windows_inc_protocol.c 61 KB

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  1. /** BEGIN COPYRIGHT BLOCK
  2. * This Program is free software; you can redistribute it and/or modify it under
  3. * the terms of the GNU General Public License as published by the Free Software
  4. * Foundation; version 2 of the License.
  5. *
  6. * This Program is distributed in the hope that it will be useful, but WITHOUT
  7. * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS
  8. * FOR A PARTICULAR PURPOSE. See the GNU General Public License for more details.
  9. *
  10. * You should have received a copy of the GNU General Public License along with
  11. * this Program; if not, write to the Free Software Foundation, Inc., 59 Temple
  12. * Place, Suite 330, Boston, MA 02111-1307 USA.
  13. *
  14. * In addition, as a special exception, Red Hat, Inc. gives You the additional
  15. * right to link the code of this Program with code not covered under the GNU
  16. * General Public License ("Non-GPL Code") and to distribute linked combinations
  17. * including the two, subject to the limitations in this paragraph. Non-GPL Code
  18. * permitted under this exception must only link to the code of this Program
  19. * through those well defined interfaces identified in the file named EXCEPTION
  20. * found in the source code files (the "Approved Interfaces"). The files of
  21. * Non-GPL Code may instantiate templates or use macros or inline functions from
  22. * the Approved Interfaces without causing the resulting work to be covered by
  23. * the GNU General Public License. Only Red Hat, Inc. may make changes or
  24. * additions to the list of Approved Interfaces. You must obey the GNU General
  25. * Public License in all respects for all of the Program code and other code used
  26. * in conjunction with the Program except the Non-GPL Code covered by this
  27. * exception. If you modify this file, you may extend this exception to your
  28. * version of the file, but you are not obligated to do so. If you do not wish to
  29. * provide this exception without modification, you must delete this exception
  30. * statement from your version and license this file solely under the GPL without
  31. * exception.
  32. *
  33. *
  34. * Copyright (C) 2001 Sun Microsystems, Inc. Used by permission.
  35. * Copyright (C) 2005 Red Hat, Inc.
  36. * All rights reserved.
  37. * END COPYRIGHT BLOCK **/
  38. #ifdef HAVE_CONFIG_H
  39. # include <config.h>
  40. #endif
  41. /* repl5_inc_protocol.c */
  42. /*
  43. The Prot_Incremental object implements the DS 5.0 multi-master incremental
  44. replication protocol.
  45. Stuff to do:
  46. - Need to figure out how asynchronous events end up in here. They are:
  47. - entry updated in replicated area.
  48. - backoff timeout
  49. - enter/leave.
  50. Perhaps these events should be properties of the main protocol.
  51. */
  52. #include "repl.h"
  53. #include "repl5.h"
  54. #include "windowsrepl.h"
  55. #include "windows_prot_private.h"
  56. #include "slap.h" /* PSEUDO_ATTR_UNHASHED */
  57. #include "repl5_ruv.h"
  58. #include "cl5_api.h"
  59. #include "slapi-plugin.h"
  60. extern int slapi_log_urp;
  61. /*** from proto-slap.h ***/
  62. void ava_done(struct ava *ava);
  63. typedef struct windows_inc_private
  64. {
  65. char *ruv; /* RUV on remote replica (use diff type for this? - ggood */
  66. Backoff_Timer *backoff;
  67. Repl_Protocol *rp;
  68. PRLock *lock;
  69. PRUint32 eventbits;
  70. } windows_inc_private;
  71. /* Various states the incremental protocol can pass through */
  72. #define STATE_START 0 /* ONREPL - should we rename this - we don't use it just to start up? */
  73. #define STATE_WAIT_WINDOW_OPEN 1
  74. #define STATE_WAIT_CHANGES 2
  75. #define STATE_READY_TO_ACQUIRE 3
  76. #define STATE_BACKOFF_START 4 /* ONREPL - can we combine BACKOFF_START and BACKOFF states? */
  77. #define STATE_BACKOFF 5
  78. #define STATE_SENDING_UPDATES 6
  79. #define STATE_STOP_FATAL_ERROR 7
  80. #define STATE_STOP_FATAL_ERROR_PART2 8
  81. #define STATE_STOP_NORMAL_TERMINATION 9
  82. /* Events (synchronous and asynchronous; these are bits) */
  83. #define EVENT_WINDOW_OPENED 1
  84. #define EVENT_WINDOW_CLOSED 2
  85. #define EVENT_TRIGGERING_CRITERIA_MET 4 /* ONREPL - should we rename this to EVENT_CHANGE_AVAILABLE */
  86. #define EVENT_BACKOFF_EXPIRED 8
  87. #define EVENT_REPLICATE_NOW 16
  88. #define EVENT_PROTOCOL_SHUTDOWN 32
  89. #define EVENT_AGMT_CHANGED 64
  90. #define EVENT_RUN_DIRSYNC 128
  91. #define UPDATE_NO_MORE_UPDATES 201
  92. #define UPDATE_TRANSIENT_ERROR 202
  93. #define UPDATE_FATAL_ERROR 203
  94. #define UPDATE_SCHEDULE_WINDOW_CLOSED 204
  95. #define UPDATE_CONNECTION_LOST 205
  96. #define UPDATE_TIMEOUT 206
  97. #define UPDATE_YIELD 207
  98. /* Return codes from examine_update_vector */
  99. #define EXAMINE_RUV_PRISTINE_REPLICA 401
  100. #define EXAMINE_RUV_GENERATION_MISMATCH 402
  101. #define EXAMINE_RUV_REPLICA_TOO_OLD 403
  102. #define EXAMINE_RUV_OK 404
  103. #define EXAMINE_RUV_PARAM_ERROR 405
  104. #define MAX_CHANGES_PER_SESSION 10000
  105. /*
  106. * Maximum time to wait between replication sessions. If we
  107. * don't see any updates for a period equal to this interval,
  108. * we go ahead and start a replication session, just to be safe
  109. */
  110. #define MAX_WAIT_BETWEEN_SESSIONS PR_SecondsToInterval(60 * 5) /* 5 minutes */
  111. /*
  112. * tests if the protocol has been shutdown and we need to quit
  113. * event_occurred resets the bits in the bit flag, so whoever tests for shutdown
  114. * resets the flags, so the next one who tests for shutdown won't get it, so we
  115. * also look at the terminate flag
  116. */
  117. #define PROTOCOL_IS_SHUTDOWN(prp) (event_occurred(prp, EVENT_PROTOCOL_SHUTDOWN) || prp->terminate)
  118. /* Forward declarations */
  119. static PRUint32 event_occurred(Private_Repl_Protocol *prp, PRUint32 event);
  120. static void reset_events (Private_Repl_Protocol *prp);
  121. static void protocol_sleep(Private_Repl_Protocol *prp, PRIntervalTime duration);
  122. static int send_updates(Private_Repl_Protocol *prp, RUV *ruv, PRUint32 *num_changes_sent);
  123. static void windows_inc_backoff_expired(time_t timer_fire_time, void *arg);
  124. static int windows_examine_update_vector(Private_Repl_Protocol *prp, RUV *ruv);
  125. static const char* state2name (int state);
  126. static const char* event2name (int event);
  127. static const char* acquire2name (int code);
  128. static void periodic_dirsync(time_t when, void *arg);
  129. static Slapi_Eq_Context dirsync;
  130. /*
  131. * It's specifically ok to delete a protocol instance that
  132. * is currently running. The instance will be shut down, and
  133. * then resources will be freed. Since a graceful shutdown is
  134. * attempted, this function may take some time to complete.
  135. */
  136. static void
  137. windows_inc_delete(Private_Repl_Protocol **prpp)
  138. {
  139. LDAPDebug0Args( LDAP_DEBUG_TRACE, "=> windows_inc_delete\n" );
  140. /* First, stop the protocol if it isn't already stopped */
  141. /* Then, delete all resources used by the protocol */
  142. slapi_eq_cancel(dirsync);
  143. LDAPDebug0Args( LDAP_DEBUG_TRACE, "<= windows_inc_delete\n" );
  144. }
  145. /* helper function */
  146. void
  147. w_set_pause_and_busy_time(long *pausetime, long *busywaittime)
  148. {
  149. LDAPDebug0Args( LDAP_DEBUG_TRACE, "=> w_set_pause_and_busy_time\n" );
  150. /* If neither are set, set busy time to its default */
  151. if (!*pausetime && !*busywaittime)
  152. {
  153. *busywaittime = PROTOCOL_BUSY_BACKOFF_MINIMUM;
  154. }
  155. /* pause time must be at least 1 more than the busy backoff time */
  156. if (*pausetime && !*busywaittime)
  157. {
  158. /*
  159. * user specified a pause time but no busy wait time - must
  160. * set busy wait time to 1 less than pause time - if pause
  161. * time is 1, we must set it to 2
  162. */
  163. if (*pausetime < 2)
  164. {
  165. *pausetime = 2;
  166. }
  167. *busywaittime = *pausetime - 1;
  168. }
  169. else if (!*pausetime && *busywaittime)
  170. {
  171. /*
  172. * user specified a busy wait time but no pause time - must
  173. * set pause time to 1 more than busy wait time
  174. */
  175. *pausetime = *busywaittime + 1;
  176. }
  177. else if (*pausetime && *busywaittime && *pausetime <= *busywaittime)
  178. {
  179. /*
  180. * user specified both pause and busy wait times, but the pause
  181. * time was <= busy wait time - pause time must be at least
  182. * 1 more than the busy wait time
  183. */
  184. *pausetime = *busywaittime + 1;
  185. }
  186. LDAPDebug0Args( LDAP_DEBUG_TRACE, "<= w_set_pause_and_busy_time\n" );
  187. }
  188. /*
  189. * Do the incremental protocol.
