inet_connection_sock.c 19 KB

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  1. /*
  2. * INET An implementation of the TCP/IP protocol suite for the LINUX
  3. * operating system. INET is implemented using the BSD Socket
  4. * interface as the means of communication with the user level.
  5. *
  6. * Support for INET connection oriented protocols.
  7. *
  8. * Authors: See the TCP sources
  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. #include <linux/module.h>
  16. #include <linux/jhash.h>
  17. #include <net/inet_connection_sock.h>
  18. #include <net/inet_hashtables.h>
  19. #include <net/inet_timewait_sock.h>
  20. #include <net/ip.h>
  21. #include <net/route.h>
  22. #include <net/tcp_states.h>
  23. #include <net/xfrm.h>
  24. #ifdef INET_CSK_DEBUG
  25. const char inet_csk_timer_bug_msg[] = "inet_csk BUG: unknown timer value\n";
  26. EXPORT_SYMBOL(inet_csk_timer_bug_msg);
  27. #endif
  28. /*
  29. * This array holds the first and last local port number.
  30. */
  31. int sysctl_local_port_range[2] = { 32768, 61000 };
  32. DEFINE_SEQLOCK(sysctl_port_range_lock);
  33. void inet_get_local_port_range(int *low, int *high)
  34. {
  35. unsigned seq;
  36. do {
  37. seq = read_seqbegin(&sysctl_port_range_lock);
  38. *low = sysctl_local_port_range[0];
  39. *high = sysctl_local_port_range[1];
  40. } while (read_seqretry(&sysctl_port_range_lock, seq));
  41. }
  42. EXPORT_SYMBOL(inet_get_local_port_range);
  43. int inet_csk_bind_conflict(const struct sock *sk,
  44. const struct inet_bind_bucket *tb)
  45. {
  46. const __be32 sk_rcv_saddr = inet_rcv_saddr(sk);
  47. struct sock *sk2;
  48. struct hlist_node *node;
  49. int reuse = sk->sk_reuse;
  50. sk_for_each_bound(sk2, node, &tb->owners) {
  51. if (sk != sk2 &&
  52. !inet_v6_ipv6only(sk2) &&
  53. (!sk->sk_bound_dev_if ||
  54. !sk2->sk_bound_dev_if ||
  55. sk->sk_bound_dev_if == sk2->sk_bound_dev_if)) {
  56. if (!reuse || !sk2->sk_reuse ||
  57. sk2->sk_state == TCP_LISTEN) {
  58. const __be32 sk2_rcv_saddr = inet_rcv_saddr(sk2);
  59. if (!sk2_rcv_saddr || !sk_rcv_saddr ||
  60. sk2_rcv_saddr == sk_rcv_saddr)
  61. break;
  62. }
  63. }
  64. }
  65. return node != NULL;
  66. }
  67. EXPORT_SYMBOL_GPL(inet_csk_bind_conflict);
  68. /* Obtain a reference to a local port for the given sock,
  69. * if snum is zero it means select any available local port.
  70. */
  71. int inet_csk_get_port(struct sock *sk, unsigned short snum)
  72. {
  73. struct inet_hashinfo *hashinfo = sk->sk_prot->hashinfo;
  74. struct inet_bind_hashbucket *head;
  75. struct hlist_node *node;
  76. struct inet_bind_bucket *tb;
  77. int ret;
  78. struct net *net = sk->sk_net;
  79. local_bh_disable();
  80. if (!snum) {
  81. int remaining, rover, low, high;
  82. inet_get_local_port_range(&low, &high);
  83. remaining = (high - low) + 1;
  84. rover = net_random() % remaining + low;
  85. do {
  86. head = &hashinfo->bhash[inet_bhashfn(rover, hashinfo->bhash_size)];
  87. spin_lock(&head->lock);
  88. inet_bind_bucket_for_each(tb, node, &head->chain)
  89. if (tb->ib_net == net && tb->port == rover)
  90. goto next;
  91. break;
  92. next:
  93. spin_unlock(&head->lock);
  94. if (++rover > high)
  95. rover = low;
  96. } while (--remaining > 0);
  97. /* Exhausted local port range during search? It is not
  98. * possible for us to be holding one of the bind hash
  99. * locks if this test triggers, because if 'remaining'
  100. * drops to zero, we broke out of the do/while loop at
  101. * the top level, not from the 'break;' statement.
