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1/*
2 * ebtables
3 *
4 * Author:
5 * Bart De Schuymer <bdschuym@pandora.be>
6 *
7 * ebtables.c,v 2.0, July, 2002
8 *
9 * This code is strongly inspired by the iptables code which is
10 * Copyright (C) 1999 Paul `Rusty' Russell & Michael J. Neuling
11 *
12 * This program is free software; you can redistribute it and/or
13 * modify it under the terms of the GNU General Public License
14 * as published by the Free Software Foundation; either version
15 * 2 of the License, or (at your option) any later version.
16 */
17#define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
18#include <linux/kmod.h>
19#include <linux/module.h>
20#include <linux/vmalloc.h>
21#include <linux/netfilter/x_tables.h>
22#include <linux/netfilter_bridge/ebtables.h>
23#include <linux/spinlock.h>
24#include <linux/mutex.h>
25#include <linux/slab.h>
26#include <asm/uaccess.h>
27#include <linux/smp.h>
28#include <linux/cpumask.h>
29#include <linux/audit.h>
30#include <net/sock.h>
31/* needed for logical [in,out]-dev filtering */
32#include "../br_private.h"
33
34#define BUGPRINT(format, args...) printk("kernel msg: ebtables bug: please "\
35 "report to author: "format, ## args)
36/* #define BUGPRINT(format, args...) */
37
38/* Each cpu has its own set of counters, so there is no need for write_lock in
39 * the softirq
40 * For reading or updating the counters, the user context needs to
41 * get a write_lock
42 */
43
44/* The size of each set of counters is altered to get cache alignment */
45#define SMP_ALIGN(x) (((x) + SMP_CACHE_BYTES-1) & ~(SMP_CACHE_BYTES-1))
46#define COUNTER_OFFSET(n) (SMP_ALIGN(n * sizeof(struct ebt_counter)))
47#define COUNTER_BASE(c, n, cpu) ((struct ebt_counter *)(((char *)c) + \
48 COUNTER_OFFSET(n) * cpu))
49
50
51
52static DEFINE_MUTEX(ebt_mutex);
53
54#ifdef CONFIG_COMPAT
55static void ebt_standard_compat_from_user(void *dst, const void *src)
56{
57 int v = *(compat_int_t *)src;
58
59 if (v >= 0)
60 v += xt_compat_calc_jump(NFPROTO_BRIDGE, v);
61 memcpy(dst, &v, sizeof(v));
62}
63
64static int ebt_standard_compat_to_user(void __user *dst, const void *src)
65{
66 compat_int_t cv = *(int *)src;
67
68 if (cv >= 0)
69 cv -= xt_compat_calc_jump(NFPROTO_BRIDGE, cv);
70 return copy_to_user(dst, &cv, sizeof(cv)) ? -EFAULT : 0;
71}
72#endif
73
74
75static struct xt_target ebt_standard_target = {
76 .name = "standard",
77 .revision = 0,
78 .family = NFPROTO_BRIDGE,
79 .targetsize = sizeof(int),
80#ifdef CONFIG_COMPAT
81 .compatsize = sizeof(compat_int_t),
82 .compat_from_user = ebt_standard_compat_from_user,
83 .compat_to_user = ebt_standard_compat_to_user,
84#endif
85};
86
87static inline int
88ebt_do_watcher(const struct ebt_entry_watcher *w, struct sk_buff *skb,
89 struct xt_action_param *par)
90{
91 par->target = w->u.watcher;
92 par->targinfo = w->data;
93 w->u.watcher->target(skb, par);
94 /* watchers don't give a verdict */
95 return 0;
96}
97
98static inline int
99ebt_do_match(struct ebt_entry_match *m, const struct sk_buff *skb,
100 struct xt_action_param *par)
101{
102 par->match = m->u.match;
103 par->matchinfo = m->data;
104 return m->u.match->match(skb, par) ? EBT_MATCH : EBT_NOMATCH;
105}
106
107static inline int
108ebt_dev_check(const char *entry, const struct net_device *device)
109{
110 int i = 0;
111 const char *devname;
112
113 if (*entry == '\0')
114 return 0;
115 if (!device)
116 return 1;
117 devname = device->name;
118 /* 1 is the wildcard token */
119 while (entry[i] != '\0' && entry[i] != 1 && entry[i] == devname[i])
120 i++;
121 return devname[i] != entry[i] && entry[i] != 1;
122}
123
124#define FWINV2(bool, invflg) ((bool) ^ !!(e->invflags & invflg))
125/* process standard matches */
126static inline int
127ebt_basic_match(const struct ebt_entry *e, const struct sk_buff *skb,
128 const struct net_device *in, const struct net_device *out)
129{
130 const struct ethhdr *h = eth_hdr(skb);
131 const struct net_bridge_port *p;
132 __be16 ethproto;
133 int verdict, i;
134
135 if (skb_vlan_tag_present(skb))
136 ethproto = htons(ETH_P_8021Q);
137 else
138 ethproto = h->h_proto;
139
140 if (e->bitmask & EBT_802_3) {
141 if (FWINV2(eth_proto_is_802_3(ethproto), EBT_IPROTO))
142 return 1;
143 } else if (!(e->bitmask & EBT_NOPROTO) &&
144 FWINV2(e->ethproto != ethproto, EBT_IPROTO))
145 return 1;
146
147 if (FWINV2(ebt_dev_check(e->in, in), EBT_IIN))
148 return 1;
149 if (FWINV2(ebt_dev_check(e->out, out), EBT_IOUT))
150 return 1;
151 /* rcu_read_lock()ed by nf_hook_slow */
152 if (in && (p = br_port_get_rcu(in)) != NULL &&
153 FWINV2(ebt_dev_check(e->logical_in, p->br->dev), EBT_ILOGICALIN))
154 return 1;
155 if (out && (p = br_port_get_rcu(out)) != NULL &&
156 FWINV2(ebt_dev_check(e->logical_out, p->br->dev), EBT_ILOGICALOUT))
157 return 1;
158
159 if (e->bitmask & EBT_SOURCEMAC) {
160 verdict = 0;
161 for (i = 0; i < 6; i++)
162 verdict |= (h->h_source[i] ^ e->sourcemac[i]) &
163 e->sourcemsk[i];
164 if (FWINV2(verdict != 0, EBT_ISOURCE))
165 return 1;
166 }
167 if (e->bitmask & EBT_DESTMAC) {
168 verdict = 0;
169 for (i = 0; i < 6; i++)
170 verdict |= (h->h_dest[i] ^ e->destmac[i]) &
171 e->destmsk[i];
172 if (FWINV2(verdict != 0, EBT_IDEST))
173 return 1;
174 }
175 return 0;
176}
177
178static inline
179struct ebt_entry *ebt_next_entry(const struct ebt_entry *entry)
180{
181 return (void *)entry + entry->next_offset;
182}
183
184/* Do some firewalling */
185unsigned int ebt_do_table(struct sk_buff *skb,
186 const struct nf_hook_state *state,
187 struct ebt_table *table)
188{
189 unsigned int hook = state->hook;
190 int i, nentries;
191 struct ebt_entry *point;
192 struct ebt_counter *counter_base, *cb_base;
193 const struct ebt_entry_target *t;
194 int verdict, sp = 0;
195 struct ebt_chainstack *cs;
196 struct ebt_entries *chaininfo;
197 const char *base;
198 const struct ebt_table_info *private;
199 struct xt_action_param acpar;
200
201 acpar.family = NFPROTO_BRIDGE;
202 acpar.net = state->net;
203 acpar.in = state->in;
204 acpar.out = state->out;
205 acpar.hotdrop = false;
206 acpar.hooknum = hook;
207
208 read_lock_bh(&table->lock);
209 private = table->private;
210 cb_base = COUNTER_BASE(private->counters, private->nentries,
211 smp_processor_id());
212 if (private->chainstack)
213 cs = private->chainstack[smp_processor_id()];
214 else
215 cs = NULL;
216 chaininfo = private->hook_entry[hook];
217 nentries = private->hook_entry[hook]->nentries;
218 point = (struct ebt_entry *)(private->hook_entry[hook]->data);
219 counter_base = cb_base + private->hook_entry[hook]->counter_offset;
220 /* base for chain jumps */
221 base = private->entries;
222 i = 0;
223 while (i < nentries) {
224 if (ebt_basic_match(point, skb, state->in, state->out))
225 goto letscontinue;
226
227 if (EBT_MATCH_ITERATE(point, ebt_do_match, skb, &acpar) != 0)
228 goto letscontinue;
229 if (acpar.hotdrop) {
230 read_unlock_bh(&table->lock);
231 return NF_DROP;
232 }
233
234 /* increase counter */
235 (*(counter_base + i)).pcnt++;
236 (*(counter_base + i)).bcnt += skb->len;
237
238 /* these should only watch: not modify, nor tell us
239 * what to do with the packet
240 */
241 EBT_WATCHER_ITERATE(point, ebt_do_watcher, skb, &acpar);
242
243 t = (struct ebt_entry_target *)
244 (((char *)point) + point->target_offset);
245 /* standard target */
246 if (!t->u.target->target)
247 verdict = ((struct ebt_standard_target *)t)->verdict;
248 else {
249 acpar.target = t->u.target;
250 acpar.targinfo = t->data;
251 verdict = t->u.target->target(skb, &acpar);
252 }
253 if (verdict == EBT_ACCEPT) {
254 read_unlock_bh(&table->lock);
255 return NF_ACCEPT;
256 }
257 if (verdict == EBT_DROP) {
258 read_unlock_bh(&table->lock);
259 return NF_DROP;
260 }
261 if (verdict == EBT_RETURN) {
262letsreturn:
263#ifdef CONFIG_NETFILTER_DEBUG
264 if (sp == 0) {
265 BUGPRINT("RETURN on base chain");
266 /* act like this is EBT_CONTINUE */
267 goto letscontinue;
268 }
269#endif
270 sp--;
271 /* put all the local variables right */
272 i = cs[sp].n;
273 chaininfo = cs[sp].chaininfo;
274 nentries = chaininfo->nentries;
275 point = cs[sp].e;
276 counter_base = cb_base +
277 chaininfo->counter_offset;
278 continue;
279 }
280 if (verdict == EBT_CONTINUE)
281 goto letscontinue;
282#ifdef CONFIG_NETFILTER_DEBUG
283 if (verdict < 0) {
284 BUGPRINT("bogus standard verdict\n");
285 read_unlock_bh(&table->lock);
286 return NF_DROP;
287 }
288#endif
289 /* jump to a udc */
290 cs[sp].n = i + 1;
291 cs[sp].chaininfo = chaininfo;
292 cs[sp].e = ebt_next_entry(point);
293 i = 0;
294 chaininfo = (struct ebt_entries *) (base + verdict);
295#ifdef CONFIG_NETFILTER_DEBUG
296 if (chaininfo->distinguisher) {
297 BUGPRINT("jump to non-chain\n");
298 read_unlock_bh(&table->lock);
299 return NF_DROP;
300 }
301#endif
302 nentries = chaininfo->nentries;
303 point = (struct ebt_entry *)chaininfo->data;
304 counter_base = cb_base + chaininfo->counter_offset;
305 sp++;
306 continue;
307letscontinue:
308 point = ebt_next_entry(point);
309 i++;
310 }
311
312 /* I actually like this :) */
313 if (chaininfo->policy == EBT_RETURN)
314 goto letsreturn;
315 if (chaininfo->policy == EBT_ACCEPT) {
316 read_unlock_bh(&table->lock);
317 return NF_ACCEPT;
318 }
319 read_unlock_bh(&table->lock);
320 return NF_DROP;
321}
322
323/* If it succeeds, returns element and locks mutex */
324static inline void *
325find_inlist_lock_noload(struct list_head *head, const char *name, int *error,
326 struct mutex *mutex)
327{
328 struct {
329 struct list_head list;
330 char name[EBT_FUNCTION_MAXNAMELEN];
331 } *e;
332
333 mutex_lock(mutex);
334 list_for_each_entry(e, head, list) {
335 if (strcmp(e->name, name) == 0)
336 return e;
337 }
338 *error = -ENOENT;
339 mutex_unlock(mutex);
340 return NULL;
341}
342
343static void *
344find_inlist_lock(struct list_head *head, const char *name, const char *prefix,
345 int *error, struct mutex *mutex)
346{
347 return try_then_request_module(
348 find_inlist_lock_noload(head, name, error, mutex),
349 "%s%s", prefix, name);
350}
351
352static inline struct ebt_table *
353find_table_lock(struct net *net, const char *name, int *error,
354 struct mutex *mutex)
355{
356 return find_inlist_lock(&net->xt.tables[NFPROTO_BRIDGE], name,
357 "ebtable_", error, mutex);
358}
359
360static inline int
361ebt_check_match(struct ebt_entry_match *m, struct xt_mtchk_param *par,
362 unsigned int *cnt)
363{
364 const struct ebt_entry *e = par->entryinfo;
365 struct xt_match *match;
366 size_t left = ((char *)e + e->watchers_offset) - (char *)m;
367 int ret;
368
369 if (left < sizeof(struct ebt_entry_match) ||
370 left - sizeof(struct ebt_entry_match) < m->match_size)
371 return -EINVAL;
372
373 match = xt_find_match(NFPROTO_BRIDGE, m->u.name, 0);
374 if (IS_ERR(match) || match->family != NFPROTO_BRIDGE) {
375 request_module("ebt_%s", m->u.name);
376 match = xt_find_match(NFPROTO_BRIDGE, m->u.name, 0);
377 }
378 if (IS_ERR(match))
379 return PTR_ERR(match);
380 m->u.match = match;
381
382 par->match = match;
383 par->matchinfo = m->data;
384 ret = xt_check_match(par, m->match_size,
385 e->ethproto, e->invflags & EBT_IPROTO);
386 if (ret < 0) {
387 module_put(match->me);
388 return ret;
389 }
390
391 (*cnt)++;
392 return 0;
393}
394
395static inline int
396ebt_check_watcher(struct ebt_entry_watcher *w, struct xt_tgchk_param *par,
397 unsigned int *cnt)
398{
399 const struct ebt_entry *e = par->entryinfo;
400 struct xt_target *watcher;
401 size_t left = ((char *)e + e->target_offset) - (char *)w;
402 int ret;
403
404 if (left < sizeof(struct ebt_entry_watcher) ||
405 left - sizeof(struct ebt_entry_watcher) < w->watcher_size)
406 return -EINVAL;
407
408 watcher = xt_request_find_target(NFPROTO_BRIDGE, w->u.name, 0);
409 if (IS_ERR(watcher))
410 return PTR_ERR(watcher);
411 w->u.watcher = watcher;
412
413 par->target = watcher;
414 par->targinfo = w->data;
415 ret = xt_check_target(par, w->watcher_size,
416 e->ethproto, e->invflags & EBT_IPROTO);
417 if (ret < 0) {
418 module_put(watcher->me);
419 return ret;
420 }
421
422 (*cnt)++;
423 return 0;
424}
425
426static int ebt_verify_pointers(const struct ebt_replace *repl,
427 struct ebt_table_info *newinfo)
428{
429 unsigned int limit = repl->entries_size;
430 unsigned int valid_hooks = repl->valid_hooks;
431 unsigned int offset = 0;
432 int i;
433
434 for (i = 0; i < NF_BR_NUMHOOKS; i++)
435 newinfo->hook_entry[i] = NULL;
436
437 newinfo->entries_size = repl->entries_size;
438 newinfo->nentries = repl->nentries;
439
440 while (offset < limit) {
441 size_t left = limit - offset;
442 struct ebt_entry *e = (void *)newinfo->entries + offset;
443
444 if (left < sizeof(unsigned int))
445 break;
446
447 for (i = 0; i < NF_BR_NUMHOOKS; i++) {
448 if ((valid_hooks & (1 << i)) == 0)
449 continue;
450 if ((char __user *)repl->hook_entry[i] ==
451 repl->entries + offset)
452 break;
453 }
454
455 if (i != NF_BR_NUMHOOKS || !(e->bitmask & EBT_ENTRY_OR_ENTRIES)) {
456 if (e->bitmask != 0) {
457 /* we make userspace set this right,
458 * so there is no misunderstanding
459 */
460 BUGPRINT("EBT_ENTRY_OR_ENTRIES shouldn't be set "
461 "in distinguisher\n");
462 return -EINVAL;
463 }
464 if (i != NF_BR_NUMHOOKS)
465 newinfo->hook_entry[i] = (struct ebt_entries *)e;
466 if (left < sizeof(struct ebt_entries))
467 break;
468 offset += sizeof(struct ebt_entries);
469 } else {
470 if (left < sizeof(struct ebt_entry))
471 break;
472 if (left < e->next_offset)
473 break;
474 if (e->next_offset < sizeof(struct ebt_entry))
475 return -EINVAL;
476 offset += e->next_offset;
477 }
478 }
479 if (offset != limit) {
480 BUGPRINT("entries_size too small\n");
481 return -EINVAL;
482 }
483
484 /* check if all valid hooks have a chain */
485 for (i = 0; i < NF_BR_NUMHOOKS; i++) {
486 if (!newinfo->hook_entry[i] &&
487 (valid_hooks & (1 << i))) {
488 BUGPRINT("Valid hook without chain\n");
489 return -EINVAL;
490 }
491 }
492 return 0;
493}
494
495/* this one is very careful, as it is the first function
496 * to parse the userspace data
497 */
498static inline int
499ebt_check_entry_size_and_hooks(const struct ebt_entry *e,
500 const struct ebt_table_info *newinfo,
501 unsigned int *n, unsigned int *cnt,
502 unsigned int *totalcnt, unsigned int *udc_cnt)
503{
504 int i;
505
506 for (i = 0; i < NF_BR_NUMHOOKS; i++) {
507 if ((void *)e == (void *)newinfo->hook_entry[i])
508 break;
509 }
510 /* beginning of a new chain
511 * if i == NF_BR_NUMHOOKS it must be a user defined chain
512 */
513 if (i != NF_BR_NUMHOOKS || !e->bitmask) {
514 /* this checks if the previous chain has as many entries
515 * as it said it has
516 */
517 if (*n != *cnt) {
518 BUGPRINT("nentries does not equal the nr of entries "
519 "in the chain\n");
520 return -EINVAL;
521 }
522 if (((struct ebt_entries *)e)->policy != EBT_DROP &&
523 ((struct ebt_entries *)e)->policy != EBT_ACCEPT) {
524 /* only RETURN from udc */
525 if (i != NF_BR_NUMHOOKS ||
526 ((struct ebt_entries *)e)->policy != EBT_RETURN) {
527 BUGPRINT("bad policy\n");
528 return -EINVAL;
529 }
530 }
531 if (i == NF_BR_NUMHOOKS) /* it's a user defined chain */
532 (*udc_cnt)++;
533 if (((struct ebt_entries *)e)->counter_offset != *totalcnt) {
534 BUGPRINT("counter_offset != totalcnt");
535 return -EINVAL;
536 }
537 *n = ((struct ebt_entries *)e)->nentries;
538 *cnt = 0;
539 return 0;
540 }
541 /* a plain old entry, heh */
542 if (sizeof(struct ebt_entry) > e->watchers_offset ||
543 e->watchers_offset > e->target_offset ||
544 e->target_offset >= e->next_offset) {
545 BUGPRINT("entry offsets not in right order\n");
546 return -EINVAL;
547 }
548 /* this is not checked anywhere else */
549 if (e->next_offset - e->target_offset < sizeof(struct ebt_entry_target)) {
550 BUGPRINT("target size too small\n");
551 return -EINVAL;
552 }
553 (*cnt)++;
554 (*totalcnt)++;
555 return 0;
556}
557
558struct ebt_cl_stack {
559 struct ebt_chainstack cs;
560 int from;
561 unsigned int hookmask;
562};
563
564/* We need these positions to check that the jumps to a different part of the
565 * entries is a jump to the beginning of a new chain.
