reassembly.c 14 KB

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  1. /* 6LoWPAN fragment reassembly
  2. *
  3. *
  4. * Authors:
  5. * Alexander Aring <aar@pengutronix.de>
  6. *
  7. * Based on: net/ipv6/reassembly.c
  8. *
  9. * This program is free software; you can redistribute it and/or
  10. * modify it under the terms of the GNU General Public License
  11. * as published by the Free Software Foundation; either version
  12. * 2 of the License, or (at your option) any later version.
  13. */
  14. #define pr_fmt(fmt) "6LoWPAN: " fmt
  15. #include <linux/net.h>
  16. #include <linux/list.h>
  17. #include <linux/netdevice.h>
  18. #include <linux/random.h>
  19. #include <linux/jhash.h>
  20. #include <linux/skbuff.h>
  21. #include <linux/slab.h>
  22. #include <linux/export.h>
  23. #include <net/ieee802154_netdev.h>
  24. #include <net/6lowpan.h>
  25. #include <net/ipv6.h>
  26. #include <net/inet_frag.h>
  27. #include "reassembly.h"
  28. struct lowpan_frag_info {
  29. __be16 d_tag;
  30. u16 d_size;
  31. u8 d_offset;
  32. };
  33. static struct lowpan_frag_info *lowpan_cb(struct sk_buff *skb)
  34. {
  35. return (struct lowpan_frag_info *)skb->cb;
  36. }
  37. static struct inet_frags lowpan_frags;
  38. static int lowpan_frag_reasm(struct lowpan_frag_queue *fq,
  39. struct sk_buff *prev, struct net_device *dev);
  40. static unsigned int lowpan_hash_frag(__be16 tag, u16 d_size,
  41. const struct ieee802154_addr *saddr,
  42. const struct ieee802154_addr *daddr)
  43. {
  44. u32 c;
  45. net_get_random_once(&lowpan_frags.rnd, sizeof(lowpan_frags.rnd));
  46. c = jhash_3words(ieee802154_addr_hash(saddr),
  47. ieee802154_addr_hash(daddr),
  48. (__force u32)(tag + (d_size << 16)),
  49. lowpan_frags.rnd);
  50. return c & (INETFRAGS_HASHSZ - 1);
  51. }
  52. static unsigned int lowpan_hashfn(struct inet_frag_queue *q)
  53. {
  54. struct lowpan_frag_queue *fq;
  55. fq = container_of(q, struct lowpan_frag_queue, q);
  56. return lowpan_hash_frag(fq->tag, fq->d_size, &fq->saddr, &fq->daddr);
  57. }
  58. static bool lowpan_frag_match(struct inet_frag_queue *q, void *a)
  59. {
  60. struct lowpan_frag_queue *fq;
  61. struct lowpan_create_arg *arg = a;
  62. fq = container_of(q, struct lowpan_frag_queue, q);
  63. return fq->tag == arg->tag && fq->d_size == arg->d_size &&
  64. ieee802154_addr_equal(&fq->saddr, arg->src) &&
  65. ieee802154_addr_equal(&fq->daddr, arg->dst);
  66. }
  67. static void lowpan_frag_init(struct inet_frag_queue *q, void *a)
  68. {
  69. struct lowpan_frag_queue *fq;
  70. struct lowpan_create_arg *arg = a;
  71. fq = container_of(q, struct lowpan_frag_queue, q);
  72. fq->tag = arg->tag;
  73. fq->d_size = arg->d_size;
  74. fq->saddr = *arg->src;
  75. fq->daddr = *arg->dst;
  76. }
  77. static void lowpan_frag_expire(unsigned long data)
  78. {
  79. struct frag_queue *fq;
  80. struct net *net;
  81. fq = container_of((struct inet_frag_queue *)data, struct frag_queue, q);
  82. net = container_of(fq->q.net, struct net, ieee802154_lowpan.frags);
  83. spin_lock(&fq->q.lock);
  84. if (fq->q.last_in & INET_FRAG_COMPLETE)
  85. goto out;
  86. inet_frag_kill(&fq->q, &lowpan_frags);
  87. out:
  88. spin_unlock(&fq->q.lock);
  89. inet_frag_put(&fq->q, &lowpan_frags);
  90. }
  91. static inline struct lowpan_frag_queue *
  92. fq_find(struct net *net, const struct lowpan_frag_info *frag_info,
