main.c 50 KB

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  1. /*
  2. * Copyright (c) 2002-2006 MontaVista Software, Inc.
  3. * Copyright (c) 2006-2009 Red Hat, Inc.
  4. *
  5. * All rights reserved.
  6. *
  7. * Author: Steven Dake (sdake@redhat.com)
  8. *
  9. * This software licensed under BSD license, the text of which follows:
  10. *
  11. * Redistribution and use in source and binary forms, with or without
  12. * modification, are permitted provided that the following conditions are met:
  13. *
  14. * - Redistributions of source code must retain the above copyright notice,
  15. * this list of conditions and the following disclaimer.
  16. * - Redistributions in binary form must reproduce the above copyright notice,
  17. * this list of conditions and the following disclaimer in the documentation
  18. * and/or other materials provided with the distribution.
  19. * - Neither the name of the MontaVista Software, Inc. nor the names of its
  20. * contributors may be used to endorse or promote products derived from this
  21. * software without specific prior written permission.
  22. *
  23. * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
  24. * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
  25. * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
  26. * ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE
  27. * LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
  28. * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
  29. * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
  30. * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
  31. * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
  32. * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF
  33. * THE POSSIBILITY OF SUCH DAMAGE.
  34. */
  35. #include <config.h>
  36. #include <pthread.h>
  37. #include <assert.h>
  38. #include <sys/types.h>
  39. #include <sys/file.h>
  40. #include <sys/poll.h>
  41. #include <sys/uio.h>
  42. #include <sys/mman.h>
  43. #include <sys/socket.h>
  44. #include <sys/un.h>
  45. #include <sys/time.h>
  46. #include <sys/resource.h>
  47. #include <sys/stat.h>
  48. #include <netinet/in.h>
  49. #include <arpa/inet.h>
  50. #include <unistd.h>
  51. #include <fcntl.h>
  52. #include <stdlib.h>
  53. #include <stdio.h>
  54. #include <errno.h>
  55. #include <signal.h>
  56. #include <sched.h>
  57. #include <time.h>
  58. #include <semaphore.h>
  59. #include <corosync/swab.h>
  60. #include <corosync/corotypes.h>
  61. #include <corosync/coroipc_types.h>
  62. #include <corosync/corodefs.h>
  63. #include <corosync/list.h>
  64. #include <corosync/lcr/lcr_ifact.h>
  65. #include <corosync/totem/coropoll.h>
  66. #include <corosync/totem/totempg.h>
  67. #include <corosync/engine/objdb.h>
  68. #include <corosync/engine/config.h>
  69. #include <corosync/engine/logsys.h>
  70. #include <corosync/coroipcs.h>
  71. #include "quorum.h"
  72. #include "totemsrp.h"
  73. #include "mainconfig.h"
  74. #include "totemconfig.h"
  75. #include "main.h"
  76. #include "sync.h"
  77. #include "syncv2.h"
  78. #include "tlist.h"
  79. #include "timer.h"
  80. #include "util.h"
  81. #include "apidef.h"
  82. #include "service.h"
  83. #include "schedwrk.h"
  84. #include "evil.h"
  85. LOGSYS_DECLARE_SYSTEM ("corosync",
  86. LOGSYS_MODE_OUTPUT_STDERR | LOGSYS_MODE_THREADED | LOGSYS_MODE_FORK,
  87. 0,
  88. NULL,
  89. LOG_INFO,
  90. LOG_DAEMON,
  91. LOG_INFO,
  92. NULL,
  93. 1000000);
  94. LOGSYS_DECLARE_SUBSYS ("MAIN");
  95. #define SERVER_BACKLOG 5
  96. static int sched_priority = 0;
  97. static unsigned int service_count = 32;
  98. #if defined(HAVE_PTHREAD_SPIN_LOCK)
  99. static pthread_spinlock_t serialize_spin;
  100. #else
  101. static pthread_mutex_t serialize_mutex = PTHREAD_MUTEX_INITIALIZER;
  102. #endif
  103. static struct totem_logging_configuration totem_logging_configuration;
  104. static int num_config_modules;
  105. static struct config_iface_ver0 *config_modules[MAX_DYNAMIC_SERVICES];
  106. static struct objdb_iface_ver0 *objdb = NULL;
  107. static struct corosync_api_v1 *api = NULL;
  108. static enum cs_sync_mode minimum_sync_mode;
  109. static int sync_in_process = 1;
  110. static hdb_handle_t corosync_poll_handle;
  111. struct sched_param global_sched_param;
  112. static hdb_handle_t object_connection_handle;
  113. static hdb_handle_t object_memb_handle;
  114. static corosync_timer_handle_t corosync_stats_timer_handle;
  115. static pthread_t corosync_exit_thread;
  116. static sem_t corosync_exit_sem;
  117. static const char *corosync_lock_file = LOCALSTATEDIR"/run/corosync.pid";
  118. static int32_t corosync_not_enough_fds_left = 0;
  119. static void serialize_unlock (void);
  120. hdb_handle_t corosync_poll_handle_get (void)
  121. {
  122. return (corosync_poll_handle);
  123. }
  124. void corosync_state_dump (void)
  125. {
  126. int i;
  127. for (i = 0; i < SERVICE_HANDLER_MAXIMUM_COUNT; i++) {
  128. if (ais_service[i] && ais_service[i]->exec_dump_fn) {
  129. ais_service[i]->exec_dump_fn ();
  130. }
  131. }
  132. }
  133. static void unlink_all_completed (void)
  134. {
  135. /*
  136. * The schedwrk_do API takes the global serializer lock
  137. * but doesn't release it because this exit callback is called
  138. * before it finishes. Since we know we are exiting, we unlock it
  139. * here
  140. */
  141. serialize_unlock ();
  142. api->timer_delete (corosync_stats_timer_handle);
  143. poll_stop (corosync_poll_handle);
  144. totempg_finalize ();
  145. /*
  146. * Remove pid lock file
  147. */
  148. unlink (corosync_lock_file);
  149. corosync_exit_error (AIS_DONE_EXIT);
  150. }
  151. void corosync_shutdown_request (void)
  152. {
  153. static int called = 0;
  154. if (called) {
  155. return;
  156. }
  157. if (called == 0) {
  158. called = 1;
  159. }
  160. sem_post (&corosync_exit_sem);
  161. }
  162. static void *corosync_exit_thread_handler (void *arg)
  163. {
  164. sem_wait (&corosync_exit_sem);
  165. corosync_service_unlink_all (api, unlink_all_completed);
  166. return arg;
  167. }
  168. static void sigusr2_handler (int num)
  169. {
  170. /*
  171. * TODO remove this from sigusr2 handler and access via cfg service
  172. * engine api - corosync-cfgtool
  173. */
  174. corosync_state_dump ();
  175. }
  176. static void sigterm_handler (int num)
  177. {
  178. corosync_shutdown_request ();
  179. }
  180. static void sigquit_handler (int num)
  181. {
  182. corosync_shutdown_request ();
  183. }
  184. static void sigintr_handler (int num)
  185. {
  186. corosync_shutdown_request ();
  187. }
  188. static void sigsegv_handler (int num)
  189. {
  190. (void)signal (SIGSEGV, SIG_DFL);
  191. logsys_atexit();
  192. logsys_log_rec_store (LOCALSTATEDIR "/lib/corosync/fdata");
  193. raise (SIGSEGV);
  194. }
  195. static void sigabrt_handler (int num)
  196. {
  197. (void)signal (SIGABRT, SIG_DFL);
  198. logsys_atexit();
  199. logsys_log_rec_store (LOCALSTATEDIR "/lib/corosync/fdata");
  200. raise (SIGABRT);
  201. }
  202. #define LOCALHOST_IP inet_addr("127.0.0.1")
  203. static hdb_handle_t corosync_group_handle;
  204. static struct totempg_group corosync_group = {
  205. .group = "a",
  206. .group_len = 1
  207. };
  208. #if defined(HAVE_PTHREAD_SPIN_LOCK)
  209. static void serialize_lock (void)
