]> The Tcpdump Group git mirrors - libpcap/blob - savefile.c
66ba16b587da44dc45f9e415ac5234fe9a8a9718
[libpcap] / savefile.c
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 * savefile.c - supports offline use of tcpdump
22 * Extraction/creation by Jeffrey Mogul, DECWRL
23 * Modified by Steve McCanne, LBL.
24 *
25 * Used to save the received packet headers, after filtering, to
26 * a file, and then read them later.
27 * The first record in the file contains saved values for the machine
28 * dependent values so we can print the dump file on any architecture.
29 */
30
31 #ifndef lint
32 static const char rcsid[] _U_ =
33 "@(#) $Header: /tcpdump/master/libpcap/savefile.c,v 1.179 2008-11-18 07:48:56 guy Exp $ (LBL)";
34 #endif
35
36 #ifdef HAVE_CONFIG_H
37 #include "config.h"
38 #endif
39
40 #include <errno.h>
41 #include <memory.h>
42 #include <stdio.h>
43 #include <stdlib.h>
44 #include <string.h>
45
46 #include "pcap-int.h"
47 #include "pcap/usb.h"
48
49 #ifdef HAVE_OS_PROTO_H
50 #include "os-proto.h"
51 #endif
52
53 /*
54 * Standard libpcap format.
55 */
56 #define TCPDUMP_MAGIC 0xa1b2c3d4
57
58 /*
59 * Alexey Kuznetzov's modified libpcap format.
60 */
61 #define KUZNETZOV_TCPDUMP_MAGIC 0xa1b2cd34
62
63 /*
64 * Reserved for Francisco Mesquita <francisco.mesquita@radiomovel.pt>
65 * for another modified format.
66 */
67 #define FMESQUITA_TCPDUMP_MAGIC 0xa1b234cd
68
69 /*
70 * Navtel Communcations' format, with nanosecond timestamps,
71 * as per a request from Dumas Hwang <dumas.hwang@navtelcom.com>.
72 */
73 #define NAVTEL_TCPDUMP_MAGIC 0xa12b3c4d
74
75 /*
76 * Normal libpcap format, except for seconds/nanoseconds timestamps,
77 * as per a request by Ulf Lamping <ulf.lamping@web.de>
78 */
79 #define NSEC_TCPDUMP_MAGIC 0xa1b23c4d
80
81 /*
82 * We use the "receiver-makes-right" approach to byte order,
83 * because time is at a premium when we are writing the file.
84 * In other words, the pcap_file_header and pcap_pkthdr,
85 * records are written in host byte order.
86 * Note that the bytes of packet data are written out in the order in
87 * which they were received, so multi-byte fields in packets are not
88 * written in host byte order, they're written in whatever order the
89 * sending machine put them in.
90 *
91 * ntoh[ls] aren't sufficient because we might need to swap on a big-endian
92 * machine (if the file was written in little-end order).
93 */
94 #define SWAPLONG(y) \
95 ((((y)&0xff)<<24) | (((y)&0xff00)<<8) | (((y)&0xff0000)>>8) | (((y)>>24)&0xff))
96 #define SWAPSHORT(y) \
97 ( (((y)&0xff)<<8) | ((u_short)((y)&0xff00)>>8) )
98
99 #define SFERR_TRUNC 1
100 #define SFERR_BADVERSION 2
101 #define SFERR_BADF 3
102 #define SFERR_EOF 4 /* not really an error, just a status */
103
104 /*
105 * Setting O_BINARY on DOS/Windows is a bit tricky
106 */
107 #if defined(WIN32)
108 #define SET_BINMODE(f) _setmode(_fileno(f), _O_BINARY)
109 #elif defined(MSDOS)
110 #if defined(__HIGHC__)
111 #define SET_BINMODE(f) setmode(f, O_BINARY)
112 #else
113 #define SET_BINMODE(f) setmode(fileno(f), O_BINARY)
114 #endif
115 #endif
116
117 /*
118 * We don't write DLT_* values to the capture file header, because
119 * they're not the same on all platforms.
120 *
121 * Unfortunately, the various flavors of BSD have not always used the same
122 * numerical values for the same data types, and various patches to
123 * libpcap for non-BSD OSes have added their own DLT_* codes for link
124 * layer encapsulation types seen on those OSes, and those codes have had,
125 * in some cases, values that were also used, on other platforms, for other
126 * link layer encapsulation types.
127 *
128 * This means that capture files of a type whose numerical DLT_* code
129 * means different things on different BSDs, or with different versions
130 * of libpcap, can't always be read on systems other than those like
131 * the one running on the machine on which the capture was made.
132 *
133 * Instead, we define here a set of LINKTYPE_* codes, and map DLT_* codes
134 * to LINKTYPE_* codes when writing a savefile header, and map LINKTYPE_*
135 * codes to DLT_* codes when reading a savefile header.
136 *
137 * For those DLT_* codes that have, as far as we know, the same values on
138 * all platforms (DLT_NULL through DLT_FDDI), we define LINKTYPE_xxx as
139 * DLT_xxx; that way, captures of those types can still be read by
140 * versions of libpcap that map LINKTYPE_* values to DLT_* values, and
141 * captures of those types written by versions of libpcap that map DLT_
142 * values to LINKTYPE_ values can still be read by older versions
143 * of libpcap.
144 *
145 * The other LINKTYPE_* codes are given values starting at 100, in the
146 * hopes that no DLT_* code will be given one of those values.
147 *
148 * In order to ensure that a given LINKTYPE_* code's value will refer to
149 * the same encapsulation type on all platforms, you should not allocate
150 * a new LINKTYPE_* value without consulting
151 * "tcpdump-workers@lists.tcpdump.org". The tcpdump developers will
152 * allocate a value for you, and will not subsequently allocate it to
153 * anybody else; that value will be added to the "pcap.h" in the
154 * tcpdump.org CVS repository, so that a future libpcap release will
155 * include it.
156 *
157 * You should, if possible, also contribute patches to libpcap and tcpdump
158 * to handle the new encapsulation type, so that they can also be checked
159 * into the tcpdump.org CVS repository and so that they will appear in
160 * future libpcap and tcpdump releases.
161 *
162 * Do *NOT* assume that any values after the largest value in this file
163 * are available; you might not have the most up-to-date version of this
164 * file, and new values after that one might have been assigned. Also,
165 * do *NOT* use any values below 100 - those might already have been
166 * taken by one (or more!) organizations.
167 */
168 #define LINKTYPE_NULL DLT_NULL
169 #define LINKTYPE_ETHERNET DLT_EN10MB /* also for 100Mb and up */
170 #define LINKTYPE_EXP_ETHERNET DLT_EN3MB /* 3Mb experimental Ethernet */
171 #define LINKTYPE_AX25 DLT_AX25
172 #define LINKTYPE_PRONET DLT_PRONET
173 #define LINKTYPE_CHAOS DLT_CHAOS
174 #define LINKTYPE_TOKEN_RING DLT_IEEE802 /* DLT_IEEE802 is used for Token Ring */
175 #define LINKTYPE_ARCNET DLT_ARCNET /* BSD-style headers */
176 #define LINKTYPE_SLIP DLT_SLIP
177 #define LINKTYPE_PPP DLT_PPP
178 #define LINKTYPE_FDDI DLT_FDDI
179
180 /*
181 * LINKTYPE_PPP is for use when there might, or might not, be an RFC 1662
182 * PPP in HDLC-like framing header (with 0xff 0x03 before the PPP protocol
183 * field) at the beginning of the packet.
184 *
185 * This is for use when there is always such a header; the address field
186 * might be 0xff, for regular PPP, or it might be an address field for Cisco
187 * point-to-point with HDLC framing as per section 4.3.1 of RFC 1547 ("Cisco
188 * HDLC"). This is, for example, what you get with NetBSD's DLT_PPP_SERIAL.
189 *
190 * We give it the same value as NetBSD's DLT_PPP_SERIAL, in the hopes that
191 * nobody else will choose a DLT_ value of 50, and so that DLT_PPP_SERIAL
192 * captures will be written out with a link type that NetBSD's tcpdump
193 * can read.
194 */
195 #define LINKTYPE_PPP_HDLC 50 /* PPP in HDLC-like framing */
196
197 #define LINKTYPE_PPP_ETHER 51 /* NetBSD PPP-over-Ethernet */
198
199 #define LINKTYPE_SYMANTEC_FIREWALL 99 /* Symantec Enterprise Firewall */
200
201 #define LINKTYPE_ATM_RFC1483 100 /* LLC/SNAP-encapsulated ATM */
202 #define LINKTYPE_RAW 101 /* raw IP */
203 #define LINKTYPE_SLIP_BSDOS 102 /* BSD/OS SLIP BPF header */
204 #define LINKTYPE_PPP_BSDOS 103 /* BSD/OS PPP BPF header */
205 #define LINKTYPE_C_HDLC 104 /* Cisco HDLC */
206 #define LINKTYPE_IEEE802_11 105 /* IEEE 802.11 (wireless) */
207 #define LINKTYPE_ATM_CLIP 106 /* Linux Classical IP over ATM */
208 #define LINKTYPE_FRELAY 107 /* Frame Relay */
209 #define LINKTYPE_LOOP 108 /* OpenBSD loopback */
210 #define LINKTYPE_ENC 109 /* OpenBSD IPSEC enc */
211
212 /*
213 * These three types are reserved for future use.
