sqlite_aclk_alert.c 44 KB

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  1. // SPDX-License-Identifier: GPL-3.0-or-later
  2. #include "sqlite_functions.h"
  3. #include "sqlite_aclk_alert.h"
  4. #ifdef ENABLE_ACLK
  5. #include "../../aclk/aclk_alarm_api.h"
  6. #endif
  7. #define SQLITE3_COLUMN_STRDUPZ_OR_NULL(res, param) \
  8. ({ \
  9. int _param = (param); \
  10. sqlite3_column_bytes((res), (_param)) ? strdupz((char *)sqlite3_column_text((res), (_param))) : NULL; \
  11. })
  12. #define SQL_UPDATE_FILTERED_ALERT \
  13. "UPDATE aclk_alert_%s SET filtered_alert_unique_id = %u, date_created = unixepoch() where filtered_alert_unique_id = %u"
  14. static void update_filtered(ALARM_ENTRY *ae, uint32_t unique_id, char *uuid_str)
  15. {
  16. char sql[ACLK_SYNC_QUERY_SIZE];
  17. snprintfz(sql, ACLK_SYNC_QUERY_SIZE-1, SQL_UPDATE_FILTERED_ALERT, uuid_str, ae->unique_id, unique_id);
  18. sqlite3_exec_monitored(db_meta, sql, 0, 0, NULL);
  19. ae->flags |= HEALTH_ENTRY_FLAG_ACLK_QUEUED;
  20. }
  21. #define SQL_SELECT_VARIABLE_ALERT_BY_UNIQUE_ID \
  22. "SELECT hld.unique_id FROM health_log hl, alert_hash ah, health_log_detail hld " \
  23. "WHERE hld.unique_id = @unique_id AND hl.config_hash_id = ah.hash_id AND hld.health_log_id = hl.health_log_id " \
  24. "AND hl.host_id = @host_id AND ah.warn IS NULL AND ah.crit IS NULL"
  25. static inline bool is_event_from_alert_variable_config(uint32_t unique_id, uuid_t *host_id)
  26. {
  27. sqlite3_stmt *res = NULL;
  28. int rc = 0;
  29. bool ret = false;
  30. rc = sqlite3_prepare_v2(db_meta, SQL_SELECT_VARIABLE_ALERT_BY_UNIQUE_ID, -1, &res, 0);
  31. if (rc != SQLITE_OK) {
  32. error_report("Failed to prepare statement when trying to check for alert variables.");
  33. return false;
  34. }
  35. rc = sqlite3_bind_int(res, 1, (int) unique_id);
  36. if (unlikely(rc != SQLITE_OK)) {
  37. error_report("Failed to bind unique_id for checking alert variable.");
  38. goto fail;
  39. }
  40. rc = sqlite3_bind_blob(res, 2, host_id, sizeof(*host_id), SQLITE_STATIC);
  41. if (unlikely(rc != SQLITE_OK)) {
  42. error_report("Failed to bind host_id for checking alert variable.");
  43. goto fail;
  44. }
  45. rc = sqlite3_step_monitored(res);
  46. if (likely(rc == SQLITE_ROW))
  47. ret = true;
  48. fail:
  49. rc = sqlite3_finalize(res);
  50. if (unlikely(rc != SQLITE_OK))
  51. error_report("Failed to finalize statement when trying to check for alert variables, rc = %d", rc);
  52. return ret;
  53. }
  54. #define MAX_REMOVED_PERIOD 604800 //a week
  55. //decide if some events should be sent or not
  56. #define SQL_SELECT_ALERT_BY_ID \
  57. "SELECT hld.new_status, hl.config_hash_id, hld.unique_id FROM health_log hl, aclk_alert_%s aa, health_log_detail hld " \
  58. "WHERE hl.host_id = @host_id AND +hld.unique_id = aa.filtered_alert_unique_id " \
  59. "AND hld.alarm_id = @alarm_id AND hl.health_log_id = hld.health_log_id " \
  60. "ORDER BY hld.rowid DESC LIMIT 1;"
  61. static bool should_send_to_cloud(RRDHOST *host, ALARM_ENTRY *ae)
  62. {
  63. sqlite3_stmt *res = NULL;
  64. char uuid_str[UUID_STR_LEN];
  65. uuid_unparse_lower_fix(&host->host_uuid, uuid_str);
  66. bool send = false;
  67. if (ae->new_status == RRDCALC_STATUS_REMOVED || ae->new_status == RRDCALC_STATUS_UNINITIALIZED)
  68. return 0;
  69. if (unlikely(uuid_is_null(ae->config_hash_id)))
  70. return 0;
  71. char sql[ACLK_SYNC_QUERY_SIZE];
  72. uuid_t config_hash_id;
  73. RRDCALC_STATUS status;
  74. uint32_t unique_id;
  75. //get the previous sent event of this alarm_id
  76. //base the search on the last filtered event
  77. snprintfz(sql, ACLK_SYNC_QUERY_SIZE - 1, SQL_SELECT_ALERT_BY_ID, uuid_str);
  78. int rc = sqlite3_prepare_v2(db_meta, sql, -1, &res, 0);
  79. if (rc != SQLITE_OK) {
  80. error_report("Failed to prepare statement when trying should_send_to_cloud.");
  81. return true;
  82. }
  83. rc = sqlite3_bind_blob(res, 1, &host->host_uuid, sizeof(host->host_uuid), SQLITE_STATIC);
  84. if (unlikely(rc != SQLITE_OK)) {
  85. error_report("Failed to bind host_id for checking should_send_to_cloud");
  86. goto done;
  87. }
  88. rc = sqlite3_bind_int(res, 2, (int) ae->alarm_id);
  89. if (unlikely(rc != SQLITE_OK)) {
  90. error_report("Failed to bind alarm_id for checking should_send_to_cloud");
  91. goto done;
  92. }
  93. rc = sqlite3_step_monitored(res);
  94. if (likely(rc == SQLITE_ROW)) {
  95. status = (RRDCALC_STATUS)sqlite3_column_int(res, 0);
  96. if (sqlite3_column_type(res, 1) != SQLITE_NULL)
  97. uuid_copy(config_hash_id, *((uuid_t *)sqlite3_column_blob(res, 1)));
  98. unique_id = (uint32_t)sqlite3_column_int64(res, 2);
  99. if (ae->new_status != (RRDCALC_STATUS)status || uuid_memcmp(&ae->config_hash_id, &config_hash_id))
  100. send = true;
  101. else
  102. update_filtered(ae, unique_id, uuid_str);
  103. } else
  104. send = true;
  105. done:
  106. rc = sqlite3_finalize(res);
  107. if (unlikely(rc != SQLITE_OK))
  108. error_report("Failed to finalize statement when trying should_send_to_cloud, rc = %d", rc);
  109. return send;
  110. }
  111. #define SQL_QUEUE_ALERT_TO_CLOUD \
  112. "INSERT INTO aclk_alert_%s (alert_unique_id, date_created, filtered_alert_unique_id) " \
  113. "VALUES (@alert_unique_id, UNIXEPOCH(), @alert_unique_id) ON CONFLICT (alert_unique_id) DO NOTHING;"
  114. void sql_queue_alarm_to_aclk(RRDHOST *host, ALARM_ENTRY *ae, bool skip_filter)
  115. {
  116. sqlite3_stmt *res_alert = NULL;
  117. char sql[ACLK_SYNC_QUERY_SIZE];
  118. char uuid_str[UUID_STR_LEN];
  119. if (!service_running(SERVICE_ACLK))
  120. return;
  121. if (!claimed() || ae->flags & HEALTH_ENTRY_FLAG_ACLK_QUEUED)
  122. return;
  123. if (false == skip_filter && !should_send_to_cloud(host, ae))
  124. return;
  125. if (is_event_from_alert_variable_config(ae->unique_id, &host->host_uuid))
  126. return;
  127. uuid_unparse_lower_fix(&host->host_uuid, uuid_str);
  128. snprintfz(sql, ACLK_SYNC_QUERY_SIZE - 1, SQL_QUEUE_ALERT_TO_CLOUD, uuid_str);
  129. int rc = sqlite3_prepare_v2(db_meta, sql, -1, &res_alert, 0);
  130. if (unlikely(rc != SQLITE_OK)) {
