link.c 87 KB

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  1. /*
  2. * net/tipc/link.c: TIPC link code
  3. *
  4. * Copyright (c) 1996-2007, Ericsson AB
  5. * Copyright (c) 2004-2007, Wind River Systems
  6. * All rights reserved.
  7. *
  8. * Redistribution and use in source and binary forms, with or without
  9. * modification, are permitted provided that the following conditions are met:
  10. *
  11. * 1. Redistributions of source code must retain the above copyright
  12. * notice, this list of conditions and the following disclaimer.
  13. * 2. Redistributions in binary form must reproduce the above copyright
  14. * notice, this list of conditions and the following disclaimer in the
  15. * documentation and/or other materials provided with the distribution.
  16. * 3. Neither the names of the copyright holders nor the names of its
  17. * contributors may be used to endorse or promote products derived from
  18. * this software without specific prior written permission.
  19. *
  20. * Alternatively, this software may be distributed under the terms of the
  21. * GNU General Public License ("GPL") version 2 as published by the Free
  22. * Software Foundation.
  23. *
  24. * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
  25. * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
  26. * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
  27. * ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE
  28. * LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
  29. * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
  30. * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
  31. * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
  32. * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
  33. * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
  34. * POSSIBILITY OF SUCH DAMAGE.
  35. */
  36. #include "core.h"
  37. #include "dbg.h"
  38. #include "link.h"
  39. #include "net.h"
  40. #include "node.h"
  41. #include "port.h"
  42. #include "addr.h"
  43. #include "node_subscr.h"
  44. #include "name_distr.h"
  45. #include "bearer.h"
  46. #include "name_table.h"
  47. #include "discover.h"
  48. #include "config.h"
  49. #include "bcast.h"
  50. /*
  51. * Out-of-range value for link session numbers
  52. */
  53. #define INVALID_SESSION 0x10000
  54. /*
  55. * Limit for deferred reception queue:
  56. */
  57. #define DEF_QUEUE_LIMIT 256u
  58. /*
  59. * Link state events:
  60. */
  61. #define STARTING_EVT 856384768 /* link processing trigger */
  62. #define TRAFFIC_MSG_EVT 560815u /* rx'd ??? */
  63. #define TIMEOUT_EVT 560817u /* link timer expired */
  64. /*
  65. * The following two 'message types' is really just implementation
  66. * data conveniently stored in the message header.
  67. * They must not be considered part of the protocol
  68. */
  69. #define OPEN_MSG 0
  70. #define CLOSED_MSG 1
  71. /*
  72. * State value stored in 'exp_msg_count'
  73. */
  74. #define START_CHANGEOVER 100000u
  75. /**
  76. * struct link_name - deconstructed link name
  77. * @addr_local: network address of node at this end
  78. * @if_local: name of interface at this end
  79. * @addr_peer: network address of node at far end
  80. * @if_peer: name of interface at far end
  81. */
  82. struct link_name {
  83. u32 addr_local;
  84. char if_local[TIPC_MAX_IF_NAME];
  85. u32 addr_peer;
  86. char if_peer[TIPC_MAX_IF_NAME];
  87. };
  88. #if 0
  89. /* LINK EVENT CODE IS NOT SUPPORTED AT PRESENT */
  90. /**
  91. * struct link_event - link up/down event notification
  92. */
  93. struct link_event {
  94. u32 addr;
  95. int up;
  96. void (*fcn)(u32, char *, int);
  97. char name[TIPC_MAX_LINK_NAME];
  98. };
  99. #endif
  100. static void link_handle_out_of_seq_msg(struct link *l_ptr,
  101. struct sk_buff *buf);
  102. static void link_recv_proto_msg(struct link *l_ptr, struct sk_buff *buf);
  103. static int link_recv_changeover_msg(struct link **l_ptr, struct sk_buff **buf);
  104. static void link_set_supervision_props(struct link *l_ptr, u32 tolerance);
  105. static int link_send_sections_long(struct port *sender,
  106. struct iovec const *msg_sect,
  107. u32 num_sect, u32 destnode);
  108. static void link_check_defragm_bufs(struct link *l_ptr);
  109. static void link_state_event(struct link *l_ptr, u32 event);
  110. static void link_reset_statistics(struct link *l_ptr);
  111. static void link_print(struct link *l_ptr, struct print_buf *buf,
  112. const char *str);
  113. /*
  114. * Debugging code used by link routines only
  115. *
  116. * When debugging link problems on a system that has multiple links,
  117. * the standard TIPC debugging routines may not be useful since they
  118. * allow the output from multiple links to be intermixed. For this reason
  119. * routines of the form "dbg_link_XXX()" have been created that will capture
  120. * debug info into a link's personal print buffer, which can then be dumped
  121. * into the TIPC system log (TIPC_LOG) upon request.
  122. *
  123. * To enable per-link debugging, use LINK_LOG_BUF_SIZE to specify the size
  124. * of the print buffer used by each link. If LINK_LOG_BUF_SIZE is set to 0,
  125. * the dbg_link_XXX() routines simply send their output to the standard
  126. * debug print buffer (DBG_OUTPUT), if it has been defined; this can be useful
  127. * when there is only a single link in the system being debugged.
  128. *
  129. * Notes:
  130. * - When enabled, LINK_LOG_BUF_SIZE should be set to at least TIPC_PB_MIN_SIZE
  131. * - "l_ptr" must be valid when using dbg_link_XXX() macros
  132. */
  133. #define LINK_LOG_BUF_SIZE 0
  134. #define dbg_link(fmt, arg...) \
  135. do { \
  136. if (LINK_LOG_BUF_SIZE) \
  137. tipc_printf(&l_ptr->print_buf, fmt, ## arg); \
  138. } while (0)
  139. #define dbg_link_msg(msg, txt) \
  140. do { \
  141. if (LINK_LOG_BUF_SIZE) \
  142. tipc_msg_dbg(&l_ptr->print_buf, msg, txt); \
  143. } while (0)
  144. #define dbg_link_state(txt) \
  145. do { \
  146. if (LINK_LOG_BUF_SIZE) \
  147. link_print(l_ptr, &l_ptr->print_buf, txt); \
  148. } while (0)
  149. #define dbg_link_dump() do { \
  150. if (LINK_LOG_BUF_SIZE) { \
  151. tipc_printf(LOG, "\n\nDumping link <%s>:\n", l_ptr->name); \
  152. tipc_printbuf_move(LOG, &l_ptr->print_buf); \
  153. } \
  154. } while (0)
  155. static void dbg_print_link(struct link *l_ptr, const char *str)
  156. {
  157. if (DBG_OUTPUT != TIPC_NULL)
  158. link_print(l_ptr, DBG_OUTPUT, str);
  159. }
  160. static void dbg_print_buf_chain(struct sk_buff *root_buf)
  161. {
  162. if (DBG_OUTPUT != TIPC_NULL) {
  163. struct sk_buff *buf = root_buf;
  164. while (buf) {
  165. msg_dbg(buf_msg(buf), "In chain: ");
  166. buf = buf->next;
  167. }
  168. }
  169. }
  170. /*
  171. * Simple link routines
  172. */
  173. static unsigned int align(unsigned int i)
  174. {
  175. return (i + 3) & ~3u;
  176. }
  177. static int link_working_working(struct link *l_ptr)
  178. {
  179. return (l_ptr->state == WORKING_WORKING);
  180. }
  181. static int link_working_unknown(struct link *l_ptr)
  182. {
  183. return (l_ptr->state == WORKING_UNKNOWN);
  184. }
  185. static int link_reset_unknown(struct link *l_ptr)
  186. {
  187. return (l_ptr->state == RESET_UNKNOWN);
  188. }
  189. static int link_reset_reset(struct link *l_ptr)
  190. {
  191. return (l_ptr->state == RESET_RESET);
  192. }
  193. static int link_blocked(struct link *l_ptr)
  194. {
  195. return (l_ptr->exp_msg_count || l_ptr->blocked);
  196. }
  197. static int link_congested(struct link *l_ptr)
  198. {
  199. return (l_ptr->out_queue_size >= l_ptr->queue_limit[0]);
  200. }
  201. static u32 link_max_pkt(struct link *l_ptr)
  202. {
  203. return l_ptr->max_pkt;
  204. }
  205. static void link_init_max_pkt(struct link *l_ptr)
  206. {
  207. u32 max_pkt;
  208. max_pkt = (l_ptr->b_ptr->publ.mtu & ~3);
  209. if (max_pkt > MAX_MSG_SIZE)
  210. max_pkt = MAX_MSG_SIZE;
  211. l_ptr->max_pkt_target = max_pkt;
  212. if (l_ptr->max_pkt_target < MAX_PKT_DEFAULT)
  213. l_ptr->max_pkt = l_ptr->max_pkt_target;
  214. else
  215. l_ptr->max_pkt = MAX_PKT_DEFAULT;
  216. l_ptr->max_pkt_probes = 0;
  217. }
  218. static u32 link_next_sent(struct link *l_ptr)
  219. {
  220. if (l_ptr->next_out)
  221. return msg_seqno(buf_msg(l_ptr->next_out));
  222. return mod(l_ptr->next_out_no);
  223. }
  224. static u32 link_last_sent(struct link *l_ptr)
  225. {
  226. return mod(link_next_sent(l_ptr) - 1);
  227. }
  228. /*
  229. * Simple non-static link routines (i.e. referenced outside this file)
  230. */
  231. int tipc_link_is_up(struct link *l_ptr)
  232. {
  233. if (!l_ptr)
  234. return 0;
  235. return (link_working_working(l_ptr) || link_working_unknown(l_ptr));
  236. }
  237. int tipc_link_is_active(struct link *l_ptr)
  238. {
  239. return ((l_ptr->owner->active_links[0] == l_ptr) ||
  240. (l_ptr->owner->active_links[1] == l_ptr));
  241. }
  242. /**
  243. * link_name_validate - validate & (optionally) deconstruct link name
  244. * @name - ptr to link name string
  245. * @name_parts - ptr to area for link name components (or NULL if not needed)
  246. *
  247. * Returns 1 if link name is valid, otherwise 0.
  248. */
  249. static int link_name_validate(const char *name, struct link_name *name_parts)
  250. {
  251. char name_copy[TIPC_MAX_LINK_NAME];
  252. char *addr_local;
  253. char *if_local;
  254. char *addr_peer;
  255. char *if_peer;
  256. char dummy;
  257. u32 z_local, c_local, n_local;
  258. u32 z_peer, c_peer, n_peer;
  259. u32 if_local_len;
  260. u32 if_peer_len;
  261. /* copy link name & ensure length is OK */
  262. name_copy[TIPC_MAX_LINK_NAME - 1] = 0;
  263. /* need above in case non-Posix strncpy() doesn't pad with nulls */
  264. strncpy(name_copy, name, TIPC_MAX_LINK_NAME);
  265. if (name_copy[TIPC_MAX_LINK_NAME - 1] != 0)
  266. return 0;
  267. /* ensure all component parts of link name are present */
  268. addr_local = name_copy;
  269. if ((if_local = strchr(addr_local, ':')) == NULL)
  270. return 0;
  271. *(if_local++) = 0;
  272. if ((addr_peer = strchr(if_local, '-')) == NULL)
  273. return 0;
  274. *(addr_peer++) = 0;
  275. if_local_len = addr_peer - if_local;
  276. if ((if_peer = strchr(addr_peer, ':')) == NULL)
  277. return 0;
  278. *(if_peer++) = 0;
  279. if_peer_len = strlen(if_peer) + 1;
  280. /* validate component parts of link name */
  281. if ((sscanf(addr_local, "%u.%u.%u%c",
  282. &z_local, &c_local, &n_local, &dummy) != 3) ||
  283. (sscanf(addr_peer, "%u.%u.%u%c",
  284. &z_peer, &c_peer, &n_peer, &dummy) != 3) ||
  285. (z_local > 255) || (c_local > 4095) || (n_local > 4095) ||
  286. (z_peer > 255) || (c_peer > 4095) || (n_peer > 4095) ||
  287. (if_local_len <= 1) || (if_local_len > TIPC_MAX_IF_NAME) ||
  288. (if_peer_len <= 1) || (if_peer_len > TIPC_MAX_IF_NAME) ||
  289. (strspn(if_local, tipc_alphabet) != (if_local_len - 1)) ||
  290. (strspn(if_peer, tipc_alphabet) != (if_peer_len - 1)))
  291. return 0;
  292. /* return link name components, if necessary */
  293. if (name_parts) {
  294. name_parts->addr_local = tipc_addr(z_local, c_local, n_local);
  295. strcpy(name_parts->if_local, if_local);
  296. name_parts->addr_peer = tipc_addr(z_peer, c_peer, n_peer);
  297. strcpy(name_parts->if_peer, if_peer);
  298. }
  299. return 1;
  300. }
  301. /**
  302. * link_timeout - handle expiration of link timer
  303. * @l_ptr: pointer to link
  304. *
  305. * This routine must not grab "tipc_net_lock" to avoid a potential deadlock conflict
  306. * with tipc_link_delete(). (There is no risk that the node will be deleted by
  307. * another thread because tipc_link_delete() always cancels the link timer before
  308. * tipc_node_delete() is called.)
  309. */
  310. static void link_timeout(struct link *l_ptr)
  311. {
  312. tipc_node_lock(l_ptr->owner);
  313. /* update counters used in statistical profiling of send traffic */
  314. l_ptr->stats.accu_queue_sz += l_ptr->out_queue_size;
  315. l_ptr->stats.queue_sz_counts++;
  316. if (l_ptr->out_queue_size > l_ptr->stats.max_queue_sz)
  317. l_ptr->stats.max_queue_sz = l_ptr->out_queue_size;
  318. if (l_ptr->first_out) {
  319. struct tipc_msg *msg = buf_msg(l_ptr->first_out);
  320. u32 length = msg_size(msg);
  321. if ((msg_user(msg) == MSG_FRAGMENTER)
  322. && (msg_type(msg) == FIRST_FRAGMENT)) {
  323. length = msg_size(msg_get_wrapped(msg));
  324. }
  325. if (length) {
  326. l_ptr->stats.msg_lengths_total += length;
  327. l_ptr->stats.msg_length_counts++;
  328. if (length <= 64)
  329. l_ptr->stats.msg_length_profile[0]++;
  330. else if (length <= 256)
  331. l_ptr->stats.msg_length_profile[1]++;
  332. else if (length <= 1024)
  333. l_ptr->stats.msg_length_profile[2]++;
  334. else if (length <= 4096)
  335. l_ptr->stats.msg_length_profile[3]++;
  336. else if (length <= 16384)
  337. l_ptr->stats.msg_length_profile[4]++;
  338. else if (length <= 32768)
  339. l_ptr->stats.msg_length_profile[5]++;
  340. else
  341. l_ptr->stats.msg_length_profile[6]++;
  342. }
  343. }
  344. /* do all other link processing performed on a periodic basis */
  345. link_check_defragm_bufs(l_ptr);
  346. link_state_event(l_ptr, TIMEOUT_EVT);
  347. if (l_ptr->next_out)
  348. tipc_link_push_queue(l_ptr);
  349. tipc_node_unlock(l_ptr->owner);
  350. }
  351. static void link_set_timer(struct link *l_ptr, u32 time)
  352. {
  353. k_start_timer(&l_ptr->timer, time);
  354. }
  355. /**
  356. * tipc_link_create - create a new link
  357. * @b_ptr: pointer to associated bearer
  358. * @peer: network address of node at other end of link
  359. * @media_addr: media address to use when sending messages over link
  360. *
  361. * Returns pointer to link.
