Coverage Report

Created: 2026-08-13 06:20

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/libpcap/sf-pcapng.c
Line
Count
Source
1
/*
2
 * Copyright (c) 1993, 1994, 1995, 1996, 1997
3
 *  The Regents of the University of California.  All rights reserved.
4
 *
5
 * Redistribution and use in source and binary forms, with or without
6
 * modification, are permitted provided that: (1) source code distributions
7
 * retain the above copyright notice and this paragraph in its entirety, (2)
8
 * distributions including binary code include the above copyright notice and
9
 * this paragraph in its entirety in the documentation or other materials
10
 * provided with the distribution, and (3) all advertising materials mentioning
11
 * features or use of this software display the following acknowledgement:
12
 * ``This product includes software developed by the University of California,
13
 * Lawrence Berkeley Laboratory and its contributors.'' Neither the name of
14
 * the University nor the names of its contributors may be used to endorse
15
 * or promote products derived from this software without specific prior
16
 * written permission.
17
 * THIS SOFTWARE IS PROVIDED ``AS IS'' AND WITHOUT ANY EXPRESS OR IMPLIED
18
 * WARRANTIES, INCLUDING, WITHOUT LIMITATION, THE IMPLIED WARRANTIES OF
19
 * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE.
20
 *
21
 * sf-pcapng.c - pcapng-file-format-specific code from savefile.c
22
 */
23
24
#include <config.h>
25
26
#include <pcap/pcap-inttypes.h>
27
28
#include <errno.h>
29
#include <memory.h>
30
#include <stdio.h>
31
#include <stdlib.h>
32
#include <string.h>
33
34
#include "pcap-int.h"
35
#include "pcap-util.h"
36
37
#include "pcap-common.h"
38
39
#ifdef HAVE_OS_PROTO_H
40
#include "os-proto.h"
41
#endif
42
43
#include "sf-pcapng.h"
44
45
/*
46
 * Block types.
47
 */
48
49
/*
50
 * Common part at the beginning of all blocks.
51
 */
52
struct block_header {
53
  bpf_u_int32 block_type;
54
  bpf_u_int32 total_length;
55
};
56
57
/*
58
 * Common trailer at the end of all blocks.
59
 */
60
struct block_trailer {
61
  bpf_u_int32 total_length;
62
};
63
64
/*
65
 * Common options.
66
 */
67
71
#define OPT_ENDOFOPT  0  /* end of options */
68
#define OPT_COMMENT 1 /* comment string */
69
70
/*
71
 * Option header.
72
 */
73
struct option_header {
74
  u_short   option_code;
75
  u_short   option_length;
76
};
77
78
/*
79
 * Structures for the part of each block type following the common
80
 * part.
81
 */
82
83
/*
84
 * Section Header Block.
85
 */
86
283
#define BT_SHB      0x0A0D0D0A
87
167
#define BT_SHB_INSANE_MAX       1024U*1024U*1U  /* 1MB should be enough */
88
struct section_header_block {
89
  bpf_u_int32 byte_order_magic;
90
  u_short   major_version;
91
  u_short   minor_version;
92
  uint64_t  section_length;
93
  /* followed by options and trailer */
94
};
95
96
/*
97
 * Byte-order magic value.
98
 */
99
338
#define BYTE_ORDER_MAGIC  0x1A2B3C4D
100
101
/*
102
 * Current version number.  If major_version isn't PCAP_NG_VERSION_MAJOR,
103
 * or if minor_version isn't PCAP_NG_VERSION_MINOR or 2, that means that
104
 * this code can't read the file.
105
 */
106
272
#define PCAP_NG_VERSION_MAJOR 1
107
258
#define PCAP_NG_VERSION_MINOR 0
108
109
/*
110
 * Interface Description Block.
111
 */
112
84
#define BT_IDB      0x00000001
113
114
struct interface_description_block {
115
  u_short   linktype;
116
  u_short   reserved;
117
  bpf_u_int32 snaplen;
118
  /* followed by options and trailer */
119
};
120
121
/*
122
 * Options in the IDB.
123
 */
124
#define IF_NAME   2 /* interface name string */
125
#define IF_DESCRIPTION  3 /* interface description string */
126
#define IF_IPV4ADDR 4 /* interface's IPv4 address and netmask */
127
#define IF_IPV6ADDR 5 /* interface's IPv6 address and prefix length */
128
#define IF_MACADDR  6 /* interface's MAC address */
129
#define IF_EUIADDR  7 /* interface's EUI address */
130
#define IF_SPEED  8 /* interface's speed, in bits/s */
131
10
#define IF_TSRESOL  9  /* interface's time stamp resolution */
132
#define IF_TZONE  10  /* interface's time zone */
133
#define IF_FILTER 11  /* filter used when capturing on interface */
134
#define IF_OS   12  /* string OS on which capture on this interface was done */
135
#define IF_FCSLEN 13  /* FCS length for this interface */
136
1
#define IF_TSOFFSET 14  /* time stamp offset for this interface */
137
138
/*
139
 * Enhanced Packet Block.
140
 */
141
11
#define BT_EPB      0x00000006
142
143
struct enhanced_packet_block {
144
  bpf_u_int32 interface_id;
145
  bpf_u_int32 timestamp_high;
146
  bpf_u_int32 timestamp_low;
147
  bpf_u_int32 caplen;
148
  bpf_u_int32 len;
149
  /* followed by packet data, options, and trailer */
150
};
151
152
/*
153
 * Simple Packet Block.
154
 */
155
325
#define BT_SPB      0x00000003
156
157
struct simple_packet_block {
158
  bpf_u_int32 len;
159
  /* followed by packet data and trailer */
160
};
161
162
/*
163
 * Packet Block.
164
 */
165
7
#define BT_PB     0x00000002
166
167
struct packet_block {
168
  u_short   interface_id;
169
  u_short   drops_count;
170
  bpf_u_int32 timestamp_high;
171
  bpf_u_int32 timestamp_low;
172
  bpf_u_int32 caplen;
173
  bpf_u_int32 len;
174
  /* followed by packet data, options, and trailer */
175
};
176
177
/*
178
 * Block cursor - used when processing the contents of a block.
179
 * Contains a pointer into the data being processed and a count
180
 * of bytes remaining in the block.
181
 */
182
struct block_cursor {
183
  u_char    *data;
184
  size_t    data_remaining;
185
  bpf_u_int32 block_type;
186
};
187
188
typedef enum {
189
  PASS_THROUGH,
190
  SCALE_UP_DEC,
191
  SCALE_DOWN_DEC,
192
  SCALE_UP_BIN,
193
  SCALE_DOWN_BIN
194
} tstamp_scale_type_t;
195
196
/*
197
 * Per-interface information.
198
 */
199
struct pcap_ng_if {
200
  uint32_t snaplen;   /* snapshot length */
201
  uint64_t tsresol;   /* time stamp resolution */
202
  tstamp_scale_type_t scale_type; /* how to scale */
203
  uint64_t scale_factor;    /* time stamp scale factor for power-of-10 tsresol */
204
  int64_t tsoffset;   /* time stamp offset */
205
};
206
207
/*
208
 * Per-pcap_t private data.