214 */
215 #define LINKTYPE_LANE8023 110 /* ATM LANE + 802.3 */
216 #define LINKTYPE_HIPPI 111 /* NetBSD HIPPI */
217 #define LINKTYPE_HDLC 112 /* NetBSD HDLC framing */
218
219 #define LINKTYPE_LINUX_SLL 113 /* Linux cooked socket capture */
220 #define LINKTYPE_LTALK 114 /* Apple LocalTalk hardware */
221 #define LINKTYPE_ECONET 115 /* Acorn Econet */
222
223 /*
224 * Reserved for use with OpenBSD ipfilter.
225 */
226 #define LINKTYPE_IPFILTER 116
227
228 #define LINKTYPE_PFLOG 117 /* OpenBSD DLT_PFLOG */
229 #define LINKTYPE_CISCO_IOS 118 /* For Cisco-internal use */
230 #define LINKTYPE_PRISM_HEADER 119 /* 802.11+Prism II monitor mode */
231 #define LINKTYPE_AIRONET_HEADER 120 /* FreeBSD Aironet driver stuff */
232
233 /*
234 * Reserved for Siemens HiPath HDLC.
235 */
236 #define LINKTYPE_HHDLC 121
237
238 #define LINKTYPE_IP_OVER_FC 122 /* RFC 2625 IP-over-Fibre Channel */
239 #define LINKTYPE_SUNATM 123 /* Solaris+SunATM */
240
241 /*
242 * Reserved as per request from Kent Dahlgren <kent@praesum.com>
243 * for private use.
244 */
245 #define LINKTYPE_RIO 124 /* RapidIO */
246 #define LINKTYPE_PCI_EXP 125 /* PCI Express */
247 #define LINKTYPE_AURORA 126 /* Xilinx Aurora link layer */
248
249 #define LINKTYPE_IEEE802_11_RADIO 127 /* 802.11 plus BSD radio header */
250
251 /*
252 * Reserved for the TZSP encapsulation, as per request from
253 * Chris Waters <chris.waters@networkchemistry.com>
254 * TZSP is a generic encapsulation for any other link type,
255 * which includes a means to include meta-information
256 * with the packet, e.g. signal strength and channel
257 * for 802.11 packets.
258 */
259 #define LINKTYPE_TZSP 128 /* Tazmen Sniffer Protocol */
260
261 #define LINKTYPE_ARCNET_LINUX 129 /* Linux-style headers */
262
263 /*
264 * Juniper-private data link types, as per request from
265 * Hannes Gredler <hannes@juniper.net>. The corresponding
266 * DLT_s are used for passing on chassis-internal
267 * metainformation such as QOS profiles, etc..
268 */
269 #define LINKTYPE_JUNIPER_MLPPP 130
270 #define LINKTYPE_JUNIPER_MLFR 131
271 #define LINKTYPE_JUNIPER_ES 132
272 #define LINKTYPE_JUNIPER_GGSN 133
273 #define LINKTYPE_JUNIPER_MFR 134
274 #define LINKTYPE_JUNIPER_ATM2 135
275 #define LINKTYPE_JUNIPER_SERVICES 136
276 #define LINKTYPE_JUNIPER_ATM1 137
277
278 #define LINKTYPE_APPLE_IP_OVER_IEEE1394 138 /* Apple IP-over-IEEE 1394 cooked header */
279
280 #define LINKTYPE_MTP2_WITH_PHDR 139
281 #define LINKTYPE_MTP2 140
282 #define LINKTYPE_MTP3 141
283 #define LINKTYPE_SCCP 142
284
285 #define LINKTYPE_DOCSIS 143 /* DOCSIS MAC frames */
286
287 #define LINKTYPE_LINUX_IRDA 144 /* Linux-IrDA */
288
289 /*
290 * Reserved for IBM SP switch and IBM Next Federation switch.
291 */
292 #define LINKTYPE_IBM_SP 145
293 #define LINKTYPE_IBM_SN 146
294
295 /*
296 * Reserved for private use. If you have some link-layer header type
297 * that you want to use within your organization, with the capture files
298 * using that link-layer header type not ever be sent outside your
299 * organization, you can use these values.
300 *
301 * No libpcap release will use these for any purpose, nor will any
302 * tcpdump release use them, either.
303 *
304 * Do *NOT* use these in capture files that you expect anybody not using
305 * your private versions of capture-file-reading tools to read; in
306 * particular, do *NOT* use them in products, otherwise you may find that
307 * people won't be able to use tcpdump, or snort, or Ethereal, or... to
308 * read capture files from your firewall/intrusion detection/traffic
309 * monitoring/etc. appliance, or whatever product uses that LINKTYPE_ value,
310 * and you may also find that the developers of those applications will
311 * not accept patches to let them read those files.
312 *
313 * Also, do not use them if somebody might send you a capture using them
314 * for *their* private type and tools using them for *your* private type
315 * would have to read them.
316 *
317 * Instead, in those cases, ask "tcpdump-workers@lists.tcpdump.org" for a
318 * new DLT_ and LINKTYPE_ value, as per the comment in pcap/bpf.h, and use
319 * the type you're given.
320 */
321 #define LINKTYPE_USER0 147
322 #define LINKTYPE_USER1 148
323 #define LINKTYPE_USER2 149
324 #define LINKTYPE_USER3 150
325 #define LINKTYPE_USER4 151
326 #define LINKTYPE_USER5 152
327 #define LINKTYPE_USER6 153
328 #define LINKTYPE_USER7 154
329 #define LINKTYPE_USER8 155
330 #define LINKTYPE_USER9 156
331 #define LINKTYPE_USER10 157
332 #define LINKTYPE_USER11 158
333 #define LINKTYPE_USER12 159
334 #define LINKTYPE_USER13 160
335 #define LINKTYPE_USER14 161
336 #define LINKTYPE_USER15 162
337
338 /*
339 * For future use with 802.11 captures - defined by AbsoluteValue
340 * Systems to store a number of bits of link-layer information
341 * including radio information:
342 *
343 * http://www.shaftnet.org/~pizza/software/capturefrm.txt
344 *
345 * but could and arguably should also be used by non-AVS Linux
346 * 802.11 drivers; that may happen in the future.
347 */
348 #define LINKTYPE_IEEE802_11_RADIO_AVS 163 /* 802.11 plus AVS radio header */
349
350 /*
351 * Juniper-private data link type, as per request from
352 * Hannes Gredler <hannes@juniper.net>. The corresponding
353 * DLT_s are used for passing on chassis-internal
354 * metainformation such as QOS profiles, etc..
355 */
356 #define LINKTYPE_JUNIPER_MONITOR 164
357
358 /*
359 * Reserved for BACnet MS/TP.
360 */
361 #define LINKTYPE_BACNET_MS_TP 165
362
363 /*
364 * Another PPP variant as per request from Karsten Keil <kkeil@suse.de>.
365 *
366 * This is used in some OSes to allow a kernel socket filter to distinguish
367 * between incoming and outgoing packets, on a socket intended to
368 * supply pppd with outgoing packets so it can do dial-on-demand and
369 * hangup-on-lack-of-demand; incoming packets are filtered out so they
370 * don't cause pppd to hold the connection up (you don't want random
371 * input packets such as port scans, packets from old lost connections,
372 * etc. to force the connection to stay up).
373 *
374 * The first byte of the PPP header (0xff03) is modified to accomodate
375 * the direction - 0x00 = IN, 0x01 = OUT.
376 */
377 #define LINKTYPE_PPP_PPPD 166
378
379 /*
380 * Juniper-private data link type, as per request from
381 * Hannes Gredler <hannes@juniper.net>. The DLT_s are used
382 * for passing on chassis-internal metainformation such as
383 * QOS profiles, cookies, etc..
384 */
385 #define LINKTYPE_JUNIPER_PPPOE 167
386 #define LINKTYPE_JUNIPER_PPPOE_ATM 168
387
388 #define LINKTYPE_GPRS_LLC 169 /* GPRS LLC */
389 #define LINKTYPE_GPF_T 170 /* GPF-T (ITU-T G.7041/Y.1303) */
390 #define LINKTYPE_GPF_F 171 /* GPF-T (ITU-T G.7041/Y.1303) */
391
392 /*
393 * Requested by Oolan Zimmer <oz@gcom.com> for use in Gcom's T1/E1 line
394 * monitoring equipment.