  210. {
  211. pthread_spin_lock (&serialize_spin);
  212. }
  213. static void serialize_unlock (void)
  214. {
  215. pthread_spin_unlock (&serialize_spin);
  216. }
  217. #else
  218. static void serialize_lock (void)
  219. {
  220. pthread_mutex_lock (&serialize_mutex);
  221. }
  222. static void serialize_unlock (void)
  223. {
  224. pthread_mutex_unlock (&serialize_mutex);
  225. }
  226. #endif
  227. static void corosync_sync_completed (void)
  228. {
  229. log_printf (LOGSYS_LEVEL_NOTICE,
  230. "Completed service synchronization, ready to provide service.\n");
  231. sync_in_process = 0;
  232. }
  233. static int corosync_sync_callbacks_retrieve (int sync_id,
  234. struct sync_callbacks *callbacks)
  235. {
  236. unsigned int ais_service_index;
  237. int res;
  238. for (ais_service_index = 0;
  239. ais_service_index < SERVICE_HANDLER_MAXIMUM_COUNT;
  240. ais_service_index++) {
  241. if (ais_service[ais_service_index] != NULL
  242. && (ais_service[ais_service_index]->sync_mode == CS_SYNC_V1
  243. || ais_service[ais_service_index]->sync_mode == CS_SYNC_V1_APIV2)) {
  244. if (ais_service_index == sync_id) {
  245. break;
  246. }
  247. }
  248. }
  249. /*
  250. * Try to load backwards compat sync engines
  251. */
  252. if (ais_service_index == SERVICE_HANDLER_MAXIMUM_COUNT) {
  253. res = evil_callbacks_load (sync_id, callbacks);
  254. return (res);
  255. }
  256. callbacks->name = ais_service[ais_service_index]->name;
  257. callbacks->sync_init_api.sync_init_v1 = ais_service[ais_service_index]->sync_init;
  258. callbacks->api_version = 1;
  259. if (ais_service[ais_service_index]->sync_mode == CS_SYNC_V1_APIV2) {
  260. callbacks->api_version = 2;
  261. }
  262. callbacks->sync_process = ais_service[ais_service_index]->sync_process;
  263. callbacks->sync_activate = ais_service[ais_service_index]->sync_activate;
  264. callbacks->sync_abort = ais_service[ais_service_index]->sync_abort;
  265. return (0);
  266. }
  267. static int corosync_sync_v2_callbacks_retrieve (
  268. int service_id,
  269. struct sync_callbacks *callbacks)
  270. {
  271. int res;
  272. if (minimum_sync_mode == CS_SYNC_V2 && service_id == CLM_SERVICE && ais_service[CLM_SERVICE] == NULL) {
  273. res = evil_callbacks_load (service_id, callbacks);
  274. return (res);
  275. }
  276. if (minimum_sync_mode == CS_SYNC_V2 && service_id == EVT_SERVICE && ais_service[EVT_SERVICE] == NULL) {
  277. res = evil_callbacks_load (service_id, callbacks);
  278. return (res);
  279. }
  280. if (ais_service[service_id] == NULL) {
  281. return (-1);
  282. }
  283. if (minimum_sync_mode == CS_SYNC_V1 && ais_service[service_id]->sync_mode != CS_SYNC_V2) {
  284. return (-1);
  285. }
  286. callbacks->name = ais_service[service_id]->name;
  287. callbacks->api_version = 1;
  288. if (ais_service[service_id]->sync_mode == CS_SYNC_V1_APIV2) {
  289. callbacks->api_version = 2;
  290. }
  291. callbacks->sync_init_api.sync_init_v1 = ais_service[service_id]->sync_init;
  292. callbacks->sync_process = ais_service[service_id]->sync_process;
  293. callbacks->sync_activate = ais_service[service_id]->sync_activate;
  294. callbacks->sync_abort = ais_service[service_id]->sync_abort;
  295. return (0);
  296. }
  297. static struct memb_ring_id corosync_ring_id;
  298. static void member_object_joined (unsigned int nodeid)
  299. {
  300. hdb_handle_t object_find_handle;
  301. hdb_handle_t object_node_handle;
  302. char * nodeint_str;
  303. char nodeid_str[64];
  304. unsigned int key_incr_dummy;
  305. snprintf (nodeid_str, 64, "%d", nodeid);
  306. objdb->object_find_create (
  307. object_memb_handle,
  308. nodeid_str,
  309. strlen (nodeid_str),
  310. &object_find_handle);
  311. if (objdb->object_find_next (object_find_handle,
  312. &object_node_handle) == 0) {
  313. objdb->object_key_increment (object_node_handle,
  314. "join_count", strlen("flap"),
  315. &key_incr_dummy);
  316. objdb->object_key_replace (object_node_handle,
  317. "status", strlen("status"),
  318. "joined", strlen("joined"));
  319. } else {
  320. nodeint_str = (char*)api->totem_ifaces_print (nodeid);
  321. objdb->object_create (object_memb_handle,
  322. &object_node_handle,
  323. nodeid_str, strlen (nodeid_str));
  324. objdb->object_key_create_typed (object_node_handle,
  325. "ip",
  326. nodeint_str, strlen(nodeint_str),
  327. OBJDB_VALUETYPE_STRING);
  328. key_incr_dummy = 1;
  329. objdb->object_key_create_typed (object_node_handle,
  330. "join_count",
  331. &key_incr_dummy, sizeof (key_incr_dummy),
  332. OBJDB_VALUETYPE_UINT32);
  333. objdb->object_key_create_typed (object_node_handle,
  334. "status",
  335. "joined", strlen("joined"),
  336. OBJDB_VALUETYPE_STRING);
  337. }
  338. }
  339. static void member_object_left (unsigned int nodeid)
  340. {
  341. hdb_handle_t object_find_handle;
  342. hdb_handle_t object_node_handle;
  343. char nodeid_str[64];
  344. snprintf (nodeid_str, 64, "%u", nodeid);
  345. objdb->object_find_create (
  346. object_memb_handle,
  347. nodeid_str,
  348. strlen (nodeid_str),
  349. &object_find_handle);
  350. if (objdb->object_find_next (object_find_handle,
  351. &object_node_handle) == 0) {
  352. objdb->object_key_replace (object_node_handle,
  353. "status", strlen("status"),
  354. "left", strlen("left"));
  355. }
  356. }
  357. static void confchg_fn (
  358. enum totem_configuration_type configuration_type,
  359. const unsigned int *member_list, size_t member_list_entries,
  360. const unsigned int *left_list, size_t left_list_entries,
  361. const unsigned int *joined_list, size_t joined_list_entries,
  362. const struct memb_ring_id *ring_id)
  363. {
  364. int i;
  365. int abort_activate = 0;
  366. if (sync_in_process == 1) {
  367. abort_activate = 1;
  368. }
  369. sync_in_process = 1;
  370. serialize_lock ();
  371. memcpy (&corosync_ring_id, ring_id, sizeof (struct memb_ring_id));
  372. /*
  373. * Call configuration change for all services
  374. */
  375. for (i = 0; i < service_count; i++) {
  376. if (ais_service[i] && ais_service[i]->confchg_fn) {
  377. ais_service[i]->confchg_fn (configuration_type,
  378. member_list, member_list_entries,
  379. left_list, left_list_entries,
  380. joined_list, joined_list_entries, ring_id);
  381. }
  382. }
  383. serialize_unlock ();
  384. if (abort_activate) {
  385. sync_v2_abort ();
  386. }
  387. if (minimum_sync_mode == CS_SYNC_V2 && configuration_type == TOTEM_CONFIGURATION_TRANSITIONAL) {
  388. sync_v2_save_transitional (member_list, member_list_entries, ring_id);
  389. }
  390. if (minimum_sync_mode == CS_SYNC_V2 && configuration_type == TOTEM_CONFIGURATION_REGULAR) {
  391. sync_v2_start (member_list, member_list_entries, ring_id);
  392. }
  393. }
  394. static void priv_drop (void)
  395. {
  396. return; /* TODO: we are still not dropping privs */
  397. }
  398. static void corosync_tty_detach (void)
  399. {
  400. /*
  401. * Disconnect from TTY if this is not a debug run
  402. */
  403. switch (fork ()) {
  404. case -1:
  405. corosync_exit_error (AIS_DONE_FORK);
  406. break;
  407. case 0:
  408. /*
  409. * child which is disconnected, run this process
  410. */
  411. break;
  412. default:
  413. exit (0);
  414. break;
  415. }
  416. /* Create new session */
  417. (void)setsid();
  418. /*
  419. * Map stdin/out/err to /dev/null.
