1 /* netfilter.c: look after the filters for various protocols.
2 * Heavily influenced by the old firewall.c by David Bonn and Alan Cox.
3 *
4 * Thanks to Rob `CmdrTaco' Malda for not influencing this code in any
5 * way.
6 *
7 * This code is GPL.
8 */
9 #include <linux/kernel.h>
10 #include <linux/netfilter.h>
11 #include <net/protocol.h>
12 #include <linux/init.h>
13 #include <linux/skbuff.h>
14 #include <linux/wait.h>
15 #include <linux/module.h>
16 #include <linux/interrupt.h>
17 #include <linux/if.h>
18 #include <linux/netdevice.h>
19 #include <linux/netfilter_ipv6.h>
20 #include <linux/inetdevice.h>
21 #include <linux/proc_fs.h>
22 #include <linux/mutex.h>
23 #include <linux/mm.h>
24 #include <linux/rcupdate.h>
25 #include <net/net_namespace.h>
26 #include <net/netfilter/nf_queue.h>
27 #include <net/sock.h>
28
29 #include "nf_internals.h"
30
31 const struct nf_ipv6_ops __rcu *nf_ipv6_ops __read_mostly;
32 EXPORT_SYMBOL_GPL(nf_ipv6_ops);
33
34 DEFINE_PER_CPU(bool, nf_skb_duplicated);
35 EXPORT_SYMBOL_GPL(nf_skb_duplicated);
36
37 #ifdef CONFIG_JUMP_LABEL
38 struct static_key nf_hooks_needed[NFPROTO_NUMPROTO][NF_MAX_HOOKS];
39 EXPORT_SYMBOL(nf_hooks_needed);
40 #endif
41
42 static DEFINE_MUTEX(nf_hook_mutex);
43
44 /* max hooks per family/hooknum */
45 #define MAX_HOOK_COUNT 1024
46
47 #define nf_entry_dereference(e) \
48 rcu_dereference_protected(e, lockdep_is_held(&nf_hook_mutex))
49
allocate_hook_entries_size(u16 num)50 static struct nf_hook_entries *allocate_hook_entries_size(u16 num)
51 {
52 struct nf_hook_entries *e;
53 size_t alloc = sizeof(*e) +
54 sizeof(struct nf_hook_entry) * num +
55 sizeof(struct nf_hook_ops *) * num +
56 sizeof(struct nf_hook_entries_rcu_head);
57
58 if (num == 0)
59 return NULL;
60
61 e = kvzalloc(alloc, GFP_KERNEL);
62 if (e)
63 e->num_hook_entries = num;
64 return e;
65 }
66
__nf_hook_entries_free(struct rcu_head * h)67 static void __nf_hook_entries_free(struct rcu_head *h)
68 {
69 struct nf_hook_entries_rcu_head *head;
70
71 head = container_of(h, struct nf_hook_entries_rcu_head, head);
72 kvfree(head->allocation);
73 }
74
nf_hook_entries_free(struct nf_hook_entries * e)75 static void nf_hook_entries_free(struct nf_hook_entries *e)
76 {
77 struct nf_hook_entries_rcu_head *head;
78 struct nf_hook_ops **ops;
79 unsigned int num;
80
81 if (!e)
82 return;
83
84 num = e->num_hook_entries;
85 ops = nf_hook_entries_get_hook_ops(e);
86 head = (void *)&ops[num];
87 head->allocation = e;
88 call_rcu(&head->head, __nf_hook_entries_free);
89 }
90
accept_all(void * priv,struct sk_buff * skb,const struct nf_hook_state * state)91 static unsigned int accept_all(void *priv,
92 struct sk_buff *skb,
93 const struct nf_hook_state *state)
94 {
95 return NF_ACCEPT; /* ACCEPT makes nf_hook_slow call next hook */
96 }
97
98 static const struct nf_hook_ops dummy_ops = {
99 .hook = accept_all,
100 .priority = INT_MIN,
101 };
102
103 static struct nf_hook_entries *
nf_hook_entries_grow(const struct nf_hook_entries * old,const struct nf_hook_ops * reg)104 nf_hook_entries_grow(const struct nf_hook_entries *old,
