2 * x_tables core - Backend for {ip,ip6,arp}_tables
4 * Copyright (C) 2006-2006 Harald Welte <laforge@netfilter.org>
6 * Based on existing ip_tables code which is
7 * Copyright (C) 1999 Paul `Rusty' Russell & Michael J. Neuling
8 * Copyright (C) 2000-2005 Netfilter Core Team <coreteam@netfilter.org>
10 * This program is free software; you can redistribute it and/or modify
11 * it under the terms of the GNU General Public License version 2 as
12 * published by the Free Software Foundation.
16 #include <linux/kernel.h>
17 #include <linux/socket.h>
18 #include <linux/net.h>
19 #include <linux/proc_fs.h>
20 #include <linux/seq_file.h>
21 #include <linux/string.h>
22 #include <linux/vmalloc.h>
23 #include <linux/mutex.h>
25 #include <linux/slab.h>
26 #include <net/net_namespace.h>
28 #include <linux/netfilter/x_tables.h>
29 #include <linux/netfilter_arp.h>
30 #include <linux/netfilter_ipv4/ip_tables.h>
31 #include <linux/netfilter_ipv6/ip6_tables.h>
32 #include <linux/netfilter_arp/arp_tables.h>
34 MODULE_LICENSE("GPL");
35 MODULE_AUTHOR("Harald Welte <laforge@netfilter.org>");
36 MODULE_DESCRIPTION("{ip,ip6,arp,eb}_tables backend module");
38 #define SMP_ALIGN(x) (((x) + SMP_CACHE_BYTES-1) & ~(SMP_CACHE_BYTES-1))
41 struct compat_delta
*next
;
48 struct list_head match
;
49 struct list_head target
;
51 struct mutex compat_mutex
;
52 struct compat_delta
*compat_offsets
;
56 static struct xt_af
*xt
;
58 #ifdef DEBUG_IP_FIREWALL_USER
59 #define duprintf(format, args...) printk(format , ## args)
61 #define duprintf(format, args...)
64 static const char *const xt_prefix
[NFPROTO_NUMPROTO
] = {
65 [NFPROTO_UNSPEC
] = "x",
66 [NFPROTO_IPV4
] = "ip",
67 [NFPROTO_ARP
] = "arp",
68 [NFPROTO_BRIDGE
] = "eb",
69 [NFPROTO_IPV6
] = "ip6",
72 /* Registration hooks for targets. */
74 xt_register_target(struct xt_target
*target
)
76 u_int8_t af
= target
->family
;
79 ret
= mutex_lock_interruptible(&xt
[af
].mutex
);
82 list_add(&target
->list
, &xt
[af
].target
);
83 mutex_unlock(&xt
[af
].mutex
);
86 EXPORT_SYMBOL(xt_register_target
);
89 xt_unregister_target(struct xt_target
*target
)
91 u_int8_t af
= target
->family
;
93 mutex_lock(&xt
[af
].mutex
);
94 list_del(&target
->list
);
95 mutex_unlock(&xt
[af
].mutex
);
97 EXPORT_SYMBOL(xt_unregister_target
);
100 xt_register_targets(struct xt_target
*target
, unsigned int n
)
105 for (i
= 0; i
< n
; i
++) {
106 err
= xt_register_target(&target
[i
]);
114 xt_unregister_targets(target
, i
);
117 EXPORT_SYMBOL(xt_register_targets
);
120 xt_unregister_targets(struct xt_target
*target
, unsigned int n
)
124 for (i
= 0; i
< n
; i
++)
125 xt_unregister_target(&target
[i
]);
127 EXPORT_SYMBOL(xt_unregister_targets
);
130 xt_register_match(struct xt_match
*match
)
132 u_int8_t af
= match
->family
;
135 ret
= mutex_lock_interruptible(&xt
[af
].mutex
);
139 list_add(&match
->list
, &xt
[af
].match
);
140 mutex_unlock(&xt
[af
].mutex
);
144 EXPORT_SYMBOL(xt_register_match
);
147 xt_unregister_match(struct xt_match
*match
)
149 u_int8_t af
= match
->family
;
151 mutex_lock(&xt
[af
].mutex
);
152 list_del(&match
->list
);
153 mutex_unlock(&xt
[af
].mutex
);
155 EXPORT_SYMBOL(xt_unregister_match
);
158 xt_register_matches(struct xt_match
*match
, unsigned int n
)
163 for (i
= 0; i
< n
; i
++) {
164 err
= xt_register_match(&match
[i
]);
172 xt_unregister_matches(match
, i
);
175 EXPORT_SYMBOL(xt_register_matches
);
178 xt_unregister_matches(struct xt_match
*match
, unsigned int n
)
182 for (i
= 0; i
< n
; i
++)
183 xt_unregister_match(&match
[i
]);
185 EXPORT_SYMBOL(xt_unregister_matches
);
189 * These are weird, but module loading must not be done with mutex
190 * held (since they will register), and we have to have a single
191 * function to use try_then_request_module().