  131. error_report("Failed to prepare statement to store alert event");
  132. return;
  133. }
  134. rc = sqlite3_bind_int(res_alert, 1, (int) ae->unique_id);
  135. if (unlikely(rc != SQLITE_OK))
  136. goto bind_fail;
  137. rc = execute_insert(res_alert);
  138. if (unlikely(rc == SQLITE_DONE)) {
  139. ae->flags |= HEALTH_ENTRY_FLAG_ACLK_QUEUED;
  140. rrdhost_flag_set(host, RRDHOST_FLAG_ACLK_STREAM_ALERTS);
  141. } else
  142. error_report("Failed to store alert event %u, rc = %d", ae->unique_id, rc);
  143. bind_fail:
  144. if (unlikely(sqlite3_finalize(res_alert) != SQLITE_OK))
  145. error_report("Failed to reset statement in store alert event, rc = %d", rc);
  146. }
  147. int rrdcalc_status_to_proto_enum(RRDCALC_STATUS status)
  148. {
  149. #ifdef ENABLE_ACLK
  150. switch(status) {
  151. case RRDCALC_STATUS_REMOVED:
  152. return ALARM_STATUS_REMOVED;
  153. case RRDCALC_STATUS_UNDEFINED:
  154. return ALARM_STATUS_NOT_A_NUMBER;
  155. case RRDCALC_STATUS_CLEAR:
  156. return ALARM_STATUS_CLEAR;
  157. case RRDCALC_STATUS_WARNING:
  158. return ALARM_STATUS_WARNING;
  159. case RRDCALC_STATUS_CRITICAL:
  160. return ALARM_STATUS_CRITICAL;
  161. default:
  162. return ALARM_STATUS_UNKNOWN;
  163. }
  164. #else
  165. UNUSED(status);
  166. return 1;
  167. #endif
  168. }
  169. static inline char *sqlite3_uuid_unparse_strdupz(sqlite3_stmt *res, int iCol) {
  170. char uuid_str[UUID_STR_LEN];
  171. if(sqlite3_column_type(res, iCol) == SQLITE_NULL)
  172. uuid_str[0] = '\0';
  173. else
  174. uuid_unparse_lower(*((uuid_t *) sqlite3_column_blob(res, iCol)), uuid_str);
  175. return strdupz(uuid_str);
  176. }
  177. static inline char *sqlite3_text_strdupz_empty(sqlite3_stmt *res, int iCol) {
  178. char *ret;
  179. if(sqlite3_column_type(res, iCol) == SQLITE_NULL)
  180. ret = "";
  181. else
  182. ret = (char *)sqlite3_column_text(res, iCol);
  183. return strdupz(ret);
  184. }
  185. void aclk_push_alert_event(struct aclk_sync_host_config *wc)
  186. {
  187. #ifndef ENABLE_ACLK
  188. UNUSED(wc);
  189. #else
  190. int rc;
  191. if (unlikely(!wc->alert_updates)) {
  192. netdata_log_access(
  193. "ACLK STA [%s (%s)]: Ignoring alert push event, updates have been turned off for this node.",
  194. wc->node_id,
  195. wc->host ? rrdhost_hostname(wc->host) : "N/A");
  196. return;
  197. }
  198. char *claim_id = get_agent_claimid();
  199. if (unlikely(!claim_id))
  200. return;
  201. if (unlikely(!wc->host)) {
  202. freez(claim_id);
  203. return;
  204. }
  205. BUFFER *sql = buffer_create(1024, &netdata_buffers_statistics.buffers_sqlite);
  206. int limit = ACLK_MAX_ALERT_UPDATES;
  207. sqlite3_stmt *res = NULL;
  208. buffer_sprintf(
  209. sql,
  210. "select aa.sequence_id, hld.unique_id, hld.alarm_id, hl.config_hash_id, hld.updated_by_id, hld.when_key, "
  211. " hld.duration, hld.non_clear_duration, hld.flags, hld.exec_run_timestamp, hld.delay_up_to_timestamp, hl.name, "
  212. " hl.chart, hl.exec, hl.recipient, ha.source, hl.units, hld.info, hld.exec_code, hld.new_status, "
  213. " hld.old_status, hld.delay, hld.new_value, hld.old_value, hld.last_repeat, hl.chart_context, hld.transition_id, "
  214. " hld.alarm_event_id, hl.chart_name, hld.summary "
  215. " from health_log hl, aclk_alert_%s aa, alert_hash ha, health_log_detail hld "
  216. " where hld.unique_id = aa.alert_unique_id and hl.config_hash_id = ha.hash_id and aa.date_submitted is null "
  217. " and hl.host_id = @host_id and hl.health_log_id = hld.health_log_id "
  218. " order by aa.sequence_id asc limit %d;",
  219. wc->uuid_str,
  220. limit);
  221. rc = sqlite3_prepare_v2(db_meta, buffer_tostring(sql), -1, &res, 0);
  222. if (rc != SQLITE_OK) {
  223. BUFFER *sql_fix = buffer_create(1024, &netdata_buffers_statistics.buffers_sqlite);
  224. buffer_sprintf(sql_fix, TABLE_ACLK_ALERT, wc->uuid_str);
  225. rc = db_execute(db_meta, buffer_tostring(sql_fix));
  226. if (unlikely(rc))
  227. error_report("Failed to create ACLK alert table for host %s", rrdhost_hostname(wc->host));
  228. else {
  229. buffer_flush(sql_fix);
  230. buffer_sprintf(sql_fix, INDEX_ACLK_ALERT, wc->uuid_str, wc->uuid_str);
  231. if (unlikely(db_execute(db_meta, buffer_tostring(sql_fix))))
  232. error_report("Failed to create ACLK alert table for host %s", rrdhost_hostname(wc->host));
  233. }
  234. buffer_free(sql_fix);
  235. // Try again
  236. rc = sqlite3_prepare_v2(db_meta, buffer_tostring(sql), -1, &res, 0);
  237. if (rc != SQLITE_OK) {
  238. error_report("Failed to prepare statement when trying to send an alert update via ACLK");
  239. buffer_free(sql);
  240. freez(claim_id);
  241. return;
  242. }
  243. }
  244. rc = sqlite3_bind_blob(res, 1, &wc->host->host_uuid, sizeof(wc->host->host_uuid), SQLITE_STATIC);
  245. if (unlikely(rc != SQLITE_OK)) {
  246. error_report("Failed to bind host_id for pushing alert event.");
  247. sqlite3_finalize(res);
  248. buffer_free(sql);
  249. freez(claim_id);
  250. return;
  251. }
  252. uint64_t first_sequence_id = 0;
  253. uint64_t last_sequence_id = 0;
  254. while (sqlite3_step_monitored(res) == SQLITE_ROW) {
  255. struct alarm_log_entry alarm_log;
  256. char old_value_string[100 + 1];
  257. char new_value_string[100 + 1];
  258. alarm_log.node_id = wc->node_id;
  259. alarm_log.claim_id = claim_id;
  260. alarm_log.chart = strdupz((char *)sqlite3_column_text(res, 12));
  261. alarm_log.name = strdupz((char *)sqlite3_column_text(res, 11));
  262. alarm_log.when = (time_t) sqlite3_column_int64(res, 5);
  263. alarm_log.config_hash = sqlite3_uuid_unparse_strdupz(res, 3);
  264. alarm_log.utc_offset = wc->host->utc_offset;
  265. alarm_log.timezone = strdupz(rrdhost_abbrev_timezone(wc->host));
  266. alarm_log.exec_path = sqlite3_column_bytes(res, 13) > 0 ? strdupz((char *)sqlite3_column_text(res, 13)) :
  267. strdupz((char *)string2str(wc->host->health.health_default_exec));
  268. alarm_log.conf_source = sqlite3_column_bytes(res, 15) > 0 ? strdupz((char *)sqlite3_column_text(res, 15)) : strdupz("");
  269. char *edit_command = sqlite3_column_bytes(res, 15) > 0 ?
