sqlite_aclk.c 21 KB

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  1. // SPDX-License-Identifier: GPL-3.0-or-later
  2. #include "sqlite_functions.h"
  3. #include "sqlite_aclk.h"
  4. #include "sqlite_aclk_node.h"
  5. struct aclk_sync_config_s {
  6. uv_thread_t thread;
  7. uv_loop_t loop;
  8. uv_timer_t timer_req;
  9. time_t cleanup_after; // Start a cleanup after this timestamp
  10. uv_async_t async;
  11. /* FIFO command queue */
  12. uv_mutex_t cmd_mutex;
  13. uv_cond_t cmd_cond;
  14. bool initialized;
  15. volatile unsigned queue_size;
  16. struct aclk_database_cmdqueue cmd_queue;
  17. } aclk_sync_config = { 0 };
  18. void sanity_check(void) {
  19. // make sure the compiler will stop on misconfigurations
  20. BUILD_BUG_ON(WORKER_UTILIZATION_MAX_JOB_TYPES < ACLK_MAX_ENUMERATIONS_DEFINED);
  21. }
  22. int aclk_database_enq_cmd_noblock(struct aclk_database_cmd *cmd)
  23. {
  24. unsigned queue_size;
  25. /* wait for free space in queue */
  26. uv_mutex_lock(&aclk_sync_config.cmd_mutex);
  27. if ((queue_size = aclk_sync_config.queue_size) == ACLK_DATABASE_CMD_Q_MAX_SIZE) {
  28. uv_mutex_unlock(&aclk_sync_config.cmd_mutex);
  29. return 1;
  30. }
  31. fatal_assert(queue_size < ACLK_DATABASE_CMD_Q_MAX_SIZE);
  32. /* enqueue command */
  33. aclk_sync_config.cmd_queue.cmd_array[aclk_sync_config.cmd_queue.tail] = *cmd;
  34. aclk_sync_config.cmd_queue.tail = aclk_sync_config.cmd_queue.tail != ACLK_DATABASE_CMD_Q_MAX_SIZE - 1 ?
  35. aclk_sync_config.cmd_queue.tail + 1 : 0;
  36. aclk_sync_config.queue_size = queue_size + 1;
  37. uv_mutex_unlock(&aclk_sync_config.cmd_mutex);
  38. return 0;
  39. }
  40. static void aclk_database_enq_cmd(struct aclk_database_cmd *cmd)
  41. {
  42. unsigned queue_size;
  43. /* wait for free space in queue */
  44. uv_mutex_lock(&aclk_sync_config.cmd_mutex);
  45. while ((queue_size = aclk_sync_config.queue_size) == ACLK_DATABASE_CMD_Q_MAX_SIZE) {
  46. uv_cond_wait(&aclk_sync_config.cmd_cond, &aclk_sync_config.cmd_mutex);
  47. }
  48. fatal_assert(queue_size < ACLK_DATABASE_CMD_Q_MAX_SIZE);
  49. /* enqueue command */
  50. aclk_sync_config.cmd_queue.cmd_array[aclk_sync_config.cmd_queue.tail] = *cmd;
  51. aclk_sync_config.cmd_queue.tail = aclk_sync_config.cmd_queue.tail != ACLK_DATABASE_CMD_Q_MAX_SIZE - 1 ?
