statsd.c 109 KB

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  1. // SPDX-License-Identifier: GPL-3.0-or-later
  2. #include "daemon/common.h"
  3. #define STATSD_CHART_PREFIX "statsd"
  4. #define PLUGIN_STATSD_NAME "statsd.plugin"
  5. #define STATSD_LISTEN_PORT 8125
  6. #define STATSD_LISTEN_BACKLOG 4096
  7. #define WORKER_JOB_TYPE_TCP_CONNECTED 0
  8. #define WORKER_JOB_TYPE_TCP_DISCONNECTED 1
  9. #define WORKER_JOB_TYPE_RCV_DATA 2
  10. #define WORKER_JOB_TYPE_SND_DATA 3
  11. #if WORKER_UTILIZATION_MAX_JOB_TYPES < 4
  12. #error Please increase WORKER_UTILIZATION_MAX_JOB_TYPES to at least 4
  13. #endif
  14. // --------------------------------------------------------------------------------------
  15. // #define STATSD_MULTITHREADED 1
  16. #ifdef STATSD_MULTITHREADED
  17. // DO NOT ENABLE MULTITHREADING - IT IS NOT WELL TESTED
  18. #define STATSD_DICTIONARY_OPTIONS DICTIONARY_FLAG_DONT_OVERWRITE_VALUE|DICTIONARY_FLAG_ADD_IN_FRONT
  19. #else
  20. #define STATSD_DICTIONARY_OPTIONS DICTIONARY_FLAG_DONT_OVERWRITE_VALUE|DICTIONARY_FLAG_ADD_IN_FRONT|DICTIONARY_FLAG_SINGLE_THREADED
  21. #endif
  22. #define STATSD_DECIMAL_DETAIL 1000 // floating point values get multiplied by this, with the same divisor
  23. // --------------------------------------------------------------------------------------------------------------------
  24. // data specific to each metric type
  25. typedef struct statsd_metric_gauge {
  26. LONG_DOUBLE value;
  27. } STATSD_METRIC_GAUGE;
  28. typedef struct statsd_metric_counter { // counter and meter
  29. long long value;
  30. } STATSD_METRIC_COUNTER;
  31. typedef struct statsd_histogram_extensions {
  32. netdata_mutex_t mutex;
  33. // average is stored in metric->last
  34. collected_number last_min;
  35. collected_number last_max;
  36. collected_number last_percentile;
  37. collected_number last_median;
  38. collected_number last_stddev;
  39. collected_number last_sum;
  40. int zeroed;
  41. RRDDIM *rd_min;
  42. RRDDIM *rd_max;
  43. RRDDIM *rd_percentile;
  44. RRDDIM *rd_median;
  45. RRDDIM *rd_stddev;
  46. //RRDDIM *rd_sum;
  47. size_t size;
  48. size_t used;
  49. LONG_DOUBLE *values; // dynamic array of values collected
  50. } STATSD_METRIC_HISTOGRAM_EXTENSIONS;
  51. typedef struct statsd_metric_histogram { // histogram and timer
  52. STATSD_METRIC_HISTOGRAM_EXTENSIONS *ext;
  53. } STATSD_METRIC_HISTOGRAM;
  54. typedef struct statsd_metric_set {
  55. DICTIONARY *dict;
  56. size_t unique;
  57. } STATSD_METRIC_SET;
  58. typedef struct statsd_metric_dictionary_item {
  59. size_t count;
  60. RRDDIM *rd;
  61. } STATSD_METRIC_DICTIONARY_ITEM;
  62. typedef struct statsd_metric_dictionary {
  63. DICTIONARY *dict;
  64. size_t unique;
  65. } STATSD_METRIC_DICTIONARY;
  66. // --------------------------------------------------------------------------------------------------------------------
  67. // this is a metric - for all types of metrics
  68. typedef enum statsd_metric_options {
  69. STATSD_METRIC_OPTION_NONE = 0x00000000, // no options set
  70. STATSD_METRIC_OPTION_SHOW_GAPS_WHEN_NOT_COLLECTED = 0x00000001, // do not update the chart dimension, when this metric is not collected
  71. STATSD_METRIC_OPTION_PRIVATE_CHART_ENABLED = 0x00000002, // render a private chart for this metric
  72. STATSD_METRIC_OPTION_PRIVATE_CHART_CHECKED = 0x00000004, // the metric has been checked if it should get private chart or not
  73. STATSD_METRIC_OPTION_CHART_DIMENSION_COUNT = 0x00000008, // show the count of events for this private chart
  74. STATSD_METRIC_OPTION_CHECKED_IN_APPS = 0x00000010, // set when this metric has been checked against apps
  75. STATSD_METRIC_OPTION_USED_IN_APPS = 0x00000020, // set when this metric is used in apps
  76. STATSD_METRIC_OPTION_CHECKED = 0x00000040, // set when the charting thread checks this metric for use in charts (its usefulness)
  77. STATSD_METRIC_OPTION_USEFUL = 0x00000080, // set when the charting thread finds the metric useful (i.e. used in a chart)
  78. STATSD_METRIC_OPTION_COLLECTION_FULL_LOGGED = 0x00000100, // set when the collection is full for this metric
  79. } STATS_METRIC_OPTIONS;
  80. typedef enum statsd_metric_type {
  81. STATSD_METRIC_TYPE_GAUGE,
  82. STATSD_METRIC_TYPE_COUNTER,
  83. STATSD_METRIC_TYPE_METER,
  84. STATSD_METRIC_TYPE_TIMER,
  85. STATSD_METRIC_TYPE_HISTOGRAM,
  86. STATSD_METRIC_TYPE_SET,
  87. STATSD_METRIC_TYPE_DICTIONARY
  88. } STATSD_METRIC_TYPE;
  89. typedef struct statsd_metric {
  90. const char *name; // the name of the metric - linked to dictionary name
  91. uint32_t hash; // hash of the name
  92. STATSD_METRIC_TYPE type;
  93. // metadata about data collection
  94. collected_number events; // the number of times this metric has been collected (never resets)
  95. size_t count; // the number of times this metric has been collected since the last flush
  96. // the actual collected data
  97. union {
  98. STATSD_METRIC_GAUGE gauge;
  99. STATSD_METRIC_COUNTER counter;
  100. STATSD_METRIC_HISTOGRAM histogram;
  101. STATSD_METRIC_SET set;
  102. STATSD_METRIC_DICTIONARY dictionary;
  103. };
  104. char *units;
  105. char *dimname;
  106. char *family;
  107. // chart related members
  108. STATS_METRIC_OPTIONS options; // STATSD_METRIC_OPTION_* (bitfield)
  109. char reset; // set to 1 by the charting thread to instruct the collector thread(s) to reset this metric
  110. collected_number last; // the last value sent to netdata
  111. RRDSET *st; // the private chart of this metric
  112. RRDDIM *rd_value; // the dimension of this metric value
  113. RRDDIM *rd_count; // the dimension for the number of events received
  114. // linking, used for walking through all metrics
  115. struct statsd_metric *next_useful;
  116. } STATSD_METRIC;
  117. // --------------------------------------------------------------------------------------------------------------------
  118. // each type of metric has its own index
  119. typedef struct statsd_index {
  120. char *name; // the name of the index of metrics
  121. size_t events; // the number of events processed for this index
  122. size_t metrics; // the number of metrics in this index
  123. size_t useful; // the number of useful metrics in this index
  124. STATSD_METRIC_TYPE type; // the type of index
  125. DICTIONARY *dict;
  126. STATSD_METRIC *first_useful; // the linked list of useful metrics (new metrics are added in front)
  127. STATS_METRIC_OPTIONS default_options; // default options for all metrics in this index
  128. } STATSD_INDEX;
  129. // --------------------------------------------------------------------------------------------------------------------
  130. // synthetic charts
  131. typedef enum statsd_app_chart_dimension_value_type {
  132. STATSD_APP_CHART_DIM_VALUE_TYPE_EVENTS,
  133. STATSD_APP_CHART_DIM_VALUE_TYPE_LAST,
  134. STATSD_APP_CHART_DIM_VALUE_TYPE_AVERAGE,
  135. STATSD_APP_CHART_DIM_VALUE_TYPE_SUM,
  136. STATSD_APP_CHART_DIM_VALUE_TYPE_MIN,
  137. STATSD_APP_CHART_DIM_VALUE_TYPE_MAX,
  138. STATSD_APP_CHART_DIM_VALUE_TYPE_PERCENTILE,
  139. STATSD_APP_CHART_DIM_VALUE_TYPE_MEDIAN,
  140. STATSD_APP_CHART_DIM_VALUE_TYPE_STDDEV
  141. } STATSD_APP_CHART_DIM_VALUE_TYPE;
  142. typedef struct statsd_app_chart_dimension {
  143. const char *name; // the name of this dimension
  144. const char *metric; // the source metric name of this dimension
  145. uint32_t metric_hash; // hash for fast string comparisons
  146. SIMPLE_PATTERN *metric_pattern; // set when the 'metric' is a simple pattern
  147. collected_number multiplier; // the multiplier of the dimension
  148. collected_number divisor; // the divisor of the dimension
  149. RRDDIM_FLAGS flags; // the RRDDIM flags for this dimension
  150. STATSD_APP_CHART_DIM_VALUE_TYPE value_type; // which value to use of the source metric
  151. RRDDIM *rd; // a pointer to the RRDDIM that has been created for this dimension
  152. collected_number *value_ptr; // a pointer to the source metric value
  153. RRD_ALGORITHM algorithm; // the algorithm of this dimension
  154. struct statsd_app_chart_dimension *next; // the next dimension for this chart
  155. } STATSD_APP_CHART_DIM;
  156. typedef struct statsd_app_chart {
  157. const char *id;
  158. const char *name;
  159. const char *title;
  160. const char *family;
  161. const char *context;
  162. const char *units;
  163. const char *module;
  164. long priority;
  165. RRDSET_TYPE chart_type;
  166. STATSD_APP_CHART_DIM *dimensions;
  167. size_t dimensions_count;
  168. size_t dimensions_linked_count;
  169. RRDSET *st;
  170. struct statsd_app_chart *next;
  171. } STATSD_APP_CHART;
  172. typedef struct statsd_app {
  173. const char *name;
  174. SIMPLE_PATTERN *metrics;
  175. STATS_METRIC_OPTIONS default_options;
  176. RRD_MEMORY_MODE rrd_memory_mode;
  177. DICTIONARY *dict;
  178. long rrd_history_entries;
  179. const char *source;
  180. STATSD_APP_CHART *charts;
  181. struct statsd_app *next;
  182. } STATSD_APP;
  183. // --------------------------------------------------------------------------------------------------------------------
  184. // global statsd data
  185. struct collection_thread_status {
  186. int status;
  187. size_t max_sockets;
  188. netdata_thread_t thread;
  189. };
  190. static struct statsd {
  191. STATSD_INDEX gauges;
  192. STATSD_INDEX counters;
  193. STATSD_INDEX timers;
  194. STATSD_INDEX histograms;
  195. STATSD_INDEX meters;
  196. STATSD_INDEX sets;
  197. STATSD_INDEX dictionaries;
  198. size_t unknown_types;
  199. size_t socket_errors;
  200. size_t tcp_socket_connects;
  201. size_t tcp_socket_disconnects;
  202. size_t tcp_socket_connected;
  203. size_t tcp_socket_reads;
  204. size_t tcp_packets_received;
  205. size_t tcp_bytes_read;
  206. size_t udp_socket_reads;
  207. size_t udp_packets_received;
  208. size_t udp_bytes_read;
  209. int enabled;
  210. int update_every;
  211. SIMPLE_PATTERN *charts_for;
  212. size_t tcp_idle_timeout;
  213. collected_number decimal_detail;
  214. size_t private_charts;
  215. size_t max_private_charts;
  216. size_t max_private_charts_hard;
  217. RRD_MEMORY_MODE private_charts_memory_mode;
  218. long private_charts_rrd_history_entries;
  219. unsigned int private_charts_hidden:1;
  220. STATSD_APP *apps;
  221. size_t recvmmsg_size;
  222. size_t histogram_increase_step;
  223. double histogram_percentile;
  224. char *histogram_percentile_str;
  225. size_t dictionary_max_unique;
  226. int threads;
  227. struct collection_thread_status *collection_threads_status;
  228. LISTEN_SOCKETS sockets;
  229. } statsd = {
  230. .enabled = 1,
  231. .max_private_charts = 200,
  232. .max_private_charts_hard = 1000,
  233. .private_charts_hidden = 0,
  234. .recvmmsg_size = 10,
  235. .decimal_detail = STATSD_DECIMAL_DETAIL,
  236. .gauges = {
  237. .name = "gauge",
  238. .events = 0,
  239. .metrics = 0,
  240. .dict = NULL,
  241. .type = STATSD_METRIC_TYPE_GAUGE,
  242. .default_options = STATSD_METRIC_OPTION_NONE
  243. },
  244. .counters = {
  245. .name = "counter",
  246. .events = 0,
  247. .metrics = 0,
  248. .dict = NULL,
  249. .type = STATSD_METRIC_TYPE_COUNTER,
  250. .default_options = STATSD_METRIC_OPTION_NONE
  251. },
  252. .timers = {
  253. .name = "timer",
  254. .events = 0,
  255. .metrics = 0,
  256. .dict = NULL,
  257. .type = STATSD_METRIC_TYPE_TIMER,
  258. .default_options = STATSD_METRIC_OPTION_NONE
  259. },
  260. .histograms = {
  261. .name = "histogram",
  262. .events = 0,
  263. .metrics = 0,
  264. .dict = NULL,
  265. .type = STATSD_METRIC_TYPE_HISTOGRAM,
  266. .default_options = STATSD_METRIC_OPTION_NONE
  267. },
  268. .meters = {
  269. .name = "meter",
  270. .events = 0,
  271. .metrics = 0,
  272. .dict = NULL,
  273. .type = STATSD_METRIC_TYPE_METER,
  274. .default_options = STATSD_METRIC_OPTION_NONE
  275. },
  276. .sets = {
  277. .name = "set",
  278. .events = 0,
  279. .metrics = 0,
  280. .dict = NULL,
  281. .type = STATSD_METRIC_TYPE_SET,
  282. .default_options = STATSD_METRIC_OPTION_NONE
  283. },
  284. .dictionaries = {
  285. .name = "dictionary",
  286. .events = 0,
  287. .metrics = 0,
  288. .dict = NULL,
  289. .type = STATSD_METRIC_TYPE_DICTIONARY,
  290. .default_options = STATSD_METRIC_OPTION_NONE
  291. },
  292. .tcp_idle_timeout = 600,
  293. .apps = NULL,
  294. .histogram_percentile = 95.0,
  295. .histogram_increase_step = 10,
  296. .dictionary_max_unique = 200,
  297. .threads = 0,
  298. .collection_threads_status = NULL,
  299. .sockets = {
  300. .config = &netdata_config,
  301. .config_section = CONFIG_SECTION_STATSD,
  302. .default_bind_to = "udp:localhost tcp:localhost",
  303. .default_port = STATSD_LISTEN_PORT,
  304. .backlog = STATSD_LISTEN_BACKLOG
  305. },
  306. };
  307. // --------------------------------------------------------------------------------------------------------------------
  308. // statsd index management - add/find metrics
  309. static void dictionary_metric_insert_callback(const char *name, void *value, void *data) {
  310. STATSD_INDEX *index = (STATSD_INDEX *)data;
  311. STATSD_METRIC *m = (STATSD_METRIC *)value;
  312. debug(D_STATSD, "Creating new %s metric '%s'", index->name, name);
  313. m->name = name;
  314. m->hash = simple_hash(name);
  315. m->type = index->type;
  316. m->options = index->default_options;
  317. if (m->type == STATSD_METRIC_TYPE_HISTOGRAM || m->type == STATSD_METRIC_TYPE_TIMER) {
  318. m->histogram.ext = callocz(1,sizeof(STATSD_METRIC_HISTOGRAM_EXTENSIONS));
  319. netdata_mutex_init(&m->histogram.ext->mutex);
  320. }
  321. __atomic_fetch_add(&index->metrics, 1, __ATOMIC_SEQ_CST);
  322. }
  323. static void dictionary_metric_delete_callback(const char *name, void *value, void *data) {
  324. (void)data; // STATSD_INDEX *index = (STATSD_INDEX *)data;
  325. (void)name;
  326. STATSD_METRIC *m = (STATSD_METRIC *)value;
  327. if(m->type == STATSD_METRIC_TYPE_HISTOGRAM || m->type == STATSD_METRIC_TYPE_TIMER) {
  328. freez(m->histogram.ext);
  329. m->histogram.ext = NULL;
  330. }
  331. freez(m->units);
  332. freez(m->family);
  333. freez(m->dimname);
  334. }
  335. static inline STATSD_METRIC *statsd_find_or_add_metric(STATSD_INDEX *index, const char *name) {
  336. debug(D_STATSD, "searching for metric '%s' under '%s'", name, index->name);
  337. #ifdef STATSD_MULTITHREADED
  338. // avoid the write lock of dictionary_set() for existing metrics
  339. STATSD_METRIC *m = dictionary_get(index->dict, name);
  340. if(!m) m = dictionary_set(index->dict, name, NULL, sizeof(STATSD_METRIC));
  341. #else
  342. // no locks here, go faster
  343. // this will call the dictionary_metric_insert_callback() if an item
  344. // is inserted, otherwise it will return the existing one.