566 */
567static inline int
568ebt_get_udc_positions(struct ebt_entry *e, struct ebt_table_info *newinfo,
569 unsigned int *n, struct ebt_cl_stack *udc)
570{
571 int i;
572
573 /* we're only interested in chain starts */
574 if (e->bitmask)
575 return 0;
576 for (i = 0; i < NF_BR_NUMHOOKS; i++) {
577 if (newinfo->hook_entry[i] == (struct ebt_entries *)e)
578 break;
579 }
580 /* only care about udc */
581 if (i != NF_BR_NUMHOOKS)
582 return 0;
583
584 udc[*n].cs.chaininfo = (struct ebt_entries *)e;
585 /* these initialisations are depended on later in check_chainloops() */
586 udc[*n].cs.n = 0;
587 udc[*n].hookmask = 0;
588
589 (*n)++;
590 return 0;
591}
592
593static inline int
594ebt_cleanup_match(struct ebt_entry_match *m, struct net *net, unsigned int *i)
595{
596 struct xt_mtdtor_param par;
597
598 if (i && (*i)-- == 0)
599 return 1;
600
601 par.net = net;
602 par.match = m->u.match;
603 par.matchinfo = m->data;
604 par.family = NFPROTO_BRIDGE;
605 if (par.match->destroy != NULL)
606 par.match->destroy(&par);
607 module_put(par.match->me);
608 return 0;
609}
610
611static inline int
612ebt_cleanup_watcher(struct ebt_entry_watcher *w, struct net *net, unsigned int *i)
613{
614 struct xt_tgdtor_param par;
615
616 if (i && (*i)-- == 0)
617 return 1;
618
619 par.net = net;
620 par.target = w->u.watcher;
621 par.targinfo = w->data;
622 par.family = NFPROTO_BRIDGE;
623 if (par.target->destroy != NULL)
624 par.target->destroy(&par);
625 module_put(par.target->me);
626 return 0;
627}
628
629static inline int
630ebt_cleanup_entry(struct ebt_entry *e, struct net *net, unsigned int *cnt)
631{
632 struct xt_tgdtor_param par;
633 struct ebt_entry_target *t;
634
635 if (e->bitmask == 0)
636 return 0;
637 /* we're done */
638 if (cnt && (*cnt)-- == 0)
639 return 1;
640 EBT_WATCHER_ITERATE(e, ebt_cleanup_watcher, net, NULL);
641 EBT_MATCH_ITERATE(e, ebt_cleanup_match, net, NULL);
642 t = (struct ebt_entry_target *)(((char *)e) + e->target_offset);
643
644 par.net = net;
645 par.target = t->u.target;
646 par.targinfo = t->data;
647 par.family = NFPROTO_BRIDGE;
648 if (par.target->destroy != NULL)
649 par.target->destroy(&par);
650 module_put(par.target->me);
651 return 0;
652}
653
654static inline int
655ebt_check_entry(struct ebt_entry *e, struct net *net,
656 const struct ebt_table_info *newinfo,
657 const char *name, unsigned int *cnt,
658 struct ebt_cl_stack *cl_s, unsigned int udc_cnt)
659{
660 struct ebt_entry_target *t;
661 struct xt_target *target;
662 unsigned int i, j, hook = 0, hookmask = 0;
663 size_t gap;
664 int ret;
665 struct xt_mtchk_param mtpar;
666 struct xt_tgchk_param tgpar;
667
668 /* don't mess with the struct ebt_entries */
669 if (e->bitmask == 0)
670 return 0;
671
672 if (e->bitmask & ~EBT_F_MASK) {
673 BUGPRINT("Unknown flag for bitmask\n");
674 return -EINVAL;
675 }
676 if (e->invflags & ~EBT_INV_MASK) {
677 BUGPRINT("Unknown flag for inv bitmask\n");
678 return -EINVAL;
679 }
680 if ((e->bitmask & EBT_NOPROTO) && (e->bitmask & EBT_802_3)) {
681 BUGPRINT("NOPROTO & 802_3 not allowed\n");
682 return -EINVAL;
683 }
684 /* what hook do we belong to? */
685 for (i = 0; i < NF_BR_NUMHOOKS; i++) {
686 if (!newinfo->hook_entry[i])
687 continue;
688 if ((char *)newinfo->hook_entry[i] < (char *)e)
689 hook = i;
690 else
691 break;
692 }
693 /* (1 << NF_BR_NUMHOOKS) tells the check functions the rule is on
694 * a base chain
695 */
696 if (i < NF_BR_NUMHOOKS)
697 hookmask = (1 << hook) | (1 << NF_BR_NUMHOOKS);
698 else {
699 for (i = 0; i < udc_cnt; i++)
700 if ((char *)(cl_s[i].cs.chaininfo) > (char *)e)
701 break;
702 if (i == 0)
703 hookmask = (1 << hook) | (1 << NF_BR_NUMHOOKS);
704 else
705 hookmask = cl_s[i - 1].hookmask;
706 }
707 i = 0;
708
709 mtpar.net = tgpar.net = net;
710 mtpar.table = tgpar.table = name;
711 mtpar.entryinfo = tgpar.entryinfo = e;
712 mtpar.hook_mask = tgpar.hook_mask = hookmask;
713 mtpar.family = tgpar.family = NFPROTO_BRIDGE;
714 ret = EBT_MATCH_ITERATE(e, ebt_check_match, &mtpar, &i);
715 if (ret != 0)
716 goto cleanup_matches;
717 j = 0;
718 ret = EBT_WATCHER_ITERATE(e, ebt_check_watcher, &tgpar, &j);
719 if (ret != 0)
720 goto cleanup_watchers;
721 t = (struct ebt_entry_target *)(((char *)e) + e->target_offset);
722 gap = e->next_offset - e->target_offset;
723
724 target = xt_request_find_target(NFPROTO_BRIDGE, t->u.name, 0);
725 if (IS_ERR(target)) {
726 ret = PTR_ERR(target);
727 goto cleanup_watchers;
728 }
729
730 t->u.target = target;
731 if (t->u.target == &ebt_standard_target) {
732 if (gap < sizeof(struct ebt_standard_target)) {
733 BUGPRINT("Standard target size too big\n");
734 ret = -EFAULT;
735 goto cleanup_watchers;
736 }
737 if (((struct ebt_standard_target *)t)->verdict <
738 -NUM_STANDARD_TARGETS) {
739 BUGPRINT("Invalid standard target\n");
740 ret = -EFAULT;
741 goto cleanup_watchers;
742 }
743 } else if (t->target_size > gap - sizeof(struct ebt_entry_target)) {
744 module_put(t->u.target->me);
745 ret = -EFAULT;
746 goto cleanup_watchers;
747 }
748
749 tgpar.target = target;
750 tgpar.targinfo = t->data;
751 ret = xt_check_target(&tgpar, t->target_size,
752 e->ethproto, e->invflags & EBT_IPROTO);
753 if (ret < 0) {
754 module_put(target->me);
755 goto cleanup_watchers;
756 }
757 (*cnt)++;
758 return 0;
759cleanup_watchers:
760 EBT_WATCHER_ITERATE(e, ebt_cleanup_watcher, net, &j);
761cleanup_matches:
762 EBT_MATCH_ITERATE(e, ebt_cleanup_match, net, &i);
763 return ret;
764}
765
766/* checks for loops and sets the hook mask for udc
767 * the hook mask for udc tells us from which base chains the udc can be
768 * accessed. This mask is a parameter to the check() functions of the extensions
769 */
770static int check_chainloops(const struct ebt_entries *chain, struct ebt_cl_stack *cl_s,
771 unsigned int udc_cnt, unsigned int hooknr, char *base)
772{
773 int i, chain_nr = -1, pos = 0, nentries = chain->nentries, verdict;
774 const struct ebt_entry *e = (struct ebt_entry *)chain->data;
775 const struct ebt_entry_target *t;
776
777 while (pos < nentries || chain_nr != -1) {
778 /* end of udc, go back one 'recursion' step */
779 if (pos == nentries) {
780 /* put back values of the time when this chain was called */
781 e = cl_s[chain_nr].cs.e;
782 if (cl_s[chain_nr].from != -1)
783 nentries =
784 cl_s[cl_s[chain_nr].from].cs.chaininfo->nentries;
785 else
786 nentries = chain->nentries;
787 pos = cl_s[chain_nr].cs.n;
788 /* make sure we won't see a loop that isn't one */
789 cl_s[chain_nr].cs.n = 0;
790 chain_nr = cl_s[chain_nr].from;
791 if (pos == nentries)
792 continue;
793 }
794 t = (struct ebt_entry_target *)
795 (((char *)e) + e->target_offset);
796 if (strcmp(t->u.name, EBT_STANDARD_TARGET))
797 goto letscontinue;
798 if (e->target_offset + sizeof(struct ebt_standard_target) >
799 e->next_offset) {
800 BUGPRINT("Standard target size too big\n");
801 return -1;
802 }
803 verdict = ((struct ebt_standard_target *)t)->verdict;
804 if (verdict >= 0) { /* jump to another chain */
805 struct ebt_entries *hlp2 =
806 (struct ebt_entries *)(base + verdict);
807 for (i = 0; i < udc_cnt; i++)
808 if (hlp2 == cl_s[i].cs.chaininfo)
809 break;
810 /* bad destination or loop */
811 if (i == udc_cnt) {
812 BUGPRINT("bad destination\n");
813 return -1;
814 }
815 if (cl_s[i].cs.n) {
816 BUGPRINT("loop\n");
817 return -1;
818 }
819 if (cl_s[i].hookmask & (1 << hooknr))
820 goto letscontinue;
821 /* this can't be 0, so the loop test is correct */
822 cl_s[i].cs.n = pos + 1;
823 pos = 0;
824 cl_s[i].cs.e = ebt_next_entry(e);
825 e = (struct ebt_entry *)(hlp2->data);
826 nentries = hlp2->nentries;
827 cl_s[i].from = chain_nr;
828 chain_nr = i;
829 /* this udc is accessible from the base chain for hooknr */
830 cl_s[i].hookmask |= (1 << hooknr);
831 continue;
832 }
833letscontinue:
834 e = ebt_next_entry(e);
835 pos++;
836 }
837 return 0;
838}
839
840/* do the parsing of the table/chains/entries/matches/watchers/targets, heh */
841static int translate_table(struct net *net, const char *name,
842 struct ebt_table_info *newinfo)
843{
844 unsigned int i, j, k, udc_cnt;
845 int ret;
846 struct ebt_cl_stack *cl_s = NULL; /* used in the checking for chain loops */
847
848 i = 0;
849 while (i < NF_BR_NUMHOOKS && !newinfo->hook_entry[i])
850 i++;
851 if (i == NF_BR_NUMHOOKS) {
852 BUGPRINT("No valid hooks specified\n");
853 return -EINVAL;
854 }
855 if (newinfo->hook_entry[i] != (struct ebt_entries *)newinfo->entries) {
856 BUGPRINT("Chains don't start at beginning\n");
857 return -EINVAL;
858 }
859 /* make sure chains are ordered after each other in same order
860 * as their corresponding hooks
861 */
862 for (j = i + 1; j < NF_BR_NUMHOOKS; j++) {
863 if (!newinfo->hook_entry[j])
864 continue;
865 if (newinfo->hook_entry[j] <= newinfo->hook_entry[i]) {
866 BUGPRINT("Hook order must be followed\n");
867 return -EINVAL;
868 }
869 i = j;
870 }
871
872 /* do some early checkings and initialize some things */
873 i = 0; /* holds the expected nr. of entries for the chain */
874 j = 0; /* holds the up to now counted entries for the chain */
875 k = 0; /* holds the total nr. of entries, should equal
876 * newinfo->nentries afterwards
877 */
878 udc_cnt = 0; /* will hold the nr. of user defined chains (udc) */
879 ret = EBT_ENTRY_ITERATE(newinfo->entries, newinfo->entries_size,
880 ebt_check_entry_size_and_hooks, newinfo,
881 &i, &j, &k, &udc_cnt);
882
883 if (ret != 0)
884 return ret;
885
886 if (i != j) {
887 BUGPRINT("nentries does not equal the nr of entries in the "
888 "(last) chain\n");
889 return -EINVAL;
890 }
891 if (k != newinfo->nentries) {
892 BUGPRINT("Total nentries is wrong\n");
893 return -EINVAL;
894 }
895
896 /* get the location of the udc, put them in an array
897 * while we're at it, allocate the chainstack
898 */
899 if (udc_cnt) {
900 /* this will get free'd in do_replace()/ebt_register_table()
901 * if an error occurs
902 */
903 newinfo->chainstack =
904 vmalloc(nr_cpu_ids * sizeof(*(newinfo->chainstack)));
905 if (!newinfo->chainstack)
906 return -ENOMEM;
907 for_each_possible_cpu(i) {
908 newinfo->chainstack[i] =
909 vmalloc(udc_cnt * sizeof(*(newinfo->chainstack[0])));
910 if (!newinfo->chainstack[i]) {
911 while (i)
912 vfree(newinfo->chainstack[--i]);
913 vfree(newinfo->chainstack);
914 newinfo->chainstack = NULL;
915 return -ENOMEM;
916 }
917 }
918
919 cl_s = vmalloc(udc_cnt * sizeof(*cl_s));
920 if (!cl_s)
921 return -ENOMEM;
922 i = 0; /* the i'th udc */
923 EBT_ENTRY_ITERATE(newinfo->entries, newinfo->entries_size,
924 ebt_get_udc_positions, newinfo, &i, cl_s);
925 /* sanity check */
926 if (i != udc_cnt) {
927 BUGPRINT("i != udc_cnt\n");
928 vfree(cl_s);
929 return -EFAULT;
930 }
931 }
932
933 /* Check for loops */
934 for (i = 0; i < NF_BR_NUMHOOKS; i++)
935 if (newinfo->hook_entry[i])
936 if (check_chainloops(newinfo->hook_entry[i],
937 cl_s, udc_cnt, i, newinfo->entries)) {
938 vfree(cl_s);
939 return -EINVAL;
940 }
941
942 /* we now know the following (along with E=mc²):
943 * - the nr of entries in each chain is right
944 * - the size of the allocated space is right
945 * - all valid hooks have a corresponding chain
946 * - there are no loops
947 * - wrong data can still be on the level of a single entry
948 * - could be there are jumps to places that are not the
949 * beginning of a chain. This can only occur in chains that
950 * are not accessible from any base chains, so we don't care.
951 */
952
953 /* used to know what we need to clean up if something goes wrong */
954 i = 0;
955 ret = EBT_ENTRY_ITERATE(newinfo->entries, newinfo->entries_size,
956 ebt_check_entry, net, newinfo, name, &i, cl_s, udc_cnt);
957 if (ret != 0) {
958 EBT_ENTRY_ITERATE(newinfo->entries, newinfo->entries_size,
959 ebt_cleanup_entry, net, &i);
960 }
961 vfree(cl_s);
962 return ret;
963}
964
965/* called under write_lock */
966static void get_counters(const struct ebt_counter *oldcounters,
967 struct ebt_counter *counters, unsigned int nentries)
968{
969 int i, cpu;
970 struct ebt_counter *counter_base;
971
972 /* counters of cpu 0 */
973 memcpy(counters, oldcounters,
974 sizeof(struct ebt_counter) * nentries);
975
976 /* add other counters to those of cpu 0 */
977 for_each_possible_cpu(cpu) {
978 if (cpu == 0)
979 continue;
980 counter_base = COUNTER_BASE(oldcounters, nentries, cpu);
981 for (i = 0; i < nentries; i++) {
982 counters[i].pcnt += counter_base[i].pcnt;
983 counters[i].bcnt += counter_base[i].bcnt;
984 }
985 }
986}
987
988static int do_replace_finish(struct net *net, struct ebt_replace *repl,
989 struct ebt_table_info *newinfo)
990{
991 int ret, i;
992 struct ebt_counter *counterstmp = NULL;
993 /* used to be able to unlock earlier */
994 struct ebt_table_info *table;
995 struct ebt_table *t;
996
997 /* the user wants counters back
998 * the check on the size is done later, when we have the lock
999 */
1000 if (repl->num_counters) {
1001 unsigned long size = repl->num_counters * sizeof(*counterstmp);
1002 counterstmp = vmalloc(size);
1003 if (!counterstmp)
1004 return -ENOMEM;
1005 }
1006
1007 newinfo->chainstack = NULL;
1008 ret = ebt_verify_pointers(repl, newinfo);
1009 if (ret != 0)
1010 goto free_counterstmp;
1011
1012 ret = translate_table(net, repl->name, newinfo);
1013
1014 if (ret != 0)
1015 goto free_counterstmp;
1016
1017 t = find_table_lock(net, repl->name, &ret, &ebt_mutex);
1018 if (!t) {
1019 ret = -ENOENT;
1020 goto free_iterate;
1021 }
1022
1023 /* the table doesn't like it */
1024 if (t->check && (ret = t->check(newinfo, repl->valid_hooks)))
1025 goto free_unlock;
1026
1027 if (repl->num_counters && repl->num_counters != t->private->nentries) {
1028 BUGPRINT("Wrong nr. of counters requested\n");
1029 ret = -EINVAL;
1030 goto free_unlock;
1031 }
1032
1033 /* we have the mutex lock, so no danger in reading this pointer */
1034 table = t->private;
1035 /* make sure the table can only be rmmod'ed if it contains no rules */
1036 if (!table->nentries && newinfo->nentries && !try_module_get(t->me)) {
1037 ret = -ENOENT;
1038 goto free_unlock;
1039 } else if (table->nentries && !newinfo->nentries)
1040 module_put(t->me);
1041 /* we need an atomic snapshot of the counters */
1042 write_lock_bh(&t->lock);
1043 if (repl->num_counters)
1044 get_counters(t->private->counters, counterstmp,
1045 t->private->nentries);
1046
1047 t->private = newinfo;
1048 write_unlock_bh(&t->lock);
1049 mutex_unlock(&ebt_mutex);
1050 /* so, a user can change the chains while having messed up her counter
1051 * allocation. Only reason why this is done is because this way the lock
1052 * is held only once, while this doesn't bring the kernel into a
1053 * dangerous state.
1054 */
1055 if (repl->num_counters &&
1056 copy_to_user(repl->counters, counterstmp,
1057 repl->num_counters * sizeof(struct ebt_counter))) {
1058 /* Silent error, can't fail, new table is already in place */
1059 net_warn_ratelimited("ebtables: counters copy to user failed while replacing table\n");
1060 }
1061
1062 /* decrease module count and free resources */
1063 EBT_ENTRY_ITERATE(table->entries, table->entries_size,
1064 ebt_cleanup_entry, net, NULL);
1065
1066 vfree(table->entries);
1067 if (table->chainstack) {
1068 for_each_possible_cpu(i)
1069 vfree(table->chainstack[i]);
1070 vfree(table->chainstack);
1071 }
1072 vfree(table);
1073
1074 vfree(counterstmp);
1075
1076#ifdef CONFIG_AUDIT
1077 if (audit_enabled) {
1078 struct audit_buffer *ab;
1079
1080 ab = audit_log_start(current->audit_context, GFP_KERNEL,
1081 AUDIT_NETFILTER_CFG);
1082 if (ab) {
1083 audit_log_format(ab, "table=%s family=%u entries=%u",
1084 repl->name, AF_BRIDGE, repl->nentries);
1085 audit_log_end(ab);
1086 }
1087 }
1088#endif
1089 return ret;
1090
1091free_unlock:
1092 mutex_unlock(&ebt_mutex);
1093free_iterate:
1094 EBT_ENTRY_ITERATE(newinfo->entries, newinfo->entries_size,
1095 ebt_cleanup_entry, net, NULL);
1096free_counterstmp:
1097 vfree(counterstmp);
1098 /* can be initialized in translate_table() */
1099 if (newinfo->chainstack) {
1100 for_each_possible_cpu(i)
1101 vfree(newinfo->chainstack[i]);
1102 vfree(newinfo->chainstack);
1103 }
1104 return ret;
1105}
1106
1107/* replace the table */
1108static int do_replace(struct net *net, const void __user *user,
1109 unsigned int len)
1110{
1111 int ret, countersize;
1112 struct ebt_table_info *newinfo;
1113 struct ebt_replace tmp;
1114
1115 if (copy_from_user(&tmp, user, sizeof(tmp)) != 0)
1116 return -EFAULT;
1117
1118 if (len != sizeof(tmp) + tmp.entries_size) {
1119 BUGPRINT("Wrong len argument\n");
1120 return -EINVAL;
1121 }
1122
1123 if (tmp.entries_size == 0) {
1124 BUGPRINT("Entries_size never zero\n");
1125 return -EINVAL;
1126 }
1127 /* overflow check */
1128 if (tmp.nentries >= ((INT_MAX - sizeof(struct ebt_table_info)) /
1129 NR_CPUS - SMP_CACHE_BYTES) / sizeof(struct ebt_counter))
1130 return -ENOMEM;
1131 if (tmp.num_counters >= INT_MAX / sizeof(struct ebt_counter))
1132 return -ENOMEM;
1133
1134 tmp.name[sizeof(tmp.name) - 1] = 0;
1135
1136 countersize = COUNTER_OFFSET(tmp.nentries) * nr_cpu_ids;
1137 newinfo = vmalloc(sizeof(*newinfo) + countersize);
1138 if (!newinfo)
1139 return -ENOMEM;
1140
1141 if (countersize)
1142 memset(newinfo->counters, 0, countersize);
1143
1144 newinfo->entries = vmalloc(tmp.entries_size);
1145 if (!newinfo->entries) {
1146 ret = -ENOMEM;
1147 goto free_newinfo;
1148 }
1149 if (copy_from_user(
1150 newinfo->entries, tmp.entries, tmp.entries_size) != 0) {
1151 BUGPRINT("Couldn't copy entries from userspace\n");
1152 ret = -EFAULT;
1153 goto free_entries;
1154 }
1155
1156 ret = do_replace_finish(net, &tmp, newinfo);
1157 if (ret == 0)
1158 return ret;
1159free_entries:
1160 vfree(newinfo->entries);
1161free_newinfo:
1162 vfree(newinfo);
1163 return ret;
1164}
1165
1166struct ebt_table *
1167ebt_register_table(struct net *net, const struct ebt_table *input_table)
1168{
1169 struct ebt_table_info *newinfo;
1170 struct ebt_table *t, *table;
1171 struct ebt_replace_kernel *repl;
1172 int ret, i, countersize;
1173 void *p;
1174
1175 if (input_table == NULL || (repl = input_table->table) == NULL ||
1176 repl->entries == NULL || repl->entries_size == 0 ||
1177 repl->counters != NULL || input_table->private != NULL) {
1178 BUGPRINT("Bad table data for ebt_register_table!!!\n");
1179 return ERR_PTR(-EINVAL);
1180 }
1181
1182 /* Don't add one table to multiple lists. */
1183 table = kmemdup(input_table, sizeof(struct ebt_table), GFP_KERNEL);
1184 if (!table) {
1185 ret = -ENOMEM;
1186 goto out;
1187 }
1188
1189 countersize = COUNTER_OFFSET(repl->nentries) * nr_cpu_ids;
1190 newinfo = vmalloc(sizeof(*newinfo) + countersize);
1191 ret = -ENOMEM;
1192 if (!newinfo)
1193 goto free_table;
1194
1195 p = vmalloc(repl->entries_size);
1196 if (!p)
1197 goto free_newinfo;
1198
1199 memcpy(p, repl->entries, repl->entries_size);
1200 newinfo->entries = p;
1201
1202 newinfo->entries_size = repl->entries_size;
1203 newinfo->nentries = repl->nentries;
1204
1205 if (countersize)
1206 memset(newinfo->counters, 0, countersize);
1207
1208 /* fill in newinfo and parse the entries */
1209 newinfo->chainstack = NULL;
1210 for (i = 0; i < NF_BR_NUMHOOKS; i++) {
1211 if ((repl->valid_hooks & (1 << i)) == 0)
1212 newinfo->hook_entry[i] = NULL;
1213 else
1214 newinfo->hook_entry[i] = p +
1215 ((char *)repl->hook_entry[i] - repl->entries);
1216 }
1217 ret = translate_table(net, repl->name, newinfo);
1218 if (ret != 0) {
1219 BUGPRINT("Translate_table failed\n");
1220 goto free_chainstack;
1221 }
1222
1223 if (table->check && table->check(newinfo, table->valid_hooks)) {
1224 BUGPRINT("The table doesn't like its own initial data, lol\n");
1225 ret = -EINVAL;
1226 goto free_chainstack;
1227 }
1228
1229 table->private = newinfo;
1230 rwlock_init(&table->lock);
1231 mutex_lock(&ebt_mutex);
1232 list_for_each_entry(t, &net->xt.tables[NFPROTO_BRIDGE], list) {
1233 if (strcmp(t->name, table->name) == 0) {
1234 ret = -EEXIST;
1235 BUGPRINT("Table name already exists\n");
1236 goto free_unlock;
1237 }
1238 }
1239
1240 /* Hold a reference count if the chains aren't empty */
1241 if (newinfo->nentries && !try_module_get(table->me)) {
1242 ret = -ENOENT;
1243 goto free_unlock;
1244 }
1245 list_add(&table->list, &net->xt.tables[NFPROTO_BRIDGE]);
1246 mutex_unlock(&ebt_mutex);
1247 return table;
1248free_unlock:
1249 mutex_unlock(&ebt_mutex);
1250free_chainstack:
1251 if (newinfo->chainstack) {
1252 for_each_possible_cpu(i)
1253 vfree(newinfo->chainstack[i]);
1254 vfree(newinfo->chainstack);
1255 }
1256 vfree(newinfo->entries);
1257free_newinfo:
1258 vfree(newinfo);
1259free_table:
1260 kfree(table);
1261out:
1262 return ERR_PTR(ret);
1263}
1264
1265void ebt_unregister_table(struct net *net, struct ebt_table *table)
1266{
1267 int i;
1268
1269 if (!table) {
1270 BUGPRINT("Request to unregister NULL table!!!\n");
1271 return;
1272 }
1273 mutex_lock(&ebt_mutex);
1274 list_del(&table->list);
1275 mutex_unlock(&ebt_mutex);
1276 EBT_ENTRY_ITERATE(table->private->entries, table->private->entries_size,
1277 ebt_cleanup_entry, net, NULL);
1278 if (table->private->nentries)
1279 module_put(table->me);
1280 vfree(table->private->entries);
1281 if (table->private->chainstack) {
1282 for_each_possible_cpu(i)
1283 vfree(table->private->chainstack[i]);
1284 vfree(table->private->chainstack);
1285 }
1286 vfree(table->private);
1287 kfree(table);
1288}
1289
1290/* userspace just supplied us with counters */
1291static int do_update_counters(struct net *net, const char *name,
1292 struct ebt_counter __user *counters,
1293 unsigned int num_counters,
1294 const void __user *user, unsigned int len)
1295{
1296 int i, ret;
1297 struct ebt_counter *tmp;
1298 struct ebt_table *t;
1299
1300 if (num_counters == 0)
1301 return -EINVAL;
1302
1303 tmp = vmalloc(num_counters * sizeof(*tmp));
1304 if (!tmp)
1305 return -ENOMEM;
1306
1307 t = find_table_lock(net, name, &ret, &ebt_mutex);
1308 if (!t)
1309 goto free_tmp;
1310
1311 if (num_counters != t->private->nentries) {
1312 BUGPRINT("Wrong nr of counters\n");
1313 ret = -EINVAL;
1314 goto unlock_mutex;
1315 }
1316
1317 if (copy_from_user(tmp, counters, num_counters * sizeof(*counters))) {
1318 ret = -EFAULT;
1319 goto unlock_mutex;
1320 }
1321
1322 /* we want an atomic add of the counters */
1323 write_lock_bh(&t->lock);
1324
1325 /* we add to the counters of the first cpu */
1326 for (i = 0; i < num_counters; i++) {
1327 t->private->counters[i].pcnt += tmp[i].pcnt;
1328 t->private->counters[i].bcnt += tmp[i].bcnt;
1329 }
1330
1331 write_unlock_bh(&t->lock);
1332 ret = 0;
1333unlock_mutex:
1334 mutex_unlock(&ebt_mutex);
1335free_tmp:
1336 vfree(tmp);
1337 return ret;
1338}
1339
1340static int update_counters(struct net *net, const void __user *user,
1341 unsigned int len)
1342{
1343 struct ebt_replace hlp;
1344
1345 if (copy_from_user(&hlp, user, sizeof(hlp)))
1346 return -EFAULT;
1347
1348 if (len != sizeof(hlp) + hlp.num_counters * sizeof(struct ebt_counter))
1349 return -EINVAL;
1350
1351 return do_update_counters(net, hlp.name, hlp.counters,
1352 hlp.num_counters, user, len);
1353}
1354
1355static inline int ebt_make_matchname(const struct ebt_entry_match *m,
1356 const char *base, char __user *ubase)
1357{
1358 char __user *hlp = ubase + ((char *)m - base);
1359 char name[EBT_FUNCTION_MAXNAMELEN] = {};
1360
1361 /* ebtables expects 32 bytes long names but xt_match names are 29 bytes
1362 * long. Copy 29 bytes and fill remaining bytes with zeroes.