  52. aclk_sync_config.cmd_queue.tail + 1 : 0;
  53. aclk_sync_config.queue_size = queue_size + 1;
  54. uv_mutex_unlock(&aclk_sync_config.cmd_mutex);
  55. /* wake up event loop */
  56. (void) uv_async_send(&aclk_sync_config.async);
  57. }
  58. enum {
  59. IDX_HOST_ID,
  60. IDX_HOSTNAME,
  61. IDX_REGISTRY,
  62. IDX_UPDATE_EVERY,
  63. IDX_OS,
  64. IDX_TIMEZONE,
  65. IDX_TAGS,
  66. IDX_HOPS,
  67. IDX_MEMORY_MODE,
  68. IDX_ABBREV_TIMEZONE,
  69. IDX_UTC_OFFSET,
  70. IDX_PROGRAM_NAME,
  71. IDX_PROGRAM_VERSION,
  72. IDX_ENTRIES,
  73. IDX_HEALTH_ENABLED,
  74. };
  75. static int create_host_callback(void *data, int argc, char **argv, char **column)
  76. {
  77. int *number_of_chidren = data;
  78. UNUSED(argc);
  79. UNUSED(column);
  80. char guid[UUID_STR_LEN];
  81. uuid_unparse_lower(*(uuid_t *)argv[IDX_HOST_ID], guid);
  82. struct rrdhost_system_info *system_info = callocz(1, sizeof(struct rrdhost_system_info));
  83. __atomic_sub_fetch(&netdata_buffers_statistics.rrdhost_allocations_size, sizeof(struct rrdhost_system_info), __ATOMIC_RELAXED);
  84. system_info->hops = str2i((const char *) argv[IDX_HOPS]);
  85. sql_build_host_system_info((uuid_t *)argv[IDX_HOST_ID], system_info);
  86. RRDHOST *host = rrdhost_find_or_create(
  87. (const char *) argv[IDX_HOSTNAME]
  88. , (const char *) argv[IDX_REGISTRY]
  89. , guid
  90. , (const char *) argv[IDX_OS]
  91. , (const char *) argv[IDX_TIMEZONE]
  92. , (const char *) argv[IDX_ABBREV_TIMEZONE]
  93. , (int32_t) (argv[IDX_UTC_OFFSET] ? str2uint32_t(argv[IDX_UTC_OFFSET], NULL) : 0)
  94. , (const char *) argv[IDX_TAGS]
  95. , (const char *) (argv[IDX_PROGRAM_NAME] ? argv[IDX_PROGRAM_NAME] : "unknown")
  96. , (const char *) (argv[IDX_PROGRAM_VERSION] ? argv[IDX_PROGRAM_VERSION] : "unknown")
  97. , argv[IDX_UPDATE_EVERY] ? str2i(argv[IDX_UPDATE_EVERY]) : 1
  98. , argv[IDX_ENTRIES] ? str2i(argv[IDX_ENTRIES]) : 0
  99. , default_rrd_memory_mode
  100. , 0 // health
  101. , 0 // rrdpush enabled
  102. , NULL //destination
  103. , NULL // api key
  104. , NULL // send charts matching
  105. , false // rrdpush_enable_replication
  106. , 0 // rrdpush_seconds_to_replicate
  107. , 0 // rrdpush_replication_step
  108. , system_info
  109. , 1
  110. );
  111. if (likely(host))
  112. host->rrdlabels = sql_load_host_labels((uuid_t *)argv[IDX_HOST_ID]);
  113. (*number_of_chidren)++;
  114. #ifdef NETDATA_INTERNAL_CHECKS
  115. char node_str[UUID_STR_LEN] = "<none>";
  116. if (likely(host->node_id))
  117. uuid_unparse_lower(*host->node_id, node_str);
  118. internal_error(true, "Adding archived host \"%s\" with GUID \"%s\" node id = \"%s\"", rrdhost_hostname(host), host->machine_guid, node_str);
  119. #endif
  120. return 0;
  121. }
  122. #ifdef ENABLE_ACLK
  123. static struct aclk_database_cmd aclk_database_deq_cmd(void)
  124. {
  125. struct aclk_database_cmd ret;
  126. unsigned queue_size;
  127. uv_mutex_lock(&aclk_sync_config.cmd_mutex);
  128. queue_size = aclk_sync_config.queue_size;
  129. if (queue_size == 0) {
  130. memset(&ret, 0, sizeof(ret));
  131. ret.opcode = ACLK_DATABASE_NOOP;
  132. ret.completion = NULL;
  133. } else {
  134. /* dequeue command */
  135. ret = aclk_sync_config.cmd_queue.cmd_array[aclk_sync_config.cmd_queue.head];
  136. if (queue_size == 1) {
  137. aclk_sync_config.cmd_queue.head = aclk_sync_config.cmd_queue.tail = 0;
  138. } else {
  139. aclk_sync_config.cmd_queue.head = aclk_sync_config.cmd_queue.head != ACLK_DATABASE_CMD_Q_MAX_SIZE - 1 ?
