nf_conntrack_sip.c 37.9 KB
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/* SIP extension for IP connection tracking.
 *
 * (C) 2005 by Christian Hentschel <chentschel@arnet.com.ar>
 * based on RR's ip_conntrack_ftp.c and other modules.
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 * (C) 2007 United Security Providers
 * (C) 2007, 2008 Patrick McHardy <kaber@trash.net>
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 *
 * This program is free software; you can redistribute it and/or modify
 * it under the terms of the GNU General Public License version 2 as
 * published by the Free Software Foundation.
 */

#include <linux/module.h>
#include <linux/ctype.h>
#include <linux/skbuff.h>
#include <linux/inet.h>
#include <linux/in.h>
#include <linux/udp.h>
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#include <linux/netfilter.h>
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#include <net/netfilter/nf_conntrack.h>
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#include <net/netfilter/nf_conntrack_core.h>
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#include <net/netfilter/nf_conntrack_expect.h>
#include <net/netfilter/nf_conntrack_helper.h>
#include <linux/netfilter/nf_conntrack_sip.h>

MODULE_LICENSE("GPL");
MODULE_AUTHOR("Christian Hentschel <chentschel@arnet.com.ar>");
MODULE_DESCRIPTION("SIP connection tracking helper");
MODULE_ALIAS("ip_conntrack_sip");

#define MAX_PORTS	8
static unsigned short ports[MAX_PORTS];
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static unsigned int ports_c;
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module_param_array(ports, ushort, &ports_c, 0400);
MODULE_PARM_DESC(ports, "port numbers of SIP servers");

static unsigned int sip_timeout __read_mostly = SIP_TIMEOUT;
module_param(sip_timeout, uint, 0600);
MODULE_PARM_DESC(sip_timeout, "timeout for the master SIP session");

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static int sip_direct_signalling __read_mostly = 1;
module_param(sip_direct_signalling, int, 0600);
MODULE_PARM_DESC(sip_direct_signalling, "expect incoming calls from registrar "
					"only (default 1)");

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static int sip_direct_media __read_mostly = 1;
module_param(sip_direct_media, int, 0600);
MODULE_PARM_DESC(sip_direct_media, "Expect Media streams between signalling "
				   "endpoints only (default 1)");

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unsigned int (*nf_nat_sip_hook)(struct sk_buff *skb,
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				const char **dptr,
				unsigned int *datalen) __read_mostly;
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EXPORT_SYMBOL_GPL(nf_nat_sip_hook);

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unsigned int (*nf_nat_sip_expect_hook)(struct sk_buff *skb,
				       const char **dptr,
				       unsigned int *datalen,
				       struct nf_conntrack_expect *exp,
				       unsigned int matchoff,
				       unsigned int matchlen) __read_mostly;
EXPORT_SYMBOL_GPL(nf_nat_sip_expect_hook);

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unsigned int (*nf_nat_sdp_addr_hook)(struct sk_buff *skb,
				     const char **dptr,
				     unsigned int dataoff,
				     unsigned int *datalen,
				     enum sdp_header_types type,
				     enum sdp_header_types term,
				     const union nf_inet_addr *addr)
				     __read_mostly;
EXPORT_SYMBOL_GPL(nf_nat_sdp_addr_hook);

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unsigned int (*nf_nat_sdp_port_hook)(struct sk_buff *skb,
				     const char **dptr,
				     unsigned int *datalen,
				     unsigned int matchoff,
				     unsigned int matchlen,
				     u_int16_t port) __read_mostly;
EXPORT_SYMBOL_GPL(nf_nat_sdp_port_hook);

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unsigned int (*nf_nat_sdp_session_hook)(struct sk_buff *skb,
					const char **dptr,
					unsigned int dataoff,
					unsigned int *datalen,
					const union nf_inet_addr *addr)
					__read_mostly;
EXPORT_SYMBOL_GPL(nf_nat_sdp_session_hook);

unsigned int (*nf_nat_sdp_media_hook)(struct sk_buff *skb,
				      const char **dptr,
				      unsigned int *datalen,
				      struct nf_conntrack_expect *rtp_exp,
				      struct nf_conntrack_expect *rtcp_exp,
				      unsigned int mediaoff,
				      unsigned int medialen,
				      union nf_inet_addr *rtp_addr)
				      __read_mostly;
EXPORT_SYMBOL_GPL(nf_nat_sdp_media_hook);
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static int string_len(const struct nf_conn *ct, const char *dptr,
		      const char *limit, int *shift)
{
	int len = 0;

	while (dptr < limit && isalpha(*dptr)) {
		dptr++;
		len++;
	}
	return len;
}

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static int digits_len(const struct nf_conn *ct, const char *dptr,
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		      const char *limit, int *shift)
{
	int len = 0;
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	while (dptr < limit && isdigit(*dptr)) {
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		dptr++;
		len++;
	}
	return len;
}

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/* get media type + port length */
static int media_len(const struct nf_conn *ct, const char *dptr,
		     const char *limit, int *shift)
{
	int len = string_len(ct, dptr, limit, shift);

	dptr += len;
	if (dptr >= limit || *dptr != ' ')
		return 0;
	len++;
	dptr++;

	return len + digits_len(ct, dptr, limit, shift);
}

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static int parse_addr(const struct nf_conn *ct, const char *cp,
                      const char **endp, union nf_inet_addr *addr,
                      const char *limit)
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{
	const char *end;
	int ret = 0;

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	memset(addr, 0, sizeof(*addr));
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	switch (nf_ct_l3num(ct)) {
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	case AF_INET:
		ret = in4_pton(cp, limit - cp, (u8 *)&addr->ip, -1, &end);
		break;
	case AF_INET6:
		ret = in6_pton(cp, limit - cp, (u8 *)&addr->ip6, -1, &end);
		break;
	default:
		BUG();
	}

	if (ret == 0 || end == cp)
		return 0;
	if (endp)
		*endp = end;
	return 1;
}

/* skip ip address. returns its length. */
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static int epaddr_len(const struct nf_conn *ct, const char *dptr,
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		      const char *limit, int *shift)
{
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	union nf_inet_addr addr;
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	const char *aux = dptr;

	if (!parse_addr(ct, dptr, &dptr, &addr, limit)) {
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		pr_debug("ip: %s parse failed.!\n", dptr);
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		return 0;
	}

	/* Port number */
	if (*dptr == ':') {
		dptr++;
		dptr += digits_len(ct, dptr, limit, shift);
	}
	return dptr - aux;
}

/* get address length, skiping user info. */
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static int skp_epaddr_len(const struct nf_conn *ct, const char *dptr,
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			  const char *limit, int *shift)
{
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	const char *start = dptr;
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	int s = *shift;

