[NETFILTER]: conntrack: add fixed timeout flag in connection tracking
[deliverable/linux.git] / net / ipv4 / netfilter / ip_conntrack_core.c
CommitLineData
1da177e4
LT
1/* Connection state tracking for netfilter. This is separated from,
2 but required by, the NAT layer; it can also be used by an iptables
3 extension. */
4
5/* (C) 1999-2001 Paul `Rusty' Russell
6 * (C) 2002-2004 Netfilter Core Team <coreteam@netfilter.org>
7 *
8 * This program is free software; you can redistribute it and/or modify
9 * it under the terms of the GNU General Public License version 2 as
10 * published by the Free Software Foundation.
11 *
12 * 23 Apr 2001: Harald Welte <laforge@gnumonks.org>
13 * - new API and handling of conntrack/nat helpers
14 * - now capable of multiple expectations for one master
15 * 16 Jul 2002: Harald Welte <laforge@gnumonks.org>
16 * - add usage/reference counts to ip_conntrack_expect
17 * - export ip_conntrack[_expect]_{find_get,put} functions
18 * */
19
20#include <linux/config.h>
21#include <linux/types.h>
22#include <linux/icmp.h>
23#include <linux/ip.h>
24#include <linux/netfilter.h>
25#include <linux/netfilter_ipv4.h>
26#include <linux/module.h>
27#include <linux/skbuff.h>
28#include <linux/proc_fs.h>
29#include <linux/vmalloc.h>
30#include <net/checksum.h>
31#include <net/ip.h>
32#include <linux/stddef.h>
33#include <linux/sysctl.h>
34#include <linux/slab.h>
35#include <linux/random.h>
36#include <linux/jhash.h>
37#include <linux/err.h>
38#include <linux/percpu.h>
39#include <linux/moduleparam.h>
ac3247ba 40#include <linux/notifier.h>
1da177e4 41
e45b1be8 42/* ip_conntrack_lock protects the main hash table, protocol/helper/expected
1da177e4 43 registrations, conntrack timers*/
e45b1be8
PM
44#define ASSERT_READ_LOCK(x)
45#define ASSERT_WRITE_LOCK(x)
1da177e4
LT
46
47#include <linux/netfilter_ipv4/ip_conntrack.h>
48#include <linux/netfilter_ipv4/ip_conntrack_protocol.h>
49#include <linux/netfilter_ipv4/ip_conntrack_helper.h>
50#include <linux/netfilter_ipv4/ip_conntrack_core.h>
51#include <linux/netfilter_ipv4/listhelp.h>
52
eed75f19 53#define IP_CONNTRACK_VERSION "2.4"
1da177e4
LT
54
55#if 0
56#define DEBUGP printk
57#else
58#define DEBUGP(format, args...)
59#endif
60
e45b1be8 61DEFINE_RWLOCK(ip_conntrack_lock);
1da177e4
LT
62
63/* ip_conntrack_standalone needs this */
64atomic_t ip_conntrack_count = ATOMIC_INIT(0);
65
66void (*ip_conntrack_destroyed)(struct ip_conntrack *conntrack) = NULL;
67LIST_HEAD(ip_conntrack_expect_list);
68struct ip_conntrack_protocol *ip_ct_protos[MAX_IP_CT_PROTO];
69static LIST_HEAD(helpers);
70unsigned int ip_conntrack_htable_size = 0;
71int ip_conntrack_max;
72struct list_head *ip_conntrack_hash;
ba89966c
ED
73static kmem_cache_t *ip_conntrack_cachep __read_mostly;
74static kmem_cache_t *ip_conntrack_expect_cachep __read_mostly;
1da177e4
LT
75struct ip_conntrack ip_conntrack_untracked;
76unsigned int ip_ct_log_invalid;
77static LIST_HEAD(unconfirmed);
78static int ip_conntrack_vmalloc;
79
4e3882f7
PNA
80static unsigned int ip_conntrack_next_id;
81static unsigned int ip_conntrack_expect_next_id;
ac3247ba 82#ifdef CONFIG_IP_NF_CONNTRACK_EVENTS
e041c683
AS
83ATOMIC_NOTIFIER_HEAD(ip_conntrack_chain);
84ATOMIC_NOTIFIER_HEAD(ip_conntrack_expect_chain);
ac3247ba
HW
85
86DEFINE_PER_CPU(struct ip_conntrack_ecache, ip_conntrack_ecache);
87
a86888b9
PM
88/* deliver cached events and clear cache entry - must be called with locally
89 * disabled softirqs */
90static inline void
91__ip_ct_deliver_cached_events(struct ip_conntrack_ecache *ecache)
ac3247ba 92{
a86888b9 93 DEBUGP("ecache: delivering events for %p\n", ecache->ct);
ac3247ba 94 if (is_confirmed(ecache->ct) && !is_dying(ecache->ct) && ecache->events)
e041c683 95 atomic_notifier_call_chain(&ip_conntrack_chain, ecache->events,
ac3247ba
HW
96 ecache->ct);
97 ecache->events = 0;
a86888b9
PM
98 ip_conntrack_put(ecache->ct);
99 ecache->ct = NULL;
ac3247ba
HW
100}
101
102/* Deliver all cached events for a particular conntrack. This is called
103 * by code prior to async packet handling or freeing the skb */
a86888b9 104void ip_ct_deliver_cached_events(const struct ip_conntrack *ct)
ac3247ba 105{
a86888b9
PM
106 struct ip_conntrack_ecache *ecache;
107
108 local_bh_disable();
109 ecache = &__get_cpu_var(ip_conntrack_ecache);
110 if (ecache->ct == ct)
111 __ip_ct_deliver_cached_events(ecache);
112 local_bh_enable();
113}
ac3247ba 114
a86888b9
PM
115void __ip_ct_event_cache_init(struct ip_conntrack *ct)
116{
117 struct ip_conntrack_ecache *ecache;
ac3247ba 118
a86888b9
PM
119 /* take care of delivering potentially old events */
120 ecache = &__get_cpu_var(ip_conntrack_ecache);
121 BUG_ON(ecache->ct == ct);
122 if (ecache->ct)
123 __ip_ct_deliver_cached_events(ecache);
124 /* initialize for this conntrack/packet */
125 ecache->ct = ct;
126 nf_conntrack_get(&ct->ct_general);
ac3247ba
HW
127}
128
a86888b9
PM
129/* flush the event cache - touches other CPU's data and must not be called while
130 * packets are still passing through the code */
131static void ip_ct_event_cache_flush(void)
ac3247ba 132{
a86888b9
PM
133 struct ip_conntrack_ecache *ecache;
134 int cpu;
ac3247ba 135
6f912042 136 for_each_possible_cpu(cpu) {
a86888b9
PM
137 ecache = &per_cpu(ip_conntrack_ecache, cpu);
138 if (ecache->ct)
ac3247ba 139 ip_conntrack_put(ecache->ct);
ac3247ba
HW
140 }
141}
a86888b9
PM
142#else
143static inline void ip_ct_event_cache_flush(void) {}
ac3247ba
HW
144#endif /* CONFIG_IP_NF_CONNTRACK_EVENTS */
145
1da177e4
LT
146DEFINE_PER_CPU(struct ip_conntrack_stat, ip_conntrack_stat);
147
1da177e4
LT
148static int ip_conntrack_hash_rnd_initted;
149static unsigned int ip_conntrack_hash_rnd;
150
eed75f19
HW
151static u_int32_t __hash_conntrack(const struct ip_conntrack_tuple *tuple,
152 unsigned int size, unsigned int rnd)
1da177e4 153{
1da177e4
LT
154 return (jhash_3words(tuple->src.ip,
155 (tuple->dst.ip ^ tuple->dst.protonum),
156 (tuple->src.u.all | (tuple->dst.u.all << 16)),
eed75f19
HW
157 rnd) % size);
158}
159
160static u_int32_t
161hash_conntrack(const struct ip_conntrack_tuple *tuple)
162{
163 return __hash_conntrack(tuple, ip_conntrack_htable_size,
164 ip_conntrack_hash_rnd);
1da177e4
LT
165}
166
167int
168ip_ct_get_tuple(const struct iphdr *iph,
169 const struct sk_buff *skb,
170 unsigned int dataoff,
171 struct ip_conntrack_tuple *tuple,