395 */
396 #define LINKTYPE_GCOM_T1E1 172
397 #define LINKTYPE_GCOM_SERIAL 173
398
399 /*
400 * Juniper-private data link type, as per request from
401 * Hannes Gredler <hannes@juniper.net>. The DLT_ is used
402 * for internal communication to Physical Interface Cards (PIC)
403 */
404 #define LINKTYPE_JUNIPER_PIC_PEER 174
405
406 /*
407 * Link types requested by Gregor Maier <gregor@endace.com> of Endace
408 * Measurement Systems. They add an ERF header (see
409 * http://www.endace.com/support/EndaceRecordFormat.pdf) in front of
410 * the link-layer header.
411 */
412 #define LINKTYPE_ERF_ETH 175 /* Ethernet */
413 #define LINKTYPE_ERF_POS 176 /* Packet-over-SONET */
414
415 /*
416 * Requested by Daniele Orlandi <daniele@orlandi.com> for raw LAPD
417 * for vISDN (http://www.orlandi.com/visdn/). Its link-layer header
418 * includes additional information before the LAPD header, so it's
419 * not necessarily a generic LAPD header.
420 */
421 #define LINKTYPE_LINUX_LAPD 177
422
423 /*
424 * Juniper-private data link type, as per request from
425 * Hannes Gredler <hannes@juniper.net>.
426 * The Link Types are used for prepending meta-information
427 * like interface index, interface name
428 * before standard Ethernet, PPP, Frelay & C-HDLC Frames
429 */
430 #define LINKTYPE_JUNIPER_ETHER 178
431 #define LINKTYPE_JUNIPER_PPP 179
432 #define LINKTYPE_JUNIPER_FRELAY 180
433 #define LINKTYPE_JUNIPER_CHDLC 181
434
435 /*
436 * Multi Link Frame Relay (FRF.16)
437 */
438 #define LINKTYPE_MFR 182
439
440 /*
441 * Juniper-private data link type, as per request from
442 * Hannes Gredler <hannes@juniper.net>.
443 * The DLT_ is used for internal communication with a
444 * voice Adapter Card (PIC)
445 */
446 #define LINKTYPE_JUNIPER_VP 183
447
448 /*
449 * Arinc 429 frames.
450 * DLT_ requested by Gianluca Varenni <gianluca.varenni@cacetech.com>.
451 * Every frame contains a 32bit A429 label.
452 * More documentation on Arinc 429 can be found at
453 * http://www.condoreng.com/support/downloads/tutorials/ARINCTutorial.pdf
454 */
455 #define LINKTYPE_A429 184
456
457 /*
458 * Arinc 653 Interpartition Communication messages.
459 * DLT_ requested by Gianluca Varenni <gianluca.varenni@cacetech.com>.
460 * Please refer to the A653-1 standard for more information.
461 */
462 #define LINKTYPE_A653_ICM 185
463
464 /*
465 * USB packets, beginning with a USB setup header; requested by
466 * Paolo Abeni <paolo.abeni@email.it>.
467 */
468 #define LINKTYPE_USB 186
469
470 /*
471 * Bluetooth HCI UART transport layer (part H:4); requested by
472 * Paolo Abeni.
473 */
474 #define LINKTYPE_BLUETOOTH_HCI_H4 187
475
476 /*
477 * IEEE 802.16 MAC Common Part Sublayer; requested by Maria Cruz
478 * <cruz_petagay@bah.com>.
479 */
480 #define LINKTYPE_IEEE802_16_MAC_CPS 188
481
482 /*
483 * USB packets, beginning with a Linux USB header; requested by
484 * Paolo Abeni <paolo.abeni@email.it>.
485 */
486 #define LINKTYPE_USB_LINUX 189
487
488 /*
489 * Controller Area Network (CAN) v. 2.0B packets.
490 * DLT_ requested by Gianluca Varenni <gianluca.varenni@cacetech.com>.
491 * Used to dump CAN packets coming from a CAN Vector board.
492 * More documentation on the CAN v2.0B frames can be found at
493 * http://www.can-cia.org/downloads/?269
494 */
495 #define LINKTYPE_CAN20B 190
496
497 /*
498 * IEEE 802.15.4, with address fields padded, as is done by Linux
499 * drivers; requested by Juergen Schimmer.
500 */
501 #define LINKTYPE_IEEE802_15_4_LINUX 191
502
503 /*
504 * Per Packet Information encapsulated packets.
505 * LINKTYPE_ requested by Gianluca Varenni <gianluca.varenni@cacetech.com>.
506 */
507 #define LINKTYPE_PPI 192
508
509 /*
510 * Header for 802.16 MAC Common Part Sublayer plus a radiotap radio header;
511 * requested by Charles Clancy.
512 */
513 #define LINKTYPE_IEEE802_16_MAC_CPS_RADIO 193
514
515 /*
516 * Juniper-private data link type, as per request from
517 * Hannes Gredler <hannes@juniper.net>.
518 * The DLT_ is used for internal communication with a
519 * integrated service module (ISM).
520 */
521 #define LINKTYPE_JUNIPER_ISM 194
522
523 /*
524 * IEEE 802.15.4, exactly as it appears in the spec (no padding, no
525 * nothing); requested by Mikko Saarnivala <mikko.saarnivala@sensinode.com>.
526 */
527 #define LINKTYPE_IEEE802_15_4 195
528
529 /*
530 * Various link-layer types, with a pseudo-header, for SITA
531 * (http://www.sita.aero/); requested by Fulko Hew (fulko.hew@gmail.com).
532 */
533 #define LINKTYPE_SITA 196
534
535 /*
536 * Various link-layer types, with a pseudo-header, for Endace DAG cards;
537 * encapsulates Endace ERF records. Requested by Stephen Donnelly
538 * <stephen@endace.com>.
539 */
540 #define LINKTYPE_ERF 197
541
542 /*
543 * Special header prepended to Ethernet packets when capturing from a
544 * u10 Networks board. Requested by Phil Mulholland
545 * <phil@u10networks.com>.
546 */
547 #define LINKTYPE_RAIF1 198
548
549 /*
550 * IPMB packet for IPMI, beginning with the I2C slave address, followed
551 * by the netFn and LUN, etc.. Requested by Chanthy Toeung
552 * <chanthy.toeung@ca.kontron.com>.
553 */
554 #define LINKTYPE_IPMB 199
555
556 /*
557 * Juniper-private data link type, as per request from
558 * Hannes Gredler <hannes@juniper.net>.
559 * The DLT_ is used for capturing data on a secure tunnel interface.
560 */
561 #define LINKTYPE_JUNIPER_ST 200
562
563 /*
564 * Bluetooth HCI UART transport layer (part H:4), with pseudo-header
565 * that includes direction information; requested by Paolo Abeni.
566 */
567 #define LINKTYPE_BLUETOOTH_HCI_H4_WITH_PHDR 201
568
569 /*
570 * AX.25 packet with a 1-byte KISS header; see
571 *
572 * http://www.ax25.net/kiss.htm
573 *
574 * as per Richard Stearn <richard@rns-stearn.demon.co.uk>.
575 */
576 #define LINKTYPE_AX25_KISS 202
577
578 /*
579 * LAPD packets from an ISDN channel, starting with the address field,
580 * with no pseudo-header.
581 * Requested by Varuna De Silva <varunax@gmail.com>.
582 */
583 #define LINKTYPE_LAPD 203
584
585 /*
586 * Variants of various link-layer headers, with a one-byte direction
587 * pseudo-header prepended - zero means "received by this host",
588 * non-zero (any non-zero value) means "sent by this host" - as per
589 * Will Barker <w.barker@zen.co.uk>.
590 */
591 #define LINKTYPE_PPP_WITH_DIR 204 /* PPP */
592 #define LINKTYPE_C_HDLC_WITH_DIR 205 /* Cisco HDLC */
593 #define LINKTYPE_FRELAY_WITH_DIR 206 /* Frame Relay */
594 #define LINKTYPE_LAPB_WITH_DIR 207 /* LAPB */
595
596 /*
597 * 208 is reserved for an as-yet-unspecified proprietary link-layer
598 * type, as requested by Will Barker.
599 */
600
601 /*
602 * IPMB with a Linux-specific pseudo-header; as requested by Alexey Neyman
603 * <avn@pigeonpoint.com>.
604 */
605 #define LINKTYPE_IPMB_LINUX 209
606
607 /*
608 * FlexRay automotive bus - http://www.flexray.com/ - as requested
609 * by Hannes Kaelber <hannes.kaelber@x2e.de>.
610 */
611 #define LINKTYPE_FLEXRAY 210
612
613 /*
614 * Media Oriented Systems Transport (MOST) bus for multimedia
615 * transport - http://www.mostcooperation.com/ - as requested
616 * by Hannes Kaelber <hannes.kaelber@x2e.de>.
617 */
618 #define LINKTYPE_MOST 211
619
620 /*
621 * Local Interconnect Network (LIN) bus for vehicle networks -
622 * http://www.lin-subbus.org/ - as requested by Hannes Kaelber
623 * <hannes.kaelber@x2e.de>.
624 */
625 #define LINKTYPE_LIN 212
626
627 /*
628 * X2E-private data link type used for serial line capture,
629 * as requested by Hannes Kaelber <hannes.kaelber@x2e.de>.