  140. aclk_sync_config.cmd_queue.head + 1 : 0;
  141. }
  142. aclk_sync_config.queue_size = queue_size - 1;
  143. /* wake up producers */
  144. uv_cond_signal(&aclk_sync_config.cmd_cond);
  145. }
  146. uv_mutex_unlock(&aclk_sync_config.cmd_mutex);
  147. return ret;
  148. }
  149. #define SQL_SELECT_HOST_BY_UUID "SELECT host_id FROM host WHERE host_id = @host_id;"
  150. static int is_host_available(uuid_t *host_id)
  151. {
  152. sqlite3_stmt *res = NULL;
  153. int rc;
  154. if (unlikely(!db_meta)) {
  155. if (default_rrd_memory_mode == RRD_MEMORY_MODE_DBENGINE)
  156. error_report("Database has not been initialized");
  157. return 1;
  158. }
  159. rc = sqlite3_prepare_v2(db_meta, SQL_SELECT_HOST_BY_UUID, -1, &res, 0);
  160. if (unlikely(rc != SQLITE_OK)) {
  161. error_report("Failed to prepare statement to select node instance information for a node");
  162. return 1;
  163. }
  164. rc = sqlite3_bind_blob(res, 1, host_id, sizeof(*host_id), SQLITE_STATIC);
  165. if (unlikely(rc != SQLITE_OK)) {
  166. error_report("Failed to bind host_id parameter to check host existence");
  167. goto failed;
  168. }
  169. rc = sqlite3_step_monitored(res);
  170. failed:
  171. if (unlikely(sqlite3_finalize(res) != SQLITE_OK))
  172. error_report("Failed to finalize the prepared statement when checking host existence");
  173. return (rc == SQLITE_ROW);
  174. }
  175. // OPCODE: ACLK_DATABASE_DELETE_HOST
  176. static void sql_delete_aclk_table_list(char *host_guid)
  177. {
  178. char uuid_str[UUID_STR_LEN];
  179. char host_str[UUID_STR_LEN];
  180. int rc;
  181. uuid_t host_uuid;
  182. if (unlikely(!host_guid))
  183. return;
  184. rc = uuid_parse(host_guid, host_uuid);
  185. freez(host_guid);
  186. if (rc)
  187. return;
  188. uuid_unparse_lower(host_uuid, host_str);
  189. uuid_unparse_lower_fix(&host_uuid, uuid_str);
  190. if (is_host_available(&host_uuid))
  191. return;
  192. sqlite3_stmt *res = NULL;
  193. BUFFER *sql = buffer_create(ACLK_SYNC_QUERY_SIZE, &netdata_buffers_statistics.buffers_sqlite);
  194. buffer_sprintf(sql,"SELECT 'drop '||type||' IF EXISTS '||name||';' FROM sqlite_schema " \
  195. "WHERE name LIKE 'aclk_%%_%s' AND type IN ('table', 'trigger', 'index');", uuid_str);
  196. rc = sqlite3_prepare_v2(db_meta, buffer_tostring(sql), -1, &res, 0);
  197. if (rc != SQLITE_OK) {
  198. error_report("Failed to prepare statement to clean up aclk tables");
  199. goto fail;
  200. }
  201. buffer_flush(sql);
  202. while (sqlite3_step_monitored(res) == SQLITE_ROW)
  203. buffer_strcat(sql, (char *) sqlite3_column_text(res, 0));
  204. rc = sqlite3_finalize(res);
  205. if (unlikely(rc != SQLITE_OK))
  206. error_report("Failed to finalize statement to clean up aclk tables, rc = %d", rc);
  207. rc = db_execute(db_meta, buffer_tostring(sql));
  208. if (unlikely(rc))
  209. netdata_log_error("Failed to drop unused ACLK tables");
  210. fail:
  211. buffer_free(sql);
  212. }
  213. static int sql_check_aclk_table(void *data __maybe_unused, int argc __maybe_unused, char **argv __maybe_unused, char **column __maybe_unused)
  214. {
  215. struct aclk_database_cmd cmd;
  216. memset(&cmd, 0, sizeof(cmd));
  217. cmd.opcode = ACLK_DATABASE_DELETE_HOST;
  218. cmd.param[0] = strdupz((char *) argv[0]);
