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1/* SIP extension for IP connection tracking.
2 *
3 * (C) 2005 by Christian Hentschel <chentschel@arnet.com.ar>
4 * based on RR's ip_conntrack_ftp.c and other modules.
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5 * (C) 2007 United Security Providers
6 * (C) 2007, 2008 Patrick McHardy <kaber@trash.net>
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7 *
8 * This program is free software; you can redistribute it and/or modify
9 * it under the terms of the GNU General Public License version 2 as
10 * published by the Free Software Foundation.
11 */
12
13#include <linux/module.h>
14#include <linux/ctype.h>
15#include <linux/skbuff.h>
16#include <linux/inet.h>
17#include <linux/in.h>
18#include <linux/udp.h>
1863f096 19#include <linux/netfilter.h>
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20
21#include <net/netfilter/nf_conntrack.h>
9467ee38 22#include <net/netfilter/nf_conntrack_core.h>
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23#include <net/netfilter/nf_conntrack_expect.h>
24#include <net/netfilter/nf_conntrack_helper.h>
25#include <linux/netfilter/nf_conntrack_sip.h>
26
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27MODULE_LICENSE("GPL");
28MODULE_AUTHOR("Christian Hentschel <chentschel@arnet.com.ar>");
29MODULE_DESCRIPTION("SIP connection tracking helper");
30MODULE_ALIAS("ip_conntrack_sip");
31
32#define MAX_PORTS 8
33static unsigned short ports[MAX_PORTS];
2f0d2f10 34static unsigned int ports_c;
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35module_param_array(ports, ushort, &ports_c, 0400);
36MODULE_PARM_DESC(ports, "port numbers of SIP servers");
37
38static unsigned int sip_timeout __read_mostly = SIP_TIMEOUT;
39module_param(sip_timeout, uint, 0600);
40MODULE_PARM_DESC(sip_timeout, "timeout for the master SIP session");
41
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42static int sip_direct_signalling __read_mostly = 1;
43module_param(sip_direct_signalling, int, 0600);
44MODULE_PARM_DESC(sip_direct_signalling, "expect incoming calls from registrar "
45 "only (default 1)");
46
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47static int sip_direct_media __read_mostly = 1;
48module_param(sip_direct_media, int, 0600);
49MODULE_PARM_DESC(sip_direct_media, "Expect Media streams between signalling "
50 "endpoints only (default 1)");
51
3db05fea 52unsigned int (*nf_nat_sip_hook)(struct sk_buff *skb,
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53 const char **dptr,
54 unsigned int *datalen) __read_mostly;
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55EXPORT_SYMBOL_GPL(nf_nat_sip_hook);
56
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57unsigned int (*nf_nat_sip_expect_hook)(struct sk_buff *skb,
58 const char **dptr,
59 unsigned int *datalen,
60 struct nf_conntrack_expect *exp,
61 unsigned int matchoff,
62 unsigned int matchlen) __read_mostly;
63EXPORT_SYMBOL_GPL(nf_nat_sip_expect_hook);
64
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65unsigned int (*nf_nat_sdp_addr_hook)(struct sk_buff *skb,
66 const char **dptr,
67 unsigned int dataoff,
68 unsigned int *datalen,
69 enum sdp_header_types type,
70 enum sdp_header_types term,
71 const union nf_inet_addr *addr)
72 __read_mostly;
73EXPORT_SYMBOL_GPL(nf_nat_sdp_addr_hook);
74
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75unsigned int (*nf_nat_sdp_port_hook)(struct sk_buff *skb,
76 const char **dptr,
77 unsigned int *datalen,
78 unsigned int matchoff,
79 unsigned int matchlen,
80 u_int16_t port) __read_mostly;
81EXPORT_SYMBOL_GPL(nf_nat_sdp_port_hook);
82
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83unsigned int (*nf_nat_sdp_session_hook)(struct sk_buff *skb,
84 const char **dptr,
85 unsigned int dataoff,
86 unsigned int *datalen,
87 const union nf_inet_addr *addr)
88 __read_mostly;
89EXPORT_SYMBOL_GPL(nf_nat_sdp_session_hook);
90
91unsigned int (*nf_nat_sdp_media_hook)(struct sk_buff *skb,
92 const char **dptr,
93 unsigned int *datalen,
94 struct nf_conntrack_expect *rtp_exp,
95 struct nf_conntrack_expect *rtcp_exp,
96 unsigned int mediaoff,
97 unsigned int medialen,
98 union nf_inet_addr *rtp_addr)
99 __read_mostly;
100EXPORT_SYMBOL_GPL(nf_nat_sdp_media_hook);
9fafcd7b 101
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102static int string_len(const struct nf_conn *ct, const char *dptr,
103 const char *limit, int *shift)
104{
105 int len = 0;
106
107 while (dptr < limit && isalpha(*dptr)) {
108 dptr++;
109 len++;
110 }
111 return len;
112}
113
13f7d63c 114static int digits_len(const struct nf_conn *ct, const char *dptr,
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115 const char *limit, int *shift)
116{
117 int len = 0;
b1ec488b 118 while (dptr < limit && isdigit(*dptr)) {
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119 dptr++;
120 len++;
121 }
122 return len;
123}
124
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125/* get media type + port length */
126static int media_len(const struct nf_conn *ct, const char *dptr,
127 const char *limit, int *shift)
128{
129 int len = string_len(ct, dptr, limit, shift);
130
131 dptr += len;
132 if (dptr >= limit || *dptr != ' ')
133 return 0;
134 len++;
135 dptr++;
136
137 return len + digits_len(ct, dptr, limit, shift);
138}
139
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140static int parse_addr(const struct nf_conn *ct, const char *cp,
141 const char **endp, union nf_inet_addr *addr,
142 const char *limit)
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143{
144 const char *end;
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145 int ret = 0;
146
fa913ddf 147 memset(addr, 0, sizeof(*addr));
5e8fbe2a 148 switch (nf_ct_l3num(ct)) {
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149 case AF_INET:
150 ret = in4_pton(cp, limit - cp, (u8 *)&addr->ip, -1, &end);
151 break;
152 case AF_INET6:
153 ret = in6_pton(cp, limit - cp, (u8 *)&addr->ip6, -1, &end);
154 break;
155 default:
156 BUG();
157 }
158
159 if (ret == 0 || end == cp)
160 return 0;
161 if (endp)
162 *endp = end;
163 return 1;
164}
165
166/* skip ip address. returns its length. */
13f7d63c 167static int epaddr_len(const struct nf_conn *ct, const char *dptr,
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168 const char *limit, int *shift)
169{
643a2c15 170 union nf_inet_addr addr;
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171 const char *aux = dptr;
172
173 if (!parse_addr(ct, dptr, &dptr, &addr, limit)) {
0d53778e 174 pr_debug("ip: %s parse failed.!\n", dptr);
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175 return 0;
176 }
177
178 /* Port number */
179 if (*dptr == ':') {
180 dptr++;
181 dptr += digits_len(ct, dptr, limit, shift);
182 }
183 return dptr - aux;
184}
185
186/* get address length, skiping user info. */
13f7d63c 187static int skp_epaddr_len(const struct nf_conn *ct, const char *dptr,
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188 const char *limit, int *shift)
189{
aa584eda 190 const char *start = dptr;
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191 int s = *shift;
192
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193 /* Search for @, but stop at the end of the line.