105 const struct nf_hook_ops *reg)
106 {
107 unsigned int i, alloc_entries, nhooks, old_entries;
108 struct nf_hook_ops **orig_ops = NULL;
109 struct nf_hook_ops **new_ops;
110 struct nf_hook_entries *new;
111 bool inserted = false;
112
113 alloc_entries = 1;
114 old_entries = old ? old->num_hook_entries : 0;
115
116 if (old) {
117 orig_ops = nf_hook_entries_get_hook_ops(old);
118
119 for (i = 0; i < old_entries; i++) {
120 if (orig_ops[i] != &dummy_ops)
121 alloc_entries++;
122 }
123 }
124
125 if (alloc_entries > MAX_HOOK_COUNT)
126 return ERR_PTR(-E2BIG);
127
128 new = allocate_hook_entries_size(alloc_entries);
129 if (!new)
130 return ERR_PTR(-ENOMEM);
131
132 new_ops = nf_hook_entries_get_hook_ops(new);
133
134 i = 0;
135 nhooks = 0;
136 while (i < old_entries) {
137 if (orig_ops[i] == &dummy_ops) {
138 ++i;
139 continue;
140 }
141
142 if (inserted || reg->priority > orig_ops[i]->priority) {
143 new_ops[nhooks] = (void *)orig_ops[i];
144 new->hooks[nhooks] = old->hooks[i];
145 i++;
146 } else {
147 new_ops[nhooks] = (void *)reg;
148 new->hooks[nhooks].hook = reg->hook;
149 new->hooks[nhooks].priv = reg->priv;
150 inserted = true;
151 }
152 nhooks++;
153 }
154
155 if (!inserted) {
156 new_ops[nhooks] = (void *)reg;
157 new->hooks[nhooks].hook = reg->hook;
158 new->hooks[nhooks].priv = reg->priv;
159 }
160
161 return new;
162 }
163
hooks_validate(const struct nf_hook_entries * hooks)164 static void hooks_validate(const struct nf_hook_entries *hooks)
165 {
166 #ifdef CONFIG_DEBUG_MISC
167 struct nf_hook_ops **orig_ops;
168 int prio = INT_MIN;
169 size_t i = 0;
170
171 orig_ops = nf_hook_entries_get_hook_ops(hooks);
172
173 for (i = 0; i < hooks->num_hook_entries; i++) {
174 if (orig_ops[i] == &dummy_ops)
175 continue;
176
177 WARN_ON(orig_ops[i]->priority < prio);
178
179 if (orig_ops[i]->priority > prio)
180 prio = orig_ops[i]->priority;
181 }
182 #endif
183 }
184
nf_hook_entries_insert_raw(struct nf_hook_entries __rcu ** pp,const struct nf_hook_ops * reg)185 int nf_hook_entries_insert_raw(struct nf_hook_entries __rcu **pp,
186 const struct nf_hook_ops *reg)
187 {
188 struct nf_hook_entries *new_hooks;
189 struct nf_hook_entries *p;
190
191 p = rcu_dereference_raw(*pp);
192 new_hooks = nf_hook_entries_grow(p, reg);
193 if (IS_ERR(new_hooks))
194 return PTR_ERR(new_hooks);
195
196 hooks_validate(new_hooks);
197
198 rcu_assign_pointer(*pp, new_hooks);
199
200 BUG_ON(p == new_hooks);
201 nf_hook_entries_free(p);
202 return 0;
203 }
204 EXPORT_SYMBOL_GPL(nf_hook_entries_insert_raw);
205
206 /*
207 * __nf_hook_entries_try_shrink - try to shrink hook array
208 *
209 * @old -- current hook blob at @pp
210 * @pp -- location of hook blob
211 *
212 * Hook unregistration must always succeed, so to-be-removed hooks
213 * are replaced by a dummy one that will just move to next hook.
214 *
215 * This counts the current dummy hooks, attempts to allocate new blob,
216 * copies the live hooks, then replaces and discards old one.
217 *
218 * return values:
219 *
220 * Returns address to free, or NULL.