194 /* Find match, grabs ref. Returns ERR_PTR() on error. */
195 struct xt_match
*xt_find_match(u8 af
, const char *name
, u8 revision
)
200 if (mutex_lock_interruptible(&xt
[af
].mutex
) != 0)
201 return ERR_PTR(-EINTR
);
203 list_for_each_entry(m
, &xt
[af
].match
, list
) {
204 if (strcmp(m
->name
, name
) == 0) {
205 if (m
->revision
== revision
) {
206 if (try_module_get(m
->me
)) {
207 mutex_unlock(&xt
[af
].mutex
);
211 err
= -EPROTOTYPE
; /* Found something. */
214 mutex_unlock(&xt
[af
].mutex
);
216 if (af
!= NFPROTO_UNSPEC
)
217 /* Try searching again in the family-independent list */
218 return xt_find_match(NFPROTO_UNSPEC
, name
, revision
);
222 EXPORT_SYMBOL(xt_find_match
);
224 /* Find target, grabs ref. Returns ERR_PTR() on error. */
225 struct xt_target
*xt_find_target(u8 af
, const char *name
, u8 revision
)
230 if (mutex_lock_interruptible(&xt
[af
].mutex
) != 0)
231 return ERR_PTR(-EINTR
);
233 list_for_each_entry(t
, &xt
[af
].target
, list
) {
234 if (strcmp(t
->name
, name
) == 0) {
235 if (t
->revision
== revision
) {
236 if (try_module_get(t
->me
)) {
237 mutex_unlock(&xt
[af
].mutex
);
241 err
= -EPROTOTYPE
; /* Found something. */
244 mutex_unlock(&xt
[af
].mutex
);
246 if (af
!= NFPROTO_UNSPEC
)
247 /* Try searching again in the family-independent list */
248 return xt_find_target(NFPROTO_UNSPEC
, name
, revision
);
252 EXPORT_SYMBOL(xt_find_target
);
254 struct xt_target
*xt_request_find_target(u8 af
, const char *name
, u8 revision
)
256 struct xt_target
*target
;
258 target
= try_then_request_module(xt_find_target(af
, name
, revision
),
259 "%st_%s", xt_prefix
[af
], name
);
260 if (IS_ERR(target
) || !target
)
264 EXPORT_SYMBOL_GPL(xt_request_find_target
);
266 static int match_revfn(u8 af
, const char *name
, u8 revision
, int *bestp
)
268 const struct xt_match
*m
;
271 list_for_each_entry(m
, &xt
[af
].match
, list
) {
272 if (strcmp(m
->name
, name
) == 0) {
273 if (m
->revision
> *bestp
)
274 *bestp
= m
->revision
;
275 if (m
->revision
== revision
)
280 if (af
!= NFPROTO_UNSPEC
&& !have_rev
)
281 return match_revfn(NFPROTO_UNSPEC
, name
, revision
, bestp
);
286 static int target_revfn(u8 af
, const char *name
, u8 revision
, int *bestp
)
288 const struct xt_target
*t
;
291 list_for_each_entry(t
, &xt
[af
].target
, list
) {
292 if (strcmp(t
->name
, name
) == 0) {
293 if (t
->revision
> *bestp
)
294 *bestp
= t
->revision
;
295 if (t
->revision
== revision
)
300 if (af
!= NFPROTO_UNSPEC
&& !have_rev
)
301 return target_revfn(NFPROTO_UNSPEC
, name
, revision
, bestp
);
306 /* Returns true or false (if no such extension at all) */
307 int xt_find_revision(u8 af
, const char *name
, u8 revision
, int target
,
310 int have_rev
, best
= -1;
312 if (mutex_lock_interruptible(&xt
[af
].mutex
) != 0) {
317 have_rev
= target_revfn(af
, name
, revision
, &best
);
319 have_rev
= match_revfn(af
, name
, revision
, &best
);
320 mutex_unlock(&xt
[af
].mutex
);
322 /* Nothing at all? Return 0 to try loading module. */
330 *err
= -EPROTONOSUPPORT
;
333 EXPORT_SYMBOL_GPL(xt_find_revision
);
335 static char *textify_hooks(char *buf
, size_t size
, unsigned int mask
)
337 static const char *const names
[] = {
338 "PREROUTING", "INPUT", "FORWARD",
339 "OUTPUT", "POSTROUTING", "BROUTING",
347 for (i
= 0; i
< ARRAY_SIZE(names
); ++i
) {
348 if (!(mask
& (1 << i
)))
350 res
= snprintf(p
, size
, "%s%s", np
? "/" : "", names
[i
]);
361 int xt_check_match(struct xt_mtchk_param
*par
,
362 unsigned int size
, u_int8_t proto
, bool inv_proto
)
364 if (XT_ALIGN(par
->match
->matchsize
) != size
&&
365 par
->match
->matchsize
!= -1) {
367 * ebt_among is exempt from centralized matchsize checking
368 * because it uses a dynamic-size data set.