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	/* Search for @, but stop at the end of the line.
	 * We are inside a sip: URI, so we don't need to worry about
	 * continuation lines. */
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	while (dptr < limit &&
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	       *dptr != '@' && *dptr != '\r' && *dptr != '\n') {
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		(*shift)++;
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		dptr++;
	}
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	if (dptr < limit && *dptr == '@') {
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		dptr++;
		(*shift)++;
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	} else {
		dptr = start;
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		*shift = s;
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	}
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	return epaddr_len(ct, dptr, limit, shift);
}

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/* Parse a SIP request line of the form:
 *
 * Request-Line = Method SP Request-URI SP SIP-Version CRLF
 *
 * and return the offset and length of the address contained in the Request-URI.
 */
int ct_sip_parse_request(const struct nf_conn *ct,
			 const char *dptr, unsigned int datalen,
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			 unsigned int *matchoff, unsigned int *matchlen,
			 union nf_inet_addr *addr, __be16 *port)
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{
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	const char *start = dptr, *limit = dptr + datalen, *end;
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	unsigned int mlen;
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	unsigned int p;
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	int shift = 0;

	/* Skip method and following whitespace */
	mlen = string_len(ct, dptr, limit, NULL);
	if (!mlen)
		return 0;
	dptr += mlen;
	if (++dptr >= limit)
		return 0;

	/* Find SIP URI */
	limit -= strlen("sip:");
	for (; dptr < limit; dptr++) {
		if (*dptr == '\r' || *dptr == '\n')
			return -1;
		if (strnicmp(dptr, "sip:", strlen("sip:")) == 0)
			break;
	}
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	if (!skp_epaddr_len(ct, dptr, limit, &shift))
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		return 0;
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	dptr += shift;

	if (!parse_addr(ct, dptr, &end, addr, limit))
		return -1;
	if (end < limit && *end == ':') {
		end++;
		p = simple_strtoul(end, (char **)&end, 10);
		if (p < 1024 || p > 65535)
			return -1;
		*port = htons(p);
	} else
		*port = htons(SIP_PORT);

	if (end == dptr)
		return 0;
	*matchoff = dptr - start;
	*matchlen = end - dptr;
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	return 1;
}
EXPORT_SYMBOL_GPL(ct_sip_parse_request);

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/* SIP header parsing: SIP headers are located at the beginning of a line, but
 * may span several lines, in which case the continuation lines begin with a
 * whitespace character. RFC 2543 allows lines to be terminated with CR, LF or
 * CRLF, RFC 3261 allows only CRLF, we support both.
 *
 * Headers are followed by (optionally) whitespace, a colon, again (optionally)
 * whitespace and the values. Whitespace in this context means any amount of
 * tabs, spaces and continuation lines, which are treated as a single whitespace
 * character.
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 *
 * Some headers may appear multiple times. A comma seperated list of values is
 * equivalent to multiple headers.
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 */
static const struct sip_header ct_sip_hdrs[] = {
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	[SIP_HDR_CSEQ]			= SIP_HDR("CSeq", NULL, NULL, digits_len),
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	[SIP_HDR_FROM]			= SIP_HDR("From", "f", "sip:", skp_epaddr_len),
	[SIP_HDR_TO]			= SIP_HDR("To", "t", "sip:", skp_epaddr_len),
	[SIP_HDR_CONTACT]		= SIP_HDR("Contact", "m", "sip:", skp_epaddr_len),
	[SIP_HDR_VIA]			= SIP_HDR("Via", "v", "UDP ", epaddr_len),
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	[SIP_HDR_EXPIRES]		= SIP_HDR("Expires", NULL, NULL, digits_len),
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	[SIP_HDR_CONTENT_LENGTH]	= SIP_HDR("Content-Length", "l", NULL, digits_len),
};

static const char *sip_follow_continuation(const char *dptr, const char *limit)
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{
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	/* Walk past newline */
	if (++dptr >= limit)
		return NULL;

	/* Skip '\n' in CR LF */
	if (*(dptr - 1) == '\r' && *dptr == '\n') {
		if (++dptr >= limit)
			return NULL;
	}
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	/* Continuation line? */
	if (*dptr != ' ' && *dptr != '\t')
		return NULL;
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	/* skip leading whitespace */
	for (; dptr < limit; dptr++) {
		if (*dptr != ' ' && *dptr != '\t')
			break;
	}
	return dptr;
}

static const char *sip_skip_whitespace(const char *dptr, const char *limit)
{
	for (; dptr < limit; dptr++) {
		if (*dptr == ' ')
			continue;
		if (*dptr != '\r' && *dptr != '\n')
			break;
		dptr = sip_follow_continuation(dptr, limit);
		if (dptr == NULL)
			return NULL;
	}
	return dptr;
}

/* Search within a SIP header value, dealing with continuation lines */
static const char *ct_sip_header_search(const char *dptr, const char *limit,
					const char *needle, unsigned int len)
{
	for (limit -= len; dptr < limit; dptr++) {
		if (*dptr == '\r' || *dptr == '\n') {
			dptr = sip_follow_continuation(dptr, limit);
			if (dptr == NULL)
				break;
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			continue;
		}
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		if (strnicmp(dptr, needle, len) == 0)
			return dptr;
	}
	return NULL;
}

int ct_sip_get_header(const struct nf_conn *ct, const char *dptr,
		      unsigned int dataoff, unsigned int datalen,
		      enum sip_header_types type,
		      unsigned int *matchoff, unsigned int *matchlen)
{
	const struct sip_header *hdr = &ct_sip_hdrs[type];
	const char *start = dptr, *limit = dptr + datalen;
	int shift = 0;

	for (dptr += dataoff; dptr < limit; dptr++) {
		/* Find beginning of line */
		if (*dptr != '\r' && *dptr != '\n')
			continue;
		if (++dptr >= limit)
			break;
		if (*(dptr - 1) == '\r' && *dptr == '\n') {
			if (++dptr >= limit)
				break;
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		}

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		/* Skip continuation lines */
		if (*dptr == ' ' || *dptr == '\t')
			continue;
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		/* Find header. Compact headers must be followed by a
		 * non-alphabetic character to avoid mismatches. */
		if (limit - dptr >= hdr->len &&
		    strnicmp(dptr, hdr->name, hdr->len) == 0)
			dptr += hdr->len;
		else if (hdr->cname && limit - dptr >= hdr->clen + 1 &&
			 strnicmp(dptr, hdr->cname, hdr->clen) == 0 &&
			 !isalpha(*(dptr + hdr->clen + 1)))
			dptr += hdr->clen;
		else
			continue;
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		/* Find and skip colon */
		dptr = sip_skip_whitespace(dptr, limit);
		if (dptr == NULL)
			break;
		if (*dptr != ':' || ++dptr >= limit)
			break;