  345. // We used the flag DICTIONARY_FLAG_DONT_OVERWRITE_VALUE to support this.
  346. STATSD_METRIC *m = dictionary_set(index->dict, name, NULL, sizeof(STATSD_METRIC));
  347. #endif
  348. index->events++;
  349. return m;
  350. }
  351. // --------------------------------------------------------------------------------------------------------------------
  352. // statsd parsing numbers
  353. static inline LONG_DOUBLE statsd_parse_float(const char *v, LONG_DOUBLE def) {
  354. LONG_DOUBLE value;
  355. if(likely(v && *v)) {
  356. char *e = NULL;
  357. value = str2ld(v, &e);
  358. if(unlikely(e && *e))
  359. error("STATSD: excess data '%s' after value '%s'", e, v);
  360. }
  361. else
  362. value = def;
  363. return value;
  364. }
  365. static inline LONG_DOUBLE statsd_parse_sampling_rate(const char *v) {
  366. LONG_DOUBLE sampling_rate = statsd_parse_float(v, 1.0);
  367. if(unlikely(isless(sampling_rate, 0.001))) sampling_rate = 0.001;
  368. if(unlikely(isgreater(sampling_rate, 1.0))) sampling_rate = 1.0;
  369. return sampling_rate;
  370. }
  371. static inline long long statsd_parse_int(const char *v, long long def) {
  372. long long value;
  373. if(likely(v && *v)) {
  374. char *e = NULL;
  375. value = str2ll(v, &e);
  376. if(unlikely(e && *e))
  377. error("STATSD: excess data '%s' after value '%s'", e, v);
  378. }
  379. else
  380. value = def;
  381. return value;
  382. }
  383. // --------------------------------------------------------------------------------------------------------------------
  384. // statsd processors per metric type
  385. static inline void statsd_reset_metric(STATSD_METRIC *m) {
  386. m->reset = 0;
  387. m->count = 0;
  388. }
  389. static inline int value_is_zinit(const char *value) {
  390. return (value && *value == 'z' && *++value == 'i' && *++value == 'n' && *++value == 'i' && *++value == 't' && *++value == '\0');
  391. }
  392. #define is_metric_checked(m) ((m)->options & STATSD_METRIC_OPTION_CHECKED)
  393. #define is_metric_useful_for_collection(m) (!is_metric_checked(m) || ((m)->options & STATSD_METRIC_OPTION_USEFUL))
  394. static inline void statsd_process_gauge(STATSD_METRIC *m, const char *value, const char *sampling) {
  395. if(!is_metric_useful_for_collection(m)) return;
  396. if(unlikely(!value || !*value)) {
  397. error("STATSD: metric '%s' of type gauge, with empty value is ignored.", m->name);
  398. return;
  399. }
  400. if(unlikely(m->reset)) {
  401. // no need to reset anything specific for gauges
  402. statsd_reset_metric(m);
  403. }
  404. if(unlikely(value_is_zinit(value))) {
  405. // magic loading of metric, without affecting anything
  406. }
  407. else {
  408. if (unlikely(*value == '+' || *value == '-'))
  409. m->gauge.value += statsd_parse_float(value, 1.0) / statsd_parse_sampling_rate(sampling);
  410. else
  411. m->gauge.value = statsd_parse_float(value, 1.0);
  412. m->events++;
  413. m->count++;
  414. }
  415. }
  416. static inline void statsd_process_counter_or_meter(STATSD_METRIC *m, const char *value, const char *sampling) {
  417. if(!is_metric_useful_for_collection(m)) return;
  418. // we accept empty values for counters
  419. if(unlikely(m->reset)) statsd_reset_metric(m);
  420. if(unlikely(value_is_zinit(value))) {
  421. // magic loading of metric, without affecting anything
  422. }
  423. else {
  424. m->counter.value += llrintl((LONG_DOUBLE) statsd_parse_int(value, 1) / statsd_parse_sampling_rate(sampling));
  425. m->events++;
  426. m->count++;
  427. }
  428. }
  429. #define statsd_process_counter(m, value, sampling) statsd_process_counter_or_meter(m, value, sampling)
  430. #define statsd_process_meter(m, value, sampling) statsd_process_counter_or_meter(m, value, sampling)
  431. static inline void statsd_process_histogram_or_timer(STATSD_METRIC *m, const char *value, const char *sampling, const char *type) {
  432. if(!is_metric_useful_for_collection(m)) return;
  433. if(unlikely(!value || !*value)) {
  434. error("STATSD: metric of type %s, with empty value is ignored.", type);
  435. return;
  436. }
  437. if(unlikely(m->reset)) {
  438. m->histogram.ext->used = 0;
  439. statsd_reset_metric(m);
  440. }
  441. if(unlikely(value_is_zinit(value))) {
  442. // magic loading of metric, without affecting anything
  443. }
  444. else {
  445. LONG_DOUBLE v = statsd_parse_float(value, 1.0);
  446. LONG_DOUBLE sampling_rate = statsd_parse_sampling_rate(sampling);
  447. if(unlikely(isless(sampling_rate, 0.01))) sampling_rate = 0.01;
  448. if(unlikely(isgreater(sampling_rate, 1.0))) sampling_rate = 1.0;
  449. long long samples = llrintl(1.0 / sampling_rate);
  450. while(samples-- > 0) {
  451. if(unlikely(m->histogram.ext->used == m->histogram.ext->size)) {
  452. netdata_mutex_lock(&m->histogram.ext->mutex);
  453. m->histogram.ext->size += statsd.histogram_increase_step;
  454. m->histogram.ext->values = reallocz(m->histogram.ext->values, sizeof(LONG_DOUBLE) * m->histogram.ext->size);
  455. netdata_mutex_unlock(&m->histogram.ext->mutex);
  456. }
  457. m->histogram.ext->values[m->histogram.ext->used++] = v;
  458. }
  459. m->events++;
  460. m->count++;
  461. }
  462. }
  463. #define statsd_process_timer(m, value, sampling) statsd_process_histogram_or_timer(m, value, sampling, "timer")
  464. #define statsd_process_histogram(m, value, sampling) statsd_process_histogram_or_timer(m, value, sampling, "histogram")
  465. static void dictionary_metric_set_value_insert_callback(const char *name, void *value, void *data) {
  466. (void)name;
  467. (void)value;
  468. STATSD_METRIC *m = (STATSD_METRIC *)data;
  469. m->set.unique++;
  470. }
  471. static inline void statsd_process_set(STATSD_METRIC *m, const char *value) {
  472. if(!is_metric_useful_for_collection(m)) return;
  473. if(unlikely(!value || !*value)) {
  474. error("STATSD: metric of type set, with empty value is ignored.");
  475. return;
  476. }
  477. if(unlikely(m->reset)) {
  478. if(likely(m->set.dict)) {
  479. dictionary_destroy(m->set.dict);
  480. dictionary_register_insert_callback(m->set.dict, dictionary_metric_set_value_insert_callback, m);
  481. m->set.dict = NULL;
  482. }
  483. statsd_reset_metric(m);
  484. }
  485. if (unlikely(!m->set.dict)) {
  486. m->set.dict = dictionary_create(STATSD_DICTIONARY_OPTIONS);
  487. m->set.unique = 0;
  488. }
  489. if(unlikely(value_is_zinit(value))) {
  490. // magic loading of metric, without affecting anything
  491. }
  492. else {
  493. #ifdef STATSD_MULTITHREADED
  494. // avoid the write lock to check if something is already there
  495. if(!dictionary_get(m->set.dict, value))
  496. dictionary_set(m->set.dict, value, NULL, 0);
  497. #else
  498. dictionary_set(m->set.dict, value, NULL, 0);
  499. #endif
  500. m->events++;
  501. m->count++;
  502. }
  503. }
  504. static void dictionary_metric_dict_value_insert_callback(const char *name, void *value, void *data) {
  505. (void)name;
  506. (void)value;
  507. STATSD_METRIC *m = (STATSD_METRIC *)data;
  508. m->dictionary.unique++;
  509. }
  510. static inline void statsd_process_dictionary(STATSD_METRIC *m, const char *value) {
  511. if(!is_metric_useful_for_collection(m)) return;
  512. if(unlikely(!value || !*value)) {
  513. error("STATSD: metric of type set, with empty value is ignored.");
  514. return;
  515. }
  516. if(unlikely(m->reset))
  517. statsd_reset_metric(m);
  518. if (unlikely(!m->dictionary.dict)) {
  519. m->dictionary.dict = dictionary_create(STATSD_DICTIONARY_OPTIONS);
  520. dictionary_register_insert_callback(m->dictionary.dict, dictionary_metric_dict_value_insert_callback, m);
  521. m->dictionary.unique = 0;
  522. }
  523. if(unlikely(value_is_zinit(value))) {
  524. // magic loading of metric, without affecting anything
  525. }
  526. else {
  527. STATSD_METRIC_DICTIONARY_ITEM *t = (STATSD_METRIC_DICTIONARY_ITEM *)dictionary_get(m->dictionary.dict, value);
  528. if (unlikely(!t)) {
  529. if(!t && m->dictionary.unique >= statsd.dictionary_max_unique)
  530. value = "other";
  531. t = (STATSD_METRIC_DICTIONARY_ITEM *)dictionary_set(m->dictionary.dict, value, NULL, sizeof(STATSD_METRIC_DICTIONARY_ITEM));
  532. }
  533. t->count++;
  534. m->events++;
  535. m->count++;
  536. }
  537. }
  538. // --------------------------------------------------------------------------------------------------------------------
  539. // statsd parsing
  540. static inline const char *statsd_parse_skip_up_to(const char *s, char d1, char d2, char d3) {
  541. char c;
  542. for(c = *s; c && c != d1 && c != d2 && c != d3 && c != '\r' && c != '\n'; c = *++s) ;
  543. return s;
  544. }
  545. const char *statsd_parse_skip_spaces(const char *s) {
  546. char c;
  547. for(c = *s; c && ( c == ' ' || c == '\t' || c == '\r' || c == '\n' ); c = *++s) ;
  548. return s;
  549. }
  550. static inline const char *statsd_parse_field_trim(const char *start, char *end) {
  551. if(unlikely(!start || !*start)) {
  552. start = end;
  553. return start;
  554. }
  555. while(start <= end && (*start == ' ' || *start == '\t'))
  556. start++;
  557. *end = '\0';
  558. end--;
  559. while(end >= start && (*end == ' ' || *end == '\t'))
  560. *end-- = '\0';
  561. return start;
  562. }
  563. static void statsd_process_metric(const char *name, const char *value, const char *type, const char *sampling, const char *tags) {
  564. debug(D_STATSD, "STATSD: raw metric '%s', value '%s', type '%s', sampling '%s', tags '%s'", name?name:"(null)", value?value:"(null)", type?type:"(null)", sampling?sampling:"(null)", tags?tags:"(null)");
  565. if(unlikely(!name || !*name)) return;
  566. if(unlikely(!type || !*type)) type = "m";
  567. STATSD_METRIC *m = NULL;
  568. char t0 = type[0], t1 = type[1];
  569. if(unlikely(t0 == 'g' && t1 == '\0')) {
  570. statsd_process_gauge(
  571. m = statsd_find_or_add_metric(&statsd.gauges, name),
  572. value, sampling);
  573. }
  574. else if(unlikely((t0 == 'c' || t0 == 'C') && t1 == '\0')) {
  575. // etsy/statsd uses 'c'
  576. // brubeck uses 'C'
  577. statsd_process_counter(
  578. m = statsd_find_or_add_metric(&statsd.counters, name),
  579. value, sampling);
  580. }
  581. else if(unlikely(t0 == 'm' && t1 == '\0')) {
  582. statsd_process_meter(
  583. m = statsd_find_or_add_metric(&statsd.meters, name),
  584. value, sampling);
  585. }
  586. else if(unlikely(t0 == 'h' && t1 == '\0')) {
  587. statsd_process_histogram(
  588. m = statsd_find_or_add_metric(&statsd.histograms, name),
  589. value, sampling);
  590. }
  591. else if(unlikely(t0 == 's' && t1 == '\0')) {
  592. statsd_process_set(
  593. m = statsd_find_or_add_metric(&statsd.sets, name),
  594. value);
  595. }
  596. else if(unlikely(t0 == 'd' && t1 == '\0')) {
  597. statsd_process_dictionary(
  598. m = statsd_find_or_add_metric(&statsd.dictionaries, name),
  599. value);
  600. }
  601. else if(unlikely(t0 == 'm' && t1 == 's' && type[2] == '\0')) {
  602. statsd_process_timer(
  603. m = statsd_find_or_add_metric(&statsd.timers, name),
  604. value, sampling);
  605. }
  606. else {
  607. statsd.unknown_types++;
  608. error("STATSD: metric '%s' with value '%s' is sent with unknown metric type '%s'", name, value?value:"", type);
  609. }
  610. if(m && tags && *tags) {
  611. const char *s = tags;
  612. while(*s) {
  613. const char *tagkey = NULL, *tagvalue = NULL;
  614. char *tagkey_end = NULL, *tagvalue_end = NULL;
  615. s = tagkey_end = (char *)statsd_parse_skip_up_to(tagkey = s, ':', '=', ',');
  616. if(tagkey == tagkey_end) {
  617. if (*s) {
  618. s++;
  619. s = statsd_parse_skip_spaces(s);
  620. }
  621. continue;
  622. }
  623. if(likely(*s == ':' || *s == '='))
  624. s = tagvalue_end = (char *) statsd_parse_skip_up_to(tagvalue = ++s, ',', '\0', '\0');
  625. if(*s == ',') s++;
  626. statsd_parse_field_trim(tagkey, tagkey_end);
  627. statsd_parse_field_trim(tagvalue, tagvalue_end);
  628. if(tagkey && *tagkey && tagvalue && *tagvalue) {
  629. if (!m->units && strcmp(tagkey, "units") == 0)
  630. m->units = strdupz(tagvalue);
  631. if (!m->dimname && strcmp(tagkey, "name") == 0)
  632. m->dimname = strdupz(tagvalue);
  633. if (!m->family && strcmp(tagkey, "family") == 0)
  634. m->family = strdupz(tagvalue);
  635. }
  636. }
  637. }
  638. }
  639. static inline size_t statsd_process(char *buffer, size_t size, int require_newlines) {
