cfg.c 22 KB

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  1. /*
  2. * Copyright (c) 2002-2005 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 <stdio.h>
  37. #include <string.h>
  38. #include <stdlib.h>
  39. #include <unistd.h>
  40. #include <errno.h>
  41. #include <signal.h>
  42. #include <pthread.h>
  43. #include <limits.h>
  44. #include <sys/types.h>
  45. #include <sys/socket.h>
  46. #include <sys/select.h>
  47. #include <sys/un.h>
  48. #include <corosync/corotypes.h>
  49. #include <corosync/cfg.h>
  50. #include <corosync/totem/totemip.h>
  51. #include <corosync/mar_gen.h>
  52. #include <corosync/ipc_gen.h>
  53. #include <corosync/ipc_cfg.h>
  54. #include <corosync/coroipcc.h>
  55. /*
  56. * Data structure for instance data
  57. */
  58. struct cfg_instance {
  59. void *ipc_ctx;
  60. corosync_cfg_callbacks_t callbacks;
  61. cs_name_t comp_name;
  62. int comp_registered;
  63. int finalize;
  64. pthread_mutex_t response_mutex;
  65. pthread_mutex_t dispatch_mutex;
  66. };
  67. static void cfg_handle_instance_destructor (void *);
  68. /*
  69. * All instances in one database
  70. */
  71. static struct saHandleDatabase cfg_hdb = {
  72. .handleCount = 0,
  73. .handles = 0,
  74. .mutex = PTHREAD_MUTEX_INITIALIZER,
  75. .handleInstanceDestructor = cfg_handle_instance_destructor
  76. };
  77. /*
  78. * Implementation
  79. */
  80. void cfg_handle_instance_destructor (void *instance)
  81. {
  82. struct cfg_instance *cfg_instance = instance;
  83. pthread_mutex_destroy (&cfg_instance->response_mutex);
  84. pthread_mutex_destroy (&cfg_instance->dispatch_mutex);
  85. }
  86. cs_error_t
  87. corosync_cfg_initialize (
  88. corosync_cfg_handle_t *cfg_handle,
  89. const corosync_cfg_callbacks_t *cfg_callbacks)
  90. {
  91. struct cfg_instance *cfg_instance;
  92. cs_error_t error = CS_OK;
  93. error = saHandleCreate (&cfg_hdb, sizeof (struct cfg_instance), cfg_handle);
  94. if (error != CS_OK) {
  95. goto error_no_destroy;
  96. }
  97. error = saHandleInstanceGet (&cfg_hdb, *cfg_handle, (void *)&cfg_instance);
  98. if (error != CS_OK) {
  99. goto error_destroy;
  100. }
  101. error = coroipcc_service_connect (IPC_SOCKET_NAME, CFG_SERVICE, &cfg_instance->ipc_ctx);
  102. if (error != CS_OK) {
  103. goto error_put_destroy;
  104. }
  105. if (cfg_callbacks) {
  106. memcpy (&cfg_instance->callbacks, cfg_callbacks, sizeof (corosync_cfg_callbacks_t));
  107. }
  108. pthread_mutex_init (&cfg_instance->response_mutex, NULL);
  109. pthread_mutex_init (&cfg_instance->dispatch_mutex, NULL);
  110. (void)saHandleInstancePut (&cfg_hdb, *cfg_handle);
  111. return (CS_OK);
  112. error_put_destroy:
  113. (void)saHandleInstancePut (&cfg_hdb, *cfg_handle);
  114. error_destroy:
  115. (void)saHandleDestroy (&cfg_hdb, *cfg_handle);
  116. error_no_destroy:
  117. return (error);
  118. }
  119. cs_error_t
  120. corosync_cfg_fd_get (
  121. corosync_cfg_handle_t cfg_handle,
  122. int32_t *selection_fd)
  123. {
  124. struct cfg_instance *cfg_instance;
  125. cs_error_t error;
