frag->reassembly);
105
0
    OPENSSL_free(frag);
106
0
}
107
108
/*
109
 * send s->init_buf in records of type 'type' (SSL3_RT_HANDSHAKE or
110
 * SSL3_RT_CHANGE_CIPHER_SPEC)
111
 */
112
int dtls1_do_write(SSL *s, int type)
113
0
{
114
0
    int ret;
115
0
    size_t written;
116
0
    size_t curr_mtu;
117
0
    int retry = 1;
118
0
    size_t len, frag_off, mac_size, blocksize, used_len;
119
120
0
    if (!dtls1_query_mtu(s))
121
0
        return -1;
122
123
0
    if (s->d1->mtu < dtls1_min_mtu(s))
124
        /* should have something reasonable now */
125
0
        return -1;
126
127
0
    if (s->init_off == 0 && type == SSL3_RT_HANDSHAKE) {
128
0
        if (!ossl_assert(s->init_num ==
129
0
                         s->d1->w_msg_hdr.msg_len + DTLS1_HM_HEADER_LENGTH))
130
0
            return -1;
131
0
    }
132
133
0
    if (s->write_hash) {
134
0
        if (s->enc_write_ctx
135
0
            && (EVP_CIPHER_get_flags(EVP_CIPHER_CTX_get0_cipher(s->enc_write_ctx)) &
136
0
                EVP_CIPH_FLAG_AEAD_CIPHER) != 0)
137
0
            mac_size = 0;
138
0
        else
139
0
            mac_size = EVP_MD_CTX_get_size(s->write_hash);
140
0
    } else
141
0
        mac_size = 0;
142
143
0
    if (s->enc_write_ctx &&
144
0
        (EVP_CIPHER_CTX_get_mode(s->enc_write_ctx) == EVP_CIPH_CBC_MODE))
145
0
        blocksize = 2 * EVP_CIPHER_CTX_get_block_size(s->enc_write_ctx);
146
0
    else
147
0
        blocksize = 0;
148
149
0
    frag_off = 0;
150
0
    s->rwstate = SSL_NOTHING;
151
152
    /* s->init_num shouldn't ever be < 0...but just in case */
153
0
    while (s->init_num > 0) {
154
0
        if (type == SSL3_RT_HANDSHAKE && s->init_off != 0) {
155
            /* We must be writing a fragment other than the first one */
156
157
0
            if (frag_off > 0) {
158
                /* This is the first attempt at writing out this fragment */
159
160
0
                if (s->init_off <= DTLS1_HM_HEADER_LENGTH) {
161
                    /*
162
                     * Each fragment that was already sent must at least have
163
                     * contained the message header plus one other byte.
164
                     * Therefore |init_off| must have progressed by at least
165
                     * |DTLS1_HM_HEADER_LENGTH + 1| bytes. If not something went
166
                     * wrong.
167
                     */
168
0
                    return -1;
169
0
                }
170
171
                /*
172
                 * Adjust |init_off| and |init_num| to allow room for a new
173
                 * message header for this fragment.
174
                 */
175
0
                s->init_off -= DTLS1_HM_HEADER_LENGTH;
176
0
                s->init_num += DTLS1_HM_HEADER_LENGTH;
177
0
            } else {
178
                /*
179
                 * We must have been called again after a retry so use the
180
                 * fragment offset from our last attempt. We do not need
181
                 * to adjust |init_off| and |init_num| as above, because
182
                 * that should already have been done before the retry.
183
                 */
184
0
                frag_off = s->d1->w_msg_hdr.frag_off;
185
0
            }
186
0
        }
187
188
0
        used_len = BIO_wpending(s->wbio) + DTLS1_RT_HEADER_LENGTH
189
0
            + mac_size + blocksize;
190
0
        if (s->d1->mtu > used_len)
191
0
            curr_mtu = s->d1->mtu - used_len;
192
0
        else
193
0
            curr_mtu = 0;
194
195
0
        if (curr_mtu <= DTLS1_HM_HEADER_LENGTH) {
196
            /*
197
             * grr.. we could get an error if MTU picked was wrong
198
             */
199
0
            ret = BIO_flush(s->wbio);
200
0
            if (ret <= 0) {
201
0
                s->rwstate = SSL_WRITING;
202
0
                return ret;
203
0
            }
204
0
            used_len = DTLS1_RT_HEADER_LENGTH + mac_size + blocksize;
205
0
            if (s->d1->mtu > used_len + DTLS1_HM_HEADER_LENGTH) {
206
0
                curr_mtu = s->d1->mtu - used_len;
207
0
            } else {
208
                /* Shouldn't happen */
209
0
                return -1;
210
0
            }
211
0
        }
212
213
        /*
214
         * We just checked that s->init_num > 0 so this cast should be safe
215
         */
216
0
        if (((unsigned int)s->init_num) > curr_mtu)
217
0
            len = curr_mtu;
218
0
        else
219
0
            len = s->init_num;
220
221
0
        if (len > ssl_get_max_send_fragment(s))
222
0
            len = ssl_get_max_send_fragment(s);
223
224
        /*
225
         * XDTLS: this function is too long.  split out the CCS part
226
         */
227
0
        if (type == SSL3_RT_HANDSHAKE) {
228
0
            if (len < DTLS1_HM_HEADER_LENGTH) {
229
                /*
230
                 * len is so small that we really can't do anything sensible
231
                 * so fail
232
                 */
233
0
                return -1;
234
0
            }
235
0
            dtls1_fix_message_header(s, frag_off, len - DTLS1_HM_HEADER_LENGTH);
236
237
0
            dtls1_write_message_header(s,
238
0
                                       (unsigned char *)&s->init_buf->
239
0
                                       data[s->init_off]);
240
0
        }
241
242
0
        ret = dtls1_write_bytes(s, type, &s->init_buf->data[s->init_off], len,
243
0
                                &written);
244
0
        if (ret <= 0) {
245
            /*
246
             * might need to update MTU here, but we don't know which
247
             * previous packet caused the failure -- so can't really
248
             * retransmit anything.  continue as if everything is fine and
249
             * wait for an alert to handle the retransmit
250
             */
251
0
            if (retry && BIO_ctrl(SSL_get_wbio(s),
252
0
                                  BIO_CTRL_DGRAM_MTU_EXCEEDED, 0, NULL) > 0) {
253
0
                if (!(SSL_get_options(s) & SSL_OP_NO_QUERY_MTU)) {
254
0
                    if (!dtls1_query_mtu(s))
255
0
                        return -1;
256
                    /* Have one more go */
257
0
                    retry = 0;
258
0
                } else
259
0
                    return -1;
260
0
            } else {
261
0
                return -1;
262
0
            }
263
0
        } else {
264
265
            /*
266
             * bad if this assert fails, only part of the handshake message
267
             * got sent.  but why would this happen?
