aclk_stats.c 18 KB

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  1. // SPDX-License-Identifier: GPL-3.0-or-later
  2. #ifndef MQTT_WSS_CPUSTATS
  3. #define MQTT_WSS_CPUSTATS
  4. #endif
  5. #include "aclk_stats.h"
  6. #include "aclk_query.h"
  7. netdata_mutex_t aclk_stats_mutex = NETDATA_MUTEX_INITIALIZER;
  8. struct {
  9. int query_thread_count;
  10. unsigned int proto_hdl_cnt;
  11. uint32_t *aclk_proto_rx_msgs_sample;
  12. RRDDIM **rx_msg_dims;
  13. } aclk_stats_cfg; // there is only 1 stats thread at a time
  14. // data ACLK stats need per query thread
  15. struct aclk_qt_data {
  16. RRDDIM *dim;
  17. } *aclk_qt_data = NULL;
  18. uint32_t *aclk_queries_per_thread = NULL;
  19. uint32_t *aclk_queries_per_thread_sample = NULL;
  20. uint32_t *aclk_proto_rx_msgs_sample = NULL;
  21. struct aclk_metrics aclk_metrics = {
  22. .online = 0,
  23. };
  24. struct aclk_metrics_per_sample aclk_metrics_per_sample;
  25. static void aclk_stats_collect(struct aclk_metrics_per_sample *per_sample, struct aclk_metrics *permanent)
  26. {
  27. static RRDSET *st_aclkstats = NULL;
  28. static RRDDIM *rd_online_status = NULL;
  29. if (unlikely(!st_aclkstats)) {
  30. st_aclkstats = rrdset_create_localhost(
  31. "netdata", "aclk_status", NULL, "aclk", NULL, "ACLK/Cloud connection status",
  32. "connected", "netdata", "stats", 200000, localhost->rrd_update_every, RRDSET_TYPE_LINE);
  33. rd_online_status = rrddim_add(st_aclkstats, "online", NULL, 1, 1, RRD_ALGORITHM_ABSOLUTE);
  34. }
  35. rrddim_set_by_pointer(st_aclkstats, rd_online_status, per_sample->offline_during_sample ? 0 : permanent->online);
  36. rrdset_done(st_aclkstats);
  37. }
  38. static void aclk_stats_query_queue(struct aclk_metrics_per_sample *per_sample)
  39. {
  40. static RRDSET *st_query_thread = NULL;
  41. static RRDDIM *rd_queued = NULL;
  42. static RRDDIM *rd_dispatched = NULL;
  43. if (unlikely(!st_query_thread)) {
  44. st_query_thread = rrdset_create_localhost(
  45. "netdata", "aclk_query_per_second", NULL, "aclk", NULL, "ACLK Queries per second", "queries/s",
  46. "netdata", "stats", 200001, localhost->rrd_update_every, RRDSET_TYPE_AREA);
  47. rd_queued = rrddim_add(st_query_thread, "added", NULL, 1, localhost->rrd_update_every, RRD_ALGORITHM_ABSOLUTE);
  48. rd_dispatched = rrddim_add(st_query_thread, "dispatched", NULL, -1, localhost->rrd_update_every, RRD_ALGORITHM_ABSOLUTE);
  49. }
  50. rrddim_set_by_pointer(st_query_thread, rd_queued, per_sample->queries_queued);
  51. rrddim_set_by_pointer(st_query_thread, rd_dispatched, per_sample->queries_dispatched);
  52. rrdset_done(st_query_thread);
  53. }
  54. #ifdef NETDATA_INTERNAL_CHECKS
  55. static void aclk_stats_latency(struct aclk_metrics_per_sample *per_sample)
  56. {