1363 */
1364 strlcpy(name, m->u.match->name, sizeof(name));
1365 if (copy_to_user(hlp, name, EBT_FUNCTION_MAXNAMELEN))
1366 return -EFAULT;
1367 return 0;
1368}
1369
1370static inline int ebt_make_watchername(const struct ebt_entry_watcher *w,
1371 const char *base, char __user *ubase)
1372{
1373 char __user *hlp = ubase + ((char *)w - base);
1374 char name[EBT_FUNCTION_MAXNAMELEN] = {};
1375
1376 strlcpy(name, w->u.watcher->name, sizeof(name));
1377 if (copy_to_user(hlp, name, EBT_FUNCTION_MAXNAMELEN))
1378 return -EFAULT;
1379 return 0;
1380}
1381
1382static inline int ebt_make_names(struct ebt_entry *e, const char *base,
1383 char __user *ubase)
1384{
1385 int ret;
1386 char __user *hlp;
1387 const struct ebt_entry_target *t;
1388 char name[EBT_FUNCTION_MAXNAMELEN] = {};
1389
1390 if (e->bitmask == 0)
1391 return 0;
1392
1393 hlp = ubase + (((char *)e + e->target_offset) - base);
1394 t = (struct ebt_entry_target *)(((char *)e) + e->target_offset);
1395
1396 ret = EBT_MATCH_ITERATE(e, ebt_make_matchname, base, ubase);
1397 if (ret != 0)
1398 return ret;
1399 ret = EBT_WATCHER_ITERATE(e, ebt_make_watchername, base, ubase);
1400 if (ret != 0)
1401 return ret;
1402 strlcpy(name, t->u.target->name, sizeof(name));
1403 if (copy_to_user(hlp, name, EBT_FUNCTION_MAXNAMELEN))
1404 return -EFAULT;
1405 return 0;
1406}
1407
1408static int copy_counters_to_user(struct ebt_table *t,
1409 const struct ebt_counter *oldcounters,
1410 void __user *user, unsigned int num_counters,
1411 unsigned int nentries)
1412{
1413 struct ebt_counter *counterstmp;
1414 int ret = 0;
1415
1416 /* userspace might not need the counters */
1417 if (num_counters == 0)
1418 return 0;
1419
1420 if (num_counters != nentries) {
1421 BUGPRINT("Num_counters wrong\n");
1422 return -EINVAL;
1423 }
1424
1425 counterstmp = vmalloc(nentries * sizeof(*counterstmp));
1426 if (!counterstmp)
1427 return -ENOMEM;
1428
1429 write_lock_bh(&t->lock);
1430 get_counters(oldcounters, counterstmp, nentries);
1431 write_unlock_bh(&t->lock);
1432
1433 if (copy_to_user(user, counterstmp,
1434 nentries * sizeof(struct ebt_counter)))
1435 ret = -EFAULT;
1436 vfree(counterstmp);
1437 return ret;
1438}
1439
1440/* called with ebt_mutex locked */
1441static int copy_everything_to_user(struct ebt_table *t, void __user *user,
1442 const int *len, int cmd)
1443{
1444 struct ebt_replace tmp;
1445 const struct ebt_counter *oldcounters;
1446 unsigned int entries_size, nentries;
1447 int ret;
1448 char *entries;
1449
1450 if (cmd == EBT_SO_GET_ENTRIES) {
1451 entries_size = t->private->entries_size;
1452 nentries = t->private->nentries;
1453 entries = t->private->entries;
1454 oldcounters = t->private->counters;
1455 } else {
1456 entries_size = t->table->entries_size;
1457 nentries = t->table->nentries;
1458 entries = t->table->entries;
1459 oldcounters = t->table->counters;
1460 }
1461
1462 if (copy_from_user(&tmp, user, sizeof(tmp)))
1463 return -EFAULT;
1464
1465 if (*len != sizeof(struct ebt_replace) + entries_size +
1466 (tmp.num_counters ? nentries * sizeof(struct ebt_counter) : 0))
1467 return -EINVAL;
1468
1469 if (tmp.nentries != nentries) {
1470 BUGPRINT("Nentries wrong\n");
1471 return -EINVAL;
1472 }
1473
1474 if (tmp.entries_size != entries_size) {
1475 BUGPRINT("Wrong size\n");
1476 return -EINVAL;
1477 }
1478
1479 ret = copy_counters_to_user(t, oldcounters, tmp.counters,
1480 tmp.num_counters, nentries);
1481 if (ret)
1482 return ret;
1483
1484 if (copy_to_user(tmp.entries, entries, entries_size)) {
1485 BUGPRINT("Couldn't copy entries to userspace\n");
1486 return -EFAULT;
1487 }
1488 /* set the match/watcher/target names right */
1489 return EBT_ENTRY_ITERATE(entries, entries_size,
1490 ebt_make_names, entries, tmp.entries);
1491}
1492
1493static int do_ebt_set_ctl(struct sock *sk,
1494 int cmd, void __user *user, unsigned int len)
1495{
1496 int ret;
1497 struct net *net = sock_net(sk);
1498
1499 if (!ns_capable(net->user_ns, CAP_NET_ADMIN))
1500 return -EPERM;
1501
1502 switch (cmd) {
1503 case EBT_SO_SET_ENTRIES:
1504 ret = do_replace(net, user, len);
1505 break;
1506 case EBT_SO_SET_COUNTERS:
1507 ret = update_counters(net, user, len);
1508 break;
1509 default:
1510 ret = -EINVAL;
1511 }
1512 return ret;
1513}
1514
1515static int do_ebt_get_ctl(struct sock *sk, int cmd, void __user *user, int *len)
1516{
1517 int ret;
1518 struct ebt_replace tmp;
1519 struct ebt_table *t;
1520 struct net *net = sock_net(sk);
1521
1522 if (!ns_capable(net->user_ns, CAP_NET_ADMIN))
1523 return -EPERM;
1524
1525 if (copy_from_user(&tmp, user, sizeof(tmp)))
1526 return -EFAULT;
1527
1528 tmp.name[sizeof(tmp.name) - 1] = '\0';
1529
1530 t = find_table_lock(net, tmp.name, &ret, &ebt_mutex);
1531 if (!t)
1532 return ret;
1533
1534 switch (cmd) {
1535 case EBT_SO_GET_INFO:
1536 case EBT_SO_GET_INIT_INFO:
1537 if (*len != sizeof(struct ebt_replace)) {
1538 ret = -EINVAL;
1539 mutex_unlock(&ebt_mutex);
1540 break;
1541 }
1542 if (cmd == EBT_SO_GET_INFO) {
1543 tmp.nentries = t->private->nentries;
1544 tmp.entries_size = t->private->entries_size;
1545 tmp.valid_hooks = t->valid_hooks;
1546 } else {
1547 tmp.nentries = t->table->nentries;
1548 tmp.entries_size = t->table->entries_size;
1549 tmp.valid_hooks = t->table->valid_hooks;
1550 }
1551 mutex_unlock(&ebt_mutex);
1552 if (copy_to_user(user, &tmp, *len) != 0) {
1553 BUGPRINT("c2u Didn't work\n");
1554 ret = -EFAULT;
1555 break;
1556 }
1557 ret = 0;
1558 break;
1559
1560 case EBT_SO_GET_ENTRIES:
1561 case EBT_SO_GET_INIT_ENTRIES:
1562 ret = copy_everything_to_user(t, user, len, cmd);
1563 mutex_unlock(&ebt_mutex);
1564 break;
1565
1566 default:
1567 mutex_unlock(&ebt_mutex);
1568 ret = -EINVAL;
1569 }
1570
1571 return ret;
1572}
1573
1574#ifdef CONFIG_COMPAT
1575/* 32 bit-userspace compatibility definitions. */
1576struct compat_ebt_replace {
1577 char name[EBT_TABLE_MAXNAMELEN];
1578 compat_uint_t valid_hooks;
1579 compat_uint_t nentries;
1580 compat_uint_t entries_size;
1581 /* start of the chains */
1582 compat_uptr_t hook_entry[NF_BR_NUMHOOKS];
1583 /* nr of counters userspace expects back */
1584 compat_uint_t num_counters;
1585 /* where the kernel will put the old counters. */
1586 compat_uptr_t counters;
1587 compat_uptr_t entries;
1588};
1589
1590/* struct ebt_entry_match, _target and _watcher have same layout */
1591struct compat_ebt_entry_mwt {
1592 union {
1593 char name[EBT_FUNCTION_MAXNAMELEN];
1594 compat_uptr_t ptr;
1595 } u;
1596 compat_uint_t match_size;
1597 compat_uint_t data[0];
1598};
1599
1600/* account for possible padding between match_size and ->data */
1601static int ebt_compat_entry_padsize(void)
1602{
1603 BUILD_BUG_ON(XT_ALIGN(sizeof(struct ebt_entry_match)) <
1604 COMPAT_XT_ALIGN(sizeof(struct compat_ebt_entry_mwt)));
1605 return (int) XT_ALIGN(sizeof(struct ebt_entry_match)) -
1606 COMPAT_XT_ALIGN(sizeof(struct compat_ebt_entry_mwt));
1607}
1608
1609static int ebt_compat_match_offset(const struct xt_match *match,
1610 unsigned int userlen)
1611{
1612 /* ebt_among needs special handling. The kernel .matchsize is
1613 * set to -1 at registration time; at runtime an EBT_ALIGN()ed
1614 * value is expected.
1615 * Example: userspace sends 4500, ebt_among.c wants 4504.
1616 */
1617 if (unlikely(match->matchsize == -1))
1618 return XT_ALIGN(userlen) - COMPAT_XT_ALIGN(userlen);
1619 return xt_compat_match_offset(match);
1620}
1621
1622static int compat_match_to_user(struct ebt_entry_match *m, void __user **dstptr,
1623 unsigned int *size)
1624{
1625 const struct xt_match *match = m->u.match;
1626 struct compat_ebt_entry_mwt __user *cm = *dstptr;
1627 int off = ebt_compat_match_offset(match, m->match_size);
1628 compat_uint_t msize = m->match_size - off;
1629
1630 BUG_ON(off >= m->match_size);
1631
1632 if (copy_to_user(cm->u.name, match->name,
1633 strlen(match->name) + 1) || put_user(msize, &cm->match_size))
1634 return -EFAULT;
1635
1636 if (match->compat_to_user) {
1637 if (match->compat_to_user(cm->data, m->data))
1638 return -EFAULT;
1639 } else if (copy_to_user(cm->data, m->data, msize))
1640 return -EFAULT;
1641
1642 *size -= ebt_compat_entry_padsize() + off;
1643 *dstptr = cm->data;
1644 *dstptr += msize;
1645 return 0;
1646}
1647
1648static int compat_target_to_user(struct ebt_entry_target *t,
1649 void __user **dstptr,
1650 unsigned int *size)
1651{
1652 const struct xt_target *target = t->u.target;
1653 struct compat_ebt_entry_mwt __user *cm = *dstptr;
1654 int off = xt_compat_target_offset(target);
1655 compat_uint_t tsize = t->target_size - off;
1656
1657 BUG_ON(off >= t->target_size);
1658
1659 if (copy_to_user(cm->u.name, target->name,
1660 strlen(target->name) + 1) || put_user(tsize, &cm->match_size))
1661 return -EFAULT;
1662
1663 if (target->compat_to_user) {
1664 if (target->compat_to_user(cm->data, t->data))
1665 return -EFAULT;
1666 } else if (copy_to_user(cm->data, t->data, tsize))
1667 return -EFAULT;
1668
1669 *size -= ebt_compat_entry_padsize() + off;
1670 *dstptr = cm->data;
1671 *dstptr += tsize;
1672 return 0;
1673}
1674
1675static int compat_watcher_to_user(struct ebt_entry_watcher *w,
1676 void __user **dstptr,
1677 unsigned int *size)
1678{
1679 return compat_target_to_user((struct ebt_entry_target *)w,
1680 dstptr, size);
1681}
1682
1683static int compat_copy_entry_to_user(struct ebt_entry *e, void __user **dstptr,
1684 unsigned int *size)
1685{
1686 struct ebt_entry_target *t;
1687 struct ebt_entry __user *ce;
1688 u32 watchers_offset, target_offset, next_offset;
1689 compat_uint_t origsize;
1690 int ret;
1691
1692 if (e->bitmask == 0) {
1693 if (*size < sizeof(struct ebt_entries))
1694 return -EINVAL;
1695 if (copy_to_user(*dstptr, e, sizeof(struct ebt_entries)))
1696 return -EFAULT;
1697
1698 *dstptr += sizeof(struct ebt_entries);
1699 *size -= sizeof(struct ebt_entries);
1700 return 0;
1701 }
1702
1703 if (*size < sizeof(*ce))
1704 return -EINVAL;
1705
1706 ce = (struct ebt_entry __user *)*dstptr;
1707 if (copy_to_user(ce, e, sizeof(*ce)))
1708 return -EFAULT;
1709
1710 origsize = *size;
1711 *dstptr += sizeof(*ce);
1712
1713 ret = EBT_MATCH_ITERATE(e, compat_match_to_user, dstptr, size);
1714 if (ret)
1715 return ret;
1716 watchers_offset = e->watchers_offset - (origsize - *size);
1717
1718 ret = EBT_WATCHER_ITERATE(e, compat_watcher_to_user, dstptr, size);
1719 if (ret)
1720 return ret;
1721 target_offset = e->target_offset - (origsize - *size);
1722
1723 t = (struct ebt_entry_target *) ((char *) e + e->target_offset);
1724
1725 ret = compat_target_to_user(t, dstptr, size);
1726 if (ret)
1727 return ret;
1728 next_offset = e->next_offset - (origsize - *size);
1729
1730 if (put_user(watchers_offset, &ce->watchers_offset) ||
1731 put_user(target_offset, &ce->target_offset) ||
1732 put_user(next_offset, &ce->next_offset))
1733 return -EFAULT;
1734
1735 *size -= sizeof(*ce);
1736 return 0;
1737}
1738
1739static int compat_calc_match(struct ebt_entry_match *m, int *off)
1740{
1741 *off += ebt_compat_match_offset(m->u.match, m->match_size);
1742 *off += ebt_compat_entry_padsize();
1743 return 0;
1744}
1745
1746static int compat_calc_watcher(struct ebt_entry_watcher *w, int *off)
1747{
1748 *off += xt_compat_target_offset(w->u.watcher);
1749 *off += ebt_compat_entry_padsize();
1750 return 0;
1751}
1752
1753static int compat_calc_entry(const struct ebt_entry *e,
1754 const struct ebt_table_info *info,
1755 const void *base,
1756 struct compat_ebt_replace *newinfo)
1757{
1758 const struct ebt_entry_target *t;
1759 unsigned int entry_offset;
1760 int off, ret, i;
1761
1762 if (e->bitmask == 0)
1763 return 0;
1764
1765 off = 0;
1766 entry_offset = (void *)e - base;
1767
1768 EBT_MATCH_ITERATE(e, compat_calc_match, &off);
1769 EBT_WATCHER_ITERATE(e, compat_calc_watcher, &off);
1770
1771 t = (const struct ebt_entry_target *) ((char *) e + e->target_offset);
1772
1773 off += xt_compat_target_offset(t->u.target);
1774 off += ebt_compat_entry_padsize();
1775
1776 newinfo->entries_size -= off;
1777
1778 ret = xt_compat_add_offset(NFPROTO_BRIDGE, entry_offset, off);
1779 if (ret)
1780 return ret;
1781
1782 for (i = 0; i < NF_BR_NUMHOOKS; i++) {
1783 const void *hookptr = info->hook_entry[i];
1784 if (info->hook_entry[i] &&
1785 (e < (struct ebt_entry *)(base - hookptr))) {
1786 newinfo->hook_entry[i] -= off;
1787 pr_debug("0x%08X -> 0x%08X\n",
1788 newinfo->hook_entry[i] + off,
1789 newinfo->hook_entry[i]);
1790 }
1791 }
1792
1793 return 0;
1794}
1795
1796
1797static int compat_table_info(const struct ebt_table_info *info,
1798 struct compat_ebt_replace *newinfo)
1799{
1800 unsigned int size = info->entries_size;
1801 const void *entries = info->entries;
1802
1803 newinfo->entries_size = size;
1804
1805 xt_compat_init_offsets(NFPROTO_BRIDGE, info->nentries);
1806 return EBT_ENTRY_ITERATE(entries, size, compat_calc_entry, info,
1807 entries, newinfo);
1808}
1809
1810static int compat_copy_everything_to_user(struct ebt_table *t,
1811 void __user *user, int *len, int cmd)
1812{
1813 struct compat_ebt_replace repl, tmp;
1814 struct ebt_counter *oldcounters;
1815 struct ebt_table_info tinfo;
1816 int ret;
1817 void __user *pos;
1818
1819 memset(&tinfo, 0, sizeof(tinfo));
1820
1821 if (cmd == EBT_SO_GET_ENTRIES) {
1822 tinfo.entries_size = t->private->entries_size;
1823 tinfo.nentries = t->private->nentries;
1824 tinfo.entries = t->private->entries;
1825 oldcounters = t->private->counters;
1826 } else {
1827 tinfo.entries_size = t->table->entries_size;
1828 tinfo.nentries = t->table->nentries;
1829 tinfo.entries = t->table->entries;
1830 oldcounters = t->table->counters;
1831 }
1832
1833 if (copy_from_user(&tmp, user, sizeof(tmp)))
1834 return -EFAULT;
1835
1836 if (tmp.nentries != tinfo.nentries ||
1837 (tmp.num_counters && tmp.num_counters != tinfo.nentries))
1838 return -EINVAL;
1839
1840 memcpy(&repl, &tmp, sizeof(repl));
1841 if (cmd == EBT_SO_GET_ENTRIES)
1842 ret = compat_table_info(t->private, &repl);
1843 else
1844 ret = compat_table_info(&tinfo, &repl);
1845 if (ret)
1846 return ret;
1847
1848 if (*len != sizeof(tmp) + repl.entries_size +
1849 (tmp.num_counters? tinfo.nentries * sizeof(struct ebt_counter): 0)) {
1850 pr_err("wrong size: *len %d, entries_size %u, replsz %d\n",
1851 *len, tinfo.entries_size, repl.entries_size);
1852 return -EINVAL;
1853 }
1854
1855 /* userspace might not need the counters */
1856 ret = copy_counters_to_user(t, oldcounters, compat_ptr(tmp.counters),
1857 tmp.num_counters, tinfo.nentries);
1858 if (ret)
1859 return ret;
1860
1861 pos = compat_ptr(tmp.entries);
1862 return EBT_ENTRY_ITERATE(tinfo.entries, tinfo.entries_size,
1863 compat_copy_entry_to_user, &pos, &tmp.entries_size);
1864}
1865
1866struct ebt_entries_buf_state {
1867 char *buf_kern_start; /* kernel buffer to copy (translated) data to */
1868 u32 buf_kern_len; /* total size of kernel buffer */
1869 u32 buf_kern_offset; /* amount of data copied so far */
1870 u32 buf_user_offset; /* read position in userspace buffer */
1871};
1872
1873static int ebt_buf_count(struct ebt_entries_buf_state *state, unsigned int sz)
1874{
1875 state->buf_kern_offset += sz;
1876 return state->buf_kern_offset >= sz ? 0 : -EINVAL;
1877}
1878
1879static int ebt_buf_add(struct ebt_entries_buf_state *state,
1880 void *data, unsigned int sz)
1881{
1882 if (state->buf_kern_start == NULL)
1883 goto count_only;
1884
1885 BUG_ON(state->buf_kern_offset + sz > state->buf_kern_len);
1886
1887 memcpy(state->buf_kern_start + state->buf_kern_offset, data, sz);
1888
1889 count_only:
1890 state->buf_user_offset += sz;
1891 return ebt_buf_count(state, sz);
1892}
1893
1894static int ebt_buf_add_pad(struct ebt_entries_buf_state *state, unsigned int sz)
1895{
1896 char *b = state->buf_kern_start;
1897
1898 BUG_ON(b && state->buf_kern_offset > state->buf_kern_len);
1899
1900 if (b != NULL && sz > 0)
1901 memset(b + state->buf_kern_offset, 0, sz);
1902 /* do not adjust ->buf_user_offset here, we added kernel-side padding */
1903 return ebt_buf_count(state, sz);
1904}
1905
1906enum compat_mwt {
1907 EBT_COMPAT_MATCH,
1908 EBT_COMPAT_WATCHER,
1909 EBT_COMPAT_TARGET,
1910};
1911
1912static int compat_mtw_from_user(struct compat_ebt_entry_mwt *mwt,
1913 enum compat_mwt compat_mwt,
1914 struct ebt_entries_buf_state *state,
1915 const unsigned char *base)
1916{
1917 char name[EBT_FUNCTION_MAXNAMELEN];
1918 struct xt_match *match;
1919 struct xt_target *wt;
1920 void *dst = NULL;
1921 int off, pad = 0;
1922 unsigned int size_kern, match_size = mwt->match_size;
1923
1924 strlcpy(name, mwt->u.name, sizeof(name));
1925
1926 if (state->buf_kern_start)
1927 dst = state->buf_kern_start + state->buf_kern_offset;
1928
1929 switch (compat_mwt) {
1930 case EBT_COMPAT_MATCH:
1931 match = xt_request_find_match(NFPROTO_BRIDGE, name, 0);
1932 if (IS_ERR(match))
1933 return PTR_ERR(match);
1934
1935 off = ebt_compat_match_offset(match, match_size);
1936 if (dst) {
1937 if (match->compat_from_user)
1938 match->compat_from_user(dst, mwt->data);
1939 else
1940 memcpy(dst, mwt->data, match_size);
1941 }
1942
1943 size_kern = match->matchsize;
1944 if (unlikely(size_kern == -1))
1945 size_kern = match_size;
1946 module_put(match->me);
1947 break;
1948 case EBT_COMPAT_WATCHER: /* fallthrough */
1949 case EBT_COMPAT_TARGET:
1950 wt = xt_request_find_target(NFPROTO_BRIDGE, name, 0);
1951 if (IS_ERR(wt))
1952 return PTR_ERR(wt);
1953 off = xt_compat_target_offset(wt);
1954
1955 if (dst) {
1956 if (wt->compat_from_user)
1957 wt->compat_from_user(dst, mwt->data);
1958 else
1959 memcpy(dst, mwt->data, match_size);
1960 }
1961
1962 size_kern = wt->targetsize;
1963 module_put(wt->me);
1964 break;
1965
1966 default:
1967 return -EINVAL;
1968 }
1969
1970 state->buf_kern_offset += match_size + off;
1971 state->buf_user_offset += match_size;
1972 pad = XT_ALIGN(size_kern) - size_kern;
1973
1974 if (pad > 0 && dst) {
1975 BUG_ON(state->buf_kern_len <= pad);
1976 BUG_ON(state->buf_kern_offset - (match_size + off) + size_kern > state->buf_kern_len - pad);
1977 memset(dst + size_kern, 0, pad);
1978 }
1979 return off + match_size;
1980}
1981
1982/* return size of all matches, watchers or target, including necessary
1983 * alignment and padding.