  190. *
  191. * What's going on here? This thing is a state machine. It has the
  192. * following states:
  193. *
  194. * State transition table:
  195. *
  196. * Curr State Condition/Event Next State
  197. * ---------- ------------ -----------
  198. * START schedule window is open ACQUIRE_REPLICA
  199. * schedule window is closed WAIT_WINDOW_OPEN
  200. * WAIT_WINDOW_OPEN schedule change START
  201. * replicate now ACQUIRE_REPLICA
  202. * schedule window opens ACQUIRE_REPLICA
  203. * ACQUIRE_REPLICA acquired replica SEND_CHANGES
  204. * failed to acquire - transient error START_BACKOFF
  205. * failed to acquire - fatal error STOP_FATAL_ERROR
  206. * SEND_CHANGES can't update CONSUMER_NEEDS_REINIT
  207. * no changes to send WAIT_CHANGES
  208. * can't send - thransient error START_BACKOF
  209. * can't send - window closed WAIT_WINDOW_OPEN
  210. * can'r send - fatal error STOP_FATAL_ERROR
  211. * START_BACKOF replicate now ACQUIRE_REPLICA
  212. * schedule changes START
  213. * schedule window closes WAIT_WINDOW_OPEN
  214. * backoff expires & can acquire SEND_CHANGES
  215. * backoff expires & can't acquire-trans BACKOFF
  216. * backoff expires & can't acquire-fatal STOP_FATAL_ERROR
  217. * BACKOF replicate now ACQUIRE_REPLICA
  218. * schedule changes START
  219. * schedule window closes WAIT_WINDOW_OPEN
  220. * backoff expires & can acquire SEND_CHANGES
  221. * backoff expires & can't acquire-trans BACKOFF
  222. * backoff expires & can't acquire-fatal STOP_FATAL_ERROR
  223. * WAIT_CHANGES schedule window closes WAIT_WINDOW_OPEN
  224. * replicate_now ACQUIRE_REPLICA
  225. * change available ACQUIRE_REPLICA
  226. * schedule_change START
  227. */
  228. /*
  229. * DBDB: what follows is quite possibly the worst code I have ever seen.
  230. * Unfortunately we chose not to re-write it when we did the windows sync version.
  231. */
  232. /*
  233. * Main state machine for the incremental protocol. This routine will,
  234. * under normal circumstances, not return until the protocol is shut
  235. * down.
  236. */
  237. static void
  238. windows_inc_run(Private_Repl_Protocol *prp)
  239. {
  240. int current_state = STATE_START;
  241. int next_state = STATE_START;
  242. windows_inc_private *prp_priv = (windows_inc_private *)prp->private;
  243. int done = 0;
  244. int e1 = 0;
  245. RUV *ruv = NULL;
  246. Replica *replica = NULL;
  247. int wait_change_timer_set = 0;
  248. time_t last_start_time = 0;
  249. PRUint32 num_changes_sent = 0;
  250. /* use a different backoff timer strategy for ACQUIRE_REPLICA_BUSY errors */
  251. PRBool use_busy_backoff_timer = PR_FALSE;
  252. long pausetime = 0;
  253. long busywaittime = 0;
  254. /* Some operations should only be done the first time STATE_START is true. */
  255. static PRBool is_first_start = PR_TRUE;
  256. PRBool run_dirsync = PR_FALSE;
  257. LDAPDebug0Args( LDAP_DEBUG_TRACE, "=> windows_inc_run\n" );
  258. prp->stopped = 0;
  259. prp->terminate = 0;
  260. windows_private_load_dirsync_cookie(prp->agmt);
  261. do {
  262. int rc = 0;
  263. /* Take action, based on current state, and compute new state. */
  264. switch (current_state)
  265. {
  266. case STATE_START:
  267. dev_debug("windows_inc_run(STATE_START)");
  268. if (PROTOCOL_IS_SHUTDOWN(prp))
  269. {
  270. done = 1;
  271. break;
  272. }
  273. /*
  274. * Our initial state. See if we're in a schedule window. If
  275. * so, then we're ready to acquire the replica and see if it
  276. * needs any updates from us. If not, then wait for the window
  277. * to open.
  278. */
  279. if (agmt_schedule_in_window_now(prp->agmt))
  280. {
  281. next_state = STATE_READY_TO_ACQUIRE;
  282. } else
  283. {
  284. next_state = STATE_WAIT_WINDOW_OPEN;
  285. }
  286. /* we can get here from other states because some events happened and were
  287. not cleared. For instance when we wake up in STATE_WAIT_CHANGES state.
  288. Since this is a fresh start state, we should clear all events */
  289. /* ONREPL - this does not feel right - we should take another look
  290. at this state machine */
  291. reset_events (prp);
  292. /* Cancel any linger timer that might be in effect... */
  293. windows_conn_cancel_linger(prp->conn);
  294. /* ... and disconnect, if currently connected */
  295. windows_conn_disconnect(prp->conn);
  296. /* get the new pause time, if any */
  297. pausetime = agmt_get_pausetime(prp->agmt);
  298. /* get the new busy wait time, if any */
  299. busywaittime = agmt_get_busywaittime(prp->agmt);
  300. if (pausetime || busywaittime)
  301. {
  302. /* helper function to make sure they are set correctly */
  303. w_set_pause_and_busy_time(&pausetime, &busywaittime);
  304. }
  305. if (is_first_start) {
  306. unsigned long interval = windows_private_get_sync_interval(prp->agmt) * 1000;
  307. /*
  308. * The function, the arguments, the time (hence) when it is first to be called,
  309. * and the repeat interval.
  310. */
  311. /* DBDB: we should probably make this polling interval configurable */
  312. dirsync = slapi_eq_repeat(periodic_dirsync, (void*) prp, (time_t)0 , interval);
  313. is_first_start = PR_FALSE;
  314. }
  315. break;
  316. case STATE_WAIT_WINDOW_OPEN:
  317. /*
  318. * We're waiting for a schedule window to open. If one did,
  319. * or we receive a "replicate now" event, then start a protocol
  320. * session immediately. If the replication schedule changed, go
  321. * back to start. Otherwise, go back to sleep.
  322. */
  323. dev_debug("windows_inc_run(STATE_WAIT_WINDOW_OPEN)");
  324. if (PROTOCOL_IS_SHUTDOWN(prp))
  325. {
  326. done = 1;
  327. break;
  328. }
  329. else if (event_occurred(prp, EVENT_WINDOW_OPENED))
  330. {
  331. next_state = STATE_READY_TO_ACQUIRE;
  332. }
  333. else if (event_occurred(prp, EVENT_REPLICATE_NOW))
  334. {
  335. next_state = STATE_READY_TO_ACQUIRE;
  336. }
  337. else if (event_occurred(prp, EVENT_AGMT_CHANGED))
  338. {
  339. next_state = STATE_START;
  340. run_dirsync = PR_TRUE;
  341. windows_conn_set_agmt_changed(prp->conn);
  342. }
  343. else if (event_occurred(prp, EVENT_TRIGGERING_CRITERIA_MET)) /* change available */
  344. {
  345. /* just ignore it and go to sleep */
  346. protocol_sleep(prp, PR_INTERVAL_NO_TIMEOUT);
  347. }
  348. else if ((e1 = event_occurred(prp, EVENT_WINDOW_CLOSED)) ||
  349. event_occurred(prp, EVENT_BACKOFF_EXPIRED))
  350. {
  351. /* this events - should not occur - log a warning and go to sleep */
  352. slapi_log_error(SLAPI_LOG_FATAL, windows_repl_plugin_name,
  353. "%s: Incremental protocol: "
  354. "event %s should not occur in state %s; going to sleep\n",
  355. agmt_get_long_name(prp->agmt),
  356. e1 ? event2name(EVENT_WINDOW_CLOSED) : event2name(EVENT_BACKOFF_EXPIRED),
  357. state2name(current_state));
  358. protocol_sleep(prp, PR_INTERVAL_NO_TIMEOUT);
  359. }
  360. else
  361. {
  362. /* wait until window opens or an event occurs */
  363. slapi_log_error(SLAPI_LOG_REPL, windows_repl_plugin_name,
  364. "%s: Incremental protocol: "
  365. "waiting for update window to open\n", agmt_get_long_name(prp->agmt));
  366. protocol_sleep(prp, PR_INTERVAL_NO_TIMEOUT);
  367. }
  368. break;
  369. case STATE_WAIT_CHANGES:
  370. /*
  371. * We're in a replication window, but we're waiting for more
  372. * changes to accumulate before we actually hook up and send
  373. * them.
  374. */
  375. dev_debug("windows_inc_run(STATE_WAIT_CHANGES)");
  376. if (PROTOCOL_IS_SHUTDOWN(prp))
  377. {
  378. dev_debug("windows_inc_run(STATE_WAIT_CHANGES): PROTOCOL_IS_SHUTING_DOWN -> end windows_inc_run\n");
  379. done = 1;
  380. break;
  381. }
  382. else if (event_occurred(prp, EVENT_REPLICATE_NOW))
  383. {
  384. dev_debug("windows_inc_run(STATE_WAIT_CHANGES): EVENT_REPLICATE_NOW received -> STATE_READY_TO_ACQUIRE\n");
  385. next_state = STATE_READY_TO_ACQUIRE;
  386. wait_change_timer_set = 0;
  387. /* We also want to run dirsync on a 'replicate now' event */
  388. run_dirsync = PR_TRUE;
  389. }
  390. else if ( event_occurred(prp, EVENT_RUN_DIRSYNC))
  391. {
  392. dev_debug("windows_inc_run(STATE_WAIT_CHANGES): EVENT_REPLICATE_NOW received -> STATE_READY_TO_ACQUIRE\n");
  393. next_state = STATE_READY_TO_ACQUIRE;
  394. wait_change_timer_set = 0;
  395. run_dirsync = PR_TRUE;
  396. }
  397. else if (event_occurred(prp, EVENT_AGMT_CHANGED))
  398. {
  399. dev_debug("windows_inc_run(STATE_WAIT_CHANGES): EVENT_AGMT_CHANGED received -> STATE_START\n");
  400. next_state = STATE_START;
  401. windows_conn_set_agmt_changed(prp->conn);
  402. wait_change_timer_set = 0;
  403. /* We also want to run dirsync on a 'agreement changed' event, because that's how we receive 'send updates now' */
  404. run_dirsync = PR_TRUE;
  405. }
  406. else if (event_occurred(prp, EVENT_WINDOW_CLOSED))
  407. {
  408. dev_debug("windows_inc_run(STATE_WAIT_CHANGES): EVENT_WINDOW_CLOSED received -> STATE_WAIT_WINDOW_OPEN\n");
  409. next_state = STATE_WAIT_WINDOW_OPEN;
  410. wait_change_timer_set = 0;
  411. }
  412. else if (event_occurred(prp, EVENT_TRIGGERING_CRITERIA_MET) )
  413. {
  414. dev_debug("windows_inc_run(STATE_WAIT_CHANGES): EVENT_TRIGGERING_CRITERIA_MET received -> STATE_READY_TO_ACQUIRE\n");
  415. next_state = STATE_READY_TO_ACQUIRE;
  416. wait_change_timer_set = 0;
  417. }
  418. else if ((e1 = event_occurred(prp, EVENT_WINDOW_OPENED)) ||
  419. event_occurred(prp, EVENT_BACKOFF_EXPIRED))
  420. {
  421. /* this events - should not occur - log a warning and clear the event */
  422. slapi_log_error(SLAPI_LOG_FATAL, windows_repl_plugin_name, "%s: Incremental protocol: "
  423. "event %s should not occur in state %s\n",
  424. agmt_get_long_name(prp->agmt),
  425. e1 ? event2name(EVENT_WINDOW_OPENED) : event2name(EVENT_BACKOFF_EXPIRED),
  426. state2name(current_state));
  427. wait_change_timer_set = 0;
  428. }
  429. else
  430. {
  431. if (wait_change_timer_set)
  432. {
  433. /* We are here because our timer expired */
  434. dev_debug("windows_inc_run(STATE_WAIT_CHANGES): wait_change_timer_set expired -> STATE_START\n");
  435. next_state = STATE_START;
  436. run_dirsync = PR_TRUE;
  437. wait_change_timer_set = 0;
  438. }
  439. else
  440. {
  441. /* We are here because the last replication session
  442. * finished or aborted.
