1 /* $NetBSD: pcap-snit.c,v 1.3 2015/03/31 21:39:42 christos Exp $ */
4 * Copyright (c) 1990, 1991, 1992, 1993, 1994, 1995, 1996
5 * The Regents of the University of California. All rights reserved.
7 * Redistribution and use in source and binary forms, with or without
8 * modification, are permitted provided that: (1) source code distributions
9 * retain the above copyright notice and this paragraph in its entirety, (2)
10 * distributions including binary code include the above copyright notice and
11 * this paragraph in its entirety in the documentation or other materials
12 * provided with the distribution, and (3) all advertising materials mentioning
13 * features or use of this software display the following acknowledgement:
14 * ``This product includes software developed by the University of California,
15 * Lawrence Berkeley Laboratory and its contributors.'' Neither the name of
16 * the University nor the names of its contributors may be used to endorse
17 * or promote products derived from this software without specific prior
19 * THIS SOFTWARE IS PROVIDED ``AS IS'' AND WITHOUT ANY EXPRESS OR IMPLIED
20 * WARRANTIES, INCLUDING, WITHOUT LIMITATION, THE IMPLIED WARRANTIES OF
21 * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE.
23 * Modifications made to accommodate the new SunOS4.0 NIT facility by
24 * Micky Liu, micky@cunixc.cc.columbia.edu, Columbia University in May, 1989.
25 * This module now handles the STREAMS based NIT.
28 #include <sys/cdefs.h>
29 __RCSID("$NetBSD: pcap-snit.c,v 1.3 2015/03/31 21:39:42 christos Exp $");
35 #include <sys/types.h>
37 #include <sys/timeb.h>
39 #include <sys/fcntlcom.h>
41 #include <sys/ioctl.h>
42 #include <sys/socket.h>
43 #include <sys/stropts.h>
47 #include <net/nit_if.h>
48 #include <net/nit_pf.h>
49 #include <net/nit_buf.h>
51 #include <netinet/in.h>
52 #include <netinet/in_systm.h>
53 #include <netinet/ip.h>
54 #include <netinet/if_ether.h>
55 #include <netinet/ip_var.h>
56 #include <netinet/udp.h>
57 #include <netinet/udp_var.h>
58 #include <netinet/tcp.h>
59 #include <netinet/tcpip.h>
69 #ifdef HAVE_OS_PROTO_H
74 * The chunk size for NIT. This is the amount of buffering
75 * done for read calls.
77 #define CHUNKSIZE (2*1024)
80 * The total buffer space used by NIT.
82 #define BUFSPACE (4*CHUNKSIZE)
85 static int nit_setflags(int, int, int, char *);
88 * Private data for capturing on STREAMS NIT devices.
91 struct pcap_stat stat
;
95 pcap_stats_snit(pcap_t
*p
, struct pcap_stat
*ps
)
97 struct pcap_snit
*psn
= p
->priv
;
100 * "ps_recv" counts packets handed to the filter, not packets
101 * that passed the filter. As filtering is done in userland,
102 * this does not include packets dropped because we ran out
105 * "ps_drop" counts packets dropped inside the "/dev/nit"
106 * device because of flow control requirements or resource
107 * exhaustion; it doesn't count packets dropped by the
108 * interface driver, or packets dropped upstream. As filtering
109 * is done in userland, it counts packets regardless of whether
110 * they would've passed the filter.
112 * These statistics don't include packets not yet read from the
113 * kernel by libpcap or packets not yet read from libpcap by the
121 pcap_read_snit(pcap_t
*p
, int cnt
, pcap_handler callback
, u_char
*user
)
123 struct pcap_snit
*psn
= p
->priv
;
125 register u_char
*bp
, *cp
, *ep
;
126 register struct nit_bufhdr
*hdrp
;
127 register struct nit_iftime
*ntp
;
128 register struct nit_iflen
*nlp
;
129 register struct nit_ifdrops
*ndp
;
134 cc
= read(p
->fd
, (char *)p
->buffer
, p
->bufsize
);
136 if (errno
== EWOULDBLOCK
)
138 snprintf(p
->errbuf
, sizeof(p
->errbuf
), "pcap_read: %s",
139 pcap_strerror(errno
));
147 * loop through each snapshot in the chunk
153 * Has "pcap_breakloop()" been called?
154 * If so, return immediately - if we haven't read any
155 * packets, clear the flag and return -2 to indicate
156 * that we were told to break out of the loop, otherwise
157 * leave the flag set, so that the *next* call will break
158 * out of the loop without having read any packets, and
159 * return the number of packets we've processed so far.