  640. buffer[size] = '\0';
  641. debug(D_STATSD, "RECEIVED: %zu bytes: '%s'", size, buffer);
  642. const char *s = buffer;
  643. while(*s) {
  644. const char *name = NULL, *value = NULL, *type = NULL, *sampling = NULL, *tags = NULL;
  645. char *name_end = NULL, *value_end = NULL, *type_end = NULL, *sampling_end = NULL, *tags_end = NULL;
  646. s = name_end = (char *)statsd_parse_skip_up_to(name = s, ':', '=', '|');
  647. if(name == name_end) {
  648. if (*s) {
  649. s++;
  650. s = statsd_parse_skip_spaces(s);
  651. }
  652. continue;
  653. }
  654. if(likely(*s == ':' || *s == '='))
  655. s = value_end = (char *) statsd_parse_skip_up_to(value = ++s, '|', '@', '#');
  656. if(likely(*s == '|'))
  657. s = type_end = (char *) statsd_parse_skip_up_to(type = ++s, '|', '@', '#');
  658. while(*s == '|' || *s == '@' || *s == '#') {
  659. // parse all the fields that may be appended
  660. if ((*s == '|' && s[1] == '@') || *s == '@') {
  661. s = sampling_end = (char *)statsd_parse_skip_up_to(sampling = ++s, '|', '@', '#');
  662. if (*sampling == '@') sampling++;
  663. }
  664. else if ((*s == '|' && s[1] == '#') || *s == '#') {
  665. s = tags_end = (char *)statsd_parse_skip_up_to(tags = ++s, '|', '@', '#');
  666. if (*tags == '#') tags++;
  667. }
  668. else {
  669. // unknown field, skip it
  670. s = (char *)statsd_parse_skip_up_to(++s, '|', '@', '#');
  671. }
  672. }
  673. // skip everything until the end of the line
  674. while(*s && *s != '\n') s++;
  675. if(unlikely(require_newlines && *s != '\n' && s > buffer)) {
  676. // move the remaining data to the beginning
  677. size -= (name - buffer);
  678. memmove(buffer, name, size);
  679. return size;
  680. }
  681. else
  682. s = statsd_parse_skip_spaces(s);
  683. statsd_process_metric(
  684. statsd_parse_field_trim(name, name_end)
  685. , statsd_parse_field_trim(value, value_end)
  686. , statsd_parse_field_trim(type, type_end)
  687. , statsd_parse_field_trim(sampling, sampling_end)
  688. , statsd_parse_field_trim(tags, tags_end)
  689. );
  690. }
  691. return 0;
  692. }
  693. // --------------------------------------------------------------------------------------------------------------------
  694. // statsd pollfd interface
  695. #define STATSD_TCP_BUFFER_SIZE 65536 // minimize tcp reads
  696. #define STATSD_UDP_BUFFER_SIZE 9000 // this should be up to MTU
  697. typedef enum {
  698. STATSD_SOCKET_DATA_TYPE_TCP,
  699. STATSD_SOCKET_DATA_TYPE_UDP
  700. } STATSD_SOCKET_DATA_TYPE;
  701. struct statsd_tcp {
  702. STATSD_SOCKET_DATA_TYPE type;
  703. size_t size;
  704. size_t len;
  705. char buffer[];
  706. };
  707. #ifdef HAVE_RECVMMSG
  708. struct statsd_udp {
  709. int *running;
  710. STATSD_SOCKET_DATA_TYPE type;
  711. size_t size;
  712. struct iovec *iovecs;
  713. struct mmsghdr *msgs;
  714. };
  715. #else
  716. struct statsd_udp {
  717. int *running;
  718. STATSD_SOCKET_DATA_TYPE type;
  719. char buffer[STATSD_UDP_BUFFER_SIZE];
  720. };
  721. #endif
  722. // new TCP client connected
  723. static void *statsd_add_callback(POLLINFO *pi, short int *events, void *data) {
  724. (void)pi;
  725. (void)data;
  726. worker_is_busy(WORKER_JOB_TYPE_TCP_CONNECTED);
  727. *events = POLLIN;
  728. struct statsd_tcp *t = (struct statsd_tcp *)callocz(sizeof(struct statsd_tcp) + STATSD_TCP_BUFFER_SIZE, 1);
  729. t->type = STATSD_SOCKET_DATA_TYPE_TCP;
  730. t->size = STATSD_TCP_BUFFER_SIZE - 1;
  731. statsd.tcp_socket_connects++;
  732. statsd.tcp_socket_connected++;
  733. worker_is_idle();
  734. return t;
  735. }
  736. // TCP client disconnected
  737. static void statsd_del_callback(POLLINFO *pi) {
  738. worker_is_busy(WORKER_JOB_TYPE_TCP_DISCONNECTED);
  739. struct statsd_tcp *t = pi->data;
  740. if(likely(t)) {
  741. if(t->type == STATSD_SOCKET_DATA_TYPE_TCP) {
  742. if(t->len != 0) {
  743. statsd.socket_errors++;
  744. error("STATSD: client is probably sending unterminated metrics. Closed socket left with '%s'. Trying to process it.", t->buffer);
  745. statsd_process(t->buffer, t->len, 0);
  746. }
  747. statsd.tcp_socket_disconnects++;
  748. statsd.tcp_socket_connected--;
  749. }
  750. else
  751. error("STATSD: internal error: received socket data type is %d, but expected %d", (int)t->type, (int)STATSD_SOCKET_DATA_TYPE_TCP);
  752. freez(t);
  753. }
  754. worker_is_idle();
  755. }
  756. // Receive data
  757. static int statsd_rcv_callback(POLLINFO *pi, short int *events) {
  758. int retval = -1;
  759. worker_is_busy(WORKER_JOB_TYPE_RCV_DATA);
  760. *events = POLLIN;
  761. int fd = pi->fd;
  762. switch(pi->socktype) {
  763. case SOCK_STREAM: {
  764. struct statsd_tcp *d = (struct statsd_tcp *)pi->data;
  765. if(unlikely(!d)) {
  766. error("STATSD: internal error: expected TCP data pointer is NULL");
  767. statsd.socket_errors++;
  768. retval = -1;
  769. goto cleanup;
  770. }
  771. #ifdef NETDATA_INTERNAL_CHECKS
  772. if(unlikely(d->type != STATSD_SOCKET_DATA_TYPE_TCP)) {
  773. error("STATSD: internal error: socket data type should be %d, but it is %d", (int)STATSD_SOCKET_DATA_TYPE_TCP, (int)d->type);
  774. statsd.socket_errors++;
  775. retval = -1;
  776. goto cleanup;
  777. }
  778. #endif
  779. int ret = 0;
  780. ssize_t rc;
  781. do {
  782. rc = recv(fd, &d->buffer[d->len], d->size - d->len, MSG_DONTWAIT);
  783. if (rc < 0) {
  784. // read failed
  785. if (errno != EWOULDBLOCK && errno != EAGAIN && errno != EINTR) {
  786. error("STATSD: recv() on TCP socket %d failed.", fd);
  787. statsd.socket_errors++;
  788. ret = -1;
  789. }
  790. }
  791. else if (!rc) {
  792. // connection closed
  793. debug(D_STATSD, "STATSD: client disconnected.");
  794. ret = -1;
  795. }
  796. else {
  797. // data received
  798. d->len += rc;
  799. statsd.tcp_socket_reads++;
  800. statsd.tcp_bytes_read += rc;
  801. }
  802. if(likely(d->len > 0)) {
  803. statsd.tcp_packets_received++;
  804. d->len = statsd_process(d->buffer, d->len, 1);
  805. }
  806. if(unlikely(ret == -1)) {
  807. retval = -1;
  808. goto cleanup;
  809. }
  810. } while (rc != -1);
  811. break;
  812. }
  813. case SOCK_DGRAM: {
  814. struct statsd_udp *d = (struct statsd_udp *)pi->data;
  815. if(unlikely(!d)) {
  816. error("STATSD: internal error: expected UDP data pointer is NULL");
  817. statsd.socket_errors++;
  818. retval = -1;
  819. goto cleanup;
  820. }
  821. #ifdef NETDATA_INTERNAL_CHECKS
  822. if(unlikely(d->type != STATSD_SOCKET_DATA_TYPE_UDP)) {
  823. error("STATSD: internal error: socket data should be %d, but it is %d", (int)d->type, (int)STATSD_SOCKET_DATA_TYPE_UDP);
  824. statsd.socket_errors++;
  825. retval = -1;
  826. goto cleanup;
  827. }
  828. #endif
  829. #ifdef HAVE_RECVMMSG
  830. ssize_t rc;
  831. do {
  832. rc = recvmmsg(fd, d->msgs, (unsigned int)d->size, MSG_DONTWAIT, NULL);
  833. if (rc < 0) {
  834. // read failed
  835. if (errno != EWOULDBLOCK && errno != EAGAIN && errno != EINTR) {
  836. error("STATSD: recvmmsg() on UDP socket %d failed.", fd);
  837. statsd.socket_errors++;
  838. retval = -1;
  839. goto cleanup;
  840. }
  841. } else if (rc) {
  842. // data received
  843. statsd.udp_socket_reads++;
  844. statsd.udp_packets_received += rc;
  845. size_t i;
  846. for (i = 0; i < (size_t)rc; ++i) {
  847. size_t len = (size_t)d->msgs[i].msg_len;
  848. statsd.udp_bytes_read += len;
  849. statsd_process(d->msgs[i].msg_hdr.msg_iov->iov_base, len, 0);
  850. }
  851. }
  852. } while (rc != -1);
  853. #else // !HAVE_RECVMMSG
  854. ssize_t rc;
  855. do {
  856. rc = recv(fd, d->buffer, STATSD_UDP_BUFFER_SIZE - 1, MSG_DONTWAIT);
  857. if (rc < 0) {
  858. // read failed
  859. if (errno != EWOULDBLOCK && errno != EAGAIN && errno != EINTR) {
  860. error("STATSD: recv() on UDP socket %d failed.", fd);
  861. statsd.socket_errors++;
  862. retval = -1;
  863. goto cleanup;
  864. }
  865. } else if (rc) {
  866. // data received
  867. statsd.udp_socket_reads++;
  868. statsd.udp_packets_received++;
  869. statsd.udp_bytes_read += rc;
  870. statsd_process(d->buffer, (size_t) rc, 0);
  871. }
  872. } while (rc != -1);
  873. #endif
  874. break;
  875. }
  876. default: {
  877. error("STATSD: internal error: unknown socktype %d on socket %d", pi->socktype, fd);
  878. statsd.socket_errors++;
  879. retval = -1;
  880. goto cleanup;
  881. }
  882. }
  883. retval = 0;
  884. cleanup:
  885. worker_is_idle();
  886. return retval;
  887. }
  888. static int statsd_snd_callback(POLLINFO *pi, short int *events) {
  889. (void)pi;
  890. (void)events;
  891. worker_is_busy(WORKER_JOB_TYPE_SND_DATA);
  892. error("STATSD: snd_callback() called, but we never requested to send data to statsd clients.");
  893. worker_is_idle();
  894. return -1;
  895. }
  896. // --------------------------------------------------------------------------------------------------------------------
  897. // statsd child thread to collect metrics from network
  898. void statsd_collector_thread_cleanup(void *data) {
  899. struct statsd_udp *d = data;
  900. *d->running = 0;
  901. info("cleaning up...");
  902. #ifdef HAVE_RECVMMSG
  903. size_t i;
  904. for (i = 0; i < d->size; i++)
  905. freez(d->iovecs[i].iov_base);
  906. freez(d->iovecs);
  907. freez(d->msgs);
  908. #endif
  909. freez(d);
  910. worker_unregister();
  911. }
  912. void *statsd_collector_thread(void *ptr) {
  913. struct collection_thread_status *status = ptr;
  914. status->status = 1;
  915. worker_register("STATSD");
  916. worker_register_job_name(WORKER_JOB_TYPE_TCP_CONNECTED, "tcp connect");
  917. worker_register_job_name(WORKER_JOB_TYPE_TCP_DISCONNECTED, "tcp disconnect");
  918. worker_register_job_name(WORKER_JOB_TYPE_RCV_DATA, "receive");
  919. worker_register_job_name(WORKER_JOB_TYPE_SND_DATA, "send");
  920. info("STATSD collector thread started with taskid %d", gettid());
  921. struct statsd_udp *d = callocz(sizeof(struct statsd_udp), 1);
  922. d->running = &status->status;
  923. netdata_thread_cleanup_push(statsd_collector_thread_cleanup, d);
  924. #ifdef HAVE_RECVMMSG
  925. d->type = STATSD_SOCKET_DATA_TYPE_UDP;
  926. d->size = statsd.recvmmsg_size;
  927. d->iovecs = callocz(sizeof(struct iovec), d->size);
  928. d->msgs = callocz(sizeof(struct mmsghdr), d->size);
  929. size_t i;
  930. for (i = 0; i < d->size; i++) {
  931. d->iovecs[i].iov_base = mallocz(STATSD_UDP_BUFFER_SIZE);
  932. d->iovecs[i].iov_len = STATSD_UDP_BUFFER_SIZE - 1;
  933. d->msgs[i].msg_hdr.msg_iov = &d->iovecs[i];
  934. d->msgs[i].msg_hdr.msg_iovlen = 1;
  935. }
  936. #endif
  937. poll_events(&statsd.sockets
  938. , statsd_add_callback
  939. , statsd_del_callback
  940. , statsd_rcv_callback
  941. , statsd_snd_callback
  942. , NULL
  943. , NULL // No access control pattern
  944. , 0 // No dns lookups for access control pattern
  945. , (void *)d
  946. , 0 // tcp request timeout, 0 = disabled
  947. , statsd.tcp_idle_timeout // tcp idle timeout, 0 = disabled
  948. , statsd.update_every * 1000
  949. , ptr // timer_data
  950. , status->max_sockets
  951. );
  952. netdata_thread_cleanup_pop(1);
  953. return NULL;
  954. }
  955. // --------------------------------------------------------------------------------------------------------------------
  956. // statsd applications configuration files parsing
  957. #define STATSD_CONF_LINE_MAX 8192
  958. static STATSD_APP_CHART_DIM_VALUE_TYPE string2valuetype(const char *type, size_t line, const char *filename) {
  959. if(!type || !*type) type = "last";
  960. if(!strcmp(type, "events")) return STATSD_APP_CHART_DIM_VALUE_TYPE_EVENTS;
  961. else if(!strcmp(type, "last")) return STATSD_APP_CHART_DIM_VALUE_TYPE_LAST;
  962. else if(!strcmp(type, "min")) return STATSD_APP_CHART_DIM_VALUE_TYPE_MIN;
  963. else if(!strcmp(type, "max")) return STATSD_APP_CHART_DIM_VALUE_TYPE_MAX;
  964. else if(!strcmp(type, "sum")) return STATSD_APP_CHART_DIM_VALUE_TYPE_SUM;
  965. else if(!strcmp(type, "average")) return STATSD_APP_CHART_DIM_VALUE_TYPE_AVERAGE;
  966. else if(!strcmp(type, "median")) return STATSD_APP_CHART_DIM_VALUE_TYPE_MEDIAN;
  967. else if(!strcmp(type, "stddev")) return STATSD_APP_CHART_DIM_VALUE_TYPE_STDDEV;
  968. else if(!strcmp(type, "percentile")) return STATSD_APP_CHART_DIM_VALUE_TYPE_PERCENTILE;
  969. error("STATSD: invalid type '%s' at line %zu of file '%s'. Using 'last'.", type, line, filename);