221 */
__nf_hook_entries_try_shrink(struct nf_hook_entries * old,struct nf_hook_entries __rcu ** pp)222 static void *__nf_hook_entries_try_shrink(struct nf_hook_entries *old,
223 struct nf_hook_entries __rcu **pp)
224 {
225 unsigned int i, j, skip = 0, hook_entries;
226 struct nf_hook_entries *new = NULL;
227 struct nf_hook_ops **orig_ops;
228 struct nf_hook_ops **new_ops;
229
230 if (WARN_ON_ONCE(!old))
231 return NULL;
232
233 orig_ops = nf_hook_entries_get_hook_ops(old);
234 for (i = 0; i < old->num_hook_entries; i++) {
235 if (orig_ops[i] == &dummy_ops)
236 skip++;
237 }
238
239 /* if skip == hook_entries all hooks have been removed */
240 hook_entries = old->num_hook_entries;
241 if (skip == hook_entries)
242 goto out_assign;
243
244 if (skip == 0)
245 return NULL;
246
247 hook_entries -= skip;
248 new = allocate_hook_entries_size(hook_entries);
249 if (!new)
250 return NULL;
251
252 new_ops = nf_hook_entries_get_hook_ops(new);
253 for (i = 0, j = 0; i < old->num_hook_entries; i++) {
254 if (orig_ops[i] == &dummy_ops)
255 continue;
256 new->hooks[j] = old->hooks[i];
257 new_ops[j] = (void *)orig_ops[i];
258 j++;
259 }
260 hooks_validate(new);
261 out_assign:
262 rcu_assign_pointer(*pp, new);
263 return old;
264 }
265
266 static struct nf_hook_entries __rcu **
nf_hook_entry_head(struct net * net,int pf,unsigned int hooknum,struct net_device * dev)267 nf_hook_entry_head(struct net *net, int pf, unsigned int hooknum,
268 struct net_device *dev)
269 {
270 switch (pf) {
271 case NFPROTO_NETDEV:
272 break;
273 #ifdef CONFIG_NETFILTER_FAMILY_ARP
274 case NFPROTO_ARP:
275 if (WARN_ON_ONCE(ARRAY_SIZE(net->nf.hooks_arp) <= hooknum))
276 return NULL;
277 return net->nf.hooks_arp + hooknum;
278 #endif
279 #ifdef CONFIG_NETFILTER_FAMILY_BRIDGE
280 case NFPROTO_BRIDGE:
281 if (WARN_ON_ONCE(ARRAY_SIZE(net->nf.hooks_bridge) <= hooknum))
282 return NULL;
283 return net->nf.hooks_bridge + hooknum;
284 #endif
285 #ifdef CONFIG_NETFILTER_INGRESS
286 case NFPROTO_INET:
287 if (WARN_ON_ONCE(hooknum != NF_INET_INGRESS))
288 return NULL;
289 if (!dev || dev_net(dev) != net) {
290 WARN_ON_ONCE(1);
291 return NULL;
292 }
293 return &dev->nf_hooks_ingress;
294 #endif
295 case NFPROTO_IPV4:
296 if (WARN_ON_ONCE(ARRAY_SIZE(net->nf.hooks_ipv4) <= hooknum))
297 return NULL;
298 return net->nf.hooks_ipv4 + hooknum;
299 case NFPROTO_IPV6:
300 if (WARN_ON_ONCE(ARRAY_SIZE(net->nf.hooks_ipv6) <= hooknum))
301 return NULL;
302 return net->nf.hooks_ipv6 + hooknum;
303 default:
304 WARN_ON_ONCE(1);
305 return NULL;
306 }
307
308 #ifdef CONFIG_NETFILTER_INGRESS
309 if (hooknum == NF_NETDEV_INGRESS) {
310 if (dev && dev_net(dev) == net)
311 return &dev->nf_hooks_ingress;
312 }
313 #endif
314 WARN_ON_ONCE(1);
315 return NULL;
316 }
317
nf_ingress_check(struct net * net,const struct nf_hook_ops * reg,int hooknum)318 static int nf_ingress_check(struct net *net, const struct nf_hook_ops *reg,
319 int hooknum)
320 {