194 * We are inside a sip: URI, so we don't need to worry about
195 * continuation lines. */
b1ec488b 196 while (dptr < limit &&
7da5bfbb 197 *dptr != '@' && *dptr != '\r' && *dptr != '\n') {
9fafcd7b 198 (*shift)++;
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199 dptr++;
200 }
9fafcd7b 201
b1ec488b 202 if (dptr < limit && *dptr == '@') {
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203 dptr++;
204 (*shift)++;
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205 } else {
206 dptr = start;
9fafcd7b 207 *shift = s;
aa584eda 208 }
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209
210 return epaddr_len(ct, dptr, limit, shift);
211}
212
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213/* Parse a SIP request line of the form:
214 *
215 * Request-Line = Method SP Request-URI SP SIP-Version CRLF
216 *
217 * and return the offset and length of the address contained in the Request-URI.
218 */
219int ct_sip_parse_request(const struct nf_conn *ct,
220 const char *dptr, unsigned int datalen,
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221 unsigned int *matchoff, unsigned int *matchlen,
222 union nf_inet_addr *addr, __be16 *port)
ac367740 223{
624f8b7b 224 const char *start = dptr, *limit = dptr + datalen, *end;
ac367740 225 unsigned int mlen;
624f8b7b 226 unsigned int p;
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227 int shift = 0;
228
229 /* Skip method and following whitespace */
230 mlen = string_len(ct, dptr, limit, NULL);
231 if (!mlen)
232 return 0;
233 dptr += mlen;
234 if (++dptr >= limit)
235 return 0;
236
237 /* Find SIP URI */
238 limit -= strlen("sip:");
239 for (; dptr < limit; dptr++) {
240 if (*dptr == '\r' || *dptr == '\n')
241 return -1;
242 if (strnicmp(dptr, "sip:", strlen("sip:")) == 0)
243 break;
244 }
624f8b7b 245 if (!skp_epaddr_len(ct, dptr, limit, &shift))
ac367740 246 return 0;
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247 dptr += shift;
248
249 if (!parse_addr(ct, dptr, &end, addr, limit))
250 return -1;
251 if (end < limit && *end == ':') {
252 end++;
253 p = simple_strtoul(end, (char **)&end, 10);
254 if (p < 1024 || p > 65535)
255 return -1;
256 *port = htons(p);
257 } else
258 *port = htons(SIP_PORT);
259
260 if (end == dptr)
261 return 0;
262 *matchoff = dptr - start;
263 *matchlen = end - dptr;
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264 return 1;
265}
266EXPORT_SYMBOL_GPL(ct_sip_parse_request);
267
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268/* SIP header parsing: SIP headers are located at the beginning of a line, but
269 * may span several lines, in which case the continuation lines begin with a
270 * whitespace character. RFC 2543 allows lines to be terminated with CR, LF or
271 * CRLF, RFC 3261 allows only CRLF, we support both.
272 *
273 * Headers are followed by (optionally) whitespace, a colon, again (optionally)
274 * whitespace and the values. Whitespace in this context means any amount of
275 * tabs, spaces and continuation lines, which are treated as a single whitespace
276 * character.
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277 *
278 * Some headers may appear multiple times. A comma seperated list of values is
279 * equivalent to multiple headers.
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280 */
281static const struct sip_header ct_sip_hdrs[] = {
30f33e6d 282 [SIP_HDR_CSEQ] = SIP_HDR("CSeq", NULL, NULL, digits_len),
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283 [SIP_HDR_FROM] = SIP_HDR("From", "f", "sip:", skp_epaddr_len),
284 [SIP_HDR_TO] = SIP_HDR("To", "t", "sip:", skp_epaddr_len),
285 [SIP_HDR_CONTACT] = SIP_HDR("Contact", "m", "sip:", skp_epaddr_len),
286 [SIP_HDR_VIA] = SIP_HDR("Via", "v", "UDP ", epaddr_len),
0f32a40f 287 [SIP_HDR_EXPIRES] = SIP_HDR("Expires", NULL, NULL, digits_len),
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288 [SIP_HDR_CONTENT_LENGTH] = SIP_HDR("Content-Length", "l", NULL, digits_len),
289};
290
291static const char *sip_follow_continuation(const char *dptr, const char *limit)
9fafcd7b 292{
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293 /* Walk past newline */
294 if (++dptr >= limit)
295 return NULL;
296
297 /* Skip '\n' in CR LF */
298 if (*(dptr - 1) == '\r' && *dptr == '\n') {
299 if (++dptr >= limit)
300 return NULL;
301 }
9fafcd7b 302
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303 /* Continuation line? */
304 if (*dptr != ' ' && *dptr != '\t')
305 return NULL;
9fafcd7b 306
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307 /* skip leading whitespace */
308 for (; dptr < limit; dptr++) {
309 if (*dptr != ' ' && *dptr != '\t')
310 break;
311 }
312 return dptr;
313}
314
315static const char *sip_skip_whitespace(const char *dptr, const char *limit)
316{
317 for (; dptr < limit; dptr++) {
318 if (*dptr == ' ')
319 continue;
320 if (*dptr != '\r' && *dptr != '\n')
321 break;
322 dptr = sip_follow_continuation(dptr, limit);
323 if (dptr == NULL)
324 return NULL;
325 }
326 return dptr;
327}
328
329/* Search within a SIP header value, dealing with continuation lines */
330static const char *ct_sip_header_search(const char *dptr, const char *limit,
331 const char *needle, unsigned int len)
332{
333 for (limit -= len; dptr < limit; dptr++) {
334 if (*dptr == '\r' || *dptr == '\n') {
335 dptr = sip_follow_continuation(dptr, limit);
336 if (dptr == NULL)
337 break;
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338 continue;
339 }
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340
341 if (strnicmp(dptr, needle, len) == 0)
342 return dptr;
343 }
344 return NULL;
345}
346
347int ct_sip_get_header(const struct nf_conn *ct, const char *dptr,
348 unsigned int dataoff, unsigned int datalen,
349 enum sip_header_types type,
350 unsigned int *matchoff, unsigned int *matchlen)
351{
352 const struct sip_header *hdr = &ct_sip_hdrs[type];
353 const char *start = dptr, *limit = dptr + datalen;
354 int shift = 0;
355
356 for (dptr += dataoff; dptr < limit; dptr++) {
357 /* Find beginning of line */
358 if (*dptr != '\r' && *dptr != '\n')
359 continue;
360 if (++dptr >= limit)
361 break;
362 if (*(dptr - 1) == '\r' && *dptr == '\n') {
363 if (++dptr >= limit)
364 break;
9fafcd7b 365 }
9fafcd7b 366
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367 /* Skip continuation lines */
368 if (*dptr == ' ' || *dptr == '\t')