370 pr_err("%s_tables: %s.%u match: invalid size "
371 "%u (kernel) != (user) %u\n",
372 xt_prefix
[par
->family
], par
->match
->name
,
373 par
->match
->revision
,
374 XT_ALIGN(par
->match
->matchsize
), size
);
377 if (par
->match
->table
!= NULL
&&
378 strcmp(par
->match
->table
, par
->table
) != 0) {
379 pr_err("%s_tables: %s match: only valid in %s table, not %s\n",
380 xt_prefix
[par
->family
], par
->match
->name
,
381 par
->match
->table
, par
->table
);
384 if (par
->match
->hooks
&& (par
->hook_mask
& ~par
->match
->hooks
) != 0) {
385 char used
[64], allow
[64];
387 pr_err("%s_tables: %s match: used from hooks %s, but only "
389 xt_prefix
[par
->family
], par
->match
->name
,
390 textify_hooks(used
, sizeof(used
), par
->hook_mask
),
391 textify_hooks(allow
, sizeof(allow
), par
->match
->hooks
));
394 if (par
->match
->proto
&& (par
->match
->proto
!= proto
|| inv_proto
)) {
395 pr_err("%s_tables: %s match: only valid for protocol %u\n",
396 xt_prefix
[par
->family
], par
->match
->name
,
400 if (par
->match
->checkentry
!= NULL
&& !par
->match
->checkentry(par
))
404 EXPORT_SYMBOL_GPL(xt_check_match
);
407 int xt_compat_add_offset(u_int8_t af
, unsigned int offset
, short delta
)
409 struct compat_delta
*tmp
;
411 tmp
= kmalloc(sizeof(struct compat_delta
), GFP_KERNEL
);
415 tmp
->offset
= offset
;
418 if (xt
[af
].compat_offsets
) {
419 tmp
->next
= xt
[af
].compat_offsets
->next
;
420 xt
[af
].compat_offsets
->next
= tmp
;
422 xt
[af
].compat_offsets
= tmp
;
427 EXPORT_SYMBOL_GPL(xt_compat_add_offset
);
429 void xt_compat_flush_offsets(u_int8_t af
)
431 struct compat_delta
*tmp
, *next
;
433 if (xt
[af
].compat_offsets
) {
434 for (tmp
= xt
[af
].compat_offsets
; tmp
; tmp
= next
) {
438 xt
[af
].compat_offsets
= NULL
;
441 EXPORT_SYMBOL_GPL(xt_compat_flush_offsets
);
443 int xt_compat_calc_jump(u_int8_t af
, unsigned int offset
)
445 struct compat_delta
*tmp
;
448 for (tmp
= xt
[af
].compat_offsets
, delta
= 0; tmp
; tmp
= tmp
->next
)
449 if (tmp
->offset
< offset
)
453 EXPORT_SYMBOL_GPL(xt_compat_calc_jump
);
455 int xt_compat_match_offset(const struct xt_match
*match
)
457 u_int16_t csize
= match
->compatsize
? : match
->matchsize
;
458 return XT_ALIGN(match
->matchsize
) - COMPAT_XT_ALIGN(csize
);
460 EXPORT_SYMBOL_GPL(xt_compat_match_offset
);
462 int xt_compat_match_from_user(struct xt_entry_match
*m
, void **dstptr
,
465 const struct xt_match
*match
= m
->u
.kernel
.match
;
466 struct compat_xt_entry_match
*cm
= (struct compat_xt_entry_match
*)m
;
467 int pad
, off
= xt_compat_match_offset(match
);
468 u_int16_t msize
= cm
->u
.user
.match_size
;
471 memcpy(m
, cm
, sizeof(*cm
));
472 if (match
->compat_from_user
)
473 match
->compat_from_user(m
->data
, cm
->data
);
475 memcpy(m
->data
, cm
->data
, msize
- sizeof(*cm
));
476 pad
= XT_ALIGN(match
->matchsize
) - match
->matchsize
;
478 memset(m
->data
+ match
->matchsize
, 0, pad
);
481 m
->u
.user
.match_size
= msize
;
487 EXPORT_SYMBOL_GPL(xt_compat_match_from_user
);
489 int xt_compat_match_to_user(const struct xt_entry_match
*m
,
490 void __user
**dstptr
, unsigned int *size
)
492 const struct xt_match
*match
= m
->u
.kernel
.match
;
493 struct compat_xt_entry_match __user
*cm
= *dstptr
;
494 int off
= xt_compat_match_offset(match
);
495 u_int16_t msize
= m
->u
.user
.match_size
- off
;
497 if (copy_to_user(cm
, m
, sizeof(*cm
)) ||
498 put_user(msize
, &cm
->u
.user
.match_size
) ||
499 copy_to_user(cm
->u
.user
.name
, m
->u
.kernel
.match
->name
,
500 strlen(m