172 const struct ip_conntrack_protocol *protocol)
173{
174 /* Never happen */
175 if (iph->frag_off & htons(IP_OFFSET)) {
176 printk("ip_conntrack_core: Frag of proto %u.\n",
177 iph->protocol);
178 return 0;
179 }
180
181 tuple->src.ip = iph->saddr;
182 tuple->dst.ip = iph->daddr;
183 tuple->dst.protonum = iph->protocol;
184 tuple->dst.dir = IP_CT_DIR_ORIGINAL;
185
186 return protocol->pkt_to_tuple(skb, dataoff, tuple);
187}
188
189int
190ip_ct_invert_tuple(struct ip_conntrack_tuple *inverse,
191 const struct ip_conntrack_tuple *orig,
192 const struct ip_conntrack_protocol *protocol)
193{
194 inverse->src.ip = orig->dst.ip;
195 inverse->dst.ip = orig->src.ip;
196 inverse->dst.protonum = orig->dst.protonum;
197 inverse->dst.dir = !orig->dst.dir;
198
199 return protocol->invert_tuple(inverse, orig);
200}
201
202
203/* ip_conntrack_expect helper functions */
49719eb3 204void ip_ct_unlink_expect(struct ip_conntrack_expect *exp)
1da177e4 205{
e45b1be8 206 ASSERT_WRITE_LOCK(&ip_conntrack_lock);
4acdbdbe 207 IP_NF_ASSERT(!timer_pending(&exp->timeout));
1da177e4 208 list_del(&exp->list);
4acdbdbe 209 CONNTRACK_STAT_INC(expect_delete);
1da177e4 210 exp->master->expecting--;
37012f7f 211 ip_conntrack_expect_put(exp);
1da177e4
LT
212}
213
214static void expectation_timed_out(unsigned long ul_expect)
215{
216 struct ip_conntrack_expect *exp = (void *)ul_expect;
217
e45b1be8 218 write_lock_bh(&ip_conntrack_lock);
49719eb3 219 ip_ct_unlink_expect(exp);
e45b1be8 220 write_unlock_bh(&ip_conntrack_lock);
4acdbdbe 221 ip_conntrack_expect_put(exp);
1da177e4
LT
222}
223
080774a2
HW
224struct ip_conntrack_expect *
225__ip_conntrack_expect_find(const struct ip_conntrack_tuple *tuple)
226{
227 struct ip_conntrack_expect *i;
228
229 list_for_each_entry(i, &ip_conntrack_expect_list, list) {
230 if (ip_ct_tuple_mask_cmp(tuple, &i->tuple, &i->mask)) {
231 atomic_inc(&i->use);
232 return i;
233 }
234 }
235 return NULL;
236}
237
238/* Just find a expectation corresponding to a tuple. */
239struct ip_conntrack_expect *
a41bc002 240ip_conntrack_expect_find(const struct ip_conntrack_tuple *tuple)
080774a2
HW
241{
242 struct ip_conntrack_expect *i;
243
244 read_lock_bh(&ip_conntrack_lock);
245 i = __ip_conntrack_expect_find(tuple);
246 read_unlock_bh(&ip_conntrack_lock);
247
248 return i;
249}
250
1da177e4
LT
251/* If an expectation for this connection is found, it gets delete from
252 * global list then returned. */
253static struct ip_conntrack_expect *
254find_expectation(const struct ip_conntrack_tuple *tuple)
255{
256 struct ip_conntrack_expect *i;
257
258 list_for_each_entry(i, &ip_conntrack_expect_list, list) {
259 /* If master is not in hash table yet (ie. packet hasn't left
260 this machine yet), how can other end know about expected?
261 Hence these are not the droids you are looking for (if
262 master ct never got confirmed, we'd hold a reference to it
263 and weird things would happen to future packets). */
264 if (ip_ct_tuple_mask_cmp(tuple, &i->tuple, &i->mask)
2248bcfc
PM
265 && is_confirmed(i->master)) {
266 if (i->flags & IP_CT_EXPECT_PERMANENT) {
267 atomic_inc(&i->use);
268 return i;
269 } else if (del_timer(&i->timeout)) {
49719eb3 270 ip_ct_unlink_expect(i);
2248bcfc
PM
271 return i;
272 }
1da177e4
LT
273 }
274 }
275 return NULL;
276}
277
278/* delete all expectations for this conntrack */
080774a2 279void ip_ct_remove_expectations(struct ip_conntrack *ct)
1da177e4
LT
280{
281 struct ip_conntrack_expect *i, *tmp;
282
283 /* Optimization: most connection never expect any others. */
284 if (ct->expecting == 0)
285 return;
286
287 list_for_each_entry_safe(i, tmp, &ip_conntrack_expect_list, list) {
288 if (i->master == ct && del_timer(&i->timeout)) {
49719eb3 289 ip_ct_unlink_expect(i);
4acdbdbe 290 ip_conntrack_expect_put(i);
1da177e4
LT
291 }
292 }
293}
294
295static void
296clean_from_lists(struct ip_conntrack *ct)
297{
298 unsigned int ho, hr;
299
300 DEBUGP("clean_from_lists(%p)\n", ct);
e45b1be8 301 ASSERT_WRITE_LOCK(&ip_conntrack_lock);
1da177e4
LT
302
303 ho = hash_conntrack(&ct->tuplehash[IP_CT_DIR_ORIGINAL].tuple);
304 hr = hash_conntrack(&ct->tuplehash[IP_CT_DIR_REPLY].tuple);
305 LIST_DELETE(&ip_conntrack_hash[ho], &ct->tuplehash[IP_CT_DIR_ORIGINAL]);
306 LIST_DELETE(&ip_conntrack_hash[hr], &ct->tuplehash[IP_CT_DIR_REPLY]);
307
308 /* Destroy all pending expectations */
080774a2 309 ip_ct_remove_expectations(ct);
1da177e4
LT
310}
311
312static void
313destroy_conntrack(struct nf_conntrack *nfct)
314{
315 struct ip_conntrack *ct = (struct ip_conntrack *)nfct;
316 struct ip_conntrack_protocol *proto;
317
318 DEBUGP("destroy_conntrack(%p)\n", ct);
319 IP_NF_ASSERT(atomic_read(&nfct->use) == 0);
320 IP_NF_ASSERT(!timer_pending(&ct->timeout));
321
14a50bba 322 ip_conntrack_event(IPCT_DESTROY, ct);
ac3247ba
HW
323 set_bit(IPS_DYING_BIT, &ct->status);
324
1da177e4
LT
325 /* To make sure we don't get any weird locking issues here:
326 * destroy_conntrack() MUST NOT be called with a write lock
327 * to ip_conntrack_lock!!! -HW */
080774a2 328 proto = __ip_conntrack_proto_find(ct->tuplehash[IP_CT_DIR_REPLY].tuple.dst.protonum);
1da177e4
LT
329 if (proto && proto->destroy)
330 proto->destroy(ct);
331
332 if (ip_conntrack_destroyed)
333 ip_conntrack_destroyed(ct);
334
e45b1be8 335 write_lock_bh(&ip_conntrack_lock);
1da177e4
LT
336 /* Expectations will have been removed in clean_from_lists,
337 * except TFTP can create an expectation on the first packet,
338 * before connection is in the list, so we need to clean here,
339 * too. */
080774a2 340 ip_ct_remove_expectations(ct);
1da177e4
LT
341
342 /* We overload first tuple to link into unconfirmed list. */
343 if (!is_confirmed(ct)) {
344 BUG_ON(list_empty(&ct->tuplehash[IP_CT_DIR_ORIGINAL].list));
345 list_del(&ct->tuplehash[IP_CT_DIR_ORIGINAL].list);
346 }
347
348 CONNTRACK_STAT_INC(delete);
e45b1be8 349 write_unlock_bh(&ip_conntrack_lock);
1da177e4
LT
350
351 if (ct->master)
352 ip_conntrack_put(ct->master);
353
354 DEBUGP("destroy_conntrack: returning ct=%p to slab\n", ct);
080774a2 355 ip_conntrack_free(ct);
1da177e4
LT
356}
357
358static void death_by_timeout(unsigned long ul_conntrack)
359{
360 struct ip_conntrack *ct = (void *)ul_conntrack;
361
e45b1be8 362 write_lock_bh(&ip_conntrack_lock);
1da177e4
LT
363 /* Inside lock so preempt is disabled on module removal path.