369 continue;
9fafcd7b 370
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371 /* Find header. Compact headers must be followed by a
372 * non-alphabetic character to avoid mismatches. */
373 if (limit - dptr >= hdr->len &&
374 strnicmp(dptr, hdr->name, hdr->len) == 0)
375 dptr += hdr->len;
376 else if (hdr->cname && limit - dptr >= hdr->clen + 1 &&
377 strnicmp(dptr, hdr->cname, hdr->clen) == 0 &&
378 !isalpha(*(dptr + hdr->clen + 1)))
379 dptr += hdr->clen;
380 else
381 continue;
9fafcd7b 382
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383 /* Find and skip colon */
384 dptr = sip_skip_whitespace(dptr, limit);
385 if (dptr == NULL)
386 break;
387 if (*dptr != ':' || ++dptr >= limit)
388 break;
389
390 /* Skip whitespace after colon */
391 dptr = sip_skip_whitespace(dptr, limit);
392 if (dptr == NULL)
393 break;
394
395 *matchoff = dptr - start;
396 if (hdr->search) {
397 dptr = ct_sip_header_search(dptr, limit, hdr->search,
398 hdr->slen);
399 if (!dptr)
400 return -1;
401 dptr += hdr->slen;
402 }
403
404 *matchlen = hdr->match_len(ct, dptr, limit, &shift);
405 if (!*matchlen)
406 return -1;
407 *matchoff = dptr - start + shift;
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408 return 1;
409 }
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410 return 0;
411}
ea45f12a 412EXPORT_SYMBOL_GPL(ct_sip_get_header);
9fafcd7b 413
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414/* Get next header field in a list of comma seperated values */
415static int ct_sip_next_header(const struct nf_conn *ct, const char *dptr,
416 unsigned int dataoff, unsigned int datalen,
417 enum sip_header_types type,
418 unsigned int *matchoff, unsigned int *matchlen)
419{
420 const struct sip_header *hdr = &ct_sip_hdrs[type];
421 const char *start = dptr, *limit = dptr + datalen;
422 int shift = 0;
423
424 dptr += dataoff;
425
426 dptr = ct_sip_header_search(dptr, limit, ",", strlen(","));
427 if (!dptr)
428 return 0;
429
430 dptr = ct_sip_header_search(dptr, limit, hdr->search, hdr->slen);
431 if (!dptr)
432 return 0;
433 dptr += hdr->slen;
434
435 *matchoff = dptr - start;
436 *matchlen = hdr->match_len(ct, dptr, limit, &shift);
437 if (!*matchlen)
438 return -1;
439 *matchoff += shift;
440 return 1;
441}
442
443/* Walk through headers until a parsable one is found or no header of the
444 * given type is left. */
445static int ct_sip_walk_headers(const struct nf_conn *ct, const char *dptr,
446 unsigned int dataoff, unsigned int datalen,
447 enum sip_header_types type, int *in_header,
448 unsigned int *matchoff, unsigned int *matchlen)
449{
450 int ret;
451
452 if (in_header && *in_header) {
453 while (1) {
454 ret = ct_sip_next_header(ct, dptr, dataoff, datalen,
455 type, matchoff, matchlen);
456 if (ret > 0)
457 return ret;
458 if (ret == 0)
459 break;
460 dataoff += *matchoff;
461 }
462 *in_header = 0;
463 }
464
465 while (1) {
466 ret = ct_sip_get_header(ct, dptr, dataoff, datalen,
467 type, matchoff, matchlen);
468 if (ret > 0)
469 break;
470 if (ret == 0)
471 return ret;
472 dataoff += *matchoff;
473 }
474
475 if (in_header)
476 *in_header = 1;
477 return 1;
478}
479
480/* Locate a SIP header, parse the URI and return the offset and length of
481 * the address as well as the address and port themselves. A stream of
482 * headers can be parsed by handing in a non-NULL datalen and in_header
483 * pointer.
484 */
485int ct_sip_parse_header_uri(const struct nf_conn *ct, const char *dptr,
486 unsigned int *dataoff, unsigned int datalen,
487 enum sip_header_types type, int *in_header,
488 unsigned int *matchoff, unsigned int *matchlen,
489 union nf_inet_addr *addr, __be16 *port)
490{
491 const char *c, *limit = dptr + datalen;
492 unsigned int p;
493 int ret;
494
495 ret = ct_sip_walk_headers(ct, dptr, dataoff ? *dataoff : 0, datalen,
496 type, in_header, matchoff, matchlen);
497 WARN_ON(ret < 0);
498 if (ret == 0)
499 return ret;
500
501 if (!parse_addr(ct, dptr + *matchoff, &c, addr, limit))
502 return -1;
503 if (*c == ':') {
504 c++;
505 p = simple_strtoul(c, (char **)&c, 10);
506 if (p < 1024 || p > 65535)
507 return -1;
508 *port = htons(p);
509 } else
510 *port = htons(SIP_PORT);
511
512 if (dataoff)
513 *dataoff = c - dptr;
514 return 1;
515}
516EXPORT_SYMBOL_GPL(ct_sip_parse_header_uri);
517
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518/* Parse address from header parameter and return address, offset and length */
519int ct_sip_parse_address_param(const struct nf_conn *ct, const char *dptr,
520 unsigned int dataoff, unsigned int datalen,
521 const char *name,
522 unsigned int *matchoff, unsigned int *matchlen,
523 union nf_inet_addr *addr)
524{
525 const char *limit = dptr + datalen;
526 const char *start, *end;
527
528 limit = ct_sip_header_search(dptr + dataoff, limit, ",", strlen(","));
529 if (!limit)
530 limit = dptr + datalen;
531
532 start = ct_sip_header_search(dptr + dataoff, limit, name, strlen(name));
533 if (!start)
534 return 0;
535
536 start += strlen(name);
537 if (!parse_addr(ct, start, &end, addr, limit))
538 return 0;
539 *matchoff = start - dptr;
540 *matchlen = end - start;
541 return 1;
542}
543EXPORT_SYMBOL_GPL(ct_sip_parse_address_param);
544
545/* Parse numerical header parameter and return value, offset and length */
546int ct_sip_parse_numerical_param(const struct nf_conn *ct, const char *dptr,
547 unsigned int dataoff, unsigned int datalen,
548 const char *name,
549 unsigned int *matchoff, unsigned int *matchlen,
550 unsigned int *val)
551{
552 const char *limit = dptr + datalen;
553 const char *start;
554 char *end;
555
556 limit = ct_sip_header_search(dptr + dataoff, limit, ",", strlen(","));
557 if (!limit)
558 limit = dptr + datalen;
559
560 start = ct_sip_header_search(dptr + dataoff, limit, name, strlen(name));
561 if (!start)
562 return 0;
563
564 start += strlen(name);
565 *val = simple_strtoul(start, &end, 0);
566 if (start == end)
567 return 0;
568 if (matchoff && matchlen) {
569 *matchoff = start - dptr;
570 *matchlen = end - start;
571 }
572 return 1;
573}
574EXPORT_SYMBOL_GPL(ct_sip_parse_numerical_param);
575
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576/* SDP header parsing: a SDP session description contains an ordered set of
577 * headers, starting with a section containing general session parameters,
578 * optionally followed by multiple media descriptions.
