cl5_clcache.c 29 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) 2005 Red Hat, Inc.
  35. * All rights reserved.
  36. * END COPYRIGHT BLOCK **/
  37. #ifdef HAVE_CONFIG_H
  38. # include <config.h>
  39. #endif
  40. #include "errno.h" /* ENOMEM, EVAL used by Berkeley DB */
  41. #include "db.h" /* Berkeley DB */
  42. #include "cl5.h" /* changelog5Config */
  43. #include "cl5_clcache.h"
  44. /* newer bdb uses DB_BUFFER_SMALL instead of ENOMEM as the
  45. error return if the given buffer in which to load a
  46. key or value is too small - if it is not defined, define
  47. it here to ENOMEM
  48. */
  49. #ifndef DB_BUFFER_SMALL
  50. #define DB_BUFFER_SMALL ENOMEM
  51. #endif
  52. /*
  53. * Constants for the buffer pool:
  54. *
  55. * DEFAULT_CLC_BUFFER_PAGE_COUNT
  56. * Little performance boost if it is too small.
  57. *
  58. * DEFAULT_CLC_BUFFER_PAGE_SIZE
  59. * Its value is determined based on the DB requirement that
  60. * the buffer size should be the multiple of 1024.
  61. */
  62. #define DEFAULT_CLC_BUFFER_COUNT_MIN 10
  63. #define DEFAULT_CLC_BUFFER_COUNT_MAX 0
  64. #define DEFAULT_CLC_BUFFER_PAGE_COUNT 32
  65. #define DEFAULT_CLC_BUFFER_PAGE_SIZE 1024
  66. enum {
  67. CLC_STATE_READY = 0, /* ready to iterate */
  68. CLC_STATE_UP_TO_DATE, /* remote RUV already covers the CSN */
  69. CLC_STATE_CSN_GT_RUV, /* local RUV doesn't conver the CSN */
  70. CLC_STATE_NEW_RID, /* unknown RID to local RUVs */
  71. CLC_STATE_UNSAFE_RUV_CHANGE,/* (RUV1 < maxcsn-in-buffer) && (RUV1 < RUV1') */
  72. CLC_STATE_DONE, /* no more change */
  73. CLC_STATE_ABORTING /* abort replication session */
  74. };
  75. typedef struct clc_busy_list CLC_Busy_List;
  76. struct csn_seq_ctrl_block {
  77. ReplicaId rid; /* RID this block serves */
  78. CSN *consumer_maxcsn; /* Don't send CSN <= this */
  79. CSN *local_maxcsn; /* Don't send CSN > this */
  80. CSN *prev_local_maxcsn; /* */
  81. int state; /* CLC_STATE_* */
  82. };
  83. /*
  84. * Each cl5replayiterator acquires a buffer from the buffer pool
  85. * at the beginning of a replication session, and returns it back
  86. * at the end.
  87. */
  88. struct clc_buffer {
  89. char *buf_agmt_name; /* agreement acquired this buffer */
  90. ReplicaId buf_consumer_rid; /* help checking threshold csn */
  91. const RUV *buf_consumer_ruv; /* used to skip change */
  92. const RUV *buf_local_ruv; /* used to refresh local_maxcsn */
  93. /*
  94. * fields for retriving data from DB
  95. */
  96. int buf_state;
  97. CSN *buf_current_csn;
  98. int buf_load_flag; /* db flag DB_MULTIPLE_KEY, DB_SET, DB_NEXT */
  99. DBC *buf_cursor;
  100. DBT buf_key; /* current csn string */
  101. DBT buf_data; /* data retrived from db */
  102. void *buf_record_ptr; /* ptr to the current record in data */
  103. CSN *buf_missing_csn; /* used to detect persistent missing of CSN */
  104. /* fields for control the CSN sequence sent to the consumer */
  105. struct csn_seq_ctrl_block *buf_cscbs [MAX_NUM_OF_MASTERS];
  106. int buf_num_cscbs; /* number of csn sequence ctrl blocks */
  107. /* fields for debugging stat */
  108. int buf_load_cnt; /* number of loads for session */
  109. int buf_record_cnt; /* number of changes for session */
  110. int buf_record_skipped; /* number of changes skipped */
  111. /*
  112. * fields that should be accessed via bl_lock or pl_lock
  113. */
  114. CLC_Buffer *buf_next; /* next buffer in the same list */
  115. CLC_Busy_List *buf_busy_list; /* which busy list I'm in */
  116. };
  117. /*
  118. * Each changelog has a busy buffer list
  119. */
  120. struct clc_busy_list {
  121. PRLock *bl_lock;
  122. DB *bl_db; /* changelog db handle */