  102. */
  103. ret = 1;
  104. if (remaining <= 0)
  105. goto fail;
  106. /* OK, here is the one we will use. HEAD is
  107. * non-NULL and we hold it's mutex.
  108. */
  109. snum = rover;
  110. } else {
  111. head = &hashinfo->bhash[inet_bhashfn(snum, hashinfo->bhash_size)];
  112. spin_lock(&head->lock);
  113. inet_bind_bucket_for_each(tb, node, &head->chain)
  114. if (tb->ib_net == net && tb->port == snum)
  115. goto tb_found;
  116. }
  117. tb = NULL;
  118. goto tb_not_found;
  119. tb_found:
  120. if (!hlist_empty(&tb->owners)) {
  121. if (sk->sk_reuse > 1)
  122. goto success;
  123. if (tb->fastreuse > 0 &&
  124. sk->sk_reuse && sk->sk_state != TCP_LISTEN) {
  125. goto success;
  126. } else {
  127. ret = 1;
  128. if (inet_csk(sk)->icsk_af_ops->bind_conflict(sk, tb))
  129. goto fail_unlock;
  130. }
  131. }
  132. tb_not_found:
  133. ret = 1;
  134. if (!tb && (tb = inet_bind_bucket_create(hashinfo->bind_bucket_cachep,
  135. net, head, snum)) == NULL)
  136. goto fail_unlock;
  137. if (hlist_empty(&tb->owners)) {
  138. if (sk->sk_reuse && sk->sk_state != TCP_LISTEN)
  139. tb->fastreuse = 1;
  140. else
  141. tb->fastreuse = 0;
  142. } else if (tb->fastreuse &&
  143. (!sk->sk_reuse || sk->sk_state == TCP_LISTEN))
  144. tb->fastreuse = 0;
  145. success:
  146. if (!inet_csk(sk)->icsk_bind_hash)
  147. inet_bind_hash(sk, tb, snum);
  148. BUG_TRAP(inet_csk(sk)->icsk_bind_hash == tb);
  149. ret = 0;
  150. fail_unlock:
  151. spin_unlock(&head->lock);
  152. fail:
  153. local_bh_enable();
  154. return ret;
  155. }
  156. EXPORT_SYMBOL_GPL(inet_csk_get_port);
  157. /*
  158. * Wait for an incoming connection, avoid race conditions. This must be called
  159. * with the socket locked.
  160. */
  161. static int inet_csk_wait_for_connect(struct sock *sk, long timeo)
  162. {
  163. struct inet_connection_sock *icsk = inet_csk(sk);
  164. DEFINE_WAIT(wait);
  165. int err;
  166. /*
  167. * True wake-one mechanism for incoming connections: only
  168. * one process gets woken up, not the 'whole herd'.
  169. * Since we do not 'race & poll' for established sockets
  170. * anymore, the common case will execute the loop only once.
  171. *
  172. * Subtle issue: "add_wait_queue_exclusive()" will be added
  173. * after any current non-exclusive waiters, and we know that
  174. * it will always _stay_ after any new non-exclusive waiters
  175. * because all non-exclusive waiters are added at the
  176. * beginning of the wait-queue. As such, it's ok to "drop"
  177. * our exclusiveness temporarily when we get woken up without
  178. * having to remove and re-insert us on the wait queue.