  93. const struct ieee802154_addr *src,
  94. const struct ieee802154_addr *dst)
  95. {
  96. struct inet_frag_queue *q;
  97. struct lowpan_create_arg arg;
  98. unsigned int hash;
  99. struct netns_ieee802154_lowpan *ieee802154_lowpan =
  100. net_ieee802154_lowpan(net);
  101. arg.tag = frag_info->d_tag;
  102. arg.d_size = frag_info->d_size;
  103. arg.src = src;
  104. arg.dst = dst;
  105. read_lock(&lowpan_frags.lock);
  106. hash = lowpan_hash_frag(frag_info->d_tag, frag_info->d_size, src, dst);
  107. q = inet_frag_find(&ieee802154_lowpan->frags,
  108. &lowpan_frags, &arg, hash);
  109. if (IS_ERR_OR_NULL(q)) {
  110. inet_frag_maybe_warn_overflow(q, pr_fmt());
  111. return NULL;
  112. }
  113. return container_of(q, struct lowpan_frag_queue, q);
  114. }
  115. static int lowpan_frag_queue(struct lowpan_frag_queue *fq,
  116. struct sk_buff *skb, const u8 frag_type)
  117. {
  118. struct sk_buff *prev, *next;
  119. struct net_device *dev;
  120. int end, offset;
  121. if (fq->q.last_in & INET_FRAG_COMPLETE)
  122. goto err;
  123. offset = lowpan_cb(skb)->d_offset << 3;
  124. end = lowpan_cb(skb)->d_size;
  125. /* Is this the final fragment? */
  126. if (offset + skb->len == end) {
  127. /* If we already have some bits beyond end
  128. * or have different end, the segment is corrupted.
  129. */
  130. if (end < fq->q.len ||
  131. ((fq->q.last_in & INET_FRAG_LAST_IN) && end != fq->q.len))
  132. goto err;
  133. fq->q.last_in |= INET_FRAG_LAST_IN;
  134. fq->q.len = end;
  135. } else {
  136. if (end > fq->q.len) {
  137. /* Some bits beyond end -> corruption. */
  138. if (fq->q.last_in & INET_FRAG_LAST_IN)
  139. goto err;
  140. fq->q.len = end;
  141. }
  142. }
  143. /* Find out which fragments are in front and at the back of us
  144. * in the chain of fragments so far. We must know where to put
  145. * this fragment, right?
  146. */
  147. prev = fq->q.fragments_tail;
  148. if (!prev || lowpan_cb(prev)->d_offset < lowpan_cb(skb)->d_offset) {
  149. next = NULL;
  150. goto found;
  151. }
  152. prev = NULL;
  153. for (next = fq->q.fragments; next != NULL; next = next->next) {
  154. if (lowpan_cb(next)->d_offset >= lowpan_cb(skb)->d_offset)
  155. break; /* bingo! */
  156. prev = next;
  157. }
  158. found:
  159. /* Insert this fragment in the chain of fragments. */
  160. skb->next = next;
  161. if (!next)
  162. fq->q.fragments_tail = skb;
  163. if (prev)
  164. prev->next = skb;
  165. else
  166. fq->q.fragments = skb;
  167. dev = skb->dev;
  168. if (dev)
  169. skb->dev = NULL;
  170. fq->q.stamp = skb->tstamp;
  171. if (frag_type == LOWPAN_DISPATCH_FRAG1) {
  172. /* Calculate uncomp. 6lowpan header to estimate full size */
  173. fq->q.meat += lowpan_uncompress_size(skb, NULL);
  174. fq->q.last_in |= INET_FRAG_FIRST_IN;
  175. } else {
  176. fq->q.meat += skb->len;
  177. }
  178. add_frag_mem_limit(&fq->q, skb->truesize);
  179. if (fq->q.last_in == (INET_FRAG_FIRST_IN | INET_FRAG_LAST_IN) &&
  180. fq->q.meat == fq->q.len) {
  181. int res;
  182. unsigned long orefdst = skb->_skb_refdst;
  183. skb->_skb_refdst = 0UL;
  184. res = lowpan_frag_reasm(fq, prev, dev);
  185. skb->_skb_refdst = orefdst;
  186. return res;
  187. }
  188. inet_frag_lru_move(&fq->q);
  189. return -1;
  190. err:
  191. kfree_skb(skb);
  192. return -1;
  193. }
  194. /* Check if this packet is complete.