  57. static RRDSET *st = NULL;
  58. static RRDDIM *rd_avg = NULL;
  59. static RRDDIM *rd_max = NULL;
  60. if (unlikely(!st)) {
  61. st = rrdset_create_localhost(
  62. "netdata", "aclk_latency_mqtt", NULL, "aclk", NULL, "ACLK Message Publish Latency", "ms",
  63. "netdata", "stats", 200002, localhost->rrd_update_every, RRDSET_TYPE_LINE);
  64. rd_avg = rrddim_add(st, "avg", NULL, 1, 1, RRD_ALGORITHM_ABSOLUTE);
  65. rd_max = rrddim_add(st, "max", NULL, 1, 1, RRD_ALGORITHM_ABSOLUTE);
  66. }
  67. if(per_sample->latency_count)
  68. rrddim_set_by_pointer(st, rd_avg, roundf((float)per_sample->latency_total / per_sample->latency_count));
  69. else
  70. rrddim_set_by_pointer(st, rd_avg, 0);
  71. rrddim_set_by_pointer(st, rd_max, per_sample->latency_max);
  72. rrdset_done(st);
  73. }
  74. #endif
  75. static void aclk_stats_cloud_req(struct aclk_metrics_per_sample *per_sample)
  76. {
  77. static RRDSET *st = NULL;
  78. static RRDDIM *rd_rq_rcvd = NULL;
  79. static RRDDIM *rd_rq_err = NULL;
  80. if (unlikely(!st)) {
  81. st = rrdset_create_localhost(
  82. "netdata", "aclk_cloud_req", NULL, "aclk", NULL, "Requests received from cloud", "req/s",
  83. "netdata", "stats", 200005, localhost->rrd_update_every, RRDSET_TYPE_STACKED);
  84. rd_rq_rcvd = rrddim_add(st, "received", NULL, 1, localhost->rrd_update_every, RRD_ALGORITHM_ABSOLUTE);
  85. rd_rq_err = rrddim_add(st, "malformed", NULL, 1, localhost->rrd_update_every, RRD_ALGORITHM_ABSOLUTE);
  86. }
  87. rrddim_set_by_pointer(st, rd_rq_rcvd, per_sample->cloud_req_recvd - per_sample->cloud_req_err);
  88. rrddim_set_by_pointer(st, rd_rq_err, per_sample->cloud_req_err);
  89. rrdset_done(st);
  90. }
  91. static void aclk_stats_cloud_req_type(struct aclk_metrics_per_sample *per_sample)
  92. {
  93. static RRDSET *st = NULL;
  94. static RRDDIM *dims[ACLK_QUERY_TYPE_COUNT];
  95. if (unlikely(!st)) {
  96. st = rrdset_create_localhost(
  97. "netdata", "aclk_processed_query_type", NULL, "aclk", NULL, "Query thread commands processed by their type", "cmd/s",
  98. "netdata", "stats", 200006, localhost->rrd_update_every, RRDSET_TYPE_STACKED);
  99. for (int i = 0; i < ACLK_QUERY_TYPE_COUNT; i++)
  100. dims[i] = rrddim_add(st, aclk_query_get_name(i, 1), NULL, 1, localhost->rrd_update_every, RRD_ALGORITHM_ABSOLUTE);
  101. }
  102. for (int i = 0; i < ACLK_QUERY_TYPE_COUNT; i++)
  103. rrddim_set_by_pointer(st, dims[i], per_sample->queries_per_type[i]);
  104. rrdset_done(st);
  105. }
  106. static char *cloud_req_http_type_names[ACLK_STATS_CLOUD_HTTP_REQ_TYPE_CNT] = {
  107. "other",
  108. "info",
  109. "data",
  110. "alarms",
  111. "alarm_log",
  112. "chart",
  113. "charts",
  114. "function",
  115. "functions"
  116. // if you change then update `ACLK_STATS_CLOUD_HTTP_REQ_TYPE_CNT`.