  270. health_edit_command_from_source((char *)sqlite3_column_text(res, 15)) :
  271. strdupz("UNKNOWN=0=UNKNOWN");
  272. alarm_log.command = strdupz(edit_command);
  273. alarm_log.duration = (time_t) sqlite3_column_int64(res, 6);
  274. alarm_log.non_clear_duration = (time_t) sqlite3_column_int64(res, 7);
  275. alarm_log.status = rrdcalc_status_to_proto_enum((RRDCALC_STATUS) sqlite3_column_int(res, 19));
  276. alarm_log.old_status = rrdcalc_status_to_proto_enum((RRDCALC_STATUS) sqlite3_column_int(res, 20));
  277. alarm_log.delay = (int) sqlite3_column_int(res, 21);
  278. alarm_log.delay_up_to_timestamp = (time_t) sqlite3_column_int64(res, 10);
  279. alarm_log.last_repeat = (time_t) sqlite3_column_int64(res, 24);
  280. alarm_log.silenced = ((sqlite3_column_int64(res, 8) & HEALTH_ENTRY_FLAG_SILENCED) ||
  281. (sqlite3_column_type(res, 14) != SQLITE_NULL &&
  282. !strncmp((char *)sqlite3_column_text(res, 14), "silent", 6))) ?
  283. 1 :
  284. 0;
  285. alarm_log.value_string =
  286. sqlite3_column_type(res, 22) == SQLITE_NULL ?
  287. strdupz((char *)"-") :
  288. strdupz((char *)format_value_and_unit(
  289. new_value_string, 100, sqlite3_column_double(res, 22), (char *)sqlite3_column_text(res, 16), -1));
  290. alarm_log.old_value_string =
  291. sqlite3_column_type(res, 23) == SQLITE_NULL ?
  292. strdupz((char *)"-") :
  293. strdupz((char *)format_value_and_unit(
  294. old_value_string, 100, sqlite3_column_double(res, 23), (char *)sqlite3_column_text(res, 16), -1));
  295. alarm_log.value = (NETDATA_DOUBLE) sqlite3_column_double(res, 22);
  296. alarm_log.old_value = (NETDATA_DOUBLE) sqlite3_column_double(res, 23);
  297. alarm_log.updated = (sqlite3_column_int64(res, 8) & HEALTH_ENTRY_FLAG_UPDATED) ? 1 : 0;
  298. alarm_log.rendered_info = sqlite3_text_strdupz_empty(res, 17);
  299. alarm_log.chart_context = sqlite3_text_strdupz_empty(res, 25);
  300. alarm_log.transition_id = sqlite3_uuid_unparse_strdupz(res, 26);
  301. alarm_log.event_id = (time_t) sqlite3_column_int64(res, 27);
  302. alarm_log.chart_name = sqlite3_text_strdupz_empty(res, 28);
  303. alarm_log.summary = sqlite3_text_strdupz_empty(res, 29);
  304. aclk_send_alarm_log_entry(&alarm_log);
  305. if (first_sequence_id == 0)
  306. first_sequence_id = (uint64_t) sqlite3_column_int64(res, 0);
  307. if (wc->alerts_log_first_sequence_id == 0)
  308. wc->alerts_log_first_sequence_id = (uint64_t) sqlite3_column_int64(res, 0);
  309. last_sequence_id = (uint64_t) sqlite3_column_int64(res, 0);
  310. wc->alerts_log_last_sequence_id = (uint64_t) sqlite3_column_int64(res, 0);
  311. destroy_alarm_log_entry(&alarm_log);
  312. freez(edit_command);
  313. }
  314. if (first_sequence_id) {
  315. buffer_flush(sql);
  316. buffer_sprintf(sql, "UPDATE aclk_alert_%s SET date_submitted=unixepoch() "
  317. "WHERE +date_submitted IS NULL AND sequence_id BETWEEN %" PRIu64 " AND %" PRIu64 ";",
  318. wc->uuid_str, first_sequence_id, last_sequence_id);
  319. if (unlikely(db_execute(db_meta, buffer_tostring(sql))))
  320. error_report("Failed to mark ACLK alert entries as submitted for host %s", rrdhost_hostname(wc->host));
  321. // Mark to do one more check
  322. rrdhost_flag_set(wc->host, RRDHOST_FLAG_ACLK_STREAM_ALERTS);
  323. } else {
  324. if (wc->alerts_log_first_sequence_id)
  325. netdata_log_access(
  326. "ACLK RES [%s (%s)]: ALERTS SENT from %" PRIu64 " to %" PRIu64 "",
  327. wc->node_id,
  328. wc->host ? rrdhost_hostname(wc->host) : "N/A",
  329. wc->alerts_log_first_sequence_id,
  330. wc->alerts_log_last_sequence_id);
  331. wc->alerts_log_first_sequence_id = 0;
  332. wc->alerts_log_last_sequence_id = 0;
  333. }
  334. rc = sqlite3_finalize(res);
  335. if (unlikely(rc != SQLITE_OK))
  336. error_report("Failed to finalize statement to send alert entries from the database, rc = %d", rc);
  337. freez(claim_id);
  338. buffer_free(sql);
  339. #endif
  340. }
  341. void aclk_push_alert_events_for_all_hosts(void)
  342. {
  343. RRDHOST *host;
  344. dfe_start_reentrant(rrdhost_root_index, host) {
  345. if (rrdhost_flag_check(host, RRDHOST_FLAG_ARCHIVED) ||
  346. !rrdhost_flag_check(host, RRDHOST_FLAG_ACLK_STREAM_ALERTS))
  347. continue;
  348. rrdhost_flag_clear(host, RRDHOST_FLAG_ACLK_STREAM_ALERTS);
  349. struct aclk_sync_host_config *wc = host->aclk_sync_host_config;
  350. if (likely(wc))
  351. aclk_push_alert_event(wc);
  352. }
  353. dfe_done(host);
  354. }
  355. void sql_queue_existing_alerts_to_aclk(RRDHOST *host)
  356. {
  357. char uuid_str[UUID_STR_LEN];
  358. uuid_unparse_lower_fix(&host->host_uuid, uuid_str);
  359. BUFFER *sql = buffer_create(1024, &netdata_buffers_statistics.buffers_sqlite);
  360. sqlite3_stmt *res = NULL;
  361. int rc;
  362. rw_spinlock_write_lock(&host->health_log.spinlock);
  363. buffer_sprintf(sql, "delete from aclk_alert_%s; ", uuid_str);
  364. if (unlikely(db_execute(db_meta, buffer_tostring(sql)))) {
  365. rw_spinlock_write_unlock(&host->health_log.spinlock);
