sm_sideeffect.c 46 KB

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  1. /* SCTP kernel implementation
  2. * (C) Copyright IBM Corp. 2001, 2004
  3. * Copyright (c) 1999 Cisco, Inc.
  4. * Copyright (c) 1999-2001 Motorola, Inc.
  5. *
  6. * This file is part of the SCTP kernel implementation
  7. *
  8. * These functions work with the state functions in sctp_sm_statefuns.c
  9. * to implement that state operations. These functions implement the
  10. * steps which require modifying existing data structures.
  11. *
  12. * This SCTP implementation is free software;
  13. * you can redistribute it and/or modify it under the terms of
  14. * the GNU General Public License as published by
  15. * the Free Software Foundation; either version 2, or (at your option)
  16. * any later version.
  17. *
  18. * This SCTP implementation is distributed in the hope that it
  19. * will be useful, but WITHOUT ANY WARRANTY; without even the implied
  20. * ************************
  21. * warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.
  22. * See the GNU General Public License for more details.
  23. *
  24. * You should have received a copy of the GNU General Public License
  25. * along with GNU CC; see the file COPYING. If not, write to
  26. * the Free Software Foundation, 59 Temple Place - Suite 330,
  27. * Boston, MA 02111-1307, USA.
  28. *
  29. * Please send any bug reports or fixes you make to the
  30. * email address(es):
  31. * lksctp developers <lksctp-developers@lists.sourceforge.net>
  32. *
  33. * Or submit a bug report through the following website:
  34. * http://www.sf.net/projects/lksctp
  35. *
  36. * Written or modified by:
  37. * La Monte H.P. Yarroll <piggy@acm.org>
  38. * Karl Knutson <karl@athena.chicago.il.us>
  39. * Jon Grimm <jgrimm@austin.ibm.com>
  40. * Hui Huang <hui.huang@nokia.com>
  41. * Dajiang Zhang <dajiang.zhang@nokia.com>
  42. * Daisy Chang <daisyc@us.ibm.com>
  43. * Sridhar Samudrala <sri@us.ibm.com>
  44. * Ardelle Fan <ardelle.fan@intel.com>
  45. *
  46. * Any bugs reported given to us we will try to fix... any fixes shared will
  47. * be incorporated into the next SCTP release.
  48. */
  49. #include <linux/skbuff.h>
  50. #include <linux/types.h>
  51. #include <linux/socket.h>
  52. #include <linux/ip.h>
  53. #include <net/sock.h>
  54. #include <net/sctp/sctp.h>
  55. #include <net/sctp/sm.h>
  56. static int sctp_cmd_interpreter(sctp_event_t event_type,
  57. sctp_subtype_t subtype,
  58. sctp_state_t state,
  59. struct sctp_endpoint *ep,
  60. struct sctp_association *asoc,
  61. void *event_arg,
  62. sctp_disposition_t status,
  63. sctp_cmd_seq_t *commands,
  64. gfp_t gfp);
  65. static int sctp_side_effects(sctp_event_t event_type, sctp_subtype_t subtype,
  66. sctp_state_t state,
  67. struct sctp_endpoint *ep,
  68. struct sctp_association *asoc,
  69. void *event_arg,
  70. sctp_disposition_t status,
  71. sctp_cmd_seq_t *commands,
  72. gfp_t gfp);
  73. /********************************************************************
  74. * Helper functions
  75. ********************************************************************/
  76. /* A helper function for delayed processing of INET ECN CE bit. */
  77. static void sctp_do_ecn_ce_work(struct sctp_association *asoc,
  78. __u32 lowest_tsn)
  79. {
  80. /* Save the TSN away for comparison when we receive CWR */
  81. asoc->last_ecne_tsn = lowest_tsn;
  82. asoc->need_ecne = 1;
  83. }
  84. /* Helper function for delayed processing of SCTP ECNE chunk. */
  85. /* RFC 2960 Appendix A
  86. *
  87. * RFC 2481 details a specific bit for a sender to send in
  88. * the header of its next outbound TCP segment to indicate to
  89. * its peer that it has reduced its congestion window. This
  90. * is termed the CWR bit. For SCTP the same indication is made
  91. * by including the CWR chunk. This chunk contains one data
  92. * element, i.e. the TSN number that was sent in the ECNE chunk.
  93. * This element represents the lowest TSN number in the datagram
  94. * that was originally marked with the CE bit.
  95. */
  96. static struct sctp_chunk *sctp_do_ecn_ecne_work(struct sctp_association *asoc,
  97. __u32 lowest_tsn,
  98. struct sctp_chunk *chunk)
  99. {
  100. struct sctp_chunk *repl;
  101. /* Our previously transmitted packet ran into some congestion
  102. * so we should take action by reducing cwnd and ssthresh
  103. * and then ACK our peer that we we've done so by
  104. * sending a CWR.
  105. */
  106. /* First, try to determine if we want to actually lower
  107. * our cwnd variables. Only lower them if the ECNE looks more
  108. * recent than the last response.
  109. */
  110. if (TSN_lt(asoc->last_cwr_tsn, lowest_tsn)) {
  111. struct sctp_transport *transport;
  112. /* Find which transport's congestion variables
  113. * need to be adjusted.
  114. */
  115. transport = sctp_assoc_lookup_tsn(asoc, lowest_tsn);
  116. /* Update the congestion variables. */
  117. if (transport)
  118. sctp_transport_lower_cwnd(transport,
  119. SCTP_LOWER_CWND_ECNE);
  120. asoc->last_cwr_tsn = lowest_tsn;
  121. }
  122. /* Always try to quiet the other end. In case of lost CWR,
  123. * resend last_cwr_tsn.
  124. */
  125. repl = sctp_make_cwr(asoc, asoc->last_cwr_tsn, chunk);
  126. /* If we run out of memory, it will look like a lost CWR. We'll
  127. * get back in sync eventually.
  128. */
  129. return repl;
  130. }
  131. /* Helper function to do delayed processing of ECN CWR chunk. */
  132. static void sctp_do_ecn_cwr_work(struct sctp_association *asoc,
  133. __u32 lowest_tsn)
  134. {
  135. /* Turn off ECNE getting auto-prepended to every outgoing
  136. * packet
  137. */
  138. asoc->need_ecne = 0;
  139. }
  140. /* Generate SACK if necessary. We call this at the end of a packet. */
  141. static int sctp_gen_sack(struct sctp_association *asoc, int force,
  142. sctp_cmd_seq_t *commands)
  143. {
  144. __u32 ctsn, max_tsn_seen;
  145. struct sctp_chunk *sack;
  146. struct sctp_transport *trans = asoc->peer.last_data_from;
  147. int error = 0;
  148. if (force ||
  149. (!trans && (asoc->param_flags & SPP_SACKDELAY_DISABLE)) ||
  150. (trans && (trans->param_flags & SPP_SACKDELAY_DISABLE)))
  151. asoc->peer.sack_needed = 1;
  152. ctsn = sctp_tsnmap_get_ctsn(&asoc->peer.tsn_map);
  153. max_tsn_seen = sctp_tsnmap_get_max_tsn_seen(&asoc->peer.tsn_map);
  154. /* From 12.2 Parameters necessary per association (i.e. the TCB):
  155. *
  156. * Ack State : This flag indicates if the next received packet
  157. * : is to be responded to with a SACK. ...
  158. * : When DATA chunks are out of order, SACK's
  159. * : are not delayed (see Section 6).
  160. *
  161. * [This is actually not mentioned in Section 6, but we
  162. * implement it here anyway. --piggy]
  163. */
  164. if (max_tsn_seen != ctsn)
  165. asoc->peer.sack_needed = 1;
  166. /* From 6.2 Acknowledgement on Reception of DATA Chunks:
  167. *
  168. * Section 4.2 of [RFC2581] SHOULD be followed. Specifically,
  169. * an acknowledgement SHOULD be generated for at least every
  170. * second packet (not every second DATA chunk) received, and
  171. * SHOULD be generated within 200 ms of the arrival of any
  172. * unacknowledged DATA chunk. ...
  173. */
  174. if (!asoc->peer.sack_needed) {
  175. asoc->peer.sack_cnt++;
  176. /* Set the SACK delay timeout based on the
  177. * SACK delay for the last transport
  178. * data was received from, or the default
  179. * for the association.