  195. * Returns NULL on failure by any reason, and pointer
  196. * to current nexthdr field in reassembled frame.
  197. *
  198. * It is called with locked fq, and caller must check that
  199. * queue is eligible for reassembly i.e. it is not COMPLETE,
  200. * the last and the first frames arrived and all the bits are here.
  201. */
  202. static int lowpan_frag_reasm(struct lowpan_frag_queue *fq, struct sk_buff *prev,
  203. struct net_device *dev)
  204. {
  205. struct sk_buff *fp, *head = fq->q.fragments;
  206. int sum_truesize;
  207. inet_frag_kill(&fq->q, &lowpan_frags);
  208. /* Make the one we just received the head. */
  209. if (prev) {
  210. head = prev->next;
  211. fp = skb_clone(head, GFP_ATOMIC);
  212. if (!fp)
  213. goto out_oom;
  214. fp->next = head->next;
  215. if (!fp->next)
  216. fq->q.fragments_tail = fp;
  217. prev->next = fp;
  218. skb_morph(head, fq->q.fragments);
  219. head->next = fq->q.fragments->next;
  220. consume_skb(fq->q.fragments);
  221. fq->q.fragments = head;
  222. }
  223. /* Head of list must not be cloned. */
  224. if (skb_unclone(head, GFP_ATOMIC))
  225. goto out_oom;
  226. /* If the first fragment is fragmented itself, we split
  227. * it to two chunks: the first with data and paged part
  228. * and the second, holding only fragments.
  229. */
  230. if (skb_has_frag_list(head)) {
  231. struct sk_buff *clone;
  232. int i, plen = 0;
  233. clone = alloc_skb(0, GFP_ATOMIC);
  234. if (!clone)
  235. goto out_oom;
  236. clone->next = head->next;
  237. head->next = clone;
  238. skb_shinfo(clone)->frag_list = skb_shinfo(head)->frag_list;
  239. skb_frag_list_init(head);
  240. for (i = 0; i < skb_shinfo(head)->nr_frags; i++)
  241. plen += skb_frag_size(&skb_shinfo(head)->frags[i]);
  242. clone->len = head->data_len - plen;
  243. clone->data_len = clone->len;
  244. head->data_len -= clone->len;
  245. head->len -= clone->len;
  246. add_frag_mem_limit(&fq->q, clone->truesize);
  247. }
  248. WARN_ON(head == NULL);
  249. sum_truesize = head->truesize;
  250. for (fp = head->next; fp;) {
  251. bool headstolen;
  252. int delta;
  253. struct sk_buff *next = fp->next;
  254. sum_truesize += fp->truesize;
  255. if (skb_try_coalesce(head, fp, &headstolen, &delta)) {
  256. kfree_skb_partial(fp, headstolen);
  257. } else {
  258. if (!skb_shinfo(head)->frag_list)
  259. skb_shinfo(head)->frag_list = fp;
  260. head->data_len += fp->len;
  261. head->len += fp->len;
  262. head->truesize += fp->truesize;
  263. }
  264. fp = next;
  265. }
  266. sub_frag_mem_limit(&fq->q, sum_truesize);
  267. head->next = NULL;
  268. head->dev = dev;
  269. head->tstamp = fq->q.stamp;
  270. fq->q.fragments = NULL;
  271. fq->q.fragments_tail = NULL;
  272. return 1;
  273. out_oom:
  274. net_dbg_ratelimited("lowpan_frag_reasm: no memory for reassembly\n");
  275. return -1;
  276. }
  277. static int lowpan_get_frag_info(struct sk_buff *skb, const u8 frag_type,
  278. struct lowpan_frag_info *frag_info)
  279. {
  280. bool fail;
  281. u8 pattern = 0, low = 0;
  282. fail = lowpan_fetch_skb(skb, &pattern, 1);
  283. fail |= lowpan_fetch_skb(skb, &low, 1);
  284. frag_info->d_size = (pattern & 7) << 8 | low;
  285. fail |= lowpan_fetch_skb(skb, &frag_info->d_tag, 2);
  286. if (frag_type == LOWPAN_DISPATCH_FRAGN) {
  287. fail |= lowpan_fetch_skb(skb, &frag_info->d_offset, 1);
  288. } else {