  219. aclk_database_enq_cmd_noblock(&cmd);
  220. return 0;
  221. }
  222. #define SQL_SELECT_ACLK_ACTIVE_LIST "SELECT REPLACE(SUBSTR(name,19),'_','-') FROM sqlite_schema " \
  223. "WHERE name LIKE 'aclk_chart_latest_%' AND type IN ('table');"
  224. static void sql_check_aclk_table_list(void)
  225. {
  226. char *err_msg = NULL;
  227. int rc = sqlite3_exec_monitored(db_meta, SQL_SELECT_ACLK_ACTIVE_LIST, sql_check_aclk_table, NULL, &err_msg);
  228. if (rc != SQLITE_OK) {
  229. error_report("Query failed when trying to check for obsolete ACLK sync tables, %s", err_msg);
  230. sqlite3_free(err_msg);
  231. }
  232. }
  233. #define SQL_ALERT_CLEANUP "DELETE FROM aclk_alert_%s WHERE date_submitted IS NOT NULL AND CAST(date_cloud_ack AS INT) < unixepoch()-%d;"
  234. static int sql_maint_aclk_sync_database(void *data __maybe_unused, int argc __maybe_unused, char **argv, char **column __maybe_unused)
  235. {
  236. char sql[512];
  237. snprintfz(sql,511, SQL_ALERT_CLEANUP, (char *) argv[0], ACLK_DELETE_ACK_ALERTS_INTERNAL);
  238. if (unlikely(db_execute(db_meta, sql)))
  239. error_report("Failed to clean stale ACLK alert entries");
  240. return 0;
  241. }
  242. #define SQL_SELECT_ACLK_ALERT_LIST "SELECT SUBSTR(name,12) FROM sqlite_schema WHERE name LIKE 'aclk_alert_%' AND type IN ('table');"
  243. static void sql_maint_aclk_sync_database_all(void)
  244. {
  245. char *err_msg = NULL;
  246. int rc = sqlite3_exec_monitored(db_meta, SQL_SELECT_ACLK_ALERT_LIST, sql_maint_aclk_sync_database, NULL, &err_msg);
  247. if (rc != SQLITE_OK) {
  248. error_report("Query failed when trying to check for obsolete ACLK sync tables, %s", err_msg);
  249. sqlite3_free(err_msg);
  250. }
  251. }
  252. static int aclk_config_parameters(void *data __maybe_unused, int argc __maybe_unused, char **argv, char **column __maybe_unused)
  253. {
  254. char uuid_str[GUID_LEN + 1];
  255. uuid_unparse_lower(*((uuid_t *) argv[0]), uuid_str);
  256. RRDHOST *host = rrdhost_find_by_guid(uuid_str);
  257. if (host == localhost)
  258. return 0;
  259. sql_create_aclk_table(host, (uuid_t *) argv[0], (uuid_t *) argv[1]);
  260. return 0;
  261. }
  262. static void async_cb(uv_async_t *handle)
  263. {
  264. uv_stop(handle->loop);
  265. uv_update_time(handle->loop);
  266. }
  267. #define TIMER_PERIOD_MS (1000)
  268. static void timer_cb(uv_timer_t *handle)
  269. {
  270. uv_stop(handle->loop);
  271. uv_update_time(handle->loop);
  272. struct aclk_sync_config_s *config = handle->data;
  273. struct aclk_database_cmd cmd;
  274. memset(&cmd, 0, sizeof(cmd));
  275. time_t now = now_realtime_sec();
  276. if (config->cleanup_after && config->cleanup_after < now) {
  277. cmd.opcode = ACLK_DATABASE_CLEANUP;
  278. if (!aclk_database_enq_cmd_noblock(&cmd))
  279. config->cleanup_after += ACLK_DATABASE_CLEANUP_INTERVAL;
  280. }
  281. if (aclk_connected) {
  282. cmd.opcode = ACLK_DATABASE_PUSH_ALERT;
  283. aclk_database_enq_cmd_noblock(&cmd);
  284. aclk_check_node_info_and_collectors();
  285. }
  286. }
  287. static void aclk_synchronization(void *arg __maybe_unused)
  288. {
  289. struct aclk_sync_config_s *config = arg;
  290. uv_thread_set_name_np(config->thread, "ACLKSYNC");
  291. worker_register("ACLKSYNC");
