netfilter: netns nf_conntrack: per-netns net.netfilter.nf_conntrack_checksum sysctl
[GitHub/mt8127/android_kernel_alcatel_ttab.git] / net / netfilter / nf_conntrack_proto_tcp.c
CommitLineData
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1/* (C) 1999-2001 Paul `Rusty' Russell
2 * (C) 2002-2004 Netfilter Core Team <coreteam@netfilter.org>
3 *
4 * This program is free software; you can redistribute it and/or modify
5 * it under the terms of the GNU General Public License version 2 as
6 * published by the Free Software Foundation.
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7 */
8
9fb9cbb1 9#include <linux/types.h>
9fb9cbb1 10#include <linux/timer.h>
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11#include <linux/module.h>
12#include <linux/in.h>
13#include <linux/tcp.h>
14#include <linux/spinlock.h>
15#include <linux/skbuff.h>
16#include <linux/ipv6.h>
17#include <net/ip6_checksum.h>
18
19#include <net/tcp.h>
20
21#include <linux/netfilter.h>
22#include <linux/netfilter_ipv4.h>
23#include <linux/netfilter_ipv6.h>
24#include <net/netfilter/nf_conntrack.h>
605dcad6 25#include <net/netfilter/nf_conntrack_l4proto.h>
f6180121 26#include <net/netfilter/nf_conntrack_ecache.h>
f01ffbd6 27#include <net/netfilter/nf_log.h>
9fb9cbb1 28
c88130bc 29/* Protects ct->proto.tcp */
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30static DEFINE_RWLOCK(tcp_lock);
31
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32/* "Be conservative in what you do,
33 be liberal in what you accept from others."
9fb9cbb1 34 If it's non-zero, we mark only out of window RST segments as INVALID. */
3aef0fd9 35static int nf_ct_tcp_be_liberal __read_mostly = 0;
9fb9cbb1 36
a09113c2 37/* If it is set to zero, we disable picking up already established
9fb9cbb1 38 connections. */
3aef0fd9 39static int nf_ct_tcp_loose __read_mostly = 1;
9fb9cbb1 40
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41/* Max number of the retransmitted packets without receiving an (acceptable)
42 ACK from the destination. If this number is reached, a shorter timer
9fb9cbb1 43 will be started. */
3aef0fd9 44static int nf_ct_tcp_max_retrans __read_mostly = 3;
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45
46 /* FIXME: Examine ipfilter's timeouts and conntrack transitions more
47 closely. They're more complex. --RR */
48
82f568fc 49static const char *const tcp_conntrack_names[] = {
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50 "NONE",
51 "SYN_SENT",
52 "SYN_RECV",
53 "ESTABLISHED",
54 "FIN_WAIT",
55 "CLOSE_WAIT",
56 "LAST_ACK",
57 "TIME_WAIT",
58 "CLOSE",
59 "LISTEN"
60};
601e68e1 61
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62#define SECS * HZ
63#define MINS * 60 SECS
64#define HOURS * 60 MINS
65#define DAYS * 24 HOURS
66
9fb9cbb1 67/* RFC1122 says the R2 limit should be at least 100 seconds.
601e68e1 68 Linux uses 15 packets as limit, which corresponds
9fb9cbb1 69 to ~13-30min depending on RTO. */
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70static unsigned int nf_ct_tcp_timeout_max_retrans __read_mostly = 5 MINS;
71static unsigned int nf_ct_tcp_timeout_unacknowledged __read_mostly = 5 MINS;
601e68e1 72
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73static unsigned int tcp_timeouts[TCP_CONNTRACK_MAX] __read_mostly = {
74 [TCP_CONNTRACK_SYN_SENT] = 2 MINS,
75 [TCP_CONNTRACK_SYN_RECV] = 60 SECS,
76 [TCP_CONNTRACK_ESTABLISHED] = 5 DAYS,
77 [TCP_CONNTRACK_FIN_WAIT] = 2 MINS,
78 [TCP_CONNTRACK_CLOSE_WAIT] = 60 SECS,
79 [TCP_CONNTRACK_LAST_ACK] = 30 SECS,
80 [TCP_CONNTRACK_TIME_WAIT] = 2 MINS,
81 [TCP_CONNTRACK_CLOSE] = 10 SECS,
82};
601e68e1 83
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84#define sNO TCP_CONNTRACK_NONE
85#define sSS TCP_CONNTRACK_SYN_SENT
86#define sSR TCP_CONNTRACK_SYN_RECV
87#define sES TCP_CONNTRACK_ESTABLISHED
88#define sFW TCP_CONNTRACK_FIN_WAIT
89#define sCW TCP_CONNTRACK_CLOSE_WAIT
90#define sLA TCP_CONNTRACK_LAST_ACK
91#define sTW TCP_CONNTRACK_TIME_WAIT
92#define sCL TCP_CONNTRACK_CLOSE
93#define sLI TCP_CONNTRACK_LISTEN
94#define sIV TCP_CONNTRACK_MAX
95#define sIG TCP_CONNTRACK_IGNORE
96
97/* What TCP flags are set from RST/SYN/FIN/ACK. */
98enum tcp_bit_set {
99 TCP_SYN_SET,
100 TCP_SYNACK_SET,
101 TCP_FIN_SET,
102 TCP_ACK_SET,
103 TCP_RST_SET,
104 TCP_NONE_SET,
105};
601e68e1 106
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107/*
108 * The TCP state transition table needs a few words...
109 *
110 * We are the man in the middle. All the packets go through us
111 * but might get lost in transit to the destination.
601e68e1 112 * It is assumed that the destinations can't receive segments
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113 * we haven't seen.
114 *
115 * The checked segment is in window, but our windows are *not*
116 * equivalent with the ones of the sender/receiver. We always
117 * try to guess the state of the current sender.
118 *
119 * The meaning of the states are:
120 *
121 * NONE: initial state
601e68e1 122 * SYN_SENT: SYN-only packet seen
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123 * SYN_RECV: SYN-ACK packet seen
124 * ESTABLISHED: ACK packet seen
125 * FIN_WAIT: FIN packet seen
601e68e1 126 * CLOSE_WAIT: ACK seen (after FIN)
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127 * LAST_ACK: FIN seen (after FIN)
128 * TIME_WAIT: last ACK seen
b2155e7f 129 * CLOSE: closed connection (RST)
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130 *
131 * LISTEN state is not used.
132 *
133 * Packets marked as IGNORED (sIG):
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134 * if they may be either invalid or valid
135 * and the receiver may send back a connection
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136 * closing RST or a SYN/ACK.
137 *
138 * Packets marked as INVALID (sIV):
139 * if they are invalid
140 * or we do not support the request (simultaneous open)
141 */
a5e73c29 142static const u8 tcp_conntracks[2][6][TCP_CONNTRACK_MAX] = {
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143 {
144/* ORIGINAL */
145/* sNO, sSS, sSR, sES, sFW, sCW, sLA, sTW, sCL, sLI */
146/*syn*/ { sSS, sSS, sIG, sIG, sIG, sIG, sIG, sSS, sSS, sIV },
147/*
148 * sNO -> sSS Initialize a new connection
149 * sSS -> sSS Retransmitted SYN
150 * sSR -> sIG Late retransmitted SYN?
151 * sES -> sIG Error: SYNs in window outside the SYN_SENT state
601e68e1 152 * are errors. Receiver will reply with RST
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153 * and close the connection.
154 * Or we are not in sync and hold a dead connection.
155 * sFW -> sIG
156 * sCW -> sIG
157 * sLA -> sIG
158 * sTW -> sSS Reopened connection (RFC 1122).
159 * sCL -> sSS
160 */
161/* sNO, sSS, sSR, sES, sFW, sCW, sLA, sTW, sCL, sLI */
162/*synack*/ { sIV, sIV, sIV, sIV, sIV, sIV, sIV, sIV, sIV, sIV },
163/*
164 * A SYN/ACK from the client is always invalid:
601e68e1 165 * - either it tries to set up a simultaneous open, which is
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166 * not supported;
167 * - or the firewall has just been inserted between the two hosts
601e68e1 168 * during the session set-up. The SYN will be retransmitted
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169 * by the true client (or it'll time out).
170 */
171/* sNO, sSS, sSR, sES, sFW, sCW, sLA, sTW, sCL, sLI */
172/*fin*/ { sIV, sIV, sFW, sFW, sLA, sLA, sLA, sTW, sCL, sIV },
173/*
174 * sNO -> sIV Too late and no reason to do anything...
175 * sSS -> sIV Client migth not send FIN in this state:
176 * we enforce waiting for a SYN/ACK reply first.
177 * sSR -> sFW Close started.
178 * sES -> sFW
179 * sFW -> sLA FIN seen in both directions, waiting for
601e68e1 180 * the last ACK.
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181 * Migth be a retransmitted FIN as well...
182 * sCW -> sLA
183 * sLA -> sLA Retransmitted FIN. Remain in the same state.
184 * sTW -> sTW
185 * sCL -> sCL
186 */
187/* sNO, sSS, sSR, sES, sFW, sCW, sLA, sTW, sCL, sLI */
188/*ack*/ { sES, sIV, sES, sES, sCW, sCW, sTW, sTW, sCL, sIV },
189/*
190 * sNO -> sES Assumed.