  420. */
  421. freopen("/dev/null", "r", stdin);
  422. freopen("/dev/null", "a", stderr);
  423. freopen("/dev/null", "a", stdout);
  424. }
  425. static void corosync_mlockall (void)
  426. {
  427. #if !defined(COROSYNC_BSD) || defined(COROSYNC_FREEBSD_GE_8)
  428. int res;
  429. #endif
  430. struct rlimit rlimit;
  431. rlimit.rlim_cur = RLIM_INFINITY;
  432. rlimit.rlim_max = RLIM_INFINITY;
  433. #ifndef COROSYNC_SOLARIS
  434. setrlimit (RLIMIT_MEMLOCK, &rlimit);
  435. #else
  436. setrlimit (RLIMIT_VMEM, &rlimit);
  437. #endif
  438. #if defined(COROSYNC_BSD) && !defined(COROSYNC_FREEBSD_GE_8)
  439. /* under FreeBSD < 8 a process with locked page cannot call dlopen
  440. * code disabled until FreeBSD bug i386/93396 was solved
  441. */
  442. log_printf (LOGSYS_LEVEL_WARNING, "Could not lock memory of service to avoid page faults\n");
  443. #else
  444. res = mlockall (MCL_CURRENT | MCL_FUTURE);
  445. if (res == -1) {
  446. char error_str[100];
  447. strerror_r (errno, error_str, 100);
  448. log_printf (LOGSYS_LEVEL_WARNING,
  449. "Could not lock memory of service to avoid page faults: %s\n",
  450. error_str);
  451. };
  452. #endif
  453. }
  454. static void corosync_totem_stats_updater (void *data)
  455. {
  456. totempg_stats_t * stats;
  457. uint32_t mtt_rx_token;
  458. uint32_t total_mtt_rx_token;
  459. uint32_t avg_backlog_calc;
  460. uint32_t total_backlog_calc;
  461. uint32_t avg_token_holdtime;
  462. uint32_t total_token_holdtime;
  463. int t, prev;
  464. int32_t token_count;
  465. stats = api->totem_get_stats();
  466. objdb->object_key_replace (stats->mrp->srp->hdr.handle,
  467. "orf_token_tx", strlen("orf_token_tx"),
  468. &stats->mrp->srp->orf_token_tx, sizeof (stats->mrp->srp->orf_token_tx));
  469. objdb->object_key_replace (stats->mrp->srp->hdr.handle,
  470. "orf_token_rx", strlen("orf_token_rx"),
  471. &stats->mrp->srp->orf_token_rx, sizeof (stats->mrp->srp->orf_token_rx));
  472. objdb->object_key_replace (stats->mrp->srp->hdr.handle,
  473. "memb_merge_detect_tx", strlen("memb_merge_detect_tx"),
  474. &stats->mrp->srp->memb_merge_detect_tx, sizeof (stats->mrp->srp->memb_merge_detect_tx));
  475. objdb->object_key_replace (stats->mrp->srp->hdr.handle,
  476. "memb_merge_detect_rx", strlen("memb_merge_detect_rx"),
  477. &stats->mrp->srp->memb_merge_detect_rx, sizeof (stats->mrp->srp->memb_merge_detect_rx));
  478. objdb->object_key_replace (stats->mrp->srp->hdr.handle,
  479. "memb_join_tx", strlen("memb_join_tx"),
  480. &stats->mrp->srp->memb_join_tx, sizeof (stats->mrp->srp->memb_join_tx));
  481. objdb->object_key_replace (stats->mrp->srp->hdr.handle,
  482. "memb_join_rx", strlen("memb_join_rx"),
  483. &stats->mrp->srp->memb_join_rx, sizeof (stats->mrp->srp->memb_join_rx));
  484. objdb->object_key_replace (stats->mrp->srp->hdr.handle,
  485. "mcast_tx", strlen("mcast_tx"),
  486. &stats->mrp->srp->mcast_tx, sizeof (stats->mrp->srp->mcast_tx));
  487. objdb->object_key_replace (stats->mrp->srp->hdr.handle,
  488. "mcast_retx", strlen("mcast_retx"),
  489. &stats->mrp->srp->mcast_retx, sizeof (stats->mrp->srp->mcast_retx));
  490. objdb->object_key_replace (stats->mrp->srp->hdr.handle,
  491. "mcast_rx", strlen("mcast_rx"),
  492. &stats->mrp->srp->mcast_rx, sizeof (stats->mrp->srp->mcast_rx));
  493. objdb->object_key_replace (stats->mrp->srp->hdr.handle,
  494. "memb_commit_token_tx", strlen("memb_commit_token_tx"),
  495. &stats->mrp->srp->memb_commit_token_tx, sizeof (stats->mrp->srp->memb_commit_token_tx));
  496. objdb->object_key_replace (stats->mrp->srp->hdr.handle,
  497. "memb_commit_token_rx", strlen("memb_commit_token_rx"),
  498. &stats->mrp->srp->memb_commit_token_rx, sizeof (stats->mrp->srp->memb_commit_token_rx));
  499. objdb->object_key_replace (stats->mrp->srp->hdr.handle,
  500. "token_hold_cancel_tx", strlen("token_hold_cancel_tx"),
  501. &stats->mrp->srp->token_hold_cancel_tx, sizeof (stats->mrp->srp->token_hold_cancel_tx));
  502. objdb->object_key_replace (stats->mrp->srp->hdr.handle,
  503. "token_hold_cancel_rx", strlen("token_hold_cancel_rx"),
  504. &stats->mrp->srp->token_hold_cancel_rx, sizeof (stats->mrp->srp->token_hold_cancel_rx));
  505. objdb->object_key_replace (stats->mrp->srp->hdr.handle,
  506. "operational_entered", strlen("operational_entered"),
  507. &stats->mrp->srp->operational_entered, sizeof (stats->mrp->srp->operational_entered));
  508. objdb->object_key_replace (stats->mrp->srp->hdr.handle,
  509. "operational_token_lost", strlen("operational_token_lost"),
  510. &stats->mrp->srp->operational_token_lost, sizeof (stats->mrp->srp->operational_token_lost));
  511. objdb->object_key_replace (stats->mrp->srp->hdr.handle,
  512. "gather_entered", strlen("gather_entered"),
  513. &stats->mrp->srp->gather_entered, sizeof (stats->mrp->srp->gather_entered));
  514. objdb->object_key_replace (stats->mrp->srp->hdr.handle,
  515. "gather_token_lost", strlen("gather_token_lost"),
  516. &stats->mrp->srp->gather_token_lost, sizeof (stats->mrp->srp->gather_token_lost));
  517. objdb->object_key_replace (stats->mrp->srp->hdr.handle,
  518. "commit_entered", strlen("commit_entered"),
  519. &stats->mrp->srp->commit_entered, sizeof (stats->mrp->srp->commit_entered));
  520. objdb->object_key_replace (stats->mrp->srp->hdr.handle,
  521. "commit_token_lost", strlen("commit_token_lost"),
  522. &stats->mrp->srp->commit_token_lost, sizeof (stats->mrp->srp->commit_token_lost));
  523. objdb->object_key_replace (stats->mrp->srp->hdr.handle,
  524. "recovery_entered", strlen("recovery_entered"),
  525. &stats->mrp->srp->recovery_entered, sizeof (stats->mrp->srp->recovery_entered));
  526. objdb->object_key_replace (stats->mrp->srp->hdr.handle,
  527. "recovery_token_lost", strlen("recovery_token_lost"),
  528. &stats->mrp->srp->recovery_token_lost, sizeof (stats->mrp->srp->recovery_token_lost));
  529. objdb->object_key_replace (stats->mrp->srp->hdr.handle,
  530. "consensus_timeouts", strlen("consensus_timeouts"),
  531. &stats->mrp->srp->consensus_timeouts, sizeof (stats->mrp->srp->consensus_timeouts));
  532. objdb->object_key_replace (stats->mrp->srp->hdr.handle,
  533. "rx_msg_dropped", strlen("rx_msg_dropped"),
  534. &stats->mrp->srp->rx_msg_dropped, sizeof (stats->mrp->srp->rx_msg_dropped));
  535. total_mtt_rx_token = 0;
  536. total_token_holdtime = 0;
  537. total_backlog_calc = 0;
  538. token_count = 0;
  539. t = stats->mrp->srp->latest_token;
  540. while (1) {
  541. if (t == 0)
  542. prev = TOTEM_TOKEN_STATS_MAX - 1;
  543. else
  544. prev = t - 1;
  545. if (prev == stats->mrp->srp->earliest_token)
  546. break;
  547. /* if tx == 0, then dropped token (not ours) */
  548. if (stats->mrp->srp->token[t].tx != 0 ||
  549. (stats->mrp->srp->token[t].rx - stats->mrp->srp->token[prev].rx) > 0 ) {
  550. total_mtt_rx_token += (stats->mrp->srp->token[t].rx - stats->mrp->srp->token[prev].rx);
  551. total_token_holdtime += (stats->mrp->srp->token[t].tx - stats->mrp->srp->token[t].rx);
  552. total_backlog_calc += stats->mrp->srp->token[t].backlog_calc;
  553. token_count++;
  554. }
  555. t = prev;
  556. }
  557. if (token_count) {
  558. mtt_rx_token = (total_mtt_rx_token / token_count);
  559. avg_backlog_calc = (total_backlog_calc / token_count);
  560. avg_token_holdtime = (total_token_holdtime / token_count);
  561. objdb->object_key_replace (stats->mrp->srp->hdr.handle,
  562. "mtt_rx_token", strlen("mtt_rx_token"),
  563. &mtt_rx_token, sizeof (mtt_rx_token));
  564. objdb->object_key_replace (stats->mrp->srp->hdr.handle,
  565. "avg_token_workload", strlen("avg_token_workload"),
  566. &avg_token_holdtime, sizeof (avg_token_holdtime));
  567. objdb->object_key_replace (stats->mrp->srp->hdr.handle,