321 #ifndef CONFIG_NETFILTER_INGRESS
322 if (reg->hooknum == hooknum)
323 return -EOPNOTSUPP;
324 #endif
325 if (reg->hooknum != hooknum ||
326 !reg->dev || dev_net(reg->dev) != net)
327 return -EINVAL;
328
329 return 0;
330 }
331
nf_ingress_hook(const struct nf_hook_ops * reg,int pf)332 static inline bool nf_ingress_hook(const struct nf_hook_ops *reg, int pf)
333 {
334 if ((pf == NFPROTO_NETDEV && reg->hooknum == NF_NETDEV_INGRESS) ||
335 (pf == NFPROTO_INET && reg->hooknum == NF_INET_INGRESS))
336 return true;
337
338 return false;
339 }
340
nf_static_key_inc(const struct nf_hook_ops * reg,int pf)341 static void nf_static_key_inc(const struct nf_hook_ops *reg, int pf)
342 {
343 #ifdef CONFIG_JUMP_LABEL
344 int hooknum;
345
346 if (pf == NFPROTO_INET && reg->hooknum == NF_INET_INGRESS) {
347 pf = NFPROTO_NETDEV;
348 hooknum = NF_NETDEV_INGRESS;
349 } else {
350 hooknum = reg->hooknum;
351 }
352 static_key_slow_inc(&nf_hooks_needed[pf][hooknum]);
353 #endif
354 }
355
nf_static_key_dec(const struct nf_hook_ops * reg,int pf)356 static void nf_static_key_dec(const struct nf_hook_ops *reg, int pf)
357 {
358 #ifdef CONFIG_JUMP_LABEL
359 int hooknum;
360
361 if (pf == NFPROTO_INET && reg->hooknum == NF_INET_INGRESS) {
362 pf = NFPROTO_NETDEV;
363 hooknum = NF_NETDEV_INGRESS;
364 } else {
365 hooknum = reg->hooknum;
366 }
367 static_key_slow_dec(&nf_hooks_needed[pf][hooknum]);
368 #endif
369 }
370
__nf_register_net_hook(struct net * net,int pf,const struct nf_hook_ops * reg)371 static int __nf_register_net_hook(struct net *net, int pf,
372 const struct nf_hook_ops *reg)
373 {
374 struct nf_hook_entries *p, *new_hooks;
375 struct nf_hook_entries __rcu **pp;
376 int err;
377
378 switch (pf) {
379 case NFPROTO_NETDEV:
380 err = nf_ingress_check(net, reg, NF_NETDEV_INGRESS);
381 if (err < 0)
382 return err;
383 break;
384 case NFPROTO_INET:
385 if (reg->hooknum != NF_INET_INGRESS)
386 break;
387
388 err = nf_ingress_check(net, reg, NF_INET_INGRESS);
389 if (err < 0)
390 return err;
391 break;
392 }
393
394 pp = nf_hook_entry_head(net, pf, reg->hooknum, reg->dev);
395 if (!pp)
396 return -EINVAL;
397
398 mutex_lock(&nf_hook_mutex);
399
400 p = nf_entry_dereference(*pp);
401 new_hooks = nf_hook_entries_grow(p, reg);
402
403 if (!IS_ERR(new_hooks)) {
404 hooks_validate(new_hooks);
405 rcu_assign_pointer(*pp, new_hooks);
406 }
407
408 mutex_unlock(&nf_hook_mutex);
409 if (IS_ERR(new_hooks))
410 return PTR_ERR(new_hooks);
411
412 #ifdef CONFIG_NETFILTER_INGRESS
413 if (nf_ingress_hook(reg, pf))
414 net_inc_ingress_queue();
415 #endif
416 nf_static_key_inc(reg, pf);
417
418 BUG_ON(p == new_hooks);
419 nf_hook_entries_free(p);
420 return 0;
421 }
422
423 /*
424 * nf_remove_net_hook - remove a hook from blob
425 *
426 * @oldp: current address of hook blob
427 * @unreg: hook to unregister
428 *
429 * This cannot fail, hook unregistration must always succeed.
430 * Therefore replace the to-be-removed hook with a dummy hook.