209
 *
210
 * max_blocksize is the maximum size of a block that we'll accept.  We
211
 * reject blocks bigger than this, so we don't consume too much memory
212
 * with a truly huge block.  It can change as we see IDBs with different
213
 * link-layer header types.  (Currently, we don't support IDBs with
214
 * different link-layer header types, but we will support it in the
215
 * future, when we offer file-reading APIs that support it.)
216
 *
217
 * XXX - that's an issue on ILP32 platforms, where the maximum block
218
 * size of 2^31-1 would eat all but one byte of the entire address space.
219
 * It's less of an issue on ILP64/LLP64 platforms, but the actual size
220
 * of the address space may be limited by 1) the number of *significant*
221
 * address bits (currently, x86-64 only supports 48 bits of address), 2)
222
 * any limitations imposed by the operating system; 3) any limitations
223
 * imposed by the amount of available backing store for anonymous pages,
224
 * so we impose a limit regardless of the size of a pointer.
225
 */
226
struct pcap_ng_sf {
227
  uint64_t user_tsresol;    /* time stamp resolution requested by the user */
228
  u_int max_blocksize;    /* don't grow buffer size past this */
229
  bpf_u_int32 ifcount;    /* number of interfaces seen in this capture */
230
  bpf_u_int32 ifaces_size;  /* size of array below */
231
  struct pcap_ng_if *ifaces;  /* array of interface information */
232
};
233
234
/*
235
 * The maximum block size we start with; we use an arbitrary value of
236
 * 16 MiB.
237
 */
238
146
#define INITIAL_MAX_BLOCKSIZE (16*1024*1024)
239
240
/*
241
 * Maximum block size for a given maximum snapshot length; we define it
242
 * as the size of an EPB with a max_snaplen-sized packet and 128KB of
243
 * options.
244
 */
245
#define MAX_BLOCKSIZE_FOR_SNAPLEN(max_snaplen) \
246
64
  (sizeof (struct block_header) + \
247
64
   sizeof (struct enhanced_packet_block) + \
248
64
   (max_snaplen) + 131072 + \
249
64
   sizeof (struct block_trailer))
250
251
static void pcap_ng_cleanup(pcap_t *p);
252
static int pcap_ng_next_packet(pcap_t *p, struct pcap_pkthdr *hdr,
253
    u_char **data);
254
255
static int
256
read_bytes(FILE *fp, void *buf, size_t bytes_to_read, int fail_on_eof,
257
    char *errbuf)
258
1.29k
{
259
1.29k
  size_t amt_read;
260
261
1.29k
  amt_read = fread(buf, 1, bytes_to_read, fp);
262
1.29k
  if (amt_read != bytes_to_read) {
263
44
    if (ferror(fp)) {
264
0
      pcapint_fmt_errmsg_for_errno(errbuf, PCAP_ERRBUF_SIZE,
265
0
          errno, "error reading dump file");
266
44
    } else {
267
44
      if (amt_read == 0 && !fail_on_eof)
268
1
        return (0);  /* EOF */
269
43
      snprintf(errbuf, PCAP_ERRBUF_SIZE,
270
43
          "truncated pcapng dump file; tried to read %zu bytes, only got %zu",
271
43
          bytes_to_read, amt_read);
272
43
    }
273
43
    return (-1);
274
44
  }
275
1.24k
  return (1);
276
1.29k
}
277
278
static int
279
read_block(FILE *fp, pcap_t *p, struct block_cursor *cursor, char *errbuf)
280
596
{
281
596
  struct pcap_ng_sf *ps;
282
596
  int status;
283
596
  struct block_header bhdr;
284
596
  struct block_trailer *btrlr;
285
596
  u_char *bdata;
286
596
  size_t data_remaining;
287
288
596
  ps = p->priv;
289
290
596
  status = read_bytes(fp, &bhdr, sizeof(bhdr), 0, errbuf);
291
596
  if (status <= 0)
292
9
    return (status);  /* error or EOF */
293
294
587
  if (p->swapped) {
295
577
    bhdr.block_type = SWAPLONG(bhdr.block_type);
296
577
    bhdr.total_length = SWAPLONG(bhdr.total_length);
297
577
  }
298
299
  /*
300
   * Is this block "too small" - i.e., is it shorter than a block
301
   * header plus a block trailer?
302
   */
303
587
  if (bhdr.total_length < sizeof(struct block_header) +
304
587
      sizeof(struct block_trailer)) {
305
6
    snprintf(errbuf, PCAP_ERRBUF_SIZE,
306
6
        "block in pcapng dump file has a length of %u < %zu",
307
6
        bhdr.total_length,
308
6
        sizeof(struct block_header) + sizeof(struct block_trailer));
309
6
    return (-1);
310
6
  }
311
312
  /*
313
   * Is the block total length a multiple of 4?
314
   */
315
581
  if ((bhdr.total_length % 4) != 0) {
316
    /*
317
     * No.  Report that as an error.
318
     */
319
18
    snprintf(errbuf, PCAP_ERRBUF_SIZE,
320
18
        "block in pcapng dump file has a length of %u that is not a multiple of 4",
321
18
        bhdr.total_length);
322
18
    return (-1);
323
18
  }
324
325
  /*
326
   * Is the buffer big enough?
327
   */
328
563
  if (p->bufsize < bhdr.total_length) {
329
    /*
330
     * No - make it big enough, unless it's too big, in
331
     * which case we fail.
332
     */
333
36
    void *bigger_buffer;
334
335
36
    if (bhdr.total_length > ps->max_blocksize) {
336
12
      snprintf(errbuf, PCAP_ERRBUF_SIZE, "pcapng block size %u > maximum %u", bhdr.total_length,
337
12
          ps->max_blocksize);
338
12
      return (-1);
339
12
    }
340
24
    bigger_buffer = realloc(p->buffer, bhdr.total_length);
341
24
    if (bigger_buffer == NULL) {
342
0
      snprintf(errbuf, PCAP_ERRBUF_SIZE, "out of memory");
343
0
      return (-1);
344
0
    }
345
24
    p->buffer = bigger_buffer;
346
24
  }
347
348
  /*
349
   * Copy the stuff we've read to the buffer, and read the rest
350
   * of the block.
351
   */
352
551
  memcpy(p->buffer, &bhdr, sizeof(bhdr));
353
551
  bdata = p->buffer + sizeof(bhdr);
354
551
  data_remaining = bhdr.total_length - sizeof(bhdr);
355
551
  if (read_bytes(fp, bdata, data_remaining, 1, errbuf) == -1)
356
25
    return (-1);
357
358
  /*
359
   * Get the block size from the trailer.
360
   */
361
526
  btrlr = (struct block_trailer *)(bdata + data_remaining - sizeof (struct block_trailer));
362
526
  if (p->swapped)
363
523
    btrlr->total_length = SWAPLONG(btrlr->total_length);
364
365
  /*
366
   * Is the total length from the trailer the same as the total
367
   * length from the header?
368
   */
369
526
  if (bhdr.total_length != btrlr->total_length) {
370
    /*
371
     * No.
372
     */
373
22
    snprintf(errbuf, PCAP_ERRBUF_SIZE,
374
22
        "block total length in header %u and trailer %u don't match",
375
22
        bhdr.total_length, btrlr->total_length);
376
22
    return (-1);
377
22
  }
378
379
  /*
380
   * Initialize the cursor.