  180. */
  181. if (trans) {
  182. /* We will need a SACK for the next packet. */
  183. if (asoc->peer.sack_cnt >= trans->sackfreq - 1)
  184. asoc->peer.sack_needed = 1;
  185. asoc->timeouts[SCTP_EVENT_TIMEOUT_SACK] =
  186. trans->sackdelay;
  187. } else {
  188. /* We will need a SACK for the next packet. */
  189. if (asoc->peer.sack_cnt >= asoc->sackfreq - 1)
  190. asoc->peer.sack_needed = 1;
  191. asoc->timeouts[SCTP_EVENT_TIMEOUT_SACK] =
  192. asoc->sackdelay;
  193. }
  194. /* Restart the SACK timer. */
  195. sctp_add_cmd_sf(commands, SCTP_CMD_TIMER_RESTART,
  196. SCTP_TO(SCTP_EVENT_TIMEOUT_SACK));
  197. } else {
  198. if (asoc->a_rwnd > asoc->rwnd)
  199. asoc->a_rwnd = asoc->rwnd;
  200. sack = sctp_make_sack(asoc);
  201. if (!sack)
  202. goto nomem;
  203. asoc->peer.sack_needed = 0;
  204. asoc->peer.sack_cnt = 0;
  205. sctp_add_cmd_sf(commands, SCTP_CMD_REPLY, SCTP_CHUNK(sack));
  206. /* Stop the SACK timer. */
  207. sctp_add_cmd_sf(commands, SCTP_CMD_TIMER_STOP,
  208. SCTP_TO(SCTP_EVENT_TIMEOUT_SACK));
  209. }
  210. return error;
  211. nomem:
  212. error = -ENOMEM;
  213. return error;
  214. }
  215. /* When the T3-RTX timer expires, it calls this function to create the
  216. * relevant state machine event.
  217. */
  218. void sctp_generate_t3_rtx_event(unsigned long peer)
  219. {
  220. int error;
  221. struct sctp_transport *transport = (struct sctp_transport *) peer;
  222. struct sctp_association *asoc = transport->asoc;
  223. /* Check whether a task is in the sock. */
  224. sctp_bh_lock_sock(asoc->base.sk);
  225. if (sock_owned_by_user(asoc->base.sk)) {
  226. SCTP_DEBUG_PRINTK("%s:Sock is busy.\n", __func__);
  227. /* Try again later. */
  228. if (!mod_timer(&transport->T3_rtx_timer, jiffies + (HZ/20)))
  229. sctp_transport_hold(transport);
  230. goto out_unlock;
  231. }
  232. /* Is this transport really dead and just waiting around for
  233. * the timer to let go of the reference?
  234. */
  235. if (transport->dead)
  236. goto out_unlock;
  237. /* Run through the state machine. */
  238. error = sctp_do_sm(SCTP_EVENT_T_TIMEOUT,
  239. SCTP_ST_TIMEOUT(SCTP_EVENT_TIMEOUT_T3_RTX),
  240. asoc->state,
  241. asoc->ep, asoc,
  242. transport, GFP_ATOMIC);
  243. if (error)
  244. asoc->base.sk->sk_err = -error;
  245. out_unlock:
  246. sctp_bh_unlock_sock(asoc->base.sk);
  247. sctp_transport_put(transport);
  248. }
  249. /* This is a sa interface for producing timeout events. It works
  250. * for timeouts which use the association as their parameter.
  251. */
  252. static void sctp_generate_timeout_event(struct sctp_association *asoc,
  253. sctp_event_timeout_t timeout_type)
  254. {
  255. int error = 0;
  256. sctp_bh_lock_sock(asoc->base.sk);
  257. if (sock_owned_by_user(asoc->base.sk)) {
  258. SCTP_DEBUG_PRINTK("%s:Sock is busy: timer %d\n",
  259. __func__,
  260. timeout_type);
  261. /* Try again later. */
  262. if (!mod_timer(&asoc->timers[timeout_type], jiffies + (HZ/20)))
  263. sctp_association_hold(asoc);
  264. goto out_unlock;
  265. }
  266. /* Is this association really dead and just waiting around for
  267. * the timer to let go of the reference?
  268. */
  269. if (asoc->base.dead)
  270. goto out_unlock;
  271. /* Run through the state machine. */
  272. error = sctp_do_sm(SCTP_EVENT_T_TIMEOUT,
  273. SCTP_ST_TIMEOUT(timeout_type),
  274. asoc->state, asoc->ep, asoc,
  275. (void *)timeout_type, GFP_ATOMIC);
  276. if (error)
  277. asoc->base.sk->sk_err = -error;
  278. out_unlock:
  279. sctp_bh_unlock_sock(asoc->base.sk);
  280. sctp_association_put(asoc);
  281. }
  282. static void sctp_generate_t1_cookie_event(unsigned long data)
  283. {
  284. struct sctp_association *asoc = (struct sctp_association *) data;
  285. sctp_generate_timeout_event(asoc, SCTP_EVENT_TIMEOUT_T1_COOKIE);
  286. }
  287. static void sctp_generate_t1_init_event(unsigned long data)
  288. {
  289. struct sctp_association *asoc = (struct sctp_association *) data;
  290. sctp_generate_timeout_event(asoc, SCTP_EVENT_TIMEOUT_T1_INIT);
  291. }
  292. static void sctp_generate_t2_shutdown_event(unsigned long data)
  293. {
  294. struct sctp_association *asoc = (struct sctp_association *) data;
  295. sctp_generate_timeout_event(asoc, SCTP_EVENT_TIMEOUT_T2_SHUTDOWN);
  296. }
  297. static void sctp_generate_t4_rto_event(unsigned long data)
  298. {
  299. struct sctp_association *asoc = (struct sctp_association *) data;
  300. sctp_generate_timeout_event(asoc, SCTP_EVENT_TIMEOUT_T4_RTO);
  301. }
  302. static void sctp_generate_t5_shutdown_guard_event(unsigned long data)
  303. {
  304. struct sctp_association *asoc = (struct sctp_association *)data;
  305. sctp_generate_timeout_event(asoc,
  306. SCTP_EVENT_TIMEOUT_T5_SHUTDOWN_GUARD);
  307. } /* sctp_generate_t5_shutdown_guard_event() */
  308. static void sctp_generate_autoclose_event(unsigned long data)
  309. {
  310. struct sctp_association *asoc = (struct sctp_association *) data;
  311. sctp_generate_timeout_event(asoc, SCTP_EVENT_TIMEOUT_AUTOCLOSE);
  312. }
  313. /* Generate a heart beat event. If the sock is busy, reschedule. Make
  314. * sure that the transport is still valid.
  315. */
  316. void sctp_generate_heartbeat_event(unsigned long data)
  317. {
  318. int error = 0;
  319. struct sctp_transport *transport = (struct sctp_transport *) data;
  320. struct sctp_association *asoc = transport->asoc;
  321. sctp_bh_lock_sock(asoc->base.sk);
  322. if (sock_owned_by_user(asoc->base.sk)) {
  323. SCTP_DEBUG_PRINTK("%s:Sock is busy.\n", __func__);
  324. /* Try again later. */
  325. if (!mod_timer(&transport->hb_timer, jiffies + (HZ/20)))
  326. sctp_transport_hold(transport);
  327. goto out_unlock;
  328. }
  329. /* Is this structure just waiting around for us to actually
  330. * get destroyed?
  331. */
  332. if (transport->dead)
  333. goto out_unlock;
  334. error = sctp_do_sm(SCTP_EVENT_T_TIMEOUT,
  335. SCTP_ST_TIMEOUT(SCTP_EVENT_TIMEOUT_HEARTBEAT),
  336. asoc->state, asoc->ep, asoc,
  337. transport, GFP_ATOMIC);
  338. if (error)
  339. asoc->base.sk->sk_err = -error;
  340. out_unlock:
  341. sctp_bh_unlock_sock(asoc->base.sk);
  342. sctp_transport_put(transport);
  343. }
  344. /* Inject a SACK Timeout event into the state machine. */
  345. static void sctp_generate_sack_event(unsigned long data)
  346. {
  347. struct sctp_association *asoc = (struct sctp_association *) data;
  348. sctp_generate_timeout_event(asoc, SCTP_EVENT_TIMEOUT_SACK);
  349. }
  350. sctp_timer_event_t *sctp_timer_events[SCTP_NUM_TIMEOUT_TYPES] = {
  351. NULL,
  352. sctp_generate_t1_cookie_event,
  353. sctp_generate_t1_init_event,
  354. sctp_generate_t2_shutdown_event,
  355. NULL,
  356. sctp_generate_t4_rto_event,
  357. sctp_generate_t5_shutdown_guard_event,
  358. NULL,
  359. sctp_generate_sack_event,
  360. sctp_generate_autoclose_event,
  361. };
  362. /* RFC 2960 8.2 Path Failure Detection
  363. *
  364. * When its peer endpoint is multi-homed, an endpoint should keep a
  365. * error counter for each of the destination transport addresses of the
  366. * peer endpoint.
