inet: frags: use kmem_cache for inet_frag_queue
[deliverable/linux.git] / net / ipv6 / reassembly.c
1 /*
2 * IPv6 fragment reassembly
3 * Linux INET6 implementation
4 *
5 * Authors:
6 * Pedro Roque <roque@di.fc.ul.pt>
7 *
8 * Based on: net/ipv4/ip_fragment.c
9 *
10 * This program is free software; you can redistribute it and/or
11 * modify it under the terms of the GNU General Public License
12 * as published by the Free Software Foundation; either version
13 * 2 of the License, or (at your option) any later version.
14 */
15
16 /*
17 * Fixes:
18 * Andi Kleen Make it work with multiple hosts.
19 * More RFC compliance.
20 *
21 * Horst von Brand Add missing #include <linux/string.h>
22 * Alexey Kuznetsov SMP races, threading, cleanup.
23 * Patrick McHardy LRU queue of frag heads for evictor.
24 * Mitsuru KANDA @USAGI Register inet6_protocol{}.
25 * David Stevens and
26 * YOSHIFUJI,H. @USAGI Always remove fragment header to
27 * calculate ICV correctly.
28 */
29
30 #define pr_fmt(fmt) "IPv6: " fmt
31
32 #include <linux/errno.h>
33 #include <linux/types.h>
34 #include <linux/string.h>
35 #include <linux/socket.h>
36 #include <linux/sockios.h>
37 #include <linux/jiffies.h>
38 #include <linux/net.h>
39 #include <linux/list.h>
40 #include <linux/netdevice.h>
41 #include <linux/in6.h>
42 #include <linux/ipv6.h>
43 #include <linux/icmpv6.h>
44 #include <linux/random.h>
45 #include <linux/jhash.h>
46 #include <linux/skbuff.h>
47 #include <linux/slab.h>
48 #include <linux/export.h>
49
50 #include <net/sock.h>
51 #include <net/snmp.h>
52
53 #include <net/ipv6.h>
54 #include <net/ip6_route.h>
55 #include <net/protocol.h>
56 #include <net/transp_v6.h>
57 #include <net/rawv6.h>
58 #include <net/ndisc.h>
59 #include <net/addrconf.h>
60 #include <net/inet_frag.h>
61 #include <net/inet_ecn.h>
62
63 static const char ip6_frag_cache_name[] = "ip6-frags";
64
65 struct ip6frag_skb_cb
66 {
67 struct inet6_skb_parm h;
68 int offset;
69 };
70
71 #define FRAG6_CB(skb) ((struct ip6frag_skb_cb*)((skb)->cb))
72
73 static inline u8 ip6_frag_ecn(const struct ipv6hdr *ipv6h)
74 {
75 return 1 << (ipv6_get_dsfield(ipv6h) & INET_ECN_MASK);
76 }
77
78 static struct inet_frags ip6_frags;
79
80 static int ip6_frag_reasm(struct frag_queue *fq, struct sk_buff *prev,
81 struct net_device *dev);
82
83 /*
84 * callers should be careful not to use the hash value outside the ipfrag_lock
85 * as doing so could race with ipfrag_hash_rnd being recalculated.