		/* Skip whitespace after colon */
		dptr = sip_skip_whitespace(dptr, limit);
		if (dptr == NULL)
			break;

		*matchoff = dptr - start;
		if (hdr->search) {
			dptr = ct_sip_header_search(dptr, limit, hdr->search,
						    hdr->slen);
			if (!dptr)
				return -1;
			dptr += hdr->slen;
		}

		*matchlen = hdr->match_len(ct, dptr, limit, &shift);
		if (!*matchlen)
			return -1;
		*matchoff = dptr - start + shift;
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		return 1;
	}
	return 0;
}
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EXPORT_SYMBOL_GPL(ct_sip_get_header);
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/* Get next header field in a list of comma seperated values */
static int ct_sip_next_header(const struct nf_conn *ct, const char *dptr,
			      unsigned int dataoff, unsigned int datalen,
			      enum sip_header_types type,
			      unsigned int *matchoff, unsigned int *matchlen)
{
	const struct sip_header *hdr = &ct_sip_hdrs[type];
	const char *start = dptr, *limit = dptr + datalen;
	int shift = 0;

	dptr += dataoff;

	dptr = ct_sip_header_search(dptr, limit, ",", strlen(","));
	if (!dptr)
		return 0;

	dptr = ct_sip_header_search(dptr, limit, hdr->search, hdr->slen);
	if (!dptr)
		return 0;
	dptr += hdr->slen;

	*matchoff = dptr - start;
	*matchlen = hdr->match_len(ct, dptr, limit, &shift);
	if (!*matchlen)
		return -1;
	*matchoff += shift;
	return 1;
}

/* Walk through headers until a parsable one is found or no header of the
 * given type is left. */
static int ct_sip_walk_headers(const struct nf_conn *ct, const char *dptr,
			       unsigned int dataoff, unsigned int datalen,
			       enum sip_header_types type, int *in_header,
			       unsigned int *matchoff, unsigned int *matchlen)
{
	int ret;

	if (in_header && *in_header) {
		while (1) {
			ret = ct_sip_next_header(ct, dptr, dataoff, datalen,
						 type, matchoff, matchlen);
			if (ret > 0)
				return ret;
			if (ret == 0)
				break;
			dataoff += *matchoff;
		}
		*in_header = 0;
	}

	while (1) {
		ret = ct_sip_get_header(ct, dptr, dataoff, datalen,
					type, matchoff, matchlen);
		if (ret > 0)
			break;
		if (ret == 0)
			return ret;
		dataoff += *matchoff;
	}

	if (in_header)
		*in_header = 1;
	return 1;
}

/* Locate a SIP header, parse the URI and return the offset and length of
 * the address as well as the address and port themselves. A stream of
 * headers can be parsed by handing in a non-NULL datalen and in_header
 * pointer.
 */
int ct_sip_parse_header_uri(const struct nf_conn *ct, const char *dptr,
			    unsigned int *dataoff, unsigned int datalen,
			    enum sip_header_types type, int *in_header,
			    unsigned int *matchoff, unsigned int *matchlen,
			    union nf_inet_addr *addr, __be16 *port)
{
	const char *c, *limit = dptr + datalen;
	unsigned int p;
	int ret;

	ret = ct_sip_walk_headers(ct, dptr, dataoff ? *dataoff : 0, datalen,
				  type, in_header, matchoff, matchlen);
	WARN_ON(ret < 0);
	if (ret == 0)
		return ret;

	if (!parse_addr(ct, dptr + *matchoff, &c, addr, limit))
		return -1;
	if (*c == ':') {
		c++;
		p = simple_strtoul(c, (char **)&c, 10);
		if (p < 1024 || p > 65535)
			return -1;
		*port = htons(p);
	} else
		*port = htons(SIP_PORT);

	if (dataoff)
		*dataoff = c - dptr;
	return 1;
}
EXPORT_SYMBOL_GPL(ct_sip_parse_header_uri);

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/* Parse address from header parameter and return address, offset and length */
int ct_sip_parse_address_param(const struct nf_conn *ct, const char *dptr,
			       unsigned int dataoff, unsigned int datalen,
			       const char *name,
			       unsigned int *matchoff, unsigned int *matchlen,
			       union nf_inet_addr *addr)
{
	const char *limit = dptr + datalen;
	const char *start, *end;

	limit = ct_sip_header_search(dptr + dataoff, limit, ",", strlen(","));
	if (!limit)
		limit = dptr + datalen;

	start = ct_sip_header_search(dptr + dataoff, limit, name, strlen(name));
	if (!start)
		return 0;

	start += strlen(name);
	if (!parse_addr(ct, start, &end, addr, limit))
		return 0;
	*matchoff = start - dptr;
	*matchlen = end - start;
	return 1;
}
EXPORT_SYMBOL_GPL(ct_sip_parse_address_param);

/* Parse numerical header parameter and return value, offset and length */
int ct_sip_parse_numerical_param(const struct nf_conn *ct, const char *dptr,
				 unsigned int dataoff, unsigned int datalen,
				 const char *name,
				 unsigned int *matchoff, unsigned int *matchlen,
				 unsigned int *val)
{
	const char *limit = dptr + datalen;
	const char *start;
	char *end;

	limit = ct_sip_header_search(dptr + dataoff, limit, ",", strlen(","));
	if (!limit)
		limit = dptr + datalen;

	start = ct_sip_header_search(dptr + dataoff, limit, name, strlen(name));
	if (!start)
		return 0;

	start += strlen(name);
	*val = simple_strtoul(start, &end, 0);
	if (start == end)
		return 0;
	if (matchoff && matchlen) {
		*matchoff = start - dptr;
		*matchlen = end - start;
	}
	return 1;
}
EXPORT_SYMBOL_GPL(ct_sip_parse_numerical_param);

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/* SDP header parsing: a SDP session description contains an ordered set of
 * headers, starting with a section containing general session parameters,
 * optionally followed by multiple media descriptions.
 *
 * SDP headers always start at the beginning of a line. According to RFC 2327:
 * "The sequence CRLF (0x0d0a) is used to end a record, although parsers should
 * be tolerant and also accept records terminated with a single newline
 * character". We handle both cases.
 */
static const struct sip_header ct_sdp_hdrs[] = {
	[SDP_HDR_VERSION]		= SDP_HDR("v=", NULL, digits_len),
	[SDP_HDR_OWNER_IP4]		= SDP_HDR("o=", "IN IP4 ", epaddr_len),
	[SDP_HDR_CONNECTION_IP4]	= SDP_HDR("c=", "IN IP4 ", epaddr_len),
	[SDP_HDR_OWNER_IP6]		= SDP_HDR("o=", "IN IP6 ", epaddr_len),
	[SDP_HDR_CONNECTION_IP6]	= SDP_HDR("c=", "IN IP6 ", epaddr_len),
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	[SDP_HDR_MEDIA]			= SDP_HDR("m=", NULL, media_len),
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};