579 *
580 * SDP headers always start at the beginning of a line. According to RFC 2327:
581 * "The sequence CRLF (0x0d0a) is used to end a record, although parsers should
582 * be tolerant and also accept records terminated with a single newline
583 * character". We handle both cases.
584 */
585static const struct sip_header ct_sdp_hdrs[] = {
586 [SDP_HDR_VERSION] = SDP_HDR("v=", NULL, digits_len),
587 [SDP_HDR_OWNER_IP4] = SDP_HDR("o=", "IN IP4 ", epaddr_len),
588 [SDP_HDR_CONNECTION_IP4] = SDP_HDR("c=", "IN IP4 ", epaddr_len),
589 [SDP_HDR_OWNER_IP6] = SDP_HDR("o=", "IN IP6 ", epaddr_len),
590 [SDP_HDR_CONNECTION_IP6] = SDP_HDR("c=", "IN IP6 ", epaddr_len),
0d0ab037 591 [SDP_HDR_MEDIA] = SDP_HDR("m=", NULL, media_len),
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592};
593
594/* Linear string search within SDP header values */
595static const char *ct_sdp_header_search(const char *dptr, const char *limit,
596 const char *needle, unsigned int len)
597{
598 for (limit -= len; dptr < limit; dptr++) {
599 if (*dptr == '\r' || *dptr == '\n')
600 break;
601 if (strncmp(dptr, needle, len) == 0)
602 return dptr;
603 }
604 return NULL;
605}
606
607/* Locate a SDP header (optionally a substring within the header value),
608 * optionally stopping at the first occurence of the term header, parse
609 * it and return the offset and length of the data we're interested in.
610 */
611int ct_sip_get_sdp_header(const struct nf_conn *ct, const char *dptr,
612 unsigned int dataoff, unsigned int datalen,
613 enum sdp_header_types type,
614 enum sdp_header_types term,
615 unsigned int *matchoff, unsigned int *matchlen)
616{
617 const struct sip_header *hdr = &ct_sdp_hdrs[type];
618 const struct sip_header *thdr = &ct_sdp_hdrs[term];
619 const char *start = dptr, *limit = dptr + datalen;
620 int shift = 0;
621
622 for (dptr += dataoff; dptr < limit; dptr++) {
623 /* Find beginning of line */
624 if (*dptr != '\r' && *dptr != '\n')
625 continue;
626 if (++dptr >= limit)
627 break;
628 if (*(dptr - 1) == '\r' && *dptr == '\n') {
629 if (++dptr >= limit)
630 break;
631 }
632
633 if (term != SDP_HDR_UNSPEC &&
634 limit - dptr >= thdr->len &&
635 strnicmp(dptr, thdr->name, thdr->len) == 0)
636 break;
637 else if (limit - dptr >= hdr->len &&
638 strnicmp(dptr, hdr->name, hdr->len) == 0)
639 dptr += hdr->len;
640 else
641 continue;
642
643 *matchoff = dptr - start;
644 if (hdr->search) {
645 dptr = ct_sdp_header_search(dptr, limit, hdr->search,
646 hdr->slen);
647 if (!dptr)
648 return -1;
649 dptr += hdr->slen;
650 }
651
652 *matchlen = hdr->match_len(ct, dptr, limit, &shift);
653 if (!*matchlen)
654 return -1;
655 *matchoff = dptr - start + shift;
656 return 1;
657 }
658 return 0;
659}
660EXPORT_SYMBOL_GPL(ct_sip_get_sdp_header);
661
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662static int ct_sip_parse_sdp_addr(const struct nf_conn *ct, const char *dptr,
663 unsigned int dataoff, unsigned int datalen,
664 enum sdp_header_types type,
665 enum sdp_header_types term,
666 unsigned int *matchoff, unsigned int *matchlen,
667 union nf_inet_addr *addr)
668{
669 int ret;
670
671 ret = ct_sip_get_sdp_header(ct, dptr, dataoff, datalen, type, term,
672 matchoff, matchlen);
673 if (ret <= 0)
674 return ret;
675
676 if (!parse_addr(ct, dptr + *matchoff, NULL, addr,
677 dptr + *matchoff + *matchlen))
678 return -1;
679 return 1;
680}
681
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682static int refresh_signalling_expectation(struct nf_conn *ct,
683 union nf_inet_addr *addr,
684 __be16 port,
685 unsigned int expires)
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686{
687 struct nf_conn_help *help = nfct_help(ct);
688 struct nf_conntrack_expect *exp;
689 struct hlist_node *n, *next;
0f32a40f 690 int found = 0;
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691
692 spin_lock_bh(&nf_conntrack_lock);
693 hlist_for_each_entry_safe(exp, n, next, &help->expectations, lnode) {
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694 if (exp->class != SIP_EXPECT_SIGNALLING ||
695 !nf_inet_addr_cmp(&exp->tuple.dst.u3, addr) ||
696 exp->tuple.dst.u.udp.port != port)
697 continue;
698 if (!del_timer(&exp->timeout))
699 continue;
700 exp->flags &= ~NF_CT_EXPECT_INACTIVE;
701 exp->timeout.expires = jiffies + expires * HZ;
702 add_timer(&exp->timeout);
703 found = 1;
704 break;
705 }
706 spin_unlock_bh(&nf_conntrack_lock);
707 return found;
708}
709
710static void flush_expectations(struct nf_conn *ct, bool media)
711{
712 struct nf_conn_help *help = nfct_help(ct);
713 struct nf_conntrack_expect *exp;
714 struct hlist_node *n, *next;
715
716 spin_lock_bh(&nf_conntrack_lock);
717 hlist_for_each_entry_safe(exp, n, next, &help->expectations, lnode) {
718 if ((exp->class != SIP_EXPECT_SIGNALLING) ^ media)
719 continue;
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720 if (!del_timer(&exp->timeout))
721 continue;
722 nf_ct_unlink_expect(exp);
723 nf_ct_expect_put(exp);
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724 if (!media)
725 break;
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726 }
727 spin_unlock_bh(&nf_conntrack_lock);
728}
729
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730static int set_expected_rtp_rtcp(struct sk_buff *skb,
731 const char **dptr, unsigned int *datalen,
4ab9e64e 732 union nf_inet_addr *daddr, __be16 port,
0d0ab037 733 enum sip_expectation_classes class,
4ab9e64e 734 unsigned int mediaoff, unsigned int medialen)
9fafcd7b 735{
a9c1d359 736 struct nf_conntrack_expect *exp, *rtp_exp, *rtcp_exp;
212440a7
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737 enum ip_conntrack_info ctinfo;
738 struct nf_conn *ct = nf_ct_get(skb, &ctinfo);
9fafcd7b 739 enum ip_conntrack_dir dir = CTINFO2DIR(ctinfo);
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740 union nf_inet_addr *saddr;
741 struct nf_conntrack_tuple tuple;
c7f485ab 742 int direct_rtp = 0, skip_expect = 0, ret = NF_DROP;
a9c1d359
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743 u_int16_t base_port;
744 __be16 rtp_port, rtcp_port;
c7f485ab 745 typeof(nf_nat_sdp_port_hook) nf_nat_sdp_port;
4ab9e64e 746 typeof(nf_nat_sdp_media_hook) nf_nat_sdp_media;
9fafcd7b 747
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748 saddr = NULL;
749 if (sip_direct_media) {
750 if (!nf_inet_addr_cmp(daddr, &ct->tuplehash[dir].tuple.src.u3))
751 return NF_ACCEPT;
752 saddr = &ct->tuplehash[!dir].tuple.src.u3;
753 }
754
755 /* We need to check whether the registration exists before attempting
756 * to register it since we can see the same media description multiple
757 * times on different connections in case multiple endpoints receive
758 * the same call.