381
   */
382
504
  cursor->data = bdata;
383
504
  cursor->data_remaining = data_remaining - sizeof(struct block_trailer);
384
504
  cursor->block_type = bhdr.block_type;
385
504
  return (1);
386
526
}
387
388
static void *
389
get_from_block_data(struct block_cursor *cursor, size_t chunk_size,
390
    char *errbuf)
391
1.15k
{
392
1.15k
  void *data;
393
394
  /*
395
   * Make sure we have the specified amount of data remaining in
396
   * the block data.
397
   */
398
1.15k
  if (cursor->data_remaining < chunk_size) {
399
9
    snprintf(errbuf, PCAP_ERRBUF_SIZE,
400
9
        "block of type %u in pcapng dump file is too short",
401
9
        cursor->block_type);
402
9
    return (NULL);
403
9
  }
404
405
  /*
406
   * Return the current pointer, and skip past the chunk.
407
   */
408
1.14k
  data = cursor->data;
409
1.14k
  cursor->data += chunk_size;
410
1.14k
  cursor->data_remaining -= chunk_size;
411
1.14k
  return (data);
412
1.15k
}
413
414
static struct option_header *
415
get_opthdr_from_block_data(pcap_t *p, struct block_cursor *cursor, char *errbuf)
416
195
{
417
195
  struct option_header *opthdr;
418
419
195
  opthdr = get_from_block_data(cursor, sizeof(*opthdr), errbuf);
420
195
  if (opthdr == NULL) {
421
    /*
422
     * Option header is cut short.
423
     */
424
0
    return (NULL);
425
0
  }
426
427
  /*
428
   * Byte-swap it if necessary.
429
   */
430
195
  if (p->swapped) {
431
195
    opthdr->option_code = SWAPSHORT(opthdr->option_code);
432
195
    opthdr->option_length = SWAPSHORT(opthdr->option_length);
433
195
  }
434
435
195
  return (opthdr);
436
195
}
437
438
static void *
439
get_optvalue_from_block_data(struct block_cursor *cursor,
440
    struct option_header *opthdr, char *errbuf)
441
195
{
442
195
  size_t padded_option_len;
443
195
  void *optvalue;
444
445
  /* Pad option length to 4-byte boundary */
446
195
  padded_option_len = opthdr->option_length;
447
195
  padded_option_len = ((padded_option_len + 3)/4)*4;
448
449
195
  optvalue = get_from_block_data(cursor, padded_option_len, errbuf);
450
195
  if (optvalue == NULL) {
451
    /*
452
     * Option value is cut short.
453
     */
454
6
    return (NULL);
455
6
  }
456
457
189
  return (optvalue);
458
195
}
459
460
static int
461
process_idb_options(pcap_t *p, struct block_cursor *cursor, uint64_t *tsresol,
462
    int64_t *tsoffset, int *is_binary, char *errbuf)
463
82
{
464
82
  struct option_header *opthdr;
465
82
  void *optvalue;
466
82
  int saw_tsresol, saw_tsoffset;
467
82
  uint8_t tsresol_opt;
468
82
  u_int i;
469
470
82
  saw_tsresol = 0;
471
82
  saw_tsoffset = 0;
472
195
  while (cursor->data_remaining != 0) {
473
    /*
474
     * Get the option header.
475
     */
476
195
    opthdr = get_opthdr_from_block_data(p, cursor, errbuf);
477
195
    if (opthdr == NULL) {
478
      /*
479
       * Option header is cut short.
480
       */
481
0
      return (-1);
482
0
    }
483
484
    /*
485
     * Get option value.
486
     */
487
195
    optvalue = get_optvalue_from_block_data(cursor, opthdr,
488
195
        errbuf);
489
195
    if (optvalue == NULL) {
490
      /*
491
       * Option value is cut short.
492
       */
493
6
      return (-1);
494
6
    }
495
496
189
    switch (opthdr->option_code) {
497
498
71
    case OPT_ENDOFOPT:
499
71
      if (opthdr->option_length != 0) {
500
2
        snprintf(errbuf, PCAP_ERRBUF_SIZE,
501
2
            "Interface Description Block has opt_endofopt option with length %u != 0",
502
2
            opthdr->option_length);
503
2
        return (-1);
504
2
      }
505
69
      goto done;
506
507
69
    case IF_TSRESOL:
508
10
      if (opthdr->option_length != 1) {
509
0
        snprintf(errbuf, PCAP_ERRBUF_SIZE,
510
0
            "Interface Description Block has if_tsresol option with length %u != 1",
511
0
            opthdr->option_length);
512
0
        return (-1);
513
0
      }
514
10
      if (saw_tsresol) {
515
0
        snprintf(errbuf, PCAP_ERRBUF_SIZE,
516
0
            "Interface Description Block has more than one if_tsresol option");
517
0
        return (-1);
518
0
      }
519
10
      saw_tsresol = 1;
520
10
      memcpy(&tsresol_opt, optvalue, sizeof(tsresol_opt));
521
10
      if (tsresol_opt & 0x80) {
522
        /*
523
         * Resolution is negative power of 2.
524
         */
525
6
        uint8_t tsresol_shift = (tsresol_opt & 0x7F);
526
527
6
        if (tsresol_shift > 63) {
528
          /*
529
           * Resolution is too high; 2^-{res}
530
           * won't fit in a 64-bit value.
531
           */
532
3
          snprintf(errbuf, PCAP_ERRBUF_SIZE,
533
3
              "Interface Description Block if_tsresol option resolution 2^-%u is too high",
534
3
              tsresol_shift);
535
3
          return (-1);
536
3
        }
537
3
        *is_binary = 1;
538
3
        *tsresol = ((uint64_t)1) << tsresol_shift;
539
4
      } else {
540
        /*
541
         * Resolution is negative power of 10.
542
         */
543
4
        if (tsresol_opt > 19) {
544
          /*
545
           * Resolution is too high; 2^-{res}
546
           * won't fit in a 64-bit value (the
547
           * largest power of 10 that fits
548
           * in a 64-bit value is 10^19, as
549
           * the largest 64-bit unsigned
550
           * value is ~1.8*10^19).
551
           */
552
1
          snprintf(errbuf, PCAP_ERRBUF_SIZE,
553
1
              "Interface Description Block if_tsresol option resolution 10^-%u is too high",
554
1
              tsresol_opt);
555
1
          return (-1);
556
1
        }
557
3
        *is_binary = 0;
558
3
        *tsresol = 1;
559
19
        for (i = 0; i < tsresol_opt; i++)
560
16
          *tsresol *= 10;
561
3
      }
562
6
      break;
563
564
6
    case IF_TSOFFSET:
565
1
      if (opthdr->option_length != 8) {
566
1
        snprintf(errbuf, PCAP_ERRBUF_SIZE,
567
1
            "Interface Description Block has if_tsoffset option with length %u != 8",
568
1
            opthdr->option_length);
569
1
        return (-1);
570
1
      }
571
0
      if (saw_tsoffset) {
572
0
        snprintf(errbuf, PCAP_ERRBUF_SIZE,
573
0
            "Interface Description Block has more than one if_tsoffset option");
574
0
        return (-1);
575
0
      }
576
0
      saw_tsoffset = 1;
577
0
      memcpy(tsoffset, optvalue, sizeof(*tsoffset));
578
0
      if (p->swapped)
579
0
        *tsoffset = SWAPLL(*tsoffset);
580
0
      break;
581
582
107
    default:
583
107
      break;
584
189
    }
585
189
  }
586
587
69
done:
588
69
  return (0);
589
82
}
590
591
static int
592
add_interface(pcap_t *p, struct interface_description_block *idbp,
593
    struct block_cursor *cursor, char *errbuf)
594
82
{
595
82
  struct pcap_ng_sf *ps;
596
82
  uint64_t tsresol;
597
82
  int64_t tsoffset;
598
82
  int is_binary;
599
600
82
  ps = p->priv;
601
602
  /*
603
   * Count this interface.