  970. return STATSD_APP_CHART_DIM_VALUE_TYPE_LAST;
  971. }
  972. static const char *valuetype2string(STATSD_APP_CHART_DIM_VALUE_TYPE type) {
  973. switch(type) {
  974. case STATSD_APP_CHART_DIM_VALUE_TYPE_EVENTS: return "events";
  975. case STATSD_APP_CHART_DIM_VALUE_TYPE_LAST: return "last";
  976. case STATSD_APP_CHART_DIM_VALUE_TYPE_MIN: return "min";
  977. case STATSD_APP_CHART_DIM_VALUE_TYPE_MAX: return "max";
  978. case STATSD_APP_CHART_DIM_VALUE_TYPE_SUM: return "sum";
  979. case STATSD_APP_CHART_DIM_VALUE_TYPE_AVERAGE: return "average";
  980. case STATSD_APP_CHART_DIM_VALUE_TYPE_MEDIAN: return "median";
  981. case STATSD_APP_CHART_DIM_VALUE_TYPE_STDDEV: return "stddev";
  982. case STATSD_APP_CHART_DIM_VALUE_TYPE_PERCENTILE: return "percentile";
  983. }
  984. return "unknown";
  985. }
  986. static STATSD_APP_CHART_DIM *add_dimension_to_app_chart(
  987. STATSD_APP *app __maybe_unused
  988. , STATSD_APP_CHART *chart
  989. , const char *metric_name
  990. , const char *dim_name
  991. , collected_number multiplier
  992. , collected_number divisor
  993. , RRDDIM_FLAGS flags
  994. , STATSD_APP_CHART_DIM_VALUE_TYPE value_type
  995. ) {
  996. STATSD_APP_CHART_DIM *dim = callocz(sizeof(STATSD_APP_CHART_DIM), 1);
  997. dim->metric = strdupz(metric_name);
  998. dim->metric_hash = simple_hash(dim->metric);
  999. dim->name = strdupz((dim_name)?dim_name:"");
  1000. dim->multiplier = multiplier;
  1001. dim->divisor = divisor;
  1002. dim->value_type = value_type;
  1003. dim->flags = flags;
  1004. if(!dim->multiplier)
  1005. dim->multiplier = 1;
  1006. if(!dim->divisor)
  1007. dim->divisor = 1;
  1008. // append it to the list of dimension
  1009. STATSD_APP_CHART_DIM *tdim;
  1010. for(tdim = chart->dimensions; tdim && tdim->next ; tdim = tdim->next) ;
  1011. if(!tdim) {
  1012. dim->next = chart->dimensions;
  1013. chart->dimensions = dim;
  1014. }
  1015. else {
  1016. dim->next = tdim->next;
  1017. tdim->next = dim;
  1018. }
  1019. chart->dimensions_count++;
  1020. debug(D_STATSD, "Added dimension '%s' to chart '%s' of app '%s', for metric '%s', with type %u, multiplier " COLLECTED_NUMBER_FORMAT ", divisor " COLLECTED_NUMBER_FORMAT,
  1021. dim->name, chart->id, app->name, dim->metric, dim->value_type, dim->multiplier, dim->divisor);
  1022. return dim;
  1023. }
  1024. static int statsd_readfile(const char *filename, STATSD_APP *app, STATSD_APP_CHART *chart, DICTIONARY *dict) {
  1025. debug(D_STATSD, "STATSD configuration reading file '%s'", filename);
  1026. char *buffer = mallocz(STATSD_CONF_LINE_MAX + 1);
  1027. FILE *fp = fopen(filename, "r");
  1028. if(!fp) {
  1029. error("STATSD: cannot open file '%s'.", filename);
  1030. freez(buffer);
  1031. return -1;
  1032. }
  1033. size_t line = 0;
  1034. char *s;
  1035. while(fgets(buffer, STATSD_CONF_LINE_MAX, fp) != NULL) {
  1036. buffer[STATSD_CONF_LINE_MAX] = '\0';
  1037. line++;
  1038. s = trim(buffer);
  1039. if (!s || *s == '#') {
  1040. debug(D_STATSD, "STATSD: ignoring line %zu of file '%s', it is empty.", line, filename);
  1041. continue;
  1042. }
  1043. debug(D_STATSD, "STATSD: processing line %zu of file '%s': %s", line, filename, buffer);
  1044. if(*s == 'i' && strncmp(s, "include", 7) == 0) {
  1045. s = trim(&s[7]);
  1046. if(s && *s) {
  1047. char *tmp;
  1048. if(*s == '/')
  1049. tmp = strdupz(s);
  1050. else {
  1051. // the file to be included is relative to current file
  1052. // find the directory name from the file we already read
  1053. char *filename2 = strdupz(filename); // copy filename, since dirname() will change it
  1054. char *dir = dirname(filename2); // find the directory part of the filename
  1055. tmp = strdupz_path_subpath(dir, s); // compose the new filename to read;
  1056. freez(filename2); // free the filename we copied
  1057. }
  1058. statsd_readfile(tmp, app, chart, dict);
  1059. freez(tmp);
  1060. }
  1061. else
  1062. error("STATSD: ignoring line %zu of file '%s', include filename is empty", line, filename);
  1063. continue;
  1064. }
  1065. int len = (int) strlen(s);
  1066. if (*s == '[' && s[len - 1] == ']') {
  1067. // new section
  1068. s[len - 1] = '\0';
  1069. s++;
  1070. if (!strcmp(s, "app")) {
  1071. // a new app
  1072. app = callocz(sizeof(STATSD_APP), 1);
  1073. app->name = strdupz("unnamed");
  1074. app->rrd_memory_mode = localhost->rrd_memory_mode;
  1075. app->rrd_history_entries = localhost->rrd_history_entries;
  1076. app->next = statsd.apps;
  1077. statsd.apps = app;
  1078. chart = NULL;
  1079. dict = NULL;
  1080. {
  1081. char lineandfile[FILENAME_MAX + 1];
  1082. snprintfz(lineandfile, FILENAME_MAX, "%zu@%s", line, filename);
  1083. app->source = strdupz(lineandfile);
  1084. }
  1085. }
  1086. else if(app) {
  1087. if(!strcmp(s, "dictionary")) {
  1088. if(!app->dict)
  1089. app->dict = dictionary_create(DICTIONARY_FLAG_SINGLE_THREADED);
  1090. dict = app->dict;
  1091. }
  1092. else {
  1093. dict = NULL;
  1094. // a new chart
  1095. chart = callocz(sizeof(STATSD_APP_CHART), 1);
  1096. netdata_fix_chart_id(s);
  1097. chart->id = strdupz(s);
  1098. chart->name = strdupz(s);
  1099. chart->title = strdupz("Statsd chart");
  1100. chart->context = strdupz(s);
  1101. chart->family = strdupz("overview");
  1102. chart->units = strdupz("value");
  1103. chart->priority = NETDATA_CHART_PRIO_STATSD_PRIVATE;
  1104. chart->chart_type = RRDSET_TYPE_LINE;
  1105. chart->next = app->charts;
  1106. app->charts = chart;
  1107. if (!strncmp(
  1108. filename,
  1109. netdata_configured_stock_config_dir,
  1110. strlen(netdata_configured_stock_config_dir))) {
  1111. char tmpfilename[FILENAME_MAX + 1];
  1112. strncpyz(tmpfilename, filename, FILENAME_MAX);
  1113. chart->module = strdupz(basename(tmpfilename));
  1114. } else {
  1115. chart->module = strdupz("synthetic_chart");
  1116. }
  1117. }
  1118. }
  1119. else
  1120. error("STATSD: ignoring line %zu ('%s') of file '%s', [app] is not defined.", line, s, filename);
  1121. continue;
  1122. }
  1123. if(!app) {
  1124. error("STATSD: ignoring line %zu ('%s') of file '%s', it is outside all sections.", line, s, filename);
  1125. continue;
  1126. }
  1127. char *name = s;
  1128. char *value = strchr(s, '=');
  1129. if(!value) {
  1130. error("STATSD: ignoring line %zu ('%s') of file '%s', there is no = in it.", line, s, filename);
  1131. continue;
  1132. }
  1133. *value = '\0';
  1134. value++;
  1135. name = trim(name);
  1136. value = trim(value);
  1137. if(!name || *name == '#') {
  1138. error("STATSD: ignoring line %zu of file '%s', name is empty.", line, filename);
  1139. continue;
  1140. }
  1141. if(!value) {
  1142. debug(D_CONFIG, "STATSD: ignoring line %zu of file '%s', value is empty.", line, filename);
  1143. continue;
  1144. }
  1145. if(unlikely(dict)) {
  1146. // parse [dictionary] members
  1147. dictionary_set(dict, name, value, strlen(value) + 1);
  1148. }
  1149. else if(!chart) {
  1150. // parse [app] members
  1151. if(!strcmp(name, "name")) {
  1152. freez((void *)app->name);
  1153. netdata_fix_chart_name(value);
  1154. app->name = strdupz(value);
  1155. }
  1156. else if (!strcmp(name, "metrics")) {
  1157. simple_pattern_free(app->metrics);
  1158. app->metrics = simple_pattern_create(value, NULL, SIMPLE_PATTERN_EXACT);
  1159. }
  1160. else if (!strcmp(name, "private charts")) {
  1161. if (!strcmp(value, "yes") || !strcmp(value, "on"))
  1162. app->default_options |= STATSD_METRIC_OPTION_PRIVATE_CHART_ENABLED;
  1163. else
  1164. app->default_options &= ~STATSD_METRIC_OPTION_PRIVATE_CHART_ENABLED;
  1165. }
  1166. else if (!strcmp(name, "gaps when not collected")) {
  1167. if (!strcmp(value, "yes") || !strcmp(value, "on"))
  1168. app->default_options |= STATSD_METRIC_OPTION_SHOW_GAPS_WHEN_NOT_COLLECTED;
  1169. }
  1170. else if (!strcmp(name, "memory mode")) {
  1171. app->rrd_memory_mode = rrd_memory_mode_id(value);
  1172. }
  1173. else if (!strcmp(name, "history")) {
  1174. app->rrd_history_entries = atol(value);
  1175. if (app->rrd_history_entries < 5)
  1176. app->rrd_history_entries = 5;
  1177. }
  1178. else {
  1179. error("STATSD: ignoring line %zu ('%s') of file '%s'. Unknown keyword for the [app] section.", line, name, filename);
  1180. continue;
  1181. }
  1182. }
  1183. else {
  1184. // parse [chart] members
  1185. if(!strcmp(name, "name")) {
  1186. freez((void *)chart->name);
  1187. netdata_fix_chart_id(value);
  1188. chart->name = strdupz(value);
  1189. }
  1190. else if(!strcmp(name, "title")) {
  1191. freez((void *)chart->title);
  1192. chart->title = strdupz(value);
  1193. }
  1194. else if (!strcmp(name, "family")) {
  1195. freez((void *)chart->family);
  1196. chart->family = strdupz(value);
  1197. }
  1198. else if (!strcmp(name, "context")) {
  1199. freez((void *)chart->context);
  1200. netdata_fix_chart_id(value);
  1201. chart->context = strdupz(value);
  1202. }
  1203. else if (!strcmp(name, "units")) {
  1204. freez((void *)chart->units);
  1205. chart->units = strdupz(value);
  1206. }
  1207. else if (!strcmp(name, "priority")) {
  1208. chart->priority = atol(value);
  1209. }
  1210. else if (!strcmp(name, "type")) {
  1211. chart->chart_type = rrdset_type_id(value);
  1212. }
  1213. else if (!strcmp(name, "dimension")) {
  1214. // metric [name [type [multiplier [divisor]]]]
  1215. char *words[10];
  1216. pluginsd_split_words(value, words, 10, NULL, NULL, 0);
  1217. int pattern = 0;
  1218. size_t i = 0;
  1219. char *metric_name = words[i++];
  1220. if(strcmp(metric_name, "pattern") == 0) {
  1221. metric_name = words[i++];
  1222. pattern = 1;
  1223. }
  1224. char *dim_name = words[i++];
  1225. char *type = words[i++];
  1226. char *multiplier = words[i++];
  1227. char *divisor = words[i++];
  1228. char *options = words[i++];
  1229. RRDDIM_FLAGS flags = RRDDIM_FLAG_NONE;
  1230. if(options && *options) {
  1231. if(strstr(options, "hidden") != NULL) flags |= RRDDIM_FLAG_HIDDEN;
  1232. if(strstr(options, "noreset") != NULL) flags |= RRDDIM_FLAG_DONT_DETECT_RESETS_OR_OVERFLOWS;
  1233. if(strstr(options, "nooverflow") != NULL) flags |= RRDDIM_FLAG_DONT_DETECT_RESETS_OR_OVERFLOWS;
  1234. }
  1235. if(!pattern) {
  1236. if(app->dict) {
  1237. if(dim_name && *dim_name) {
  1238. char *n = dictionary_get(app->dict, dim_name);
  1239. if(n) dim_name = n;
  1240. }
  1241. else {
  1242. dim_name = dictionary_get(app->dict, metric_name);
  1243. }
  1244. }
  1245. if(!dim_name || !*dim_name)
  1246. dim_name = metric_name;
  1247. }
  1248. STATSD_APP_CHART_DIM *dim = add_dimension_to_app_chart(
  1249. app
  1250. , chart
  1251. , metric_name
  1252. , dim_name
  1253. , (multiplier && *multiplier)?str2l(multiplier):1
  1254. , (divisor && *divisor)?str2l(divisor):1
  1255. , flags
  1256. , string2valuetype(type, line, filename)
  1257. );
  1258. if(pattern)
  1259. dim->metric_pattern = simple_pattern_create(dim->metric, NULL, SIMPLE_PATTERN_EXACT);
  1260. }
  1261. else {
  1262. error("STATSD: ignoring line %zu ('%s') of file '%s'. Unknown keyword for the [%s] section.", line, name, filename, chart->id);
  1263. continue;
  1264. }
  1265. }
  1266. }
  1267. freez(buffer);
  1268. fclose(fp);
  1269. return 0;
  1270. }
  1271. static int statsd_file_callback(const char *filename, void *data) {
  1272. (void)data;
  1273. return statsd_readfile(filename, NULL, NULL, NULL);
  1274. }
  1275. static inline void statsd_readdir(const char *user_path, const char *stock_path, const char *subpath) {
  1276. recursive_config_double_dir_load(user_path, stock_path, subpath, statsd_file_callback, NULL, 0);
  1277. }
  1278. // --------------------------------------------------------------------------------------------------------------------
  1279. // send metrics to netdata - in private charts - called from the main thread
  1280. // extract chart type and chart id from metric name
  1281. static inline void statsd_get_metric_type_and_id(STATSD_METRIC *m, char *type, char *id, char *context, const char *metrictype, size_t len) {
  1282. // The full chart type.id looks like this:
  1283. // ${STATSD_CHART_PREFIX} + "_" + ${METRIC_NAME} + "_" + ${METRIC_TYPE}
  1284. //
  1285. // where:
  1286. // STATSD_CHART_PREFIX = "statsd" as defined above