268
             */
269
0
            if (!ossl_assert(len == written))
270
0
                return -1;
271
272
0
            if (type == SSL3_RT_HANDSHAKE && !s->d1->retransmitting) {
273
                /*
274
                 * should not be done for 'Hello Request's, but in that case
275
                 * we'll ignore the result anyway
276
                 */
277
0
                unsigned char *p =
278
0
                    (unsigned char *)&s->init_buf->data[s->init_off];
279
0
                const struct hm_header_st *msg_hdr = &s->d1->w_msg_hdr;
280
0
                size_t xlen;
281
282
0
                if (frag_off == 0 && s->version != DTLS1_BAD_VER) {
283
                    /*
284
                     * reconstruct message header is if it is being sent in
285
                     * single fragment
286
                     */
287
0
                    *p++ = msg_hdr->type;
288
0
                    l2n3(msg_hdr->msg_len, p);
289
0
                    s2n(msg_hdr->seq, p);
290
0
                    l2n3(0, p);
291
0
                    l2n3(msg_hdr->msg_len, p);
292
0
                    p -= DTLS1_HM_HEADER_LENGTH;
293
0
                    xlen = written;
294
0
                } else {
295
0
                    p += DTLS1_HM_HEADER_LENGTH;
296
0
                    xlen = written - DTLS1_HM_HEADER_LENGTH;
297
0
                }
298
299
0
                if (!ssl3_finish_mac(s, p, xlen))
300
0
                    return -1;
301
0
            }
302
303
0
            if (written == s->init_num) {
304
0
                if (s->msg_callback)
305
0
                    s->msg_callback(1, s->version, type, s->init_buf->data,
306
0
                                    (size_t)(s->init_off + s->init_num), s,
307
0
                                    s->msg_callback_arg);
308
309
0
                s->init_off = 0; /* done writing this message */
310
0
                s->init_num = 0;
311
312
0
                return 1;
313
0
            }
314
0
            s->init_off += written;
315
0
            s->init_num -= written;
316
0
            written -= DTLS1_HM_HEADER_LENGTH;
317
0
            frag_off += written;
318
319
            /*
320
             * We save the fragment offset for the next fragment so we have it
321
             * available in case of an IO retry. We don't know the length of the
322
             * next fragment yet so just set that to 0 for now. It will be
323
             * updated again later.
324
             */
325
0
            dtls1_fix_message_header(s, frag_off, 0);
326
0
        }
327
0
    }
328
0
    return 0;
329
0
}
330
331
int dtls_get_message(SSL *s, int *mt)
332
0
{
333
0
    struct hm_header_st *msg_hdr;
334
0
    unsigned char *p;
335
0
    size_t msg_len;
336
0
    size_t tmplen;
337
0
    int errtype;
338
339
0
    msg_hdr = &s->d1->r_msg_hdr;
340
0
    memset(msg_hdr, 0, sizeof(*msg_hdr));
341
342
0
 again:
343
0
    if (!dtls_get_reassembled_message(s, &errtype, &tmplen)) {
344
0
        if (errtype == DTLS1_HM_BAD_FRAGMENT
345
0
                || errtype == DTLS1_HM_FRAGMENT_RETRY) {
346
            /* bad fragment received */
347
0
            goto again;
348
0
        }
349
0
        return 0;
350
0
    }
351
352
0
    *mt = s->s3.tmp.message_type;
353
354
0
    p = (unsigned char *)s->init_buf->data;
355
356
0
    if (*mt == SSL3_MT_CHANGE_CIPHER_SPEC) {
357
0
        if (s->msg_callback) {
358
0
            s->msg_callback(0, s->version, SSL3_RT_CHANGE_CIPHER_SPEC,
359
0
                            p, 1, s, s->msg_callback_arg);
360
0
        }
361
        /*
362
         * This isn't a real handshake message so skip the processing below.
363
         */
364
0
        return 1;
365
0
    }
366
367
0
    msg_len = msg_hdr->msg_len;
368
369
    /* reconstruct message header */
370
0
    *(p++) = msg_hdr->type;
371
0
    l2n3(msg_len, p);
372
0
    s2n(msg_hdr->seq, p);
373
0
    l2n3(0, p);
374
0
    l2n3(msg_len, p);
375
376
0
    memset(msg_hdr, 0, sizeof(*msg_hdr));
377
378
0
    s->d1->handshake_read_seq++;
379
380
0
    s->init_msg = s->init_buf->data + DTLS1_HM_HEADER_LENGTH;
381
382
0
    return 1;
383
0
}
384
385
/*
386
 * Actually we already have the message body - but this is an opportunity for
387
 * DTLS to do any further processing it wants at the same point that TLS would
388
 * be asked for the message body.
389
 */
390
int dtls_get_message_body(SSL *s, size_t *len)
391
0
{
392
0
    unsigned char *msg = (unsigned char *)s->init_buf->data;
393
0
    size_t msg_len = s->init_num + DTLS1_HM_HEADER_LENGTH;
394
395
0
    if (s->s3.tmp.message_type == SSL3_MT_CHANGE_CIPHER_SPEC) {
396
        /* Nothing to be done */
397
0
        goto end;
398
0
    }
399
    /*
400
     * If receiving Finished, record MAC of prior handshake messages for
401
     * Finished verification.
402
     */
403
0
    if (*(s->init_buf->data) == SSL3_MT_FINISHED && !ssl3_take_mac(s)) {
404
        /* SSLfatal() already called */
405
0
        return 0;
406
0
    }
407
408
0
    if (s->version == DTLS1_BAD_VER) {
409
0
        msg += DTLS1_HM_HEADER_LENGTH;
410
0
        msg_len -= DTLS1_HM_HEADER_LENGTH;
411
0
    }
412
413
0
    if (!ssl3_finish_mac(s, msg, msg_len))
414
0
        return 0;
415
416
0
    if (s->msg_callback)
417
0
        s->msg_callback(0, s->version, SSL3_RT_HANDSHAKE,
418
0
                        s->init_buf->data, s->init_num + DTLS1_HM_HEADER_LENGTH,
419
0
                        s, s->msg_callback_arg);
420
421
0
 end:
422
0
    *len = s->init_num;
423
0
    return 1;
424
0
}
425
426
/*
427
 * dtls1_max_handshake_message_len returns the maximum number of bytes
428
 * permitted in a DTLS handshake message for |s|. The minimum is 16KB, but
429
 * may be greater if the maximum certificate list size requires it.