175 /* get past NIT buffer */
176 hdrp
= (struct nit_bufhdr
*)cp
;
179 /* get past NIT timer */
180 ntp
= (struct nit_iftime
*)cp
;
183 ndp
= (struct nit_ifdrops
*)cp
;
184 psn
->stat
.ps_drop
= ndp
->nh_drops
;
187 /* get past packet len */
188 nlp
= (struct nit_iflen
*)cp
;
192 bp
+= hdrp
->nhb_totlen
;
194 caplen
= nlp
->nh_pktlen
;
195 if (caplen
> p
->snapshot
)
196 caplen
= p
->snapshot
;
198 if (bpf_filter(p
->fcode
.bf_insns
, cp
, nlp
->nh_pktlen
, caplen
)) {
199 struct pcap_pkthdr h
;
200 h
.ts
= ntp
->nh_timestamp
;
201 h
.len
= nlp
->nh_pktlen
;
203 (*callback
)(user
, &h
, cp
);
204 if (++n
>= cnt
&& !PACKET_COUNT_IS_UNLIMITED(cnt
)) {
216 pcap_inject_snit(pcap_t
*p
, const void *buf
, size_t size
)
218 struct strbuf ctl
, data
;
221 * XXX - can we just do
223 ret = write(pd->f, buf, size);
225 ctl
.len
= sizeof(*sa
); /* XXX - what was this? */
226 ctl
.buf
= (char *)sa
;
229 ret
= putmsg(p
->fd
, &ctl
, &data
);
231 snprintf(p
->errbuf
, PCAP_ERRBUF_SIZE
, "send: %s",
232 pcap_strerror(errno
));
239 nit_setflags(pcap_t
*p
)
244 struct timeval timeout
;
246 if (p
->opt
.immediate
) {
248 * Set the chunk size to zero, so that chunks get sent
251 si
.ic_cmd
= NIOCSCHUNK
;
252 si
.ic_len
= sizeof(zero
);
253 si
.ic_dp
= (char *)&zero
;
254 if (ioctl(p
->fd
, I_STR
, (char *)&si
) < 0) {
255 snprintf(p
->errbuf
, PCAP_ERRBUF_SIZE
, "NIOCSCHUNK: %s",
256 pcap_strerror(errno
));
260 si
.ic_timout
= INFTIM
;
261 if (p
->opt
.timeout
!= 0) {
262 timeout
.tv_sec
= p
->opt
.timeout
/ 1000;
263 timeout
.tv_usec
= (p
->opt
.timeout
* 1000) % 1000000;
264 si
.ic_cmd
= NIOCSTIME
;
265 si
.ic_len
= sizeof(timeout
);
266 si
.ic_dp
= (char *)&timeout
;
267 if (ioctl(p
->fd
, I_STR
, (char *)&si
) < 0) {
268 snprintf(p
->errbuf
, PCAP_ERRBUF_SIZE
, "NIOCSTIME: %s",
269 pcap_strerror(errno
));
273 flags
= NI_TIMESTAMP
| NI_LEN
| NI_DROPS
;
276 si
.ic_cmd
= NIOCSFLAGS
;
277 si
.ic_len
= sizeof(flags
);
278 si
.ic_dp
= (char *)&flags
;
279 if (ioctl(p
->fd
, I_STR
, (char *)&si
) < 0) {
280 snprintf(p
->errbuf
, PCAP_ERRBUF_SIZE
, "NIOCSFLAGS: %s",
281 pcap_strerror(errno
));
288 pcap_activate_snit(pcap_t
*p
)
290 struct strioctl si
; /* struct for ioctl() */
291 struct ifreq ifr
; /* interface request struct */
292 int chunksize
= CHUNKSIZE
;
294 static char dev
[] = "/dev/nit";
298 * No monitor mode on SunOS 4.x (no Wi-Fi devices on
299 * hardware supported by SunOS 4.x).
301 return (PCAP_ERROR_RFMON_NOTSUP
);
304 if (p
->snapshot
< 96)
306 * NIT requires a snapshot length of at least 96.
311 * Initially try a read/write open (to allow the inject
312 * method to work). If that fails due to permission
313 * issues, fall back to read-only. This allows a
314 * non-root user to be granted specific access to pcap
315 * capabilities via file permissions.