->u
.kernel
.match
->name
) + 1))
503 if (match
->compat_to_user
) {
504 if (match
->compat_to_user((void __user
*)cm
->data
, m
->data
))
507 if (copy_to_user(cm
->data
, m
->data
, msize
- sizeof(*cm
)))
515 EXPORT_SYMBOL_GPL(xt_compat_match_to_user
);
516 #endif /* CONFIG_COMPAT */
518 int xt_check_target(struct xt_tgchk_param
*par
,
519 unsigned int size
, u_int8_t proto
, bool inv_proto
)
521 if (XT_ALIGN(par
->target
->targetsize
) != size
) {
522 pr_err("%s_tables: %s.%u target: invalid size "
523 "%u (kernel) != (user) %u\n",
524 xt_prefix
[par
->family
], par
->target
->name
,
525 par
->target
->revision
,
526 XT_ALIGN(par
->target
->targetsize
), size
);
529 if (par
->target
->table
!= NULL
&&
530 strcmp(par
->target
->table
, par
->table
) != 0) {
531 pr_err("%s_tables: %s target: only valid in %s table, not %s\n",
532 xt_prefix
[par
->family
], par
->target
->name
,
533 par
->target
->table
, par
->table
);
536 if (par
->target
->hooks
&& (par
->hook_mask
& ~par
->target
->hooks
) != 0) {
537 char used
[64], allow
[64];
539 pr_err("%s_tables: %s target: used from hooks %s, but only "
541 xt_prefix
[par
->family
], par
->target
->name
,
542 textify_hooks(used
, sizeof(used
), par
->hook_mask
),
543 textify_hooks(allow
, sizeof(allow
), par
->target
->hooks
));
546 if (par
->target
->proto
&& (par
->target
->proto
!= proto
|| inv_proto
)) {
547 pr_err("%s_tables: %s target: only valid for protocol %u\n",
548 xt_prefix
[par
->family
], par
->target
->name
,
552 if (par
->target
->checkentry
!= NULL
&& !par
->target
->checkentry(par
))
556 EXPORT_SYMBOL_GPL(xt_check_target
);
559 int xt_compat_target_offset(const struct xt_target
*target
)
561 u_int16_t csize
= target
->compatsize
? : target
->targetsize
;
562 return XT_ALIGN(target
->targetsize
) - COMPAT_XT_ALIGN(csize
);
564 EXPORT_SYMBOL_GPL(xt_compat_target_offset
);
566 void xt_compat_target_from_user(struct xt_entry_target
*t
, void **dstptr
,
569 const struct xt_target
*target
= t
->u
.kernel
.target
;
570 struct compat_xt_entry_target
*ct
= (struct compat_xt_entry_target
*)t
;
571 int pad
, off
= xt_compat_target_offset(target
);
572 u_int16_t tsize
= ct
->u
.user
.target_size
;
575 memcpy(t
, ct
, sizeof(*ct
));
576 if (target
->compat_from_user
)
577 target
->compat_from_user(t
->data
, ct
->data
);
579 memcpy(t
->data
, ct
->data
, tsize
- sizeof(*ct
));
580 pad
= XT_ALIGN(target
->targetsize
) - target
->targetsize
;
582 memset(t
->data
+ target
->targetsize
, 0, pad
);
585 t
->u
.user
.target_size
= tsize
;
590 EXPORT_SYMBOL_GPL(xt_compat_target_from_user
);
592 int xt_compat_target_to_user(const struct xt_entry_target
*t
,
593 void __user
**dstptr
, unsigned int *size
)
595 const struct xt_target
*target
= t
->u
.kernel
.target
;
596 struct compat_xt_entry_target __user
*ct
= *dstptr
;
597 int off
= xt_compat_target_offset(target
);
598 u_int16_t tsize
= t
->u
.user
.target_size
- off
;
600 if (copy_to_user(ct
, t
, sizeof(*ct
)) ||
601 put_user(tsize
, &ct
->u
.user
.target_size
) ||
602 copy_to_user(ct
->u
.user
.name
, t
->u
.kernel
.target
->name
,
603 strlen(t
->u
.kernel
.target
->name
) + 1))
606 if (target
->compat_to_user
) {
607 if (target
->compat_to_user((void __user
*)ct
->data
, t
->data
))
610 if (copy_to_user(ct
->data
, t
->data
, tsize
- sizeof(*ct
)))
618 EXPORT_SYMBOL_GPL(xt_compat_target_to_user
);
621 struct xt_table_info
*xt_alloc_table_info(unsigned int size
)
623 struct xt_table_info
*newinfo
;
626 /* Pedantry: prevent them from hitting BUG() in vmalloc.c --RR */
