ematch.c 14 KB

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  1. /*
  2. * net/sched/ematch.c Extended Match API
  3. *
  4. * This program is free software; you can redistribute it and/or
  5. * modify it under the terms of the GNU General Public License
  6. * as published by the Free Software Foundation; either version
  7. * 2 of the License, or (at your option) any later version.
  8. *
  9. * Authors: Thomas Graf <tgraf@suug.ch>
  10. *
  11. * ==========================================================================
  12. *
  13. * An extended match (ematch) is a small classification tool not worth
  14. * writing a full classifier for. Ematches can be interconnected to form
  15. * a logic expression and get attached to classifiers to extend their
  16. * functionatlity.
  17. *
  18. * The userspace part transforms the logic expressions into an array
  19. * consisting of multiple sequences of interconnected ematches separated
  20. * by markers. Precedence is implemented by a special ematch kind
  21. * referencing a sequence beyond the marker of the current sequence
  22. * causing the current position in the sequence to be pushed onto a stack
  23. * to allow the current position to be overwritten by the position referenced
  24. * in the special ematch. Matching continues in the new sequence until a
  25. * marker is reached causing the position to be restored from the stack.
  26. *
  27. * Example:
  28. * A AND (B1 OR B2) AND C AND D
  29. *
  30. * ------->-PUSH-------
  31. * -->-- / -->-- \ -->--
  32. * / \ / / \ \ / \
  33. * +-------+-------+-------+-------+-------+--------+
  34. * | A AND | B AND | C AND | D END | B1 OR | B2 END |
  35. * +-------+-------+-------+-------+-------+--------+
  36. * \ /
  37. * --------<-POP---------
  38. *
  39. * where B is a virtual ematch referencing to sequence starting with B1.
  40. *
  41. * ==========================================================================
  42. *
  43. * How to write an ematch in 60 seconds
  44. * ------------------------------------
  45. *
  46. * 1) Provide a matcher function:
  47. * static int my_match(struct sk_buff *skb, struct tcf_ematch *m,
  48. * struct tcf_pkt_info *info)
  49. * {
  50. * struct mydata *d = (struct mydata *) m->data;
  51. *
  52. * if (...matching goes here...)
  53. * return 1;
  54. * else
  55. * return 0;
  56. * }
  57. *
  58. * 2) Fill out a struct tcf_ematch_ops:
  59. * static struct tcf_ematch_ops my_ops = {
  60. * .kind = unique id,
  61. * .datalen = sizeof(struct mydata),
  62. * .match = my_match,
  63. * .owner = THIS_MODULE,
  64. * };
  65. *
  66. * 3) Register/Unregister your ematch:
  67. * static int __init init_my_ematch(void)
  68. * {
  69. * return tcf_em_register(&my_ops);
  70. * }
  71. *
  72. * static void __exit exit_my_ematch(void)
  73. * {
  74. * return tcf_em_unregister(&my_ops);
  75. * }
  76. *
  77. * module_init(init_my_ematch);
  78. * module_exit(exit_my_ematch);
  79. *
  80. * 4) By now you should have two more seconds left, barely enough to
  81. * open up a beer to watch the compilation going.
  82. */
  83. #include <linux/module.h>
  84. #include <linux/types.h>
  85. #include <linux/kernel.h>
  86. #include <linux/sched.h>
  87. #include <linux/mm.h>
  88. #include <linux/errno.h>
  89. #include <linux/interrupt.h>
  90. #include <linux/rtnetlink.h>
  91. #include <linux/skbuff.h>
  92. #include <net/pkt_cls.h>
  93. static LIST_HEAD(ematch_ops);
  94. static DEFINE_RWLOCK(ematch_mod_lock);
  95. static inline struct tcf_ematch_ops * tcf_em_lookup(u16 kind)
  96. {
  97. struct tcf_ematch_ops *e = NULL;
  98. read_lock(&ematch_mod_lock);
  99. list_for_each_entry(e, &ematch_ops, link) {
  100. if (kind == e->kind) {
  101. if (!try_module_get(e->owner))
  102. e = NULL;
  103. read_unlock(&ematch_mod_lock);
  104. return e;
  105. }
  106. }
  107. read_unlock(&ematch_mod_lock);
  108. return NULL;
  109. }
  110. /**
  111. * tcf_em_register - register an extended match
  112. *
  113. * @ops: ematch operations lookup table
  114. *
  115. * This function must be called by ematches to announce their presence.
