inetpeer.c 17 KB

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  1. /*
  2. * INETPEER - A storage for permanent information about peers
  3. *
  4. * This source is covered by the GNU GPL, the same as all kernel sources.
  5. *
  6. * Authors: Andrey V. Savochkin <saw@msu.ru>
  7. */
  8. #include <linux/module.h>
  9. #include <linux/types.h>
  10. #include <linux/slab.h>
  11. #include <linux/interrupt.h>
  12. #include <linux/spinlock.h>
  13. #include <linux/random.h>
  14. #include <linux/timer.h>
  15. #include <linux/time.h>
  16. #include <linux/kernel.h>
  17. #include <linux/mm.h>
  18. #include <linux/net.h>
  19. #include <net/ip.h>
  20. #include <net/inetpeer.h>
  21. /*
  22. * Theory of operations.
  23. * We keep one entry for each peer IP address. The nodes contains long-living
  24. * information about the peer which doesn't depend on routes.
  25. * At this moment this information consists only of ID field for the next
  26. * outgoing IP packet. This field is incremented with each packet as encoded
  27. * in inet_getid() function (include/net/inetpeer.h).
  28. * At the moment of writing this notes identifier of IP packets is generated
  29. * to be unpredictable using this code only for packets subjected
  30. * (actually or potentially) to defragmentation. I.e. DF packets less than
  31. * PMTU in size uses a constant ID and do not use this code (see
  32. * ip_select_ident() in include/net/ip.h).
  33. *
  34. * Route cache entries hold references to our nodes.
  35. * New cache entries get references via lookup by destination IP address in
  36. * the avl tree. The reference is grabbed only when it's needed i.e. only
  37. * when we try to output IP packet which needs an unpredictable ID (see
  38. * __ip_select_ident() in net/ipv4/route.c).
  39. * Nodes are removed only when reference counter goes to 0.
  40. * When it's happened the node may be removed when a sufficient amount of
  41. * time has been passed since its last use. The less-recently-used entry can
  42. * also be removed if the pool is overloaded i.e. if the total amount of
  43. * entries is greater-or-equal than the threshold.
  44. *
  45. * Node pool is organised as an AVL tree.
  46. * Such an implementation has been chosen not just for fun. It's a way to
  47. * prevent easy and efficient DoS attacks by creating hash collisions. A huge
  48. * amount of long living nodes in a single hash slot would significantly delay
  49. * lookups performed with disabled BHs.
  50. *
  51. * Serialisation issues.
  52. * 1. Nodes may appear in the tree only with the pool lock held.
  53. * 2. Nodes may disappear from the tree only with the pool lock held
  54. * AND reference count being 0.
  55. * 3. Nodes appears and disappears from unused node list only under
  56. * "inet_peer_unused_lock".
  57. * 4. Global variable peer_total is modified under the pool lock.
  58. * 5. struct inet_peer fields modification:
  59. * avl_left, avl_right, avl_parent, avl_height: pool lock
  60. * unused: unused node list lock
  61. * refcnt: atomically against modifications on other CPU;
  62. * usually under some other lock to prevent node disappearing
  63. * dtime: unused node list lock
  64. * daddr: unchangeable
  65. * ip_id_count: atomic value (no lock needed)
  66. */
  67. static struct kmem_cache *peer_cachep __read_mostly;
  68. #define node_height(x) x->avl_height
  69. #define peer_avl_empty ((struct inet_peer *)&peer_fake_node)
  70. #define peer_avl_empty_rcu ((struct inet_peer __rcu __force *)&peer_fake_node)