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759 *
760 * RTP optimization: if we find a matching media channel expectation
761 * and both the expectation and this connection are SNATed, we assume
762 * both sides can reach each other directly and use the final
763 * destination address from the expectation. We still need to keep
764 * the NATed expectations for media that might arrive from the
765 * outside, and additionally need to expect the direct RTP stream
766 * in case it passes through us even without NAT.
d901a936
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767 */
768 memset(&tuple, 0, sizeof(tuple));
769 if (saddr)
770 tuple.src.u3 = *saddr;
5e8fbe2a 771 tuple.src.l3num = nf_ct_l3num(ct);
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772 tuple.dst.protonum = IPPROTO_UDP;
773 tuple.dst.u3 = *daddr;
774 tuple.dst.u.udp.port = port;
775
776 rcu_read_lock();
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777 do {
778 exp = __nf_ct_expect_find(&tuple);
d901a936 779
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780 if (!exp || exp->master == ct ||
781 nfct_help(exp->master)->helper != nfct_help(ct)->helper ||
782 exp->class != class)
783 break;
784
785 if (exp->tuple.src.l3num == AF_INET && !direct_rtp &&
786 (exp->saved_ip != exp->tuple.dst.u3.ip ||
787 exp->saved_proto.udp.port != exp->tuple.dst.u.udp.port) &&
788 ct->status & IPS_NAT_MASK) {
789 daddr->ip = exp->saved_ip;
790 tuple.dst.u3.ip = exp->saved_ip;
791 tuple.dst.u.udp.port = exp->saved_proto.udp.port;
792 direct_rtp = 1;
793 } else
794 skip_expect = 1;
795 } while (!skip_expect);
796 rcu_read_unlock();
d901a936 797
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798 base_port = ntohs(tuple.dst.u.udp.port) & ~1;
799 rtp_port = htons(base_port);
800 rtcp_port = htons(base_port + 1);
801
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802 if (direct_rtp) {
803 nf_nat_sdp_port = rcu_dereference(nf_nat_sdp_port_hook);
804 if (nf_nat_sdp_port &&
805 !nf_nat_sdp_port(skb, dptr, datalen,
806 mediaoff, medialen, ntohs(rtp_port)))
807 goto err1;
808 }
809
810 if (skip_expect)
811 return NF_ACCEPT;
812
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813 rtp_exp = nf_ct_expect_alloc(ct);
814 if (rtp_exp == NULL)
815 goto err1;
5e8fbe2a 816 nf_ct_expect_init(rtp_exp, class, nf_ct_l3num(ct), saddr, daddr,
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817 IPPROTO_UDP, NULL, &rtp_port);
818
819 rtcp_exp = nf_ct_expect_alloc(ct);
820 if (rtcp_exp == NULL)
821 goto err2;
5e8fbe2a 822 nf_ct_expect_init(rtcp_exp, class, nf_ct_l3num(ct), saddr, daddr,
a9c1d359 823 IPPROTO_UDP, NULL, &rtcp_port);
9fafcd7b 824
4ab9e64e 825 nf_nat_sdp_media = rcu_dereference(nf_nat_sdp_media_hook);
c7f485ab 826 if (nf_nat_sdp_media && ct->status & IPS_NAT_MASK && !direct_rtp)
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827 ret = nf_nat_sdp_media(skb, dptr, datalen, rtp_exp, rtcp_exp,
828 mediaoff, medialen, daddr);
9fafcd7b 829 else {
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830 if (nf_ct_expect_related(rtp_exp) == 0) {
831 if (nf_ct_expect_related(rtcp_exp) != 0)
832 nf_ct_unexpect_related(rtp_exp);
833 else
834 ret = NF_ACCEPT;
835 }
9fafcd7b 836 }
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837 nf_ct_expect_put(rtcp_exp);
838err2:
839 nf_ct_expect_put(rtp_exp);
840err1:
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841 return ret;
842}
843
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844static const struct sdp_media_type sdp_media_types[] = {
845 SDP_MEDIA_TYPE("audio ", SIP_EXPECT_AUDIO),
846 SDP_MEDIA_TYPE("video ", SIP_EXPECT_VIDEO),
847};
848
849static const struct sdp_media_type *sdp_media_type(const char *dptr,
850 unsigned int matchoff,
851 unsigned int matchlen)
852{
853 const struct sdp_media_type *t;
854 unsigned int i;
855
856 for (i = 0; i < ARRAY_SIZE(sdp_media_types); i++) {
857 t = &sdp_media_types[i];
858 if (matchlen < t->len ||
859 strncmp(dptr + matchoff, t->name, t->len))
860 continue;
861 return t;
862 }
863 return NULL;
864}
865
7d3dd043 866static int process_sdp(struct sk_buff *skb,
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867 const char **dptr, unsigned int *datalen,
868 unsigned int cseq)
7d3dd043
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869{
870 enum ip_conntrack_info ctinfo;
871 struct nf_conn *ct = nf_ct_get(skb, &ctinfo);
7d3dd043 872 unsigned int matchoff, matchlen;
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873 unsigned int mediaoff, medialen;
874 unsigned int sdpoff;
875 unsigned int caddr_len, maddr_len;
0d0ab037 876 unsigned int i;
4ab9e64e 877 union nf_inet_addr caddr, maddr, rtp_addr;
7d3dd043 878 unsigned int port;
4ab9e64e 879 enum sdp_header_types c_hdr;
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880 const struct sdp_media_type *t;
881 int ret = NF_ACCEPT;
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882 typeof(nf_nat_sdp_addr_hook) nf_nat_sdp_addr;
883 typeof(nf_nat_sdp_session_hook) nf_nat_sdp_session;
7d3dd043 884
0d0ab037 885 nf_nat_sdp_addr = rcu_dereference(nf_nat_sdp_addr_hook);
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886 c_hdr = nf_ct_l3num(ct) == AF_INET ? SDP_HDR_CONNECTION_IP4 :
887 SDP_HDR_CONNECTION_IP6;
7d3dd043 888
4ab9e64e 889 /* Find beginning of session description */
7d3dd043 890 if (ct_sip_get_sdp_header(ct, *dptr, 0, *datalen,
4ab9e64e 891 SDP_HDR_VERSION, SDP_HDR_UNSPEC,
7d3dd043
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892 &matchoff, &matchlen) <= 0)
893 return NF_ACCEPT;
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894 sdpoff = matchoff;
895
896 /* The connection information is contained in the session description
897 * and/or once per media description. The first media description marks
898 * the end of the session description. */
899 caddr_len = 0;
900 if (ct_sip_parse_sdp_addr(ct, *dptr, sdpoff, *datalen,
901 c_hdr, SDP_HDR_MEDIA,