  123. CLC_Buffer *bl_buffers; /* busy buffers of this list */
  124. CLC_Busy_List *bl_next; /* next busy list in the pool */
  125. };
  126. /*
  127. * Each process has a buffer pool
  128. */
  129. struct clc_pool {
  130. Slapi_RWLock *pl_lock; /* cl writer and agreements */
  131. DB_ENV **pl_dbenv; /* pointer to DB_ENV for all the changelog files */
  132. CLC_Busy_List *pl_busy_lists; /* busy buffer lists, one list per changelog file */
  133. int pl_buffer_cnt_now; /* total number of buffers */
  134. int pl_buffer_cnt_min; /* free a newly returned buffer if _now > _min */
  135. int pl_buffer_cnt_max; /* no use */
  136. int pl_buffer_default_pages; /* num of pages in a new buffer */
  137. };
  138. /* static variables */
  139. static struct clc_pool *_pool = NULL; /* process's buffer pool */
  140. /* static prototypes */
  141. static int clcache_adjust_anchorcsn ( CLC_Buffer *buf );
  142. static void clcache_refresh_consumer_maxcsns ( CLC_Buffer *buf );
  143. static int clcache_refresh_local_maxcsns ( CLC_Buffer *buf );
  144. static int clcache_skip_change ( CLC_Buffer *buf );
  145. static int clcache_load_buffer_bulk ( CLC_Buffer *buf, int flag );
  146. static int clcache_open_cursor ( DB_TXN *txn, CLC_Buffer *buf, DBC **cursor );
  147. static int clcache_cursor_get ( DBC *cursor, CLC_Buffer *buf, int flag );
  148. static struct csn_seq_ctrl_block *clcache_new_cscb ();
  149. static void clcache_free_cscb ( struct csn_seq_ctrl_block ** cscb );
  150. static CLC_Buffer *clcache_new_buffer ( ReplicaId consumer_rid );
  151. static void clcache_delete_buffer ( CLC_Buffer **buf );
  152. static CLC_Busy_List *clcache_new_busy_list ();
  153. static void clcache_delete_busy_list ( CLC_Busy_List **bl );
  154. static int clcache_enqueue_busy_list( DB *db, CLC_Buffer *buf );
  155. static void csn_dup_or_init_by_csn ( CSN **csn1, CSN *csn2 );
  156. /*
  157. * Initiates the process buffer pool. This should be done
  158. * once and only once when process starts.
  159. */
  160. int
  161. clcache_init ( DB_ENV **dbenv )
  162. {
  163. if (_pool) {
  164. return 0; /* already initialized */
  165. }
  166. if (NULL == dbenv) {
  167. return -1;
  168. }
  169. _pool = (struct clc_pool*) slapi_ch_calloc ( 1, sizeof ( struct clc_pool ));
  170. _pool->pl_dbenv = dbenv;
  171. _pool->pl_buffer_cnt_min = DEFAULT_CLC_BUFFER_COUNT_MIN;
  172. _pool->pl_buffer_cnt_max = DEFAULT_CLC_BUFFER_COUNT_MAX;
  173. _pool->pl_buffer_default_pages = DEFAULT_CLC_BUFFER_COUNT_MAX;
  174. _pool->pl_lock = slapi_new_rwlock ();
  175. return 0;
  176. }
  177. /*
  178. * This is part of a callback function when changelog configuration
  179. * is read or updated.
  180. */
  181. void
  182. clcache_set_config ()
  183. {
  184. slapi_rwlock_wrlock ( _pool->pl_lock );
  185. _pool->pl_buffer_cnt_max = CL5_DEFAULT_CONFIG_CACHESIZE;
  186. /*
  187. * According to http://www.sleepycat.com/docs/api_c/dbc_get.html,
  188. * data buffer should be a multiple of 1024 bytes in size
  189. * for DB_MULTIPLE_KEY operation.
  190. */
  191. _pool->pl_buffer_default_pages = CL5_DEFAULT_CONFIG_CACHEMEMSIZE / DEFAULT_CLC_BUFFER_PAGE_SIZE + 1;
  192. _pool->pl_buffer_default_pages = DEFAULT_CLC_BUFFER_PAGE_COUNT;
  193. if ( _pool->pl_buffer_default_pages <= 0 ) {
  194. _pool->pl_buffer_default_pages = DEFAULT_CLC_BUFFER_PAGE_COUNT;
  195. }
  196. slapi_rwlock_unlock ( _pool->pl_lock );
  197. }
  198. /*
  199. * Gets the pointer to a thread dedicated buffer, or allocates
  200. * a new buffer if there is no buffer allocated yet for this thread.
  201. *
  202. * This is called when a cl5replayiterator is created for
  203. * a replication session.