  1287. // METRIC_NAME = whatever the user gave to statsd
  1288. // METRIC_TYPE = "gauge", "counter", "meter", "timer", "histogram", "set", "dictionary"
  1289. // for chart type, we want:
  1290. // ${STATSD_CHART_PREFIX} + "_" + the first word of ${METRIC_NAME}
  1291. // find the first word of ${METRIC_NAME}
  1292. char firstword[len + 1], *s = "";
  1293. strncpyz(firstword, m->name, len);
  1294. for (s = firstword; *s ; s++) {
  1295. if (unlikely(*s == '.' || *s == '_')) {
  1296. *s = '\0';
  1297. s++;
  1298. break;
  1299. }
  1300. }
  1301. // firstword has the first word of ${METRIC_NAME}
  1302. // s has the remaining, if any
  1303. // create the chart type:
  1304. snprintfz(type, len, STATSD_CHART_PREFIX "_%s", firstword);
  1305. // for chart id, we want:
  1306. // the remaining of the words of ${METRIC_NAME} + "_" + ${METRIC_TYPE}
  1307. // or the ${METRIC_NAME} has no remaining words, the ${METRIC_TYPE} alone
  1308. if(*s)
  1309. snprintfz(id, len, "%s_%s", s, metrictype);
  1310. else
  1311. snprintfz(id, len, "%s", metrictype);
  1312. // for the context, we want the full of both the above, separated with a dot (type.id):
  1313. snprintfz(context, RRD_ID_LENGTH_MAX, "%s.%s", type, id);
  1314. // make sure they don't have illegal characters
  1315. netdata_fix_chart_id(type);
  1316. netdata_fix_chart_id(id);
  1317. netdata_fix_chart_id(context);
  1318. }
  1319. static inline RRDSET *statsd_private_rrdset_create(
  1320. STATSD_METRIC *m
  1321. , const char *type
  1322. , const char *id
  1323. , const char *name
  1324. , const char *family
  1325. , const char *context
  1326. , const char *title
  1327. , const char *units
  1328. , long priority
  1329. , int update_every
  1330. , RRDSET_TYPE chart_type
  1331. ) {
  1332. RRD_MEMORY_MODE memory_mode = statsd.private_charts_memory_mode;
  1333. long history = statsd.private_charts_rrd_history_entries;
  1334. if(unlikely(statsd.private_charts >= statsd.max_private_charts)) {
  1335. debug(D_STATSD, "STATSD: metric '%s' will be charted with memory mode = none, because the maximum number of charts has been reached.", m->name);
  1336. info("STATSD: metric '%s' will be charted with memory mode = none, because the maximum number of charts (%zu) has been reached. Increase the number of charts by editing netdata.conf, [statsd] section.", m->name, statsd.max_private_charts);
  1337. memory_mode = RRD_MEMORY_MODE_NONE;
  1338. history = 5;
  1339. }
  1340. statsd.private_charts++;
  1341. RRDSET *st = rrdset_create_custom(
  1342. localhost // host
  1343. , type // type
  1344. , id // id
  1345. , name // name
  1346. , family // family
  1347. , context // context
  1348. , title // title
  1349. , units // units
  1350. , PLUGIN_STATSD_NAME // plugin
  1351. , "private_chart" // module
  1352. , priority // priority
  1353. , update_every // update every
  1354. , chart_type // chart type
  1355. , memory_mode // memory mode
  1356. , history // history
  1357. );
  1358. rrdset_flag_set(st, RRDSET_FLAG_STORE_FIRST);
  1359. if(statsd.private_charts_hidden)
  1360. rrdset_flag_set(st, RRDSET_FLAG_HIDDEN);
  1361. // rrdset_flag_set(st, RRDSET_FLAG_DEBUG);
  1362. return st;
  1363. }
  1364. static inline void statsd_private_chart_gauge(STATSD_METRIC *m) {
  1365. debug(D_STATSD, "updating private chart for gauge metric '%s'", m->name);
  1366. if(unlikely(!m->st)) {
  1367. char type[RRD_ID_LENGTH_MAX + 1], id[RRD_ID_LENGTH_MAX + 1], context[RRD_ID_LENGTH_MAX + 1];
  1368. statsd_get_metric_type_and_id(m, type, id, context, "gauge", RRD_ID_LENGTH_MAX);
  1369. char title[RRD_ID_LENGTH_MAX + 1];
  1370. snprintfz(title, RRD_ID_LENGTH_MAX, "statsd private chart for gauge %s", m->name);
  1371. m->st = statsd_private_rrdset_create(
  1372. m
  1373. , type
  1374. , id
  1375. , NULL // name
  1376. , m->family?m->family:"gauges" // family (submenu)
  1377. , context // context
  1378. , title // title
  1379. , m->units?m->units:"value" // units
  1380. , NETDATA_CHART_PRIO_STATSD_PRIVATE
  1381. , statsd.update_every
  1382. , RRDSET_TYPE_LINE
  1383. );
  1384. m->rd_value = rrddim_add(m->st, "gauge", m->dimname?m->dimname:NULL, 1, statsd.decimal_detail, RRD_ALGORITHM_ABSOLUTE);
  1385. if(m->options & STATSD_METRIC_OPTION_CHART_DIMENSION_COUNT)
  1386. m->rd_count = rrddim_add(m->st, "events", NULL, 1, 1, RRD_ALGORITHM_INCREMENTAL);
  1387. }
  1388. else rrdset_next(m->st);
  1389. rrddim_set_by_pointer(m->st, m->rd_value, m->last);
  1390. if(m->rd_count)
  1391. rrddim_set_by_pointer(m->st, m->rd_count, m->events);
  1392. rrdset_done(m->st);
  1393. }
  1394. static inline void statsd_private_chart_counter_or_meter(STATSD_METRIC *m, const char *dim, const char *family) {
  1395. debug(D_STATSD, "updating private chart for %s metric '%s'", dim, m->name);
  1396. if(unlikely(!m->st)) {
  1397. char type[RRD_ID_LENGTH_MAX + 1], id[RRD_ID_LENGTH_MAX + 1], context[RRD_ID_LENGTH_MAX + 1];
  1398. statsd_get_metric_type_and_id(m, type, id, context, dim, RRD_ID_LENGTH_MAX);
  1399. char title[RRD_ID_LENGTH_MAX + 1];
  1400. snprintfz(title, RRD_ID_LENGTH_MAX, "statsd private chart for %s %s", dim, m->name);
  1401. m->st = statsd_private_rrdset_create(
  1402. m
  1403. , type
  1404. , id
  1405. , NULL // name
  1406. , m->family?m->family:family // family (submenu)
  1407. , context // context
  1408. , title // title
  1409. , m->units?m->units:"events/s" // units
  1410. , NETDATA_CHART_PRIO_STATSD_PRIVATE
  1411. , statsd.update_every
  1412. , RRDSET_TYPE_AREA
  1413. );
  1414. m->rd_value = rrddim_add(m->st, dim, m->dimname?m->dimname:NULL, 1, 1, RRD_ALGORITHM_INCREMENTAL);
  1415. if(m->options & STATSD_METRIC_OPTION_CHART_DIMENSION_COUNT)
  1416. m->rd_count = rrddim_add(m->st, "events", NULL, 1, 1, RRD_ALGORITHM_INCREMENTAL);
  1417. }
  1418. else rrdset_next(m->st);
  1419. rrddim_set_by_pointer(m->st, m->rd_value, m->last);
  1420. if(m->rd_count)
  1421. rrddim_set_by_pointer(m->st, m->rd_count, m->events);
  1422. rrdset_done(m->st);
  1423. }
  1424. static inline void statsd_private_chart_set(STATSD_METRIC *m) {
  1425. debug(D_STATSD, "updating private chart for set metric '%s'", m->name);
  1426. if(unlikely(!m->st)) {
  1427. char type[RRD_ID_LENGTH_MAX + 1], id[RRD_ID_LENGTH_MAX + 1], context[RRD_ID_LENGTH_MAX + 1];
  1428. statsd_get_metric_type_and_id(m, type, id, context, "set", RRD_ID_LENGTH_MAX);
  1429. char title[RRD_ID_LENGTH_MAX + 1];
  1430. snprintfz(title, RRD_ID_LENGTH_MAX, "statsd private chart for set %s", m->name);
  1431. m->st = statsd_private_rrdset_create(
  1432. m
  1433. , type
  1434. , id
  1435. , NULL // name
  1436. , m->family?m->family:"sets" // family (submenu)
  1437. , context // context
  1438. , title // title
  1439. , m->units?m->units:"entries" // units
  1440. , NETDATA_CHART_PRIO_STATSD_PRIVATE
  1441. , statsd.update_every
  1442. , RRDSET_TYPE_LINE
  1443. );
  1444. m->rd_value = rrddim_add(m->st, "set", m->dimname?m->dimname:"unique", 1, 1, RRD_ALGORITHM_ABSOLUTE);
  1445. if(m->options & STATSD_METRIC_OPTION_CHART_DIMENSION_COUNT)
  1446. m->rd_count = rrddim_add(m->st, "events", NULL, 1, 1, RRD_ALGORITHM_INCREMENTAL);
  1447. }
  1448. else rrdset_next(m->st);
  1449. rrddim_set_by_pointer(m->st, m->rd_value, m->last);
  1450. if(m->rd_count)
  1451. rrddim_set_by_pointer(m->st, m->rd_count, m->events);
  1452. rrdset_done(m->st);
  1453. }
  1454. static inline void statsd_private_chart_dictionary(STATSD_METRIC *m) {
  1455. debug(D_STATSD, "updating private chart for dictionary metric '%s'", m->name);
  1456. if(unlikely(!m->st)) {
  1457. char type[RRD_ID_LENGTH_MAX + 1], id[RRD_ID_LENGTH_MAX + 1], context[RRD_ID_LENGTH_MAX + 1];
  1458. statsd_get_metric_type_and_id(m, type, id, context, "dictionary", RRD_ID_LENGTH_MAX);
  1459. char title[RRD_ID_LENGTH_MAX + 1];
  1460. snprintfz(title, RRD_ID_LENGTH_MAX, "statsd private chart for dictionary %s", m->name);
  1461. m->st = statsd_private_rrdset_create(
  1462. m
  1463. , type
  1464. , id
  1465. , NULL // name
  1466. , m->family?m->family:"dictionaries" // family (submenu)
  1467. , context // context
  1468. , title // title
  1469. , m->units?m->units:"events/s" // units
  1470. , NETDATA_CHART_PRIO_STATSD_PRIVATE
  1471. , statsd.update_every
  1472. , RRDSET_TYPE_STACKED
  1473. );
  1474. if(m->options & STATSD_METRIC_OPTION_CHART_DIMENSION_COUNT)
  1475. m->rd_count = rrddim_add(m->st, "events", NULL, 1, 1, RRD_ALGORITHM_INCREMENTAL);
  1476. }
  1477. else rrdset_next(m->st);
  1478. STATSD_METRIC_DICTIONARY_ITEM *t;
  1479. dfe_start_read(m->dictionary.dict, t) {
  1480. if (!t->rd) t->rd = rrddim_add(m->st, t_name, NULL, 1, 1, RRD_ALGORITHM_INCREMENTAL);
  1481. rrddim_set_by_pointer(m->st, t->rd, (collected_number)t->count);
  1482. }
  1483. dfe_done(t);
  1484. if(m->rd_count)
  1485. rrddim_set_by_pointer(m->st, m->rd_count, m->events);
  1486. rrdset_done(m->st);
  1487. }
  1488. static inline void statsd_private_chart_timer_or_histogram(STATSD_METRIC *m, const char *dim, const char *family, const char *units) {
  1489. debug(D_STATSD, "updating private chart for %s metric '%s'", dim, m->name);
  1490. if(unlikely(!m->st)) {
  1491. char type[RRD_ID_LENGTH_MAX + 1], id[RRD_ID_LENGTH_MAX + 1], context[RRD_ID_LENGTH_MAX + 1];
  1492. statsd_get_metric_type_and_id(m, type, id, context, dim, RRD_ID_LENGTH_MAX);
  1493. char title[RRD_ID_LENGTH_MAX + 1];
  1494. snprintfz(title, RRD_ID_LENGTH_MAX, "statsd private chart for %s %s", dim, m->name);
  1495. m->st = statsd_private_rrdset_create(
  1496. m
  1497. , type
  1498. , id
  1499. , NULL // name
  1500. , m->family?m->family:family // family (submenu)
  1501. , context // context
  1502. , title // title
  1503. , m->units?m->units:units // units
  1504. , NETDATA_CHART_PRIO_STATSD_PRIVATE
  1505. , statsd.update_every
  1506. , RRDSET_TYPE_AREA
  1507. );
  1508. m->histogram.ext->rd_min = rrddim_add(m->st, "min", NULL, 1, statsd.decimal_detail, RRD_ALGORITHM_ABSOLUTE);
  1509. m->histogram.ext->rd_max = rrddim_add(m->st, "max", NULL, 1, statsd.decimal_detail, RRD_ALGORITHM_ABSOLUTE);
  1510. m->rd_value = rrddim_add(m->st, "average", NULL, 1, statsd.decimal_detail, RRD_ALGORITHM_ABSOLUTE);
  1511. m->histogram.ext->rd_percentile = rrddim_add(m->st, statsd.histogram_percentile_str, NULL, 1, statsd.decimal_detail, RRD_ALGORITHM_ABSOLUTE);
  1512. m->histogram.ext->rd_median = rrddim_add(m->st, "median", NULL, 1, statsd.decimal_detail, RRD_ALGORITHM_ABSOLUTE);
  1513. m->histogram.ext->rd_stddev = rrddim_add(m->st, "stddev", NULL, 1, statsd.decimal_detail, RRD_ALGORITHM_ABSOLUTE);
  1514. //m->histogram.ext->rd_sum = rrddim_add(m->st, "sum", NULL, 1, statsd.decimal_detail, RRD_ALGORITHM_ABSOLUTE);
  1515. if(m->options & STATSD_METRIC_OPTION_CHART_DIMENSION_COUNT)
  1516. m->rd_count = rrddim_add(m->st, "events", NULL, 1, 1, RRD_ALGORITHM_INCREMENTAL);
  1517. }
  1518. else rrdset_next(m->st);
  1519. rrddim_set_by_pointer(m->st, m->histogram.ext->rd_min, m->histogram.ext->last_min);
  1520. rrddim_set_by_pointer(m->st, m->histogram.ext->rd_max, m->histogram.ext->last_max);
  1521. rrddim_set_by_pointer(m->st, m->histogram.ext->rd_percentile, m->histogram.ext->last_percentile);
  1522. rrddim_set_by_pointer(m->st, m->histogram.ext->rd_median, m->histogram.ext->last_median);
  1523. rrddim_set_by_pointer(m->st, m->histogram.ext->rd_stddev, m->histogram.ext->last_stddev);
  1524. //rrddim_set_by_pointer(m->st, m->histogram.ext->rd_sum, m->histogram.ext->last_sum);
  1525. rrddim_set_by_pointer(m->st, m->rd_value, m->last);
  1526. if(m->rd_count)
  1527. rrddim_set_by_pointer(m->st, m->rd_count, m->events);
  1528. rrdset_done(m->st);
  1529. }
  1530. // --------------------------------------------------------------------------------------------------------------------
  1531. // statsd flush metrics
  1532. static inline void statsd_flush_gauge(STATSD_METRIC *m) {
  1533. debug(D_STATSD, "flushing gauge metric '%s'", m->name);
  1534. int updated = 0;
  1535. if(unlikely(!m->reset && m->count)) {
  1536. m->last = (collected_number) (m->gauge.value * statsd.decimal_detail);
  1537. m->reset = 1;
  1538. updated = 1;
  1539. }
  1540. if(unlikely(m->options & STATSD_METRIC_OPTION_PRIVATE_CHART_ENABLED && (updated || !(m->options & STATSD_METRIC_OPTION_SHOW_GAPS_WHEN_NOT_COLLECTED))))