430
 */
431
static size_t dtls1_max_handshake_message_len(const SSL *s)
432
0
{
433
0
    size_t max_len = DTLS1_HM_HEADER_LENGTH + SSL3_RT_MAX_ENCRYPTED_LENGTH;
434
0
    if (max_len < s->max_cert_list)
435
0
        return s->max_cert_list;
436
0
    return max_len;
437
0
}
438
439
static int dtls1_preprocess_fragment(SSL *s, struct hm_header_st *msg_hdr)
440
0
{
441
0
    size_t frag_off, frag_len, msg_len;
442
443
0
    msg_len = msg_hdr->msg_len;
444
0
    frag_off = msg_hdr->frag_off;
445
0
    frag_len = msg_hdr->frag_len;
446
447
    /* sanity checking */
448
0
    if ((frag_off + frag_len) > msg_len
449
0
            || msg_len > dtls1_max_handshake_message_len(s)) {
450
0
        SSLfatal(s, SSL_AD_ILLEGAL_PARAMETER, SSL_R_EXCESSIVE_MESSAGE_SIZE);
451
0
        return 0;
452
0
    }
453
454
0
    if (s->d1->r_msg_hdr.frag_off == 0) { /* first fragment */
455
        /*
456
         * msg_len is limited to 2^24, but is effectively checked against
457
         * dtls_max_handshake_message_len(s) above
458
         */
459
0
        if (!BUF_MEM_grow_clean(s->init_buf, msg_len + DTLS1_HM_HEADER_LENGTH)) {
460
0
            SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_BUF_LIB);
461
0
            return 0;
462
0
        }
463
464
0
        s->s3.tmp.message_size = msg_len;
465
0
        s->d1->r_msg_hdr.msg_len = msg_len;
466
0
        s->s3.tmp.message_type = msg_hdr->type;
467
0
        s->d1->r_msg_hdr.type = msg_hdr->type;
468
0
        s->d1->r_msg_hdr.seq = msg_hdr->seq;
469
0
    } else if (msg_len != s->d1->r_msg_hdr.msg_len) {
470
        /*
471
         * They must be playing with us! BTW, failure to enforce upper limit
472
         * would open possibility for buffer overrun.
473
         */
474
0
        SSLfatal(s, SSL_AD_ILLEGAL_PARAMETER, SSL_R_EXCESSIVE_MESSAGE_SIZE);
475
0
        return 0;
476
0
    }
477
478
0
    return 1;
479
0
}
480
481
/*
482
 * Returns 1 if there is a buffered fragment available, 0 if not, or -1 on a
483
 * fatal error.
484
 */
485
static int dtls1_retrieve_buffered_fragment(SSL *s, size_t *len)
486
0
{
487
    /*-
488
     * (0) check whether the desired fragment is available
489
     * if so:
490
     * (1) copy over the fragment to s->init_buf->data[]
491
     * (2) update s->init_num
492
     */
493
0
    pitem *item;
494
0
    piterator iter;
495
0
    hm_fragment *frag;
496
0
    int ret;
497
0
    int chretran = 0;
498
499
0
    iter = pqueue_iterator(s->d1->buffered_messages);
500
0
    do {
501
0
        item = pqueue_next(&iter);
502
0
        if (item == NULL)
503
0
            return 0;
504
505
0
        frag = (hm_fragment *)item->data;
506
507
0
        if (frag->msg_header.seq < s->d1->handshake_read_seq) {
508
0
            pitem *next;
509
0
            hm_fragment *nextfrag;
510
511
0
            if (!s->server
512
0
                    || frag->msg_header.seq != 0
513
0
                    || s->d1->handshake_read_seq != 1
514
0
                    || s->statem.hand_state != DTLS_ST_SW_HELLO_VERIFY_REQUEST) {
515
                /*
516
                 * This is a stale message that has been buffered so clear it.
517
                 * It is safe to pop this message from the queue even though
518
                 * we have an active iterator
519
                 */
520
0
                pqueue_pop(s->d1->buffered_messages);
521
0
                dtls1_hm_fragment_free(frag);
522
0
                pitem_free(item);
523
0
                item = NULL;
524
0
                frag = NULL;
525
0
            } else {
526
                /*
527
                 * We have fragments for a ClientHello without a cookie,
528
                 * even though we have sent a HelloVerifyRequest. It is possible
529
                 * that the HelloVerifyRequest got lost and this is a
530
                 * retransmission of the original ClientHello
531
                 */
532
0
                next = pqueue_next(&iter);
533
0
                if (next != NULL) {
534
0
                    nextfrag = (hm_fragment *)next->data;
535
0
                    if (nextfrag->msg_header.seq == s->d1->handshake_read_seq) {
536
                        /*
537
                        * We have fragments for both a ClientHello without
538
                        * cookie and one with. Ditch the one without.
539
                        */
540
0
                        pqueue_pop(s->d1->buffered_messages);
541
0
                        dtls1_hm_fragment_free(frag);
542
0
                        pitem_free(item);
543
0
                        item = next;
544
0
                        frag = nextfrag;
545
0
                    } else {
546
0
                        chretran = 1;
547
0
                    }
548
0
                } else {
549
0
                    chretran = 1;
550
0
                }
551
0
            }
552
0
        }
553
0
    } while (item == NULL);
554
555
    /* Don't return if reassembly still in progress */
556
0
    if (frag->reassembly != NULL)
557
0
        return 0;
558
559
0
    if (s->d1->handshake_read_seq == frag->msg_header.seq || chretran) {
560
0
        size_t frag_len = frag->msg_header.frag_len;
561
0
        pqueue_pop(s->d1->buffered_messages);
562
563
        /* Calls SSLfatal() as required */
564
0
        ret = dtls1_preprocess_fragment(s, &frag->msg_header);
565
566
0
        if (ret && frag->msg_header.frag_len > 0) {
567
0
            unsigned char *p =
568
0
                (unsigned char *)s->init_buf->data + DTLS1_HM_HEADER_LENGTH;
569
0
            memcpy(&p[frag->msg_header.frag_off], frag->fragment,
570
0
                   frag->msg_header.frag_len);
571
0
        }
572
573
0
        dtls1_hm_fragment_free(frag);
574
0
        pitem_free(item);
575
576
0
        if (ret) {
577
0
            if (chretran) {
578
                /*
579
                 * We got a new ClientHello with a message sequence of 0.
580
                 * Reset the read/write sequences back to the beginning.
581
                 * We process it like this is the first time we've seen a
582
                 * ClientHello from the client.
