1 // SPDX-License-Identifier: GPL-2.0-only
2 /*
3 * Packet matching code.
4 *
5 * Copyright (C) 1999 Paul `Rusty' Russell & Michael J. Neuling
6 * Copyright (C) 2000-2005 Netfilter Core Team <coreteam@netfilter.org>
7 * Copyright (c) 2006-2010 Patrick McHardy <kaber@trash.net>
8 */
9
10 #define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
11
12 #include <linux/kernel.h>
13 #include <linux/capability.h>
14 #include <linux/in.h>
15 #include <linux/skbuff.h>
16 #include <linux/kmod.h>
17 #include <linux/vmalloc.h>
18 #include <linux/netdevice.h>
19 #include <linux/module.h>
20 #include <linux/poison.h>
21 #include <linux/icmpv6.h>
22 #include <net/ipv6.h>
23 #include <net/compat.h>
24 #include <linux/uaccess.h>
25 #include <linux/mutex.h>
26 #include <linux/proc_fs.h>
27 #include <linux/err.h>
28 #include <linux/cpumask.h>
29
30 #include <linux/netfilter_ipv6/ip6_tables.h>
31 #include <linux/netfilter/x_tables.h>
32 #include <net/netfilter/nf_log.h>
33 #include "../../netfilter/xt_repldata.h"
34
35 MODULE_LICENSE("GPL");
36 MODULE_AUTHOR("Netfilter Core Team <coreteam@netfilter.org>");
37 MODULE_DESCRIPTION("IPv6 packet filter");
38 MODULE_ALIAS("ip6t_icmp6");
39
ip6t_alloc_initial_table(const struct xt_table * info)40 void *ip6t_alloc_initial_table(const struct xt_table *info)
41 {
42 return xt_alloc_initial_table(ip6t, IP6T);
43 }
44 EXPORT_SYMBOL_GPL(ip6t_alloc_initial_table);
45
46 /* Returns whether matches rule or not. */
47 /* Performance critical - called for every packet */
48 static inline bool
ip6_packet_match(const struct sk_buff * skb,const char * indev,const char * outdev,const struct ip6t_ip6 * ip6info,unsigned int * protoff,int * fragoff,bool * hotdrop)49 ip6_packet_match(const struct sk_buff *skb,
50 const char *indev,
51 const char *outdev,
52 const struct ip6t_ip6 *ip6info,
53 unsigned int *protoff,
54 int *fragoff, bool *hotdrop)
55 {
56 unsigned long ret;
57 const struct ipv6hdr *ipv6 = ipv6_hdr(skb);
58
59 if (NF_INVF(ip6info, IP6T_INV_SRCIP,
60 ipv6_masked_addr_cmp(&ipv6->saddr, &ip6info->smsk,
61 &ip6info->src)) ||
62 NF_INVF(ip6info, IP6T_INV_DSTIP,
63 ipv6_masked_addr_cmp(&ipv6->daddr, &ip6info->dmsk,
64 &ip6info->dst)))
65 return false;
66
67 ret = ifname_compare_aligned(indev, ip6info->iniface, ip6info->iniface_mask);
68
69 if (NF_INVF(ip6info, IP6T_INV_VIA_IN, ret != 0))
70 return false;
71
72 ret = ifname_compare_aligned(outdev, ip6info->outiface, ip6info->outiface_mask);
73
74 if (NF_INVF(ip6info, IP6T_INV_VIA_OUT, ret != 0))
75 return false;
76
77 /* ... might want to do something with class and flowlabel here ... */
78
79 /* look for the desired protocol header */
80 if (ip6info->flags & IP6T_F_PROTO) {
81 int protohdr;
82 unsigned short _frag_off;
83
84 protohdr = ipv6_find_hdr(skb, protoff, -1, &_frag_off, NULL);
85 if (protohdr < 0) {
86 if (_frag_off == 0)
87 *hotdrop = true;
88 return false;
89 }
90 *fragoff = _frag_off;
91
92 if (ip6info->proto == protohdr) {
93 if (ip6info->invflags & IP6T_INV_PROTO)
94 return false;
95
96 return true;
97 }
98
99 /* We need match for the '-p all', too! */
100 if ((ip6info->proto != 0) &&
101 !(ip6info->invflags & IP6T_INV_PROTO))
102 return false;
103 }
104 return true;
105 }
106
107 /* should be ip6 safe */
108 static bool
ip6_checkentry(const struct ip6t_ip6 * ipv6)109 ip6_checkentry(const struct ip6t_ip6 *ipv6)
110 {
111 if (ipv6->flags & ~IP6T_F_MASK)
112 return false;
113 if (ipv6->invflags & ~IP6T_INV_MASK)
114 return false;
115
116 return true;
117 }
118
119 static unsigned int
ip6t_error(struct sk_buff * skb,const struct xt_action_param * par)120 ip6t_error(struct sk_buff *skb, const struct xt_action_param *par)
121 {
122 net_info_ratelimited("error: `%s'\n", (const char *)par->targinfo);
123
124 return NF_DROP;
125 }
126
127 static inline struct ip6t_entry *
get_entry(const void * base,unsigned int offset)128 get_entry(const void *base, unsigned int offset)
129 {
130 return (struct ip6t_entry *)(base + offset);
131 }
132
133 /* All zeroes == unconditional rule. */
134 /* Mildly perf critical (only if packet tracing is on) */
unconditional(const struct ip6t_entry * e)135 static inline bool unconditional(const struct ip6t_entry *e)
136 {
137 static const struct ip6t_ip6 uncond;
138
139 return e->target_offset == sizeof(struct ip6t_entry) &&
140 memcmp(&e->ipv6, &uncond, sizeof(uncond)) == 0;
141 }
142
143 static inline const struct xt_entry_target *
ip6t_get_target_c(const struct ip6t_entry * e)144 ip6t_get_target_c(const struct ip6t_entry *e)
145 {
146 return ip6t_get_target((struct ip6t_entry *)e);
147 }
148
149 #if IS_ENABLED(CONFIG_NETFILTER_XT_TARGET_TRACE)
150 /* This cries for unification! */
151 static const char *const hooknames[] = {
152 [NF_INET_PRE_ROUTING] = "PREROUTING",
153 [NF_INET_LOCAL_IN] = "INPUT",
154 [NF_INET_FORWARD] = "FORWARD",
155 [NF_INET_LOCAL_OUT] = "OUTPUT",
156 [NF_INET_POST_ROUTING] = "POSTROUTING",
157 };
158
159 enum nf_ip_trace_comments {
160 NF_IP6_TRACE_COMMENT_RULE,
161 NF_IP6_TRACE_COMMENT_RETURN,
162 NF_IP6_TRACE_COMMENT_POLICY,
163 };
164
165 static const char *const comments[] = {
166 [NF_IP6_TRACE_COMMENT_RULE] = "rule",
167 [NF_IP6_TRACE_COMMENT_RETURN] = "return",
168 [NF_IP6_TRACE_COMMENT_POLICY] = "policy",
169 };
170
171 static const struct nf_loginfo trace_loginfo = {
172 .type = NF_LOG_TYPE_LOG,
173 .u = {
174 .log = {
175 .level = LOGLEVEL_WARNING,
176 .logflags = NF_LOG_DEFAULT_MASK,
177 },
178 },
179 };
180
181 /* Mildly perf critical (only if packet tracing is on) */
182 static inline int
get_chainname_rulenum(const struct ip6t_entry * s,const struct ip6t_entry * e,const char * hookname,const char ** chainname,const char ** comment,unsigned int * rulenum)183 get_chainname_rulenum(const struct ip6t_entry *s, const struct ip6t_entry *e,
184 const char *hookname, const char **chainname,
185 const char **comment, unsigned int *rulenum)
186 {
187 const struct xt_standard_target *t = (void *)ip6t_get_target_c(s);
188
189 if (strcmp(t->target.u.kernel.target->name, XT_ERROR_TARGET) == 0) {
190 /* Head of user chain: ERROR target with chainname */
191 *chainname = t->target.data;
192 (*rulenum) = 0;
193 } else if (s == e) {
194 (*rulenum)++;
195
196 if (unconditional(s) &&
197 strcmp(t->target.u.kernel.target->name,
198 XT_STANDARD_TARGET) == 0 &&
199 t->verdict < 0) {
200 /* Tail of chains: STANDARD target (return/policy) */
201 *comment = *chainname == hookname
202 ? comments[NF_IP6_TRACE_COMMENT_POLICY]
203 : comments[NF_IP6_TRACE_COMMENT_RETURN];
204 }
205 return 1;
206 } else
207 (*rulenum)++;
208
209 return 0;
210 }
211
trace_packet(struct net * net,const struct sk_buff * skb,unsigned int hook,const struct net_device * in,const struct net_device * out,const char * tablename,const struct xt_table_info * private,const struct ip6t_entry * e)212 static void trace_packet(struct net *net,
213 const struct sk_buff *skb,
214 unsigned int hook,
215 const struct net_device *in,
216 const struct net_device *out,
217 const char *tablename,
218 const struct xt_table_info *private,
219 const struct ip6t_entry *e)
220 {
221 const struct ip6t_entry *root;
222 const char *hookname, *chainname, *comment;
223 const struct ip6t_entry *iter;
224 unsigned int rulenum = 0;
225
226 root = get_entry(private->entries, private->hook_entry[hook]);
227
228 hookname = chainname = hooknames[hook];
229 comment = comments[NF_IP6_TRACE_COMMENT_RULE];
230
231 xt_entry_foreach(iter, root, private->size - private->hook_entry[hook])
232 if (get_chainname_rulenum(iter, e, hookname,
233 &chainname, &comment, &rulenum) != 0)
234 break;
235
236 nf_log_trace(net, AF_INET6, hook, skb, in, out, &trace_loginfo,
237 "TRACE: %s:%s:%s:%u ",
238 tablename, chainname, comment, rulenum);
239 }
240 #endif
241
242 static inline struct ip6t_entry *
ip6t_next_entry(const struct ip6t_entry * entry)243 ip6t_next_entry(const struct ip6t_entry *entry)
244 {
245 return (void *)entry + entry->next_offset;
246 }
247
248 /* Returns one of the generic firewall policies, like NF_ACCEPT. */
249 unsigned int
ip6t_do_table(struct sk_buff * skb,const struct nf_hook_state * state,struct xt_table * table)250 ip6t_do_table(struct sk_buff *skb,
251 const struct nf_hook_state *state,
252 struct xt_table *table)
253 {
254 unsigned int hook = state->hook;
255 static const char nulldevname[IFNAMSIZ] __attribute__((aligned(sizeof(long))));
256 /* Initializing verdict to NF_DROP keeps gcc happy. */
257 unsigned int verdict = NF_DROP;
258 const char *indev, *outdev;
259 const void *table_base;
260 struct ip6t_entry *e, **jumpstack;
261 unsigned int stackidx, cpu;
262 const struct xt_table_info *private;
263 struct xt_action_param acpar;
264 unsigned int addend;
265
266 /* Initialization */
267 stackidx = 0;
268 indev = state->in ? state->in->name : nulldevname;
269 outdev = state->out ? state->out->name : nulldevname;
270 /* We handle fragments by dealing with the first fragment as
271 * if it was a normal packet. All other fragments are treated
272 * normally, except that they will NEVER match rules that ask
273 * things we don't know, ie. tcp syn flag or ports). If the
274 * rule is also a fragment-specific rule, non-fragments won't
275 * match it. */
276 acpar.fragoff = 0;
277 acpar.hotdrop = false;
278 acpar.state = state;
279
280 WARN_ON(!(table->valid_hooks & (1 << hook)));
281
282 local_bh_disable();
283 addend = xt_write_recseq_begin();
284 private = READ_ONCE(table->private); /* Address dependency. */
285 cpu = smp_processor_id();
286 table_base = private->entries;
287 jumpstack = (struct ip6t_entry **)private->jumpstack[cpu];
288
289 /* Switch to alternate jumpstack if we're being invoked via TEE.