/* Linear string search within SDP header values */
static const char *ct_sdp_header_search(const char *dptr, const char *limit,
					const char *needle, unsigned int len)
{
	for (limit -= len; dptr < limit; dptr++) {
		if (*dptr == '\r' || *dptr == '\n')
			break;
		if (strncmp(dptr, needle, len) == 0)
			return dptr;
	}
	return NULL;
}

/* Locate a SDP header (optionally a substring within the header value),
 * optionally stopping at the first occurence of the term header, parse
 * it and return the offset and length of the data we're interested in.
 */
int ct_sip_get_sdp_header(const struct nf_conn *ct, const char *dptr,
			  unsigned int dataoff, unsigned int datalen,
			  enum sdp_header_types type,
			  enum sdp_header_types term,
			  unsigned int *matchoff, unsigned int *matchlen)
{
	const struct sip_header *hdr = &ct_sdp_hdrs[type];
	const struct sip_header *thdr = &ct_sdp_hdrs[term];
	const char *start = dptr, *limit = dptr + datalen;
	int shift = 0;

	for (dptr += dataoff; dptr < limit; dptr++) {
		/* Find beginning of line */
		if (*dptr != '\r' && *dptr != '\n')
			continue;
		if (++dptr >= limit)
			break;
		if (*(dptr - 1) == '\r' && *dptr == '\n') {
			if (++dptr >= limit)
				break;
		}

		if (term != SDP_HDR_UNSPEC &&
		    limit - dptr >= thdr->len &&
		    strnicmp(dptr, thdr->name, thdr->len) == 0)
			break;
		else if (limit - dptr >= hdr->len &&
			 strnicmp(dptr, hdr->name, hdr->len) == 0)
			dptr += hdr->len;
		else
			continue;

		*matchoff = dptr - start;
		if (hdr->search) {
			dptr = ct_sdp_header_search(dptr, limit, hdr->search,
						    hdr->slen);
			if (!dptr)
				return -1;
			dptr += hdr->slen;
		}

		*matchlen = hdr->match_len(ct, dptr, limit, &shift);
		if (!*matchlen)
			return -1;
		*matchoff = dptr - start + shift;
		return 1;
	}
	return 0;
}
EXPORT_SYMBOL_GPL(ct_sip_get_sdp_header);

662 663 664 665 666 667 668 669 670 671 672 673 674 675 676 677 678 679 680 681
static int ct_sip_parse_sdp_addr(const struct nf_conn *ct, const char *dptr,
				 unsigned int dataoff, unsigned int datalen,
				 enum sdp_header_types type,
				 enum sdp_header_types term,
				 unsigned int *matchoff, unsigned int *matchlen,
				 union nf_inet_addr *addr)
{
	int ret;

	ret = ct_sip_get_sdp_header(ct, dptr, dataoff, datalen, type, term,
				    matchoff, matchlen);
	if (ret <= 0)
		return ret;

	if (!parse_addr(ct, dptr + *matchoff, NULL, addr,
			dptr + *matchoff + *matchlen))
		return -1;
	return 1;
}

682 683 684 685
static int refresh_signalling_expectation(struct nf_conn *ct,
					  union nf_inet_addr *addr,
					  __be16 port,
					  unsigned int expires)
686 687 688 689
{
	struct nf_conn_help *help = nfct_help(ct);
	struct nf_conntrack_expect *exp;
	struct hlist_node *n, *next;
690
	int found = 0;
691 692 693

	spin_lock_bh(&nf_conntrack_lock);
	hlist_for_each_entry_safe(exp, n, next, &help->expectations, lnode) {
694 695 696 697 698 699 700 701 702 703 704 705 706 707 708 709 710 711 712 713 714 715 716 717 718 719
		if (exp->class != SIP_EXPECT_SIGNALLING ||
		    !nf_inet_addr_cmp(&exp->tuple.dst.u3, addr) ||
		    exp->tuple.dst.u.udp.port != port)
			continue;
		if (!del_timer(&exp->timeout))
			continue;
		exp->flags &= ~NF_CT_EXPECT_INACTIVE;
		exp->timeout.expires = jiffies + expires * HZ;
		add_timer(&exp->timeout);
		found = 1;
		break;
	}
	spin_unlock_bh(&nf_conntrack_lock);
	return found;
}

static void flush_expectations(struct nf_conn *ct, bool media)
{
	struct nf_conn_help *help = nfct_help(ct);
	struct nf_conntrack_expect *exp;
	struct hlist_node *n, *next;

	spin_lock_bh(&nf_conntrack_lock);
	hlist_for_each_entry_safe(exp, n, next, &help->expectations, lnode) {
		if ((exp->class != SIP_EXPECT_SIGNALLING) ^ media)
			continue;
720 721 722 723
		if (!del_timer(&exp->timeout))
			continue;
		nf_ct_unlink_expect(exp);
		nf_ct_expect_put(exp);
724 725
		if (!media)
			break;
726 727 728 729
	}
	spin_unlock_bh(&nf_conntrack_lock);
}

730 731
static int set_expected_rtp_rtcp(struct sk_buff *skb,
				 const char **dptr, unsigned int *datalen,
732
				 union nf_inet_addr *daddr, __be16 port,
733
				 enum sip_expectation_classes class,
734
				 unsigned int mediaoff, unsigned int medialen)
735
{
736
	struct nf_conntrack_expect *exp, *rtp_exp, *rtcp_exp;
737 738
	enum ip_conntrack_info ctinfo;
	struct nf_conn *ct = nf_ct_get(skb, &ctinfo);
739
	struct net *net = nf_ct_net(ct);
740
	enum ip_conntrack_dir dir = CTINFO2DIR(ctinfo);
741 742
	union nf_inet_addr *saddr;
	struct nf_conntrack_tuple tuple;
743
	int direct_rtp = 0, skip_expect = 0, ret = NF_DROP;
744 745
	u_int16_t base_port;
	__be16 rtp_port, rtcp_port;
746
	typeof(nf_nat_sdp_port_hook) nf_nat_sdp_port;
747
	typeof(nf_nat_sdp_media_hook) nf_nat_sdp_media;
748

749 750 751 752 753 754 755 756 757 758 759
	saddr = NULL;
	if (sip_direct_media) {
		if (!nf_inet_addr_cmp(daddr, &ct->tuplehash[dir].tuple.src.u3))
			return NF_ACCEPT;
		saddr = &ct->tuplehash[!dir].tuple.src.u3;
	}