583
                 */
584
0
                s->d1->handshake_read_seq = 0;
585
0
                s->d1->next_handshake_write_seq = 0;
586
0
            }
587
0
            *len = frag_len;
588
0
            return 1;
589
0
        }
590
591
        /* Fatal error */
592
0
        s->init_num = 0;
593
0
        return -1;
594
0
    } else {
595
0
        return 0;
596
0
    }
597
0
}
598
599
static int
600
dtls1_reassemble_fragment(SSL *s, const struct hm_header_st *msg_hdr)
601
0
{
602
0
    hm_fragment *frag = NULL;
603
0
    pitem *item = NULL;
604
0
    int i = -1, is_complete;
605
0
    unsigned char seq64be[8];
606
0
    size_t frag_len = msg_hdr->frag_len;
607
0
    size_t readbytes;
608
609
0
    if ((msg_hdr->frag_off + frag_len) > msg_hdr->msg_len ||
610
0
        msg_hdr->msg_len > dtls1_max_handshake_message_len(s))
611
0
        goto err;
612
613
0
    if (frag_len == 0) {
614
0
        return DTLS1_HM_FRAGMENT_RETRY;
615
0
    }
616
617
    /* Try to find item in queue */
618
0
    memset(seq64be, 0, sizeof(seq64be));
619
0
    seq64be[6] = (unsigned char)(msg_hdr->seq >> 8);
620
0
    seq64be[7] = (unsigned char)msg_hdr->seq;
621
0
    item = pqueue_find(s->d1->buffered_messages, seq64be);
622
623
0
    if (item == NULL) {
624
0
        frag = dtls1_hm_fragment_new(msg_hdr->msg_len, 1);
625
0
        if (frag == NULL)
626
0
            goto err;
627
0
        memcpy(&(frag->msg_header), msg_hdr, sizeof(*msg_hdr));
628
0
        frag->msg_header.frag_len = frag->msg_header.msg_len;
629
0
        frag->msg_header.frag_off = 0;
630
0
    } else {
631
0
        frag = (hm_fragment *)item->data;
632
0
        if (frag->msg_header.msg_len != msg_hdr->msg_len) {
633
0
            item = NULL;
634
0
            frag = NULL;
635
0
            goto err;
636
0
        }
637
0
    }
638
639
    /*
640
     * If message is already reassembled, this must be a retransmit and can
641
     * be dropped. In this case item != NULL and so frag does not need to be
642
     * freed.
643
     */
644
0
    if (frag->reassembly == NULL) {
645
0
        unsigned char devnull[256];
646
647
0
        while (frag_len) {
648
0
            i = s->method->ssl_read_bytes(s, SSL3_RT_HANDSHAKE, NULL,
649
0
                                          devnull,
650
0
                                          frag_len >
651
0
                                          sizeof(devnull) ? sizeof(devnull) :
652
0
                                          frag_len, 0, &readbytes);
653
0
            if (i <= 0)
654
0
                goto err;
655
0
            frag_len -= readbytes;
656
0
        }
657
0
        return DTLS1_HM_FRAGMENT_RETRY;
658
0
    }
659
660
    /* read the body of the fragment (header has already been read */
661
0
    i = s->method->ssl_read_bytes(s, SSL3_RT_HANDSHAKE, NULL,
662
0
                                  frag->fragment + msg_hdr->frag_off,
663
0
                                  frag_len, 0, &readbytes);
664
0
    if (i <= 0 || readbytes != frag_len)
665
0
        i = -1;
666
0
    if (i <= 0)
667
0
        goto err;
668
669
0
    RSMBLY_BITMASK_MARK(frag->reassembly, (long)msg_hdr->frag_off,
670
0
                        (long)(msg_hdr->frag_off + frag_len));
671
672
0
    if (!ossl_assert(msg_hdr->msg_len > 0))
673
0
        goto err;
674
0
    RSMBLY_BITMASK_IS_COMPLETE(frag->reassembly, (long)msg_hdr->msg_len,
675
0
                               is_complete);
676
677
0
    if (is_complete) {
678
0
        OPENSSL_free(frag->reassembly);
679
0
        frag->reassembly = NULL;
680
0
    }
681
682
0
    if (item == NULL) {
683
0
        item = pitem_new(seq64be, frag);
684
0
        if (item == NULL) {
685
0
            i = -1;
686
0
            goto err;
687
0
        }
688
689
0
        item = pqueue_insert(s->d1->buffered_messages, item);
690
        /*
691
         * pqueue_insert fails iff a duplicate item is inserted. However,
692
         * |item| cannot be a duplicate. If it were, |pqueue_find|, above,
693
         * would have returned it and control would never have reached this
694
         * branch.
695
         */
696
0
        if (!ossl_assert(item != NULL))
697
0
            goto err;
698
0
    }
699
700
0
    return DTLS1_HM_FRAGMENT_RETRY;
701
702
0
 err:
703
0
    if (item == NULL)
704
0
        dtls1_hm_fragment_free(frag);
705
0
    return -1;
706
0
}
707
708
static int
709
dtls1_process_out_of_seq_message(SSL *s, const struct hm_header_st *msg_hdr)
710
0
{
711
0
    int i = -1;
712
0
    hm_fragment *frag = NULL;
713
0
    pitem *item = NULL;
714
0
    unsigned char seq64be[8];
715
0
    size_t frag_len = msg_hdr->frag_len;
716
0
    size_t readbytes;
717
718
0
    if ((msg_hdr->frag_off + frag_len) > msg_hdr->msg_len)
719
0
        goto err;
720
721
    /* Try to find item in queue, to prevent duplicate entries */
722
0
    memset(seq64be, 0, sizeof(seq64be));
723
0
    seq64be[6] = (unsigned char)(msg_hdr->seq >> 8);
724
0
    seq64be[7] = (unsigned char)msg_hdr->seq;
725
0
    item = pqueue_find(s->d1->buffered_messages, seq64be);
726
727
    /*
728
     * If we already have an entry and this one is a fragment, don't discard
729
     * it and rather try to reassemble it.
730
     */
731
0
    if (item != NULL && frag_len != msg_hdr->msg_len)
732
0
        item = NULL;
733
734
    /*
735
     * Discard the message if sequence number was already there, is too far
736
     * in the future, already in the queue or if we received a FINISHED
737
     * before the SERVER_HELLO, which then must be a stale retransmit.
