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CommitLineData
2e4e6a17
HW
1/*
2 * x_tables core - Backend for {ip,ip6,arp}_tables
3 *
4 * Copyright (C) 2006-2006 Harald Welte <laforge@netfilter.org>
f229f6ce 5 * Copyright (C) 2006-2012 Patrick McHardy <kaber@trash.net>
2e4e6a17
HW
6 *
7 * Based on existing ip_tables code which is
8 * Copyright (C) 1999 Paul `Rusty' Russell & Michael J. Neuling
9 * Copyright (C) 2000-2005 Netfilter Core Team <coreteam@netfilter.org>
10 *
11 * This program is free software; you can redistribute it and/or modify
12 * it under the terms of the GNU General Public License version 2 as
13 * published by the Free Software Foundation.
14 *
15 */
be91fd5e 16#define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
2e4e6a17 17#include <linux/kernel.h>
3a9a231d 18#include <linux/module.h>
2e4e6a17
HW
19#include <linux/socket.h>
20#include <linux/net.h>
21#include <linux/proc_fs.h>
22#include <linux/seq_file.h>
23#include <linux/string.h>
24#include <linux/vmalloc.h>
9e19bb6d 25#include <linux/mutex.h>
d7fe0f24 26#include <linux/mm.h>
5a0e3ad6 27#include <linux/slab.h>
fbabf31e 28#include <linux/audit.h>
f13f2aee 29#include <linux/user_namespace.h>
457c4cbc 30#include <net/net_namespace.h>
2e4e6a17
HW
31
32#include <linux/netfilter/x_tables.h>
33#include <linux/netfilter_arp.h>
e3eaa991
JE
34#include <linux/netfilter_ipv4/ip_tables.h>
35#include <linux/netfilter_ipv6/ip6_tables.h>
36#include <linux/netfilter_arp/arp_tables.h>
9e19bb6d 37
2e4e6a17
HW
38MODULE_LICENSE("GPL");
39MODULE_AUTHOR("Harald Welte <laforge@netfilter.org>");
043ef46c 40MODULE_DESCRIPTION("{ip,ip6,arp,eb}_tables backend module");
2e4e6a17
HW
41
42#define SMP_ALIGN(x) (((x) + SMP_CACHE_BYTES-1) & ~(SMP_CACHE_BYTES-1))
ae0ac0ed 43#define XT_PCPU_BLOCK_SIZE 4096
2e4e6a17 44
b386d9f5 45struct compat_delta {
255d0dc3
ED
46 unsigned int offset; /* offset in kernel */
47 int delta; /* delta in 32bit user land */
b386d9f5
PM
48};
49
2e4e6a17 50struct xt_af {
9e19bb6d 51 struct mutex mutex;
2e4e6a17
HW
52 struct list_head match;
53 struct list_head target;
b386d9f5 54#ifdef CONFIG_COMPAT
2722971c 55 struct mutex compat_mutex;
255d0dc3
ED
56 struct compat_delta *compat_tab;
57 unsigned int number; /* number of slots in compat_tab[] */
58 unsigned int cur; /* number of used slots in compat_tab[] */
b386d9f5 59#endif
2e4e6a17
HW
60};
61
62static struct xt_af *xt;
63
7e9c6eeb
JE
64static 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",
37f9f733
PM
70};
71
2e4e6a17 72/* Registration hooks for targets. */
7926dbfa 73int xt_register_target(struct xt_target *target)
2e4e6a17 74{
76108cea 75 u_int8_t af = target->family;
2e4e6a17 76
7926dbfa 77 mutex_lock(&xt[af].mutex);
2e4e6a17 78 list_add(&target->list, &xt[af].target);
9e19bb6d 79 mutex_unlock(&xt[af].mutex);
7926dbfa 80 return 0;
2e4e6a17
HW
81}
82EXPORT_SYMBOL(xt_register_target);
83
84void
a45049c5 85xt_unregister_target(struct xt_target *target)
2e4e6a17 86{
76108cea 87 u_int8_t af = target->family;
a45049c5 88
9e19bb6d 89 mutex_lock(&xt[af].mutex);
df0933dc 90 list_del(&target->list);
9e19bb6d 91 mutex_unlock(&xt[af].mutex);
2e4e6a17
HW
92}
93EXPORT_SYMBOL(xt_unregister_target);
94
52d9c42e
PM
95int
96xt_register_targets(struct xt_target *target, unsigned int n)
97{
98 unsigned int i;
99 int err = 0;
100
101 for (i = 0; i < n; i++) {
102 err = xt_register_target(&target[i]);
103 if (err)
104 goto err;
105 }
106 return err;
107
108err:
109 if (i > 0)
110 xt_unregister_targets(target, i);
111 return err;
112}
113EXPORT_SYMBOL(xt_register_targets);
114
115void
116xt_unregister_targets(struct xt_target *target, unsigned int n)
117{
f68c5301
CG
118 while (n-- > 0)
119 xt_unregister_target(&target[n]);
52d9c42e
PM
120}
121EXPORT_SYMBOL(xt_unregister_targets);
122
7926dbfa 123int xt_register_match(struct xt_match *match)
2e4e6a17 124{
76108cea 125 u_int8_t af = match->family;
2e4e6a17 126
7926dbfa 127 mutex_lock(&xt[af].mutex);
2e4e6a17 128 list_add(&match->list, &xt[af].match);
9e19bb6d 129 mutex_unlock(&xt[af].mutex);
7926dbfa 130 return 0;
2e4e6a17
HW
131}
132EXPORT_SYMBOL(xt_register_match);
133
134void
a45049c5 135xt_unregister_match(struct xt_match *match)
2e4e6a17 136{
76108cea 137 u_int8_t af = match->family;
a45049c5 138
9e19bb6d 139 mutex_lock(&xt[af].mutex);
df0933dc 140 list_del(&match->list);
9e19bb6d 141 mutex_unlock(&xt[af].mutex);
2e4e6a17
HW
142}
143EXPORT_SYMBOL(xt_unregister_match);
144
52d9c42e
PM
145int
146xt_register_matches(struct xt_match *match, unsigned int n)
147{
148 unsigned int i;
149 int err = 0;
150
151 for (i = 0; i < n; i++) {
152 err = xt_register_match(&match[i]);
153 if (err)
154 goto err;
155 }
156 return err;
157
158err:
159 if (i > 0)
160 xt_unregister_matches(match, i);
161 return err;
162}
163EXPORT_SYMBOL(xt_register_matches);
164
165void
166xt_unregister_matches(struct xt_match *match, unsigned int n)
167{
f68c5301
CG
168 while (n-- > 0)
169 xt_unregister_match(&match[n]);
52d9c42e
PM
170}
171EXPORT_SYMBOL(xt_unregister_matches);
172
2e4e6a17
HW
173
174/*
175 * These are weird, but module loading must not be done with mutex
176 * held (since they will register), and we have to have a single
adb00ae2 177 * function to use.