  362. */
  363. struct link *tipc_link_create(struct bearer *b_ptr, const u32 peer,
  364. const struct tipc_media_addr *media_addr)
  365. {
  366. struct link *l_ptr;
  367. struct tipc_msg *msg;
  368. char *if_name;
  369. l_ptr = kzalloc(sizeof(*l_ptr), GFP_ATOMIC);
  370. if (!l_ptr) {
  371. warn("Link creation failed, no memory\n");
  372. return NULL;
  373. }
  374. if (LINK_LOG_BUF_SIZE) {
  375. char *pb = kmalloc(LINK_LOG_BUF_SIZE, GFP_ATOMIC);
  376. if (!pb) {
  377. kfree(l_ptr);
  378. warn("Link creation failed, no memory for print buffer\n");
  379. return NULL;
  380. }
  381. tipc_printbuf_init(&l_ptr->print_buf, pb, LINK_LOG_BUF_SIZE);
  382. }
  383. l_ptr->addr = peer;
  384. if_name = strchr(b_ptr->publ.name, ':') + 1;
  385. sprintf(l_ptr->name, "%u.%u.%u:%s-%u.%u.%u:",
  386. tipc_zone(tipc_own_addr), tipc_cluster(tipc_own_addr),
  387. tipc_node(tipc_own_addr),
  388. if_name,
  389. tipc_zone(peer), tipc_cluster(peer), tipc_node(peer));
  390. /* note: peer i/f is appended to link name by reset/activate */
  391. memcpy(&l_ptr->media_addr, media_addr, sizeof(*media_addr));
  392. l_ptr->checkpoint = 1;
  393. l_ptr->b_ptr = b_ptr;
  394. link_set_supervision_props(l_ptr, b_ptr->media->tolerance);
  395. l_ptr->state = RESET_UNKNOWN;
  396. l_ptr->pmsg = (struct tipc_msg *)&l_ptr->proto_msg;
  397. msg = l_ptr->pmsg;
  398. msg_init(msg, LINK_PROTOCOL, RESET_MSG, INT_H_SIZE, l_ptr->addr);
  399. msg_set_size(msg, sizeof(l_ptr->proto_msg));
  400. msg_set_session(msg, (tipc_random & 0xffff));
  401. msg_set_bearer_id(msg, b_ptr->identity);
  402. strcpy((char *)msg_data(msg), if_name);
  403. l_ptr->priority = b_ptr->priority;
  404. tipc_link_set_queue_limits(l_ptr, b_ptr->media->window);
  405. link_init_max_pkt(l_ptr);
  406. l_ptr->next_out_no = 1;
  407. INIT_LIST_HEAD(&l_ptr->waiting_ports);
  408. link_reset_statistics(l_ptr);
  409. l_ptr->owner = tipc_node_attach_link(l_ptr);
  410. if (!l_ptr->owner) {
  411. if (LINK_LOG_BUF_SIZE)
  412. kfree(l_ptr->print_buf.buf);
  413. kfree(l_ptr);
  414. return NULL;
  415. }
  416. k_init_timer(&l_ptr->timer, (Handler)link_timeout, (unsigned long)l_ptr);
  417. list_add_tail(&l_ptr->link_list, &b_ptr->links);
  418. tipc_k_signal((Handler)tipc_link_start, (unsigned long)l_ptr);
  419. dbg("tipc_link_create(): tolerance = %u,cont intv = %u, abort_limit = %u\n",
  420. l_ptr->tolerance, l_ptr->continuity_interval, l_ptr->abort_limit);
  421. return l_ptr;
  422. }
  423. /**
  424. * tipc_link_delete - delete a link
  425. * @l_ptr: pointer to link
  426. *
  427. * Note: 'tipc_net_lock' is write_locked, bearer is locked.
  428. * This routine must not grab the node lock until after link timer cancellation
  429. * to avoid a potential deadlock situation.
  430. */
  431. void tipc_link_delete(struct link *l_ptr)
  432. {
  433. if (!l_ptr) {
  434. err("Attempt to delete non-existent link\n");
  435. return;
  436. }
  437. dbg("tipc_link_delete()\n");
  438. k_cancel_timer(&l_ptr->timer);
  439. tipc_node_lock(l_ptr->owner);
  440. tipc_link_reset(l_ptr);
  441. tipc_node_detach_link(l_ptr->owner, l_ptr);
  442. tipc_link_stop(l_ptr);
  443. list_del_init(&l_ptr->link_list);
  444. if (LINK_LOG_BUF_SIZE)
  445. kfree(l_ptr->print_buf.buf);
  446. tipc_node_unlock(l_ptr->owner);
  447. k_term_timer(&l_ptr->timer);
  448. kfree(l_ptr);
  449. }
  450. void tipc_link_start(struct link *l_ptr)
  451. {
  452. dbg("tipc_link_start %x\n", l_ptr);
  453. link_state_event(l_ptr, STARTING_EVT);
  454. }
  455. /**
  456. * link_schedule_port - schedule port for deferred sending
  457. * @l_ptr: pointer to link
  458. * @origport: reference to sending port
  459. * @sz: amount of data to be sent
  460. *
  461. * Schedules port for renewed sending of messages after link congestion
  462. * has abated.
  463. */
  464. static int link_schedule_port(struct link *l_ptr, u32 origport, u32 sz)
  465. {
  466. struct port *p_ptr;
  467. spin_lock_bh(&tipc_port_list_lock);
  468. p_ptr = tipc_port_lock(origport);
  469. if (p_ptr) {
  470. if (!p_ptr->wakeup)
  471. goto exit;
  472. if (!list_empty(&p_ptr->wait_list))
  473. goto exit;
  474. p_ptr->congested_link = l_ptr;
  475. p_ptr->publ.congested = 1;
  476. p_ptr->waiting_pkts = 1 + ((sz - 1) / link_max_pkt(l_ptr));
  477. list_add_tail(&p_ptr->wait_list, &l_ptr->waiting_ports);
  478. l_ptr->stats.link_congs++;
  479. exit:
  480. tipc_port_unlock(p_ptr);
  481. }
  482. spin_unlock_bh(&tipc_port_list_lock);
  483. return -ELINKCONG;
  484. }
  485. void tipc_link_wakeup_ports(struct link *l_ptr, int all)
  486. {
  487. struct port *p_ptr;
  488. struct port *temp_p_ptr;
  489. int win = l_ptr->queue_limit[0] - l_ptr->out_queue_size;
  490. if (all)
  491. win = 100000;
  492. if (win <= 0)
  493. return;
  494. if (!spin_trylock_bh(&tipc_port_list_lock))
  495. return;
  496. if (link_congested(l_ptr))
  497. goto exit;
  498. list_for_each_entry_safe(p_ptr, temp_p_ptr, &l_ptr->waiting_ports,
  499. wait_list) {
  500. if (win <= 0)
  501. break;
  502. list_del_init(&p_ptr->wait_list);
  503. p_ptr->congested_link = NULL;
  504. spin_lock_bh(p_ptr->publ.lock);
  505. p_ptr->publ.congested = 0;
  506. p_ptr->wakeup(&p_ptr->publ);
  507. win -= p_ptr->waiting_pkts;
  508. spin_unlock_bh(p_ptr->publ.lock);
  509. }
  510. exit:
  511. spin_unlock_bh(&tipc_port_list_lock);
  512. }
  513. /**
  514. * link_release_outqueue - purge link's outbound message queue
  515. * @l_ptr: pointer to link
  516. */
  517. static void link_release_outqueue(struct link *l_ptr)
  518. {
  519. struct sk_buff *buf = l_ptr->first_out;
  520. struct sk_buff *next;
  521. while (buf) {
  522. next = buf->next;
  523. buf_discard(buf);
  524. buf = next;
  525. }
  526. l_ptr->first_out = NULL;
  527. l_ptr->out_queue_size = 0;
  528. }
  529. /**
  530. * tipc_link_reset_fragments - purge link's inbound message fragments queue
  531. * @l_ptr: pointer to link
  532. */
  533. void tipc_link_reset_fragments(struct link *l_ptr)
  534. {
  535. struct sk_buff *buf = l_ptr->defragm_buf;
  536. struct sk_buff *next;
  537. while (buf) {
  538. next = buf->next;
  539. buf_discard(buf);
  540. buf = next;
  541. }
  542. l_ptr->defragm_buf = NULL;
  543. }
  544. /**
  545. * tipc_link_stop - purge all inbound and outbound messages associated with link
  546. * @l_ptr: pointer to link
  547. */
  548. void tipc_link_stop(struct link *l_ptr)
  549. {
  550. struct sk_buff *buf;
  551. struct sk_buff *next;
  552. buf = l_ptr->oldest_deferred_in;
  553. while (buf) {
  554. next = buf->next;
  555. buf_discard(buf);
  556. buf = next;
  557. }
  558. buf = l_ptr->first_out;
  559. while (buf) {
  560. next = buf->next;
  561. buf_discard(buf);
  562. buf = next;
  563. }
  564. tipc_link_reset_fragments(l_ptr);
  565. buf_discard(l_ptr->proto_msg_queue);
  566. l_ptr->proto_msg_queue = NULL;
  567. }
  568. #if 0
  569. /* LINK EVENT CODE IS NOT SUPPORTED AT PRESENT */
  570. static void link_recv_event(struct link_event *ev)
  571. {
  572. ev->fcn(ev->addr, ev->name, ev->up);
  573. kfree(ev);
  574. }
  575. static void link_send_event(void (*fcn)(u32 a, char *n, int up),
  576. struct link *l_ptr, int up)
  577. {
  578. struct link_event *ev;
  579. ev = kmalloc(sizeof(*ev), GFP_ATOMIC);
  580. if (!ev) {
  581. warn("Link event allocation failure\n");
  582. return;
  583. }
  584. ev->addr = l_ptr->addr;
  585. ev->up = up;
  586. ev->fcn = fcn;
  587. memcpy(ev->name, l_ptr->name, TIPC_MAX_LINK_NAME);
  588. tipc_k_signal((Handler)link_recv_event, (unsigned long)ev);
  589. }
  590. #else
  591. #define link_send_event(fcn, l_ptr, up) do { } while (0)
  592. #endif
  593. void tipc_link_reset(struct link *l_ptr)
  594. {
  595. struct sk_buff *buf;
  596. u32 prev_state = l_ptr->state;
  597. u32 checkpoint = l_ptr->next_in_no;
  598. int was_active_link = tipc_link_is_active(l_ptr);
  599. msg_set_session(l_ptr->pmsg, ((msg_session(l_ptr->pmsg) + 1) & 0xffff));
  600. /* Link is down, accept any session */
  601. l_ptr->peer_session = INVALID_SESSION;
  602. /* Prepare for max packet size negotiation */
  603. link_init_max_pkt(l_ptr);
  604. l_ptr->state = RESET_UNKNOWN;
  605. dbg_link_state("Resetting Link\n");
  606. if ((prev_state == RESET_UNKNOWN) || (prev_state == RESET_RESET))
  607. return;
  608. tipc_node_link_down(l_ptr->owner, l_ptr);
  609. tipc_bearer_remove_dest(l_ptr->b_ptr, l_ptr->addr);
  610. #if 0
  611. tipc_printf(TIPC_CONS, "\nReset link <%s>\n", l_ptr->name);
  612. dbg_link_dump();
  613. #endif
  614. if (was_active_link && tipc_node_has_active_links(l_ptr->owner) &&
  615. l_ptr->owner->permit_changeover) {
  616. l_ptr->reset_checkpoint = checkpoint;
  617. l_ptr->exp_msg_count = START_CHANGEOVER;
  618. }
  619. /* Clean up all queues: */
  620. link_release_outqueue(l_ptr);
  621. buf_discard(l_ptr->proto_msg_queue);
  622. l_ptr->proto_msg_queue = NULL;
  623. buf = l_ptr->oldest_deferred_in;
  624. while (buf) {
  625. struct sk_buff *next = buf->next;
  626. buf_discard(buf);
  627. buf = next;
  628. }
  629. if (!list_empty(&l_ptr->waiting_ports))
  630. tipc_link_wakeup_ports(l_ptr, 1);
  631. l_ptr->retransm_queue_head = 0;
  632. l_ptr->retransm_queue_size = 0;
  633. l_ptr->last_out = NULL;
  634. l_ptr->first_out = NULL;
  635. l_ptr->next_out = NULL;
  636. l_ptr->unacked_window = 0;
  637. l_ptr->checkpoint = 1;
  638. l_ptr->next_out_no = 1;
  639. l_ptr->deferred_inqueue_sz = 0;
  640. l_ptr->oldest_deferred_in = NULL;
  641. l_ptr->newest_deferred_in = NULL;
  642. l_ptr->fsm_msg_cnt = 0;
  643. l_ptr->stale_count = 0;
  644. link_reset_statistics(l_ptr);
  645. link_send_event(tipc_cfg_link_event, l_ptr, 0);
  646. if (!in_own_cluster(l_ptr->addr))
  647. link_send_event(tipc_disc_link_event, l_ptr, 0);
  648. }
  649. static void link_activate(struct link *l_ptr)
  650. {
  651. l_ptr->next_in_no = l_ptr->stats.recv_info = 1;
  652. tipc_node_link_up(l_ptr->owner, l_ptr);
  653. tipc_bearer_add_dest(l_ptr->b_ptr, l_ptr->addr);
  654. link_send_event(tipc_cfg_link_event, l_ptr, 1);
  655. if (!in_own_cluster(l_ptr->addr))
  656. link_send_event(tipc_disc_link_event, l_ptr, 1);
  657. }
  658. /**
  659. * link_state_event - link finite state machine
  660. * @l_ptr: pointer to link
  661. * @event: state machine event to process
  662. */
  663. static void link_state_event(struct link *l_ptr, unsigned event)
  664. {
  665. struct link *other;
  666. u32 cont_intv = l_ptr->continuity_interval;
  667. if (!l_ptr->started && (event != STARTING_EVT))
  668. return; /* Not yet. */
  669. if (link_blocked(l_ptr)) {
  670. if (event == TIMEOUT_EVT) {
  671. link_set_timer(l_ptr, cont_intv);
  672. }
  673. return; /* Changeover going on */
  674. }
  675. dbg_link("STATE_EV: <%s> ", l_ptr->name);
  676. switch (l_ptr->state) {
  677. case WORKING_WORKING:
  678. dbg_link("WW/");
  679. switch (event) {
  680. case TRAFFIC_MSG_EVT:
  681. dbg_link("TRF-");
  682. /* fall through */
  683. case ACTIVATE_MSG:
  684. dbg_link("ACT\n");
  685. break;
  686. case TIMEOUT_EVT:
  687. dbg_link("TIM ");
  688. if (l_ptr->next_in_no != l_ptr->checkpoint) {
  689. l_ptr->checkpoint = l_ptr->next_in_no;
  690. if (tipc_bclink_acks_missing(l_ptr->owner)) {
  691. tipc_link_send_proto_msg(l_ptr, STATE_MSG,
  692. 0, 0, 0, 0, 0);
  693. l_ptr->fsm_msg_cnt++;
  694. } else if (l_ptr->max_pkt < l_ptr->max_pkt_target) {
  695. tipc_link_send_proto_msg(l_ptr, STATE_MSG,
  696. 1, 0, 0, 0, 0);
  697. l_ptr->fsm_msg_cnt++;
  698. }
  699. link_set_timer(l_ptr, cont_intv);
  700. break;
  701. }
  702. dbg_link(" -> WU\n");
  703. l_ptr->state = WORKING_UNKNOWN;
  704. l_ptr->fsm_msg_cnt = 0;
  705. tipc_link_send_proto_msg(l_ptr, STATE_MSG, 1, 0, 0, 0, 0);
  706. l_ptr->fsm_msg_cnt++;
  707. link_set_timer(l_ptr, cont_intv / 4);
  708. break;
  709. case RESET_MSG:
  710. dbg_link("RES -> RR\n");
  711. info("Resetting link <%s>, requested by peer\n",
  712. l_ptr->name);
  713. tipc_link_reset(l_ptr);
  714. l_ptr->state = RESET_RESET;
  715. l_ptr->fsm_msg_cnt = 0;
  716. tipc_link_send_proto_msg(l_ptr, ACTIVATE_MSG, 0, 0, 0, 0, 0);
  717. l_ptr->fsm_msg_cnt++;
  718. link_set_timer(l_ptr, cont_intv);
  719. break;
  720. default:
  721. err("Unknown link event %u in WW state\n", event);
  722. }
  723. break;
  724. case WORKING_UNKNOWN:
  725. dbg_link("WU/");
  726. switch (event) {
  727. case TRAFFIC_MSG_EVT:
  728. dbg_link("TRF-");
  729. case ACTIVATE_MSG:
  730. dbg_link("ACT -> WW\n");
  731. l_ptr->state = WORKING_WORKING;
  732. l_ptr->fsm_msg_cnt = 0;
  733. link_set_timer(l_ptr, cont_intv);
  734. break;
  735. case RESET_MSG:
  736. dbg_link("RES -> RR\n");
  737. info("Resetting link <%s>, requested by peer "
  738. "while probing\n", l_ptr->name);
  739. tipc_link_reset(l_ptr);
  740. l_ptr->state = RESET_RESET;
  741. l_ptr->fsm_msg_cnt = 0;
  742. tipc_link_send_proto_msg(l_ptr, ACTIVATE_MSG, 0, 0, 0, 0, 0);
  743. l_ptr->fsm_msg_cnt++;
  744. link_set_timer(l_ptr, cont_intv);
  745. break;
  746. case TIMEOUT_EVT:
  747. dbg_link("TIM ");
  748. if (l_ptr->next_in_no != l_ptr->checkpoint) {
  749. dbg_link("-> WW \n");
  750. l_ptr->state = WORKING_WORKING;
  751. l_ptr->fsm_msg_cnt = 0;
  752. l_ptr->checkpoint = l_ptr->next_in_no;
  753. if (tipc_bclink_acks_missing(l_ptr->owner)) {
  754. tipc_link_send_proto_msg(l_ptr, STATE_MSG,
  755. 0, 0, 0, 0, 0);
  756. l_ptr->fsm_msg_cnt++;
  757. }
  758. link_set_timer(l_ptr, cont_intv);
  759. } else if (l_ptr->fsm_msg_cnt < l_ptr->abort_limit) {
  760. dbg_link("Probing %u/%u,timer = %u ms)\n",
  761. l_ptr->fsm_msg_cnt, l_ptr->abort_limit,
  762. cont_intv / 4);
  763. tipc_link_send_proto_msg(l_ptr, STATE_MSG,
  764. 1, 0, 0, 0, 0);
  765. l_ptr->fsm_msg_cnt++;
  766. link_set_timer(l_ptr, cont_intv / 4);
  767. } else { /* Link has failed */
  768. dbg_link("-> RU (%u probes unanswered)\n",
  769. l_ptr->fsm_msg_cnt);
  770. warn("Resetting link <%s>, peer not responding\n",
  771. l_ptr->name);
  772. tipc_link_reset(l_ptr);
  773. l_ptr->state = RESET_UNKNOWN;
  774. l_ptr->fsm_msg_cnt = 0;
  775. tipc_link_send_proto_msg(l_ptr, RESET_MSG,
  776. 0, 0, 0, 0, 0);
  777. l_ptr->fsm_msg_cnt++;
  778. link_set_timer(l_ptr, cont_intv);
  779. }
  780. break;
  781. default:
  782. err("Unknown link event %u in WU state\n", event);
  783. }
  784. break;
  785. case RESET_UNKNOWN:
  786. dbg_link("RU/");
  787. switch (event) {
  788. case TRAFFIC_MSG_EVT:
  789. dbg_link("TRF-\n");
  790. break;
  791. case ACTIVATE_MSG:
  792. other = l_ptr->owner->active_links[0];
  793. if (other && link_working_unknown(other)) {
  794. dbg_link("ACT\n");
  795. break;
  796. }
  797. dbg_link("ACT -> WW\n");
  798. l_ptr->state = WORKING_WORKING;
  799. l_ptr->fsm_msg_cnt = 0;
  800. link_activate(l_ptr);
  801. tipc_link_send_proto_msg(l_ptr, STATE_MSG, 1, 0, 0, 0, 0);
  802. l_ptr->fsm_msg_cnt++;
  803. link_set_timer(l_ptr, cont_intv);
  804. break;
  805. case RESET_MSG:
  806. dbg_link("RES \n");
  807. dbg_link(" -> RR\n");
  808. l_ptr->state = RESET_RESET;
  809. l_ptr->fsm_msg_cnt = 0;
  810. tipc_link_send_proto_msg(l_ptr, ACTIVATE_MSG, 1, 0, 0, 0, 0);
  811. l_ptr->fsm_msg_cnt++;
  812. link_set_timer(l_ptr, cont_intv);
  813. break;
  814. case STARTING_EVT:
  815. dbg_link("START-");
  816. l_ptr->started = 1;
  817. /* fall through */
  818. case TIMEOUT_EVT:
  819. dbg_link("TIM \n");
  820. tipc_link_send_proto_msg(l_ptr, RESET_MSG, 0, 0, 0, 0, 0);
  821. l_ptr->fsm_msg_cnt++;
  822. link_set_timer(l_ptr, cont_intv);
  823. break;
  824. default:
  825. err("Unknown link event %u in RU state\n", event);
  826. }
  827. break;
  828. case RESET_RESET:
  829. dbg_link("RR/ ");
  830. switch (event) {
  831. case TRAFFIC_MSG_EVT:
  832. dbg_link("TRF-");
  833. /* fall through */
  834. case ACTIVATE_MSG:
  835. other = l_ptr->owner->active_links[0];
  836. if (other && link_working_unknown(other)) {
  837. dbg_link("ACT\n");
  838. break;
  839. }
  840. dbg_link("ACT -> WW\n");
  841. l_ptr->state = WORKING_WORKING;
  842. l_ptr->fsm_msg_cnt = 0;
  843. link_activate(l_ptr);
  844. tipc_link_send_proto_msg(l_ptr, STATE_MSG, 1, 0, 0, 0, 0);
  845. l_ptr->fsm_msg_cnt++;
  846. link_set_timer(l_ptr, cont_intv);
  847. break;
  848. case RESET_MSG:
  849. dbg_link("RES\n");
  850. break;
  851. case TIMEOUT_EVT:
  852. dbg_link("TIM\n");
  853. tipc_link_send_proto_msg(l_ptr, ACTIVATE_MSG, 0, 0, 0, 0, 0);
  854. l_ptr->fsm_msg_cnt++;
  855. link_set_timer(l_ptr, cont_intv);
  856. dbg_link("fsm_msg_cnt %u\n", l_ptr->fsm_msg_cnt);
  857. break;
  858. default:
  859. err("Unknown link event %u in RR state\n", event);
  860. }
  861. break;
  862. default:
  863. err("Unknown link state %u/%u\n", l_ptr->state, event);
  864. }
  865. }
  866. /*
  867. * link_bundle_buf(): Append contents of a buffer to
  868. * the tail of an existing one.