  1541. statsd_private_chart_gauge(m);
  1542. }
  1543. static inline void statsd_flush_counter_or_meter(STATSD_METRIC *m, const char *dim, const char *family) {
  1544. debug(D_STATSD, "flushing %s metric '%s'", dim, m->name);
  1545. int updated = 0;
  1546. if(unlikely(!m->reset && m->count)) {
  1547. m->last = m->counter.value;
  1548. m->reset = 1;
  1549. updated = 1;
  1550. }
  1551. if(unlikely(m->options & STATSD_METRIC_OPTION_PRIVATE_CHART_ENABLED && (updated || !(m->options & STATSD_METRIC_OPTION_SHOW_GAPS_WHEN_NOT_COLLECTED))))
  1552. statsd_private_chart_counter_or_meter(m, dim, family);
  1553. }
  1554. static inline void statsd_flush_counter(STATSD_METRIC *m) {
  1555. statsd_flush_counter_or_meter(m, "counter", "counters");
  1556. }
  1557. static inline void statsd_flush_meter(STATSD_METRIC *m) {
  1558. statsd_flush_counter_or_meter(m, "meter", "meters");
  1559. }
  1560. static inline void statsd_flush_set(STATSD_METRIC *m) {
  1561. debug(D_STATSD, "flushing set metric '%s'", m->name);
  1562. int updated = 0;
  1563. if(unlikely(!m->reset && m->count)) {
  1564. m->last = (collected_number)m->set.unique;
  1565. m->reset = 1;
  1566. updated = 1;
  1567. }
  1568. else {
  1569. m->last = 0;
  1570. }
  1571. if(unlikely(m->options & STATSD_METRIC_OPTION_PRIVATE_CHART_ENABLED && (updated || !(m->options & STATSD_METRIC_OPTION_SHOW_GAPS_WHEN_NOT_COLLECTED))))
  1572. statsd_private_chart_set(m);
  1573. }
  1574. static inline void statsd_flush_dictionary(STATSD_METRIC *m) {
  1575. debug(D_STATSD, "flushing dictionary metric '%s'", m->name);
  1576. int updated = 0;
  1577. if(unlikely(!m->reset && m->count)) {
  1578. m->last = (collected_number)m->dictionary.unique;
  1579. m->reset = 1;
  1580. updated = 1;
  1581. }
  1582. else {
  1583. m->last = 0;
  1584. }
  1585. if(unlikely(m->options & STATSD_METRIC_OPTION_PRIVATE_CHART_ENABLED && (updated || !(m->options & STATSD_METRIC_OPTION_SHOW_GAPS_WHEN_NOT_COLLECTED))))
  1586. statsd_private_chart_dictionary(m);
  1587. if(m->dictionary.unique >= statsd.dictionary_max_unique) {
  1588. if(!(m->options & STATSD_METRIC_OPTION_COLLECTION_FULL_LOGGED)) {
  1589. m->options |= STATSD_METRIC_OPTION_COLLECTION_FULL_LOGGED;
  1590. info(
  1591. "STATSD dictionary '%s' reach max of %zu items - try increasing 'dictionaries max unique dimensions' in netdata.conf",
  1592. m->name,
  1593. m->dictionary.unique);
  1594. }
  1595. }
  1596. }
  1597. static inline void statsd_flush_timer_or_histogram(STATSD_METRIC *m, const char *dim, const char *family, const char *units) {
  1598. debug(D_STATSD, "flushing %s metric '%s'", dim, m->name);
  1599. int updated = 0;
  1600. if(unlikely(!m->reset && m->count && m->histogram.ext->used > 0)) {
  1601. netdata_mutex_lock(&m->histogram.ext->mutex);
  1602. size_t len = m->histogram.ext->used;
  1603. LONG_DOUBLE *series = m->histogram.ext->values;
  1604. sort_series(series, len);
  1605. m->histogram.ext->last_min = (collected_number)roundl(series[0] * statsd.decimal_detail);
  1606. m->histogram.ext->last_max = (collected_number)roundl(series[len - 1] * statsd.decimal_detail);
  1607. m->last = (collected_number)roundl(average(series, len) * statsd.decimal_detail);
  1608. m->histogram.ext->last_median = (collected_number)roundl(median_on_sorted_series(series, len) * statsd.decimal_detail);
  1609. m->histogram.ext->last_stddev = (collected_number)roundl(standard_deviation(series, len) * statsd.decimal_detail);
  1610. m->histogram.ext->last_sum = (collected_number)roundl(sum(series, len) * statsd.decimal_detail);
  1611. size_t pct_len = (size_t)floor((double)len * statsd.histogram_percentile / 100.0);
  1612. if(pct_len < 1)
  1613. m->histogram.ext->last_percentile = (collected_number)(series[0] * statsd.decimal_detail);
  1614. else
  1615. m->histogram.ext->last_percentile = (collected_number)roundl(series[pct_len - 1] * statsd.decimal_detail);
  1616. netdata_mutex_unlock(&m->histogram.ext->mutex);
  1617. debug(D_STATSD, "STATSD %s metric %s: min " COLLECTED_NUMBER_FORMAT ", max " COLLECTED_NUMBER_FORMAT ", last " COLLECTED_NUMBER_FORMAT ", pcent " COLLECTED_NUMBER_FORMAT ", median " COLLECTED_NUMBER_FORMAT ", stddev " COLLECTED_NUMBER_FORMAT ", sum " COLLECTED_NUMBER_FORMAT,
  1618. dim, m->name, m->histogram.ext->last_min, m->histogram.ext->last_max, m->last, m->histogram.ext->last_percentile, m->histogram.ext->last_median, m->histogram.ext->last_stddev, m->histogram.ext->last_sum);
  1619. m->histogram.ext->zeroed = 0;
  1620. m->reset = 1;
  1621. updated = 1;
  1622. }
  1623. else if(unlikely(!m->histogram.ext->zeroed)) {
  1624. // reset the metrics
  1625. // if we collected anything, they will be updated below
  1626. // this ensures that we report zeros if nothing is collected
  1627. m->histogram.ext->last_min = 0;
  1628. m->histogram.ext->last_max = 0;
  1629. m->last = 0;
  1630. m->histogram.ext->last_median = 0;
  1631. m->histogram.ext->last_stddev = 0;
  1632. m->histogram.ext->last_sum = 0;
  1633. m->histogram.ext->last_percentile = 0;
  1634. m->histogram.ext->zeroed = 1;
  1635. }
  1636. if(unlikely(m->options & STATSD_METRIC_OPTION_PRIVATE_CHART_ENABLED && (updated || !(m->options & STATSD_METRIC_OPTION_SHOW_GAPS_WHEN_NOT_COLLECTED))))
  1637. statsd_private_chart_timer_or_histogram(m, dim, family, units);
  1638. }
  1639. static inline void statsd_flush_timer(STATSD_METRIC *m) {
  1640. statsd_flush_timer_or_histogram(m, "timer", "timers", "milliseconds");
  1641. }
  1642. static inline void statsd_flush_histogram(STATSD_METRIC *m) {
  1643. statsd_flush_timer_or_histogram(m, "histogram", "histograms", "value");
  1644. }
  1645. static inline RRD_ALGORITHM statsd_algorithm_for_metric(STATSD_METRIC *m) {
  1646. switch(m->type) {
  1647. default:
  1648. case STATSD_METRIC_TYPE_GAUGE:
  1649. case STATSD_METRIC_TYPE_SET:
  1650. case STATSD_METRIC_TYPE_TIMER:
  1651. case STATSD_METRIC_TYPE_HISTOGRAM:
  1652. return RRD_ALGORITHM_ABSOLUTE;
  1653. case STATSD_METRIC_TYPE_METER:
  1654. case STATSD_METRIC_TYPE_COUNTER:
  1655. case STATSD_METRIC_TYPE_DICTIONARY:
  1656. return RRD_ALGORITHM_INCREMENTAL;
  1657. }
  1658. }
  1659. static inline void link_metric_to_app_dimension(STATSD_APP *app, STATSD_METRIC *m, STATSD_APP_CHART *chart, STATSD_APP_CHART_DIM *dim) {
  1660. if(dim->value_type == STATSD_APP_CHART_DIM_VALUE_TYPE_EVENTS) {
  1661. dim->value_ptr = &m->events;
  1662. dim->algorithm = RRD_ALGORITHM_INCREMENTAL;
  1663. }
  1664. else if(m->type == STATSD_METRIC_TYPE_HISTOGRAM || m->type == STATSD_METRIC_TYPE_TIMER) {
  1665. dim->algorithm = RRD_ALGORITHM_ABSOLUTE;
  1666. dim->divisor *= statsd.decimal_detail;
  1667. switch(dim->value_type) {
  1668. case STATSD_APP_CHART_DIM_VALUE_TYPE_EVENTS:
  1669. // will never match - added to avoid warning
  1670. break;
  1671. case STATSD_APP_CHART_DIM_VALUE_TYPE_LAST:
  1672. case STATSD_APP_CHART_DIM_VALUE_TYPE_AVERAGE:
  1673. dim->value_ptr = &m->last;
  1674. break;
  1675. case STATSD_APP_CHART_DIM_VALUE_TYPE_SUM:
  1676. dim->value_ptr = &m->histogram.ext->last_sum;
  1677. break;
  1678. case STATSD_APP_CHART_DIM_VALUE_TYPE_MIN:
  1679. dim->value_ptr = &m->histogram.ext->last_min;
  1680. break;
  1681. case STATSD_APP_CHART_DIM_VALUE_TYPE_MAX:
  1682. dim->value_ptr = &m->histogram.ext->last_max;
  1683. break;
  1684. case STATSD_APP_CHART_DIM_VALUE_TYPE_MEDIAN:
  1685. dim->value_ptr = &m->histogram.ext->last_median;
  1686. break;
  1687. case STATSD_APP_CHART_DIM_VALUE_TYPE_PERCENTILE:
  1688. dim->value_ptr = &m->histogram.ext->last_percentile;
  1689. break;
  1690. case STATSD_APP_CHART_DIM_VALUE_TYPE_STDDEV:
  1691. dim->value_ptr = &m->histogram.ext->last_stddev;
  1692. break;
  1693. }
  1694. }
  1695. else {
  1696. if (dim->value_type != STATSD_APP_CHART_DIM_VALUE_TYPE_LAST)
  1697. error("STATSD: unsupported value type for dimension '%s' of chart '%s' of app '%s' on metric '%s'", dim->name, chart->id, app->name, m->name);
  1698. dim->value_ptr = &m->last;
  1699. dim->algorithm = statsd_algorithm_for_metric(m);
  1700. if(m->type == STATSD_METRIC_TYPE_GAUGE)
  1701. dim->divisor *= statsd.decimal_detail;
  1702. }
  1703. if(unlikely(chart->st && dim->rd)) {
  1704. rrddim_set_algorithm(chart->st, dim->rd, dim->algorithm);
  1705. rrddim_set_multiplier(chart->st, dim->rd, dim->multiplier);
  1706. rrddim_set_divisor(chart->st, dim->rd, dim->divisor);
  1707. }
  1708. chart->dimensions_linked_count++;
  1709. m->options |= STATSD_METRIC_OPTION_USED_IN_APPS;
  1710. debug(D_STATSD, "metric '%s' of type %u linked with app '%s', chart '%s', dimension '%s', algorithm '%s'", m->name, m->type, app->name, chart->id, dim->name, rrd_algorithm_name(dim->algorithm));
  1711. }
  1712. static inline void check_if_metric_is_for_app(STATSD_INDEX *index, STATSD_METRIC *m) {
  1713. (void)index;
  1714. STATSD_APP *app;
  1715. for(app = statsd.apps; app ;app = app->next) {
  1716. if(unlikely(simple_pattern_matches(app->metrics, m->name))) {
  1717. debug(D_STATSD, "metric '%s' matches app '%s'", m->name, app->name);
  1718. // the metric should get the options from the app
  1719. if(app->default_options & STATSD_METRIC_OPTION_PRIVATE_CHART_ENABLED)
  1720. m->options |= STATSD_METRIC_OPTION_PRIVATE_CHART_ENABLED;
  1721. else
  1722. m->options &= ~STATSD_METRIC_OPTION_PRIVATE_CHART_ENABLED;
  1723. if(app->default_options & STATSD_METRIC_OPTION_SHOW_GAPS_WHEN_NOT_COLLECTED)
  1724. m->options |= STATSD_METRIC_OPTION_SHOW_GAPS_WHEN_NOT_COLLECTED;
  1725. else
  1726. m->options &= ~STATSD_METRIC_OPTION_SHOW_GAPS_WHEN_NOT_COLLECTED;
  1727. m->options |= STATSD_METRIC_OPTION_PRIVATE_CHART_CHECKED;
  1728. // check if there is a chart in this app, willing to get this metric
  1729. STATSD_APP_CHART *chart;
  1730. for(chart = app->charts; chart; chart = chart->next) {
  1731. STATSD_APP_CHART_DIM *dim;
  1732. for(dim = chart->dimensions; dim ; dim = dim->next) {
  1733. if(unlikely(dim->metric_pattern)) {
  1734. size_t dim_name_len = strlen(dim->name);
  1735. size_t wildcarded_len = dim_name_len + strlen(m->name) + 1;
  1736. char wildcarded[wildcarded_len];
  1737. strcpy(wildcarded, dim->name);
  1738. char *ws = &wildcarded[dim_name_len];
  1739. if(simple_pattern_matches_extract(dim->metric_pattern, m->name, ws, wildcarded_len - dim_name_len)) {
  1740. char *final_name = NULL;
  1741. if(app->dict) {
  1742. if(likely(*wildcarded)) {
  1743. // use the name of the wildcarded string
  1744. final_name = dictionary_get(app->dict, wildcarded);
  1745. }
  1746. if(unlikely(!final_name)) {
  1747. // use the name of the metric
  1748. final_name = dictionary_get(app->dict, m->name);
  1749. }
  1750. }
  1751. if(unlikely(!final_name))
  1752. final_name = wildcarded;
  1753. add_dimension_to_app_chart(
  1754. app
  1755. , chart
  1756. , m->name
  1757. , final_name
  1758. , dim->multiplier
  1759. , dim->divisor
  1760. , dim->flags
  1761. , dim->value_type
  1762. );
  1763. // the new dimension is appended to the list
  1764. // so, it will be matched and linked later too
  1765. }
  1766. }
  1767. else if(!dim->value_ptr && dim->metric_hash == m->hash && !strcmp(dim->metric, m->name)) {
  1768. // we have a match - this metric should be linked to this dimension
  1769. link_metric_to_app_dimension(app, m, chart, dim);
  1770. }
  1771. }
  1772. }
  1773. }
  1774. }
  1775. }
  1776. static inline RRDDIM *statsd_add_dim_to_app_chart(STATSD_APP *app, STATSD_APP_CHART *chart, STATSD_APP_CHART_DIM *dim) {
  1777. (void)app;
  1778. // allow the same statsd metric to be added multiple times to the same chart
  1779. STATSD_APP_CHART_DIM *tdim;
  1780. size_t count_same_metric = 0, count_same_metric_value_type = 0;
  1781. size_t pos_same_metric_value_type = 0;
  1782. for (tdim = chart->dimensions; tdim && tdim->next; tdim = tdim->next) {
  1783. if (dim->metric_hash == tdim->metric_hash && !strcmp(dim->metric, tdim->metric)) {
  1784. count_same_metric++;
  1785. if(dim->value_type == tdim->value_type) {
  1786. count_same_metric_value_type++;
  1787. if (tdim == dim)
  1788. pos_same_metric_value_type = count_same_metric_value_type;
  1789. }
  1790. }
  1791. }
  1792. if(count_same_metric > 1) {
  1793. // the same metric is found multiple times
  1794. size_t len = strlen(dim->metric) + 100;
  1795. char metric[ len + 1 ];
  1796. if(count_same_metric_value_type > 1) {