  568. "avg_backlog_calc", strlen("avg_backlog_calc"),
  569. &avg_backlog_calc, sizeof (avg_backlog_calc));
  570. }
  571. api->timer_add_duration (1500 * MILLI_2_NANO_SECONDS, NULL,
  572. corosync_totem_stats_updater,
  573. &corosync_stats_timer_handle);
  574. }
  575. static void corosync_totem_stats_init (void)
  576. {
  577. totempg_stats_t * stats;
  578. hdb_handle_t object_find_handle;
  579. hdb_handle_t object_runtime_handle;
  580. hdb_handle_t object_totem_handle;
  581. uint32_t zero_32 = 0;
  582. uint64_t zero_64 = 0;
  583. stats = api->totem_get_stats();
  584. objdb->object_find_create (
  585. OBJECT_PARENT_HANDLE,
  586. "runtime",
  587. strlen ("runtime"),
  588. &object_find_handle);
  589. if (objdb->object_find_next (object_find_handle,
  590. &object_runtime_handle) == 0) {
  591. objdb->object_create (object_runtime_handle,
  592. &object_totem_handle,
  593. "totem", strlen ("totem"));
  594. objdb->object_create (object_totem_handle,
  595. &stats->hdr.handle,
  596. "pg", strlen ("pg"));
  597. objdb->object_create (stats->hdr.handle,
  598. &stats->mrp->hdr.handle,
  599. "mrp", strlen ("mrp"));
  600. objdb->object_create (stats->mrp->hdr.handle,
  601. &stats->mrp->srp->hdr.handle,
  602. "srp", strlen ("srp"));
  603. /* Members object */
  604. objdb->object_create (stats->mrp->srp->hdr.handle,
  605. &object_memb_handle,
  606. "members", strlen ("members"));
  607. objdb->object_key_create_typed (stats->mrp->srp->hdr.handle,
  608. "orf_token_tx", &stats->mrp->srp->orf_token_tx,
  609. sizeof (stats->mrp->srp->orf_token_tx), OBJDB_VALUETYPE_UINT64);
  610. objdb->object_key_create_typed (stats->mrp->srp->hdr.handle,
  611. "orf_token_rx", &stats->mrp->srp->orf_token_rx,
  612. sizeof (stats->mrp->srp->orf_token_rx), OBJDB_VALUETYPE_UINT64);
  613. objdb->object_key_create_typed (stats->mrp->srp->hdr.handle,
  614. "memb_merge_detect_tx", &stats->mrp->srp->memb_merge_detect_tx,
  615. sizeof (stats->mrp->srp->memb_merge_detect_tx), OBJDB_VALUETYPE_UINT64);
  616. objdb->object_key_create_typed (stats->mrp->srp->hdr.handle,
  617. "memb_merge_detect_rx", &stats->mrp->srp->memb_merge_detect_rx,
  618. sizeof (stats->mrp->srp->memb_merge_detect_rx), OBJDB_VALUETYPE_UINT64);
  619. objdb->object_key_create_typed (stats->mrp->srp->hdr.handle,
  620. "memb_join_tx", &stats->mrp->srp->memb_join_tx,
  621. sizeof (stats->mrp->srp->memb_join_tx), OBJDB_VALUETYPE_UINT64);
  622. objdb->object_key_create_typed (stats->mrp->srp->hdr.handle,
  623. "memb_join_rx", &stats->mrp->srp->memb_join_rx,
  624. sizeof (stats->mrp->srp->memb_join_rx), OBJDB_VALUETYPE_UINT64);
  625. objdb->object_key_create_typed (stats->mrp->srp->hdr.handle,
  626. "mcast_tx", &stats->mrp->srp->mcast_tx,
  627. sizeof (stats->mrp->srp->mcast_tx), OBJDB_VALUETYPE_UINT64);
  628. objdb->object_key_create_typed (stats->mrp->srp->hdr.handle,
  629. "mcast_retx", &stats->mrp->srp->mcast_retx,
  630. sizeof (stats->mrp->srp->mcast_retx), OBJDB_VALUETYPE_UINT64);
  631. objdb->object_key_create_typed (stats->mrp->srp->hdr.handle,
  632. "mcast_rx", &stats->mrp->srp->mcast_rx,
  633. sizeof (stats->mrp->srp->mcast_rx), OBJDB_VALUETYPE_UINT64);
  634. objdb->object_key_create_typed (stats->mrp->srp->hdr.handle,
  635. "memb_commit_token_tx", &stats->mrp->srp->memb_commit_token_tx,
  636. sizeof (stats->mrp->srp->memb_commit_token_tx), OBJDB_VALUETYPE_UINT64);
  637. objdb->object_key_create_typed (stats->mrp->srp->hdr.handle,
  638. "memb_commit_token_rx", &stats->mrp->srp->memb_commit_token_rx,
  639. sizeof (stats->mrp->srp->memb_commit_token_rx), OBJDB_VALUETYPE_UINT64);
  640. objdb->object_key_create_typed (stats->mrp->srp->hdr.handle,
  641. "token_hold_cancel_tx", &stats->mrp->srp->token_hold_cancel_tx,
  642. sizeof (stats->mrp->srp->token_hold_cancel_tx), OBJDB_VALUETYPE_UINT64);
  643. objdb->object_key_create_typed (stats->mrp->srp->hdr.handle,
  644. "token_hold_cancel_rx", &stats->mrp->srp->token_hold_cancel_rx,
  645. sizeof (stats->mrp->srp->token_hold_cancel_rx), OBJDB_VALUETYPE_UINT64);
  646. objdb->object_key_create_typed (stats->mrp->srp->hdr.handle,
  647. "operational_entered", &stats->mrp->srp->operational_entered,
  648. sizeof (stats->mrp->srp->operational_entered), OBJDB_VALUETYPE_UINT64);
  649. objdb->object_key_create_typed (stats->mrp->srp->hdr.handle,
  650. "operational_token_lost", &stats->mrp->srp->operational_token_lost,
  651. sizeof (stats->mrp->srp->operational_token_lost), OBJDB_VALUETYPE_UINT64);
  652. objdb->object_key_create_typed (stats->mrp->srp->hdr.handle,
  653. "gather_entered", &stats->mrp->srp->gather_entered,
  654. sizeof (stats->mrp->srp->gather_entered), OBJDB_VALUETYPE_UINT64);
  655. objdb->object_key_create_typed (stats->mrp->srp->hdr.handle,
  656. "gather_token_lost", &stats->mrp->srp->gather_token_lost,
  657. sizeof (stats->mrp->srp->gather_token_lost), OBJDB_VALUETYPE_UINT64);
  658. objdb->object_key_create_typed (stats->mrp->srp->hdr.handle,
  659. "commit_entered", &stats->mrp->srp->commit_entered,
  660. sizeof (stats->mrp->srp->commit_entered), OBJDB_VALUETYPE_UINT64);
  661. objdb->object_key_create_typed (stats->mrp->srp->hdr.handle,
  662. "commit_token_lost", &stats->mrp->srp->commit_token_lost,
  663. sizeof (stats->mrp->srp->commit_token_lost), OBJDB_VALUETYPE_UINT64);
  664. objdb->object_key_create_typed (stats->mrp->srp->hdr.handle,
  665. "recovery_entered", &stats->mrp->srp->recovery_entered,
  666. sizeof (stats->mrp->srp->recovery_entered), OBJDB_VALUETYPE_UINT64);
  667. objdb->object_key_create_typed (stats->mrp->srp->hdr.handle,
  668. "recovery_token_lost", &stats->mrp->srp->recovery_token_lost,
  669. sizeof (stats->mrp->srp->recovery_token_lost), OBJDB_VALUETYPE_UINT64);
  670. objdb->object_key_create_typed (stats->mrp->srp->hdr.handle,
  671. "consensus_timeouts", &stats->mrp->srp->consensus_timeouts,
  672. sizeof (stats->mrp->srp->consensus_timeouts), OBJDB_VALUETYPE_UINT64);
  673. objdb->object_key_create_typed (stats->mrp->srp->hdr.handle,
  674. "mtt_rx_token", &zero_32,
  675. sizeof (zero_32), OBJDB_VALUETYPE_UINT32);
  676. objdb->object_key_create_typed (stats->mrp->srp->hdr.handle,
  677. "avg_token_workload", &zero_32,
  678. sizeof (zero_32), OBJDB_VALUETYPE_UINT32);
  679. objdb->object_key_create_typed (stats->mrp->srp->hdr.handle,
  680. "avg_backlog_calc", &zero_32,
  681. sizeof (zero_32), OBJDB_VALUETYPE_UINT32);
  682. objdb->object_key_create_typed (stats->mrp->srp->hdr.handle,
  683. "rx_msg_dropped", &zero_64,
  684. sizeof (zero_64), OBJDB_VALUETYPE_UINT64);
  685. }
  686. /* start stats timer */
  687. api->timer_add_duration (1500 * MILLI_2_NANO_SECONDS, NULL,
  688. corosync_totem_stats_updater,
  689. &corosync_stats_timer_handle);
  690. }
  691. static void deliver_fn (
  692. unsigned int nodeid,
  693. const void *msg,
  694. unsigned int msg_len,
  695. int endian_conversion_required)
  696. {
  697. const coroipc_request_header_t *header;
  698. int service;
  699. int fn_id;
  700. unsigned int id;
  701. unsigned int size;
  702. unsigned int key_incr_dummy;
  703. header = msg;
  704. if (endian_conversion_required) {
  705. id = swab32 (header->id);
  706. size = swab32 (header->size);
  707. } else {
  708. id = header->id;
  709. size = header->size;
  710. }
  711. /*
  712. * Call the proper executive handler
  713. */
  714. service = id >> 16;
  715. fn_id = id & 0xffff;
  716. serialize_lock();
  717. if (ais_service[service] == NULL && service == EVT_SERVICE) {
  718. evil_deliver_fn (nodeid, service, fn_id, msg,
  719. endian_conversion_required);
  720. }
  721. if (!ais_service[service]) {
  722. serialize_unlock();
  723. return;
  724. }
  725. if (fn_id >= ais_service[service]->exec_engine_count) {