627 if ((SMP_ALIGN(size
) >> PAGE_SHIFT
) + 2 > totalram_pages
)
630 newinfo
= kzalloc(XT_TABLE_INFO_SZ
, GFP_KERNEL
);
634 newinfo
->size
= size
;
636 for_each_possible_cpu(cpu
) {
637 if (size
<= PAGE_SIZE
)
638 newinfo
->entries
[cpu
] = kmalloc_node(size
,
642 newinfo
->entries
[cpu
] = vmalloc_node(size
,
645 if (newinfo
->entries
[cpu
] == NULL
) {
646 xt_free_table_info(newinfo
);
653 EXPORT_SYMBOL(xt_alloc_table_info
);
655 void xt_free_table_info(struct xt_table_info
*info
)
659 for_each_possible_cpu(cpu
) {
660 if (info
->size
<= PAGE_SIZE
)
661 kfree(info
->entries
[cpu
]);
663 vfree(info
->entries
[cpu
]);
667 EXPORT_SYMBOL(xt_free_table_info
);
669 /* Find table by name, grabs mutex & ref. Returns ERR_PTR() on error. */
670 struct xt_table
*xt_find_table_lock(struct net
*net
, u_int8_t af
,
675 if (mutex_lock_interruptible(&xt
[af
].mutex
) != 0)
676 return ERR_PTR(-EINTR
);
678 list_for_each_entry(t
, &net
->xt
.tables
[af
], list
)
679 if (strcmp(t
->name
, name
) == 0 && try_module_get(t
->me
))
681 mutex_unlock(&xt
[af
].mutex
);
684 EXPORT_SYMBOL_GPL(xt_find_table_lock
);
686 void xt_table_unlock(struct xt_table
*table
)
688 mutex_unlock(&xt
[table
->af
].mutex
);
690 EXPORT_SYMBOL_GPL(xt_table_unlock
);
693 void xt_compat_lock(u_int8_t af
)
695 mutex_lock(&xt
[af
].compat_mutex
);
697 EXPORT_SYMBOL_GPL(xt_compat_lock
);
699 void xt_compat_unlock(u_int8_t af
)
701 mutex_unlock(&xt
[af
].compat_mutex
);
703 EXPORT_SYMBOL_GPL(xt_compat_unlock
);
706 DEFINE_PER_CPU(struct xt_info_lock
, xt_info_locks
);
707 EXPORT_PER_CPU_SYMBOL_GPL(xt_info_locks
);
710 struct xt_table_info
*
711 xt_replace_table(struct xt_table
*table
,
712 unsigned int num_counters
,
713 struct xt_table_info
*newinfo
,
716 struct xt_table_info
*private;
718 /* Do the substitution. */
720 private = table
->private;
722 /* Check inside lock: is the old number correct? */
723 if (num_counters
!= private->number
) {
724 duprintf("num_counters != table->private->number (%u/%u)\n",
725 num_counters
, private->number
);
731 table
->private = newinfo
;
732 newinfo
->initial_entries
= private->initial_entries
;
735 * Even though table entries have now been swapped, other CPU's
736 * may still be using the old entries. This is okay, because
737 * resynchronization happens because of the locking done
738 * during the get_counters() routine.
744 EXPORT_SYMBOL_GPL(xt_replace_table
);
746 struct xt_table
*xt_register_table(struct net
*net
,
747 const struct xt_table
*input_table
,
748 struct xt_table_info
*bootstrap
,
749 struct xt_table_info
*newinfo
)
752 struct xt_table_info
*private;
753 struct xt_table
*t
, *table
;
755 /* Don't add one object to multiple lists. */
756 table
= kmemdup(input_table
, sizeof(struct xt_table
), GFP_KERNEL
);
762 ret
= mutex_lock_interruptible(&xt
[table
->af
].mutex
);
766 /* Don't autoload: we'd eat our tail... */
767 list_for_each_entry(t
, &net
->xt
.tables
[table
->af
], list
) {
768 if (strcmp(t
->name
, table
->name
) == 0) {
774 /* Simplifies replace_table code. */
775 table
->private = bootstrap
;
777 if (!xt_replace_table(table
, 0, newinfo
, &ret
))
780 private = table
->private;
781 duprintf("table->private->number = %u\n", private->number
);
783 /* save number of initial entries */
784 private->initial_entries
= private->number
;
786 list_add(&table
->list
, &net
->xt
.tables
[table
->af
]);
787 mutex_unlock(&xt
[table
->af
].mutex
);
791 mutex_unlock(&xt
[table
->af
].mutex
);
797 EXPORT_SYMBOL_GPL(xt_register_table