86 */
87 static unsigned int inet6_hash_frag(__be32 id, const struct in6_addr *saddr,
88 const struct in6_addr *daddr)
89 {
90 net_get_random_once(&ip6_frags.rnd, sizeof(ip6_frags.rnd));
91 return jhash_3words(ipv6_addr_hash(saddr), ipv6_addr_hash(daddr),
92 (__force u32)id, ip6_frags.rnd);
93 }
94
95 static unsigned int ip6_hashfn(const struct inet_frag_queue *q)
96 {
97 const struct frag_queue *fq;
98
99 fq = container_of(q, struct frag_queue, q);
100 return inet6_hash_frag(fq->id, &fq->saddr, &fq->daddr);
101 }
102
103 bool ip6_frag_match(const struct inet_frag_queue *q, const void *a)
104 {
105 const struct frag_queue *fq;
106 const struct ip6_create_arg *arg = a;
107
108 fq = container_of(q, struct frag_queue, q);
109 return fq->id == arg->id &&
110 fq->user == arg->user &&
111 ipv6_addr_equal(&fq->saddr, arg->src) &&
112 ipv6_addr_equal(&fq->daddr, arg->dst);
113 }
114 EXPORT_SYMBOL(ip6_frag_match);
115
116 void ip6_frag_init(struct inet_frag_queue *q, const void *a)
117 {
118 struct frag_queue *fq = container_of(q, struct frag_queue, q);
119 const struct ip6_create_arg *arg = a;
120
121 fq->id = arg->id;
122 fq->user = arg->user;
123 fq->saddr = *arg->src;
124 fq->daddr = *arg->dst;
125 fq->ecn = arg->ecn;
126 }
127 EXPORT_SYMBOL(ip6_frag_init);
128
129 void ip6_expire_frag_queue(struct net *net, struct frag_queue *fq,
130 struct inet_frags *frags)
131 {
132 struct net_device *dev = NULL;
133
134 spin_lock(&fq->q.lock);
135
136 if (fq->q.flags & INET_FRAG_COMPLETE)
137 goto out;
138
139 inet_frag_kill(&fq->q, frags);
140
141 rcu_read_lock();
142 dev = dev_get_by_index_rcu(net, fq->iif);
143 if (!dev)
144 goto out_rcu_unlock;
145
146 IP6_INC_STATS_BH(net, __in6_dev_get(dev), IPSTATS_MIB_REASMFAILS);
147
148 if (fq->q.flags & INET_FRAG_EVICTED)
149 goto out_rcu_unlock;
150
151 IP6_INC_STATS_BH(net, __in6_dev_get(dev), IPSTATS_MIB_REASMTIMEOUT);
152
153 /* Don't send error if the first segment did not arrive. */
154 if (!(fq->q.flags & INET_FRAG_FIRST_IN) || !fq->q.fragments)
155 goto out_rcu_unlock;
156
157 /* But use as source device on which LAST ARRIVED
158 * segment was received. And do not use fq->dev
159 * pointer directly, device might already disappeared.
160 */
161 fq->q.fragments->dev = dev;
162 icmpv6_send(fq->q.fragments, ICMPV6_TIME_EXCEED, ICMPV6_EXC_FRAGTIME, 0);
163 out_rcu_unlock:
164 rcu_read_unlock();
165 out:
166 spin_unlock(&fq->q.lock);
167 inet_frag_put(&fq->q, frags);
168 }
169 EXPORT_SYMBOL(ip6_expire_frag_queue);
170
171 static void ip6_frag_expire(unsigned long data)
172 {
173 struct frag_queue *fq;
174 struct net *net;
175
176 fq = container_of((struct inet_frag_queue *)data, struct frag_queue, q);
177 net = container_of(fq->q.net, struct net, ipv6.frags);
178
179 ip6_expire_frag_queue(net, fq, &ip6_frags);
180 }
181
182 static __inline__ struct frag_queue *
183 fq_find(struct net *net, __be32 id, const struct in6_addr *src,
184 const struct in6_addr *dst, u8 ecn)
185 {
186 struct inet_frag_queue *q;
187 struct ip6_create_arg arg;
188 unsigned int hash;
189
190 arg.id = id;
191 arg.user = IP6_DEFRAG_LOCAL_DELIVER;
192 arg.src = src;
193 arg.dst = dst;
194 arg.ecn = ecn;
195
196 hash = inet6_hash_frag(id, src, dst);
197
198 q = inet_frag_find(&net->ipv6.frags, &ip6_frags, &arg, hash);
199 if (IS_ERR_OR_NULL(q)) {
200 inet_frag_maybe_warn_overflow(q, pr_fmt());
201 return NULL;
202 }
203 return container_of(q, struct frag_queue, q);
204 }
205
206 static int ip6_frag_queue(struct frag_queue *fq, struct sk_buff *skb,
207 struct frag_hdr *fhdr, int nhoff)
208 {
209 struct sk_buff *prev, *next;
210 struct net_device *dev;
211 int offset, end;
212 struct net *net = dev_net(skb_dst(skb)->dev);
213 u8 ecn;
214
215 if (fq->q.flags & INET_FRAG_COMPLETE)
216 goto err;
217
218 offset = ntohs(fhdr->frag_off) & ~0x7;
219 end = offset + (ntohs(ipv6_hdr(skb)->payload_len) -
220 ((u8 *)(fhdr + 1) - (u8 *)(ipv6_hdr(skb) + 1)));
221
222 if ((unsigned int)end > IPV6_MAXPLEN) {
223 IP6_INC_STATS_BH(net, ip6_dst_idev(skb_dst(skb)),
224 IPSTATS_MIB_INHDRERRORS);
225 icmpv6_param_prob(skb, ICMPV6_HDR_FIELD,
226 ((u8 *)&fhdr->frag_off -
227 skb_network_header(skb)));
228 return -1;
229 }
230
231 ecn = ip6_frag_ecn(ipv6_hdr(skb));
232
233 if (skb->ip_summed == CHECKSUM_COMPLETE) {
234 const unsigned char *nh = skb_network_header(skb);
235 skb->csum = csum_sub(skb->csum,
236 csum_partial(nh, (u8 *)(fhdr + 1) - nh,
237 0));
238 }
239
240 /* Is this the final fragment? */
241 if (!(fhdr->frag_off & htons(IP6_MF))) {
242 /* If we already have some bits beyond end
243 * or have different end, the segment is corrupted.