  726. log_printf(LOGSYS_LEVEL_WARNING, "discarded unknown message %d for service %d (max id %d)",
  727. fn_id, service, ais_service[service]->exec_engine_count);
  728. serialize_unlock();
  729. return;
  730. }
  731. objdb->object_key_increment (service_stats_handle[service][fn_id],
  732. "rx", strlen("rx"),
  733. &key_incr_dummy);
  734. if (endian_conversion_required) {
  735. assert(ais_service[service]->exec_engine[fn_id].exec_endian_convert_fn != NULL);
  736. ais_service[service]->exec_engine[fn_id].exec_endian_convert_fn
  737. ((void *)msg);
  738. }
  739. ais_service[service]->exec_engine[fn_id].exec_handler_fn
  740. (msg, nodeid);
  741. serialize_unlock();
  742. }
  743. void main_get_config_modules(struct config_iface_ver0 ***modules, int *num)
  744. {
  745. *modules = config_modules;
  746. *num = num_config_modules;
  747. }
  748. int main_mcast (
  749. const struct iovec *iovec,
  750. unsigned int iov_len,
  751. unsigned int guarantee)
  752. {
  753. const coroipc_request_header_t *req = iovec->iov_base;
  754. int service;
  755. int fn_id;
  756. unsigned int key_incr_dummy;
  757. service = req->id >> 16;
  758. fn_id = req->id & 0xffff;
  759. if (ais_service[service]) {
  760. objdb->object_key_increment (service_stats_handle[service][fn_id],
  761. "tx", strlen("tx"), &key_incr_dummy);
  762. }
  763. return (totempg_groups_mcast_joined (corosync_group_handle, iovec, iov_len, guarantee));
  764. }
  765. int message_source_is_local (const mar_message_source_t *source)
  766. {
  767. int ret = 0;
  768. assert (source != NULL);
  769. if (source->nodeid == totempg_my_nodeid_get ()) {
  770. ret = 1;
  771. }
  772. return ret;
  773. }
  774. void message_source_set (
  775. mar_message_source_t *source,
  776. void *conn)
  777. {
  778. assert ((source != NULL) && (conn != NULL));
  779. memset (source, 0, sizeof (mar_message_source_t));
  780. source->nodeid = totempg_my_nodeid_get ();
  781. source->conn = conn;
  782. }
  783. /*
  784. * Provides the glue from corosync to the IPC Service
  785. */
  786. static int corosync_private_data_size_get (unsigned int service)
  787. {
  788. return (ais_service[service]->private_data_size);
  789. }
  790. static coroipcs_init_fn_lvalue corosync_init_fn_get (unsigned int service)
  791. {
  792. return (ais_service[service]->lib_init_fn);
  793. }
  794. static coroipcs_exit_fn_lvalue corosync_exit_fn_get (unsigned int service)
  795. {
  796. return (ais_service[service]->lib_exit_fn);
  797. }
  798. static coroipcs_handler_fn_lvalue corosync_handler_fn_get (unsigned int service, unsigned int id)
  799. {
  800. return (ais_service[service]->lib_engine[id].lib_handler_fn);
  801. }
  802. static int corosync_security_valid (int euid, int egid)
  803. {
  804. struct list_head *iter;
  805. if (corosync_not_enough_fds_left) {
  806. errno = EMFILE;
  807. return 0;
  808. }
  809. if (euid == 0 || egid == 0) {
  810. return (1);
  811. }
  812. for (iter = uidgid_list_head.next; iter != &uidgid_list_head;
  813. iter = iter->next) {
  814. struct uidgid_item *ugi = list_entry (iter, struct uidgid_item,
  815. list);
  816. if (euid == ugi->uid || egid == ugi->gid)
  817. return (1);
  818. }
  819. errno = EACCES;
  820. return (0);
  821. }
  822. static int corosync_service_available (unsigned int service)
  823. {
  824. return (ais_service[service] != NULL && !ais_service_exiting[service]);
  825. }
  826. struct sending_allowed_private_data_struct {
  827. int reserved_msgs;
  828. };
  829. static int corosync_sending_allowed (
  830. unsigned int service,
  831. unsigned int id,
  832. const void *msg,
  833. void *sending_allowed_private_data)
  834. {
  835. struct sending_allowed_private_data_struct *pd =
  836. (struct sending_allowed_private_data_struct *)sending_allowed_private_data;
  837. struct iovec reserve_iovec;
  838. coroipc_request_header_t *header = (coroipc_request_header_t *)msg;
  839. int sending_allowed;
  840. reserve_iovec.iov_base = (char *)header;
  841. reserve_iovec.iov_len = header->size;
  842. pd->reserved_msgs = totempg_groups_joined_reserve (
  843. corosync_group_handle,
  844. &reserve_iovec, 1);
  845. if (pd->reserved_msgs == -1) {
  846. return (-1);
  847. }
  848. sending_allowed =
  849. (corosync_quorum_is_quorate() == 1 ||
  850. ais_service[service]->allow_inquorate == CS_LIB_ALLOW_INQUORATE) &&
  851. ((ais_service[service]->lib_engine[id].flow_control == CS_LIB_FLOW_CONTROL_NOT_REQUIRED) ||
  852. ((ais_service[service]->lib_engine[id].flow_control == CS_LIB_FLOW_CONTROL_REQUIRED) &&
  853. (pd->reserved_msgs) &&
  854. (sync_in_process == 0)));
  855. return (sending_allowed);
  856. }
  857. static void corosync_sending_allowed_release (void *sending_allowed_private_data)
  858. {
  859. struct sending_allowed_private_data_struct *pd =
  860. (struct sending_allowed_private_data_struct *)sending_allowed_private_data;
  861. if (pd->reserved_msgs == -1) {
  862. return;
  863. }
  864. totempg_groups_joined_release (pd->reserved_msgs);
  865. }
  866. static int ipc_subsys_id = -1;
  867. static void ipc_fatal_error(const char *error_msg) __attribute__((noreturn));
  868. static void ipc_fatal_error(const char *error_msg) {
  869. _logsys_log_printf (
  870. LOGSYS_ENCODE_RECID(LOGSYS_LEVEL_ERROR,
  871. ipc_subsys_id,
  872. LOGSYS_RECID_LOG),
  873. __FUNCTION__, __FILE__, __LINE__,
  874. "%s", error_msg);
  875. exit(EXIT_FAILURE);
  876. }
  877. static int corosync_poll_handler_accept (
  878. hdb_handle_t handle,
  879. int fd,
  880. int revent,
  881. void *context)
  882. {
  883. return (coroipcs_handler_accept (fd, revent, context));
  884. }
  885. static int corosync_poll_handler_dispatch (
  886. hdb_handle_t handle,
  887. int fd,
  888. int revent,
  889. void *context)
  890. {
  891. return (coroipcs_handler_dispatch (fd, revent, context));
  892. }
  893. static void corosync_poll_accept_add (
  894. int fd)
  895. {
  896. poll_dispatch_add (corosync_poll_handle, fd, POLLIN|POLLNVAL, 0,
  897. corosync_poll_handler_accept);
  898. }
  899. static void corosync_poll_dispatch_add (
  900. int fd,
  901. void *context)
  902. {
  903. poll_dispatch_add (corosync_poll_handle, fd, POLLIN|POLLNVAL, context,
  904. corosync_poll_handler_dispatch);
  905. }
  906. static void corosync_poll_dispatch_modify (
  907. int fd,
  908. int events)
  909. {
  910. poll_dispatch_modify (corosync_poll_handle, fd, events,
  911. corosync_poll_handler_dispatch);
  912. }
  913. static void corosync_poll_dispatch_destroy (
  914. int fd,
  915. void *context)
  916. {
  917. poll_dispatch_delete (corosync_poll_handle, fd);
  918. }
  919. static hdb_handle_t corosync_stats_create_connection (const char* name,
  920. const pid_t pid, const int fd)
  921. {
  922. uint32_t zero_32 = 0;
  923. uint64_t zero_64 = 0;
  924. unsigned int key_incr_dummy;
  925. hdb_handle_t object_handle;
  926. objdb->object_key_increment (object_connection_handle,
  927. "active", strlen("active"),
  928. &key_incr_dummy);
  929. objdb->object_create (object_connection_handle,
  930. &object_handle,
  931. name,
  932. strlen (name));
  933. objdb->object_key_create_typed (object_handle,
  934. "service_id",
  935. &zero_32, sizeof (zero_32),
  936. OBJDB_VALUETYPE_UINT32);
  937. objdb->object_key_create_typed (object_handle,
  938. "client_pid",
  939. &pid, sizeof (pid),
  940. OBJDB_VALUETYPE_INT32);
  941. objdb->object_key_create_typed (object_handle,
  942. "responses",
  943. &zero_64, sizeof (zero_64),
  944. OBJDB_VALUETYPE_UINT64);
  945. objdb->object_key_create_typed (object_handle,
  946. "dispatched",
  947. &zero_64, sizeof (zero_64),