  126. error = saHandleInstanceGet (&cfg_hdb, cfg_handle, (void *)&cfg_instance);
  127. if (error != CS_OK) {
  128. return (error);
  129. }
  130. *selection_fd = coroipcc_fd_get (cfg_instance->ipc_ctx);
  131. (void)saHandleInstancePut (&cfg_hdb, cfg_handle);
  132. return (CS_OK);
  133. }
  134. cs_error_t
  135. corosync_cfg_dispatch (
  136. corosync_cfg_handle_t cfg_handle,
  137. cs_dispatch_flags_t dispatch_flags)
  138. {
  139. int timeout = -1;
  140. cs_error_t error;
  141. int cont = 1; /* always continue do loop except when set to 0 */
  142. int dispatch_avail;
  143. struct cfg_instance *cfg_instance;
  144. struct res_lib_cfg_testshutdown *res_lib_cfg_testshutdown;
  145. corosync_cfg_callbacks_t callbacks;
  146. mar_res_header_t *dispatch_data;
  147. error = saHandleInstanceGet (&cfg_hdb, cfg_handle,
  148. (void *)&cfg_instance);
  149. if (error != CS_OK) {
  150. return (error);
  151. }
  152. /*
  153. * Timeout instantly for CS_DISPATCH_ALL
  154. */
  155. if (dispatch_flags == CS_DISPATCH_ALL) {
  156. timeout = 0;
  157. }
  158. do {
  159. pthread_mutex_lock (&cfg_instance->dispatch_mutex);
  160. dispatch_avail = coroipcc_dispatch_get (
  161. cfg_instance->ipc_ctx,
  162. (void **)&dispatch_data,
  163. timeout);
  164. /*
  165. * Handle has been finalized in another thread
  166. */
  167. if (cfg_instance->finalize == 1) {
  168. error = CS_OK;
  169. pthread_mutex_unlock (&cfg_instance->dispatch_mutex);
  170. goto error_put;
  171. }
  172. if (dispatch_avail == 0 && dispatch_flags == CS_DISPATCH_ALL) {
  173. pthread_mutex_unlock (&cfg_instance->dispatch_mutex);
  174. break; /* exit do while cont is 1 loop */
  175. } else
  176. if (dispatch_avail == 0) {
  177. pthread_mutex_unlock (&cfg_instance->dispatch_mutex);
  178. continue; /* next poll */
  179. }
  180. /*
  181. * Make copy of callbacks, message data, unlock instance, and call callback
  182. * A risk of this dispatch method is that the callback routines may
  183. * operate at the same time that cfgFinalize has been called in another thread.
  184. */
  185. memcpy (&callbacks, &cfg_instance->callbacks, sizeof (corosync_cfg_callbacks_t));
  186. pthread_mutex_unlock (&cfg_instance->dispatch_mutex);
  187. /*
  188. * Dispatch incoming response
  189. */
  190. switch (dispatch_data->id) {
  191. case MESSAGE_RES_CFG_TESTSHUTDOWN:
  192. if (callbacks.corosync_cfg_shutdown_callback) {
  193. res_lib_cfg_testshutdown = (struct res_lib_cfg_testshutdown *)dispatch_data;
  194. callbacks.corosync_cfg_shutdown_callback(cfg_handle, res_lib_cfg_testshutdown->flags);
  195. }
  196. break;
  197. default:
  198. coroipcc_dispatch_put (cfg_instance->ipc_ctx);
  199. error = CS_ERR_LIBRARY;
  200. goto error_nounlock;
  201. break;
  202. }
  203. coroipcc_dispatch_put (cfg_instance->ipc_ctx);
  204. /*
  205. * Determine if more messages should be processed
  206. */
  207. switch (dispatch_flags) {
  208. case CS_DISPATCH_ONE:
  209. cont = 0;
  210. break;
  211. case CS_DISPATCH_ALL:
  212. break;
  213. case CS_DISPATCH_BLOCKING:
  214. break;