191 * sSS -> sIV ACK is invalid: we haven't seen a SYN/ACK yet.
192 * sSR -> sES Established state is reached.
193 * sES -> sES :-)
194 * sFW -> sCW Normal close request answered by ACK.
195 * sCW -> sCW
196 * sLA -> sTW Last ACK detected.
197 * sTW -> sTW Retransmitted last ACK. Remain in the same state.
198 * sCL -> sCL
199 */
200/* sNO, sSS, sSR, sES, sFW, sCW, sLA, sTW, sCL, sLI */
201/*rst*/ { sIV, sCL, sCL, sCL, sCL, sCL, sCL, sCL, sCL, sIV },
202/*none*/ { sIV, sIV, sIV, sIV, sIV, sIV, sIV, sIV, sIV, sIV }
203 },
204 {
205/* REPLY */
206/* sNO, sSS, sSR, sES, sFW, sCW, sLA, sTW, sCL, sLI */
207/*syn*/ { sIV, sIV, sIV, sIV, sIV, sIV, sIV, sIV, sIV, sIV },
208/*
209 * sNO -> sIV Never reached.
210 * sSS -> sIV Simultaneous open, not supported
211 * sSR -> sIV Simultaneous open, not supported.
212 * sES -> sIV Server may not initiate a connection.
213 * sFW -> sIV
214 * sCW -> sIV
215 * sLA -> sIV
216 * sTW -> sIV Reopened connection, but server may not do it.
217 * sCL -> sIV
218 */
219/* sNO, sSS, sSR, sES, sFW, sCW, sLA, sTW, sCL, sLI */
220/*synack*/ { sIV, sSR, sSR, sIG, sIG, sIG, sIG, sIG, sIG, sIV },
221/*
222 * sSS -> sSR Standard open.
223 * sSR -> sSR Retransmitted SYN/ACK.
224 * sES -> sIG Late retransmitted SYN/ACK?
225 * sFW -> sIG Might be SYN/ACK answering ignored SYN
226 * sCW -> sIG
227 * sLA -> sIG
228 * sTW -> sIG
229 * sCL -> sIG
230 */
231/* sNO, sSS, sSR, sES, sFW, sCW, sLA, sTW, sCL, sLI */
232/*fin*/ { sIV, sIV, sFW, sFW, sLA, sLA, sLA, sTW, sCL, sIV },
233/*
234 * sSS -> sIV Server might not send FIN in this state.
235 * sSR -> sFW Close started.
236 * sES -> sFW
237 * sFW -> sLA FIN seen in both directions.
238 * sCW -> sLA
239 * sLA -> sLA Retransmitted FIN.
240 * sTW -> sTW
241 * sCL -> sCL
242 */
243/* sNO, sSS, sSR, sES, sFW, sCW, sLA, sTW, sCL, sLI */
73f30602 244/*ack*/ { sIV, sIG, sSR, sES, sCW, sCW, sTW, sTW, sCL, sIV },
9fb9cbb1 245/*
73f30602 246 * sSS -> sIG Might be a half-open connection.
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247 * sSR -> sSR Might answer late resent SYN.
248 * sES -> sES :-)
249 * sFW -> sCW Normal close request answered by ACK.
250 * sCW -> sCW
251 * sLA -> sTW Last ACK detected.
252 * sTW -> sTW Retransmitted last ACK.
253 * sCL -> sCL
254 */
255/* sNO, sSS, sSR, sES, sFW, sCW, sLA, sTW, sCL, sLI */
256/*rst*/ { sIV, sCL, sCL, sCL, sCL, sCL, sCL, sCL, sCL, sIV },
257/*none*/ { sIV, sIV, sIV, sIV, sIV, sIV, sIV, sIV, sIV, sIV }
601e68e1 258 }
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259};
260
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261static bool tcp_pkt_to_tuple(const struct sk_buff *skb, unsigned int dataoff,
262 struct nf_conntrack_tuple *tuple)
9fb9cbb1 263{
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264 const struct tcphdr *hp;
265 struct tcphdr _hdr;
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266
267 /* Actually only need first 8 bytes. */
268 hp = skb_header_pointer(skb, dataoff, 8, &_hdr);
269 if (hp == NULL)
09f263cd 270 return false;
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271
272 tuple->src.u.tcp.port = hp->source;
273 tuple->dst.u.tcp.port = hp->dest;
274
09f263cd 275 return true;
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276}
277
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278static bool tcp_invert_tuple(struct nf_conntrack_tuple *tuple,
279 const struct nf_conntrack_tuple *orig)
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280{
281 tuple->src.u.tcp.port = orig->dst.u.tcp.port;
282 tuple->dst.u.tcp.port = orig->src.u.tcp.port;
09f263cd 283 return true;
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284}
285
286/* Print out the per-protocol part of the tuple. */
287static int tcp_print_tuple(struct seq_file *s,
288 const struct nf_conntrack_tuple *tuple)
289{
290 return seq_printf(s, "sport=%hu dport=%hu ",
291 ntohs(tuple->src.u.tcp.port),
292 ntohs(tuple->dst.u.tcp.port));
293}
294
295/* Print out the private part of the conntrack. */
c88130bc 296static int tcp_print_conntrack(struct seq_file *s, const struct nf_conn *ct)
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297{
298 enum tcp_conntrack state;
299
300 read_lock_bh(&tcp_lock);
c88130bc 301 state = ct->proto.tcp.state;
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302 read_unlock_bh(&tcp_lock);
303
304 return seq_printf(s, "%s ", tcp_conntrack_names[state]);
305}
306
307static unsigned int get_conntrack_index(const struct tcphdr *tcph)
308{
309 if (tcph->rst) return TCP_RST_SET;
310 else if (tcph->syn) return (tcph->ack ? TCP_SYNACK_SET : TCP_SYN_SET);
311 else if (tcph->fin) return TCP_FIN_SET;
312 else if (tcph->ack) return TCP_ACK_SET;
313 else return TCP_NONE_SET;
314}
315
316/* TCP connection tracking based on 'Real Stateful TCP Packet Filtering
317 in IP Filter' by Guido van Rooij.
601e68e1 318
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319 http://www.nluug.nl/events/sane2000/papers.html
320 http://www.iae.nl/users/guido/papers/tcp_filtering.ps.gz
601e68e1 321
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322 The boundaries and the conditions are changed according to RFC793:
323 the packet must intersect the window (i.e. segments may be
324 after the right or before the left edge) and thus receivers may ACK
325 segments after the right edge of the window.
326
601e68e1 327 td_maxend = max(sack + max(win,1)) seen in reply packets
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328 td_maxwin = max(max(win, 1)) + (sack - ack) seen in sent packets
329 td_maxwin += seq + len - sender.td_maxend
330 if seq + len > sender.td_maxend
331 td_end = max(seq + len) seen in sent packets
601e68e1 332
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333 I. Upper bound for valid data: seq <= sender.td_maxend
334 II. Lower bound for valid data: seq + len >= sender.td_end - receiver.td_maxwin
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335 III. Upper bound for valid (s)ack: sack <= receiver.td_end
336 IV. Lower bound for valid (s)ack: sack >= receiver.td_end - MAXACKWINDOW
9fb9cbb1 337
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338 where sack is the highest right edge of sack block found in the packet
339 or ack in the case of packet without SACK option.
9fb9cbb1 340
84ebe1cd 341 The upper bound limit for a valid (s)ack is not ignored -
601e68e1 342 we doesn't have to deal with fragments.
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343*/
344
345static inline __u32 segment_seq_plus_len(__u32 seq,
346 size_t len,
347 unsigned int dataoff,
82f568fc 348 const struct tcphdr *tcph)
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349{
350 /* XXX Should I use payload length field in IP/IPv6 header ?