  71. static const struct inet_peer peer_fake_node = {
  72. .avl_left = peer_avl_empty_rcu,
  73. .avl_right = peer_avl_empty_rcu,
  74. .avl_height = 0
  75. };
  76. static struct inet_peer_base {
  77. struct inet_peer __rcu *root;
  78. spinlock_t lock;
  79. int total;
  80. } v4_peers = {
  81. .root = peer_avl_empty_rcu,
  82. .lock = __SPIN_LOCK_UNLOCKED(v4_peers.lock),
  83. .total = 0,
  84. };
  85. #define PEER_MAXDEPTH 40 /* sufficient for about 2^27 nodes */
  86. /* Exported for sysctl_net_ipv4. */
  87. int inet_peer_threshold __read_mostly = 65536 + 128; /* start to throw entries more
  88. * aggressively at this stage */
  89. int inet_peer_minttl __read_mostly = 120 * HZ; /* TTL under high load: 120 sec */
  90. int inet_peer_maxttl __read_mostly = 10 * 60 * HZ; /* usual time to live: 10 min */
  91. int inet_peer_gc_mintime __read_mostly = 10 * HZ;
  92. int inet_peer_gc_maxtime __read_mostly = 120 * HZ;
  93. static struct {
  94. struct list_head list;
  95. spinlock_t lock;
  96. } unused_peers = {
  97. .list = LIST_HEAD_INIT(unused_peers.list),
  98. .lock = __SPIN_LOCK_UNLOCKED(unused_peers.lock),
  99. };
  100. static void peer_check_expire(unsigned long dummy);
  101. static DEFINE_TIMER(peer_periodic_timer, peer_check_expire, 0, 0);
  102. /* Called from ip_output.c:ip_init */
  103. void __init inet_initpeers(void)
  104. {
  105. struct sysinfo si;
  106. /* Use the straight interface to information about memory. */
  107. si_meminfo(&si);
  108. /* The values below were suggested by Alexey Kuznetsov
  109. * <kuznet@ms2.inr.ac.ru>. I don't have any opinion about the values
  110. * myself. --SAW
  111. */
  112. if (si.totalram <= (32768*1024)/PAGE_SIZE)
  113. inet_peer_threshold >>= 1; /* max pool size about 1MB on IA32 */
  114. if (si.totalram <= (16384*1024)/PAGE_SIZE)
  115. inet_peer_threshold >>= 1; /* about 512KB */
  116. if (si.totalram <= (8192*1024)/PAGE_SIZE)
  117. inet_peer_threshold >>= 2; /* about 128KB */
  118. peer_cachep = kmem_cache_create("inet_peer_cache",
  119. sizeof(struct inet_peer),
  120. 0, SLAB_HWCACHE_ALIGN | SLAB_PANIC,
  121. NULL);
  122. /* All the timers, started at system startup tend
  123. to synchronize. Perturb it a bit.
  124. */
  125. peer_periodic_timer.expires = jiffies
  126. + net_random() % inet_peer_gc_maxtime
  127. + inet_peer_gc_maxtime;
  128. add_timer(&peer_periodic_timer);
  129. }
  130. /* Called with or without local BH being disabled. */
  131. static void unlink_from_unused(struct inet_peer *p)
  132. {
  133. if (!list_empty(&p->unused)) {
  134. spin_lock_bh(&unused_peers.lock);
  135. list_del_init(&p->unused);
  136. spin_unlock_bh(&unused_peers.lock);
  137. }
  138. }
  139. /*
  140. * Called with local BH disabled and the pool lock held.
  141. */
  142. #define lookup(_daddr, _stack, _base) \
  143. ({ \
  144. struct inet_peer *u; \
  145. struct inet_peer __rcu **v; \
  146. \
  147. stackptr = _stack; \
  148. *stackptr++ = &_base->root; \
  149. for (u = rcu_dereference_protected(_base->root, \
  150. lockdep_is_held(&_base->lock)); \
  151. u != peer_avl_empty; ) { \
  152. if (_daddr == u->daddr.a4) \
  153. break; \
  154. if ((__force __u32)_daddr < (__force __u32)u->daddr.a4) \
  155. v = &u->avl_left; \
  156. else \
  157. v = &u->avl_right; \
  158. *stackptr++ = v; \
  159. u = rcu_dereference_protected(*v, \
  160. lockdep_is_held(&_base->lock)); \
  161. } \
  162. u; \
  163. })
  164. /*
  165. * Called with rcu_read_lock_bh()
  166. * Because we hold no lock against a writer, its quite possible we fall
  167. * in an endless loop.