738
     */
739
0
    if (msg_hdr->seq <= s->d1->handshake_read_seq ||
740
0
        msg_hdr->seq > s->d1->handshake_read_seq + 10 || item != NULL ||
741
0
        (s->d1->handshake_read_seq == 0 && msg_hdr->type == SSL3_MT_FINISHED)) {
742
0
        unsigned char devnull[256];
743
744
0
        while (frag_len) {
745
0
            i = s->method->ssl_read_bytes(s, SSL3_RT_HANDSHAKE, NULL,
746
0
                                          devnull,
747
0
                                          frag_len >
748
0
                                          sizeof(devnull) ? sizeof(devnull) :
749
0
                                          frag_len, 0, &readbytes);
750
0
            if (i <= 0)
751
0
                goto err;
752
0
            frag_len -= readbytes;
753
0
        }
754
0
    } else {
755
0
        if (frag_len != msg_hdr->msg_len) {
756
0
            return dtls1_reassemble_fragment(s, msg_hdr);
757
0
        }
758
759
0
        if (frag_len > dtls1_max_handshake_message_len(s))
760
0
            goto err;
761
762
0
        frag = dtls1_hm_fragment_new(frag_len, 0);
763
0
        if (frag == NULL)
764
0
            goto err;
765
766
0
        memcpy(&(frag->msg_header), msg_hdr, sizeof(*msg_hdr));
767
768
0
        if (frag_len) {
769
            /*
770
             * read the body of the fragment (header has already been read
771
             */
772
0
            i = s->method->ssl_read_bytes(s, SSL3_RT_HANDSHAKE, NULL,
773
0
                                          frag->fragment, frag_len, 0,
774
0
                                          &readbytes);
775
0
            if (i<=0 || readbytes != frag_len)
776
0
                i = -1;
777
0
            if (i <= 0)
778
0
                goto err;
779
0
        }
780
781
0
        item = pitem_new(seq64be, frag);
782
0
        if (item == NULL)
783
0
            goto err;
784
785
0
        item = pqueue_insert(s->d1->buffered_messages, item);
786
        /*
787
         * pqueue_insert fails iff a duplicate item is inserted. However,
788
         * |item| cannot be a duplicate. If it were, |pqueue_find|, above,
789
         * would have returned it. Then, either |frag_len| !=
790
         * |msg_hdr->msg_len| in which case |item| is set to NULL and it will
791
         * have been processed with |dtls1_reassemble_fragment|, above, or
792
         * the record will have been discarded.
793
         */
794
0
        if (!ossl_assert(item != NULL))
795
0
            goto err;
796
0
    }
797
798
0
    return DTLS1_HM_FRAGMENT_RETRY;
799
800
0
 err:
801
0
    if (item == NULL)
802
0
        dtls1_hm_fragment_free(frag);
803
0
    return 0;
804
0
}
805
806
static int dtls_get_reassembled_message(SSL *s, int *errtype, size_t *len)
807
0
{
808
0
    unsigned char wire[DTLS1_HM_HEADER_LENGTH];
809
0
    size_t mlen, frag_off, frag_len;
810
0
    int i, ret, recvd_type;
811
0
    struct hm_header_st msg_hdr;
812
0
    size_t readbytes;
813
0
    int chretran = 0;
814
815
0
    *errtype = 0;
816
817
0
 redo:
818
    /* see if we have the required fragment already */
819
0
    ret = dtls1_retrieve_buffered_fragment(s, &frag_len);
820
0
    if (ret < 0) {
821
        /* SSLfatal() already called */
822
0
        return 0;
823
0
    }
824
0
    if (ret > 0) {
825
0
        s->init_num = frag_len;
826
0
        *len = frag_len;
827
0
        return 1;
828
0
    }
829
830
    /* read handshake message header */
831
0
    i = s->method->ssl_read_bytes(s, SSL3_RT_HANDSHAKE, &recvd_type, wire,
832
0
                                  DTLS1_HM_HEADER_LENGTH, 0, &readbytes);
833
0
    if (i <= 0) {               /* nbio, or an error */
834
0
        s->rwstate = SSL_READING;
835
0
        *len = 0;
836
0
        return 0;
837
0
    }
838
0
    if (recvd_type == SSL3_RT_CHANGE_CIPHER_SPEC) {
839
0
        if (wire[0] != SSL3_MT_CCS) {
840
0
            SSLfatal(s, SSL_AD_UNEXPECTED_MESSAGE,
841
0
                     SSL_R_BAD_CHANGE_CIPHER_SPEC);
842
0
            goto f_err;
843
0
        }
844
845
0
        memcpy(s->init_buf->data, wire, readbytes);
846
0
        s->init_num = readbytes - 1;
847
0
        s->init_msg = s->init_buf->data + 1;
848
0
        s->s3.tmp.message_type = SSL3_MT_CHANGE_CIPHER_SPEC;
849
0
        s->s3.tmp.message_size = readbytes - 1;
850
0
        *len = readbytes - 1;
851
0
        return 1;
852
0
    }
853
854
    /* Handshake fails if message header is incomplete */
855
0
    if (readbytes != DTLS1_HM_HEADER_LENGTH) {
856
0
        SSLfatal(s, SSL_AD_UNEXPECTED_MESSAGE, SSL_R_UNEXPECTED_MESSAGE);
857
0
        goto f_err;
858
0
    }
859
860
    /* parse the message fragment header */
861
0
    dtls1_get_message_header(wire, &msg_hdr);
862
863
0
    mlen = msg_hdr.msg_len;
864
0
    frag_off = msg_hdr.frag_off;
865
0
    frag_len = msg_hdr.frag_len;
866
867
    /*
868
     * We must have at least frag_len bytes left in the record to be read.
869
     * Fragments must not span records.
870
     */
871
0
    if (frag_len > RECORD_LAYER_get_rrec_length(&s->rlayer)) {
872
0
        SSLfatal(s, SSL_AD_ILLEGAL_PARAMETER, SSL_R_BAD_LENGTH);
873
0
        goto f_err;
874
0
    }
875
876
    /*
877
     * if this is a future (or stale) message it gets buffered
878
     * (or dropped)--no further processing at this time
879
     * While listening, we accept seq 1 (ClientHello with cookie)
880
     * although we're still expecting seq 0 (ClientHello)
881
     */
882
0
    if (msg_hdr.seq != s->d1->handshake_read_seq) {
883
0
        if (!s->server
884
0
                || msg_hdr.seq != 0
885
0
                || s->d1->handshake_read_seq != 1
886
0
                || wire[0] != SSL3_MT_CLIENT_HELLO
887
0
                || s->statem.hand_state != DTLS_ST_SW_HELLO_VERIFY_REQUEST) {
888
0
            *errtype = dtls1_process_out_of_seq_message(s, &msg_hdr);
889
0
            return 0;
890
0
        }
891
        /*
892
         * We received a ClientHello and sent back a HelloVerifyRequest. We
893
         * now seem to have received a retransmitted initial ClientHello. That
894
         * is allowed (possibly our HelloVerifyRequest got lost).
895
         */
896
0
        chretran = 1;
897
0
    }
898
899
0
    if (frag_len && frag_len < mlen) {
900
0
        *errtype = dtls1_reassemble_fragment(s, &msg_hdr);
901
0
        return 0;
902
0
    }
903
904
0
    if (!s->server
905
0
            && s->d1->r_msg_hdr.frag_off == 0
906
0
            && s->statem.hand_state != TLS_ST_OK
907
0
            && wire[0] == SSL3_MT_HELLO_REQUEST) {
908
        /*
909
         * The server may always send 'Hello Request' messages -- we are
910
         * doing a handshake anyway now, so ignore them if their format is
911
         * correct. Does not count for 'Finished' MAC.