  869. */
  870. static int link_bundle_buf(struct link *l_ptr,
  871. struct sk_buff *bundler,
  872. struct sk_buff *buf)
  873. {
  874. struct tipc_msg *bundler_msg = buf_msg(bundler);
  875. struct tipc_msg *msg = buf_msg(buf);
  876. u32 size = msg_size(msg);
  877. u32 bundle_size = msg_size(bundler_msg);
  878. u32 to_pos = align(bundle_size);
  879. u32 pad = to_pos - bundle_size;
  880. if (msg_user(bundler_msg) != MSG_BUNDLER)
  881. return 0;
  882. if (msg_type(bundler_msg) != OPEN_MSG)
  883. return 0;
  884. if (skb_tailroom(bundler) < (pad + size))
  885. return 0;
  886. if (link_max_pkt(l_ptr) < (to_pos + size))
  887. return 0;
  888. skb_put(bundler, pad + size);
  889. skb_copy_to_linear_data_offset(bundler, to_pos, buf->data, size);
  890. msg_set_size(bundler_msg, to_pos + size);
  891. msg_set_msgcnt(bundler_msg, msg_msgcnt(bundler_msg) + 1);
  892. dbg("Packed msg # %u(%u octets) into pos %u in buf(#%u)\n",
  893. msg_msgcnt(bundler_msg), size, to_pos, msg_seqno(bundler_msg));
  894. msg_dbg(msg, "PACKD:");
  895. buf_discard(buf);
  896. l_ptr->stats.sent_bundled++;
  897. return 1;
  898. }
  899. static void link_add_to_outqueue(struct link *l_ptr,
  900. struct sk_buff *buf,
  901. struct tipc_msg *msg)
  902. {
  903. u32 ack = mod(l_ptr->next_in_no - 1);
  904. u32 seqno = mod(l_ptr->next_out_no++);
  905. msg_set_word(msg, 2, ((ack << 16) | seqno));
  906. msg_set_bcast_ack(msg, l_ptr->owner->bclink.last_in);
  907. buf->next = NULL;
  908. if (l_ptr->first_out) {
  909. l_ptr->last_out->next = buf;
  910. l_ptr->last_out = buf;
  911. } else
  912. l_ptr->first_out = l_ptr->last_out = buf;
  913. l_ptr->out_queue_size++;
  914. }
  915. /*
  916. * tipc_link_send_buf() is the 'full path' for messages, called from
  917. * inside TIPC when the 'fast path' in tipc_send_buf
  918. * has failed, and from link_send()
  919. */
  920. int tipc_link_send_buf(struct link *l_ptr, struct sk_buff *buf)
  921. {
  922. struct tipc_msg *msg = buf_msg(buf);
  923. u32 size = msg_size(msg);
  924. u32 dsz = msg_data_sz(msg);
  925. u32 queue_size = l_ptr->out_queue_size;
  926. u32 imp = msg_tot_importance(msg);
  927. u32 queue_limit = l_ptr->queue_limit[imp];
  928. u32 max_packet = link_max_pkt(l_ptr);
  929. msg_set_prevnode(msg, tipc_own_addr); /* If routed message */
  930. /* Match msg importance against queue limits: */
  931. if (unlikely(queue_size >= queue_limit)) {
  932. if (imp <= TIPC_CRITICAL_IMPORTANCE) {
  933. return link_schedule_port(l_ptr, msg_origport(msg),
  934. size);
  935. }
  936. msg_dbg(msg, "TIPC: Congestion, throwing away\n");
  937. buf_discard(buf);
  938. if (imp > CONN_MANAGER) {
  939. warn("Resetting link <%s>, send queue full", l_ptr->name);
  940. tipc_link_reset(l_ptr);
  941. }
  942. return dsz;
  943. }
  944. /* Fragmentation needed ? */
  945. if (size > max_packet)
  946. return tipc_link_send_long_buf(l_ptr, buf);
  947. /* Packet can be queued or sent: */
  948. if (queue_size > l_ptr->stats.max_queue_sz)
  949. l_ptr->stats.max_queue_sz = queue_size;
  950. if (likely(!tipc_bearer_congested(l_ptr->b_ptr, l_ptr) &&
  951. !link_congested(l_ptr))) {
  952. link_add_to_outqueue(l_ptr, buf, msg);
  953. if (likely(tipc_bearer_send(l_ptr->b_ptr, buf, &l_ptr->media_addr))) {
  954. l_ptr->unacked_window = 0;
  955. } else {
  956. tipc_bearer_schedule(l_ptr->b_ptr, l_ptr);
  957. l_ptr->stats.bearer_congs++;
  958. l_ptr->next_out = buf;
  959. }
  960. return dsz;
  961. }
  962. /* Congestion: can message be bundled ?: */
  963. if ((msg_user(msg) != CHANGEOVER_PROTOCOL) &&
  964. (msg_user(msg) != MSG_FRAGMENTER)) {
  965. /* Try adding message to an existing bundle */
  966. if (l_ptr->next_out &&
  967. link_bundle_buf(l_ptr, l_ptr->last_out, buf)) {
  968. tipc_bearer_resolve_congestion(l_ptr->b_ptr, l_ptr);
  969. return dsz;
  970. }
  971. /* Try creating a new bundle */
  972. if (size <= max_packet * 2 / 3) {
  973. struct sk_buff *bundler = buf_acquire(max_packet);
  974. struct tipc_msg bundler_hdr;
  975. if (bundler) {
  976. msg_init(&bundler_hdr, MSG_BUNDLER, OPEN_MSG,
  977. INT_H_SIZE, l_ptr->addr);
  978. skb_copy_to_linear_data(bundler, &bundler_hdr,
  979. INT_H_SIZE);
  980. skb_trim(bundler, INT_H_SIZE);
  981. link_bundle_buf(l_ptr, bundler, buf);
  982. buf = bundler;
  983. msg = buf_msg(buf);
  984. l_ptr->stats.sent_bundles++;
  985. }
  986. }
  987. }
  988. if (!l_ptr->next_out)
  989. l_ptr->next_out = buf;
  990. link_add_to_outqueue(l_ptr, buf, msg);
  991. tipc_bearer_resolve_congestion(l_ptr->b_ptr, l_ptr);
  992. return dsz;
  993. }
  994. /*
  995. * tipc_link_send(): same as tipc_link_send_buf(), but the link to use has
  996. * not been selected yet, and the the owner node is not locked
  997. * Called by TIPC internal users, e.g. the name distributor
  998. */
  999. int tipc_link_send(struct sk_buff *buf, u32 dest, u32 selector)
  1000. {
  1001. struct link *l_ptr;
  1002. struct node *n_ptr;
  1003. int res = -ELINKCONG;
  1004. read_lock_bh(&tipc_net_lock);
  1005. n_ptr = tipc_node_select(dest, selector);
  1006. if (n_ptr) {
  1007. tipc_node_lock(n_ptr);
  1008. l_ptr = n_ptr->active_links[selector & 1];
  1009. if (l_ptr) {
  1010. dbg("tipc_link_send: found link %x for dest %x\n", l_ptr, dest);
  1011. res = tipc_link_send_buf(l_ptr, buf);
  1012. } else {
  1013. dbg("Attempt to send msg to unreachable node:\n");
  1014. msg_dbg(buf_msg(buf),">>>");
  1015. buf_discard(buf);
  1016. }
  1017. tipc_node_unlock(n_ptr);
  1018. } else {
  1019. dbg("Attempt to send msg to unknown node:\n");
  1020. msg_dbg(buf_msg(buf),">>>");
  1021. buf_discard(buf);
  1022. }
  1023. read_unlock_bh(&tipc_net_lock);
  1024. return res;
  1025. }
  1026. /*
  1027. * link_send_buf_fast: Entry for data messages where the
  1028. * destination link is known and the header is complete,
  1029. * inclusive total message length. Very time critical.
  1030. * Link is locked. Returns user data length.
  1031. */
  1032. static int link_send_buf_fast(struct link *l_ptr, struct sk_buff *buf,
  1033. u32 *used_max_pkt)
  1034. {
  1035. struct tipc_msg *msg = buf_msg(buf);
  1036. int res = msg_data_sz(msg);
  1037. if (likely(!link_congested(l_ptr))) {
  1038. if (likely(msg_size(msg) <= link_max_pkt(l_ptr))) {
  1039. if (likely(list_empty(&l_ptr->b_ptr->cong_links))) {
  1040. link_add_to_outqueue(l_ptr, buf, msg);
  1041. if (likely(tipc_bearer_send(l_ptr->b_ptr, buf,
  1042. &l_ptr->media_addr))) {
  1043. l_ptr->unacked_window = 0;
  1044. msg_dbg(msg,"SENT_FAST:");
  1045. return res;
  1046. }
  1047. dbg("failed sent fast...\n");
  1048. tipc_bearer_schedule(l_ptr->b_ptr, l_ptr);
  1049. l_ptr->stats.bearer_congs++;
  1050. l_ptr->next_out = buf;
  1051. return res;
  1052. }
  1053. }
  1054. else
  1055. *used_max_pkt = link_max_pkt(l_ptr);
  1056. }
  1057. return tipc_link_send_buf(l_ptr, buf); /* All other cases */
  1058. }
  1059. /*
  1060. * tipc_send_buf_fast: Entry for data messages where the
  1061. * destination node is known and the header is complete,
  1062. * inclusive total message length.
  1063. * Returns user data length.
  1064. */
  1065. int tipc_send_buf_fast(struct sk_buff *buf, u32 destnode)
  1066. {
  1067. struct link *l_ptr;
  1068. struct node *n_ptr;
  1069. int res;
  1070. u32 selector = msg_origport(buf_msg(buf)) & 1;
  1071. u32 dummy;
  1072. if (destnode == tipc_own_addr)
  1073. return tipc_port_recv_msg(buf);
  1074. read_lock_bh(&tipc_net_lock);
  1075. n_ptr = tipc_node_select(destnode, selector);
  1076. if (likely(n_ptr)) {
  1077. tipc_node_lock(n_ptr);
  1078. l_ptr = n_ptr->active_links[selector];
  1079. dbg("send_fast: buf %x selected %x, destnode = %x\n",
  1080. buf, l_ptr, destnode);
  1081. if (likely(l_ptr)) {
  1082. res = link_send_buf_fast(l_ptr, buf, &dummy);
  1083. tipc_node_unlock(n_ptr);
  1084. read_unlock_bh(&tipc_net_lock);
  1085. return res;
  1086. }
  1087. tipc_node_unlock(n_ptr);
  1088. }
  1089. read_unlock_bh(&tipc_net_lock);
  1090. res = msg_data_sz(buf_msg(buf));
  1091. tipc_reject_msg(buf, TIPC_ERR_NO_NODE);
  1092. return res;
  1093. }
  1094. /*
  1095. * tipc_link_send_sections_fast: Entry for messages where the
  1096. * destination processor is known and the header is complete,
  1097. * except for total message length.
  1098. * Returns user data length or errno.
  1099. */
  1100. int tipc_link_send_sections_fast(struct port *sender,
  1101. struct iovec const *msg_sect,
  1102. const u32 num_sect,
  1103. u32 destaddr)
  1104. {
  1105. struct tipc_msg *hdr = &sender->publ.phdr;
  1106. struct link *l_ptr;
  1107. struct sk_buff *buf;
  1108. struct node *node;
  1109. int res;
  1110. u32 selector = msg_origport(hdr) & 1;
  1111. again:
  1112. /*
  1113. * Try building message using port's max_pkt hint.
  1114. * (Must not hold any locks while building message.)
  1115. */
  1116. res = msg_build(hdr, msg_sect, num_sect, sender->publ.max_pkt,
  1117. !sender->user_port, &buf);
  1118. read_lock_bh(&tipc_net_lock);
  1119. node = tipc_node_select(destaddr, selector);
  1120. if (likely(node)) {
  1121. tipc_node_lock(node);
  1122. l_ptr = node->active_links[selector];
  1123. if (likely(l_ptr)) {
  1124. if (likely(buf)) {
  1125. res = link_send_buf_fast(l_ptr, buf,
  1126. &sender->publ.max_pkt);
  1127. if (unlikely(res < 0))
  1128. buf_discard(buf);
  1129. exit:
  1130. tipc_node_unlock(node);
  1131. read_unlock_bh(&tipc_net_lock);
  1132. return res;
  1133. }
  1134. /* Exit if build request was invalid */
  1135. if (unlikely(res < 0))
  1136. goto exit;
  1137. /* Exit if link (or bearer) is congested */
  1138. if (link_congested(l_ptr) ||
  1139. !list_empty(&l_ptr->b_ptr->cong_links)) {
  1140. res = link_schedule_port(l_ptr,
  1141. sender->publ.ref, res);
  1142. goto exit;
  1143. }
  1144. /*
  1145. * Message size exceeds max_pkt hint; update hint,
  1146. * then re-try fast path or fragment the message
  1147. */
  1148. sender->publ.max_pkt = link_max_pkt(l_ptr);
  1149. tipc_node_unlock(node);
  1150. read_unlock_bh(&tipc_net_lock);
  1151. if ((msg_hdr_sz(hdr) + res) <= sender->publ.max_pkt)
  1152. goto again;
  1153. return link_send_sections_long(sender, msg_sect,
  1154. num_sect, destaddr);
  1155. }
  1156. tipc_node_unlock(node);
  1157. }
  1158. read_unlock_bh(&tipc_net_lock);
  1159. /* Couldn't find a link to the destination node */
  1160. if (buf)
  1161. return tipc_reject_msg(buf, TIPC_ERR_NO_NODE);
  1162. if (res >= 0)
  1163. return tipc_port_reject_sections(sender, hdr, msg_sect, num_sect,
  1164. TIPC_ERR_NO_NODE);
  1165. return res;
  1166. }
  1167. /*
  1168. * link_send_sections_long(): Entry for long messages where the
  1169. * destination node is known and the header is complete,
  1170. * inclusive total message length.