  292. service_register(SERVICE_THREAD_TYPE_EVENT_LOOP, NULL, NULL, NULL, true);
  293. worker_register_job_name(ACLK_DATABASE_NOOP, "noop");
  294. worker_register_job_name(ACLK_DATABASE_CLEANUP, "cleanup");
  295. worker_register_job_name(ACLK_DATABASE_DELETE_HOST, "node delete");
  296. worker_register_job_name(ACLK_DATABASE_NODE_STATE, "node state");
  297. worker_register_job_name(ACLK_DATABASE_PUSH_ALERT, "alert push");
  298. worker_register_job_name(ACLK_DATABASE_PUSH_ALERT_CONFIG, "alert conf push");
  299. worker_register_job_name(ACLK_DATABASE_PUSH_ALERT_CHECKPOINT,"alert checkpoint");
  300. worker_register_job_name(ACLK_DATABASE_PUSH_ALERT_SNAPSHOT, "alert snapshot");
  301. worker_register_job_name(ACLK_DATABASE_QUEUE_REMOVED_ALERTS, "alerts check");
  302. worker_register_job_name(ACLK_DATABASE_TIMER, "timer");
  303. uv_loop_t *loop = &config->loop;
  304. fatal_assert(0 == uv_loop_init(loop));
  305. fatal_assert(0 == uv_async_init(loop, &config->async, async_cb));
  306. fatal_assert(0 == uv_timer_init(loop, &config->timer_req));
  307. config->timer_req.data = config;
  308. fatal_assert(0 == uv_timer_start(&config->timer_req, timer_cb, TIMER_PERIOD_MS, TIMER_PERIOD_MS));
  309. netdata_log_info("Starting ACLK synchronization thread");
  310. config->cleanup_after = now_realtime_sec() + ACLK_DATABASE_CLEANUP_FIRST;
  311. config->initialized = true;
  312. while (likely(service_running(SERVICE_ACLKSYNC))) {
  313. enum aclk_database_opcode opcode;
  314. worker_is_idle();
  315. uv_run(loop, UV_RUN_DEFAULT);
  316. /* wait for commands */
  317. do {
  318. struct aclk_database_cmd cmd = aclk_database_deq_cmd();
  319. if (unlikely(!service_running(SERVICE_ACLKSYNC)))
  320. break;
  321. opcode = cmd.opcode;
  322. if(likely(opcode != ACLK_DATABASE_NOOP))
  323. worker_is_busy(opcode);
  324. switch (opcode) {
  325. case ACLK_DATABASE_NOOP:
  326. /* the command queue was empty, do nothing */
  327. break;
  328. // MAINTENANCE
  329. case ACLK_DATABASE_CLEANUP:
  330. // Scan all aclk_alert_ tables and cleanup as needed
  331. sql_maint_aclk_sync_database_all();
  332. sql_check_aclk_table_list();
  333. break;
  334. case ACLK_DATABASE_DELETE_HOST:
  335. sql_delete_aclk_table_list(cmd.param[0]);
  336. break;
  337. // NODE STATE
  338. case ACLK_DATABASE_NODE_STATE:;
  339. RRDHOST *host = cmd.param[0];
  340. int live = (host == localhost || host->receiver || !(rrdhost_flag_check(host, RRDHOST_FLAG_ORPHAN))) ? 1 : 0;
  341. struct aclk_sync_host_config *ahc = host->aclk_sync_host_config;
  342. if (unlikely(!ahc))
  343. sql_create_aclk_table(host, &host->host_uuid, host->node_id);
  344. aclk_host_state_update(host, live);
  345. break;
  346. // ALERTS
  347. case ACLK_DATABASE_PUSH_ALERT_CONFIG:
  348. aclk_push_alert_config_event(cmd.param[0], cmd.param[1]);
  349. break;
  350. case ACLK_DATABASE_PUSH_ALERT:
  351. aclk_push_alert_events_for_all_hosts();
  352. break;
  353. case ACLK_DATABASE_PUSH_ALERT_SNAPSHOT:;
  354. aclk_push_alert_snapshot_event(cmd.param[0]);
  355. break;
  356. case ACLK_DATABASE_QUEUE_REMOVED_ALERTS:
  357. sql_process_queue_removed_alerts_to_aclk(cmd.param[0]);
  358. break;
  359. default:
  360. break;
  361. }
  362. if (cmd.completion)
  363. completion_mark_complete(cmd.completion);