	/* We need to check whether the registration exists before attempting
	 * to register it since we can see the same media description multiple
	 * times on different connections in case multiple endpoints receive
	 * the same call.
760 761 762 763 764 765 766 767
	 *
	 * RTP optimization: if we find a matching media channel expectation
	 * and both the expectation and this connection are SNATed, we assume
	 * both sides can reach each other directly and use the final
	 * destination address from the expectation. We still need to keep
	 * the NATed expectations for media that might arrive from the
	 * outside, and additionally need to expect the direct RTP stream
	 * in case it passes through us even without NAT.
768 769 770 771
	 */
	memset(&tuple, 0, sizeof(tuple));
	if (saddr)
		tuple.src.u3 = *saddr;
772
	tuple.src.l3num		= nf_ct_l3num(ct);
773 774 775 776 777
	tuple.dst.protonum	= IPPROTO_UDP;
	tuple.dst.u3		= *daddr;
	tuple.dst.u.udp.port	= port;

	rcu_read_lock();
778
	do {
779
		exp = __nf_ct_expect_find(net, &tuple);
780

781 782 783 784
		if (!exp || exp->master == ct ||
		    nfct_help(exp->master)->helper != nfct_help(ct)->helper ||
		    exp->class != class)
			break;
785
#ifdef CONFIG_NF_NAT_NEEDED
786 787 788 789 790 791 792 793 794
		if (exp->tuple.src.l3num == AF_INET && !direct_rtp &&
		    (exp->saved_ip != exp->tuple.dst.u3.ip ||
		     exp->saved_proto.udp.port != exp->tuple.dst.u.udp.port) &&
		    ct->status & IPS_NAT_MASK) {
			daddr->ip		= exp->saved_ip;
			tuple.dst.u3.ip		= exp->saved_ip;
			tuple.dst.u.udp.port	= exp->saved_proto.udp.port;
			direct_rtp = 1;
		} else
795
#endif
796 797 798
			skip_expect = 1;
	} while (!skip_expect);
	rcu_read_unlock();
799

800 801 802 803
	base_port = ntohs(tuple.dst.u.udp.port) & ~1;
	rtp_port = htons(base_port);
	rtcp_port = htons(base_port + 1);

804 805 806 807 808 809 810 811 812 813 814
	if (direct_rtp) {
		nf_nat_sdp_port = rcu_dereference(nf_nat_sdp_port_hook);
		if (nf_nat_sdp_port &&
		    !nf_nat_sdp_port(skb, dptr, datalen,
				     mediaoff, medialen, ntohs(rtp_port)))
			goto err1;
	}

	if (skip_expect)
		return NF_ACCEPT;

815 816 817
	rtp_exp = nf_ct_expect_alloc(ct);
	if (rtp_exp == NULL)
		goto err1;
818
	nf_ct_expect_init(rtp_exp, class, nf_ct_l3num(ct), saddr, daddr,
819 820 821 822 823
			  IPPROTO_UDP, NULL, &rtp_port);

	rtcp_exp = nf_ct_expect_alloc(ct);
	if (rtcp_exp == NULL)
		goto err2;
824
	nf_ct_expect_init(rtcp_exp, class, nf_ct_l3num(ct), saddr, daddr,
825
			  IPPROTO_UDP, NULL, &rtcp_port);
826

827
	nf_nat_sdp_media = rcu_dereference(nf_nat_sdp_media_hook);
828
	if (nf_nat_sdp_media && ct->status & IPS_NAT_MASK && !direct_rtp)
829 830
		ret = nf_nat_sdp_media(skb, dptr, datalen, rtp_exp, rtcp_exp,
				       mediaoff, medialen, daddr);
831
	else {
832 833 834 835 836 837
		if (nf_ct_expect_related(rtp_exp) == 0) {
			if (nf_ct_expect_related(rtcp_exp) != 0)
				nf_ct_unexpect_related(rtp_exp);
			else
				ret = NF_ACCEPT;
		}
838
	}
839 840 841 842
	nf_ct_expect_put(rtcp_exp);
err2:
	nf_ct_expect_put(rtp_exp);
err1:
843 844 845
	return ret;
}

846 847 848 849 850 851 852 853 854 855 856 857 858 859 860 861 862 863 864 865 866 867
static const struct sdp_media_type sdp_media_types[] = {
	SDP_MEDIA_TYPE("audio ", SIP_EXPECT_AUDIO),
	SDP_MEDIA_TYPE("video ", SIP_EXPECT_VIDEO),
};

static const struct sdp_media_type *sdp_media_type(const char *dptr,
						   unsigned int matchoff,
						   unsigned int matchlen)
{
	const struct sdp_media_type *t;
	unsigned int i;

	for (i = 0; i < ARRAY_SIZE(sdp_media_types); i++) {
		t = &sdp_media_types[i];
		if (matchlen < t->len ||
		    strncmp(dptr + matchoff, t->name, t->len))
			continue;
		return t;
	}
	return NULL;
}

868
static int process_sdp(struct sk_buff *skb,
869 870
		       const char **dptr, unsigned int *datalen,
		       unsigned int cseq)
871 872 873
{
	enum ip_conntrack_info ctinfo;
	struct nf_conn *ct = nf_ct_get(skb, &ctinfo);
874
	struct nf_conn_help *help = nfct_help(ct);
875
	unsigned int matchoff, matchlen;
876 877 878
	unsigned int mediaoff, medialen;
	unsigned int sdpoff;
	unsigned int caddr_len, maddr_len;
879
	unsigned int i;
880
	union nf_inet_addr caddr, maddr, rtp_addr;
881
	unsigned int port;
882
	enum sdp_header_types c_hdr;
883 884
	const struct sdp_media_type *t;
	int ret = NF_ACCEPT;
885 886
	typeof(nf_nat_sdp_addr_hook) nf_nat_sdp_addr;
	typeof(nf_nat_sdp_session_hook) nf_nat_sdp_session;
887

888
	nf_nat_sdp_addr = rcu_dereference(nf_nat_sdp_addr_hook);
889 890
	c_hdr = nf_ct_l3num(ct) == AF_INET ? SDP_HDR_CONNECTION_IP4 :
					     SDP_HDR_CONNECTION_IP6;
891

892
	/* Find beginning of session description */
893
	if (ct_sip_get_sdp_header(ct, *dptr, 0, *datalen,
894
				  SDP_HDR_VERSION, SDP_HDR_UNSPEC,
895 896
				  &matchoff, &matchlen) <= 0)
		return NF_ACCEPT;
897 898 899 900 901 902 903 904 905 906 907
	sdpoff = matchoff;

	/* The connection information is contained in the session description
	 * and/or once per media description. The first media description marks
	 * the end of the session description. */
	caddr_len = 0;
	if (ct_sip_parse_sdp_addr(ct, *dptr, sdpoff, *datalen,
				  c_hdr, SDP_HDR_MEDIA,
				  &matchoff, &matchlen, &caddr) > 0)
		caddr_len = matchlen;