604
   */
605
82
  ps->ifcount++;
606
607
  /*
608
   * Grow the array of per-interface information as necessary.
609
   */
610
82
  if (ps->ifcount > ps->ifaces_size) {
611
    /*
612
     * We need to grow the array.
613
     */
614
81
    bpf_u_int32 new_ifaces_size;
615
81
    struct pcap_ng_if *new_ifaces;
616
617
81
    if (ps->ifaces_size == 0) {
618
      /*
619
       * It's currently empty.
620
       *
621
       * (The Clang static analyzer doesn't do enough,
622
       * err, umm, dataflow *analysis* to realize that
623
       * ps->ifaces_size == 0 if ps->ifaces == NULL,
624
       * and so complains about a possible zero argument
625
       * to realloc(), so we check for the former
626
       * condition to shut it up.
627
       *
628
       * However, it doesn't complain that one of the
629
       * multiplications below could overflow, which is
630
       * a real, albeit extremely unlikely, problem (you'd
631
       * need a pcapng file with tens of millions of
632
       * interfaces).)
633
       */
634
75
      new_ifaces_size = 1;
635
75
      new_ifaces = malloc(sizeof (struct pcap_ng_if));
636
75
    } else {
637
      /*
638
       * It's not currently empty; double its size.
639
       * (Perhaps overkill once we have a lot of interfaces.)
640
       *
641
       * Check for overflow if we double it.
642
       */
643
6
      if (ps->ifaces_size * 2 < ps->ifaces_size) {
644
        /*
645
         * The maximum number of interfaces before
646
         * ps->ifaces_size overflows is the largest
647
         * possible 32-bit power of 2, as we do
648
         * size doubling.
649
         */
650
0
        snprintf(errbuf, PCAP_ERRBUF_SIZE,
651
0
            "more than %u interfaces in the file",
652
0
            0x80000000U);
653
0
        return (0);
654
0
      }
655
656
      /*
657
       * ps->ifaces_size * 2 doesn't overflow, so it's
658
       * safe to multiply.
659
       */
660
6
      new_ifaces_size = ps->ifaces_size * 2;
661
662
      /*
663
       * Now make sure that's not so big that it overflows
664
       * if we multiply by sizeof (struct pcap_ng_if).
665
       *
666
       * That can happen on 32-bit platforms, with a 32-bit
667
       * size_t; it shouldn't happen on 64-bit platforms,
668
       * with a 64-bit size_t, as new_ifaces_size is
669
       * 32 bits.
670
       */
671
6
      if (new_ifaces_size * sizeof (struct pcap_ng_if) < new_ifaces_size) {
672
        /*
673
         * As this fails only with 32-bit size_t,
674
         * the multiplication was 32x32->32, and
675
         * the largest 32-bit value that can safely
676
         * be multiplied by sizeof (struct pcap_ng_if)
677
         * without overflow is the largest 32-bit
678
         * (unsigned) value divided by
679
         * sizeof (struct pcap_ng_if).
680
         */
681
0
        snprintf(errbuf, PCAP_ERRBUF_SIZE,
682
0
            "more than %u interfaces in the file",
683
0
            0xFFFFFFFFU / ((u_int)sizeof (struct pcap_ng_if)));
684
0
        return (0);
685
0
      }
686
6
      new_ifaces = realloc(ps->ifaces, new_ifaces_size * sizeof (struct pcap_ng_if));
687
6
    }
688
81
    if (new_ifaces == NULL) {
689
      /*
690
       * We ran out of memory.
691
       * Give up.
692
       */
693
0
      snprintf(errbuf, PCAP_ERRBUF_SIZE,
694
0
          "out of memory for per-interface information (%u interfaces)",
695
0
          ps->ifcount);
696
0
      return (0);
697
0
    }
698
81
    ps->ifaces_size = new_ifaces_size;
699
81
    ps->ifaces = new_ifaces;
700
81
  }
701
702
82
  ps->ifaces[ps->ifcount - 1].snaplen = idbp->snaplen;
703
704
  /*
705
   * Set the default time stamp resolution and offset.
706
   */
707
82
  tsresol = 1000000;  /* microsecond resolution */
708
82
  is_binary = 0;    /* which is a power of 10 */
709
82
  tsoffset = 0;   /* absolute timestamps */
710
711
  /*
712
   * Now look for various time stamp options, so we know
713
   * how to interpret the time stamps for this interface.
714
   */
715
82
  if (process_idb_options(p, cursor, &tsresol, &tsoffset, &is_binary,
716
82
      errbuf) == -1)
717
13
    return (0);
718
719
69
  ps->ifaces[ps->ifcount - 1].tsresol = tsresol;
720
69
  ps->ifaces[ps->ifcount - 1].tsoffset = tsoffset;
721
722
  /*
723
   * Determine whether we're scaling up or down or not
724
   * at all for this interface.
725
   */
726
69
  if (tsresol == ps->user_tsresol) {
727
    /*
728
     * The resolution is the resolution the user wants,
729
     * so we don't have to do scaling.
730
     */
731
65
    ps->ifaces[ps->ifcount - 1].scale_type = PASS_THROUGH;
732
65
  } else if (tsresol > ps->user_tsresol) {
733
    /*
734
     * The resolution is greater than what the user wants,
735
     * so we have to scale the timestamps down.
736
     */
737
2
    if (is_binary)
738
1
      ps->ifaces[ps->ifcount - 1].scale_type = SCALE_DOWN_BIN;
739
1
    else {
740
      /*
741
       * Calculate the scale factor.
742
       */
743
1
      ps->ifaces[ps->ifcount - 1].scale_factor = tsresol/ps->user_tsresol;
744
1
      ps->ifaces[ps->ifcount - 1].scale_type = SCALE_DOWN_DEC;
745
1
    }
746
2
  } else {
747
    /*
748
     * The resolution is less than what the user wants,
749
     * so we have to scale the timestamps up.
750
     */
751
2
    if (is_binary)
752
1
      ps->ifaces[ps->ifcount - 1].scale_type = SCALE_UP_BIN;
753
1
    else {
754
      /*
755
       * Calculate the scale factor.
756
       */
757
1
      ps->ifaces[ps->ifcount - 1].scale_factor = ps->user_tsresol/tsresol;
758
1
      ps->ifaces[ps->ifcount - 1].scale_type = SCALE_UP_DEC;
759
1
    }
760
2
  }
761
69
  return (1);
762
82
}
763
764
/*
765
 * Check whether this is a pcapng savefile and, if it is, extract the
766
 * relevant information from the header.