1984 */
1985static int ebt_size_mwt(struct compat_ebt_entry_mwt *match32,
1986 unsigned int size_left, enum compat_mwt type,
1987 struct ebt_entries_buf_state *state, const void *base)
1988{
1989 int growth = 0;
1990 char *buf;
1991
1992 if (size_left == 0)
1993 return 0;
1994
1995 buf = (char *) match32;
1996
1997 while (size_left >= sizeof(*match32)) {
1998 struct ebt_entry_match *match_kern;
1999 int ret;
2000
2001 match_kern = (struct ebt_entry_match *) state->buf_kern_start;
2002 if (match_kern) {
2003 char *tmp;
2004 tmp = state->buf_kern_start + state->buf_kern_offset;
2005 match_kern = (struct ebt_entry_match *) tmp;
2006 }
2007 ret = ebt_buf_add(state, buf, sizeof(*match32));
2008 if (ret < 0)
2009 return ret;
2010 size_left -= sizeof(*match32);
2011
2012 /* add padding before match->data (if any) */
2013 ret = ebt_buf_add_pad(state, ebt_compat_entry_padsize());
2014 if (ret < 0)
2015 return ret;
2016
2017 if (match32->match_size > size_left)
2018 return -EINVAL;
2019
2020 size_left -= match32->match_size;
2021
2022 ret = compat_mtw_from_user(match32, type, state, base);
2023 if (ret < 0)
2024 return ret;
2025
2026 BUG_ON(ret < match32->match_size);
2027 growth += ret - match32->match_size;
2028 growth += ebt_compat_entry_padsize();
2029
2030 buf += sizeof(*match32);
2031 buf += match32->match_size;
2032
2033 if (match_kern)
2034 match_kern->match_size = ret;
2035
2036 WARN_ON(type == EBT_COMPAT_TARGET && size_left);
2037 match32 = (struct compat_ebt_entry_mwt *) buf;
2038 }
2039
2040 return growth;
2041}
2042
2043/* called for all ebt_entry structures. */
2044static int size_entry_mwt(struct ebt_entry *entry, const unsigned char *base,
2045 unsigned int *total,
2046 struct ebt_entries_buf_state *state)
2047{
2048 unsigned int i, j, startoff, new_offset = 0;
2049 /* stores match/watchers/targets & offset of next struct ebt_entry: */
2050 unsigned int offsets[4];
2051 unsigned int *offsets_update = NULL;
2052 int ret;
2053 char *buf_start;
2054
2055 if (*total < sizeof(struct ebt_entries))
2056 return -EINVAL;
2057
2058 if (!entry->bitmask) {
2059 *total -= sizeof(struct ebt_entries);
2060 return ebt_buf_add(state, entry, sizeof(struct ebt_entries));
2061 }
2062 if (*total < sizeof(*entry) || entry->next_offset < sizeof(*entry))
2063 return -EINVAL;
2064
2065 startoff = state->buf_user_offset;
2066 /* pull in most part of ebt_entry, it does not need to be changed. */
2067 ret = ebt_buf_add(state, entry,
2068 offsetof(struct ebt_entry, watchers_offset));
2069 if (ret < 0)
2070 return ret;
2071
2072 offsets[0] = sizeof(struct ebt_entry); /* matches come first */
2073 memcpy(&offsets[1], &entry->watchers_offset,
2074 sizeof(offsets) - sizeof(offsets[0]));
2075
2076 if (state->buf_kern_start) {
2077 buf_start = state->buf_kern_start + state->buf_kern_offset;
2078 offsets_update = (unsigned int *) buf_start;
2079 }
2080 ret = ebt_buf_add(state, &offsets[1],
2081 sizeof(offsets) - sizeof(offsets[0]));
2082 if (ret < 0)
2083 return ret;
2084 buf_start = (char *) entry;
2085 /* 0: matches offset, always follows ebt_entry.
2086 * 1: watchers offset, from ebt_entry structure
2087 * 2: target offset, from ebt_entry structure
2088 * 3: next ebt_entry offset, from ebt_entry structure
2089 *
2090 * offsets are relative to beginning of struct ebt_entry (i.e., 0).
2091 */
2092 for (i = 0, j = 1 ; j < 4 ; j++, i++) {
2093 struct compat_ebt_entry_mwt *match32;
2094 unsigned int size;
2095 char *buf = buf_start;
2096
2097 buf = buf_start + offsets[i];
2098 if (offsets[i] > offsets[j])
2099 return -EINVAL;
2100
2101 match32 = (struct compat_ebt_entry_mwt *) buf;
2102 size = offsets[j] - offsets[i];
2103 ret = ebt_size_mwt(match32, size, i, state, base);
2104 if (ret < 0)
2105 return ret;
2106 new_offset += ret;
2107 if (offsets_update && new_offset) {
2108 pr_debug("change offset %d to %d\n",
2109 offsets_update[i], offsets[j] + new_offset);
2110 offsets_update[i] = offsets[j] + new_offset;
2111 }
2112 }
2113
2114 if (state->buf_kern_start == NULL) {
2115 unsigned int offset = buf_start - (char *) base;
2116
2117 ret = xt_compat_add_offset(NFPROTO_BRIDGE, offset, new_offset);
2118 if (ret < 0)
2119 return ret;
2120 }
2121
2122 startoff = state->buf_user_offset - startoff;
2123
2124 BUG_ON(*total < startoff);
2125 *total -= startoff;
2126 return 0;
2127}
2128
2129/* repl->entries_size is the size of the ebt_entry blob in userspace.
2130 * It might need more memory when copied to a 64 bit kernel in case
2131 * userspace is 32-bit. So, first task: find out how much memory is needed.
2132 *
2133 * Called before validation is performed.
2134 */
2135static int compat_copy_entries(unsigned char *data, unsigned int size_user,
2136 struct ebt_entries_buf_state *state)
2137{
2138 unsigned int size_remaining = size_user;
2139 int ret;
2140
2141 ret = EBT_ENTRY_ITERATE(data, size_user, size_entry_mwt, data,
2142 &size_remaining, state);
2143 if (ret < 0)
2144 return ret;
2145
2146 WARN_ON(size_remaining);
2147 return state->buf_kern_offset;
2148}
2149
2150
2151static int compat_copy_ebt_replace_from_user(struct ebt_replace *repl,
2152 void __user *user, unsigned int len)
2153{
2154 struct compat_ebt_replace tmp;
2155 int i;
2156
2157 if (len < sizeof(tmp))
2158 return -EINVAL;
2159
2160 if (copy_from_user(&tmp, user, sizeof(tmp)))
2161 return -EFAULT;
2162
2163 if (len != sizeof(tmp) + tmp.entries_size)
2164 return -EINVAL;
2165
2166 if (tmp.entries_size == 0)
2167 return -EINVAL;
2168
2169 if (tmp.nentries >= ((INT_MAX - sizeof(struct ebt_table_info)) /
2170 NR_CPUS - SMP_CACHE_BYTES) / sizeof(struct ebt_counter))
2171 return -ENOMEM;
2172 if (tmp.num_counters >= INT_MAX / sizeof(struct ebt_counter))
2173 return -ENOMEM;
2174
2175 memcpy(repl, &tmp, offsetof(struct ebt_replace, hook_entry));
2176
2177 /* starting with hook_entry, 32 vs. 64 bit structures are different */
2178 for (i = 0; i < NF_BR_NUMHOOKS; i++)
2179 repl->hook_entry[i] = compat_ptr(tmp.hook_entry[i]);
2180
2181 repl->num_counters = tmp.num_counters;
2182 repl->counters = compat_ptr(tmp.counters);
2183 repl->entries = compat_ptr(tmp.entries);
2184 return 0;
2185}
2186
2187static int compat_do_replace(struct net *net, void __user *user,
2188 unsigned int len)
2189{
2190 int ret, i, countersize, size64;
2191 struct ebt_table_info *newinfo;
2192 struct ebt_replace tmp;
2193 struct ebt_entries_buf_state state;
2194 void *entries_tmp;
2195
2196 ret = compat_copy_ebt_replace_from_user(&tmp, user, len);
2197 if (ret) {
2198 /* try real handler in case userland supplied needed padding */
2199 if (ret == -EINVAL && do_replace(net, user, len) == 0)
2200 ret = 0;
2201 return ret;
2202 }
2203
2204 countersize = COUNTER_OFFSET(tmp.nentries) * nr_cpu_ids;
2205 newinfo = vmalloc(sizeof(*newinfo) + countersize);
2206 if (!newinfo)
2207 return -ENOMEM;
2208
2209 if (countersize)
2210 memset(newinfo->counters, 0, countersize);
2211
2212 memset(&state, 0, sizeof(state));
2213
2214 newinfo->entries = vmalloc(tmp.entries_size);
2215 if (!newinfo->entries) {
2216 ret = -ENOMEM;
2217 goto free_newinfo;
2218 }
2219 if (copy_from_user(
2220 newinfo->entries, tmp.entries, tmp.entries_size) != 0) {
2221 ret = -EFAULT;
2222 goto free_entries;
2223 }
2224
2225 entries_tmp = newinfo->entries;
2226
2227 xt_compat_lock(NFPROTO_BRIDGE);
2228
2229 xt_compat_init_offsets(NFPROTO_BRIDGE, tmp.nentries);
2230 ret = compat_copy_entries(entries_tmp, tmp.entries_size, &state);
2231 if (ret < 0)
2232 goto out_unlock;
2233
2234 pr_debug("tmp.entries_size %d, kern off %d, user off %d delta %d\n",
2235 tmp.entries_size, state.buf_kern_offset, state.buf_user_offset,
2236 xt_compat_calc_jump(NFPROTO_BRIDGE, tmp.entries_size));
2237
2238 size64 = ret;
2239 newinfo->entries = vmalloc(size64);
2240 if (!newinfo->entries) {
2241 vfree(entries_tmp);
2242 ret = -ENOMEM;
2243 goto out_unlock;
2244 }
2245
2246 memset(&state, 0, sizeof(state));
2247 state.buf_kern_start = newinfo->entries;
2248 state.buf_kern_len = size64;
2249
2250 ret = compat_copy_entries(entries_tmp, tmp.entries_size, &state);
2251 BUG_ON(ret < 0); /* parses same data again */
2252
2253 vfree(entries_tmp);
2254 tmp.entries_size = size64;
2255
2256 for (i = 0; i < NF_BR_NUMHOOKS; i++) {
2257 char __user *usrptr;
2258 if (tmp.hook_entry[i]) {
2259 unsigned int delta;
2260 usrptr = (char __user *) tmp.hook_entry[i];
2261 delta = usrptr - tmp.entries;
2262 usrptr += xt_compat_calc_jump(NFPROTO_BRIDGE, delta);
2263 tmp.hook_entry[i] = (struct ebt_entries __user *)usrptr;
2264 }
2265 }
2266
2267 xt_compat_flush_offsets(NFPROTO_BRIDGE);
2268 xt_compat_unlock(NFPROTO_BRIDGE);
2269
2270 ret = do_replace_finish(net, &tmp, newinfo);
2271 if (ret == 0)
2272 return ret;
2273free_entries:
2274 vfree(newinfo->entries);
2275free_newinfo:
2276 vfree(newinfo);
2277 return ret;
2278out_unlock:
2279 xt_compat_flush_offsets(NFPROTO_BRIDGE);
2280 xt_compat_unlock(NFPROTO_BRIDGE);
2281 goto free_entries;
2282}
2283
2284static int compat_update_counters(struct net *net, void __user *user,
2285 unsigned int len)
2286{
2287 struct compat_ebt_replace hlp;
2288
2289 if (copy_from_user(&hlp, user, sizeof(hlp)))
2290 return -EFAULT;
2291
2292 /* try real handler in case userland supplied needed padding */
2293 if (len != sizeof(hlp) + hlp.num_counters * sizeof(struct ebt_counter))
2294 return update_counters(net, user, len);
2295
2296 return do_update_counters(net, hlp.name, compat_ptr(hlp.counters),
2297 hlp.num_counters, user, len);
2298}
2299
2300static int compat_do_ebt_set_ctl(struct sock *sk,
2301 int cmd, void __user *user, unsigned int len)
2302{
2303 int ret;
2304 struct net *net = sock_net(sk);
2305
2306 if (!ns_capable(net->user_ns, CAP_NET_ADMIN))
2307 return -EPERM;
2308
2309 switch (cmd) {
2310 case EBT_SO_SET_ENTRIES:
2311 ret = compat_do_replace(net, user, len);
2312 break;
2313 case EBT_SO_SET_COUNTERS:
2314 ret = compat_update_counters(net, user, len);
2315 break;
2316 default:
2317 ret = -EINVAL;
2318 }
2319 return ret;
2320}
2321
2322static int compat_do_ebt_get_ctl(struct sock *sk, int cmd,
2323 void __user *user, int *len)
2324{
2325 int ret;
2326 struct compat_ebt_replace tmp;
2327 struct ebt_table *t;
2328 struct net *net = sock_net(sk);
2329
2330 if (!ns_capable(net->user_ns, CAP_NET_ADMIN))
2331 return -EPERM;
2332
2333 /* try real handler in case userland supplied needed padding */
2334 if ((cmd == EBT_SO_GET_INFO ||
2335 cmd == EBT_SO_GET_INIT_INFO) && *len != sizeof(tmp))
2336 return do_ebt_get_ctl(sk, cmd, user, len);
2337
2338 if (copy_from_user(&tmp, user, sizeof(tmp)))
2339 return -EFAULT;
2340
2341 tmp.name[sizeof(tmp.name) - 1] = '\0';
2342
2343 t = find_table_lock(net, tmp.name, &ret, &ebt_mutex);
2344 if (!t)
2345 return ret;
2346
2347 xt_compat_lock(NFPROTO_BRIDGE);
2348 switch (cmd) {
2349 case EBT_SO_GET_INFO:
2350 tmp.nentries = t->private->nentries;
2351 ret = compat_table_info(t->private, &tmp);
2352 if (ret)
2353 goto out;
2354 tmp.valid_hooks = t->valid_hooks;
2355
2356 if (copy_to_user(user, &tmp, *len) != 0) {
2357 ret = -EFAULT;
2358 break;
2359 }
2360 ret = 0;
2361 break;
2362 case EBT_SO_GET_INIT_INFO:
2363 tmp.nentries = t->table->nentries;
2364 tmp.entries_size = t->table->entries_size;
2365 tmp.valid_hooks = t->table->valid_hooks;
2366
2367 if (copy_to_user(user, &tmp, *len) != 0) {
2368 ret = -EFAULT;
2369 break;
2370 }
2371 ret = 0;
2372 break;
2373 case EBT_SO_GET_ENTRIES:
2374 case EBT_SO_GET_INIT_ENTRIES:
2375 /* try real handler first in case of userland-side padding.
2376 * in case we are dealing with an 'ordinary' 32 bit binary
2377 * without 64bit compatibility padding, this will fail right
2378 * after copy_from_user when the *len argument is validated.
2379 *
2380 * the compat_ variant needs to do one pass over the kernel
2381 * data set to adjust for size differences before it the check.
2382 */
2383 if (copy_everything_to_user(t, user, len, cmd) == 0)
2384 ret = 0;
2385 else
2386 ret = compat_copy_everything_to_user(t, user, len, cmd);
2387 break;
2388 default:
2389 ret = -EINVAL;
2390 }
2391 out:
2392 xt_compat_flush_offsets(NFPROTO_BRIDGE);
2393 xt_compat_unlock(NFPROTO_BRIDGE);
2394 mutex_unlock(&ebt_mutex);
2395 return ret;
2396}
2397#endif
2398
2399static struct nf_sockopt_ops ebt_sockopts = {
2400 .pf = PF_INET,
2401 .set_optmin = EBT_BASE_CTL,
2402 .set_optmax = EBT_SO_SET_MAX + 1,
2403 .set = do_ebt_set_ctl,
2404#ifdef CONFIG_COMPAT
2405 .compat_set = compat_do_ebt_set_ctl,
2406#endif
2407 .get_optmin = EBT_BASE_CTL,
2408 .get_optmax = EBT_SO_GET_MAX + 1,
2409 .get = do_ebt_get_ctl,
2410#ifdef CONFIG_COMPAT
2411 .compat_get = compat_do_ebt_get_ctl,
2412#endif
2413 .owner = THIS_MODULE,
2414};
2415
2416static int __init ebtables_init(void)
2417{
2418 int ret;
2419
2420 ret = xt_register_target(&ebt_standard_target);
2421 if (ret < 0)
2422 return ret;
2423 ret = nf_register_sockopt(&ebt_sockopts);
2424 if (ret < 0) {
2425 xt_unregister_target(&ebt_standard_target);
2426 return ret;
2427 }
2428
2429 printk(KERN_INFO "Ebtables v2.0 registered\n");
2430 return 0;
2431}
2432
2433static void __exit ebtables_fini(void)
2434{
2435 nf_unregister_sockopt(&ebt_sockopts);
2436 xt_unregister_target(&ebt_standard_target);
2437 printk(KERN_INFO "Ebtables v2.0 unregistered\n");
2438}
2439
2440EXPORT_SYMBOL(ebt_register_table);
2441EXPORT_SYMBOL(ebt_unregister_table);
2442EXPORT_SYMBOL(ebt_do_table);
2443module_init(ebtables_init);
2444module_exit(ebtables_fini);
2445MODULE_LICENSE("GPL");
1/*
2 * ebtables
3 *
4 * Author:
5 * Bart De Schuymer <bdschuym@pandora.be>
6 *
7 * ebtables.c,v 2.0, July, 2002
8 *
9 * This code is stongly inspired on the iptables code which is
10 * Copyright (C) 1999 Paul `Rusty' Russell & Michael J. Neuling
11 *
12 * This program is free software; you can redistribute it and/or
13 * modify it under the terms of the GNU General Public License
14 * as published by the Free Software Foundation; either version
15 * 2 of the License, or (at your option) any later version.