  168. * But every pointer we follow is guaranteed to be valid thanks to RCU.
  169. * We exit from this function if number of links exceeds PEER_MAXDEPTH
  170. */
  171. static struct inet_peer *lookup_rcu_bh(__be32 daddr, struct inet_peer_base *base)
  172. {
  173. struct inet_peer *u = rcu_dereference_bh(base->root);
  174. int count = 0;
  175. while (u != peer_avl_empty) {
  176. if (daddr == u->daddr.a4) {
  177. /* Before taking a reference, check if this entry was
  178. * deleted, unlink_from_pool() sets refcnt=-1 to make
  179. * distinction between an unused entry (refcnt=0) and
  180. * a freed one.
  181. */
  182. if (unlikely(!atomic_add_unless(&u->refcnt, 1, -1)))
  183. u = NULL;
  184. return u;
  185. }
  186. if ((__force __u32)daddr < (__force __u32)u->daddr.a4)
  187. u = rcu_dereference_bh(u->avl_left);
  188. else
  189. u = rcu_dereference_bh(u->avl_right);
  190. if (unlikely(++count == PEER_MAXDEPTH))
  191. break;
  192. }
  193. return NULL;
  194. }
  195. /* Called with local BH disabled and the pool lock held. */
  196. #define lookup_rightempty(start, base) \
  197. ({ \
  198. struct inet_peer *u; \
  199. struct inet_peer __rcu **v; \
  200. *stackptr++ = &start->avl_left; \
  201. v = &start->avl_left; \
  202. for (u = rcu_dereference_protected(*v, \
  203. lockdep_is_held(&base->lock)); \
  204. u->avl_right != peer_avl_empty_rcu; ) { \
  205. v = &u->avl_right; \
  206. *stackptr++ = v; \
  207. u = rcu_dereference_protected(*v, \
  208. lockdep_is_held(&base->lock)); \
  209. } \
  210. u; \
  211. })
  212. /* Called with local BH disabled and the pool lock held.
  213. * Variable names are the proof of operation correctness.
  214. * Look into mm/map_avl.c for more detail description of the ideas.
  215. */
  216. static void peer_avl_rebalance(struct inet_peer __rcu **stack[],
  217. struct inet_peer __rcu ***stackend,
  218. struct inet_peer_base *base)
  219. {
  220. struct inet_peer __rcu **nodep;
  221. struct inet_peer *node, *l, *r;
  222. int lh, rh;
  223. while (stackend > stack) {
  224. nodep = *--stackend;
  225. node = rcu_dereference_protected(*nodep,
  226. lockdep_is_held(&base->lock));
  227. l = rcu_dereference_protected(node->avl_left,
  228. lockdep_is_held(&base->lock));
  229. r = rcu_dereference_protected(node->avl_right,
  230. lockdep_is_held(&base->lock));
  231. lh = node_height(l);
  232. rh = node_height(r);
  233. if (lh > rh + 1) { /* l: RH+2 */
  234. struct inet_peer *ll, *lr, *lrl, *lrr;
  235. int lrh;
  236. ll = rcu_dereference_protected(l->avl_left,
  237. lockdep_is_held(&base->lock));
  238. lr = rcu_dereference_protected(l->avl_right,
  239. lockdep_is_held(&base->lock));
  240. lrh = node_height(lr);
  241. if (lrh <= node_height(ll)) { /* ll: RH+1 */
  242. RCU_INIT_POINTER(node->avl_left, lr); /* lr: RH or RH+1 */
  243. RCU_INIT_POINTER(node->avl_right, r); /* r: RH */
  244. node->avl_height = lrh + 1; /* RH+1 or RH+2 */
  245. RCU_INIT_POINTER(l->avl_left, ll); /* ll: RH+1 */
  246. RCU_INIT_POINTER(l->avl_right, node); /* node: RH+1 or RH+2 */
  247. l->avl_height = node->avl_height + 1;
  248. RCU_INIT_POINTER(*nodep, l);
  249. } else { /* ll: RH, lr: RH+1 */
  250. lrl = rcu_dereference_protected(lr->avl_left,
  251. lockdep_is_held(&base->lock)); /* lrl: RH or RH-1 */