767
 */
768
pcap_t *
769
pcap_ng_check_header(const uint8_t *magic, FILE *fp, u_int precision,
770
    char *errbuf, int *err)
771
278
{
772
278
  bpf_u_int32 magic_int;
773
278
  size_t amt_read;
774
278
  bpf_u_int32 total_length;
775
278
  bpf_u_int32 byte_order_magic;
776
278
  struct block_header *bhdrp;
777
278
  struct section_header_block *shbp;
778
278
  pcap_t *p;
779
278
  int swapped = 0;
780
278
  struct pcap_ng_sf *ps;
781
278
  int status;
782
278
  struct block_cursor cursor;
783
278
  struct interface_description_block *idbp;
784
785
  /*
786
   * Assume no read errors.
787
   */
788
278
  *err = 0;
789
790
  /*
791
   * Check whether the first 4 bytes of the file are the block
792
   * type for a pcapng savefile.
793
   */
794
278
  memcpy(&magic_int, magic, sizeof(magic_int));
795
278
  if (magic_int != BT_SHB) {
796
    /*
797
     * XXX - check whether this looks like what the block
798
     * type would be after being munged by mapping between
799
     * UN*X and DOS/Windows text file format and, if it
800
     * does, look for the byte-order magic number in
801
     * the appropriate place and, if we find it, report
802
     * this as possibly being a pcapng file transferred
803
     * between UN*X and Windows in text file format?
804
     */
805
97
    return (NULL);  /* nope */
806
97
  }
807
808
  /*
809
   * OK, they are.  However, that's just \n\r\r\n, so it could,
810
   * conceivably, be an ordinary text file.
811
   *
812
   * It could not, however, conceivably be any other type of
813
   * capture file, so we can read the rest of the putative
814
   * Section Header Block; put the block type in the common
815
   * header, read the rest of the common header and the
816
   * fixed-length portion of the SHB, and look for the byte-order
817
   * magic value.
818
   */
819
181
  amt_read = fread(&total_length, 1, sizeof(total_length), fp);
820
181
  if (amt_read < sizeof(total_length)) {
821
0
    if (ferror(fp)) {
822
0
      pcapint_fmt_errmsg_for_errno(errbuf, PCAP_ERRBUF_SIZE,
823
0
          errno, "error reading dump file");
824
0
      *err = 1;
825
0
      return (NULL);  /* fail */
826
0
    }
827
828
    /*
829
     * Possibly a weird short text file, so just say
830
     * "not pcapng".
831
     */
832
0
    return (NULL);
833
0
  }
834
181
  amt_read = fread(&byte_order_magic, 1, sizeof(byte_order_magic), fp);
835
181
  if (amt_read < sizeof(byte_order_magic)) {
836
0
    if (ferror(fp)) {
837
0
      pcapint_fmt_errmsg_for_errno(errbuf, PCAP_ERRBUF_SIZE,
838
0
          errno, "error reading dump file");
839
0
      *err = 1;
840
0
      return (NULL);  /* fail */
841
0
    }
842
843
    /*
844
     * Possibly a weird short text file, so just say
845
     * "not pcapng".
846
     */
847
0
    return (NULL);
848
0
  }
849
181
  if (byte_order_magic != BYTE_ORDER_MAGIC) {
850
157
    byte_order_magic = SWAPLONG(byte_order_magic);
851
157
    if (byte_order_magic != BYTE_ORDER_MAGIC) {
852
      /*
853
       * Not a pcapng file.
854
       */
855
24
      return (NULL);
856
24
    }
857
133
    swapped = 1;
858
133
    total_length = SWAPLONG(total_length);
859
133
  }
860
861
  /*
862
   * Check the sanity of the total length.
863
   */
864
157
  if (total_length < sizeof(*bhdrp) + sizeof(*shbp) + sizeof(struct block_trailer) ||
865
156
            (total_length > BT_SHB_INSANE_MAX)) {
866
11
    snprintf(errbuf, PCAP_ERRBUF_SIZE,
867
11
        "Section Header Block in pcapng dump file has invalid length %zu < _%u_ < %u (BT_SHB_INSANE_MAX)",
868
11
        sizeof(*bhdrp) + sizeof(*shbp) + sizeof(struct block_trailer),
869
11
        total_length,
870
11
        BT_SHB_INSANE_MAX);
871
872
11
    *err = 1;
873
11
    return (NULL);
874
11
  }
875
876
  /*
877
   * OK, this is a good pcapng file.
878
   * Allocate a pcap_t for it.
879
   */
880
146
  p = PCAP_OPEN_OFFLINE_COMMON(errbuf, struct pcap_ng_sf);
881
146
  if (p == NULL) {
882
    /* Allocation failed. */
883
0
    *err = 1;
884
0
    return (NULL);
885
0
  }
886
146
  p->swapped = swapped;
887
146
  ps = p->priv;
888
889
  /*
890
   * What precision does the user want?
891
   */
892
146
  switch (precision) {
893
894
146
  case PCAP_TSTAMP_PRECISION_MICRO:
895
146
    ps->user_tsresol = 1000000;
896
146
    break;
897
898
0
  case PCAP_TSTAMP_PRECISION_NANO:
899
0
    ps->user_tsresol = 1000000000;
900
0
    break;
901
902
0
  default:
903
0
    snprintf(errbuf, PCAP_ERRBUF_SIZE,
904
0
        "unknown time stamp resolution %u", precision);
905
0
    free(p);
906
0
    *err = 1;
907
0
    return (NULL);
908
146
  }
909
910
146
  p->opt.tstamp_precision = precision;
911
912
  /*
913
   * Allocate a buffer into which to read blocks.  We default to
914
   * the maximum of:
915
   *
916
   *  the total length of the SHB for which we read the header;
917
   *
918
   *  2K, which should be more than large enough for an Enhanced
919
   *  Packet Block containing a full-size Ethernet frame, and
920
   *  leaving room for some options.
921
   *
922
   * If we find a bigger block, we reallocate the buffer, up to
923
   * the maximum size.  We start out with a maximum size of
924
   * INITIAL_MAX_BLOCKSIZE; if we see any link-layer header types
925
   * with a maximum snapshot that results in a larger maximum
926
   * block length, we boost the maximum.
927
   */
928
146
  p->bufsize = 2048;
929
146
  if (p->bufsize < total_length)
930
6
    p->bufsize = total_length;
931
146
  p->buffer = malloc(p->bufsize);
932
146
  if (p->buffer == NULL) {
933
0
    snprintf(errbuf, PCAP_ERRBUF_SIZE, "out of memory");
934
0
    free(p);
935
0
    *err = 1;
936
0
    return (NULL);
937
0
  }
938
146
  ps->max_blocksize = INITIAL_MAX_BLOCKSIZE;
939
940
  /*
941
   * Copy the stuff we've read to the buffer, and read the rest
942
   * of the SHB.
943
   */
944
146
  bhdrp = (struct block_header *)p->buffer;
945
146
  shbp = (struct section_header_block *)(p->buffer + sizeof(struct block_header));
946
146
  bhdrp->block_type = magic_int;
947
146
  bhdrp->total_length = total_length;
948
146
  shbp->byte_order_magic = byte_order_magic;
949
146
  if (read_bytes(fp,
950
146
      p->buffer + (sizeof(magic_int) + sizeof(total_length) + sizeof(byte_order_magic)),
951
146
      total_length - (sizeof(magic_int) + sizeof(total_length) + sizeof(byte_order_magic)),
952
146
      1, errbuf) == -1)
953
10
    goto fail;
954
955
136
  if (p->swapped) {
956
    /*
957
     * Byte-swap the fields we've read.