  366. buffer_free(sql);
  367. return;
  368. }
  369. buffer_flush(sql);
  370. buffer_sprintf(
  371. sql,
  372. "insert into aclk_alert_%s (alert_unique_id, date_created, filtered_alert_unique_id) "
  373. "select hld.unique_id alert_unique_id, unixepoch(), hld.unique_id alert_unique_id from health_log_detail hld, health_log hl "
  374. "where hld.new_status <> 0 and hld.new_status <> -2 and hl.health_log_id = hld.health_log_id and hl.config_hash_id is not null "
  375. "and hld.updated_by_id = 0 and hl.host_id = @host_id order by hld.unique_id asc on conflict (alert_unique_id) do nothing;",
  376. uuid_str);
  377. rc = sqlite3_prepare_v2(db_meta, buffer_tostring(sql), -1, &res, 0);
  378. if (rc != SQLITE_OK) {
  379. error_report("Failed to prepare statement when trying to queue existing alerts.");
  380. rw_spinlock_write_unlock(&host->health_log.spinlock);
  381. buffer_free(sql);
  382. return;
  383. }
  384. rc = sqlite3_bind_blob(res, 1, &host->host_uuid, sizeof(host->host_uuid), SQLITE_STATIC);
  385. if (unlikely(rc != SQLITE_OK)) {
  386. error_report("Failed to bind host_id for when trying to queue existing alerts.");
  387. sqlite3_finalize(res);
  388. rw_spinlock_write_unlock(&host->health_log.spinlock);
  389. buffer_free(sql);
  390. return;
  391. }
  392. rc = execute_insert(res);
  393. if (unlikely(rc != SQLITE_DONE))
  394. error_report("Failed to queue existing alerts, rc = %d", rc);
  395. rc = sqlite3_finalize(res);
  396. if (unlikely(rc != SQLITE_OK))
  397. error_report("Failed to finalize statement to queue existing alerts, rc = %d", rc);
  398. rw_spinlock_write_unlock(&host->health_log.spinlock);
  399. buffer_free(sql);
  400. rrdhost_flag_set(host, RRDHOST_FLAG_ACLK_STREAM_ALERTS);
  401. }
  402. void aclk_send_alarm_configuration(char *config_hash)
  403. {
  404. if (unlikely(!config_hash))
  405. return;
  406. struct aclk_sync_host_config *wc = (struct aclk_sync_host_config *) localhost->aclk_sync_host_config;
  407. if (unlikely(!wc))
  408. return;
  409. netdata_log_access(
  410. "ACLK REQ [%s (%s)]: Request to send alert config %s.",
  411. wc->node_id,
  412. wc->host ? rrdhost_hostname(wc->host) : "N/A",
  413. config_hash);
  414. aclk_push_alert_config(wc->node_id, config_hash);
  415. }
  416. #define SQL_SELECT_ALERT_CONFIG \
  417. "SELECT alarm, template, on_key, class, type, component, os, hosts, plugin," \
  418. "module, charts, lookup, every, units, green, red, calc, warn, crit, to_key, exec, delay, repeat, info," \
  419. "options, host_labels, p_db_lookup_dimensions, p_db_lookup_method, p_db_lookup_options, p_db_lookup_after," \
  420. "p_db_lookup_before, p_update_every, chart_labels, summary FROM alert_hash WHERE hash_id = @hash_id;"
  421. int aclk_push_alert_config_event(char *node_id __maybe_unused, char *config_hash __maybe_unused)
  422. {
  423. int rc = 0;
  424. #ifdef ENABLE_ACLK
  425. CHECK_SQLITE_CONNECTION(db_meta);
  426. sqlite3_stmt *res = NULL;
  427. struct aclk_sync_host_config *wc = NULL;
  428. RRDHOST *host = find_host_by_node_id(node_id);
  429. if (unlikely(!host)) {
  430. freez(config_hash);
  431. freez(node_id);
  432. return 1;
  433. }
  434. wc = (struct aclk_sync_host_config *)host->aclk_sync_host_config;
  435. if (unlikely(!wc)) {
  436. freez(config_hash);
  437. freez(node_id);
  438. return 1;
  439. }
  440. rc = sqlite3_prepare_v2(db_meta, SQL_SELECT_ALERT_CONFIG, -1, &res, 0);
  441. if (rc != SQLITE_OK) {
  442. error_report("Failed to prepare statement when trying to fetch an alarm hash configuration");
  443. return 1;
  444. }
  445. uuid_t hash_uuid;
  446. if (uuid_parse(config_hash, hash_uuid))
  447. return 1;
  448. rc = sqlite3_bind_blob(res, 1, &hash_uuid , sizeof(hash_uuid), SQLITE_STATIC);
  449. if (unlikely(rc != SQLITE_OK))
  450. goto bind_fail;
  451. struct aclk_alarm_configuration alarm_config;
  452. struct provide_alarm_configuration p_alarm_config;
  453. p_alarm_config.cfg_hash = NULL;
  454. if (sqlite3_step_monitored(res) == SQLITE_ROW) {
  455. int param = 0;
  456. alarm_config.alarm = SQLITE3_COLUMN_STRDUPZ_OR_NULL(res, param++);
  457. alarm_config.tmpl = SQLITE3_COLUMN_STRDUPZ_OR_NULL(res, param++);
  458. alarm_config.on_chart = SQLITE3_COLUMN_STRDUPZ_OR_NULL(res, param++);
  459. alarm_config.classification = SQLITE3_COLUMN_STRDUPZ_OR_NULL(res, param++);
  460. alarm_config.type = SQLITE3_COLUMN_STRDUPZ_OR_NULL(res, param++);
  461. alarm_config.component = SQLITE3_COLUMN_STRDUPZ_OR_NULL(res, param++);
  462. alarm_config.os = SQLITE3_COLUMN_STRDUPZ_OR_NULL(res, param++);
  463. alarm_config.hosts = SQLITE3_COLUMN_STRDUPZ_OR_NULL(res, param++);
  464. alarm_config.plugin = SQLITE3_COLUMN_STRDUPZ_OR_NULL(res, param++);
  465. alarm_config.module = SQLITE3_COLUMN_STRDUPZ_OR_NULL(res, param++);
  466. alarm_config.charts = SQLITE3_COLUMN_STRDUPZ_OR_NULL(res, param++);
  467. alarm_config.lookup = SQLITE3_COLUMN_STRDUPZ_OR_NULL(res, param++);