  215. }
  216. } while (cont);
  217. error_put:
  218. (void)saHandleInstancePut (&cfg_hdb, cfg_handle);
  219. error_nounlock:
  220. return (error);
  221. }
  222. cs_error_t
  223. corosync_cfg_finalize (
  224. corosync_cfg_handle_t cfg_handle)
  225. {
  226. struct cfg_instance *cfg_instance;
  227. cs_error_t error;
  228. error = saHandleInstanceGet (&cfg_hdb, cfg_handle, (void *)&cfg_instance);
  229. if (error != CS_OK) {
  230. return (error);
  231. }
  232. pthread_mutex_lock (&cfg_instance->dispatch_mutex);
  233. pthread_mutex_lock (&cfg_instance->response_mutex);
  234. /*
  235. * Another thread has already started finalizing
  236. */
  237. if (cfg_instance->finalize) {
  238. pthread_mutex_unlock (&cfg_instance->response_mutex);
  239. pthread_mutex_unlock (&cfg_instance->dispatch_mutex);
  240. (void)saHandleInstancePut (&cfg_hdb, cfg_handle);
  241. return (CS_ERR_BAD_HANDLE);
  242. }
  243. cfg_instance->finalize = 1;
  244. coroipcc_service_disconnect (cfg_instance->ipc_ctx);
  245. pthread_mutex_unlock (&cfg_instance->response_mutex);
  246. pthread_mutex_unlock (&cfg_instance->dispatch_mutex);
  247. pthread_mutex_destroy (&cfg_instance->response_mutex);
  248. pthread_mutex_destroy (&cfg_instance->dispatch_mutex);
  249. (void)saHandleDestroy (&cfg_hdb, cfg_handle);
  250. (void)saHandleInstancePut (&cfg_hdb, cfg_handle);
  251. return (error);
  252. }
  253. cs_error_t
  254. corosync_cfg_ring_status_get (
  255. corosync_cfg_handle_t cfg_handle,
  256. char ***interface_names,
  257. char ***status,
  258. unsigned int *interface_count)
  259. {
  260. struct cfg_instance *cfg_instance;
  261. struct req_lib_cfg_ringstatusget req_lib_cfg_ringstatusget;
  262. struct res_lib_cfg_ringstatusget res_lib_cfg_ringstatusget;
  263. unsigned int i;
  264. cs_error_t error;
  265. struct iovec iov;
  266. error = saHandleInstanceGet (&cfg_hdb, cfg_handle, (void *)&cfg_instance);
  267. if (error != CS_OK) {
  268. return (error);
  269. }
  270. req_lib_cfg_ringstatusget.header.size = sizeof (struct req_lib_cfg_ringstatusget);
  271. req_lib_cfg_ringstatusget.header.id = MESSAGE_REQ_CFG_RINGSTATUSGET;
  272. iov.iov_base = &req_lib_cfg_ringstatusget,
  273. iov.iov_len = sizeof (struct req_lib_cfg_ringstatusget),
  274. pthread_mutex_lock (&cfg_instance->response_mutex);
  275. error = coroipcc_msg_send_reply_receive(cfg_instance->ipc_ctx,
  276. &iov,
  277. 1,
  278. &res_lib_cfg_ringstatusget,
  279. sizeof (struct res_lib_cfg_ringstatusget));
  280. pthread_mutex_unlock (&cfg_instance->response_mutex);
  281. *interface_count = res_lib_cfg_ringstatusget.interface_count;
  282. *interface_names = malloc (sizeof (char *) * *interface_count);
  283. if (*interface_names == NULL) {
  284. return (CS_ERR_NO_MEMORY);
  285. }
  286. memset (*interface_names, 0, sizeof (char *) * *interface_count);
  287. *status = malloc (sizeof (char *) * *interface_count);
  288. if (*status == NULL) {
  289. error = CS_ERR_NO_MEMORY;
  290. goto error_free_interface_names;
  291. }
  292. memset (*status, 0, sizeof (char *) * *interface_count);