  364. } while (opcode != ACLK_DATABASE_NOOP);
  365. }
  366. if (!uv_timer_stop(&config->timer_req))
  367. uv_close((uv_handle_t *)&config->timer_req, NULL);
  368. uv_close((uv_handle_t *)&config->async, NULL);
  369. // uv_close((uv_handle_t *)&config->async_exit, NULL);
  370. uv_cond_destroy(&config->cmd_cond);
  371. (void) uv_loop_close(loop);
  372. worker_unregister();
  373. service_exits();
  374. netdata_log_info("ACLK SYNC: Shutting down ACLK synchronization event loop");
  375. }
  376. static void aclk_synchronization_init(void)
  377. {
  378. aclk_sync_config.cmd_queue.head = aclk_sync_config.cmd_queue.tail = 0;
  379. aclk_sync_config.queue_size = 0;
  380. fatal_assert(0 == uv_cond_init(&aclk_sync_config.cmd_cond));
  381. fatal_assert(0 == uv_mutex_init(&aclk_sync_config.cmd_mutex));
  382. fatal_assert(0 == uv_thread_create(&aclk_sync_config.thread, aclk_synchronization, &aclk_sync_config));
  383. }
  384. #endif
  385. // -------------------------------------------------------------
  386. void sql_create_aclk_table(RRDHOST *host __maybe_unused, uuid_t *host_uuid __maybe_unused, uuid_t *node_id __maybe_unused)
  387. {
  388. #ifdef ENABLE_ACLK
  389. char uuid_str[GUID_LEN + 1];
  390. char host_guid[GUID_LEN + 1];
  391. int rc;
  392. uuid_unparse_lower_fix(host_uuid, uuid_str);
  393. uuid_unparse_lower(*host_uuid, host_guid);
  394. char sql[ACLK_SYNC_QUERY_SIZE];
  395. snprintfz(sql, ACLK_SYNC_QUERY_SIZE-1, TABLE_ACLK_ALERT, uuid_str);
  396. rc = db_execute(db_meta, sql);
  397. if (unlikely(rc))
  398. error_report("Failed to create ACLK alert table for host %s", host ? rrdhost_hostname(host) : host_guid);
  399. else {
  400. snprintfz(sql, ACLK_SYNC_QUERY_SIZE -1, INDEX_ACLK_ALERT, uuid_str, uuid_str);
  401. rc = db_execute(db_meta, sql);
  402. if (unlikely(rc))
  403. error_report("Failed to create ACLK alert table index for host %s", host ? string2str(host->hostname) : host_guid);
  404. snprintfz(sql, ACLK_SYNC_QUERY_SIZE -1, INDEX_ACLK_ALERT1, uuid_str, uuid_str);
  405. rc = db_execute(db_meta, sql);
  406. if (unlikely(rc))
  407. error_report("Failed to create ACLK alert table index 1 for host %s", host ? string2str(host->hostname) : host_guid);
  408. snprintfz(sql, ACLK_SYNC_QUERY_SIZE -1, INDEX_ACLK_ALERT2, uuid_str, uuid_str);
  409. rc = db_execute(db_meta, sql);
  410. if (unlikely(rc))
  411. error_report("Failed to create ACLK alert table index 2 for host %s", host ? string2str(host->hostname) : host_guid);
  412. }
  413. if (likely(host) && unlikely(host->aclk_sync_host_config))
  414. return;
  415. if (unlikely(!host))
  416. return;
  417. struct aclk_sync_host_config *wc = callocz(1, sizeof(struct aclk_sync_host_config));
  418. if (node_id && !uuid_is_null(*node_id))
  419. uuid_unparse_lower(*node_id, wc->node_id);
  420. host->aclk_sync_host_config = (void *)wc;
  421. if (node_id && !host->node_id) {
  422. host->node_id = mallocz(sizeof(*host->node_id));
  423. uuid_copy(*host->node_id, *node_id);
  424. }
  425. wc->host = host;
  426. strcpy(wc->uuid_str, uuid_str);
  427. wc->alert_updates = 0;
  428. time_t now = now_realtime_sec();
  429. wc->node_info_send_time = (host == localhost || NULL == localhost) ? now - 25 : now;
  430. #endif
  431. }