  443. */
  444. wait_change_timer_set = 1;
  445. protocol_sleep(prp, MAX_WAIT_BETWEEN_SESSIONS);
  446. }
  447. }
  448. break;
  449. case STATE_READY_TO_ACQUIRE:
  450. dev_debug("windows_inc_run(STATE_READY_TO_ACQUIRE)");
  451. if (PROTOCOL_IS_SHUTDOWN(prp))
  452. {
  453. done = 1;
  454. break;
  455. }
  456. /* ONREPL - at this state we unconditionally acquire the replica
  457. ignoring all events. Not sure if this is good */
  458. object_acquire(prp->replica_object);
  459. replica = object_get_data(prp->replica_object);
  460. rc = windows_acquire_replica(prp, &ruv , (run_dirsync == 0) /* yes, check the consumer RUV for incremental, but not if we're going to dirsync afterwards */);
  461. slapi_log_error(SLAPI_LOG_REPL, windows_repl_plugin_name,
  462. "windows_acquire_replica returned %s (%d)\n",
  463. acquire2name(rc),
  464. rc);
  465. use_busy_backoff_timer = PR_FALSE; /* default */
  466. if (rc == ACQUIRE_SUCCESS)
  467. {
  468. next_state = STATE_SENDING_UPDATES;
  469. }
  470. else if (rc == ACQUIRE_REPLICA_BUSY)
  471. {
  472. next_state = STATE_BACKOFF_START;
  473. use_busy_backoff_timer = PR_TRUE;
  474. }
  475. else if (rc == ACQUIRE_CONSUMER_WAS_UPTODATE)
  476. {
  477. next_state = STATE_WAIT_CHANGES;
  478. }
  479. else if (rc == ACQUIRE_TRANSIENT_ERROR)
  480. {
  481. next_state = STATE_BACKOFF_START;
  482. }
  483. else if (rc == ACQUIRE_FATAL_ERROR)
  484. {
  485. next_state = STATE_STOP_FATAL_ERROR;
  486. }
  487. if (rc != ACQUIRE_SUCCESS)
  488. {
  489. int optype, ldaprc;
  490. windows_conn_get_error(prp->conn, &optype, &ldaprc);
  491. agmt_set_last_update_status(prp->agmt, ldaprc,
  492. prp->last_acquire_response_code, NULL);
  493. }
  494. object_release(prp->replica_object); replica = NULL;
  495. break;
  496. case STATE_BACKOFF_START:
  497. dev_debug("windows_inc_run(STATE_BACKOFF_START)");
  498. if (PROTOCOL_IS_SHUTDOWN(prp))
  499. {
  500. done = 1;
  501. break;
  502. }
  503. if (event_occurred(prp, EVENT_REPLICATE_NOW) || event_occurred(prp, EVENT_RUN_DIRSYNC))
  504. {
  505. next_state = STATE_READY_TO_ACQUIRE;
  506. }
  507. else if (event_occurred(prp, EVENT_AGMT_CHANGED))
  508. {
  509. next_state = STATE_START;
  510. run_dirsync = PR_TRUE; /* Also trigger dirsync for the 'send updates now' feature */
  511. windows_conn_set_agmt_changed(prp->conn);
  512. }
  513. else if (event_occurred (prp, EVENT_WINDOW_CLOSED))
  514. {
  515. next_state = STATE_WAIT_WINDOW_OPEN;
  516. }
  517. else if (event_occurred (prp, EVENT_TRIGGERING_CRITERIA_MET))
  518. {
  519. /* consume and ignore */
  520. }
  521. else if ((e1 = event_occurred (prp, EVENT_WINDOW_OPENED)) ||
  522. event_occurred (prp, EVENT_BACKOFF_EXPIRED))
  523. {
  524. /* This should never happen */
  525. /* this events - should not occur - log a warning and go to sleep */
  526. slapi_log_error(SLAPI_LOG_FATAL, windows_repl_plugin_name,
  527. "%s: Incremental protocol: event %s should not occur in state %s\n",
  528. agmt_get_long_name(prp->agmt),
  529. e1 ? event2name(EVENT_WINDOW_OPENED) : event2name(EVENT_BACKOFF_EXPIRED),
  530. state2name(current_state));
  531. }
  532. else
  533. {
  534. /* Set up the backoff timer to wake us up at the appropriate time */
  535. if (use_busy_backoff_timer)
  536. {
  537. /* we received a busy signal from the consumer, wait for a while */
  538. if (!busywaittime)
  539. {
  540. busywaittime = PROTOCOL_BUSY_BACKOFF_MINIMUM;
  541. }
  542. prp_priv->backoff = backoff_new(BACKOFF_FIXED, busywaittime,
  543. busywaittime);
  544. }
  545. else
  546. {
  547. prp_priv->backoff = backoff_new(BACKOFF_EXPONENTIAL, PROTOCOL_BACKOFF_MINIMUM,
  548. PROTOCOL_BACKOFF_MAXIMUM);
  549. }
  550. next_state = STATE_BACKOFF;
  551. backoff_reset(prp_priv->backoff, windows_inc_backoff_expired, (void *)prp);
  552. protocol_sleep(prp, PR_INTERVAL_NO_TIMEOUT);
  553. use_busy_backoff_timer = PR_FALSE;
  554. }
  555. break;
  556. case STATE_BACKOFF:
  557. /*
  558. * We're in a backoff state.
  559. */
  560. dev_debug("windows_inc_run(STATE_BACKOFF)");
  561. if (PROTOCOL_IS_SHUTDOWN(prp))
  562. {
  563. if (prp_priv->backoff)
  564. backoff_delete(&prp_priv->backoff);
  565. done = 1;
  566. break;
  567. }
  568. else if (event_occurred(prp, EVENT_REPLICATE_NOW) || event_occurred(prp, EVENT_RUN_DIRSYNC))
  569. {
  570. next_state = STATE_READY_TO_ACQUIRE;
  571. }
  572. else if (event_occurred(prp, EVENT_AGMT_CHANGED))
  573. {
  574. next_state = STATE_START;
  575. run_dirsync = PR_TRUE;
  576. windows_conn_set_agmt_changed(prp->conn);
  577. /* Destroy the backoff timer, since we won't need it anymore */
  578. if (prp_priv->backoff)
  579. backoff_delete(&prp_priv->backoff);
  580. }
  581. else if (event_occurred(prp, EVENT_WINDOW_CLOSED))
  582. {
  583. next_state = STATE_WAIT_WINDOW_OPEN;
  584. /* Destroy the backoff timer, since we won't need it anymore */
  585. if (prp_priv->backoff)
  586. backoff_delete(&prp_priv->backoff);
  587. }
  588. else if (event_occurred(prp, EVENT_BACKOFF_EXPIRED))
  589. {
  590. rc = windows_acquire_replica(prp, &ruv, 1 /* check RUV for incremental */);
  591. use_busy_backoff_timer = PR_FALSE;
  592. if (rc == ACQUIRE_SUCCESS)
  593. {
  594. next_state = STATE_SENDING_UPDATES;
  595. }
  596. else if (rc == ACQUIRE_REPLICA_BUSY)
  597. {
  598. next_state = STATE_BACKOFF;
  599. use_busy_backoff_timer = PR_TRUE;
  600. }
  601. else if (rc == ACQUIRE_CONSUMER_WAS_UPTODATE)
  602. {
  603. next_state = STATE_WAIT_CHANGES;
  604. }
  605. else if (rc == ACQUIRE_TRANSIENT_ERROR)
  606. {
  607. next_state = STATE_BACKOFF;
  608. }
  609. else if (rc == ACQUIRE_FATAL_ERROR)
  610. {
  611. next_state = STATE_STOP_FATAL_ERROR;
  612. }
  613. if (rc != ACQUIRE_SUCCESS)
  614. {
  615. int optype, ldaprc;
  616. windows_conn_get_error(prp->conn, &optype, &ldaprc);
  617. agmt_set_last_update_status(prp->agmt, ldaprc,
  618. prp->last_acquire_response_code, NULL);
  619. }
  620. /*
  621. * We either need to step the backoff timer, or
  622. * destroy it if we don't need it anymore.