2e4e6a17
HW
178 */
179
180/* Find match, grabs ref. Returns ERR_PTR() on error. */
76108cea 181struct xt_match *xt_find_match(u8 af, const char *name, u8 revision)
2e4e6a17
HW
182{
183 struct xt_match *m;
42046e2e 184 int err = -ENOENT;
2e4e6a17 185
7926dbfa 186 mutex_lock(&xt[af].mutex);
2e4e6a17
HW
187 list_for_each_entry(m, &xt[af].match, list) {
188 if (strcmp(m->name, name) == 0) {
189 if (m->revision == revision) {
190 if (try_module_get(m->me)) {
9e19bb6d 191 mutex_unlock(&xt[af].mutex);
2e4e6a17
HW
192 return m;
193 }
194 } else
195 err = -EPROTOTYPE; /* Found something. */
196 }
197 }
9e19bb6d 198 mutex_unlock(&xt[af].mutex);
55b69e91
JE
199
200 if (af != NFPROTO_UNSPEC)
201 /* Try searching again in the family-independent list */
202 return xt_find_match(NFPROTO_UNSPEC, name, revision);
203
2e4e6a17
HW
204 return ERR_PTR(err);
205}
206EXPORT_SYMBOL(xt_find_match);
207
fd0ec0e6
JE
208struct xt_match *
209xt_request_find_match(uint8_t nfproto, const char *name, uint8_t revision)
210{
211 struct xt_match *match;
212
adb00ae2
SH
213 match = xt_find_match(nfproto, name, revision);
214 if (IS_ERR(match)) {
215 request_module("%st_%s", xt_prefix[nfproto], name);
216 match = xt_find_match(nfproto, name, revision);
217 }
218
219 return match;
fd0ec0e6
JE
220}
221EXPORT_SYMBOL_GPL(xt_request_find_match);
222
2e4e6a17 223/* Find target, grabs ref. Returns ERR_PTR() on error. */
76108cea 224struct xt_target *xt_find_target(u8 af, const char *name, u8 revision)
2e4e6a17
HW
225{
226 struct xt_target *t;
42046e2e 227 int err = -ENOENT;
2e4e6a17 228
7926dbfa 229 mutex_lock(&xt[af].mutex);
2e4e6a17
HW
230 list_for_each_entry(t, &xt[af].target, list) {
231 if (strcmp(t->name, name) == 0) {
232 if (t->revision == revision) {
233 if (try_module_get(t->me)) {
9e19bb6d 234 mutex_unlock(&xt[af].mutex);
2e4e6a17
HW
235 return t;
236 }
237 } else
238 err = -EPROTOTYPE; /* Found something. */
239 }
240 }
9e19bb6d 241 mutex_unlock(&xt[af].mutex);
55b69e91
JE
242
243 if (af != NFPROTO_UNSPEC)
244 /* Try searching again in the family-independent list */
245 return xt_find_target(NFPROTO_UNSPEC, name, revision);
246
2e4e6a17
HW
247 return ERR_PTR(err);
248}
249EXPORT_SYMBOL(xt_find_target);
250
76108cea 251struct xt_target *xt_request_find_target(u8 af, const char *name, u8 revision)
2e4e6a17
HW
252{
253 struct xt_target *target;
254
adb00ae2
SH
255 target = xt_find_target(af, name, revision);
256 if (IS_ERR(target)) {
257 request_module("%st_%s", xt_prefix[af], name);
258 target = xt_find_target(af, name, revision);
259 }
260
261 return target;
2e4e6a17
HW
262}
263EXPORT_SYMBOL_GPL(xt_request_find_target);
264
f32815d2
WB
265
266static int xt_obj_to_user(u16 __user *psize, u16 size,
267 void __user *pname, const char *name,
268 u8 __user *prev, u8 rev)
269{
270 if (put_user(size, psize))
271 return -EFAULT;
272 if (copy_to_user(pname, name, strlen(name) + 1))
273 return -EFAULT;
274 if (put_user(rev, prev))
275 return -EFAULT;
276
277 return 0;
278}
279
280#define XT_OBJ_TO_USER(U, K, TYPE, C_SIZE) \
281 xt_obj_to_user(&U->u.TYPE##_size, C_SIZE ? : K->u.TYPE##_size, \
282 U->u.user.name, K->u.kernel.TYPE->name, \
283 &U->u.user.revision, K->u.kernel.TYPE->revision)
284
285int xt_data_to_user(void __user *dst, const void *src,
324318f0 286 int usersize, int size, int aligned_size)
f32815d2
WB
287{
288 usersize = usersize ? : size;
289 if (copy_to_user(dst, src, usersize))
290 return -EFAULT;
324318f0
WB
291 if (usersize != aligned_size &&
292 clear_user(dst + usersize, aligned_size - usersize))
f32815d2
WB
293 return -EFAULT;
294
295 return 0;
296}
297EXPORT_SYMBOL_GPL(xt_data_to_user);
298
751a9c76 299#define XT_DATA_TO_USER(U, K, TYPE) \
f32815d2
WB
300 xt_data_to_user(U->data, K->data, \
301 K->u.kernel.TYPE->usersize, \
751a9c76
WB
302 K->u.kernel.TYPE->TYPE##size, \
303 XT_ALIGN(K->u.kernel.TYPE->TYPE##size))
f32815d2
WB
304
305int xt_match_to_user(const struct xt_entry_match *m,
306 struct xt_entry_match __user *u)
307{
308 return XT_OBJ_TO_USER(u, m, match, 0) ||
751a9c76 309 XT_DATA_TO_USER(u, m, match);
f32815d2
WB
310}
311EXPORT_SYMBOL_GPL(xt_match_to_user);
312
313int xt_target_to_user(const struct xt_entry_target *t,
314 struct xt_entry_target __user *u)
315{
316 return XT_OBJ_TO_USER(u, t, target, 0) ||
751a9c76 317 XT_DATA_TO_USER(u, t, target);
f32815d2
WB
318}
319EXPORT_SYMBOL_GPL(xt_target_to_user);
320
76108cea 321static int match_revfn(u8 af, const char *name, u8 revision, int *bestp)
2e4e6a17 322{
5452e425 323 const struct xt_match *m;
2e4e6a17
HW
324 int have_rev = 0;
325
326 list_for_each_entry(m, &xt[af].match, list) {
327 if (strcmp(m->name, name) == 0) {
328 if (m->revision > *bestp)
329 *bestp = m->revision;
330 if (m->revision == revision)
331 have_rev = 1;
332 }
333 }
656caff2
PM
334
335 if (af != NFPROTO_UNSPEC && !have_rev)
336 return match_revfn(NFPROTO_UNSPEC, name, revision, bestp);
337
2e4e6a17
HW
338 return have_rev;
339}
340
76108cea 341static int target_revfn(u8 af, const char *name, u8 revision, int *bestp)
2e4e6a17 342{
5452e425 343 const struct xt_target *t;
2e4e6a17
HW
344 int have_rev = 0;
345
346 list_for_each_entry(t, &xt[af].target, list) {
347 if (strcmp(t->name, name) == 0) {
348 if (t->revision > *bestp)
349 *bestp = t->revision;
350 if (t->revision == revision)
351 have_rev = 1;
352 }
353 }
656caff2
PM
354
355 if (af != NFPROTO_UNSPEC && !have_rev)
356 return target_revfn(NFPROTO_UNSPEC, name, revision, bestp);
357
2e4e6a17
HW
358 return have_rev;
359}
360
361/* Returns true or false (if no such extension at all) */
76108cea 362int xt_find_revision(u8 af, const char *name, u8 revision, int target,
2e4e6a17
HW
363 int *err)
364{
365 int have_rev, best = -1;
366
7926dbfa 367 mutex_lock(&xt[af].mutex);
2e4e6a17
HW
368 if (target == 1)
369 have_rev = target_revfn(af, name, revision, &best);
370 else
371 have_rev = match_revfn(af, name, revision, &best);
9e19bb6d 372 mutex_unlock(&xt[af].mutex);
2e4e6a17
HW
373
374 /* Nothing at all? Return 0 to try loading module. */
375 if (best == -1) {
376 *err = -ENOENT;
377 return 0;
378 }
379
380 *err = best;
381 if (!have_rev)
382 *err = -EPROTONOSUPPORT;
383 return 1;
384}
385EXPORT_SYMBOL_GPL(xt_find_revision);
386
5b76c494
JE
387static char *
388textify_hooks(char *buf, size_t size, unsigned int mask, uint8_t nfproto)
45185364 389{
5b76c494 390 static const char *const inetbr_names[] = {
45185364
JE
391 "PREROUTING", "INPUT", "FORWARD",
392 "OUTPUT", "POSTROUTING", "BROUTING",
393 };
5b76c494
JE
394 static const char *const arp_names[] = {
395 "INPUT", "FORWARD", "OUTPUT",
396 };
397 const char *const *names;
398 unsigned int i, max;
45185364
JE
399 char *p = buf;
400 bool np = false;
401 int res;
402
5b76c494
JE
403 names = (nfproto == NFPROTO_ARP) ? arp_names : inetbr_names;
404 max = (nfproto == NFPROTO_ARP) ? ARRAY_SIZE(arp_names) :
405 ARRAY_SIZE(inetbr_names);
45185364 406 *p = '\0';
5b76c494 407 for (i = 0; i < max; ++i) {
45185364
JE
408 if (!(mask & (1 << i)))
409 continue;
410 res = snprintf(p, size, "%s%s", np ? "/" : "", names[i]);
411 if (res > 0) {
412 size -= res;
413 p += res;
414 }
415 np = true;
416 }
417
418 return buf;
419}
420
916a917d 421int xt_check_match(struct xt_mtchk_param *par,
9b4fce7a 422 unsigned int size, u_int8_t proto, bool inv_proto)
37f9f733 423{
bd414ee6
JE
424 int ret;
425
9b4fce7a
JE
426 if (XT_ALIGN(par->match->matchsize) != size &&
427 par->match->matchsize != -1) {
043ef46c
JE
428 /*
429 * ebt_among is exempt from centralized matchsize checking
430 * because it uses a dynamic-size data set.
431 */
b402405d
JE
432 pr_err("%s_tables: %s.%u match: invalid size "
433 "%u (kernel) != (user) %u\n",
916a917d 434 xt_prefix[par->family], par->match->name,
b402405d 435 par->match->revision,
9b4fce7a 436 XT_ALIGN(par->match->matchsize), size);
37f9f733
PM
437 return -EINVAL;
438 }
9b4fce7a
JE
439 if (par->match->table != NULL &&
440 strcmp(par->match->table, par->table) != 0) {
3dd5d7e3 441 pr_err("%s_tables: %s match: only valid in %s table, not %s\n",
916a917d 442 xt_prefix[par->family], par->match->name,
9b4fce7a 443 par->match->table, par->table);
37f9f733
PM
444 return -EINVAL;
445 }
9b4fce7a 446 if (par->match->hooks && (par->hook_mask & ~par->match->hooks) != 0) {
45185364
JE
447 char used[64], allow[64];
448
3dd5d7e3 449 pr_err("%s_tables: %s match: used from hooks %s, but only "
45185364 450 "valid from %s\n",
916a917d 451 xt_prefix[par->family], par->match->name,
5b76c494
JE
452 textify_hooks(used, sizeof(used), par->hook_mask,
453 par->family),
454 textify_hooks(allow, sizeof(allow), par->match->hooks,
455 par->family));
37f9f733
PM
456 return -EINVAL;
457 }
9b4fce7a 458 if (par->match->proto && (par->match->proto != proto || inv_proto)) {
3dd5d7e3 459 pr_err("%s_tables: %s match: only valid for protocol %u\n",
916a917d
JE
460 xt_prefix[par->family], par->match->name,
461 par->match->proto);
37f9f733
PM
462 return -EINVAL;
463 }
bd414ee6
JE
464 if (par->match->checkentry != NULL) {
465 ret = par->match->checkentry(par);
466 if (ret < 0)
467 return ret;
468 else if (ret > 0)
469 /* Flag up potential errors. */
470 return -EIO;
471 }
37f9f733
PM
472 return 0;
473}
474EXPORT_SYMBOL_GPL(xt_check_match);
475
13631bfc
FW
476/** xt_check_entry_match - check that matches end before start of target
477 *
478 * @match: beginning of xt_entry_match
479 * @target: beginning of this rules target (alleged end of matches)
480 * @alignment: alignment requirement of match structures
481 *
482 * Validates that all matches add up to the beginning of the target,
483 * and that each match covers at least the base structure size.