290 * TEE issues XT_CONTINUE verdict on original skb so we must not
291 * clobber the jumpstack.
292 *
293 * For recursion via REJECT or SYNPROXY the stack will be clobbered
294 * but it is no problem since absolute verdict is issued by these.
295 */
296 if (static_key_false(&xt_tee_enabled))
297 jumpstack += private->stacksize * __this_cpu_read(nf_skb_duplicated);
298
299 e = get_entry(table_base, private->hook_entry[hook]);
300
301 do {
302 const struct xt_entry_target *t;
303 const struct xt_entry_match *ematch;
304 struct xt_counters *counter;
305
306 WARN_ON(!e);
307 acpar.thoff = 0;
308 if (!ip6_packet_match(skb, indev, outdev, &e->ipv6,
309 &acpar.thoff, &acpar.fragoff, &acpar.hotdrop)) {
310 no_match:
311 e = ip6t_next_entry(e);
312 continue;
313 }
314
315 xt_ematch_foreach(ematch, e) {
316 acpar.match = ematch->u.kernel.match;
317 acpar.matchinfo = ematch->data;
318 if (!acpar.match->match(skb, &acpar))
319 goto no_match;
320 }
321
322 counter = xt_get_this_cpu_counter(&e->counters);
323 ADD_COUNTER(*counter, skb->len, 1);
324
325 t = ip6t_get_target_c(e);
326 WARN_ON(!t->u.kernel.target);
327
328 #if IS_ENABLED(CONFIG_NETFILTER_XT_TARGET_TRACE)
329 /* The packet is traced: log it */
330 if (unlikely(skb->nf_trace))
331 trace_packet(state->net, skb, hook, state->in,
332 state->out, table->name, private, e);
333 #endif
334 /* Standard target? */
335 if (!t->u.kernel.target->target) {
336 int v;
337
338 v = ((struct xt_standard_target *)t)->verdict;
339 if (v < 0) {
340 /* Pop from stack? */
341 if (v != XT_RETURN) {
342 verdict = (unsigned int)(-v) - 1;
343 break;
344 }
345 if (stackidx == 0)
346 e = get_entry(table_base,
347 private->underflow[hook]);
348 else
349 e = ip6t_next_entry(jumpstack[--stackidx]);
350 continue;
351 }
352 if (table_base + v != ip6t_next_entry(e) &&
353 !(e->ipv6.flags & IP6T_F_GOTO)) {
354 if (unlikely(stackidx >= private->stacksize)) {
355 verdict = NF_DROP;
356 break;
357 }
358 jumpstack[stackidx++] = e;
359 }
360
361 e = get_entry(table_base, v);
362 continue;
363 }
364
365 acpar.target = t->u.kernel.target;
366 acpar.targinfo = t->data;
367
368 verdict = t->u.kernel.target->target(skb, &acpar);
369 if (verdict == XT_CONTINUE)
370 e = ip6t_next_entry(e);
371 else
372 /* Verdict */
373 break;
374 } while (!acpar.hotdrop);
375
376 xt_write_recseq_end(addend);
377 local_bh_enable();
378
379 if (acpar.hotdrop)
380 return NF_DROP;
381 else return verdict;
382 }
383
384 /* Figures out from what hook each rule can be called: returns 0 if
385 there are loops. Puts hook bitmask in comefrom. */
386 static int
mark_source_chains(const struct xt_table_info * newinfo,unsigned int valid_hooks,void * entry0,unsigned int * offsets)387 mark_source_chains(const struct xt_table_info *newinfo,
388 unsigned int valid_hooks, void *entry0,
389 unsigned int *offsets)
390 {
391 unsigned int hook;
392
393 /* No recursion; use packet counter to save back ptrs (reset
394 to 0 as we leave), and comefrom to save source hook bitmask */
395 for (hook = 0; hook < NF_INET_NUMHOOKS; hook++) {
396 unsigned int pos = newinfo->hook_entry[hook];
397 struct ip6t_entry *e = entry0 + pos;
398
399 if (!(valid_hooks & (1 << hook)))
400 continue;
401
402 /* Set initial back pointer. */
403 e->counters.pcnt = pos;
404
405 for (;;) {
406 const struct xt_standard_target *t
407 = (void *)ip6t_get_target_c(e);
408 int visited = e->comefrom & (1 << hook);
409
410 if (e->comefrom & (1 << NF_INET_NUMHOOKS))
411 return 0;
412
413 e->comefrom |= ((1 << hook) | (1 << NF_INET_NUMHOOKS));
414
415 /* Unconditional return/END. */
416 if ((unconditional(e) &&
417 (strcmp(t->target.u.user.name,
418 XT_STANDARD_TARGET) == 0) &&
419 t->verdict < 0) || visited) {
420 unsigned int oldpos, size;
421
422 /* Return: backtrack through the last
423 big jump. */
424 do {
425 e->comefrom ^= (1<<NF_INET_NUMHOOKS);
426 oldpos = pos;
427 pos = e->counters.pcnt;
428 e->counters.pcnt = 0;
429
430 /* We're at the start. */
431 if (pos == oldpos)
432 goto next;
433
434 e = entry0 + pos;
435 } while (oldpos == pos + e->next_offset);
436
437 /* Move along one */
438 size = e->next_offset;
439 e = entry0 + pos + size;
440 if (pos + size >= newinfo->size)
441 return 0;
442 e->counters.pcnt = pos;
443 pos += size;
444 } else {
445 int newpos = t->verdict;
446
447 if (strcmp(t->target.u.user.name,
448 XT_STANDARD_TARGET) == 0 &&
449 newpos >= 0) {
450 /* This a jump; chase it. */
451 if (!xt_find_jump_offset(offsets, newpos,
452 newinfo->number))
453 return 0;
454 } else {
455 /* ... this is a fallthru */
456 newpos = pos + e->next_offset;
457 if (newpos >= newinfo->size)
458 return 0;
459 }
460 e = entry0 + newpos;
461 e->counters.pcnt = pos;
462 pos = newpos;
463 }
464 }
465 next: ;
466 }
467 return 1;
468 }
469
cleanup_match(struct xt_entry_match * m,struct net * net)470 static void cleanup_match(struct xt_entry_match *m, struct net *net)
471 {
472 struct xt_mtdtor_param par;
473
474 par.net = net;
475 par.match = m->u.kernel.match;
476 par.matchinfo = m->data;
477 par.family = NFPROTO_IPV6;
478 if (par.match->destroy != NULL)
479 par.match->destroy(&par);
480 module_put(par.match->me);
481 }
482
check_match(struct xt_entry_match * m,struct xt_mtchk_param * par)483 static int check_match(struct xt_entry_match *m, struct xt_mtchk_param *par)
484 {
485 const struct ip6t_ip6 *ipv6 = par->entryinfo;
486
487 par->match = m->u.kernel.match;
488 par->matchinfo = m->data;
489
490 return xt_check_match(par, m->u.match_size - sizeof(*m),
491 ipv6->proto, ipv6->invflags & IP6T_INV_PROTO);
492 }
493
494 static int
find_check_match(struct xt_entry_match * m,struct xt_mtchk_param * par)495 find_check_match(struct xt_entry_match *m, struct xt_mtchk_param *par)
496 {
497 struct xt_match *match;
498 int ret;
499
500 match = xt_request_find_match(NFPROTO_IPV6, m->u.user.name,
501 m->u.user.revision);
502 if (IS_ERR(match))
503 return PTR_ERR(match);
504
505 m->u.kernel.match = match;
506
507 ret = check_match(m, par);
508 if (ret)
509 goto err;
510
511 return 0;
512 err:
513 module_put(m->u.kernel.match->me);
514 return ret;
515 }
516
check_target(struct ip6t_entry * e,struct net * net,const char * name)517 static int check_target(struct ip6t_entry *e, struct net *net, const char *name)
518 {
519 struct xt_entry_target *t = ip6t_get_target(e);
520 struct xt_tgchk_param par = {
521 .net = net,
522 .table = name,
523 .entryinfo = e,
524 .target = t->u.kernel.target,
525 .targinfo = t->data,
526 .hook_mask = e->comefrom,
527 .family = NFPROTO_IPV6,
528 };
529
530 return xt_check_target(&par, t->u.target_size - sizeof(*t),
531 e->ipv6.proto,
532 e->ipv6.invflags & IP6T_INV_PROTO);
533 }
534
535 static int
find_check_entry(struct ip6t_entry * e,struct net * net,const char * name,unsigned int size,struct xt_percpu_counter_alloc_state * alloc_state)536 find_check_entry(struct ip6t_entry *e, struct net *net, const char *name,
537 unsigned int size,
538 struct xt_percpu_counter_alloc_state *alloc_state)