431 */
nf_remove_net_hook(struct nf_hook_entries * old,const struct nf_hook_ops * unreg)432 static bool nf_remove_net_hook(struct nf_hook_entries *old,
433 const struct nf_hook_ops *unreg)
434 {
435 struct nf_hook_ops **orig_ops;
436 unsigned int i;
437
438 orig_ops = nf_hook_entries_get_hook_ops(old);
439 for (i = 0; i < old->num_hook_entries; i++) {
440 if (orig_ops[i] != unreg)
441 continue;
442 WRITE_ONCE(old->hooks[i].hook, accept_all);
443 WRITE_ONCE(orig_ops[i], (void *)&dummy_ops);
444 return true;
445 }
446
447 return false;
448 }
449
__nf_unregister_net_hook(struct net * net,int pf,const struct nf_hook_ops * reg)450 static void __nf_unregister_net_hook(struct net *net, int pf,
451 const struct nf_hook_ops *reg)
452 {
453 struct nf_hook_entries __rcu **pp;
454 struct nf_hook_entries *p;
455
456 pp = nf_hook_entry_head(net, pf, reg->hooknum, reg->dev);
457 if (!pp)
458 return;
459
460 mutex_lock(&nf_hook_mutex);
461
462 p = nf_entry_dereference(*pp);
463 if (WARN_ON_ONCE(!p)) {
464 mutex_unlock(&nf_hook_mutex);
465 return;
466 }
467
468 if (nf_remove_net_hook(p, reg)) {
469 #ifdef CONFIG_NETFILTER_INGRESS
470 if (nf_ingress_hook(reg, pf))
471 net_dec_ingress_queue();
472 #endif
473 nf_static_key_dec(reg, pf);
474 } else {
475 WARN_ONCE(1, "hook not found, pf %d num %d", pf, reg->hooknum);
476 }
477
478 p = __nf_hook_entries_try_shrink(p, pp);
479 mutex_unlock(&nf_hook_mutex);
480 if (!p)
481 return;
482
483 nf_queue_nf_hook_drop(net);
484 nf_hook_entries_free(p);
485 }
486
nf_unregister_net_hook(struct net * net,const struct nf_hook_ops * reg)487 void nf_unregister_net_hook(struct net *net, const struct nf_hook_ops *reg)
488 {
489 if (reg->pf == NFPROTO_INET) {
490 if (reg->hooknum == NF_INET_INGRESS) {
491 __nf_unregister_net_hook(net, NFPROTO_INET, reg);
492 } else {
493 __nf_unregister_net_hook(net, NFPROTO_IPV4, reg);
494 __nf_unregister_net_hook(net, NFPROTO_IPV6, reg);
495 }
496 } else {
497 __nf_unregister_net_hook(net, reg->pf, reg);
498 }
499 }
500 EXPORT_SYMBOL(nf_unregister_net_hook);
501
nf_hook_entries_delete_raw(struct nf_hook_entries __rcu ** pp,const struct nf_hook_ops * reg)502 void nf_hook_entries_delete_raw(struct nf_hook_entries __rcu **pp,
503 const struct nf_hook_ops *reg)
504 {
505 struct nf_hook_entries *p;
506
507 p = rcu_dereference_raw(*pp);
508 if (nf_remove_net_hook(p, reg)) {
509 p = __nf_hook_entries_try_shrink(p, pp);
510 nf_hook_entries_free(p);
511 }
512 }
513 EXPORT_SYMBOL_GPL(nf_hook_entries_delete_raw);
514
nf_register_net_hook(struct net * net,const struct nf_hook_ops * reg)515 int nf_register_net_hook(struct net *net, const struct nf_hook_ops *reg)
516 {
517 int err;
518
519 if (reg->pf == NFPROTO_INET) {
520 if (reg->hooknum == NF_INET_INGRESS) {
521 err = __nf_register_net_hook(net, NFPROTO_INET, reg);
522 if (err < 0)
523 return err;
524 } else {
525 err = __nf_register_net_hook(net, NFPROTO_IPV4, reg);
526 if (err < 0)
527 return err;
528
529 err = __nf_register_net_hook(net, NFPROTO_IPV6, reg);