908 909 910 911 912 913
	mediaoff = sdpoff;
	for (i = 0; i < ARRAY_SIZE(sdp_media_types); ) {
		if (ct_sip_get_sdp_header(ct, *dptr, mediaoff, *datalen,
					  SDP_HDR_MEDIA, SDP_HDR_UNSPEC,
					  &mediaoff, &medialen) <= 0)
			break;
914

915 916 917 918 919 920 921 922 923
		/* Get media type and port number. A media port value of zero
		 * indicates an inactive stream. */
		t = sdp_media_type(*dptr, mediaoff, medialen);
		if (!t) {
			mediaoff += medialen;
			continue;
		}
		mediaoff += t->len;
		medialen -= t->len;
924

925 926 927 928 929
		port = simple_strtoul(*dptr + mediaoff, NULL, 10);
		if (port == 0)
			continue;
		if (port < 1024 || port > 65535)
			return NF_DROP;
930

931 932 933 934 935 936 937 938 939 940 941 942 943 944 945 946 947
		/* The media description overrides the session description. */
		maddr_len = 0;
		if (ct_sip_parse_sdp_addr(ct, *dptr, mediaoff, *datalen,
					  c_hdr, SDP_HDR_MEDIA,
					  &matchoff, &matchlen, &maddr) > 0) {
			maddr_len = matchlen;
			memcpy(&rtp_addr, &maddr, sizeof(rtp_addr));
		} else if (caddr_len)
			memcpy(&rtp_addr, &caddr, sizeof(rtp_addr));
		else
			return NF_DROP;

		ret = set_expected_rtp_rtcp(skb, dptr, datalen,
					    &rtp_addr, htons(port), t->class,
					    mediaoff, medialen);
		if (ret != NF_ACCEPT)
			return ret;
948

949 950
		/* Update media connection address if present */
		if (maddr_len && nf_nat_sdp_addr && ct->status & IPS_NAT_MASK) {
951 952 953 954 955
			ret = nf_nat_sdp_addr(skb, dptr, mediaoff, datalen,
					      c_hdr, SDP_HDR_MEDIA, &rtp_addr);
			if (ret != NF_ACCEPT)
				return ret;
		}
956
		i++;
957 958 959 960 961 962 963
	}

	/* Update session connection and owner addresses */
	nf_nat_sdp_session = rcu_dereference(nf_nat_sdp_session_hook);
	if (nf_nat_sdp_session && ct->status & IPS_NAT_MASK)
		ret = nf_nat_sdp_session(skb, dptr, sdpoff, datalen, &rtp_addr);

964 965 966
	if (ret == NF_ACCEPT && i > 0)
		help->help.ct_sip_info.invite_cseq = cseq;

967
	return ret;
968
}
969 970 971 972
static int process_invite_response(struct sk_buff *skb,
				   const char **dptr, unsigned int *datalen,
				   unsigned int cseq, unsigned int code)
{
973 974
	enum ip_conntrack_info ctinfo;
	struct nf_conn *ct = nf_ct_get(skb, &ctinfo);
975
	struct nf_conn_help *help = nfct_help(ct);
976

977 978 979
	if ((code >= 100 && code <= 199) ||
	    (code >= 200 && code <= 299))
		return process_sdp(skb, dptr, datalen, cseq);
980
	else if (help->help.ct_sip_info.invite_cseq == cseq)
981
		flush_expectations(ct, true);
982
	return NF_ACCEPT;
983 984 985 986 987 988
}

static int process_update_response(struct sk_buff *skb,
				   const char **dptr, unsigned int *datalen,
				   unsigned int cseq, unsigned int code)
{
989 990
	enum ip_conntrack_info ctinfo;
	struct nf_conn *ct = nf_ct_get(skb, &ctinfo);
991
	struct nf_conn_help *help = nfct_help(ct);
992

993 994 995
	if ((code >= 100 && code <= 199) ||
	    (code >= 200 && code <= 299))
		return process_sdp(skb, dptr, datalen, cseq);
996
	else if (help->help.ct_sip_info.invite_cseq == cseq)
997
		flush_expectations(ct, true);
998
	return NF_ACCEPT;
999 1000
}

1001 1002 1003 1004
static int process_prack_response(struct sk_buff *skb,
				  const char **dptr, unsigned int *datalen,
				  unsigned int cseq, unsigned int code)
{
1005 1006
	enum ip_conntrack_info ctinfo;
	struct nf_conn *ct = nf_ct_get(skb, &ctinfo);
1007
	struct nf_conn_help *help = nfct_help(ct);
1008

1009 1010 1011
	if ((code >= 100 && code <= 199) ||
	    (code >= 200 && code <= 299))
		return process_sdp(skb, dptr, datalen, cseq);
1012
	else if (help->help.ct_sip_info.invite_cseq == cseq)
1013
		flush_expectations(ct, true);
1014
	return NF_ACCEPT;
1015 1016 1017 1018 1019 1020 1021 1022
}

static int process_bye_request(struct sk_buff *skb,
			       const char **dptr, unsigned int *datalen,
			       unsigned int cseq)
{
	enum ip_conntrack_info ctinfo;
	struct nf_conn *ct = nf_ct_get(skb, &ctinfo);
1023

1024 1025 1026 1027 1028 1029 1030 1031 1032 1033 1034 1035 1036 1037 1038 1039 1040 1041 1042 1043 1044 1045 1046 1047 1048 1049 1050 1051 1052 1053 1054 1055 1056 1057 1058 1059 1060 1061 1062 1063 1064 1065 1066 1067 1068 1069 1070 1071 1072 1073 1074 1075 1076 1077 1078 1079 1080 1081 1082 1083 1084 1085 1086 1087 1088 1089 1090 1091 1092 1093
	flush_expectations(ct, true);
	return NF_ACCEPT;
}

/* Parse a REGISTER request and create a permanent expectation for incoming
 * signalling connections. The expectation is marked inactive and is activated
 * when receiving a response indicating success from the registrar.
 */
static int process_register_request(struct sk_buff *skb,
				    const char **dptr, unsigned int *datalen,
				    unsigned int cseq)
{
	enum ip_conntrack_info ctinfo;
	struct nf_conn *ct = nf_ct_get(skb, &ctinfo);
	struct nf_conn_help *help = nfct_help(ct);
	enum ip_conntrack_dir dir = CTINFO2DIR(ctinfo);
	unsigned int matchoff, matchlen;
	struct nf_conntrack_expect *exp;
	union nf_inet_addr *saddr, daddr;
	__be16 port;
	unsigned int expires = 0;
	int ret;
	typeof(nf_nat_sip_expect_hook) nf_nat_sip_expect;