  116. * The given @ops must have kind set to a unique identifier and the
  117. * callback match() must be implemented. All other callbacks are optional
  118. * and a fallback implementation is used instead.
  119. *
  120. * Returns -EEXISTS if an ematch of the same kind has already registered.
  121. */
  122. int tcf_em_register(struct tcf_ematch_ops *ops)
  123. {
  124. int err = -EEXIST;
  125. struct tcf_ematch_ops *e;
  126. if (ops->match == NULL)
  127. return -EINVAL;
  128. write_lock(&ematch_mod_lock);
  129. list_for_each_entry(e, &ematch_ops, link)
  130. if (ops->kind == e->kind)
  131. goto errout;
  132. list_add_tail(&ops->link, &ematch_ops);
  133. err = 0;
  134. errout:
  135. write_unlock(&ematch_mod_lock);
  136. return err;
  137. }
  138. /**
  139. * tcf_em_unregister - unregster and extended match
  140. *
  141. * @ops: ematch operations lookup table
  142. *
  143. * This function must be called by ematches to announce their disappearance
  144. * for examples when the module gets unloaded. The @ops parameter must be
  145. * the same as the one used for registration.
  146. *
  147. * Returns -ENOENT if no matching ematch was found.
  148. */
  149. int tcf_em_unregister(struct tcf_ematch_ops *ops)
  150. {
  151. int err = 0;
  152. struct tcf_ematch_ops *e;
  153. write_lock(&ematch_mod_lock);
  154. list_for_each_entry(e, &ematch_ops, link) {
  155. if (e == ops) {
  156. list_del(&e->link);
  157. goto out;
  158. }
  159. }
  160. err = -ENOENT;
  161. out:
  162. write_unlock(&ematch_mod_lock);
  163. return err;
  164. }
  165. static inline struct tcf_ematch * tcf_em_get_match(struct tcf_ematch_tree *tree,
  166. int index)
  167. {
  168. return &tree->matches[index];
  169. }
  170. static int tcf_em_validate(struct tcf_proto *tp,
  171. struct tcf_ematch_tree_hdr *tree_hdr,
  172. struct tcf_ematch *em, struct rtattr *rta, int idx)
  173. {
  174. int err = -EINVAL;
  175. struct tcf_ematch_hdr *em_hdr = RTA_DATA(rta);
  176. int data_len = RTA_PAYLOAD(rta) - sizeof(*em_hdr);
  177. void *data = (void *) em_hdr + sizeof(*em_hdr);
  178. if (!TCF_EM_REL_VALID(em_hdr->flags))
  179. goto errout;
  180. if (em_hdr->kind == TCF_EM_CONTAINER) {
  181. /* Special ematch called "container", carries an index
  182. * referencing an external ematch sequence. */
  183. u32 ref;
  184. if (data_len < sizeof(ref))
  185. goto errout;
  186. ref = *(u32 *) data;
  187. if (ref >= tree_hdr->nmatches)
  188. goto errout;
  189. /* We do not allow backward jumps to avoid loops and jumps
  190. * to our own position are of course illegal. */
  191. if (ref <= idx)
  192. goto errout;
  193. em->data = ref;
  194. } else {
  195. /* Note: This lookup will increase the module refcnt
  196. * of the ematch module referenced. In case of a failure,
  197. * a destroy function is called by the underlying layer
  198. * which automatically releases the reference again, therefore
  199. * the module MUST not be given back under any circumstances
  200. * here. Be aware, the destroy function assumes that the
  201. * module is held if the ops field is non zero. */
  202. em->ops = tcf_em_lookup(em_hdr->kind);
  203. if (em->ops == NULL) {
  204. err = -ENOENT;
  205. goto errout;
  206. }
  207. /* ematch module provides expected length of data, so we
  208. * can do a basic sanity check. */
  209. if (em->ops->datalen && data_len < em->ops->datalen)
  210. goto errout;
  211. if (em->ops->change) {
  212. err = em->ops->change(tp, data, data_len, em);
  213. if (err < 0)
  214. goto errout;
  215. } else if (data_len > 0) {
  216. /* ematch module doesn't provide an own change
  217. * procedure and expects us to allocate and copy
  218. * the ematch data.