  367. *
  368. * Each time the T3-rtx timer expires on any address, or when a
  369. * HEARTBEAT sent to an idle address is not acknowledged within a RTO,
  370. * the error counter of that destination address will be incremented.
  371. * When the value in the error counter exceeds the protocol parameter
  372. * 'Path.Max.Retrans' of that destination address, the endpoint should
  373. * mark the destination transport address as inactive, and a
  374. * notification SHOULD be sent to the upper layer.
  375. *
  376. */
  377. static void sctp_do_8_2_transport_strike(struct sctp_association *asoc,
  378. struct sctp_transport *transport,
  379. int is_hb)
  380. {
  381. /* The check for association's overall error counter exceeding the
  382. * threshold is done in the state function.
  383. */
  384. /* We are here due to a timer expiration. If the timer was
  385. * not a HEARTBEAT, then normal error tracking is done.
  386. * If the timer was a heartbeat, we only increment error counts
  387. * when we already have an outstanding HEARTBEAT that has not
  388. * been acknowledged.
  389. * Additionaly, some tranport states inhibit error increments.
  390. */
  391. if (!is_hb) {
  392. asoc->overall_error_count++;
  393. if (transport->state != SCTP_INACTIVE)
  394. transport->error_count++;
  395. } else if (transport->hb_sent) {
  396. if (transport->state != SCTP_UNCONFIRMED)
  397. asoc->overall_error_count++;
  398. if (transport->state != SCTP_INACTIVE)
  399. transport->error_count++;
  400. }
  401. if (transport->state != SCTP_INACTIVE &&
  402. (transport->error_count > transport->pathmaxrxt)) {
  403. SCTP_DEBUG_PRINTK_IPADDR("transport_strike:association %p",
  404. " transport IP: port:%d failed.\n",
  405. asoc,
  406. (&transport->ipaddr),
  407. ntohs(transport->ipaddr.v4.sin_port));
  408. sctp_assoc_control_transport(asoc, transport,
  409. SCTP_TRANSPORT_DOWN,
  410. SCTP_FAILED_THRESHOLD);
  411. }
  412. /* E2) For the destination address for which the timer
  413. * expires, set RTO <- RTO * 2 ("back off the timer"). The
  414. * maximum value discussed in rule C7 above (RTO.max) may be
  415. * used to provide an upper bound to this doubling operation.
  416. *
  417. * Special Case: the first HB doesn't trigger exponential backoff.
  418. * The first unacknowleged HB triggers it. We do this with a flag
  419. * that indicates that we have an outstanding HB.
  420. */
  421. if (!is_hb || transport->hb_sent) {
  422. transport->last_rto = transport->rto;
  423. transport->rto = min((transport->rto * 2), transport->asoc->rto_max);
  424. }
  425. }
  426. /* Worker routine to handle INIT command failure. */
  427. static void sctp_cmd_init_failed(sctp_cmd_seq_t *commands,
  428. struct sctp_association *asoc,
  429. unsigned error)
  430. {
  431. struct sctp_ulpevent *event;
  432. event = sctp_ulpevent_make_assoc_change(asoc,0, SCTP_CANT_STR_ASSOC,
  433. (__u16)error, 0, 0, NULL,
  434. GFP_ATOMIC);
  435. if (event)
  436. sctp_add_cmd_sf(commands, SCTP_CMD_EVENT_ULP,
  437. SCTP_ULPEVENT(event));
  438. sctp_add_cmd_sf(commands, SCTP_CMD_NEW_STATE,
  439. SCTP_STATE(SCTP_STATE_CLOSED));
  440. /* SEND_FAILED sent later when cleaning up the association. */
  441. asoc->outqueue.error = error;
  442. sctp_add_cmd_sf(commands, SCTP_CMD_DELETE_TCB, SCTP_NULL());
  443. }
  444. /* Worker routine to handle SCTP_CMD_ASSOC_FAILED. */
  445. static void sctp_cmd_assoc_failed(sctp_cmd_seq_t *commands,
  446. struct sctp_association *asoc,
  447. sctp_event_t event_type,
  448. sctp_subtype_t subtype,
  449. struct sctp_chunk *chunk,
  450. unsigned error)
  451. {
  452. struct sctp_ulpevent *event;
  453. /* Cancel any partial delivery in progress. */
  454. sctp_ulpq_abort_pd(&asoc->ulpq, GFP_ATOMIC);
  455. if (event_type == SCTP_EVENT_T_CHUNK && subtype.chunk == SCTP_CID_ABORT)
  456. event = sctp_ulpevent_make_assoc_change(asoc, 0, SCTP_COMM_LOST,
  457. (__u16)error, 0, 0, chunk,
  458. GFP_ATOMIC);
  459. else
  460. event = sctp_ulpevent_make_assoc_change(asoc, 0, SCTP_COMM_LOST,
  461. (__u16)error, 0, 0, NULL,
  462. GFP_ATOMIC);
  463. if (event)
  464. sctp_add_cmd_sf(commands, SCTP_CMD_EVENT_ULP,
  465. SCTP_ULPEVENT(event));
  466. sctp_add_cmd_sf(commands, SCTP_CMD_NEW_STATE,
  467. SCTP_STATE(SCTP_STATE_CLOSED));
  468. /* SEND_FAILED sent later when cleaning up the association. */
  469. asoc->outqueue.error = error;
  470. sctp_add_cmd_sf(commands, SCTP_CMD_DELETE_TCB, SCTP_NULL());
  471. }
  472. /* Process an init chunk (may be real INIT/INIT-ACK or an embedded INIT
  473. * inside the cookie. In reality, this is only used for INIT-ACK processing
  474. * since all other cases use "temporary" associations and can do all
  475. * their work in statefuns directly.
  476. */
  477. static int sctp_cmd_process_init(sctp_cmd_seq_t *commands,
  478. struct sctp_association *asoc,
  479. struct sctp_chunk *chunk,
  480. sctp_init_chunk_t *peer_init,
  481. gfp_t gfp)
  482. {
  483. int error;
  484. /* We only process the init as a sideeffect in a single
  485. * case. This is when we process the INIT-ACK. If we
  486. * fail during INIT processing (due to malloc problems),
  487. * just return the error and stop processing the stack.
  488. */
  489. if (!sctp_process_init(asoc, chunk->chunk_hdr->type,
  490. sctp_source(chunk), peer_init, gfp))
  491. error = -ENOMEM;
  492. else
  493. error = 0;
  494. return error;
  495. }
  496. /* Helper function to break out starting up of heartbeat timers. */
  497. static void sctp_cmd_hb_timers_start(sctp_cmd_seq_t *cmds,
  498. struct sctp_association *asoc)
  499. {
  500. struct sctp_transport *t;
  501. /* Start a heartbeat timer for each transport on the association.
  502. * hold a reference on the transport to make sure none of
  503. * the needed data structures go away.