539 {
540 struct xt_entry_target *t;
541 struct xt_target *target;
542 int ret;
543 unsigned int j;
544 struct xt_mtchk_param mtpar;
545 struct xt_entry_match *ematch;
546
547 if (!xt_percpu_counter_alloc(alloc_state, &e->counters))
548 return -ENOMEM;
549
550 j = 0;
551 memset(&mtpar, 0, sizeof(mtpar));
552 mtpar.net = net;
553 mtpar.table = name;
554 mtpar.entryinfo = &e->ipv6;
555 mtpar.hook_mask = e->comefrom;
556 mtpar.family = NFPROTO_IPV6;
557 xt_ematch_foreach(ematch, e) {
558 ret = find_check_match(ematch, &mtpar);
559 if (ret != 0)
560 goto cleanup_matches;
561 ++j;
562 }
563
564 t = ip6t_get_target(e);
565 target = xt_request_find_target(NFPROTO_IPV6, t->u.user.name,
566 t->u.user.revision);
567 if (IS_ERR(target)) {
568 ret = PTR_ERR(target);
569 goto cleanup_matches;
570 }
571 t->u.kernel.target = target;
572
573 ret = check_target(e, net, name);
574 if (ret)
575 goto err;
576 return 0;
577 err:
578 module_put(t->u.kernel.target->me);
579 cleanup_matches:
580 xt_ematch_foreach(ematch, e) {
581 if (j-- == 0)
582 break;
583 cleanup_match(ematch, net);
584 }
585
586 xt_percpu_counter_free(&e->counters);
587
588 return ret;
589 }
590
check_underflow(const struct ip6t_entry * e)591 static bool check_underflow(const struct ip6t_entry *e)
592 {
593 const struct xt_entry_target *t;
594 unsigned int verdict;
595
596 if (!unconditional(e))
597 return false;
598 t = ip6t_get_target_c(e);
599 if (strcmp(t->u.user.name, XT_STANDARD_TARGET) != 0)
600 return false;
601 verdict = ((struct xt_standard_target *)t)->verdict;
602 verdict = -verdict - 1;
603 return verdict == NF_DROP || verdict == NF_ACCEPT;
604 }
605
606 static int
check_entry_size_and_hooks(struct ip6t_entry * e,struct xt_table_info * newinfo,const unsigned char * base,const unsigned char * limit,const unsigned int * hook_entries,const unsigned int * underflows,unsigned int valid_hooks)607 check_entry_size_and_hooks(struct ip6t_entry *e,
608 struct xt_table_info *newinfo,
609 const unsigned char *base,
610 const unsigned char *limit,
611 const unsigned int *hook_entries,
612 const unsigned int *underflows,
613 unsigned int valid_hooks)
614 {
615 unsigned int h;
616 int err;
617
618 if ((unsigned long)e % __alignof__(struct ip6t_entry) != 0 ||
619 (unsigned char *)e + sizeof(struct ip6t_entry) >= limit ||
620 (unsigned char *)e + e->next_offset > limit)
621 return -EINVAL;
622
623 if (e->next_offset
624 < sizeof(struct ip6t_entry) + sizeof(struct xt_entry_target))
625 return -EINVAL;
626
627 if (!ip6_checkentry(&e->ipv6))
628 return -EINVAL;
629
630 err = xt_check_entry_offsets(e, e->elems, e->target_offset,
631 e->next_offset);
632 if (err)
633 return err;
634
635 /* Check hooks & underflows */
636 for (h = 0; h < NF_INET_NUMHOOKS; h++) {
637 if (!(valid_hooks & (1 << h)))
638 continue;
639 if ((unsigned char *)e - base == hook_entries[h])
640 newinfo->hook_entry[h] = hook_entries[h];
641 if ((unsigned char *)e - base == underflows[h]) {
642 if (!check_underflow(e))
643 return -EINVAL;
644
645 newinfo->underflow[h] = underflows[h];
646 }
647 }
648
649 /* Clear counters and comefrom */
650 e->counters = ((struct xt_counters) { 0, 0 });
651 e->comefrom = 0;
652 return 0;
653 }
654
cleanup_entry(struct ip6t_entry * e,struct net * net)655 static void cleanup_entry(struct ip6t_entry *e, struct net *net)
656 {
657 struct xt_tgdtor_param par;
658 struct xt_entry_target *t;
659 struct xt_entry_match *ematch;
660
661 /* Cleanup all matches */
662 xt_ematch_foreach(ematch, e)
663 cleanup_match(ematch, net);
664 t = ip6t_get_target(e);
665
666 par.net = net;
667 par.target = t->u.kernel.target;
668 par.targinfo = t->data;
669 par.family = NFPROTO_IPV6;
670 if (par.target->destroy != NULL)
671 par.target->destroy(&par);
672 module_put(par.target->me);
673 xt_percpu_counter_free(&e->counters);
674 }
675
676 /* Checks and translates the user-supplied table segment (held in
677 newinfo) */
678 static int
translate_table(struct net * net,struct xt_table_info * newinfo,void * entry0,const struct ip6t_replace * repl)679 translate_table(struct net *net, struct xt_table_info *newinfo, void *entry0,
680 const struct ip6t_replace *repl)
681 {
682 struct xt_percpu_counter_alloc_state alloc_state = { 0 };
683 struct ip6t_entry *iter;
684 unsigned int *offsets;
685 unsigned int i;
686 int ret = 0;
687
688 newinfo->size = repl->size;
689 newinfo->number = repl->num_entries;
690
691 /* Init all hooks to impossible value. */
692 for (i = 0; i < NF_INET_NUMHOOKS; i++) {
693 newinfo->hook_entry[i] = 0xFFFFFFFF;
694 newinfo->underflow[i] = 0xFFFFFFFF;
695 }
696
697 offsets = xt_alloc_entry_offsets(newinfo->number);
698 if (!offsets)
699 return -ENOMEM;
700 i = 0;
701 /* Walk through entries, checking offsets. */
702 xt_entry_foreach(iter, entry0, newinfo->size) {
703 ret = check_entry_size_and_hooks(iter, newinfo, entry0,
704 entry0 + repl->size,
705 repl->hook_entry,
706 repl->underflow,
707 repl->valid_hooks);
708 if (ret != 0)
709 goto out_free;
710 if (i < repl->num_entries)
711 offsets[i] = (void *)iter - entry0;
712 ++i;
713 if (strcmp(ip6t_get_target(iter)->u.user.name,
714 XT_ERROR_TARGET) == 0)
715 ++newinfo->stacksize;
716 }
717
718 ret = -EINVAL;
719 if (i != repl->num_entries)
720 goto out_free;
721
722 ret = xt_check_table_hooks(newinfo, repl->valid_hooks);
723 if (ret)
724 goto out_free;
725
726 if (!mark_source_chains(newinfo, repl->valid_hooks, entry0, offsets)) {
727 ret = -ELOOP;
728 goto out_free;
729 }
730 kvfree(offsets);
731
732 /* Finally, each sanity check must pass */
733 i = 0;
734 xt_entry_foreach(iter, entry0, newinfo->size) {
735 ret = find_check_entry(iter, net, repl->name, repl->size,
736 &alloc_state);
737 if (ret != 0)
738 break;
739 ++i;
740 }
741
742 if (ret != 0) {
743 xt_entry_foreach(iter, entry0, newinfo->size) {
744 if (i-- == 0)
745 break;
746 cleanup_entry(iter, net);
747 }
748 return ret;
749 }
750
751 return ret;
752 out_free:
753 kvfree(offsets);
754 return ret;
755 }
756
757 static void
get_counters(const struct xt_table_info * t,struct xt_counters counters[])758 get_counters(const struct xt_table_info *t,
759 struct xt_counters counters[])
760 {
761 struct ip6t_entry *iter;
762 unsigned int cpu;
763 unsigned int i;
764
765 for_each_possible_cpu(cpu) {
766 seqcount_t *s = &per_cpu(xt_recseq, cpu);
767
768 i = 0;
769 xt_entry_foreach(iter, t->entries, t->size) {
770 struct xt_counters *tmp;
771 u64 bcnt, pcnt;
772 unsigned int start;
773
774 tmp = xt_get_per_cpu_counter(&iter->counters, cpu);
775 do {
776 start = read_seqcount_begin(s);
777 bcnt = tmp->bcnt;
778 pcnt = tmp->pcnt;
779 } while (read_seqcount_retry(s, start));
780
781 ADD_COUNTER(counters[i], bcnt, pcnt);
782 ++i;
783 cond_resched();
784 }
785 }
786 }
787
get_old_counters(const struct xt_table_info * t,struct xt_counters counters[])788 static void get_old_counters(const struct xt_table_info *t,
789 struct xt_counters counters[])
790 {
791 struct ip6t_entry *iter;
792 unsigned int cpu, i;
793