);
799 void *xt_unregister_table(struct xt_table
*table
)
801 struct xt_table_info
*private;
803 mutex_lock(&xt
[table
->af
].mutex
);
804 private = table
->private;
805 list_del(&table
->list
);
806 mutex_unlock(&xt
[table
->af
].mutex
);
811 EXPORT_SYMBOL_GPL(xt_unregister_table
);
813 #ifdef CONFIG_PROC_FS
814 struct xt_names_priv
{
815 struct seq_net_private p
;
818 static void *xt_table_seq_start(struct seq_file
*seq
, loff_t
*pos
)
820 struct xt_names_priv
*priv
= seq
->private;
821 struct net
*net
= seq_file_net(seq
);
822 u_int8_t af
= priv
->af
;
824 mutex_lock(&xt
[af
].mutex
);
825 return seq_list_start(&net
->xt
.tables
[af
], *pos
);
828 static void *xt_table_seq_next(struct seq_file
*seq
, void *v
, loff_t
*pos
)
830 struct xt_names_priv
*priv
= seq
->private;
831 struct net
*net
= seq_file_net(seq
);
832 u_int8_t af
= priv
->af
;
834 return seq_list_next(v
, &net
->xt
.tables
[af
], pos
);
837 static void xt_table_seq_stop(struct seq_file
*seq
, void *v
)
839 struct xt_names_priv
*priv
= seq
->private;
840 u_int8_t af
= priv
->af
;
842 mutex_unlock(&xt
[af
].mutex
);
845 static int xt_table_seq_show(struct seq_file
*seq
, void *v
)
847 struct xt_table
*table
= list_entry(v
, struct xt_table
, list
);
849 if (strlen(table
->name
))
850 return seq_printf(seq
, "%s\n", table
->name
);
855 static const struct seq_operations xt_table_seq_ops
= {
856 .start
= xt_table_seq_start
,
857 .next
= xt_table_seq_next
,
858 .stop
= xt_table_seq_stop
,
859 .show
= xt_table_seq_show
,
862 static int xt_table_open(struct inode
*inode
, struct file
*file
)
865 struct xt_names_priv
*priv
;
867 ret
= seq_open_net(inode
, file
, &xt_table_seq_ops
,
868 sizeof(struct xt_names_priv
));
870 priv
= ((struct seq_file
*)file
->private_data
)->private;
871 priv
->af
= (unsigned long)PDE(inode
)->data
;
876 static const struct file_operations xt_table_ops
= {
877 .owner
= THIS_MODULE
,
878 .open
= xt_table_open
,
881 .release
= seq_release_net
,
885 * Traverse state for ip{,6}_{tables,matches} for helping crossing
886 * the multi-AF mutexes.
888 struct nf_mttg_trav
{
889 struct list_head
*head
, *curr
;
890 uint8_t class, nfproto
;
895 MTTG_TRAV_NFP_UNSPEC
,
900 static void *xt_mttg_seq_next(struct seq_file
*seq
, void *v
, loff_t
*ppos
,
903 static const uint8_t next_class
[] = {
904 [MTTG_TRAV_NFP_UNSPEC
] = MTTG_TRAV_NFP_SPEC
,
905 [MTTG_TRAV_NFP_SPEC
] = MTTG_TRAV_DONE
,
907 struct nf_mttg_trav
*trav
= seq
->private;
909 switch (trav
->class) {
911 trav
->class = MTTG_TRAV_NFP_UNSPEC
;
912 mutex_lock(&xt
[NFPROTO_UNSPEC
].mutex
);
913 trav
->head
= trav
->curr
= is_target
?
914 &xt
[NFPROTO_UNSPEC
].target
: &xt
[NFPROTO_UNSPEC
].match
;
916 case MTTG_TRAV_NFP_UNSPEC
:
917 trav
->curr
= trav
->curr
->next
;
918 if (trav
->curr
!= trav
->head
)
920 mutex_unlock(&xt
[NFPROTO_UNSPEC
].mutex
);
921 mutex_lock(&xt
[trav
->nfproto
].mutex
);
922 trav
->head
= trav
->curr
= is_target
?
923 &xt
[trav
->nfproto
].target
: &xt
[trav
->nfproto
].match
;
924 trav
->class = next_class
[trav
->class];
926 case MTTG_TRAV_NFP_SPEC
:
927 trav
->curr
= trav
->curr
->next
;
928 if (trav
->curr
!= trav
->head
)
930 /* fallthru, _stop will unlock */
940 static void *xt_mttg_seq_start(struct seq_file
*seq
, loff_t
*pos
,
943 struct nf_mttg_trav
*trav
= seq
->private;
946 trav
->class = MTTG_TRAV_INIT
;
947 for (j
= 0; j
< *pos
; ++j
)
948 if (xt_mttg_seq_next(seq
, NULL
, NULL
, is_target
) == NULL
)
953 static void xt_mttg_seq_stop(struct seq_file
*seq
, void *v