16 */
17#define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
18#include <linux/kmod.h>
19#include <linux/module.h>
20#include <linux/vmalloc.h>
21#include <linux/netfilter/x_tables.h>
22#include <linux/netfilter_bridge/ebtables.h>
23#include <linux/spinlock.h>
24#include <linux/mutex.h>
25#include <linux/slab.h>
26#include <asm/uaccess.h>
27#include <linux/smp.h>
28#include <linux/cpumask.h>
29#include <net/sock.h>
30/* needed for logical [in,out]-dev filtering */
31#include "../br_private.h"
32
33#define BUGPRINT(format, args...) printk("kernel msg: ebtables bug: please "\
34 "report to author: "format, ## args)
35/* #define BUGPRINT(format, args...) */
36
37/*
38 * Each cpu has its own set of counters, so there is no need for write_lock in
39 * the softirq
40 * For reading or updating the counters, the user context needs to
41 * get a write_lock
42 */
43
44/* The size of each set of counters is altered to get cache alignment */
45#define SMP_ALIGN(x) (((x) + SMP_CACHE_BYTES-1) & ~(SMP_CACHE_BYTES-1))
46#define COUNTER_OFFSET(n) (SMP_ALIGN(n * sizeof(struct ebt_counter)))
47#define COUNTER_BASE(c, n, cpu) ((struct ebt_counter *)(((char *)c) + \
48 COUNTER_OFFSET(n) * cpu))
49
50
51
52static DEFINE_MUTEX(ebt_mutex);
53
54#ifdef CONFIG_COMPAT
55static void ebt_standard_compat_from_user(void *dst, const void *src)
56{
57 int v = *(compat_int_t *)src;
58
59 if (v >= 0)
60 v += xt_compat_calc_jump(NFPROTO_BRIDGE, v);
61 memcpy(dst, &v, sizeof(v));
62}
63
64static int ebt_standard_compat_to_user(void __user *dst, const void *src)
65{
66 compat_int_t cv = *(int *)src;
67
68 if (cv >= 0)
69 cv -= xt_compat_calc_jump(NFPROTO_BRIDGE, cv);
70 return copy_to_user(dst, &cv, sizeof(cv)) ? -EFAULT : 0;
71}
72#endif
73
74
75static struct xt_target ebt_standard_target = {
76 .name = "standard",
77 .revision = 0,
78 .family = NFPROTO_BRIDGE,
79 .targetsize = sizeof(int),
80#ifdef CONFIG_COMPAT
81 .compatsize = sizeof(compat_int_t),
82 .compat_from_user = ebt_standard_compat_from_user,
83 .compat_to_user = ebt_standard_compat_to_user,
84#endif
85};
86
87static inline int
88ebt_do_watcher(const struct ebt_entry_watcher *w, struct sk_buff *skb,
89 struct xt_action_param *par)
90{
91 par->target = w->u.watcher;
92 par->targinfo = w->data;
93 w->u.watcher->target(skb, par);
94 /* watchers don't give a verdict */
95 return 0;
96}
97
98static inline int
99ebt_do_match(struct ebt_entry_match *m, const struct sk_buff *skb,
100 struct xt_action_param *par)
101{
102 par->match = m->u.match;
103 par->matchinfo = m->data;
104 return m->u.match->match(skb, par) ? EBT_MATCH : EBT_NOMATCH;
105}
106
107static inline int
108ebt_dev_check(const char *entry, const struct net_device *device)
109{
110 int i = 0;
111 const char *devname;
112
113 if (*entry == '\0')
114 return 0;
115 if (!device)
116 return 1;
117 devname = device->name;
118 /* 1 is the wildcard token */
119 while (entry[i] != '\0' && entry[i] != 1 && entry[i] == devname[i])
120 i++;
121 return (devname[i] != entry[i] && entry[i] != 1);
122}
123
124#define FWINV2(bool,invflg) ((bool) ^ !!(e->invflags & invflg))
125/* process standard matches */
126static inline int
127ebt_basic_match(const struct ebt_entry *e, const struct sk_buff *skb,
128 const struct net_device *in, const struct net_device *out)
129{
130 const struct ethhdr *h = eth_hdr(skb);
131 const struct net_bridge_port *p;
132 __be16 ethproto;
133 int verdict, i;
134
135 if (vlan_tx_tag_present(skb))
136 ethproto = htons(ETH_P_8021Q);
137 else
138 ethproto = h->h_proto;
139
140 if (e->bitmask & EBT_802_3) {
141 if (FWINV2(ntohs(ethproto) >= 1536, EBT_IPROTO))
142 return 1;
143 } else if (!(e->bitmask & EBT_NOPROTO) &&
144 FWINV2(e->ethproto != ethproto, EBT_IPROTO))
145 return 1;
146
147 if (FWINV2(ebt_dev_check(e->in, in), EBT_IIN))
148 return 1;
149 if (FWINV2(ebt_dev_check(e->out, out), EBT_IOUT))
150 return 1;
151 /* rcu_read_lock()ed by nf_hook_slow */
152 if (in && (p = br_port_get_rcu(in)) != NULL &&
153 FWINV2(ebt_dev_check(e->logical_in, p->br->dev), EBT_ILOGICALIN))
154 return 1;
155 if (out && (p = br_port_get_rcu(out)) != NULL &&
156 FWINV2(ebt_dev_check(e->logical_out, p->br->dev), EBT_ILOGICALOUT))
157 return 1;
158
159 if (e->bitmask & EBT_SOURCEMAC) {
160 verdict = 0;
161 for (i = 0; i < 6; i++)
162 verdict |= (h->h_source[i] ^ e->sourcemac[i]) &
163 e->sourcemsk[i];
164 if (FWINV2(verdict != 0, EBT_ISOURCE) )
165 return 1;
166 }
167 if (e->bitmask & EBT_DESTMAC) {
168 verdict = 0;
169 for (i = 0; i < 6; i++)
170 verdict |= (h->h_dest[i] ^ e->destmac[i]) &
171 e->destmsk[i];
172 if (FWINV2(verdict != 0, EBT_IDEST) )
173 return 1;
174 }
175 return 0;
176}
177
178static inline __pure
179struct ebt_entry *ebt_next_entry(const struct ebt_entry *entry)
180{
181 return (void *)entry + entry->next_offset;
182}
183
184/* Do some firewalling */
185unsigned int ebt_do_table (unsigned int hook, struct sk_buff *skb,
186 const struct net_device *in, const struct net_device *out,
187 struct ebt_table *table)
188{
189 int i, nentries;
190 struct ebt_entry *point;
191 struct ebt_counter *counter_base, *cb_base;
192 const struct ebt_entry_target *t;
193 int verdict, sp = 0;
194 struct ebt_chainstack *cs;
195 struct ebt_entries *chaininfo;
196 const char *base;
197 const struct ebt_table_info *private;
198 struct xt_action_param acpar;
199
200 acpar.family = NFPROTO_BRIDGE;
201 acpar.in = in;
202 acpar.out = out;
203 acpar.hotdrop = false;
204 acpar.hooknum = hook;
205
206 read_lock_bh(&table->lock);
207 private = table->private;
208 cb_base = COUNTER_BASE(private->counters, private->nentries,
209 smp_processor_id());
210 if (private->chainstack)
211 cs = private->chainstack[smp_processor_id()];
212 else
213 cs = NULL;
214 chaininfo = private->hook_entry[hook];
215 nentries = private->hook_entry[hook]->nentries;
216 point = (struct ebt_entry *)(private->hook_entry[hook]->data);
217 counter_base = cb_base + private->hook_entry[hook]->counter_offset;
218 /* base for chain jumps */
219 base = private->entries;
220 i = 0;
221 while (i < nentries) {
222 if (ebt_basic_match(point, skb, in, out))
223 goto letscontinue;
224
225 if (EBT_MATCH_ITERATE(point, ebt_do_match, skb, &acpar) != 0)
226 goto letscontinue;
227 if (acpar.hotdrop) {
228 read_unlock_bh(&table->lock);
229 return NF_DROP;
230 }
231
232 /* increase counter */
233 (*(counter_base + i)).pcnt++;
234 (*(counter_base + i)).bcnt += skb->len;
235
236 /* these should only watch: not modify, nor tell us
237 what to do with the packet */
238 EBT_WATCHER_ITERATE(point, ebt_do_watcher, skb, &acpar);
239
240 t = (struct ebt_entry_target *)
241 (((char *)point) + point->target_offset);
242 /* standard target */
243 if (!t->u.target->target)
244 verdict = ((struct ebt_standard_target *)t)->verdict;
245 else {
246 acpar.target = t->u.target;
247 acpar.targinfo = t->data;
248 verdict = t->u.target->target(skb, &acpar);
249 }
250 if (verdict == EBT_ACCEPT) {
251 read_unlock_bh(&table->lock);
252 return NF_ACCEPT;
253 }
254 if (verdict == EBT_DROP) {
255 read_unlock_bh(&table->lock);
256 return NF_DROP;
257 }
258 if (verdict == EBT_RETURN) {
259letsreturn:
260#ifdef CONFIG_NETFILTER_DEBUG
261 if (sp == 0) {
262 BUGPRINT("RETURN on base chain");
263 /* act like this is EBT_CONTINUE */
264 goto letscontinue;
265 }
266#endif
267 sp--;
268 /* put all the local variables right */
269 i = cs[sp].n;
270 chaininfo = cs[sp].chaininfo;
271 nentries = chaininfo->nentries;
272 point = cs[sp].e;
273 counter_base = cb_base +
274 chaininfo->counter_offset;
275 continue;
276 }
277 if (verdict == EBT_CONTINUE)
278 goto letscontinue;
279#ifdef CONFIG_NETFILTER_DEBUG
280 if (verdict < 0) {
281 BUGPRINT("bogus standard verdict\n");
282 read_unlock_bh(&table->lock);
283 return NF_DROP;
284 }
285#endif
286 /* jump to a udc */
287 cs[sp].n = i + 1;
288 cs[sp].chaininfo = chaininfo;
289 cs[sp].e = ebt_next_entry(point);
290 i = 0;
291 chaininfo = (struct ebt_entries *) (base + verdict);
292#ifdef CONFIG_NETFILTER_DEBUG
293 if (chaininfo->distinguisher) {
294 BUGPRINT("jump to non-chain\n");
295 read_unlock_bh(&table->lock);
296 return NF_DROP;
297 }
298#endif
299 nentries = chaininfo->nentries;
300 point = (struct ebt_entry *)chaininfo->data;
301 counter_base = cb_base + chaininfo->counter_offset;
302 sp++;
303 continue;
304letscontinue:
305 point = ebt_next_entry(point);
306 i++;
307 }
308
309 /* I actually like this :) */
310 if (chaininfo->policy == EBT_RETURN)
311 goto letsreturn;
312 if (chaininfo->policy == EBT_ACCEPT) {
313 read_unlock_bh(&table->lock);
314 return NF_ACCEPT;
315 }
316 read_unlock_bh(&table->lock);
317 return NF_DROP;
318}
319
320/* If it succeeds, returns element and locks mutex */
321static inline void *
322find_inlist_lock_noload(struct list_head *head, const char *name, int *error,
323 struct mutex *mutex)
324{
325 struct {
326 struct list_head list;
327 char name[EBT_FUNCTION_MAXNAMELEN];
328 } *e;
329
330 *error = mutex_lock_interruptible(mutex);
331 if (*error != 0)
332 return NULL;
333
334 list_for_each_entry(e, head, list) {
335 if (strcmp(e->name, name) == 0)
336 return e;
337 }
338 *error = -ENOENT;
339 mutex_unlock(mutex);
340 return NULL;
341}
342
343static void *
344find_inlist_lock(struct list_head *head, const char *name, const char *prefix,
345 int *error, struct mutex *mutex)
346{
347 return try_then_request_module(
348 find_inlist_lock_noload(head, name, error, mutex),
349 "%s%s", prefix, name);
350}
351
352static inline struct ebt_table *
353find_table_lock(struct net *net, const char *name, int *error,
354 struct mutex *mutex)
355{
356 return find_inlist_lock(&net->xt.tables[NFPROTO_BRIDGE], name,
357 "ebtable_", error, mutex);
358}
359
360static inline int
361ebt_check_match(struct ebt_entry_match *m, struct xt_mtchk_param *par,
362 unsigned int *cnt)
363{
364 const struct ebt_entry *e = par->entryinfo;
365 struct xt_match *match;
366 size_t left = ((char *)e + e->watchers_offset) - (char *)m;
367 int ret;
368
369 if (left < sizeof(struct ebt_entry_match) ||
370 left - sizeof(struct ebt_entry_match) < m->match_size)
371 return -EINVAL;
372
373 match = xt_request_find_match(NFPROTO_BRIDGE, m->u.name, 0);
374 if (IS_ERR(match))
375 return PTR_ERR(match);
376 m->u.match = match;
377
378 par->match = match;
379 par->matchinfo = m->data;
380 ret = xt_check_match(par, m->match_size,
381 e->ethproto, e->invflags & EBT_IPROTO);
382 if (ret < 0) {
383 module_put(match->me);
384 return ret;
385 }
386
387 (*cnt)++;
388 return 0;
389}
390
391static inline int
392ebt_check_watcher(struct ebt_entry_watcher *w, struct xt_tgchk_param *par,
393 unsigned int *cnt)
394{
395 const struct ebt_entry *e = par->entryinfo;
396 struct xt_target *watcher;
397 size_t left = ((char *)e + e->target_offset) - (char *)w;
398 int ret;
399
400 if (left < sizeof(struct ebt_entry_watcher) ||
401 left - sizeof(struct ebt_entry_watcher) < w->watcher_size)
402 return -EINVAL;
403
404 watcher = xt_request_find_target(NFPROTO_BRIDGE, w->u.name, 0);
405 if (IS_ERR(watcher))
406 return PTR_ERR(watcher);
407 w->u.watcher = watcher;
408
409 par->target = watcher;
410 par->targinfo = w->data;
411 ret = xt_check_target(par, w->watcher_size,
412 e->ethproto, e->invflags & EBT_IPROTO);
413 if (ret < 0) {
414 module_put(watcher->me);
415 return ret;
416 }
417
418 (*cnt)++;
419 return 0;
420}
421
422static int ebt_verify_pointers(const struct ebt_replace *repl,
423 struct ebt_table_info *newinfo)
424{
425 unsigned int limit = repl->entries_size;
426 unsigned int valid_hooks = repl->valid_hooks;
427 unsigned int offset = 0;
428 int i;
429
430 for (i = 0; i < NF_BR_NUMHOOKS; i++)
431 newinfo->hook_entry[i] = NULL;
432
433 newinfo->entries_size = repl->entries_size;
434 newinfo->nentries = repl->nentries;
435
436 while (offset < limit) {
437 size_t left = limit - offset;
438 struct ebt_entry *e = (void *)newinfo->entries + offset;
439
440 if (left < sizeof(unsigned int))
441 break;
442
443 for (i = 0; i < NF_BR_NUMHOOKS; i++) {
444 if ((valid_hooks & (1 << i)) == 0)
445 continue;
446 if ((char __user *)repl->hook_entry[i] ==
447 repl->entries + offset)
448 break;
449 }
450
451 if (i != NF_BR_NUMHOOKS || !(e->bitmask & EBT_ENTRY_OR_ENTRIES)) {
452 if (e->bitmask != 0) {
453 /* we make userspace set this right,
454 so there is no misunderstanding */
455 BUGPRINT("EBT_ENTRY_OR_ENTRIES shouldn't be set "
456 "in distinguisher\n");
457 return -EINVAL;
458 }
459 if (i != NF_BR_NUMHOOKS)
460 newinfo->hook_entry[i] = (struct ebt_entries *)e;
461 if (left < sizeof(struct ebt_entries))
462 break;
463 offset += sizeof(struct ebt_entries);
464 } else {
465 if (left < sizeof(struct ebt_entry))
466 break;
467 if (left < e->next_offset)
468 break;
469 if (e->next_offset < sizeof(struct ebt_entry))
470 return -EINVAL;
471 offset += e->next_offset;
472 }
473 }
474 if (offset != limit) {
475 BUGPRINT("entries_size too small\n");
476 return -EINVAL;
477 }
478
479 /* check if all valid hooks have a chain */
480 for (i = 0; i < NF_BR_NUMHOOKS; i++) {
481 if (!newinfo->hook_entry[i] &&
482 (valid_hooks & (1 << i))) {
483 BUGPRINT("Valid hook without chain\n");
484 return -EINVAL;
485 }
486 }
487 return 0;
488}
489
490/*
491 * this one is very careful, as it is the first function
492 * to parse the userspace data
493 */
494static inline int
495ebt_check_entry_size_and_hooks(const struct ebt_entry *e,
496 const struct ebt_table_info *newinfo,
497 unsigned int *n, unsigned int *cnt,
498 unsigned int *totalcnt, unsigned int *udc_cnt)
499{
500 int i;
501
502 for (i = 0; i < NF_BR_NUMHOOKS; i++) {
503 if ((void *)e == (void *)newinfo->hook_entry[i])
504 break;
505 }
506 /* beginning of a new chain
507 if i == NF_BR_NUMHOOKS it must be a user defined chain */
508 if (i != NF_BR_NUMHOOKS || !e->bitmask) {
509 /* this checks if the previous chain has as many entries
510 as it said it has */
511 if (*n != *cnt) {
512 BUGPRINT("nentries does not equal the nr of entries "
513 "in the chain\n");
514 return -EINVAL;
515 }
516 if (((struct ebt_entries *)e)->policy != EBT_DROP &&
517 ((struct ebt_entries *)e)->policy != EBT_ACCEPT) {
518 /* only RETURN from udc */
519 if (i != NF_BR_NUMHOOKS ||
520 ((struct ebt_entries *)e)->policy != EBT_RETURN) {
521 BUGPRINT("bad policy\n");
522 return -EINVAL;
523 }
524 }
525 if (i == NF_BR_NUMHOOKS) /* it's a user defined chain */
526 (*udc_cnt)++;
527 if (((struct ebt_entries *)e)->counter_offset != *totalcnt) {
528 BUGPRINT("counter_offset != totalcnt");
529 return -EINVAL;
530 }
531 *n = ((struct ebt_entries *)e)->nentries;
532 *cnt = 0;
533 return 0;
534 }
535 /* a plain old entry, heh */
536 if (sizeof(struct ebt_entry) > e->watchers_offset ||
537 e->watchers_offset > e->target_offset ||
538 e->target_offset >= e->next_offset) {
539 BUGPRINT("entry offsets not in right order\n");
540 return -EINVAL;
541 }
542 /* this is not checked anywhere else */
543 if (e->next_offset - e->target_offset < sizeof(struct ebt_entry_target)) {
544 BUGPRINT("target size too small\n");
545 return -EINVAL;
546 }
547 (*cnt)++;
548 (*totalcnt)++;
549 return 0;
550}
551
552struct ebt_cl_stack
553{
554 struct ebt_chainstack cs;
555 int from;
556 unsigned int hookmask;
557};
558
559/*
560 * we need these positions to check that the jumps to a different part of the
561 * entries is a jump to the beginning of a new chain.