  948. OBJDB_VALUETYPE_UINT64);
  949. objdb->object_key_create_typed (object_handle,
  950. "requests",
  951. &zero_64, sizeof (zero_64),
  952. OBJDB_VALUETYPE_INT64);
  953. objdb->object_key_create_typed (object_handle,
  954. "sem_retry_count",
  955. &zero_64, sizeof (zero_64),
  956. OBJDB_VALUETYPE_UINT64);
  957. objdb->object_key_create_typed (object_handle,
  958. "send_retry_count",
  959. &zero_64, sizeof (zero_64),
  960. OBJDB_VALUETYPE_UINT64);
  961. objdb->object_key_create_typed (object_handle,
  962. "recv_retry_count",
  963. &zero_64, sizeof (zero_64),
  964. OBJDB_VALUETYPE_UINT64);
  965. objdb->object_key_create_typed (object_handle,
  966. "flow_control",
  967. &zero_32, sizeof (zero_32),
  968. OBJDB_VALUETYPE_UINT32);
  969. objdb->object_key_create_typed (object_handle,
  970. "flow_control_count",
  971. &zero_64, sizeof (zero_64),
  972. OBJDB_VALUETYPE_UINT64);
  973. objdb->object_key_create_typed (object_handle,
  974. "queue_size",
  975. &zero_64, sizeof (zero_64),
  976. OBJDB_VALUETYPE_UINT64);
  977. return object_handle;
  978. }
  979. static void corosync_stats_destroy_connection (hdb_handle_t handle)
  980. {
  981. unsigned int key_incr_dummy;
  982. objdb->object_destroy (handle);
  983. objdb->object_key_increment (object_connection_handle,
  984. "closed", strlen("closed"),
  985. &key_incr_dummy);
  986. objdb->object_key_decrement (object_connection_handle,
  987. "active", strlen("active"),
  988. &key_incr_dummy);
  989. }
  990. static void corosync_stats_update_value (hdb_handle_t handle,
  991. const char *name, const void *value,
  992. size_t value_len)
  993. {
  994. objdb->object_key_replace (handle,
  995. name, strlen(name),
  996. value, value_len);
  997. }
  998. static void corosync_stats_increment_value (hdb_handle_t handle,
  999. const char* name)
  1000. {
  1001. unsigned int key_incr_dummy;
  1002. objdb->object_key_increment (handle,
  1003. name, strlen(name),
  1004. &key_incr_dummy);
  1005. }
  1006. static void corosync_stats_decrement_value (hdb_handle_t handle,
  1007. const char* name)
  1008. {
  1009. unsigned int key_incr_dummy;
  1010. objdb->object_key_decrement (handle,
  1011. name, strlen(name),
  1012. &key_incr_dummy);
  1013. }
  1014. static struct coroipcs_init_state_v2 ipc_init_state_v2 = {
  1015. .socket_name = COROSYNC_SOCKET_NAME,
  1016. .sched_policy = SCHED_OTHER,
  1017. .sched_param = &global_sched_param,
  1018. .malloc = malloc,
  1019. .free = free,
  1020. .log_printf = _logsys_log_printf,
  1021. .fatal_error = ipc_fatal_error,
  1022. .security_valid = corosync_security_valid,
  1023. .service_available = corosync_service_available,
  1024. .private_data_size_get = corosync_private_data_size_get,
  1025. .serialize_lock = serialize_lock,
  1026. .serialize_unlock = serialize_unlock,
  1027. .sending_allowed = corosync_sending_allowed,
  1028. .sending_allowed_release = corosync_sending_allowed_release,
  1029. .poll_accept_add = corosync_poll_accept_add,
  1030. .poll_dispatch_add = corosync_poll_dispatch_add,
  1031. .poll_dispatch_modify = corosync_poll_dispatch_modify,
  1032. .poll_dispatch_destroy = corosync_poll_dispatch_destroy,
  1033. .init_fn_get = corosync_init_fn_get,
  1034. .exit_fn_get = corosync_exit_fn_get,
  1035. .handler_fn_get = corosync_handler_fn_get,
  1036. .stats_create_connection = corosync_stats_create_connection,
  1037. .stats_destroy_connection = corosync_stats_destroy_connection,
  1038. .stats_update_value = corosync_stats_update_value,
  1039. .stats_increment_value = corosync_stats_increment_value,
  1040. .stats_decrement_value = corosync_stats_decrement_value,
  1041. };
  1042. static void corosync_setscheduler (void)
  1043. {
  1044. #if defined(HAVE_PTHREAD_SETSCHEDPARAM) && defined(HAVE_SCHED_GET_PRIORITY_MAX) && defined(HAVE_SCHED_SETSCHEDULER)
  1045. int res;
  1046. sched_priority = sched_get_priority_max (SCHED_RR);
  1047. if (sched_priority != -1) {
  1048. global_sched_param.sched_priority = sched_priority;
  1049. res = sched_setscheduler (0, SCHED_RR, &global_sched_param);
  1050. if (res == -1) {
  1051. char error_str[100];
  1052. strerror_r (errno, error_str, 100);
  1053. global_sched_param.sched_priority = 0;
  1054. log_printf (LOGSYS_LEVEL_WARNING, "Could not set SCHED_RR at priority %d: %s\n",
  1055. global_sched_param.sched_priority, error_str);
  1056. logsys_thread_priority_set (SCHED_OTHER, NULL, 1);
  1057. } else {
  1058. /*
  1059. * Turn on SCHED_RR in ipc system
  1060. */
  1061. ipc_init_state_v2.sched_policy = SCHED_RR;
  1062. /*
  1063. * Turn on SCHED_RR in logsys system
  1064. */
  1065. res = logsys_thread_priority_set (SCHED_RR, &global_sched_param, 10);
  1066. if (res == -1) {
  1067. log_printf (LOGSYS_LEVEL_ERROR,
  1068. "Could not set logsys thread priority."
  1069. " Can't continue because of priority inversions.");
  1070. corosync_exit_error (AIS_DONE_LOGSETUP);
  1071. }
  1072. }
  1073. } else {
  1074. char error_str[100];
  1075. strerror_r (errno, error_str, 100);
  1076. log_printf (LOGSYS_LEVEL_WARNING,
  1077. "Could not get maximum scheduler priority: %s\n",
  1078. error_str);
  1079. sched_priority = 0;
  1080. }
  1081. #else
  1082. log_printf(LOGSYS_LEVEL_WARNING,
  1083. "The Platform is missing process priority setting features. Leaving at default.");
  1084. #endif
  1085. }
  1086. static void corosync_stats_init (void)
  1087. {
  1088. hdb_handle_t object_find_handle;
  1089. hdb_handle_t object_runtime_handle;
  1090. uint64_t zero_64 = 0;
  1091. objdb->object_find_create (OBJECT_PARENT_HANDLE,
  1092. "runtime", strlen ("runtime"),
  1093. &object_find_handle);
  1094. if (objdb->object_find_next (object_find_handle,
  1095. &object_runtime_handle) != 0) {
  1096. return;
  1097. }
  1098. /* Connection objects */
  1099. objdb->object_create (object_runtime_handle,
  1100. &object_connection_handle,
  1101. "connections", strlen ("connections"));
  1102. objdb->object_key_create_typed (object_connection_handle,
  1103. "active", &zero_64, sizeof (zero_64),
  1104. OBJDB_VALUETYPE_UINT64);
  1105. objdb->object_key_create_typed (object_connection_handle,
  1106. "closed", &zero_64, sizeof (zero_64),
  1107. OBJDB_VALUETYPE_UINT64);
  1108. }
  1109. static void main_low_fds_event(int32_t not_enough, int32_t fds_available)
  1110. {
  1111. corosync_not_enough_fds_left = not_enough;
  1112. if (not_enough) {
  1113. log_printf(LOGSYS_LEVEL_WARNING, "refusing new connections (fds_available:%d)\n",
  1114. fds_available);
  1115. } else {
  1116. log_printf(LOGSYS_LEVEL_NOTICE, "allowing new connections (fds_available:%d)\n",
  1117. fds_available);
  1118. }
  1119. }
  1120. static void main_service_ready (void)
  1121. {
  1122. int res;
  1123. /*
  1124. * This must occur after totempg is initialized because "this_ip" must be set
  1125. */
  1126. res = corosync_service_defaults_link_and_init (api);
  1127. if (res == -1) {
  1128. log_printf (LOGSYS_LEVEL_ERROR, "Could not initialize default services\n");
  1129. corosync_exit_error (AIS_DONE_INIT_SERVICES);
  1130. }
  1131. evil_init (api);
  1132. corosync_stats_init ();
  1133. corosync_totem_stats_init ();
  1134. if (minimum_sync_mode == CS_SYNC_V2) {
  1135. log_printf (LOGSYS_LEVEL_NOTICE, "Compatibility mode set to none. Using V2 of the synchronization engine.\n");
  1136. sync_v2_init (
  1137. corosync_sync_v2_callbacks_retrieve,
  1138. corosync_sync_completed);
  1139. } else
  1140. if (minimum_sync_mode == CS_SYNC_V1) {
  1141. log_printf (LOGSYS_LEVEL_NOTICE, "Compatibility mode set to whitetank. Using V1 and V2 of the synchronization engine.\n");
  1142. sync_register (
  1143. corosync_sync_callbacks_retrieve,