)
955 struct nf_mttg_trav
*trav
= seq
->private;
957 switch (trav
->class) {
958 case MTTG_TRAV_NFP_UNSPEC
:
959 mutex_unlock(&xt
[NFPROTO_UNSPEC
].mutex
);
961 case MTTG_TRAV_NFP_SPEC
:
962 mutex_unlock(&xt
[trav
->nfproto
].mutex
);
967 static void *xt_match_seq_start(struct seq_file
*seq
, loff_t
*pos
)
969 return xt_mttg_seq_start(seq
, pos
, false);
972 static void *xt_match_seq_next(struct seq_file
*seq
, void *v
, loff_t
*ppos
)
974 return xt_mttg_seq_next(seq
, v
, ppos
, false);
977 static int xt_match_seq_show(struct seq_file
*seq
, void *v
)
979 const struct nf_mttg_trav
*trav
= seq
->private;
980 const struct xt_match
*match
;
982 switch (trav
->class) {
983 case MTTG_TRAV_NFP_UNSPEC
:
984 case MTTG_TRAV_NFP_SPEC
:
985 if (trav
->curr
== trav
->head
)
987 match
= list_entry(trav
->curr
, struct xt_match
, list
);
988 return (*match
->name
== '\0') ? 0 :
989 seq_printf(seq
, "%s\n", match
->name
);
994 static const struct seq_operations xt_match_seq_ops
= {
995 .start
= xt_match_seq_start
,
996 .next
= xt_match_seq_next
,
997 .stop
= xt_mttg_seq_stop
,
998 .show
= xt_match_seq_show
,
1001 static int xt_match_open(struct inode
*inode
, struct file
*file
)
1003 struct seq_file
*seq
;
1004 struct nf_mttg_trav
*trav
;
1007 trav
= kmalloc(sizeof(*trav
), GFP_KERNEL
);
1011 ret
= seq_open(file
, &xt_match_seq_ops
);
1017 seq
= file
->private_data
;
1018 seq
->private = trav
;
1019 trav
->nfproto
= (unsigned long)PDE(inode
)->data
;
1023 static const struct file_operations xt_match_ops
= {
1024 .owner
= THIS_MODULE
,
1025 .open
= xt_match_open
,
1027 .llseek
= seq_lseek
,
1028 .release
= seq_release_private
,
1031 static void *xt_target_seq_start(struct seq_file
*seq
, loff_t
*pos
)
1033 return xt_mttg_seq_start(seq
, pos
, true);
1036 static void *xt_target_seq_next(struct seq_file
*seq
, void *v
, loff_t
*ppos
)
1038 return xt_mttg_seq_next(seq
, v
, ppos
, true);
1041 static int xt_target_seq_show(struct seq_file
*seq
, void *v
)
1043 const struct nf_mttg_trav
*trav
= seq
->private;
1044 const struct xt_target
*target
;
1046 switch (trav
->class) {
1047 case MTTG_TRAV_NFP_UNSPEC
:
1048 case MTTG_TRAV_NFP_SPEC
:
1049 if (trav
->curr
== trav
->head
)
1051 target
= list_entry(trav
->curr
, struct xt_target
, list
);
1052 return (*target
->name
== '\0') ? 0 :
1053 seq_printf(seq
, "%s\n", target
->name
);
1058 static const struct seq_operations xt_target_seq_ops
= {
1059 .start
= xt_target_seq_start
,
1060 .next
= xt_target_seq_next
,
1061 .stop
= xt_mttg_seq_stop
,
1062 .show
= xt_target_seq_show
,
1065 static int xt_target_open(struct inode
*inode
, struct file
*file
)
1067 struct seq_file
*seq
;
1068 struct nf_mttg_trav
*trav
;
1071 trav
= kmalloc(sizeof(*trav
), GFP_KERNEL
);
1075 ret
= seq_open(file
, &xt_target_seq_ops
);
1081 seq
= file
->private_data
;
1082 seq
->private = trav
;
1083 trav
->nfproto
= (unsigned long)PDE(inode
)->data
;
1087 static const struct file_operations xt_target_ops
= {
1088 .owner
= THIS_MODULE
,
1089 .open
= xt_target_open
,
1091 .llseek
= seq_lseek
,
1092 .release
= seq_release_private
,
1095 #define FORMAT_TABLES "_tables_names"
1096 #define FORMAT_MATCHES "_tables_matches"
1097 #define FORMAT_TARGETS "_tables_targets"
1099 #endif /* CONFIG_PROC_FS */
1102 * xt_hook_link - set up hooks for a new table
1103 * @table: table with metadata needed to set up hooks
1104 * @fn: Hook function
1106 * This function will take care of creating and registering the necessary
1107 * Netfilter hooks for XT tables.