  432. #define SQL_FETCH_ALL_HOSTS "SELECT host_id, hostname, registry_hostname, update_every, os, " \
  433. "timezone, tags, hops, memory_mode, abbrev_timezone, utc_offset, program_name, " \
  434. "program_version, entries, health_enabled FROM host WHERE hops >0;"
  435. #define SQL_FETCH_ALL_INSTANCES "SELECT ni.host_id, ni.node_id FROM host h, node_instance ni " \
  436. "WHERE h.host_id = ni.host_id AND ni.node_id IS NOT NULL; "
  437. void sql_aclk_sync_init(void)
  438. {
  439. char *err_msg = NULL;
  440. int rc;
  441. if (unlikely(!db_meta)) {
  442. if (default_rrd_memory_mode != RRD_MEMORY_MODE_DBENGINE) {
  443. return;
  444. }
  445. error_report("Database has not been initialized");
  446. return;
  447. }
  448. netdata_log_info("Creating archived hosts");
  449. int number_of_children = 0;
  450. rc = sqlite3_exec_monitored(db_meta, SQL_FETCH_ALL_HOSTS, create_host_callback, &number_of_children, &err_msg);
  451. if (rc != SQLITE_OK) {
  452. error_report("SQLite error when loading archived hosts, rc = %d (%s)", rc, err_msg);
  453. sqlite3_free(err_msg);
  454. }
  455. netdata_log_info("Created %d archived hosts", number_of_children);
  456. // Trigger host context load for hosts that have been created
  457. metadata_queue_load_host_context(NULL);
  458. #ifdef ENABLE_ACLK
  459. if (!number_of_children)
  460. aclk_queue_node_info(localhost, true);
  461. rc = sqlite3_exec_monitored(db_meta, SQL_FETCH_ALL_INSTANCES,aclk_config_parameters, NULL,&err_msg);
  462. if (rc != SQLITE_OK) {
  463. error_report("SQLite error when configuring host ACLK synchonization parameters, rc = %d (%s)", rc, err_msg);
  464. sqlite3_free(err_msg);
  465. }
  466. aclk_synchronization_init();
  467. netdata_log_info("ACLK sync initialization completed");
  468. #endif
  469. }
  470. // Public
  471. static inline void queue_aclk_sync_cmd(enum aclk_database_opcode opcode, const void *param0, const void *param1)
  472. {
  473. struct aclk_database_cmd cmd;
  474. cmd.opcode = opcode;
  475. cmd.param[0] = (void *) param0;
  476. cmd.param[1] = (void *) param1;
  477. cmd.completion = NULL;
  478. aclk_database_enq_cmd(&cmd);
  479. }
  480. // Public
  481. void aclk_push_alert_config(const char *node_id, const char *config_hash)
  482. {
  483. if (unlikely(!aclk_sync_config.initialized))
  484. return;
  485. queue_aclk_sync_cmd(ACLK_DATABASE_PUSH_ALERT_CONFIG, strdupz(node_id), strdupz(config_hash));
  486. }
  487. void aclk_push_node_alert_snapshot(const char *node_id)
  488. {
  489. if (unlikely(!aclk_sync_config.initialized))
  490. return;
  491. queue_aclk_sync_cmd(ACLK_DATABASE_PUSH_ALERT_SNAPSHOT, strdupz(node_id), NULL);
  492. }
  493. void aclk_push_node_removed_alerts(const char *node_id)
  494. {
  495. if (unlikely(!aclk_sync_config.initialized))
  496. return;
  497. queue_aclk_sync_cmd(ACLK_DATABASE_QUEUE_REMOVED_ALERTS, strdupz(node_id), NULL);
  498. }
  499. void schedule_node_info_update(RRDHOST *host __maybe_unused)
  500. {
  501. #ifdef ENABLE_ACLK
  502. if (unlikely(!host))
  503. return;
  504. struct aclk_database_cmd cmd;
  505. memset(&cmd, 0, sizeof(cmd));
  506. cmd.opcode = ACLK_DATABASE_NODE_STATE;
  507. cmd.param[0] = host;
  508. cmd.completion = NULL;
  509. aclk_database_enq_cmd(&cmd);
  510. #endif
  511. }