  1144. sync_v2_memb_list_determine,
  1145. sync_v2_memb_list_abort,
  1146. sync_v2_start);
  1147. sync_v2_init (
  1148. corosync_sync_v2_callbacks_retrieve,
  1149. corosync_sync_completed);
  1150. }
  1151. }
  1152. static enum e_ais_done corosync_flock (const char *lockfile, pid_t pid)
  1153. {
  1154. struct flock lock;
  1155. enum e_ais_done err;
  1156. char pid_s[17];
  1157. int fd_flag;
  1158. int lf;
  1159. err = AIS_DONE_EXIT;
  1160. lf = open (lockfile, O_WRONLY | O_CREAT, 0640);
  1161. if (lf == -1) {
  1162. log_printf (LOGSYS_LEVEL_ERROR, "Corosync Executive couldn't create lock file.\n");
  1163. return (AIS_DONE_AQUIRE_LOCK);
  1164. }
  1165. retry_fcntl:
  1166. lock.l_type = F_WRLCK;
  1167. lock.l_start = 0;
  1168. lock.l_whence = SEEK_SET;
  1169. lock.l_len = 0;
  1170. if (fcntl (lf, F_SETLK, &lock) == -1) {
  1171. switch (errno) {
  1172. case EINTR:
  1173. goto retry_fcntl;
  1174. break;
  1175. case EAGAIN:
  1176. case EACCES:
  1177. log_printf (LOGSYS_LEVEL_ERROR, "Another Corosync instance is already running.\n");
  1178. err = AIS_DONE_ALREADY_RUNNING;
  1179. goto error_close;
  1180. break;
  1181. default:
  1182. log_printf (LOGSYS_LEVEL_ERROR, "Corosync Executive couldn't aquire lock. Error was %s\n",
  1183. strerror(errno));
  1184. err = AIS_DONE_AQUIRE_LOCK;
  1185. goto error_close;
  1186. break;
  1187. }
  1188. }
  1189. if (ftruncate (lf, 0) == -1) {
  1190. log_printf (LOGSYS_LEVEL_ERROR, "Corosync Executive couldn't truncate lock file. Error was %s\n",
  1191. strerror (errno));
  1192. err = AIS_DONE_AQUIRE_LOCK;
  1193. goto error_close_unlink;
  1194. }
  1195. memset (pid_s, 0, sizeof (pid_s));
  1196. snprintf (pid_s, sizeof (pid_s) - 1, "%u\n", pid);
  1197. retry_write:
  1198. if (write (lf, pid_s, strlen (pid_s)) != strlen (pid_s)) {
  1199. if (errno == EINTR) {
  1200. goto retry_write;
  1201. } else {
  1202. log_printf (LOGSYS_LEVEL_ERROR, "Corosync Executive couldn't write pid to lock file. "
  1203. "Error was %s\n", strerror (errno));
  1204. err = AIS_DONE_AQUIRE_LOCK;
  1205. goto error_close_unlink;
  1206. }
  1207. }
  1208. if ((fd_flag = fcntl (lf, F_GETFD, 0)) == -1) {
  1209. log_printf (LOGSYS_LEVEL_ERROR, "Corosync Executive couldn't get close-on-exec flag from lock file. "
  1210. "Error was %s\n", strerror (errno));
  1211. err = AIS_DONE_AQUIRE_LOCK;
  1212. goto error_close_unlink;
  1213. }
  1214. fd_flag |= FD_CLOEXEC;
  1215. if (fcntl (lf, F_SETFD, fd_flag) == -1) {
  1216. log_printf (LOGSYS_LEVEL_ERROR, "Corosync Executive couldn't set close-on-exec flag to lock file. "
  1217. "Error was %s\n", strerror (errno));
  1218. err = AIS_DONE_AQUIRE_LOCK;
  1219. goto error_close_unlink;
  1220. }
  1221. return (err);
  1222. error_close_unlink:
  1223. unlink (lockfile);
  1224. error_close:
  1225. close (lf);
  1226. return (err);
  1227. }
  1228. int main (int argc, char **argv, char **envp)
  1229. {
  1230. const char *error_string;
  1231. struct totem_config totem_config;
  1232. hdb_handle_t objdb_handle;
  1233. hdb_handle_t config_handle;
  1234. unsigned int config_version = 0;
  1235. void *objdb_p;
  1236. struct config_iface_ver0 *config;
  1237. void *config_p;
  1238. const char *config_iface_init;
  1239. char *config_iface;
  1240. char *iface;
  1241. char *strtok_save_pt;
  1242. int res, ch;
  1243. int background, setprio;
  1244. struct stat stat_out;
  1245. char corosync_lib_dir[PATH_MAX];
  1246. hdb_handle_t object_runtime_handle;
  1247. enum e_ais_done flock_err;
  1248. #if defined(HAVE_PTHREAD_SPIN_LOCK)
  1249. pthread_spin_init (&serialize_spin, 0);
  1250. #endif
  1251. /* default configuration
  1252. */
  1253. background = 1;
  1254. setprio = 1;
  1255. while ((ch = getopt (argc, argv, "fpv")) != EOF) {
  1256. switch (ch) {
  1257. case 'f':
  1258. background = 0;
  1259. logsys_config_mode_set (NULL, LOGSYS_MODE_OUTPUT_STDERR|LOGSYS_MODE_THREADED|LOGSYS_MODE_FORK);
  1260. break;
  1261. case 'p':
  1262. setprio = 0;
  1263. break;
  1264. case 'v':
  1265. printf ("Corosync Cluster Engine, version '%s'\n", VERSION);
  1266. printf ("Copyright (c) 2006-2009 Red Hat, Inc.\n");
  1267. return EXIT_SUCCESS;
  1268. break;
  1269. default:
  1270. fprintf(stderr, \
  1271. "usage:\n"\
  1272. " -f : Start application in foreground.\n"\
  1273. " -p : Do not set process priority. \n"\
  1274. " -v : Display version and SVN revision of Corosync and exit.\n");
  1275. return EXIT_FAILURE;
  1276. }
  1277. }
  1278. /*
  1279. * Set round robin realtime scheduling with priority 99
  1280. * Lock all memory to avoid page faults which may interrupt
  1281. * application healthchecking
  1282. */
  1283. if (setprio) {
  1284. corosync_setscheduler ();
  1285. }
  1286. corosync_mlockall ();
  1287. log_printf (LOGSYS_LEVEL_NOTICE, "Corosync Cluster Engine ('%s'): started and ready to provide service.\n", VERSION);
  1288. log_printf (LOGSYS_LEVEL_INFO, "Corosync built-in features:" PACKAGE_FEATURES "\n");
  1289. (void)signal (SIGINT, sigintr_handler);
  1290. (void)signal (SIGUSR2, sigusr2_handler);
  1291. (void)signal (SIGSEGV, sigsegv_handler);
  1292. (void)signal (SIGABRT, sigabrt_handler);
  1293. (void)signal (SIGQUIT, sigquit_handler);
  1294. (void)signal (SIGTERM, sigterm_handler);
  1295. #if MSG_NOSIGNAL != 0
  1296. (void)signal (SIGPIPE, SIG_IGN);
  1297. #endif
  1298. /*
  1299. * Load the object database interface
  1300. */
  1301. res = lcr_ifact_reference (
  1302. &objdb_handle,
  1303. "objdb",
  1304. 0,
  1305. &objdb_p,
  1306. 0);
  1307. if (res == -1) {
  1308. log_printf (LOGSYS_LEVEL_ERROR, "Corosync Executive couldn't open configuration object database component.\n");
  1309. corosync_exit_error (AIS_DONE_OBJDB);
  1310. }
  1311. objdb = (struct objdb_iface_ver0 *)objdb_p;
  1312. objdb->objdb_init ();
  1313. /*
  1314. * Initialize the corosync_api_v1 definition
  1315. */
  1316. apidef_init (objdb);
  1317. api = apidef_get ();
  1318. num_config_modules = 0;
  1319. /*
  1320. * Bootstrap in the default configuration parser or use
  1321. * the corosync default built in parser if the configuration parser
  1322. * isn't overridden
  1323. */
  1324. config_iface_init = getenv("COROSYNC_DEFAULT_CONFIG_IFACE");
  1325. if (!config_iface_init) {
  1326. config_iface_init = "corosync_parser";
  1327. }
  1328. /* Make a copy so we can deface it with strtok */
  1329. if ((config_iface = strdup(config_iface_init)) == NULL) {
  1330. log_printf (LOGSYS_LEVEL_ERROR, "exhausted virtual memory");
  1331. corosync_exit_error (AIS_DONE_OBJDB);
  1332. }
  1333. iface = strtok_r(config_iface, ":", &strtok_save_pt);
  1334. while (iface)
  1335. {
  1336. res = lcr_ifact_reference (
  1337. &config_handle,
  1338. iface,
  1339. config_version,
  1340. &config_p,
  1341. 0);
  1342. config = (struct config_iface_ver0 *)config_p;
  1343. if (res == -1) {
  1344. log_printf (LOGSYS_LEVEL_ERROR, "Corosync Executive couldn't open configuration component '%s'\n", iface);
  1345. corosync_exit_error (AIS_DONE_MAINCONFIGREAD);
  1346. }
  1347. res = config->config_readconfig(objdb, &error_string);
  1348. if (res == -1) {
  1349. log_printf (LOGSYS_LEVEL_ERROR, "%s", error_string);
  1350. corosync_exit_error (AIS_DONE_MAINCONFIGREAD);
  1351. }
  1352. log_printf (LOGSYS_LEVEL_NOTICE, "%s", error_string);
  1353. config_modules[num_config_modules++] = config;
  1354. iface = strtok_r(NULL, ":", &strtok_save_pt);
  1355. }
  1356. free(config_iface);
  1357. res = corosync_main_config_read (objdb, &error_string);
  1358. if (res == -1) {
  1359. /*
  1360. * if we are here, we _must_ flush the logsys queue
  1361. * and try to inform that we couldn't read the config.