	/* Expected connections can not register again. */
	if (ct->status & IPS_EXPECTED)
		return NF_ACCEPT;

	/* We must check the expiration time: a value of zero signals the
	 * registrar to release the binding. We'll remove our expectation
	 * when receiving the new bindings in the response, but we don't
	 * want to create new ones.
	 *
	 * The expiration time may be contained in Expires: header, the
	 * Contact: header parameters or the URI parameters.
	 */
	if (ct_sip_get_header(ct, *dptr, 0, *datalen, SIP_HDR_EXPIRES,
			      &matchoff, &matchlen) > 0)
		expires = simple_strtoul(*dptr + matchoff, NULL, 10);

	ret = ct_sip_parse_header_uri(ct, *dptr, NULL, *datalen,
				      SIP_HDR_CONTACT, NULL,
				      &matchoff, &matchlen, &daddr, &port);
	if (ret < 0)
		return NF_DROP;
	else if (ret == 0)
		return NF_ACCEPT;

	/* We don't support third-party registrations */
	if (!nf_inet_addr_cmp(&ct->tuplehash[dir].tuple.src.u3, &daddr))
		return NF_ACCEPT;

	if (ct_sip_parse_numerical_param(ct, *dptr,
					 matchoff + matchlen, *datalen,
					 "expires=", NULL, NULL, &expires) < 0)
		return NF_DROP;

	if (expires == 0) {
		ret = NF_ACCEPT;
		goto store_cseq;
	}

	exp = nf_ct_expect_alloc(ct);
	if (!exp)
		return NF_DROP;

	saddr = NULL;
	if (sip_direct_signalling)
		saddr = &ct->tuplehash[!dir].tuple.src.u3;

1094 1095
	nf_ct_expect_init(exp, SIP_EXPECT_SIGNALLING, nf_ct_l3num(ct),
			  saddr, &daddr, IPPROTO_UDP, NULL, &port);
1096 1097 1098 1099 1100 1101 1102 1103 1104 1105 1106 1107 1108 1109 1110 1111 1112 1113 1114 1115 1116 1117 1118 1119 1120 1121 1122 1123 1124 1125 1126 1127 1128 1129 1130 1131 1132 1133 1134 1135 1136 1137 1138 1139 1140 1141 1142 1143 1144 1145 1146 1147 1148 1149 1150 1151 1152 1153 1154 1155 1156 1157 1158 1159 1160 1161 1162 1163 1164 1165 1166 1167 1168 1169 1170 1171 1172 1173 1174 1175 1176 1177 1178 1179 1180 1181
	exp->timeout.expires = sip_timeout * HZ;
	exp->helper = nfct_help(ct)->helper;
	exp->flags = NF_CT_EXPECT_PERMANENT | NF_CT_EXPECT_INACTIVE;

	nf_nat_sip_expect = rcu_dereference(nf_nat_sip_expect_hook);
	if (nf_nat_sip_expect && ct->status & IPS_NAT_MASK)
		ret = nf_nat_sip_expect(skb, dptr, datalen, exp,
					matchoff, matchlen);
	else {
		if (nf_ct_expect_related(exp) != 0)
			ret = NF_DROP;
		else
			ret = NF_ACCEPT;
	}
	nf_ct_expect_put(exp);

store_cseq:
	if (ret == NF_ACCEPT)
		help->help.ct_sip_info.register_cseq = cseq;
	return ret;
}

static int process_register_response(struct sk_buff *skb,
				     const char **dptr, unsigned int *datalen,
				     unsigned int cseq, unsigned int code)
{
	enum ip_conntrack_info ctinfo;
	struct nf_conn *ct = nf_ct_get(skb, &ctinfo);
	struct nf_conn_help *help = nfct_help(ct);
	enum ip_conntrack_dir dir = CTINFO2DIR(ctinfo);
	union nf_inet_addr addr;
	__be16 port;
	unsigned int matchoff, matchlen, dataoff = 0;
	unsigned int expires = 0;
	int in_contact = 0, ret;

	/* According to RFC 3261, "UAs MUST NOT send a new registration until
	 * they have received a final response from the registrar for the
	 * previous one or the previous REGISTER request has timed out".
	 *
	 * However, some servers fail to detect retransmissions and send late
	 * responses, so we store the sequence number of the last valid
	 * request and compare it here.
	 */
	if (help->help.ct_sip_info.register_cseq != cseq)
		return NF_ACCEPT;

	if (code >= 100 && code <= 199)
		return NF_ACCEPT;
	if (code < 200 || code > 299)
		goto flush;

	if (ct_sip_get_header(ct, *dptr, 0, *datalen, SIP_HDR_EXPIRES,
			      &matchoff, &matchlen) > 0)
		expires = simple_strtoul(*dptr + matchoff, NULL, 10);

	while (1) {
		unsigned int c_expires = expires;

		ret = ct_sip_parse_header_uri(ct, *dptr, &dataoff, *datalen,
					      SIP_HDR_CONTACT, &in_contact,
					      &matchoff, &matchlen,
					      &addr, &port);
		if (ret < 0)
			return NF_DROP;
		else if (ret == 0)
			break;

		/* We don't support third-party registrations */
		if (!nf_inet_addr_cmp(&ct->tuplehash[dir].tuple.dst.u3, &addr))
			continue;

		ret = ct_sip_parse_numerical_param(ct, *dptr,
						   matchoff + matchlen,
						   *datalen, "expires=",
						   NULL, NULL, &c_expires);
		if (ret < 0)
			return NF_DROP;
		if (c_expires == 0)
			break;
		if (refresh_signalling_expectation(ct, &addr, port, c_expires))
			return NF_ACCEPT;
	}

flush:
	flush_expectations(ct, false);
1182 1183 1184
	return NF_ACCEPT;
}

1185 1186 1187
static const struct sip_handler sip_handlers[] = {
	SIP_HANDLER("INVITE", process_sdp, process_invite_response),
	SIP_HANDLER("UPDATE", process_sdp, process_update_response),
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	SIP_HANDLER("ACK", process_sdp, NULL),
	SIP_HANDLER("PRACK", process_sdp, process_prack_response),
1190
	SIP_HANDLER("BYE", process_bye_request, NULL),
1191
	SIP_HANDLER("REGISTER", process_register_request, process_register_response),
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};

static int process_sip_response(struct sk_buff *skb,
				const char **dptr, unsigned int *datalen)
{
	enum ip_conntrack_info ctinfo;
	struct nf_conn *ct = nf_ct_get(skb, &ctinfo);
	unsigned int matchoff, matchlen;
	unsigned int code, cseq, dataoff, i;

	if (*datalen < strlen("SIP/2.0 200"))
		return NF_ACCEPT;
	code = simple_strtoul(*dptr + strlen("SIP/2.0 "), NULL, 10);
	if (!code)
		return NF_DROP;

	if (ct_sip_get_header(ct, *dptr, 0, *datalen, SIP_HDR_CSEQ,
			      &matchoff, &matchlen) <= 0)
		return NF_DROP;
	cseq = simple_strtoul(*dptr + matchoff, NULL, 10);
	if (!cseq)
		return NF_DROP;
	dataoff = matchoff + matchlen + 1;

	for (i = 0; i < ARRAY_SIZE(sip_handlers); i++) {
1217 1218
		const struct sip_handler *handler;