  219. *
  220. * TCF_EM_SIMPLE may be specified stating that the
  221. * data only consists of a u32 integer and the module
  222. * does not expected a memory reference but rather
  223. * the value carried. */
  224. if (em_hdr->flags & TCF_EM_SIMPLE) {
  225. if (data_len < sizeof(u32))
  226. goto errout;
  227. em->data = *(u32 *) data;
  228. } else {
  229. void *v = kmalloc(data_len, GFP_KERNEL);
  230. if (v == NULL) {
  231. err = -ENOBUFS;
  232. goto errout;
  233. }
  234. memcpy(v, data, data_len);
  235. em->data = (unsigned long) v;
  236. }
  237. }
  238. }
  239. em->matchid = em_hdr->matchid;
  240. em->flags = em_hdr->flags;
  241. em->datalen = data_len;
  242. err = 0;
  243. errout:
  244. return err;
  245. }
  246. /**
  247. * tcf_em_tree_validate - validate ematch config TLV and build ematch tree
  248. *
  249. * @tp: classifier kind handle
  250. * @rta: ematch tree configuration TLV
  251. * @tree: destination ematch tree variable to store the resulting
  252. * ematch tree.
  253. *
  254. * This function validates the given configuration TLV @rta and builds an
  255. * ematch tree in @tree. The resulting tree must later be copied into
  256. * the private classifier data using tcf_em_tree_change(). You MUST NOT
  257. * provide the ematch tree variable of the private classifier data directly,
  258. * the changes would not be locked properly.
  259. *
  260. * Returns a negative error code if the configuration TLV contains errors.
  261. */
  262. int tcf_em_tree_validate(struct tcf_proto *tp, struct rtattr *rta,
  263. struct tcf_ematch_tree *tree)
  264. {
  265. int idx, list_len, matches_len, err = -EINVAL;
  266. struct rtattr *tb[TCA_EMATCH_TREE_MAX];
  267. struct rtattr *rt_match, *rt_hdr, *rt_list;
  268. struct tcf_ematch_tree_hdr *tree_hdr;
  269. struct tcf_ematch *em;
  270. if (!rta) {
  271. memset(tree, 0, sizeof(*tree));
  272. return 0;
  273. }
  274. if (rtattr_parse_nested(tb, TCA_EMATCH_TREE_MAX, rta) < 0)
  275. goto errout;
  276. rt_hdr = tb[TCA_EMATCH_TREE_HDR-1];
  277. rt_list = tb[TCA_EMATCH_TREE_LIST-1];
  278. if (rt_hdr == NULL || rt_list == NULL)
  279. goto errout;
  280. if (RTA_PAYLOAD(rt_hdr) < sizeof(*tree_hdr) ||
  281. RTA_PAYLOAD(rt_list) < sizeof(*rt_match))
  282. goto errout;
  283. tree_hdr = RTA_DATA(rt_hdr);
  284. memcpy(&tree->hdr, tree_hdr, sizeof(*tree_hdr));
  285. rt_match = RTA_DATA(rt_list);
  286. list_len = RTA_PAYLOAD(rt_list);
  287. matches_len = tree_hdr->nmatches * sizeof(*em);
  288. tree->matches = kmalloc(matches_len, GFP_KERNEL);
  289. if (tree->matches == NULL)
  290. goto errout;
  291. memset(tree->matches, 0, matches_len);
  292. /* We do not use rtattr_parse_nested here because the maximum
  293. * number of attributes is unknown. This saves us the allocation
  294. * for a tb buffer which would serve no purpose at all.