  117. };
  118. int aclk_cloud_req_http_type_to_idx(const char *name)
  119. {
  120. for (int i = 1; i < ACLK_STATS_CLOUD_HTTP_REQ_TYPE_CNT; i++)
  121. if (!strcmp(cloud_req_http_type_names[i], name))
  122. return i;
  123. return 0;
  124. }
  125. static void aclk_stats_cloud_req_http_type(struct aclk_metrics_per_sample *per_sample)
  126. {
  127. static RRDSET *st = NULL;
  128. static RRDDIM *rd_rq_types[ACLK_STATS_CLOUD_HTTP_REQ_TYPE_CNT];
  129. if (unlikely(!st)) {
  130. st = rrdset_create_localhost(
  131. "netdata", "aclk_cloud_req_http_type", NULL, "aclk", NULL, "Requests received from cloud via HTTP by their type", "req/s",
  132. "netdata", "stats", 200007, localhost->rrd_update_every, RRDSET_TYPE_STACKED);
  133. for (int i = 0; i < ACLK_STATS_CLOUD_HTTP_REQ_TYPE_CNT; i++)
  134. rd_rq_types[i] = rrddim_add(st, cloud_req_http_type_names[i], NULL, 1, localhost->rrd_update_every, RRD_ALGORITHM_ABSOLUTE);
  135. }
  136. for (int i = 0; i < ACLK_STATS_CLOUD_HTTP_REQ_TYPE_CNT; i++)
  137. rrddim_set_by_pointer(st, rd_rq_types[i], per_sample->cloud_req_http_by_type[i]);
  138. rrdset_done(st);
  139. }
  140. #define MAX_DIM_NAME 22
  141. static void aclk_stats_query_threads(uint32_t *queries_per_thread)
  142. {
  143. static RRDSET *st = NULL;
  144. char dim_name[MAX_DIM_NAME];
  145. if (unlikely(!st)) {
  146. st = rrdset_create_localhost(
  147. "netdata", "aclk_query_threads", NULL, "aclk", NULL, "Queries Processed Per Thread", "req/s",
  148. "netdata", "stats", 200009, localhost->rrd_update_every, RRDSET_TYPE_STACKED);
  149. for (int i = 0; i < aclk_stats_cfg.query_thread_count; i++) {
  150. if (snprintfz(dim_name, MAX_DIM_NAME, "Query %d", i) < 0)
  151. netdata_log_error("snprintf encoding error");
  152. aclk_qt_data[i].dim = rrddim_add(st, dim_name, NULL, 1, localhost->rrd_update_every, RRD_ALGORITHM_ABSOLUTE);
  153. }
  154. }
  155. for (int i = 0; i < aclk_stats_cfg.query_thread_count; i++) {
  156. rrddim_set_by_pointer(st, aclk_qt_data[i].dim, queries_per_thread[i]);
  157. }
  158. rrdset_done(st);
  159. }
  160. static void aclk_stats_query_time(struct aclk_metrics_per_sample *per_sample)
  161. {
  162. static RRDSET *st = NULL;
  163. static RRDDIM *rd_rq_avg = NULL;
  164. static RRDDIM *rd_rq_max = NULL;
  165. static RRDDIM *rd_rq_total = NULL;
  166. if (unlikely(!st)) {
  167. st = rrdset_create_localhost(
  168. "netdata", "aclk_query_time", NULL, "aclk", NULL, "Time it took to process cloud requested DB queries", "us",
  169. "netdata", "stats", 200008, localhost->rrd_update_every, RRDSET_TYPE_LINE);
  170. rd_rq_avg = rrddim_add(st, "avg", NULL, 1, localhost->rrd_update_every, RRD_ALGORITHM_ABSOLUTE);
  171. rd_rq_max = rrddim_add(st, "max", NULL, 1, localhost->rrd_update_every, RRD_ALGORITHM_ABSOLUTE);
  172. rd_rq_total = rrddim_add(st, "total", NULL, 1, localhost->rrd_update_every, RRD_ALGORITHM_ABSOLUTE);
  173. }
  174. if(per_sample->cloud_q_process_count)
  175. rrddim_set_by_pointer(st, rd_rq_avg, roundf((float)per_sample->cloud_q_process_total / per_sample->cloud_q_process_count));
  176. else
  177. rrddim_set_by_pointer(st, rd_rq_avg, 0);
  178. rrddim_set_by_pointer(st, rd_rq_max, per_sample->cloud_q_process_max);
  179. rrddim_set_by_pointer(st, rd_rq_total, per_sample->cloud_q_process_total);
  180. rrdset_done(st);
  181. }
  182. const char *rx_handler_get_name(size_t i);
  183. static void aclk_stats_newproto_rx(uint32_t *rx_msgs_sample)
  184. {
  185. static RRDSET *st = NULL;
  186. if (unlikely(!st)) {