  293. for (i = 0; i < res_lib_cfg_ringstatusget.interface_count; i++) {
  294. (*(interface_names))[i] = strdup (res_lib_cfg_ringstatusget.interface_name[i]);
  295. if ((*(interface_names))[i] == NULL) {
  296. error = CS_ERR_NO_MEMORY;
  297. goto error_free_contents;
  298. }
  299. (*(status))[i] = strdup (res_lib_cfg_ringstatusget.interface_status[i]);
  300. if ((*(status))[i] == NULL) {
  301. error = CS_ERR_NO_MEMORY;
  302. goto error_free_contents;
  303. }
  304. }
  305. goto no_error;
  306. error_free_contents:
  307. for (i = 0; i < res_lib_cfg_ringstatusget.interface_count; i++) {
  308. if ((*(interface_names))[i]) {
  309. free ((*(interface_names))[i]);
  310. }
  311. if ((*(status))[i]) {
  312. free ((*(status))[i]);
  313. }
  314. }
  315. free (*status);
  316. error_free_interface_names:
  317. free (*interface_names);
  318. no_error:
  319. (void)saHandleInstancePut (&cfg_hdb, cfg_handle);
  320. return (error);
  321. }
  322. cs_error_t
  323. corosync_cfg_ring_reenable (
  324. corosync_cfg_handle_t cfg_handle)
  325. {
  326. struct cfg_instance *cfg_instance;
  327. struct req_lib_cfg_ringreenable req_lib_cfg_ringreenable;
  328. struct res_lib_cfg_ringreenable res_lib_cfg_ringreenable;
  329. cs_error_t error;
  330. struct iovec iov;
  331. error = saHandleInstanceGet (&cfg_hdb, cfg_handle, (void *)&cfg_instance);
  332. if (error != CS_OK) {
  333. return (error);
  334. }
  335. req_lib_cfg_ringreenable.header.size = sizeof (struct req_lib_cfg_ringreenable);
  336. req_lib_cfg_ringreenable.header.id = MESSAGE_REQ_CFG_RINGREENABLE;
  337. iov.iov_base = &req_lib_cfg_ringreenable,
  338. iov.iov_len = sizeof (struct req_lib_cfg_ringreenable);
  339. pthread_mutex_lock (&cfg_instance->response_mutex);
  340. error = coroipcc_msg_send_reply_receive (cfg_instance->ipc_ctx,
  341. &iov,
  342. 1,
  343. &res_lib_cfg_ringreenable,
  344. sizeof (struct res_lib_cfg_ringreenable));
  345. pthread_mutex_unlock (&cfg_instance->response_mutex);
  346. (void)saHandleInstancePut (&cfg_hdb, cfg_handle);
  347. return (error);
  348. }
  349. cs_error_t
  350. corosync_cfg_service_load (
  351. corosync_cfg_handle_t cfg_handle,
  352. const char *service_name,
  353. unsigned int service_ver)
  354. {
  355. struct cfg_instance *cfg_instance;
  356. struct req_lib_cfg_serviceload req_lib_cfg_serviceload;
  357. struct res_lib_cfg_serviceload res_lib_cfg_serviceload;
  358. cs_error_t error;
  359. struct iovec iov;
  360. error = saHandleInstanceGet (&cfg_hdb, cfg_handle, (void *)&cfg_instance);
  361. if (error != CS_OK) {
  362. return (error);
  363. }
  364. req_lib_cfg_serviceload.header.size = sizeof (struct req_lib_cfg_serviceload);
  365. req_lib_cfg_serviceload.header.id = MESSAGE_REQ_CFG_SERVICELOAD;
  366. memset (&req_lib_cfg_serviceload.service_name, 0,
  367. sizeof (req_lib_cfg_serviceload.service_name));
  368. strncpy (req_lib_cfg_serviceload.service_name, service_name,
  369. sizeof (req_lib_cfg_serviceload.service_name) - 1);
  370. req_lib_cfg_serviceload.service_ver = service_ver;