364 * Otherwise we can get spurious warnings. */
365 CONNTRACK_STAT_INC(delete_list);
366 clean_from_lists(ct);
e45b1be8 367 write_unlock_bh(&ip_conntrack_lock);
1da177e4
LT
368 ip_conntrack_put(ct);
369}
370
371static inline int
372conntrack_tuple_cmp(const struct ip_conntrack_tuple_hash *i,
373 const struct ip_conntrack_tuple *tuple,
374 const struct ip_conntrack *ignored_conntrack)
375{
e45b1be8 376 ASSERT_READ_LOCK(&ip_conntrack_lock);
1da177e4
LT
377 return tuplehash_to_ctrack(i) != ignored_conntrack
378 && ip_ct_tuple_equal(tuple, &i->tuple);
379}
380
080774a2 381struct ip_conntrack_tuple_hash *
1da177e4
LT
382__ip_conntrack_find(const struct ip_conntrack_tuple *tuple,
383 const struct ip_conntrack *ignored_conntrack)
384{
385 struct ip_conntrack_tuple_hash *h;
386 unsigned int hash = hash_conntrack(tuple);
387
e45b1be8 388 ASSERT_READ_LOCK(&ip_conntrack_lock);
1da177e4
LT
389 list_for_each_entry(h, &ip_conntrack_hash[hash], list) {
390 if (conntrack_tuple_cmp(h, tuple, ignored_conntrack)) {
391 CONNTRACK_STAT_INC(found);
392 return h;
393 }
394 CONNTRACK_STAT_INC(searched);
395 }
396
397 return NULL;
398}
399
400/* Find a connection corresponding to a tuple. */
401struct ip_conntrack_tuple_hash *
402ip_conntrack_find_get(const struct ip_conntrack_tuple *tuple,
403 const struct ip_conntrack *ignored_conntrack)
404{
405 struct ip_conntrack_tuple_hash *h;
406
e45b1be8 407 read_lock_bh(&ip_conntrack_lock);
1da177e4
LT
408 h = __ip_conntrack_find(tuple, ignored_conntrack);
409 if (h)
410 atomic_inc(&tuplehash_to_ctrack(h)->ct_general.use);
e45b1be8 411 read_unlock_bh(&ip_conntrack_lock);
1da177e4
LT
412
413 return h;
414}
415
080774a2
HW
416static void __ip_conntrack_hash_insert(struct ip_conntrack *ct,
417 unsigned int hash,
418 unsigned int repl_hash)
419{
420 ct->id = ++ip_conntrack_next_id;
421 list_prepend(&ip_conntrack_hash[hash],
422 &ct->tuplehash[IP_CT_DIR_ORIGINAL].list);
423 list_prepend(&ip_conntrack_hash[repl_hash],
424 &ct->tuplehash[IP_CT_DIR_REPLY].list);
425}
426
427void ip_conntrack_hash_insert(struct ip_conntrack *ct)
428{
429 unsigned int hash, repl_hash;
430
431 hash = hash_conntrack(&ct->tuplehash[IP_CT_DIR_ORIGINAL].tuple);
432 repl_hash = hash_conntrack(&ct->tuplehash[IP_CT_DIR_REPLY].tuple);
433
434 write_lock_bh(&ip_conntrack_lock);
435 __ip_conntrack_hash_insert(ct, hash, repl_hash);
436 write_unlock_bh(&ip_conntrack_lock);
437}
438
1da177e4
LT
439/* Confirm a connection given skb; places it in hash table */
440int
441__ip_conntrack_confirm(struct sk_buff **pskb)
442{
443 unsigned int hash, repl_hash;
444 struct ip_conntrack *ct;
445 enum ip_conntrack_info ctinfo;
446
447 ct = ip_conntrack_get(*pskb, &ctinfo);
448
449 /* ipt_REJECT uses ip_conntrack_attach to attach related
450 ICMP/TCP RST packets in other direction. Actual packet
451 which created connection will be IP_CT_NEW or for an
452 expected connection, IP_CT_RELATED. */
453 if (CTINFO2DIR(ctinfo) != IP_CT_DIR_ORIGINAL)
454 return NF_ACCEPT;
455
456 hash = hash_conntrack(&ct->tuplehash[IP_CT_DIR_ORIGINAL].tuple);
457 repl_hash = hash_conntrack(&ct->tuplehash[IP_CT_DIR_REPLY].tuple);
458
459 /* We're not in hash table, and we refuse to set up related
460 connections for unconfirmed conns. But packet copies and
461 REJECT will give spurious warnings here. */
462 /* IP_NF_ASSERT(atomic_read(&ct->ct_general.use) == 1); */
463
464 /* No external references means noone else could have
465 confirmed us. */
466 IP_NF_ASSERT(!is_confirmed(ct));
467 DEBUGP("Confirming conntrack %p\n", ct);
468
e45b1be8 469 write_lock_bh(&ip_conntrack_lock);
1da177e4
LT
470
471 /* See if there's one in the list already, including reverse:
472 NAT could have grabbed it without realizing, since we're
473 not in the hash. If there is, we lost race. */
474 if (!LIST_FIND(&ip_conntrack_hash[hash],
475 conntrack_tuple_cmp,
476 struct ip_conntrack_tuple_hash *,
477 &ct->tuplehash[IP_CT_DIR_ORIGINAL].tuple, NULL)
478 && !LIST_FIND(&ip_conntrack_hash[repl_hash],
479 conntrack_tuple_cmp,
480 struct ip_conntrack_tuple_hash *,
481 &ct->tuplehash[IP_CT_DIR_REPLY].tuple, NULL)) {
482 /* Remove from unconfirmed list */
483 list_del(&ct->tuplehash[IP_CT_DIR_ORIGINAL].list);
484
080774a2 485 __ip_conntrack_hash_insert(ct, hash, repl_hash);
1da177e4
LT
486 /* Timer relative to confirmation time, not original
487 setting time, otherwise we'd get timer wrap in
488 weird delay cases. */
489 ct->timeout.expires += jiffies;
490 add_timer(&ct->timeout);
491 atomic_inc(&ct->ct_general.use);
492 set_bit(IPS_CONFIRMED_BIT, &ct->status);
493 CONNTRACK_STAT_INC(insert);
e45b1be8 494 write_unlock_bh(&ip_conntrack_lock);
ac3247ba
HW
495 if (ct->helper)
496 ip_conntrack_event_cache(IPCT_HELPER, *pskb);
497#ifdef CONFIG_IP_NF_NAT_NEEDED
498 if (test_bit(IPS_SRC_NAT_DONE_BIT, &ct->status) ||
499 test_bit(IPS_DST_NAT_DONE_BIT, &ct->status))
500 ip_conntrack_event_cache(IPCT_NATINFO, *pskb);
501#endif
502 ip_conntrack_event_cache(master_ct(ct) ?