351 * - YK */
352 return (seq + len - dataoff - tcph->doff*4
353 + (tcph->syn ? 1 : 0) + (tcph->fin ? 1 : 0));
354}
601e68e1 355
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356/* Fixme: what about big packets? */
357#define MAXACKWINCONST 66000
358#define MAXACKWINDOW(sender) \
359 ((sender)->td_maxwin > MAXACKWINCONST ? (sender)->td_maxwin \
360 : MAXACKWINCONST)
601e68e1 361
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362/*
363 * Simplified tcp_parse_options routine from tcp_input.c
364 */
365static void tcp_options(const struct sk_buff *skb,
366 unsigned int dataoff,
82f568fc 367 const struct tcphdr *tcph,
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368 struct ip_ct_tcp_state *state)
369{
370 unsigned char buff[(15 * 4) - sizeof(struct tcphdr)];
82f568fc 371 const unsigned char *ptr;
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372 int length = (tcph->doff*4) - sizeof(struct tcphdr);
373
374 if (!length)
375 return;
376
377 ptr = skb_header_pointer(skb, dataoff + sizeof(struct tcphdr),
378 length, buff);
379 BUG_ON(ptr == NULL);
380
601e68e1 381 state->td_scale =
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382 state->flags = 0;
383
384 while (length > 0) {
385 int opcode=*ptr++;
386 int opsize;
387
388 switch (opcode) {
389 case TCPOPT_EOL:
390 return;
391 case TCPOPT_NOP: /* Ref: RFC 793 section 3.1 */
392 length--;
393 continue;
394 default:
395 opsize=*ptr++;
396 if (opsize < 2) /* "silly options" */
397 return;
398 if (opsize > length)
399 break; /* don't parse partial options */
400
601e68e1 401 if (opcode == TCPOPT_SACK_PERM
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402 && opsize == TCPOLEN_SACK_PERM)
403 state->flags |= IP_CT_TCP_FLAG_SACK_PERM;
404 else if (opcode == TCPOPT_WINDOW
405 && opsize == TCPOLEN_WINDOW) {
406 state->td_scale = *(u_int8_t *)ptr;
407
408 if (state->td_scale > 14) {
409 /* See RFC1323 */
410 state->td_scale = 14;
411 }
412 state->flags |=
413 IP_CT_TCP_FLAG_WINDOW_SCALE;
414 }
415 ptr += opsize - 2;
416 length -= opsize;
417 }
418 }
419}
420
421static void tcp_sack(const struct sk_buff *skb, unsigned int dataoff,
82f568fc 422 const struct tcphdr *tcph, __u32 *sack)
9fb9cbb1 423{
601e68e1 424 unsigned char buff[(15 * 4) - sizeof(struct tcphdr)];
82f568fc 425 const unsigned char *ptr;
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426 int length = (tcph->doff*4) - sizeof(struct tcphdr);
427 __u32 tmp;
428
429 if (!length)
430 return;
431
432 ptr = skb_header_pointer(skb, dataoff + sizeof(struct tcphdr),
433 length, buff);
434 BUG_ON(ptr == NULL);
435
436 /* Fast path for timestamp-only option */
437 if (length == TCPOLEN_TSTAMP_ALIGNED*4
8f05ce91
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438 && *(__be32 *)ptr == htonl((TCPOPT_NOP << 24)
439 | (TCPOPT_NOP << 16)
440 | (TCPOPT_TIMESTAMP << 8)
441 | TCPOLEN_TIMESTAMP))
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442 return;
443
444 while (length > 0) {
445 int opcode = *ptr++;
446 int opsize, i;
447
448 switch (opcode) {
449 case TCPOPT_EOL:
450 return;
451 case TCPOPT_NOP: /* Ref: RFC 793 section 3.1 */
452 length--;
453 continue;
454 default:
455 opsize = *ptr++;
456 if (opsize < 2) /* "silly options" */
457 return;
458 if (opsize > length)
459 break; /* don't parse partial options */
460
601e68e1
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461 if (opcode == TCPOPT_SACK
462 && opsize >= (TCPOLEN_SACK_BASE
463 + TCPOLEN_SACK_PERBLOCK)
464 && !((opsize - TCPOLEN_SACK_BASE)
465 % TCPOLEN_SACK_PERBLOCK)) {
466 for (i = 0;
467 i < (opsize - TCPOLEN_SACK_BASE);
468 i += TCPOLEN_SACK_PERBLOCK) {
469 tmp = ntohl(*((__be32 *)(ptr+i)+1));
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470
471 if (after(tmp, *sack))
472 *sack = tmp;
473 }
474 return;
475 }
476 ptr += opsize - 2;
477 length -= opsize;
478 }
479 }
480}
481
09f263cd
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482static bool tcp_in_window(const struct nf_conn *ct,
483 struct ip_ct_tcp *state,
484 enum ip_conntrack_dir dir,
485 unsigned int index,
486 const struct sk_buff *skb,
487 unsigned int dataoff,
488 const struct tcphdr *tcph,
76108cea 489 u_int8_t pf)
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490{
491 struct ip_ct_tcp_state *sender = &state->seen[dir];
492 struct ip_ct_tcp_state *receiver = &state->seen[!dir];
82f568fc 493 const struct nf_conntrack_tuple *tuple = &ct->tuplehash[dir].tuple;
9fb9cbb1 494 __u32 seq, ack, sack, end, win, swin;
09f263cd 495 bool res;
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496
497 /*
498 * Get the required data from the packet.
499 */
500 seq = ntohl(tcph->seq);
501 ack = sack = ntohl(tcph->ack_seq);
502 win = ntohs(tcph->window);
503 end = segment_seq_plus_len(seq, skb->len, dataoff, tcph);
504
505 if (receiver->flags & IP_CT_TCP_FLAG_SACK_PERM)
506 tcp_sack(skb, dataoff, tcph, &sack);
507
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508 pr_debug("tcp_in_window: START\n");
509 pr_debug("tcp_in_window: ");
3c9fba65 510 nf_ct_dump_tuple(tuple);
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511 pr_debug("seq=%u ack=%u sack=%u win=%u end=%u\n",
512 seq, ack, sack, win, end);
513 pr_debug("tcp_in_window: sender end=%u maxend=%u maxwin=%u scale=%i "
514 "receiver end=%u maxend=%u maxwin=%u scale=%i\n",
515 sender->td_end, sender->td_maxend, sender->td_maxwin,
516 sender->td_scale,
517 receiver->td_end, receiver->td_maxend, receiver->td_maxwin,
518 receiver->td_scale);
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519
520 if (sender->td_end == 0) {
521 /*
522 * Initialize sender data.
523 */
524 if (tcph->syn && tcph->ack) {
525 /*
526 * Outgoing SYN-ACK in reply to a SYN.
527 */
601e68e1 528 sender->td_end =
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529 sender->td_maxend = end;
530 sender->td_maxwin = (win == 0 ? 1 : win);
531
532 tcp_options(skb, dataoff, tcph, sender);
601e68e1 533 /*
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534 * RFC 1323:
535 * Both sides must send the Window Scale option
536 * to enable window scaling in either direction.
537 */
538 if (!(sender->flags & IP_CT_TCP_FLAG_WINDOW_SCALE
539 && receiver->flags & IP_CT_TCP_FLAG_WINDOW_SCALE))
601e68e1 540 sender->td_scale =
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541 receiver->td_scale = 0;
542 } else {
543 /*
544 * We are in the middle of a connection,
545 * its history is lost for us.
546 * Let's try to use the data from the packet.
601e68e1 547 */
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548 sender->td_end = end;
549 sender->td_maxwin = (win == 0 ? 1 : win);
550 sender->td_maxend = end + sender->td_maxwin;
551 }
552 } else if (((state->state == TCP_CONNTRACK_SYN_SENT
553 && dir == IP_CT_DIR_ORIGINAL)
554 || (state->state == TCP_CONNTRACK_SYN_RECV
555 && dir == IP_CT_DIR_REPLY))
556 && after(end, sender->td_end)) {
557 /*
558 * RFC 793: "if a TCP is reinitialized ... then it need
601e68e1 559 * not wait at all; it must only be sure to use sequence
9fb9cbb1
YK
560 * numbers larger than those recently used."
561 */
562 sender->td_end =
563 sender->td_maxend = end;
564 sender->td_maxwin = (win == 0 ? 1 : win);
565
566 tcp_options(skb, dataoff, tcph, sender);
567 }
568
569 if (!(tcph->ack)) {
570 /*
571 * If there is no ACK, just pretend it was set and OK.
572 */
573 ack = sack = receiver->td_end;
601e68e1
YH
574 } else if (((tcp_flag_word(tcph) & (TCP_FLAG_ACK|TCP_FLAG_RST)) ==
575 (TCP_FLAG_ACK|TCP_FLAG_RST))
9fb9cbb1
YK
576 && (ack == 0)) {
577 /*
578 * Broken TCP stacks, that set ACK in RST packets as well
579 * with zero ack value.
580 */
581 ack = sack = receiver->td_end;
582 }
583
584 if (seq == end
585 && (!tcph->rst
586 || (seq == 0 && state->state == TCP_CONNTRACK_SYN_SENT)))
587 /*
588 * Packets contains no data: we assume it is valid
589 * and check the ack value only.
590 * However RST segments are always validated by their
591 * SEQ number, except when seq == 0 (reset sent answering
592 * SYN.
593 */
594 seq = end = sender->td_end;
595
0d53778e 596 pr_debug("tcp_in_window: ");
3c9fba65 597 nf_ct_dump_tuple(tuple);
0d53778e
PM
598 pr_debug("seq=%u ack=%u sack =%u win=%u end=%u\n",
599 seq, ack, sack, win, end);
600 pr_debug("tcp_in_window: sender end=%u maxend=%u maxwin=%u scale=%i "
601 "receiver end=%u maxend=%u maxwin=%u scale=%i\n",
602 sender->td_end, sender->td_maxend, sender->td_maxwin,
603 sender->td_scale,
604 receiver->td_end, receiver->td_maxend, receiver->td_maxwin,
605 receiver->td_scale);
606
607 pr_debug("tcp_in_window: I=%i II=%i III=%i IV=%i\n",
608 before(seq, sender->td_maxend + 1),
609 after(end, sender->td_end - receiver->td_maxwin - 1),
610 before(sack, receiver->td_end + 1),
84ebe1cd 611 after(sack, receiver->td_end - MAXACKWINDOW(sender) - 1));
9fb9cbb1 612
a09113c2
PM
613 if (before(seq, sender->td_maxend + 1) &&
614 after(end, sender->td_end - receiver->td_maxwin - 1) &&
615 before(sack, receiver->td_end + 1) &&
84ebe1cd 616 after(sack, receiver->td_end - MAXACKWINDOW(sender) - 1)) {
601e68e1 617 /*
9fb9cbb1
YK
618 * Take into account window scaling (RFC 1323).