  371. iov.iov_base = &req_lib_cfg_serviceload;
  372. iov.iov_len = sizeof (req_lib_cfg_serviceload);
  373. pthread_mutex_lock (&cfg_instance->response_mutex);
  374. error = coroipcc_msg_send_reply_receive (cfg_instance->ipc_ctx,
  375. &iov,
  376. 1,
  377. &res_lib_cfg_serviceload,
  378. sizeof (struct res_lib_cfg_serviceload));
  379. pthread_mutex_unlock (&cfg_instance->response_mutex);
  380. (void)saHandleInstancePut (&cfg_hdb, cfg_handle);
  381. return (error);
  382. }
  383. cs_error_t
  384. corosync_cfg_service_unload (
  385. corosync_cfg_handle_t cfg_handle,
  386. const char *service_name,
  387. unsigned int service_ver)
  388. {
  389. struct cfg_instance *cfg_instance;
  390. struct req_lib_cfg_serviceunload req_lib_cfg_serviceunload;
  391. struct res_lib_cfg_serviceunload res_lib_cfg_serviceunload;
  392. cs_error_t error;
  393. struct iovec iov;
  394. error = saHandleInstanceGet (&cfg_hdb, cfg_handle, (void *)&cfg_instance);
  395. if (error != CS_OK) {
  396. return (error);
  397. }
  398. req_lib_cfg_serviceunload.header.size = sizeof (struct req_lib_cfg_serviceunload);
  399. req_lib_cfg_serviceunload.header.id = MESSAGE_REQ_CFG_SERVICEUNLOAD;
  400. memset (&req_lib_cfg_serviceunload.service_name, 0,
  401. sizeof (req_lib_cfg_serviceunload.service_name));
  402. strncpy (req_lib_cfg_serviceunload.service_name, service_name,
  403. sizeof (req_lib_cfg_serviceunload.service_name) - 1);
  404. req_lib_cfg_serviceunload.service_ver = service_ver;
  405. iov.iov_base = &req_lib_cfg_serviceunload;
  406. iov.iov_len = sizeof (req_lib_cfg_serviceunload);
  407. pthread_mutex_lock (&cfg_instance->response_mutex);
  408. error = coroipcc_msg_send_reply_receive (cfg_instance->ipc_ctx,
  409. &iov,
  410. 1,
  411. &res_lib_cfg_serviceunload,
  412. sizeof (struct res_lib_cfg_serviceunload));
  413. pthread_mutex_unlock (&cfg_instance->response_mutex);
  414. (void)saHandleInstancePut (&cfg_hdb, cfg_handle);
  415. return (error);
  416. }
  417. cs_error_t
  418. corosync_cfg_state_track (
  419. corosync_cfg_handle_t cfg_handle,
  420. uint8_t track_flags,
  421. const corosync_cfg_state_notification_t *notification_buffer)
  422. {
  423. struct cfg_instance *cfg_instance;
  424. struct req_lib_cfg_statetrack req_lib_cfg_statetrack;
  425. struct res_lib_cfg_statetrack res_lib_cfg_statetrack;
  426. cs_error_t error;
  427. struct iovec iov;
  428. req_lib_cfg_statetrack.header.size = sizeof (struct req_lib_cfg_statetrack);
  429. req_lib_cfg_statetrack.header.id = MESSAGE_REQ_CFG_STATETRACKSTART;
  430. req_lib_cfg_statetrack.track_flags = track_flags;
  431. req_lib_cfg_statetrack.notification_buffer_address = (corosync_cfg_state_notification_t *)notification_buffer;
  432. error = saHandleInstanceGet (&cfg_hdb, cfg_handle,
  433. (void *)&cfg_instance);
  434. if (error != CS_OK) {
  435. return (error);
  436. }
  437. iov.iov_base = &req_lib_cfg_statetrack,
  438. iov.iov_len = sizeof (struct req_lib_cfg_statetrack),
  439. pthread_mutex_lock (&cfg_instance->response_mutex);