503 IPCT_RELATED : IPCT_NEW, *pskb);
504
1da177e4
LT
505 return NF_ACCEPT;
506 }
507
508 CONNTRACK_STAT_INC(insert_failed);
e45b1be8 509 write_unlock_bh(&ip_conntrack_lock);
1da177e4
LT
510
511 return NF_DROP;
512}
513
514/* Returns true if a connection correspondings to the tuple (required
515 for NAT). */
516int
517ip_conntrack_tuple_taken(const struct ip_conntrack_tuple *tuple,
518 const struct ip_conntrack *ignored_conntrack)
519{
520 struct ip_conntrack_tuple_hash *h;
521
e45b1be8 522 read_lock_bh(&ip_conntrack_lock);
1da177e4 523 h = __ip_conntrack_find(tuple, ignored_conntrack);
e45b1be8 524 read_unlock_bh(&ip_conntrack_lock);
1da177e4
LT
525
526 return h != NULL;
527}
528
529/* There's a small race here where we may free a just-assured
530 connection. Too bad: we're in trouble anyway. */
531static inline int unreplied(const struct ip_conntrack_tuple_hash *i)
532{
533 return !(test_bit(IPS_ASSURED_BIT, &tuplehash_to_ctrack(i)->status));
534}
535
536static int early_drop(struct list_head *chain)
537{
538 /* Traverse backwards: gives us oldest, which is roughly LRU */
539 struct ip_conntrack_tuple_hash *h;
540 struct ip_conntrack *ct = NULL;
541 int dropped = 0;
542
e45b1be8 543 read_lock_bh(&ip_conntrack_lock);
1da177e4
LT
544 h = LIST_FIND_B(chain, unreplied, struct ip_conntrack_tuple_hash *);
545 if (h) {
546 ct = tuplehash_to_ctrack(h);
547 atomic_inc(&ct->ct_general.use);
548 }
e45b1be8 549 read_unlock_bh(&ip_conntrack_lock);
1da177e4
LT
550
551 if (!ct)
552 return dropped;
553
554 if (del_timer(&ct->timeout)) {
555 death_by_timeout((unsigned long)ct);
556 dropped = 1;
557 CONNTRACK_STAT_INC(early_drop);
558 }
559 ip_conntrack_put(ct);
560 return dropped;
561}
562
563static inline int helper_cmp(const struct ip_conntrack_helper *i,
564 const struct ip_conntrack_tuple *rtuple)
565{
566 return ip_ct_tuple_mask_cmp(rtuple, &i->tuple, &i->mask);
567}
568
080774a2
HW
569static struct ip_conntrack_helper *
570__ip_conntrack_helper_find( const struct ip_conntrack_tuple *tuple)
1da177e4
LT
571{
572 return LIST_FIND(&helpers, helper_cmp,
573 struct ip_conntrack_helper *,
574 tuple);
575}
576
080774a2
HW
577struct ip_conntrack_helper *
578ip_conntrack_helper_find_get( const struct ip_conntrack_tuple *tuple)
579{
580 struct ip_conntrack_helper *helper;
581
582 /* need ip_conntrack_lock to assure that helper exists until
583 * try_module_get() is called */
584 read_lock_bh(&ip_conntrack_lock);
585
586 helper = __ip_conntrack_helper_find(tuple);
587 if (helper) {
588 /* need to increase module usage count to assure helper will
589 * not go away while the caller is e.g. busy putting a
590 * conntrack in the hash that uses the helper */
591 if (!try_module_get(helper->me))
592 helper = NULL;
593 }
594
595 read_unlock_bh(&ip_conntrack_lock);
596
597 return helper;
598}
599
600void ip_conntrack_helper_put(struct ip_conntrack_helper *helper)
601{
602 module_put(helper->me);
603}
604
605struct ip_conntrack_protocol *
606__ip_conntrack_proto_find(u_int8_t protocol)
607{
608 return ip_ct_protos[protocol];
609}
610
611/* this is guaranteed to always return a valid protocol helper, since
612 * it falls back to generic_protocol */
613struct ip_conntrack_protocol *
614ip_conntrack_proto_find_get(u_int8_t protocol)
615{
616 struct ip_conntrack_protocol *p;
617
618 preempt_disable();
619 p = __ip_conntrack_proto_find(protocol);
620 if (p) {
621 if (!try_module_get(p->me))
622 p = &ip_conntrack_generic_protocol;
623 }
624 preempt_enable();
625
626 return p;
627}
628
629void ip_conntrack_proto_put(struct ip_conntrack_protocol *p)
630{
631 module_put(p->me);
632}
633
634struct ip_conntrack *ip_conntrack_alloc(struct ip_conntrack_tuple *orig,
635 struct ip_conntrack_tuple *repl)
1da177e4
LT
636{
637 struct ip_conntrack *conntrack;
1da177e4
LT
638
639 if (!ip_conntrack_hash_rnd_initted) {
640 get_random_bytes(&ip_conntrack_hash_rnd, 4);
641 ip_conntrack_hash_rnd_initted = 1;
642 }
643
1da177e4
LT
644 if (ip_conntrack_max
645 && atomic_read(&ip_conntrack_count) >= ip_conntrack_max) {
080774a2 646 unsigned int hash = hash_conntrack(orig);
1da177e4
LT
647 /* Try dropping from this hash chain. */
648 if (!early_drop(&ip_conntrack_hash[hash])) {
649 if (net_ratelimit())
650 printk(KERN_WARNING
651 "ip_conntrack: table full, dropping"
652 " packet.\n");
653 return ERR_PTR(-ENOMEM);
654 }
655 }
656
1da177e4
LT
657 conntrack = kmem_cache_alloc(ip_conntrack_cachep, GFP_ATOMIC);
658 if (!conntrack) {
659 DEBUGP("Can't allocate conntrack.\n");
7663f188 660 return ERR_PTR(-ENOMEM);
1da177e4
LT
661 }
662
663 memset(conntrack, 0, sizeof(*conntrack));
664 atomic_set(&conntrack->ct_general.use, 1);
665 conntrack->ct_general.destroy = destroy_conntrack;
080774a2
HW
666 conntrack->tuplehash[IP_CT_DIR_ORIGINAL].tuple = *orig;
667 conntrack->tuplehash[IP_CT_DIR_REPLY].tuple = *repl;
1da177e4
LT
668 /* Don't set timer yet: wait for confirmation */
669 init_timer(&conntrack->timeout);
670 conntrack->timeout.data = (unsigned long)conntrack;
671 conntrack->timeout.function = death_by_timeout;
672
080774a2
HW
673 atomic_inc(&ip_conntrack_count);
674
675 return conntrack;
676}
677
678void
679ip_conntrack_free(struct ip_conntrack *conntrack)
680{
681 atomic_dec(&ip_conntrack_count);
682 kmem_cache_free(ip_conntrack_cachep, conntrack);
683}
684
685/* Allocate a new conntrack: we return -ENOMEM if classification
686 * failed due to stress. Otherwise it really is unclassifiable */
687static struct ip_conntrack_tuple_hash *
688init_conntrack(struct ip_conntrack_tuple *tuple,
689 struct ip_conntrack_protocol *protocol,
690 struct sk_buff *skb)
691{
692 struct ip_conntrack *conntrack;
693 struct ip_conntrack_tuple repl_tuple;
694 struct ip_conntrack_expect *exp;
695
696 if (!ip_ct_invert_tuple(&repl_tuple, tuple, protocol)) {
697 DEBUGP("Can't invert tuple.\n");
698 return NULL;
699 }
700
7663f188
YK
701 conntrack = ip_conntrack_alloc(tuple, &repl_tuple);
702 if (conntrack == NULL || IS_ERR(conntrack))
703 return (struct ip_conntrack_tuple_hash *)conntrack;
080774a2
HW
704
705 if (!protocol->new(conntrack, skb)) {
706 ip_conntrack_free(conntrack);
707 return NULL;
708 }
709
e45b1be8 710 write_lock_bh(&ip_conntrack_lock);
1da177e4
LT
711 exp = find_expectation(tuple);
712
713 if (exp) {
714 DEBUGP("conntrack: expectation arrives ct=%p exp=%p\n",
715 conntrack, exp);
716 /* Welcome, Mr. Bond. We've been expecting you... */
717 __set_bit(IPS_EXPECTED_BIT, &conntrack->status);
718 conntrack->master = exp->master;
7cee432a 719#ifdef CONFIG_IP_NF_CONNTRACK_MARK
1da177e4 720 conntrack->mark = exp->master->mark;
1f494c0e
HW
721#endif
722#if defined(CONFIG_IP_NF_TARGET_MASQUERADE) || \
723 defined(CONFIG_IP_NF_TARGET_MASQUERADE_MODULE)