630 */
631 #define LINKTYPE_X2E_SERIAL 213
632
633 /*
634 * X2E-private data link type used for the Xoraya data logger
635 * family, as requested by Hannes Kaelber <hannes.kaelber@x2e.de>.
636 */
637 #define LINKTYPE_X2E_XORAYA 214
638
639 /*
640 * IEEE 802.15.4, exactly as it appears in the spec (no padding, no
641 * nothing), but with the PHY-level data for non-ASK PHYs (4 octets
642 * of 0 as preamble, one octet of SFD, one octet of frame length+
643 * reserved bit, and then the MAC-layer data, starting with the
644 * frame control field).
645 *
646 * Requested by Max Filippov <jcmvbkbc@gmail.com>.
647 */
648 #define LINKTYPE_IEEE802_15_4_NONASK_PHY 215
649
650 /*
651 * David Gibson <david@gibson.dropbear.id.au> requested this for
652 * captures from the Linux kernel /dev/input/eventN devices. This
653 * is used to communicate keystrokes and mouse movements from the
654 * Linux kernel to display systems, such as Xorg.
655 */
656 #define LINKTYPE_LINUX_EVDEV 216
657
658
659 static struct linktype_map {
660 int dlt;
661 int linktype;
662 } map[] = {
663 /*
664 * These DLT_* codes have LINKTYPE_* codes with values identical
665 * to the values of the corresponding DLT_* code.
666 */
667 { DLT_NULL, LINKTYPE_NULL },
668 { DLT_EN10MB, LINKTYPE_ETHERNET },
669 { DLT_EN3MB, LINKTYPE_EXP_ETHERNET },
670 { DLT_AX25, LINKTYPE_AX25 },
671 { DLT_PRONET, LINKTYPE_PRONET },
672 { DLT_CHAOS, LINKTYPE_CHAOS },
673 { DLT_IEEE802, LINKTYPE_TOKEN_RING },
674 { DLT_ARCNET, LINKTYPE_ARCNET },
675 { DLT_SLIP, LINKTYPE_SLIP },
676 { DLT_PPP, LINKTYPE_PPP },
677 { DLT_FDDI, LINKTYPE_FDDI },
678
679 /*
680 * These DLT_* codes have different values on different
681 * platforms; we map them to LINKTYPE_* codes that
682 * have values that should never be equal to any DLT_*
683 * code.
684 */
685 #ifdef DLT_FR
686 /* BSD/OS Frame Relay */
687 { DLT_FR, LINKTYPE_FRELAY },
688 #endif
689
690 { DLT_SYMANTEC_FIREWALL, LINKTYPE_SYMANTEC_FIREWALL },
691 { DLT_ATM_RFC1483, LINKTYPE_ATM_RFC1483 },
692 { DLT_RAW, LINKTYPE_RAW },
693 { DLT_SLIP_BSDOS, LINKTYPE_SLIP_BSDOS },
694 { DLT_PPP_BSDOS, LINKTYPE_PPP_BSDOS },
695
696 /* BSD/OS Cisco HDLC */
697 { DLT_C_HDLC, LINKTYPE_C_HDLC },
698
699 /*
700 * These DLT_* codes are not on all platforms, but, so far,
701 * there don't appear to be any platforms that define
702 * other codes with those values; we map them to
703 * different LINKTYPE_* values anyway, just in case.
704 */
705
706 /* Linux ATM Classical IP */
707 { DLT_ATM_CLIP, LINKTYPE_ATM_CLIP },
708
709 /* NetBSD sync/async serial PPP (or Cisco HDLC) */
710 { DLT_PPP_SERIAL, LINKTYPE_PPP_HDLC },
711
712 /* NetBSD PPP over Ethernet */
713 { DLT_PPP_ETHER, LINKTYPE_PPP_ETHER },
714
715 /* IEEE 802.11 wireless */
716 { DLT_IEEE802_11, LINKTYPE_IEEE802_11 },
717
718 /* Frame Relay */
719 { DLT_FRELAY, LINKTYPE_FRELAY },
720
721 /* OpenBSD loopback */
722 { DLT_LOOP, LINKTYPE_LOOP },
723
724 /* Linux cooked socket capture */
725 { DLT_LINUX_SLL, LINKTYPE_LINUX_SLL },
726
727 /* Apple LocalTalk hardware */
728 { DLT_LTALK, LINKTYPE_LTALK },
729
730 /* Acorn Econet */
731 { DLT_ECONET, LINKTYPE_ECONET },
732
733 /* OpenBSD DLT_PFLOG */
734 { DLT_PFLOG, LINKTYPE_PFLOG },
735
736 /* For Cisco-internal use */
737 { DLT_CISCO_IOS, LINKTYPE_CISCO_IOS },
738
739 /* Prism II monitor-mode header plus 802.11 header */
740 { DLT_PRISM_HEADER, LINKTYPE_PRISM_HEADER },
741
742 /* FreeBSD Aironet driver stuff */
743 { DLT_AIRONET_HEADER, LINKTYPE_AIRONET_HEADER },
744
745 /* Siemens HiPath HDLC */
746 { DLT_HHDLC, LINKTYPE_HHDLC },
747
748 /* RFC 2625 IP-over-Fibre Channel */
749 { DLT_IP_OVER_FC, LINKTYPE_IP_OVER_FC },
750
751 /* Solaris+SunATM */
752 { DLT_SUNATM, LINKTYPE_SUNATM },
753
754 /* RapidIO */
755 { DLT_RIO, LINKTYPE_RIO },
756
757 /* PCI Express */
758 { DLT_PCI_EXP, LINKTYPE_PCI_EXP },
759
760 /* Xilinx Aurora link layer */
761 { DLT_AURORA, LINKTYPE_AURORA },
762
763 /* 802.11 plus BSD radio header */
764 { DLT_IEEE802_11_RADIO, LINKTYPE_IEEE802_11_RADIO },
765
766 /* Tazmen Sniffer Protocol */
767 { DLT_TZSP, LINKTYPE_TZSP },
768
769 /* Arcnet with Linux-style link-layer headers */
770 { DLT_ARCNET_LINUX, LINKTYPE_ARCNET_LINUX },
771
772 /* Juniper-internal chassis encapsulation */
773 { DLT_JUNIPER_MLPPP, LINKTYPE_JUNIPER_MLPPP },
774 { DLT_JUNIPER_MLFR, LINKTYPE_JUNIPER_MLFR },
775 { DLT_JUNIPER_ES, LINKTYPE_JUNIPER_ES },
776 { DLT_JUNIPER_GGSN, LINKTYPE_JUNIPER_GGSN },
777 { DLT_JUNIPER_MFR, LINKTYPE_JUNIPER_MFR },
778 { DLT_JUNIPER_ATM2, LINKTYPE_JUNIPER_ATM2 },
779 { DLT_JUNIPER_SERVICES, LINKTYPE_JUNIPER_SERVICES },
780 { DLT_JUNIPER_ATM1, LINKTYPE_JUNIPER_ATM1 },
781
782 /* Apple IP-over-IEEE 1394 cooked header */
783 { DLT_APPLE_IP_OVER_IEEE1394, LINKTYPE_APPLE_IP_OVER_IEEE1394 },
784
785 /* SS7 */
786 { DLT_MTP2_WITH_PHDR, LINKTYPE_MTP2_WITH_PHDR },
787 { DLT_MTP2, LINKTYPE_MTP2 },
788 { DLT_MTP3, LINKTYPE_MTP3 },
789 { DLT_SCCP, LINKTYPE_SCCP },
790
791 /* DOCSIS MAC frames */
792 { DLT_DOCSIS, LINKTYPE_DOCSIS },
793
794 /* IrDA IrLAP packets + Linux-cooked header */
795 { DLT_LINUX_IRDA, LINKTYPE_LINUX_IRDA },
796
797 /* IBM SP and Next Federation switches */
798 { DLT_IBM_SP, LINKTYPE_IBM_SP },
799 { DLT_IBM_SN, LINKTYPE_IBM_SN },
800
801 /* 802.11 plus AVS radio header */
802 { DLT_IEEE802_11_RADIO_AVS, LINKTYPE_IEEE802_11_RADIO_AVS },
803
804 /*
805 * Any platform that defines additional DLT_* codes should:
806 *
807 * request a LINKTYPE_* code and value from tcpdump.org,
808 * as per the above;
809 *
810 * add, in their version of libpcap, an entry to map
811 * those DLT_* codes to the corresponding LINKTYPE_*
812 * code;
813 *
814 * redefine, in their "net/bpf.h", any DLT_* values
815 * that collide with the values used by their additional
816 * DLT_* codes, to remove those collisions (but without
817 * making them collide with any of the LINKTYPE_*
818 * values equal to 50 or above; they should also avoid
819 * defining DLT_* values that collide with those
820 * LINKTYPE_* values, either).