  187. st = rrdset_create_localhost(
  188. "netdata", "aclk_protobuf_rx_types", NULL, "aclk", NULL, "Received new cloud architecture messages by their type.", "msg/s",
  189. "netdata", "stats", 200010, localhost->rrd_update_every, RRDSET_TYPE_STACKED);
  190. for (unsigned int i = 0; i < aclk_stats_cfg.proto_hdl_cnt; i++) {
  191. aclk_stats_cfg.rx_msg_dims[i] = rrddim_add(st, rx_handler_get_name(i), NULL, 1, localhost->rrd_update_every, RRD_ALGORITHM_ABSOLUTE);
  192. }
  193. }
  194. for (unsigned int i = 0; i < aclk_stats_cfg.proto_hdl_cnt; i++)
  195. rrddim_set_by_pointer(st, aclk_stats_cfg.rx_msg_dims[i], rx_msgs_sample[i]);
  196. rrdset_done(st);
  197. }
  198. static void aclk_stats_mqtt_wss(struct mqtt_wss_stats *stats)
  199. {
  200. static RRDSET *st = NULL;
  201. static RRDDIM *rd_sent = NULL;
  202. static RRDDIM *rd_recvd = NULL;
  203. static uint64_t sent = 0;
  204. static uint64_t recvd = 0;
  205. static RRDSET *st_txbuf_perc = NULL;
  206. static RRDDIM *rd_txbuf_perc = NULL;
  207. static RRDSET *st_txbuf = NULL;
  208. static RRDDIM *rd_tx_buffer_usable = NULL;
  209. static RRDDIM *rd_tx_buffer_reclaimable = NULL;
  210. static RRDDIM *rd_tx_buffer_used = NULL;
  211. static RRDDIM *rd_tx_buffer_free = NULL;
  212. static RRDDIM *rd_tx_buffer_size = NULL;
  213. static RRDSET *st_timing = NULL;
  214. static RRDDIM *rd_keepalive = NULL;
  215. static RRDDIM *rd_read_socket = NULL;
  216. static RRDDIM *rd_write_socket = NULL;
  217. static RRDDIM *rd_process_websocket = NULL;
  218. static RRDDIM *rd_process_mqtt = NULL;
  219. sent += stats->bytes_tx;
  220. recvd += stats->bytes_rx;
  221. if (unlikely(!st)) {
  222. st = rrdset_create_localhost(
  223. "netdata", "aclk_openssl_bytes", NULL, "aclk", NULL, "Received and Sent bytes.", "B/s",
  224. "netdata", "stats", 200011, localhost->rrd_update_every, RRDSET_TYPE_STACKED);
  225. rd_sent = rrddim_add(st, "sent", NULL, -1, 1, RRD_ALGORITHM_INCREMENTAL);
  226. rd_recvd = rrddim_add(st, "received", NULL, 1, 1, RRD_ALGORITHM_INCREMENTAL);
  227. }
  228. if (unlikely(!st_txbuf_perc)) {
  229. st_txbuf_perc = rrdset_create_localhost(
  230. "netdata", "aclk_mqtt_tx_perc", NULL, "aclk", NULL, "Actively used percentage of MQTT Tx Buffer,", "%",
  231. "netdata", "stats", 200012, localhost->rrd_update_every, RRDSET_TYPE_LINE);
  232. rd_txbuf_perc = rrddim_add(st_txbuf_perc, "used", NULL, 1, 100, RRD_ALGORITHM_ABSOLUTE);
  233. }
  234. if (unlikely(!st_txbuf)) {
  235. st_txbuf = rrdset_create_localhost(
  236. "netdata", "aclk_mqtt_tx_queue", NULL, "aclk", NULL, "State of transmit MQTT queue.", "B",
  237. "netdata", "stats", 200013, localhost->rrd_update_every, RRDSET_TYPE_LINE);
  238. rd_tx_buffer_usable = rrddim_add(st_txbuf, "usable", NULL, 1, 1, RRD_ALGORITHM_ABSOLUTE);
  239. rd_tx_buffer_reclaimable = rrddim_add(st_txbuf, "reclaimable", NULL, 1, 1, RRD_ALGORITHM_ABSOLUTE);
  240. rd_tx_buffer_used = rrddim_add(st_txbuf, "used", NULL, 1, 1, RRD_ALGORITHM_ABSOLUTE);
  241. rd_tx_buffer_free = rrddim_add(st_txbuf, "free", NULL, 1, 1, RRD_ALGORITHM_ABSOLUTE);
  242. rd_tx_buffer_size = rrddim_add(st_txbuf, "size", NULL, 1, 1, RRD_ALGORITHM_ABSOLUTE);
  243. }
  244. if (unlikely(!st_timing)) {
  245. st_timing = rrdset_create_localhost(
  246. "netdata", "aclk_mqtt_wss_time", NULL, "aclk", NULL, "Time spent handling MQTT, WSS, SSL and network communication.", "us",
  247. "netdata", "stats", 200014, localhost->rrd_update_every, RRDSET_TYPE_STACKED);