  179. */
  180. for (;;) {
  181. prepare_to_wait_exclusive(sk->sk_sleep, &wait,
  182. TASK_INTERRUPTIBLE);
  183. release_sock(sk);
  184. if (reqsk_queue_empty(&icsk->icsk_accept_queue))
  185. timeo = schedule_timeout(timeo);
  186. lock_sock(sk);
  187. err = 0;
  188. if (!reqsk_queue_empty(&icsk->icsk_accept_queue))
  189. break;
  190. err = -EINVAL;
  191. if (sk->sk_state != TCP_LISTEN)
  192. break;
  193. err = sock_intr_errno(timeo);
  194. if (signal_pending(current))
  195. break;
  196. err = -EAGAIN;
  197. if (!timeo)
  198. break;
  199. }
  200. finish_wait(sk->sk_sleep, &wait);
  201. return err;
  202. }
  203. /*
  204. * This will accept the next outstanding connection.
  205. */
  206. struct sock *inet_csk_accept(struct sock *sk, int flags, int *err)
  207. {
  208. struct inet_connection_sock *icsk = inet_csk(sk);
  209. struct sock *newsk;
  210. int error;
  211. lock_sock(sk);
  212. /* We need to make sure that this socket is listening,
  213. * and that it has something pending.
  214. */
  215. error = -EINVAL;
  216. if (sk->sk_state != TCP_LISTEN)
  217. goto out_err;
  218. /* Find already established connection */
  219. if (reqsk_queue_empty(&icsk->icsk_accept_queue)) {
  220. long timeo = sock_rcvtimeo(sk, flags & O_NONBLOCK);
  221. /* If this is a non blocking socket don't sleep */
  222. error = -EAGAIN;
  223. if (!timeo)
  224. goto out_err;
  225. error = inet_csk_wait_for_connect(sk, timeo);
  226. if (error)
  227. goto out_err;
  228. }
  229. newsk = reqsk_queue_get_child(&icsk->icsk_accept_queue, sk);
  230. BUG_TRAP(newsk->sk_state != TCP_SYN_RECV);
  231. out:
  232. release_sock(sk);
  233. return newsk;
  234. out_err:
  235. newsk = NULL;
  236. *err = error;
  237. goto out;
  238. }
  239. EXPORT_SYMBOL(inet_csk_accept);
  240. /*
  241. * Using different timers for retransmit, delayed acks and probes
  242. * We may wish use just one timer maintaining a list of expire jiffies
  243. * to optimize.
  244. */
  245. void inet_csk_init_xmit_timers(struct sock *sk,
  246. void (*retransmit_handler)(unsigned long),
  247. void (*delack_handler)(unsigned long),
  248. void (*keepalive_handler)(unsigned long))
  249. {
  250. struct inet_connection_sock *icsk = inet_csk(sk);
  251. setup_timer(&icsk->icsk_retransmit_timer, retransmit_handler,
  252. (unsigned long)sk);
  253. setup_timer(&icsk->icsk_delack_timer, delack_handler,
  254. (unsigned long)sk);
  255. setup_timer(&sk->sk_timer, keepalive_handler, (unsigned long)sk);
  256. icsk->icsk_pending = icsk->icsk_ack.pending = 0;
  257. }
  258. EXPORT_SYMBOL(inet_csk_init_xmit_timers);
  259. void inet_csk_clear_xmit_timers(struct sock *sk)
  260. {
  261. struct inet_connection_sock *icsk = inet_csk(sk);
  262. icsk->icsk_pending = icsk->icsk_ack.pending = icsk->icsk_ack.blocked = 0;
  263. sk_stop_timer(sk, &icsk->icsk_retransmit_timer);
  264. sk_stop_timer(sk, &icsk->icsk_delack_timer);
  265. sk_stop_timer(sk, &sk->sk_timer);
  266. }
  267. EXPORT_SYMBOL(inet_csk_clear_xmit_timers);
  268. void inet_csk_delete_keepalive_timer(struct sock *sk)
  269. {
  270. sk_stop_timer(sk, &sk->sk_timer);
  271. }
  272. EXPORT_SYMBOL(inet_csk_delete_keepalive_timer);
  273. void inet_csk_reset_keepalive_timer(struct sock *sk, unsigned long len)
  274. {
  275. sk_reset_timer(sk, &sk->sk_timer, jiffies + len);
  276. }
  277. EXPORT_SYMBOL(inet_csk_reset_keepalive_timer);
  278. struct dst_entry* inet_csk_route_req(struct sock *sk,
  279. const struct request_sock *req)
  280. {
  281. struct rtable *rt;
  282. const struct inet_request_sock *ireq = inet_rsk(req);
  283. struct ip_options *opt = inet_rsk(req)->opt;
  284. struct flowi fl = { .oif = sk->sk_bound_dev_if,
  285. .nl_u = { .ip4_u =
  286. { .daddr = ((opt && opt->srr) ?