619 */
620 if (!tcph->syn)
621 win <<= sender->td_scale;
622
623 /*
624 * Update sender data.
625 */
626 swin = win + (sack - ack);
627 if (sender->td_maxwin < swin)
628 sender->td_maxwin = swin;
ae375044 629 if (after(end, sender->td_end)) {
9fb9cbb1 630 sender->td_end = end;
ae375044
PM
631 sender->flags |= IP_CT_TCP_FLAG_DATA_UNACKNOWLEDGED;
632 }
9fb9cbb1
YK
633 /*
634 * Update receiver data.
635 */
636 if (after(end, sender->td_maxend))
637 receiver->td_maxwin += end - sender->td_maxend;
638 if (after(sack + win, receiver->td_maxend - 1)) {
639 receiver->td_maxend = sack + win;
640 if (win == 0)
641 receiver->td_maxend++;
642 }
ae375044
PM
643 if (ack == receiver->td_end)
644 receiver->flags &= ~IP_CT_TCP_FLAG_DATA_UNACKNOWLEDGED;
9fb9cbb1 645
601e68e1 646 /*
9fb9cbb1
YK
647 * Check retransmissions.
648 */
649 if (index == TCP_ACK_SET) {
650 if (state->last_dir == dir
651 && state->last_seq == seq
652 && state->last_ack == ack
c1fe3ca5
GH
653 && state->last_end == end
654 && state->last_win == win)
9fb9cbb1
YK
655 state->retrans++;
656 else {
657 state->last_dir = dir;
658 state->last_seq = seq;
659 state->last_ack = ack;
660 state->last_end = end;
c1fe3ca5 661 state->last_win = win;
9fb9cbb1
YK
662 state->retrans = 0;
663 }
664 }
09f263cd 665 res = true;
9fb9cbb1 666 } else {
09f263cd 667 res = false;
a09113c2
PM
668 if (sender->flags & IP_CT_TCP_FLAG_BE_LIBERAL ||
669 nf_ct_tcp_be_liberal)
09f263cd 670 res = true;
a09113c2 671 if (!res && LOG_INVALID(IPPROTO_TCP))
9fb9cbb1
YK
672 nf_log_packet(pf, 0, skb, NULL, NULL, NULL,
673 "nf_ct_tcp: %s ",
674 before(seq, sender->td_maxend + 1) ?
675 after(end, sender->td_end - receiver->td_maxwin - 1) ?
676 before(sack, receiver->td_end + 1) ?
677 after(ack, receiver->td_end - MAXACKWINDOW(sender)) ? "BUG"
678 : "ACK is under the lower bound (possible overly delayed ACK)"
679 : "ACK is over the upper bound (ACKed data not seen yet)"
680 : "SEQ is under the lower bound (already ACKed data retransmitted)"
681 : "SEQ is over the upper bound (over the window of the receiver)");
601e68e1
YH
682 }
683
09f263cd 684 pr_debug("tcp_in_window: res=%u sender end=%u maxend=%u maxwin=%u "
0d53778e
PM
685 "receiver end=%u maxend=%u maxwin=%u\n",
686 res, sender->td_end, sender->td_maxend, sender->td_maxwin,
687 receiver->td_end, receiver->td_maxend, receiver->td_maxwin);
9fb9cbb1
YK
688
689 return res;
690}
691
5b1158e9 692#ifdef CONFIG_NF_NAT_NEEDED
9fb9cbb1
YK
693/* Update sender->td_end after NAT successfully mangled the packet */
694/* Caller must linearize skb at tcp header. */
82f568fc 695void nf_conntrack_tcp_update(const struct sk_buff *skb,
9fb9cbb1 696 unsigned int dataoff,
c88130bc 697 struct nf_conn *ct,
9fb9cbb1
YK
698 int dir)
699{
82f568fc
JE
700 const struct tcphdr *tcph = (const void *)skb->data + dataoff;
701 const struct ip_ct_tcp_state *sender = &ct->proto.tcp.seen[dir];
702 const struct ip_ct_tcp_state *receiver = &ct->proto.tcp.seen[!dir];
0d53778e 703 __u32 end;
9fb9cbb1
YK
704
705 end = segment_seq_plus_len(ntohl(tcph->seq), skb->len, dataoff, tcph);
706
707 write_lock_bh(&tcp_lock);
708 /*
709 * We have to worry for the ack in the reply packet only...
710 */
c88130bc
PM
711 if (after(end, ct->proto.tcp.seen[dir].td_end))
712 ct->proto.tcp.seen[dir].td_end = end;
713 ct->proto.tcp.last_end = end;
9fb9cbb1 714 write_unlock_bh(&tcp_lock);
0d53778e
PM
715 pr_debug("tcp_update: sender end=%u maxend=%u maxwin=%u scale=%i "
716 "receiver end=%u maxend=%u maxwin=%u scale=%i\n",
717 sender->td_end, sender->td_maxend, sender->td_maxwin,
718 sender->td_scale,
719 receiver->td_end, receiver->td_maxend, receiver->td_maxwin,
720 receiver->td_scale);
9fb9cbb1 721}
13b18339 722EXPORT_SYMBOL_GPL(nf_conntrack_tcp_update);
9fb9cbb1
YK
723#endif
724
725#define TH_FIN 0x01
726#define TH_SYN 0x02
727#define TH_RST 0x04
728#define TH_PUSH 0x08
729#define TH_ACK 0x10
730#define TH_URG 0x20
731#define TH_ECE 0x40
732#define TH_CWR 0x80
733
5c8ce7c9 734/* table of valid flag combinations - PUSH, ECE and CWR are always valid */
82f568fc 735static const u8 tcp_valid_flags[(TH_FIN|TH_SYN|TH_RST|TH_ACK|TH_URG) + 1] =
9fb9cbb1
YK
736{
737 [TH_SYN] = 1,
d3ab4298 738 [TH_SYN|TH_URG] = 1,
d3ab4298 739 [TH_SYN|TH_ACK] = 1,
9fb9cbb1
YK
740 [TH_RST] = 1,
741 [TH_RST|TH_ACK] = 1,
9fb9cbb1 742 [TH_FIN|TH_ACK] = 1,
5c8ce7c9 743 [TH_FIN|TH_ACK|TH_URG] = 1,
9fb9cbb1 744 [TH_ACK] = 1,
9fb9cbb1 745 [TH_ACK|TH_URG] = 1,
9fb9cbb1
YK
746};
747
748/* Protect conntrack agaist broken packets. Code taken from ipt_unclean.c. */
74c51a14
AD
749static int tcp_error(struct net *net,
750 struct sk_buff *skb,
9fb9cbb1
YK
751 unsigned int dataoff,
752 enum ip_conntrack_info *ctinfo,
76108cea 753 u_int8_t pf,
96f6bf82 754 unsigned int hooknum)
9fb9cbb1 755{
82f568fc
JE
756 const struct tcphdr *th;
757 struct tcphdr _tcph;
9fb9cbb1
YK
758 unsigned int tcplen = skb->len - dataoff;
759 u_int8_t tcpflags;
760
761 /* Smaller that minimal TCP header? */
762 th = skb_header_pointer(skb, dataoff, sizeof(_tcph), &_tcph);
763 if (th == NULL) {
764 if (LOG_INVALID(IPPROTO_TCP))
765 nf_log_packet(pf, 0, skb, NULL, NULL, NULL,
766 "nf_ct_tcp: short packet ");
767 return -NF_ACCEPT;
601e68e1
YH
768 }
769
9fb9cbb1
YK
770 /* Not whole TCP header or malformed packet */
771 if (th->doff*4 < sizeof(struct tcphdr) || tcplen < th->doff*4) {
772 if (LOG_INVALID(IPPROTO_TCP))
773 nf_log_packet(pf, 0, skb, NULL, NULL, NULL,
774 "nf_ct_tcp: truncated/malformed packet ");
775 return -NF_ACCEPT;
776 }
601e68e1 777
9fb9cbb1
YK
778 /* Checksum invalid? Ignore.
779 * We skip checking packets on the outgoing path
84fa7933 780 * because the checksum is assumed to be correct.