484 *
485 * Return: 0 on success, negative errno on failure.
486 */
487static int xt_check_entry_match(const char *match, const char *target,
488 const size_t alignment)
489{
490 const struct xt_entry_match *pos;
491 int length = target - match;
492
493 if (length == 0) /* no matches */
494 return 0;
495
496 pos = (struct xt_entry_match *)match;
497 do {
498 if ((unsigned long)pos % alignment)
499 return -EINVAL;
500
501 if (length < (int)sizeof(struct xt_entry_match))
502 return -EINVAL;
503
504 if (pos->u.match_size < sizeof(struct xt_entry_match))
505 return -EINVAL;
506
507 if (pos->u.match_size > length)
508 return -EINVAL;
509
510 length -= pos->u.match_size;
511 pos = ((void *)((char *)(pos) + (pos)->u.match_size));
512 } while (length > 0);
513
514 return 0;
515}
516
2722971c 517#ifdef CONFIG_COMPAT
255d0dc3 518int xt_compat_add_offset(u_int8_t af, unsigned int offset, int delta)
b386d9f5 519{
255d0dc3 520 struct xt_af *xp = &xt[af];
b386d9f5 521
255d0dc3
ED
522 if (!xp->compat_tab) {
523 if (!xp->number)
524 return -EINVAL;
525 xp->compat_tab = vmalloc(sizeof(struct compat_delta) * xp->number);
526 if (!xp->compat_tab)
527 return -ENOMEM;
528 xp->cur = 0;
529 }
b386d9f5 530
255d0dc3
ED
531 if (xp->cur >= xp->number)
532 return -EINVAL;
b386d9f5 533
255d0dc3
ED
534 if (xp->cur)
535 delta += xp->compat_tab[xp->cur - 1].delta;
536 xp->compat_tab[xp->cur].offset = offset;
537 xp->compat_tab[xp->cur].delta = delta;
538 xp->cur++;
b386d9f5
PM
539 return 0;
540}
541EXPORT_SYMBOL_GPL(xt_compat_add_offset);
542
76108cea 543void xt_compat_flush_offsets(u_int8_t af)
b386d9f5 544{
255d0dc3
ED
545 if (xt[af].compat_tab) {
546 vfree(xt[af].compat_tab);
547 xt[af].compat_tab = NULL;
548 xt[af].number = 0;
5a6351ee 549 xt[af].cur = 0;
b386d9f5
PM
550 }
551}
552EXPORT_SYMBOL_GPL(xt_compat_flush_offsets);
553
3e5e524f 554int xt_compat_calc_jump(u_int8_t af, unsigned int offset)
b386d9f5 555{
255d0dc3
ED
556 struct compat_delta *tmp = xt[af].compat_tab;
557 int mid, left = 0, right = xt[af].cur - 1;
558
559 while (left <= right) {
560 mid = (left + right) >> 1;
561 if (offset > tmp[mid].offset)
562 left = mid + 1;
563 else if (offset < tmp[mid].offset)
564 right = mid - 1;
565 else
566 return mid ? tmp[mid - 1].delta : 0;
567 }
5a6351ee 568 return left ? tmp[left - 1].delta : 0;
b386d9f5
PM
569}
570EXPORT_SYMBOL_GPL(xt_compat_calc_jump);
571
255d0dc3
ED
572void xt_compat_init_offsets(u_int8_t af, unsigned int number)
573{
574 xt[af].number = number;
575 xt[af].cur = 0;
576}
577EXPORT_SYMBOL(xt_compat_init_offsets);
578
5452e425 579int xt_compat_match_offset(const struct xt_match *match)
2722971c 580{
9fa492cd
PM
581 u_int16_t csize = match->compatsize ? : match->matchsize;
582 return XT_ALIGN(match->matchsize) - COMPAT_XT_ALIGN(csize);
583}
584EXPORT_SYMBOL_GPL(xt_compat_match_offset);
585
0188346f
FW
586void xt_compat_match_from_user(struct xt_entry_match *m, void **dstptr,
587 unsigned int *size)
9fa492cd 588{
5452e425 589 const struct xt_match *match = m->u.kernel.match;
9fa492cd
PM
590 struct compat_xt_entry_match *cm = (struct compat_xt_entry_match *)m;
591 int pad, off = xt_compat_match_offset(match);
592 u_int16_t msize = cm->u.user.match_size;
09d96860 593 char name[sizeof(m->u.user.name)];
9fa492cd
PM
594
595 m = *dstptr;
596 memcpy(m, cm, sizeof(*cm));
597 if (match->compat_from_user)
598 match->compat_from_user(m->data, cm->data);
599 else
600 memcpy(m->data, cm->data, msize - sizeof(*cm));
601 pad = XT_ALIGN(match->matchsize) - match->matchsize;
602 if (pad > 0)
603 memset(m->data + match->matchsize, 0, pad);
604
605 msize += off;
606 m->u.user.match_size = msize;
09d96860
FW
607 strlcpy(name, match->name, sizeof(name));
608 module_put(match->me);
609 strncpy(m->u.user.name, name, sizeof(m->u.user.name));
9fa492cd
PM
610
611 *size += off;
612 *dstptr += msize;
613}
614EXPORT_SYMBOL_GPL(xt_compat_match_from_user);
615
751a9c76
WB
616#define COMPAT_XT_DATA_TO_USER(U, K, TYPE, C_SIZE) \
617 xt_data_to_user(U->data, K->data, \
618 K->u.kernel.TYPE->usersize, \
619 C_SIZE, \
620 COMPAT_XT_ALIGN(C_SIZE))
621
739674fb
JE
622int xt_compat_match_to_user(const struct xt_entry_match *m,
623 void __user **dstptr, unsigned int *size)
9fa492cd 624{
5452e425 625 const struct xt_match *match = m->u.kernel.match;
9fa492cd
PM
626 struct compat_xt_entry_match __user *cm = *dstptr;
627 int off = xt_compat_match_offset(match);
628 u_int16_t msize = m->u.user.match_size - off;
629
4915f7bb 630 if (XT_OBJ_TO_USER(cm, m, match, msize))
601e68e1 631 return -EFAULT;
9fa492cd
PM
632
633 if (match->compat_to_user) {
634 if (match->compat_to_user((void __user *)cm->data, m->data))
635 return -EFAULT;
636 } else {
751a9c76 637 if (COMPAT_XT_DATA_TO_USER(cm, m, match, msize - sizeof(*cm)))
9fa492cd 638 return -EFAULT;
2722971c 639 }
9fa492cd
PM
640
641 *size -= off;
642 *dstptr += msize;
643 return 0;
2722971c 644}
9fa492cd 645EXPORT_SYMBOL_GPL(xt_compat_match_to_user);
fc1221b3 646
7ed2abdd
FW
647/* non-compat version may have padding after verdict */
648struct compat_xt_standard_target {
649 struct compat_xt_entry_target t;
650 compat_uint_t verdict;
651};
652
ce683e5f 653int xt_compat_check_entry_offsets(const void *base, const char *elems,
fc1221b3
FW
654 unsigned int target_offset,
655 unsigned int next_offset)
656{
ce683e5f 657 long size_of_base_struct = elems - (const char *)base;
fc1221b3
FW
658 const struct compat_xt_entry_target *t;
659 const char *e = base;
660
ce683e5f
FW
661 if (target_offset < size_of_base_struct)
662 return -EINVAL;
663
fc1221b3
FW
664 if (target_offset + sizeof(*t) > next_offset)
665 return -EINVAL;
666
667 t = (void *)(e + target_offset);
668 if (t->u.target_size < sizeof(*t))
669 return -EINVAL;
670
671 if (target_offset + t->u.target_size > next_offset)
672 return -EINVAL;
673
7ed2abdd 674 if (strcmp(t->u.user.name, XT_STANDARD_TARGET) == 0 &&
7b7eba0f 675 COMPAT_XT_ALIGN(target_offset + sizeof(struct compat_xt_standard_target)) != next_offset)
7ed2abdd
FW
676 return -EINVAL;
677
550116d2 678 /* compat_xt_entry match has less strict alignment requirements,
13631bfc
FW
679 * otherwise they are identical. In case of padding differences
680 * we need to add compat version of xt_check_entry_match.
681 */
682 BUILD_BUG_ON(sizeof(struct compat_xt_entry_match) != sizeof(struct xt_entry_match));
683
684 return xt_check_entry_match(elems, base + target_offset,
685 __alignof__(struct compat_xt_entry_match));
fc1221b3
FW
686}
687EXPORT_SYMBOL(xt_compat_check_entry_offsets);
9fa492cd 688#endif /* CONFIG_COMPAT */
2722971c 689
7d35812c
FW
690/**
691 * xt_check_entry_offsets - validate arp/ip/ip6t_entry
692 *
693 * @base: pointer to arp/ip/ip6t_entry
ce683e5f 694 * @elems: pointer to first xt_entry_match, i.e. ip(6)t_entry->elems
7d35812c
FW
695 * @target_offset: the arp/ip/ip6_t->target_offset
696 * @next_offset: the arp/ip/ip6_t->next_offset
697 *
13631bfc
FW
698 * validates that target_offset and next_offset are sane and that all
699 * match sizes (if any) align with the target offset.