794 for_each_possible_cpu(cpu) {
795 i = 0;
796 xt_entry_foreach(iter, t->entries, t->size) {
797 const struct xt_counters *tmp;
798
799 tmp = xt_get_per_cpu_counter(&iter->counters, cpu);
800 ADD_COUNTER(counters[i], tmp->bcnt, tmp->pcnt);
801 ++i;
802 }
803 cond_resched();
804 }
805 }
806
alloc_counters(const struct xt_table * table)807 static struct xt_counters *alloc_counters(const struct xt_table *table)
808 {
809 unsigned int countersize;
810 struct xt_counters *counters;
811 const struct xt_table_info *private = table->private;
812
813 /* We need atomic snapshot of counters: rest doesn't change
814 (other than comefrom, which userspace doesn't care
815 about). */
816 countersize = sizeof(struct xt_counters) * private->number;
817 counters = vzalloc(countersize);
818
819 if (counters == NULL)
820 return ERR_PTR(-ENOMEM);
821
822 get_counters(private, counters);
823
824 return counters;
825 }
826
827 static int
copy_entries_to_user(unsigned int total_size,const struct xt_table * table,void __user * userptr)828 copy_entries_to_user(unsigned int total_size,
829 const struct xt_table *table,
830 void __user *userptr)
831 {
832 unsigned int off, num;
833 const struct ip6t_entry *e;
834 struct xt_counters *counters;
835 const struct xt_table_info *private = table->private;
836 int ret = 0;
837 const void *loc_cpu_entry;
838
839 counters = alloc_counters(table);
840 if (IS_ERR(counters))
841 return PTR_ERR(counters);
842
843 loc_cpu_entry = private->entries;
844
845 /* FIXME: use iterator macros --RR */
846 /* ... then go back and fix counters and names */
847 for (off = 0, num = 0; off < total_size; off += e->next_offset, num++){
848 unsigned int i;
849 const struct xt_entry_match *m;
850 const struct xt_entry_target *t;
851
852 e = loc_cpu_entry + off;
853 if (copy_to_user(userptr + off, e, sizeof(*e))) {
854 ret = -EFAULT;
855 goto free_counters;
856 }
857 if (copy_to_user(userptr + off
858 + offsetof(struct ip6t_entry, counters),
859 &counters[num],
860 sizeof(counters[num])) != 0) {
861 ret = -EFAULT;
862 goto free_counters;
863 }
864
865 for (i = sizeof(struct ip6t_entry);
866 i < e->target_offset;
867 i += m->u.match_size) {
868 m = (void *)e + i;
869
870 if (xt_match_to_user(m, userptr + off + i)) {
871 ret = -EFAULT;
872 goto free_counters;
873 }
874 }
875
876 t = ip6t_get_target_c(e);
877 if (xt_target_to_user(t, userptr + off + e->target_offset)) {
878 ret = -EFAULT;
879 goto free_counters;
880 }
881 }
882
883 free_counters:
884 vfree(counters);
885 return ret;
886 }
887
888 #ifdef CONFIG_COMPAT
compat_standard_from_user(void * dst,const void * src)889 static void compat_standard_from_user(void *dst, const void *src)
890 {
891 int v = *(compat_int_t *)src;
892
893 if (v > 0)
894 v += xt_compat_calc_jump(AF_INET6, v);
895 memcpy(dst, &v, sizeof(v));
896 }
897
compat_standard_to_user(void __user * dst,const void * src)898 static int compat_standard_to_user(void __user *dst, const void *src)
899 {
900 compat_int_t cv = *(int *)src;
901
902 if (cv > 0)
903 cv -= xt_compat_calc_jump(AF_INET6, cv);
904 return copy_to_user(dst, &cv, sizeof(cv)) ? -EFAULT : 0;
905 }
906
compat_calc_entry(const struct ip6t_entry * e,const struct xt_table_info * info,const void * base,struct xt_table_info * newinfo)907 static int compat_calc_entry(const struct ip6t_entry *e,
908 const struct xt_table_info *info,
909 const void *base, struct xt_table_info *newinfo)
910 {
911 const struct xt_entry_match *ematch;
912 const struct xt_entry_target *t;
913 unsigned int entry_offset;
914 int off, i, ret;
915
916 off = sizeof(struct ip6t_entry) - sizeof(struct compat_ip6t_entry);
917 entry_offset = (void *)e - base;
918 xt_ematch_foreach(ematch, e)
919 off += xt_compat_match_offset(ematch->u.kernel.match);
920 t = ip6t_get_target_c(e);
921 off += xt_compat_target_offset(t->u.kernel.target);
922 newinfo->size -= off;
923 ret = xt_compat_add_offset(AF_INET6, entry_offset, off);
924 if (ret)
925 return ret;
926
927 for (i = 0; i < NF_INET_NUMHOOKS; i++) {
928 if (info->hook_entry[i] &&
929 (e < (struct ip6t_entry *)(base + info->hook_entry[i])))
930 newinfo->hook_entry[i] -= off;
931 if (info->underflow[i] &&
932 (e < (struct ip6t_entry *)(base + info->underflow[i])))
933 newinfo->underflow[i] -= off;
934 }
935 return 0;
936 }
937
compat_table_info(const struct xt_table_info * info,struct xt_table_info * newinfo)938 static int compat_table_info(const struct xt_table_info *info,
939 struct xt_table_info *newinfo)
940 {
941 struct ip6t_entry *iter;
942 const void *loc_cpu_entry;
943 int ret;
944
945 if (!newinfo || !info)
946 return -EINVAL;
947
948 /* we dont care about newinfo->entries */
949 memcpy(newinfo, info, offsetof(struct xt_table_info, entries));
950 newinfo->initial_entries = 0;
951 loc_cpu_entry = info->entries;
952 ret = xt_compat_init_offsets(AF_INET6, info->number);
953 if (ret)
954 return ret;
955 xt_entry_foreach(iter, loc_cpu_entry, info->size) {
956 ret = compat_calc_entry(iter, info, loc_cpu_entry, newinfo);
957 if (ret != 0)
958 return ret;
959 }
960 return 0;
961 }
962 #endif
963
get_info(struct net * net,void __user * user,const int * len,int compat)964 static int get_info(struct net *net, void __user *user,
965 const int *len, int compat)
966 {
967 char name[XT_TABLE_MAXNAMELEN];
968 struct xt_table *t;
969 int ret;
970
971 if (*len != sizeof(struct ip6t_getinfo))
972 return -EINVAL;
973
974 if (copy_from_user(name, user, sizeof(name)) != 0)
975 return -EFAULT;
976
977 name[XT_TABLE_MAXNAMELEN-1] = '\0';
978 #ifdef CONFIG_COMPAT
979 if (compat)
980 xt_compat_lock(AF_INET6);
981 #endif
982 t = xt_request_find_table_lock(net, AF_INET6, name);
983 if (!IS_ERR(t)) {
984 struct ip6t_getinfo info;
985 const struct xt_table_info *private = t->private;
986 #ifdef CONFIG_COMPAT
987 struct xt_table_info tmp;
988
989 if (compat) {
990 ret = compat_table_info(private, &tmp);
991 xt_compat_flush_offsets(AF_INET6);
992 private = &tmp;
993 }
994 #endif
995 memset(&info, 0, sizeof(info));
996 info.valid_hooks = t->valid_hooks;
997 memcpy(info.hook_entry, private->hook_entry,
998 sizeof(info.hook_entry));
999 memcpy(info.underflow, private->underflow,
1000 sizeof(info.underflow));
1001 info.num_entries = private->number;
1002 info.size = private->size;
1003 strcpy(info.name, name);
1004
1005 if (copy_to_user(user, &info, *len) != 0)
1006 ret = -EFAULT;
1007 else
1008 ret = 0;
1009
1010 xt_table_unlock(t);
1011 module_put(t->me);
1012 } else
1013 ret = PTR_ERR(t);
1014 #ifdef CONFIG_COMPAT
1015 if (compat)
1016 xt_compat_unlock(AF_INET6);
1017 #endif
1018 return ret;
1019 }
1020
1021 static int
get_entries(struct net * net,struct ip6t_get_entries __user * uptr,const int * len)1022 get_entries(struct net *net, struct ip6t_get_entries __user *uptr,
1023 const int *len)
1024 {
1025 int ret;
1026 struct ip6t_get_entries get;
1027 struct xt_table *t;
1028
1029 if (*len < sizeof(get))
1030 return -EINVAL;
1031 if (copy_from_user(&get, uptr, sizeof(get)) != 0)