902 &matchoff, &matchlen, &caddr) > 0)
903 caddr_len = matchlen;
904
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905 mediaoff = sdpoff;
906 for (i = 0; i < ARRAY_SIZE(sdp_media_types); ) {
907 if (ct_sip_get_sdp_header(ct, *dptr, mediaoff, *datalen,
908 SDP_HDR_MEDIA, SDP_HDR_UNSPEC,
909 &mediaoff, &medialen) <= 0)
910 break;
7d3dd043 911
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912 /* Get media type and port number. A media port value of zero
913 * indicates an inactive stream. */
914 t = sdp_media_type(*dptr, mediaoff, medialen);
915 if (!t) {
916 mediaoff += medialen;
917 continue;
918 }
919 mediaoff += t->len;
920 medialen -= t->len;
7d3dd043 921
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922 port = simple_strtoul(*dptr + mediaoff, NULL, 10);
923 if (port == 0)
924 continue;
925 if (port < 1024 || port > 65535)
926 return NF_DROP;
4ab9e64e 927
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928 /* The media description overrides the session description. */
929 maddr_len = 0;
930 if (ct_sip_parse_sdp_addr(ct, *dptr, mediaoff, *datalen,
931 c_hdr, SDP_HDR_MEDIA,
932 &matchoff, &matchlen, &maddr) > 0) {
933 maddr_len = matchlen;
934 memcpy(&rtp_addr, &maddr, sizeof(rtp_addr));
935 } else if (caddr_len)
936 memcpy(&rtp_addr, &caddr, sizeof(rtp_addr));
937 else
938 return NF_DROP;
939
940 ret = set_expected_rtp_rtcp(skb, dptr, datalen,
941 &rtp_addr, htons(port), t->class,
942 mediaoff, medialen);
943 if (ret != NF_ACCEPT)
944 return ret;
4ab9e64e 945
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946 /* Update media connection address if present */
947 if (maddr_len && nf_nat_sdp_addr && ct->status & IPS_NAT_MASK) {
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948 ret = nf_nat_sdp_addr(skb, dptr, mediaoff, datalen,
949 c_hdr, SDP_HDR_MEDIA, &rtp_addr);
950 if (ret != NF_ACCEPT)
951 return ret;
952 }
0d0ab037 953 i++;
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954 }
955
956 /* Update session connection and owner addresses */
957 nf_nat_sdp_session = rcu_dereference(nf_nat_sdp_session_hook);
958 if (nf_nat_sdp_session && ct->status & IPS_NAT_MASK)
959 ret = nf_nat_sdp_session(skb, dptr, sdpoff, datalen, &rtp_addr);
960
961 return ret;
7d3dd043 962}
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963static int process_invite_response(struct sk_buff *skb,
964 const char **dptr, unsigned int *datalen,
965 unsigned int cseq, unsigned int code)
966{
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967 enum ip_conntrack_info ctinfo;
968 struct nf_conn *ct = nf_ct_get(skb, &ctinfo);
969
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970 if ((code >= 100 && code <= 199) ||
971 (code >= 200 && code <= 299))
972 return process_sdp(skb, dptr, datalen, cseq);
9467ee38 973 else {
0f32a40f 974 flush_expectations(ct, true);
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975 return NF_ACCEPT;
976 }
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977}
978
979static int process_update_response(struct sk_buff *skb,
980 const char **dptr, unsigned int *datalen,
981 unsigned int cseq, unsigned int code)
982{
9467ee38
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983 enum ip_conntrack_info ctinfo;
984 struct nf_conn *ct = nf_ct_get(skb, &ctinfo);
985
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986 if ((code >= 100 && code <= 199) ||
987 (code >= 200 && code <= 299))
988 return process_sdp(skb, dptr, datalen, cseq);
9467ee38 989 else {
0f32a40f 990 flush_expectations(ct, true);
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991 return NF_ACCEPT;
992 }
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993}
994
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995static int process_prack_response(struct sk_buff *skb,
996 const char **dptr, unsigned int *datalen,
997 unsigned int cseq, unsigned int code)
998{
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999 enum ip_conntrack_info ctinfo;
1000 struct nf_conn *ct = nf_ct_get(skb, &ctinfo);
1001
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1002 if ((code >= 100 && code <= 199) ||
1003 (code >= 200 && code <= 299))
1004 return process_sdp(skb, dptr, datalen, cseq);
9467ee38 1005 else {
0f32a40f 1006 flush_expectations(ct, true);
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1007 return NF_ACCEPT;
1008 }
1009}
1010
1011static int process_bye_request(struct sk_buff *skb,
1012 const char **dptr, unsigned int *datalen,
1013 unsigned int cseq)
1014{
1015 enum ip_conntrack_info ctinfo;
1016 struct nf_conn *ct = nf_ct_get(skb, &ctinfo);
595a8ecb 1017
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1018 flush_expectations(ct, true);
1019 return NF_ACCEPT;
1020}
1021
1022/* Parse a REGISTER request and create a permanent expectation for incoming
1023 * signalling connections. The expectation is marked inactive and is activated
1024 * when receiving a response indicating success from the registrar.
1025 */
1026static int process_register_request(struct sk_buff *skb,
1027 const char **dptr, unsigned int *datalen,
1028 unsigned int cseq)
1029{
1030 enum ip_conntrack_info ctinfo;
1031 struct nf_conn *ct = nf_ct_get(skb, &ctinfo);
1032 struct nf_conn_help *help = nfct_help(ct);
1033 enum ip_conntrack_dir dir = CTINFO2DIR(ctinfo);
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1034 unsigned int matchoff, matchlen;
1035 struct nf_conntrack_expect *exp;
1036 union nf_inet_addr *saddr, daddr;
1037 __be16 port;
1038 unsigned int expires = 0;
1039 int ret;
1040 typeof(nf_nat_sip_expect_hook) nf_nat_sip_expect;
1041
1042 /* Expected connections can not register again. */
1043 if (ct->status & IPS_EXPECTED)
1044 return NF_ACCEPT;
1045
1046 /* We must check the expiration time: a value of zero signals the
1047 * registrar to release the binding. We'll remove our expectation
1048 * when receiving the new bindings in the response, but we don't
1049 * want to create new ones.