  1171. * Link and bearer congestion status have been checked to be ok,
  1172. * and are ignored if they change.
  1173. *
  1174. * Note that fragments do not use the full link MTU so that they won't have
  1175. * to undergo refragmentation if link changeover causes them to be sent
  1176. * over another link with an additional tunnel header added as prefix.
  1177. * (Refragmentation will still occur if the other link has a smaller MTU.)
  1178. *
  1179. * Returns user data length or errno.
  1180. */
  1181. static int link_send_sections_long(struct port *sender,
  1182. struct iovec const *msg_sect,
  1183. u32 num_sect,
  1184. u32 destaddr)
  1185. {
  1186. struct link *l_ptr;
  1187. struct node *node;
  1188. struct tipc_msg *hdr = &sender->publ.phdr;
  1189. u32 dsz = msg_data_sz(hdr);
  1190. u32 max_pkt,fragm_sz,rest;
  1191. struct tipc_msg fragm_hdr;
  1192. struct sk_buff *buf,*buf_chain,*prev;
  1193. u32 fragm_crs,fragm_rest,hsz,sect_rest;
  1194. const unchar *sect_crs;
  1195. int curr_sect;
  1196. u32 fragm_no;
  1197. again:
  1198. fragm_no = 1;
  1199. max_pkt = sender->publ.max_pkt - INT_H_SIZE;
  1200. /* leave room for tunnel header in case of link changeover */
  1201. fragm_sz = max_pkt - INT_H_SIZE;
  1202. /* leave room for fragmentation header in each fragment */
  1203. rest = dsz;
  1204. fragm_crs = 0;
  1205. fragm_rest = 0;
  1206. sect_rest = 0;
  1207. sect_crs = NULL;
  1208. curr_sect = -1;
  1209. /* Prepare reusable fragment header: */
  1210. msg_dbg(hdr, ">FRAGMENTING>");
  1211. msg_init(&fragm_hdr, MSG_FRAGMENTER, FIRST_FRAGMENT,
  1212. INT_H_SIZE, msg_destnode(hdr));
  1213. msg_set_link_selector(&fragm_hdr, sender->publ.ref);
  1214. msg_set_size(&fragm_hdr, max_pkt);
  1215. msg_set_fragm_no(&fragm_hdr, 1);
  1216. /* Prepare header of first fragment: */
  1217. buf_chain = buf = buf_acquire(max_pkt);
  1218. if (!buf)
  1219. return -ENOMEM;
  1220. buf->next = NULL;
  1221. skb_copy_to_linear_data(buf, &fragm_hdr, INT_H_SIZE);
  1222. hsz = msg_hdr_sz(hdr);
  1223. skb_copy_to_linear_data_offset(buf, INT_H_SIZE, hdr, hsz);
  1224. msg_dbg(buf_msg(buf), ">BUILD>");
  1225. /* Chop up message: */
  1226. fragm_crs = INT_H_SIZE + hsz;
  1227. fragm_rest = fragm_sz - hsz;
  1228. do { /* For all sections */
  1229. u32 sz;
  1230. if (!sect_rest) {
  1231. sect_rest = msg_sect[++curr_sect].iov_len;
  1232. sect_crs = (const unchar *)msg_sect[curr_sect].iov_base;
  1233. }
  1234. if (sect_rest < fragm_rest)
  1235. sz = sect_rest;
  1236. else
  1237. sz = fragm_rest;
  1238. if (likely(!sender->user_port)) {
  1239. if (copy_from_user(buf->data + fragm_crs, sect_crs, sz)) {
  1240. error:
  1241. for (; buf_chain; buf_chain = buf) {
  1242. buf = buf_chain->next;
  1243. buf_discard(buf_chain);
  1244. }
  1245. return -EFAULT;
  1246. }
  1247. } else
  1248. skb_copy_to_linear_data_offset(buf, fragm_crs,
  1249. sect_crs, sz);
  1250. sect_crs += sz;
  1251. sect_rest -= sz;
  1252. fragm_crs += sz;
  1253. fragm_rest -= sz;
  1254. rest -= sz;
  1255. if (!fragm_rest && rest) {
  1256. /* Initiate new fragment: */
  1257. if (rest <= fragm_sz) {
  1258. fragm_sz = rest;
  1259. msg_set_type(&fragm_hdr,LAST_FRAGMENT);
  1260. } else {
  1261. msg_set_type(&fragm_hdr, FRAGMENT);
  1262. }
  1263. msg_set_size(&fragm_hdr, fragm_sz + INT_H_SIZE);
  1264. msg_set_fragm_no(&fragm_hdr, ++fragm_no);
  1265. prev = buf;
  1266. buf = buf_acquire(fragm_sz + INT_H_SIZE);
  1267. if (!buf)
  1268. goto error;
  1269. buf->next = NULL;
  1270. prev->next = buf;
  1271. skb_copy_to_linear_data(buf, &fragm_hdr, INT_H_SIZE);
  1272. fragm_crs = INT_H_SIZE;
  1273. fragm_rest = fragm_sz;
  1274. msg_dbg(buf_msg(buf)," >BUILD>");
  1275. }
  1276. }
  1277. while (rest > 0);
  1278. /*
  1279. * Now we have a buffer chain. Select a link and check
  1280. * that packet size is still OK
  1281. */
  1282. node = tipc_node_select(destaddr, sender->publ.ref & 1);
  1283. if (likely(node)) {
  1284. tipc_node_lock(node);
  1285. l_ptr = node->active_links[sender->publ.ref & 1];
  1286. if (!l_ptr) {
  1287. tipc_node_unlock(node);
  1288. goto reject;
  1289. }
  1290. if (link_max_pkt(l_ptr) < max_pkt) {
  1291. sender->publ.max_pkt = link_max_pkt(l_ptr);
  1292. tipc_node_unlock(node);
  1293. for (; buf_chain; buf_chain = buf) {
  1294. buf = buf_chain->next;
  1295. buf_discard(buf_chain);
  1296. }
  1297. goto again;
  1298. }
  1299. } else {
  1300. reject:
  1301. for (; buf_chain; buf_chain = buf) {
  1302. buf = buf_chain->next;
  1303. buf_discard(buf_chain);
  1304. }
  1305. return tipc_port_reject_sections(sender, hdr, msg_sect, num_sect,
  1306. TIPC_ERR_NO_NODE);
  1307. }
  1308. /* Append whole chain to send queue: */
  1309. buf = buf_chain;
  1310. l_ptr->long_msg_seq_no = mod(l_ptr->long_msg_seq_no + 1);
  1311. if (!l_ptr->next_out)
  1312. l_ptr->next_out = buf_chain;
  1313. l_ptr->stats.sent_fragmented++;
  1314. while (buf) {
  1315. struct sk_buff *next = buf->next;
  1316. struct tipc_msg *msg = buf_msg(buf);
  1317. l_ptr->stats.sent_fragments++;
  1318. msg_set_long_msgno(msg, l_ptr->long_msg_seq_no);
  1319. link_add_to_outqueue(l_ptr, buf, msg);
  1320. msg_dbg(msg, ">ADD>");
  1321. buf = next;
  1322. }
  1323. /* Send it, if possible: */
  1324. tipc_link_push_queue(l_ptr);
  1325. tipc_node_unlock(node);
  1326. return dsz;
  1327. }
  1328. /*
  1329. * tipc_link_push_packet: Push one unsent packet to the media
  1330. */
  1331. u32 tipc_link_push_packet(struct link *l_ptr)
  1332. {
  1333. struct sk_buff *buf = l_ptr->first_out;
  1334. u32 r_q_size = l_ptr->retransm_queue_size;
  1335. u32 r_q_head = l_ptr->retransm_queue_head;
  1336. /* Step to position where retransmission failed, if any, */
  1337. /* consider that buffers may have been released in meantime */
  1338. if (r_q_size && buf) {
  1339. u32 last = lesser(mod(r_q_head + r_q_size),
  1340. link_last_sent(l_ptr));
  1341. u32 first = msg_seqno(buf_msg(buf));
  1342. while (buf && less(first, r_q_head)) {
  1343. first = mod(first + 1);
  1344. buf = buf->next;
  1345. }
  1346. l_ptr->retransm_queue_head = r_q_head = first;
  1347. l_ptr->retransm_queue_size = r_q_size = mod(last - first);
  1348. }
  1349. /* Continue retransmission now, if there is anything: */
  1350. if (r_q_size && buf && !skb_cloned(buf)) {
  1351. msg_set_ack(buf_msg(buf), mod(l_ptr->next_in_no - 1));
  1352. msg_set_bcast_ack(buf_msg(buf), l_ptr->owner->bclink.last_in);
  1353. if (tipc_bearer_send(l_ptr->b_ptr, buf, &l_ptr->media_addr)) {
  1354. msg_dbg(buf_msg(buf), ">DEF-RETR>");
  1355. l_ptr->retransm_queue_head = mod(++r_q_head);
  1356. l_ptr->retransm_queue_size = --r_q_size;
  1357. l_ptr->stats.retransmitted++;
  1358. return TIPC_OK;
  1359. } else {
  1360. l_ptr->stats.bearer_congs++;
  1361. msg_dbg(buf_msg(buf), "|>DEF-RETR>");
  1362. return PUSH_FAILED;
  1363. }
  1364. }
  1365. /* Send deferred protocol message, if any: */
  1366. buf = l_ptr->proto_msg_queue;
  1367. if (buf) {
  1368. msg_set_ack(buf_msg(buf), mod(l_ptr->next_in_no - 1));
  1369. msg_set_bcast_ack(buf_msg(buf),l_ptr->owner->bclink.last_in);
  1370. if (tipc_bearer_send(l_ptr->b_ptr, buf, &l_ptr->media_addr)) {
  1371. msg_dbg(buf_msg(buf), ">DEF-PROT>");
  1372. l_ptr->unacked_window = 0;
  1373. buf_discard(buf);
  1374. l_ptr->proto_msg_queue = NULL;
  1375. return TIPC_OK;
  1376. } else {
  1377. msg_dbg(buf_msg(buf), "|>DEF-PROT>");
  1378. l_ptr->stats.bearer_congs++;
  1379. return PUSH_FAILED;
  1380. }
  1381. }
  1382. /* Send one deferred data message, if send window not full: */
  1383. buf = l_ptr->next_out;
  1384. if (buf) {
  1385. struct tipc_msg *msg = buf_msg(buf);
  1386. u32 next = msg_seqno(msg);
  1387. u32 first = msg_seqno(buf_msg(l_ptr->first_out));
  1388. if (mod(next - first) < l_ptr->queue_limit[0]) {
  1389. msg_set_ack(msg, mod(l_ptr->next_in_no - 1));
  1390. msg_set_bcast_ack(msg, l_ptr->owner->bclink.last_in);
  1391. if (tipc_bearer_send(l_ptr->b_ptr, buf, &l_ptr->media_addr)) {
  1392. if (msg_user(msg) == MSG_BUNDLER)
  1393. msg_set_type(msg, CLOSED_MSG);
  1394. msg_dbg(msg, ">PUSH-DATA>");
  1395. l_ptr->next_out = buf->next;
  1396. return TIPC_OK;
  1397. } else {
  1398. msg_dbg(msg, "|PUSH-DATA|");
  1399. l_ptr->stats.bearer_congs++;
  1400. return PUSH_FAILED;
  1401. }
  1402. }
  1403. }
  1404. return PUSH_FINISHED;
  1405. }
  1406. /*
  1407. * push_queue(): push out the unsent messages of a link where
  1408. * congestion has abated. Node is locked
  1409. */
  1410. void tipc_link_push_queue(struct link *l_ptr)
  1411. {
  1412. u32 res;
  1413. if (tipc_bearer_congested(l_ptr->b_ptr, l_ptr))
  1414. return;
  1415. do {
  1416. res = tipc_link_push_packet(l_ptr);
  1417. }
  1418. while (res == TIPC_OK);
  1419. if (res == PUSH_FAILED)
  1420. tipc_bearer_schedule(l_ptr->b_ptr, l_ptr);
  1421. }
  1422. static void link_reset_all(unsigned long addr)
  1423. {
  1424. struct node *n_ptr;
  1425. char addr_string[16];
  1426. u32 i;
  1427. read_lock_bh(&tipc_net_lock);
  1428. n_ptr = tipc_node_find((u32)addr);
  1429. if (!n_ptr) {
  1430. read_unlock_bh(&tipc_net_lock);
  1431. return; /* node no longer exists */
  1432. }
  1433. tipc_node_lock(n_ptr);
  1434. warn("Resetting all links to %s\n",
  1435. addr_string_fill(addr_string, n_ptr->addr));
  1436. for (i = 0; i < MAX_BEARERS; i++) {
  1437. if (n_ptr->links[i]) {
  1438. link_print(n_ptr->links[i], TIPC_OUTPUT,
  1439. "Resetting link\n");
  1440. tipc_link_reset(n_ptr->links[i]);
  1441. }
  1442. }
  1443. tipc_node_unlock(n_ptr);
  1444. read_unlock_bh(&tipc_net_lock);
  1445. }
  1446. static void link_retransmit_failure(struct link *l_ptr, struct sk_buff *buf)
  1447. {
  1448. struct tipc_msg *msg = buf_msg(buf);
  1449. warn("Retransmission failure on link <%s>\n", l_ptr->name);
  1450. tipc_msg_dbg(TIPC_OUTPUT, msg, ">RETR-FAIL>");
  1451. if (l_ptr->addr) {
  1452. /* Handle failure on standard link */
  1453. link_print(l_ptr, TIPC_OUTPUT, "Resetting link\n");
  1454. tipc_link_reset(l_ptr);
  1455. } else {
  1456. /* Handle failure on broadcast link */
  1457. struct node *n_ptr;
  1458. char addr_string[16];
  1459. tipc_printf(TIPC_OUTPUT, "Msg seq number: %u, ", msg_seqno(msg));
  1460. tipc_printf(TIPC_OUTPUT, "Outstanding acks: %lu\n",
  1461. (unsigned long) TIPC_SKB_CB(buf)->handle);
  1462. n_ptr = l_ptr->owner->next;
  1463. tipc_node_lock(n_ptr);
  1464. addr_string_fill(addr_string, n_ptr->addr);
  1465. tipc_printf(TIPC_OUTPUT, "Multicast link info for %s\n", addr_string);
  1466. tipc_printf(TIPC_OUTPUT, "Supported: %d, ", n_ptr->bclink.supported);
  1467. tipc_printf(TIPC_OUTPUT, "Acked: %u\n", n_ptr->bclink.acked);
  1468. tipc_printf(TIPC_OUTPUT, "Last in: %u, ", n_ptr->bclink.last_in);
  1469. tipc_printf(TIPC_OUTPUT, "Gap after: %u, ", n_ptr->bclink.gap_after);
  1470. tipc_printf(TIPC_OUTPUT, "Gap to: %u\n", n_ptr->bclink.gap_to);
  1471. tipc_printf(TIPC_OUTPUT, "Nack sync: %u\n\n", n_ptr->bclink.nack_sync);
  1472. tipc_k_signal((Handler)link_reset_all, (unsigned long)n_ptr->addr);
  1473. tipc_node_unlock(n_ptr);
  1474. l_ptr->stale_count = 0;
  1475. }
  1476. }
  1477. void tipc_link_retransmit(struct link *l_ptr, struct sk_buff *buf,
  1478. u32 retransmits)
  1479. {
  1480. struct tipc_msg *msg;
  1481. if (!buf)
  1482. return;
  1483. msg = buf_msg(buf);
  1484. dbg("Retransmitting %u in link %x\n", retransmits, l_ptr);
  1485. if (tipc_bearer_congested(l_ptr->b_ptr, l_ptr)) {
  1486. if (!skb_cloned(buf)) {
  1487. msg_dbg(msg, ">NO_RETR->BCONG>");
  1488. dbg_print_link(l_ptr, " ");
  1489. l_ptr->retransm_queue_head = msg_seqno(msg);
  1490. l_ptr->retransm_queue_size = retransmits;
  1491. return;
  1492. } else {
  1493. /* Don't retransmit if driver already has the buffer */
  1494. }
  1495. } else {
  1496. /* Detect repeated retransmit failures on uncongested bearer */
  1497. if (l_ptr->last_retransmitted == msg_seqno(msg)) {
  1498. if (++l_ptr->stale_count > 100) {
  1499. link_retransmit_failure(l_ptr, buf);
  1500. return;
  1501. }
  1502. } else {
  1503. l_ptr->last_retransmitted = msg_seqno(msg);
  1504. l_ptr->stale_count = 1;
  1505. }
  1506. }
  1507. while (retransmits && (buf != l_ptr->next_out) && buf && !skb_cloned(buf)) {
  1508. msg = buf_msg(buf);
  1509. msg_set_ack(msg, mod(l_ptr->next_in_no - 1));
  1510. msg_set_bcast_ack(msg, l_ptr->owner->bclink.last_in);
  1511. if (tipc_bearer_send(l_ptr->b_ptr, buf, &l_ptr->media_addr)) {
  1512. msg_dbg(buf_msg(buf), ">RETR>");
  1513. buf = buf->next;
  1514. retransmits--;
  1515. l_ptr->stats.retransmitted++;
  1516. } else {
  1517. tipc_bearer_schedule(l_ptr->b_ptr, l_ptr);
  1518. l_ptr->stats.bearer_congs++;
  1519. l_ptr->retransm_queue_head = msg_seqno(buf_msg(buf));
  1520. l_ptr->retransm_queue_size = retransmits;
  1521. return;
  1522. }
  1523. }
  1524. l_ptr->retransm_queue_head = l_ptr->retransm_queue_size = 0;
  1525. }
  1526. /**
  1527. * link_insert_deferred_queue - insert deferred messages back into receive chain
  1528. */
  1529. static struct sk_buff *link_insert_deferred_queue(struct link *l_ptr,
  1530. struct sk_buff *buf)
  1531. {
  1532. u32 seq_no;
  1533. if (l_ptr->oldest_deferred_in == NULL)
  1534. return buf;
  1535. seq_no = msg_seqno(buf_msg(l_ptr->oldest_deferred_in));
  1536. if (seq_no == mod(l_ptr->next_in_no)) {
  1537. l_ptr->newest_deferred_in->next = buf;
  1538. buf = l_ptr->oldest_deferred_in;
  1539. l_ptr->oldest_deferred_in = NULL;
  1540. l_ptr->deferred_inqueue_sz = 0;
  1541. }
  1542. return buf;
  1543. }
  1544. /**
  1545. * link_recv_buf_validate - validate basic format of received message
  1546. *
  1547. * This routine ensures a TIPC message has an acceptable header, and at least
  1548. * as much data as the header indicates it should. The routine also ensures
  1549. * that the entire message header is stored in the main fragment of the message
  1550. * buffer, to simplify future access to message header fields.