821 */
822
823 /* Juniper-internal chassis encapsulation */
824 { DLT_JUNIPER_MONITOR, LINKTYPE_JUNIPER_MONITOR },
825
826 /* BACnet MS/TP */
827 { DLT_BACNET_MS_TP, LINKTYPE_BACNET_MS_TP },
828
829 /* PPP for pppd, with direction flag in the PPP header */
830 { DLT_PPP_PPPD, LINKTYPE_PPP_PPPD},
831
832 /* Juniper-internal chassis encapsulation */
833 { DLT_JUNIPER_PPPOE, LINKTYPE_JUNIPER_PPPOE },
834 { DLT_JUNIPER_PPPOE_ATM,LINKTYPE_JUNIPER_PPPOE_ATM },
835
836 /* GPRS LLC */
837 { DLT_GPRS_LLC, LINKTYPE_GPRS_LLC },
838
839 /* Transparent Generic Framing Procedure (ITU-T G.7041/Y.1303) */
840 { DLT_GPF_T, LINKTYPE_GPF_T },
841
842 /* Framed Generic Framing Procedure (ITU-T G.7041/Y.1303) */
843 { DLT_GPF_F, LINKTYPE_GPF_F },
844
845 { DLT_GCOM_T1E1, LINKTYPE_GCOM_T1E1 },
846 { DLT_GCOM_SERIAL, LINKTYPE_GCOM_SERIAL },
847
848 /* Juniper-internal chassis encapsulation */
849 { DLT_JUNIPER_PIC_PEER, LINKTYPE_JUNIPER_PIC_PEER },
850
851 /* Endace types */
852 { DLT_ERF_ETH, LINKTYPE_ERF_ETH },
853 { DLT_ERF_POS, LINKTYPE_ERF_POS },
854
855 /* viSDN LAPD */
856 { DLT_LINUX_LAPD, LINKTYPE_LINUX_LAPD },
857
858 /* Juniper meta-information before Ether, PPP, Frame Relay, C-HDLC Frames */
859 { DLT_JUNIPER_ETHER, LINKTYPE_JUNIPER_ETHER },
860 { DLT_JUNIPER_PPP, LINKTYPE_JUNIPER_PPP },
861 { DLT_JUNIPER_FRELAY, LINKTYPE_JUNIPER_FRELAY },
862 { DLT_JUNIPER_CHDLC, LINKTYPE_JUNIPER_CHDLC },
863
864 /* Multi Link Frame Relay (FRF.16) */
865 { DLT_MFR, LINKTYPE_MFR },
866
867 /* Juniper Voice PIC */
868 { DLT_JUNIPER_VP, LINKTYPE_JUNIPER_VP },
869
870 /* Controller Area Network (CAN) v2.0B */
871 { DLT_A429, LINKTYPE_A429 },
872
873 /* Arinc 653 Interpartition Communication messages */
874 { DLT_A653_ICM, LINKTYPE_A653_ICM },
875
876 /* USB */
877 { DLT_USB, LINKTYPE_USB },
878
879 /* Bluetooth HCI UART transport layer */
880 { DLT_BLUETOOTH_HCI_H4, LINKTYPE_BLUETOOTH_HCI_H4 },
881
882 /* IEEE 802.16 MAC Common Part Sublayer */
883 { DLT_IEEE802_16_MAC_CPS, LINKTYPE_IEEE802_16_MAC_CPS },
884
885 /* USB with Linux header */
886 { DLT_USB_LINUX, LINKTYPE_USB_LINUX },
887
888 /* Controller Area Network (CAN) v2.0B */
889 { DLT_CAN20B, LINKTYPE_CAN20B },
890
891 /* IEEE 802.15.4 with address fields padded */
892 { DLT_IEEE802_15_4_LINUX, LINKTYPE_IEEE802_15_4_LINUX },
893
894 /* Per Packet Information encapsulated packets */
895 { DLT_PPI, LINKTYPE_PPI },
896
897 /* IEEE 802.16 MAC Common Part Sublayer plus radiotap header */
898 { DLT_IEEE802_16_MAC_CPS_RADIO, LINKTYPE_IEEE802_16_MAC_CPS_RADIO },
899
900 /* Juniper Voice ISM */
901 { DLT_JUNIPER_ISM, LINKTYPE_JUNIPER_ISM },
902
903 /* IEEE 802.15.4 exactly as it appears in the spec */
904 { DLT_IEEE802_15_4, LINKTYPE_IEEE802_15_4 },
905
906 /* Various link-layer types for SITA */
907 { DLT_SITA, LINKTYPE_SITA },
908
909 /* Various link-layer types for Endace */
910 { DLT_ERF, LINKTYPE_ERF },
911
912 /* Special header for u10 Networks boards */
913 { DLT_RAIF1, LINKTYPE_RAIF1 },
914
915 /* IPMB */
916 { DLT_IPMB, LINKTYPE_IPMB },
917
918 /* Juniper Secure Tunnel */
919 { DLT_JUNIPER_ST, LINKTYPE_JUNIPER_ST },
920
921 /* Bluetooth HCI UART transport layer, with pseudo-header */
922 { DLT_BLUETOOTH_HCI_H4_WITH_PHDR, LINKTYPE_BLUETOOTH_HCI_H4_WITH_PHDR },
923
924 /* AX.25 with KISS header */
925 { DLT_AX25_KISS, LINKTYPE_AX25_KISS },
926
927 /* Raw LAPD, with no pseudo-header */
928 { DLT_LAPD, LINKTYPE_LAPD },
929
930 /* PPP with one-byte pseudo-header giving direction */
931 { DLT_PPP_WITH_DIR, LINKTYPE_PPP_WITH_DIR },
932
933 /* Cisco HDLC with one-byte pseudo-header giving direction */
934 { DLT_C_HDLC_WITH_DIR, LINKTYPE_C_HDLC_WITH_DIR },
935
936 /* Frame Relay with one-byte pseudo-header giving direction */
937 { DLT_FRELAY_WITH_DIR, LINKTYPE_FRELAY_WITH_DIR },
938
939 /* LAPB with one-byte pseudo-header giving direction */
940 { DLT_LAPB_WITH_DIR, LINKTYPE_LAPB_WITH_DIR },
941
942 /* IPMB with Linux pseudo-header */
943 { DLT_IPMB_LINUX, LINKTYPE_IPMB_LINUX },
944
945 /* FlexRay */
946 { DLT_FLEXRAY, LINKTYPE_FLEXRAY },
947
948 /* MOST */
949 { DLT_MOST, LINKTYPE_MOST },
950
951 /* LIN */
952 { DLT_LIN, LINKTYPE_LIN },
953
954 /* X2E-private serial line capture */
955 { DLT_X2E_SERIAL, LINKTYPE_X2E_SERIAL },
956
957 /* X2E-private for Xoraya data logger family */
958 { DLT_X2E_XORAYA, LINKTYPE_X2E_XORAYA },
959
960 /* IEEE 802.15.4 with PHY data for non-ASK PHYs */
961 { DLT_IEEE802_15_4_NONASK_PHY, LINKTYPE_IEEE802_15_4_NONASK_PHY },
962
963 /* Input device events from Linux /dev/input/eventN devices */
964 { DLT_LINUX_EVDEV, LINKTYPE_LINUX_EVDEV },
965
966 { -1, -1 }
967 };
968
969 /*
970 * Mechanism for storing information about a capture in the upper
971 * 6 bits of a linktype value in a capture file.
972 *
973 * LT_LINKTYPE_EXT(x) extracts the additional information.
974 *
975 * The rest of the bits are for a value describing the link-layer
976 * value. LT_LINKTYPE(x) extracts that value.
977 */
978 #define LT_LINKTYPE(x) ((x) & 0x03FFFFFF)
979 #define LT_LINKTYPE_EXT(x) ((x) & 0xFC000000)
980
981 static int
982 dlt_to_linktype(int dlt)
983 {
984 int i;
985
986 for (i = 0; map[i].dlt != -1; i++) {
987 if (map[i].dlt == dlt)
988 return (map[i].linktype);
989 }
990
991 /*
992 * If we don't have a mapping for this DLT_ code, return an
993 * error; that means that the table above needs to have an
994 * entry added.
995 */
996 return (-1);
997 }
998
999 static int
1000 linktype_to_dlt(int linktype)
1001 {
1002 int i;
1003
1004 for (i = 0; map[i].linktype != -1; i++) {
1005 if (map[i].linktype == linktype)
1006 return (map[i].dlt);
1007 }
1008
1009 /*
1010 * If we don't have an entry for this link type, return
1011 * the link type value; it may be a DLT_ value from an
1012 * older version of libpcap.