724 /* this is ugly, but there is no other place where to put it */
725 conntrack->nat.masq_index = exp->master->nat.masq_index;
1da177e4
LT
726#endif
727 nf_conntrack_get(&conntrack->master->ct_general);
728 CONNTRACK_STAT_INC(expect_new);
729 } else {
080774a2 730 conntrack->helper = __ip_conntrack_helper_find(&repl_tuple);
1da177e4
LT
731
732 CONNTRACK_STAT_INC(new);
733 }
734
735 /* Overload tuple linked list to put us in unconfirmed list. */
736 list_add(&conntrack->tuplehash[IP_CT_DIR_ORIGINAL].list, &unconfirmed);
737
e45b1be8 738 write_unlock_bh(&ip_conntrack_lock);
1da177e4
LT
739
740 if (exp) {
741 if (exp->expectfn)
742 exp->expectfn(conntrack, exp);
4acdbdbe 743 ip_conntrack_expect_put(exp);
1da177e4
LT
744 }
745
746 return &conntrack->tuplehash[IP_CT_DIR_ORIGINAL];
747}
748
749/* On success, returns conntrack ptr, sets skb->nfct and ctinfo */
750static inline struct ip_conntrack *
751resolve_normal_ct(struct sk_buff *skb,
752 struct ip_conntrack_protocol *proto,
753 int *set_reply,
754 unsigned int hooknum,
755 enum ip_conntrack_info *ctinfo)
756{
757 struct ip_conntrack_tuple tuple;
758 struct ip_conntrack_tuple_hash *h;
759 struct ip_conntrack *ct;
760
761 IP_NF_ASSERT((skb->nh.iph->frag_off & htons(IP_OFFSET)) == 0);
762
763 if (!ip_ct_get_tuple(skb->nh.iph, skb, skb->nh.iph->ihl*4,
764 &tuple,proto))
765 return NULL;
766
767 /* look for tuple match */
768 h = ip_conntrack_find_get(&tuple, NULL);
769 if (!h) {
770 h = init_conntrack(&tuple, proto, skb);
771 if (!h)
772 return NULL;
773 if (IS_ERR(h))
774 return (void *)h;
775 }
776 ct = tuplehash_to_ctrack(h);
777
778 /* It exists; we have (non-exclusive) reference. */
779 if (DIRECTION(h) == IP_CT_DIR_REPLY) {
780 *ctinfo = IP_CT_ESTABLISHED + IP_CT_IS_REPLY;
781 /* Please set reply bit if this packet OK */
782 *set_reply = 1;
783 } else {
784 /* Once we've had two way comms, always ESTABLISHED. */
785 if (test_bit(IPS_SEEN_REPLY_BIT, &ct->status)) {
786 DEBUGP("ip_conntrack_in: normal packet for %p\n",
787 ct);
788 *ctinfo = IP_CT_ESTABLISHED;
789 } else if (test_bit(IPS_EXPECTED_BIT, &ct->status)) {
790 DEBUGP("ip_conntrack_in: related packet for %p\n",
791 ct);
792 *ctinfo = IP_CT_RELATED;
793 } else {
794 DEBUGP("ip_conntrack_in: new packet for %p\n",
795 ct);
796 *ctinfo = IP_CT_NEW;
797 }
798 *set_reply = 0;
799 }
800 skb->nfct = &ct->ct_general;
801 skb->nfctinfo = *ctinfo;
802 return ct;
803}
804
805/* Netfilter hook itself. */
806unsigned int ip_conntrack_in(unsigned int hooknum,
807 struct sk_buff **pskb,
808 const struct net_device *in,
809 const struct net_device *out,
810 int (*okfn)(struct sk_buff *))
811{
812 struct ip_conntrack *ct;
813 enum ip_conntrack_info ctinfo;
814 struct ip_conntrack_protocol *proto;
ac3247ba 815 int set_reply = 0;
1da177e4
LT
816 int ret;
817
818 /* Previously seen (loopback or untracked)? Ignore. */
819 if ((*pskb)->nfct) {
820 CONNTRACK_STAT_INC(ignore);
821 return NF_ACCEPT;
822 }
823
824 /* Never happen */
825 if ((*pskb)->nh.iph->frag_off & htons(IP_OFFSET)) {
826 if (net_ratelimit()) {
827 printk(KERN_ERR "ip_conntrack_in: Frag of proto %u (hook=%u)\n",
828 (*pskb)->nh.iph->protocol, hooknum);
829 }
830 return NF_DROP;
831 }
832
1da177e4
LT
833/* Doesn't cover locally-generated broadcast, so not worth it. */
834#if 0
835 /* Ignore broadcast: no `connection'. */
836 if ((*pskb)->pkt_type == PACKET_BROADCAST) {
837 printk("Broadcast packet!\n");
838 return NF_ACCEPT;
839 } else if (((*pskb)->nh.iph->daddr & htonl(0x000000FF))
840 == htonl(0x000000FF)) {
841 printk("Should bcast: %u.%u.%u.%u->%u.%u.%u.%u (sk=%p, ptype=%u)\n",
842 NIPQUAD((*pskb)->nh.iph->saddr),
843 NIPQUAD((*pskb)->nh.iph->daddr),
844 (*pskb)->sk, (*pskb)->pkt_type);
845 }
846#endif
847
080774a2 848 proto = __ip_conntrack_proto_find((*pskb)->nh.iph->protocol);
1da177e4
LT
849
850 /* It may be an special packet, error, unclean...
851 * inverse of the return code tells to the netfilter
852 * core what to do with the packet. */
853 if (proto->error != NULL
854 && (ret = proto->error(*pskb, &ctinfo, hooknum)) <= 0) {
855 CONNTRACK_STAT_INC(error);
856 CONNTRACK_STAT_INC(invalid);
857 return -ret;
858 }
859
860 if (!(ct = resolve_normal_ct(*pskb, proto,&set_reply,hooknum,&ctinfo))) {
861 /* Not valid part of a connection */
862 CONNTRACK_STAT_INC(invalid);
863 return NF_ACCEPT;
864 }
865
866 if (IS_ERR(ct)) {
867 /* Too stressed to deal. */
868 CONNTRACK_STAT_INC(drop);
869 return NF_DROP;
870 }
871
872 IP_NF_ASSERT((*pskb)->nfct);
873
874 ret = proto->packet(ct, *pskb, ctinfo);
875 if (ret < 0) {
876 /* Invalid: inverse of the return code tells
877 * the netfilter core what to do*/
878 nf_conntrack_put((*pskb)->nfct);
879 (*pskb)->nfct = NULL;
880 CONNTRACK_STAT_INC(invalid);
881 return -ret;
882 }
883
ac3247ba
HW
884 if (set_reply && !test_and_set_bit(IPS_SEEN_REPLY_BIT, &ct->status))
885 ip_conntrack_event_cache(IPCT_STATUS, *pskb);
1da177e4
LT
886
887 return ret;
888}
889
890int invert_tuplepr(struct ip_conntrack_tuple *inverse,
891 const struct ip_conntrack_tuple *orig)
892{
893 return ip_ct_invert_tuple(inverse, orig,
080774a2 894 __ip_conntrack_proto_find(orig->dst.protonum));
1da177e4
LT
895}
896
897/* Would two expected things clash? */
898static inline int expect_clash(const struct ip_conntrack_expect *a,
899 const struct ip_conntrack_expect *b)
900{
901 /* Part covered by intersection of masks must be unequal,
902 otherwise they clash */
903 struct ip_conntrack_tuple intersect_mask
904 = { { a->mask.src.ip & b->mask.src.ip,
905 { a->mask.src.u.all & b->mask.src.u.all } },
906 { a->mask.dst.ip & b->mask.dst.ip,
907 { a->mask.dst.u.all & b->mask.dst.u.all },
908 a->mask.dst.protonum & b->mask.dst.protonum } };
909
910 return ip_ct_tuple_mask_cmp(&a->tuple, &b->tuple, &intersect_mask);
911}
912
913static inline int expect_matches(const struct ip_conntrack_expect *a,
914 const struct ip_conntrack_expect *b)
915{
916 return a->master == b->master
917 && ip_ct_tuple_equal(&a->tuple, &b->tuple)
918 && ip_ct_tuple_equal(&a->mask, &b->mask);
919}
920
921/* Generally a bad idea to call this: could have matched already. */
922void ip_conntrack_unexpect_related(struct ip_conntrack_expect *exp)
923{
924 struct ip_conntrack_expect *i;
925
e45b1be8 926 write_lock_bh(&ip_conntrack_lock);
1da177e4
LT
927 /* choose the the oldest expectation to evict */
928 list_for_each_entry_reverse(i, &ip_conntrack_expect_list, list) {
929 if (expect_matches(i, exp) && del_timer(&i->timeout)) {
49719eb3 930 ip_ct_unlink_expect(i);
e45b1be8 931 write_unlock_bh(&ip_conntrack_lock);
4acdbdbe 932 ip_conntrack_expect_put(i);
1da177e4
LT
933 return;
934 }
935 }
e45b1be8 936 write_unlock_bh(&ip_conntrack_lock);
1da177e4
LT
937}
938
91c46e2e
PNA