  440. error = coroipcc_msg_send_reply_receive (cfg_instance->ipc_ctx,
  441. &iov,
  442. 1,
  443. &res_lib_cfg_statetrack,
  444. sizeof (struct res_lib_cfg_statetrack));
  445. pthread_mutex_unlock (&cfg_instance->response_mutex);
  446. (void)saHandleInstancePut (&cfg_hdb, cfg_handle);
  447. return (error == CS_OK ? res_lib_cfg_statetrack.header.error : error);
  448. }
  449. cs_error_t
  450. corosync_cfg_state_track_stop (
  451. corosync_cfg_handle_t cfg_handle)
  452. {
  453. struct cfg_instance *cfg_instance;
  454. struct req_lib_cfg_statetrackstop req_lib_cfg_statetrackstop;
  455. struct res_lib_cfg_statetrackstop res_lib_cfg_statetrackstop;
  456. cs_error_t error;
  457. struct iovec iov;
  458. error = saHandleInstanceGet (&cfg_hdb, cfg_handle,
  459. (void *)&cfg_instance);
  460. if (error != CS_OK) {
  461. return (error);
  462. }
  463. req_lib_cfg_statetrackstop.header.size = sizeof (struct req_lib_cfg_statetrackstop);
  464. req_lib_cfg_statetrackstop.header.id = MESSAGE_REQ_CFG_STATETRACKSTOP;
  465. iov.iov_base = &req_lib_cfg_statetrackstop,
  466. iov.iov_len = sizeof (struct req_lib_cfg_statetrackstop),
  467. pthread_mutex_lock (&cfg_instance->response_mutex);
  468. error = coroipcc_msg_send_reply_receive (cfg_instance->ipc_ctx,
  469. &iov,
  470. 1,
  471. &res_lib_cfg_statetrackstop,
  472. sizeof (struct res_lib_cfg_statetrackstop));
  473. pthread_mutex_unlock (&cfg_instance->response_mutex);
  474. (void)saHandleInstancePut (&cfg_hdb, cfg_handle);
  475. return (error == CS_OK ? res_lib_cfg_statetrackstop.header.error : error);
  476. }
  477. cs_error_t
  478. corosync_cfg_kill_node (
  479. corosync_cfg_handle_t cfg_handle,
  480. unsigned int nodeid,
  481. const char *reason)
  482. {
  483. struct cfg_instance *cfg_instance;
  484. struct req_lib_cfg_killnode req_lib_cfg_killnode;
  485. struct res_lib_cfg_killnode res_lib_cfg_killnode;
  486. cs_error_t error;
  487. struct iovec iov;
  488. if (strlen(reason) >= CS_MAX_NAME_LENGTH)
  489. return CS_ERR_NAME_TOO_LONG;
  490. error = saHandleInstanceGet (&cfg_hdb, cfg_handle,
  491. (void *)&cfg_instance);
  492. if (error != CS_OK) {
  493. return (error);
  494. }
  495. req_lib_cfg_killnode.header.id = MESSAGE_REQ_CFG_KILLNODE;
  496. req_lib_cfg_killnode.header.size = sizeof (struct req_lib_cfg_killnode);
  497. req_lib_cfg_killnode.nodeid = nodeid;
  498. strcpy((char *)req_lib_cfg_killnode.reason.value, reason);
  499. req_lib_cfg_killnode.reason.length = strlen(reason)+1;
  500. iov.iov_base = &req_lib_cfg_killnode;
  501. iov.iov_len = sizeof (struct req_lib_cfg_killnode);
  502. pthread_mutex_lock (&cfg_instance->response_mutex);
  503. error = coroipcc_msg_send_reply_receive (cfg_instance->ipc_ctx,
  504. &iov,
  505. 1,
  506. &res_lib_cfg_killnode,
  507. sizeof (struct res_lib_cfg_killnode));
  508. error = res_lib_cfg_killnode.header.error;
  509. pthread_mutex_unlock (&cfg_instance->response_mutex);
  510. (void)saHandleInstancePut (&cfg_hdb, cfg_handle);
  511. return (error == CS_OK ? res_lib_cfg_killnode.header.error : error);
  512. }
  513. cs_error_t