  1551. *
  1552. * Note: Having extra info present in the message header or data areas is OK.
  1553. * TIPC will ignore the excess, under the assumption that it is optional info
  1554. * introduced by a later release of the protocol.
  1555. */
  1556. static int link_recv_buf_validate(struct sk_buff *buf)
  1557. {
  1558. static u32 min_data_hdr_size[8] = {
  1559. SHORT_H_SIZE, MCAST_H_SIZE, LONG_H_SIZE, DIR_MSG_H_SIZE,
  1560. MAX_H_SIZE, MAX_H_SIZE, MAX_H_SIZE, MAX_H_SIZE
  1561. };
  1562. struct tipc_msg *msg;
  1563. u32 tipc_hdr[2];
  1564. u32 size;
  1565. u32 hdr_size;
  1566. u32 min_hdr_size;
  1567. if (unlikely(buf->len < MIN_H_SIZE))
  1568. return 0;
  1569. msg = skb_header_pointer(buf, 0, sizeof(tipc_hdr), tipc_hdr);
  1570. if (msg == NULL)
  1571. return 0;
  1572. if (unlikely(msg_version(msg) != TIPC_VERSION))
  1573. return 0;
  1574. size = msg_size(msg);
  1575. hdr_size = msg_hdr_sz(msg);
  1576. min_hdr_size = msg_isdata(msg) ?
  1577. min_data_hdr_size[msg_type(msg)] : INT_H_SIZE;
  1578. if (unlikely((hdr_size < min_hdr_size) ||
  1579. (size < hdr_size) ||
  1580. (buf->len < size) ||
  1581. (size - hdr_size > TIPC_MAX_USER_MSG_SIZE)))
  1582. return 0;
  1583. return pskb_may_pull(buf, hdr_size);
  1584. }
  1585. void tipc_recv_msg(struct sk_buff *head, struct tipc_bearer *tb_ptr)
  1586. {
  1587. read_lock_bh(&tipc_net_lock);
  1588. while (head) {
  1589. struct bearer *b_ptr = (struct bearer *)tb_ptr;
  1590. struct node *n_ptr;
  1591. struct link *l_ptr;
  1592. struct sk_buff *crs;
  1593. struct sk_buff *buf = head;
  1594. struct tipc_msg *msg;
  1595. u32 seq_no;
  1596. u32 ackd;
  1597. u32 released = 0;
  1598. int type;
  1599. head = head->next;
  1600. /* Ensure message is well-formed */
  1601. if (unlikely(!link_recv_buf_validate(buf)))
  1602. goto cont;
  1603. /* Ensure message data is a single contiguous unit */
  1604. if (unlikely(buf_linearize(buf))) {
  1605. goto cont;
  1606. }
  1607. /* Handle arrival of a non-unicast link message */
  1608. msg = buf_msg(buf);
  1609. if (unlikely(msg_non_seq(msg))) {
  1610. if (msg_user(msg) == LINK_CONFIG)
  1611. tipc_disc_recv_msg(buf, b_ptr);
  1612. else
  1613. tipc_bclink_recv_pkt(buf);
  1614. continue;
  1615. }
  1616. if (unlikely(!msg_short(msg) &&
  1617. (msg_destnode(msg) != tipc_own_addr)))
  1618. goto cont;
  1619. /* Locate unicast link endpoint that should handle message */
  1620. n_ptr = tipc_node_find(msg_prevnode(msg));
  1621. if (unlikely(!n_ptr))
  1622. goto cont;
  1623. tipc_node_lock(n_ptr);
  1624. l_ptr = n_ptr->links[b_ptr->identity];
  1625. if (unlikely(!l_ptr)) {
  1626. tipc_node_unlock(n_ptr);
  1627. goto cont;
  1628. }
  1629. /* Validate message sequence number info */
  1630. seq_no = msg_seqno(msg);
  1631. ackd = msg_ack(msg);
  1632. /* Release acked messages */
  1633. if (less(n_ptr->bclink.acked, msg_bcast_ack(msg))) {
  1634. if (tipc_node_is_up(n_ptr) && n_ptr->bclink.supported)
  1635. tipc_bclink_acknowledge(n_ptr, msg_bcast_ack(msg));
  1636. }
  1637. crs = l_ptr->first_out;
  1638. while ((crs != l_ptr->next_out) &&
  1639. less_eq(msg_seqno(buf_msg(crs)), ackd)) {
  1640. struct sk_buff *next = crs->next;
  1641. buf_discard(crs);
  1642. crs = next;
  1643. released++;
  1644. }
  1645. if (released) {
  1646. l_ptr->first_out = crs;
  1647. l_ptr->out_queue_size -= released;
  1648. }
  1649. /* Try sending any messages link endpoint has pending */
  1650. if (unlikely(l_ptr->next_out))
  1651. tipc_link_push_queue(l_ptr);
  1652. if (unlikely(!list_empty(&l_ptr->waiting_ports)))
  1653. tipc_link_wakeup_ports(l_ptr, 0);
  1654. if (unlikely(++l_ptr->unacked_window >= TIPC_MIN_LINK_WIN)) {
  1655. l_ptr->stats.sent_acks++;
  1656. tipc_link_send_proto_msg(l_ptr, STATE_MSG, 0, 0, 0, 0, 0);
  1657. }
  1658. /* Now (finally!) process the incoming message */
  1659. protocol_check:
  1660. if (likely(link_working_working(l_ptr))) {
  1661. if (likely(seq_no == mod(l_ptr->next_in_no))) {
  1662. l_ptr->next_in_no++;
  1663. if (unlikely(l_ptr->oldest_deferred_in))
  1664. head = link_insert_deferred_queue(l_ptr,
  1665. head);
  1666. if (likely(msg_is_dest(msg, tipc_own_addr))) {
  1667. deliver:
  1668. if (likely(msg_isdata(msg))) {
  1669. tipc_node_unlock(n_ptr);
  1670. tipc_port_recv_msg(buf);
  1671. continue;
  1672. }
  1673. switch (msg_user(msg)) {
  1674. case MSG_BUNDLER:
  1675. l_ptr->stats.recv_bundles++;
  1676. l_ptr->stats.recv_bundled +=
  1677. msg_msgcnt(msg);
  1678. tipc_node_unlock(n_ptr);
  1679. tipc_link_recv_bundle(buf);
  1680. continue;
  1681. case ROUTE_DISTRIBUTOR:
  1682. tipc_node_unlock(n_ptr);
  1683. tipc_cltr_recv_routing_table(buf);
  1684. continue;
  1685. case NAME_DISTRIBUTOR:
  1686. tipc_node_unlock(n_ptr);
  1687. tipc_named_recv(buf);
  1688. continue;
  1689. case CONN_MANAGER:
  1690. tipc_node_unlock(n_ptr);
  1691. tipc_port_recv_proto_msg(buf);
  1692. continue;
  1693. case MSG_FRAGMENTER:
  1694. l_ptr->stats.recv_fragments++;
  1695. if (tipc_link_recv_fragment(&l_ptr->defragm_buf,
  1696. &buf, &msg)) {
  1697. l_ptr->stats.recv_fragmented++;
  1698. goto deliver;
  1699. }
  1700. break;
  1701. case CHANGEOVER_PROTOCOL:
  1702. type = msg_type(msg);
  1703. if (link_recv_changeover_msg(&l_ptr, &buf)) {
  1704. msg = buf_msg(buf);
  1705. seq_no = msg_seqno(msg);
  1706. if (type == ORIGINAL_MSG)
  1707. goto deliver;
  1708. goto protocol_check;
  1709. }
  1710. break;
  1711. }
  1712. }
  1713. tipc_node_unlock(n_ptr);
  1714. tipc_net_route_msg(buf);
  1715. continue;
  1716. }
  1717. link_handle_out_of_seq_msg(l_ptr, buf);
  1718. head = link_insert_deferred_queue(l_ptr, head);
  1719. tipc_node_unlock(n_ptr);
  1720. continue;
  1721. }
  1722. if (msg_user(msg) == LINK_PROTOCOL) {
  1723. link_recv_proto_msg(l_ptr, buf);
  1724. head = link_insert_deferred_queue(l_ptr, head);
  1725. tipc_node_unlock(n_ptr);
  1726. continue;
  1727. }
  1728. msg_dbg(msg,"NSEQ<REC<");
  1729. link_state_event(l_ptr, TRAFFIC_MSG_EVT);
  1730. if (link_working_working(l_ptr)) {
  1731. /* Re-insert in front of queue */
  1732. msg_dbg(msg,"RECV-REINS:");
  1733. buf->next = head;
  1734. head = buf;
  1735. tipc_node_unlock(n_ptr);
  1736. continue;
  1737. }
  1738. tipc_node_unlock(n_ptr);
  1739. cont:
  1740. buf_discard(buf);
  1741. }
  1742. read_unlock_bh(&tipc_net_lock);
  1743. }
  1744. /*
  1745. * link_defer_buf(): Sort a received out-of-sequence packet
  1746. * into the deferred reception queue.
  1747. * Returns the increase of the queue length,i.e. 0 or 1
  1748. */
  1749. u32 tipc_link_defer_pkt(struct sk_buff **head,
  1750. struct sk_buff **tail,
  1751. struct sk_buff *buf)
  1752. {
  1753. struct sk_buff *prev = NULL;
  1754. struct sk_buff *crs = *head;
  1755. u32 seq_no = msg_seqno(buf_msg(buf));
  1756. buf->next = NULL;
  1757. /* Empty queue ? */
  1758. if (*head == NULL) {
  1759. *head = *tail = buf;
  1760. return 1;
  1761. }
  1762. /* Last ? */
  1763. if (less(msg_seqno(buf_msg(*tail)), seq_no)) {
  1764. (*tail)->next = buf;
  1765. *tail = buf;
  1766. return 1;
  1767. }
  1768. /* Scan through queue and sort it in */
  1769. do {
  1770. struct tipc_msg *msg = buf_msg(crs);
  1771. if (less(seq_no, msg_seqno(msg))) {
  1772. buf->next = crs;
  1773. if (prev)
  1774. prev->next = buf;
  1775. else
  1776. *head = buf;
  1777. return 1;
  1778. }
  1779. if (seq_no == msg_seqno(msg)) {
  1780. break;
  1781. }
  1782. prev = crs;
  1783. crs = crs->next;
  1784. }
  1785. while (crs);
  1786. /* Message is a duplicate of an existing message */
  1787. buf_discard(buf);
  1788. return 0;
  1789. }
  1790. /**
  1791. * link_handle_out_of_seq_msg - handle arrival of out-of-sequence packet
  1792. */
  1793. static void link_handle_out_of_seq_msg(struct link *l_ptr,
  1794. struct sk_buff *buf)
  1795. {
  1796. u32 seq_no = msg_seqno(buf_msg(buf));
  1797. if (likely(msg_user(buf_msg(buf)) == LINK_PROTOCOL)) {
  1798. link_recv_proto_msg(l_ptr, buf);
  1799. return;
  1800. }
  1801. dbg("rx OOS msg: seq_no %u, expecting %u (%u)\n",
  1802. seq_no, mod(l_ptr->next_in_no), l_ptr->next_in_no);
  1803. /* Record OOS packet arrival (force mismatch on next timeout) */
  1804. l_ptr->checkpoint--;
  1805. /*
  1806. * Discard packet if a duplicate; otherwise add it to deferred queue
  1807. * and notify peer of gap as per protocol specification
  1808. */
  1809. if (less(seq_no, mod(l_ptr->next_in_no))) {
  1810. l_ptr->stats.duplicates++;
  1811. buf_discard(buf);
  1812. return;
  1813. }
  1814. if (tipc_link_defer_pkt(&l_ptr->oldest_deferred_in,
  1815. &l_ptr->newest_deferred_in, buf)) {
  1816. l_ptr->deferred_inqueue_sz++;
  1817. l_ptr->stats.deferred_recv++;
  1818. if ((l_ptr->deferred_inqueue_sz % 16) == 1)
  1819. tipc_link_send_proto_msg(l_ptr, STATE_MSG, 0, 0, 0, 0, 0);
  1820. } else
  1821. l_ptr->stats.duplicates++;
  1822. }
  1823. /*
  1824. * Send protocol message to the other endpoint.