912
         */
913
0
        if (wire[1] == 0 && wire[2] == 0 && wire[3] == 0) {
914
0
            if (s->msg_callback)
915
0
                s->msg_callback(0, s->version, SSL3_RT_HANDSHAKE,
916
0
                                wire, DTLS1_HM_HEADER_LENGTH, s,
917
0
                                s->msg_callback_arg);
918
919
0
            s->init_num = 0;
920
0
            goto redo;
921
0
        } else {                /* Incorrectly formatted Hello request */
922
923
0
            SSLfatal(s, SSL_AD_UNEXPECTED_MESSAGE, SSL_R_UNEXPECTED_MESSAGE);
924
0
            goto f_err;
925
0
        }
926
0
    }
927
928
0
    if (!dtls1_preprocess_fragment(s, &msg_hdr)) {
929
        /* SSLfatal() already called */
930
0
        goto f_err;
931
0
    }
932
933
0
    if (frag_len > 0) {
934
0
        unsigned char *p =
935
0
            (unsigned char *)s->init_buf->data + DTLS1_HM_HEADER_LENGTH;
936
937
0
        i = s->method->ssl_read_bytes(s, SSL3_RT_HANDSHAKE, NULL,
938
0
                                      &p[frag_off], frag_len, 0, &readbytes);
939
940
        /*
941
         * This shouldn't ever fail due to NBIO because we already checked
942
         * that we have enough data in the record
943
         */
944
0
        if (i <= 0) {
945
0
            s->rwstate = SSL_READING;
946
0
            *len = 0;
947
0
            return 0;
948
0
        }
949
0
    } else {
950
0
        readbytes = 0;
951
0
    }
952
953
    /*
954
     * XDTLS: an incorrectly formatted fragment should cause the handshake
955
     * to fail
956
     */
957
0
    if (readbytes != frag_len) {
958
0
        SSLfatal(s, SSL_AD_ILLEGAL_PARAMETER, SSL_R_BAD_LENGTH);
959
0
        goto f_err;
960
0
    }
961
962
0
    if (chretran) {
963
        /*
964
         * We got a new ClientHello with a message sequence of 0.
965
         * Reset the read/write sequences back to the beginning.
966
         * We process it like this is the first time we've seen a ClientHello
967
         * from the client.
968
         */
969
0
        s->d1->handshake_read_seq = 0;
970
0
        s->d1->next_handshake_write_seq = 0;
971
0
    }
972
973
    /*
974
     * Note that s->init_num is *not* used as current offset in
975
     * s->init_buf->data, but as a counter summing up fragments' lengths: as
976
     * soon as they sum up to handshake packet length, we assume we have got
977
     * all the fragments.
978
     */
979
0
    *len = s->init_num = frag_len;
980
0
    return 1;
981
982
0
 f_err:
983
0
    s->init_num = 0;
984
0
    *len = 0;
985
0
    return 0;
986
0
}
987
988
/*-
989
 * for these 2 messages, we need to
990
 * ssl->enc_read_ctx                    re-init
991
 * ssl->rlayer.read_sequence            zero
992
 * ssl->s3.read_mac_secret             re-init
993
 * ssl->session->read_sym_enc           assign
994
 * ssl->session->read_compression       assign
995
 * ssl->session->read_hash              assign
996
 */
997
int dtls_construct_change_cipher_spec(SSL *s, WPACKET *pkt)
998
0
{
999
0
    if (s->version == DTLS1_BAD_VER) {
1000
0
        s->d1->next_handshake_write_seq++;
1001
1002
0
        if (!WPACKET_put_bytes_u16(pkt, s->d1->handshake_write_seq)) {
1003
0
            SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
1004
0
            return 0;
1005
0
        }
1006
0
    }
1007
1008
0
    return 1;
1009
0
}
1010
1011
#ifndef OPENSSL_NO_SCTP
1012
/*
1013
 * Wait for a dry event. Should only be called at a point in the handshake
1014
 * where we are not expecting any data from the peer except an alert.
1015
 */
1016
WORK_STATE dtls_wait_for_dry(SSL *s)
1017
{
1018
    int ret, errtype;
1019
    size_t len;
1020
1021
    /* read app data until dry event */
1022
    ret = BIO_dgram_sctp_wait_for_dry(SSL_get_wbio(s));
1023
    if (ret < 0) {
1024
        SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
1025
        return WORK_ERROR;
1026
    }
1027
1028
    if (ret == 0) {
1029
        /*
1030
         * We're not expecting any more messages from the peer at this point -
1031
         * but we could get an alert. If an alert is waiting then we will never
1032
         * return successfully. Therefore we attempt to read a message. This
1033
         * should never succeed but will process any waiting alerts.
1034
         */
1035
        if (dtls_get_reassembled_message(s, &errtype, &len)) {
1036
            /* The call succeeded! This should never happen */
1037
            SSLfatal(s, SSL_AD_UNEXPECTED_MESSAGE, SSL_R_UNEXPECTED_MESSAGE);
1038
            return WORK_ERROR;
1039
        }
1040
1041
        s->s3.in_read_app_data = 2;
1042
        s->rwstate = SSL_READING;
1043
        BIO_clear_retry_flags(SSL_get_rbio(s));
1044
        BIO_set_retry_read(SSL_get_rbio(s));
1045
        return WORK_MORE_A;
1046
    }
1047
    return WORK_FINISHED_CONTINUE;
1048
}
1049
#endif
1050
1051
int dtls1_read_failed(SSL *s, int code)
1052
0
{
1053
0
    if (code > 0) {
1054
0
        SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
1055
0
        return 0;
1056
0
    }
1057
1058
0
    if (!dtls1_is_timer_expired(s) || ossl_statem_in_error(s)) {
1059
        /*
1060
         * not a timeout, none of our business, let higher layers handle
1061
         * this.  in fact it's probably an error
1062
         */
1063
0
        return code;
1064
0
    }
1065
    /* done, no need to send a retransmit */
1066
0
    if (!SSL_in_init(s))
1067
0
    {
1068
0
        BIO_set_flags(SSL_get_rbio(s), BIO_FLAGS_READ);
1069
0
        return code;
1070
0
    }
1071
1072
0
    return dtls1_handle_timeout(s);
1073
0
}
1074
1075
int dtls1_get_queue_priority(unsigned short seq, int is_ccs)
1076
0
{
1077
    /*
1078
     * The index of the retransmission queue actually is the message sequence
1079
     * number, since the queue only contains messages of a single handshake.
1080
     * However, the ChangeCipherSpec has no message sequence number and so
1081
     * using only the sequence will result in the CCS and Finished having the
1082
     * same index. To prevent this, the sequence number is multiplied by 2.