  204. */
  205. int
  206. clcache_get_buffer ( CLC_Buffer **buf, DB *db, ReplicaId consumer_rid, const RUV *consumer_ruv, const RUV *local_ruv )
  207. {
  208. int rc = 0;
  209. int need_new;
  210. if ( buf == NULL ) return CL5_BAD_DATA;
  211. *buf = NULL;
  212. /* if the pool was re-initialized, the thread private cache will be invalid,
  213. so we must get a new one */
  214. need_new = (!_pool || !_pool->pl_busy_lists || !_pool->pl_busy_lists->bl_buffers);
  215. if ( (!need_new) && (NULL != ( *buf = (CLC_Buffer*) get_thread_private_cache())) ) {
  216. slapi_log_error ( SLAPI_LOG_REPL, get_thread_private_agmtname(),
  217. "clcache_get_buffer: found thread private buffer cache %p\n", *buf);
  218. slapi_log_error ( SLAPI_LOG_REPL, get_thread_private_agmtname(),
  219. "clcache_get_buffer: _pool is %p _pool->pl_busy_lists is %p _pool->pl_busy_lists->bl_buffers is %p\n",
  220. _pool, _pool ? _pool->pl_busy_lists : NULL,
  221. (_pool && _pool->pl_busy_lists) ? _pool->pl_busy_lists->bl_buffers : NULL);
  222. (*buf)->buf_state = CLC_STATE_READY;
  223. (*buf)->buf_load_cnt = 0;
  224. (*buf)->buf_record_cnt = 0;
  225. (*buf)->buf_record_skipped = 0;
  226. (*buf)->buf_cursor = NULL;
  227. (*buf)->buf_num_cscbs = 0;
  228. }
  229. else {
  230. *buf = clcache_new_buffer ( consumer_rid );
  231. if ( *buf ) {
  232. if ( 0 == clcache_enqueue_busy_list ( db, *buf ) ) {
  233. set_thread_private_cache ( (void*) (*buf) );
  234. }
  235. else {
  236. clcache_delete_buffer ( buf );
  237. }
  238. }
  239. }
  240. if ( NULL != *buf ) {
  241. (*buf)->buf_consumer_ruv = consumer_ruv;
  242. (*buf)->buf_local_ruv = local_ruv;
  243. }
  244. else {
  245. slapi_log_error ( SLAPI_LOG_FATAL, get_thread_private_agmtname(),
  246. "clcache_get_buffer: can't allocate new buffer\n" );
  247. rc = CL5_MEMORY_ERROR;
  248. }
  249. return rc;
  250. }
  251. /*
  252. * Returns a buffer back to the buffer pool.
  253. */
  254. void
  255. clcache_return_buffer ( CLC_Buffer **buf )
  256. {
  257. int i;
  258. slapi_log_error ( SLAPI_LOG_REPL, (*buf)->buf_agmt_name,
  259. "session end: state=%d load=%d sent=%d skipped=%d\n",
  260. (*buf)->buf_state,
  261. (*buf)->buf_load_cnt,
  262. (*buf)->buf_record_cnt - (*buf)->buf_record_skipped,
  263. (*buf)->buf_record_skipped );
  264. for ( i = 0; i < (*buf)->buf_num_cscbs; i++ ) {
  265. clcache_free_cscb ( &(*buf)->buf_cscbs[i] );
  266. }
  267. (*buf)->buf_num_cscbs = 0;
  268. if ( (*buf)->buf_cursor ) {
  269. (*buf)->buf_cursor->c_close ( (*buf)->buf_cursor );
  270. (*buf)->buf_cursor = NULL;
  271. }
  272. }
  273. /*
  274. * Loads a buffer from DB.
  275. *
  276. * anchorcsn - passed in for the first load of a replication session;
  277. * flag - DB_SET to load in the key CSN record.
  278. * DB_NEXT to load in the records greater than key CSN.
  279. * return - DB error code instead of cl5 one because of the
  280. * historic reason.
  281. */
  282. int
  283. clcache_load_buffer ( CLC_Buffer *buf, CSN *anchorcsn, int flag )
  284. {
  285. int rc = 0;
  286. clcache_refresh_local_maxcsns ( buf );
  287. /* Set the loading key */
  288. if ( anchorcsn ) {
  289. clcache_refresh_consumer_maxcsns ( buf );
  290. buf->buf_load_flag = DB_MULTIPLE_KEY;
  291. csn_as_string ( anchorcsn, 0, (char*)buf->buf_key.data );
  292. slapi_log_error ( SLAPI_LOG_REPL, buf->buf_agmt_name,
  293. "session start: anchorcsn=%s\n", (char*)buf->buf_key.data );
  294. }
  295. else if ( csn_get_time(buf->buf_current_csn) == 0 ) {
  296. /* time == 0 means this csn has never been set */
  297. rc = DB_NOTFOUND;
  298. }
  299. else if ( clcache_adjust_anchorcsn ( buf ) != 0 ) {
  300. rc = DB_NOTFOUND;
  301. }
  302. else {
  303. csn_as_string ( buf->buf_current_csn, 0, (char*)buf->buf_key.data );
  304. slapi_log_error ( SLAPI_LOG_REPL, buf->buf_agmt_name,
  305. "load next: anchorcsn=%s\n", (char*)buf->buf_key.data );
  306. }
  307. if ( rc == 0 ) {
  308. buf->buf_state = CLC_STATE_READY;
  309. rc = clcache_load_buffer_bulk ( buf, flag );
  310. /* Reset some flag variables */
  311. if ( rc == 0 ) {
  312. int i;
  313. for ( i = 0; i < buf->buf_num_cscbs; i++ ) {
  314. buf->buf_cscbs[i]->state = CLC_STATE_READY;
  315. }
  316. }
  317. else if ( anchorcsn ) {
  318. /* Report error only when the missing is persistent */
  319. if ( buf->buf_missing_csn && csn_compare (buf->buf_missing_csn, anchorcsn) == 0 ) {
  320. slapi_log_error ( SLAPI_LOG_FATAL, buf->buf_agmt_name,
  321. "Can't locate CSN %s in the changelog (DB rc=%d). The consumer may need to be reinitialized.\n",
  322. (char*)buf->buf_key.data, rc );
  323. }
  324. else {