7d35812c 700 *
ce683e5f 701 * This function does not validate the targets or matches themselves, it
13631bfc
FW
702 * only tests that all the offsets and sizes are correct, that all
703 * match structures are aligned, and that the last structure ends where
704 * the target structure begins.
705 *
706 * Also see xt_compat_check_entry_offsets for CONFIG_COMPAT version.
ce683e5f 707 *
7d35812c
FW
708 * The arp/ip/ip6t_entry structure @base must have passed following tests:
709 * - it must point to a valid memory location
710 * - base to base + next_offset must be accessible, i.e. not exceed allocated
711 * length.
712 *
13631bfc
FW
713 * A well-formed entry looks like this:
714 *
715 * ip(6)t_entry match [mtdata] match [mtdata] target [tgdata] ip(6)t_entry
716 * e->elems[]-----' | |
717 * matchsize | |
718 * matchsize | |
719 * | |
720 * target_offset---------------------------------' |
721 * next_offset---------------------------------------------------'
722 *
723 * elems[]: flexible array member at end of ip(6)/arpt_entry struct.
724 * This is where matches (if any) and the target reside.
725 * target_offset: beginning of target.
726 * next_offset: start of the next rule; also: size of this rule.
727 * Since targets have a minimum size, target_offset + minlen <= next_offset.
728 *
729 * Every match stores its size, sum of sizes must not exceed target_offset.
730 *
7d35812c
FW
731 * Return: 0 on success, negative errno on failure.
732 */
733int xt_check_entry_offsets(const void *base,
ce683e5f 734 const char *elems,
7d35812c
FW
735 unsigned int target_offset,
736 unsigned int next_offset)
737{
ce683e5f 738 long size_of_base_struct = elems - (const char *)base;
7d35812c
FW
739 const struct xt_entry_target *t;
740 const char *e = base;
741
ce683e5f
FW
742 /* target start is within the ip/ip6/arpt_entry struct */
743 if (target_offset < size_of_base_struct)
744 return -EINVAL;
745
7d35812c
FW
746 if (target_offset + sizeof(*t) > next_offset)
747 return -EINVAL;
748
749 t = (void *)(e + target_offset);
a08e4e19
FW
750 if (t->u.target_size < sizeof(*t))
751 return -EINVAL;
752
7d35812c
FW
753 if (target_offset + t->u.target_size > next_offset)
754 return -EINVAL;
755
7ed2abdd 756 if (strcmp(t->u.user.name, XT_STANDARD_TARGET) == 0 &&
7b7eba0f 757 XT_ALIGN(target_offset + sizeof(struct xt_standard_target)) != next_offset)
7ed2abdd
FW
758 return -EINVAL;
759
13631bfc
FW
760 return xt_check_entry_match(elems, base + target_offset,
761 __alignof__(struct xt_entry_match));
7d35812c
FW
762}
763EXPORT_SYMBOL(xt_check_entry_offsets);
764
f4dc7771
FW
765/**
766 * xt_alloc_entry_offsets - allocate array to store rule head offsets
767 *
768 * @size: number of entries
769 *
770 * Return: NULL or kmalloc'd or vmalloc'd array
771 */
772unsigned int *xt_alloc_entry_offsets(unsigned int size)
773{
752ade68 774 return kvmalloc_array(size, sizeof(unsigned int), GFP_KERNEL | __GFP_ZERO);
f4dc7771 775
f4dc7771
FW
776}
777EXPORT_SYMBOL(xt_alloc_entry_offsets);
778
779/**
780 * xt_find_jump_offset - check if target is a valid jump offset
781 *
782 * @offsets: array containing all valid rule start offsets of a rule blob
783 * @target: the jump target to search for
784 * @size: entries in @offset
785 */
786bool xt_find_jump_offset(const unsigned int *offsets,
787 unsigned int target, unsigned int size)
788{
789 int m, low = 0, hi = size;
790
791 while (hi > low) {
792 m = (low + hi) / 2u;
793
794 if (offsets[m] > target)
795 hi = m;
796 else if (offsets[m] < target)
797 low = m + 1;
798 else
799 return true;
800 }
801
802 return false;
803}
804EXPORT_SYMBOL(xt_find_jump_offset);
805
916a917d 806int xt_check_target(struct xt_tgchk_param *par,
af5d6dc2 807 unsigned int size, u_int8_t proto, bool inv_proto)
37f9f733 808{
d6b00a53
JE
809 int ret;
810
af5d6dc2 811 if (XT_ALIGN(par->target->targetsize) != size) {
b402405d
JE
812 pr_err("%s_tables: %s.%u target: invalid size "
813 "%u (kernel) != (user) %u\n",
916a917d 814 xt_prefix[par->family], par->target->name,
b402405d 815 par->target->revision,
af5d6dc2 816 XT_ALIGN(par->target->targetsize), size);
37f9f733
PM
817 return -EINVAL;
818 }
af5d6dc2
JE
819 if (par->target->table != NULL &&
820 strcmp(par->target->table, par->table) != 0) {
3dd5d7e3 821 pr_err("%s_tables: %s target: only valid in %s table, not %s\n",
916a917d 822 xt_prefix[par->family], par->target->name,
af5d6dc2 823 par->target->table, par->table);
37f9f733
PM
824 return -EINVAL;
825 }
af5d6dc2 826 if (par->target->hooks && (par->hook_mask & ~par->target->hooks) != 0) {
45185364
JE
827 char used[64], allow[64];
828
3dd5d7e3 829 pr_err("%s_tables: %s target: used from hooks %s, but only "
45185364 830 "usable from %s\n",
916a917d 831 xt_prefix[par->family], par->target->name,
5b76c494
JE
832 textify_hooks(used, sizeof(used), par->hook_mask,
833 par->family),
834 textify_hooks(allow, sizeof(allow), par->target->hooks,
835 par->family));
37f9f733
PM
836 return -EINVAL;
837 }
af5d6dc2 838 if (par->target->proto && (par->target->proto != proto || inv_proto)) {
3dd5d7e3 839 pr_err("%s_tables: %s target: only valid for protocol %u\n",
916a917d 840 xt_prefix[par->family], par->target->name,
af5d6dc2 841 par->target->proto);
37f9f733
PM
842 return -EINVAL;
843 }
d6b00a53
JE
844 if (par->target->checkentry != NULL) {
845 ret = par->target->checkentry(par);
846 if (ret < 0)
847 return ret;
848 else if (ret > 0)
849 /* Flag up potential errors. */
850 return -EIO;
851 }
37f9f733
PM
852 return 0;
853}
854EXPORT_SYMBOL_GPL(xt_check_target);
855
d7591f0c
FW
856/**
857 * xt_copy_counters_from_user - copy counters and metadata from userspace
858 *
859 * @user: src pointer to userspace memory
860 * @len: alleged size of userspace memory
861 * @info: where to store the xt_counters_info metadata
862 * @compat: true if we setsockopt call is done by 32bit task on 64bit kernel
863 *
864 * Copies counter meta data from @user and stores it in @info.
865 *
866 * vmallocs memory to hold the counters, then copies the counter data
867 * from @user to the new memory and returns a pointer to it.
868 *
869 * If @compat is true, @info gets converted automatically to the 64bit
870 * representation.
871 *
872 * The metadata associated with the counters is stored in @info.
873 *
874 * Return: returns pointer that caller has to test via IS_ERR().
875 * If IS_ERR is false, caller has to vfree the pointer.