  295. *
  296. * The array of rt attributes is parsed in the order as they are
  297. * provided, their type must be incremental from 1 to n. Even
  298. * if it does not serve any real purpose, a failure of sticking
  299. * to this policy will result in parsing failure. */
  300. for (idx = 0; RTA_OK(rt_match, list_len); idx++) {
  301. err = -EINVAL;
  302. if (rt_match->rta_type != (idx + 1))
  303. goto errout_abort;
  304. if (idx >= tree_hdr->nmatches)
  305. goto errout_abort;
  306. if (RTA_PAYLOAD(rt_match) < sizeof(struct tcf_ematch_hdr))
  307. goto errout_abort;
  308. em = tcf_em_get_match(tree, idx);
  309. err = tcf_em_validate(tp, tree_hdr, em, rt_match, idx);
  310. if (err < 0)
  311. goto errout_abort;
  312. rt_match = RTA_NEXT(rt_match, list_len);
  313. }
  314. /* Check if the number of matches provided by userspace actually
  315. * complies with the array of matches. The number was used for
  316. * the validation of references and a mismatch could lead to
  317. * undefined references during the matching process. */
  318. if (idx != tree_hdr->nmatches) {
  319. err = -EINVAL;
  320. goto errout_abort;
  321. }
  322. err = 0;
  323. errout:
  324. return err;
  325. errout_abort:
  326. tcf_em_tree_destroy(tp, tree);
  327. return err;
  328. }
  329. /**
  330. * tcf_em_tree_destroy - destroy an ematch tree
  331. *
  332. * @tp: classifier kind handle
  333. * @tree: ematch tree to be deleted
  334. *
  335. * This functions destroys an ematch tree previously created by
  336. * tcf_em_tree_validate()/tcf_em_tree_change(). You must ensure that
  337. * the ematch tree is not in use before calling this function.
  338. */
  339. void tcf_em_tree_destroy(struct tcf_proto *tp, struct tcf_ematch_tree *tree)
  340. {
  341. int i;
  342. if (tree->matches == NULL)
  343. return;
  344. for (i = 0; i < tree->hdr.nmatches; i++) {
  345. struct tcf_ematch *em = tcf_em_get_match(tree, i);
  346. if (em->ops) {
  347. if (em->ops->destroy)
  348. em->ops->destroy(tp, em);
  349. else if (!tcf_em_is_simple(em) && em->data)
  350. kfree((void *) em->data);
  351. module_put(em->ops->owner);
  352. }
  353. }
  354. tree->hdr.nmatches = 0;
  355. kfree(tree->matches);
  356. }
  357. /**
  358. * tcf_em_tree_dump - dump ematch tree into a rtnl message
  359. *
  360. * @skb: skb holding the rtnl message
  361. * @t: ematch tree to be dumped
  362. * @tlv: TLV type to be used to encapsulate the tree
  363. *
  364. * This function dumps a ematch tree into a rtnl message. It is valid to
  365. * call this function while the ematch tree is in use.
  366. *
  367. * Returns -1 if the skb tailroom is insufficient.