  287. opt->faddr :
  288. ireq->rmt_addr),
  289. .saddr = ireq->loc_addr,
  290. .tos = RT_CONN_FLAGS(sk) } },
  291. .proto = sk->sk_protocol,
  292. .uli_u = { .ports =
  293. { .sport = inet_sk(sk)->sport,
  294. .dport = ireq->rmt_port } } };
  295. security_req_classify_flow(req, &fl);
  296. if (ip_route_output_flow(&init_net, &rt, &fl, sk, 0)) {
  297. IP_INC_STATS_BH(IPSTATS_MIB_OUTNOROUTES);
  298. return NULL;
  299. }
  300. if (opt && opt->is_strictroute && rt->rt_dst != rt->rt_gateway) {
  301. ip_rt_put(rt);
  302. IP_INC_STATS_BH(IPSTATS_MIB_OUTNOROUTES);
  303. return NULL;
  304. }
  305. return &rt->u.dst;
  306. }
  307. EXPORT_SYMBOL_GPL(inet_csk_route_req);
  308. static inline u32 inet_synq_hash(const __be32 raddr, const __be16 rport,
  309. const u32 rnd, const u32 synq_hsize)
  310. {
  311. return jhash_2words((__force u32)raddr, (__force u32)rport, rnd) & (synq_hsize - 1);
  312. }
  313. #if defined(CONFIG_IPV6) || defined(CONFIG_IPV6_MODULE)
  314. #define AF_INET_FAMILY(fam) ((fam) == AF_INET)
  315. #else
  316. #define AF_INET_FAMILY(fam) 1
  317. #endif
  318. struct request_sock *inet_csk_search_req(const struct sock *sk,
  319. struct request_sock ***prevp,
  320. const __be16 rport, const __be32 raddr,
  321. const __be32 laddr)
  322. {
  323. const struct inet_connection_sock *icsk = inet_csk(sk);
  324. struct listen_sock *lopt = icsk->icsk_accept_queue.listen_opt;
  325. struct request_sock *req, **prev;
  326. for (prev = &lopt->syn_table[inet_synq_hash(raddr, rport, lopt->hash_rnd,
  327. lopt->nr_table_entries)];
  328. (req = *prev) != NULL;
  329. prev = &req->dl_next) {
  330. const struct inet_request_sock *ireq = inet_rsk(req);
  331. if (ireq->rmt_port == rport &&
  332. ireq->rmt_addr == raddr &&
  333. ireq->loc_addr == laddr &&
  334. AF_INET_FAMILY(req->rsk_ops->family)) {
  335. BUG_TRAP(!req->sk);
  336. *prevp = prev;
  337. break;
  338. }
  339. }
  340. return req;
  341. }
  342. EXPORT_SYMBOL_GPL(inet_csk_search_req);
  343. void inet_csk_reqsk_queue_hash_add(struct sock *sk, struct request_sock *req,
  344. unsigned long timeout)
  345. {
  346. struct inet_connection_sock *icsk = inet_csk(sk);
  347. struct listen_sock *lopt = icsk->icsk_accept_queue.listen_opt;
  348. const u32 h = inet_synq_hash(inet_rsk(req)->rmt_addr, inet_rsk(req)->rmt_port,
  349. lopt->hash_rnd, lopt->nr_table_entries);
  350. reqsk_queue_hash_req(&icsk->icsk_accept_queue, h, req, timeout);
  351. inet_csk_reqsk_queue_added(sk, timeout);
  352. }
  353. /* Only thing we need from tcp.h */
  354. extern int sysctl_tcp_synack_retries;
  355. EXPORT_SYMBOL_GPL(inet_csk_reqsk_queue_hash_add);
  356. void inet_csk_reqsk_queue_prune(struct sock *parent,
  357. const unsigned long interval,
  358. const unsigned long timeout,
  359. const unsigned long max_rto)
  360. {
  361. struct inet_connection_sock *icsk = inet_csk(parent);
  362. struct request_sock_queue *queue = &icsk->icsk_accept_queue;