  1825. */
  1826. void tipc_link_send_proto_msg(struct link *l_ptr, u32 msg_typ, int probe_msg,
  1827. u32 gap, u32 tolerance, u32 priority, u32 ack_mtu)
  1828. {
  1829. struct sk_buff *buf = NULL;
  1830. struct tipc_msg *msg = l_ptr->pmsg;
  1831. u32 msg_size = sizeof(l_ptr->proto_msg);
  1832. if (link_blocked(l_ptr))
  1833. return;
  1834. msg_set_type(msg, msg_typ);
  1835. msg_set_net_plane(msg, l_ptr->b_ptr->net_plane);
  1836. msg_set_bcast_ack(msg, mod(l_ptr->owner->bclink.last_in));
  1837. msg_set_last_bcast(msg, tipc_bclink_get_last_sent());
  1838. if (msg_typ == STATE_MSG) {
  1839. u32 next_sent = mod(l_ptr->next_out_no);
  1840. if (!tipc_link_is_up(l_ptr))
  1841. return;
  1842. if (l_ptr->next_out)
  1843. next_sent = msg_seqno(buf_msg(l_ptr->next_out));
  1844. msg_set_next_sent(msg, next_sent);
  1845. if (l_ptr->oldest_deferred_in) {
  1846. u32 rec = msg_seqno(buf_msg(l_ptr->oldest_deferred_in));
  1847. gap = mod(rec - mod(l_ptr->next_in_no));
  1848. }
  1849. msg_set_seq_gap(msg, gap);
  1850. if (gap)
  1851. l_ptr->stats.sent_nacks++;
  1852. msg_set_link_tolerance(msg, tolerance);
  1853. msg_set_linkprio(msg, priority);
  1854. msg_set_max_pkt(msg, ack_mtu);
  1855. msg_set_ack(msg, mod(l_ptr->next_in_no - 1));
  1856. msg_set_probe(msg, probe_msg != 0);
  1857. if (probe_msg) {
  1858. u32 mtu = l_ptr->max_pkt;
  1859. if ((mtu < l_ptr->max_pkt_target) &&
  1860. link_working_working(l_ptr) &&
  1861. l_ptr->fsm_msg_cnt) {
  1862. msg_size = (mtu + (l_ptr->max_pkt_target - mtu)/2 + 2) & ~3;
  1863. if (l_ptr->max_pkt_probes == 10) {
  1864. l_ptr->max_pkt_target = (msg_size - 4);
  1865. l_ptr->max_pkt_probes = 0;
  1866. msg_size = (mtu + (l_ptr->max_pkt_target - mtu)/2 + 2) & ~3;
  1867. }
  1868. l_ptr->max_pkt_probes++;
  1869. }
  1870. l_ptr->stats.sent_probes++;
  1871. }
  1872. l_ptr->stats.sent_states++;
  1873. } else { /* RESET_MSG or ACTIVATE_MSG */
  1874. msg_set_ack(msg, mod(l_ptr->reset_checkpoint - 1));
  1875. msg_set_seq_gap(msg, 0);
  1876. msg_set_next_sent(msg, 1);
  1877. msg_set_link_tolerance(msg, l_ptr->tolerance);
  1878. msg_set_linkprio(msg, l_ptr->priority);
  1879. msg_set_max_pkt(msg, l_ptr->max_pkt_target);
  1880. }
  1881. if (tipc_node_has_redundant_links(l_ptr->owner)) {
  1882. msg_set_redundant_link(msg);
  1883. } else {
  1884. msg_clear_redundant_link(msg);
  1885. }
  1886. msg_set_linkprio(msg, l_ptr->priority);
  1887. /* Ensure sequence number will not fit : */
  1888. msg_set_seqno(msg, mod(l_ptr->next_out_no + (0xffff/2)));
  1889. /* Congestion? */
  1890. if (tipc_bearer_congested(l_ptr->b_ptr, l_ptr)) {
  1891. if (!l_ptr->proto_msg_queue) {
  1892. l_ptr->proto_msg_queue =
  1893. buf_acquire(sizeof(l_ptr->proto_msg));
  1894. }
  1895. buf = l_ptr->proto_msg_queue;
  1896. if (!buf)
  1897. return;
  1898. skb_copy_to_linear_data(buf, msg, sizeof(l_ptr->proto_msg));
  1899. return;
  1900. }
  1901. msg_set_timestamp(msg, jiffies_to_msecs(jiffies));
  1902. /* Message can be sent */
  1903. msg_dbg(msg, ">>");
  1904. buf = buf_acquire(msg_size);
  1905. if (!buf)
  1906. return;
  1907. skb_copy_to_linear_data(buf, msg, sizeof(l_ptr->proto_msg));
  1908. msg_set_size(buf_msg(buf), msg_size);
  1909. if (tipc_bearer_send(l_ptr->b_ptr, buf, &l_ptr->media_addr)) {
  1910. l_ptr->unacked_window = 0;
  1911. buf_discard(buf);
  1912. return;
  1913. }
  1914. /* New congestion */
  1915. tipc_bearer_schedule(l_ptr->b_ptr, l_ptr);
  1916. l_ptr->proto_msg_queue = buf;
  1917. l_ptr->stats.bearer_congs++;
  1918. }
  1919. /*
  1920. * Receive protocol message :
  1921. * Note that network plane id propagates through the network, and may
  1922. * change at any time. The node with lowest address rules
  1923. */
  1924. static void link_recv_proto_msg(struct link *l_ptr, struct sk_buff *buf)
  1925. {
  1926. u32 rec_gap = 0;
  1927. u32 max_pkt_info;
  1928. u32 max_pkt_ack;
  1929. u32 msg_tol;
  1930. struct tipc_msg *msg = buf_msg(buf);
  1931. dbg("AT(%u):", jiffies_to_msecs(jiffies));
  1932. msg_dbg(msg, "<<");
  1933. if (link_blocked(l_ptr))
  1934. goto exit;
  1935. /* record unnumbered packet arrival (force mismatch on next timeout) */
  1936. l_ptr->checkpoint--;
  1937. if (l_ptr->b_ptr->net_plane != msg_net_plane(msg))
  1938. if (tipc_own_addr > msg_prevnode(msg))
  1939. l_ptr->b_ptr->net_plane = msg_net_plane(msg);
  1940. l_ptr->owner->permit_changeover = msg_redundant_link(msg);
  1941. switch (msg_type(msg)) {
  1942. case RESET_MSG:
  1943. if (!link_working_unknown(l_ptr) &&
  1944. (l_ptr->peer_session != INVALID_SESSION)) {
  1945. if (msg_session(msg) == l_ptr->peer_session) {
  1946. dbg("Duplicate RESET: %u<->%u\n",
  1947. msg_session(msg), l_ptr->peer_session);
  1948. break; /* duplicate: ignore */
  1949. }
  1950. }
  1951. /* fall thru' */
  1952. case ACTIVATE_MSG:
  1953. /* Update link settings according other endpoint's values */
  1954. strcpy((strrchr(l_ptr->name, ':') + 1), (char *)msg_data(msg));
  1955. if ((msg_tol = msg_link_tolerance(msg)) &&
  1956. (msg_tol > l_ptr->tolerance))
  1957. link_set_supervision_props(l_ptr, msg_tol);
  1958. if (msg_linkprio(msg) > l_ptr->priority)
  1959. l_ptr->priority = msg_linkprio(msg);
  1960. max_pkt_info = msg_max_pkt(msg);
  1961. if (max_pkt_info) {
  1962. if (max_pkt_info < l_ptr->max_pkt_target)
  1963. l_ptr->max_pkt_target = max_pkt_info;
  1964. if (l_ptr->max_pkt > l_ptr->max_pkt_target)
  1965. l_ptr->max_pkt = l_ptr->max_pkt_target;
  1966. } else {
  1967. l_ptr->max_pkt = l_ptr->max_pkt_target;
  1968. }
  1969. l_ptr->owner->bclink.supported = (max_pkt_info != 0);
  1970. link_state_event(l_ptr, msg_type(msg));
  1971. l_ptr->peer_session = msg_session(msg);
  1972. l_ptr->peer_bearer_id = msg_bearer_id(msg);
  1973. /* Synchronize broadcast sequence numbers */
  1974. if (!tipc_node_has_redundant_links(l_ptr->owner)) {
  1975. l_ptr->owner->bclink.last_in = mod(msg_last_bcast(msg));
  1976. }
  1977. break;
  1978. case STATE_MSG:
  1979. if ((msg_tol = msg_link_tolerance(msg)))
  1980. link_set_supervision_props(l_ptr, msg_tol);
  1981. if (msg_linkprio(msg) &&
  1982. (msg_linkprio(msg) != l_ptr->priority)) {
  1983. warn("Resetting link <%s>, priority change %u->%u\n",
  1984. l_ptr->name, l_ptr->priority, msg_linkprio(msg));
  1985. l_ptr->priority = msg_linkprio(msg);
  1986. tipc_link_reset(l_ptr); /* Enforce change to take effect */
  1987. break;
  1988. }
  1989. link_state_event(l_ptr, TRAFFIC_MSG_EVT);
  1990. l_ptr->stats.recv_states++;
  1991. if (link_reset_unknown(l_ptr))
  1992. break;
  1993. if (less_eq(mod(l_ptr->next_in_no), msg_next_sent(msg))) {
  1994. rec_gap = mod(msg_next_sent(msg) -
  1995. mod(l_ptr->next_in_no));
  1996. }
  1997. max_pkt_ack = msg_max_pkt(msg);
  1998. if (max_pkt_ack > l_ptr->max_pkt) {
  1999. dbg("Link <%s> updated MTU %u -> %u\n",
  2000. l_ptr->name, l_ptr->max_pkt, max_pkt_ack);
  2001. l_ptr->max_pkt = max_pkt_ack;
  2002. l_ptr->max_pkt_probes = 0;
  2003. }
  2004. max_pkt_ack = 0;
  2005. if (msg_probe(msg)) {
  2006. l_ptr->stats.recv_probes++;
  2007. if (msg_size(msg) > sizeof(l_ptr->proto_msg)) {
  2008. max_pkt_ack = msg_size(msg);
  2009. }
  2010. }
  2011. /* Protocol message before retransmits, reduce loss risk */
  2012. tipc_bclink_check_gap(l_ptr->owner, msg_last_bcast(msg));
  2013. if (rec_gap || (msg_probe(msg))) {
  2014. tipc_link_send_proto_msg(l_ptr, STATE_MSG,
  2015. 0, rec_gap, 0, 0, max_pkt_ack);
  2016. }
  2017. if (msg_seq_gap(msg)) {
  2018. msg_dbg(msg, "With Gap:");
  2019. l_ptr->stats.recv_nacks++;
  2020. tipc_link_retransmit(l_ptr, l_ptr->first_out,
  2021. msg_seq_gap(msg));
  2022. }
  2023. break;
  2024. default:
  2025. msg_dbg(buf_msg(buf), "<DISCARDING UNKNOWN<");
  2026. }
  2027. exit:
  2028. buf_discard(buf);
  2029. }
  2030. /*
  2031. * tipc_link_tunnel(): Send one message via a link belonging to
  2032. * another bearer. Owner node is locked.
  2033. */
  2034. void tipc_link_tunnel(struct link *l_ptr,
  2035. struct tipc_msg *tunnel_hdr,
  2036. struct tipc_msg *msg,
  2037. u32 selector)
  2038. {
  2039. struct link *tunnel;
  2040. struct sk_buff *buf;
  2041. u32 length = msg_size(msg);
  2042. tunnel = l_ptr->owner->active_links[selector & 1];
  2043. if (!tipc_link_is_up(tunnel)) {
  2044. warn("Link changeover error, "
  2045. "tunnel link no longer available\n");
  2046. return;
  2047. }
  2048. msg_set_size(tunnel_hdr, length + INT_H_SIZE);
  2049. buf = buf_acquire(length + INT_H_SIZE);
  2050. if (!buf) {
  2051. warn("Link changeover error, "
  2052. "unable to send tunnel msg\n");
  2053. return;
  2054. }
  2055. skb_copy_to_linear_data(buf, tunnel_hdr, INT_H_SIZE);
  2056. skb_copy_to_linear_data_offset(buf, INT_H_SIZE, msg, length);
  2057. dbg("%c->%c:", l_ptr->b_ptr->net_plane, tunnel->b_ptr->net_plane);
  2058. msg_dbg(buf_msg(buf), ">SEND>");
  2059. tipc_link_send_buf(tunnel, buf);
  2060. }
  2061. /*
  2062. * changeover(): Send whole message queue via the remaining link
  2063. * Owner node is locked.
  2064. */
  2065. void tipc_link_changeover(struct link *l_ptr)
  2066. {
  2067. u32 msgcount = l_ptr->out_queue_size;
  2068. struct sk_buff *crs = l_ptr->first_out;
  2069. struct link *tunnel = l_ptr->owner->active_links[0];
  2070. struct tipc_msg tunnel_hdr;
  2071. int split_bundles;
  2072. if (!tunnel)
  2073. return;
  2074. if (!l_ptr->owner->permit_changeover) {
  2075. warn("Link changeover error, "
  2076. "peer did not permit changeover\n");
  2077. return;
  2078. }
  2079. msg_init(&tunnel_hdr, CHANGEOVER_PROTOCOL,
  2080. ORIGINAL_MSG, INT_H_SIZE, l_ptr->addr);
  2081. msg_set_bearer_id(&tunnel_hdr, l_ptr->peer_bearer_id);
  2082. msg_set_msgcnt(&tunnel_hdr, msgcount);
  2083. dbg("Link changeover requires %u tunnel messages\n", msgcount);
  2084. if (!l_ptr->first_out) {
  2085. struct sk_buff *buf;
  2086. buf = buf_acquire(INT_H_SIZE);
  2087. if (buf) {
  2088. skb_copy_to_linear_data(buf, &tunnel_hdr, INT_H_SIZE);
  2089. msg_set_size(&tunnel_hdr, INT_H_SIZE);
  2090. dbg("%c->%c:", l_ptr->b_ptr->net_plane,
  2091. tunnel->b_ptr->net_plane);
  2092. msg_dbg(&tunnel_hdr, "EMPTY>SEND>");
  2093. tipc_link_send_buf(tunnel, buf);
  2094. } else {
  2095. warn("Link changeover error, "
  2096. "unable to send changeover msg\n");
  2097. }
  2098. return;
  2099. }
  2100. split_bundles = (l_ptr->owner->active_links[0] !=
  2101. l_ptr->owner->active_links[1]);
  2102. while (crs) {
  2103. struct tipc_msg *msg = buf_msg(crs);
  2104. if ((msg_user(msg) == MSG_BUNDLER) && split_bundles) {
  2105. struct tipc_msg *m = msg_get_wrapped(msg);
  2106. unchar* pos = (unchar*)m;
  2107. msgcount = msg_msgcnt(msg);
  2108. while (msgcount--) {
  2109. msg_set_seqno(m,msg_seqno(msg));
  2110. tipc_link_tunnel(l_ptr, &tunnel_hdr, m,
  2111. msg_link_selector(m));
  2112. pos += align(msg_size(m));
  2113. m = (struct tipc_msg *)pos;
  2114. }
  2115. } else {
  2116. tipc_link_tunnel(l_ptr, &tunnel_hdr, msg,
  2117. msg_link_selector(msg));
  2118. }
  2119. crs = crs->next;
  2120. }
  2121. }
  2122. void tipc_link_send_duplicate(struct link *l_ptr, struct link *tunnel)
  2123. {
  2124. struct sk_buff *iter;
  2125. struct tipc_msg tunnel_hdr;
  2126. msg_init(&tunnel_hdr, CHANGEOVER_PROTOCOL,
  2127. DUPLICATE_MSG, INT_H_SIZE, l_ptr->addr);
  2128. msg_set_msgcnt(&tunnel_hdr, l_ptr->out_queue_size);
  2129. msg_set_bearer_id(&tunnel_hdr, l_ptr->peer_bearer_id);
  2130. iter = l_ptr->first_out;
  2131. while (iter) {
  2132. struct sk_buff *outbuf;
  2133. struct tipc_msg *msg = buf_msg(iter);
  2134. u32 length = msg_size(msg);
  2135. if (msg_user(msg) == MSG_BUNDLER)
  2136. msg_set_type(msg, CLOSED_MSG);
  2137. msg_set_ack(msg, mod(l_ptr->next_in_no - 1)); /* Update */
  2138. msg_set_bcast_ack(msg, l_ptr->owner->bclink.last_in);
  2139. msg_set_size(&tunnel_hdr, length + INT_H_SIZE);
  2140. outbuf = buf_acquire(length + INT_H_SIZE);
  2141. if (outbuf == NULL) {
  2142. warn("Link changeover error, "
  2143. "unable to send duplicate msg\n");
  2144. return;
  2145. }
  2146. skb_copy_to_linear_data(outbuf, &tunnel_hdr, INT_H_SIZE);
  2147. skb_copy_to_linear_data_offset(outbuf, INT_H_SIZE, iter->data,
  2148. length);
  2149. dbg("%c->%c:", l_ptr->b_ptr->net_plane,
  2150. tunnel->b_ptr->net_plane);
  2151. msg_dbg(buf_msg(outbuf), ">SEND>");
  2152. tipc_link_send_buf(tunnel, outbuf);
  2153. if (!tipc_link_is_up(l_ptr))
  2154. return;
  2155. iter = iter->next;
  2156. }
  2157. }
  2158. /**
  2159. * buf_extract - extracts embedded TIPC message from another message
  2160. * @skb: encapsulating message buffer
  2161. * @from_pos: offset to extract from
  2162. *
  2163. * Returns a new message buffer containing an embedded message. The
  2164. * encapsulating message itself is left unchanged.
  2165. */
  2166. static struct sk_buff *buf_extract(struct sk_buff *skb, u32 from_pos)
  2167. {
  2168. struct tipc_msg *msg = (struct tipc_msg *)(skb->data + from_pos);
  2169. u32 size = msg_size(msg);
  2170. struct sk_buff *eb;
  2171. eb = buf_acquire(size);
  2172. if (eb)
  2173. skb_copy_to_linear_data(eb, msg, size);
  2174. return eb;
  2175. }
  2176. /*
  2177. * link_recv_changeover_msg(): Receive tunneled packet sent
  2178. * via other link. Node is locked. Return extracted buffer.