1219 1220 1221 1222 1223 1224 1225 1226 1227 1228 1229 1230 1231 1232 1233 1234 1235 1236 1237 1238
		handler = &sip_handlers[i];
		if (handler->response == NULL)
			continue;
		if (*datalen < dataoff + handler->len ||
		    strnicmp(*dptr + dataoff, handler->method, handler->len))
			continue;
		return handler->response(skb, dptr, datalen, cseq, code);
	}
	return NF_ACCEPT;
}

static int process_sip_request(struct sk_buff *skb,
			       const char **dptr, unsigned int *datalen)
{
	enum ip_conntrack_info ctinfo;
	struct nf_conn *ct = nf_ct_get(skb, &ctinfo);
	unsigned int matchoff, matchlen;
	unsigned int cseq, i;

	for (i = 0; i < ARRAY_SIZE(sip_handlers); i++) {
1239 1240
		const struct sip_handler *handler;

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		handler = &sip_handlers[i];
		if (handler->request == NULL)
			continue;
		if (*datalen < handler->len ||
		    strnicmp(*dptr, handler->method, handler->len))
			continue;

		if (ct_sip_get_header(ct, *dptr, 0, *datalen, SIP_HDR_CSEQ,
				      &matchoff, &matchlen) <= 0)
			return NF_DROP;
		cseq = simple_strtoul(*dptr + matchoff, NULL, 10);
		if (!cseq)
			return NF_DROP;

		return handler->request(skb, dptr, datalen, cseq);
	}
	return NF_ACCEPT;
}
1259

1260
static int sip_help(struct sk_buff *skb,
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		    unsigned int protoff,
		    struct nf_conn *ct,
		    enum ip_conntrack_info ctinfo)
{
	unsigned int dataoff, datalen;
	const char *dptr;
1267
	int ret;
1268 1269 1270 1271
	typeof(nf_nat_sip_hook) nf_nat_sip;

	/* No Data ? */
	dataoff = protoff + sizeof(struct udphdr);
1272
	if (dataoff >= skb->len)
1273 1274
		return NF_ACCEPT;

1275
	nf_ct_refresh(ct, skb, sip_timeout * HZ);
1276

1277 1278
	if (!skb_is_nonlinear(skb))
		dptr = skb->data + dataoff;
1279
	else {
1280
		pr_debug("Copy of skbuff not supported yet.\n");
1281
		return NF_ACCEPT;
1282 1283
	}

1284
	datalen = skb->len - dataoff;
1285
	if (datalen < strlen("SIP/2.0 200"))
1286
		return NF_ACCEPT;
1287

1288
	if (strnicmp(dptr, "SIP/2.0 ", strlen("SIP/2.0 ")) != 0)
1289
		ret = process_sip_request(skb, &dptr, &datalen);
1290
	else
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		ret = process_sip_response(skb, &dptr, &datalen);

	if (ret == NF_ACCEPT && ct->status & IPS_NAT_MASK) {
		nf_nat_sip = rcu_dereference(nf_nat_sip_hook);
		if (nf_nat_sip && !nf_nat_sip(skb, &dptr, &datalen))
			ret = NF_DROP;
	}

	return ret;
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}

static struct nf_conntrack_helper sip[MAX_PORTS][2] __read_mostly;
static char sip_names[MAX_PORTS][2][sizeof("sip-65535")] __read_mostly;

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static const struct nf_conntrack_expect_policy sip_exp_policy[SIP_EXPECT_MAX + 1] = {
	[SIP_EXPECT_SIGNALLING] = {
		.max_expected	= 1,
		.timeout	= 3 * 60,
	},
	[SIP_EXPECT_AUDIO] = {
1311
		.max_expected	= 2 * IP_CT_DIR_MAX,
1312 1313
		.timeout	= 3 * 60,
	},
1314 1315 1316 1317
	[SIP_EXPECT_VIDEO] = {
		.max_expected	= 2 * IP_CT_DIR_MAX,
		.timeout	= 3 * 60,
	},
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};

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static void nf_conntrack_sip_fini(void)
{
	int i, j;

	for (i = 0; i < ports_c; i++) {
		for (j = 0; j < 2; j++) {
			if (sip[i][j].me == NULL)
				continue;
			nf_conntrack_helper_unregister(&sip[i][j]);
		}
	}
}

static int __init nf_conntrack_sip_init(void)
{
	int i, j, ret;
	char *tmpname;

	if (ports_c == 0)
		ports[ports_c++] = SIP_PORT;

	for (i = 0; i < ports_c; i++) {
		memset(&sip[i], 0, sizeof(sip[i]));

		sip[i][0].tuple.src.l3num = AF_INET;
		sip[i][1].tuple.src.l3num = AF_INET6;
		for (j = 0; j < 2; j++) {
			sip[i][j].tuple.dst.protonum = IPPROTO_UDP;
			sip[i][j].tuple.src.u.udp.port = htons(ports[i]);
1349 1350
			sip[i][j].expect_policy = sip_exp_policy;
			sip[i][j].expect_class_max = SIP_EXPECT_MAX;
1351 1352 1353 1354 1355 1356 1357 1358 1359 1360
			sip[i][j].me = THIS_MODULE;
			sip[i][j].help = sip_help;

			tmpname = &sip_names[i][j][0];
			if (ports[i] == SIP_PORT)
				sprintf(tmpname, "sip");
			else
				sprintf(tmpname, "sip-%u", i);
			sip[i][j].name = tmpname;

1361
			pr_debug("port #%u: %u\n", i, ports[i]);
1362 1363 1364 1365 1366 1367 1368 1369 1370 1371 1372 1373 1374 1375 1376 1377

			ret = nf_conntrack_helper_register(&sip[i][j]);
			if (ret) {
				printk("nf_ct_sip: failed to register helper "
				       "for pf: %u port: %u\n",
				       sip[i][j].tuple.src.l3num, ports[i]);
				nf_conntrack_sip_fini();
				return ret;
			}
		}
	}
	return 0;
}

module_init(nf_conntrack_sip_init);
module_exit(nf_conntrack_sip_fini);