  325. csn_dup_or_init_by_csn (&buf->buf_missing_csn, anchorcsn);
  326. }
  327. }
  328. }
  329. if ( rc != 0 ) {
  330. slapi_log_error ( SLAPI_LOG_REPL, buf->buf_agmt_name,
  331. "clcache_load_buffer: rc=%d\n", rc );
  332. }
  333. return rc;
  334. }
  335. static int
  336. clcache_load_buffer_bulk ( CLC_Buffer *buf, int flag )
  337. {
  338. DB_TXN *txn = NULL;
  339. DBC *cursor = NULL;
  340. int rc = 0;
  341. #if 0 /* txn control seems not improving anything so turn it off */
  342. if ( *(_pool->pl_dbenv) ) {
  343. txn_begin( *(_pool->pl_dbenv), NULL, &txn, 0 );
  344. }
  345. #endif
  346. if (NULL == buf) {
  347. slapi_log_error ( SLAPI_LOG_FATAL, "clcache_load_buffer_bulk",
  348. "NULL buf\n" );
  349. return rc;
  350. }
  351. if (NULL == buf->buf_busy_list) {
  352. slapi_log_error ( SLAPI_LOG_FATAL, "clcache_load_buffer_bulk",
  353. "%s%sno buf_busy_list\n",
  354. buf->buf_agmt_name?buf->buf_agmt_name:"",
  355. buf->buf_agmt_name?": ":"" );
  356. return rc;
  357. }
  358. PR_Lock ( buf->buf_busy_list->bl_lock );
  359. if ( 0 == ( rc = clcache_open_cursor ( txn, buf, &cursor )) ) {
  360. if ( flag == DB_NEXT ) {
  361. /* For bulk read, position the cursor before read the next block */
  362. rc = cursor->c_get ( cursor,
  363. & buf->buf_key,
  364. & buf->buf_data,
  365. DB_SET );
  366. }
  367. /*
  368. * Continue if the error is no-mem since we don't need to
  369. * load in the key record anyway with DB_SET.
  370. */
  371. if ( 0 == rc || DB_BUFFER_SMALL == rc )
  372. rc = clcache_cursor_get ( cursor, buf, flag );
  373. }
  374. /*
  375. * Don't keep a cursor open across the whole replication session.
  376. * That had caused noticable DB resource contention.
  377. */
  378. if ( cursor ) {
  379. cursor->c_close ( cursor );
  380. }
  381. #if 0 /* txn control seems not improving anything so turn it off */
  382. if ( txn ) {
  383. txn->commit ( txn, DB_TXN_NOSYNC );
  384. }
  385. #endif
  386. PR_Unlock ( buf->buf_busy_list->bl_lock );
  387. buf->buf_record_ptr = NULL;
  388. if ( 0 == rc ) {
  389. DB_MULTIPLE_INIT ( buf->buf_record_ptr, &buf->buf_data );
  390. if ( NULL == buf->buf_record_ptr )
  391. rc = DB_NOTFOUND;
  392. else
  393. buf->buf_load_cnt++;
  394. }
  395. return rc;
  396. }
  397. /*
  398. * Gets the next change from the buffer.
  399. * *key : output - key of the next change, or NULL if no more change
  400. * *data: output - data of the next change, or NULL if no more change
  401. */
  402. int
  403. clcache_get_next_change ( CLC_Buffer *buf, void **key, size_t *keylen, void **data, size_t *datalen, CSN **csn )
  404. {
  405. int skip = 1;
  406. int rc = 0;
  407. do {
  408. *key = *data = NULL;
  409. *keylen = *datalen = 0;
  410. if ( buf->buf_record_ptr ) {
  411. DB_MULTIPLE_KEY_NEXT ( buf->buf_record_ptr, &buf->buf_data,
  412. *key, *keylen, *data, *datalen );
  413. }
  414. /*
  415. * We're done with the current buffer. Now load the next chunk.
  416. */
  417. if ( NULL == *key && CLC_STATE_READY == buf->buf_state ) {
  418. rc = clcache_load_buffer ( buf, NULL, DB_NEXT );
  419. if ( 0 == rc && buf->buf_record_ptr ) {
  420. DB_MULTIPLE_KEY_NEXT ( buf->buf_record_ptr, &buf->buf_data,
  421. *key, *keylen, *data, *datalen );
  422. }
  423. }
  424. /* Compare the new change to the local and remote RUVs */
  425. if ( NULL != *key ) {
  426. buf->buf_record_cnt++;
  427. csn_init_by_string ( buf->buf_current_csn, (char*)*key );
  428. skip = clcache_skip_change ( buf );
  429. if (skip) buf->buf_record_skipped++;
  430. }
  431. }
  432. while ( rc == 0 && *key && skip );
  433. if ( NULL == *key ) {
  434. *key = NULL;
  435. *csn = NULL;
  436. rc = DB_NOTFOUND;
  437. }
  438. else {
  439. *csn = buf->buf_current_csn;
  440. slapi_log_error ( SLAPI_LOG_REPL, buf->buf_agmt_name,
  441. "load=%d rec=%d csn=%s\n",
  442. buf->buf_load_cnt, buf->buf_record_cnt, (char*)*key );
  443. }
  444. return rc;
  445. }
  446. static void
  447. clcache_refresh_consumer_maxcsns ( CLC_Buffer *buf )
  448. {
  449. int i;
  450. for ( i = 0; i < buf->buf_num_cscbs; i++ ) {
  451. csn_free(&buf->buf_cscbs[i]->consumer_maxcsn);
  452. ruv_get_largest_csn_for_replica (
  453. buf->buf_consumer_ruv,
  454. buf->buf_cscbs[i]->rid,
  455. &buf->buf_cscbs[i]->consumer_maxcsn );
  456. }
  457. }
  458. static int
  459. clcache_refresh_local_maxcsn ( const ruv_enum_data *rid_data, void *data )
  460. {
  461. CLC_Buffer *buf = (CLC_Buffer*) data;
  462. ReplicaId rid;
  463. int rc = 0;
  464. int i;
  465. rid = csn_get_replicaid ( rid_data->csn );
  466. /*
  467. * No need to create cscb for consumer's RID.