876 */
877void *xt_copy_counters_from_user(const void __user *user, unsigned int len,
878 struct xt_counters_info *info, bool compat)
879{
880 void *mem;
881 u64 size;
882
883#ifdef CONFIG_COMPAT
884 if (compat) {
885 /* structures only differ in size due to alignment */
886 struct compat_xt_counters_info compat_tmp;
887
888 if (len <= sizeof(compat_tmp))
889 return ERR_PTR(-EINVAL);
890
891 len -= sizeof(compat_tmp);
892 if (copy_from_user(&compat_tmp, user, sizeof(compat_tmp)) != 0)
893 return ERR_PTR(-EFAULT);
894
e466af75 895 memcpy(info->name, compat_tmp.name, sizeof(info->name) - 1);
d7591f0c
FW
896 info->num_counters = compat_tmp.num_counters;
897 user += sizeof(compat_tmp);
898 } else
899#endif
900 {
901 if (len <= sizeof(*info))
902 return ERR_PTR(-EINVAL);
903
904 len -= sizeof(*info);
905 if (copy_from_user(info, user, sizeof(*info)) != 0)
906 return ERR_PTR(-EFAULT);
907
d7591f0c
FW
908 user += sizeof(*info);
909 }
e466af75 910 info->name[sizeof(info->name) - 1] = '\0';
d7591f0c
FW
911
912 size = sizeof(struct xt_counters);
913 size *= info->num_counters;
914
915 if (size != (u64)len)
916 return ERR_PTR(-EINVAL);
917
918 mem = vmalloc(len);
919 if (!mem)
920 return ERR_PTR(-ENOMEM);
921
922 if (copy_from_user(mem, user, len) == 0)
923 return mem;
924
925 vfree(mem);
926 return ERR_PTR(-EFAULT);
927}
928EXPORT_SYMBOL_GPL(xt_copy_counters_from_user);
929
2722971c 930#ifdef CONFIG_COMPAT
5452e425 931int xt_compat_target_offset(const struct xt_target *target)
2722971c 932{
9fa492cd
PM
933 u_int16_t csize = target->compatsize ? : target->targetsize;
934 return XT_ALIGN(target->targetsize) - COMPAT_XT_ALIGN(csize);
935}
936EXPORT_SYMBOL_GPL(xt_compat_target_offset);
937
938void xt_compat_target_from_user(struct xt_entry_target *t, void **dstptr,
b0a6363c 939 unsigned int *size)
9fa492cd 940{
5452e425 941 const struct xt_target *target = t->u.kernel.target;
9fa492cd
PM
942 struct compat_xt_entry_target *ct = (struct compat_xt_entry_target *)t;
943 int pad, off = xt_compat_target_offset(target);
944 u_int16_t tsize = ct->u.user.target_size;
09d96860 945 char name[sizeof(t->u.user.name)];
9fa492cd
PM
946
947 t = *dstptr;
948 memcpy(t, ct, sizeof(*ct));
949 if (target->compat_from_user)
950 target->compat_from_user(t->data, ct->data);
951 else
952 memcpy(t->data, ct->data, tsize - sizeof(*ct));
953 pad = XT_ALIGN(target->targetsize) - target->targetsize;
954 if (pad > 0)
955 memset(t->data + target->targetsize, 0, pad);
956
957 tsize += off;
958 t->u.user.target_size = tsize;
09d96860
FW
959 strlcpy(name, target->name, sizeof(name));
960 module_put(target->me);
961 strncpy(t->u.user.name, name, sizeof(t->u.user.name));
9fa492cd
PM
962
963 *size += off;
964 *dstptr += tsize;
965}
966EXPORT_SYMBOL_GPL(xt_compat_target_from_user);
967
739674fb
JE
968int xt_compat_target_to_user(const struct xt_entry_target *t,
969 void __user **dstptr, unsigned int *size)
9fa492cd 970{
5452e425 971 const struct xt_target *target = t->u.kernel.target;
9fa492cd
PM
972 struct compat_xt_entry_target __user *ct = *dstptr;
973 int off = xt_compat_target_offset(target);
974 u_int16_t tsize = t->u.user.target_size - off;
975
4915f7bb 976 if (XT_OBJ_TO_USER(ct, t, target, tsize))
601e68e1 977 return -EFAULT;
9fa492cd
PM
978
979 if (target->compat_to_user) {
980 if (target->compat_to_user((void __user *)ct->data, t->data))
981 return -EFAULT;
982 } else {
751a9c76 983 if (COMPAT_XT_DATA_TO_USER(ct, t, target, tsize - sizeof(*ct)))
9fa492cd 984 return -EFAULT;
2722971c 985 }
9fa492cd
PM
986
987 *size -= off;
988 *dstptr += tsize;
989 return 0;
2722971c 990}
9fa492cd 991EXPORT_SYMBOL_GPL(xt_compat_target_to_user);
2722971c
DM
992#endif
993
2e4e6a17
HW
994struct xt_table_info *xt_alloc_table_info(unsigned int size)
995{
711bdde6
ED
996 struct xt_table_info *info = NULL;
997 size_t sz = sizeof(*info) + size;
2e4e6a17 998
d157bd76
FW
999 if (sz < sizeof(*info))
1000 return NULL;
1001
2e4e6a17 1002 /* Pedantry: prevent them from hitting BUG() in vmalloc.c --RR */
4481374c 1003 if ((SMP_ALIGN(size) >> PAGE_SHIFT) + 2 > totalram_pages)
2e4e6a17
HW
1004 return NULL;
1005
eacd86ca
MH
1006 info = kvmalloc(sz, GFP_KERNEL);
1007 if (!info)
1008 return NULL;
1009
711bdde6
ED
1010 memset(info, 0, sizeof(*info));
1011 info->size = size;
1012 return info;
2e4e6a17
HW
1013}
1014EXPORT_SYMBOL(xt_alloc_table_info);
1015
1016void xt_free_table_info(struct xt_table_info *info)
1017{
1018 int cpu;
1019
f3c5c1bf 1020 if (info->jumpstack != NULL) {
f6b50824
ED
1021 for_each_possible_cpu(cpu)
1022 kvfree(info->jumpstack[cpu]);
1023 kvfree(info->jumpstack);
f3c5c1bf
JE
1024 }
1025
711bdde6 1026 kvfree(info);
2e4e6a17
HW
1027}
1028EXPORT_SYMBOL(xt_free_table_info);
1029
eb1a6bdc 1030/* Find table by name, grabs mutex & ref. Returns NULL on error. */
76108cea
JE
1031struct xt_table *xt_find_table_lock(struct net *net, u_int8_t af,
1032 const char *name)
2e4e6a17 1033{
b9e69e12 1034 struct xt_table *t, *found = NULL;
2e4e6a17 1035
7926dbfa 1036 mutex_lock(&xt[af].mutex);
8d870052 1037 list_for_each_entry(t, &net->xt.tables[af], list)
2e4e6a17
HW
1038 if (strcmp(t->name, name) == 0 && try_module_get(t->me))
1039 return t;
b9e69e12
FW
1040
1041 if (net == &init_net)
1042 goto out;
1043
1044 /* Table doesn't exist in this netns, re-try init */
1045 list_for_each_entry(t, &init_net.xt.tables[af], list) {
1046 if (strcmp(t->name, name))
1047 continue;
7dde07e9
DC
1048 if (!try_module_get(t->me)) {
1049 mutex_unlock(&xt[af].mutex);
b9e69e12 1050 return NULL;
7dde07e9 1051 }
b9e69e12
FW
1052
1053 mutex_unlock(&xt[af].mutex);
1054 if (t->table_init(net) != 0) {
1055 module_put(t->me);
1056 return NULL;
1057 }
1058
1059 found = t;
1060
1061 mutex_lock(&xt[af].mutex);
1062 break;
1063 }
1064
1065 if (!found)
1066 goto out;
1067
1068 /* and once again: */
1069 list_for_each_entry(t, &net->xt.tables[af], list)
1070 if (strcmp(t->name, name) == 0)
1071 return t;
1072
1073 module_put(found->me);
1074 out:
9e19bb6d 1075 mutex_unlock(&xt[af].mutex);
2e4e6a17
HW
1076 return NULL;
1077}
1078EXPORT_SYMBOL_GPL(xt_find_table_lock);
1079
1080void xt_table_unlock(struct xt_table *table)
1081{
9e19bb6d 1082 mutex_unlock(&xt[table->af].mutex);
2e4e6a17
HW
1083}
1084EXPORT_SYMBOL_GPL(xt_table_unlock);
1085
2722971c 1086#ifdef CONFIG_COMPAT
76108cea 1087void xt_compat_lock(u_int8_t af)
2722971c
DM
1088{
1089 mutex_lock(&xt[af].compat_mutex);
1090}
1091EXPORT_SYMBOL_GPL(xt_compat_lock);
1092
76108cea 1093void xt_compat_unlock(u_int8_t af)
2722971c
DM
1094{
1095 mutex_unlock(&xt[af].compat_mutex);
1096}
1097EXPORT_SYMBOL_GPL(xt_compat_unlock);
1098#endif
2e4e6a17 1099
7f5c6d4f
ED
1100DEFINE_PER_CPU(seqcount_t, xt_recseq);
1101EXPORT_PER_CPU_SYMBOL_GPL(xt_recseq);
942e4a2b 1102
dcebd315
FW
1103struct static_key xt_tee_enabled __read_mostly;
1104EXPORT_SYMBOL_GPL(xt_tee_enabled);
1105
f3c5c1bf
JE
1106static int xt_jumpstack_alloc(struct xt_table_info *i)
1107{
1108 unsigned int size;
1109 int cpu;
1110
f3c5c1bf
JE
1111 size = sizeof(void **) * nr_cpu_ids;
1112 if (size > PAGE_SIZE)
752ade68 1113 i->jumpstack = kvzalloc(size, GFP_KERNEL);
f3c5c1bf 1114 else
3dbd4439 1115 i->jumpstack = kzalloc(size, GFP_KERNEL);
f3c5c1bf
JE
1116 if (i->jumpstack == NULL)
1117 return -ENOMEM;
f3c5c1bf 1118
98d1bd80
FW
1119 /* ruleset without jumps -- no stack needed */
1120 if (i->stacksize == 0)
1121 return 0;
1122
7814b6ec
FW
1123 /* Jumpstack needs to be able to record two full callchains, one
1124 * from the first rule set traversal, plus one table reentrancy
1125 * via -j TEE without clobbering the callchain that brought us to
1126 * TEE target.
1127 *
1128 * This is done by allocating two jumpstacks per cpu, on reentry
1129 * the upper half of the stack is used.
1130 *
1131 * see the jumpstack setup in ipt_do_table() for more details.
1132 */
1133 size = sizeof(void *) * i->stacksize * 2u;
f3c5c1bf 1134 for_each_possible_cpu(cpu) {
752ade68
MH
1135 i->jumpstack[cpu] = kvmalloc_node(size, GFP_KERNEL,
1136 cpu_to_node(cpu));
f3c5c1bf
JE
1137 if (i->jumpstack[cpu] == NULL)
1138 /*
1139 * Freeing will be done later on by the callers. The
1140 * chain is: xt_replace_table -> __do_replace ->
1141 * do_replace -> xt_free_table_info.