1109 struct nf_hook_ops
*xt_hook_link(const struct xt_table
*table
, nf_hookfn
*fn
)
1111 unsigned int hook_mask
= table
->valid_hooks
;
1112 uint8_t i
, num_hooks
= hweight32(hook_mask
);
1114 struct nf_hook_ops
*ops
;
1117 ops
= kmalloc(sizeof(*ops
) * num_hooks
, GFP_KERNEL
);
1119 return ERR_PTR(-ENOMEM
);
1121 for (i
= 0, hooknum
= 0; i
< num_hooks
&& hook_mask
!= 0;
1122 hook_mask
>>= 1, ++hooknum
) {
1123 if (!(hook_mask
& 1))
1126 ops
[i
].owner
= table
->me
;
1127 ops
[i
].pf
= table
->af
;
1128 ops
[i
].hooknum
= hooknum
;
1129 ops
[i
].priority
= table
->priority
;
1133 ret
= nf_register_hooks(ops
, num_hooks
);
1136 return ERR_PTR(ret
);
1141 EXPORT_SYMBOL_GPL(xt_hook_link
);
1144 * xt_hook_unlink - remove hooks for a table
1145 * @ops: nf_hook_ops array as returned by nf_hook_link
1146 * @hook_mask: the very same mask that was passed to nf_hook_link
1148 void xt_hook_unlink(const struct xt_table
*table
, struct nf_hook_ops
*ops
)
1150 nf_unregister_hooks(ops
, hweight32(table
->valid_hooks
));
1153 EXPORT_SYMBOL_GPL(xt_hook_unlink
);
1155 int xt_proto_init(struct net
*net
, u_int8_t af
)
1157 #ifdef CONFIG_PROC_FS
1158 char buf
[XT_FUNCTION_MAXNAMELEN
];
1159 struct proc_dir_entry
*proc
;
1162 if (af
>= ARRAY_SIZE(xt_prefix
))
1166 #ifdef CONFIG_PROC_FS
1167 strlcpy(buf
, xt_prefix
[af
], sizeof(buf
));
1168 strlcat(buf
, FORMAT_TABLES
, sizeof(buf
));
1169 proc
= proc_create_data(buf
, 0440, net
->proc_net
, &xt_table_ops
,
1170 (void *)(unsigned long)af
);
1174 strlcpy(buf
, xt_prefix
[af
], sizeof(buf
));
1175 strlcat(buf
, FORMAT_MATCHES
, sizeof(buf
));
1176 proc
= proc_create_data(buf
, 0440, net
->proc_net
, &xt_match_ops
,
1177 (void *)(unsigned long)af
);
1179 goto out_remove_tables
;
1181 strlcpy(buf
, xt_prefix
[af
], sizeof(buf
));
1182 strlcat(buf
, FORMAT_TARGETS
, sizeof(buf
));
1183 proc
= proc_create_data(buf
, 0440, net
->proc_net
, &xt_target_ops
,
1184 (void *)(unsigned long)af
);
1186 goto out_remove_matches
;
1191 #ifdef CONFIG_PROC_FS
1193 strlcpy(buf
, xt_prefix
[af
], sizeof(buf
));
1194 strlcat(buf
, FORMAT_MATCHES
, sizeof(buf
));
1195 proc_net_remove(net
, buf
);
1198 strlcpy(buf
, xt_prefix
[af
], sizeof(buf
));
1199 strlcat(buf
, FORMAT_TABLES
, sizeof(buf
));
1200 proc_net_remove(net
, buf
);
1205 EXPORT_SYMBOL_GPL(xt_proto_init
);
1207 void xt_proto_fini(struct net
*net
, u_int8_t af
)
1209 #ifdef CONFIG_PROC_FS
1210 char buf
[XT_FUNCTION_MAXNAMELEN
];
1212 strlcpy(buf
, xt_prefix
[af
], sizeof(buf
));
1213 strlcat(buf
, FORMAT_TABLES
, sizeof(buf
));
1214 proc_net_remove(net
, buf
);
1216 strlcpy(buf
, xt_prefix
[af
], sizeof(buf
));
1217 strlcat(buf
, FORMAT_TARGETS
, sizeof(buf
));
1218 proc_net_remove(net
, buf
);
1220 strlcpy(buf
, xt_prefix
[af
], sizeof(buf
));
1221 strlcat(buf
, FORMAT_MATCHES
, sizeof(buf
));
1222 proc_net_remove(net
, buf
);
1223 #endif /*CONFIG_PROC_FS*/
1225 EXPORT_SYMBOL_GPL(xt_proto_fini
);
1227 static int __net_init
xt_net_init(struct net
*net
)
1231 for (i
= 0; i
< NFPROTO_NUMPROTO
; i
++)
1232 INIT_LIST_HEAD(&net
->xt
.tables
[i
]);
1236 static struct pernet_operations xt_net_ops
= {
1237 .init
= xt_net_init
,
1240 static int __init
xt_init(void)
1245 for_each_possible_cpu(i
) {
1246 struct xt_info_lock
*lock
= &per_cpu(xt_info_locks
, i
);
1247 spin_lock_init(&lock
->lock
);
1251 xt
= kmalloc(sizeof(struct xt_af
) * NFPROTO_NUMPROTO
, GFP_KERNEL
);
1255 for (i
= 0; i
< NFPROTO_NUMPROTO
; i
++) {
1256 mutex_init(&xt
[i
].mutex
);
1257 #ifdef CONFIG_COMPAT
1258 mutex_init(&xt
[i
].compat_mutex
);
1259 xt
[i
].compat_offsets
= NULL
;
1261 INIT_LIST_HEAD(&xt
[i
].target
);
1262 INIT_LIST_HEAD(&xt
[i
].match
);
1264 rv
= register_pernet_subsys(&xt_net_ops
);
1270 static void __exit
xt_fini(void)
1272 unregister_pernet_subsys(&xt_net_ops
);
1276 module_init(xt_init
);
1277 module_exit(xt_fini
);