  1362. * this is a desperate attempt before certain death
  1363. * and there is no guarantee that we can print to stderr
  1364. * nor that logsys is sending the messages where we expect.
  1365. */
  1366. log_printf (LOGSYS_LEVEL_ERROR, "%s", error_string);
  1367. fprintf(stderr, "%s", error_string);
  1368. syslog (LOGSYS_LEVEL_ERROR, "%s", error_string);
  1369. corosync_exit_error (AIS_DONE_MAINCONFIGREAD);
  1370. }
  1371. /*
  1372. * Make sure required directory is present
  1373. */
  1374. sprintf (corosync_lib_dir, "%s/lib/corosync", LOCALSTATEDIR);
  1375. res = stat (corosync_lib_dir, &stat_out);
  1376. if ((res == -1) || (res == 0 && !S_ISDIR(stat_out.st_mode))) {
  1377. log_printf (LOGSYS_LEVEL_ERROR, "Required directory not present %s. Please create it.\n", corosync_lib_dir);
  1378. corosync_exit_error (AIS_DONE_DIR_NOT_PRESENT);
  1379. }
  1380. res = totem_config_read (objdb, &totem_config, &error_string);
  1381. if (res == -1) {
  1382. log_printf (LOGSYS_LEVEL_ERROR, "%s", error_string);
  1383. corosync_exit_error (AIS_DONE_MAINCONFIGREAD);
  1384. }
  1385. res = totem_config_keyread (objdb, &totem_config, &error_string);
  1386. if (res == -1) {
  1387. log_printf (LOGSYS_LEVEL_ERROR, "%s", error_string);
  1388. corosync_exit_error (AIS_DONE_MAINCONFIGREAD);
  1389. }
  1390. res = totem_config_validate (&totem_config, &error_string);
  1391. if (res == -1) {
  1392. log_printf (LOGSYS_LEVEL_ERROR, "%s", error_string);
  1393. corosync_exit_error (AIS_DONE_MAINCONFIGREAD);
  1394. }
  1395. totem_config.totem_logging_configuration = totem_logging_configuration;
  1396. totem_config.totem_logging_configuration.log_subsys_id =
  1397. _logsys_subsys_create ("TOTEM");
  1398. if (totem_config.totem_logging_configuration.log_subsys_id < 0) {
  1399. log_printf (LOGSYS_LEVEL_ERROR,
  1400. "Unable to initialize TOTEM logging subsystem\n");
  1401. corosync_exit_error (AIS_DONE_MAINCONFIGREAD);
  1402. }
  1403. totem_config.totem_logging_configuration.log_level_security = LOGSYS_LEVEL_WARNING;
  1404. totem_config.totem_logging_configuration.log_level_error = LOGSYS_LEVEL_ERROR;
  1405. totem_config.totem_logging_configuration.log_level_warning = LOGSYS_LEVEL_WARNING;
  1406. totem_config.totem_logging_configuration.log_level_notice = LOGSYS_LEVEL_NOTICE;
  1407. totem_config.totem_logging_configuration.log_level_debug = LOGSYS_LEVEL_DEBUG;
  1408. totem_config.totem_logging_configuration.log_printf = _logsys_log_printf;
  1409. res = corosync_main_config_compatibility_read (objdb,
  1410. &minimum_sync_mode,
  1411. &error_string);
  1412. if (res == -1) {
  1413. log_printf (LOGSYS_LEVEL_ERROR, "%s", error_string);
  1414. corosync_exit_error (AIS_DONE_MAINCONFIGREAD);
  1415. }
  1416. res = corosync_main_config_compatibility_read (objdb,
  1417. &minimum_sync_mode,
  1418. &error_string);
  1419. if (res == -1) {
  1420. log_printf (LOGSYS_LEVEL_ERROR, "%s", error_string);
  1421. corosync_exit_error (AIS_DONE_MAINCONFIGREAD);
  1422. }
  1423. /* create the main runtime object */
  1424. objdb->object_create (OBJECT_PARENT_HANDLE,
  1425. &object_runtime_handle,
  1426. "runtime", strlen ("runtime"));
  1427. /*
  1428. * Now we are fully initialized.
  1429. */
  1430. if (background) {
  1431. corosync_tty_detach ();
  1432. }
  1433. logsys_fork_completed();
  1434. if ((flock_err = corosync_flock (corosync_lock_file, getpid ())) != AIS_DONE_EXIT) {
  1435. corosync_exit_error (flock_err);
  1436. }
  1437. corosync_timer_init (
  1438. serialize_lock,
  1439. serialize_unlock,
  1440. sched_priority);
  1441. corosync_poll_handle = poll_create ();
  1442. poll_low_fds_event_set(corosync_poll_handle, main_low_fds_event);
  1443. /*
  1444. * Sleep for a while to let other nodes in the cluster
  1445. * understand that this node has been away (if it was
  1446. * an corosync restart).
  1447. */
  1448. // TODO what is this hack for? usleep(totem_config.token_timeout * 2000);
  1449. /*
  1450. * Create semaphore and start "exit" thread
  1451. */
  1452. res = sem_init (&corosync_exit_sem, 0, 0);
  1453. if (res != 0) {
  1454. log_printf (LOGSYS_LEVEL_ERROR, "Corosync Executive couldn't create exit thread.\n");
  1455. corosync_exit_error (AIS_DONE_FATAL_ERR);
  1456. }
  1457. res = pthread_create (&corosync_exit_thread, NULL, corosync_exit_thread_handler, NULL);
  1458. if (res != 0) {
  1459. log_printf (LOGSYS_LEVEL_ERROR, "Corosync Executive couldn't create exit thread.\n");
  1460. corosync_exit_error (AIS_DONE_FATAL_ERR);
  1461. }
  1462. /*
  1463. * if totempg_initialize doesn't have root priveleges, it cannot
  1464. * bind to a specific interface. This only matters if
  1465. * there is more then one interface in a system, so
  1466. * in this case, only a warning is printed
  1467. */
  1468. /*
  1469. * Join multicast group and setup delivery
  1470. * and configuration change functions
  1471. */
  1472. totempg_initialize (
  1473. corosync_poll_handle,
  1474. &totem_config);
  1475. totempg_service_ready_register (
  1476. main_service_ready);
  1477. totempg_groups_initialize (
  1478. &corosync_group_handle,
  1479. deliver_fn,
  1480. confchg_fn);
  1481. totempg_groups_join (
  1482. corosync_group_handle,
  1483. &corosync_group,
  1484. 1);
  1485. /*
  1486. * Drop root privleges to user 'ais'
  1487. * TODO: Don't really need full root capabilities;
  1488. * needed capabilities are:
  1489. * CAP_NET_RAW (bindtodevice)
  1490. * CAP_SYS_NICE (setscheduler)
  1491. * CAP_IPC_LOCK (mlockall)
  1492. */
  1493. priv_drop ();
  1494. schedwrk_init (
  1495. serialize_lock,
  1496. serialize_unlock);
  1497. ipc_subsys_id = _logsys_subsys_create ("IPC");
  1498. if (ipc_subsys_id < 0) {
  1499. log_printf (LOGSYS_LEVEL_ERROR,
  1500. "Could not initialize IPC logging subsystem\n");
  1501. corosync_exit_error (AIS_DONE_INIT_SERVICES);
  1502. }
  1503. ipc_init_state_v2.log_subsys_id = ipc_subsys_id;
  1504. coroipcs_ipc_init_v2 (&ipc_init_state_v2);
  1505. /*
  1506. * Start main processing loop
  1507. */
  1508. poll_run (corosync_poll_handle);
  1509. return EXIT_SUCCESS;
  1510. }