  468. alarm_config.every = SQLITE3_COLUMN_STRDUPZ_OR_NULL(res, param++);
  469. alarm_config.units = SQLITE3_COLUMN_STRDUPZ_OR_NULL(res, param++);
  470. alarm_config.green = SQLITE3_COLUMN_STRDUPZ_OR_NULL(res, param++);
  471. alarm_config.red = SQLITE3_COLUMN_STRDUPZ_OR_NULL(res, param++);
  472. alarm_config.calculation_expr = SQLITE3_COLUMN_STRDUPZ_OR_NULL(res, param++);
  473. alarm_config.warning_expr = SQLITE3_COLUMN_STRDUPZ_OR_NULL(res, param++);
  474. alarm_config.critical_expr = SQLITE3_COLUMN_STRDUPZ_OR_NULL(res, param++);
  475. alarm_config.recipient = SQLITE3_COLUMN_STRDUPZ_OR_NULL(res, param++);
  476. alarm_config.exec = SQLITE3_COLUMN_STRDUPZ_OR_NULL(res, param++);
  477. alarm_config.delay = SQLITE3_COLUMN_STRDUPZ_OR_NULL(res, param++);
  478. alarm_config.repeat = SQLITE3_COLUMN_STRDUPZ_OR_NULL(res, param++);
  479. alarm_config.info = SQLITE3_COLUMN_STRDUPZ_OR_NULL(res, param++);
  480. alarm_config.options = SQLITE3_COLUMN_STRDUPZ_OR_NULL(res, param++);
  481. alarm_config.host_labels = SQLITE3_COLUMN_STRDUPZ_OR_NULL(res, param++); // Current param 25
  482. alarm_config.p_db_lookup_dimensions = NULL;
  483. alarm_config.p_db_lookup_method = NULL;
  484. alarm_config.p_db_lookup_options = NULL;
  485. alarm_config.p_db_lookup_after = 0;
  486. alarm_config.p_db_lookup_before = 0;
  487. if (sqlite3_column_bytes(res, 29) > 0) {
  488. alarm_config.p_db_lookup_dimensions = SQLITE3_COLUMN_STRDUPZ_OR_NULL(res, param++); // Current param 26
  489. alarm_config.p_db_lookup_method = SQLITE3_COLUMN_STRDUPZ_OR_NULL(res, param++); // Current param 27
  490. if (param != 28)
  491. netdata_log_error("aclk_push_alert_config_event: Unexpected param number %d", param);
  492. BUFFER *tmp_buf = buffer_create(1024, &netdata_buffers_statistics.buffers_sqlite);
  493. buffer_data_options2string(tmp_buf, sqlite3_column_int(res, 28));
  494. alarm_config.p_db_lookup_options = strdupz((char *)buffer_tostring(tmp_buf));
  495. buffer_free(tmp_buf);
  496. alarm_config.p_db_lookup_after = sqlite3_column_int(res, 29);
  497. alarm_config.p_db_lookup_before = sqlite3_column_int(res, 30);
  498. }
  499. alarm_config.p_update_every = sqlite3_column_int(res, 31);
  500. alarm_config.chart_labels = SQLITE3_COLUMN_STRDUPZ_OR_NULL(res, 32);
  501. alarm_config.summary = SQLITE3_COLUMN_STRDUPZ_OR_NULL(res, 33);
  502. p_alarm_config.cfg_hash = strdupz((char *) config_hash);
  503. p_alarm_config.cfg = alarm_config;
  504. }
  505. if (likely(p_alarm_config.cfg_hash)) {
  506. netdata_log_access("ACLK RES [%s (%s)]: Sent alert config %s.", wc->node_id, wc->host ? rrdhost_hostname(wc->host) : "N/A", config_hash);
  507. aclk_send_provide_alarm_cfg(&p_alarm_config);
  508. freez(p_alarm_config.cfg_hash);
  509. destroy_aclk_alarm_configuration(&alarm_config);
  510. }
  511. else
  512. netdata_log_access("ACLK STA [%s (%s)]: Alert config for %s not found.", wc->node_id, wc->host ? rrdhost_hostname(wc->host) : "N/A", config_hash);
  513. bind_fail:
  514. rc = sqlite3_finalize(res);
  515. if (unlikely(rc != SQLITE_OK))
  516. error_report("Failed to reset statement when pushing alarm config hash, rc = %d", rc);
  517. freez(config_hash);
  518. freez(node_id);
  519. #endif
  520. return rc;
  521. }
  522. // Start streaming alerts
  523. void aclk_start_alert_streaming(char *node_id, bool resets)
  524. {
  525. uuid_t node_uuid;
  526. if (unlikely(!node_id || uuid_parse(node_id, node_uuid)))
  527. return;
  528. RRDHOST *host = find_host_by_node_id(node_id);
  529. if (unlikely(!host))
  530. return;
  531. struct aclk_sync_host_config *wc = host->aclk_sync_host_config;
  532. if (unlikely(!wc))
  533. return;
  534. if (unlikely(!host->health.health_enabled)) {
  535. netdata_log_access("ACLK STA [%s (N/A)]: Ignoring request to stream alert state changes, health is disabled.", node_id);
  536. return;
  537. }
  538. if (resets) {
  539. netdata_log_access("ACLK REQ [%s (%s)]: STREAM ALERTS ENABLED (RESET REQUESTED)", node_id, wc->host ? rrdhost_hostname(wc->host) : "N/A");
  540. sql_queue_existing_alerts_to_aclk(host);
  541. } else
  542. netdata_log_access("ACLK REQ [%s (%s)]: STREAM ALERTS ENABLED", node_id, wc->host ? rrdhost_hostname(wc->host) : "N/A");
  543. wc->alert_updates = 1;
  544. wc->alert_queue_removed = SEND_REMOVED_AFTER_HEALTH_LOOPS;
  545. }
  546. #define SQL_QUEUE_REMOVE_ALERTS "INSERT INTO aclk_alert_%s (alert_unique_id, date_created, filtered_alert_unique_id) " \
  547. "SELECT hld.unique_id alert_unique_id, UNIXEPOCH(), hld.unique_id alert_unique_id FROM health_log hl, health_log_detail hld " \
  548. "WHERE hl.host_id = @host_id AND hl.health_log_id = hld.health_log_id AND hld.new_status = -2 AND hld.updated_by_id = 0 " \
  549. "AND hld.unique_id NOT IN (SELECT alert_unique_id FROM aclk_alert_%s) " \
  550. "AND hl.config_hash_id NOT IN (select hash_id from alert_hash where warn is null and crit is null) " \