562 */
563static inline int
564ebt_get_udc_positions(struct ebt_entry *e, struct ebt_table_info *newinfo,
565 unsigned int *n, struct ebt_cl_stack *udc)
566{
567 int i;
568
569 /* we're only interested in chain starts */
570 if (e->bitmask)
571 return 0;
572 for (i = 0; i < NF_BR_NUMHOOKS; i++) {
573 if (newinfo->hook_entry[i] == (struct ebt_entries *)e)
574 break;
575 }
576 /* only care about udc */
577 if (i != NF_BR_NUMHOOKS)
578 return 0;
579
580 udc[*n].cs.chaininfo = (struct ebt_entries *)e;
581 /* these initialisations are depended on later in check_chainloops() */
582 udc[*n].cs.n = 0;
583 udc[*n].hookmask = 0;
584
585 (*n)++;
586 return 0;
587}
588
589static inline int
590ebt_cleanup_match(struct ebt_entry_match *m, struct net *net, unsigned int *i)
591{
592 struct xt_mtdtor_param par;
593
594 if (i && (*i)-- == 0)
595 return 1;
596
597 par.net = net;
598 par.match = m->u.match;
599 par.matchinfo = m->data;
600 par.family = NFPROTO_BRIDGE;
601 if (par.match->destroy != NULL)
602 par.match->destroy(&par);
603 module_put(par.match->me);
604 return 0;
605}
606
607static inline int
608ebt_cleanup_watcher(struct ebt_entry_watcher *w, struct net *net, unsigned int *i)
609{
610 struct xt_tgdtor_param par;
611
612 if (i && (*i)-- == 0)
613 return 1;
614
615 par.net = net;
616 par.target = w->u.watcher;
617 par.targinfo = w->data;
618 par.family = NFPROTO_BRIDGE;
619 if (par.target->destroy != NULL)
620 par.target->destroy(&par);
621 module_put(par.target->me);
622 return 0;
623}
624
625static inline int
626ebt_cleanup_entry(struct ebt_entry *e, struct net *net, unsigned int *cnt)
627{
628 struct xt_tgdtor_param par;
629 struct ebt_entry_target *t;
630
631 if (e->bitmask == 0)
632 return 0;
633 /* we're done */
634 if (cnt && (*cnt)-- == 0)
635 return 1;
636 EBT_WATCHER_ITERATE(e, ebt_cleanup_watcher, net, NULL);
637 EBT_MATCH_ITERATE(e, ebt_cleanup_match, net, NULL);
638 t = (struct ebt_entry_target *)(((char *)e) + e->target_offset);
639
640 par.net = net;
641 par.target = t->u.target;
642 par.targinfo = t->data;
643 par.family = NFPROTO_BRIDGE;
644 if (par.target->destroy != NULL)
645 par.target->destroy(&par);
646 module_put(par.target->me);
647 return 0;
648}
649
650static inline int
651ebt_check_entry(struct ebt_entry *e, struct net *net,
652 const struct ebt_table_info *newinfo,
653 const char *name, unsigned int *cnt,
654 struct ebt_cl_stack *cl_s, unsigned int udc_cnt)
655{
656 struct ebt_entry_target *t;
657 struct xt_target *target;
658 unsigned int i, j, hook = 0, hookmask = 0;
659 size_t gap;
660 int ret;
661 struct xt_mtchk_param mtpar;
662 struct xt_tgchk_param tgpar;
663
664 /* don't mess with the struct ebt_entries */
665 if (e->bitmask == 0)
666 return 0;
667
668 if (e->bitmask & ~EBT_F_MASK) {
669 BUGPRINT("Unknown flag for bitmask\n");
670 return -EINVAL;
671 }
672 if (e->invflags & ~EBT_INV_MASK) {
673 BUGPRINT("Unknown flag for inv bitmask\n");
674 return -EINVAL;
675 }
676 if ( (e->bitmask & EBT_NOPROTO) && (e->bitmask & EBT_802_3) ) {
677 BUGPRINT("NOPROTO & 802_3 not allowed\n");
678 return -EINVAL;
679 }
680 /* what hook do we belong to? */
681 for (i = 0; i < NF_BR_NUMHOOKS; i++) {
682 if (!newinfo->hook_entry[i])
683 continue;
684 if ((char *)newinfo->hook_entry[i] < (char *)e)
685 hook = i;
686 else
687 break;
688 }
689 /* (1 << NF_BR_NUMHOOKS) tells the check functions the rule is on
690 a base chain */
691 if (i < NF_BR_NUMHOOKS)
692 hookmask = (1 << hook) | (1 << NF_BR_NUMHOOKS);
693 else {
694 for (i = 0; i < udc_cnt; i++)
695 if ((char *)(cl_s[i].cs.chaininfo) > (char *)e)
696 break;
697 if (i == 0)
698 hookmask = (1 << hook) | (1 << NF_BR_NUMHOOKS);
699 else
700 hookmask = cl_s[i - 1].hookmask;
701 }
702 i = 0;
703
704 mtpar.net = tgpar.net = net;
705 mtpar.table = tgpar.table = name;
706 mtpar.entryinfo = tgpar.entryinfo = e;
707 mtpar.hook_mask = tgpar.hook_mask = hookmask;
708 mtpar.family = tgpar.family = NFPROTO_BRIDGE;
709 ret = EBT_MATCH_ITERATE(e, ebt_check_match, &mtpar, &i);
710 if (ret != 0)
711 goto cleanup_matches;
712 j = 0;
713 ret = EBT_WATCHER_ITERATE(e, ebt_check_watcher, &tgpar, &j);
714 if (ret != 0)
715 goto cleanup_watchers;
716 t = (struct ebt_entry_target *)(((char *)e) + e->target_offset);
717 gap = e->next_offset - e->target_offset;
718
719 target = xt_request_find_target(NFPROTO_BRIDGE, t->u.name, 0);
720 if (IS_ERR(target)) {
721 ret = PTR_ERR(target);
722 goto cleanup_watchers;
723 }
724
725 t->u.target = target;
726 if (t->u.target == &ebt_standard_target) {
727 if (gap < sizeof(struct ebt_standard_target)) {
728 BUGPRINT("Standard target size too big\n");
729 ret = -EFAULT;
730 goto cleanup_watchers;
731 }
732 if (((struct ebt_standard_target *)t)->verdict <
733 -NUM_STANDARD_TARGETS) {
734 BUGPRINT("Invalid standard target\n");
735 ret = -EFAULT;
736 goto cleanup_watchers;
737 }
738 } else if (t->target_size > gap - sizeof(struct ebt_entry_target)) {
739 module_put(t->u.target->me);
740 ret = -EFAULT;
741 goto cleanup_watchers;
742 }
743
744 tgpar.target = target;
745 tgpar.targinfo = t->data;
746 ret = xt_check_target(&tgpar, t->target_size,
747 e->ethproto, e->invflags & EBT_IPROTO);
748 if (ret < 0) {
749 module_put(target->me);
750 goto cleanup_watchers;
751 }
752 (*cnt)++;
753 return 0;
754cleanup_watchers:
755 EBT_WATCHER_ITERATE(e, ebt_cleanup_watcher, net, &j);
756cleanup_matches:
757 EBT_MATCH_ITERATE(e, ebt_cleanup_match, net, &i);
758 return ret;
759}
760
761/*
762 * checks for loops and sets the hook mask for udc
763 * the hook mask for udc tells us from which base chains the udc can be
764 * accessed. This mask is a parameter to the check() functions of the extensions
765 */
766static int check_chainloops(const struct ebt_entries *chain, struct ebt_cl_stack *cl_s,
767 unsigned int udc_cnt, unsigned int hooknr, char *base)
768{
769 int i, chain_nr = -1, pos = 0, nentries = chain->nentries, verdict;
770 const struct ebt_entry *e = (struct ebt_entry *)chain->data;
771 const struct ebt_entry_target *t;
772
773 while (pos < nentries || chain_nr != -1) {
774 /* end of udc, go back one 'recursion' step */
775 if (pos == nentries) {
776 /* put back values of the time when this chain was called */
777 e = cl_s[chain_nr].cs.e;
778 if (cl_s[chain_nr].from != -1)
779 nentries =
780 cl_s[cl_s[chain_nr].from].cs.chaininfo->nentries;
781 else
782 nentries = chain->nentries;
783 pos = cl_s[chain_nr].cs.n;
784 /* make sure we won't see a loop that isn't one */
785 cl_s[chain_nr].cs.n = 0;
786 chain_nr = cl_s[chain_nr].from;
787 if (pos == nentries)
788 continue;
789 }
790 t = (struct ebt_entry_target *)
791 (((char *)e) + e->target_offset);
792 if (strcmp(t->u.name, EBT_STANDARD_TARGET))
793 goto letscontinue;
794 if (e->target_offset + sizeof(struct ebt_standard_target) >
795 e->next_offset) {
796 BUGPRINT("Standard target size too big\n");
797 return -1;
798 }
799 verdict = ((struct ebt_standard_target *)t)->verdict;
800 if (verdict >= 0) { /* jump to another chain */
801 struct ebt_entries *hlp2 =
802 (struct ebt_entries *)(base + verdict);
803 for (i = 0; i < udc_cnt; i++)
804 if (hlp2 == cl_s[i].cs.chaininfo)
805 break;
806 /* bad destination or loop */
807 if (i == udc_cnt) {
808 BUGPRINT("bad destination\n");
809 return -1;
810 }
811 if (cl_s[i].cs.n) {
812 BUGPRINT("loop\n");
813 return -1;
814 }
815 if (cl_s[i].hookmask & (1 << hooknr))
816 goto letscontinue;
817 /* this can't be 0, so the loop test is correct */
818 cl_s[i].cs.n = pos + 1;
819 pos = 0;
820 cl_s[i].cs.e = ebt_next_entry(e);
821 e = (struct ebt_entry *)(hlp2->data);
822 nentries = hlp2->nentries;
823 cl_s[i].from = chain_nr;
824 chain_nr = i;
825 /* this udc is accessible from the base chain for hooknr */
826 cl_s[i].hookmask |= (1 << hooknr);
827 continue;
828 }
829letscontinue:
830 e = ebt_next_entry(e);
831 pos++;
832 }
833 return 0;
834}
835
836/* do the parsing of the table/chains/entries/matches/watchers/targets, heh */
837static int translate_table(struct net *net, const char *name,
838 struct ebt_table_info *newinfo)
839{
840 unsigned int i, j, k, udc_cnt;
841 int ret;
842 struct ebt_cl_stack *cl_s = NULL; /* used in the checking for chain loops */
843
844 i = 0;
845 while (i < NF_BR_NUMHOOKS && !newinfo->hook_entry[i])
846 i++;
847 if (i == NF_BR_NUMHOOKS) {
848 BUGPRINT("No valid hooks specified\n");
849 return -EINVAL;
850 }
851 if (newinfo->hook_entry[i] != (struct ebt_entries *)newinfo->entries) {
852 BUGPRINT("Chains don't start at beginning\n");
853 return -EINVAL;
854 }
855 /* make sure chains are ordered after each other in same order
856 as their corresponding hooks */
857 for (j = i + 1; j < NF_BR_NUMHOOKS; j++) {
858 if (!newinfo->hook_entry[j])
859 continue;
860 if (newinfo->hook_entry[j] <= newinfo->hook_entry[i]) {
861 BUGPRINT("Hook order must be followed\n");
862 return -EINVAL;
863 }
864 i = j;
865 }
866
867 /* do some early checkings and initialize some things */
868 i = 0; /* holds the expected nr. of entries for the chain */
869 j = 0; /* holds the up to now counted entries for the chain */
870 k = 0; /* holds the total nr. of entries, should equal
871 newinfo->nentries afterwards */
872 udc_cnt = 0; /* will hold the nr. of user defined chains (udc) */
873 ret = EBT_ENTRY_ITERATE(newinfo->entries, newinfo->entries_size,
874 ebt_check_entry_size_and_hooks, newinfo,
875 &i, &j, &k, &udc_cnt);
876
877 if (ret != 0)
878 return ret;
879
880 if (i != j) {
881 BUGPRINT("nentries does not equal the nr of entries in the "
882 "(last) chain\n");
883 return -EINVAL;
884 }
885 if (k != newinfo->nentries) {
886 BUGPRINT("Total nentries is wrong\n");
887 return -EINVAL;
888 }
889
890 /* get the location of the udc, put them in an array
891 while we're at it, allocate the chainstack */
892 if (udc_cnt) {
893 /* this will get free'd in do_replace()/ebt_register_table()
894 if an error occurs */
895 newinfo->chainstack =
896 vmalloc(nr_cpu_ids * sizeof(*(newinfo->chainstack)));
897 if (!newinfo->chainstack)
898 return -ENOMEM;
899 for_each_possible_cpu(i) {
900 newinfo->chainstack[i] =
901 vmalloc(udc_cnt * sizeof(*(newinfo->chainstack[0])));
902 if (!newinfo->chainstack[i]) {
903 while (i)
904 vfree(newinfo->chainstack[--i]);
905 vfree(newinfo->chainstack);
906 newinfo->chainstack = NULL;
907 return -ENOMEM;
908 }
909 }
910
911 cl_s = vmalloc(udc_cnt * sizeof(*cl_s));
912 if (!cl_s)
913 return -ENOMEM;
914 i = 0; /* the i'th udc */
915 EBT_ENTRY_ITERATE(newinfo->entries, newinfo->entries_size,
916 ebt_get_udc_positions, newinfo, &i, cl_s);
917 /* sanity check */
918 if (i != udc_cnt) {
919 BUGPRINT("i != udc_cnt\n");
920 vfree(cl_s);
921 return -EFAULT;
922 }
923 }
924
925 /* Check for loops */
926 for (i = 0; i < NF_BR_NUMHOOKS; i++)
927 if (newinfo->hook_entry[i])
928 if (check_chainloops(newinfo->hook_entry[i],
929 cl_s, udc_cnt, i, newinfo->entries)) {
930 vfree(cl_s);
931 return -EINVAL;
932 }
933
934 /* we now know the following (along with E=mc²):
935 - the nr of entries in each chain is right
936 - the size of the allocated space is right
937 - all valid hooks have a corresponding chain
938 - there are no loops
939 - wrong data can still be on the level of a single entry
940 - could be there are jumps to places that are not the
941 beginning of a chain. This can only occur in chains that
942 are not accessible from any base chains, so we don't care. */
943
944 /* used to know what we need to clean up if something goes wrong */
945 i = 0;
946 ret = EBT_ENTRY_ITERATE(newinfo->entries, newinfo->entries_size,
947 ebt_check_entry, net, newinfo, name, &i, cl_s, udc_cnt);
948 if (ret != 0) {
949 EBT_ENTRY_ITERATE(newinfo->entries, newinfo->entries_size,
950 ebt_cleanup_entry, net, &i);
951 }
952 vfree(cl_s);
953 return ret;
954}
955
956/* called under write_lock */
957static void get_counters(const struct ebt_counter *oldcounters,
958 struct ebt_counter *counters, unsigned int nentries)
959{
960 int i, cpu;
961 struct ebt_counter *counter_base;
962
963 /* counters of cpu 0 */
964 memcpy(counters, oldcounters,
965 sizeof(struct ebt_counter) * nentries);
966
967 /* add other counters to those of cpu 0 */
968 for_each_possible_cpu(cpu) {
969 if (cpu == 0)
970 continue;
971 counter_base = COUNTER_BASE(oldcounters, nentries, cpu);
972 for (i = 0; i < nentries; i++) {
973 counters[i].pcnt += counter_base[i].pcnt;
974 counters[i].bcnt += counter_base[i].bcnt;
975 }
976 }
977}
978
979static int do_replace_finish(struct net *net, struct ebt_replace *repl,
980 struct ebt_table_info *newinfo)
981{
982 int ret, i;
983 struct ebt_counter *counterstmp = NULL;
984 /* used to be able to unlock earlier */
985 struct ebt_table_info *table;
986 struct ebt_table *t;
987
988 /* the user wants counters back
989 the check on the size is done later, when we have the lock */
990 if (repl->num_counters) {
991 unsigned long size = repl->num_counters * sizeof(*counterstmp);
992 counterstmp = vmalloc(size);
993 if (!counterstmp)
994 return -ENOMEM;
995 }
996
997 newinfo->chainstack = NULL;
998 ret = ebt_verify_pointers(repl, newinfo);
999 if (ret != 0)
1000 goto free_counterstmp;
1001
1002 ret = translate_table(net, repl->name, newinfo);
1003
1004 if (ret != 0)
1005 goto free_counterstmp;
1006
1007 t = find_table_lock(net, repl->name, &ret, &ebt_mutex);
1008 if (!t) {
1009 ret = -ENOENT;
1010 goto free_iterate;
1011 }
1012
1013 /* the table doesn't like it */
1014 if (t->check && (ret = t->check(newinfo, repl->valid_hooks)))
1015 goto free_unlock;
1016
1017 if (repl->num_counters && repl->num_counters != t->private->nentries) {
1018 BUGPRINT("Wrong nr. of counters requested\n");
1019 ret = -EINVAL;
1020 goto free_unlock;
1021 }
1022
1023 /* we have the mutex lock, so no danger in reading this pointer */
1024 table = t->private;
1025 /* make sure the table can only be rmmod'ed if it contains no rules */
1026 if (!table->nentries && newinfo->nentries && !try_module_get(t->me)) {
1027 ret = -ENOENT;
1028 goto free_unlock;
1029 } else if (table->nentries && !newinfo->nentries)
1030 module_put(t->me);
1031 /* we need an atomic snapshot of the counters */
1032 write_lock_bh(&t->lock);
1033 if (repl->num_counters)
1034 get_counters(t->private->counters, counterstmp,
1035 t->private->nentries);
1036
1037 t->private = newinfo;
1038 write_unlock_bh(&t->lock);
1039 mutex_unlock(&ebt_mutex);
1040 /* so, a user can change the chains while having messed up her counter
1041 allocation. Only reason why this is done is because this way the lock
1042 is held only once, while this doesn't bring the kernel into a
1043 dangerous state. */
1044 if (repl->num_counters &&
1045 copy_to_user(repl->counters, counterstmp,
1046 repl->num_counters * sizeof(struct ebt_counter))) {
1047 ret = -EFAULT;
1048 }
1049 else
1050 ret = 0;
1051
1052 /* decrease module count and free resources */
1053 EBT_ENTRY_ITERATE(table->entries, table->entries_size,
1054 ebt_cleanup_entry, net, NULL);
1055
1056 vfree(table->entries);
1057 if (table->chainstack) {
1058 for_each_possible_cpu(i)
1059 vfree(table->chainstack[i]);
1060 vfree(table->chainstack);
1061 }
1062 vfree(table);
1063
1064 vfree(counterstmp);
1065 return ret;
1066
1067free_unlock:
1068 mutex_unlock(&ebt_mutex);
1069free_iterate:
1070 EBT_ENTRY_ITERATE(newinfo->entries, newinfo->entries_size,
1071 ebt_cleanup_entry, net, NULL);
1072free_counterstmp:
1073 vfree(counterstmp);
1074 /* can be initialized in translate_table() */
1075 if (newinfo->chainstack) {
1076 for_each_possible_cpu(i)
1077 vfree(newinfo->chainstack[i]);
1078 vfree(newinfo->chainstack);
1079 }
1080 return ret;
1081}
1082
1083/* replace the table */
1084static int do_replace(struct net *net, const void __user *user,
1085 unsigned int len)
1086{
1087 int ret, countersize;
1088 struct ebt_table_info *newinfo;
1089 struct ebt_replace tmp;
1090
1091 if (copy_from_user(&tmp, user, sizeof(tmp)) != 0)
1092 return -EFAULT;
1093
1094 if (len != sizeof(tmp) + tmp.entries_size) {
1095 BUGPRINT("Wrong len argument\n");
1096 return -EINVAL;
1097 }
1098
1099 if (tmp.entries_size == 0) {
1100 BUGPRINT("Entries_size never zero\n");
1101 return -EINVAL;
1102 }
1103 /* overflow check */
1104 if (tmp.nentries >= ((INT_MAX - sizeof(struct ebt_table_info)) /
1105 NR_CPUS - SMP_CACHE_BYTES) / sizeof(struct ebt_counter))
1106 return -ENOMEM;
1107 if (tmp.num_counters >= INT_MAX / sizeof(struct ebt_counter))
1108 return -ENOMEM;
1109
1110 tmp.name[sizeof(tmp.name) - 1] = 0;
1111
1112 countersize = COUNTER_OFFSET(tmp.nentries) * nr_cpu_ids;
1113 newinfo = vmalloc(sizeof(*newinfo) + countersize);
1114 if (!newinfo)
1115 return -ENOMEM;
1116
1117 if (countersize)
1118 memset(newinfo->counters, 0, countersize);
1119
1120 newinfo->entries = vmalloc(tmp.entries_size);
1121 if (!newinfo->entries) {
1122 ret = -ENOMEM;
1123 goto free_newinfo;
1124 }
1125 if (copy_from_user(
1126 newinfo->entries, tmp.entries, tmp.entries_size) != 0) {
1127 BUGPRINT("Couldn't copy entries from userspace\n");
1128 ret = -EFAULT;
1129 goto free_entries;
1130 }
1131
1132 ret = do_replace_finish(net, &tmp, newinfo);
1133 if (ret == 0)
1134 return ret;
1135free_entries:
1136 vfree(newinfo->entries);
1137free_newinfo:
1138 vfree(newinfo);
1139 return ret;
1140}
1141
1142struct ebt_table *
1143ebt_register_table(struct net *net, const struct ebt_table *input_table)
1144{
1145 struct ebt_table_info *newinfo;
1146 struct ebt_table *t, *table;
1147 struct ebt_replace_kernel *repl;
1148 int ret, i, countersize;
1149 void *p;
1150
1151 if (input_table == NULL || (repl = input_table->table) == NULL ||
1152 repl->entries == NULL || repl->entries_size == 0 ||
1153 repl->counters != NULL || input_table->private != NULL) {
1154 BUGPRINT("Bad table data for ebt_register_table!!!\n");
1155 return ERR_PTR(-EINVAL);
1156 }
1157
1158 /* Don't add one table to multiple lists. */
1159 table = kmemdup(input_table, sizeof(struct ebt_table), GFP_KERNEL);
1160 if (!table) {
1161 ret = -ENOMEM;
1162 goto out;
1163 }
1164
1165 countersize = COUNTER_OFFSET(repl->nentries) * nr_cpu_ids;
1166 newinfo = vmalloc(sizeof(*newinfo) + countersize);
1167 ret = -ENOMEM;
1168 if (!newinfo)
1169 goto free_table;
1170
1171 p = vmalloc(repl->entries_size);
1172 if (!p)
1173 goto free_newinfo;
1174
1175 memcpy(p, repl->entries, repl->entries_size);
1176 newinfo->entries = p;
1177
1178 newinfo->entries_size = repl->entries_size;
1179 newinfo->nentries = repl->nentries;
1180
1181 if (countersize)
1182 memset(newinfo->counters, 0, countersize);
1183
1184 /* fill in newinfo and parse the entries */
1185 newinfo->chainstack = NULL;
1186 for (i = 0; i < NF_BR_NUMHOOKS; i++) {
1187 if ((repl->valid_hooks & (1 << i)) == 0)
1188 newinfo->hook_entry[i] = NULL;
1189 else
1190 newinfo->hook_entry[i] = p +
1191 ((char *)repl->hook_entry[i] - repl->entries);
1192 }
1193 ret = translate_table(net, repl->name, newinfo);
1194 if (ret != 0) {
1195 BUGPRINT("Translate_table failed\n");
1196 goto free_chainstack;
1197 }
1198
1199 if (table->check && table->check(newinfo, table->valid_hooks)) {
1200 BUGPRINT("The table doesn't like its own initial data, lol\n");
1201 ret = -EINVAL;
1202 goto free_chainstack;
1203 }
1204
1205 table->private = newinfo;
1206 rwlock_init(&table->lock);
1207 ret = mutex_lock_interruptible(&ebt_mutex);
1208 if (ret != 0)
1209 goto free_chainstack;
1210
1211 list_for_each_entry(t, &net->xt.tables[NFPROTO_BRIDGE], list) {
1212 if (strcmp(t->name, table->name) == 0) {
1213 ret = -EEXIST;
1214 BUGPRINT("Table name already exists\n");
1215 goto free_unlock;
1216 }
1217 }
1218
1219 /* Hold a reference count if the chains aren't empty */
1220 if (newinfo->nentries && !try_module_get(table->me)) {
1221 ret = -ENOENT;
1222 goto free_unlock;
1223 }
1224 list_add(&table->list, &net->xt.tables[NFPROTO_BRIDGE]);
1225 mutex_unlock(&ebt_mutex);
1226 return table;
1227free_unlock:
1228 mutex_unlock(&ebt_mutex);
1229free_chainstack:
1230 if (newinfo->chainstack) {
1231 for_each_possible_cpu(i)
1232 vfree(newinfo->chainstack[i]);
1233 vfree(newinfo->chainstack);
1234 }
1235 vfree(newinfo->entries);
1236free_newinfo:
1237 vfree(newinfo);
1238free_table:
1239 kfree(table);
1240out:
1241 return ERR_PTR(ret);
1242}
1243
1244void ebt_unregister_table(struct net *net, struct ebt_table *table)
1245{
1246 int i;
1247
1248 if (!table) {
1249 BUGPRINT("Request to unregister NULL table!!!\n");
1250 return;
1251 }
1252 mutex_lock(&ebt_mutex);