  623. */
  624. if (STATE_BACKOFF == next_state)
  625. {
  626. time_t next_fire_time;
  627. time_t now;
  628. /* Step the backoff timer */
  629. time(&now);
  630. next_fire_time = backoff_step(prp_priv->backoff);
  631. /* And go back to sleep */
  632. slapi_log_error(SLAPI_LOG_REPL, windows_repl_plugin_name,
  633. "%s: Replication session backing off for %ld seconds\n",
  634. agmt_get_long_name(prp->agmt),
  635. next_fire_time - now);
  636. protocol_sleep(prp, PR_INTERVAL_NO_TIMEOUT);
  637. }
  638. else
  639. {
  640. /* Destroy the backoff timer, since we won't need it anymore */
  641. backoff_delete(&prp_priv->backoff);
  642. }
  643. use_busy_backoff_timer = PR_FALSE;
  644. }
  645. else if (event_occurred(prp, EVENT_TRIGGERING_CRITERIA_MET))
  646. {
  647. /* changes are available */
  648. if ( prp_priv->backoff == NULL || backoff_expired (prp_priv->backoff, 60) )
  649. {
  650. /*
  651. * Have seen cases that the agmt stuck here forever since
  652. * somehow the backoff timer was not in event queue anymore.
  653. * If the backoff timer has expired more than 60 seconds,
  654. * destroy it.
  655. */
  656. if ( prp_priv->backoff )
  657. backoff_delete(&prp_priv->backoff);
  658. next_state = STATE_READY_TO_ACQUIRE;
  659. }
  660. else
  661. {
  662. /* ignore changes and go to sleep */
  663. protocol_sleep(prp, PR_INTERVAL_NO_TIMEOUT);
  664. }
  665. }
  666. else if (event_occurred(prp, EVENT_WINDOW_OPENED))
  667. {
  668. /* this should never happen - log an error and go to sleep */
  669. slapi_log_error(SLAPI_LOG_FATAL, windows_repl_plugin_name, "%s: Incremental protocol: "
  670. "event %s should not occur in state %s; going to sleep\n",
  671. agmt_get_long_name(prp->agmt),
  672. event2name(EVENT_WINDOW_OPENED), state2name(current_state));
  673. protocol_sleep(prp, PR_INTERVAL_NO_TIMEOUT);
  674. }
  675. break;
  676. case STATE_SENDING_UPDATES:
  677. dev_debug("windows_inc_run(STATE_SENDING_UPDATES)");
  678. agmt_set_update_in_progress(prp->agmt, PR_TRUE);
  679. num_changes_sent = 0;
  680. last_start_time = current_time();
  681. agmt_set_last_update_start(prp->agmt, last_start_time);
  682. /*
  683. * We've acquired the replica, and are ready to send any
  684. * needed updates.
  685. */
  686. if (PROTOCOL_IS_SHUTDOWN(prp))
  687. {
  688. windows_release_replica (prp);
  689. done = 1;
  690. agmt_set_update_in_progress(prp->agmt, PR_FALSE);
  691. agmt_set_last_update_end(prp->agmt, current_time());
  692. /* MAB: I don't find the following status correct. How do we know it has
  693. been stopped by an admin and not by a total update request, for instance?
  694. In any case, how is this protocol shutdown situation different from all the
  695. other ones that are present in this state machine? */
  696. /* richm: We at least need to let monitors know that the protocol has been
  697. shutdown - maybe they can figure out why */
  698. agmt_set_last_update_status(prp->agmt, 0, 0, "Protocol stopped");
  699. break;
  700. }
  701. agmt_set_last_update_status(prp->agmt, 0, 0, "Incremental update started");
  702. dev_debug("windows_inc_run(STATE_SENDING_UPDATES) -> windows_examine_update_vector");
  703. rc = windows_examine_update_vector(prp, ruv);
  704. /*
  705. * Decide what to do next - proceed with incremental,
  706. * backoff, or total update
  707. */
  708. switch (rc)
  709. {
  710. case EXAMINE_RUV_PARAM_ERROR:
  711. /* this is really bad - we have NULL prp! */
  712. next_state = STATE_STOP_FATAL_ERROR;
  713. break;
  714. case EXAMINE_RUV_PRISTINE_REPLICA:
  715. slapi_log_error(SLAPI_LOG_FATAL, windows_repl_plugin_name,
  716. "%s: Replica has no update vector. It has never been initialized.\n",
  717. agmt_get_long_name(prp->agmt));
  718. next_state = STATE_BACKOFF_START;
  719. break;
  720. case EXAMINE_RUV_GENERATION_MISMATCH:
  721. slapi_log_error(SLAPI_LOG_FATAL, windows_repl_plugin_name,
  722. "%s: Replica has a different generation ID than the local data.\n",
  723. agmt_get_long_name(prp->agmt));
  724. next_state = STATE_BACKOFF_START;
  725. break;
  726. case EXAMINE_RUV_REPLICA_TOO_OLD:
  727. slapi_log_error(SLAPI_LOG_FATAL, windows_repl_plugin_name,
  728. "%s: Replica update vector is too out of date to bring "
  729. "into sync using the incremental protocol. The replica "
  730. "must be reinitialized.\n", agmt_get_long_name(prp->agmt));
  731. next_state = STATE_BACKOFF_START;
  732. break;
  733. case EXAMINE_RUV_OK:
  734. /* update our csn generator state with the consumer's ruv data */
  735. dev_debug("windows_inc_run(STATE_SENDING_UPDATES) -> windows_examine_update_vector OK");
  736. object_acquire(prp->replica_object);
  737. replica = object_get_data(prp->replica_object);
  738. rc = replica_update_csngen_state (replica, ruv);
  739. object_release (prp->replica_object);
  740. replica = NULL;
  741. if (rc == CSN_LIMIT_EXCEEDED) /* too much skew */
  742. {
  743. slapi_log_error(SLAPI_LOG_FATAL, repl_plugin_name,
  744. "%s: Incremental protocol: fatal error - too much time skew between replicas!\n",
  745. agmt_get_long_name(prp->agmt));
  746. next_state = STATE_STOP_FATAL_ERROR;
  747. }
  748. else if (rc != 0) /* internal error */
  749. {
  750. slapi_log_error(SLAPI_LOG_FATAL, repl_plugin_name,
  751. "%s: Incremental protocol: fatal internal error updating the CSN generator!\n",
  752. agmt_get_long_name(prp->agmt));
  753. next_state = STATE_STOP_FATAL_ERROR;
  754. }
  755. else
  756. {
  757. /* call begin incremental update callback */
  758. winsync_plugin_call_begin_update_cb(prp->agmt,
  759. windows_private_get_directory_subtree(prp->agmt),
  760. windows_private_get_windows_subtree(prp->agmt),
  761. 0 /* is_total == FALSE */);
  762. rc = send_updates(prp, ruv, &num_changes_sent);
  763. if (rc == UPDATE_NO_MORE_UPDATES)
  764. {
  765. dev_debug("windows_inc_run(STATE_SENDING_UPDATES) -> send_updates = UPDATE_NO_MORE_UPDATES -> STATE_WAIT_CHANGES");
  766. agmt_set_last_update_status(prp->agmt, 0, 0, "Incremental update succeeded");
  767. next_state = STATE_WAIT_CHANGES;
  768. }
  769. else if (rc == UPDATE_YIELD)
  770. {
  771. dev_debug("windows_inc_run(STATE_SENDING_UPDATES) -> send_updates = UPDATE_YIELD -> STATE_BACKOFF_START");
  772. agmt_set_last_update_status(prp->agmt, 0, 0, "Incremental update succeeded and yielded");
  773. next_state = STATE_BACKOFF_START;
  774. }
  775. else if (rc == UPDATE_TRANSIENT_ERROR)
  776. {
  777. dev_debug("windows_inc_run(STATE_SENDING_UPDATES) -> send_updates = UPDATE_TRANSIENT_ERROR -> STATE_BACKOFF_START");
  778. next_state = STATE_BACKOFF_START;
  779. }
  780. else if (rc == UPDATE_FATAL_ERROR)
  781. {
  782. dev_debug("windows_inc_run(STATE_SENDING_UPDATES) -> send_updates = UPDATE_FATAL_ERROR -> STATE_STOP_FATAL_ERROR");
  783. next_state = STATE_STOP_FATAL_ERROR;
  784. }
  785. else if (rc == UPDATE_SCHEDULE_WINDOW_CLOSED)
  786. {
  787. dev_debug("windows_inc_run(STATE_SENDING_UPDATES) -> send_updates = UPDATE_SCHEDULE_WINDOW_CLOSED -> STATE_WAIT_WINDOW_OPEN");
  788. /* ONREPL - I don't think we should check this. We might be
  789. here because of replicate_now event - so we don't care
  790. about the schedule */
  791. next_state = STATE_WAIT_WINDOW_OPEN;
  792. /* ONREPL - do we need to release the replica here ? */
  793. windows_conn_disconnect (prp->conn);
  794. }
  795. else if (rc == UPDATE_CONNECTION_LOST)
  796. {
  797. dev_debug("windows_inc_run(STATE_SENDING_UPDATES) -> send_updates = UPDATE_CONNECTION_LOST -> STATE_BACKOFF_START");
  798. next_state = STATE_BACKOFF_START;
  799. }
  800. else if (rc == UPDATE_TIMEOUT)
  801. {
  802. dev_debug("windows_inc_run(STATE_SENDING_UPDATES) -> send_updates = UPDATE_TIMEOUT -> STATE_BACKOFF_START");
  803. next_state = STATE_BACKOFF_START;
  804. }
  805. }
  806. last_start_time = 0UL;
  807. break;
  808. }
  809. if ( run_dirsync )
  810. {
  811. /* Don't run dirsync if we encountered
  812. * an error when sending updates to AD. */
  813. if (rc == UPDATE_NO_MORE_UPDATES) {
  814. windows_dirsync_inc_run(prp);
  815. windows_private_save_dirsync_cookie(prp->agmt);
  816. }
  817. run_dirsync = PR_FALSE;
  818. }
  819. agmt_set_last_update_end(prp->agmt, current_time());
  820. agmt_set_update_in_progress(prp->agmt, PR_FALSE);
  821. /* If timed out, close the connection after released the replica */
  822. windows_release_replica(prp);
  823. if (rc == UPDATE_TIMEOUT) {
  824. windows_conn_disconnect(prp->conn);
  825. }
  826. /* call end incremental update callback */
  827. winsync_plugin_call_end_update_cb(prp->agmt,
  828. windows_private_get_directory_subtree(prp->agmt),
  829. windows_private_get_windows_subtree(prp->agmt),
  830. 0 /* is_total == FALSE */);
  831. if (rc == UPDATE_NO_MORE_UPDATES && num_changes_sent > 0)
  832. {
  833. if (pausetime > 0)
  834. {
  835. /* richm - 20020219 - If we have acquired the consumer, and another master has gone
  836. into backoff waiting for us to release it, we may acquire the replica sooner
  837. than the other master has a chance to, and the other master may not be able
  838. to acquire the consumer for a long time (hours, days?) if this server is
  839. under a heavy load (see reliab06 et. al. system tests)
  840. So, this sleep gives the other master(s) a chance to acquire the consumer
  841. replica */
  842. long loops = pausetime;
  843. /* the while loop is so that we don't just sleep and sleep if an
  844. event comes in that we should handle immediately (like shutdown) */
  845. slapi_log_error(SLAPI_LOG_REPL, windows_repl_plugin_name,
  846. "%s: Pausing updates for %ld seconds to allow other suppliers to update consumer\n",
  847. agmt_get_long_name(prp->agmt), pausetime);
  848. while (loops-- && !(PROTOCOL_IS_SHUTDOWN(prp)))
  849. {
  850. DS_Sleep(PR_SecondsToInterval(1));
  851. }
  852. }
  853. else if (num_changes_sent > 10)
  854. {
  855. /* wait for consumer to write its ruv if the replication was busy */
  856. /* When asked, consumer sends its ruv in cache to the supplier. */
  857. /* DS_Sleep ( PR_SecondsToInterval(1) ); */
  858. }
  859. }
  860. break;
  861. case STATE_STOP_FATAL_ERROR:
  862. /*
  863. * We encountered some sort of a fatal error. Suspend.