1032 return -EFAULT;
1033 if (*len != sizeof(struct ip6t_get_entries) + get.size)
1034 return -EINVAL;
1035
1036 get.name[sizeof(get.name) - 1] = '\0';
1037
1038 t = xt_find_table_lock(net, AF_INET6, get.name);
1039 if (!IS_ERR(t)) {
1040 struct xt_table_info *private = t->private;
1041 if (get.size == private->size)
1042 ret = copy_entries_to_user(private->size,
1043 t, uptr->entrytable);
1044 else
1045 ret = -EAGAIN;
1046
1047 module_put(t->me);
1048 xt_table_unlock(t);
1049 } else
1050 ret = PTR_ERR(t);
1051
1052 return ret;
1053 }
1054
1055 static int
__do_replace(struct net * net,const char * name,unsigned int valid_hooks,struct xt_table_info * newinfo,unsigned int num_counters,void __user * counters_ptr)1056 __do_replace(struct net *net, const char *name, unsigned int valid_hooks,
1057 struct xt_table_info *newinfo, unsigned int num_counters,
1058 void __user *counters_ptr)
1059 {
1060 int ret;
1061 struct xt_table *t;
1062 struct xt_table_info *oldinfo;
1063 struct xt_counters *counters;
1064 struct ip6t_entry *iter;
1065
1066 ret = 0;
1067 counters = xt_counters_alloc(num_counters);
1068 if (!counters) {
1069 ret = -ENOMEM;
1070 goto out;
1071 }
1072
1073 t = xt_request_find_table_lock(net, AF_INET6, name);
1074 if (IS_ERR(t)) {
1075 ret = PTR_ERR(t);
1076 goto free_newinfo_counters_untrans;
1077 }
1078
1079 /* You lied! */
1080 if (valid_hooks != t->valid_hooks) {
1081 ret = -EINVAL;
1082 goto put_module;
1083 }
1084
1085 oldinfo = xt_replace_table(t, num_counters, newinfo, &ret);
1086 if (!oldinfo)
1087 goto put_module;
1088
1089 /* Update module usage count based on number of rules */
1090 if ((oldinfo->number > oldinfo->initial_entries) ||
1091 (newinfo->number <= oldinfo->initial_entries))
1092 module_put(t->me);
1093 if ((oldinfo->number > oldinfo->initial_entries) &&
1094 (newinfo->number <= oldinfo->initial_entries))
1095 module_put(t->me);
1096
1097 xt_table_unlock(t);
1098
1099 get_old_counters(oldinfo, counters);
1100
1101 /* Decrease module usage counts and free resource */
1102 xt_entry_foreach(iter, oldinfo->entries, oldinfo->size)
1103 cleanup_entry(iter, net);
1104
1105 xt_free_table_info(oldinfo);
1106 if (copy_to_user(counters_ptr, counters,
1107 sizeof(struct xt_counters) * num_counters) != 0) {
1108 /* Silent error, can't fail, new table is already in place */
1109 net_warn_ratelimited("ip6tables: counters copy to user failed while replacing table\n");
1110 }
1111 vfree(counters);
1112 return ret;
1113
1114 put_module:
1115 module_put(t->me);
1116 xt_table_unlock(t);
1117 free_newinfo_counters_untrans:
1118 vfree(counters);
1119 out:
1120 return ret;
1121 }
1122
1123 static int
do_replace(struct net * net,const void __user * user,unsigned int len)1124 do_replace(struct net *net, const void __user *user, unsigned int len)
1125 {
1126 int ret;
1127 struct ip6t_replace tmp;
1128 struct xt_table_info *newinfo;
1129 void *loc_cpu_entry;
1130 struct ip6t_entry *iter;
1131
1132 if (copy_from_user(&tmp, user, sizeof(tmp)) != 0)
1133 return -EFAULT;
1134
1135 /* overflow check */
1136 if (tmp.num_counters >= INT_MAX / sizeof(struct xt_counters))
1137 return -ENOMEM;
1138 if (tmp.num_counters == 0)
1139 return -EINVAL;
1140
1141 tmp.name[sizeof(tmp.name)-1] = 0;
1142
1143 newinfo = xt_alloc_table_info(tmp.size);
1144 if (!newinfo)
1145 return -ENOMEM;
1146
1147 loc_cpu_entry = newinfo->entries;
1148 if (copy_from_user(loc_cpu_entry, user + sizeof(tmp),
1149 tmp.size) != 0) {
1150 ret = -EFAULT;
1151 goto free_newinfo;
1152 }
1153
1154 ret = translate_table(net, newinfo, loc_cpu_entry, &tmp);
1155 if (ret != 0)
1156 goto free_newinfo;
1157
1158 ret = __do_replace(net, tmp.name, tmp.valid_hooks, newinfo,
1159 tmp.num_counters, tmp.counters);
1160 if (ret)
1161 goto free_newinfo_untrans;
1162 return 0;
1163
1164 free_newinfo_untrans:
1165 xt_entry_foreach(iter, loc_cpu_entry, newinfo->size)
1166 cleanup_entry(iter, net);
1167 free_newinfo:
1168 xt_free_table_info(newinfo);
1169 return ret;
1170 }
1171
1172 static int
do_add_counters(struct net * net,const void __user * user,unsigned int len,int compat)1173 do_add_counters(struct net *net, const void __user *user, unsigned int len,
1174 int compat)
1175 {
1176 unsigned int i;
1177 struct xt_counters_info tmp;
1178 struct xt_counters *paddc;
1179 struct xt_table *t;
1180 const struct xt_table_info *private;
1181 int ret = 0;
1182 struct ip6t_entry *iter;
1183 unsigned int addend;
1184
1185 paddc = xt_copy_counters_from_user(user, len, &tmp, compat);
1186 if (IS_ERR(paddc))
1187 return PTR_ERR(paddc);
1188 t = xt_find_table_lock(net, AF_INET6, tmp.name);
1189 if (IS_ERR(t)) {
1190 ret = PTR_ERR(t);
1191 goto free;
1192 }
1193
1194 local_bh_disable();
1195 private = t->private;
1196 if (private->number != tmp.num_counters) {
1197 ret = -EINVAL;
1198 goto unlock_up_free;
1199 }
1200
1201 i = 0;
1202 addend = xt_write_recseq_begin();
1203 xt_entry_foreach(iter, private->entries, private->size) {
1204 struct xt_counters *tmp;
1205
1206 tmp = xt_get_this_cpu_counter(&iter->counters);
1207 ADD_COUNTER(*tmp, paddc[i].bcnt, paddc[i].pcnt);
1208 ++i;
1209 }
1210 xt_write_recseq_end(addend);
1211 unlock_up_free:
1212 local_bh_enable();
1213 xt_table_unlock(t);
1214 module_put(t->me);
1215 free:
1216 vfree(paddc);
1217
1218 return ret;
1219 }
1220
1221 #ifdef CONFIG_COMPAT
1222 struct compat_ip6t_replace {
1223 char name[XT_TABLE_MAXNAMELEN];
1224 u32 valid_hooks;
1225 u32 num_entries;
1226 u32 size;
1227 u32 hook_entry[NF_INET_NUMHOOKS];
1228 u32 underflow[NF_INET_NUMHOOKS];
1229 u32 num_counters;
1230 compat_uptr_t counters; /* struct xt_counters * */
1231 struct compat_ip6t_entry entries[0];
1232 };
1233
1234 static int
compat_copy_entry_to_user(struct ip6t_entry * e,void __user ** dstptr,unsigned int * size,struct xt_counters * counters,unsigned int i)1235 compat_copy_entry_to_user(struct ip6t_entry *e, void __user **dstptr,
1236 unsigned int *size, struct xt_counters *counters,
1237 unsigned int i)
1238 {
1239 struct xt_entry_target *t;
1240 struct compat_ip6t_entry __user *ce;
1241 u_int16_t target_offset, next_offset;
1242 compat_uint_t origsize;
1243 const struct xt_entry_match *ematch;
1244 int ret = 0;
1245
1246 origsize = *size;
1247 ce = *dstptr;
1248 if (copy_to_user(ce, e, sizeof(struct ip6t_entry)) != 0 ||
1249 copy_to_user(&ce->counters, &counters[i],
1250 sizeof(counters[i])) != 0)
1251 return -EFAULT;
1252
1253 *dstptr += sizeof(struct compat_ip6t_entry);
1254 *size -= sizeof(struct ip6t_entry) - sizeof(struct compat_ip6t_entry);
1255
1256 xt_ematch_foreach(ematch, e) {
1257 ret = xt_compat_match_to_user(ematch, dstptr, size);
1258 if (ret != 0)
1259 return ret;
1260 }
1261 target_offset = e->target_offset - (origsize - *size);
1262 t = ip6t_get_target(e);
1263 ret = xt_compat_target_to_user(t, dstptr, size);
1264 if (ret)
1265 return ret;
1266 next_offset = e->next_offset - (origsize - *size);
1267 if (put_user(target_offset, &ce->target_offset) != 0 ||