  289. skb_reset_network_header(skb);
  290. frag_info->d_offset = 0;
  291. }
  292. if (unlikely(fail))
  293. return -EIO;
  294. return 0;
  295. }
  296. int lowpan_frag_rcv(struct sk_buff *skb, const u8 frag_type)
  297. {
  298. struct lowpan_frag_queue *fq;
  299. struct net *net = dev_net(skb->dev);
  300. struct lowpan_frag_info *frag_info = lowpan_cb(skb);
  301. struct ieee802154_addr source, dest;
  302. struct netns_ieee802154_lowpan *ieee802154_lowpan =
  303. net_ieee802154_lowpan(net);
  304. int err;
  305. source = mac_cb(skb)->source;
  306. dest = mac_cb(skb)->dest;
  307. err = lowpan_get_frag_info(skb, frag_type, frag_info);
  308. if (err < 0)
  309. goto err;
  310. if (frag_info->d_size > ieee802154_lowpan->max_dsize)
  311. goto err;
  312. inet_frag_evictor(&ieee802154_lowpan->frags, &lowpan_frags, false);
  313. fq = fq_find(net, frag_info, &source, &dest);
  314. if (fq != NULL) {
  315. int ret;
  316. spin_lock(&fq->q.lock);
  317. ret = lowpan_frag_queue(fq, skb, frag_type);
  318. spin_unlock(&fq->q.lock);
  319. inet_frag_put(&fq->q, &lowpan_frags);
  320. return ret;
  321. }
  322. err:
  323. kfree_skb(skb);
  324. return -1;
  325. }
  326. EXPORT_SYMBOL(lowpan_frag_rcv);
  327. #ifdef CONFIG_SYSCTL
  328. static struct ctl_table lowpan_frags_ns_ctl_table[] = {
  329. {
  330. .procname = "6lowpanfrag_high_thresh",
  331. .data = &init_net.ieee802154_lowpan.frags.high_thresh,
  332. .maxlen = sizeof(int),
  333. .mode = 0644,
  334. .proc_handler = proc_dointvec
  335. },
  336. {
  337. .procname = "6lowpanfrag_low_thresh",
  338. .data = &init_net.ieee802154_lowpan.frags.low_thresh,
  339. .maxlen = sizeof(int),
  340. .mode = 0644,
  341. .proc_handler = proc_dointvec
  342. },
  343. {
  344. .procname = "6lowpanfrag_time",
  345. .data = &init_net.ieee802154_lowpan.frags.timeout,
  346. .maxlen = sizeof(int),
  347. .mode = 0644,
  348. .proc_handler = proc_dointvec_jiffies,
  349. },
  350. {
  351. .procname = "6lowpanfrag_max_datagram_size",
  352. .data = &init_net.ieee802154_lowpan.max_dsize,
  353. .maxlen = sizeof(int),
  354. .mode = 0644,
  355. .proc_handler = proc_dointvec
  356. },
  357. { }
  358. };
  359. static struct ctl_table lowpan_frags_ctl_table[] = {
  360. {
  361. .procname = "6lowpanfrag_secret_interval",
  362. .data = &lowpan_frags.secret_interval,
  363. .maxlen = sizeof(int),
  364. .mode = 0644,
  365. .proc_handler = proc_dointvec_jiffies,
  366. },
  367. { }
  368. };
  369. static int __net_init lowpan_frags_ns_sysctl_register(struct net *net)
  370. {
  371. struct ctl_table *table;
  372. struct ctl_table_header *hdr;
  373. struct netns_ieee802154_lowpan *ieee802154_lowpan =
  374. net_ieee802154_lowpan(net);
  375. table = lowpan_frags_ns_ctl_table;
  376. if (!net_eq(net, &init_net)) {
  377. table = kmemdup(table, sizeof(lowpan_frags_ns_ctl_table),
  378. GFP_KERNEL);
  379. if (table == NULL)
  380. goto err_alloc;
  381. table[0].data = &ieee802154_lowpan->frags.high_thresh;
  382. table[1].data = &ieee802154_lowpan->frags.low_thresh;
  383. table[2].data = &ieee802154_lowpan->frags.timeout;
  384. table[3].data = &ieee802154_lowpan->max_dsize;
  385. /* Don't export sysctls to unprivileged users */
  386. if (net->user_ns != &init_user_ns)
  387. table[0].procname = NULL;
  388. }
  389. hdr = register_net_sysctl(net, "net/ieee802154/6lowpan", table);
  390. if (hdr == NULL)