  468. * If RID==65535, the CSN is originated from a
  469. * legacy consumer. In this case the supplier
  470. * and the consumer may have the same RID.
  471. */
  472. if ( rid == buf->buf_consumer_rid && rid != MAX_REPLICA_ID )
  473. return rc;
  474. for ( i = 0; i < buf->buf_num_cscbs; i++ ) {
  475. if ( buf->buf_cscbs[i]->rid == rid )
  476. break;
  477. }
  478. if ( i >= buf->buf_num_cscbs ) {
  479. buf->buf_cscbs[i] = clcache_new_cscb ();
  480. if ( buf->buf_cscbs[i] == NULL ) {
  481. return -1;
  482. }
  483. buf->buf_cscbs[i]->rid = rid;
  484. buf->buf_num_cscbs++;
  485. }
  486. csn_dup_or_init_by_csn ( &buf->buf_cscbs[i]->local_maxcsn, rid_data->csn );
  487. if ( buf->buf_cscbs[i]->consumer_maxcsn &&
  488. csn_compare (buf->buf_cscbs[i]->consumer_maxcsn, rid_data->csn) >= 0 ) {
  489. /* No change need to be sent for this RID */
  490. buf->buf_cscbs[i]->state = CLC_STATE_UP_TO_DATE;
  491. }
  492. return rc;
  493. }
  494. static int
  495. clcache_refresh_local_maxcsns ( CLC_Buffer *buf )
  496. {
  497. int i;
  498. for ( i = 0; i < buf->buf_num_cscbs; i++ ) {
  499. csn_dup_or_init_by_csn ( &buf->buf_cscbs[i]->prev_local_maxcsn,
  500. buf->buf_cscbs[i]->local_maxcsn );
  501. }
  502. return ruv_enumerate_elements ( buf->buf_local_ruv, clcache_refresh_local_maxcsn, buf );
  503. }
  504. /*
  505. * Algorithm:
  506. *
  507. * 1. Snapshot local RUVs;
  508. * 2. Load buffer;
  509. * 3. Send to the consumer only those CSNs that are covered
  510. * by the RUVs snapshot taken in the first step;
  511. * All CSNs that are covered by the RUVs snapshot taken in the
  512. * first step are guaranteed in consecutive order for the respected
  513. * RIDs because of the the CSN pending list control;
  514. * A CSN that is not covered by the RUVs snapshot may be out of order
  515. * since it is possible that a smaller CSN might not have committed
  516. * yet by the time the buffer was loaded.
  517. * 4. Determine anchorcsn for each RID:
  518. *
  519. * Case| Local vs. Buffer | New Local | Next
  520. * | MaxCSN MaxCSN | MaxCSN | Anchor-CSN
  521. * ----+-------------------+-----------+----------------
  522. * 1 | Cl >= Cb | * | Cb
  523. * 2 | Cl < Cb | Cl | Cb
  524. * 3 | Cl < Cb | Cl2 | Cl
  525. *
  526. * 5. Determine anchorcsn for next load:
  527. * Anchor-CSN = min { all Next-Anchor-CSN, Buffer-MaxCSN }
  528. */
  529. static int
  530. clcache_adjust_anchorcsn ( CLC_Buffer *buf )
  531. {
  532. PRBool hasChange = PR_FALSE;
  533. struct csn_seq_ctrl_block *cscb;
  534. int i;
  535. if ( buf->buf_state == CLC_STATE_READY ) {
  536. for ( i = 0; i < buf->buf_num_cscbs; i++ ) {
  537. cscb = buf->buf_cscbs[i];
  538. if ( cscb->state == CLC_STATE_UP_TO_DATE )
  539. continue;
  540. /*
  541. * Case 3 unsafe ruv change: next buffer load should start
  542. * from where the maxcsn in the old ruv was. Since each
  543. * cscb has remembered the maxcsn sent to the consumer,
  544. * CSNs that may be loaded again could easily be skipped.
  545. */
  546. if ( cscb->prev_local_maxcsn &&
  547. csn_compare (cscb->prev_local_maxcsn, buf->buf_current_csn) < 0 &&
  548. csn_compare (cscb->local_maxcsn, cscb->prev_local_maxcsn) != 0 ) {
  549. hasChange = PR_TRUE;
  550. cscb->state = CLC_STATE_READY;
  551. csn_init_by_csn ( buf->buf_current_csn, cscb->prev_local_maxcsn );
  552. csn_as_string ( cscb->prev_local_maxcsn, 0, (char*)buf->buf_key.data );
  553. slapi_log_error ( SLAPI_LOG_REPL, buf->buf_agmt_name,
  554. "adjust anchor csn upon %s\n",
  555. ( cscb->state == CLC_STATE_CSN_GT_RUV ? "out of sequence csn" : "unsafe ruv change") );
  556. continue;
  557. }
  558. /*
  559. * check if there are still changes to send for this RID
  560. * Assume we had compared the local maxcsn and the consumer
  561. * max csn before this function was called and hence the
  562. * cscb->state had been set accordingly.