  2179. */
  2180. static int link_recv_changeover_msg(struct link **l_ptr,
  2181. struct sk_buff **buf)
  2182. {
  2183. struct sk_buff *tunnel_buf = *buf;
  2184. struct link *dest_link;
  2185. struct tipc_msg *msg;
  2186. struct tipc_msg *tunnel_msg = buf_msg(tunnel_buf);
  2187. u32 msg_typ = msg_type(tunnel_msg);
  2188. u32 msg_count = msg_msgcnt(tunnel_msg);
  2189. dest_link = (*l_ptr)->owner->links[msg_bearer_id(tunnel_msg)];
  2190. if (!dest_link) {
  2191. msg_dbg(tunnel_msg, "NOLINK/<REC<");
  2192. goto exit;
  2193. }
  2194. if (dest_link == *l_ptr) {
  2195. err("Unexpected changeover message on link <%s>\n",
  2196. (*l_ptr)->name);
  2197. goto exit;
  2198. }
  2199. dbg("%c<-%c:", dest_link->b_ptr->net_plane,
  2200. (*l_ptr)->b_ptr->net_plane);
  2201. *l_ptr = dest_link;
  2202. msg = msg_get_wrapped(tunnel_msg);
  2203. if (msg_typ == DUPLICATE_MSG) {
  2204. if (less(msg_seqno(msg), mod(dest_link->next_in_no))) {
  2205. msg_dbg(tunnel_msg, "DROP/<REC<");
  2206. goto exit;
  2207. }
  2208. *buf = buf_extract(tunnel_buf,INT_H_SIZE);
  2209. if (*buf == NULL) {
  2210. warn("Link changeover error, duplicate msg dropped\n");
  2211. goto exit;
  2212. }
  2213. msg_dbg(tunnel_msg, "TNL<REC<");
  2214. buf_discard(tunnel_buf);
  2215. return 1;
  2216. }
  2217. /* First original message ?: */
  2218. if (tipc_link_is_up(dest_link)) {
  2219. msg_dbg(tunnel_msg, "UP/FIRST/<REC<");
  2220. info("Resetting link <%s>, changeover initiated by peer\n",
  2221. dest_link->name);
  2222. tipc_link_reset(dest_link);
  2223. dest_link->exp_msg_count = msg_count;
  2224. dbg("Expecting %u tunnelled messages\n", msg_count);
  2225. if (!msg_count)
  2226. goto exit;
  2227. } else if (dest_link->exp_msg_count == START_CHANGEOVER) {
  2228. msg_dbg(tunnel_msg, "BLK/FIRST/<REC<");
  2229. dest_link->exp_msg_count = msg_count;
  2230. dbg("Expecting %u tunnelled messages\n", msg_count);
  2231. if (!msg_count)
  2232. goto exit;
  2233. }
  2234. /* Receive original message */
  2235. if (dest_link->exp_msg_count == 0) {
  2236. warn("Link switchover error, "
  2237. "got too many tunnelled messages\n");
  2238. msg_dbg(tunnel_msg, "OVERDUE/DROP/<REC<");
  2239. dbg_print_link(dest_link, "LINK:");
  2240. goto exit;
  2241. }
  2242. dest_link->exp_msg_count--;
  2243. if (less(msg_seqno(msg), dest_link->reset_checkpoint)) {
  2244. msg_dbg(tunnel_msg, "DROP/DUPL/<REC<");
  2245. goto exit;
  2246. } else {
  2247. *buf = buf_extract(tunnel_buf, INT_H_SIZE);
  2248. if (*buf != NULL) {
  2249. msg_dbg(tunnel_msg, "TNL<REC<");
  2250. buf_discard(tunnel_buf);
  2251. return 1;
  2252. } else {
  2253. warn("Link changeover error, original msg dropped\n");
  2254. }
  2255. }
  2256. exit:
  2257. *buf = NULL;
  2258. buf_discard(tunnel_buf);
  2259. return 0;
  2260. }
  2261. /*
  2262. * Bundler functionality:
  2263. */
  2264. void tipc_link_recv_bundle(struct sk_buff *buf)
  2265. {
  2266. u32 msgcount = msg_msgcnt(buf_msg(buf));
  2267. u32 pos = INT_H_SIZE;
  2268. struct sk_buff *obuf;
  2269. msg_dbg(buf_msg(buf), "<BNDL<: ");
  2270. while (msgcount--) {
  2271. obuf = buf_extract(buf, pos);
  2272. if (obuf == NULL) {
  2273. warn("Link unable to unbundle message(s)\n");
  2274. break;
  2275. }
  2276. pos += align(msg_size(buf_msg(obuf)));
  2277. msg_dbg(buf_msg(obuf), " /");
  2278. tipc_net_route_msg(obuf);
  2279. }
  2280. buf_discard(buf);
  2281. }
  2282. /*
  2283. * Fragmentation/defragmentation:
  2284. */
  2285. /*
  2286. * tipc_link_send_long_buf: Entry for buffers needing fragmentation.
  2287. * The buffer is complete, inclusive total message length.
  2288. * Returns user data length.
  2289. */
  2290. int tipc_link_send_long_buf(struct link *l_ptr, struct sk_buff *buf)
  2291. {
  2292. struct tipc_msg *inmsg = buf_msg(buf);
  2293. struct tipc_msg fragm_hdr;
  2294. u32 insize = msg_size(inmsg);
  2295. u32 dsz = msg_data_sz(inmsg);
  2296. unchar *crs = buf->data;
  2297. u32 rest = insize;
  2298. u32 pack_sz = link_max_pkt(l_ptr);
  2299. u32 fragm_sz = pack_sz - INT_H_SIZE;
  2300. u32 fragm_no = 1;
  2301. u32 destaddr;
  2302. if (msg_short(inmsg))
  2303. destaddr = l_ptr->addr;
  2304. else
  2305. destaddr = msg_destnode(inmsg);
  2306. if (msg_routed(inmsg))
  2307. msg_set_prevnode(inmsg, tipc_own_addr);
  2308. /* Prepare reusable fragment header: */
  2309. msg_init(&fragm_hdr, MSG_FRAGMENTER, FIRST_FRAGMENT,
  2310. INT_H_SIZE, destaddr);
  2311. msg_set_link_selector(&fragm_hdr, msg_link_selector(inmsg));
  2312. msg_set_long_msgno(&fragm_hdr, mod(l_ptr->long_msg_seq_no++));
  2313. msg_set_fragm_no(&fragm_hdr, fragm_no);
  2314. l_ptr->stats.sent_fragmented++;
  2315. /* Chop up message: */
  2316. while (rest > 0) {
  2317. struct sk_buff *fragm;
  2318. if (rest <= fragm_sz) {
  2319. fragm_sz = rest;
  2320. msg_set_type(&fragm_hdr, LAST_FRAGMENT);
  2321. }
  2322. fragm = buf_acquire(fragm_sz + INT_H_SIZE);
  2323. if (fragm == NULL) {
  2324. warn("Link unable to fragment message\n");
  2325. dsz = -ENOMEM;
  2326. goto exit;
  2327. }
  2328. msg_set_size(&fragm_hdr, fragm_sz + INT_H_SIZE);
  2329. skb_copy_to_linear_data(fragm, &fragm_hdr, INT_H_SIZE);
  2330. skb_copy_to_linear_data_offset(fragm, INT_H_SIZE, crs,
  2331. fragm_sz);
  2332. /* Send queued messages first, if any: */
  2333. l_ptr->stats.sent_fragments++;
  2334. tipc_link_send_buf(l_ptr, fragm);
  2335. if (!tipc_link_is_up(l_ptr))
  2336. return dsz;
  2337. msg_set_fragm_no(&fragm_hdr, ++fragm_no);
  2338. rest -= fragm_sz;
  2339. crs += fragm_sz;
  2340. msg_set_type(&fragm_hdr, FRAGMENT);
  2341. }
  2342. exit:
  2343. buf_discard(buf);
  2344. return dsz;
  2345. }
  2346. /*
  2347. * A pending message being re-assembled must store certain values
  2348. * to handle subsequent fragments correctly. The following functions
  2349. * help storing these values in unused, available fields in the
  2350. * pending message. This makes dynamic memory allocation unecessary.
  2351. */
  2352. static void set_long_msg_seqno(struct sk_buff *buf, u32 seqno)
  2353. {
  2354. msg_set_seqno(buf_msg(buf), seqno);
  2355. }
  2356. static u32 get_fragm_size(struct sk_buff *buf)
  2357. {
  2358. return msg_ack(buf_msg(buf));
  2359. }
  2360. static void set_fragm_size(struct sk_buff *buf, u32 sz)
  2361. {
  2362. msg_set_ack(buf_msg(buf), sz);
  2363. }
  2364. static u32 get_expected_frags(struct sk_buff *buf)
  2365. {
  2366. return msg_bcast_ack(buf_msg(buf));
  2367. }
  2368. static void set_expected_frags(struct sk_buff *buf, u32 exp)
  2369. {
  2370. msg_set_bcast_ack(buf_msg(buf), exp);
  2371. }
  2372. static u32 get_timer_cnt(struct sk_buff *buf)
  2373. {
  2374. return msg_reroute_cnt(buf_msg(buf));
  2375. }
  2376. static void incr_timer_cnt(struct sk_buff *buf)
  2377. {
  2378. msg_incr_reroute_cnt(buf_msg(buf));
  2379. }
  2380. /*
  2381. * tipc_link_recv_fragment(): Called with node lock on. Returns
  2382. * the reassembled buffer if message is complete.
  2383. */
  2384. int tipc_link_recv_fragment(struct sk_buff **pending, struct sk_buff **fb,
  2385. struct tipc_msg **m)
  2386. {
  2387. struct sk_buff *prev = NULL;
  2388. struct sk_buff *fbuf = *fb;
  2389. struct tipc_msg *fragm = buf_msg(fbuf);
  2390. struct sk_buff *pbuf = *pending;
  2391. u32 long_msg_seq_no = msg_long_msgno(fragm);
  2392. *fb = NULL;
  2393. msg_dbg(fragm,"FRG<REC<");
  2394. /* Is there an incomplete message waiting for this fragment? */
  2395. while (pbuf && ((msg_seqno(buf_msg(pbuf)) != long_msg_seq_no)
  2396. || (msg_orignode(fragm) != msg_orignode(buf_msg(pbuf))))) {
  2397. prev = pbuf;
  2398. pbuf = pbuf->next;
  2399. }
  2400. if (!pbuf && (msg_type(fragm) == FIRST_FRAGMENT)) {
  2401. struct tipc_msg *imsg = (struct tipc_msg *)msg_data(fragm);
  2402. u32 msg_sz = msg_size(imsg);
  2403. u32 fragm_sz = msg_data_sz(fragm);
  2404. u32 exp_fragm_cnt = msg_sz/fragm_sz + !!(msg_sz % fragm_sz);
  2405. u32 max = TIPC_MAX_USER_MSG_SIZE + LONG_H_SIZE;
  2406. if (msg_type(imsg) == TIPC_MCAST_MSG)
  2407. max = TIPC_MAX_USER_MSG_SIZE + MCAST_H_SIZE;
  2408. if (msg_size(imsg) > max) {
  2409. msg_dbg(fragm,"<REC<Oversized: ");
  2410. buf_discard(fbuf);
  2411. return 0;
  2412. }
  2413. pbuf = buf_acquire(msg_size(imsg));
  2414. if (pbuf != NULL) {
  2415. pbuf->next = *pending;
  2416. *pending = pbuf;
  2417. skb_copy_to_linear_data(pbuf, imsg,
  2418. msg_data_sz(fragm));
  2419. /* Prepare buffer for subsequent fragments. */
  2420. set_long_msg_seqno(pbuf, long_msg_seq_no);
  2421. set_fragm_size(pbuf,fragm_sz);
  2422. set_expected_frags(pbuf,exp_fragm_cnt - 1);
  2423. } else {
  2424. warn("Link unable to reassemble fragmented message\n");
  2425. }
  2426. buf_discard(fbuf);
  2427. return 0;
  2428. } else if (pbuf && (msg_type(fragm) != FIRST_FRAGMENT)) {
  2429. u32 dsz = msg_data_sz(fragm);
  2430. u32 fsz = get_fragm_size(pbuf);
  2431. u32 crs = ((msg_fragm_no(fragm) - 1) * fsz);
  2432. u32 exp_frags = get_expected_frags(pbuf) - 1;
  2433. skb_copy_to_linear_data_offset(pbuf, crs,
  2434. msg_data(fragm), dsz);
  2435. buf_discard(fbuf);
  2436. /* Is message complete? */
  2437. if (exp_frags == 0) {
  2438. if (prev)
  2439. prev->next = pbuf->next;
  2440. else
  2441. *pending = pbuf->next;
  2442. msg_reset_reroute_cnt(buf_msg(pbuf));
  2443. *fb = pbuf;
  2444. *m = buf_msg(pbuf);
  2445. return 1;
  2446. }
  2447. set_expected_frags(pbuf,exp_frags);
  2448. return 0;
  2449. }
  2450. dbg(" Discarding orphan fragment %x\n",fbuf);
  2451. msg_dbg(fragm,"ORPHAN:");
  2452. dbg("Pending long buffers:\n");
  2453. dbg_print_buf_chain(*pending);
  2454. buf_discard(fbuf);
  2455. return 0;
  2456. }
  2457. /**
  2458. * link_check_defragm_bufs - flush stale incoming message fragments
  2459. * @l_ptr: pointer to link
  2460. */
  2461. static void link_check_defragm_bufs(struct link *l_ptr)
  2462. {
  2463. struct sk_buff *prev = NULL;
  2464. struct sk_buff *next = NULL;
  2465. struct sk_buff *buf = l_ptr->defragm_buf;
  2466. if (!buf)
  2467. return;
  2468. if (!link_working_working(l_ptr))
  2469. return;
  2470. while (buf) {
  2471. u32 cnt = get_timer_cnt(buf);
  2472. next = buf->next;
  2473. if (cnt < 4) {
  2474. incr_timer_cnt(buf);
  2475. prev = buf;
  2476. } else {
  2477. dbg(" Discarding incomplete long buffer\n");
  2478. msg_dbg(buf_msg(buf), "LONG:");
  2479. dbg_print_link(l_ptr, "curr:");
  2480. dbg("Pending long buffers:\n");
  2481. dbg_print_buf_chain(l_ptr->defragm_buf);
  2482. if (prev)
  2483. prev->next = buf->next;
  2484. else
  2485. l_ptr->defragm_buf = buf->next;
  2486. buf_discard(buf);
  2487. }
  2488. buf = next;
  2489. }
  2490. }
  2491. static void link_set_supervision_props(struct link *l_ptr, u32 tolerance)
  2492. {
  2493. l_ptr->tolerance = tolerance;
  2494. l_ptr->continuity_interval =
  2495. ((tolerance / 4) > 500) ? 500 : tolerance / 4;
  2496. l_ptr->abort_limit = tolerance / (l_ptr->continuity_interval / 4);
  2497. }
  2498. void tipc_link_set_queue_limits(struct link *l_ptr, u32 window)
  2499. {
  2500. /* Data messages from this node, inclusive FIRST_FRAGM */
  2501. l_ptr->queue_limit[TIPC_LOW_IMPORTANCE] = window;
  2502. l_ptr->queue_limit[TIPC_MEDIUM_IMPORTANCE] = (window / 3) * 4;
  2503. l_ptr->queue_limit[TIPC_HIGH_IMPORTANCE] = (window / 3) * 5;
  2504. l_ptr->queue_limit[TIPC_CRITICAL_IMPORTANCE] = (window / 3) * 6;
  2505. /* Transiting data messages,inclusive FIRST_FRAGM */
  2506. l_ptr->queue_limit[TIPC_LOW_IMPORTANCE + 4] = 300;
  2507. l_ptr->queue_limit[TIPC_MEDIUM_IMPORTANCE + 4] = 600;
  2508. l_ptr->queue_limit[TIPC_HIGH_IMPORTANCE + 4] = 900;
  2509. l_ptr->queue_limit[TIPC_CRITICAL_IMPORTANCE + 4] = 1200;
  2510. l_ptr->queue_limit[CONN_MANAGER] = 1200;
  2511. l_ptr->queue_limit[ROUTE_DISTRIBUTOR] = 1200;
  2512. l_ptr->queue_limit[CHANGEOVER_PROTOCOL] = 2500;
  2513. l_ptr->queue_limit[NAME_DISTRIBUTOR] = 3000;
  2514. /* FRAGMENT and LAST_FRAGMENT packets */
  2515. l_ptr->queue_limit[MSG_FRAGMENTER] = 4000;
  2516. }
  2517. /**
  2518. * link_find_link - locate link by name
  2519. * @name - ptr to link name string
  2520. * @node - ptr to area to be filled with ptr to associated node
  2521. *
  2522. * Caller must hold 'tipc_net_lock' to ensure node and bearer are not deleted;
  2523. * this also prevents link deletion.
  2524. *
  2525. * Returns pointer to link (or 0 if invalid link name).