  504. */
  505. list_for_each_entry(t, &asoc->peer.transport_addr_list, transports) {
  506. if (!mod_timer(&t->hb_timer, sctp_transport_timeout(t)))
  507. sctp_transport_hold(t);
  508. }
  509. }
  510. static void sctp_cmd_hb_timers_stop(sctp_cmd_seq_t *cmds,
  511. struct sctp_association *asoc)
  512. {
  513. struct sctp_transport *t;
  514. /* Stop all heartbeat timers. */
  515. list_for_each_entry(t, &asoc->peer.transport_addr_list,
  516. transports) {
  517. if (del_timer(&t->hb_timer))
  518. sctp_transport_put(t);
  519. }
  520. }
  521. /* Helper function to stop any pending T3-RTX timers */
  522. static void sctp_cmd_t3_rtx_timers_stop(sctp_cmd_seq_t *cmds,
  523. struct sctp_association *asoc)
  524. {
  525. struct sctp_transport *t;
  526. list_for_each_entry(t, &asoc->peer.transport_addr_list,
  527. transports) {
  528. if (timer_pending(&t->T3_rtx_timer) &&
  529. del_timer(&t->T3_rtx_timer)) {
  530. sctp_transport_put(t);
  531. }
  532. }
  533. }
  534. /* Helper function to update the heartbeat timer. */
  535. static void sctp_cmd_hb_timer_update(sctp_cmd_seq_t *cmds,
  536. struct sctp_transport *t)
  537. {
  538. /* Update the heartbeat timer. */
  539. if (!mod_timer(&t->hb_timer, sctp_transport_timeout(t)))
  540. sctp_transport_hold(t);
  541. }
  542. /* Helper function to handle the reception of an HEARTBEAT ACK. */
  543. static void sctp_cmd_transport_on(sctp_cmd_seq_t *cmds,
  544. struct sctp_association *asoc,
  545. struct sctp_transport *t,
  546. struct sctp_chunk *chunk)
  547. {
  548. sctp_sender_hb_info_t *hbinfo;
  549. /* 8.3 Upon the receipt of the HEARTBEAT ACK, the sender of the
  550. * HEARTBEAT should clear the error counter of the destination
  551. * transport address to which the HEARTBEAT was sent.
  552. * The association's overall error count is also cleared.
  553. */
  554. t->error_count = 0;
  555. t->asoc->overall_error_count = 0;
  556. /* Clear the hb_sent flag to signal that we had a good
  557. * acknowledgement.
  558. */
  559. t->hb_sent = 0;
  560. /* Mark the destination transport address as active if it is not so
  561. * marked.
  562. */
  563. if ((t->state == SCTP_INACTIVE) || (t->state == SCTP_UNCONFIRMED))
  564. sctp_assoc_control_transport(asoc, t, SCTP_TRANSPORT_UP,
  565. SCTP_HEARTBEAT_SUCCESS);
  566. /* The receiver of the HEARTBEAT ACK should also perform an
  567. * RTT measurement for that destination transport address
  568. * using the time value carried in the HEARTBEAT ACK chunk.
  569. * If the transport's rto_pending variable has been cleared,
  570. * it was most likely due to a retransmit. However, we want
  571. * to re-enable it to properly update the rto.
  572. */
  573. if (t->rto_pending == 0)
  574. t->rto_pending = 1;
  575. hbinfo = (sctp_sender_hb_info_t *) chunk->skb->data;
  576. sctp_transport_update_rto(t, (jiffies - hbinfo->sent_at));
  577. /* Update the heartbeat timer. */
  578. if (!mod_timer(&t->hb_timer, sctp_transport_timeout(t)))
  579. sctp_transport_hold(t);
  580. }
  581. /* Helper function to process the process SACK command. */
  582. static int sctp_cmd_process_sack(sctp_cmd_seq_t *cmds,
  583. struct sctp_association *asoc,
  584. struct sctp_sackhdr *sackh)
  585. {
  586. int err = 0;
  587. if (sctp_outq_sack(&asoc->outqueue, sackh)) {
  588. /* There are no more TSNs awaiting SACK. */
  589. err = sctp_do_sm(SCTP_EVENT_T_OTHER,
  590. SCTP_ST_OTHER(SCTP_EVENT_NO_PENDING_TSN),
  591. asoc->state, asoc->ep, asoc, NULL,
  592. GFP_ATOMIC);
  593. }
  594. return err;
  595. }
  596. /* Helper function to set the timeout value for T2-SHUTDOWN timer and to set
  597. * the transport for a shutdown chunk.
  598. */
  599. static void sctp_cmd_setup_t2(sctp_cmd_seq_t *cmds,
  600. struct sctp_association *asoc,
  601. struct sctp_chunk *chunk)
  602. {
  603. struct sctp_transport *t;
  604. t = sctp_assoc_choose_alter_transport(asoc,
  605. asoc->shutdown_last_sent_to);
  606. asoc->shutdown_last_sent_to = t;
  607. asoc->timeouts[SCTP_EVENT_TIMEOUT_T2_SHUTDOWN] = t->rto;
  608. chunk->transport = t;
  609. }
  610. /* Helper function to change the state of an association. */
  611. static void sctp_cmd_new_state(sctp_cmd_seq_t *cmds,
  612. struct sctp_association *asoc,
  613. sctp_state_t state)
  614. {
  615. struct sock *sk = asoc->base.sk;
  616. asoc->state = state;
  617. SCTP_DEBUG_PRINTK("sctp_cmd_new_state: asoc %p[%s]\n",
  618. asoc, sctp_state_tbl[state]);
  619. if (sctp_style(sk, TCP)) {
  620. /* Change the sk->sk_state of a TCP-style socket that has
  621. * sucessfully completed a connect() call.
  622. */
  623. if (sctp_state(asoc, ESTABLISHED) && sctp_sstate(sk, CLOSED))
  624. sk->sk_state = SCTP_SS_ESTABLISHED;
  625. /* Set the RCV_SHUTDOWN flag when a SHUTDOWN is received. */
  626. if (sctp_state(asoc, SHUTDOWN_RECEIVED) &&
  627. sctp_sstate(sk, ESTABLISHED))
  628. sk->sk_shutdown |= RCV_SHUTDOWN;
  629. }
  630. if (sctp_state(asoc, COOKIE_WAIT)) {
  631. /* Reset init timeouts since they may have been
  632. * increased due to timer expirations.
  633. */
  634. asoc->timeouts[SCTP_EVENT_TIMEOUT_T1_INIT] =
  635. asoc->rto_initial;
  636. asoc->timeouts[SCTP_EVENT_TIMEOUT_T1_COOKIE] =
  637. asoc->rto_initial;
  638. }
  639. if (sctp_state(asoc, ESTABLISHED) ||
  640. sctp_state(asoc, CLOSED) ||
  641. sctp_state(asoc, SHUTDOWN_RECEIVED)) {
  642. /* Wake up any processes waiting in the asoc's wait queue in
  643. * sctp_wait_for_connect() or sctp_wait_for_sndbuf().
  644. */
  645. if (waitqueue_active(&asoc->wait))
  646. wake_up_interruptible(&asoc->wait);
  647. /* Wake up any processes waiting in the sk's sleep queue of
  648. * a TCP-style or UDP-style peeled-off socket in
  649. * sctp_wait_for_accept() or sctp_wait_for_packet().
  650. * For a UDP-style socket, the waiters are woken up by the
  651. * notifications.
  652. */
  653. if (!sctp_style(sk, UDP))
  654. sk->sk_state_change(sk);
  655. }
  656. }
  657. /* Helper function to delete an association. */
  658. static void sctp_cmd_delete_tcb(sctp_cmd_seq_t *cmds,
  659. struct sctp_association *asoc)
  660. {
  661. struct sock *sk = asoc->base.sk;
  662. /* If it is a non-temporary association belonging to a TCP-style
  663. * listening socket that is not closed, do not free it so that accept()
  664. * can pick it up later.
  665. */
  666. if (sctp_style(sk, TCP) && sctp_sstate(sk, LISTENING) &&
  667. (!asoc->temp) && (sk->sk_shutdown != SHUTDOWN_MASK))
  668. return;
  669. sctp_unhash_established(asoc);
  670. sctp_association_free(asoc);
  671. }
  672. /*
  673. * ADDIP Section 4.1 ASCONF Chunk Procedures
  674. * A4) Start a T-4 RTO timer, using the RTO value of the selected
  675. * destination address (we use active path instead of primary path just
  676. * because primary path may be inactive.