1142 */
1143 return -ENOMEM;
1144 }
1145
1146 return 0;
1147}
942e4a2b 1148
2e4e6a17
HW
1149struct xt_table_info *
1150xt_replace_table(struct xt_table *table,
1151 unsigned int num_counters,
1152 struct xt_table_info *newinfo,
1153 int *error)
1154{
942e4a2b 1155 struct xt_table_info *private;
80055dab 1156 unsigned int cpu;
f3c5c1bf 1157 int ret;
2e4e6a17 1158
d97a9e47
JE
1159 ret = xt_jumpstack_alloc(newinfo);
1160 if (ret < 0) {
1161 *error = ret;
1162 return NULL;
1163 }
1164
2e4e6a17 1165 /* Do the substitution. */
942e4a2b 1166 local_bh_disable();
2e4e6a17 1167 private = table->private;
942e4a2b 1168
2e4e6a17
HW
1169 /* Check inside lock: is the old number correct? */
1170 if (num_counters != private->number) {
be91fd5e 1171 pr_debug("num_counters != table->private->number (%u/%u)\n",
2e4e6a17 1172 num_counters, private->number);
942e4a2b 1173 local_bh_enable();
2e4e6a17
HW
1174 *error = -EAGAIN;
1175 return NULL;
1176 }
2e4e6a17 1177
942e4a2b 1178 newinfo->initial_entries = private->initial_entries;
b416c144
WD
1179 /*
1180 * Ensure contents of newinfo are visible before assigning to
1181 * private.
1182 */
1183 smp_wmb();
1184 table->private = newinfo;
942e4a2b 1185
80055dab
FW
1186 /* make sure all cpus see new ->private value */
1187 smp_wmb();
1188
942e4a2b
SH
1189 /*
1190 * Even though table entries have now been swapped, other CPU's
80055dab 1191 * may still be using the old entries...
942e4a2b
SH
1192 */
1193 local_bh_enable();
1194
80055dab
FW
1195 /* ... so wait for even xt_recseq on all cpus */
1196 for_each_possible_cpu(cpu) {
1197 seqcount_t *s = &per_cpu(xt_recseq, cpu);
1198 u32 seq = raw_read_seqcount(s);
1199
1200 if (seq & 1) {
1201 do {
1202 cond_resched();
1203 cpu_relax();
1204 } while (seq == raw_read_seqcount(s));
1205 }
1206 }
1207
fbabf31e
TG
1208#ifdef CONFIG_AUDIT
1209 if (audit_enabled) {
46b20c38
GT
1210 audit_log(current->audit_context, GFP_KERNEL,
1211 AUDIT_NETFILTER_CFG,
1212 "table=%s family=%u entries=%u",
1213 table->name, table->af, private->number);
fbabf31e
TG
1214 }
1215#endif
1216
942e4a2b 1217 return private;
2e4e6a17
HW
1218}
1219EXPORT_SYMBOL_GPL(xt_replace_table);
1220
35aad0ff
JE
1221struct xt_table *xt_register_table(struct net *net,
1222 const struct xt_table *input_table,
a98da11d
AD
1223 struct xt_table_info *bootstrap,
1224 struct xt_table_info *newinfo)
2e4e6a17
HW
1225{
1226 int ret;
1227 struct xt_table_info *private;
35aad0ff 1228 struct xt_table *t, *table;
2e4e6a17 1229
44d34e72 1230 /* Don't add one object to multiple lists. */
35aad0ff 1231 table = kmemdup(input_table, sizeof(struct xt_table), GFP_KERNEL);
44d34e72
AD
1232 if (!table) {
1233 ret = -ENOMEM;
1234 goto out;
1235 }
1236
7926dbfa 1237 mutex_lock(&xt[table->af].mutex);
2e4e6a17 1238 /* Don't autoload: we'd eat our tail... */
8d870052 1239 list_for_each_entry(t, &net->xt.tables[table->af], list) {
df0933dc
PM
1240 if (strcmp(t->name, table->name) == 0) {
1241 ret = -EEXIST;
1242 goto unlock;
1243 }
2e4e6a17
HW
1244 }
1245
1246 /* Simplifies replace_table code. */
1247 table->private = bootstrap;
78454473 1248
2e4e6a17
HW
1249 if (!xt_replace_table(table, 0, newinfo, &ret))
1250 goto unlock;
1251
1252 private = table->private;
be91fd5e 1253 pr_debug("table->private->number = %u\n", private->number);
2e4e6a17
HW
1254
1255 /* save number of initial entries */
1256 private->initial_entries = private->number;
1257
8d870052 1258 list_add(&table->list, &net->xt.tables[table->af]);
a98da11d
AD
1259 mutex_unlock(&xt[table->af].mutex);
1260 return table;
2e4e6a17 1261
7926dbfa 1262unlock:
9e19bb6d 1263 mutex_unlock(&xt[table->af].mutex);
44d34e72 1264 kfree(table);
a98da11d
AD
1265out:
1266 return ERR_PTR(ret);
2e4e6a17
HW
1267}
1268EXPORT_SYMBOL_GPL(xt_register_table);
1269
1270void *xt_unregister_table(struct xt_table *table)
1271{
1272 struct xt_table_info *private;
1273
9e19bb6d 1274 mutex_lock(&xt[table->af].mutex);
2e4e6a17 1275 private = table->private;
df0933dc 1276 list_del(&table->list);
9e19bb6d 1277 mutex_unlock(&xt[table->af].mutex);
44d34e72 1278 kfree(table);
2e4e6a17
HW
1279
1280 return private;
1281}
1282EXPORT_SYMBOL_GPL(xt_unregister_table);
1283
1284#ifdef CONFIG_PROC_FS
715cf35a
AD
1285struct xt_names_priv {
1286 struct seq_net_private p;
76108cea 1287 u_int8_t af;
715cf35a 1288};
025d93d1 1289static void *xt_table_seq_start(struct seq_file *seq, loff_t *pos)
2e4e6a17 1290{
715cf35a 1291 struct xt_names_priv *priv = seq->private;
1218854a 1292 struct net *net = seq_file_net(seq);
76108cea 1293 u_int8_t af = priv->af;
2e4e6a17 1294
025d93d1 1295 mutex_lock(&xt[af].mutex);
715cf35a 1296 return seq_list_start(&net->xt.tables[af], *pos);
025d93d1 1297}
2e4e6a17 1298
025d93d1
AD
1299static void *xt_table_seq_next(struct seq_file *seq, void *v, loff_t *pos)
1300{
715cf35a 1301 struct xt_names_priv *priv = seq->private;
1218854a 1302 struct net *net = seq_file_net(seq);
76108cea 1303 u_int8_t af = priv->af;
2e4e6a17 1304
715cf35a 1305 return seq_list_next(v, &net->xt.tables[af], pos);
2e4e6a17
HW
1306}
1307
025d93d1 1308static void xt_table_seq_stop(struct seq_file *seq, void *v)
2e4e6a17 1309{
715cf35a 1310 struct xt_names_priv *priv = seq->private;
76108cea 1311 u_int8_t af = priv->af;
2e4e6a17 1312
025d93d1
AD
1313 mutex_unlock(&xt[af].mutex);
1314}
2e4e6a17 1315
025d93d1
AD
1316static int xt_table_seq_show(struct seq_file *seq, void *v)
1317{
1318 struct xt_table *table = list_entry(v, struct xt_table, list);
2e4e6a17 1319
861fb107 1320 if (*table->name)
e71456ae 1321 seq_printf(seq, "%s\n", table->name);
861fb107 1322 return 0;
025d93d1 1323}
601e68e1 1324
025d93d1
AD
1325static const struct seq_operations xt_table_seq_ops = {
1326 .start = xt_table_seq_start,
1327 .next = xt_table_seq_next,
1328 .stop = xt_table_seq_stop,
1329 .show = xt_table_seq_show,
1330};
1331
1332static int xt_table_open(struct inode *inode, struct file *file)
1333{
1334 int ret;
715cf35a 1335 struct xt_names_priv *priv;
025d93d1 1336
715cf35a
AD
1337 ret = seq_open_net(inode, file, &xt_table_seq_ops,
1338 sizeof(struct xt_names_priv));
025d93d1 1339 if (!ret) {
715cf35a 1340 priv = ((struct seq_file *)file->private_data)->private;
d9dda78b 1341 priv->af = (unsigned long)PDE_DATA(inode);
025d93d1
AD
1342 }
1343 return ret;
2e4e6a17
HW
1344}
1345
025d93d1
AD
1346static const struct file_operations xt_table_ops = {
1347 .owner = THIS_MODULE,
1348 .open = xt_table_open,
1349 .read = seq_read,
1350 .llseek = seq_lseek,
0e93bb94 1351 .release = seq_release_net,
025d93d1
AD
1352};
1353
eb132205
JE
1354/*
1355 * Traverse state for ip{,6}_{tables,matches} for helping crossing
1356 * the multi-AF mutexes.
1357 */
1358struct nf_mttg_trav {
1359 struct list_head *head, *curr;
1360 uint8_t class, nfproto;
1361};
1362
1363enum {
1364 MTTG_TRAV_INIT,
1365 MTTG_TRAV_NFP_UNSPEC,
1366 MTTG_TRAV_NFP_SPEC,
1367 MTTG_TRAV_DONE,
1368};
1369
1370static void *xt_mttg_seq_next(struct seq_file *seq, void *v, loff_t *ppos,
1371 bool is_target)
2e4e6a17 1372{
eb132205
JE
1373 static const uint8_t next_class[] = {
1374 [MTTG_TRAV_NFP_UNSPEC] = MTTG_TRAV_NFP_SPEC,
1375 [MTTG_TRAV_NFP_SPEC] = MTTG_TRAV_DONE,
1376 };
1377 struct nf_mttg_trav *trav = seq->private;
1378
1379 switch (trav->class) {
1380 case MTTG_TRAV_INIT:
1381 trav->class = MTTG_TRAV_NFP_UNSPEC;
1382 mutex_lock(&xt[NFPROTO_UNSPEC].mutex);
1383 trav->head = trav->curr = is_target ?