  2526. */
  2527. static struct link *link_find_link(const char *name, struct node **node)
  2528. {
  2529. struct link_name link_name_parts;
  2530. struct bearer *b_ptr;
  2531. struct link *l_ptr;
  2532. if (!link_name_validate(name, &link_name_parts))
  2533. return NULL;
  2534. b_ptr = tipc_bearer_find_interface(link_name_parts.if_local);
  2535. if (!b_ptr)
  2536. return NULL;
  2537. *node = tipc_node_find(link_name_parts.addr_peer);
  2538. if (!*node)
  2539. return NULL;
  2540. l_ptr = (*node)->links[b_ptr->identity];
  2541. if (!l_ptr || strcmp(l_ptr->name, name))
  2542. return NULL;
  2543. return l_ptr;
  2544. }
  2545. struct sk_buff *tipc_link_cmd_config(const void *req_tlv_area, int req_tlv_space,
  2546. u16 cmd)
  2547. {
  2548. struct tipc_link_config *args;
  2549. u32 new_value;
  2550. struct link *l_ptr;
  2551. struct node *node;
  2552. int res;
  2553. if (!TLV_CHECK(req_tlv_area, req_tlv_space, TIPC_TLV_LINK_CONFIG))
  2554. return tipc_cfg_reply_error_string(TIPC_CFG_TLV_ERROR);
  2555. args = (struct tipc_link_config *)TLV_DATA(req_tlv_area);
  2556. new_value = ntohl(args->value);
  2557. if (!strcmp(args->name, tipc_bclink_name)) {
  2558. if ((cmd == TIPC_CMD_SET_LINK_WINDOW) &&
  2559. (tipc_bclink_set_queue_limits(new_value) == 0))
  2560. return tipc_cfg_reply_none();
  2561. return tipc_cfg_reply_error_string(TIPC_CFG_NOT_SUPPORTED
  2562. " (cannot change setting on broadcast link)");
  2563. }
  2564. read_lock_bh(&tipc_net_lock);
  2565. l_ptr = link_find_link(args->name, &node);
  2566. if (!l_ptr) {
  2567. read_unlock_bh(&tipc_net_lock);
  2568. return tipc_cfg_reply_error_string("link not found");
  2569. }
  2570. tipc_node_lock(node);
  2571. res = -EINVAL;
  2572. switch (cmd) {
  2573. case TIPC_CMD_SET_LINK_TOL:
  2574. if ((new_value >= TIPC_MIN_LINK_TOL) &&
  2575. (new_value <= TIPC_MAX_LINK_TOL)) {
  2576. link_set_supervision_props(l_ptr, new_value);
  2577. tipc_link_send_proto_msg(l_ptr, STATE_MSG,
  2578. 0, 0, new_value, 0, 0);
  2579. res = TIPC_OK;
  2580. }
  2581. break;
  2582. case TIPC_CMD_SET_LINK_PRI:
  2583. if ((new_value >= TIPC_MIN_LINK_PRI) &&
  2584. (new_value <= TIPC_MAX_LINK_PRI)) {
  2585. l_ptr->priority = new_value;
  2586. tipc_link_send_proto_msg(l_ptr, STATE_MSG,
  2587. 0, 0, 0, new_value, 0);
  2588. res = TIPC_OK;
  2589. }
  2590. break;
  2591. case TIPC_CMD_SET_LINK_WINDOW:
  2592. if ((new_value >= TIPC_MIN_LINK_WIN) &&
  2593. (new_value <= TIPC_MAX_LINK_WIN)) {
  2594. tipc_link_set_queue_limits(l_ptr, new_value);
  2595. res = TIPC_OK;
  2596. }
  2597. break;
  2598. }
  2599. tipc_node_unlock(node);
  2600. read_unlock_bh(&tipc_net_lock);
  2601. if (res)
  2602. return tipc_cfg_reply_error_string("cannot change link setting");
  2603. return tipc_cfg_reply_none();
  2604. }
  2605. /**
  2606. * link_reset_statistics - reset link statistics
  2607. * @l_ptr: pointer to link
  2608. */
  2609. static void link_reset_statistics(struct link *l_ptr)
  2610. {
  2611. memset(&l_ptr->stats, 0, sizeof(l_ptr->stats));
  2612. l_ptr->stats.sent_info = l_ptr->next_out_no;
  2613. l_ptr->stats.recv_info = l_ptr->next_in_no;
  2614. }
  2615. struct sk_buff *tipc_link_cmd_reset_stats(const void *req_tlv_area, int req_tlv_space)
  2616. {
  2617. char *link_name;
  2618. struct link *l_ptr;
  2619. struct node *node;
  2620. if (!TLV_CHECK(req_tlv_area, req_tlv_space, TIPC_TLV_LINK_NAME))
  2621. return tipc_cfg_reply_error_string(TIPC_CFG_TLV_ERROR);
  2622. link_name = (char *)TLV_DATA(req_tlv_area);
  2623. if (!strcmp(link_name, tipc_bclink_name)) {
  2624. if (tipc_bclink_reset_stats())
  2625. return tipc_cfg_reply_error_string("link not found");
  2626. return tipc_cfg_reply_none();
  2627. }
  2628. read_lock_bh(&tipc_net_lock);
  2629. l_ptr = link_find_link(link_name, &node);
  2630. if (!l_ptr) {
  2631. read_unlock_bh(&tipc_net_lock);
  2632. return tipc_cfg_reply_error_string("link not found");
  2633. }
  2634. tipc_node_lock(node);
  2635. link_reset_statistics(l_ptr);
  2636. tipc_node_unlock(node);
  2637. read_unlock_bh(&tipc_net_lock);
  2638. return tipc_cfg_reply_none();
  2639. }
  2640. /**
  2641. * percent - convert count to a percentage of total (rounding up or down)
  2642. */
  2643. static u32 percent(u32 count, u32 total)
  2644. {
  2645. return (count * 100 + (total / 2)) / total;
  2646. }
  2647. /**
  2648. * tipc_link_stats - print link statistics
  2649. * @name: link name
  2650. * @buf: print buffer area
  2651. * @buf_size: size of print buffer area
  2652. *
  2653. * Returns length of print buffer data string (or 0 if error)
  2654. */
  2655. static int tipc_link_stats(const char *name, char *buf, const u32 buf_size)
  2656. {
  2657. struct print_buf pb;
  2658. struct link *l_ptr;
  2659. struct node *node;
  2660. char *status;
  2661. u32 profile_total = 0;
  2662. if (!strcmp(name, tipc_bclink_name))
  2663. return tipc_bclink_stats(buf, buf_size);
  2664. tipc_printbuf_init(&pb, buf, buf_size);
  2665. read_lock_bh(&tipc_net_lock);
  2666. l_ptr = link_find_link(name, &node);
  2667. if (!l_ptr) {
  2668. read_unlock_bh(&tipc_net_lock);
  2669. return 0;
  2670. }
  2671. tipc_node_lock(node);
  2672. if (tipc_link_is_active(l_ptr))
  2673. status = "ACTIVE";
  2674. else if (tipc_link_is_up(l_ptr))
  2675. status = "STANDBY";
  2676. else
  2677. status = "DEFUNCT";
  2678. tipc_printf(&pb, "Link <%s>\n"
  2679. " %s MTU:%u Priority:%u Tolerance:%u ms"
  2680. " Window:%u packets\n",
  2681. l_ptr->name, status, link_max_pkt(l_ptr),
  2682. l_ptr->priority, l_ptr->tolerance, l_ptr->queue_limit[0]);
  2683. tipc_printf(&pb, " RX packets:%u fragments:%u/%u bundles:%u/%u\n",
  2684. l_ptr->next_in_no - l_ptr->stats.recv_info,
  2685. l_ptr->stats.recv_fragments,
  2686. l_ptr->stats.recv_fragmented,
  2687. l_ptr->stats.recv_bundles,
  2688. l_ptr->stats.recv_bundled);
  2689. tipc_printf(&pb, " TX packets:%u fragments:%u/%u bundles:%u/%u\n",
  2690. l_ptr->next_out_no - l_ptr->stats.sent_info,
  2691. l_ptr->stats.sent_fragments,
  2692. l_ptr->stats.sent_fragmented,
  2693. l_ptr->stats.sent_bundles,
  2694. l_ptr->stats.sent_bundled);
  2695. profile_total = l_ptr->stats.msg_length_counts;
  2696. if (!profile_total)
  2697. profile_total = 1;
  2698. tipc_printf(&pb, " TX profile sample:%u packets average:%u octets\n"
  2699. " 0-64:%u%% -256:%u%% -1024:%u%% -4096:%u%% "
  2700. "-16354:%u%% -32768:%u%% -66000:%u%%\n",
  2701. l_ptr->stats.msg_length_counts,
  2702. l_ptr->stats.msg_lengths_total / profile_total,
  2703. percent(l_ptr->stats.msg_length_profile[0], profile_total),
  2704. percent(l_ptr->stats.msg_length_profile[1], profile_total),
  2705. percent(l_ptr->stats.msg_length_profile[2], profile_total),
  2706. percent(l_ptr->stats.msg_length_profile[3], profile_total),
  2707. percent(l_ptr->stats.msg_length_profile[4], profile_total),
  2708. percent(l_ptr->stats.msg_length_profile[5], profile_total),
  2709. percent(l_ptr->stats.msg_length_profile[6], profile_total));
  2710. tipc_printf(&pb, " RX states:%u probes:%u naks:%u defs:%u dups:%u\n",
  2711. l_ptr->stats.recv_states,
  2712. l_ptr->stats.recv_probes,
  2713. l_ptr->stats.recv_nacks,
  2714. l_ptr->stats.deferred_recv,
  2715. l_ptr->stats.duplicates);
  2716. tipc_printf(&pb, " TX states:%u probes:%u naks:%u acks:%u dups:%u\n",
  2717. l_ptr->stats.sent_states,
  2718. l_ptr->stats.sent_probes,
  2719. l_ptr->stats.sent_nacks,
  2720. l_ptr->stats.sent_acks,
  2721. l_ptr->stats.retransmitted);
  2722. tipc_printf(&pb, " Congestion bearer:%u link:%u Send queue max:%u avg:%u\n",
  2723. l_ptr->stats.bearer_congs,
  2724. l_ptr->stats.link_congs,
  2725. l_ptr->stats.max_queue_sz,
  2726. l_ptr->stats.queue_sz_counts
  2727. ? (l_ptr->stats.accu_queue_sz / l_ptr->stats.queue_sz_counts)
  2728. : 0);
  2729. tipc_node_unlock(node);
  2730. read_unlock_bh(&tipc_net_lock);
  2731. return tipc_printbuf_validate(&pb);
  2732. }
  2733. #define MAX_LINK_STATS_INFO 2000
  2734. struct sk_buff *tipc_link_cmd_show_stats(const void *req_tlv_area, int req_tlv_space)
  2735. {
  2736. struct sk_buff *buf;
  2737. struct tlv_desc *rep_tlv;
  2738. int str_len;
  2739. if (!TLV_CHECK(req_tlv_area, req_tlv_space, TIPC_TLV_LINK_NAME))
  2740. return tipc_cfg_reply_error_string(TIPC_CFG_TLV_ERROR);
  2741. buf = tipc_cfg_reply_alloc(TLV_SPACE(MAX_LINK_STATS_INFO));
  2742. if (!buf)
  2743. return NULL;
  2744. rep_tlv = (struct tlv_desc *)buf->data;
  2745. str_len = tipc_link_stats((char *)TLV_DATA(req_tlv_area),
  2746. (char *)TLV_DATA(rep_tlv), MAX_LINK_STATS_INFO);
  2747. if (!str_len) {
  2748. buf_discard(buf);
  2749. return tipc_cfg_reply_error_string("link not found");
  2750. }
  2751. skb_put(buf, TLV_SPACE(str_len));
  2752. TLV_SET(rep_tlv, TIPC_TLV_ULTRA_STRING, NULL, str_len);
  2753. return buf;
  2754. }
  2755. #if 0
  2756. int link_control(const char *name, u32 op, u32 val)
  2757. {
  2758. int res = -EINVAL;
  2759. struct link *l_ptr;
  2760. u32 bearer_id;
  2761. struct node * node;
  2762. u32 a;
  2763. a = link_name2addr(name, &bearer_id);
  2764. read_lock_bh(&tipc_net_lock);
  2765. node = tipc_node_find(a);
  2766. if (node) {
  2767. tipc_node_lock(node);
  2768. l_ptr = node->links[bearer_id];
  2769. if (l_ptr) {
  2770. if (op == TIPC_REMOVE_LINK) {
  2771. struct bearer *b_ptr = l_ptr->b_ptr;
  2772. spin_lock_bh(&b_ptr->publ.lock);
  2773. tipc_link_delete(l_ptr);
  2774. spin_unlock_bh(&b_ptr->publ.lock);
  2775. }
  2776. if (op == TIPC_CMD_BLOCK_LINK) {
  2777. tipc_link_reset(l_ptr);
  2778. l_ptr->blocked = 1;
  2779. }
  2780. if (op == TIPC_CMD_UNBLOCK_LINK) {
  2781. l_ptr->blocked = 0;
  2782. }
  2783. res = TIPC_OK;
  2784. }
  2785. tipc_node_unlock(node);
  2786. }
  2787. read_unlock_bh(&tipc_net_lock);
  2788. return res;
  2789. }
  2790. #endif
  2791. /**
  2792. * tipc_link_get_max_pkt - get maximum packet size to use when sending to destination
  2793. * @dest: network address of destination node
  2794. * @selector: used to select from set of active links
  2795. *
  2796. * If no active link can be found, uses default maximum packet size.
  2797. */
  2798. u32 tipc_link_get_max_pkt(u32 dest, u32 selector)
  2799. {
  2800. struct node *n_ptr;
  2801. struct link *l_ptr;
  2802. u32 res = MAX_PKT_DEFAULT;
  2803. if (dest == tipc_own_addr)
  2804. return MAX_MSG_SIZE;
  2805. read_lock_bh(&tipc_net_lock);
  2806. n_ptr = tipc_node_select(dest, selector);
  2807. if (n_ptr) {
  2808. tipc_node_lock(n_ptr);
  2809. l_ptr = n_ptr->active_links[selector & 1];
  2810. if (l_ptr)
  2811. res = link_max_pkt(l_ptr);
  2812. tipc_node_unlock(n_ptr);
  2813. }
  2814. read_unlock_bh(&tipc_net_lock);
  2815. return res;
  2816. }
  2817. #if 0
  2818. static void link_dump_rec_queue(struct link *l_ptr)
  2819. {
  2820. struct sk_buff *crs;
  2821. if (!l_ptr->oldest_deferred_in) {
  2822. info("Reception queue empty\n");
  2823. return;
  2824. }
  2825. info("Contents of Reception queue:\n");
  2826. crs = l_ptr->oldest_deferred_in;
  2827. while (crs) {
  2828. if (crs->data == (void *)0x0000a3a3) {
  2829. info("buffer %x invalid\n", crs);
  2830. return;
  2831. }
  2832. msg_dbg(buf_msg(crs), "In rec queue: \n");
  2833. crs = crs->next;
  2834. }
  2835. }
  2836. #endif
  2837. static void link_dump_send_queue(struct link *l_ptr)
  2838. {
  2839. if (l_ptr->next_out) {
  2840. info("\nContents of unsent queue:\n");
  2841. dbg_print_buf_chain(l_ptr->next_out);
  2842. }
  2843. info("\nContents of send queue:\n");
  2844. if (l_ptr->first_out) {
  2845. dbg_print_buf_chain(l_ptr->first_out);
  2846. }
  2847. info("Empty send queue\n");
  2848. }
  2849. static void link_print(struct link *l_ptr, struct print_buf *buf,
  2850. const char *str)
  2851. {
  2852. tipc_printf(buf, str);
  2853. if (link_reset_reset(l_ptr) || link_reset_unknown(l_ptr))
  2854. return;
  2855. tipc_printf(buf, "Link %x<%s>:",
  2856. l_ptr->addr, l_ptr->b_ptr->publ.name);
  2857. tipc_printf(buf, ": NXO(%u):", mod(l_ptr->next_out_no));
  2858. tipc_printf(buf, "NXI(%u):", mod(l_ptr->next_in_no));
  2859. tipc_printf(buf, "SQUE");
  2860. if (l_ptr->first_out) {
  2861. tipc_printf(buf, "[%u..", msg_seqno(buf_msg(l_ptr->first_out)));
  2862. if (l_ptr->next_out)
  2863. tipc_printf(buf, "%u..",
  2864. msg_seqno(buf_msg(l_ptr->next_out)));
  2865. tipc_printf(buf, "%u]",
  2866. msg_seqno(buf_msg
  2867. (l_ptr->last_out)), l_ptr->out_queue_size);
  2868. if ((mod(msg_seqno(buf_msg(l_ptr->last_out)) -
  2869. msg_seqno(buf_msg(l_ptr->first_out)))
  2870. != (l_ptr->out_queue_size - 1))
  2871. || (l_ptr->last_out->next != NULL)) {
  2872. tipc_printf(buf, "\nSend queue inconsistency\n");
  2873. tipc_printf(buf, "first_out= %x ", l_ptr->first_out);
  2874. tipc_printf(buf, "next_out= %x ", l_ptr->next_out);
  2875. tipc_printf(buf, "last_out= %x ", l_ptr->last_out);
  2876. link_dump_send_queue(l_ptr);
  2877. }
  2878. } else
  2879. tipc_printf(buf, "[]");
  2880. tipc_printf(buf, "SQSIZ(%u)", l_ptr->out_queue_size);
  2881. if (l_ptr->oldest_deferred_in) {
  2882. u32 o = msg_seqno(buf_msg(l_ptr->oldest_deferred_in));
  2883. u32 n = msg_seqno(buf_msg(l_ptr->newest_deferred_in));
  2884. tipc_printf(buf, ":RQUE[%u..%u]", o, n);
  2885. if (l_ptr->deferred_inqueue_sz != mod((n + 1) - o)) {
  2886. tipc_printf(buf, ":RQSIZ(%u)",
  2887. l_ptr->deferred_inqueue_sz);
  2888. }
  2889. }
  2890. if (link_working_unknown(l_ptr))
  2891. tipc_printf(buf, ":WU");
  2892. if (link_reset_reset(l_ptr))
  2893. tipc_printf(buf, ":RR");
  2894. if (link_reset_unknown(l_ptr))
  2895. tipc_printf(buf, ":RU");
  2896. if (link_working_working(l_ptr))
  2897. tipc_printf(buf, ":WW");
  2898. tipc_printf(buf, "\n");
  2899. }