  677. */
  678. static void sctp_cmd_setup_t4(sctp_cmd_seq_t *cmds,
  679. struct sctp_association *asoc,
  680. struct sctp_chunk *chunk)
  681. {
  682. struct sctp_transport *t;
  683. t = sctp_assoc_choose_alter_transport(asoc, chunk->transport);
  684. asoc->timeouts[SCTP_EVENT_TIMEOUT_T4_RTO] = t->rto;
  685. chunk->transport = t;
  686. }
  687. /* Process an incoming Operation Error Chunk. */
  688. static void sctp_cmd_process_operr(sctp_cmd_seq_t *cmds,
  689. struct sctp_association *asoc,
  690. struct sctp_chunk *chunk)
  691. {
  692. struct sctp_errhdr *err_hdr;
  693. struct sctp_ulpevent *ev;
  694. while (chunk->chunk_end > chunk->skb->data) {
  695. err_hdr = (struct sctp_errhdr *)(chunk->skb->data);
  696. ev = sctp_ulpevent_make_remote_error(asoc, chunk, 0,
  697. GFP_ATOMIC);
  698. if (!ev)
  699. return;
  700. sctp_ulpq_tail_event(&asoc->ulpq, ev);
  701. switch (err_hdr->cause) {
  702. case SCTP_ERROR_UNKNOWN_CHUNK:
  703. {
  704. sctp_chunkhdr_t *unk_chunk_hdr;
  705. unk_chunk_hdr = (sctp_chunkhdr_t *)err_hdr->variable;
  706. switch (unk_chunk_hdr->type) {
  707. /* ADDIP 4.1 A9) If the peer responds to an ASCONF with
  708. * an ERROR chunk reporting that it did not recognized
  709. * the ASCONF chunk type, the sender of the ASCONF MUST
  710. * NOT send any further ASCONF chunks and MUST stop its
  711. * T-4 timer.
  712. */
  713. case SCTP_CID_ASCONF:
  714. if (asoc->peer.asconf_capable == 0)
  715. break;
  716. asoc->peer.asconf_capable = 0;
  717. sctp_add_cmd_sf(cmds, SCTP_CMD_TIMER_STOP,
  718. SCTP_TO(SCTP_EVENT_TIMEOUT_T4_RTO));
  719. break;
  720. default:
  721. break;
  722. }
  723. break;
  724. }
  725. default:
  726. break;
  727. }
  728. }
  729. }
  730. /* Process variable FWDTSN chunk information. */
  731. static void sctp_cmd_process_fwdtsn(struct sctp_ulpq *ulpq,
  732. struct sctp_chunk *chunk)
  733. {
  734. struct sctp_fwdtsn_skip *skip;
  735. /* Walk through all the skipped SSNs */
  736. sctp_walk_fwdtsn(skip, chunk) {
  737. sctp_ulpq_skip(ulpq, ntohs(skip->stream), ntohs(skip->ssn));
  738. }
  739. return;
  740. }
  741. /* Helper function to remove the association non-primary peer
  742. * transports.
  743. */
  744. static void sctp_cmd_del_non_primary(struct sctp_association *asoc)
  745. {
  746. struct sctp_transport *t;
  747. struct list_head *pos;
  748. struct list_head *temp;
  749. list_for_each_safe(pos, temp, &asoc->peer.transport_addr_list) {
  750. t = list_entry(pos, struct sctp_transport, transports);
  751. if (!sctp_cmp_addr_exact(&t->ipaddr,
  752. &asoc->peer.primary_addr)) {
  753. sctp_assoc_del_peer(asoc, &t->ipaddr);
  754. }
  755. }
  756. return;
  757. }
  758. /* Helper function to set sk_err on a 1-1 style socket. */
  759. static void sctp_cmd_set_sk_err(struct sctp_association *asoc, int error)
  760. {
  761. struct sock *sk = asoc->base.sk;
  762. if (!sctp_style(sk, UDP))
  763. sk->sk_err = error;
  764. }
  765. /* Helper function to generate an association change event */
  766. static void sctp_cmd_assoc_change(sctp_cmd_seq_t *commands,
  767. struct sctp_association *asoc,
  768. u8 state)
  769. {
  770. struct sctp_ulpevent *ev;
  771. ev = sctp_ulpevent_make_assoc_change(asoc, 0, state, 0,
  772. asoc->c.sinit_num_ostreams,
  773. asoc->c.sinit_max_instreams,
  774. NULL, GFP_ATOMIC);
  775. if (ev)
  776. sctp_ulpq_tail_event(&asoc->ulpq, ev);
  777. }
  778. /* Helper function to generate an adaptation indication event */
  779. static void sctp_cmd_adaptation_ind(sctp_cmd_seq_t *commands,
  780. struct sctp_association *asoc)
  781. {
  782. struct sctp_ulpevent *ev;
  783. ev = sctp_ulpevent_make_adaptation_indication(asoc, GFP_ATOMIC);
  784. if (ev)
  785. sctp_ulpq_tail_event(&asoc->ulpq, ev);
  786. }
  787. static void sctp_cmd_t1_timer_update(struct sctp_association *asoc,
  788. sctp_event_timeout_t timer,
  789. char *name)
  790. {
  791. struct sctp_transport *t;
  792. t = asoc->init_last_sent_to;
  793. asoc->init_err_counter++;
  794. if (t->init_sent_count > (asoc->init_cycle + 1)) {
  795. asoc->timeouts[timer] *= 2;
  796. if (asoc->timeouts[timer] > asoc->max_init_timeo) {
  797. asoc->timeouts[timer] = asoc->max_init_timeo;
  798. }
  799. asoc->init_cycle++;
  800. SCTP_DEBUG_PRINTK(
  801. "T1 %s Timeout adjustment"
  802. " init_err_counter: %d"
  803. " cycle: %d"
  804. " timeout: %ld\n",
  805. name,
  806. asoc->init_err_counter,
  807. asoc->init_cycle,
  808. asoc->timeouts[timer]);
  809. }
  810. }
  811. /* Send the whole message, chunk by chunk, to the outqueue.
  812. * This way the whole message is queued up and bundling if
  813. * encouraged for small fragments.
  814. */
  815. static int sctp_cmd_send_msg(struct sctp_association *asoc,
  816. struct sctp_datamsg *msg)
  817. {
  818. struct sctp_chunk *chunk;
  819. int error = 0;
  820. list_for_each_entry(chunk, &msg->chunks, frag_list) {
  821. error = sctp_outq_tail(&asoc->outqueue, chunk);
  822. if (error)
  823. break;
  824. }
  825. return error;
  826. }
  827. /* These three macros allow us to pull the debugging code out of the
  828. * main flow of sctp_do_sm() to keep attention focused on the real
  829. * functionality there.
  830. */
  831. #define DEBUG_PRE \
  832. SCTP_DEBUG_PRINTK("sctp_do_sm prefn: " \
  833. "ep %p, %s, %s, asoc %p[%s], %s\n", \
  834. ep, sctp_evttype_tbl[event_type], \
  835. (*debug_fn)(subtype), asoc, \
  836. sctp_state_tbl[state], state_fn->name)
  837. #define DEBUG_POST \
  838. SCTP_DEBUG_PRINTK("sctp_do_sm postfn: " \
  839. "asoc %p, status: %s\n", \
  840. asoc, sctp_status_tbl[status])
  841. #define DEBUG_POST_SFX \
  842. SCTP_DEBUG_PRINTK("sctp_do_sm post sfx: error %d, asoc %p[%s]\n", \
  843. error, asoc, \
  844. sctp_state_tbl[(asoc && sctp_id2assoc(ep->base.sk, \
  845. sctp_assoc2id(asoc)))?asoc->state:SCTP_STATE_CLOSED])
  846. /*
  847. * This is the master state machine processing function.
  848. *
  849. * If you want to understand all of lksctp, this is a
  850. * good place to start.
  851. */
  852. int sctp_do_sm(sctp_event_t event_type, sctp_subtype_t subtype,
  853. sctp_state_t state,
  854. struct sctp_endpoint *ep,
  855. struct sctp_association *asoc,
  856. void *event_arg,
  857. gfp_t gfp)
  858. {
  859. sctp_cmd_seq_t commands;
  860. const sctp_sm_table_entry_t *state_fn;
  861. sctp_disposition_t status;
  862. int error = 0;
  863. typedef const char *(printfn_t)(sctp_subtype_t);
  864. static printfn_t *table[] = {
  865. NULL, sctp_cname, sctp_tname, sctp_oname, sctp_pname,
  866. };
  867. printfn_t *debug_fn __attribute__ ((unused)) = table[event_type];
  868. /* Look up the state function, run it, and then process the
  869. * side effects. These three steps are the heart of lksctp.