  252. lrr = rcu_dereference_protected(lr->avl_right,
  253. lockdep_is_held(&base->lock)); /* lrr: RH or RH-1 */
  254. RCU_INIT_POINTER(node->avl_left, lrr); /* lrr: RH or RH-1 */
  255. RCU_INIT_POINTER(node->avl_right, r); /* r: RH */
  256. node->avl_height = rh + 1; /* node: RH+1 */
  257. RCU_INIT_POINTER(l->avl_left, ll); /* ll: RH */
  258. RCU_INIT_POINTER(l->avl_right, lrl); /* lrl: RH or RH-1 */
  259. l->avl_height = rh + 1; /* l: RH+1 */
  260. RCU_INIT_POINTER(lr->avl_left, l); /* l: RH+1 */
  261. RCU_INIT_POINTER(lr->avl_right, node); /* node: RH+1 */
  262. lr->avl_height = rh + 2;
  263. RCU_INIT_POINTER(*nodep, lr);
  264. }
  265. } else if (rh > lh + 1) { /* r: LH+2 */
  266. struct inet_peer *rr, *rl, *rlr, *rll;
  267. int rlh;
  268. rr = rcu_dereference_protected(r->avl_right,
  269. lockdep_is_held(&base->lock));
  270. rl = rcu_dereference_protected(r->avl_left,
  271. lockdep_is_held(&base->lock));
  272. rlh = node_height(rl);
  273. if (rlh <= node_height(rr)) { /* rr: LH+1 */
  274. RCU_INIT_POINTER(node->avl_right, rl); /* rl: LH or LH+1 */
  275. RCU_INIT_POINTER(node->avl_left, l); /* l: LH */
  276. node->avl_height = rlh + 1; /* LH+1 or LH+2 */
  277. RCU_INIT_POINTER(r->avl_right, rr); /* rr: LH+1 */
  278. RCU_INIT_POINTER(r->avl_left, node); /* node: LH+1 or LH+2 */
  279. r->avl_height = node->avl_height + 1;
  280. RCU_INIT_POINTER(*nodep, r);
  281. } else { /* rr: RH, rl: RH+1 */
  282. rlr = rcu_dereference_protected(rl->avl_right,
  283. lockdep_is_held(&base->lock)); /* rlr: LH or LH-1 */
  284. rll = rcu_dereference_protected(rl->avl_left,
  285. lockdep_is_held(&base->lock)); /* rll: LH or LH-1 */
  286. RCU_INIT_POINTER(node->avl_right, rll); /* rll: LH or LH-1 */
  287. RCU_INIT_POINTER(node->avl_left, l); /* l: LH */
  288. node->avl_height = lh + 1; /* node: LH+1 */
  289. RCU_INIT_POINTER(r->avl_right, rr); /* rr: LH */
  290. RCU_INIT_POINTER(r->avl_left, rlr); /* rlr: LH or LH-1 */
  291. r->avl_height = lh + 1; /* r: LH+1 */
  292. RCU_INIT_POINTER(rl->avl_right, r); /* r: LH+1 */
  293. RCU_INIT_POINTER(rl->avl_left, node); /* node: LH+1 */
  294. rl->avl_height = lh + 2;
  295. RCU_INIT_POINTER(*nodep, rl);
  296. }
  297. } else {
  298. node->avl_height = (lh > rh ? lh : rh) + 1;
  299. }
  300. }
  301. }
  302. /* Called with local BH disabled and the pool lock held. */
  303. #define link_to_pool(n, base) \
  304. do { \
  305. n->avl_height = 1; \
  306. n->avl_left = peer_avl_empty_rcu; \
  307. n->avl_right = peer_avl_empty_rcu; \
  308. /* lockless readers can catch us now */ \
  309. rcu_assign_pointer(**--stackptr, n); \
  310. peer_avl_rebalance(stack, stackptr, base); \
  311. } while (0)
  312. static void inetpeer_free_rcu(struct rcu_head *head)
  313. {
  314. kmem_cache_free(peer_cachep, container_of(head, struct inet_peer, rcu));
  315. }
  316. /* May be called with local BH enabled. */
  317. static void unlink_from_pool(struct inet_peer *p, struct inet_peer_base *base)
  318. {
  319. int do_free;
  320. do_free = 0;
  321. spin_lock_bh(&base->lock);
  322. /* Check the reference counter. It was artificially incremented by 1
  323. * in cleanup() function to prevent sudden disappearing. If we can
  324. * atomically (because of lockless readers) take this last reference,
  325. * it's safe to remove the node and free it later.