317 * XXX - we should have an API that has a flag that
318 * controls whether to open read-only or read-write,
319 * so that denial of permission to send (or inability
320 * to send, if sending packets isn't supported on
321 * the device in question) can be indicated at open
324 p
->fd
= fd
= open(dev
, O_RDWR
);
325 if (fd
< 0 && errno
== EACCES
)
326 p
->fd
= fd
= open(dev
, O_RDONLY
);
328 snprintf(p
->errbuf
, PCAP_ERRBUF_SIZE
, "%s: %s", dev
,
329 pcap_strerror(errno
));
333 /* arrange to get discrete messages from the STREAM and use NIT_BUF */
334 if (ioctl(fd
, I_SRDOPT
, (char *)RMSGD
) < 0) {
335 snprintf(p
->errbuf
, PCAP_ERRBUF_SIZE
, "I_SRDOPT: %s",
336 pcap_strerror(errno
));
339 if (ioctl(fd
, I_PUSH
, "nbuf") < 0) {
340 snprintf(p
->errbuf
, PCAP_ERRBUF_SIZE
, "push nbuf: %s",
341 pcap_strerror(errno
));
344 /* set the chunksize */
345 si
.ic_cmd
= NIOCSCHUNK
;
346 si
.ic_timout
= INFTIM
;
347 si
.ic_len
= sizeof(chunksize
);
348 si
.ic_dp
= (char *)&chunksize
;
349 if (ioctl(fd
, I_STR
, (char *)&si
) < 0) {
350 snprintf(p
->errbuf
, PCAP_ERRBUF_SIZE
, "NIOCSCHUNK: %s",
351 pcap_strerror(errno
));
355 /* request the interface */
356 strncpy(ifr
.ifr_name
, p
->opt
.source
, sizeof(ifr
.ifr_name
));
357 ifr
.ifr_name
[sizeof(ifr
.ifr_name
) - 1] = '\0';
358 si
.ic_cmd
= NIOCBIND
;
359 si
.ic_len
= sizeof(ifr
);
360 si
.ic_dp
= (char *)&ifr
;
361 if (ioctl(fd
, I_STR
, (char *)&si
) < 0) {
362 snprintf(p
->errbuf
, PCAP_ERRBUF_SIZE
, "NIOCBIND: %s: %s",
363 ifr
.ifr_name
, pcap_strerror(errno
));
367 /* set the snapshot length */
368 si
.ic_cmd
= NIOCSSNAP
;
369 si
.ic_len
= sizeof(p
->snapshot
);
370 si
.ic_dp
= (char *)&p
->snapshot
;
371 if (ioctl(fd
, I_STR
, (char *)&si
) < 0) {
372 snprintf(p
->errbuf
, PCAP_ERRBUF_SIZE
, "NIOCSSNAP: %s",
373 pcap_strerror(errno
));
376 if (nit_setflags(p
) < 0)
379 (void)ioctl(fd
, I_FLUSH
, (char *)FLUSHR
);
381 * NIT supports only ethernets.
383 p
->linktype
= DLT_EN10MB
;
385 p
->bufsize
= BUFSPACE
;
386 p
->buffer
= (u_char
*)malloc(p
->bufsize
);
387 if (p
->buffer
== NULL
) {
388 strlcpy(p
->errbuf
, pcap_strerror(errno
), PCAP_ERRBUF_SIZE
);
393 * "p->fd" is an FD for a STREAMS device, so "select()" and
394 * "poll()" should work on it.
396 p
->selectable_fd
= p
->fd
;
399 * This is (presumably) a real Ethernet capture; give it a
400 * link-layer-type list with DLT_EN10MB and DLT_DOCSIS, so
401 * that an application can let you choose it, in case you're
402 * capturing DOCSIS traffic that a Cisco Cable Modem
403 * Termination System is putting out onto an Ethernet (it
404 * doesn't put an Ethernet header onto the wire, it puts raw
405 * DOCSIS frames out on the wire inside the low-level
408 p
->dlt_list
= (u_int
*) malloc(sizeof(u_int
) * 2);
410 * If that fails, just leave the list empty.
412 if (p
->dlt_list
!= NULL
) {
413 p
->dlt_list
[0] = DLT_EN10MB
;
414 p
->dlt_list
[1] = DLT_DOCSIS
;
418 p
->read_op
= pcap_read_snit
;
419 p
->inject_op
= pcap_inject_snit
;
420 p
->setfilter_op
= install_bpf_program
; /* no kernel filtering */
421 p
->setdirection_op
= NULL
; /* Not implemented. */
422 p
->set_datalink_op
= NULL
; /* can't change data link type */
423 p
->getnonblock_op
= pcap_getnonblock_fd
;
424 p
->setnonblock_op
= pcap_setnonblock_fd
;
425 p
->stats_op
= pcap_stats_snit
;
429 pcap_cleanup_live_common(p
);
434 pcap_create_interface(const char *device
, char *ebuf
)
438 p
= pcap_create_common(device
, ebuf
, sizeof (struct pcap_snit
));
442 p
->activate_op
= pcap_activate_snit
;
447 pcap_platform_finddevs(pcap_if_t
**alldevsp
, char *errbuf
)