  870. */
  871. state_fn = sctp_sm_lookup_event(event_type, state, subtype);
  872. sctp_init_cmd_seq(&commands);
  873. DEBUG_PRE;
  874. status = (*state_fn->fn)(ep, asoc, subtype, event_arg, &commands);
  875. DEBUG_POST;
  876. error = sctp_side_effects(event_type, subtype, state,
  877. ep, asoc, event_arg, status,
  878. &commands, gfp);
  879. DEBUG_POST_SFX;
  880. return error;
  881. }
  882. #undef DEBUG_PRE
  883. #undef DEBUG_POST
  884. /*****************************************************************
  885. * This the master state function side effect processing function.
  886. *****************************************************************/
  887. static int sctp_side_effects(sctp_event_t event_type, sctp_subtype_t subtype,
  888. sctp_state_t state,
  889. struct sctp_endpoint *ep,
  890. struct sctp_association *asoc,
  891. void *event_arg,
  892. sctp_disposition_t status,
  893. sctp_cmd_seq_t *commands,
  894. gfp_t gfp)
  895. {
  896. int error;
  897. /* FIXME - Most of the dispositions left today would be categorized
  898. * as "exceptional" dispositions. For those dispositions, it
  899. * may not be proper to run through any of the commands at all.
  900. * For example, the command interpreter might be run only with
  901. * disposition SCTP_DISPOSITION_CONSUME.
  902. */
  903. if (0 != (error = sctp_cmd_interpreter(event_type, subtype, state,
  904. ep, asoc,
  905. event_arg, status,
  906. commands, gfp)))
  907. goto bail;
  908. switch (status) {
  909. case SCTP_DISPOSITION_DISCARD:
  910. SCTP_DEBUG_PRINTK("Ignored sctp protocol event - state %d, "
  911. "event_type %d, event_id %d\n",
  912. state, event_type, subtype.chunk);
  913. break;
  914. case SCTP_DISPOSITION_NOMEM:
  915. /* We ran out of memory, so we need to discard this
  916. * packet.
  917. */
  918. /* BUG--we should now recover some memory, probably by
  919. * reneging...
  920. */
  921. error = -ENOMEM;
  922. break;
  923. case SCTP_DISPOSITION_DELETE_TCB:
  924. /* This should now be a command. */
  925. break;
  926. case SCTP_DISPOSITION_CONSUME:
  927. case SCTP_DISPOSITION_ABORT:
  928. /*
  929. * We should no longer have much work to do here as the
  930. * real work has been done as explicit commands above.
  931. */
  932. break;
  933. case SCTP_DISPOSITION_VIOLATION:
  934. if (net_ratelimit())
  935. printk(KERN_ERR "sctp protocol violation state %d "
  936. "chunkid %d\n", state, subtype.chunk);
  937. break;
  938. case SCTP_DISPOSITION_NOT_IMPL:
  939. printk(KERN_WARNING "sctp unimplemented feature in state %d, "
  940. "event_type %d, event_id %d\n",
  941. state, event_type, subtype.chunk);
  942. break;
  943. case SCTP_DISPOSITION_BUG:
  944. printk(KERN_ERR "sctp bug in state %d, "
  945. "event_type %d, event_id %d\n",
  946. state, event_type, subtype.chunk);
  947. BUG();
  948. break;
  949. default:
  950. printk(KERN_ERR "sctp impossible disposition %d "
  951. "in state %d, event_type %d, event_id %d\n",
  952. status, state, event_type, subtype.chunk);
  953. BUG();
  954. break;
  955. }
  956. bail:
  957. return error;
  958. }
  959. /********************************************************************
  960. * 2nd Level Abstractions
  961. ********************************************************************/
  962. /* This is the side-effect interpreter. */
  963. static int sctp_cmd_interpreter(sctp_event_t event_type,
  964. sctp_subtype_t subtype,
  965. sctp_state_t state,
  966. struct sctp_endpoint *ep,
  967. struct sctp_association *asoc,
  968. void *event_arg,
  969. sctp_disposition_t status,
  970. sctp_cmd_seq_t *commands,
  971. gfp_t gfp)
  972. {
  973. int error = 0;
  974. int force;
  975. sctp_cmd_t *cmd;
  976. struct sctp_chunk *new_obj;
  977. struct sctp_chunk *chunk = NULL;
  978. struct sctp_packet *packet;
  979. struct timer_list *timer;
  980. unsigned long timeout;
  981. struct sctp_transport *t;
  982. struct sctp_sackhdr sackh;
  983. int local_cork = 0;
  984. if (SCTP_EVENT_T_TIMEOUT != event_type)
  985. chunk = (struct sctp_chunk *) event_arg;
  986. /* Note: This whole file is a huge candidate for rework.
  987. * For example, each command could either have its own handler, so
  988. * the loop would look like:
  989. * while (cmds)
  990. * cmd->handle(x, y, z)
  991. * --jgrimm
  992. */
  993. while (NULL != (cmd = sctp_next_cmd(commands))) {
  994. switch (cmd->verb) {
  995. case SCTP_CMD_NOP:
  996. /* Do nothing. */
  997. break;
  998. case SCTP_CMD_NEW_ASOC:
  999. /* Register a new association. */
  1000. if (local_cork) {
  1001. sctp_outq_uncork(&asoc->outqueue);
  1002. local_cork = 0;
  1003. }
  1004. asoc = cmd->obj.ptr;
  1005. /* Register with the endpoint. */
  1006. sctp_endpoint_add_asoc(ep, asoc);
  1007. sctp_hash_established(asoc);
  1008. break;
  1009. case SCTP_CMD_UPDATE_ASSOC:
  1010. sctp_assoc_update(asoc, cmd->obj.ptr);
  1011. break;
  1012. case SCTP_CMD_PURGE_OUTQUEUE:
  1013. sctp_outq_teardown(&asoc->outqueue);
  1014. break;
  1015. case SCTP_CMD_DELETE_TCB:
  1016. if (local_cork) {
  1017. sctp_outq_uncork(&asoc->outqueue);
  1018. local_cork = 0;
  1019. }
  1020. /* Delete the current association. */
  1021. sctp_cmd_delete_tcb(commands, asoc);
  1022. asoc = NULL;
  1023. break;
  1024. case SCTP_CMD_NEW_STATE:
  1025. /* Enter a new state. */
  1026. sctp_cmd_new_state(commands, asoc, cmd->obj.state);
  1027. break;
  1028. case SCTP_CMD_REPORT_TSN:
  1029. /* Record the arrival of a TSN. */
  1030. error = sctp_tsnmap_mark(&asoc->peer.tsn_map,
  1031. cmd->obj.u32);
  1032. break;
  1033. case SCTP_CMD_REPORT_FWDTSN:
  1034. /* Move the Cumulattive TSN Ack ahead. */
  1035. sctp_tsnmap_skip(&asoc->peer.tsn_map, cmd->obj.u32);
  1036. /* purge the fragmentation queue */
  1037. sctp_ulpq_reasm_flushtsn(&asoc->ulpq, cmd->obj.u32);
  1038. /* Abort any in progress partial delivery. */
  1039. sctp_ulpq_abort_pd(&asoc->ulpq, GFP_ATOMIC);
  1040. break;
  1041. case SCTP_CMD_PROCESS_FWDTSN:
  1042. sctp_cmd_process_fwdtsn(&asoc->ulpq, cmd->obj.ptr);
  1043. break;
  1044. case SCTP_CMD_GEN_SACK:
  1045. /* Generate a Selective ACK.
  1046. * The argument tells us whether to just count
  1047. * the packet and MAYBE generate a SACK, or
  1048. * force a SACK out.
  1049. */
  1050. force = cmd->obj.i32;
  1051. error = sctp_gen_sack(asoc, force, commands);
  1052. break;
  1053. case SCTP_CMD_PROCESS_SACK:
  1054. /* Process an inbound SACK. */
  1055. error = sctp_cmd_process_sack(commands, asoc,
  1056. cmd->obj.ptr);
  1057. break;
  1058. case SCTP_CMD_GEN_INIT_ACK:
  1059. /* Generate an INIT ACK chunk. */
  1060. new_obj = sctp_make_init_ack(asoc, chunk, GFP_ATOMIC,
  1061. 0);
  1062. if (!new_obj)
  1063. goto nomem;
  1064. sctp_add_cmd_sf(commands, SCTP_CMD_REPLY,
  1065. SCTP_CHUNK(new_obj));
  1066. break;
  1067. case SCTP_CMD_PEER_INIT:
  1068. /* Process a unified INIT from the peer.