9fb9cbb1
YK
781 */
782 /* FIXME: Source route IP option packets --RR */
c04d0552 783 if (net->ct.sysctl_checksum && hooknum == NF_INET_PRE_ROUTING &&
96f6bf82 784 nf_checksum(skb, hooknum, dataoff, IPPROTO_TCP, pf)) {
9fb9cbb1
YK
785 if (LOG_INVALID(IPPROTO_TCP))
786 nf_log_packet(pf, 0, skb, NULL, NULL, NULL,
787 "nf_ct_tcp: bad TCP checksum ");
788 return -NF_ACCEPT;
789 }
790
791 /* Check TCP flags. */
5c8ce7c9 792 tcpflags = (((u_int8_t *)th)[13] & ~(TH_ECE|TH_CWR|TH_PUSH));
9fb9cbb1
YK
793 if (!tcp_valid_flags[tcpflags]) {
794 if (LOG_INVALID(IPPROTO_TCP))
795 nf_log_packet(pf, 0, skb, NULL, NULL, NULL,
796 "nf_ct_tcp: invalid TCP flag combination ");
797 return -NF_ACCEPT;
798 }
799
800 return NF_ACCEPT;
801}
802
9fb9cbb1 803/* Returns verdict for packet, or -1 for invalid. */
c88130bc 804static int tcp_packet(struct nf_conn *ct,
9fb9cbb1
YK
805 const struct sk_buff *skb,
806 unsigned int dataoff,
807 enum ip_conntrack_info ctinfo,
76108cea 808 u_int8_t pf,
9fb9cbb1
YK
809 unsigned int hooknum)
810{
0d53778e 811 struct nf_conntrack_tuple *tuple;
9fb9cbb1
YK
812 enum tcp_conntrack new_state, old_state;
813 enum ip_conntrack_dir dir;
82f568fc
JE
814 const struct tcphdr *th;
815 struct tcphdr _tcph;
9fb9cbb1
YK
816 unsigned long timeout;
817 unsigned int index;
818
819 th = skb_header_pointer(skb, dataoff, sizeof(_tcph), &_tcph);
820 BUG_ON(th == NULL);
821
822 write_lock_bh(&tcp_lock);
c88130bc 823 old_state = ct->proto.tcp.state;
9fb9cbb1
YK
824 dir = CTINFO2DIR(ctinfo);
825 index = get_conntrack_index(th);
826 new_state = tcp_conntracks[dir][index][old_state];
c88130bc 827 tuple = &ct->tuplehash[dir].tuple;
9fb9cbb1
YK
828
829 switch (new_state) {
17311393
JK
830 case TCP_CONNTRACK_SYN_SENT:
831 if (old_state < TCP_CONNTRACK_TIME_WAIT)
832 break;
b2155e7f
JK
833 /* RFC 1122: "When a connection is closed actively,
834 * it MUST linger in TIME-WAIT state for a time 2xMSL
835 * (Maximum Segment Lifetime). However, it MAY accept
836 * a new SYN from the remote TCP to reopen the connection
837 * directly from TIME-WAIT state, if..."
838 * We ignore the conditions because we are in the
839 * TIME-WAIT state anyway.
840 *
841 * Handle aborted connections: we and the server
842 * think there is an existing connection but the client
843 * aborts it and starts a new one.
844 */
845 if (((ct->proto.tcp.seen[dir].flags
846 | ct->proto.tcp.seen[!dir].flags)
847 & IP_CT_TCP_FLAG_CLOSE_INIT)
c88130bc
PM
848 || (ct->proto.tcp.last_dir == dir
849 && ct->proto.tcp.last_index == TCP_RST_SET)) {
bc34b841
JK
850 /* Attempt to reopen a closed/aborted connection.
851 * Delete this connection and look up again. */
17311393 852 write_unlock_bh(&tcp_lock);
2aec609f 853
6b69fe0c
PM
854 /* Only repeat if we can actually remove the timer.
855 * Destruction may already be in progress in process
856 * context and we must give it a chance to terminate.
857 */
2aec609f 858 if (nf_ct_kill(ct))
6b69fe0c 859 return -NF_REPEAT;
6b69fe0c 860 return -NF_DROP;
17311393
JK
861 }
862 /* Fall through */
9fb9cbb1 863 case TCP_CONNTRACK_IGNORE:
73f30602 864 /* Ignored packets:
b2155e7f
JK
865 *
866 * Our connection entry may be out of sync, so ignore
867 * packets which may signal the real connection between
868 * the client and the server.
73f30602
JK
869 *
870 * a) SYN in ORIGINAL
871 * b) SYN/ACK in REPLY
601e68e1 872 * c) ACK in reply direction after initial SYN in original.
b2155e7f
JK
873 *
874 * If the ignored packet is invalid, the receiver will send
875 * a RST we'll catch below.
73f30602 876 */
9fb9cbb1 877 if (index == TCP_SYNACK_SET
c88130bc
PM
878 && ct->proto.tcp.last_index == TCP_SYN_SET
879 && ct->proto.tcp.last_dir != dir
880 && ntohl(th->ack_seq) == ct->proto.tcp.last_end) {
b2155e7f 881 /* b) This SYN/ACK acknowledges a SYN that we earlier
9fb9cbb1
YK
882 * ignored as invalid. This means that the client and
883 * the server are both in sync, while the firewall is
884 * not. We kill this session and block the SYN/ACK so
601e68e1 885 * that the client cannot but retransmit its SYN and
9fb9cbb1
YK
886 * thus initiate a clean new session.
887 */
601e68e1 888 write_unlock_bh(&tcp_lock);
9fb9cbb1
YK
889 if (LOG_INVALID(IPPROTO_TCP))
890 nf_log_packet(pf, 0, skb, NULL, NULL, NULL,
891 "nf_ct_tcp: killing out of sync session ");
51091764 892 nf_ct_kill(ct);
601e68e1 893 return -NF_DROP;
9fb9cbb1 894 }
c88130bc
PM
895 ct->proto.tcp.last_index = index;
896 ct->proto.tcp.last_dir = dir;
897 ct->proto.tcp.last_seq = ntohl(th->seq);
898 ct->proto.tcp.last_end =
9fb9cbb1
YK
899 segment_seq_plus_len(ntohl(th->seq), skb->len, dataoff, th);
900
901 write_unlock_bh(&tcp_lock);
902 if (LOG_INVALID(IPPROTO_TCP))
903 nf_log_packet(pf, 0, skb, NULL, NULL, NULL,
b2155e7f 904 "nf_ct_tcp: invalid packet ignored ");
9fb9cbb1
YK
905 return NF_ACCEPT;
906 case TCP_CONNTRACK_MAX:
907 /* Invalid packet */
0d53778e
PM
908 pr_debug("nf_ct_tcp: Invalid dir=%i index=%u ostate=%u\n",
909 dir, get_conntrack_index(th), old_state);
9fb9cbb1
YK
910 write_unlock_bh(&tcp_lock);
911 if (LOG_INVALID(IPPROTO_TCP))
912 nf_log_packet(pf, 0, skb, NULL, NULL, NULL,
913 "nf_ct_tcp: invalid state ");
914 return -NF_ACCEPT;
9fb9cbb1
YK
915 case TCP_CONNTRACK_CLOSE:
916 if (index == TCP_RST_SET
c88130bc
PM
917 && ((test_bit(IPS_SEEN_REPLY_BIT, &ct->status)
918 && ct->proto.tcp.last_index == TCP_SYN_SET)
919 || (!test_bit(IPS_ASSURED_BIT, &ct->status)
920 && ct->proto.tcp.last_index == TCP_ACK_SET))
921 && ntohl(th->ack_seq) == ct->proto.tcp.last_end) {
93b1fae4 922 /* RST sent to invalid SYN or ACK we had let through
73f30602
JK
923 * at a) and c) above:
924 *
925 * a) SYN was in window then
926 * c) we hold a half-open connection.
927 *
928 * Delete our connection entry.