1050 *
1051 * The expiration time may be contained in Expires: header, the
1052 * Contact: header parameters or the URI parameters.
1053 */
1054 if (ct_sip_get_header(ct, *dptr, 0, *datalen, SIP_HDR_EXPIRES,
1055 &matchoff, &matchlen) > 0)
1056 expires = simple_strtoul(*dptr + matchoff, NULL, 10);
1057
1058 ret = ct_sip_parse_header_uri(ct, *dptr, NULL, *datalen,
1059 SIP_HDR_CONTACT, NULL,
1060 &matchoff, &matchlen, &daddr, &port);
1061 if (ret < 0)
1062 return NF_DROP;
1063 else if (ret == 0)
1064 return NF_ACCEPT;
1065
1066 /* We don't support third-party registrations */
1067 if (!nf_inet_addr_cmp(&ct->tuplehash[dir].tuple.src.u3, &daddr))
1068 return NF_ACCEPT;
1069
1070 if (ct_sip_parse_numerical_param(ct, *dptr,
1071 matchoff + matchlen, *datalen,
1072 "expires=", NULL, NULL, &expires) < 0)
1073 return NF_DROP;
1074
1075 if (expires == 0) {
1076 ret = NF_ACCEPT;
1077 goto store_cseq;
1078 }
1079
1080 exp = nf_ct_expect_alloc(ct);
1081 if (!exp)
1082 return NF_DROP;
1083
1084 saddr = NULL;
1085 if (sip_direct_signalling)
1086 saddr = &ct->tuplehash[!dir].tuple.src.u3;
1087
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1088 nf_ct_expect_init(exp, SIP_EXPECT_SIGNALLING, nf_ct_l3num(ct),
1089 saddr, &daddr, IPPROTO_UDP, NULL, &port);
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1090 exp->timeout.expires = sip_timeout * HZ;
1091 exp->helper = nfct_help(ct)->helper;
1092 exp->flags = NF_CT_EXPECT_PERMANENT | NF_CT_EXPECT_INACTIVE;
1093
1094 nf_nat_sip_expect = rcu_dereference(nf_nat_sip_expect_hook);
1095 if (nf_nat_sip_expect && ct->status & IPS_NAT_MASK)
1096 ret = nf_nat_sip_expect(skb, dptr, datalen, exp,
1097 matchoff, matchlen);
1098 else {
1099 if (nf_ct_expect_related(exp) != 0)
1100 ret = NF_DROP;
1101 else
1102 ret = NF_ACCEPT;
1103 }
1104 nf_ct_expect_put(exp);
1105
1106store_cseq:
1107 if (ret == NF_ACCEPT)
1108 help->help.ct_sip_info.register_cseq = cseq;
1109 return ret;
1110}
1111
1112static int process_register_response(struct sk_buff *skb,
1113 const char **dptr, unsigned int *datalen,
1114 unsigned int cseq, unsigned int code)
1115{
1116 enum ip_conntrack_info ctinfo;
1117 struct nf_conn *ct = nf_ct_get(skb, &ctinfo);
1118 struct nf_conn_help *help = nfct_help(ct);
1119 enum ip_conntrack_dir dir = CTINFO2DIR(ctinfo);
1120 union nf_inet_addr addr;
1121 __be16 port;
1122 unsigned int matchoff, matchlen, dataoff = 0;
1123 unsigned int expires = 0;
1124 int in_contact = 0, ret;
1125
1126 /* According to RFC 3261, "UAs MUST NOT send a new registration until
1127 * they have received a final response from the registrar for the
1128 * previous one or the previous REGISTER request has timed out".
1129 *
1130 * However, some servers fail to detect retransmissions and send late
1131 * responses, so we store the sequence number of the last valid
1132 * request and compare it here.
1133 */
1134 if (help->help.ct_sip_info.register_cseq != cseq)
1135 return NF_ACCEPT;
1136
1137 if (code >= 100 && code <= 199)
1138 return NF_ACCEPT;
1139 if (code < 200 || code > 299)
1140 goto flush;
1141
1142 if (ct_sip_get_header(ct, *dptr, 0, *datalen, SIP_HDR_EXPIRES,
1143 &matchoff, &matchlen) > 0)
1144 expires = simple_strtoul(*dptr + matchoff, NULL, 10);
1145
1146 while (1) {
1147 unsigned int c_expires = expires;
1148
1149 ret = ct_sip_parse_header_uri(ct, *dptr, &dataoff, *datalen,
1150 SIP_HDR_CONTACT, &in_contact,
1151 &matchoff, &matchlen,
1152 &addr, &port);
1153 if (ret < 0)
1154 return NF_DROP;
1155 else if (ret == 0)
1156 break;
1157
1158 /* We don't support third-party registrations */
1159 if (!nf_inet_addr_cmp(&ct->tuplehash[dir].tuple.dst.u3, &addr))
1160 continue;
1161
1162 ret = ct_sip_parse_numerical_param(ct, *dptr,
1163 matchoff + matchlen,
1164 *datalen, "expires=",
1165 NULL, NULL, &c_expires);
1166 if (ret < 0)
1167 return NF_DROP;
1168 if (c_expires == 0)
1169 break;
1170 if (refresh_signalling_expectation(ct, &addr, port, c_expires))
1171 return NF_ACCEPT;
1172 }
1173
1174flush:
1175 flush_expectations(ct, false);
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1176 return NF_ACCEPT;
1177}
1178
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1179static const struct sip_handler sip_handlers[] = {
1180 SIP_HANDLER("INVITE", process_sdp, process_invite_response),
1181 SIP_HANDLER("UPDATE", process_sdp, process_update_response),
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1182 SIP_HANDLER("ACK", process_sdp, NULL),
1183 SIP_HANDLER("PRACK", process_sdp, process_prack_response),
9467ee38 1184 SIP_HANDLER("BYE", process_bye_request, NULL),
0f32a40f 1185 SIP_HANDLER("REGISTER", process_register_request, process_register_response),
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1186};
1187
1188static int process_sip_response(struct sk_buff *skb,
1189 const char **dptr, unsigned int *datalen)
1190{
1191 static const struct sip_handler *handler;
1192 enum ip_conntrack_info ctinfo;
1193 struct nf_conn *ct = nf_ct_get(skb, &ctinfo);
1194 unsigned int matchoff, matchlen;
1195 unsigned int code, cseq, dataoff, i;
1196
1197 if (*datalen < strlen("SIP/2.0 200"))
1198 return NF_ACCEPT;
1199 code = simple_strtoul(*dptr + strlen("SIP/2.0 "), NULL, 10);
1200 if (!code)
1201 return NF_DROP;
1202
1203 if (ct_sip_get_header(ct, *dptr, 0, *datalen, SIP_HDR_CSEQ,
1204 &matchoff, &matchlen) <= 0)
1205 return NF_DROP;
1206 cseq = simple_strtoul(*dptr + matchoff, NULL, 10);
1207 if (!cseq)
1208 return NF_DROP;