1384 &xt[NFPROTO_UNSPEC].target : &xt[NFPROTO_UNSPEC].match;
1385 break;
1386 case MTTG_TRAV_NFP_UNSPEC:
1387 trav->curr = trav->curr->next;
1388 if (trav->curr != trav->head)
1389 break;
1390 mutex_unlock(&xt[NFPROTO_UNSPEC].mutex);
1391 mutex_lock(&xt[trav->nfproto].mutex);
1392 trav->head = trav->curr = is_target ?
1393 &xt[trav->nfproto].target : &xt[trav->nfproto].match;
1394 trav->class = next_class[trav->class];
1395 break;
1396 case MTTG_TRAV_NFP_SPEC:
1397 trav->curr = trav->curr->next;
1398 if (trav->curr != trav->head)
1399 break;
1400 /* fallthru, _stop will unlock */
1401 default:
1402 return NULL;
1403 }
2e4e6a17 1404
eb132205
JE
1405 if (ppos != NULL)
1406 ++*ppos;
1407 return trav;
025d93d1 1408}
601e68e1 1409
eb132205
JE
1410static void *xt_mttg_seq_start(struct seq_file *seq, loff_t *pos,
1411 bool is_target)
025d93d1 1412{
eb132205
JE
1413 struct nf_mttg_trav *trav = seq->private;
1414 unsigned int j;
2e4e6a17 1415
eb132205
JE
1416 trav->class = MTTG_TRAV_INIT;
1417 for (j = 0; j < *pos; ++j)
1418 if (xt_mttg_seq_next(seq, NULL, NULL, is_target) == NULL)
1419 return NULL;
1420 return trav;
2e4e6a17
HW
1421}
1422
eb132205 1423static void xt_mttg_seq_stop(struct seq_file *seq, void *v)
2e4e6a17 1424{
eb132205
JE
1425 struct nf_mttg_trav *trav = seq->private;
1426
1427 switch (trav->class) {
1428 case MTTG_TRAV_NFP_UNSPEC:
1429 mutex_unlock(&xt[NFPROTO_UNSPEC].mutex);
1430 break;
1431 case MTTG_TRAV_NFP_SPEC:
1432 mutex_unlock(&xt[trav->nfproto].mutex);
1433 break;
1434 }
1435}
2e4e6a17 1436
eb132205
JE
1437static void *xt_match_seq_start(struct seq_file *seq, loff_t *pos)
1438{
1439 return xt_mttg_seq_start(seq, pos, false);
2e4e6a17
HW
1440}
1441
eb132205 1442static void *xt_match_seq_next(struct seq_file *seq, void *v, loff_t *ppos)
2e4e6a17 1443{
eb132205
JE
1444 return xt_mttg_seq_next(seq, v, ppos, false);
1445}
2e4e6a17 1446
eb132205
JE
1447static int xt_match_seq_show(struct seq_file *seq, void *v)
1448{
1449 const struct nf_mttg_trav *trav = seq->private;
1450 const struct xt_match *match;
1451
1452 switch (trav->class) {
1453 case MTTG_TRAV_NFP_UNSPEC:
1454 case MTTG_TRAV_NFP_SPEC:
1455 if (trav->curr == trav->head)
1456 return 0;
1457 match = list_entry(trav->curr, struct xt_match, list);
861fb107
JP
1458 if (*match->name)
1459 seq_printf(seq, "%s\n", match->name);
eb132205
JE
1460 }
1461 return 0;
2e4e6a17
HW
1462}
1463
025d93d1
AD
1464static const struct seq_operations xt_match_seq_ops = {
1465 .start = xt_match_seq_start,
1466 .next = xt_match_seq_next,
eb132205 1467 .stop = xt_mttg_seq_stop,
025d93d1 1468 .show = xt_match_seq_show,
2e4e6a17
HW
1469};
1470
025d93d1 1471static int xt_match_open(struct inode *inode, struct file *file)
2e4e6a17 1472{
eb132205 1473 struct nf_mttg_trav *trav;
772476df
RJ
1474 trav = __seq_open_private(file, &xt_match_seq_ops, sizeof(*trav));
1475 if (!trav)
eb132205 1476 return -ENOMEM;
2e4e6a17 1477
d9dda78b 1478 trav->nfproto = (unsigned long)PDE_DATA(inode);
eb132205 1479 return 0;
025d93d1
AD
1480}
1481
1482static const struct file_operations xt_match_ops = {
1483 .owner = THIS_MODULE,
1484 .open = xt_match_open,
1485 .read = seq_read,
1486 .llseek = seq_lseek,
eb132205 1487 .release = seq_release_private,
025d93d1 1488};
2e4e6a17 1489
025d93d1
AD
1490static void *xt_target_seq_start(struct seq_file *seq, loff_t *pos)
1491{
eb132205 1492 return xt_mttg_seq_start(seq, pos, true);
025d93d1
AD
1493}
1494
eb132205 1495static void *xt_target_seq_next(struct seq_file *seq, void *v, loff_t *ppos)
025d93d1 1496{
eb132205 1497 return xt_mttg_seq_next(seq, v, ppos, true);
025d93d1
AD
1498}
1499
1500static int xt_target_seq_show(struct seq_file *seq, void *v)
1501{
eb132205
JE
1502 const struct nf_mttg_trav *trav = seq->private;
1503 const struct xt_target *target;
1504
1505 switch (trav->class) {
1506 case MTTG_TRAV_NFP_UNSPEC:
1507 case MTTG_TRAV_NFP_SPEC:
1508 if (trav->curr == trav->head)
1509 return 0;
1510 target = list_entry(trav->curr, struct xt_target, list);
861fb107
JP
1511 if (*target->name)
1512 seq_printf(seq, "%s\n", target->name);
eb132205
JE
1513 }
1514 return 0;
025d93d1
AD
1515}
1516
1517static const struct seq_operations xt_target_seq_ops = {
1518 .start = xt_target_seq_start,
1519 .next = xt_target_seq_next,
eb132205 1520 .stop = xt_mttg_seq_stop,
025d93d1
AD
1521 .show = xt_target_seq_show,
1522};
1523
1524static int xt_target_open(struct inode *inode, struct file *file)
1525{
eb132205 1526 struct nf_mttg_trav *trav;
772476df
RJ
1527 trav = __seq_open_private(file, &xt_target_seq_ops, sizeof(*trav));
1528 if (!trav)
eb132205 1529 return -ENOMEM;
025d93d1 1530
d9dda78b 1531 trav->nfproto = (unsigned long)PDE_DATA(inode);
eb132205 1532 return 0;
2e4e6a17
HW
1533}
1534
025d93d1 1535static const struct file_operations xt_target_ops = {
2e4e6a17 1536 .owner = THIS_MODULE,
025d93d1 1537 .open = xt_target_open,
2e4e6a17
HW
1538 .read = seq_read,
1539 .llseek = seq_lseek,
eb132205 1540 .release = seq_release_private,
2e4e6a17
HW
1541};
1542
1543#define FORMAT_TABLES "_tables_names"
1544#define FORMAT_MATCHES "_tables_matches"
1545#define FORMAT_TARGETS "_tables_targets"
1546
1547#endif /* CONFIG_PROC_FS */
1548
2b95efe7 1549/**
b9e69e12 1550 * xt_hook_ops_alloc - set up hooks for a new table
2b95efe7
JE
1551 * @table: table with metadata needed to set up hooks
1552 * @fn: Hook function
1553 *
b9e69e12
FW
1554 * This function will create the nf_hook_ops that the x_table needs
1555 * to hand to xt_hook_link_net().