  551. "AND hl.name || hl.chart NOT IN (select name || chart from health_log where name = hl.name and chart = hl.chart and alarm_id > hl.alarm_id and host_id = hl.host_id) " \
  552. "ORDER BY hld.unique_id ASC ON CONFLICT (alert_unique_id) DO NOTHING;"
  553. void sql_process_queue_removed_alerts_to_aclk(char *node_id)
  554. {
  555. struct aclk_sync_host_config *wc;
  556. RRDHOST *host = find_host_by_node_id(node_id);
  557. freez(node_id);
  558. if (unlikely(!host || !(wc = host->aclk_sync_host_config)))
  559. return;
  560. char sql[ACLK_SYNC_QUERY_SIZE * 2];
  561. sqlite3_stmt *res = NULL;
  562. snprintfz(sql, ACLK_SYNC_QUERY_SIZE * 2 - 1, SQL_QUEUE_REMOVE_ALERTS, wc->uuid_str, wc->uuid_str);
  563. int rc = sqlite3_prepare_v2(db_meta, sql, -1, &res, 0);
  564. if (rc != SQLITE_OK) {
  565. error_report("Failed to prepare statement when trying to queue removed alerts.");
  566. return;
  567. }
  568. rc = sqlite3_bind_blob(res, 1, &host->host_uuid, sizeof(host->host_uuid), SQLITE_STATIC);
  569. if (unlikely(rc != SQLITE_OK)) {
  570. error_report("Failed to bind host_id for when trying to queue remvoed alerts.");
  571. sqlite3_finalize(res);
  572. return;
  573. }
  574. rc = execute_insert(res);
  575. if (unlikely(rc != SQLITE_DONE)) {
  576. sqlite3_finalize(res);
  577. error_report("Failed to queue removed alerts, rc = %d", rc);
  578. return;
  579. }
  580. rc = sqlite3_finalize(res);
  581. if (unlikely(rc != SQLITE_OK))
  582. error_report("Failed to finalize statement to queue removed alerts, rc = %d", rc);
  583. netdata_log_access("ACLK STA [%s (%s)]: QUEUED REMOVED ALERTS", wc->node_id, rrdhost_hostname(wc->host));
  584. rrdhost_flag_set(wc->host, RRDHOST_FLAG_ACLK_STREAM_ALERTS);
  585. wc->alert_queue_removed = 0;
  586. }
  587. void sql_queue_removed_alerts_to_aclk(RRDHOST *host)
  588. {
  589. if (unlikely(!host->aclk_sync_host_config))
  590. return;
  591. if (!claimed() || !host->node_id)
  592. return;
  593. char node_id[UUID_STR_LEN];
  594. uuid_unparse_lower(*host->node_id, node_id);
  595. aclk_push_node_removed_alerts(node_id);
  596. }
  597. void aclk_process_send_alarm_snapshot(char *node_id, char *claim_id __maybe_unused, char *snapshot_uuid)
  598. {
  599. uuid_t node_uuid;
  600. if (unlikely(!node_id || uuid_parse(node_id, node_uuid)))
  601. return;
  602. RRDHOST *host = find_host_by_node_id(node_id);
  603. if (unlikely(!host)) {
  604. netdata_log_access("ACLK STA [%s (N/A)]: ACLK node id does not exist", node_id);
  605. return;
  606. }
  607. struct aclk_sync_host_config *wc = (struct aclk_sync_host_config *)host->aclk_sync_host_config;
  608. if (unlikely(!wc)) {
  609. netdata_log_access("ACLK STA [%s (N/A)]: ACLK node id does not exist", node_id);
  610. return;
  611. }
  612. netdata_log_access(
  613. "IN [%s (%s)]: Request to send alerts snapshot, snapshot_uuid %s",
  614. node_id,
  615. wc->host ? rrdhost_hostname(wc->host) : "N/A",
  616. snapshot_uuid);
  617. if (wc->alerts_snapshot_uuid && !strcmp(wc->alerts_snapshot_uuid,snapshot_uuid))
  618. return;
  619. __sync_synchronize();
  620. wc->alerts_snapshot_uuid = strdupz(snapshot_uuid);
  621. __sync_synchronize();
  622. aclk_push_node_alert_snapshot(node_id);
  623. }
  624. #ifdef ENABLE_ACLK
  625. void health_alarm_entry2proto_nolock(struct alarm_log_entry *alarm_log, ALARM_ENTRY *ae, RRDHOST *host)
  626. {
  627. char *edit_command = ae->source ? health_edit_command_from_source(ae_source(ae)) : strdupz("UNKNOWN=0=UNKNOWN");
  628. char config_hash_id[UUID_STR_LEN];
  629. uuid_unparse_lower(ae->config_hash_id, config_hash_id);
  630. char transition_id[UUID_STR_LEN];
  631. uuid_unparse_lower(ae->transition_id, transition_id);
  632. alarm_log->chart = strdupz(ae_chart_id(ae));
  633. alarm_log->name = strdupz(ae_name(ae));
  634. alarm_log->batch_id = 0;
  635. alarm_log->sequence_id = 0;
  636. alarm_log->when = (time_t)ae->when;
  637. alarm_log->config_hash = strdupz((char *)config_hash_id);
  638. alarm_log->utc_offset = host->utc_offset;
  639. alarm_log->timezone = strdupz(rrdhost_abbrev_timezone(host));
  640. alarm_log->exec_path = ae->exec ? strdupz(ae_exec(ae)) : strdupz((char *)string2str(host->health.health_default_exec));
  641. alarm_log->conf_source = ae->source ? strdupz(ae_source(ae)) : strdupz((char *)"");
  642. alarm_log->command = strdupz((char *)edit_command);
  643. alarm_log->duration = (time_t)ae->duration;
  644. alarm_log->non_clear_duration = (time_t)ae->non_clear_duration;
  645. alarm_log->status = rrdcalc_status_to_proto_enum((RRDCALC_STATUS)ae->new_status);
  646. alarm_log->old_status = rrdcalc_status_to_proto_enum((RRDCALC_STATUS)ae->old_status);
  647. alarm_log->delay = (int)ae->delay;
  648. alarm_log->delay_up_to_timestamp = (time_t)ae->delay_up_to_timestamp;
  649. alarm_log->last_repeat = (time_t)ae->last_repeat;
  650. alarm_log->silenced =
  651. ((ae->flags & HEALTH_ENTRY_FLAG_SILENCED) || (ae->recipient && !strncmp(ae_recipient(ae), "silent", 6))) ?