939/* We don't increase the master conntrack refcount for non-fulfilled
940 * conntracks. During the conntrack destruction, the expectations are
941 * always killed before the conntrack itself */
4acdbdbe 942struct ip_conntrack_expect *ip_conntrack_expect_alloc(struct ip_conntrack *me)
1da177e4
LT
943{
944 struct ip_conntrack_expect *new;
945
946 new = kmem_cache_alloc(ip_conntrack_expect_cachep, GFP_ATOMIC);
947 if (!new) {
948 DEBUGP("expect_related: OOM allocating expect\n");
949 return NULL;
950 }
4acdbdbe 951 new->master = me;
4acdbdbe 952 atomic_set(&new->use, 1);
1da177e4
LT
953 return new;
954}
955
4acdbdbe 956void ip_conntrack_expect_put(struct ip_conntrack_expect *exp)
1da177e4 957{
91c46e2e 958 if (atomic_dec_and_test(&exp->use))
4acdbdbe 959 kmem_cache_free(ip_conntrack_expect_cachep, exp);
1da177e4
LT
960}
961
962static void ip_conntrack_expect_insert(struct ip_conntrack_expect *exp)
963{
4acdbdbe 964 atomic_inc(&exp->use);
1da177e4
LT
965 exp->master->expecting++;
966 list_add(&exp->list, &ip_conntrack_expect_list);
967
1d3cdb41
PO
968 init_timer(&exp->timeout);
969 exp->timeout.data = (unsigned long)exp;
970 exp->timeout.function = expectation_timed_out;
971 exp->timeout.expires = jiffies + exp->master->helper->timeout * HZ;
972 add_timer(&exp->timeout);
1da177e4 973
080774a2
HW
974 exp->id = ++ip_conntrack_expect_next_id;
975 atomic_inc(&exp->use);
1da177e4
LT
976 CONNTRACK_STAT_INC(expect_create);
977}
978
979/* Race with expectations being used means we could have none to find; OK. */
980static void evict_oldest_expect(struct ip_conntrack *master)
981{
982 struct ip_conntrack_expect *i;
983
984 list_for_each_entry_reverse(i, &ip_conntrack_expect_list, list) {
985 if (i->master == master) {
986 if (del_timer(&i->timeout)) {
49719eb3 987 ip_ct_unlink_expect(i);
4acdbdbe 988 ip_conntrack_expect_put(i);
1da177e4
LT
989 }
990 break;
991 }
992 }
993}
994
995static inline int refresh_timer(struct ip_conntrack_expect *i)
996{
997 if (!del_timer(&i->timeout))
998 return 0;
999
1000 i->timeout.expires = jiffies + i->master->helper->timeout*HZ;
1001 add_timer(&i->timeout);
1002 return 1;
1003}
1004
1005int ip_conntrack_expect_related(struct ip_conntrack_expect *expect)
1006{
1007 struct ip_conntrack_expect *i;
1008 int ret;
1009
1010 DEBUGP("ip_conntrack_expect_related %p\n", related_to);
1011 DEBUGP("tuple: "); DUMP_TUPLE(&expect->tuple);
1012 DEBUGP("mask: "); DUMP_TUPLE(&expect->mask);
1013
e45b1be8 1014 write_lock_bh(&ip_conntrack_lock);
1da177e4
LT
1015 list_for_each_entry(i, &ip_conntrack_expect_list, list) {
1016 if (expect_matches(i, expect)) {
1017 /* Refresh timer: if it's dying, ignore.. */
1018 if (refresh_timer(i)) {
1019 ret = 0;
1da177e4
LT
1020 goto out;
1021 }
1022 } else if (expect_clash(i, expect)) {
1023 ret = -EBUSY;
1024 goto out;
1025 }
1026 }
1027
1028 /* Will be over limit? */
1029 if (expect->master->helper->max_expected &&
1030 expect->master->expecting >= expect->master->helper->max_expected)
1031 evict_oldest_expect(expect->master);
1032
1033 ip_conntrack_expect_insert(expect);
ac3247ba 1034 ip_conntrack_expect_event(IPEXP_NEW, expect);
1da177e4
LT
1035 ret = 0;
1036out:
e45b1be8 1037 write_unlock_bh(&ip_conntrack_lock);
1da177e4
LT
1038 return ret;
1039}
1040
1041/* Alter reply tuple (maybe alter helper). This is for NAT, and is
1042 implicitly racy: see __ip_conntrack_confirm */
1043void ip_conntrack_alter_reply(struct ip_conntrack *conntrack,
1044 const struct ip_conntrack_tuple *newreply)
1045{
e45b1be8 1046 write_lock_bh(&ip_conntrack_lock);
1da177e4
LT
1047 /* Should be unconfirmed, so not in hash table yet */
1048 IP_NF_ASSERT(!is_confirmed(conntrack));
1049
1050 DEBUGP("Altering reply tuple of %p to ", conntrack);
1051 DUMP_TUPLE(newreply);
1052
1053 conntrack->tuplehash[IP_CT_DIR_REPLY].tuple = *newreply;
1054 if (!conntrack->master && conntrack->expecting == 0)
080774a2 1055 conntrack->helper = __ip_conntrack_helper_find(newreply);
e45b1be8 1056 write_unlock_bh(&ip_conntrack_lock);
1da177e4
LT
1057}
1058
1059int ip_conntrack_helper_register(struct ip_conntrack_helper *me)
1060{
1061 BUG_ON(me->timeout == 0);
e45b1be8 1062 write_lock_bh(&ip_conntrack_lock);
1da177e4 1063 list_prepend(&helpers, me);
e45b1be8 1064 write_unlock_bh(&ip_conntrack_lock);
1da177e4
LT
1065
1066 return 0;
1067}
1068
080774a2
HW
1069struct ip_conntrack_helper *
1070__ip_conntrack_helper_find_byname(const char *name)
1071{
1072 struct ip_conntrack_helper *h;
1073
1074 list_for_each_entry(h, &helpers, list) {
1075 if (!strcmp(h->name, name))
1076 return h;
1077 }
1078
1079 return NULL;
1080}
1081
1da177e4
LT
1082static inline int unhelp(struct ip_conntrack_tuple_hash *i,
1083 const struct ip_conntrack_helper *me)
1084{
ac3247ba
HW
1085 if (tuplehash_to_ctrack(i)->helper == me) {
1086 ip_conntrack_event(IPCT_HELPER, tuplehash_to_ctrack(i));
1da177e4 1087 tuplehash_to_ctrack(i)->helper = NULL;
ac3247ba 1088 }
1da177e4
LT
1089 return 0;
1090}
1091
1092void ip_conntrack_helper_unregister(struct ip_conntrack_helper *me)
1093{
1094 unsigned int i;
1095 struct ip_conntrack_expect *exp, *tmp;
1096
1097 /* Need write lock here, to delete helper. */
e45b1be8 1098 write_lock_bh(&ip_conntrack_lock);
1da177e4
LT
1099 LIST_DELETE(&helpers, me);
1100
1101 /* Get rid of expectations */
1102 list_for_each_entry_safe(exp, tmp, &ip_conntrack_expect_list, list) {
1103 if (exp->master->helper == me && del_timer(&exp->timeout)) {
49719eb3 1104 ip_ct_unlink_expect(exp);
4acdbdbe 1105 ip_conntrack_expect_put(exp);
1da177e4
LT
1106 }
1107 }
1108 /* Get rid of expecteds, set helpers to NULL. */
1109 LIST_FIND_W(&unconfirmed, unhelp, struct ip_conntrack_tuple_hash*, me);
1110 for (i = 0; i < ip_conntrack_htable_size; i++)
1111 LIST_FIND_W(&ip_conntrack_hash[i], unhelp,
1112 struct ip_conntrack_tuple_hash *, me);
e45b1be8 1113 write_unlock_bh(&ip_conntrack_lock);
1da177e4
LT
1114
1115 /* Someone could be still looking at the helper in a bh. */
1116 synchronize_net();
1117}
1118
1dfbab59
HW
1119/* Refresh conntrack for this many jiffies and do accounting if do_acct is 1 */
1120void __ip_ct_refresh_acct(struct ip_conntrack *ct,
1da177e4
LT
1121 enum ip_conntrack_info ctinfo,
1122 const struct sk_buff *skb,
1dfbab59
HW
1123 unsigned long extra_jiffies,
1124 int do_acct)
1da177e4 1125{
a051a8f7 1126 int event = 0;
1dfbab59 1127
1da177e4 1128 IP_NF_ASSERT(ct->timeout.data == (unsigned long)ct);
1dfbab59
HW
1129 IP_NF_ASSERT(skb);
1130
1131 write_lock_bh(&ip_conntrack_lock);
1da177e4 1132
997ae831
EL
1133 /* Only update if this is not a fixed timeout */
1134 if (test_bit(IPS_FIXED_TIMEOUT_BIT, &ct->status)) {
1135 write_unlock_bh(&ip_conntrack_lock);
1136 return;
1137 }
1138
1da177e4
LT
1139 /* If not in hash table, timer will not be active yet */