958
     */
959
120
    shbp->major_version = SWAPSHORT(shbp->major_version);
960
120
    shbp->minor_version = SWAPSHORT(shbp->minor_version);
961
962
    /*
963
     * XXX - we don't care about the section length.
964
     */
965
120
  }
966
  /* Currently only SHB versions 1.0 and 1.2 are supported;
967
     version 1.2 is treated as being the same as version 1.0.
968
     See the current version of the pcapng specification.
969
970
     Version 1.2 is written by some programs that write additional
971
     block types (which can be read by any code that handles them,
972
     regardless of whether the minor version if 0 or 2, so that's
973
     not a reason to change the minor version number).
974
975
     XXX - the pcapng specification says that readers should
976
     just ignore sections with an unsupported version number;
977
     presumably they can also report an error if they skip
978
     all the way to the end of the file without finding
979
     any versions that they support. */
980
136
  if (! (shbp->major_version == PCAP_NG_VERSION_MAJOR &&
981
129
         (shbp->minor_version == PCAP_NG_VERSION_MINOR ||
982
13
          shbp->minor_version == 2))) {
983
13
    snprintf(errbuf, PCAP_ERRBUF_SIZE,
984
13
        "unsupported pcapng savefile version %u.%u",
985
13
        shbp->major_version, shbp->minor_version);
986
13
    goto fail;
987
13
  }
988
123
  p->version_major = shbp->major_version;
989
123
  p->version_minor = shbp->minor_version;
990
991
  /*
992
   * Save the time stamp resolution the user requested.
993
   */
994
123
  p->opt.tstamp_precision = precision;
995
996
  /*
997
   * Now start looking for an Interface Description Block.
998
   */
999
135
  for (;;) {
1000
    /*
1001
     * Read the next block.
1002
     */
1003
135
    status = read_block(fp, p, &cursor, errbuf);
1004
135
    if (status == 0) {
1005
      /* EOF - no IDB in this file */
1006
1
      snprintf(errbuf, PCAP_ERRBUF_SIZE,
1007
1
          "the capture file has no Interface Description Blocks");
1008
1
      goto fail;
1009
1
    }
1010
134
    if (status == -1)
1011
46
      goto fail;  /* error */
1012
88
    switch (cursor.block_type) {
1013
1014
75
    case BT_IDB:
1015
      /*
1016
       * Get a pointer to the fixed-length portion of the
1017
       * IDB.
1018
       */
1019
75
      idbp = get_from_block_data(&cursor, sizeof(*idbp),
1020
75
          errbuf);
1021
75
      if (idbp == NULL)
1022
0
        goto fail; /* error */
1023
1024
      /*
1025
       * Byte-swap it if necessary.
1026
       */
1027
75
      if (p->swapped) {
1028
75
        idbp->linktype = SWAPSHORT(idbp->linktype);
1029
75
        idbp->snaplen = SWAPLONG(idbp->snaplen);
1030
75
      }
1031
1032
      /*
1033
       * Try to add this interface.
1034
       */
1035
75
      if (!add_interface(p, idbp, &cursor, errbuf))
1036
12
        goto fail;
1037
1038
63
      goto done;
1039
1040
63
    case BT_EPB:
1041
0
    case BT_SPB:
1042
1
    case BT_PB:
1043
      /*
1044
       * Saw a packet before we saw any IDBs.  That's
1045
       * not valid, as we don't know what link-layer
1046
       * encapsulation the packet has.
1047
       */
1048
1
      snprintf(errbuf, PCAP_ERRBUF_SIZE,
1049
1
          "the capture file has a packet block before any Interface Description Blocks");
1050
1
      goto fail;
1051
1052
12
    default:
1053
      /*
1054
       * Just ignore it.
1055
       */
1056
12
      break;
1057
88
    }
1058
88
  }
1059
1060
63
done:
1061
63
  p->linktype = linktype_to_dlt(idbp->linktype);
1062
63
  p->snapshot = pcapint_adjust_snapshot(p->linktype, idbp->snaplen);
1063
63
  p->linktype_ext = 0;
1064
1065
  /*
1066
   * If the maximum block size for a packet with the maximum
1067
   * snapshot length for this DLT_ is bigger than the current
1068
   * maximum block size, increase the maximum.
1069
   */
1070
63
  if (MAX_BLOCKSIZE_FOR_SNAPLEN(max_snaplen_for_dlt(p->linktype)) > ps->max_blocksize)
1071
1
    ps->max_blocksize = MAX_BLOCKSIZE_FOR_SNAPLEN(max_snaplen_for_dlt(p->linktype));
1072
1073
63
  p->next_packet_op = pcap_ng_next_packet;
1074
63
  p->cleanup_op = pcap_ng_cleanup;
1075
1076
63
  return (p);
1077
1078
83
fail:
1079
83
  free(ps->ifaces);
1080
83
  free(p->buffer);
1081
83
  free(p);
1082
83
  *err = 1;
1083
83
  return (NULL);
1084
123
}
1085
1086
static void
1087
pcap_ng_cleanup(pcap_t *p)
1088
63
{
1089
63
  struct pcap_ng_sf *ps = p->priv;
1090
1091
63
  free(ps->ifaces);
1092
63
  pcapint_sf_cleanup(p);
1093
63
}
1094
1095
/*
1096
 * Read and return the next packet from the savefile.  Return the header
1097
 * in hdr and a pointer to the contents in data.  Return 1 on success, 0
1098
 * if there were no more packets, and -1 on an error.
1099
 */
1100
static int
1101
pcap_ng_next_packet(pcap_t *p, struct pcap_pkthdr *hdr, u_char **data)
1102
395
{
1103
395
  struct pcap_ng_sf *ps = p->priv;
1104
395
  struct block_cursor cursor;
1105
395
  int status;
1106
395
  struct enhanced_packet_block *epbp;
1107
395
  struct simple_packet_block *spbp;
1108
395
  struct packet_block *pbp;
1109
395
  bpf_u_int32 interface_id = 0xFFFFFFFF;
1110
395
  struct interface_description_block *idbp;
1111
395
  struct section_header_block *shbp;
1112
395
  FILE *fp = p->rfile;
1113
395
  uint64_t t, sec, frac;
1114
1115
  /*
1116
   * Look for an Enhanced Packet Block, a Simple Packet Block,
1117
   * or a Packet Block.
1118
   */
1119
461
  for (;;) {
1120
    /*
1121
     * Read the block type and length; those are common
1122
     * to all blocks.
1123
     */
1124
461
    status = read_block(fp, p, &cursor, p->errbuf);
1125
461
    if (status == 0)
1126
0
      return (0); /* EOF */
1127
461
    if (status == -1)
1128
45
      return (-1);  /* error */
1129
416
    switch (cursor.block_type) {
1130
1131
11
    case BT_EPB:
1132
      /*
1133
       * Get a pointer to the fixed-length portion of the
1134
       * EPB.
1135
       */
1136
11
      epbp = get_from_block_data(&cursor, sizeof(*epbp),
1137
11
          p->errbuf);
1138
11
      if (epbp == NULL)
1139
0
        return (-1); /* error */
1140
1141
      /*
1142
       * Byte-swap it if necessary.