1083
     * In case of a CCS 1 is subtracted. This does not only differ CSS and
1084
     * Finished, it also maintains the order of the index (important for
1085
     * priority queues) and fits in the unsigned short variable.
1086
     */
1087
0
    return seq * 2 - is_ccs;
1088
0
}
1089
1090
int dtls1_retransmit_buffered_messages(SSL *s)
1091
0
{
1092
0
    pqueue *sent = s->d1->sent_messages;
1093
0
    piterator iter;
1094
0
    pitem *item;
1095
0
    hm_fragment *frag;
1096
0
    int found = 0;
1097
1098
0
    iter = pqueue_iterator(sent);
1099
1100
0
    for (item = pqueue_next(&iter); item != NULL; item = pqueue_next(&iter)) {
1101
0
        frag = (hm_fragment *)item->data;
1102
0
        if (dtls1_retransmit_message(s, (unsigned short)
1103
0
                                     dtls1_get_queue_priority
1104
0
                                     (frag->msg_header.seq,
1105
0
                                      frag->msg_header.is_ccs), &found) <= 0)
1106
0
            return -1;
1107
0
    }
1108
1109
0
    return 1;
1110
0
}
1111
1112
int dtls1_buffer_message(SSL *s, int is_ccs)
1113
0
{
1114
0
    pitem *item;
1115
0
    hm_fragment *frag;
1116
0
    unsigned char seq64be[8];
1117
1118
    /*
1119
     * this function is called immediately after a message has been
1120
     * serialized
1121
     */
1122
0
    if (!ossl_assert(s->init_off == 0))
1123
0
        return 0;
1124
1125
0
    frag = dtls1_hm_fragment_new(s->init_num, 0);
1126
0
    if (frag == NULL)
1127
0
        return 0;
1128
1129
0
    memcpy(frag->fragment, s->init_buf->data, s->init_num);
1130
1131
0
    if (is_ccs) {
1132
        /* For DTLS1_BAD_VER the header length is non-standard */
1133
0
        if (!ossl_assert(s->d1->w_msg_hdr.msg_len +
1134
0
                         ((s->version ==
1135
0
                           DTLS1_BAD_VER) ? 3 : DTLS1_CCS_HEADER_LENGTH)
1136
0
                         == (unsigned int)s->init_num)) {
1137
0
            dtls1_hm_fragment_free(frag);
1138
0
            return 0;
1139
0
        }
1140
0
    } else {
1141
0
        if (!ossl_assert(s->d1->w_msg_hdr.msg_len +
1142
0
                         DTLS1_HM_HEADER_LENGTH == (unsigned int)s->init_num)) {
1143
0
            dtls1_hm_fragment_free(frag);
1144
0
            return 0;
1145
0
        }
1146
0
    }
1147
1148
0
    frag->msg_header.msg_len = s->d1->w_msg_hdr.msg_len;
1149
0
    frag->msg_header.seq = s->d1->w_msg_hdr.seq;
1150
0
    frag->msg_header.type = s->d1->w_msg_hdr.type;
1151
0
    frag->msg_header.frag_off = 0;
1152
0
    frag->msg_header.frag_len = s->d1->w_msg_hdr.msg_len;
1153
0
    frag->msg_header.is_ccs = is_ccs;
1154
1155
    /* save current state */
1156
0
    frag->msg_header.saved_retransmit_state.enc_write_ctx = s->enc_write_ctx;
1157
0
    frag->msg_header.saved_retransmit_state.write_hash = s->write_hash;
1158
0
    frag->msg_header.saved_retransmit_state.compress = s->compress;
1159
0
    frag->msg_header.saved_retransmit_state.session = s->session;
1160
0
    frag->msg_header.saved_retransmit_state.epoch =
1161
0
        DTLS_RECORD_LAYER_get_w_epoch(&s->rlayer);
1162
1163
0
    memset(seq64be, 0, sizeof(seq64be));
1164
0
    seq64be[6] =
1165
0
        (unsigned
1166
0
         char)(dtls1_get_queue_priority(frag->msg_header.seq,
1167
0
                                        frag->msg_header.is_ccs) >> 8);
1168
0
    seq64be[7] =
1169
0
        (unsigned
1170
0
         char)(dtls1_get_queue_priority(frag->msg_header.seq,
1171
0
                                        frag->msg_header.is_ccs));
1172
1173
0
    item = pitem_new(seq64be, frag);
1174
0
    if (item == NULL) {
1175
0
        dtls1_hm_fragment_free(frag);
1176
0
        return 0;
1177
0
    }
1178
1179
0
    pqueue_insert(s->d1->sent_messages, item);
1180
0
    return 1;
1181
0
}
1182
1183
int dtls1_retransmit_message(SSL *s, unsigned short seq, int *found)
1184
0
{
1185
0
    int ret;
1186
    /* XDTLS: for now assuming that read/writes are blocking */
1187
0
    pitem *item;
1188
0
    hm_fragment *frag;
1189
0
    unsigned long header_length;
1190
0
    unsigned char seq64be[8];
1191
0
    struct dtls1_retransmit_state saved_state;
1192
1193
    /* XDTLS:  the requested message ought to be found, otherwise error */
1194
0
    memset(seq64be, 0, sizeof(seq64be));
1195
0
    seq64be[6] = (unsigned char)(seq >> 8);
1196
0
    seq64be[7] = (unsigned char)seq;
1197
1198
0
    item = pqueue_find(s->d1->sent_messages, seq64be);
1199
0
    if (item == NULL) {
1200
0
        SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR);
1201
0
        *found = 0;
1202
0
        return 0;
1203
0
    }
1204
1205
0
    *found = 1;
1206
0
    frag = (hm_fragment *)item->data;
1207
1208
0
    if (frag->msg_header.is_ccs)
1209
0
        header_length = DTLS1_CCS_HEADER_LENGTH;
1210
0
    else
1211
0
        header_length = DTLS1_HM_HEADER_LENGTH;
1212
1213
0
    memcpy(s->init_buf->data, frag->fragment,
1214
0
           frag->msg_header.msg_len + header_length);
1215
0
    s->init_num = frag->msg_header.msg_len + header_length;
1216
1217
0
    dtls1_set_message_header_int(s, frag->msg_header.type,
1218
0
                                 frag->msg_header.msg_len,
1219
0
                                 frag->msg_header.seq, 0,
1220
0
                                 frag->msg_header.frag_len);
1221
1222
    /* save current state */
1223
0
    saved_state.enc_write_ctx = s->enc_write_ctx;
1224
0
    saved_state.write_hash = s->write_hash;
1225
0
    saved_state.compress = s->compress;
1226
0
    saved_state.session = s->session;
1227
0
    saved_state.epoch = DTLS_RECORD_LAYER_get_w_epoch(&s->rlayer);
1228
1229
0
    s->d1->retransmitting = 1;
1230
1231
    /* restore state in which the message was originally sent */
1232
0
    s->enc_write_ctx = frag->msg_header.saved_retransmit_state.enc_write_ctx;
1233
0
    s->write_hash = frag->msg_header.saved_retransmit_state.write_hash;
1234
0
    s->compress = frag->msg_header.saved_retransmit_state.compress;
1235
0
    s->session = frag->msg_header.saved_retransmit_state.session;
1236
0
    DTLS_RECORD_LAYER_set_saved_w_epoch(&s->rlayer,
1237
0
                                        frag->msg_header.