1013 */
1014 return linktype;
1015 }
1016
1017 static int
1018 sf_write_header(FILE *fp, int linktype, int thiszone, int snaplen)
1019 {
1020 struct pcap_file_header hdr;
1021
1022 hdr.magic = TCPDUMP_MAGIC;
1023 hdr.version_major = PCAP_VERSION_MAJOR;
1024 hdr.version_minor = PCAP_VERSION_MINOR;
1025
1026 hdr.thiszone = thiszone;
1027 hdr.snaplen = snaplen;
1028 hdr.sigfigs = 0;
1029 hdr.linktype = linktype;
1030
1031 if (fwrite((char *)&hdr, sizeof(hdr), 1, fp) != 1)
1032 return (-1);
1033
1034 return (0);
1035 }
1036
1037 static void
1038 swap_hdr(struct pcap_file_header *hp)
1039 {
1040 hp->version_major = SWAPSHORT(hp->version_major);
1041 hp->version_minor = SWAPSHORT(hp->version_minor);
1042 hp->thiszone = SWAPLONG(hp->thiszone);
1043 hp->sigfigs = SWAPLONG(hp->sigfigs);
1044 hp->snaplen = SWAPLONG(hp->snaplen);
1045 hp->linktype = SWAPLONG(hp->linktype);
1046 }
1047
1048 static int
1049 sf_getnonblock(pcap_t *p, char *errbuf)
1050 {
1051 /*
1052 * This is a savefile, not a live capture file, so never say
1053 * it's in non-blocking mode.
1054 */
1055 return (0);
1056 }
1057
1058 static int
1059 sf_setnonblock(pcap_t *p, int nonblock, char *errbuf)
1060 {
1061 /*
1062 * This is a savefile, not a live capture file, so ignore
1063 * requests to put it in non-blocking mode.
1064 */
1065 return (0);
1066 }
1067
1068 static int
1069 sf_stats(pcap_t *p, struct pcap_stat *ps)
1070 {
1071 snprintf(p->errbuf, PCAP_ERRBUF_SIZE,
1072 "Statistics aren't available from savefiles");
1073 return (-1);
1074 }
1075
1076 #ifdef WIN32
1077 static int
1078 sf_setbuff(pcap_t *p, int dim)
1079 {
1080 snprintf(p->errbuf, PCAP_ERRBUF_SIZE,
1081 "The kernel buffer size cannot be set while reading from a file");
1082 return (-1);
1083 }
1084
1085 static int
1086 sf_setmode(pcap_t *p, int mode)
1087 {
1088 snprintf(p->errbuf, PCAP_ERRBUF_SIZE,
1089 "impossible to set mode while reading from a file");
1090 return (-1);
1091 }
1092
1093 static int
1094 sf_setmintocopy(pcap_t *p, int size)
1095 {
1096 snprintf(p->errbuf, PCAP_ERRBUF_SIZE,
1097 "The mintocopy parameter cannot be set while reading from a file");
1098 return (-1);
1099 }
1100 #endif
1101
1102 static int
1103 sf_inject(pcap_t *p, const void *buf _U_, size_t size _U_)
1104 {
1105 strlcpy(p->errbuf, "Sending packets isn't supported on savefiles",
1106 PCAP_ERRBUF_SIZE);
1107 return (-1);
1108 }
1109
1110 /*
1111 * Set direction flag: Which packets do we accept on a forwarding
1112 * single device? IN, OUT or both?
1113 */
1114 static int
1115 sf_setdirection(pcap_t *p, pcap_direction_t d)
1116 {
1117 snprintf(p->errbuf, sizeof(p->errbuf),
1118 "Setting direction is not supported on savefiles");
1119 return (-1);
1120 }
1121
1122 static void
1123 sf_cleanup(pcap_t *p)
1124 {
1125 if (p->sf.rfile != stdin)
1126 (void)fclose(p->sf.rfile);
1127 if (p->sf.base != NULL)
1128 free(p->sf.base);
1129 }
1130
1131 pcap_t *
1132 pcap_open_offline(const char *fname, char *errbuf)
1133 {
1134 FILE *fp;
1135 pcap_t *p;
1136
1137 if (fname[0] == '-' && fname[1] == '\0')
1138 {
1139 fp = stdin;
1140 #if defined(WIN32) || defined(MSDOS)
1141 /*
1142 * We're reading from the standard input, so put it in binary
1143 * mode, as savefiles are binary files.
1144 */
1145 SET_BINMODE(fp);
1146 #endif
1147 }
1148 else {
1149 #if !defined(WIN32) && !defined(MSDOS)
1150 fp = fopen(fname, "r");
1151 #else
1152 fp = fopen(fname, "rb");
1153 #endif
1154 if (fp == NULL) {
1155 snprintf(errbuf, PCAP_ERRBUF_SIZE, "%s: %s", fname,
1156 pcap_strerror(errno));
1157 return (NULL);
1158 }
1159 }
1160 p = pcap_fopen_offline(fp, errbuf);
1161 if (p == NULL) {
1162 if (fp != stdin)
1163 fclose(fp);
1164 }
1165 return (p);
1166 }
1167
1168 #ifdef WIN32
1169 pcap_t* pcap_hopen_offline(intptr_t osfd, char *errbuf)
1170 {
1171 int fd;
1172 FILE *file;
1173
1174 fd = _open_osfhandle(osfd, _O_RDONLY);
1175 if ( fd < 0 )
1176 {
1177 snprintf(errbuf, PCAP_ERRBUF_SIZE, pcap_strerror(errno));
1178 return NULL;
1179 }
1180
1181 file = _fdopen(fd, "rb");
1182 if ( file == NULL )
1183 {
1184 snprintf(errbuf, PCAP_ERRBUF_SIZE, pcap_strerror(errno));
1185 return NULL;
1186 }
1187
1188 return pcap_fopen_offline(file, errbuf);
1189 }
1190 #endif
1191
1192 #ifdef WIN32
1193 static
1194 #endif
1195 pcap_t *
1196 pcap_fopen_offline(FILE *fp, char *errbuf)
1197 {
1198 register pcap_t *p;
1199 struct pcap_file_header hdr;
1200 size_t amt_read;
1201 bpf_u_int32 magic;
1202 int linklen;
1203
1204 p = (pcap_t *)malloc(sizeof(*p));
1205 if (p == NULL) {
1206 strlcpy(errbuf, "out of swap", PCAP_ERRBUF_SIZE);
1207 return (NULL);
1208 }
1209
1210 memset((char *)p, 0, sizeof(*p));
1211
1212 amt_read = fread((char *)&hdr, 1, sizeof(hdr), fp);
1213 if (amt_read != sizeof(hdr)) {
1214 if (ferror(fp)) {
1215 snprintf(errbuf, PCAP_ERRBUF_SIZE,
1216 "error reading dump file: %s",
1217 pcap_strerror(errno));
1218 } else {
1219 snprintf(errbuf, PCAP_ERRBUF_SIZE,
1220 "truncated dump file; tried to read %lu file header bytes, only got %lu",
1221 (unsigned long)sizeof(hdr),
1222 (unsigned long)amt_read);
1223 }
1224 goto bad;
1225 }
1226 magic = hdr.magic;
1227 if (magic != TCPDUMP_MAGIC && magic != KUZNETZOV_TCPDUMP_MAGIC) {
1228 magic = SWAPLONG(magic);
1229 if (magic != TCPDUMP_MAGIC && magic != KUZNETZOV_TCPDUMP_MAGIC) {
1230 snprintf(errbuf, PCAP_ERRBUF_SIZE,
1231 "bad dump file format");
1232 goto bad;
1233 }
1234 p->sf.swapped = 1;
1235 swap_hdr(&hdr);
1236 }
1237 if (magic == KUZNETZOV_TCPDUMP_MAGIC) {
1238 /*
1239 * XXX - the patch that's in some versions of libpcap
1240 * changes the packet header but not the magic number,
1241 * and some other versions with this magic number have
1242 * some extra debugging information in the packet header;
1243 * we'd have to use some hacks^H^H^H^H^Hheuristics to
1244 * detect those variants.
1245 *
1246 * Ethereal does that, but it does so by trying to read
1247 * the first two packets of the file with each of the
1248 * record header formats. That currently means it seeks
1249 * backwards and retries the reads, which doesn't work
1250 * on pipes. We want to be able to read from a pipe, so
1251 * that strategy won't work; we'd have to buffer some
1252 * data ourselves and read from that buffer in order to
1253 * make that work.
1254 */
1255 p->sf.hdrsize = sizeof(struct pcap_sf_patched_pkthdr);
1256 } else
1257 p->sf.hdrsize = sizeof(struct pcap_sf_pkthdr);
1258 if (hdr.version_major < PCAP_VERSION_MAJOR) {
1259 snprintf(errbuf, PCAP_ERRBUF_SIZE, "archaic file format");
1260 goto bad;
1261 }
1262 p->tzoff = hdr.thiszone;
1263 p->snapshot = hdr.snaplen;
1264 p->linktype = linktype_to_dlt(LT_LINKTYPE(hdr.linktype));
1265 p->linktype_ext = LT_LINKTYPE_EXT(hdr.linktype);
1266 if (magic == KUZNETZOV_TCPDUMP_MAGIC && p->linktype == DLT_EN10MB) {
1267 /*
1268 * This capture might have been done in raw mode or cooked
1269 * mode.
1270 *
1271 * If it was done in cooked mode, p->snapshot was passed
1272 * to recvfrom() as the buffer size, meaning that the
1273 * most packet data that would be copied would be
1274 * p->snapshot. However, a faked Ethernet header would
1275 * then have been added to it, so the most data that would
1276 * be in a packet in the file would be p->snapshot + 14.