2b95efe7 1556 */
b9e69e12
FW
1557struct nf_hook_ops *
1558xt_hook_ops_alloc(const struct xt_table *table, nf_hookfn *fn)
2b95efe7
JE
1559{
1560 unsigned int hook_mask = table->valid_hooks;
1561 uint8_t i, num_hooks = hweight32(hook_mask);
1562 uint8_t hooknum;
1563 struct nf_hook_ops *ops;
2b95efe7 1564
a6d0bae1
XL
1565 if (!num_hooks)
1566 return ERR_PTR(-EINVAL);
1567
1ecc281e 1568 ops = kcalloc(num_hooks, sizeof(*ops), GFP_KERNEL);
2b95efe7
JE
1569 if (ops == NULL)
1570 return ERR_PTR(-ENOMEM);
1571
1572 for (i = 0, hooknum = 0; i < num_hooks && hook_mask != 0;
1573 hook_mask >>= 1, ++hooknum) {
1574 if (!(hook_mask & 1))
1575 continue;
1576 ops[i].hook = fn;
2b95efe7
JE
1577 ops[i].pf = table->af;
1578 ops[i].hooknum = hooknum;
1579 ops[i].priority = table->priority;
1580 ++i;
1581 }
1582
2b95efe7
JE
1583 return ops;
1584}
b9e69e12 1585EXPORT_SYMBOL_GPL(xt_hook_ops_alloc);
2b95efe7 1586
76108cea 1587int xt_proto_init(struct net *net, u_int8_t af)
2e4e6a17
HW
1588{
1589#ifdef CONFIG_PROC_FS
1590 char buf[XT_FUNCTION_MAXNAMELEN];
1591 struct proc_dir_entry *proc;
f13f2aee
PW
1592 kuid_t root_uid;
1593 kgid_t root_gid;
2e4e6a17
HW
1594#endif
1595
7e9c6eeb 1596 if (af >= ARRAY_SIZE(xt_prefix))
2e4e6a17
HW
1597 return -EINVAL;
1598
1599
1600#ifdef CONFIG_PROC_FS
f13f2aee
PW
1601 root_uid = make_kuid(net->user_ns, 0);
1602 root_gid = make_kgid(net->user_ns, 0);
1603
ce18afe5 1604 strlcpy(buf, xt_prefix[af], sizeof(buf));
2e4e6a17 1605 strlcat(buf, FORMAT_TABLES, sizeof(buf));
8b169240
DL
1606 proc = proc_create_data(buf, 0440, net->proc_net, &xt_table_ops,
1607 (void *)(unsigned long)af);
2e4e6a17
HW
1608 if (!proc)
1609 goto out;
f13f2aee
PW
1610 if (uid_valid(root_uid) && gid_valid(root_gid))
1611 proc_set_user(proc, root_uid, root_gid);
2e4e6a17 1612
ce18afe5 1613 strlcpy(buf, xt_prefix[af], sizeof(buf));
2e4e6a17 1614 strlcat(buf, FORMAT_MATCHES, sizeof(buf));
8b169240
DL
1615 proc = proc_create_data(buf, 0440, net->proc_net, &xt_match_ops,
1616 (void *)(unsigned long)af);
2e4e6a17
HW
1617 if (!proc)
1618 goto out_remove_tables;
f13f2aee
PW
1619 if (uid_valid(root_uid) && gid_valid(root_gid))
1620 proc_set_user(proc, root_uid, root_gid);
2e4e6a17 1621
ce18afe5 1622 strlcpy(buf, xt_prefix[af], sizeof(buf));
2e4e6a17 1623 strlcat(buf, FORMAT_TARGETS, sizeof(buf));
8b169240
DL
1624 proc = proc_create_data(buf, 0440, net->proc_net, &xt_target_ops,
1625 (void *)(unsigned long)af);
2e4e6a17
HW
1626 if (!proc)
1627 goto out_remove_matches;
f13f2aee
PW
1628 if (uid_valid(root_uid) && gid_valid(root_gid))
1629 proc_set_user(proc, root_uid, root_gid);
2e4e6a17
HW
1630#endif
1631
1632 return 0;
1633
1634#ifdef CONFIG_PROC_FS
1635out_remove_matches:
ce18afe5 1636 strlcpy(buf, xt_prefix[af], sizeof(buf));
2e4e6a17 1637 strlcat(buf, FORMAT_MATCHES, sizeof(buf));
ece31ffd 1638 remove_proc_entry(buf, net->proc_net);
2e4e6a17
HW
1639
1640out_remove_tables:
ce18afe5 1641 strlcpy(buf, xt_prefix[af], sizeof(buf));
2e4e6a17 1642 strlcat(buf, FORMAT_TABLES, sizeof(buf));
ece31ffd 1643 remove_proc_entry(buf, net->proc_net);
2e4e6a17
HW
1644out:
1645 return -1;
1646#endif
1647}
1648EXPORT_SYMBOL_GPL(xt_proto_init);
1649
76108cea 1650void xt_proto_fini(struct net *net, u_int8_t af)
2e4e6a17
HW
1651{
1652#ifdef CONFIG_PROC_FS
1653 char buf[XT_FUNCTION_MAXNAMELEN];
1654
ce18afe5 1655 strlcpy(buf, xt_prefix[af], sizeof(buf));
2e4e6a17 1656 strlcat(buf, FORMAT_TABLES, sizeof(buf));
ece31ffd 1657 remove_proc_entry(buf, net->proc_net);
2e4e6a17 1658
ce18afe5 1659 strlcpy(buf, xt_prefix[af], sizeof(buf));
2e4e6a17 1660 strlcat(buf, FORMAT_TARGETS, sizeof(buf));
ece31ffd 1661 remove_proc_entry(buf, net->proc_net);
2e4e6a17 1662
ce18afe5 1663 strlcpy(buf, xt_prefix[af], sizeof(buf));
2e4e6a17 1664 strlcat(buf, FORMAT_MATCHES, sizeof(buf));
ece31ffd 1665 remove_proc_entry(buf, net->proc_net);
2e4e6a17
HW
1666#endif /*CONFIG_PROC_FS*/
1667}
1668EXPORT_SYMBOL_GPL(xt_proto_fini);
1669
f28e15ba
FW
1670/**
1671 * xt_percpu_counter_alloc - allocate x_tables rule counter
1672 *
ae0ac0ed 1673 * @state: pointer to xt_percpu allocation state
f28e15ba
FW
1674 * @counter: pointer to counter struct inside the ip(6)/arpt_entry struct
1675 *
1676 * On SMP, the packet counter [ ip(6)t_entry->counters.pcnt ] will then
1677 * contain the address of the real (percpu) counter.
1678 *
1679 * Rule evaluation needs to use xt_get_this_cpu_counter() helper
1680 * to fetch the real percpu counter.
1681 *
ae0ac0ed
FW
1682 * To speed up allocation and improve data locality, a 4kb block is
1683 * allocated.
1684 *
1685 * xt_percpu_counter_alloc_state contains the base address of the
1686 * allocated page and the current sub-offset.
1687 *
f28e15ba
FW
1688 * returns false on error.
1689 */
ae0ac0ed
FW
1690bool xt_percpu_counter_alloc(struct xt_percpu_counter_alloc_state *state,
1691 struct xt_counters *counter)
f28e15ba 1692{
ae0ac0ed 1693 BUILD_BUG_ON(XT_PCPU_BLOCK_SIZE < (sizeof(*counter) * 2));
f28e15ba
FW
1694
1695 if (nr_cpu_ids <= 1)
1696 return true;
1697
ae0ac0ed
FW
1698 if (!state->mem) {
1699 state->mem = __alloc_percpu(XT_PCPU_BLOCK_SIZE,
1700 XT_PCPU_BLOCK_SIZE);
1701 if (!state->mem)
1702 return false;
1703 }
1704 counter->pcnt = (__force unsigned long)(state->mem + state->off);
1705 state->off += sizeof(*counter);
1706 if (state->off > (XT_PCPU_BLOCK_SIZE - sizeof(*counter))) {
1707 state->mem = NULL;
1708 state->off = 0;
1709 }
f28e15ba
FW
1710 return true;
1711}
1712EXPORT_SYMBOL_GPL(xt_percpu_counter_alloc);
1713
4d31eef5
FW
1714void xt_percpu_counter_free(struct xt_counters *counters)
1715{
1716 unsigned long pcnt = counters->pcnt;
1717
ae0ac0ed 1718 if (nr_cpu_ids > 1 && (pcnt & (XT_PCPU_BLOCK_SIZE - 1)) == 0)
4d31eef5
FW
1719 free_percpu((void __percpu *)pcnt);
1720}
1721EXPORT_SYMBOL_GPL(xt_percpu_counter_free);
1722
8d870052
AD
1723static int __net_init xt_net_init(struct net *net)
1724{
1725 int i;
1726
7e9c6eeb 1727 for (i = 0; i < NFPROTO_NUMPROTO; i++)
8d870052
AD
1728 INIT_LIST_HEAD(&net->xt.tables[i]);
1729 return 0;
1730}
1731
613d0776
VA
1732static void __net_exit xt_net_exit(struct net *net)
1733{
1734 int i;
1735
1736 for (i = 0; i < NFPROTO_NUMPROTO; i++)
1737 WARN_ON_ONCE(!list_empty(&net->xt.tables[i]));
1738}
1739
8d870052
AD
1740static struct pernet_operations xt_net_ops = {
1741 .init = xt_net_init,
613d0776 1742 .exit = xt_net_exit,
8d870052 1743};
2e4e6a17
HW
1744
1745static int __init xt_init(void)
1746{
942e4a2b
SH
1747 unsigned int i;
1748 int rv;
1749
1750 for_each_possible_cpu(i) {
7f5c6d4f 1751 seqcount_init(&per_cpu(xt_recseq, i));
942e4a2b 1752 }
2e4e6a17 1753
7e9c6eeb 1754 xt = kmalloc(sizeof(struct xt_af) * NFPROTO_NUMPROTO, GFP_KERNEL);
2e4e6a17
HW
1755 if (!xt)
1756 return -ENOMEM;
1757
7e9c6eeb 1758 for (i = 0; i < NFPROTO_NUMPROTO; i++) {
9e19bb6d 1759 mutex_init(&xt[i].mutex);
2722971c
DM
1760#ifdef CONFIG_COMPAT
1761 mutex_init(&xt[i].compat_mutex);
255d0dc3 1762 xt[i].compat_tab = NULL;
2722971c 1763#endif
2e4e6a17
HW
1764 INIT_LIST_HEAD(&xt[i].target);
1765 INIT_LIST_HEAD(&xt[i].match);
2e4e6a17 1766 }
8d870052
AD
1767 rv = register_pernet_subsys(&xt_net_ops);
1768 if (rv < 0)
1769 kfree(xt);
1770 return rv;
2e4e6a17
HW
1771}
1772
1773static void __exit xt_fini(void)
1774{
8d870052 1775 unregister_pernet_subsys(&xt_net_ops);
2e4e6a17
HW
1776 kfree(xt);
1777}
1778
1779module_init(xt_init);
1780module_exit(xt_fini);
1781