244 */
245 if (end < fq->q.len ||
246 ((fq->q.flags & INET_FRAG_LAST_IN) && end != fq->q.len))
247 goto err;
248 fq->q.flags |= INET_FRAG_LAST_IN;
249 fq->q.len = end;
250 } else {
251 /* Check if the fragment is rounded to 8 bytes.
252 * Required by the RFC.
253 */
254 if (end & 0x7) {
255 /* RFC2460 says always send parameter problem in
256 * this case. -DaveM
257 */
258 IP6_INC_STATS_BH(net, ip6_dst_idev(skb_dst(skb)),
259 IPSTATS_MIB_INHDRERRORS);
260 icmpv6_param_prob(skb, ICMPV6_HDR_FIELD,
261 offsetof(struct ipv6hdr, payload_len));
262 return -1;
263 }
264 if (end > fq->q.len) {
265 /* Some bits beyond end -> corruption. */
266 if (fq->q.flags & INET_FRAG_LAST_IN)
267 goto err;
268 fq->q.len = end;
269 }
270 }
271
272 if (end == offset)
273 goto err;
274
275 /* Point into the IP datagram 'data' part. */
276 if (!pskb_pull(skb, (u8 *) (fhdr + 1) - skb->data))
277 goto err;
278
279 if (pskb_trim_rcsum(skb, end - offset))
280 goto err;
281
282 /* Find out which fragments are in front and at the back of us
283 * in the chain of fragments so far. We must know where to put
284 * this fragment, right?
285 */
286 prev = fq->q.fragments_tail;
287 if (!prev || FRAG6_CB(prev)->offset < offset) {
288 next = NULL;
289 goto found;
290 }
291 prev = NULL;
292 for(next = fq->q.fragments; next != NULL; next = next->next) {
293 if (FRAG6_CB(next)->offset >= offset)
294 break; /* bingo! */
295 prev = next;
296 }
297
298 found:
299 /* RFC5722, Section 4, amended by Errata ID : 3089
300 * When reassembling an IPv6 datagram, if
301 * one or more its constituent fragments is determined to be an
302 * overlapping fragment, the entire datagram (and any constituent
303 * fragments) MUST be silently discarded.
304 */
305
306 /* Check for overlap with preceding fragment. */
307 if (prev &&
308 (FRAG6_CB(prev)->offset + prev->len) > offset)
309 goto discard_fq;
310
311 /* Look for overlap with succeeding segment. */
312 if (next && FRAG6_CB(next)->offset < end)
313 goto discard_fq;
314
315 FRAG6_CB(skb)->offset = offset;
316
317 /* Insert this fragment in the chain of fragments. */
318 skb->next = next;
319 if (!next)
320 fq->q.fragments_tail = skb;
321 if (prev)
322 prev->next = skb;
323 else
324 fq->q.fragments = skb;
325
326 dev = skb->dev;
327 if (dev) {
328 fq->iif = dev->ifindex;
329 skb->dev = NULL;
330 }
331 fq->q.stamp = skb->tstamp;
332 fq->q.meat += skb->len;
333 fq->ecn |= ecn;
334 add_frag_mem_limit(&fq->q, skb->truesize);
335
336 /* The first fragment.