1277 *
1278 * We can't easily tell whether the capture was done in
1279 * raw mode or cooked mode, so we'll assume it was
1280 * cooked mode, and add 14 to the snapshot length. That
1281 * means that, for a raw capture, the snapshot length will
1282 * be misleading if you use it to figure out why a capture
1283 * doesn't have all the packet data, but there's not much
1284 * we can do to avoid that.
1285 */
1286 p->snapshot += 14;
1287 }
1288 p->sf.rfile = fp;
1289 #ifndef WIN32
1290 p->bufsize = hdr.snaplen;
1291 #else
1292 /* Allocate the space for pcap_pkthdr as well. It will be used by pcap_read_ex */
1293 p->bufsize = hdr.snaplen+sizeof(struct pcap_pkthdr);
1294 #endif
1295
1296 /* Align link header as required for proper data alignment */
1297 /* XXX should handle all types */
1298 switch (p->linktype) {
1299
1300 case DLT_EN10MB:
1301 linklen = 14;
1302 break;
1303
1304 case DLT_FDDI:
1305 linklen = 13 + 8; /* fddi_header + llc */
1306 break;
1307
1308 case DLT_NULL:
1309 default:
1310 linklen = 0;
1311 break;
1312 }
1313
1314 if (p->bufsize < 0)
1315 p->bufsize = BPF_MAXBUFSIZE;
1316 p->sf.base = (u_char *)malloc(p->bufsize + BPF_ALIGNMENT);
1317 if (p->sf.base == NULL) {
1318 strlcpy(errbuf, "out of swap", PCAP_ERRBUF_SIZE);
1319 goto bad;
1320 }
1321 p->buffer = p->sf.base + BPF_ALIGNMENT - (linklen % BPF_ALIGNMENT);
1322 p->sf.version_major = hdr.version_major;
1323 p->sf.version_minor = hdr.version_minor;
1324 #ifdef PCAP_FDDIPAD
1325 /* Padding only needed for live capture fcode */
1326 p->fddipad = 0;
1327 #endif
1328
1329 /*
1330 * We interchanged the caplen and len fields at version 2.3,
1331 * in order to match the bpf header layout. But unfortunately
1332 * some files were written with version 2.3 in their headers
1333 * but without the interchanged fields.
1334 *
1335 * In addition, DG/UX tcpdump writes out files with a version
1336 * number of 543.0, and with the caplen and len fields in the
1337 * pre-2.3 order.
1338 */
1339 switch (hdr.version_major) {
1340
1341 case 2:
1342 if (hdr.version_minor < 3)
1343 p->sf.lengths_swapped = SWAPPED;
1344 else if (hdr.version_minor == 3)
1345 p->sf.lengths_swapped = MAYBE_SWAPPED;
1346 else
1347 p->sf.lengths_swapped = NOT_SWAPPED;
1348 break;
1349
1350 case 543:
1351 p->sf.lengths_swapped = SWAPPED;
1352 break;
1353
1354 default:
1355 p->sf.lengths_swapped = NOT_SWAPPED;
1356 break;
1357 }
1358
1359 #if !defined(WIN32) && !defined(MSDOS)
1360 /*
1361 * You can do "select()" and "poll()" on plain files on most
1362 * platforms, and should be able to do so on pipes.
1363 *
1364 * You can't do "select()" on anything other than sockets in
1365 * Windows, so, on Win32 systems, we don't have "selectable_fd".
1366 */
1367 p->selectable_fd = fileno(fp);
1368 #endif
1369
1370 p->read_op = pcap_offline_read;
1371 p->inject_op = sf_inject;
1372 p->setfilter_op = install_bpf_program;
1373 p->setdirection_op = sf_setdirection;
1374 p->set_datalink_op = NULL; /* we don't support munging link-layer headers */
1375 p->getnonblock_op = sf_getnonblock;
1376 p->setnonblock_op = sf_setnonblock;
1377 p->stats_op = sf_stats;
1378 #ifdef WIN32
1379 p->setbuff_op = sf_setbuff;
1380 p->setmode_op = sf_setmode;
1381 p->setmintocopy_op = sf_setmintocopy;
1382 #endif
1383 p->cleanup_op = sf_cleanup;
1384 p->activated = 1;
1385
1386 return (p);
1387 bad:
1388 free(p);
1389 return (NULL);
1390 }
1391
1392 /*
1393 * Read sf_readfile and return the next packet. Return the header in hdr
1394 * and the contents in buf. Return 0 on success, SFERR_EOF if there were
1395 * no more packets, and SFERR_TRUNC if a partial packet was encountered.
1396 */
1397 static int
1398 sf_next_packet(pcap_t *p, struct pcap_pkthdr *hdr, u_char *buf, u_int buflen)
1399 {
1400 struct pcap_sf_patched_pkthdr sf_hdr;
1401 FILE *fp = p->sf.rfile;
1402 size_t amt_read;
1403 bpf_u_int32 t;
1404
1405 /*
1406 * Read the packet header; the structure we use as a buffer
1407 * is the longer structure for files generated by the patched
1408 * libpcap, but if the file has the magic number for an
1409 * unpatched libpcap we only read as many bytes as the regular
1410 * header has.
1411 */
1412 amt_read = fread(&sf_hdr, 1, p->sf.hdrsize, fp);
1413 if (amt_read != p->sf.hdrsize) {
1414 if (ferror(fp)) {
1415 snprintf(p->errbuf, PCAP_ERRBUF_SIZE,
1416 "error reading dump file: %s",
1417 pcap_strerror(errno));
1418 return (-1);
1419 } else {
1420 if (amt_read != 0) {
1421 snprintf(p->errbuf, PCAP_ERRBUF_SIZE,
1422 "truncated dump file; tried to read %lu header bytes, only got %lu",
1423 (unsigned long)p->sf.hdrsize,
1424 (unsigned long)amt_read);
1425 return (-1);
1426 }
1427 /* EOF */
1428 return (1);
1429 }
1430 }
1431
1432 if (p->sf.swapped) {
1433 /* these were written in opposite byte order */
1434 hdr->caplen = SWAPLONG(sf_hdr.caplen);
1435 hdr->len = SWAPLONG(sf_hdr.len);
1436 hdr->ts.tv_sec = SWAPLONG(sf_hdr.ts.tv_sec);
1437 hdr->ts.tv_usec = SWAPLONG(sf_hdr.ts.tv_usec);
1438 } else {
1439 hdr->caplen = sf_hdr.caplen;
1440 hdr->len = sf_hdr.len;
1441 hdr->ts.tv_sec = sf_hdr.ts.tv_sec;
1442 hdr->ts.tv_usec = sf_hdr.ts.tv_usec;
1443 }
1444 /* Swap the caplen and len fields, if necessary. */
1445 switch (p->sf.lengths_swapped) {
1446
1447 case NOT_SWAPPED:
1448 break;
1449
1450 case MAYBE_SWAPPED:
1451 if (hdr->caplen <= hdr->len) {
1452 /*
1453 * The captured length is <= the actual length,
1454 * so presumably they weren't swapped.
1455 */
1456 break;
1457 }
1458 /* FALLTHROUGH */
1459
1460 case SWAPPED:
1461 t = hdr->caplen;
1462 hdr->caplen = hdr->len;
1463 hdr->len = t;
1464 break;
1465 }
1466
1467 if (hdr->caplen > buflen) {
1468 /*
1469 * This can happen due to Solaris 2.3 systems tripping
1470 * over the BUFMOD problem and not setting the snapshot
1471 * correctly in the savefile header. If the caplen isn't
1472 * grossly wrong, try to salvage.
1473 */
1474 static u_char *tp = NULL;
1475 static size_t tsize = 0;
1476
1477 if (hdr->caplen > 65535) {
1478 snprintf(p->errbuf, PCAP_ERRBUF_SIZE,
1479 "bogus savefile header");
1480 return (-1);
1481 }
1482
1483 if (tsize < hdr->caplen) {
1484 tsize = ((hdr->caplen + 1023) / 1024) * 1024;
1485 if (tp != NULL)
1486 free((u_char *)tp);
1487 tp = (u_char *)malloc(tsize);
1488 if (tp == NULL) {
1489 tsize = 0;
1490 snprintf(p->errbuf, PCAP_ERRBUF_SIZE,
1491 "BUFMOD hack malloc");
1492 return (-1);
1493 }
1494 }
1495 amt_read = fread((char *)tp, 1, hdr->caplen, fp);
1496 if (amt_read != hdr->caplen) {
1497 if (ferror(fp)) {
1498 snprintf(p->errbuf, PCAP_ERRBUF_SIZE,
1499 "error reading dump file: %s",
1500 pcap_strerror(errno));
1501 } else {
1502 snprintf(p->errbuf, PCAP_ERRBUF_SIZE,
1503 "truncated dump file; tried to read %u captured bytes, only got %lu",
1504 hdr->caplen, (unsigned long)amt_read);
1505 }
1506 return (-1);
1507 }
1508 /*
1509 * We can only keep up to buflen bytes. Since caplen > buflen
1510 * is exactly how we got here, we know we can only keep the
1511 * first buflen bytes and must drop the remainder. Adjust
1512 * caplen accordingly, so we don't get confused later as
1513 * to how many bytes we have to play with.