  514. corosync_cfg_try_shutdown (
  515. corosync_cfg_handle_t cfg_handle,
  516. corosync_cfg_shutdown_flags_t flags)
  517. {
  518. struct cfg_instance *cfg_instance;
  519. struct req_lib_cfg_tryshutdown req_lib_cfg_tryshutdown;
  520. struct res_lib_cfg_tryshutdown res_lib_cfg_tryshutdown;
  521. cs_error_t error;
  522. struct iovec iov;
  523. error = saHandleInstanceGet (&cfg_hdb, cfg_handle,
  524. (void *)&cfg_instance);
  525. if (error != CS_OK) {
  526. return (error);
  527. }
  528. req_lib_cfg_tryshutdown.header.id = MESSAGE_REQ_CFG_TRYSHUTDOWN;
  529. req_lib_cfg_tryshutdown.header.size = sizeof (struct req_lib_cfg_tryshutdown);
  530. req_lib_cfg_tryshutdown.flags = flags;
  531. iov.iov_base = &req_lib_cfg_tryshutdown;
  532. iov.iov_len = sizeof (req_lib_cfg_tryshutdown);
  533. pthread_mutex_lock (&cfg_instance->response_mutex);
  534. error = coroipcc_msg_send_reply_receive (cfg_instance->ipc_ctx,
  535. &iov,
  536. 1,
  537. &res_lib_cfg_tryshutdown,
  538. sizeof (struct res_lib_cfg_tryshutdown));
  539. pthread_mutex_unlock (&cfg_instance->response_mutex);
  540. (void)saHandleInstancePut (&cfg_hdb, cfg_handle);
  541. return (error == CS_OK ? res_lib_cfg_tryshutdown.header.error : error);
  542. }
  543. cs_error_t
  544. corosync_cfg_replyto_shutdown (
  545. corosync_cfg_handle_t cfg_handle,
  546. corosync_cfg_shutdown_reply_flags_t response)
  547. {
  548. struct cfg_instance *cfg_instance;
  549. struct req_lib_cfg_replytoshutdown req_lib_cfg_replytoshutdown;
  550. struct res_lib_cfg_replytoshutdown res_lib_cfg_replytoshutdown;
  551. struct iovec iov;
  552. cs_error_t error;
  553. error = saHandleInstanceGet (&cfg_hdb, cfg_handle,
  554. (void *)&cfg_instance);
  555. if (error != CS_OK) {
  556. return (error);
  557. }
  558. req_lib_cfg_replytoshutdown.header.id = MESSAGE_REQ_CFG_REPLYTOSHUTDOWN;
  559. req_lib_cfg_replytoshutdown.header.size = sizeof (struct req_lib_cfg_replytoshutdown);
  560. req_lib_cfg_replytoshutdown.response = response;
  561. iov.iov_base = &req_lib_cfg_replytoshutdown;
  562. iov.iov_len = sizeof (struct req_lib_cfg_replytoshutdown);
  563. pthread_mutex_lock (&cfg_instance->response_mutex);
  564. error = coroipcc_msg_send_reply_receive (cfg_instance->ipc_ctx,
  565. &iov,
  566. 1,
  567. &res_lib_cfg_replytoshutdown,
  568. sizeof (struct res_lib_cfg_replytoshutdown));
  569. pthread_mutex_unlock (&cfg_instance->response_mutex);
  570. return (error);
  571. }
  572. cs_error_t corosync_cfg_get_node_addrs (
  573. corosync_cfg_handle_t cfg_handle,
  574. int nodeid,
  575. size_t max_addrs,
  576. int *num_addrs,
  577. corosync_cfg_node_address_t *addrs)
  578. {
  579. cs_error_t error;
  580. struct req_lib_cfg_get_node_addrs req_lib_cfg_get_node_addrs;
  581. struct res_lib_cfg_get_node_addrs *res_lib_cfg_get_node_addrs;
  582. struct cfg_instance *cfg_instance;
  583. int addrlen;
  584. int i;
  585. struct iovec iov;
  586. void *return_address;
  587. error = saHandleInstanceGet (&cfg_hdb, cfg_handle,
  588. (void *)&cfg_instance);
  589. if (error != CS_OK) {