  864. */
  865. /* XXXggood update state in replica */
  866. agmt_set_last_update_status(prp->agmt, -1, 0, "Incremental update has failed and requires administrator action");
  867. dev_debug("windows_inc_run(STATE_STOP_FATAL_ERROR)");
  868. slapi_log_error(SLAPI_LOG_FATAL, windows_repl_plugin_name,
  869. "%s: Incremental update failed and requires administrator action\n",
  870. agmt_get_long_name(prp->agmt));
  871. next_state = STATE_STOP_FATAL_ERROR_PART2;
  872. break;
  873. case STATE_STOP_FATAL_ERROR_PART2:
  874. if (PROTOCOL_IS_SHUTDOWN(prp))
  875. {
  876. done = 1;
  877. break;
  878. }
  879. /* MAB: This state is the FATAL state where we are supposed to get
  880. as a result of a FATAL error on send_updates. But, as bug
  881. states, send_updates was always returning TRANSIENT errors and never
  882. FATAL... In other words, this code has never been tested before...
  883. As of 01/16/01, this piece of code was in a very dangerous state. In particular,
  884. 1) it does not catch any events
  885. 2) it is a terminal state (once reached it never transitions to a different state)
  886. Both things combined make this state to become a consuming infinite loop
  887. that is useless after all (we are in a fatal place requiring manual admin jobs */
  888. /* MAB: The following lines fix problem number 1 above... When the code gets
  889. into this state, it should only get a chance to get out of it by an
  890. EVENT_AGMT_CHANGED event... All other events should be ignored */
  891. else if (event_occurred(prp, EVENT_AGMT_CHANGED))
  892. {
  893. dev_debug("windows_inc_run(STATE_STOP_FATAL_ERROR): EVENT_AGMT_CHANGED received\n");
  894. /* Chance to recover for the EVENT_AGMT_CHANGED event.
  895. This is not mandatory, but fixes problem 2 above */
  896. next_state = STATE_STOP_NORMAL_TERMINATION;
  897. }
  898. else
  899. {
  900. dev_debug("windows_inc_run(STATE_STOP_FATAL_ERROR): Event received. Clearing it\n");
  901. reset_events (prp);
  902. }
  903. protocol_sleep (prp, PR_INTERVAL_NO_TIMEOUT);
  904. break;
  905. case STATE_STOP_NORMAL_TERMINATION:
  906. /*
  907. * We encountered some sort of a fatal error. Return.
  908. */
  909. /* XXXggood update state in replica */
  910. dev_debug("windows_inc_run(STATE_STOP_NORMAL_TERMINATION)");
  911. done = 1;
  912. break;
  913. }
  914. slapi_log_error(SLAPI_LOG_REPL, windows_repl_plugin_name,
  915. "%s: State: %s -> %s\n",
  916. agmt_get_long_name(prp->agmt),
  917. state2name(current_state), state2name(next_state));
  918. current_state = next_state;
  919. } while (!done);
  920. /* remove_protocol_callbacks(prp); */
  921. prp->stopped = 1;
  922. /* Cancel any linger timer that might be in effect... */
  923. conn_cancel_linger(prp->conn);
  924. /* ... and disconnect, if currently connected */
  925. conn_disconnect(prp->conn);
  926. LDAPDebug0Args( LDAP_DEBUG_TRACE, "<= windows_inc_run\n" );
  927. }
  928. /*
  929. * Go to sleep until awakened.
  930. */
  931. static void
  932. protocol_sleep(Private_Repl_Protocol *prp, PRIntervalTime duration)
  933. {
  934. LDAPDebug0Args( LDAP_DEBUG_TRACE, "=> protocol_sleep\n" );
  935. PR_ASSERT(NULL != prp);
  936. PR_Lock(prp->lock);
  937. /* we should not go to sleep if there are events available to be processed.
  938. Otherwise, we can miss the event that suppose to wake us up */
  939. if (prp->eventbits == 0)
  940. PR_WaitCondVar(prp->cvar, duration);
  941. else
  942. {
  943. slapi_log_error(SLAPI_LOG_REPL, windows_repl_plugin_name,
  944. "%s: Incremental protocol: can't go to sleep: event bits - %x\n",
  945. agmt_get_long_name(prp->agmt), prp->eventbits);
  946. }
  947. PR_Unlock(prp->lock);
  948. LDAPDebug0Args( LDAP_DEBUG_TRACE, "<= protocol_sleep\n" );
  949. }
  950. /*
  951. * Notify the protocol about some event. Signal the condition
  952. * variable in case the protocol is sleeping. Multiple occurences
  953. * of a single event type are not remembered (e.g. no stack
  954. * of events is maintained).
  955. */
  956. static void
  957. event_notify(Private_Repl_Protocol *prp, PRUint32 event)
  958. {
  959. LDAPDebug0Args( LDAP_DEBUG_TRACE, "=> event_notify\n" );
  960. PR_ASSERT(NULL != prp);
  961. PR_Lock(prp->lock);
  962. prp->eventbits |= event;
  963. PR_NotifyCondVar(prp->cvar);
  964. PR_Unlock(prp->lock);
  965. LDAPDebug0Args( LDAP_DEBUG_TRACE, "<= event_notify\n" );
  966. }
  967. /*
  968. * Test to see if an event occurred. The event is cleared when
  969. * read.
  970. */
  971. static PRUint32
  972. event_occurred(Private_Repl_Protocol *prp, PRUint32 event)
  973. {
  974. PRUint32 return_value;
  975. LDAPDebug0Args( LDAP_DEBUG_TRACE, "=> event_occurred\n" );
  976. PR_ASSERT(NULL != prp);
  977. PR_Lock(prp->lock);
  978. return_value = (prp->eventbits & event);
  979. prp->eventbits &= ~event; /* Clear event */
  980. PR_Unlock(prp->lock);
  981. LDAPDebug0Args( LDAP_DEBUG_TRACE, "<= event_occurred\n" );
  982. return return_value;
  983. }
  984. static void
  985. reset_events (Private_Repl_Protocol *prp)
  986. {
  987. LDAPDebug0Args( LDAP_DEBUG_TRACE, "=> reset_events\n" );
  988. PR_ASSERT(NULL != prp);
  989. PR_Lock(prp->lock);
  990. prp->eventbits = 0;
  991. PR_Unlock(prp->lock);
  992. LDAPDebug0Args( LDAP_DEBUG_TRACE, "<= reset_events\n" );
  993. }
  994. static PRBool
  995. is_dummy_operation (const slapi_operation_parameters *op)
  996. {
  997. LDAPDebug0Args( LDAP_DEBUG_TRACE, "=> is_dummy_operation\n" );
  998. LDAPDebug0Args( LDAP_DEBUG_TRACE, "<= is_dummy_operation\n" );
  999. return (strcmp (op->target_address.uniqueid, START_ITERATION_ENTRY_UNIQUEID) == 0);
  1000. }
  1001. void
  1002. w_cl5_operation_parameters_done (struct slapi_operation_parameters *sop)
  1003. {
  1004. LDAPDebug0Args( LDAP_DEBUG_TRACE, "=> w_cl5_operation_parameters_done\n" );
  1005. if(sop!=NULL) {
  1006. switch(sop->operation_type)
  1007. {
  1008. case SLAPI_OPERATION_BIND:
  1009. slapi_ch_free((void **)&(sop->p.p_bind.bind_saslmechanism));
  1010. if (sop->p.p_bind.bind_creds)
  1011. ber_bvecfree((struct berval**)&(sop->p.p_bind.bind_creds));
  1012. if (sop->p.p_bind.bind_ret_saslcreds)
  1013. ber_bvecfree((struct berval**)&(sop->p.p_bind.bind_ret_saslcreds));
  1014. sop->p.p_bind.bind_creds = NULL;
  1015. sop->p.p_bind.bind_ret_saslcreds = NULL;
  1016. break;
  1017. case SLAPI_OPERATION_COMPARE:
  1018. ava_done((struct ava *)&(sop->p.p_compare.compare_ava));
  1019. break;
  1020. case SLAPI_OPERATION_SEARCH:
  1021. slapi_ch_free((void **)&(sop->p.p_search.search_strfilter));
  1022. charray_free(sop->p.p_search.search_attrs);
  1023. slapi_filter_free(sop->p.p_search.search_filter,1);
  1024. break;
  1025. case SLAPI_OPERATION_MODRDN:
  1026. sop->p.p_modrdn.modrdn_deloldrdn = 0;
  1027. break;
  1028. case SLAPI_OPERATION_EXTENDED:
  1029. slapi_ch_free((void **)&(sop->p.p_extended.exop_oid));
  1030. if (sop->p.p_extended.exop_value)
  1031. ber_bvecfree((struct berval**)&(sop->p.p_extended.exop_value));
  1032. sop->p.p_extended.exop_value = NULL;
  1033. break;
  1034. default:
  1035. break;
  1036. }
  1037. }
  1038. operation_parameters_done(sop);
  1039. LDAPDebug0Args( LDAP_DEBUG_TRACE, "<= w_cl5_operation_parameters_done\n" );
  1040. }
  1041. /*
  1042. * Send a set of updates to the replica. Assumes that (1) the replica
  1043. * has already been acquired, (2) that the consumer's update vector has
  1044. * been checked and (3) that it's ok to send incremental updates.