  363. struct listen_sock *lopt = queue->listen_opt;
  364. int max_retries = icsk->icsk_syn_retries ? : sysctl_tcp_synack_retries;
  365. int thresh = max_retries;
  366. unsigned long now = jiffies;
  367. struct request_sock **reqp, *req;
  368. int i, budget;
  369. if (lopt == NULL || lopt->qlen == 0)
  370. return;
  371. /* Normally all the openreqs are young and become mature
  372. * (i.e. converted to established socket) for first timeout.
  373. * If synack was not acknowledged for 3 seconds, it means
  374. * one of the following things: synack was lost, ack was lost,
  375. * rtt is high or nobody planned to ack (i.e. synflood).
  376. * When server is a bit loaded, queue is populated with old
  377. * open requests, reducing effective size of queue.
  378. * When server is well loaded, queue size reduces to zero
  379. * after several minutes of work. It is not synflood,
  380. * it is normal operation. The solution is pruning
  381. * too old entries overriding normal timeout, when
  382. * situation becomes dangerous.
  383. *
  384. * Essentially, we reserve half of room for young
  385. * embrions; and abort old ones without pity, if old
  386. * ones are about to clog our table.
  387. */
  388. if (lopt->qlen>>(lopt->max_qlen_log-1)) {
  389. int young = (lopt->qlen_young<<1);
  390. while (thresh > 2) {
  391. if (lopt->qlen < young)
  392. break;
  393. thresh--;
  394. young <<= 1;
  395. }
  396. }
  397. if (queue->rskq_defer_accept)
  398. max_retries = queue->rskq_defer_accept;
  399. budget = 2 * (lopt->nr_table_entries / (timeout / interval));
  400. i = lopt->clock_hand;
  401. do {
  402. reqp=&lopt->syn_table[i];
  403. while ((req = *reqp) != NULL) {
  404. if (time_after_eq(now, req->expires)) {
  405. if ((req->retrans < thresh ||
  406. (inet_rsk(req)->acked && req->retrans < max_retries))
  407. && !req->rsk_ops->rtx_syn_ack(parent, req, NULL)) {
  408. unsigned long timeo;
  409. if (req->retrans++ == 0)
  410. lopt->qlen_young--;
  411. timeo = min((timeout << req->retrans), max_rto);
  412. req->expires = now + timeo;
  413. reqp = &req->dl_next;
  414. continue;
  415. }
  416. /* Drop this request */
  417. inet_csk_reqsk_queue_unlink(parent, req, reqp);
  418. reqsk_queue_removed(queue, req);
  419. reqsk_free(req);
  420. continue;
  421. }
  422. reqp = &req->dl_next;
  423. }
  424. i = (i + 1) & (lopt->nr_table_entries - 1);
  425. } while (--budget > 0);
  426. lopt->clock_hand = i;
  427. if (lopt->qlen)
  428. inet_csk_reset_keepalive_timer(parent, interval);
  429. }
  430. EXPORT_SYMBOL_GPL(inet_csk_reqsk_queue_prune);
  431. struct sock *inet_csk_clone(struct sock *sk, const struct request_sock *req,
  432. const gfp_t priority)
  433. {
  434. struct sock *newsk = sk_clone(sk, priority);
  435. if (newsk != NULL) {
  436. struct inet_connection_sock *newicsk = inet_csk(newsk);
  437. newsk->sk_state = TCP_SYN_RECV;
  438. newicsk->icsk_bind_hash = NULL;
  439. inet_sk(newsk)->dport = inet_rsk(req)->rmt_port;