1514 */
1515 hdr->caplen = buflen;
1516 memcpy((char *)buf, (char *)tp, buflen);
1517
1518 } else {
1519 /* read the packet itself */
1520 amt_read = fread((char *)buf, 1, hdr->caplen, fp);
1521 if (amt_read != hdr->caplen) {
1522 if (ferror(fp)) {
1523 snprintf(p->errbuf, PCAP_ERRBUF_SIZE,
1524 "error reading dump file: %s",
1525 pcap_strerror(errno));
1526 } else {
1527 snprintf(p->errbuf, PCAP_ERRBUF_SIZE,
1528 "truncated dump file; tried to read %u captured bytes, only got %lu",
1529 hdr->caplen, (unsigned long)amt_read);
1530 }
1531 return (-1);
1532 }
1533 }
1534
1535 /*
1536 * The DLT_USB_LINUX header is in host byte order when capturing
1537 * (it's supplied directly from a memory-mapped buffer shared
1538 * by the kernel).
1539 *
1540 * When reading a DLT_USB_LINUX capture file, we need to convert
1541 * it from the capturing host's byte order to the reading host's
1542 * byte order.
1543 */
1544 if (p->sf.swapped && p->linktype == DLT_USB_LINUX) {
1545 pcap_usb_header* uhdr = (pcap_usb_header*) buf;
1546 /*
1547 * The URB id is a totally opaque value; do we really need to
1548 * converte it to the reading host's byte order???
1549 */
1550 if (hdr->caplen < 8)
1551 return 0;
1552 uhdr->id = SWAPLL(uhdr->id);
1553 if (hdr->caplen < 14)
1554 return 0;
1555 uhdr->bus_id = SWAPSHORT(uhdr->bus_id);
1556 if (hdr->caplen < 24)
1557 return 0;
1558 uhdr->ts_sec = SWAPLL(uhdr->ts_sec);
1559 if (hdr->caplen < 28)
1560 return 0;
1561 uhdr->ts_usec = SWAPLONG(uhdr->ts_usec);
1562 if (hdr->caplen < 32)
1563 return 0;
1564 uhdr->status = SWAPLONG(uhdr->status);
1565 if (hdr->caplen < 36)
1566 return 0;
1567 uhdr->urb_len = SWAPLONG(uhdr->urb_len);
1568 if (hdr->caplen < 40)
1569 return 0;
1570 uhdr->data_len = SWAPLONG(uhdr->data_len);
1571 }
1572 return (0);
1573 }
1574
1575 /*
1576 * Print out packets stored in the file initialized by sf_read_init().
1577 * If cnt > 0, return after 'cnt' packets, otherwise continue until eof.
1578 */
1579 int
1580 pcap_offline_read(pcap_t *p, int cnt, pcap_handler callback, u_char *user)
1581 {
1582 struct bpf_insn *fcode;
1583 int status = 0;
1584 int n = 0;
1585
1586 while (status == 0) {
1587 struct pcap_pkthdr h;
1588
1589 /*
1590 * Has "pcap_breakloop()" been called?
1591 * If so, return immediately - if we haven't read any
1592 * packets, clear the flag and return -2 to indicate
1593 * that we were told to break out of the loop, otherwise
1594 * leave the flag set, so that the *next* call will break
1595 * out of the loop without having read any packets, and
1596 * return the number of packets we've processed so far.
1597 */
1598 if (p->break_loop) {
1599 if (n == 0) {
1600 p->break_loop = 0;
1601 return (-2);
1602 } else
1603 return (n);
1604 }
1605
1606 status = sf_next_packet(p, &h, p->buffer, p->bufsize);
1607 if (status) {
1608 if (status == 1)
1609 return (0);
1610 return (status);
1611 }
1612
1613 if ((fcode = p->fcode.bf_insns) == NULL ||
1614 bpf_filter(fcode, p->buffer, h.len, h.caplen)) {
1615 (*callback)(user, &h, p->buffer);
1616 if (++n >= cnt && cnt > 0)
1617 break;
1618 }
1619 }
1620 /*XXX this breaks semantics tcpslice expects */
1621 return (n);
1622 }
1623
1624 /*
1625 * Output a packet to the initialized dump file.
1626 */
1627 void
1628 pcap_dump(u_char *user, const struct pcap_pkthdr *h, const u_char *sp)
1629 {
1630 register FILE *f;
1631 struct pcap_sf_pkthdr sf_hdr;
1632
1633 f = (FILE *)user;
1634 sf_hdr.ts.tv_sec = h->ts.tv_sec;
1635 sf_hdr.ts.tv_usec = h->ts.tv_usec;
1636 sf_hdr.caplen = h->caplen;
1637 sf_hdr.len = h->len;
1638 /* XXX we should check the return status */
1639 (void)fwrite(&sf_hdr, sizeof(sf_hdr), 1, f);
1640 (void)fwrite(sp, h->caplen, 1, f);
1641 }
1642
1643 static pcap_dumper_t *
1644 pcap_setup_dump(pcap_t *p, int linktype, FILE *f, const char *fname)
1645 {
1646
1647 #if defined(WIN32) || defined(MSDOS)
1648 /*
1649 * If we're writing to the standard output, put it in binary
1650 * mode, as savefiles are binary files.
1651 *
1652 * Otherwise, we turn off buffering.
1653 * XXX - why? And why not on the standard output?
1654 */
1655 if (f == stdout)
1656 SET_BINMODE(f);
1657 else
1658 setbuf(f, NULL);
1659 #endif
1660 if (sf_write_header(f, linktype, p->tzoff, p->snapshot) == -1) {
1661 snprintf(p->errbuf, PCAP_ERRBUF_SIZE, "Can't write to %s: %s",
1662 fname, pcap_strerror(errno));
1663 if (f != stdout)
1664 (void)fclose(f);
1665 return (NULL);
1666 }
1667 return ((pcap_dumper_t *)f);
1668 }
1669
1670 /*
1671 * Initialize so that sf_write() will output to the file named 'fname'.
1672 */
1673 pcap_dumper_t *
1674 pcap_dump_open(pcap_t *p, const char *fname)
1675 {
1676 FILE *f;
1677 int linktype;
1678
1679 linktype = dlt_to_linktype(p->linktype);
1680 if (linktype == -1) {
1681 snprintf(p->errbuf, PCAP_ERRBUF_SIZE,
1682 "%s: link-layer type %d isn't supported in savefiles",
1683 fname, linktype);
1684 return (NULL);
1685 }
1686 linktype |= p->linktype_ext;
1687
1688 if (fname[0] == '-' && fname[1] == '\0') {
1689 f = stdout;
1690 fname = "standard output";
1691 } else {
1692 #if !defined(WIN32) && !defined(MSDOS)
1693 f = fopen(fname, "w");
1694 #else
1695 f = fopen(fname, "wb");
1696 #endif
1697 if (f == NULL) {
1698 snprintf(p->errbuf, PCAP_ERRBUF_SIZE, "%s: %s",
1699 fname, pcap_strerror(errno));
1700 return (NULL);
1701 }
1702 }
1703 return (pcap_setup_dump(p, linktype, f, fname));
1704 }
1705
1706 /*
1707 * Initialize so that sf_write() will output to the given stream.
1708 */
1709 pcap_dumper_t *
1710 pcap_dump_fopen(pcap_t *p, FILE *f)
1711 {
1712 int linktype;
1713
1714 linktype = dlt_to_linktype(p->linktype);
1715 if (linktype == -1) {
1716 snprintf(p->errbuf, PCAP_ERRBUF_SIZE,
1717 "stream: link-layer type %d isn't supported in savefiles",
1718 linktype);
1719 return (NULL);
1720 }
1721 linktype |= p->linktype_ext;
1722
1723 return (pcap_setup_dump(p, linktype, f, "stream"));
1724 }
1725
1726 FILE *
1727 pcap_dump_file(pcap_dumper_t *p)
1728 {
1729 return ((FILE *)p);
1730 }
1731
1732 long
1733 pcap_dump_ftell(pcap_dumper_t *p)
1734 {
1735 return (ftell((FILE *)p));
1736 }
1737
1738 int
1739 pcap_dump_flush(pcap_dumper_t *p)
1740 {
1741
1742 if (fflush((FILE *)p) == EOF)
1743 return (-1);
1744 else
1745 return (0);
1746 }
1747
1748 void
1749 pcap_dump_close(pcap_dumper_t *p)
1750 {
1751
1752 #ifdef notyet
1753 if (ferror((FILE *)p))
1754 return-an-error;
1755 /* XXX should check return from fclose() too */
1756 #endif
1757 (void)fclose((FILE *)p);
1758 }