  248. rd_keepalive = rrddim_add(st_timing, "keep-alive", NULL, 1, 1, RRD_ALGORITHM_ABSOLUTE);
  249. rd_read_socket = rrddim_add(st_timing, "socket_read_ssl", NULL, 1, 1, RRD_ALGORITHM_ABSOLUTE);
  250. rd_write_socket = rrddim_add(st_timing, "socket_write_ssl", NULL, 1, 1, RRD_ALGORITHM_ABSOLUTE);
  251. rd_process_websocket = rrddim_add(st_timing, "process_websocket", NULL, 1, 1, RRD_ALGORITHM_ABSOLUTE);
  252. rd_process_mqtt = rrddim_add(st_timing, "process_mqtt", NULL, 1, 1, RRD_ALGORITHM_ABSOLUTE);
  253. }
  254. rrddim_set_by_pointer(st, rd_sent, sent);
  255. rrddim_set_by_pointer(st, rd_recvd, recvd);
  256. float usage = ((float)stats->mqtt.tx_buffer_free + stats->mqtt.tx_buffer_reclaimable) / stats->mqtt.tx_buffer_size;
  257. usage = (1 - usage) * 10000;
  258. rrddim_set_by_pointer(st_txbuf_perc, rd_txbuf_perc, usage);
  259. rrddim_set_by_pointer(st_txbuf, rd_tx_buffer_usable, stats->mqtt.tx_buffer_reclaimable + stats->mqtt.tx_buffer_free);
  260. rrddim_set_by_pointer(st_txbuf, rd_tx_buffer_reclaimable, stats->mqtt.tx_buffer_reclaimable);
  261. rrddim_set_by_pointer(st_txbuf, rd_tx_buffer_used, stats->mqtt.tx_buffer_used);
  262. rrddim_set_by_pointer(st_txbuf, rd_tx_buffer_free, stats->mqtt.tx_buffer_free);
  263. rrddim_set_by_pointer(st_txbuf, rd_tx_buffer_size, stats->mqtt.tx_buffer_size);
  264. rrddim_set_by_pointer(st_timing, rd_keepalive, stats->time_keepalive);
  265. rrddim_set_by_pointer(st_timing, rd_read_socket, stats->time_read_socket);
  266. rrddim_set_by_pointer(st_timing, rd_write_socket, stats->time_write_socket);
  267. rrddim_set_by_pointer(st_timing, rd_process_websocket, stats->time_process_websocket);
  268. rrddim_set_by_pointer(st_timing, rd_process_mqtt, stats->time_process_mqtt);
  269. rrdset_done(st);
  270. rrdset_done(st_txbuf_perc);
  271. rrdset_done(st_txbuf);
  272. rrdset_done(st_timing);
  273. }
  274. void aclk_stats_thread_prepare(int query_thread_count, unsigned int proto_hdl_cnt)
  275. {
  276. aclk_qt_data = callocz(query_thread_count, sizeof(struct aclk_qt_data));
  277. aclk_queries_per_thread = callocz(query_thread_count, sizeof(uint32_t));
  278. aclk_queries_per_thread_sample = callocz(query_thread_count, sizeof(uint32_t));
  279. memset(&aclk_metrics_per_sample, 0, sizeof(struct aclk_metrics_per_sample));
  280. aclk_stats_cfg.proto_hdl_cnt = proto_hdl_cnt;
  281. aclk_stats_cfg.aclk_proto_rx_msgs_sample = callocz(proto_hdl_cnt, sizeof(*aclk_proto_rx_msgs_sample));
  282. aclk_proto_rx_msgs_sample = callocz(proto_hdl_cnt, sizeof(*aclk_proto_rx_msgs_sample));
  283. aclk_stats_cfg.rx_msg_dims = callocz(proto_hdl_cnt, sizeof(RRDDIM*));
  284. }
  285. void aclk_stats_thread_cleanup()
  286. {
  287. freez(aclk_stats_cfg.rx_msg_dims);
  288. freez(aclk_proto_rx_msgs_sample);
  289. freez(aclk_stats_cfg.aclk_proto_rx_msgs_sample);
  290. freez(aclk_qt_data);
  291. freez(aclk_queries_per_thread);
  292. freez(aclk_queries_per_thread_sample);
  293. }
  294. void *aclk_stats_main_thread(void *ptr)
  295. {
  296. struct aclk_stats_thread *args = ptr;
  297. aclk_stats_cfg.query_thread_count = args->query_thread_count;
  298. heartbeat_t hb;
  299. heartbeat_init(&hb);
  300. usec_t step_ut = localhost->rrd_update_every * USEC_PER_SEC;
  301. struct aclk_metrics_per_sample per_sample;
  302. struct aclk_metrics permanent;
  303. while (service_running(SERVICE_ACLK | SERVICE_COLLECTORS)) {
  304. netdata_thread_testcancel();
  305. // ------------------------------------------------------------------------
  306. // Wait for the next iteration point.