1209 dataoff = matchoff + matchlen + 1;
1210
1211 for (i = 0; i < ARRAY_SIZE(sip_handlers); i++) {
1212 handler = &sip_handlers[i];
1213 if (handler->response == NULL)
1214 continue;
1215 if (*datalen < dataoff + handler->len ||
1216 strnicmp(*dptr + dataoff, handler->method, handler->len))
1217 continue;
1218 return handler->response(skb, dptr, datalen, cseq, code);
1219 }
1220 return NF_ACCEPT;
1221}
1222
1223static int process_sip_request(struct sk_buff *skb,
1224 const char **dptr, unsigned int *datalen)
1225{
1226 static const struct sip_handler *handler;
1227 enum ip_conntrack_info ctinfo;
1228 struct nf_conn *ct = nf_ct_get(skb, &ctinfo);
1229 unsigned int matchoff, matchlen;
1230 unsigned int cseq, i;
1231
1232 for (i = 0; i < ARRAY_SIZE(sip_handlers); i++) {
1233 handler = &sip_handlers[i];
1234 if (handler->request == NULL)
1235 continue;
1236 if (*datalen < handler->len ||
1237 strnicmp(*dptr, handler->method, handler->len))
1238 continue;
1239
1240 if (ct_sip_get_header(ct, *dptr, 0, *datalen, SIP_HDR_CSEQ,
1241 &matchoff, &matchlen) <= 0)
1242 return NF_DROP;
1243 cseq = simple_strtoul(*dptr + matchoff, NULL, 10);
1244 if (!cseq)
1245 return NF_DROP;
1246
1247 return handler->request(skb, dptr, datalen, cseq);
1248 }
1249 return NF_ACCEPT;
1250}
7d3dd043 1251
3db05fea 1252static int sip_help(struct sk_buff *skb,
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1253 unsigned int protoff,
1254 struct nf_conn *ct,
1255 enum ip_conntrack_info ctinfo)
1256{
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1257 unsigned int dataoff, datalen;
1258 const char *dptr;
33cb1e9a 1259 int ret;
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1260 typeof(nf_nat_sip_hook) nf_nat_sip;
1261
1262 /* No Data ? */
1263 dataoff = protoff + sizeof(struct udphdr);
3db05fea 1264 if (dataoff >= skb->len)
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1265 return NF_ACCEPT;
1266
3db05fea 1267 nf_ct_refresh(ct, skb, sip_timeout * HZ);
9fafcd7b 1268
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1269 if (!skb_is_nonlinear(skb))
1270 dptr = skb->data + dataoff;
9fafcd7b 1271 else {
0d53778e 1272 pr_debug("Copy of skbuff not supported yet.\n");
7d3dd043 1273 return NF_ACCEPT;
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1274 }
1275
3db05fea 1276 datalen = skb->len - dataoff;
779382eb 1277 if (datalen < strlen("SIP/2.0 200"))
7d3dd043 1278 return NF_ACCEPT;
9fafcd7b 1279
30f33e6d 1280 if (strnicmp(dptr, "SIP/2.0 ", strlen("SIP/2.0 ")) != 0)
33cb1e9a 1281 ret = process_sip_request(skb, &dptr, &datalen);
30f33e6d 1282 else
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1283 ret = process_sip_response(skb, &dptr, &datalen);
1284
1285 if (ret == NF_ACCEPT && ct->status & IPS_NAT_MASK) {
1286 nf_nat_sip = rcu_dereference(nf_nat_sip_hook);
1287 if (nf_nat_sip && !nf_nat_sip(skb, &dptr, &datalen))
1288 ret = NF_DROP;
1289 }
1290
1291 return ret;
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1292}
1293
1294static struct nf_conntrack_helper sip[MAX_PORTS][2] __read_mostly;
1295static char sip_names[MAX_PORTS][2][sizeof("sip-65535")] __read_mostly;
1296
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1297static const struct nf_conntrack_expect_policy sip_exp_policy[SIP_EXPECT_MAX + 1] = {
1298 [SIP_EXPECT_SIGNALLING] = {
1299 .max_expected = 1,
1300 .timeout = 3 * 60,
1301 },
1302 [SIP_EXPECT_AUDIO] = {
a9c1d359 1303 .max_expected = 2 * IP_CT_DIR_MAX,
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1304 .timeout = 3 * 60,
1305 },
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1306 [SIP_EXPECT_VIDEO] = {
1307 .max_expected = 2 * IP_CT_DIR_MAX,
1308 .timeout = 3 * 60,
1309 },
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1310};
1311
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1312static void nf_conntrack_sip_fini(void)
1313{
1314 int i, j;
1315
1316 for (i = 0; i < ports_c; i++) {
1317 for (j = 0; j < 2; j++) {
1318 if (sip[i][j].me == NULL)
1319 continue;
1320 nf_conntrack_helper_unregister(&sip[i][j]);
1321 }
1322 }
1323}
1324
1325static int __init nf_conntrack_sip_init(void)
1326{
1327 int i, j, ret;
1328 char *tmpname;
1329
1330 if (ports_c == 0)
1331 ports[ports_c++] = SIP_PORT;
1332
1333 for (i = 0; i < ports_c; i++) {
1334 memset(&sip[i], 0, sizeof(sip[i]));
1335
1336 sip[i][0].tuple.src.l3num = AF_INET;
1337 sip[i][1].tuple.src.l3num = AF_INET6;
1338 for (j = 0; j < 2; j++) {
1339 sip[i][j].tuple.dst.protonum = IPPROTO_UDP;
1340 sip[i][j].tuple.src.u.udp.port = htons(ports[i]);
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1341 sip[i][j].expect_policy = sip_exp_policy;
1342 sip[i][j].expect_class_max = SIP_EXPECT_MAX;
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1343 sip[i][j].me = THIS_MODULE;
1344 sip[i][j].help = sip_help;
1345
1346 tmpname = &sip_names[i][j][0];
1347 if (ports[i] == SIP_PORT)
1348 sprintf(tmpname, "sip");
1349 else
1350 sprintf(tmpname, "sip-%u", i);
1351 sip[i][j].name = tmpname;
1352
0d53778e 1353 pr_debug("port #%u: %u\n", i, ports[i]);
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1354
1355 ret = nf_conntrack_helper_register(&sip[i][j]);
1356 if (ret) {
1357 printk("nf_ct_sip: failed to register helper "
1358 "for pf: %u port: %u\n",
1359 sip[i][j].tuple.src.l3num, ports[i]);
1360 nf_conntrack_sip_fini();
1361 return ret;
1362 }
1363 }
1364 }
1365 return 0;
1366}
1367
1368module_init(nf_conntrack_sip_init);
1369module_exit(nf_conntrack_sip_fini);