  368. */
  369. int tcf_em_tree_dump(struct sk_buff *skb, struct tcf_ematch_tree *tree, int tlv)
  370. {
  371. int i;
  372. struct rtattr * top_start = (struct rtattr*) skb->tail;
  373. struct rtattr * list_start;
  374. RTA_PUT(skb, tlv, 0, NULL);
  375. RTA_PUT(skb, TCA_EMATCH_TREE_HDR, sizeof(tree->hdr), &tree->hdr);
  376. list_start = (struct rtattr *) skb->tail;
  377. RTA_PUT(skb, TCA_EMATCH_TREE_LIST, 0, NULL);
  378. for (i = 0; i < tree->hdr.nmatches; i++) {
  379. struct rtattr *match_start = (struct rtattr*) skb->tail;
  380. struct tcf_ematch *em = tcf_em_get_match(tree, i);
  381. struct tcf_ematch_hdr em_hdr = {
  382. .kind = em->ops ? em->ops->kind : TCF_EM_CONTAINER,
  383. .matchid = em->matchid,
  384. .flags = em->flags
  385. };
  386. RTA_PUT(skb, i+1, sizeof(em_hdr), &em_hdr);
  387. if (em->ops && em->ops->dump) {
  388. if (em->ops->dump(skb, em) < 0)
  389. goto rtattr_failure;
  390. } else if (tcf_em_is_container(em) || tcf_em_is_simple(em)) {
  391. u32 u = em->data;
  392. RTA_PUT_NOHDR(skb, sizeof(u), &u);
  393. } else if (em->datalen > 0)
  394. RTA_PUT_NOHDR(skb, em->datalen, (void *) em->data);
  395. match_start->rta_len = skb->tail - (u8*) match_start;
  396. }
  397. list_start->rta_len = skb->tail - (u8 *) list_start;
  398. top_start->rta_len = skb->tail - (u8 *) top_start;
  399. return 0;
  400. rtattr_failure:
  401. return -1;
  402. }
  403. static inline int tcf_em_match(struct sk_buff *skb, struct tcf_ematch *em,
  404. struct tcf_pkt_info *info)
  405. {
  406. int r = em->ops->match(skb, em, info);
  407. return tcf_em_is_inverted(em) ? !r : r;
  408. }
  409. /* Do not use this function directly, use tcf_em_tree_match instead */
  410. int __tcf_em_tree_match(struct sk_buff *skb, struct tcf_ematch_tree *tree,
  411. struct tcf_pkt_info *info)
  412. {
  413. int stackp = 0, match_idx = 0, res = 0;
  414. struct tcf_ematch *cur_match;
  415. int stack[CONFIG_NET_EMATCH_STACK];
  416. proceed:
  417. while (match_idx < tree->hdr.nmatches) {
  418. cur_match = tcf_em_get_match(tree, match_idx);
  419. if (tcf_em_is_container(cur_match)) {
  420. if (unlikely(stackp >= CONFIG_NET_EMATCH_STACK))
  421. goto stack_overflow;
  422. stack[stackp++] = match_idx;
  423. match_idx = cur_match->data;
  424. goto proceed;
  425. }
  426. res = tcf_em_match(skb, cur_match, info);
  427. if (tcf_em_early_end(cur_match, res))
  428. break;
  429. match_idx++;
  430. }
  431. pop_stack:
  432. if (stackp > 0) {
  433. match_idx = stack[--stackp];
  434. cur_match = tcf_em_get_match(tree, match_idx);
  435. if (tcf_em_early_end(cur_match, res))
  436. goto pop_stack;
  437. else {
  438. match_idx++;
  439. goto proceed;
  440. }
  441. }
  442. return res;
  443. stack_overflow:
  444. if (net_ratelimit())
  445. printk("Local stack overflow, increase NET_EMATCH_STACK\n");
  446. return -1;
  447. }
  448. EXPORT_SYMBOL(tcf_em_register);
  449. EXPORT_SYMBOL(tcf_em_unregister);
  450. EXPORT_SYMBOL(tcf_em_tree_validate);
  451. EXPORT_SYMBOL(tcf_em_tree_destroy);
  452. EXPORT_SYMBOL(tcf_em_tree_dump);
  453. EXPORT_SYMBOL(__tcf_em_tree_match);