9fb9cbb1 929 * We skip window checking, because packet might ACK
73f30602 930 * segments we ignored. */
9fb9cbb1
YK
931 goto in_window;
932 }
93b1fae4 933 /* Just fall through */
9fb9cbb1
YK
934 default:
935 /* Keep compilers happy. */
936 break;
937 }
938
c88130bc 939 if (!tcp_in_window(ct, &ct->proto.tcp, dir, index,
9fb9cbb1
YK
940 skb, dataoff, th, pf)) {
941 write_unlock_bh(&tcp_lock);
942 return -NF_ACCEPT;
943 }
944 in_window:
945 /* From now on we have got in-window packets */
c88130bc
PM
946 ct->proto.tcp.last_index = index;
947 ct->proto.tcp.last_dir = dir;
9fb9cbb1 948
0d53778e 949 pr_debug("tcp_conntracks: ");
3c9fba65 950 nf_ct_dump_tuple(tuple);
0d53778e
PM
951 pr_debug("syn=%i ack=%i fin=%i rst=%i old=%i new=%i\n",
952 (th->syn ? 1 : 0), (th->ack ? 1 : 0),
953 (th->fin ? 1 : 0), (th->rst ? 1 : 0),
954 old_state, new_state);
9fb9cbb1 955
c88130bc 956 ct->proto.tcp.state = new_state;
9fb9cbb1 957 if (old_state != new_state
d0c1fd7a 958 && new_state == TCP_CONNTRACK_FIN_WAIT)
c88130bc 959 ct->proto.tcp.seen[dir].flags |= IP_CT_TCP_FLAG_CLOSE_INIT;
ae375044
PM
960
961 if (ct->proto.tcp.retrans >= nf_ct_tcp_max_retrans &&
962 tcp_timeouts[new_state] > nf_ct_tcp_timeout_max_retrans)
963 timeout = nf_ct_tcp_timeout_max_retrans;
964 else if ((ct->proto.tcp.seen[0].flags | ct->proto.tcp.seen[1].flags) &
965 IP_CT_TCP_FLAG_DATA_UNACKNOWLEDGED &&
966 tcp_timeouts[new_state] > nf_ct_tcp_timeout_unacknowledged)
967 timeout = nf_ct_tcp_timeout_unacknowledged;
968 else
969 timeout = tcp_timeouts[new_state];
9fb9cbb1
YK
970 write_unlock_bh(&tcp_lock);
971
a71996fc 972 nf_conntrack_event_cache(IPCT_PROTOINFO_VOLATILE, ct);
9fb9cbb1 973 if (new_state != old_state)
a71996fc 974 nf_conntrack_event_cache(IPCT_PROTOINFO, ct);
9fb9cbb1 975
c88130bc 976 if (!test_bit(IPS_SEEN_REPLY_BIT, &ct->status)) {
9fb9cbb1
YK
977 /* If only reply is a RST, we can consider ourselves not to
978 have an established connection: this is a fairly common
979 problem case, so we can delete the conntrack
980 immediately. --RR */
981 if (th->rst) {
718d4ad9 982 nf_ct_kill_acct(ct, ctinfo, skb);
9fb9cbb1
YK
983 return NF_ACCEPT;
984 }
c88130bc 985 } else if (!test_bit(IPS_ASSURED_BIT, &ct->status)
9fb9cbb1
YK
986 && (old_state == TCP_CONNTRACK_SYN_RECV
987 || old_state == TCP_CONNTRACK_ESTABLISHED)
988 && new_state == TCP_CONNTRACK_ESTABLISHED) {
601e68e1
YH
989 /* Set ASSURED if we see see valid ack in ESTABLISHED
990 after SYN_RECV or a valid answer for a picked up
9fb9cbb1 991 connection. */
c88130bc 992 set_bit(IPS_ASSURED_BIT, &ct->status);
a71996fc 993 nf_conntrack_event_cache(IPCT_STATUS, ct);
9fb9cbb1 994 }
c88130bc 995 nf_ct_refresh_acct(ct, ctinfo, skb, timeout);
9fb9cbb1
YK
996
997 return NF_ACCEPT;
998}
601e68e1 999
9fb9cbb1 1000/* Called when a new connection for this protocol found. */
09f263cd
JE
1001static bool tcp_new(struct nf_conn *ct, const struct sk_buff *skb,
1002 unsigned int dataoff)
9fb9cbb1
YK
1003{
1004 enum tcp_conntrack new_state;
82f568fc
JE
1005 const struct tcphdr *th;
1006 struct tcphdr _tcph;
1007 const struct ip_ct_tcp_state *sender = &ct->proto.tcp.seen[0];
1008 const struct ip_ct_tcp_state *receiver = &ct->proto.tcp.seen[1];
9fb9cbb1
YK
1009
1010 th = skb_header_pointer(skb, dataoff, sizeof(_tcph), &_tcph);
1011 BUG_ON(th == NULL);
1012
1013 /* Don't need lock here: this conntrack not in circulation yet */
1014 new_state
1015 = tcp_conntracks[0][get_conntrack_index(th)]
1016 [TCP_CONNTRACK_NONE];
1017
1018 /* Invalid: delete conntrack */
1019 if (new_state >= TCP_CONNTRACK_MAX) {
0d53778e 1020 pr_debug("nf_ct_tcp: invalid new deleting.\n");
09f263cd 1021 return false;
9fb9cbb1
YK
1022 }
1023
1024 if (new_state == TCP_CONNTRACK_SYN_SENT) {
1025 /* SYN packet */
c88130bc 1026 ct->proto.tcp.seen[0].td_end =
9fb9cbb1
YK
1027 segment_seq_plus_len(ntohl(th->seq), skb->len,
1028 dataoff, th);
c88130bc
PM
1029 ct->proto.tcp.seen[0].td_maxwin = ntohs(th->window);
1030 if (ct->proto.tcp.seen[0].td_maxwin == 0)
1031 ct->proto.tcp.seen[0].td_maxwin = 1;
1032 ct->proto.tcp.seen[0].td_maxend =
1033 ct->proto.tcp.seen[0].td_end;
1034
1035 tcp_options(skb, dataoff, th, &ct->proto.tcp.seen[0]);
1036 ct->proto.tcp.seen[1].flags = 0;
9fb9cbb1
YK
1037 } else if (nf_ct_tcp_loose == 0) {
1038 /* Don't try to pick up connections. */
09f263cd 1039 return false;
9fb9cbb1
YK
1040 } else {
1041 /*
1042 * We are in the middle of a connection,
1043 * its history is lost for us.
1044 * Let's try to use the data from the packet.
1045 */
c88130bc 1046 ct->proto.tcp.seen[0].td_end =
9fb9cbb1
YK
1047 segment_seq_plus_len(ntohl(th->seq), skb->len,
1048 dataoff, th);
c88130bc
PM
1049 ct->proto.tcp.seen[0].td_maxwin = ntohs(th->window);
1050 if (ct->proto.tcp.seen[0].td_maxwin == 0)
1051 ct->proto.tcp.seen[0].td_maxwin = 1;
1052 ct->proto.tcp.seen[0].td_maxend =
1053 ct->proto.tcp.seen[0].td_end +
1054 ct->proto.tcp.seen[0].td_maxwin;
1055 ct->proto.tcp.seen[0].td_scale = 0;
9fb9cbb1 1056
a09113c2
PM
1057 /* We assume SACK and liberal window checking to handle
1058 * window scaling */
c88130bc
PM
1059 ct->proto.tcp.seen[0].flags =
1060 ct->proto.tcp.seen[1].flags = IP_CT_TCP_FLAG_SACK_PERM |
1061 IP_CT_TCP_FLAG_BE_LIBERAL;
9fb9cbb1 1062 }
601e68e1 1063
c88130bc
PM
1064 ct->proto.tcp.seen[1].td_end = 0;
1065 ct->proto.tcp.seen[1].td_maxend = 0;
1066 ct->proto.tcp.seen[1].td_maxwin = 1;
1067 ct->proto.tcp.seen[1].td_scale = 0;
9fb9cbb1
YK
1068
1069 /* tcp_packet will set them */
c88130bc
PM
1070 ct->proto.tcp.state = TCP_CONNTRACK_NONE;
1071 ct->proto.tcp.last_index = TCP_NONE_SET;
601e68e1 1072
0d53778e
PM
1073 pr_debug("tcp_new: sender end=%u maxend=%u maxwin=%u scale=%i "
1074 "receiver end=%u maxend=%u maxwin=%u scale=%i\n",
1075 sender->td_end, sender->td_maxend, sender->td_maxwin,
1076 sender->td_scale,
1077 receiver->td_end, receiver->td_maxend, receiver->td_maxwin,
1078 receiver->td_scale);
09f263cd 1079 return true;
9fb9cbb1 1080}
c1d10adb 1081
e281db5c 1082#if defined(CONFIG_NF_CT_NETLINK) || defined(CONFIG_NF_CT_NETLINK_MODULE)
c1d10adb
PNA
1083
1084#include <linux/netfilter/nfnetlink.h>
1085#include <linux/netfilter/nfnetlink_conntrack.h>
1086
fdf70832 1087static int tcp_to_nlattr(struct sk_buff *skb, struct nlattr *nla,
c1d10adb
PNA
1088 const struct nf_conn *ct)
1089{