  590. return (error);
  591. }
  592. req_lib_cfg_get_node_addrs.header.size = sizeof (req_lib_cfg_get_node_addrs);
  593. req_lib_cfg_get_node_addrs.header.id = MESSAGE_REQ_CFG_GET_NODE_ADDRS;
  594. req_lib_cfg_get_node_addrs.nodeid = nodeid;
  595. iov.iov_base = (char *)&req_lib_cfg_get_node_addrs;
  596. iov.iov_len = sizeof (req_lib_cfg_get_node_addrs);
  597. pthread_mutex_lock (&cfg_instance->response_mutex);
  598. error = coroipcc_msg_send_reply_receive_in_buf (cfg_instance->ipc_ctx,
  599. &iov,
  600. 1,
  601. &return_address);
  602. res_lib_cfg_get_node_addrs = return_address;
  603. pthread_mutex_unlock (&cfg_instance->response_mutex);
  604. if (error != CS_OK) {
  605. goto error_exit;
  606. }
  607. if (res_lib_cfg_get_node_addrs->family == AF_INET)
  608. addrlen = sizeof(struct sockaddr_in);
  609. if (res_lib_cfg_get_node_addrs->family == AF_INET6)
  610. addrlen = sizeof(struct sockaddr_in6);
  611. for (i=0; i<max_addrs && i<res_lib_cfg_get_node_addrs->num_addrs; i++) {
  612. struct sockaddr_in *in;
  613. struct sockaddr_in6 *in6;
  614. addrs[i].address_length = addrlen;
  615. if (res_lib_cfg_get_node_addrs->family == AF_INET) {
  616. in = (struct sockaddr_in *)addrs[i].address;
  617. in->sin_family = AF_INET;
  618. memcpy(&in->sin_addr, &res_lib_cfg_get_node_addrs->addrs[i][0], sizeof(struct in_addr));
  619. }
  620. if (res_lib_cfg_get_node_addrs->family == AF_INET6) {
  621. in6 = (struct sockaddr_in6 *)addrs[i].address;
  622. in6->sin6_family = AF_INET6;
  623. memcpy(&in6->sin6_addr, &res_lib_cfg_get_node_addrs->addrs[i][0], sizeof(struct in6_addr));
  624. }
  625. }
  626. *num_addrs = res_lib_cfg_get_node_addrs->num_addrs;
  627. errno = error = res_lib_cfg_get_node_addrs->header.error;
  628. error_exit:
  629. return (error);
  630. }
  631. cs_error_t corosync_cfg_local_get (
  632. corosync_cfg_handle_t handle,
  633. unsigned int *local_nodeid)
  634. {
  635. cs_error_t error;
  636. struct cfg_instance *cfg_inst;
  637. struct iovec iov;
  638. struct req_lib_cfg_local_get req_lib_cfg_local_get;
  639. struct res_lib_cfg_local_get res_lib_cfg_local_get;
  640. error = saHandleInstanceGet (&cfg_hdb, handle, (void *)&cfg_inst);
  641. if (error != CS_OK) {
  642. return (error);
  643. }
  644. req_lib_cfg_local_get.header.size = sizeof (mar_req_header_t);
  645. req_lib_cfg_local_get.header.id = MESSAGE_REQ_CFG_LOCAL_GET;
  646. iov.iov_base = &req_lib_cfg_local_get;
  647. iov.iov_len = sizeof (struct req_lib_cfg_local_get);
  648. pthread_mutex_lock (&cfg_inst->response_mutex);
  649. error = coroipcc_msg_send_reply_receive (
  650. cfg_inst->ipc_ctx,
  651. &iov,
  652. 1,
  653. &res_lib_cfg_local_get,
  654. sizeof (struct res_lib_cfg_local_get));
  655. pthread_mutex_unlock (&cfg_inst->response_mutex);
  656. if (error != CS_OK) {
  657. goto error_exit;
  658. }
  659. error = res_lib_cfg_local_get.header.error;
  660. *local_nodeid = res_lib_cfg_local_get.local_nodeid;
  661. error_exit:
  662. (void)saHandleInstancePut (&cfg_hdb, handle);
  663. return (error);
  664. }