1253 list_del(&table->list);
1254 mutex_unlock(&ebt_mutex);
1255 EBT_ENTRY_ITERATE(table->private->entries, table->private->entries_size,
1256 ebt_cleanup_entry, net, NULL);
1257 if (table->private->nentries)
1258 module_put(table->me);
1259 vfree(table->private->entries);
1260 if (table->private->chainstack) {
1261 for_each_possible_cpu(i)
1262 vfree(table->private->chainstack[i]);
1263 vfree(table->private->chainstack);
1264 }
1265 vfree(table->private);
1266 kfree(table);
1267}
1268
1269/* userspace just supplied us with counters */
1270static int do_update_counters(struct net *net, const char *name,
1271 struct ebt_counter __user *counters,
1272 unsigned int num_counters,
1273 const void __user *user, unsigned int len)
1274{
1275 int i, ret;
1276 struct ebt_counter *tmp;
1277 struct ebt_table *t;
1278
1279 if (num_counters == 0)
1280 return -EINVAL;
1281
1282 tmp = vmalloc(num_counters * sizeof(*tmp));
1283 if (!tmp)
1284 return -ENOMEM;
1285
1286 t = find_table_lock(net, name, &ret, &ebt_mutex);
1287 if (!t)
1288 goto free_tmp;
1289
1290 if (num_counters != t->private->nentries) {
1291 BUGPRINT("Wrong nr of counters\n");
1292 ret = -EINVAL;
1293 goto unlock_mutex;
1294 }
1295
1296 if (copy_from_user(tmp, counters, num_counters * sizeof(*counters))) {
1297 ret = -EFAULT;
1298 goto unlock_mutex;
1299 }
1300
1301 /* we want an atomic add of the counters */
1302 write_lock_bh(&t->lock);
1303
1304 /* we add to the counters of the first cpu */
1305 for (i = 0; i < num_counters; i++) {
1306 t->private->counters[i].pcnt += tmp[i].pcnt;
1307 t->private->counters[i].bcnt += tmp[i].bcnt;
1308 }
1309
1310 write_unlock_bh(&t->lock);
1311 ret = 0;
1312unlock_mutex:
1313 mutex_unlock(&ebt_mutex);
1314free_tmp:
1315 vfree(tmp);
1316 return ret;
1317}
1318
1319static int update_counters(struct net *net, const void __user *user,
1320 unsigned int len)
1321{
1322 struct ebt_replace hlp;
1323
1324 if (copy_from_user(&hlp, user, sizeof(hlp)))
1325 return -EFAULT;
1326
1327 if (len != sizeof(hlp) + hlp.num_counters * sizeof(struct ebt_counter))
1328 return -EINVAL;
1329
1330 return do_update_counters(net, hlp.name, hlp.counters,
1331 hlp.num_counters, user, len);
1332}
1333
1334static inline int ebt_make_matchname(const struct ebt_entry_match *m,
1335 const char *base, char __user *ubase)
1336{
1337 char __user *hlp = ubase + ((char *)m - base);
1338 if (copy_to_user(hlp, m->u.match->name, EBT_FUNCTION_MAXNAMELEN))
1339 return -EFAULT;
1340 return 0;
1341}
1342
1343static inline int ebt_make_watchername(const struct ebt_entry_watcher *w,
1344 const char *base, char __user *ubase)
1345{
1346 char __user *hlp = ubase + ((char *)w - base);
1347 if (copy_to_user(hlp , w->u.watcher->name, EBT_FUNCTION_MAXNAMELEN))
1348 return -EFAULT;
1349 return 0;
1350}
1351
1352static inline int
1353ebt_make_names(struct ebt_entry *e, const char *base, char __user *ubase)
1354{
1355 int ret;
1356 char __user *hlp;
1357 const struct ebt_entry_target *t;
1358
1359 if (e->bitmask == 0)
1360 return 0;
1361
1362 hlp = ubase + (((char *)e + e->target_offset) - base);
1363 t = (struct ebt_entry_target *)(((char *)e) + e->target_offset);
1364
1365 ret = EBT_MATCH_ITERATE(e, ebt_make_matchname, base, ubase);
1366 if (ret != 0)
1367 return ret;
1368 ret = EBT_WATCHER_ITERATE(e, ebt_make_watchername, base, ubase);
1369 if (ret != 0)
1370 return ret;
1371 if (copy_to_user(hlp, t->u.target->name, EBT_FUNCTION_MAXNAMELEN))
1372 return -EFAULT;
1373 return 0;
1374}
1375
1376static int copy_counters_to_user(struct ebt_table *t,
1377 const struct ebt_counter *oldcounters,
1378 void __user *user, unsigned int num_counters,
1379 unsigned int nentries)
1380{
1381 struct ebt_counter *counterstmp;
1382 int ret = 0;
1383
1384 /* userspace might not need the counters */
1385 if (num_counters == 0)
1386 return 0;
1387
1388 if (num_counters != nentries) {
1389 BUGPRINT("Num_counters wrong\n");
1390 return -EINVAL;
1391 }
1392
1393 counterstmp = vmalloc(nentries * sizeof(*counterstmp));
1394 if (!counterstmp)
1395 return -ENOMEM;
1396
1397 write_lock_bh(&t->lock);
1398 get_counters(oldcounters, counterstmp, nentries);
1399 write_unlock_bh(&t->lock);
1400
1401 if (copy_to_user(user, counterstmp,
1402 nentries * sizeof(struct ebt_counter)))
1403 ret = -EFAULT;
1404 vfree(counterstmp);
1405 return ret;
1406}
1407
1408/* called with ebt_mutex locked */
1409static int copy_everything_to_user(struct ebt_table *t, void __user *user,
1410 const int *len, int cmd)
1411{
1412 struct ebt_replace tmp;
1413 const struct ebt_counter *oldcounters;
1414 unsigned int entries_size, nentries;
1415 int ret;
1416 char *entries;
1417
1418 if (cmd == EBT_SO_GET_ENTRIES) {
1419 entries_size = t->private->entries_size;
1420 nentries = t->private->nentries;
1421 entries = t->private->entries;
1422 oldcounters = t->private->counters;
1423 } else {
1424 entries_size = t->table->entries_size;
1425 nentries = t->table->nentries;
1426 entries = t->table->entries;
1427 oldcounters = t->table->counters;
1428 }
1429
1430 if (copy_from_user(&tmp, user, sizeof(tmp)))
1431 return -EFAULT;
1432
1433 if (*len != sizeof(struct ebt_replace) + entries_size +
1434 (tmp.num_counters? nentries * sizeof(struct ebt_counter): 0))
1435 return -EINVAL;
1436
1437 if (tmp.nentries != nentries) {
1438 BUGPRINT("Nentries wrong\n");
1439 return -EINVAL;
1440 }
1441
1442 if (tmp.entries_size != entries_size) {
1443 BUGPRINT("Wrong size\n");
1444 return -EINVAL;
1445 }
1446
1447 ret = copy_counters_to_user(t, oldcounters, tmp.counters,
1448 tmp.num_counters, nentries);
1449 if (ret)
1450 return ret;
1451
1452 if (copy_to_user(tmp.entries, entries, entries_size)) {
1453 BUGPRINT("Couldn't copy entries to userspace\n");
1454 return -EFAULT;
1455 }
1456 /* set the match/watcher/target names right */
1457 return EBT_ENTRY_ITERATE(entries, entries_size,
1458 ebt_make_names, entries, tmp.entries);
1459}
1460
1461static int do_ebt_set_ctl(struct sock *sk,
1462 int cmd, void __user *user, unsigned int len)
1463{
1464 int ret;
1465
1466 if (!capable(CAP_NET_ADMIN))
1467 return -EPERM;
1468
1469 switch(cmd) {
1470 case EBT_SO_SET_ENTRIES:
1471 ret = do_replace(sock_net(sk), user, len);
1472 break;
1473 case EBT_SO_SET_COUNTERS:
1474 ret = update_counters(sock_net(sk), user, len);
1475 break;
1476 default:
1477 ret = -EINVAL;
1478 }
1479 return ret;
1480}
1481
1482static int do_ebt_get_ctl(struct sock *sk, int cmd, void __user *user, int *len)
1483{
1484 int ret;
1485 struct ebt_replace tmp;
1486 struct ebt_table *t;
1487
1488 if (!capable(CAP_NET_ADMIN))
1489 return -EPERM;
1490
1491 if (copy_from_user(&tmp, user, sizeof(tmp)))
1492 return -EFAULT;
1493
1494 t = find_table_lock(sock_net(sk), tmp.name, &ret, &ebt_mutex);
1495 if (!t)
1496 return ret;
1497
1498 switch(cmd) {
1499 case EBT_SO_GET_INFO:
1500 case EBT_SO_GET_INIT_INFO:
1501 if (*len != sizeof(struct ebt_replace)){
1502 ret = -EINVAL;
1503 mutex_unlock(&ebt_mutex);
1504 break;
1505 }
1506 if (cmd == EBT_SO_GET_INFO) {
1507 tmp.nentries = t->private->nentries;
1508 tmp.entries_size = t->private->entries_size;
1509 tmp.valid_hooks = t->valid_hooks;
1510 } else {
1511 tmp.nentries = t->table->nentries;
1512 tmp.entries_size = t->table->entries_size;
1513 tmp.valid_hooks = t->table->valid_hooks;
1514 }
1515 mutex_unlock(&ebt_mutex);
1516 if (copy_to_user(user, &tmp, *len) != 0){
1517 BUGPRINT("c2u Didn't work\n");
1518 ret = -EFAULT;
1519 break;
1520 }
1521 ret = 0;
1522 break;
1523
1524 case EBT_SO_GET_ENTRIES:
1525 case EBT_SO_GET_INIT_ENTRIES:
1526 ret = copy_everything_to_user(t, user, len, cmd);
1527 mutex_unlock(&ebt_mutex);
1528 break;
1529
1530 default:
1531 mutex_unlock(&ebt_mutex);
1532 ret = -EINVAL;
1533 }
1534
1535 return ret;
1536}
1537
1538#ifdef CONFIG_COMPAT
1539/* 32 bit-userspace compatibility definitions. */
1540struct compat_ebt_replace {
1541 char name[EBT_TABLE_MAXNAMELEN];
1542 compat_uint_t valid_hooks;
1543 compat_uint_t nentries;
1544 compat_uint_t entries_size;
1545 /* start of the chains */
1546 compat_uptr_t hook_entry[NF_BR_NUMHOOKS];
1547 /* nr of counters userspace expects back */
1548 compat_uint_t num_counters;
1549 /* where the kernel will put the old counters. */
1550 compat_uptr_t counters;
1551 compat_uptr_t entries;
1552};
1553
1554/* struct ebt_entry_match, _target and _watcher have same layout */
1555struct compat_ebt_entry_mwt {
1556 union {
1557 char name[EBT_FUNCTION_MAXNAMELEN];
1558 compat_uptr_t ptr;
1559 } u;
1560 compat_uint_t match_size;
1561 compat_uint_t data[0];
1562};
1563
1564/* account for possible padding between match_size and ->data */
1565static int ebt_compat_entry_padsize(void)
1566{
1567 BUILD_BUG_ON(XT_ALIGN(sizeof(struct ebt_entry_match)) <
1568 COMPAT_XT_ALIGN(sizeof(struct compat_ebt_entry_mwt)));
1569 return (int) XT_ALIGN(sizeof(struct ebt_entry_match)) -
1570 COMPAT_XT_ALIGN(sizeof(struct compat_ebt_entry_mwt));
1571}
1572
1573static int ebt_compat_match_offset(const struct xt_match *match,
1574 unsigned int userlen)
1575{
1576 /*
1577 * ebt_among needs special handling. The kernel .matchsize is
1578 * set to -1 at registration time; at runtime an EBT_ALIGN()ed
1579 * value is expected.
1580 * Example: userspace sends 4500, ebt_among.c wants 4504.
1581 */
1582 if (unlikely(match->matchsize == -1))
1583 return XT_ALIGN(userlen) - COMPAT_XT_ALIGN(userlen);
1584 return xt_compat_match_offset(match);
1585}
1586
1587static int compat_match_to_user(struct ebt_entry_match *m, void __user **dstptr,
1588 unsigned int *size)
1589{
1590 const struct xt_match *match = m->u.match;
1591 struct compat_ebt_entry_mwt __user *cm = *dstptr;
1592 int off = ebt_compat_match_offset(match, m->match_size);
1593 compat_uint_t msize = m->match_size - off;
1594
1595 BUG_ON(off >= m->match_size);
1596
1597 if (copy_to_user(cm->u.name, match->name,
1598 strlen(match->name) + 1) || put_user(msize, &cm->match_size))
1599 return -EFAULT;
1600
1601 if (match->compat_to_user) {
1602 if (match->compat_to_user(cm->data, m->data))
1603 return -EFAULT;
1604 } else if (copy_to_user(cm->data, m->data, msize))
1605 return -EFAULT;
1606
1607 *size -= ebt_compat_entry_padsize() + off;
1608 *dstptr = cm->data;
1609 *dstptr += msize;
1610 return 0;
1611}
1612
1613static int compat_target_to_user(struct ebt_entry_target *t,
1614 void __user **dstptr,
1615 unsigned int *size)
1616{
1617 const struct xt_target *target = t->u.target;
1618 struct compat_ebt_entry_mwt __user *cm = *dstptr;
1619 int off = xt_compat_target_offset(target);
1620 compat_uint_t tsize = t->target_size - off;
1621
1622 BUG_ON(off >= t->target_size);
1623
1624 if (copy_to_user(cm->u.name, target->name,
1625 strlen(target->name) + 1) || put_user(tsize, &cm->match_size))
1626 return -EFAULT;
1627
1628 if (target->compat_to_user) {
1629 if (target->compat_to_user(cm->data, t->data))
1630 return -EFAULT;
1631 } else if (copy_to_user(cm->data, t->data, tsize))
1632 return -EFAULT;
1633
1634 *size -= ebt_compat_entry_padsize() + off;
1635 *dstptr = cm->data;
1636 *dstptr += tsize;
1637 return 0;
1638}
1639
1640static int compat_watcher_to_user(struct ebt_entry_watcher *w,
1641 void __user **dstptr,
1642 unsigned int *size)
1643{
1644 return compat_target_to_user((struct ebt_entry_target *)w,
1645 dstptr, size);
1646}
1647
1648static int compat_copy_entry_to_user(struct ebt_entry *e, void __user **dstptr,
1649 unsigned int *size)
1650{
1651 struct ebt_entry_target *t;
1652 struct ebt_entry __user *ce;
1653 u32 watchers_offset, target_offset, next_offset;
1654 compat_uint_t origsize;
1655 int ret;
1656
1657 if (e->bitmask == 0) {
1658 if (*size < sizeof(struct ebt_entries))
1659 return -EINVAL;
1660 if (copy_to_user(*dstptr, e, sizeof(struct ebt_entries)))
1661 return -EFAULT;
1662
1663 *dstptr += sizeof(struct ebt_entries);
1664 *size -= sizeof(struct ebt_entries);
1665 return 0;
1666 }
1667
1668 if (*size < sizeof(*ce))
1669 return -EINVAL;
1670
1671 ce = (struct ebt_entry __user *)*dstptr;
1672 if (copy_to_user(ce, e, sizeof(*ce)))
1673 return -EFAULT;
1674
1675 origsize = *size;
1676 *dstptr += sizeof(*ce);
1677
1678 ret = EBT_MATCH_ITERATE(e, compat_match_to_user, dstptr, size);
1679 if (ret)
1680 return ret;
1681 watchers_offset = e->watchers_offset - (origsize - *size);
1682
1683 ret = EBT_WATCHER_ITERATE(e, compat_watcher_to_user, dstptr, size);
1684 if (ret)
1685 return ret;
1686 target_offset = e->target_offset - (origsize - *size);
1687
1688 t = (struct ebt_entry_target *) ((char *) e + e->target_offset);
1689
1690 ret = compat_target_to_user(t, dstptr, size);
1691 if (ret)
1692 return ret;
1693 next_offset = e->next_offset - (origsize - *size);
1694
1695 if (put_user(watchers_offset, &ce->watchers_offset) ||
1696 put_user(target_offset, &ce->target_offset) ||
1697 put_user(next_offset, &ce->next_offset))
1698 return -EFAULT;
1699
1700 *size -= sizeof(*ce);
1701 return 0;
1702}
1703
1704static int compat_calc_match(struct ebt_entry_match *m, int *off)
1705{
1706 *off += ebt_compat_match_offset(m->u.match, m->match_size);
1707 *off += ebt_compat_entry_padsize();
1708 return 0;
1709}
1710
1711static int compat_calc_watcher(struct ebt_entry_watcher *w, int *off)
1712{
1713 *off += xt_compat_target_offset(w->u.watcher);
1714 *off += ebt_compat_entry_padsize();
1715 return 0;
1716}
1717
1718static int compat_calc_entry(const struct ebt_entry *e,
1719 const struct ebt_table_info *info,
1720 const void *base,
1721 struct compat_ebt_replace *newinfo)
1722{
1723 const struct ebt_entry_target *t;
1724 unsigned int entry_offset;
1725 int off, ret, i;
1726
1727 if (e->bitmask == 0)
1728 return 0;
1729
1730 off = 0;
1731 entry_offset = (void *)e - base;
1732
1733 EBT_MATCH_ITERATE(e, compat_calc_match, &off);
1734 EBT_WATCHER_ITERATE(e, compat_calc_watcher, &off);
1735
1736 t = (const struct ebt_entry_target *) ((char *) e + e->target_offset);
1737
1738 off += xt_compat_target_offset(t->u.target);
1739 off += ebt_compat_entry_padsize();
1740
1741 newinfo->entries_size -= off;
1742
1743 ret = xt_compat_add_offset(NFPROTO_BRIDGE, entry_offset, off);
1744 if (ret)
1745 return ret;
1746
1747 for (i = 0; i < NF_BR_NUMHOOKS; i++) {
1748 const void *hookptr = info->hook_entry[i];
1749 if (info->hook_entry[i] &&
1750 (e < (struct ebt_entry *)(base - hookptr))) {
1751 newinfo->hook_entry[i] -= off;
1752 pr_debug("0x%08X -> 0x%08X\n",
1753 newinfo->hook_entry[i] + off,
1754 newinfo->hook_entry[i]);
1755 }
1756 }
1757
1758 return 0;
1759}
1760
1761
1762static int compat_table_info(const struct ebt_table_info *info,
1763 struct compat_ebt_replace *newinfo)
1764{
1765 unsigned int size = info->entries_size;
1766 const void *entries = info->entries;
1767
1768 newinfo->entries_size = size;
1769
1770 xt_compat_init_offsets(NFPROTO_BRIDGE, info->nentries);
1771 return EBT_ENTRY_ITERATE(entries, size, compat_calc_entry, info,
1772 entries, newinfo);
1773}
1774
1775static int compat_copy_everything_to_user(struct ebt_table *t,
1776 void __user *user, int *len, int cmd)
1777{
1778 struct compat_ebt_replace repl, tmp;
1779 struct ebt_counter *oldcounters;
1780 struct ebt_table_info tinfo;
1781 int ret;
1782 void __user *pos;
1783
1784 memset(&tinfo, 0, sizeof(tinfo));
1785
1786 if (cmd == EBT_SO_GET_ENTRIES) {
1787 tinfo.entries_size = t->private->entries_size;
1788 tinfo.nentries = t->private->nentries;
1789 tinfo.entries = t->private->entries;
1790 oldcounters = t->private->counters;
1791 } else {
1792 tinfo.entries_size = t->table->entries_size;
1793 tinfo.nentries = t->table->nentries;
1794 tinfo.entries = t->table->entries;
1795 oldcounters = t->table->counters;
1796 }
1797
1798 if (copy_from_user(&tmp, user, sizeof(tmp)))
1799 return -EFAULT;
1800
1801 if (tmp.nentries != tinfo.nentries ||
1802 (tmp.num_counters && tmp.num_counters != tinfo.nentries))
1803 return -EINVAL;
1804
1805 memcpy(&repl, &tmp, sizeof(repl));
1806 if (cmd == EBT_SO_GET_ENTRIES)
1807 ret = compat_table_info(t->private, &repl);
1808 else
1809 ret = compat_table_info(&tinfo, &repl);
1810 if (ret)
1811 return ret;
1812
1813 if (*len != sizeof(tmp) + repl.entries_size +
1814 (tmp.num_counters? tinfo.nentries * sizeof(struct ebt_counter): 0)) {
1815 pr_err("wrong size: *len %d, entries_size %u, replsz %d\n",
1816 *len, tinfo.entries_size, repl.entries_size);
1817 return -EINVAL;
1818 }
1819
1820 /* userspace might not need the counters */
1821 ret = copy_counters_to_user(t, oldcounters, compat_ptr(tmp.counters),
1822 tmp.num_counters, tinfo.nentries);
1823 if (ret)
1824 return ret;
1825
1826 pos = compat_ptr(tmp.entries);
1827 return EBT_ENTRY_ITERATE(tinfo.entries, tinfo.entries_size,
1828 compat_copy_entry_to_user, &pos, &tmp.entries_size);
1829}
1830
1831struct ebt_entries_buf_state {
1832 char *buf_kern_start; /* kernel buffer to copy (translated) data to */
1833 u32 buf_kern_len; /* total size of kernel buffer */
1834 u32 buf_kern_offset; /* amount of data copied so far */
1835 u32 buf_user_offset; /* read position in userspace buffer */
1836};
1837
1838static int ebt_buf_count(struct ebt_entries_buf_state *state, unsigned int sz)
1839{
1840 state->buf_kern_offset += sz;
1841 return state->buf_kern_offset >= sz ? 0 : -EINVAL;
1842}
1843
1844static int ebt_buf_add(struct ebt_entries_buf_state *state,
1845 void *data, unsigned int sz)
1846{
1847 if (state->buf_kern_start == NULL)
1848 goto count_only;
1849
1850 BUG_ON(state->buf_kern_offset + sz > state->buf_kern_len);
1851
1852 memcpy(state->buf_kern_start + state->buf_kern_offset, data, sz);
1853
1854 count_only:
1855 state->buf_user_offset += sz;
1856 return ebt_buf_count(state, sz);
1857}
1858
1859static int ebt_buf_add_pad(struct ebt_entries_buf_state *state, unsigned int sz)
1860{
1861 char *b = state->buf_kern_start;
1862
1863 BUG_ON(b && state->buf_kern_offset > state->buf_kern_len);
1864
1865 if (b != NULL && sz > 0)
1866 memset(b + state->buf_kern_offset, 0, sz);
1867 /* do not adjust ->buf_user_offset here, we added kernel-side padding */
1868 return ebt_buf_count(state, sz);
1869}
1870
1871enum compat_mwt {
1872 EBT_COMPAT_MATCH,
1873 EBT_COMPAT_WATCHER,
1874 EBT_COMPAT_TARGET,
1875};
1876
1877static int compat_mtw_from_user(struct compat_ebt_entry_mwt *mwt,
1878 enum compat_mwt compat_mwt,
1879 struct ebt_entries_buf_state *state,
1880 const unsigned char *base)
1881{
1882 char name[EBT_FUNCTION_MAXNAMELEN];
1883 struct xt_match *match;
1884 struct xt_target *wt;
1885 void *dst = NULL;
1886 int off, pad = 0;
1887 unsigned int size_kern, match_size = mwt->match_size;
1888
1889 strlcpy(name, mwt->u.name, sizeof(name));
1890
1891 if (state->buf_kern_start)
1892 dst = state->buf_kern_start + state->buf_kern_offset;
1893
1894 switch (compat_mwt) {
1895 case EBT_COMPAT_MATCH:
1896 match = try_then_request_module(xt_find_match(NFPROTO_BRIDGE,
1897 name, 0), "ebt_%s", name);
1898 if (match == NULL)
1899 return -ENOENT;
1900 if (IS_ERR(match))
1901 return PTR_ERR(match);
1902
1903 off = ebt_compat_match_offset(match, match_size);
1904 if (dst) {
1905 if (match->compat_from_user)
1906 match->compat_from_user(dst, mwt->data);
1907 else
1908 memcpy(dst, mwt->data, match_size);
1909 }
1910
1911 size_kern = match->matchsize;
1912 if (unlikely(size_kern == -1))
1913 size_kern = match_size;
1914 module_put(match->me);
1915 break;
1916 case EBT_COMPAT_WATCHER: /* fallthrough */
1917 case EBT_COMPAT_TARGET:
1918 wt = try_then_request_module(xt_find_target(NFPROTO_BRIDGE,
1919 name, 0), "ebt_%s", name);
1920 if (wt == NULL)
1921 return -ENOENT;
1922 if (IS_ERR(wt))
1923 return PTR_ERR(wt);
1924 off = xt_compat_target_offset(wt);
1925
1926 if (dst) {
1927 if (wt->compat_from_user)
1928 wt->compat_from_user(dst, mwt->data);
1929 else
1930 memcpy(dst, mwt->data, match_size);
1931 }
1932
1933 size_kern = wt->targetsize;
1934 module_put(wt->me);
1935 break;
1936
1937 default:
1938 return -EINVAL;
1939 }
1940
1941 state->buf_kern_offset += match_size + off;
1942 state->buf_user_offset += match_size;
1943 pad = XT_ALIGN(size_kern) - size_kern;
1944
1945 if (pad > 0 && dst) {
1946 BUG_ON(state->buf_kern_len <= pad);
1947 BUG_ON(state->buf_kern_offset - (match_size + off) + size_kern > state->buf_kern_len - pad);
1948 memset(dst + size_kern, 0, pad);
1949 }
1950 return off + match_size;
1951}
1952
1953/*
1954 * return size of all matches, watchers or target, including necessary
1955 * alignment and padding.