530 if (err < 0) {
531 __nf_unregister_net_hook(net, NFPROTO_IPV4, reg);
532 return err;
533 }
534 }
535 } else {
536 err = __nf_register_net_hook(net, reg->pf, reg);
537 if (err < 0)
538 return err;
539 }
540
541 return 0;
542 }
543 EXPORT_SYMBOL(nf_register_net_hook);
544
nf_register_net_hooks(struct net * net,const struct nf_hook_ops * reg,unsigned int n)545 int nf_register_net_hooks(struct net *net, const struct nf_hook_ops *reg,
546 unsigned int n)
547 {
548 unsigned int i;
549 int err = 0;
550
551 for (i = 0; i < n; i++) {
552 err = nf_register_net_hook(net, ®[i]);
553 if (err)
554 goto err;
555 }
556 return err;
557
558 err:
559 if (i > 0)
560 nf_unregister_net_hooks(net, reg, i);
561 return err;
562 }
563 EXPORT_SYMBOL(nf_register_net_hooks);
564
nf_unregister_net_hooks(struct net * net,const struct nf_hook_ops * reg,unsigned int hookcount)565 void nf_unregister_net_hooks(struct net *net, const struct nf_hook_ops *reg,
566 unsigned int hookcount)
567 {
568 unsigned int i;
569
570 for (i = 0; i < hookcount; i++)
571 nf_unregister_net_hook(net, ®[i]);
572 }
573 EXPORT_SYMBOL(nf_unregister_net_hooks);
574
575 /* Returns 1 if okfn() needs to be executed by the caller,
576 * -EPERM for NF_DROP, 0 otherwise. Caller must hold rcu_read_lock. */
nf_hook_slow(struct sk_buff * skb,struct nf_hook_state * state,const struct nf_hook_entries * e,unsigned int s)577 int nf_hook_slow(struct sk_buff *skb, struct nf_hook_state *state,
578 const struct nf_hook_entries *e, unsigned int s)
579 {
580 unsigned int verdict;
581 int ret;
582
583 for (; s < e->num_hook_entries; s++) {
584 verdict = nf_hook_entry_hookfn(&e->hooks[s], skb, state);
585 switch (verdict & NF_VERDICT_MASK) {
586 case NF_ACCEPT:
587 break;
588 case NF_DROP:
589 kfree_skb(skb);
590 ret = NF_DROP_GETERR(verdict);
591 if (ret == 0)
592 ret = -EPERM;
593 return ret;
594 case NF_QUEUE:
595 ret = nf_queue(skb, state, s, verdict);
596 if (ret == 1)
597 continue;
598 return ret;
599 default:
600 /* Implicit handling for NF_STOLEN, as well as any other
601 * non conventional verdicts.
602 */
603 return 0;
604 }
605 }
606
607 return 1;
608 }
609 EXPORT_SYMBOL(nf_hook_slow);
610
nf_hook_slow_list(struct list_head * head,struct nf_hook_state * state,const struct nf_hook_entries * e)611 void nf_hook_slow_list(struct list_head *head, struct nf_hook_state *state,
612 const struct nf_hook_entries *e)
613 {
614 struct sk_buff *skb, *next;
615 struct list_head sublist;
616 int ret;
617
618 INIT_LIST_HEAD(&sublist);
619
620 list_for_each_entry_safe(skb, next, head, list) {
621 skb_list_del_init(skb);
622 ret = nf_hook_slow(skb, state, e, 0);
623 if (ret == 1)
624 list_add_tail(&skb->list, &sublist);
625 }
626 /* Put passed packets back on main list */
627 list_splice(&sublist, head);
628 }
629 EXPORT_SYMBOL(nf_hook_slow_list);
630
631 /* This needs to be compiled in any case to avoid dependencies between the
632 * nfnetlink_queue code and nf_conntrack.