1268 put_user(next_offset, &ce->next_offset) != 0)
1269 return -EFAULT;
1270 return 0;
1271 }
1272
1273 static int
compat_find_calc_match(struct xt_entry_match * m,const struct ip6t_ip6 * ipv6,int * size)1274 compat_find_calc_match(struct xt_entry_match *m,
1275 const struct ip6t_ip6 *ipv6,
1276 int *size)
1277 {
1278 struct xt_match *match;
1279
1280 match = xt_request_find_match(NFPROTO_IPV6, m->u.user.name,
1281 m->u.user.revision);
1282 if (IS_ERR(match))
1283 return PTR_ERR(match);
1284
1285 m->u.kernel.match = match;
1286 *size += xt_compat_match_offset(match);
1287 return 0;
1288 }
1289
compat_release_entry(struct compat_ip6t_entry * e)1290 static void compat_release_entry(struct compat_ip6t_entry *e)
1291 {
1292 struct xt_entry_target *t;
1293 struct xt_entry_match *ematch;
1294
1295 /* Cleanup all matches */
1296 xt_ematch_foreach(ematch, e)
1297 module_put(ematch->u.kernel.match->me);
1298 t = compat_ip6t_get_target(e);
1299 module_put(t->u.kernel.target->me);
1300 }
1301
1302 static int
check_compat_entry_size_and_hooks(struct compat_ip6t_entry * e,struct xt_table_info * newinfo,unsigned int * size,const unsigned char * base,const unsigned char * limit)1303 check_compat_entry_size_and_hooks(struct compat_ip6t_entry *e,
1304 struct xt_table_info *newinfo,
1305 unsigned int *size,
1306 const unsigned char *base,
1307 const unsigned char *limit)
1308 {
1309 struct xt_entry_match *ematch;
1310 struct xt_entry_target *t;
1311 struct xt_target *target;
1312 unsigned int entry_offset;
1313 unsigned int j;
1314 int ret, off;
1315
1316 if ((unsigned long)e % __alignof__(struct compat_ip6t_entry) != 0 ||
1317 (unsigned char *)e + sizeof(struct compat_ip6t_entry) >= limit ||
1318 (unsigned char *)e + e->next_offset > limit)
1319 return -EINVAL;
1320
1321 if (e->next_offset < sizeof(struct compat_ip6t_entry) +
1322 sizeof(struct compat_xt_entry_target))
1323 return -EINVAL;
1324
1325 if (!ip6_checkentry(&e->ipv6))
1326 return -EINVAL;
1327
1328 ret = xt_compat_check_entry_offsets(e, e->elems,
1329 e->target_offset, e->next_offset);
1330 if (ret)
1331 return ret;
1332
1333 off = sizeof(struct ip6t_entry) - sizeof(struct compat_ip6t_entry);
1334 entry_offset = (void *)e - (void *)base;
1335 j = 0;
1336 xt_ematch_foreach(ematch, e) {
1337 ret = compat_find_calc_match(ematch, &e->ipv6, &off);
1338 if (ret != 0)
1339 goto release_matches;
1340 ++j;
1341 }
1342
1343 t = compat_ip6t_get_target(e);
1344 target = xt_request_find_target(NFPROTO_IPV6, t->u.user.name,
1345 t->u.user.revision);
1346 if (IS_ERR(target)) {
1347 ret = PTR_ERR(target);
1348 goto release_matches;
1349 }
1350 t->u.kernel.target = target;
1351
1352 off += xt_compat_target_offset(target);
1353 *size += off;
1354 ret = xt_compat_add_offset(AF_INET6, entry_offset, off);
1355 if (ret)
1356 goto out;
1357
1358 return 0;
1359
1360 out:
1361 module_put(t->u.kernel.target->me);
1362 release_matches:
1363 xt_ematch_foreach(ematch, e) {
1364 if (j-- == 0)
1365 break;
1366 module_put(ematch->u.kernel.match->me);
1367 }
1368 return ret;
1369 }
1370
1371 static void
compat_copy_entry_from_user(struct compat_ip6t_entry * e,void ** dstptr,unsigned int * size,struct xt_table_info * newinfo,unsigned char * base)1372 compat_copy_entry_from_user(struct compat_ip6t_entry *e, void **dstptr,
1373 unsigned int *size,
1374 struct xt_table_info *newinfo, unsigned char *base)
1375 {
1376 struct xt_entry_target *t;
1377 struct ip6t_entry *de;
1378 unsigned int origsize;
1379 int h;
1380 struct xt_entry_match *ematch;
1381
1382 origsize = *size;
1383 de = *dstptr;
1384 memcpy(de, e, sizeof(struct ip6t_entry));
1385 memcpy(&de->counters, &e->counters, sizeof(e->counters));
1386
1387 *dstptr += sizeof(struct ip6t_entry);
1388 *size += sizeof(struct ip6t_entry) - sizeof(struct compat_ip6t_entry);
1389
1390 xt_ematch_foreach(ematch, e)
1391 xt_compat_match_from_user(ematch, dstptr, size);
1392
1393 de->target_offset = e->target_offset - (origsize - *size);
1394 t = compat_ip6t_get_target(e);
1395 xt_compat_target_from_user(t, dstptr, size);
1396
1397 de->next_offset = e->next_offset - (origsize - *size);
1398 for (h = 0; h < NF_INET_NUMHOOKS; h++) {
1399 if ((unsigned char *)de - base < newinfo->hook_entry[h])
1400 newinfo->hook_entry[h] -= origsize - *size;
1401 if ((unsigned char *)de - base < newinfo->underflow[h])
1402 newinfo->underflow[h] -= origsize - *size;
1403 }
1404 }
1405
1406 static int
translate_compat_table(struct net * net,struct xt_table_info ** pinfo,void ** pentry0,const struct compat_ip6t_replace * compatr)1407 translate_compat_table(struct net *net,
1408 struct xt_table_info **pinfo,
1409 void **pentry0,
1410 const struct compat_ip6t_replace *compatr)
1411 {
1412 unsigned int i, j;
1413 struct xt_table_info *newinfo, *info;
1414 void *pos, *entry0, *entry1;
1415 struct compat_ip6t_entry *iter0;
1416 struct ip6t_replace repl;
1417 unsigned int size;
1418 int ret;
1419
1420 info = *pinfo;
1421 entry0 = *pentry0;
1422 size = compatr->size;
1423 info->number = compatr->num_entries;
1424
1425 j = 0;
1426 xt_compat_lock(AF_INET6);
1427 ret = xt_compat_init_offsets(AF_INET6, compatr->num_entries);
1428 if (ret)
1429 goto out_unlock;
1430 /* Walk through entries, checking offsets. */
1431 xt_entry_foreach(iter0, entry0, compatr->size) {
1432 ret = check_compat_entry_size_and_hooks(iter0, info, &size,
1433 entry0,
1434 entry0 + compatr->size);
1435 if (ret != 0)
1436 goto out_unlock;
1437 ++j;
1438 }
1439
1440 ret = -EINVAL;
1441 if (j != compatr->num_entries)
1442 goto out_unlock;
1443
1444 ret = -ENOMEM;
1445 newinfo = xt_alloc_table_info(size);
1446 if (!newinfo)
1447 goto out_unlock;
1448
1449 memset(newinfo->entries, 0, size);
1450
1451 newinfo->number = compatr->num_entries;
1452 for (i = 0; i < NF_INET_NUMHOOKS; i++) {
1453 newinfo->hook_entry[i] = compatr->hook_entry[i];
1454 newinfo->underflow[i] = compatr->underflow[i];
1455 }
1456 entry1 = newinfo->entries;
1457 pos = entry1;
1458 size = compatr->size;
1459 xt_entry_foreach(iter0, entry0, compatr->size)
1460 compat_copy_entry_from_user(iter0, &pos, &size,
1461 newinfo, entry1);
1462
1463 /* all module references in entry0 are now gone. */
1464 xt_compat_flush_offsets(AF_INET6);
1465 xt_compat_unlock(AF_INET6);
1466
1467 memcpy(&repl, compatr, sizeof(*compatr));
1468
1469 for (i = 0; i < NF_INET_NUMHOOKS; i++) {
1470 repl.hook_entry[i] = newinfo->hook_entry[i];
1471 repl.underflow[i] = newinfo->underflow[i];
1472 }
1473
1474 repl.num_counters = 0;
1475 repl.counters = NULL;
1476 repl.size = newinfo->size;
1477 ret = translate_table(net, newinfo, entry1, &repl);
1478 if (ret)
1479 goto free_newinfo;
1480
1481 *pinfo = newinfo;
1482 *pentry0 = entry1;
1483 xt_free_table_info(info);
1484 return 0;
1485
1486 free_newinfo:
1487 xt_free_table_info(newinfo);
1488 return ret;
1489 out_unlock:
1490 xt_compat_flush_offsets(AF_INET6);
1491 xt_compat_unlock(AF_INET6);
1492 xt_entry_foreach(iter0, entry0, compatr->size) {
1493 if (j-- == 0)
1494 break;