1238
0
                                        saved_retransmit_state.epoch);
1239
1240
0
    ret = dtls1_do_write(s, frag->msg_header.is_ccs ?
1241
0
                         SSL3_RT_CHANGE_CIPHER_SPEC : SSL3_RT_HANDSHAKE);
1242
1243
    /* restore current state */
1244
0
    s->enc_write_ctx = saved_state.enc_write_ctx;
1245
0
    s->write_hash = saved_state.write_hash;
1246
0
    s->compress = saved_state.compress;
1247
0
    s->session = saved_state.session;
1248
0
    DTLS_RECORD_LAYER_set_saved_w_epoch(&s->rlayer, saved_state.epoch);
1249
1250
0
    s->d1->retransmitting = 0;
1251
1252
0
    (void)BIO_flush(s->wbio);
1253
0
    return ret;
1254
0
}
1255
1256
void dtls1_set_message_header(SSL *s,
1257
                              unsigned char mt, size_t len,
1258
                              size_t frag_off, size_t frag_len)
1259
0
{
1260
0
    if (frag_off == 0) {
1261
0
        s->d1->handshake_write_seq = s->d1->next_handshake_write_seq;
1262
0
        s->d1->next_handshake_write_seq++;
1263
0
    }
1264
1265
0
    dtls1_set_message_header_int(s, mt, len, s->d1->handshake_write_seq,
1266
0
                                 frag_off, frag_len);
1267
0
}
1268
1269
/* don't actually do the writing, wait till the MTU has been retrieved */
1270
static void
1271
dtls1_set_message_header_int(SSL *s, unsigned char mt,
1272
                             size_t len, unsigned short seq_num,
1273
                             size_t frag_off, size_t frag_len)
1274
0
{
1275
0
    struct hm_header_st *msg_hdr = &s->d1->w_msg_hdr;
1276
1277
0
    msg_hdr->type = mt;
1278
0
    msg_hdr->msg_len = len;
1279
0
    msg_hdr->seq = seq_num;
1280
0
    msg_hdr->frag_off = frag_off;
1281
0
    msg_hdr->frag_len = frag_len;
1282
0
}
1283
1284
static void
1285
dtls1_fix_message_header(SSL *s, size_t frag_off, size_t frag_len)
1286
0
{
1287
0
    struct hm_header_st *msg_hdr = &s->d1->w_msg_hdr;
1288
1289
0
    msg_hdr->frag_off = frag_off;
1290
0
    msg_hdr->frag_len = frag_len;
1291
0
}
1292
1293
static unsigned char *dtls1_write_message_header(SSL *s, unsigned char *p)
1294
0
{
1295
0
    struct hm_header_st *msg_hdr = &s->d1->w_msg_hdr;
1296
1297
0
    *p++ = msg_hdr->type;
1298
0
    l2n3(msg_hdr->msg_len, p);
1299
1300
0
    s2n(msg_hdr->seq, p);
1301
0
    l2n3(msg_hdr->frag_off, p);
1302
0
    l2n3(msg_hdr->frag_len, p);
1303
1304
0
    return p;
1305
0
}
1306
1307
void dtls1_get_message_header(unsigned char *data, struct hm_header_st *msg_hdr)
1308
0
{
1309
0
    memset(msg_hdr, 0, sizeof(*msg_hdr));
1310
0
    msg_hdr->type = *(data++);
1311
0
    n2l3(data, msg_hdr->msg_len);
1312
1313
0
    n2s(data, msg_hdr->seq);
1314
0
    n2l3(data, msg_hdr->frag_off);
1315
0
    n2l3(data, msg_hdr->frag_len);
1316
0
}
1317
1318
int dtls1_set_handshake_header(SSL *s, WPACKET *pkt, int htype)
1319
0
{
1320
0
    unsigned char *header;
1321
1322
0
    if (htype == SSL3_MT_CHANGE_CIPHER_SPEC) {
1323
0
        s->d1->handshake_write_seq = s->d1->next_handshake_write_seq;
1324
0
        dtls1_set_message_header_int(s, SSL3_MT_CCS, 0,
1325
0
                                     s->d1->handshake_write_seq, 0, 0);
1326
0
        if (!WPACKET_put_bytes_u8(pkt, SSL3_MT_CCS))
1327
0
            return 0;
1328
0
    } else {
1329
0
        dtls1_set_message_header(s, htype, 0, 0, 0);
1330
        /*
1331
         * We allocate space at the start for the message header. This gets
1332
         * filled in later
1333
         */
1334
0
        if (!WPACKET_allocate_bytes(pkt, DTLS1_HM_HEADER_LENGTH, &header)
1335
0
                || !WPACKET_start_sub_packet(pkt))
1336
0
            return 0;
1337
0
    }
1338
1339
0
    return 1;
1340
0
}
1341
1342
int dtls1_close_construct_packet(SSL *s, WPACKET *pkt, int htype)
1343
0
{
1344
0
    size_t msglen;
1345
1346
0
    if ((htype != SSL3_MT_CHANGE_CIPHER_SPEC && !WPACKET_close(pkt))
1347
0
            || !WPACKET_get_length(pkt, &msglen)
1348
0
            || msglen > INT_MAX)
1349
0
        return 0;
1350
1351
0
    if (htype != SSL3_MT_CHANGE_CIPHER_SPEC) {
1352
0
        s->d1->w_msg_hdr.msg_len = msglen - DTLS1_HM_HEADER_LENGTH;
1353
0
        s->d1->w_msg_hdr.frag_len = msglen - DTLS1_HM_HEADER_LENGTH;
1354
0
    }
1355
0
    s->init_num = (int)msglen;
1356
0
    s->init_off = 0;
1357
1358
0
    if (htype != DTLS1_MT_HELLO_VERIFY_REQUEST) {
1359
        /* Buffer the message to handle re-xmits */
1360
0
        if (!dtls1_buffer_message(s, htype == SSL3_MT_CHANGE_CIPHER_SPEC
1361
0
                                     ? 1 : 0))
1362
0
            return 0;
1363
0
    }
1364
1365
0
    return 1;
1366
0
}