1143
       */
1144
11
      if (p->swapped) {
1145
        /* these were written in opposite byte order */
1146
11
        interface_id = SWAPLONG(epbp->interface_id);
1147
11
        hdr->caplen = SWAPLONG(epbp->caplen);
1148
11
        hdr->len = SWAPLONG(epbp->len);
1149
11
        t = ((uint64_t)SWAPLONG(epbp->timestamp_high)) << 32 |
1150
11
            SWAPLONG(epbp->timestamp_low);
1151
11
      } else {
1152
0
        interface_id = epbp->interface_id;
1153
0
        hdr->caplen = epbp->caplen;
1154
0
        hdr->len = epbp->len;
1155
0
        t = ((uint64_t)epbp->timestamp_high) << 32 |
1156
0
            epbp->timestamp_low;
1157
0
      }
1158
11
      goto found;
1159
1160
325
    case BT_SPB:
1161
      /*
1162
       * Get a pointer to the fixed-length portion of the
1163
       * SPB.
1164
       */
1165
325
      spbp = get_from_block_data(&cursor, sizeof(*spbp),
1166
325
          p->errbuf);
1167
325
      if (spbp == NULL)
1168
0
        return (-1); /* error */
1169
1170
      /*
1171
       * SPB packets are assumed to have arrived on
1172
       * the first interface.
1173
       */
1174
325
      interface_id = 0;
1175
1176
      /*
1177
       * Byte-swap it if necessary.
1178
       */
1179
325
      if (p->swapped) {
1180
        /* these were written in opposite byte order */
1181
325
        hdr->len = SWAPLONG(spbp->len);
1182
325
      } else
1183
0
        hdr->len = spbp->len;
1184
1185
      /*
1186
       * The SPB doesn't give the captured length;
1187
       * it's the minimum of the snapshot length
1188
       * and the packet length.
1189
       */
1190
325
      hdr->caplen = hdr->len;
1191
325
      if (hdr->caplen > (bpf_u_int32)p->snapshot)
1192
2
        hdr->caplen = p->snapshot;
1193
325
      t = 0;  /* no time stamps */
1194
325
      goto found;
1195
1196
6
    case BT_PB:
1197
      /*
1198
       * Get a pointer to the fixed-length portion of the
1199
       * PB.
1200
       */
1201
6
      pbp = get_from_block_data(&cursor, sizeof(*pbp),
1202
6
          p->errbuf);
1203
6
      if (pbp == NULL)
1204
0
        return (-1); /* error */
1205
1206
      /*
1207
       * Byte-swap it if necessary.
1208
       */
1209
6
      if (p->swapped) {
1210
        /* these were written in opposite byte order */
1211
6
        interface_id = SWAPSHORT(pbp->interface_id);
1212
6
        hdr->caplen = SWAPLONG(pbp->caplen);
1213
6
        hdr->len = SWAPLONG(pbp->len);
1214
6
        t = ((uint64_t)SWAPLONG(pbp->timestamp_high)) << 32 |
1215
6
            SWAPLONG(pbp->timestamp_low);
1216
6
      } else {
1217
0
        interface_id = pbp->interface_id;
1218
0
        hdr->caplen = pbp->caplen;
1219
0
        hdr->len = pbp->len;
1220
0
        t = ((uint64_t)pbp->timestamp_high) << 32 |
1221
0
            pbp->timestamp_low;
1222
0
      }
1223
6
      goto found;
1224
1225
9
    case BT_IDB:
1226
      /*
1227
       * Interface Description Block.  Get a pointer
1228
       * to its fixed-length portion.
1229
       */
1230
9
      idbp = get_from_block_data(&cursor, sizeof(*idbp),
1231
9
          p->errbuf);
1232
9
      if (idbp == NULL)
1233
0
        return (-1); /* error */
1234
1235
      /*
1236
       * Byte-swap it if necessary.
1237
       */
1238
9
      if (p->swapped) {
1239
9
        idbp->linktype = SWAPSHORT(idbp->linktype);
1240
9
        idbp->snaplen = SWAPLONG(idbp->snaplen);
1241
9
      }
1242
1243
      /*
1244
       * If the link-layer type or snapshot length
1245
       * differ from the ones for the first IDB we
1246
       * saw, quit.
1247
       *
1248
       * XXX - just discard packets from those
1249
       * interfaces?
1250
       */
1251
9
      if (p->linktype != idbp->linktype) {
1252
0
        snprintf(p->errbuf, PCAP_ERRBUF_SIZE,
1253
0
            "an interface has a type %u different from the type of the first interface",
1254
0
            idbp->linktype);
1255
0
        return (-1);
1256
0
      }
1257
1258
      /*
1259
       * Check against the *adjusted* value of this IDB's
1260
       * snapshot length.
1261
       */
1262
9
      if ((bpf_u_int32)p->snapshot !=
1263
9
          pcapint_adjust_snapshot(p->linktype, idbp->snaplen)) {
1264
2
        snprintf(p->errbuf, PCAP_ERRBUF_SIZE,
1265
2
            "an interface has a snapshot length %u different from the snapshot length of the first interface",
1266
2
            idbp->snaplen);
1267
2
        return (-1);
1268
2
      }
1269
1270
      /*
1271
       * Try to add this interface.
1272
       */
1273
7
      if (!add_interface(p, idbp, &cursor, p->errbuf))
1274
1
        return (-1);
1275
6
      break;
1276
1277
6
    case BT_SHB:
1278
      /*
1279
       * Section Header Block.  Get a pointer
1280
       * to its fixed-length portion.
1281
       */
1282
5
      shbp = get_from_block_data(&cursor, sizeof(*shbp),
1283
5
          p->errbuf);
1284
5
      if (shbp == NULL)
1285
0
        return (-1); /* error */
1286
1287
      /*
1288
       * Assume the byte order of this section is
1289
       * the same as that of the previous section.
1290
       * We'll check for that later.
1291
       */
1292
5
      if (p->swapped) {
1293
5
        shbp->byte_order_magic =
1294
5
            SWAPLONG(shbp->byte_order_magic);
1295
5
        shbp->major_version =
1296
5
            SWAPSHORT(shbp->major_version);
1297
5
      }
1298
1299
      /*
1300
       * Make sure the byte order doesn't change;
1301
       * pcap_is_swapped() shouldn't change its
1302
       * return value in the middle of reading a capture.
1303
       */
1304
5
      switch (shbp->byte_order_magic) {
1305
1306
0
      case BYTE_ORDER_MAGIC:
1307
        /*
1308
         * OK.
1309
         */
1310
0
        break;
1311
1312
0
      case SWAPLONG(BYTE_ORDER_MAGIC):
1313
        /*
1314
         * Byte order changes.
1315
         */
1316
0
        snprintf(p->errbuf, PCAP_ERRBUF_SIZE,
1317
0
            "the file has sections with different byte orders");
1318
0
        return (-1);
1319
1320
5
      default:
1321
        /*
1322
         * Not a valid SHB.
1323
         */
1324
5
        snprintf(p->errbuf, PCAP_ERRBUF_SIZE,
1325
5
            "the file has a section with a bad byte order magic field");
1326
5
        return (-1);
1327
5
      }
1328
1329
      /*
1330
       * Make sure the major version is the version
1331
       * we handle.