337 * nhoffset is obtained from the first fragment, of course.
338 */
339 if (offset == 0) {
340 fq->nhoffset = nhoff;
341 fq->q.flags |= INET_FRAG_FIRST_IN;
342 }
343
344 if (fq->q.flags == (INET_FRAG_FIRST_IN | INET_FRAG_LAST_IN) &&
345 fq->q.meat == fq->q.len) {
346 int res;
347 unsigned long orefdst = skb->_skb_refdst;
348
349 skb->_skb_refdst = 0UL;
350 res = ip6_frag_reasm(fq, prev, dev);
351 skb->_skb_refdst = orefdst;
352 return res;
353 }
354
355 skb_dst_drop(skb);
356 return -1;
357
358 discard_fq:
359 inet_frag_kill(&fq->q, &ip6_frags);
360 err:
361 IP6_INC_STATS_BH(net, ip6_dst_idev(skb_dst(skb)),
362 IPSTATS_MIB_REASMFAILS);
363 kfree_skb(skb);
364 return -1;
365 }
366
367 /*
368 * Check if this packet is complete.
369 * Returns NULL on failure by any reason, and pointer
370 * to current nexthdr field in reassembled frame.
371 *
372 * It is called with locked fq, and caller must check that
373 * queue is eligible for reassembly i.e. it is not COMPLETE,
374 * the last and the first frames arrived and all the bits are here.
375 */
376 static int ip6_frag_reasm(struct frag_queue *fq, struct sk_buff *prev,
377 struct net_device *dev)
378 {
379 struct net *net = container_of(fq->q.net, struct net, ipv6.frags);
380 struct sk_buff *fp, *head = fq->q.fragments;
381 int payload_len;
382 unsigned int nhoff;
383 int sum_truesize;
384 u8 ecn;
385
386 inet_frag_kill(&fq->q, &ip6_frags);
387
388 ecn = ip_frag_ecn_table[fq->ecn];
389 if (unlikely(ecn == 0xff))
390 goto out_fail;
391
392 /* Make the one we just received the head. */
393 if (prev) {
394 head = prev->next;
395 fp = skb_clone(head, GFP_ATOMIC);
396
397 if (!fp)
398 goto out_oom;
399
400 fp->next = head->next;
401 if (!fp->next)
402 fq->q.fragments_tail = fp;
403 prev->next = fp;
404
405 skb_morph(head, fq->q.fragments);
406 head->next = fq->q.fragments->next;
407
408 consume_skb(fq->q.fragments);
409 fq->q.fragments = head;
410 }
411
412 WARN_ON(head == NULL);
413 WARN_ON(FRAG6_CB(head)->offset != 0);
414
415 /* Unfragmented part is taken from the first segment. */
416 payload_len = ((head->data - skb_network_header(head)) -
417 sizeof(struct ipv6hdr) + fq->q.len -
418 sizeof(struct frag_hdr));
419 if (payload_len > IPV6_MAXPLEN)
420 goto out_oversize;
421
422 /* Head of list must not be cloned. */
423 if (skb_unclone(head, GFP_ATOMIC))
424 goto out_oom;
425
426 /* If the first fragment is fragmented itself, we split
427 * it to two chunks: the first with data and paged part
428 * and the second, holding only fragments. */
429 if (skb_has_frag_list(head)) {
430 struct sk_buff *clone;
431 int i, plen = 0;
432
433 if ((clone = alloc_skb(0, GFP_ATOMIC)) == NULL)
434 goto out_oom;
435 clone->next = head->next;
436 head->next = clone;
437 skb_shinfo(clone)->frag_list = skb_shinfo(head)->frag_list;
438 skb_frag_list_init(head);
439 for (i = 0; i < skb_shinfo(head)->nr_frags; i++)
440 plen += skb_frag_size(&skb_shinfo(head)->frags[i]);
441 clone->len = clone->data_len = head->data_len - plen;
442 head->data_len -= clone->len;
443 head->len -= clone->len;