  391. goto err_reg;
  392. ieee802154_lowpan->sysctl.frags_hdr = hdr;
  393. return 0;
  394. err_reg:
  395. if (!net_eq(net, &init_net))
  396. kfree(table);
  397. err_alloc:
  398. return -ENOMEM;
  399. }
  400. static void __net_exit lowpan_frags_ns_sysctl_unregister(struct net *net)
  401. {
  402. struct ctl_table *table;
  403. struct netns_ieee802154_lowpan *ieee802154_lowpan =
  404. net_ieee802154_lowpan(net);
  405. table = ieee802154_lowpan->sysctl.frags_hdr->ctl_table_arg;
  406. unregister_net_sysctl_table(ieee802154_lowpan->sysctl.frags_hdr);
  407. if (!net_eq(net, &init_net))
  408. kfree(table);
  409. }
  410. static struct ctl_table_header *lowpan_ctl_header;
  411. static int lowpan_frags_sysctl_register(void)
  412. {
  413. lowpan_ctl_header = register_net_sysctl(&init_net,
  414. "net/ieee802154/6lowpan",
  415. lowpan_frags_ctl_table);
  416. return lowpan_ctl_header == NULL ? -ENOMEM : 0;
  417. }
  418. static void lowpan_frags_sysctl_unregister(void)
  419. {
  420. unregister_net_sysctl_table(lowpan_ctl_header);
  421. }
  422. #else
  423. static inline int lowpan_frags_ns_sysctl_register(struct net *net)
  424. {
  425. return 0;
  426. }
  427. static inline void lowpan_frags_ns_sysctl_unregister(struct net *net)
  428. {
  429. }
  430. static inline int lowpan_frags_sysctl_register(void)
  431. {
  432. return 0;
  433. }
  434. static inline void lowpan_frags_sysctl_unregister(void)
  435. {
  436. }
  437. #endif
  438. static int __net_init lowpan_frags_init_net(struct net *net)
  439. {
  440. struct netns_ieee802154_lowpan *ieee802154_lowpan =
  441. net_ieee802154_lowpan(net);
  442. ieee802154_lowpan->frags.high_thresh = IPV6_FRAG_HIGH_THRESH;
  443. ieee802154_lowpan->frags.low_thresh = IPV6_FRAG_LOW_THRESH;
  444. ieee802154_lowpan->frags.timeout = IPV6_FRAG_TIMEOUT;
  445. ieee802154_lowpan->max_dsize = 0xFFFF;
  446. inet_frags_init_net(&ieee802154_lowpan->frags);
  447. return lowpan_frags_ns_sysctl_register(net);
  448. }
  449. static void __net_exit lowpan_frags_exit_net(struct net *net)
  450. {
  451. struct netns_ieee802154_lowpan *ieee802154_lowpan =
  452. net_ieee802154_lowpan(net);
  453. lowpan_frags_ns_sysctl_unregister(net);
  454. inet_frags_exit_net(&ieee802154_lowpan->frags, &lowpan_frags);
  455. }
  456. static struct pernet_operations lowpan_frags_ops = {
  457. .init = lowpan_frags_init_net,
  458. .exit = lowpan_frags_exit_net,
  459. };
  460. int __init lowpan_net_frag_init(void)
  461. {
  462. int ret;
  463. ret = lowpan_frags_sysctl_register();
  464. if (ret)
  465. return ret;
  466. ret = register_pernet_subsys(&lowpan_frags_ops);
  467. if (ret)
  468. goto err_pernet;
  469. lowpan_frags.hashfn = lowpan_hashfn;
  470. lowpan_frags.constructor = lowpan_frag_init;
  471. lowpan_frags.destructor = NULL;
  472. lowpan_frags.skb_free = NULL;
  473. lowpan_frags.qsize = sizeof(struct frag_queue);
  474. lowpan_frags.match = lowpan_frag_match;
  475. lowpan_frags.frag_expire = lowpan_frag_expire;
  476. lowpan_frags.secret_interval = 10 * 60 * HZ;
  477. inet_frags_init(&lowpan_frags);
  478. return ret;
  479. err_pernet:
  480. lowpan_frags_sysctl_unregister();
  481. return ret;
  482. }
  483. void lowpan_net_frag_exit(void)
  484. {
  485. inet_frags_fini(&lowpan_frags);
  486. lowpan_frags_sysctl_unregister();
  487. unregister_pernet_subsys(&lowpan_frags_ops);
  488. }