  326. * We use refcnt=-1 to alert lockless readers this entry is deleted.
  327. */
  328. if (atomic_cmpxchg(&p->refcnt, 1, -1) == 1) {
  329. struct inet_peer __rcu **stack[PEER_MAXDEPTH];
  330. struct inet_peer __rcu ***stackptr, ***delp;
  331. if (lookup(p->daddr.a4, stack, base) != p)
  332. BUG();
  333. delp = stackptr - 1; /* *delp[0] == p */
  334. if (p->avl_left == peer_avl_empty_rcu) {
  335. *delp[0] = p->avl_right;
  336. --stackptr;
  337. } else {
  338. /* look for a node to insert instead of p */
  339. struct inet_peer *t;
  340. t = lookup_rightempty(p, base);
  341. BUG_ON(rcu_dereference_protected(*stackptr[-1],
  342. lockdep_is_held(&base->lock)) != t);
  343. **--stackptr = t->avl_left;
  344. /* t is removed, t->daddr > x->daddr for any
  345. * x in p->avl_left subtree.
  346. * Put t in the old place of p. */
  347. RCU_INIT_POINTER(*delp[0], t);
  348. t->avl_left = p->avl_left;
  349. t->avl_right = p->avl_right;
  350. t->avl_height = p->avl_height;
  351. BUG_ON(delp[1] != &p->avl_left);
  352. delp[1] = &t->avl_left; /* was &p->avl_left */
  353. }
  354. peer_avl_rebalance(stack, stackptr, base);
  355. base->total--;
  356. do_free = 1;
  357. }
  358. spin_unlock_bh(&base->lock);
  359. if (do_free)
  360. call_rcu_bh(&p->rcu, inetpeer_free_rcu);
  361. else
  362. /* The node is used again. Decrease the reference counter
  363. * back. The loop "cleanup -> unlink_from_unused
  364. * -> unlink_from_pool -> putpeer -> link_to_unused
  365. * -> cleanup (for the same node)"
  366. * doesn't really exist because the entry will have a
  367. * recent deletion time and will not be cleaned again soon.
  368. */
  369. inet_putpeer(p);
  370. }
  371. static struct inet_peer_base *peer_to_base(struct inet_peer *p)
  372. {
  373. return &v4_peers;
  374. }
  375. /* May be called with local BH enabled. */
  376. static int cleanup_once(unsigned long ttl)
  377. {
  378. struct inet_peer *p = NULL;
  379. /* Remove the first entry from the list of unused nodes. */
  380. spin_lock_bh(&unused_peers.lock);
  381. if (!list_empty(&unused_peers.list)) {
  382. __u32 delta;
  383. p = list_first_entry(&unused_peers.list, struct inet_peer, unused);
  384. delta = (__u32)jiffies - p->dtime;
  385. if (delta < ttl) {
  386. /* Do not prune fresh entries. */
  387. spin_unlock_bh(&unused_peers.lock);
  388. return -1;
  389. }
  390. list_del_init(&p->unused);
  391. /* Grab an extra reference to prevent node disappearing
  392. * before unlink_from_pool() call. */
  393. atomic_inc(&p->refcnt);
  394. }
  395. spin_unlock_bh(&unused_peers.lock);
  396. if (p == NULL)
  397. /* It means that the total number of USED entries has
  398. * grown over inet_peer_threshold. It shouldn't really
  399. * happen because of entry limits in route cache. */
  400. return -1;
  401. unlink_from_pool(p, peer_to_base(p));
  402. return 0;
  403. }
  404. static struct inet_peer_base *family_to_base(int family)
  405. {
  406. return &v4_peers;
  407. }
  408. /* Called with or without local BH being disabled. */
  409. struct inet_peer *inet_getpeer(__be32 daddr, int create)
  410. {
  411. struct inet_peer __rcu **stack[PEER_MAXDEPTH], ***stackptr;
  412. struct inet_peer_base *base = family_to_base(AF_INET);
  413. struct inet_peer *p;
  414. /* Look up for the address quickly, lockless.