1332
       */
1333
0
      if (shbp->major_version != PCAP_NG_VERSION_MAJOR) {
1334
0
        snprintf(p->errbuf, PCAP_ERRBUF_SIZE,
1335
0
            "unknown pcapng savefile major version number %u",
1336
0
            shbp->major_version);
1337
0
        return (-1);
1338
0
      }
1339
1340
      /*
1341
       * Reset the interface count; this section should
1342
       * have its own set of IDBs.  If any of them
1343
       * don't have the same interface type, snapshot
1344
       * length, or resolution as the first interface
1345
       * we saw, we'll fail.  (And if we don't see
1346
       * any IDBs, we'll fail when we see a packet
1347
       * block.)
1348
       */
1349
0
      ps->ifcount = 0;
1350
0
      break;
1351
1352
60
    default:
1353
      /*
1354
       * Not a packet block, IDB, or SHB; ignore it.
1355
       */
1356
60
      break;
1357
416
    }
1358
416
  }
1359
1360
342
found:
1361
  /*
1362
   * Is the interface ID an interface we know?
1363
   */
1364
342
  if (interface_id >= ps->ifcount) {
1365
    /*
1366
     * Yes.  Fail.
1367
     */
1368
5
    snprintf(p->errbuf, PCAP_ERRBUF_SIZE,
1369
5
        "a packet arrived on interface %u, but there's no Interface Description Block for that interface",
1370
5
        interface_id);
1371
5
    return (-1);
1372
5
  }
1373
1374
337
  if (hdr->caplen > (bpf_u_int32)p->snapshot) {
1375
2
    snprintf(p->errbuf, PCAP_ERRBUF_SIZE,
1376
2
        "invalid packet capture length %u, bigger than "
1377
2
        "snaplen of %d", hdr->caplen, p->snapshot);
1378
2
    return (-1);
1379
2
  }
1380
1381
  /*
1382
   * Convert the time stamp to seconds and fractions of a second,
1383
   * with the fractions being in units of the file-supplied resolution.
1384
   */
1385
335
  sec = t / ps->ifaces[interface_id].tsresol + ps->ifaces[interface_id].tsoffset;
1386
335
  frac = t % ps->ifaces[interface_id].tsresol;
1387
1388
  /*
1389
   * Convert the fractions from units of the file-supplied resolution
1390
   * to units of the user-requested resolution.
1391
   */
1392
335
  switch (ps->ifaces[interface_id].scale_type) {
1393
1394
335
  case PASS_THROUGH:
1395
    /*
1396
     * The interface resolution is what the user wants,
1397
     * so we're done.
1398
     */
1399
335
    break;
1400
1401
0
  case SCALE_UP_DEC:
1402
    /*
1403
     * The interface resolution is less than what the user
1404
     * wants; scale the fractional part up to the units of
1405
     * the resolution the user requested by multiplying by
1406
     * the quotient of the user-requested resolution and the
1407
     * file-supplied resolution.
1408
     *
1409
     * Those resolutions are both powers of 10, and the user-
1410
     * requested resolution is greater than the file-supplied
1411
     * resolution, so the quotient in question is an integer.
1412
     * We've calculated that quotient already, so we just
1413
     * multiply by it.
1414
     */
1415
0
    frac *= ps->ifaces[interface_id].scale_factor;
1416
0
    break;
1417
1418
0
  case SCALE_UP_BIN:
1419
    /*
1420
     * The interface resolution is less than what the user
1421
     * wants; scale the fractional part up to the units of
1422
     * the resolution the user requested by multiplying by
1423
     * the quotient of the user-requested resolution and the
1424
     * file-supplied resolution.
1425
     *
1426
     * The file-supplied resolution is a power of 2, so the
1427
     * quotient is not an integer, so, in order to do this
1428
     * entirely with integer arithmetic, we multiply by the
1429
     * user-requested resolution and divide by the file-
1430
     * supplied resolution.
1431
     *
1432
     * XXX - Is there something clever we could do here,
1433
     * given that we know that the file-supplied resolution
1434
     * is a power of 2?  Doing a multiplication followed by
1435
     * a division runs the risk of overflowing, and involves
1436
     * two non-simple arithmetic operations.
1437
     */
1438
0
    frac *= ps->user_tsresol;
1439
0
    frac /= ps->ifaces[interface_id].tsresol;
1440
0
    break;
1441
1442
0
  case SCALE_DOWN_DEC:
1443
    /*
1444
     * The interface resolution is greater than what the user
1445
     * wants; scale the fractional part up to the units of
1446
     * the resolution the user requested by multiplying by
1447
     * the quotient of the user-requested resolution and the
1448
     * file-supplied resolution.
1449
     *
1450
     * Those resolutions are both powers of 10, and the user-
1451
     * requested resolution is less than the file-supplied
1452
     * resolution, so the quotient in question isn't an
1453
     * integer, but its reciprocal is, and we can just divide
1454
     * by the reciprocal of the quotient.  We've calculated
1455
     * the reciprocal of that quotient already, so we must
1456
     * divide by it.
1457
     */
1458
0
    frac /= ps->ifaces[interface_id].scale_factor;
1459
0
    break;
1460
1461
1462
0
  case SCALE_DOWN_BIN:
1463
    /*
1464
     * The interface resolution is greater than what the user
1465
     * wants; convert the fractional part to units of the
1466
     * resolution the user requested by multiplying by the
1467
     * quotient of the user-requested resolution and the
1468
     * file-supplied resolution.  We do that by multiplying
1469
     * by the user-requested resolution and dividing by the
1470
     * file-supplied resolution, as the quotient might not
1471
     * fit in an integer.
1472
     *
1473
     * The file-supplied resolution is a power of 2, so the
1474
     * quotient is not an integer, and neither is its
1475
     * reciprocal, so, in order to do this entirely with
1476
     * integer arithmetic, we multiply by the user-requested
1477
     * resolution and divide by the file-supplied resolution.
1478
     *
1479
     * XXX - Is there something clever we could do here,
1480
     * given that we know that the file-supplied resolution
1481
     * is a power of 2?  Doing a multiplication followed by
1482
     * a division runs the risk of overflowing, and involves
1483
     * two non-simple arithmetic operations.
1484
     */
1485
0
    frac *= ps->user_tsresol;
1486
0
    frac /= ps->ifaces[interface_id].tsresol;
1487
0
    break;
1488
335
  }
1489
#ifdef _WIN32
1490
  /*
1491
   * tv_sec and tv_usec in the Windows struct timeval are both
1492
   * longs.
1493
   */
1494
  hdr->ts.tv_sec = (long)sec;
1495
  hdr->ts.tv_usec = (long)frac;
1496
#else
1497
  /*
1498
   * tv_sec in the UN*X struct timeval is a time_t; tv_usec is
1499
   * suseconds_t in UN*Xes that work the way the current Single
1500
   * UNIX Standard specify - but not all older UN*Xes necessarily
1501
   * support that type, so just cast to int.
1502
   */
1503
335
  hdr->ts.tv_sec = (time_t)sec;
1504
335
  hdr->ts.tv_usec = (int)frac;
1505
335
#endif
1506
1507
  /*
1508
   * Get a pointer to the packet data.
1509
   */
1510
335
  *data = get_from_block_data(&cursor, hdr->caplen, p->errbuf);
1511
335
  if (*data == NULL)
1512
3
    return (-1);
1513
1514
332
  pcapint_post_process(p->linktype, p->swapped, hdr, *data);
1515
1516
332
  return (1);
1517
335
}