  307. heartbeat_next(&hb, step_ut);
  308. if (!service_running(SERVICE_ACLK | SERVICE_COLLECTORS)) break;
  309. ACLK_STATS_LOCK;
  310. // to not hold lock longer than necessary, especially not to hold it
  311. // during database rrd* operations
  312. memcpy(&per_sample, &aclk_metrics_per_sample, sizeof(struct aclk_metrics_per_sample));
  313. memcpy(aclk_stats_cfg.aclk_proto_rx_msgs_sample, aclk_proto_rx_msgs_sample, sizeof(*aclk_proto_rx_msgs_sample) * aclk_stats_cfg.proto_hdl_cnt);
  314. memset(aclk_proto_rx_msgs_sample, 0, sizeof(*aclk_proto_rx_msgs_sample) * aclk_stats_cfg.proto_hdl_cnt);
  315. memcpy(&permanent, &aclk_metrics, sizeof(struct aclk_metrics));
  316. memset(&aclk_metrics_per_sample, 0, sizeof(struct aclk_metrics_per_sample));
  317. memcpy(aclk_queries_per_thread_sample, aclk_queries_per_thread, sizeof(uint32_t) * aclk_stats_cfg.query_thread_count);
  318. memset(aclk_queries_per_thread, 0, sizeof(uint32_t) * aclk_stats_cfg.query_thread_count);
  319. ACLK_STATS_UNLOCK;
  320. aclk_stats_collect(&per_sample, &permanent);
  321. aclk_stats_query_queue(&per_sample);
  322. #ifdef NETDATA_INTERNAL_CHECKS
  323. aclk_stats_latency(&per_sample);
  324. #endif
  325. aclk_stats_cloud_req(&per_sample);
  326. aclk_stats_cloud_req_type(&per_sample);
  327. aclk_stats_cloud_req_http_type(&per_sample);
  328. aclk_stats_query_threads(aclk_queries_per_thread_sample);
  329. aclk_stats_query_time(&per_sample);
  330. struct mqtt_wss_stats mqtt_wss_stats = mqtt_wss_get_stats(args->client);
  331. aclk_stats_mqtt_wss(&mqtt_wss_stats);
  332. aclk_stats_newproto_rx(aclk_stats_cfg.aclk_proto_rx_msgs_sample);
  333. }
  334. return 0;
  335. }
  336. void aclk_stats_upd_online(int online) {
  337. if(!aclk_stats_enabled)
  338. return;
  339. ACLK_STATS_LOCK;
  340. aclk_metrics.online = online;
  341. if(!online)
  342. aclk_metrics_per_sample.offline_during_sample = 1;
  343. ACLK_STATS_UNLOCK;
  344. }
  345. #ifdef NETDATA_INTERNAL_CHECKS
  346. static usec_t pub_time[UINT16_MAX + 1] = {0};
  347. void aclk_stats_msg_published(uint16_t id)
  348. {
  349. ACLK_STATS_LOCK;
  350. pub_time[id] = now_boottime_usec();
  351. ACLK_STATS_UNLOCK;
  352. }
  353. void aclk_stats_msg_puback(uint16_t id)
  354. {
  355. ACLK_STATS_LOCK;
  356. usec_t t;
  357. if (!aclk_stats_enabled) {
  358. ACLK_STATS_UNLOCK;
  359. return;
  360. }
  361. if (unlikely(!pub_time[id])) {
  362. ACLK_STATS_UNLOCK;
  363. netdata_log_error("Received PUBACK for unknown message?!");
  364. return;
  365. }
  366. t = now_boottime_usec() - pub_time[id];
  367. t /= USEC_PER_MS;
  368. pub_time[id] = 0;
  369. if (aclk_metrics_per_sample.latency_max < t)
  370. aclk_metrics_per_sample.latency_max = t;
  371. aclk_metrics_per_sample.latency_total += t;
  372. aclk_metrics_per_sample.latency_count++;
  373. ACLK_STATS_UNLOCK;
  374. }
  375. #endif /* NETDATA_INTERNAL_CHECKS */