633 */
634 struct nfnl_ct_hook __rcu *nfnl_ct_hook __read_mostly;
635 EXPORT_SYMBOL_GPL(nfnl_ct_hook);
636
637 struct nf_ct_hook __rcu *nf_ct_hook __read_mostly;
638 EXPORT_SYMBOL_GPL(nf_ct_hook);
639
640 #if IS_ENABLED(CONFIG_NF_CONNTRACK)
641 /* This does not belong here, but locally generated errors need it if connection
642 tracking in use: without this, connection may not be in hash table, and hence
643 manufactured ICMP or RST packets will not be associated with it. */
644 void (*ip_ct_attach)(struct sk_buff *, const struct sk_buff *)
645 __rcu __read_mostly;
646 EXPORT_SYMBOL(ip_ct_attach);
647
648 struct nf_nat_hook __rcu *nf_nat_hook __read_mostly;
649 EXPORT_SYMBOL_GPL(nf_nat_hook);
650
nf_ct_attach(struct sk_buff * new,const struct sk_buff * skb)651 void nf_ct_attach(struct sk_buff *new, const struct sk_buff *skb)
652 {
653 void (*attach)(struct sk_buff *, const struct sk_buff *);
654
655 if (skb->_nfct) {
656 rcu_read_lock();
657 attach = rcu_dereference(ip_ct_attach);
658 if (attach)
659 attach(new, skb);
660 rcu_read_unlock();
661 }
662 }
663 EXPORT_SYMBOL(nf_ct_attach);
664
nf_conntrack_destroy(struct nf_conntrack * nfct)665 void nf_conntrack_destroy(struct nf_conntrack *nfct)
666 {
667 struct nf_ct_hook *ct_hook;
668
669 rcu_read_lock();
670 ct_hook = rcu_dereference(nf_ct_hook);
671 if (ct_hook)
672 ct_hook->destroy(nfct);
673 rcu_read_unlock();
674
675 WARN_ON(!ct_hook);
676 }
677 EXPORT_SYMBOL(nf_conntrack_destroy);
678
nf_ct_get_tuple_skb(struct nf_conntrack_tuple * dst_tuple,const struct sk_buff * skb)679 bool nf_ct_get_tuple_skb(struct nf_conntrack_tuple *dst_tuple,
680 const struct sk_buff *skb)
681 {
682 struct nf_ct_hook *ct_hook;
683 bool ret = false;
684
685 rcu_read_lock();
686 ct_hook = rcu_dereference(nf_ct_hook);
687 if (ct_hook)
688 ret = ct_hook->get_tuple_skb(dst_tuple, skb);
689 rcu_read_unlock();
690 return ret;
691 }
692 EXPORT_SYMBOL(nf_ct_get_tuple_skb);
693
694 /* Built-in default zone used e.g. by modules. */
695 const struct nf_conntrack_zone nf_ct_zone_dflt = {
696 .id = NF_CT_DEFAULT_ZONE_ID,
697 .dir = NF_CT_DEFAULT_ZONE_DIR,
698 };
699 EXPORT_SYMBOL_GPL(nf_ct_zone_dflt);
700 #endif /* CONFIG_NF_CONNTRACK */
701
702 static void __net_init
__netfilter_net_init(struct nf_hook_entries __rcu ** e,int max)703 __netfilter_net_init(struct nf_hook_entries __rcu **e, int max)
704 {
705 int h;
706
707 for (h = 0; h < max; h++)
708 RCU_INIT_POINTER(e[h], NULL);
709 }
710
netfilter_net_init(struct net * net)711 static int __net_init netfilter_net_init(struct net *net)
712 {
713 __netfilter_net_init(net->nf.hooks_ipv4, ARRAY_SIZE(net->nf.hooks_ipv4));
714 __netfilter_net_init(net->nf.hooks_ipv6, ARRAY_SIZE(net->nf.hooks_ipv6));
715 #ifdef CONFIG_NETFILTER_FAMILY_ARP
716 __netfilter_net_init(net->nf.hooks_arp, ARRAY_SIZE(net->nf.hooks_arp));
717 #endif
718 #ifdef CONFIG_NETFILTER_FAMILY_BRIDGE
719 __netfilter_net_init(net->nf.hooks_bridge, ARRAY_SIZE(net->nf.hooks_bridge));
720 #endif
721 #ifdef CONFIG_PROC_FS
722 net->nf.proc_netfilter = proc_net_mkdir(net, "netfilter",
723 net->proc_net);
724 if (!net->nf.proc_netfilter) {
725 if (!net_eq(net, &init_net))
726 pr_err("cannot create netfilter proc entry");
727
728 return -ENOMEM;
729 }
730 #endif
731
732 return 0;
733 }
734
netfilter_net_exit(struct net * net)735 static void __net_exit netfilter_net_exit(struct net *net)
736 {
737 remove_proc_entry("netfilter", net->proc_net);
738 }
739
740 static struct pernet_operations netfilter_net_ops = {
741 .init = netfilter_net_init,
742 .exit = netfilter_net_exit,
743 };
744
netfilter_init(void)745 int __init netfilter_init(void)
746 {
747 int ret;
748
749 ret = register_pernet_subsys(&netfilter_net_ops);
750 if (ret < 0)
751 goto err;
752
753 ret = netfilter_log_init();
754 if (ret < 0)
755 goto err_pernet;
756
757 return 0;
758 err_pernet:
759 unregister_pernet_subsys(&netfilter_net_ops);
760 err:
761 return ret;
762 }
763