  563. */
  564. if ( hasChange == PR_FALSE &&
  565. csn_compare (cscb->local_maxcsn, buf->buf_current_csn) > 0 ) {
  566. hasChange = PR_TRUE;
  567. }
  568. }
  569. }
  570. if ( !hasChange ) {
  571. buf->buf_state = CLC_STATE_DONE;
  572. }
  573. return buf->buf_state;
  574. }
  575. static int
  576. clcache_skip_change ( CLC_Buffer *buf )
  577. {
  578. struct csn_seq_ctrl_block *cscb = NULL;
  579. ReplicaId rid;
  580. int skip = 1;
  581. int i;
  582. do {
  583. rid = csn_get_replicaid ( buf->buf_current_csn );
  584. /*
  585. * Skip CSN that is originated from the consumer,
  586. * unless the CSN is newer than the maxcsn.
  587. * If RID==65535, the CSN is originated from a
  588. * legacy consumer. In this case the supplier
  589. * and the consumer may have the same RID.
  590. */
  591. if (rid == buf->buf_consumer_rid && rid != MAX_REPLICA_ID){
  592. CSN *cons_maxcsn = NULL;
  593. ruv_get_max_csn(buf->buf_consumer_ruv, &cons_maxcsn);
  594. if ( csn_compare ( buf->buf_current_csn, cons_maxcsn) > 0 ) {
  595. /*
  596. * The consumer must have been "restored" and needs this newer update.
  597. */
  598. skip = 0;
  599. }
  600. break;
  601. }
  602. /* Skip helper entry (ENTRY_COUNT, PURGE_RUV and so on) */
  603. if ( cl5HelperEntry ( NULL, buf->buf_current_csn ) == PR_TRUE ) {
  604. slapi_log_error ( SLAPI_LOG_REPL, buf->buf_agmt_name,
  605. "Skip helper entry type=%ld\n", csn_get_time( buf->buf_current_csn ));
  606. break;
  607. }
  608. /* Find csn sequence control block for the current rid */
  609. for (i = 0; i < buf->buf_num_cscbs && buf->buf_cscbs[i]->rid != rid; i++);
  610. /* Skip CSN whose RID is unknown to the local RUV snapshot */
  611. if ( i >= buf->buf_num_cscbs ) {
  612. buf->buf_state = CLC_STATE_NEW_RID;
  613. break;
  614. }
  615. cscb = buf->buf_cscbs[i];
  616. /* Skip if the consumer is already up-to-date for the RID */
  617. if ( cscb->state == CLC_STATE_UP_TO_DATE ) {
  618. break;
  619. }
  620. /* Skip CSN whose preceedents are not covered by local RUV snapshot */
  621. if ( cscb->state == CLC_STATE_CSN_GT_RUV ) {
  622. break;
  623. }
  624. /* Skip CSNs already covered by consumer RUV */
  625. if ( cscb->consumer_maxcsn &&
  626. csn_compare ( buf->buf_current_csn, cscb->consumer_maxcsn ) <= 0 ) {
  627. break;
  628. }
  629. /* Send CSNs that are covered by the local RUV snapshot */
  630. if ( csn_compare ( buf->buf_current_csn, cscb->local_maxcsn ) <= 0 ) {
  631. skip = 0;
  632. csn_dup_or_init_by_csn ( &cscb->consumer_maxcsn, buf->buf_current_csn );
  633. break;
  634. }
  635. /*
  636. * Promote the local maxcsn to its next neighbor
  637. * to keep the current session going. Skip if we
  638. * are not sure if current_csn is the neighbor.