1956 */
1957static int ebt_size_mwt(struct compat_ebt_entry_mwt *match32,
1958 unsigned int size_left, enum compat_mwt type,
1959 struct ebt_entries_buf_state *state, const void *base)
1960{
1961 int growth = 0;
1962 char *buf;
1963
1964 if (size_left == 0)
1965 return 0;
1966
1967 buf = (char *) match32;
1968
1969 while (size_left >= sizeof(*match32)) {
1970 struct ebt_entry_match *match_kern;
1971 int ret;
1972
1973 match_kern = (struct ebt_entry_match *) state->buf_kern_start;
1974 if (match_kern) {
1975 char *tmp;
1976 tmp = state->buf_kern_start + state->buf_kern_offset;
1977 match_kern = (struct ebt_entry_match *) tmp;
1978 }
1979 ret = ebt_buf_add(state, buf, sizeof(*match32));
1980 if (ret < 0)
1981 return ret;
1982 size_left -= sizeof(*match32);
1983
1984 /* add padding before match->data (if any) */
1985 ret = ebt_buf_add_pad(state, ebt_compat_entry_padsize());
1986 if (ret < 0)
1987 return ret;
1988
1989 if (match32->match_size > size_left)
1990 return -EINVAL;
1991
1992 size_left -= match32->match_size;
1993
1994 ret = compat_mtw_from_user(match32, type, state, base);
1995 if (ret < 0)
1996 return ret;
1997
1998 BUG_ON(ret < match32->match_size);
1999 growth += ret - match32->match_size;
2000 growth += ebt_compat_entry_padsize();
2001
2002 buf += sizeof(*match32);
2003 buf += match32->match_size;
2004
2005 if (match_kern)
2006 match_kern->match_size = ret;
2007
2008 WARN_ON(type == EBT_COMPAT_TARGET && size_left);
2009 match32 = (struct compat_ebt_entry_mwt *) buf;
2010 }
2011
2012 return growth;
2013}
2014
2015/* called for all ebt_entry structures. */
2016static int size_entry_mwt(struct ebt_entry *entry, const unsigned char *base,
2017 unsigned int *total,
2018 struct ebt_entries_buf_state *state)
2019{
2020 unsigned int i, j, startoff, new_offset = 0;
2021 /* stores match/watchers/targets & offset of next struct ebt_entry: */
2022 unsigned int offsets[4];
2023 unsigned int *offsets_update = NULL;
2024 int ret;
2025 char *buf_start;
2026
2027 if (*total < sizeof(struct ebt_entries))
2028 return -EINVAL;
2029
2030 if (!entry->bitmask) {
2031 *total -= sizeof(struct ebt_entries);
2032 return ebt_buf_add(state, entry, sizeof(struct ebt_entries));
2033 }
2034 if (*total < sizeof(*entry) || entry->next_offset < sizeof(*entry))
2035 return -EINVAL;
2036
2037 startoff = state->buf_user_offset;
2038 /* pull in most part of ebt_entry, it does not need to be changed. */
2039 ret = ebt_buf_add(state, entry,
2040 offsetof(struct ebt_entry, watchers_offset));
2041 if (ret < 0)
2042 return ret;
2043
2044 offsets[0] = sizeof(struct ebt_entry); /* matches come first */
2045 memcpy(&offsets[1], &entry->watchers_offset,
2046 sizeof(offsets) - sizeof(offsets[0]));
2047
2048 if (state->buf_kern_start) {
2049 buf_start = state->buf_kern_start + state->buf_kern_offset;
2050 offsets_update = (unsigned int *) buf_start;
2051 }
2052 ret = ebt_buf_add(state, &offsets[1],
2053 sizeof(offsets) - sizeof(offsets[0]));
2054 if (ret < 0)
2055 return ret;
2056 buf_start = (char *) entry;
2057 /*
2058 * 0: matches offset, always follows ebt_entry.
2059 * 1: watchers offset, from ebt_entry structure
2060 * 2: target offset, from ebt_entry structure
2061 * 3: next ebt_entry offset, from ebt_entry structure
2062 *
2063 * offsets are relative to beginning of struct ebt_entry (i.e., 0).
2064 */
2065 for (i = 0, j = 1 ; j < 4 ; j++, i++) {
2066 struct compat_ebt_entry_mwt *match32;
2067 unsigned int size;
2068 char *buf = buf_start;
2069
2070 buf = buf_start + offsets[i];
2071 if (offsets[i] > offsets[j])
2072 return -EINVAL;
2073
2074 match32 = (struct compat_ebt_entry_mwt *) buf;
2075 size = offsets[j] - offsets[i];
2076 ret = ebt_size_mwt(match32, size, i, state, base);
2077 if (ret < 0)
2078 return ret;
2079 new_offset += ret;
2080 if (offsets_update && new_offset) {
2081 pr_debug("change offset %d to %d\n",
2082 offsets_update[i], offsets[j] + new_offset);
2083 offsets_update[i] = offsets[j] + new_offset;
2084 }
2085 }
2086
2087 if (state->buf_kern_start == NULL) {
2088 unsigned int offset = buf_start - (char *) base;
2089
2090 ret = xt_compat_add_offset(NFPROTO_BRIDGE, offset, new_offset);
2091 if (ret < 0)
2092 return ret;
2093 }
2094
2095 startoff = state->buf_user_offset - startoff;
2096
2097 BUG_ON(*total < startoff);
2098 *total -= startoff;
2099 return 0;
2100}
2101
2102/*
2103 * repl->entries_size is the size of the ebt_entry blob in userspace.
2104 * It might need more memory when copied to a 64 bit kernel in case
2105 * userspace is 32-bit. So, first task: find out how much memory is needed.
2106 *
2107 * Called before validation is performed.
2108 */
2109static int compat_copy_entries(unsigned char *data, unsigned int size_user,
2110 struct ebt_entries_buf_state *state)
2111{
2112 unsigned int size_remaining = size_user;
2113 int ret;
2114
2115 ret = EBT_ENTRY_ITERATE(data, size_user, size_entry_mwt, data,
2116 &size_remaining, state);
2117 if (ret < 0)
2118 return ret;
2119
2120 WARN_ON(size_remaining);
2121 return state->buf_kern_offset;
2122}
2123
2124
2125static int compat_copy_ebt_replace_from_user(struct ebt_replace *repl,
2126 void __user *user, unsigned int len)
2127{
2128 struct compat_ebt_replace tmp;
2129 int i;
2130
2131 if (len < sizeof(tmp))
2132 return -EINVAL;
2133
2134 if (copy_from_user(&tmp, user, sizeof(tmp)))
2135 return -EFAULT;
2136
2137 if (len != sizeof(tmp) + tmp.entries_size)
2138 return -EINVAL;
2139
2140 if (tmp.entries_size == 0)
2141 return -EINVAL;
2142
2143 if (tmp.nentries >= ((INT_MAX - sizeof(struct ebt_table_info)) /
2144 NR_CPUS - SMP_CACHE_BYTES) / sizeof(struct ebt_counter))
2145 return -ENOMEM;
2146 if (tmp.num_counters >= INT_MAX / sizeof(struct ebt_counter))
2147 return -ENOMEM;
2148
2149 memcpy(repl, &tmp, offsetof(struct ebt_replace, hook_entry));
2150
2151 /* starting with hook_entry, 32 vs. 64 bit structures are different */
2152 for (i = 0; i < NF_BR_NUMHOOKS; i++)
2153 repl->hook_entry[i] = compat_ptr(tmp.hook_entry[i]);
2154
2155 repl->num_counters = tmp.num_counters;
2156 repl->counters = compat_ptr(tmp.counters);
2157 repl->entries = compat_ptr(tmp.entries);
2158 return 0;
2159}
2160
2161static int compat_do_replace(struct net *net, void __user *user,
2162 unsigned int len)
2163{
2164 int ret, i, countersize, size64;
2165 struct ebt_table_info *newinfo;
2166 struct ebt_replace tmp;
2167 struct ebt_entries_buf_state state;
2168 void *entries_tmp;
2169
2170 ret = compat_copy_ebt_replace_from_user(&tmp, user, len);
2171 if (ret) {
2172 /* try real handler in case userland supplied needed padding */
2173 if (ret == -EINVAL && do_replace(net, user, len) == 0)
2174 ret = 0;
2175 return ret;
2176 }
2177
2178 countersize = COUNTER_OFFSET(tmp.nentries) * nr_cpu_ids;
2179 newinfo = vmalloc(sizeof(*newinfo) + countersize);
2180 if (!newinfo)
2181 return -ENOMEM;
2182
2183 if (countersize)
2184 memset(newinfo->counters, 0, countersize);
2185
2186 memset(&state, 0, sizeof(state));
2187
2188 newinfo->entries = vmalloc(tmp.entries_size);
2189 if (!newinfo->entries) {
2190 ret = -ENOMEM;
2191 goto free_newinfo;
2192 }
2193 if (copy_from_user(
2194 newinfo->entries, tmp.entries, tmp.entries_size) != 0) {
2195 ret = -EFAULT;
2196 goto free_entries;
2197 }
2198
2199 entries_tmp = newinfo->entries;
2200
2201 xt_compat_lock(NFPROTO_BRIDGE);
2202
2203 xt_compat_init_offsets(NFPROTO_BRIDGE, tmp.nentries);
2204 ret = compat_copy_entries(entries_tmp, tmp.entries_size, &state);
2205 if (ret < 0)
2206 goto out_unlock;
2207
2208 pr_debug("tmp.entries_size %d, kern off %d, user off %d delta %d\n",
2209 tmp.entries_size, state.buf_kern_offset, state.buf_user_offset,
2210 xt_compat_calc_jump(NFPROTO_BRIDGE, tmp.entries_size));
2211
2212 size64 = ret;
2213 newinfo->entries = vmalloc(size64);
2214 if (!newinfo->entries) {
2215 vfree(entries_tmp);
2216 ret = -ENOMEM;
2217 goto out_unlock;
2218 }
2219
2220 memset(&state, 0, sizeof(state));
2221 state.buf_kern_start = newinfo->entries;
2222 state.buf_kern_len = size64;
2223
2224 ret = compat_copy_entries(entries_tmp, tmp.entries_size, &state);
2225 BUG_ON(ret < 0); /* parses same data again */
2226
2227 vfree(entries_tmp);
2228 tmp.entries_size = size64;
2229
2230 for (i = 0; i < NF_BR_NUMHOOKS; i++) {
2231 char __user *usrptr;
2232 if (tmp.hook_entry[i]) {
2233 unsigned int delta;
2234 usrptr = (char __user *) tmp.hook_entry[i];
2235 delta = usrptr - tmp.entries;
2236 usrptr += xt_compat_calc_jump(NFPROTO_BRIDGE, delta);
2237 tmp.hook_entry[i] = (struct ebt_entries __user *)usrptr;
2238 }
2239 }
2240
2241 xt_compat_flush_offsets(NFPROTO_BRIDGE);
2242 xt_compat_unlock(NFPROTO_BRIDGE);
2243
2244 ret = do_replace_finish(net, &tmp, newinfo);
2245 if (ret == 0)
2246 return ret;
2247free_entries:
2248 vfree(newinfo->entries);
2249free_newinfo:
2250 vfree(newinfo);
2251 return ret;
2252out_unlock:
2253 xt_compat_flush_offsets(NFPROTO_BRIDGE);
2254 xt_compat_unlock(NFPROTO_BRIDGE);
2255 goto free_entries;
2256}
2257
2258static int compat_update_counters(struct net *net, void __user *user,
2259 unsigned int len)
2260{
2261 struct compat_ebt_replace hlp;
2262
2263 if (copy_from_user(&hlp, user, sizeof(hlp)))
2264 return -EFAULT;
2265
2266 /* try real handler in case userland supplied needed padding */
2267 if (len != sizeof(hlp) + hlp.num_counters * sizeof(struct ebt_counter))
2268 return update_counters(net, user, len);
2269
2270 return do_update_counters(net, hlp.name, compat_ptr(hlp.counters),
2271 hlp.num_counters, user, len);
2272}
2273
2274static int compat_do_ebt_set_ctl(struct sock *sk,
2275 int cmd, void __user *user, unsigned int len)
2276{
2277 int ret;
2278
2279 if (!capable(CAP_NET_ADMIN))
2280 return -EPERM;
2281
2282 switch (cmd) {
2283 case EBT_SO_SET_ENTRIES:
2284 ret = compat_do_replace(sock_net(sk), user, len);
2285 break;
2286 case EBT_SO_SET_COUNTERS:
2287 ret = compat_update_counters(sock_net(sk), user, len);
2288 break;
2289 default:
2290 ret = -EINVAL;
2291 }
2292 return ret;
2293}
2294
2295static int compat_do_ebt_get_ctl(struct sock *sk, int cmd,
2296 void __user *user, int *len)
2297{
2298 int ret;
2299 struct compat_ebt_replace tmp;
2300 struct ebt_table *t;
2301
2302 if (!capable(CAP_NET_ADMIN))
2303 return -EPERM;
2304
2305 /* try real handler in case userland supplied needed padding */
2306 if ((cmd == EBT_SO_GET_INFO ||
2307 cmd == EBT_SO_GET_INIT_INFO) && *len != sizeof(tmp))
2308 return do_ebt_get_ctl(sk, cmd, user, len);
2309
2310 if (copy_from_user(&tmp, user, sizeof(tmp)))
2311 return -EFAULT;
2312
2313 t = find_table_lock(sock_net(sk), tmp.name, &ret, &ebt_mutex);
2314 if (!t)
2315 return ret;
2316
2317 xt_compat_lock(NFPROTO_BRIDGE);
2318 switch (cmd) {
2319 case EBT_SO_GET_INFO:
2320 tmp.nentries = t->private->nentries;
2321 ret = compat_table_info(t->private, &tmp);
2322 if (ret)
2323 goto out;
2324 tmp.valid_hooks = t->valid_hooks;
2325
2326 if (copy_to_user(user, &tmp, *len) != 0) {
2327 ret = -EFAULT;
2328 break;
2329 }
2330 ret = 0;
2331 break;
2332 case EBT_SO_GET_INIT_INFO:
2333 tmp.nentries = t->table->nentries;
2334 tmp.entries_size = t->table->entries_size;
2335 tmp.valid_hooks = t->table->valid_hooks;
2336
2337 if (copy_to_user(user, &tmp, *len) != 0) {
2338 ret = -EFAULT;
2339 break;
2340 }
2341 ret = 0;
2342 break;
2343 case EBT_SO_GET_ENTRIES:
2344 case EBT_SO_GET_INIT_ENTRIES:
2345 /*
2346 * try real handler first in case of userland-side padding.
2347 * in case we are dealing with an 'ordinary' 32 bit binary
2348 * without 64bit compatibility padding, this will fail right
2349 * after copy_from_user when the *len argument is validated.
2350 *
2351 * the compat_ variant needs to do one pass over the kernel
2352 * data set to adjust for size differences before it the check.
2353 */
2354 if (copy_everything_to_user(t, user, len, cmd) == 0)
2355 ret = 0;
2356 else
2357 ret = compat_copy_everything_to_user(t, user, len, cmd);
2358 break;
2359 default:
2360 ret = -EINVAL;
2361 }
2362 out:
2363 xt_compat_flush_offsets(NFPROTO_BRIDGE);
2364 xt_compat_unlock(NFPROTO_BRIDGE);
2365 mutex_unlock(&ebt_mutex);
2366 return ret;
2367}
2368#endif
2369
2370static struct nf_sockopt_ops ebt_sockopts =
2371{
2372 .pf = PF_INET,
2373 .set_optmin = EBT_BASE_CTL,
2374 .set_optmax = EBT_SO_SET_MAX + 1,
2375 .set = do_ebt_set_ctl,
2376#ifdef CONFIG_COMPAT
2377 .compat_set = compat_do_ebt_set_ctl,
2378#endif
2379 .get_optmin = EBT_BASE_CTL,
2380 .get_optmax = EBT_SO_GET_MAX + 1,
2381 .get = do_ebt_get_ctl,
2382#ifdef CONFIG_COMPAT
2383 .compat_get = compat_do_ebt_get_ctl,
2384#endif
2385 .owner = THIS_MODULE,
2386};
2387
2388static int __init ebtables_init(void)
2389{
2390 int ret;
2391
2392 ret = xt_register_target(&ebt_standard_target);
2393 if (ret < 0)
2394 return ret;
2395 ret = nf_register_sockopt(&ebt_sockopts);
2396 if (ret < 0) {
2397 xt_unregister_target(&ebt_standard_target);
2398 return ret;
2399 }
2400
2401 printk(KERN_INFO "Ebtables v2.0 registered\n");
2402 return 0;
2403}
2404
2405static void __exit ebtables_fini(void)
2406{
2407 nf_unregister_sockopt(&ebt_sockopts);
2408 xt_unregister_target(&ebt_standard_target);
2409 printk(KERN_INFO "Ebtables v2.0 unregistered\n");
2410}
2411
2412EXPORT_SYMBOL(ebt_register_table);
2413EXPORT_SYMBOL(ebt_unregister_table);
2414EXPORT_SYMBOL(ebt_do_table);
2415module_init(ebtables_init);
2416module_exit(ebtables_fini);
2417MODULE_LICENSE("GPL");