1140 if (!is_confirmed(ct)) {
1141 ct->timeout.expires = extra_jiffies;
a051a8f7 1142 event = IPCT_REFRESH;
1da177e4 1143 } else {
1da177e4
LT
1144 /* Need del_timer for race avoidance (may already be dying). */
1145 if (del_timer(&ct->timeout)) {
1146 ct->timeout.expires = jiffies + extra_jiffies;
1147 add_timer(&ct->timeout);
a051a8f7 1148 event = IPCT_REFRESH;
1da177e4 1149 }
1da177e4 1150 }
1dfbab59
HW
1151
1152#ifdef CONFIG_IP_NF_CT_ACCT
1153 if (do_acct) {
1154 ct->counters[CTINFO2DIR(ctinfo)].packets++;
1155 ct->counters[CTINFO2DIR(ctinfo)].bytes +=
1156 ntohs(skb->nh.iph->tot_len);
a051a8f7
HW
1157 if ((ct->counters[CTINFO2DIR(ctinfo)].packets & 0x80000000)
1158 || (ct->counters[CTINFO2DIR(ctinfo)].bytes & 0x80000000))
1159 event |= IPCT_COUNTER_FILLING;
1dfbab59
HW
1160 }
1161#endif
1162
1163 write_unlock_bh(&ip_conntrack_lock);
1164
1165 /* must be unlocked when calling event cache */
a051a8f7
HW
1166 if (event)
1167 ip_conntrack_event_cache(event, skb);
1da177e4
LT
1168}
1169
080774a2
HW
1170#if defined(CONFIG_IP_NF_CONNTRACK_NETLINK) || \
1171 defined(CONFIG_IP_NF_CONNTRACK_NETLINK_MODULE)
1172/* Generic function for tcp/udp/sctp/dccp and alike. This needs to be
1173 * in ip_conntrack_core, since we don't want the protocols to autoload
1174 * or depend on ctnetlink */
1175int ip_ct_port_tuple_to_nfattr(struct sk_buff *skb,
1176 const struct ip_conntrack_tuple *tuple)
1177{
1178 NFA_PUT(skb, CTA_PROTO_SRC_PORT, sizeof(u_int16_t),
1179 &tuple->src.u.tcp.port);
1180 NFA_PUT(skb, CTA_PROTO_DST_PORT, sizeof(u_int16_t),
1181 &tuple->dst.u.tcp.port);
1182 return 0;
1183
1184nfattr_failure:
1185 return -1;
1186}
1187
1188int ip_ct_port_nfattr_to_tuple(struct nfattr *tb[],
1189 struct ip_conntrack_tuple *t)
1190{
1191 if (!tb[CTA_PROTO_SRC_PORT-1] || !tb[CTA_PROTO_DST_PORT-1])
1192 return -EINVAL;
1193
1194 t->src.u.tcp.port =
1195 *(u_int16_t *)NFA_DATA(tb[CTA_PROTO_SRC_PORT-1]);
1196 t->dst.u.tcp.port =
1197 *(u_int16_t *)NFA_DATA(tb[CTA_PROTO_DST_PORT-1]);
1198
1199 return 0;
1200}
1201#endif
1202
1da177e4
LT
1203/* Returns new sk_buff, or NULL */
1204struct sk_buff *
1205ip_ct_gather_frags(struct sk_buff *skb, u_int32_t user)
1206{
8be58932 1207 skb_orphan(skb);
1da177e4
LT
1208
1209 local_bh_disable();
1210 skb = ip_defrag(skb, user);
1211 local_bh_enable();
1212
6869c4d8 1213 if (skb)
8be58932 1214 ip_send_check(skb->nh.iph);
1da177e4
LT
1215 return skb;
1216}
1217
1218/* Used by ipt_REJECT. */
1219static void ip_conntrack_attach(struct sk_buff *nskb, struct sk_buff *skb)
1220{
1221 struct ip_conntrack *ct;
1222 enum ip_conntrack_info ctinfo;
1223
1224 /* This ICMP is in reverse direction to the packet which caused it */
1225 ct = ip_conntrack_get(skb, &ctinfo);
1226
1227 if (CTINFO2DIR(ctinfo) == IP_CT_DIR_ORIGINAL)
1228 ctinfo = IP_CT_RELATED + IP_CT_IS_REPLY;
1229 else
1230 ctinfo = IP_CT_RELATED;
1231
1232 /* Attach to new skbuff, and increment count */
1233 nskb->nfct = &ct->ct_general;
1234 nskb->nfctinfo = ctinfo;
1235 nf_conntrack_get(nskb->nfct);
1236}
1237
1238static inline int
1239do_iter(const struct ip_conntrack_tuple_hash *i,
1240 int (*iter)(struct ip_conntrack *i, void *data),
1241 void *data)
1242{
1243 return iter(tuplehash_to_ctrack(i), data);
1244}
1245
1246/* Bring out ya dead! */
1247static struct ip_conntrack_tuple_hash *
1248get_next_corpse(int (*iter)(struct ip_conntrack *i, void *data),
1249 void *data, unsigned int *bucket)
1250{
1251 struct ip_conntrack_tuple_hash *h = NULL;
1252
e45b1be8 1253 write_lock_bh(&ip_conntrack_lock);
1da177e4
LT
1254 for (; *bucket < ip_conntrack_htable_size; (*bucket)++) {
1255 h = LIST_FIND_W(&ip_conntrack_hash[*bucket], do_iter,
1256 struct ip_conntrack_tuple_hash *, iter, data);
1257 if (h)
1258 break;
1259 }
1260 if (!h)
1261 h = LIST_FIND_W(&unconfirmed, do_iter,
1262 struct ip_conntrack_tuple_hash *, iter, data);
1263 if (h)
1264 atomic_inc(&tuplehash_to_ctrack(h)->ct_general.use);
e45b1be8 1265 write_unlock_bh(&ip_conntrack_lock);
1da177e4
LT
1266
1267 return h;
1268}
1269
1270void
1271ip_ct_iterate_cleanup(int (*iter)(struct ip_conntrack *i, void *), void *data)
1272{
1273 struct ip_conntrack_tuple_hash *h;
1274 unsigned int bucket = 0;
1275
1276 while ((h = get_next_corpse(iter, data, &bucket)) != NULL) {
1277 struct ip_conntrack *ct = tuplehash_to_ctrack(h);
1278 /* Time to push up daises... */
1279 if (del_timer(&ct->timeout))
1280 death_by_timeout((unsigned long)ct);
1281 /* ... else the timer will get him soon. */
1282
1283 ip_conntrack_put(ct);
1284 }
1285}
1286
1287/* Fast function for those who don't want to parse /proc (and I don't
1288 blame them). */
1289/* Reversing the socket's dst/src point of view gives us the reply
1290 mapping. */
1291static int
1292getorigdst(struct sock *sk, int optval, void __user *user, int *len)
1293{
1294 struct inet_sock *inet = inet_sk(sk);
1295 struct ip_conntrack_tuple_hash *h;
1296 struct ip_conntrack_tuple tuple;
1297
1298 IP_CT_TUPLE_U_BLANK(&tuple);
1299 tuple.src.ip = inet->rcv_saddr;
1300 tuple.src.u.tcp.port = inet->sport;
1301 tuple.dst.ip = inet->daddr;
1302 tuple.dst.u.tcp.port = inet->dport;
1303 tuple.dst.protonum = IPPROTO_TCP;
1304
1305 /* We only do TCP at the moment: is there a better way? */
1306 if (strcmp(sk->sk_prot->name, "TCP")) {
1307 DEBUGP("SO_ORIGINAL_DST: Not a TCP socket\n");
1308 return -ENOPROTOOPT;
1309 }
1310
1311 if ((unsigned int) *len < sizeof(struct sockaddr_in)) {
1312 DEBUGP("SO_ORIGINAL_DST: len %u not %u\n",
1313 *len, sizeof(struct sockaddr_in));
1314 return -EINVAL;
1315 }
1316
1317 h = ip_conntrack_find_get(&tuple, NULL);
1318 if (h) {
1319 struct sockaddr_in sin;
1320 struct ip_conntrack *ct = tuplehash_to_ctrack(h);
1321
1322 sin.sin_family = AF_INET;
1323 sin.sin_port = ct->tuplehash[IP_CT_DIR_ORIGINAL]
1324 .tuple.dst.u.tcp.port;
1325 sin.sin_addr.s_addr = ct->tuplehash[IP_CT_DIR_ORIGINAL]
1326 .tuple.dst.ip;
6c813c3f 1327 memset(sin.sin_zero, 0, sizeof(sin.sin_zero));
1da177e4
LT
1328
1329 DEBUGP("SO_ORIGINAL_DST: %u.%u.%u.%u %u\n",
1330 NIPQUAD(sin.sin_addr.s_addr), ntohs(sin.sin_port));
1331 ip_conntrack_put(ct);
1332 if (copy_to_user(user, &sin, sizeof(sin)) != 0)
1333 return -EFAULT;
1334 else
1335 return 0;
1336 }
1337 DEBUGP("SO_ORIGINAL_DST: Can't find %u.%u.%u.%u/%u-%u.%u.%u.%u/%u.\n",
1338 NIPQUAD(tuple.src.ip), ntohs(tuple.src.u.tcp.port),
1339 NIPQUAD(tuple.dst.ip), ntohs(tuple.dst.u.tcp.port));
1340 return -ENOENT;
1341}
1342
1343static struct nf_sockopt_ops so_getorigdst = {
1344 .pf = PF_INET,
1345 .get_optmin = SO_ORIGINAL_DST,
1346 .get_optmax = SO_ORIGINAL_DST+1,
1347 .get = &getorigdst,
1348};
1349
1350static int kill_all(struct ip_conntrack *i, void *data)
1351{
1352 return 1;
1353}
1354
afe5c6bb