df6fb868 1090 struct nlattr *nest_parms;
c8e2078c 1091 struct nf_ct_tcp_flags tmp = {};
601e68e1 1092
c1d10adb 1093 read_lock_bh(&tcp_lock);
df6fb868
PM
1094 nest_parms = nla_nest_start(skb, CTA_PROTOINFO_TCP | NLA_F_NESTED);
1095 if (!nest_parms)
1096 goto nla_put_failure;
1097
77236b6e 1098 NLA_PUT_U8(skb, CTA_PROTOINFO_TCP_STATE, ct->proto.tcp.state);
c8e2078c 1099
77236b6e
PM
1100 NLA_PUT_U8(skb, CTA_PROTOINFO_TCP_WSCALE_ORIGINAL,
1101 ct->proto.tcp.seen[0].td_scale);
c8e2078c 1102
77236b6e
PM
1103 NLA_PUT_U8(skb, CTA_PROTOINFO_TCP_WSCALE_REPLY,
1104 ct->proto.tcp.seen[1].td_scale);
c8e2078c
PNA
1105
1106 tmp.flags = ct->proto.tcp.seen[0].flags;
df6fb868 1107 NLA_PUT(skb, CTA_PROTOINFO_TCP_FLAGS_ORIGINAL,
c8e2078c
PNA
1108 sizeof(struct nf_ct_tcp_flags), &tmp);
1109
1110 tmp.flags = ct->proto.tcp.seen[1].flags;
df6fb868 1111 NLA_PUT(skb, CTA_PROTOINFO_TCP_FLAGS_REPLY,
c8e2078c 1112 sizeof(struct nf_ct_tcp_flags), &tmp);
c1d10adb
PNA
1113 read_unlock_bh(&tcp_lock);
1114
df6fb868 1115 nla_nest_end(skb, nest_parms);
c1d10adb
PNA
1116
1117 return 0;
1118
df6fb868 1119nla_put_failure:
c1d10adb
PNA
1120 read_unlock_bh(&tcp_lock);
1121 return -1;
1122}
1123
f73e924c
PM
1124static const struct nla_policy tcp_nla_policy[CTA_PROTOINFO_TCP_MAX+1] = {
1125 [CTA_PROTOINFO_TCP_STATE] = { .type = NLA_U8 },
1126 [CTA_PROTOINFO_TCP_WSCALE_ORIGINAL] = { .type = NLA_U8 },
1127 [CTA_PROTOINFO_TCP_WSCALE_REPLY] = { .type = NLA_U8 },
1128 [CTA_PROTOINFO_TCP_FLAGS_ORIGINAL] = { .len = sizeof(struct nf_ct_tcp_flags) },
1129 [CTA_PROTOINFO_TCP_FLAGS_REPLY] = { .len = sizeof(struct nf_ct_tcp_flags) },
c1d10adb
PNA
1130};
1131
fdf70832 1132static int nlattr_to_tcp(struct nlattr *cda[], struct nf_conn *ct)
c1d10adb 1133{
2f0d2f10 1134 struct nlattr *pattr = cda[CTA_PROTOINFO_TCP];
df6fb868 1135 struct nlattr *tb[CTA_PROTOINFO_TCP_MAX+1];
f73e924c 1136 int err;
c1d10adb
PNA
1137
1138 /* updates could not contain anything about the private
1139 * protocol info, in that case skip the parsing */
2f0d2f10 1140 if (!pattr)
c1d10adb
PNA
1141 return 0;
1142
2f0d2f10 1143 err = nla_parse_nested(tb, CTA_PROTOINFO_TCP_MAX, pattr, tcp_nla_policy);
f73e924c
PM
1144 if (err < 0)
1145 return err;
c1d10adb 1146
5f7da4d2
PM
1147 if (tb[CTA_PROTOINFO_TCP_STATE] &&
1148 nla_get_u8(tb[CTA_PROTOINFO_TCP_STATE]) >= TCP_CONNTRACK_MAX)
c1d10adb
PNA
1149 return -EINVAL;
1150
1151 write_lock_bh(&tcp_lock);
5f7da4d2
PM
1152 if (tb[CTA_PROTOINFO_TCP_STATE])
1153 ct->proto.tcp.state = nla_get_u8(tb[CTA_PROTOINFO_TCP_STATE]);
c8e2078c 1154
df6fb868 1155 if (tb[CTA_PROTOINFO_TCP_FLAGS_ORIGINAL]) {
c8e2078c 1156 struct nf_ct_tcp_flags *attr =
df6fb868 1157 nla_data(tb[CTA_PROTOINFO_TCP_FLAGS_ORIGINAL]);
c8e2078c
PNA
1158 ct->proto.tcp.seen[0].flags &= ~attr->mask;
1159 ct->proto.tcp.seen[0].flags |= attr->flags & attr->mask;
1160 }
1161
df6fb868 1162 if (tb[CTA_PROTOINFO_TCP_FLAGS_REPLY]) {
c8e2078c 1163 struct nf_ct_tcp_flags *attr =
df6fb868 1164 nla_data(tb[CTA_PROTOINFO_TCP_FLAGS_REPLY]);
c8e2078c
PNA
1165 ct->proto.tcp.seen[1].flags &= ~attr->mask;
1166 ct->proto.tcp.seen[1].flags |= attr->flags & attr->mask;
1167 }
1168
df6fb868
PM
1169 if (tb[CTA_PROTOINFO_TCP_WSCALE_ORIGINAL] &&
1170 tb[CTA_PROTOINFO_TCP_WSCALE_REPLY] &&
c8e2078c
PNA
1171 ct->proto.tcp.seen[0].flags & IP_CT_TCP_FLAG_WINDOW_SCALE &&
1172 ct->proto.tcp.seen[1].flags & IP_CT_TCP_FLAG_WINDOW_SCALE) {
77236b6e
PM
1173 ct->proto.tcp.seen[0].td_scale =
1174 nla_get_u8(tb[CTA_PROTOINFO_TCP_WSCALE_ORIGINAL]);
1175 ct->proto.tcp.seen[1].td_scale =
1176 nla_get_u8(tb[CTA_PROTOINFO_TCP_WSCALE_REPLY]);
c8e2078c 1177 }
c1d10adb
PNA
1178 write_unlock_bh(&tcp_lock);
1179
1180 return 0;
1181}
1182#endif
933a41e7
PM
1183
1184#ifdef CONFIG_SYSCTL
1185static unsigned int tcp_sysctl_table_users;
1186static struct ctl_table_header *tcp_sysctl_header;
1187static struct ctl_table tcp_sysctl_table[] = {
1188 {
933a41e7 1189 .procname = "nf_conntrack_tcp_timeout_syn_sent",
2d646286 1190 .data = &tcp_timeouts[TCP_CONNTRACK_SYN_SENT],
933a41e7
PM
1191 .maxlen = sizeof(unsigned int),
1192 .mode = 0644,
1193 .proc_handler = &proc_dointvec_jiffies,
1194 },
1195 {
933a41e7 1196 .procname = "nf_conntrack_tcp_timeout_syn_recv",
2d646286 1197 .data = &tcp_timeouts[TCP_CONNTRACK_SYN_RECV],
933a41e7
PM
1198 .maxlen = sizeof(unsigned int),
1199 .mode = 0644,
1200 .proc_handler = &proc_dointvec_jiffies,
1201 },
1202 {
933a41e7 1203 .procname = "nf_conntrack_tcp_timeout_established",
2d646286 1204 .data = &tcp_timeouts[TCP_CONNTRACK_ESTABLISHED],
933a41e7
PM
1205 .maxlen = sizeof(unsigned int),
1206 .mode = 0644,
1207 .proc_handler = &proc_dointvec_jiffies,
1208 },
1209 {
933a41e7 1210 .procname = "nf_conntrack_tcp_timeout_fin_wait",
2d646286 1211 .data = &tcp_timeouts[TCP_CONNTRACK_FIN_WAIT],
933a41e7
PM
1212 .maxlen = sizeof(unsigned int),
1213 .mode = 0644,
1214 .proc_handler = &proc_dointvec_jiffies,
1215 },
1216 {
933a41e7 1217 .procname = "nf_conntrack_tcp_timeout_close_wait",
2d646286 1218 .data = &tcp_timeouts[TCP_CONNTRACK_CLOSE_WAIT],
933a41e7
PM
1219 .maxlen = sizeof(unsigned int),
1220 .mode = 0644,
1221 .proc_handler = &proc_dointvec_jiffies,
1222 },
1223 {
933a41e7 1224 .procname = "nf_conntrack_tcp_timeout_last_ack",
2d646286 1225 .data = &tcp_timeouts[TCP_CONNTRACK_LAST_ACK],
933a41e7
PM
1226 .maxlen = sizeof(unsigned int),
1227 .mode = 0644,
1228 .proc_handler = &proc_dointvec_jiffies,
1229 },
1230 {
933a41e7 1231 .procname = "nf_conntrack_tcp_timeout_time_wait",
2d646286 1232 .data = &tcp_timeouts[TCP_CONNTRACK_TIME_WAIT],
933a41e7
PM
1233 .maxlen = sizeof(unsigned int),
1234 .mode = 0644,
1235 .proc_handler = &proc_dointvec_jiffies,
1236 },
1237 {
933a41e7 1238 .procname = "nf_conntrack_tcp_timeout_close",
2d646286 1239 .data = &tcp_timeouts[TCP_CONNTRACK_CLOSE],
933a41e7
PM
1240 .maxlen = sizeof(unsigned int),
1241 .mode = 0644,
1242 .proc_handler = &proc_dointvec_jiffies,
1243 },
1244 {
933a41e7
PM
1245 .procname = "nf_conntrack_tcp_timeout_max_retrans",
1246 .data = &nf_ct_tcp_timeout_max_retrans,
1247 .maxlen = sizeof(unsigned int),
1248 .mode = 0644,
1249 .proc_handler = &proc_dointvec_jiffies,
1250 },
ae375044
PM
1251 {
1252 .procname = "nf_conntrack_tcp_timeout_unacknowledged",
1253 .data = &nf_ct_tcp_timeout_unacknowledged,
1254 .maxlen = sizeof(unsigned int),