444 clone->csum = 0;
445 clone->ip_summed = head->ip_summed;
446 add_frag_mem_limit(&fq->q, clone->truesize);
447 }
448
449 /* We have to remove fragment header from datagram and to relocate
450 * header in order to calculate ICV correctly. */
451 nhoff = fq->nhoffset;
452 skb_network_header(head)[nhoff] = skb_transport_header(head)[0];
453 memmove(head->head + sizeof(struct frag_hdr), head->head,
454 (head->data - head->head) - sizeof(struct frag_hdr));
455 head->mac_header += sizeof(struct frag_hdr);
456 head->network_header += sizeof(struct frag_hdr);
457
458 skb_reset_transport_header(head);
459 skb_push(head, head->data - skb_network_header(head));
460
461 sum_truesize = head->truesize;
462 for (fp = head->next; fp;) {
463 bool headstolen;
464 int delta;
465 struct sk_buff *next = fp->next;
466
467 sum_truesize += fp->truesize;
468 if (head->ip_summed != fp->ip_summed)
469 head->ip_summed = CHECKSUM_NONE;
470 else if (head->ip_summed == CHECKSUM_COMPLETE)
471 head->csum = csum_add(head->csum, fp->csum);
472
473 if (skb_try_coalesce(head, fp, &headstolen, &delta)) {
474 kfree_skb_partial(fp, headstolen);
475 } else {
476 if (!skb_shinfo(head)->frag_list)
477 skb_shinfo(head)->frag_list = fp;
478 head->data_len += fp->len;
479 head->len += fp->len;
480 head->truesize += fp->truesize;
481 }
482 fp = next;
483 }
484 sub_frag_mem_limit(&fq->q, sum_truesize);
485
486 head->next = NULL;
487 head->dev = dev;
488 head->tstamp = fq->q.stamp;
489 ipv6_hdr(head)->payload_len = htons(payload_len);
490 ipv6_change_dsfield(ipv6_hdr(head), 0xff, ecn);
491 IP6CB(head)->nhoff = nhoff;
492 IP6CB(head)->flags |= IP6SKB_FRAGMENTED;
493
494 /* Yes, and fold redundant checksum back. 8) */
495 if (head->ip_summed == CHECKSUM_COMPLETE)
496 head->csum = csum_partial(skb_network_header(head),
497 skb_network_header_len(head),
498 head->csum);
499
500 rcu_read_lock();
501 IP6_INC_STATS_BH(net, __in6_dev_get(dev), IPSTATS_MIB_REASMOKS);
502 rcu_read_unlock();
503 fq->q.fragments = NULL;
504 fq->q.fragments_tail = NULL;
505 return 1;
506
507 out_oversize:
508 net_dbg_ratelimited("ip6_frag_reasm: payload len = %d\n", payload_len);
509 goto out_fail;
510 out_oom:
511 net_dbg_ratelimited("ip6_frag_reasm: no memory for reassembly\n");
512 out_fail:
513 rcu_read_lock();
514 IP6_INC_STATS_BH(net, __in6_dev_get(dev), IPSTATS_MIB_REASMFAILS);
515 rcu_read_unlock();
516 return -1;
517 }
518
519 static int ipv6_frag_rcv(struct sk_buff *skb)
520 {
521 struct frag_hdr *fhdr;
522 struct frag_queue *fq;
523 const struct ipv6hdr *hdr = ipv6_hdr(skb);
524 struct net *net = dev_net(skb_dst(skb)->dev);
525
526 if (IP6CB(skb)->flags & IP6SKB_FRAGMENTED)
527 goto fail_hdr;
528
529 IP6_INC_STATS_BH(net, ip6_dst_idev(skb_dst(skb)), IPSTATS_MIB_REASMREQDS);
530
531 /* Jumbo payload inhibits frag. header */
532 if (hdr->payload_len==0)
533 goto fail_hdr;
534
535 if (!pskb_may_pull(skb, (skb_transport_offset(skb) +
536 sizeof(struct frag_hdr))))
537 goto fail_hdr;
538
539 hdr = ipv6_hdr(skb);
540 fhdr = (struct frag_hdr *)skb_transport_header(skb);
541