  415. * Because of a concurrent writer, we might not find an existing entry.
  416. */
  417. rcu_read_lock_bh();
  418. p = lookup_rcu_bh(daddr, base);
  419. rcu_read_unlock_bh();
  420. if (p) {
  421. /* The existing node has been found.
  422. * Remove the entry from unused list if it was there.
  423. */
  424. unlink_from_unused(p);
  425. return p;
  426. }
  427. /* retry an exact lookup, taking the lock before.
  428. * At least, nodes should be hot in our cache.
  429. */
  430. spin_lock_bh(&base->lock);
  431. p = lookup(daddr, stack, base);
  432. if (p != peer_avl_empty) {
  433. atomic_inc(&p->refcnt);
  434. spin_unlock_bh(&base->lock);
  435. /* Remove the entry from unused list if it was there. */
  436. unlink_from_unused(p);
  437. return p;
  438. }
  439. p = create ? kmem_cache_alloc(peer_cachep, GFP_ATOMIC) : NULL;
  440. if (p) {
  441. p->daddr.a4 = daddr;
  442. atomic_set(&p->refcnt, 1);
  443. atomic_set(&p->rid, 0);
  444. atomic_set(&p->ip_id_count, secure_ip_id(daddr));
  445. p->tcp_ts_stamp = 0;
  446. INIT_LIST_HEAD(&p->unused);
  447. /* Link the node. */
  448. link_to_pool(p, base);
  449. base->total++;
  450. }
  451. spin_unlock_bh(&base->lock);
  452. if (base->total >= inet_peer_threshold)
  453. /* Remove one less-recently-used entry. */
  454. cleanup_once(0);
  455. return p;
  456. }
  457. static int compute_total(void)
  458. {
  459. return v4_peers.total;
  460. }
  461. /* Called with local BH disabled. */
  462. static void peer_check_expire(unsigned long dummy)
  463. {
  464. unsigned long now = jiffies;
  465. int ttl, total;
  466. total = compute_total();
  467. if (total >= inet_peer_threshold)
  468. ttl = inet_peer_minttl;
  469. else
  470. ttl = inet_peer_maxttl
  471. - (inet_peer_maxttl - inet_peer_minttl) / HZ *
  472. total / inet_peer_threshold * HZ;
  473. while (!cleanup_once(ttl)) {
  474. if (jiffies != now)
  475. break;
  476. }
  477. /* Trigger the timer after inet_peer_gc_mintime .. inet_peer_gc_maxtime
  478. * interval depending on the total number of entries (more entries,
  479. * less interval). */
  480. total = compute_total();
  481. if (total >= inet_peer_threshold)
  482. peer_periodic_timer.expires = jiffies + inet_peer_gc_mintime;
  483. else
  484. peer_periodic_timer.expires = jiffies
  485. + inet_peer_gc_maxtime
  486. - (inet_peer_gc_maxtime - inet_peer_gc_mintime) / HZ *
  487. total / inet_peer_threshold * HZ;
  488. add_timer(&peer_periodic_timer);
  489. }
  490. void inet_putpeer(struct inet_peer *p)
  491. {
  492. local_bh_disable();
  493. if (atomic_dec_and_lock(&p->refcnt, &unused_peers.lock)) {
  494. list_add_tail(&p->unused, &unused_peers.list);
  495. p->dtime = (__u32)jiffies;
  496. spin_unlock(&unused_peers.lock);
  497. }
  498. local_bh_enable();
  499. }