1495 compat_release_entry(iter0);
1496 }
1497 return ret;
1498 }
1499
1500 static int
compat_do_replace(struct net * net,void __user * user,unsigned int len)1501 compat_do_replace(struct net *net, void __user *user, unsigned int len)
1502 {
1503 int ret;
1504 struct compat_ip6t_replace tmp;
1505 struct xt_table_info *newinfo;
1506 void *loc_cpu_entry;
1507 struct ip6t_entry *iter;
1508
1509 if (copy_from_user(&tmp, user, sizeof(tmp)) != 0)
1510 return -EFAULT;
1511
1512 /* overflow check */
1513 if (tmp.num_counters >= INT_MAX / sizeof(struct xt_counters))
1514 return -ENOMEM;
1515 if (tmp.num_counters == 0)
1516 return -EINVAL;
1517
1518 tmp.name[sizeof(tmp.name)-1] = 0;
1519
1520 newinfo = xt_alloc_table_info(tmp.size);
1521 if (!newinfo)
1522 return -ENOMEM;
1523
1524 loc_cpu_entry = newinfo->entries;
1525 if (copy_from_user(loc_cpu_entry, user + sizeof(tmp),
1526 tmp.size) != 0) {
1527 ret = -EFAULT;
1528 goto free_newinfo;
1529 }
1530
1531 ret = translate_compat_table(net, &newinfo, &loc_cpu_entry, &tmp);
1532 if (ret != 0)
1533 goto free_newinfo;
1534
1535 ret = __do_replace(net, tmp.name, tmp.valid_hooks, newinfo,
1536 tmp.num_counters, compat_ptr(tmp.counters));
1537 if (ret)
1538 goto free_newinfo_untrans;
1539 return 0;
1540
1541 free_newinfo_untrans:
1542 xt_entry_foreach(iter, loc_cpu_entry, newinfo->size)
1543 cleanup_entry(iter, net);
1544 free_newinfo:
1545 xt_free_table_info(newinfo);
1546 return ret;
1547 }
1548
1549 static int
compat_do_ip6t_set_ctl(struct sock * sk,int cmd,void __user * user,unsigned int len)1550 compat_do_ip6t_set_ctl(struct sock *sk, int cmd, void __user *user,
1551 unsigned int len)
1552 {
1553 int ret;
1554
1555 if (!ns_capable(sock_net(sk)->user_ns, CAP_NET_ADMIN))
1556 return -EPERM;
1557
1558 switch (cmd) {
1559 case IP6T_SO_SET_REPLACE:
1560 ret = compat_do_replace(sock_net(sk), user, len);
1561 break;
1562
1563 case IP6T_SO_SET_ADD_COUNTERS:
1564 ret = do_add_counters(sock_net(sk), user, len, 1);
1565 break;
1566
1567 default:
1568 ret = -EINVAL;
1569 }
1570
1571 return ret;
1572 }
1573
1574 struct compat_ip6t_get_entries {
1575 char name[XT_TABLE_MAXNAMELEN];
1576 compat_uint_t size;
1577 struct compat_ip6t_entry entrytable[0];
1578 };
1579
1580 static int
compat_copy_entries_to_user(unsigned int total_size,struct xt_table * table,void __user * userptr)1581 compat_copy_entries_to_user(unsigned int total_size, struct xt_table *table,
1582 void __user *userptr)
1583 {
1584 struct xt_counters *counters;
1585 const struct xt_table_info *private = table->private;
1586 void __user *pos;
1587 unsigned int size;
1588 int ret = 0;
1589 unsigned int i = 0;
1590 struct ip6t_entry *iter;
1591
1592 counters = alloc_counters(table);
1593 if (IS_ERR(counters))
1594 return PTR_ERR(counters);
1595
1596 pos = userptr;
1597 size = total_size;
1598 xt_entry_foreach(iter, private->entries, total_size) {
1599 ret = compat_copy_entry_to_user(iter, &pos,
1600 &size, counters, i++);
1601 if (ret != 0)
1602 break;
1603 }
1604
1605 vfree(counters);
1606 return ret;
1607 }
1608
1609 static int
compat_get_entries(struct net * net,struct compat_ip6t_get_entries __user * uptr,int * len)1610 compat_get_entries(struct net *net, struct compat_ip6t_get_entries __user *uptr,
1611 int *len)
1612 {
1613 int ret;
1614 struct compat_ip6t_get_entries get;
1615 struct xt_table *t;
1616
1617 if (*len < sizeof(get))
1618 return -EINVAL;
1619
1620 if (copy_from_user(&get, uptr, sizeof(get)) != 0)
1621 return -EFAULT;
1622
1623 if (*len != sizeof(struct compat_ip6t_get_entries) + get.size)
1624 return -EINVAL;
1625
1626 get.name[sizeof(get.name) - 1] = '\0';
1627
1628 xt_compat_lock(AF_INET6);
1629 t = xt_find_table_lock(net, AF_INET6, get.name);
1630 if (!IS_ERR(t)) {
1631 const struct xt_table_info *private = t->private;
1632 struct xt_table_info info;
1633 ret = compat_table_info(private, &info);
1634 if (!ret && get.size == info.size)
1635 ret = compat_copy_entries_to_user(private->size,
1636 t, uptr->entrytable);
1637 else if (!ret)
1638 ret = -EAGAIN;
1639
1640 xt_compat_flush_offsets(AF_INET6);
1641 module_put(t->me);
1642 xt_table_unlock(t);
1643 } else
1644 ret = PTR_ERR(t);
1645
1646 xt_compat_unlock(AF_INET6);
1647 return ret;
1648 }
1649
1650 static int do_ip6t_get_ctl(struct sock *, int, void __user *, int *);
1651
1652 static int
compat_do_ip6t_get_ctl(struct sock * sk,int cmd,void __user * user,int * len)1653 compat_do_ip6t_get_ctl(struct sock *sk, int cmd, void __user *user, int *len)
1654 {
1655 int ret;
1656
1657 if (!ns_capable(sock_net(sk)->user_ns, CAP_NET_ADMIN))
1658 return -EPERM;
1659
1660 switch (cmd) {
1661 case IP6T_SO_GET_INFO:
1662 ret = get_info(sock_net(sk), user, len, 1);
1663 break;
1664 case IP6T_SO_GET_ENTRIES:
1665 ret = compat_get_entries(sock_net(sk), user, len);
1666 break;
1667 default:
1668 ret = do_ip6t_get_ctl(sk, cmd, user, len);
1669 }
1670 return ret;
1671 }
1672 #endif
1673
1674 static int
do_ip6t_set_ctl(struct sock * sk,int cmd,void __user * user,unsigned int len)1675 do_ip6t_set_ctl(struct sock *sk, int cmd, void __user *user, unsigned int len)
1676 {
1677 int ret;
1678
1679 if (!ns_capable(sock_net(sk)->user_ns, CAP_NET_ADMIN))
1680 return -EPERM;
1681
1682 switch (cmd) {
1683 case IP6T_SO_SET_REPLACE:
1684 ret = do_replace(sock_net(sk), user, len);
1685 break;
1686
1687 case IP6T_SO_SET_ADD_COUNTERS:
1688 ret = do_add_counters(sock_net(sk), user, len, 0);
1689 break;
1690
1691 default:
1692 ret = -EINVAL;
1693 }
1694
1695 return ret;
1696 }
1697
1698 static int
do_ip6t_get_ctl(struct sock * sk,int cmd,void __user * user,int * len)1699 do_ip6t_get_ctl(struct sock *sk, int cmd, void __user *user, int *len)
1700 {
1701 int ret;
1702
1703 if (!ns_capable(sock_net(sk)->user_ns, CAP_NET_ADMIN))
1704 return -EPERM;
1705
1706 switch (cmd) {
1707 case IP6T_SO_GET_INFO:
1708 ret = get_info(sock_net(sk), user, len, 0);
1709 break;
1710
1711 case IP6T_SO_GET_ENTRIES:
1712 ret = get_entries(sock_net(sk), user, len);
1713 break;
1714
1715 case IP6T_SO_GET_REVISION_MATCH:
1716 case IP6T_SO_GET_REVISION_TARGET: {
1717 struct xt_get_revision rev;
1718 int target;
1719
1720 if (*len != sizeof(rev)) {
1721 ret = -EINVAL;
1722 break;
1723 }
1724 if (copy_from_user(&rev, user, sizeof(rev)) != 0) {
1725 ret = -EFAULT;
1726 break;
1727 }
1728 rev.name[sizeof(rev.name)-1] = 0;
1729
1730 if (cmd == IP6T_SO_GET_REVISION_TARGET)
1731 target = 1;
1732 else
1733 target = 0;
1734
1735 try_then_request_module(xt_find_revision(AF_INET6, rev.name,
1736 rev.revision,
1737 target, &ret),
1738 "ip6t_%s", rev.name);
1739 break;
1740 }
1741
1742 default:
1743 ret = -EINVAL;
1744 }
1745
1746 return ret;
1747 }
1748
__ip6t_unregister_table(struct net * net,struct xt_table * table)1749 static void __ip6t_unregister_table(struct net *net, struct xt_table *table)
1750 {
1751 struct xt_table_info *private;
1752 void *loc_cpu_entry;
1753 struct module *table_owner = table->me;
1754 struct ip6t_entry *iter;
1755
1756 private = xt_unregister_table(table);