  639. */
  640. if ( csn_time_difference(buf->buf_current_csn, cscb->local_maxcsn) == 0 &&
  641. (csn_get_seqnum(buf->buf_current_csn) ==
  642. csn_get_seqnum(cscb->local_maxcsn) + 1) ) {
  643. csn_init_by_csn ( cscb->local_maxcsn, buf->buf_current_csn );
  644. csn_init_by_csn ( cscb->consumer_maxcsn, buf->buf_current_csn );
  645. skip = 0;
  646. break;
  647. }
  648. /* Skip CSNs not covered by local RUV snapshot */
  649. cscb->state = CLC_STATE_CSN_GT_RUV;
  650. } while (0);
  651. #ifdef DEBUG
  652. if (skip && cscb) {
  653. char consumer[24] = {'\0'};
  654. char local[24] = {'\0'};
  655. char current[24] = {'\0'};
  656. if ( cscb->consumer_maxcsn )
  657. csn_as_string ( cscb->consumer_maxcsn, PR_FALSE, consumer );
  658. if ( cscb->local_maxcsn )
  659. csn_as_string ( cscb->local_maxcsn, PR_FALSE, local );
  660. csn_as_string ( buf->buf_current_csn, PR_FALSE, current );
  661. slapi_log_error ( SLAPI_LOG_REPL, buf->buf_agmt_name,
  662. "Skip %s consumer=%s local=%s\n", current, consumer, local );
  663. }
  664. #endif
  665. return skip;
  666. }
  667. static struct csn_seq_ctrl_block *
  668. clcache_new_cscb ()
  669. {
  670. struct csn_seq_ctrl_block *cscb;
  671. cscb = (struct csn_seq_ctrl_block *) slapi_ch_calloc ( 1, sizeof (struct csn_seq_ctrl_block) );
  672. if (cscb == NULL) {
  673. slapi_log_error ( SLAPI_LOG_FATAL, NULL, "clcache: malloc failure\n" );
  674. }
  675. return cscb;
  676. }
  677. static void
  678. clcache_free_cscb ( struct csn_seq_ctrl_block ** cscb )
  679. {
  680. csn_free ( & (*cscb)->consumer_maxcsn );
  681. csn_free ( & (*cscb)->local_maxcsn );
  682. csn_free ( & (*cscb)->prev_local_maxcsn );
  683. slapi_ch_free ( (void **) cscb );
  684. }
  685. /*
  686. * Allocate and initialize a new buffer
  687. * It is called when there is a request for a buffer while
  688. * buffer free list is empty.
  689. */
  690. static CLC_Buffer *
  691. clcache_new_buffer ( ReplicaId consumer_rid )
  692. {
  693. CLC_Buffer *buf = NULL;
  694. int welldone = 0;
  695. do {
  696. buf = (CLC_Buffer*) slapi_ch_calloc (1, sizeof(CLC_Buffer));
  697. if ( NULL == buf )
  698. break;
  699. buf->buf_key.flags = DB_DBT_USERMEM;
  700. buf->buf_key.ulen = CSN_STRSIZE + 1;
  701. buf->buf_key.size = CSN_STRSIZE;
  702. buf->buf_key.data = slapi_ch_calloc( 1, buf->buf_key.ulen );
  703. if ( NULL == buf->buf_key.data )
  704. break;
  705. buf->buf_data.flags = DB_DBT_USERMEM;
  706. buf->buf_data.ulen = _pool->pl_buffer_default_pages * DEFAULT_CLC_BUFFER_PAGE_SIZE;
  707. buf->buf_data.data = slapi_ch_malloc( buf->buf_data.ulen );
  708. if ( NULL == buf->buf_data.data )
  709. break;
  710. if ( NULL == ( buf->buf_current_csn = csn_new()) )
  711. break;
  712. buf->buf_state = CLC_STATE_READY;
  713. buf->buf_agmt_name = get_thread_private_agmtname();
  714. buf->buf_consumer_rid = consumer_rid;
  715. buf->buf_num_cscbs = 0;
  716. welldone = 1;
  717. } while (0);
  718. if ( !welldone ) {
  719. clcache_delete_buffer ( &buf );
  720. }
  721. return buf;
  722. }
  723. /*
  724. * Deallocates a buffer.
  725. * It is called when a buffer is returned to the buffer pool
  726. * and the pool size is over the limit.
  727. */
  728. static void
  729. clcache_delete_buffer ( CLC_Buffer **buf )
  730. {
  731. if ( buf && *buf ) {
  732. slapi_ch_free (&( (*buf)->buf_key.data ));
  733. slapi_ch_free (&( (*buf)->buf_data.data ));
  734. csn_free (&( (*buf)->buf_current_csn ));
  735. csn_free (&( (*buf)->buf_missing_csn ));
  736. slapi_ch_free ( (void **) buf );
  737. }
  738. }
  739. static CLC_Busy_List *
  740. clcache_new_busy_list ()
  741. {
  742. CLC_Busy_List *bl;
  743. int welldone = 0;
  744. do {
  745. if ( NULL == (bl = ( CLC_Busy_List* ) slapi_ch_calloc (1, sizeof(CLC_Busy_List)) ))
  746. break;
  747. if ( NULL == (bl->bl_lock = PR_NewLock ()) )
  748. break;
  749. /*
  750. if ( NULL == (bl->bl_max_csn = csn_new ()) )
  751. break;
  752. */
  753. welldone = 1;
  754. }
  755. while (0);
  756. if ( !welldone ) {
  757. clcache_delete_busy_list ( &bl );
  758. }
  759. return bl;
  760. }
  761. static void
  762. clcache_delete_busy_list ( CLC_Busy_List **bl )
  763. {
  764. if ( bl && *bl ) {