  1797. // the same metric, with the same value type, is added multiple times
  1798. snprintfz(metric, len, "%s_%s%zu", dim->metric, valuetype2string(dim->value_type), pos_same_metric_value_type);
  1799. }
  1800. else {
  1801. // the same metric, with different value type is added
  1802. snprintfz(metric, len, "%s_%s", dim->metric, valuetype2string(dim->value_type));
  1803. }
  1804. dim->rd = rrddim_add(chart->st, metric, dim->name, dim->multiplier, dim->divisor, dim->algorithm);
  1805. if(dim->flags != RRDDIM_FLAG_NONE) dim->rd->flags |= dim->flags;
  1806. return dim->rd;
  1807. }
  1808. dim->rd = rrddim_add(chart->st, dim->metric, dim->name, dim->multiplier, dim->divisor, dim->algorithm);
  1809. if(dim->flags != RRDDIM_FLAG_NONE) dim->rd->flags |= dim->flags;
  1810. return dim->rd;
  1811. }
  1812. static inline void statsd_update_app_chart(STATSD_APP *app, STATSD_APP_CHART *chart) {
  1813. debug(D_STATSD, "updating chart '%s' for app '%s'", chart->id, app->name);
  1814. if(!chart->st) {
  1815. chart->st = rrdset_create_custom(
  1816. localhost // host
  1817. , app->name // type
  1818. , chart->id // id
  1819. , chart->name // name
  1820. , chart->family // family
  1821. , chart->context // context
  1822. , chart->title // title
  1823. , chart->units // units
  1824. , PLUGIN_STATSD_NAME // plugin
  1825. , chart->module // module
  1826. , chart->priority // priority
  1827. , statsd.update_every // update every
  1828. , chart->chart_type // chart type
  1829. , app->rrd_memory_mode // memory mode
  1830. , app->rrd_history_entries // history
  1831. );
  1832. rrdset_flag_set(chart->st, RRDSET_FLAG_STORE_FIRST);
  1833. // rrdset_flag_set(chart->st, RRDSET_FLAG_DEBUG);
  1834. }
  1835. else rrdset_next(chart->st);
  1836. STATSD_APP_CHART_DIM *dim;
  1837. for(dim = chart->dimensions; dim ;dim = dim->next) {
  1838. if(likely(!dim->metric_pattern)) {
  1839. if (unlikely(!dim->rd))
  1840. statsd_add_dim_to_app_chart(app, chart, dim);
  1841. if (unlikely(dim->value_ptr)) {
  1842. debug(D_STATSD, "updating dimension '%s' (%s) of chart '%s' (%s) for app '%s' with value " COLLECTED_NUMBER_FORMAT, dim->name, dim->rd->id, chart->id, chart->st->id, app->name, *dim->value_ptr);
  1843. rrddim_set_by_pointer(chart->st, dim->rd, *dim->value_ptr);
  1844. }
  1845. }
  1846. }
  1847. rrdset_done(chart->st);
  1848. debug(D_STATSD, "completed update of chart '%s' for app '%s'", chart->id, app->name);
  1849. }
  1850. static inline void statsd_update_all_app_charts(void) {
  1851. // debug(D_STATSD, "updating app charts");
  1852. STATSD_APP *app;
  1853. for(app = statsd.apps; app ;app = app->next) {
  1854. // debug(D_STATSD, "updating charts for app '%s'", app->name);
  1855. STATSD_APP_CHART *chart;
  1856. for(chart = app->charts; chart ;chart = chart->next) {
  1857. if(unlikely(chart->dimensions_linked_count)) {
  1858. statsd_update_app_chart(app, chart);
  1859. }
  1860. }
  1861. }
  1862. // debug(D_STATSD, "completed update of app charts");
  1863. }
  1864. const char *statsd_metric_type_string(STATSD_METRIC_TYPE type) {
  1865. switch(type) {
  1866. case STATSD_METRIC_TYPE_COUNTER: return "counter";
  1867. case STATSD_METRIC_TYPE_GAUGE: return "gauge";
  1868. case STATSD_METRIC_TYPE_HISTOGRAM: return "histogram";
  1869. case STATSD_METRIC_TYPE_METER: return "meter";
  1870. case STATSD_METRIC_TYPE_SET: return "set";
  1871. case STATSD_METRIC_TYPE_DICTIONARY: return "dictionary";
  1872. case STATSD_METRIC_TYPE_TIMER: return "timer";
  1873. default: return "unknown";
  1874. }
  1875. }
  1876. static inline void statsd_flush_index_metrics(STATSD_INDEX *index, void (*flush_metric)(STATSD_METRIC *)) {
  1877. STATSD_METRIC *m;
  1878. // find the useful metrics (incremental = each time we are called, we check the new metrics only)
  1879. dfe_start_read(index->dict, m) {
  1880. // since we add new metrics at the beginning
  1881. // check for useful charts, until the point we last checked
  1882. if(unlikely(is_metric_checked(m))) break;
  1883. if(unlikely(!(m->options & STATSD_METRIC_OPTION_CHECKED_IN_APPS))) {
  1884. log_access("NEW STATSD METRIC '%s': '%s'", statsd_metric_type_string(m->type), m->name);
  1885. check_if_metric_is_for_app(index, m);
  1886. m->options |= STATSD_METRIC_OPTION_CHECKED_IN_APPS;
  1887. }
  1888. if(unlikely(!(m->options & STATSD_METRIC_OPTION_PRIVATE_CHART_CHECKED))) {
  1889. if(unlikely(statsd.private_charts >= statsd.max_private_charts_hard)) {
  1890. debug(D_STATSD, "STATSD: metric '%s' will not be charted, because the hard limit of the maximum number of charts has been reached.", m->name);
  1891. info("STATSD: metric '%s' will not be charted, because the hard limit of the maximum number of charts (%zu) has been reached. Increase the number of charts by editing netdata.conf, [statsd] section.", m->name, statsd.max_private_charts);
  1892. m->options &= ~STATSD_METRIC_OPTION_PRIVATE_CHART_ENABLED;
  1893. }
  1894. else {
  1895. if (simple_pattern_matches(statsd.charts_for, m->name)) {
  1896. debug(D_STATSD, "STATSD: metric '%s' will be charted.", m->name);
  1897. m->options |= STATSD_METRIC_OPTION_PRIVATE_CHART_ENABLED;
  1898. } else {
  1899. debug(D_STATSD, "STATSD: metric '%s' will not be charted.", m->name);
  1900. m->options &= ~STATSD_METRIC_OPTION_PRIVATE_CHART_ENABLED;
  1901. }
  1902. }
  1903. m->options |= STATSD_METRIC_OPTION_PRIVATE_CHART_CHECKED;
  1904. }
  1905. // mark it as checked
  1906. m->options |= STATSD_METRIC_OPTION_CHECKED;
  1907. // check if it is used in charts
  1908. if((m->options & (STATSD_METRIC_OPTION_PRIVATE_CHART_ENABLED|STATSD_METRIC_OPTION_USED_IN_APPS)) && !(m->options & STATSD_METRIC_OPTION_USEFUL)) {
  1909. m->options |= STATSD_METRIC_OPTION_USEFUL;
  1910. index->useful++;
  1911. m->next_useful = index->first_useful;
  1912. index->first_useful = m;
  1913. }
  1914. }
  1915. dfe_done(m);
  1916. // flush all the useful metrics
  1917. for(m = index->first_useful; m ; m = m->next_useful) {
  1918. flush_metric(m);
  1919. }
  1920. }
  1921. // --------------------------------------------------------------------------------------
  1922. // statsd main thread
  1923. static int statsd_listen_sockets_setup(void) {
  1924. return listen_sockets_setup(&statsd.sockets);
  1925. }
  1926. static void statsd_main_cleanup(void *data) {
  1927. struct netdata_static_thread *static_thread = (struct netdata_static_thread *)data;
  1928. static_thread->enabled = NETDATA_MAIN_THREAD_EXITING;
  1929. info("cleaning up...");
  1930. if (statsd.collection_threads_status) {
  1931. int i;
  1932. for (i = 0; i < statsd.threads; i++) {
  1933. if(statsd.collection_threads_status[i].status) {
  1934. info("STATSD: stopping data collection thread %d...", i + 1);
  1935. netdata_thread_cancel(statsd.collection_threads_status[i].thread);
  1936. }
  1937. else {
  1938. info("STATSD: data collection thread %d found stopped.", i + 1);
  1939. }
  1940. }
  1941. }
  1942. info("STATSD: closing sockets...");
  1943. listen_sockets_close(&statsd.sockets);
  1944. // destroy the dictionaries
  1945. dictionary_destroy(statsd.gauges.dict);
  1946. dictionary_destroy(statsd.meters.dict);
  1947. dictionary_destroy(statsd.counters.dict);
  1948. dictionary_destroy(statsd.histograms.dict);
  1949. dictionary_destroy(statsd.dictionaries.dict);
  1950. dictionary_destroy(statsd.sets.dict);
  1951. dictionary_destroy(statsd.timers.dict);
  1952. info("STATSD: cleanup completed.");
  1953. static_thread->enabled = NETDATA_MAIN_THREAD_EXITED;
  1954. worker_unregister();
  1955. }
  1956. #define WORKER_STATSD_FLUSH_GAUGES 0
  1957. #define WORKER_STATSD_FLUSH_COUNTERS 1
  1958. #define WORKER_STATSD_FLUSH_METERS 2
  1959. #define WORKER_STATSD_FLUSH_TIMERS 3
  1960. #define WORKER_STATSD_FLUSH_HISTOGRAMS 4
  1961. #define WORKER_STATSD_FLUSH_SETS 5
  1962. #define WORKER_STATSD_FLUSH_DICTIONARIES 6
  1963. #define WORKER_STATSD_FLUSH_STATS 7
  1964. #if WORKER_UTILIZATION_MAX_JOB_TYPES < 8
  1965. #error WORKER_UTILIZATION_MAX_JOB_TYPES has to be at least 8
  1966. #endif
  1967. void *statsd_main(void *ptr) {
  1968. worker_register("STATSDFLUSH");
  1969. worker_register_job_name(WORKER_STATSD_FLUSH_GAUGES, "gauges");
  1970. worker_register_job_name(WORKER_STATSD_FLUSH_COUNTERS, "counters");
  1971. worker_register_job_name(WORKER_STATSD_FLUSH_METERS, "meters");
  1972. worker_register_job_name(WORKER_STATSD_FLUSH_TIMERS, "timers");
  1973. worker_register_job_name(WORKER_STATSD_FLUSH_HISTOGRAMS, "histograms");
  1974. worker_register_job_name(WORKER_STATSD_FLUSH_SETS, "sets");
  1975. worker_register_job_name(WORKER_STATSD_FLUSH_DICTIONARIES, "dictionaries");
  1976. worker_register_job_name(WORKER_STATSD_FLUSH_STATS, "statistics");
  1977. netdata_thread_cleanup_push(statsd_main_cleanup, ptr);
  1978. statsd.gauges.dict = dictionary_create(STATSD_DICTIONARY_OPTIONS);
  1979. statsd.meters.dict = dictionary_create(STATSD_DICTIONARY_OPTIONS);
  1980. statsd.counters.dict = dictionary_create(STATSD_DICTIONARY_OPTIONS);
  1981. statsd.histograms.dict = dictionary_create(STATSD_DICTIONARY_OPTIONS);
  1982. statsd.dictionaries.dict = dictionary_create(STATSD_DICTIONARY_OPTIONS);
  1983. statsd.sets.dict = dictionary_create(STATSD_DICTIONARY_OPTIONS);
  1984. statsd.timers.dict = dictionary_create(STATSD_DICTIONARY_OPTIONS);
  1985. dictionary_register_insert_callback(statsd.gauges.dict, dictionary_metric_insert_callback, &statsd.gauges);
  1986. dictionary_register_insert_callback(statsd.meters.dict, dictionary_metric_insert_callback, &statsd.meters);
  1987. dictionary_register_insert_callback(statsd.counters.dict, dictionary_metric_insert_callback, &statsd.counters);
  1988. dictionary_register_insert_callback(statsd.histograms.dict, dictionary_metric_insert_callback, &statsd.histograms);
  1989. dictionary_register_insert_callback(statsd.dictionaries.dict, dictionary_metric_insert_callback, &statsd.dictionaries);
  1990. dictionary_register_insert_callback(statsd.sets.dict, dictionary_metric_insert_callback, &statsd.sets);
  1991. dictionary_register_insert_callback(statsd.timers.dict, dictionary_metric_insert_callback, &statsd.timers);
  1992. dictionary_register_delete_callback(statsd.gauges.dict, dictionary_metric_delete_callback, &statsd.gauges);
  1993. dictionary_register_delete_callback(statsd.meters.dict, dictionary_metric_delete_callback, &statsd.meters);
  1994. dictionary_register_delete_callback(statsd.counters.dict, dictionary_metric_delete_callback, &statsd.counters);
  1995. dictionary_register_delete_callback(statsd.histograms.dict, dictionary_metric_delete_callback, &statsd.histograms);
  1996. dictionary_register_delete_callback(statsd.dictionaries.dict, dictionary_metric_delete_callback, &statsd.dictionaries);
  1997. dictionary_register_delete_callback(statsd.sets.dict, dictionary_metric_delete_callback, &statsd.sets);
  1998. dictionary_register_delete_callback(statsd.timers.dict, dictionary_metric_delete_callback, &statsd.timers);
  1999. // ----------------------------------------------------------------------------------------------------------------
  2000. // statsd configuration
  2001. statsd.enabled = config_get_boolean(CONFIG_SECTION_PLUGINS, "statsd", statsd.enabled);
  2002. statsd.update_every = default_rrd_update_every;
  2003. statsd.update_every = (int)config_get_number(CONFIG_SECTION_STATSD, "update every (flushInterval)", statsd.update_every);
  2004. if(statsd.update_every < default_rrd_update_every) {
  2005. error("STATSD: minimum flush interval %d given, but the minimum is the update every of netdata. Using %d", statsd.update_every, default_rrd_update_every);
  2006. statsd.update_every = default_rrd_update_every;
  2007. }
  2008. #ifdef HAVE_RECVMMSG
  2009. statsd.recvmmsg_size = (size_t)config_get_number(CONFIG_SECTION_STATSD, "udp messages to process at once", (long long)statsd.recvmmsg_size);
  2010. #endif
  2011. statsd.charts_for = simple_pattern_create(config_get(CONFIG_SECTION_STATSD, "create private charts for metrics matching", "*"), NULL, SIMPLE_PATTERN_EXACT);
  2012. statsd.max_private_charts = (size_t)config_get_number(CONFIG_SECTION_STATSD, "max private charts allowed", (long long)statsd.max_private_charts);