  1069. * Note: Only used during INIT-ACK processing. If
  1070. * there is an error just return to the outter
  1071. * layer which will bail.
  1072. */
  1073. error = sctp_cmd_process_init(commands, asoc, chunk,
  1074. cmd->obj.ptr, gfp);
  1075. break;
  1076. case SCTP_CMD_GEN_COOKIE_ECHO:
  1077. /* Generate a COOKIE ECHO chunk. */
  1078. new_obj = sctp_make_cookie_echo(asoc, chunk);
  1079. if (!new_obj) {
  1080. if (cmd->obj.ptr)
  1081. sctp_chunk_free(cmd->obj.ptr);
  1082. goto nomem;
  1083. }
  1084. sctp_add_cmd_sf(commands, SCTP_CMD_REPLY,
  1085. SCTP_CHUNK(new_obj));
  1086. /* If there is an ERROR chunk to be sent along with
  1087. * the COOKIE_ECHO, send it, too.
  1088. */
  1089. if (cmd->obj.ptr)
  1090. sctp_add_cmd_sf(commands, SCTP_CMD_REPLY,
  1091. SCTP_CHUNK(cmd->obj.ptr));
  1092. if (new_obj->transport) {
  1093. new_obj->transport->init_sent_count++;
  1094. asoc->init_last_sent_to = new_obj->transport;
  1095. }
  1096. /* FIXME - Eventually come up with a cleaner way to
  1097. * enabling COOKIE-ECHO + DATA bundling during
  1098. * multihoming stale cookie scenarios, the following
  1099. * command plays with asoc->peer.retran_path to
  1100. * avoid the problem of sending the COOKIE-ECHO and
  1101. * DATA in different paths, which could result
  1102. * in the association being ABORTed if the DATA chunk
  1103. * is processed first by the server. Checking the
  1104. * init error counter simply causes this command
  1105. * to be executed only during failed attempts of
  1106. * association establishment.
  1107. */
  1108. if ((asoc->peer.retran_path !=
  1109. asoc->peer.primary_path) &&
  1110. (asoc->init_err_counter > 0)) {
  1111. sctp_add_cmd_sf(commands,
  1112. SCTP_CMD_FORCE_PRIM_RETRAN,
  1113. SCTP_NULL());
  1114. }
  1115. break;
  1116. case SCTP_CMD_GEN_SHUTDOWN:
  1117. /* Generate SHUTDOWN when in SHUTDOWN_SENT state.
  1118. * Reset error counts.
  1119. */
  1120. asoc->overall_error_count = 0;
  1121. /* Generate a SHUTDOWN chunk. */
  1122. new_obj = sctp_make_shutdown(asoc, chunk);
  1123. if (!new_obj)
  1124. goto nomem;
  1125. sctp_add_cmd_sf(commands, SCTP_CMD_REPLY,
  1126. SCTP_CHUNK(new_obj));
  1127. break;
  1128. case SCTP_CMD_CHUNK_ULP:
  1129. /* Send a chunk to the sockets layer. */
  1130. SCTP_DEBUG_PRINTK("sm_sideff: %s %p, %s %p.\n",
  1131. "chunk_up:", cmd->obj.ptr,
  1132. "ulpq:", &asoc->ulpq);
  1133. sctp_ulpq_tail_data(&asoc->ulpq, cmd->obj.ptr,
  1134. GFP_ATOMIC);
  1135. break;
  1136. case SCTP_CMD_EVENT_ULP:
  1137. /* Send a notification to the sockets layer. */
  1138. SCTP_DEBUG_PRINTK("sm_sideff: %s %p, %s %p.\n",
  1139. "event_up:",cmd->obj.ptr,
  1140. "ulpq:",&asoc->ulpq);
  1141. sctp_ulpq_tail_event(&asoc->ulpq, cmd->obj.ptr);
  1142. break;
  1143. case SCTP_CMD_REPLY:
  1144. /* If an caller has not already corked, do cork. */
  1145. if (!asoc->outqueue.cork) {
  1146. sctp_outq_cork(&asoc->outqueue);
  1147. local_cork = 1;
  1148. }
  1149. /* Send a chunk to our peer. */
  1150. error = sctp_outq_tail(&asoc->outqueue, cmd->obj.ptr);
  1151. break;
  1152. case SCTP_CMD_SEND_PKT:
  1153. /* Send a full packet to our peer. */
  1154. packet = cmd->obj.ptr;
  1155. sctp_packet_transmit(packet);
  1156. sctp_ootb_pkt_free(packet);
  1157. break;
  1158. case SCTP_CMD_T1_RETRAN:
  1159. /* Mark a transport for retransmission. */
  1160. sctp_retransmit(&asoc->outqueue, cmd->obj.transport,
  1161. SCTP_RTXR_T1_RTX);
  1162. break;
  1163. case SCTP_CMD_RETRAN:
  1164. /* Mark a transport for retransmission. */
  1165. sctp_retransmit(&asoc->outqueue, cmd->obj.transport,
  1166. SCTP_RTXR_T3_RTX);
  1167. break;
  1168. case SCTP_CMD_TRANSMIT:
  1169. /* Kick start transmission. */
  1170. error = sctp_outq_uncork(&asoc->outqueue);
  1171. local_cork = 0;
  1172. break;
  1173. case SCTP_CMD_ECN_CE:
  1174. /* Do delayed CE processing. */
  1175. sctp_do_ecn_ce_work(asoc, cmd->obj.u32);
  1176. break;
  1177. case SCTP_CMD_ECN_ECNE:
  1178. /* Do delayed ECNE processing. */
  1179. new_obj = sctp_do_ecn_ecne_work(asoc, cmd->obj.u32,
  1180. chunk);
  1181. if (new_obj)
  1182. sctp_add_cmd_sf(commands, SCTP_CMD_REPLY,
  1183. SCTP_CHUNK(new_obj));
  1184. break;
  1185. case SCTP_CMD_ECN_CWR:
  1186. /* Do delayed CWR processing. */
  1187. sctp_do_ecn_cwr_work(asoc, cmd->obj.u32);
  1188. break;
  1189. case SCTP_CMD_SETUP_T2:
  1190. sctp_cmd_setup_t2(commands, asoc, cmd->obj.ptr);
  1191. break;
  1192. case SCTP_CMD_TIMER_START:
  1193. timer = &asoc->timers[cmd->obj.to];
  1194. timeout = asoc->timeouts[cmd->obj.to];
  1195. BUG_ON(!timeout);
  1196. timer->expires = jiffies + timeout;
  1197. sctp_association_hold(asoc);
  1198. add_timer(timer);
  1199. break;
  1200. case SCTP_CMD_TIMER_RESTART:
  1201. timer = &asoc->timers[cmd->obj.to];
  1202. timeout = asoc->timeouts[cmd->obj.to];
  1203. if (!mod_timer(timer, jiffies + timeout))
  1204. sctp_association_hold(asoc);
  1205. break;
  1206. case SCTP_CMD_TIMER_STOP:
  1207. timer = &asoc->timers[cmd->obj.to];
  1208. if (timer_pending(timer) && del_timer(timer))
  1209. sctp_association_put(asoc);
  1210. break;
  1211. case SCTP_CMD_INIT_CHOOSE_TRANSPORT:
  1212. chunk = cmd->obj.ptr;
  1213. t = sctp_assoc_choose_alter_transport(asoc,
  1214. asoc->init_last_sent_to);
  1215. asoc->init_last_sent_to = t;
  1216. chunk->transport = t;
  1217. t->init_sent_count++;
  1218. break;
  1219. case SCTP_CMD_INIT_RESTART:
  1220. /* Do the needed accounting and updates
  1221. * associated with restarting an initialization
  1222. * timer. Only multiply the timeout by two if
  1223. * all transports have been tried at the current
  1224. * timeout.
  1225. */
  1226. sctp_cmd_t1_timer_update(asoc,
  1227. SCTP_EVENT_TIMEOUT_T1_INIT,
  1228. "INIT");
  1229. sctp_add_cmd_sf(commands, SCTP_CMD_TIMER_RESTART,
  1230. SCTP_TO(SCTP_EVENT_TIMEOUT_T1_INIT));
  1231. break;
  1232. case SCTP_CMD_COOKIEECHO_RESTART:
  1233. /* Do the needed accounting and updates
  1234. * associated with restarting an initialization
  1235. * timer. Only multiply the timeout by two if
  1236. * all transports have been tried at the current
  1237. * timeout.