  1045. * Returns:
  1046. * UPDATE_NO_MORE_UPDATES - all updates were sent succussfully
  1047. * UPDATE_TRANSIENT_ERROR - some non-permanent error occurred. Try again later.
  1048. * UPDATE_FATAL_ERROR - some bad, permanent error occurred.
  1049. * UPDATE_SCHEDULE_WINDOW_CLOSED - the schedule window closed on us.
  1050. */
  1051. static int
  1052. send_updates(Private_Repl_Protocol *prp, RUV *remote_update_vector, PRUint32 *num_changes_sent)
  1053. {
  1054. CL5Entry entry;
  1055. slapi_operation_parameters op;
  1056. int return_value;
  1057. int rc;
  1058. int set_mincsn = 0;
  1059. CL5ReplayIterator *changelog_iterator = NULL;
  1060. RUV *current_ruv = ruv_dup(remote_update_vector);
  1061. CSN *mincsn = NULL;
  1062. LDAPDebug0Args( LDAP_DEBUG_TRACE, "=> send_updates\n" );
  1063. *num_changes_sent = 0;
  1064. /* Check if the min csn is set in our RUV to see if we need to set it below. */
  1065. ruv_get_min_csn(current_ruv, &mincsn);
  1066. if (!mincsn) {
  1067. set_mincsn = 1;
  1068. } else {
  1069. csn_free(&mincsn);
  1070. }
  1071. /*
  1072. * Iterate over the changelog. Retrieve each update,
  1073. * construct an appropriate LDAP operation,
  1074. * attaching the CSN, and send the change.
  1075. */
  1076. rc = cl5CreateReplayIteratorEx( prp, remote_update_vector, &changelog_iterator, agmt_get_consumerRID(prp->agmt));
  1077. if (CL5_SUCCESS != rc)
  1078. {
  1079. switch (rc)
  1080. {
  1081. case CL5_BAD_DATA: /* invalid parameter passed to the function */
  1082. slapi_log_error(SLAPI_LOG_FATAL, windows_repl_plugin_name,
  1083. "%s: Invalid parameter passed to cl5CreateReplayIterator\n",
  1084. agmt_get_long_name(prp->agmt));
  1085. return_value = UPDATE_FATAL_ERROR;
  1086. break;
  1087. case CL5_BAD_FORMAT: /* db data has unexpected format */
  1088. slapi_log_error(SLAPI_LOG_FATAL, windows_repl_plugin_name,
  1089. "%s: Unexpected format encountered in changelog database\n",
  1090. agmt_get_long_name(prp->agmt));
  1091. return_value = UPDATE_FATAL_ERROR;
  1092. break;
  1093. case CL5_BAD_STATE: /* changelog is in an incorrect state for attempted operation */
  1094. slapi_log_error(SLAPI_LOG_FATAL, windows_repl_plugin_name,
  1095. "%s: Changelog database was in an incorrect state\n",
  1096. agmt_get_long_name(prp->agmt));
  1097. return_value = UPDATE_FATAL_ERROR;
  1098. break;
  1099. case CL5_BAD_DBVERSION: /* changelog has invalid dbversion */
  1100. slapi_log_error(SLAPI_LOG_FATAL, windows_repl_plugin_name,
  1101. "%s: Incorrect dbversion found in changelog database\n",
  1102. agmt_get_long_name(prp->agmt));
  1103. return_value = UPDATE_FATAL_ERROR;
  1104. break;
  1105. case CL5_DB_ERROR: /* database error */
  1106. slapi_log_error(SLAPI_LOG_FATAL, windows_repl_plugin_name,
  1107. "%s: A changelog database error was encountered\n",
  1108. agmt_get_long_name(prp->agmt));
  1109. return_value = UPDATE_FATAL_ERROR;
  1110. break;
  1111. case CL5_NOTFOUND: /* we have no changes to send */
  1112. slapi_log_error(SLAPI_LOG_REPL, windows_repl_plugin_name,
  1113. "%s: No changes to send\n",
  1114. agmt_get_long_name(prp->agmt));
  1115. return_value = UPDATE_NO_MORE_UPDATES;
  1116. break;
  1117. case CL5_MEMORY_ERROR: /* memory allocation failed */
  1118. slapi_log_error(SLAPI_LOG_FATAL, windows_repl_plugin_name,
  1119. "%s: Memory allocation error occurred\n",
  1120. agmt_get_long_name(prp->agmt));
  1121. return_value = UPDATE_FATAL_ERROR;
  1122. break;
  1123. case CL5_SYSTEM_ERROR: /* NSPR error occurred: use PR_GetError for furhter info */
  1124. slapi_log_error(SLAPI_LOG_FATAL, windows_repl_plugin_name,
  1125. "%s: An NSPR error (%d) occurred\n",
  1126. agmt_get_long_name(prp->agmt), PR_GetError());
  1127. return_value = UPDATE_TRANSIENT_ERROR;
  1128. break;
  1129. case CL5_CSN_ERROR: /* CSN API failed */
  1130. slapi_log_error(SLAPI_LOG_FATAL, windows_repl_plugin_name,
  1131. "%s: A CSN API failure was encountered\n",
  1132. agmt_get_long_name(prp->agmt));
  1133. return_value = UPDATE_TRANSIENT_ERROR;
  1134. break;
  1135. case CL5_RUV_ERROR: /* RUV API failed */
  1136. slapi_log_error(SLAPI_LOG_FATAL, windows_repl_plugin_name,
  1137. "%s: An RUV API failure occurred\n",
  1138. agmt_get_long_name(prp->agmt));
  1139. return_value = UPDATE_TRANSIENT_ERROR;
  1140. break;
  1141. case CL5_OBJSET_ERROR: /* namedobjset api failed */
  1142. slapi_log_error(SLAPI_LOG_FATAL, windows_repl_plugin_name,
  1143. "%s: A namedobject API failure occurred\n",
  1144. agmt_get_long_name(prp->agmt));
  1145. return_value = UPDATE_TRANSIENT_ERROR;
  1146. break;
  1147. case CL5_PURGED_DATA: /* requested data has been purged */
  1148. slapi_log_error(SLAPI_LOG_FATAL, windows_repl_plugin_name,
  1149. "%s: Data required to update replica has been purged. "
  1150. "The replica must be reinitialized.\n",
  1151. agmt_get_long_name(prp->agmt));
  1152. return_value = UPDATE_FATAL_ERROR;
  1153. break;
  1154. case CL5_MISSING_DATA: /* data should be in the changelog, but is missing */
  1155. slapi_log_error(SLAPI_LOG_FATAL, windows_repl_plugin_name,
  1156. "%s: Missing data encountered\n",
  1157. agmt_get_long_name(prp->agmt));
  1158. return_value = UPDATE_FATAL_ERROR;
  1159. break;
  1160. case CL5_UNKNOWN_ERROR: /* unclassified error */
  1161. slapi_log_error(SLAPI_LOG_FATAL, windows_repl_plugin_name,
  1162. "%s: An unknown error was ecountered\n",
  1163. agmt_get_long_name(prp->agmt));
  1164. return_value = UPDATE_TRANSIENT_ERROR;
  1165. break;
  1166. default:
  1167. slapi_log_error(SLAPI_LOG_FATAL, windows_repl_plugin_name,
  1168. "%s: An unknown error (%d) occurred "
  1169. "(cl5CreateReplayIterator)\n",
  1170. agmt_get_long_name(prp->agmt), rc);
  1171. return_value = UPDATE_TRANSIENT_ERROR;
  1172. }
  1173. }
  1174. else
  1175. {
  1176. int finished = 0;
  1177. ConnResult replay_crc;
  1178. char csn_str[CSN_STRSIZE];
  1179. memset ( (void*)&op, 0, sizeof (op) );
  1180. entry.op = &op;
  1181. do {
  1182. int mark_record_done = 0;
  1183. w_cl5_operation_parameters_done ( entry.op );
  1184. memset ( (void*)entry.op, 0, sizeof (op) );
  1185. rc = cl5GetNextOperationToReplay(changelog_iterator, &entry);
  1186. switch (rc)
  1187. {
  1188. case CL5_SUCCESS:
  1189. /* check that we don't return dummy entries */
  1190. if (is_dummy_operation (entry.op))
  1191. {
  1192. slapi_log_error(SLAPI_LOG_FATAL, windows_repl_plugin_name,
  1193. "%s: changelog iteration code returned a dummy entry with csn %s, "
  1194. "skipping ...\n",
  1195. agmt_get_long_name(prp->agmt), csn_as_string(entry.op->csn, PR_FALSE, csn_str));
  1196. continue;
  1197. }
  1198. /* This is where the work actually happens: */
  1199. replay_crc = windows_replay_update(prp, entry.op);
  1200. if (CONN_OPERATION_SUCCESS != replay_crc)
  1201. {
  1202. int operation, error;
  1203. conn_get_error(prp->conn, &operation, &error);
  1204. csn_as_string(entry.op->csn, PR_FALSE, csn_str);
  1205. /* Figure out what to do next */
  1206. if (CONN_OPERATION_FAILED == replay_crc)
  1207. {
  1208. /* Map ldap error code to return value */
  1209. if (!windows_ignore_error_and_keep_going(error))
  1210. {
  1211. return_value = UPDATE_TRANSIENT_ERROR;
  1212. finished = 1;
  1213. }
  1214. else
  1215. {
  1216. agmt_inc_last_update_changecount (prp->agmt, csn_get_replicaid(entry.op->csn), 1 /*skipped*/);
  1217. mark_record_done = 1;
  1218. }
  1219. slapi_log_error(finished ? SLAPI_LOG_FATAL : slapi_log_urp, windows_repl_plugin_name,
  1220. "%s: Consumer failed to replay change (uniqueid %s, CSN %s): %s. %s.\n",
  1221. agmt_get_long_name(prp->agmt),
  1222. entry.op->target_address.uniqueid, csn_str,
  1223. ldap_err2string(error),
  1224. finished ? "Will retry later" : "Skipping");
  1225. }
  1226. else if (CONN_NOT_CONNECTED == replay_crc)
  1227. {
  1228. /* We lost the connection - enter backoff state */
  1229. return_value = UPDATE_TRANSIENT_ERROR;
  1230. finished = 1;
  1231. slapi_log_error(SLAPI_LOG_FATAL, windows_repl_plugin_name,
  1232. "%s: Consumer failed to replay change (uniqueid %s, CSN %s): "
  1233. "%s. Will retry later.\n",
  1234. agmt_get_long_name(prp->agmt),
  1235. entry.op->target_address.uniqueid, csn_str,
  1236. error ? ldap_err2string(error) : "Connection lost");
  1237. }
  1238. else if (CONN_TIMEOUT == replay_crc)
  1239. {
  1240. return_value = UPDATE_TIMEOUT;
  1241. finished = 1;
  1242. slapi_log_error(SLAPI_LOG_FATAL, windows_repl_plugin_name,
  1243. "%s: Consumer timed out to replay change (uniqueid %s, CSN %s): "
  1244. "%s.\n",
  1245. agmt_get_long_name(prp->agmt),
  1246. entry.op->target_address.uniqueid, csn_str,
  1247. error ? ldap_err2string(error) : "Timeout");
  1248. }
  1249. else if (CONN_LOCAL_ERROR == replay_crc)
  1250. {
  1251. /*
  1252. * Something bad happened on the local server - enter
  1253. * backoff state.