  765. CLC_Buffer *buf = NULL;
  766. if ( (*bl)->bl_lock ) {
  767. PR_Lock ( (*bl)->bl_lock );
  768. }
  769. buf = (*bl)->bl_buffers;
  770. while (buf) {
  771. CLC_Buffer *next = buf->buf_next;
  772. clcache_delete_buffer(&buf);
  773. buf = next;
  774. }
  775. (*bl)->bl_buffers = NULL;
  776. (*bl)->bl_db = NULL;
  777. if ( (*bl)->bl_lock ) {
  778. PR_Unlock ( (*bl)->bl_lock );
  779. PR_DestroyLock ( (*bl)->bl_lock );
  780. (*bl)->bl_lock = NULL;
  781. }
  782. /* csn_free (&( (*bl)->bl_max_csn )); */
  783. slapi_ch_free ( (void **) bl );
  784. }
  785. }
  786. static int
  787. clcache_enqueue_busy_list ( DB *db, CLC_Buffer *buf )
  788. {
  789. CLC_Busy_List *bl;
  790. int rc = 0;
  791. slapi_rwlock_rdlock ( _pool->pl_lock );
  792. for ( bl = _pool->pl_busy_lists; bl && bl->bl_db != db; bl = bl->bl_next );
  793. slapi_rwlock_unlock ( _pool->pl_lock );
  794. if ( NULL == bl ) {
  795. if ( NULL == ( bl = clcache_new_busy_list ()) ) {
  796. rc = CL5_MEMORY_ERROR;
  797. }
  798. else {
  799. slapi_rwlock_wrlock ( _pool->pl_lock );
  800. bl->bl_db = db;
  801. bl->bl_next = _pool->pl_busy_lists;
  802. _pool->pl_busy_lists = bl;
  803. slapi_rwlock_unlock ( _pool->pl_lock );
  804. }
  805. }
  806. if ( NULL != bl ) {
  807. PR_Lock ( bl->bl_lock );
  808. buf->buf_busy_list = bl;
  809. buf->buf_next = bl->bl_buffers;
  810. bl->bl_buffers = buf;
  811. PR_Unlock ( bl->bl_lock );
  812. }
  813. return rc;
  814. }
  815. static int
  816. clcache_open_cursor ( DB_TXN *txn, CLC_Buffer *buf, DBC **cursor )
  817. {
  818. int rc;
  819. rc = buf->buf_busy_list->bl_db->cursor ( buf->buf_busy_list->bl_db, txn, cursor, 0 );
  820. if ( rc != 0 ) {
  821. slapi_log_error ( SLAPI_LOG_FATAL, get_thread_private_agmtname(),
  822. "clcache: failed to open cursor; db error - %d %s\n",
  823. rc, db_strerror(rc));
  824. }
  825. return rc;
  826. }
  827. static int
  828. clcache_cursor_get ( DBC *cursor, CLC_Buffer *buf, int flag )
  829. {
  830. int rc;
  831. rc = cursor->c_get ( cursor,
  832. & buf->buf_key,
  833. & buf->buf_data,
  834. buf->buf_load_flag | flag );
  835. if ( DB_BUFFER_SMALL == rc ) {
  836. /*
  837. * The record takes more space than the current size of the
  838. * buffer. Fortunately, buf->buf_data.size has been set by
  839. * c_get() to the actual data size needed. So we can
  840. * reallocate the data buffer and try to read again.
  841. */
  842. buf->buf_data.ulen = ( buf->buf_data.size / DEFAULT_CLC_BUFFER_PAGE_SIZE + 1 ) * DEFAULT_CLC_BUFFER_PAGE_SIZE;
  843. buf->buf_data.data = slapi_ch_realloc ( buf->buf_data.data, buf->buf_data.ulen );
  844. if ( buf->buf_data.data != NULL ) {
  845. rc = cursor->c_get ( cursor,
  846. &( buf->buf_key ),
  847. &( buf->buf_data ),
  848. buf->buf_load_flag | flag );
  849. slapi_log_error ( SLAPI_LOG_REPL, buf->buf_agmt_name,
  850. "clcache: (%d | %d) buf key len %d reallocated and retry returns %d\n", buf->buf_load_flag, flag, buf->buf_key.size, rc );
  851. }
  852. }
  853. switch ( rc ) {
  854. case EINVAL:
  855. slapi_log_error ( SLAPI_LOG_FATAL, buf->buf_agmt_name,
  856. "clcache_cursor_get: invalid parameter\n" );
  857. break;
  858. case DB_BUFFER_SMALL:
  859. slapi_log_error ( SLAPI_LOG_FATAL, buf->buf_agmt_name,
  860. "clcache_cursor_get: can't allocate %u bytes\n", buf->buf_data.ulen );
  861. break;
  862. default:
  863. break;
  864. }
  865. return rc;
  866. }
  867. static void
  868. csn_dup_or_init_by_csn ( CSN **csn1, CSN *csn2 )
  869. {
  870. if ( *csn1 == NULL )
  871. *csn1 = csn_new();
  872. csn_init_by_csn ( *csn1, csn2 );
  873. }
  874. void
  875. clcache_destroy()
  876. {
  877. if (_pool) {
  878. CLC_Busy_List *bl = NULL;
  879. if (_pool->pl_lock) {
  880. slapi_rwlock_wrlock (_pool->pl_lock);
  881. }
  882. bl = _pool->pl_busy_lists;
  883. while (bl) {
  884. CLC_Busy_List *next = bl->bl_next;
  885. clcache_delete_busy_list(&bl);
  886. bl = next;
  887. }
  888. _pool->pl_busy_lists = NULL;
  889. _pool->pl_dbenv = NULL;
  890. if (_pool->pl_lock) {
  891. slapi_rwlock_unlock(_pool->pl_lock);
  892. slapi_destroy_rwlock(_pool->pl_lock);
  893. _pool->pl_lock = NULL;
  894. }
  895. slapi_ch_free ( (void **) &_pool );
  896. }
  897. }