  440. newsk->sk_write_space = sk_stream_write_space;
  441. newicsk->icsk_retransmits = 0;
  442. newicsk->icsk_backoff = 0;
  443. newicsk->icsk_probes_out = 0;
  444. /* Deinitialize accept_queue to trap illegal accesses. */
  445. memset(&newicsk->icsk_accept_queue, 0, sizeof(newicsk->icsk_accept_queue));
  446. security_inet_csk_clone(newsk, req);
  447. }
  448. return newsk;
  449. }
  450. EXPORT_SYMBOL_GPL(inet_csk_clone);
  451. /*
  452. * At this point, there should be no process reference to this
  453. * socket, and thus no user references at all. Therefore we
  454. * can assume the socket waitqueue is inactive and nobody will
  455. * try to jump onto it.
  456. */
  457. void inet_csk_destroy_sock(struct sock *sk)
  458. {
  459. BUG_TRAP(sk->sk_state == TCP_CLOSE);
  460. BUG_TRAP(sock_flag(sk, SOCK_DEAD));
  461. /* It cannot be in hash table! */
  462. BUG_TRAP(sk_unhashed(sk));
  463. /* If it has not 0 inet_sk(sk)->num, it must be bound */
  464. BUG_TRAP(!inet_sk(sk)->num || inet_csk(sk)->icsk_bind_hash);
  465. sk->sk_prot->destroy(sk);
  466. sk_stream_kill_queues(sk);
  467. xfrm_sk_free_policy(sk);
  468. sk_refcnt_debug_release(sk);
  469. atomic_dec(sk->sk_prot->orphan_count);
  470. sock_put(sk);
  471. }
  472. EXPORT_SYMBOL(inet_csk_destroy_sock);
  473. int inet_csk_listen_start(struct sock *sk, const int nr_table_entries)
  474. {
  475. struct inet_sock *inet = inet_sk(sk);
  476. struct inet_connection_sock *icsk = inet_csk(sk);
  477. int rc = reqsk_queue_alloc(&icsk->icsk_accept_queue, nr_table_entries);
  478. if (rc != 0)
  479. return rc;
  480. sk->sk_max_ack_backlog = 0;
  481. sk->sk_ack_backlog = 0;
  482. inet_csk_delack_init(sk);
  483. /* There is race window here: we announce ourselves listening,
  484. * but this transition is still not validated by get_port().
  485. * It is OK, because this socket enters to hash table only
  486. * after validation is complete.
  487. */
  488. sk->sk_state = TCP_LISTEN;
  489. if (!sk->sk_prot->get_port(sk, inet->num)) {
  490. inet->sport = htons(inet->num);
  491. sk_dst_reset(sk);
  492. sk->sk_prot->hash(sk);
  493. return 0;
  494. }
  495. sk->sk_state = TCP_CLOSE;
  496. __reqsk_queue_destroy(&icsk->icsk_accept_queue);
  497. return -EADDRINUSE;
  498. }
  499. EXPORT_SYMBOL_GPL(inet_csk_listen_start);
  500. /*
  501. * This routine closes sockets which have been at least partially
  502. * opened, but not yet accepted.
  503. */
  504. void inet_csk_listen_stop(struct sock *sk)
  505. {
  506. struct inet_connection_sock *icsk = inet_csk(sk);
  507. struct request_sock *acc_req;
  508. struct request_sock *req;
  509. inet_csk_delete_keepalive_timer(sk);
  510. /* make all the listen_opt local to us */
  511. acc_req = reqsk_queue_yank_acceptq(&icsk->icsk_accept_queue);
  512. /* Following specs, it would be better either to send FIN
  513. * (and enter FIN-WAIT-1, it is normal close)
  514. * or to send active reset (abort).