  1254. */
  1255. return_value = UPDATE_TRANSIENT_ERROR;
  1256. finished = 1;
  1257. slapi_log_error(SLAPI_LOG_FATAL, windows_repl_plugin_name,
  1258. "%s: Failed to replay change (uniqueid %s, CSN %s): "
  1259. "Local error. Will retry later.\n",
  1260. agmt_get_long_name(prp->agmt),
  1261. entry.op->target_address.uniqueid, csn_str);
  1262. }
  1263. }
  1264. else
  1265. {
  1266. /* Positive response received */
  1267. (*num_changes_sent)++;
  1268. agmt_inc_last_update_changecount (prp->agmt, csn_get_replicaid(entry.op->csn), 0 /*replayed*/);
  1269. mark_record_done = 1;
  1270. }
  1271. if (mark_record_done)
  1272. {
  1273. /* If this is the very first change being sent,
  1274. * it's possible that we haven't set a min csn
  1275. * in the RUV yet. This is possible because we
  1276. * simply copy the supplier RUV during the total
  1277. * update process. The supplier RUV will not have
  1278. * a min or max csn set if no changes have ever
  1279. * been written to it's changelog. We need to set
  1280. * the min csn for the consumer here to prevent
  1281. * problems with further sync operations. */
  1282. if (set_mincsn) {
  1283. ruv_set_min_csn(current_ruv, entry.op->csn, NULL);
  1284. set_mincsn = 0;
  1285. }
  1286. /* Bring the consumers (AD) RUV up to date.
  1287. * This sets the max csn. */
  1288. ruv_force_csn_update(current_ruv, entry.op->csn);
  1289. }
  1290. break;
  1291. case CL5_BAD_DATA:
  1292. slapi_log_error(SLAPI_LOG_FATAL, windows_repl_plugin_name,
  1293. "%s: Invalid parameter passed to cl5GetNextOperationToReplay\n",
  1294. agmt_get_long_name(prp->agmt));
  1295. return_value = UPDATE_FATAL_ERROR;
  1296. finished = 1;
  1297. break;
  1298. case CL5_NOTFOUND:
  1299. slapi_log_error(SLAPI_LOG_REPL, windows_repl_plugin_name,
  1300. "%s: No more updates to send (cl5GetNextOperationToReplay)\n",
  1301. agmt_get_long_name(prp->agmt));
  1302. return_value = UPDATE_NO_MORE_UPDATES;
  1303. finished = 1;
  1304. break;
  1305. case CL5_DB_ERROR:
  1306. slapi_log_error(SLAPI_LOG_FATAL, windows_repl_plugin_name,
  1307. "%s: A database error occurred (cl5GetNextOperationToReplay)\n",
  1308. agmt_get_long_name(prp->agmt));
  1309. return_value = UPDATE_FATAL_ERROR;
  1310. finished = 1;
  1311. break;
  1312. case CL5_BAD_FORMAT:
  1313. slapi_log_error(SLAPI_LOG_FATAL, windows_repl_plugin_name,
  1314. "%s: A malformed changelog entry was encountered (cl5GetNextOperationToReplay)\n",
  1315. agmt_get_long_name(prp->agmt));
  1316. break;
  1317. case CL5_MEMORY_ERROR:
  1318. slapi_log_error(SLAPI_LOG_FATAL, windows_repl_plugin_name,
  1319. "%s: A memory allocation error occurred (cl5GetNextOperationToRepla)\n",
  1320. agmt_get_long_name(prp->agmt));
  1321. return_value = UPDATE_FATAL_ERROR;
  1322. break;
  1323. default:
  1324. slapi_log_error(SLAPI_LOG_FATAL, windows_repl_plugin_name,
  1325. "%s: Unknown error code (%d) returned from cl5GetNextOperationToReplay\n",
  1326. agmt_get_long_name(prp->agmt), rc);
  1327. return_value = UPDATE_TRANSIENT_ERROR;
  1328. break;
  1329. }
  1330. /* Check for protocol shutdown */
  1331. if (prp->terminate)
  1332. {
  1333. return_value = UPDATE_NO_MORE_UPDATES;
  1334. finished = 1;
  1335. }
  1336. if (*num_changes_sent >= MAX_CHANGES_PER_SESSION)
  1337. {
  1338. return_value = UPDATE_YIELD;
  1339. finished = 1;
  1340. }
  1341. } while (!finished);
  1342. w_cl5_operation_parameters_done ( entry.op );
  1343. cl5DestroyReplayIterator(&changelog_iterator);
  1344. }
  1345. /* Save the RUV that we successfully replayed, this ensures that next time we start off at the next changelog record */
  1346. if (current_ruv)
  1347. {
  1348. agmt_set_consumer_ruv(prp->agmt,current_ruv);
  1349. ruv_destroy(&current_ruv);
  1350. }
  1351. LDAPDebug0Args( LDAP_DEBUG_TRACE, "<= send_updates\n" );
  1352. return return_value;
  1353. }
  1354. /*
  1355. * XXXggood this should probably be in the superclass, since the full update
  1356. * protocol is going to need it too.
  1357. */
  1358. static int
  1359. windows_inc_stop(Private_Repl_Protocol *prp)
  1360. {
  1361. int return_value;
  1362. PRIntervalTime start, maxwait, now;
  1363. int seconds = 1200;
  1364. LDAPDebug0Args( LDAP_DEBUG_TRACE, "=> windows_inc_stop\n" );
  1365. maxwait = PR_SecondsToInterval(seconds);
  1366. prp->terminate = 1;
  1367. event_notify(prp, EVENT_PROTOCOL_SHUTDOWN);
  1368. start = PR_IntervalNow();
  1369. now = start;
  1370. while (!prp->stopped && ((now - start) < maxwait))
  1371. {
  1372. DS_Sleep(PR_SecondsToInterval(1));
  1373. now = PR_IntervalNow();
  1374. }
  1375. if (!prp->stopped)
  1376. {
  1377. /* Isn't listening. Do something drastic. */
  1378. return_value = -1;
  1379. slapi_log_error(SLAPI_LOG_REPL, windows_repl_plugin_name,
  1380. "%s: windows_inc_stop: protocol does not stop after %d seconds\n",
  1381. agmt_get_long_name(prp->agmt), seconds);
  1382. }
  1383. else
  1384. {
  1385. return_value = 0;
  1386. slapi_log_error(SLAPI_LOG_REPL, windows_repl_plugin_name,
  1387. "%s: windows_inc_stop: protocol stopped after %d seconds\n",
  1388. agmt_get_long_name(prp->agmt),
  1389. PR_IntervalToSeconds(now-start));
  1390. }
  1391. LDAPDebug0Args( LDAP_DEBUG_TRACE, "<= windows_inc_stop\n" );
  1392. return return_value;
  1393. }
  1394. static int
  1395. windows_inc_status(Private_Repl_Protocol *prp)
  1396. {
  1397. int return_value = 0;
  1398. LDAPDebug0Args( LDAP_DEBUG_TRACE, "=> windows_inc_status\n" );
  1399. LDAPDebug0Args( LDAP_DEBUG_TRACE, "<= windows_inc_status\n" );
  1400. return return_value;
  1401. }
  1402. static void
  1403. windows_inc_notify_update(Private_Repl_Protocol *prp)
  1404. {
  1405. LDAPDebug0Args( LDAP_DEBUG_TRACE, "=> windows_inc_notify_update\n" );
  1406. event_notify(prp, EVENT_TRIGGERING_CRITERIA_MET);
  1407. LDAPDebug0Args( LDAP_DEBUG_TRACE, "<= windows_inc_notify_update\n" );
  1408. }
  1409. static void
  1410. windows_inc_update_now(Private_Repl_Protocol *prp)
  1411. {
  1412. LDAPDebug0Args( LDAP_DEBUG_TRACE, "=> windows_inc_update_now\n" );
  1413. event_notify(prp, EVENT_REPLICATE_NOW);
  1414. LDAPDebug0Args( LDAP_DEBUG_TRACE, "<= windows_inc_update_now\n" );
  1415. }
  1416. static void
  1417. windows_inc_notify_agmt_changed(Private_Repl_Protocol *prp)
  1418. {
  1419. LDAPDebug0Args( LDAP_DEBUG_TRACE, "=> windows_inc_notify_agmt_changed\n" );
  1420. event_notify(prp, EVENT_AGMT_CHANGED);
  1421. LDAPDebug0Args( LDAP_DEBUG_TRACE, "<= windows_inc_notify_agmt_changed\n" );
  1422. }
  1423. static void
  1424. windows_inc_notify_window_opened (Private_Repl_Protocol *prp)
  1425. {
  1426. LDAPDebug0Args( LDAP_DEBUG_TRACE, "=> windows_inc_notify_window_opened\n" );
  1427. event_notify(prp, EVENT_WINDOW_OPENED);
  1428. LDAPDebug0Args( LDAP_DEBUG_TRACE, "<= windows_inc_notify_window_opened\n" );
  1429. }
  1430. static void
  1431. windows_inc_notify_window_closed (Private_Repl_Protocol *prp)
  1432. {
  1433. LDAPDebug0Args( LDAP_DEBUG_TRACE, "=> windows_inc_notify_window_closed\n" );
  1434. event_notify(prp, EVENT_WINDOW_CLOSED);
  1435. LDAPDebug0Args( LDAP_DEBUG_TRACE, "<= windows_inc_notify_window_closed\n" );
  1436. }
  1437. Private_Repl_Protocol *
  1438. Windows_Inc_Protocol_new(Repl_Protocol *rp)