  652. 1 :
  653. 0;
  654. alarm_log->value_string = strdupz(ae_new_value_string(ae));
  655. alarm_log->old_value_string = strdupz(ae_old_value_string(ae));
  656. alarm_log->value = (!isnan(ae->new_value)) ? (NETDATA_DOUBLE)ae->new_value : 0;
  657. alarm_log->old_value = (!isnan(ae->old_value)) ? (NETDATA_DOUBLE)ae->old_value : 0;
  658. alarm_log->updated = (ae->flags & HEALTH_ENTRY_FLAG_UPDATED) ? 1 : 0;
  659. alarm_log->rendered_info = strdupz(ae_info(ae));
  660. alarm_log->chart_context = strdupz(ae_chart_context(ae));
  661. alarm_log->chart_name = strdupz(ae_chart_name(ae));
  662. alarm_log->transition_id = strdupz((char *)transition_id);
  663. alarm_log->event_id = (uint64_t) ae->alarm_event_id;
  664. alarm_log->summary = strdupz(ae_summary(ae));
  665. freez(edit_command);
  666. }
  667. #endif
  668. #ifdef ENABLE_ACLK
  669. static int have_recent_alarm(RRDHOST *host, uint32_t alarm_id, uint32_t mark)
  670. {
  671. ALARM_ENTRY *ae = host->health_log.alarms;
  672. while (ae) {
  673. if (ae->alarm_id == alarm_id && ae->unique_id >mark &&
  674. (ae->new_status != RRDCALC_STATUS_WARNING && ae->new_status != RRDCALC_STATUS_CRITICAL))
  675. return 1;
  676. ae = ae->next;
  677. }
  678. return 0;
  679. }
  680. #endif
  681. #define ALARM_EVENTS_PER_CHUNK 1000
  682. void aclk_push_alert_snapshot_event(char *node_id __maybe_unused)
  683. {
  684. #ifdef ENABLE_ACLK
  685. RRDHOST *host = find_host_by_node_id(node_id);
  686. if (unlikely(!host)) {
  687. netdata_log_access("AC [%s (N/A)]: Node id not found", node_id);
  688. freez(node_id);
  689. return;
  690. }
  691. freez(node_id);
  692. struct aclk_sync_host_config *wc = host->aclk_sync_host_config;
  693. // we perhaps we don't need this for snapshots
  694. if (unlikely(!wc->alert_updates)) {
  695. netdata_log_access(
  696. "ACLK STA [%s (%s)]: Ignoring alert snapshot event, updates have been turned off for this node.",
  697. wc->node_id,
  698. wc->host ? rrdhost_hostname(wc->host) : "N/A");
  699. return;
  700. }
  701. if (unlikely(!wc->alerts_snapshot_uuid))
  702. return;
  703. char *claim_id = get_agent_claimid();
  704. if (unlikely(!claim_id))
  705. return;
  706. netdata_log_access("ACLK REQ [%s (%s)]: Sending alerts snapshot, snapshot_uuid %s", wc->node_id, rrdhost_hostname(wc->host), wc->alerts_snapshot_uuid);
  707. uint32_t cnt = 0;
  708. char uuid_str[UUID_STR_LEN];
  709. uuid_unparse_lower_fix(&host->host_uuid, uuid_str);
  710. rw_spinlock_read_lock(&host->health_log.spinlock);
  711. ALARM_ENTRY *ae = host->health_log.alarms;
  712. for (; ae; ae = ae->next) {
  713. if (likely(ae->updated_by_id))
  714. continue;
  715. if (unlikely(ae->new_status == RRDCALC_STATUS_UNINITIALIZED))
  716. continue;
  717. if (have_recent_alarm(host, ae->alarm_id, ae->unique_id))
  718. continue;
  719. if (is_event_from_alert_variable_config(ae->unique_id, &host->host_uuid))
  720. continue;
  721. cnt++;
  722. }
  723. if (cnt) {
  724. uint32_t chunk = 1, chunks = 0;
  725. chunks = (cnt / ALARM_EVENTS_PER_CHUNK) + (cnt % ALARM_EVENTS_PER_CHUNK != 0);
  726. ae = host->health_log.alarms;
  727. cnt = 0;
  728. struct alarm_snapshot alarm_snap;
  729. alarm_snap.node_id = wc->node_id;
  730. alarm_snap.claim_id = claim_id;
  731. alarm_snap.snapshot_uuid = wc->alerts_snapshot_uuid;
  732. alarm_snap.chunks = chunks;
  733. alarm_snap.chunk = chunk;
  734. alarm_snapshot_proto_ptr_t snapshot_proto = NULL;
  735. for (; ae; ae = ae->next) {
  736. if (likely(ae->updated_by_id))
  737. continue;
  738. if (unlikely(ae->new_status == RRDCALC_STATUS_UNINITIALIZED))
  739. continue;
  740. if (have_recent_alarm(host, ae->alarm_id, ae->unique_id))
  741. continue;
  742. if (is_event_from_alert_variable_config(ae->unique_id, &host->host_uuid))
  743. continue;
  744. cnt++;
  745. struct alarm_log_entry alarm_log;
  746. alarm_log.node_id = wc->node_id;
  747. alarm_log.claim_id = claim_id;
  748. if (!snapshot_proto)
  749. snapshot_proto = generate_alarm_snapshot_proto(&alarm_snap);
  750. health_alarm_entry2proto_nolock(&alarm_log, ae, host);
  751. add_alarm_log_entry2snapshot(snapshot_proto, &alarm_log);
  752. if (cnt == ALARM_EVENTS_PER_CHUNK) {
  753. aclk_send_alarm_snapshot(snapshot_proto);
  754. cnt = 0;
  755. if (chunk < chunks) {
  756. chunk++;
  757. struct alarm_snapshot alarm_snap;
  758. alarm_snap.node_id = wc->node_id;
  759. alarm_snap.claim_id = claim_id;
  760. alarm_snap.snapshot_uuid = wc->alerts_snapshot_uuid;
  761. alarm_snap.chunks = chunks;
  762. alarm_snap.chunk = chunk;
  763. snapshot_proto = generate_alarm_snapshot_proto(&alarm_snap);
  764. }
  765. }
  766. destroy_alarm_log_entry(&alarm_log);
  767. }
  768. if (cnt)
  769. aclk_send_alarm_snapshot(snapshot_proto);
  770. }
  771. rw_spinlock_read_unlock(&host->health_log.spinlock);
  772. wc->alerts_snapshot_uuid = NULL;
  773. freez(claim_id);
  774. #endif
  775. }
  776. #define SQL_DELETE_ALERT_ENTRIES "DELETE FROM aclk_alert_%s WHERE date_created + %d < UNIXEPOCH();"
  777. void sql_aclk_alert_clean_dead_entries(RRDHOST *host)
  778. {
  779. char uuid_str[UUID_STR_LEN];
  780. uuid_unparse_lower_fix(&host->host_uuid, uuid_str);
  781. char sql[ACLK_SYNC_QUERY_SIZE];
  782. snprintfz(sql, ACLK_SYNC_QUERY_SIZE - 1, SQL_DELETE_ALERT_ENTRIES, uuid_str, MAX_REMOVED_PERIOD);
  783. char *err_msg = NULL;
  784. int rc = sqlite3_exec_monitored(db_meta, sql, NULL, NULL, &err_msg);
  785. if (rc != SQLITE_OK) {
  786. error_report("Failed when trying to clean stale ACLK alert entries from aclk_alert_%s, error message \"%s\"", uuid_str, err_msg);
  787. sqlite3_free(err_msg);
  788. }
  789. }
  790. #define SQL_GET_MIN_MAX_ALERT_SEQ "SELECT MIN(sequence_id), MAX(sequence_id), " \
  791. "(SELECT MAX(sequence_id) FROM aclk_alert_%s WHERE date_submitted IS NOT NULL) " \
  792. "FROM aclk_alert_%s WHERE date_submitted IS NULL;"