  1238. */
  1239. sctp_cmd_t1_timer_update(asoc,
  1240. SCTP_EVENT_TIMEOUT_T1_COOKIE,
  1241. "COOKIE");
  1242. /* If we've sent any data bundled with
  1243. * COOKIE-ECHO we need to resend.
  1244. */
  1245. list_for_each_entry(t, &asoc->peer.transport_addr_list,
  1246. transports) {
  1247. sctp_retransmit_mark(&asoc->outqueue, t,
  1248. SCTP_RTXR_T1_RTX);
  1249. }
  1250. sctp_add_cmd_sf(commands,
  1251. SCTP_CMD_TIMER_RESTART,
  1252. SCTP_TO(SCTP_EVENT_TIMEOUT_T1_COOKIE));
  1253. break;
  1254. case SCTP_CMD_INIT_FAILED:
  1255. sctp_cmd_init_failed(commands, asoc, cmd->obj.err);
  1256. break;
  1257. case SCTP_CMD_ASSOC_FAILED:
  1258. sctp_cmd_assoc_failed(commands, asoc, event_type,
  1259. subtype, chunk, cmd->obj.err);
  1260. break;
  1261. case SCTP_CMD_INIT_COUNTER_INC:
  1262. asoc->init_err_counter++;
  1263. break;
  1264. case SCTP_CMD_INIT_COUNTER_RESET:
  1265. asoc->init_err_counter = 0;
  1266. asoc->init_cycle = 0;
  1267. list_for_each_entry(t, &asoc->peer.transport_addr_list,
  1268. transports) {
  1269. t->init_sent_count = 0;
  1270. }
  1271. break;
  1272. case SCTP_CMD_REPORT_DUP:
  1273. sctp_tsnmap_mark_dup(&asoc->peer.tsn_map,
  1274. cmd->obj.u32);
  1275. break;
  1276. case SCTP_CMD_REPORT_BAD_TAG:
  1277. SCTP_DEBUG_PRINTK("vtag mismatch!\n");
  1278. break;
  1279. case SCTP_CMD_STRIKE:
  1280. /* Mark one strike against a transport. */
  1281. sctp_do_8_2_transport_strike(asoc, cmd->obj.transport,
  1282. 0);
  1283. break;
  1284. case SCTP_CMD_TRANSPORT_IDLE:
  1285. t = cmd->obj.transport;
  1286. sctp_transport_lower_cwnd(t, SCTP_LOWER_CWND_INACTIVE);
  1287. break;
  1288. case SCTP_CMD_TRANSPORT_HB_SENT:
  1289. t = cmd->obj.transport;
  1290. sctp_do_8_2_transport_strike(asoc, t, 1);
  1291. t->hb_sent = 1;
  1292. break;
  1293. case SCTP_CMD_TRANSPORT_ON:
  1294. t = cmd->obj.transport;
  1295. sctp_cmd_transport_on(commands, asoc, t, chunk);
  1296. break;
  1297. case SCTP_CMD_HB_TIMERS_START:
  1298. sctp_cmd_hb_timers_start(commands, asoc);
  1299. break;
  1300. case SCTP_CMD_HB_TIMER_UPDATE:
  1301. t = cmd->obj.transport;
  1302. sctp_cmd_hb_timer_update(commands, t);
  1303. break;
  1304. case SCTP_CMD_HB_TIMERS_STOP:
  1305. sctp_cmd_hb_timers_stop(commands, asoc);
  1306. break;
  1307. case SCTP_CMD_REPORT_ERROR:
  1308. error = cmd->obj.error;
  1309. break;
  1310. case SCTP_CMD_PROCESS_CTSN:
  1311. /* Dummy up a SACK for processing. */
  1312. sackh.cum_tsn_ack = cmd->obj.be32;
  1313. sackh.a_rwnd = asoc->peer.rwnd +
  1314. asoc->outqueue.outstanding_bytes;
  1315. sackh.num_gap_ack_blocks = 0;
  1316. sackh.num_dup_tsns = 0;
  1317. sctp_add_cmd_sf(commands, SCTP_CMD_PROCESS_SACK,
  1318. SCTP_SACKH(&sackh));
  1319. break;
  1320. case SCTP_CMD_DISCARD_PACKET:
  1321. /* We need to discard the whole packet.
  1322. * Uncork the queue since there might be
  1323. * responses pending
  1324. */
  1325. chunk->pdiscard = 1;
  1326. if (asoc) {
  1327. sctp_outq_uncork(&asoc->outqueue);
  1328. local_cork = 0;
  1329. }
  1330. break;
  1331. case SCTP_CMD_RTO_PENDING:
  1332. t = cmd->obj.transport;
  1333. t->rto_pending = 1;
  1334. break;
  1335. case SCTP_CMD_PART_DELIVER:
  1336. sctp_ulpq_partial_delivery(&asoc->ulpq, cmd->obj.ptr,
  1337. GFP_ATOMIC);
  1338. break;
  1339. case SCTP_CMD_RENEGE:
  1340. sctp_ulpq_renege(&asoc->ulpq, cmd->obj.ptr,
  1341. GFP_ATOMIC);
  1342. break;
  1343. case SCTP_CMD_SETUP_T4:
  1344. sctp_cmd_setup_t4(commands, asoc, cmd->obj.ptr);
  1345. break;
  1346. case SCTP_CMD_PROCESS_OPERR:
  1347. sctp_cmd_process_operr(commands, asoc, chunk);
  1348. break;
  1349. case SCTP_CMD_CLEAR_INIT_TAG:
  1350. asoc->peer.i.init_tag = 0;
  1351. break;
  1352. case SCTP_CMD_DEL_NON_PRIMARY:
  1353. sctp_cmd_del_non_primary(asoc);
  1354. break;
  1355. case SCTP_CMD_T3_RTX_TIMERS_STOP:
  1356. sctp_cmd_t3_rtx_timers_stop(commands, asoc);
  1357. break;
  1358. case SCTP_CMD_FORCE_PRIM_RETRAN:
  1359. t = asoc->peer.retran_path;
  1360. asoc->peer.retran_path = asoc->peer.primary_path;
  1361. error = sctp_outq_uncork(&asoc->outqueue);
  1362. local_cork = 0;
  1363. asoc->peer.retran_path = t;
  1364. break;
  1365. case SCTP_CMD_SET_SK_ERR:
  1366. sctp_cmd_set_sk_err(asoc, cmd->obj.error);
  1367. break;
  1368. case SCTP_CMD_ASSOC_CHANGE:
  1369. sctp_cmd_assoc_change(commands, asoc,
  1370. cmd->obj.u8);
  1371. break;
  1372. case SCTP_CMD_ADAPTATION_IND:
  1373. sctp_cmd_adaptation_ind(commands, asoc);
  1374. break;
  1375. case SCTP_CMD_ASSOC_SHKEY:
  1376. error = sctp_auth_asoc_init_active_key(asoc,
  1377. GFP_ATOMIC);
  1378. break;
  1379. case SCTP_CMD_UPDATE_INITTAG:
  1380. asoc->peer.i.init_tag = cmd->obj.u32;
  1381. break;
  1382. case SCTP_CMD_SEND_MSG:
  1383. if (!asoc->outqueue.cork) {
  1384. sctp_outq_cork(&asoc->outqueue);
  1385. local_cork = 1;
  1386. }
  1387. error = sctp_cmd_send_msg(asoc, cmd->obj.msg);
  1388. break;
  1389. default:
  1390. printk(KERN_WARNING "Impossible command: %u, %p\n",
  1391. cmd->verb, cmd->obj.ptr);
  1392. break;
  1393. }
  1394. if (error)
  1395. break;
  1396. }
  1397. out:
  1398. /* If this is in response to a received chunk, wait until
  1399. * we are done with the packet to open the queue so that we don't
  1400. * send multiple packets in response to a single request.
  1401. */
  1402. if (asoc && SCTP_EVENT_T_CHUNK == event_type && chunk) {
  1403. if (chunk->end_of_packet || chunk->singleton)
  1404. error = sctp_outq_uncork(&asoc->outqueue);
  1405. } else if (local_cork)
  1406. error = sctp_outq_uncork(&asoc->outqueue);
  1407. return error;
  1408. nomem:
  1409. error = -ENOMEM;
  1410. goto out;
  1411. }