542 if (!(fhdr->frag_off & htons(0xFFF9))) {
543 /* It is not a fragmented frame */
544 skb->transport_header += sizeof(struct frag_hdr);
545 IP6_INC_STATS_BH(net,
546 ip6_dst_idev(skb_dst(skb)), IPSTATS_MIB_REASMOKS);
547
548 IP6CB(skb)->nhoff = (u8 *)fhdr - skb_network_header(skb);
549 IP6CB(skb)->flags |= IP6SKB_FRAGMENTED;
550 return 1;
551 }
552
553 fq = fq_find(net, fhdr->identification, &hdr->saddr, &hdr->daddr,
554 ip6_frag_ecn(hdr));
555 if (fq != NULL) {
556 int ret;
557
558 spin_lock(&fq->q.lock);
559
560 ret = ip6_frag_queue(fq, skb, fhdr, IP6CB(skb)->nhoff);
561
562 spin_unlock(&fq->q.lock);
563 inet_frag_put(&fq->q, &ip6_frags);
564 return ret;
565 }
566
567 IP6_INC_STATS_BH(net, ip6_dst_idev(skb_dst(skb)), IPSTATS_MIB_REASMFAILS);
568 kfree_skb(skb);
569 return -1;
570
571 fail_hdr:
572 IP6_INC_STATS_BH(net, ip6_dst_idev(skb_dst(skb)),
573 IPSTATS_MIB_INHDRERRORS);
574 icmpv6_param_prob(skb, ICMPV6_HDR_FIELD, skb_network_header_len(skb));
575 return -1;
576 }
577
578 static const struct inet6_protocol frag_protocol =
579 {
580 .handler = ipv6_frag_rcv,
581 .flags = INET6_PROTO_NOPOLICY,
582 };
583
584 #ifdef CONFIG_SYSCTL
585 static int zero;
586
587 static struct ctl_table ip6_frags_ns_ctl_table[] = {
588 {
589 .procname = "ip6frag_high_thresh",
590 .data = &init_net.ipv6.frags.high_thresh,
591 .maxlen = sizeof(int),
592 .mode = 0644,
593 .proc_handler = proc_dointvec_minmax,
594 .extra1 = &init_net.ipv6.frags.low_thresh
595 },
596 {
597 .procname = "ip6frag_low_thresh",
598 .data = &init_net.ipv6.frags.low_thresh,
599 .maxlen = sizeof(int),
600 .mode = 0644,
601 .proc_handler = proc_dointvec_minmax,
602 .extra1 = &zero,
603 .extra2 = &init_net.ipv6.frags.high_thresh
604 },
605 {
606 .procname = "ip6frag_time",
607 .data = &init_net.ipv6.frags.timeout,
608 .maxlen = sizeof(int),
609 .mode = 0644,
610 .proc_handler = proc_dointvec_jiffies,
611 },
612 { }
613 };
614
615 /* secret interval has been deprecated */
616 static int ip6_frags_secret_interval_unused;
617 static struct ctl_table ip6_frags_ctl_table[] = {
618 {
619 .procname = "ip6frag_secret_interval",
620 .data = &ip6_frags_secret_interval_unused,
621 .maxlen = sizeof(int),
622 .mode = 0644,
623 .proc_handler = proc_dointvec_jiffies,
624 },
625 { }
626 };
627
628 static int __net_init ip6_frags_ns_sysctl_register(struct net *net)
629 {
630 struct ctl_table *table;
631 struct ctl_table_header *hdr;
632
633 table = ip6_frags_ns_ctl_table;
634 if (!net_eq(net, &init_net)) {
635 table = kmemdup(table, sizeof(ip6_frags_ns_ctl_table), GFP_KERNEL);
636 if (table == NULL)
637 goto err_alloc;
638
639 table[0].data = &net->ipv6.frags.high_thresh;
640 table[0].extra1 = &net->ipv6.frags.low_thresh;
641 table[0].extra2 = &init_net.ipv6.frags.high_thresh;
642 table[1].data = &net->ipv6.frags.low_thresh;
643 table[1].extra2 = &net->ipv6.frags.high_thresh;
644 table[2].data = &net->ipv6.frags.timeout;
645
646 /* Don't export sysctls to unprivileged users */
647 if (net->user_ns != &init_user_ns)
648 table[0].procname = NULL;
649 }
650
651 hdr = register_net_sysctl(net, "net/ipv6", table);