  793. int get_proto_alert_status(RRDHOST *host, struct proto_alert_status *proto_alert_status)
  794. {
  795. int rc;
  796. struct aclk_sync_host_config *wc = NULL;
  797. wc = (struct aclk_sync_host_config *)host->aclk_sync_host_config;
  798. if (!wc)
  799. return 1;
  800. proto_alert_status->alert_updates = wc->alert_updates;
  801. char sql[ACLK_SYNC_QUERY_SIZE];
  802. sqlite3_stmt *res = NULL;
  803. snprintfz(sql, ACLK_SYNC_QUERY_SIZE - 1, SQL_GET_MIN_MAX_ALERT_SEQ, wc->uuid_str, wc->uuid_str);
  804. rc = sqlite3_prepare_v2(db_meta, sql, -1, &res, 0);
  805. if (rc != SQLITE_OK) {
  806. error_report("Failed to prepare statement to get alert log status from the database.");
  807. return 1;
  808. }
  809. while (sqlite3_step_monitored(res) == SQLITE_ROW) {
  810. proto_alert_status->pending_min_sequence_id = sqlite3_column_bytes(res, 0) > 0 ? (uint64_t) sqlite3_column_int64(res, 0) : 0;
  811. proto_alert_status->pending_max_sequence_id = sqlite3_column_bytes(res, 1) > 0 ? (uint64_t) sqlite3_column_int64(res, 1) : 0;
  812. proto_alert_status->last_submitted_sequence_id = sqlite3_column_bytes(res, 2) > 0 ? (uint64_t) sqlite3_column_int64(res, 2) : 0;
  813. }
  814. rc = sqlite3_finalize(res);
  815. if (unlikely(rc != SQLITE_OK))
  816. error_report("Failed to finalize statement to get alert log status from the database, rc = %d", rc);
  817. return 0;
  818. }
  819. void aclk_send_alarm_checkpoint(char *node_id, char *claim_id __maybe_unused)
  820. {
  821. if (unlikely(!node_id))
  822. return;
  823. struct aclk_sync_host_config *wc = NULL;
  824. RRDHOST *host = find_host_by_node_id(node_id);
  825. if (unlikely(!host))
  826. return;
  827. wc = (struct aclk_sync_host_config *)host->aclk_sync_host_config;
  828. if (unlikely(!wc)) {
  829. netdata_log_access("ACLK REQ [%s (N/A)]: ALERTS CHECKPOINT REQUEST RECEIVED FOR INVALID NODE", node_id);
  830. return;
  831. }
  832. netdata_log_access("ACLK REQ [%s (%s)]: ALERTS CHECKPOINT REQUEST RECEIVED", node_id, rrdhost_hostname(host));
  833. wc->alert_checkpoint_req = SEND_CHECKPOINT_AFTER_HEALTH_LOOPS;
  834. }
  835. typedef struct active_alerts {
  836. char *name;
  837. char *chart;
  838. RRDCALC_STATUS status;
  839. } active_alerts_t;
  840. static inline int compare_active_alerts(const void * a, const void * b) {
  841. active_alerts_t *active_alerts_a = (active_alerts_t *)a;
  842. active_alerts_t *active_alerts_b = (active_alerts_t *)b;
  843. if( !(strcmp(active_alerts_a->name, active_alerts_b->name)) )
  844. {
  845. return strcmp(active_alerts_a->chart, active_alerts_b->chart);
  846. }
  847. else
  848. return strcmp(active_alerts_a->name, active_alerts_b->name);
  849. }
  850. #define BATCH_ALLOCATED 10
  851. void aclk_push_alarm_checkpoint(RRDHOST *host __maybe_unused)
  852. {
  853. #ifdef ENABLE_ACLK
  854. struct aclk_sync_host_config *wc = host->aclk_sync_host_config;
  855. if (unlikely(!wc)) {
  856. netdata_log_access("ACLK REQ [%s (N/A)]: ALERTS CHECKPOINT REQUEST RECEIVED FOR INVALID NODE", rrdhost_hostname(host));
  857. return;
  858. }
  859. if (rrdhost_flag_check(host, RRDHOST_FLAG_ACLK_STREAM_ALERTS)) {
  860. //postpone checkpoint send
  861. wc->alert_checkpoint_req+=3;
  862. netdata_log_access("ACLK REQ [%s (N/A)]: ALERTS CHECKPOINT POSTPONED", rrdhost_hostname(host));
  863. return;
  864. }
  865. RRDCALC *rc;
  866. uint32_t cnt = 0;
  867. size_t len = 0;
  868. active_alerts_t *active_alerts = callocz(BATCH_ALLOCATED, sizeof(active_alerts_t));
  869. foreach_rrdcalc_in_rrdhost_read(host, rc) {
  870. if(unlikely(!rc->rrdset || !rc->rrdset->last_collected_time.tv_sec))
  871. continue;
  872. if (rc->status == RRDCALC_STATUS_WARNING ||
  873. rc->status == RRDCALC_STATUS_CRITICAL) {
  874. if (cnt && !(cnt % BATCH_ALLOCATED)) {
  875. active_alerts = reallocz(active_alerts, (BATCH_ALLOCATED * ((cnt / BATCH_ALLOCATED) + 1)) * sizeof(active_alerts_t));
  876. }
  877. active_alerts[cnt].name = (char *)rrdcalc_name(rc);
  878. len += string_strlen(rc->name);
  879. active_alerts[cnt].chart = (char *)rrdcalc_chart_name(rc);
  880. len += string_strlen(rc->chart);
  881. active_alerts[cnt].status = rc->status;
  882. len++;
  883. cnt++;
  884. }
  885. }
  886. foreach_rrdcalc_in_rrdhost_done(rc);
  887. BUFFER *alarms_to_hash;
  888. if (cnt) {
  889. qsort (active_alerts, cnt, sizeof(active_alerts_t), compare_active_alerts);
  890. alarms_to_hash = buffer_create(len, NULL);
  891. for (uint32_t i=0;i<cnt;i++) {
  892. buffer_strcat(alarms_to_hash, active_alerts[i].name);
  893. buffer_strcat(alarms_to_hash, active_alerts[i].chart);
  894. if (active_alerts[i].status == RRDCALC_STATUS_WARNING)
  895. buffer_strcat(alarms_to_hash, "W");
  896. else if (active_alerts[i].status == RRDCALC_STATUS_CRITICAL)
  897. buffer_strcat(alarms_to_hash, "C");
  898. }
  899. } else {
  900. alarms_to_hash = buffer_create(1, NULL);
  901. buffer_strcat(alarms_to_hash, "");
  902. len = 0;
  903. }
  904. freez(active_alerts);
  905. char hash[SHA256_DIGEST_LENGTH + 1];
  906. if (hash256_string((const unsigned char *)buffer_tostring(alarms_to_hash), len, hash)) {
  907. hash[SHA256_DIGEST_LENGTH] = 0;
  908. struct alarm_checkpoint alarm_checkpoint;
  909. char *claim_id = get_agent_claimid();
  910. alarm_checkpoint.claim_id = claim_id;
  911. alarm_checkpoint.node_id = wc->node_id;
  912. alarm_checkpoint.checksum = (char *)hash;
  913. aclk_send_provide_alarm_checkpoint(&alarm_checkpoint);
  914. freez(claim_id);
  915. netdata_log_access("ACLK RES [%s (%s)]: ALERTS CHECKPOINT SENT", wc->node_id, rrdhost_hostname(host));
  916. } else {
  917. netdata_log_access("ACLK RES [%s (%s)]: FAILED TO CREATE ALERTS CHECKPOINT HASH", wc->node_id, rrdhost_hostname(host));
  918. }
  919. wc->alert_checkpoint_req = 0;
  920. buffer_free(alarms_to_hash);
  921. #endif
  922. }