  1439. {
  1440. windows_inc_private *rip = NULL;
  1441. Private_Repl_Protocol *prp = (Private_Repl_Protocol *)slapi_ch_malloc(sizeof(Private_Repl_Protocol));
  1442. LDAPDebug0Args( LDAP_DEBUG_TRACE, "=> Windows_Inc_Protocol_new\n" );
  1443. prp->delete = windows_inc_delete;
  1444. prp->run = windows_inc_run;
  1445. prp->stop = windows_inc_stop;
  1446. prp->status = windows_inc_status;
  1447. prp->notify_update = windows_inc_notify_update;
  1448. prp->notify_agmt_changed = windows_inc_notify_agmt_changed;
  1449. prp->notify_window_opened = windows_inc_notify_window_opened;
  1450. prp->notify_window_closed = windows_inc_notify_window_closed;
  1451. prp->update_now = windows_inc_update_now;
  1452. prp->replica_object = prot_get_replica_object(rp);
  1453. if ((prp->lock = PR_NewLock()) == NULL)
  1454. {
  1455. goto loser;
  1456. }
  1457. if ((prp->cvar = PR_NewCondVar(prp->lock)) == NULL)
  1458. {
  1459. goto loser;
  1460. }
  1461. prp->stopped = 0;
  1462. prp->terminate = 0;
  1463. prp->eventbits = 0;
  1464. prp->conn = prot_get_connection(rp);
  1465. prp->agmt = prot_get_agreement(rp);
  1466. prp->last_acquire_response_code = NSDS50_REPL_REPLICA_READY;
  1467. rip = (void *)slapi_ch_malloc(sizeof(windows_inc_private));
  1468. rip->ruv = NULL;
  1469. rip->backoff = NULL;
  1470. rip->rp = rp;
  1471. prp->private = (void *)rip;
  1472. prp->replica_acquired = PR_FALSE;
  1473. LDAPDebug0Args( LDAP_DEBUG_TRACE, "<= Windows_Inc_Protocol_new\n" );
  1474. return prp;
  1475. loser:
  1476. windows_inc_delete(&prp);
  1477. LDAPDebug0Args( LDAP_DEBUG_TRACE, "<= Windows_Inc_Protocol_new (loser)\n" );
  1478. return NULL;
  1479. }
  1480. static void
  1481. windows_inc_backoff_expired(time_t timer_fire_time, void *arg)
  1482. {
  1483. Private_Repl_Protocol *prp = (Private_Repl_Protocol *)arg;
  1484. LDAPDebug0Args( LDAP_DEBUG_TRACE, "=> windows_inc_backoff_expired\n" );
  1485. PR_ASSERT(NULL != prp);
  1486. event_notify(prp, EVENT_BACKOFF_EXPIRED);
  1487. LDAPDebug0Args( LDAP_DEBUG_TRACE, "<= windows_inc_backoff_expired\n" );
  1488. }
  1489. /*
  1490. * Examine the update vector and determine our course of action.
  1491. * There are 3 different possibilities, plus a catch-all error:
  1492. * 1 - no update vector (ruv is NULL). The consumer's replica is
  1493. * pristine, so it needs to be initialized. Return
  1494. * EXAMINE_RUV_PRISTINE_REPLICA.
  1495. * 2 - ruv is present, but its database generation ID doesn't
  1496. * match the local generation ID. This means that either
  1497. * the local replica must be reinitialized from the remote
  1498. * replica or vice-versa. Return
  1499. * EXAMINE_RUV_GENERATION_MISMATCH.
  1500. * 3 - ruv is present, and we have all updates needed to bring
  1501. * the replica up to date using the incremental protocol.
  1502. * return EXAMINE_RUV_OK.
  1503. * 4 - parameter error. Return EXAMINE_RUV_PARAM_ERROR
  1504. */
  1505. static int
  1506. windows_examine_update_vector(Private_Repl_Protocol *prp, RUV *remote_ruv)
  1507. {
  1508. int return_value;
  1509. LDAPDebug0Args( LDAP_DEBUG_TRACE, "=> windows_examine_update_vector\n" );
  1510. PR_ASSERT(NULL != prp);
  1511. if (NULL == prp)
  1512. {
  1513. return_value = EXAMINE_RUV_PARAM_ERROR;
  1514. }
  1515. else if (NULL == remote_ruv)
  1516. {
  1517. return_value = EXAMINE_RUV_PRISTINE_REPLICA;
  1518. }
  1519. else
  1520. {
  1521. char *local_gen = NULL;
  1522. char *remote_gen = ruv_get_replica_generation(remote_ruv);
  1523. Object *local_ruv_obj;
  1524. RUV *local_ruv;
  1525. Replica *replica;
  1526. PR_ASSERT(NULL != prp->replica_object);
  1527. replica = object_get_data(prp->replica_object);
  1528. PR_ASSERT(NULL != replica);
  1529. local_ruv_obj = replica_get_ruv (replica);
  1530. if (NULL != local_ruv_obj)
  1531. {
  1532. local_ruv = (RUV*) object_get_data (local_ruv_obj);
  1533. PR_ASSERT (local_ruv);
  1534. local_gen = ruv_get_replica_generation(local_ruv);
  1535. object_release (local_ruv_obj);
  1536. }
  1537. if (NULL == remote_gen || NULL == local_gen || strcmp(remote_gen, local_gen) != 0)
  1538. {
  1539. return_value = EXAMINE_RUV_GENERATION_MISMATCH;
  1540. }
  1541. else
  1542. {
  1543. return_value = EXAMINE_RUV_OK;
  1544. }
  1545. slapi_ch_free((void**)&remote_gen);
  1546. slapi_ch_free((void**)&local_gen);
  1547. }
  1548. LDAPDebug0Args( LDAP_DEBUG_TRACE, "<= windows_examine_update_vector\n" );
  1549. return return_value;
  1550. }
  1551. /* this function converts an aquisition code to a string - for debug output */
  1552. static const char*
  1553. acquire2name (int code)
  1554. {
  1555. switch (code)
  1556. {
  1557. case ACQUIRE_SUCCESS: return "success";
  1558. case ACQUIRE_REPLICA_BUSY: return "replica_busy";
  1559. case ACQUIRE_FATAL_ERROR: return "fatal_error";
  1560. case ACQUIRE_CONSUMER_WAS_UPTODATE: return "consumer_was_uptodate";
  1561. case ACQUIRE_TRANSIENT_ERROR: return "transient_error";
  1562. default: return "invalid_code";
  1563. }
  1564. }
  1565. /* this function converts a state to its name - for debug output */
  1566. static const char*
  1567. state2name (int state)
  1568. {
  1569. LDAPDebug0Args( LDAP_DEBUG_TRACE, "=> state2name\n" );
  1570. LDAPDebug0Args( LDAP_DEBUG_TRACE, "<= state2name\n" );
  1571. switch (state)
  1572. {
  1573. case STATE_START: return "start";
  1574. case STATE_WAIT_WINDOW_OPEN: return "wait_for_window_to_open";
  1575. case STATE_WAIT_CHANGES: return "wait_for_changes";
  1576. case STATE_READY_TO_ACQUIRE: return "ready_to_acquire_replica";
  1577. case STATE_BACKOFF_START: return "start_backoff";
  1578. case STATE_BACKOFF: return "backoff";
  1579. case STATE_SENDING_UPDATES: return "sending_updates";
  1580. case STATE_STOP_FATAL_ERROR: return "stop_fatal_error";
  1581. case STATE_STOP_FATAL_ERROR_PART2: return "stop_fatal_error";
  1582. case STATE_STOP_NORMAL_TERMINATION: return "stop_normal_termination";
  1583. default: return "invalid_state";
  1584. }
  1585. }
  1586. /* this function convert s an event to its name - for debug output */
  1587. static const char*
  1588. event2name (int event)
  1589. {
  1590. LDAPDebug0Args( LDAP_DEBUG_TRACE, "=> event2name\n" );
  1591. LDAPDebug0Args( LDAP_DEBUG_TRACE, "<= event2name\n" );
  1592. switch (event)
  1593. {
  1594. case EVENT_WINDOW_OPENED: return "update_window_opened";
  1595. case EVENT_WINDOW_CLOSED: return "update_window_closed";
  1596. case EVENT_TRIGGERING_CRITERIA_MET: return "data_modified";
  1597. case EVENT_BACKOFF_EXPIRED: return "backoff_timer_expired";
  1598. case EVENT_REPLICATE_NOW: return "replicate_now";
  1599. case EVENT_PROTOCOL_SHUTDOWN: return "protocol_shutdown";
  1600. case EVENT_AGMT_CHANGED: return "agreement_changed";
  1601. case EVENT_RUN_DIRSYNC: return "run_dirsync";
  1602. default: return "invalid_event";
  1603. }
  1604. }
  1605. static void
  1606. periodic_dirsync(time_t when, void *arg)
  1607. {
  1608. LDAPDebug0Args( LDAP_DEBUG_TRACE, "=> periodic_dirsync\n" );
  1609. slapi_log_error(SLAPI_LOG_REPL, windows_repl_plugin_name,
  1610. "Running Dirsync \n");
  1611. event_notify( (Private_Repl_Protocol*) arg, EVENT_RUN_DIRSYNC);
  1612. LDAPDebug0Args( LDAP_DEBUG_TRACE, "<= periodic_dirsync\n" );
  1613. }