PM
1355void ip_conntrack_flush(void)
1356{
1357 ip_ct_iterate_cleanup(kill_all, NULL);
1358}
1359
eed75f19 1360static void free_conntrack_hash(struct list_head *hash, int vmalloced,int size)
1da177e4 1361{
eed75f19
HW
1362 if (vmalloced)
1363 vfree(hash);
1da177e4 1364 else
eed75f19
HW
1365 free_pages((unsigned long)hash,
1366 get_order(sizeof(struct list_head) * size));
1da177e4
LT
1367}
1368
afe5c6bb
PM
1369/* Mishearing the voices in his head, our hero wonders how he's
1370 supposed to kill the mall. */
1371void ip_conntrack_cleanup(void)
1da177e4 1372{
afe5c6bb
PM
1373 ip_ct_attach = NULL;
1374
1da177e4
LT
1375 /* This makes sure all current packets have passed through
1376 netfilter framework. Roll on, two-stage module
1377 delete... */
1378 synchronize_net();
080774a2 1379
a86888b9 1380 ip_ct_event_cache_flush();
1da177e4 1381 i_see_dead_people:
afe5c6bb 1382 ip_conntrack_flush();
1da177e4
LT
1383 if (atomic_read(&ip_conntrack_count) != 0) {
1384 schedule();
1385 goto i_see_dead_people;
1386 }
21f930e4
PM
1387 /* wait until all references to ip_conntrack_untracked are dropped */
1388 while (atomic_read(&ip_conntrack_untracked.ct_general.use) > 1)
1389 schedule();
1da177e4
LT
1390
1391 kmem_cache_destroy(ip_conntrack_cachep);
1392 kmem_cache_destroy(ip_conntrack_expect_cachep);
eed75f19
HW
1393 free_conntrack_hash(ip_conntrack_hash, ip_conntrack_vmalloc,
1394 ip_conntrack_htable_size);
1da177e4
LT
1395 nf_unregister_sockopt(&so_getorigdst);
1396}
1397
eed75f19
HW
1398static struct list_head *alloc_hashtable(int size, int *vmalloced)
1399{
1400 struct list_head *hash;
1401 unsigned int i;
1402
1403 *vmalloced = 0;
1404 hash = (void*)__get_free_pages(GFP_KERNEL,
1405 get_order(sizeof(struct list_head)
1406 * size));
1407 if (!hash) {
1408 *vmalloced = 1;
1409 printk(KERN_WARNING"ip_conntrack: falling back to vmalloc.\n");
1410 hash = vmalloc(sizeof(struct list_head) * size);
1411 }
1412
1413 if (hash)
1414 for (i = 0; i < size; i++)
1415 INIT_LIST_HEAD(&hash[i]);
1416
1417 return hash;
1418}
1419
d127e94a 1420static int set_hashsize(const char *val, struct kernel_param *kp)
eed75f19
HW
1421{
1422 int i, bucket, hashsize, vmalloced;
1423 int old_vmalloced, old_size;
1424 int rnd;
1425 struct list_head *hash, *old_hash;
1426 struct ip_conntrack_tuple_hash *h;
1427
1428 /* On boot, we can set this without any fancy locking. */
1429 if (!ip_conntrack_htable_size)
1430 return param_set_int(val, kp);
1431
1432 hashsize = simple_strtol(val, NULL, 0);
1433 if (!hashsize)
1434 return -EINVAL;
1435
1436 hash = alloc_hashtable(hashsize, &vmalloced);
1437 if (!hash)
1438 return -ENOMEM;
1439
1440 /* We have to rehash for the new table anyway, so we also can
1441 * use a new random seed */
1442 get_random_bytes(&rnd, 4);
1443
1444 write_lock_bh(&ip_conntrack_lock);
1445 for (i = 0; i < ip_conntrack_htable_size; i++) {
1446 while (!list_empty(&ip_conntrack_hash[i])) {
1447 h = list_entry(ip_conntrack_hash[i].next,
1448 struct ip_conntrack_tuple_hash, list);
1449 list_del(&h->list);
1450 bucket = __hash_conntrack(&h->tuple, hashsize, rnd);
1451 list_add_tail(&h->list, &hash[bucket]);
1452 }
1453 }
1454 old_size = ip_conntrack_htable_size;
1455 old_vmalloced = ip_conntrack_vmalloc;
1456 old_hash = ip_conntrack_hash;
1457
1458 ip_conntrack_htable_size = hashsize;
1459 ip_conntrack_vmalloc = vmalloced;
1460 ip_conntrack_hash = hash;
1461 ip_conntrack_hash_rnd = rnd;
1462 write_unlock_bh(&ip_conntrack_lock);
1463
1464 free_conntrack_hash(old_hash, old_vmalloced, old_size);
1465 return 0;
1466}
1467
1468module_param_call(hashsize, set_hashsize, param_get_uint,
1469 &ip_conntrack_htable_size, 0600);
1da177e4
LT
1470
1471int __init ip_conntrack_init(void)
1472{
1473 unsigned int i;
1474 int ret;
1475
1476 /* Idea from tcp.c: use 1/16384 of memory. On i386: 32MB
1477 * machine has 256 buckets. >= 1GB machines have 8192 buckets. */
eed75f19 1478 if (!ip_conntrack_htable_size) {
1da177e4
LT
1479 ip_conntrack_htable_size
1480 = (((num_physpages << PAGE_SHIFT) / 16384)
1481 / sizeof(struct list_head));
1482 if (num_physpages > (1024 * 1024 * 1024 / PAGE_SIZE))
1483 ip_conntrack_htable_size = 8192;
1484 if (ip_conntrack_htable_size < 16)
1485 ip_conntrack_htable_size = 16;
1486 }
1487 ip_conntrack_max = 8 * ip_conntrack_htable_size;
1488
1489 printk("ip_conntrack version %s (%u buckets, %d max)"
1490 " - %Zd bytes per conntrack\n", IP_CONNTRACK_VERSION,
1491 ip_conntrack_htable_size, ip_conntrack_max,
1492 sizeof(struct ip_conntrack));
1493
1494 ret = nf_register_sockopt(&so_getorigdst);
1495 if (ret != 0) {
1496 printk(KERN_ERR "Unable to register netfilter socket option\n");
1497 return ret;
1498 }
1499
eed75f19
HW
1500 ip_conntrack_hash = alloc_hashtable(ip_conntrack_htable_size,
1501 &ip_conntrack_vmalloc);
1da177e4
LT
1502 if (!ip_conntrack_hash) {
1503 printk(KERN_ERR "Unable to create ip_conntrack_hash\n");
1504 goto err_unreg_sockopt;
1505 }
1506
1507 ip_conntrack_cachep = kmem_cache_create("ip_conntrack",
1508 sizeof(struct ip_conntrack), 0,
1509 0, NULL, NULL);
1510 if (!ip_conntrack_cachep) {
1511 printk(KERN_ERR "Unable to create ip_conntrack slab cache\n");
1512 goto err_free_hash;
1513 }
1514
1515 ip_conntrack_expect_cachep = kmem_cache_create("ip_conntrack_expect",
1516 sizeof(struct ip_conntrack_expect),
1517 0, 0, NULL, NULL);
1518 if (!ip_conntrack_expect_cachep) {
1519 printk(KERN_ERR "Unable to create ip_expect slab cache\n");
1520 goto err_free_conntrack_slab;
1521 }
1522
1523 /* Don't NEED lock here, but good form anyway. */
e45b1be8 1524 write_lock_bh(&ip_conntrack_lock);
1da177e4
LT
1525 for (i = 0; i < MAX_IP_CT_PROTO; i++)
1526 ip_ct_protos[i] = &ip_conntrack_generic_protocol;
1527 /* Sew in builtin protocols. */
1528 ip_ct_protos[IPPROTO_TCP] = &ip_conntrack_protocol_tcp;
1529 ip_ct_protos[IPPROTO_UDP] = &ip_conntrack_protocol_udp;
1530 ip_ct_protos[IPPROTO_ICMP] = &ip_conntrack_protocol_icmp;
e45b1be8 1531 write_unlock_bh(&ip_conntrack_lock);
1da177e4 1532
1da177e4
LT
1533 /* For use by ipt_REJECT */
1534 ip_ct_attach = ip_conntrack_attach;
1535
1536 /* Set up fake conntrack:
1537 - to never be deleted, not in any hashes */
1538 atomic_set(&ip_conntrack_untracked.ct_general.use, 1);
1539 /* - and look it like as a confirmed connection */
1540 set_bit(IPS_CONFIRMED_BIT, &ip_conntrack_untracked.status);
1541
1542 return ret;
1543
1544err_free_conntrack_slab:
1545 kmem_cache_destroy(ip_conntrack_cachep);
1546err_free_hash:
eed75f19
HW
1547 free_conntrack_hash(ip_conntrack_hash, ip_conntrack_vmalloc,
1548 ip_conntrack_htable_size);
1da177e4
LT
1549err_unreg_sockopt:
1550 nf_unregister_sockopt(&so_getorigdst);
1551
1552 return -ENOMEM;
1553}
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