652 if (hdr == NULL)
653 goto err_reg;
654
655 net->ipv6.sysctl.frags_hdr = hdr;
656 return 0;
657
658 err_reg:
659 if (!net_eq(net, &init_net))
660 kfree(table);
661 err_alloc:
662 return -ENOMEM;
663 }
664
665 static void __net_exit ip6_frags_ns_sysctl_unregister(struct net *net)
666 {
667 struct ctl_table *table;
668
669 table = net->ipv6.sysctl.frags_hdr->ctl_table_arg;
670 unregister_net_sysctl_table(net->ipv6.sysctl.frags_hdr);
671 if (!net_eq(net, &init_net))
672 kfree(table);
673 }
674
675 static struct ctl_table_header *ip6_ctl_header;
676
677 static int ip6_frags_sysctl_register(void)
678 {
679 ip6_ctl_header = register_net_sysctl(&init_net, "net/ipv6",
680 ip6_frags_ctl_table);
681 return ip6_ctl_header == NULL ? -ENOMEM : 0;
682 }
683
684 static void ip6_frags_sysctl_unregister(void)
685 {
686 unregister_net_sysctl_table(ip6_ctl_header);
687 }
688 #else
689 static inline int ip6_frags_ns_sysctl_register(struct net *net)
690 {
691 return 0;
692 }
693
694 static inline void ip6_frags_ns_sysctl_unregister(struct net *net)
695 {
696 }
697
698 static inline int ip6_frags_sysctl_register(void)
699 {
700 return 0;
701 }
702
703 static inline void ip6_frags_sysctl_unregister(void)
704 {
705 }
706 #endif
707
708 static int __net_init ipv6_frags_init_net(struct net *net)
709 {
710 net->ipv6.frags.high_thresh = IPV6_FRAG_HIGH_THRESH;
711 net->ipv6.frags.low_thresh = IPV6_FRAG_LOW_THRESH;
712 net->ipv6.frags.timeout = IPV6_FRAG_TIMEOUT;
713
714 inet_frags_init_net(&net->ipv6.frags);
715
716 return ip6_frags_ns_sysctl_register(net);
717 }
718
719 static void __net_exit ipv6_frags_exit_net(struct net *net)
720 {
721 ip6_frags_ns_sysctl_unregister(net);
722 inet_frags_exit_net(&net->ipv6.frags, &ip6_frags);
723 }
724
725 static struct pernet_operations ip6_frags_ops = {
726 .init = ipv6_frags_init_net,
727 .exit = ipv6_frags_exit_net,
728 };
729
730 int __init ipv6_frag_init(void)
731 {
732 int ret;
733
734 ret = inet6_add_protocol(&frag_protocol, IPPROTO_FRAGMENT);
735 if (ret)
736 goto out;
737
738 ret = ip6_frags_sysctl_register();
739 if (ret)
740 goto err_sysctl;
741
742 ret = register_pernet_subsys(&ip6_frags_ops);
743 if (ret)
744 goto err_pernet;
745
746 ip6_frags.hashfn = ip6_hashfn;
747 ip6_frags.constructor = ip6_frag_init;
748 ip6_frags.destructor = NULL;
749 ip6_frags.skb_free = NULL;
750 ip6_frags.qsize = sizeof(struct frag_queue);
751 ip6_frags.match = ip6_frag_match;
752 ip6_frags.frag_expire = ip6_frag_expire;
753 ip6_frags.frags_cache_name = ip6_frag_cache_name;
754 ret = inet_frags_init(&ip6_frags);
755 if (ret)
756 goto err_pernet;
757 out:
758 return ret;
759
760 err_pernet:
761 ip6_frags_sysctl_unregister();
762 err_sysctl:
763 inet6_del_protocol(&frag_protocol, IPPROTO_FRAGMENT);
764 goto out;
765 }
766
767 void ipv6_frag_exit(void)
768 {
769 inet_frags_fini(&ip6_frags);
770 ip6_frags_sysctl_unregister();
771 unregister_pernet_subsys(&ip6_frags_ops);
772 inet6_del_protocol(&frag_protocol, IPPROTO_FRAGMENT);
773 }
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