  515. * Certainly, it is pretty dangerous while synflood, but it is
  516. * bad justification for our negligence 8)
  517. * To be honest, we are not able to make either
  518. * of the variants now. --ANK
  519. */
  520. reqsk_queue_destroy(&icsk->icsk_accept_queue);
  521. while ((req = acc_req) != NULL) {
  522. struct sock *child = req->sk;
  523. acc_req = req->dl_next;
  524. local_bh_disable();
  525. bh_lock_sock(child);
  526. BUG_TRAP(!sock_owned_by_user(child));
  527. sock_hold(child);
  528. sk->sk_prot->disconnect(child, O_NONBLOCK);
  529. sock_orphan(child);
  530. atomic_inc(sk->sk_prot->orphan_count);
  531. inet_csk_destroy_sock(child);
  532. bh_unlock_sock(child);
  533. local_bh_enable();
  534. sock_put(child);
  535. sk_acceptq_removed(sk);
  536. __reqsk_free(req);
  537. }
  538. BUG_TRAP(!sk->sk_ack_backlog);
  539. }
  540. EXPORT_SYMBOL_GPL(inet_csk_listen_stop);
  541. void inet_csk_addr2sockaddr(struct sock *sk, struct sockaddr *uaddr)
  542. {
  543. struct sockaddr_in *sin = (struct sockaddr_in *)uaddr;
  544. const struct inet_sock *inet = inet_sk(sk);
  545. sin->sin_family = AF_INET;
  546. sin->sin_addr.s_addr = inet->daddr;
  547. sin->sin_port = inet->dport;
  548. }
  549. EXPORT_SYMBOL_GPL(inet_csk_addr2sockaddr);
  550. int inet_csk_ctl_sock_create(struct socket **sock, unsigned short family,
  551. unsigned short type, unsigned char protocol)
  552. {
  553. int rc = sock_create_kern(family, type, protocol, sock);
  554. if (rc == 0) {
  555. (*sock)->sk->sk_allocation = GFP_ATOMIC;
  556. inet_sk((*sock)->sk)->uc_ttl = -1;
  557. /*
  558. * Unhash it so that IP input processing does not even see it,
  559. * we do not wish this socket to see incoming packets.
  560. */
  561. (*sock)->sk->sk_prot->unhash((*sock)->sk);
  562. }
  563. return rc;
  564. }
  565. EXPORT_SYMBOL_GPL(inet_csk_ctl_sock_create);
  566. #ifdef CONFIG_COMPAT
  567. int inet_csk_compat_getsockopt(struct sock *sk, int level, int optname,
  568. char __user *optval, int __user *optlen)
  569. {
  570. const struct inet_connection_sock *icsk = inet_csk(sk);
  571. if (icsk->icsk_af_ops->compat_getsockopt != NULL)
  572. return icsk->icsk_af_ops->compat_getsockopt(sk, level, optname,
  573. optval, optlen);
  574. return icsk->icsk_af_ops->getsockopt(sk, level, optname,
  575. optval, optlen);
  576. }
  577. EXPORT_SYMBOL_GPL(inet_csk_compat_getsockopt);
  578. int inet_csk_compat_setsockopt(struct sock *sk, int level, int optname,
  579. char __user *optval, int optlen)
  580. {
  581. const struct inet_connection_sock *icsk = inet_csk(sk);
  582. if (icsk->icsk_af_ops->compat_setsockopt != NULL)
  583. return icsk->icsk_af_ops->compat_setsockopt(sk, level, optname,
  584. optval, optlen);
  585. return icsk->icsk_af_ops->setsockopt(sk, level, optname,
  586. optval, optlen);
  587. }
  588. EXPORT_SYMBOL_GPL(inet_csk_compat_setsockopt);
  589. #endif