1255 .mode = 0644,
1256 .proc_handler = &proc_dointvec_jiffies,
1257 },
933a41e7
PM
1258 {
1259 .ctl_name = NET_NF_CONNTRACK_TCP_LOOSE,
1260 .procname = "nf_conntrack_tcp_loose",
1261 .data = &nf_ct_tcp_loose,
1262 .maxlen = sizeof(unsigned int),
1263 .mode = 0644,
1264 .proc_handler = &proc_dointvec,
1265 },
1266 {
1267 .ctl_name = NET_NF_CONNTRACK_TCP_BE_LIBERAL,
1268 .procname = "nf_conntrack_tcp_be_liberal",
1269 .data = &nf_ct_tcp_be_liberal,
1270 .maxlen = sizeof(unsigned int),
1271 .mode = 0644,
1272 .proc_handler = &proc_dointvec,
1273 },
1274 {
1275 .ctl_name = NET_NF_CONNTRACK_TCP_MAX_RETRANS,
1276 .procname = "nf_conntrack_tcp_max_retrans",
1277 .data = &nf_ct_tcp_max_retrans,
1278 .maxlen = sizeof(unsigned int),
1279 .mode = 0644,
1280 .proc_handler = &proc_dointvec,
1281 },
1282 {
1283 .ctl_name = 0
1284 }
1285};
a999e683
PM
1286
1287#ifdef CONFIG_NF_CONNTRACK_PROC_COMPAT
1288static struct ctl_table tcp_compat_sysctl_table[] = {
1289 {
a999e683 1290 .procname = "ip_conntrack_tcp_timeout_syn_sent",
2d646286 1291 .data = &tcp_timeouts[TCP_CONNTRACK_SYN_SENT],
a999e683
PM
1292 .maxlen = sizeof(unsigned int),
1293 .mode = 0644,
1294 .proc_handler = &proc_dointvec_jiffies,
1295 },
1296 {
a999e683 1297 .procname = "ip_conntrack_tcp_timeout_syn_recv",
2d646286 1298 .data = &tcp_timeouts[TCP_CONNTRACK_SYN_RECV],
a999e683
PM
1299 .maxlen = sizeof(unsigned int),
1300 .mode = 0644,
1301 .proc_handler = &proc_dointvec_jiffies,
1302 },
1303 {
a999e683 1304 .procname = "ip_conntrack_tcp_timeout_established",
2d646286 1305 .data = &tcp_timeouts[TCP_CONNTRACK_ESTABLISHED],
a999e683
PM
1306 .maxlen = sizeof(unsigned int),
1307 .mode = 0644,
1308 .proc_handler = &proc_dointvec_jiffies,
1309 },
1310 {
a999e683 1311 .procname = "ip_conntrack_tcp_timeout_fin_wait",
2d646286 1312 .data = &tcp_timeouts[TCP_CONNTRACK_FIN_WAIT],
a999e683
PM
1313 .maxlen = sizeof(unsigned int),
1314 .mode = 0644,
1315 .proc_handler = &proc_dointvec_jiffies,
1316 },
1317 {
a999e683 1318 .procname = "ip_conntrack_tcp_timeout_close_wait",
2d646286 1319 .data = &tcp_timeouts[TCP_CONNTRACK_CLOSE_WAIT],
a999e683
PM
1320 .maxlen = sizeof(unsigned int),
1321 .mode = 0644,
1322 .proc_handler = &proc_dointvec_jiffies,
1323 },
1324 {
a999e683 1325 .procname = "ip_conntrack_tcp_timeout_last_ack",
2d646286 1326 .data = &tcp_timeouts[TCP_CONNTRACK_LAST_ACK],
a999e683
PM
1327 .maxlen = sizeof(unsigned int),
1328 .mode = 0644,
1329 .proc_handler = &proc_dointvec_jiffies,
1330 },
1331 {
a999e683 1332 .procname = "ip_conntrack_tcp_timeout_time_wait",
2d646286 1333 .data = &tcp_timeouts[TCP_CONNTRACK_TIME_WAIT],
a999e683
PM
1334 .maxlen = sizeof(unsigned int),
1335 .mode = 0644,
1336 .proc_handler = &proc_dointvec_jiffies,
1337 },
1338 {
a999e683 1339 .procname = "ip_conntrack_tcp_timeout_close",
2d646286 1340 .data = &tcp_timeouts[TCP_CONNTRACK_CLOSE],
a999e683
PM
1341 .maxlen = sizeof(unsigned int),
1342 .mode = 0644,
1343 .proc_handler = &proc_dointvec_jiffies,
1344 },
1345 {
a999e683
PM
1346 .procname = "ip_conntrack_tcp_timeout_max_retrans",
1347 .data = &nf_ct_tcp_timeout_max_retrans,
1348 .maxlen = sizeof(unsigned int),
1349 .mode = 0644,
1350 .proc_handler = &proc_dointvec_jiffies,
1351 },
1352 {
1353 .ctl_name = NET_IPV4_NF_CONNTRACK_TCP_LOOSE,
1354 .procname = "ip_conntrack_tcp_loose",
1355 .data = &nf_ct_tcp_loose,
1356 .maxlen = sizeof(unsigned int),
1357 .mode = 0644,
1358 .proc_handler = &proc_dointvec,
1359 },
1360 {
1361 .ctl_name = NET_IPV4_NF_CONNTRACK_TCP_BE_LIBERAL,
1362 .procname = "ip_conntrack_tcp_be_liberal",
1363 .data = &nf_ct_tcp_be_liberal,
1364 .maxlen = sizeof(unsigned int),
1365 .mode = 0644,
1366 .proc_handler = &proc_dointvec,
1367 },
1368 {
1369 .ctl_name = NET_IPV4_NF_CONNTRACK_TCP_MAX_RETRANS,
1370 .procname = "ip_conntrack_tcp_max_retrans",
1371 .data = &nf_ct_tcp_max_retrans,
1372 .maxlen = sizeof(unsigned int),
1373 .mode = 0644,
1374 .proc_handler = &proc_dointvec,
1375 },
1376 {
1377 .ctl_name = 0
1378 }
1379};
1380#endif /* CONFIG_NF_CONNTRACK_PROC_COMPAT */
933a41e7
PM
1381#endif /* CONFIG_SYSCTL */
1382
61075af5 1383struct nf_conntrack_l4proto nf_conntrack_l4proto_tcp4 __read_mostly =
9fb9cbb1
YK
1384{
1385 .l3proto = PF_INET,
605dcad6 1386 .l4proto = IPPROTO_TCP,
9fb9cbb1
YK
1387 .name = "tcp",
1388 .pkt_to_tuple = tcp_pkt_to_tuple,
1389 .invert_tuple = tcp_invert_tuple,
1390 .print_tuple = tcp_print_tuple,
1391 .print_conntrack = tcp_print_conntrack,
1392 .packet = tcp_packet,
1393 .new = tcp_new,
96f6bf82 1394 .error = tcp_error,
e281db5c 1395#if defined(CONFIG_NF_CT_NETLINK) || defined(CONFIG_NF_CT_NETLINK_MODULE)
fdf70832
PM
1396 .to_nlattr = tcp_to_nlattr,
1397 .from_nlattr = nlattr_to_tcp,
1398 .tuple_to_nlattr = nf_ct_port_tuple_to_nlattr,
1399 .nlattr_to_tuple = nf_ct_port_nlattr_to_tuple,
f73e924c 1400 .nla_policy = nf_ct_port_nla_policy,
c1d10adb 1401#endif
933a41e7
PM
1402#ifdef CONFIG_SYSCTL
1403 .ctl_table_users = &tcp_sysctl_table_users,
1404 .ctl_table_header = &tcp_sysctl_header,
1405 .ctl_table = tcp_sysctl_table,
a999e683
PM
1406#ifdef CONFIG_NF_CONNTRACK_PROC_COMPAT
1407 .ctl_compat_table = tcp_compat_sysctl_table,
1408#endif
933a41e7 1409#endif
9fb9cbb1 1410};
13b18339 1411EXPORT_SYMBOL_GPL(nf_conntrack_l4proto_tcp4);
9fb9cbb1 1412
61075af5 1413struct nf_conntrack_l4proto nf_conntrack_l4proto_tcp6 __read_mostly =
9fb9cbb1
YK
1414{
1415 .l3proto = PF_INET6,
605dcad6 1416 .l4proto = IPPROTO_TCP,
9fb9cbb1
YK
1417 .name = "tcp",
1418 .pkt_to_tuple = tcp_pkt_to_tuple,
1419 .invert_tuple = tcp_invert_tuple,
1420 .print_tuple = tcp_print_tuple,
1421 .print_conntrack = tcp_print_conntrack,
1422 .packet = tcp_packet,
1423 .new = tcp_new,
96f6bf82 1424 .error = tcp_error,
e281db5c 1425#if defined(CONFIG_NF_CT_NETLINK) || defined(CONFIG_NF_CT_NETLINK_MODULE)
fdf70832
PM
1426 .to_nlattr = tcp_to_nlattr,
1427 .from_nlattr = nlattr_to_tcp,
1428 .tuple_to_nlattr = nf_ct_port_tuple_to_nlattr,
1429 .nlattr_to_tuple = nf_ct_port_nlattr_to_tuple,
f73e924c 1430 .nla_policy = nf_ct_port_nla_policy,
c1d10adb 1431#endif
933a41e7
PM
1432#ifdef CONFIG_SYSCTL
1433 .ctl_table_users = &tcp_sysctl_table_users,
1434 .ctl_table_header = &tcp_sysctl_header,
1435 .ctl_table = tcp_sysctl_table,
1436#endif
9fb9cbb1 1437};
13b18339 1438EXPORT_SYMBOL_GPL(nf_conntrack_l4proto_tcp6);