1757
1758 /* Decrease module usage counts and free resources */
1759 loc_cpu_entry = private->entries;
1760 xt_entry_foreach(iter, loc_cpu_entry, private->size)
1761 cleanup_entry(iter, net);
1762 if (private->number > private->initial_entries)
1763 module_put(table_owner);
1764 xt_free_table_info(private);
1765 }
1766
ip6t_register_table(struct net * net,const struct xt_table * table,const struct ip6t_replace * repl,const struct nf_hook_ops * ops,struct xt_table ** res)1767 int ip6t_register_table(struct net *net, const struct xt_table *table,
1768 const struct ip6t_replace *repl,
1769 const struct nf_hook_ops *ops,
1770 struct xt_table **res)
1771 {
1772 int ret;
1773 struct xt_table_info *newinfo;
1774 struct xt_table_info bootstrap = {0};
1775 void *loc_cpu_entry;
1776 struct xt_table *new_table;
1777
1778 newinfo = xt_alloc_table_info(repl->size);
1779 if (!newinfo)
1780 return -ENOMEM;
1781
1782 loc_cpu_entry = newinfo->entries;
1783 memcpy(loc_cpu_entry, repl->entries, repl->size);
1784
1785 ret = translate_table(net, newinfo, loc_cpu_entry, repl);
1786 if (ret != 0)
1787 goto out_free;
1788
1789 new_table = xt_register_table(net, table, &bootstrap, newinfo);
1790 if (IS_ERR(new_table)) {
1791 ret = PTR_ERR(new_table);
1792 goto out_free;
1793 }
1794
1795 /* set res now, will see skbs right after nf_register_net_hooks */
1796 WRITE_ONCE(*res, new_table);
1797 if (!ops)
1798 return 0;
1799
1800 ret = nf_register_net_hooks(net, ops, hweight32(table->valid_hooks));
1801 if (ret != 0) {
1802 __ip6t_unregister_table(net, new_table);
1803 *res = NULL;
1804 }
1805
1806 return ret;
1807
1808 out_free:
1809 xt_free_table_info(newinfo);
1810 return ret;
1811 }
1812
ip6t_unregister_table(struct net * net,struct xt_table * table,const struct nf_hook_ops * ops)1813 void ip6t_unregister_table(struct net *net, struct xt_table *table,
1814 const struct nf_hook_ops *ops)
1815 {
1816 if (ops)
1817 nf_unregister_net_hooks(net, ops, hweight32(table->valid_hooks));
1818 __ip6t_unregister_table(net, table);
1819 }
1820
1821 /* Returns 1 if the type and code is matched by the range, 0 otherwise */
1822 static inline bool
icmp6_type_code_match(u_int8_t test_type,u_int8_t min_code,u_int8_t max_code,u_int8_t type,u_int8_t code,bool invert)1823 icmp6_type_code_match(u_int8_t test_type, u_int8_t min_code, u_int8_t max_code,
1824 u_int8_t type, u_int8_t code,
1825 bool invert)
1826 {
1827 return (type == test_type && code >= min_code && code <= max_code)
1828 ^ invert;
1829 }
1830
1831 static bool
icmp6_match(const struct sk_buff * skb,struct xt_action_param * par)1832 icmp6_match(const struct sk_buff *skb, struct xt_action_param *par)
1833 {
1834 const struct icmp6hdr *ic;
1835 struct icmp6hdr _icmph;
1836 const struct ip6t_icmp *icmpinfo = par->matchinfo;
1837
1838 /* Must not be a fragment. */
1839 if (par->fragoff != 0)
1840 return false;
1841
1842 ic = skb_header_pointer(skb, par->thoff, sizeof(_icmph), &_icmph);
1843 if (ic == NULL) {
1844 /* We've been asked to examine this packet, and we
1845 * can't. Hence, no choice but to drop.
1846 */
1847 par->hotdrop = true;
1848 return false;
1849 }
1850
1851 return icmp6_type_code_match(icmpinfo->type,
1852 icmpinfo->code[0],
1853 icmpinfo->code[1],
1854 ic->icmp6_type, ic->icmp6_code,
1855 !!(icmpinfo->invflags&IP6T_ICMP_INV));
1856 }
1857
1858 /* Called when user tries to insert an entry of this type. */
icmp6_checkentry(const struct xt_mtchk_param * par)1859 static int icmp6_checkentry(const struct xt_mtchk_param *par)
1860 {
1861 const struct ip6t_icmp *icmpinfo = par->matchinfo;
1862
1863 /* Must specify no unknown invflags */
1864 return (icmpinfo->invflags & ~IP6T_ICMP_INV) ? -EINVAL : 0;
1865 }
1866
1867 /* The built-in targets: standard (NULL) and error. */
1868 static struct xt_target ip6t_builtin_tg[] __read_mostly = {
1869 {
1870 .name = XT_STANDARD_TARGET,
1871 .targetsize = sizeof(int),
1872 .family = NFPROTO_IPV6,
1873 #ifdef CONFIG_COMPAT
1874 .compatsize = sizeof(compat_int_t),
1875 .compat_from_user = compat_standard_from_user,
1876 .compat_to_user = compat_standard_to_user,
1877 #endif
1878 },
1879 {
1880 .name = XT_ERROR_TARGET,
1881 .target = ip6t_error,
1882 .targetsize = XT_FUNCTION_MAXNAMELEN,
1883 .family = NFPROTO_IPV6,
1884 },
1885 };
1886
1887 static struct nf_sockopt_ops ip6t_sockopts = {
1888 .pf = PF_INET6,
1889 .set_optmin = IP6T_BASE_CTL,
1890 .set_optmax = IP6T_SO_SET_MAX+1,
1891 .set = do_ip6t_set_ctl,
1892 #ifdef CONFIG_COMPAT
1893 .compat_set = compat_do_ip6t_set_ctl,
1894 #endif
1895 .get_optmin = IP6T_BASE_CTL,
1896 .get_optmax = IP6T_SO_GET_MAX+1,
1897 .get = do_ip6t_get_ctl,
1898 #ifdef CONFIG_COMPAT
1899 .compat_get = compat_do_ip6t_get_ctl,
1900 #endif
1901 .owner = THIS_MODULE,
1902 };
1903
1904 static struct xt_match ip6t_builtin_mt[] __read_mostly = {
1905 {
1906 .name = "icmp6",
1907 .match = icmp6_match,
1908 .matchsize = sizeof(struct ip6t_icmp),
1909 .checkentry = icmp6_checkentry,
1910 .proto = IPPROTO_ICMPV6,
1911 .family = NFPROTO_IPV6,
1912 .me = THIS_MODULE,
1913 },
1914 };
1915
ip6_tables_net_init(struct net * net)1916 static int __net_init ip6_tables_net_init(struct net *net)
1917 {
1918 return xt_proto_init(net, NFPROTO_IPV6);
1919 }
1920
ip6_tables_net_exit(struct net * net)1921 static void __net_exit ip6_tables_net_exit(struct net *net)
1922 {
1923 xt_proto_fini(net, NFPROTO_IPV6);
1924 }
1925
1926 static struct pernet_operations ip6_tables_net_ops = {
1927 .init = ip6_tables_net_init,
1928 .exit = ip6_tables_net_exit,
1929 };
1930
ip6_tables_init(void)1931 static int __init ip6_tables_init(void)
1932 {
1933 int ret;
1934
1935 ret = register_pernet_subsys(&ip6_tables_net_ops);
1936 if (ret < 0)
1937 goto err1;
1938
1939 /* No one else will be downing sem now, so we won't sleep */
1940 ret = xt_register_targets(ip6t_builtin_tg, ARRAY_SIZE(ip6t_builtin_tg));
1941 if (ret < 0)
1942 goto err2;
1943 ret = xt_register_matches(ip6t_builtin_mt, ARRAY_SIZE(ip6t_builtin_mt));
1944 if (ret < 0)
1945 goto err4;
1946
1947 /* Register setsockopt */
1948 ret = nf_register_sockopt(&ip6t_sockopts);
1949 if (ret < 0)
1950 goto err5;
1951
1952 return 0;
1953
1954 err5:
1955 xt_unregister_matches(ip6t_builtin_mt, ARRAY_SIZE(ip6t_builtin_mt));
1956 err4:
1957 xt_unregister_targets(ip6t_builtin_tg, ARRAY_SIZE(ip6t_builtin_tg));
1958 err2:
1959 unregister_pernet_subsys(&ip6_tables_net_ops);
1960 err1:
1961 return ret;
1962 }
1963
ip6_tables_fini(void)1964 static void __exit ip6_tables_fini(void)
1965 {
1966 nf_unregister_sockopt(&ip6t_sockopts);
1967
1968 xt_unregister_matches(ip6t_builtin_mt, ARRAY_SIZE(ip6t_builtin_mt));
1969 xt_unregister_targets(ip6t_builtin_tg, ARRAY_SIZE(ip6t_builtin_tg));
1970 unregister_pernet_subsys(&ip6_tables_net_ops);
1971 }
1972
1973 EXPORT_SYMBOL(ip6t_register_table);
1974 EXPORT_SYMBOL(ip6t_unregister_table);
1975 EXPORT_SYMBOL(ip6t_do_table);
1976
1977 module_init(ip6_tables_init);
1978 module_exit(ip6_tables_fini);
1979