  2013. statsd.max_private_charts_hard = (size_t)config_get_number(CONFIG_SECTION_STATSD, "max private charts hard limit", (long long)statsd.max_private_charts * 5);
  2014. statsd.private_charts_memory_mode = rrd_memory_mode_id(config_get(CONFIG_SECTION_STATSD, "private charts memory mode", rrd_memory_mode_name(default_rrd_memory_mode)));
  2015. statsd.private_charts_rrd_history_entries = (int)config_get_number(CONFIG_SECTION_STATSD, "private charts history", default_rrd_history_entries);
  2016. statsd.decimal_detail = (collected_number)config_get_number(CONFIG_SECTION_STATSD, "decimal detail", (long long int)statsd.decimal_detail);
  2017. statsd.tcp_idle_timeout = (size_t) config_get_number(CONFIG_SECTION_STATSD, "disconnect idle tcp clients after seconds", (long long int)statsd.tcp_idle_timeout);
  2018. statsd.private_charts_hidden = (unsigned int)config_get_boolean(CONFIG_SECTION_STATSD, "private charts hidden", statsd.private_charts_hidden);
  2019. statsd.histogram_percentile = (double)config_get_float(CONFIG_SECTION_STATSD, "histograms and timers percentile (percentThreshold)", statsd.histogram_percentile);
  2020. if(isless(statsd.histogram_percentile, 0) || isgreater(statsd.histogram_percentile, 100)) {
  2021. error("STATSD: invalid histograms and timers percentile %0.5f given", statsd.histogram_percentile);
  2022. statsd.histogram_percentile = 95.0;
  2023. }
  2024. {
  2025. char buffer[314 + 1];
  2026. snprintfz(buffer, 314, "%0.1f%%", statsd.histogram_percentile);
  2027. statsd.histogram_percentile_str = strdupz(buffer);
  2028. }
  2029. statsd.dictionary_max_unique = config_get_number(CONFIG_SECTION_STATSD, "dictionaries max unique dimensions", statsd.dictionary_max_unique);
  2030. if(config_get_boolean(CONFIG_SECTION_STATSD, "add dimension for number of events received", 0)) {
  2031. statsd.gauges.default_options |= STATSD_METRIC_OPTION_CHART_DIMENSION_COUNT;
  2032. statsd.counters.default_options |= STATSD_METRIC_OPTION_CHART_DIMENSION_COUNT;
  2033. statsd.meters.default_options |= STATSD_METRIC_OPTION_CHART_DIMENSION_COUNT;
  2034. statsd.sets.default_options |= STATSD_METRIC_OPTION_CHART_DIMENSION_COUNT;
  2035. statsd.histograms.default_options |= STATSD_METRIC_OPTION_CHART_DIMENSION_COUNT;
  2036. statsd.timers.default_options |= STATSD_METRIC_OPTION_CHART_DIMENSION_COUNT;
  2037. statsd.dictionaries.default_options |= STATSD_METRIC_OPTION_CHART_DIMENSION_COUNT;
  2038. }
  2039. if(config_get_boolean(CONFIG_SECTION_STATSD, "gaps on gauges (deleteGauges)", 0))
  2040. statsd.gauges.default_options |= STATSD_METRIC_OPTION_SHOW_GAPS_WHEN_NOT_COLLECTED;
  2041. if(config_get_boolean(CONFIG_SECTION_STATSD, "gaps on counters (deleteCounters)", 0))
  2042. statsd.counters.default_options |= STATSD_METRIC_OPTION_SHOW_GAPS_WHEN_NOT_COLLECTED;
  2043. if(config_get_boolean(CONFIG_SECTION_STATSD, "gaps on meters (deleteMeters)", 0))
  2044. statsd.meters.default_options |= STATSD_METRIC_OPTION_SHOW_GAPS_WHEN_NOT_COLLECTED;
  2045. if(config_get_boolean(CONFIG_SECTION_STATSD, "gaps on sets (deleteSets)", 0))
  2046. statsd.sets.default_options |= STATSD_METRIC_OPTION_SHOW_GAPS_WHEN_NOT_COLLECTED;
  2047. if(config_get_boolean(CONFIG_SECTION_STATSD, "gaps on histograms (deleteHistograms)", 0))
  2048. statsd.histograms.default_options |= STATSD_METRIC_OPTION_SHOW_GAPS_WHEN_NOT_COLLECTED;
  2049. if(config_get_boolean(CONFIG_SECTION_STATSD, "gaps on timers (deleteTimers)", 0))
  2050. statsd.timers.default_options |= STATSD_METRIC_OPTION_SHOW_GAPS_WHEN_NOT_COLLECTED;
  2051. if(config_get_boolean(CONFIG_SECTION_STATSD, "gaps on dictionaries (deleteDictionaries)", 0))
  2052. statsd.dictionaries.default_options |= STATSD_METRIC_OPTION_SHOW_GAPS_WHEN_NOT_COLLECTED;
  2053. size_t max_sockets = (size_t)config_get_number(CONFIG_SECTION_STATSD, "statsd server max TCP sockets", (long long int)(rlimit_nofile.rlim_cur / 4));
  2054. #ifdef STATSD_MULTITHREADED
  2055. statsd.threads = (int)config_get_number(CONFIG_SECTION_STATSD, "threads", processors);
  2056. if(statsd.threads < 1) {
  2057. error("STATSD: Invalid number of threads %d, using %d", statsd.threads, processors);
  2058. statsd.threads = processors;
  2059. config_set_number(CONFIG_SECTION_STATSD, "collector threads", statsd.threads);
  2060. }
  2061. #else
  2062. statsd.threads = 1;
  2063. #endif
  2064. // read custom application definitions
  2065. statsd_readdir(netdata_configured_user_config_dir, netdata_configured_stock_config_dir, "statsd.d");
  2066. // ----------------------------------------------------------------------------------------------------------------
  2067. // statsd setup
  2068. if(!statsd.enabled) goto cleanup;
  2069. statsd_listen_sockets_setup();
  2070. if(!statsd.sockets.opened) {
  2071. error("STATSD: No statsd sockets to listen to. statsd will be disabled.");
  2072. goto cleanup;
  2073. }
  2074. statsd.collection_threads_status = callocz((size_t)statsd.threads, sizeof(struct collection_thread_status));
  2075. int i;
  2076. for(i = 0; i < statsd.threads ;i++) {
  2077. statsd.collection_threads_status[i].max_sockets = max_sockets / statsd.threads;
  2078. char tag[NETDATA_THREAD_TAG_MAX + 1];
  2079. snprintfz(tag, NETDATA_THREAD_TAG_MAX, "STATSD_COLLECTOR[%d]", i + 1);
  2080. netdata_thread_create(&statsd.collection_threads_status[i].thread, tag, NETDATA_THREAD_OPTION_DEFAULT, statsd_collector_thread, &statsd.collection_threads_status[i]);
  2081. }
  2082. // ----------------------------------------------------------------------------------------------------------------
  2083. // statsd monitoring charts
  2084. RRDSET *st_metrics = rrdset_create_localhost(
  2085. "netdata"
  2086. , "statsd_metrics"
  2087. , NULL
  2088. , "statsd"
  2089. , NULL
  2090. , "Metrics in the netdata statsd database"
  2091. , "metrics"
  2092. , PLUGIN_STATSD_NAME
  2093. , "stats"
  2094. , 132010
  2095. , statsd.update_every
  2096. , RRDSET_TYPE_STACKED
  2097. );
  2098. RRDDIM *rd_metrics_gauge = rrddim_add(st_metrics, "gauges", NULL, 1, 1, RRD_ALGORITHM_ABSOLUTE);
  2099. RRDDIM *rd_metrics_counter = rrddim_add(st_metrics, "counters", NULL, 1, 1, RRD_ALGORITHM_ABSOLUTE);
  2100. RRDDIM *rd_metrics_timer = rrddim_add(st_metrics, "timers", NULL, 1, 1, RRD_ALGORITHM_ABSOLUTE);
  2101. RRDDIM *rd_metrics_meter = rrddim_add(st_metrics, "meters", NULL, 1, 1, RRD_ALGORITHM_ABSOLUTE);
  2102. RRDDIM *rd_metrics_histogram = rrddim_add(st_metrics, "histograms", NULL, 1, 1, RRD_ALGORITHM_ABSOLUTE);
  2103. RRDDIM *rd_metrics_set = rrddim_add(st_metrics, "sets", NULL, 1, 1, RRD_ALGORITHM_ABSOLUTE);
  2104. RRDDIM *rd_metrics_dictionary= rrddim_add(st_metrics, "dictionaries", NULL, 1, 1, RRD_ALGORITHM_ABSOLUTE);
  2105. RRDSET *st_useful_metrics = rrdset_create_localhost(
  2106. "netdata"
  2107. , "statsd_useful_metrics"
  2108. , NULL
  2109. , "statsd"
  2110. , NULL
  2111. , "Useful metrics in the netdata statsd database"
  2112. , "metrics"
  2113. , PLUGIN_STATSD_NAME
  2114. , "stats"
  2115. , 132010
  2116. , statsd.update_every
  2117. , RRDSET_TYPE_STACKED
  2118. );
  2119. RRDDIM *rd_useful_metrics_gauge = rrddim_add(st_useful_metrics, "gauges", NULL, 1, 1, RRD_ALGORITHM_ABSOLUTE);
  2120. RRDDIM *rd_useful_metrics_counter = rrddim_add(st_useful_metrics, "counters", NULL, 1, 1, RRD_ALGORITHM_ABSOLUTE);
  2121. RRDDIM *rd_useful_metrics_timer = rrddim_add(st_useful_metrics, "timers", NULL, 1, 1, RRD_ALGORITHM_ABSOLUTE);
  2122. RRDDIM *rd_useful_metrics_meter = rrddim_add(st_useful_metrics, "meters", NULL, 1, 1, RRD_ALGORITHM_ABSOLUTE);
  2123. RRDDIM *rd_useful_metrics_histogram = rrddim_add(st_useful_metrics, "histograms", NULL, 1, 1, RRD_ALGORITHM_ABSOLUTE);
  2124. RRDDIM *rd_useful_metrics_set = rrddim_add(st_useful_metrics, "sets", NULL, 1, 1, RRD_ALGORITHM_ABSOLUTE);
  2125. RRDDIM *rd_useful_metrics_dictionary= rrddim_add(st_useful_metrics, "dictionaries", NULL, 1, 1, RRD_ALGORITHM_ABSOLUTE);
  2126. RRDSET *st_events = rrdset_create_localhost(
  2127. "netdata"
  2128. , "statsd_events"
  2129. , NULL
  2130. , "statsd"
  2131. , NULL
  2132. , "Events processed by the netdata statsd server"
  2133. , "events/s"
  2134. , PLUGIN_STATSD_NAME
  2135. , "stats"
  2136. , 132011
  2137. , statsd.update_every
  2138. , RRDSET_TYPE_STACKED
  2139. );
  2140. RRDDIM *rd_events_gauge = rrddim_add(st_events, "gauges", NULL, 1, 1, RRD_ALGORITHM_INCREMENTAL);
  2141. RRDDIM *rd_events_counter = rrddim_add(st_events, "counters", NULL, 1, 1, RRD_ALGORITHM_INCREMENTAL);
  2142. RRDDIM *rd_events_timer = rrddim_add(st_events, "timers", NULL, 1, 1, RRD_ALGORITHM_INCREMENTAL);
  2143. RRDDIM *rd_events_meter = rrddim_add(st_events, "meters", NULL, 1, 1, RRD_ALGORITHM_INCREMENTAL);
  2144. RRDDIM *rd_events_histogram = rrddim_add(st_events, "histograms", NULL, 1, 1, RRD_ALGORITHM_INCREMENTAL);
  2145. RRDDIM *rd_events_set = rrddim_add(st_events, "sets", NULL, 1, 1, RRD_ALGORITHM_INCREMENTAL);
  2146. RRDDIM *rd_events_dictionary= rrddim_add(st_events, "dictionaries", NULL, 1, 1, RRD_ALGORITHM_INCREMENTAL);
  2147. RRDDIM *rd_events_unknown = rrddim_add(st_events, "unknown", NULL, 1, 1, RRD_ALGORITHM_INCREMENTAL);
  2148. RRDDIM *rd_events_errors = rrddim_add(st_events, "errors", NULL, 1, 1, RRD_ALGORITHM_INCREMENTAL);
  2149. RRDSET *st_reads = rrdset_create_localhost(
  2150. "netdata"
  2151. , "statsd_reads"
  2152. , NULL
  2153. , "statsd"
  2154. , NULL
  2155. , "Read operations made by the netdata statsd server"
  2156. , "reads/s"
  2157. , PLUGIN_STATSD_NAME
  2158. , "stats"
  2159. , 132012
  2160. , statsd.update_every
  2161. , RRDSET_TYPE_STACKED
  2162. );
  2163. RRDDIM *rd_reads_tcp = rrddim_add(st_reads, "tcp", NULL, 1, 1, RRD_ALGORITHM_INCREMENTAL);
  2164. RRDDIM *rd_reads_udp = rrddim_add(st_reads, "udp", NULL, 1, 1, RRD_ALGORITHM_INCREMENTAL);
  2165. RRDSET *st_bytes = rrdset_create_localhost(
  2166. "netdata"
  2167. , "statsd_bytes"
  2168. , NULL
  2169. , "statsd"
  2170. , NULL
  2171. , "Bytes read by the netdata statsd server"
  2172. , "kilobits/s"
  2173. , PLUGIN_STATSD_NAME
  2174. , "stats"
  2175. , 132013
  2176. , statsd.update_every
  2177. , RRDSET_TYPE_STACKED
  2178. );
  2179. RRDDIM *rd_bytes_tcp = rrddim_add(st_bytes, "tcp", NULL, 8, BITS_IN_A_KILOBIT, RRD_ALGORITHM_INCREMENTAL);
  2180. RRDDIM *rd_bytes_udp = rrddim_add(st_bytes, "udp", NULL, 8, BITS_IN_A_KILOBIT, RRD_ALGORITHM_INCREMENTAL);
  2181. RRDSET *st_packets = rrdset_create_localhost(
  2182. "netdata"
  2183. , "statsd_packets"
  2184. , NULL
  2185. , "statsd"
  2186. , NULL
  2187. , "Network packets processed by the netdata statsd server"
  2188. , "packets/s"
  2189. , PLUGIN_STATSD_NAME
  2190. , "stats"
  2191. , 132014
  2192. , statsd.update_every
  2193. , RRDSET_TYPE_STACKED
  2194. );
  2195. RRDDIM *rd_packets_tcp = rrddim_add(st_packets, "tcp", NULL, 1, 1, RRD_ALGORITHM_INCREMENTAL);
  2196. RRDDIM *rd_packets_udp = rrddim_add(st_packets, "udp", NULL, 1, 1, RRD_ALGORITHM_INCREMENTAL);
  2197. RRDSET *st_tcp_connects = rrdset_create_localhost(
  2198. "netdata"
  2199. , "tcp_connects"
  2200. , NULL
  2201. , "statsd"
  2202. , NULL
  2203. , "statsd server TCP connects and disconnects"
  2204. , "events"
  2205. , PLUGIN_STATSD_NAME
  2206. , "stats"
  2207. , 132015
  2208. , statsd.update_every
  2209. , RRDSET_TYPE_LINE
  2210. );
  2211. RRDDIM *rd_tcp_connects = rrddim_add(st_tcp_connects, "connects", NULL, 1, 1, RRD_ALGORITHM_INCREMENTAL);
  2212. RRDDIM *rd_tcp_disconnects = rrddim_add(st_tcp_connects, "disconnects", NULL, -1, 1, RRD_ALGORITHM_INCREMENTAL);
  2213. RRDSET *st_tcp_connected = rrdset_create_localhost(
  2214. "netdata"
  2215. , "tcp_connected"
  2216. , NULL
  2217. , "statsd"
  2218. , NULL
  2219. , "statsd server TCP connected sockets"
  2220. , "sockets"
  2221. , PLUGIN_STATSD_NAME
  2222. , "stats"
  2223. , 132016
  2224. , statsd.update_every
  2225. , RRDSET_TYPE_LINE
  2226. );
  2227. RRDDIM *rd_tcp_connected = rrddim_add(st_tcp_connected, "connected", NULL, 1, 1, RRD_ALGORITHM_ABSOLUTE);
  2228. RRDSET *st_pcharts = rrdset_create_localhost(
  2229. "netdata"
  2230. , "private_charts"
  2231. , NULL
  2232. , "statsd"
  2233. , NULL
  2234. , "Private metric charts created by the netdata statsd server"
  2235. , "charts"
  2236. , PLUGIN_STATSD_NAME
  2237. , "stats"
  2238. , 132020
  2239. , statsd.update_every
  2240. , RRDSET_TYPE_AREA
  2241. );
  2242. RRDDIM *rd_pcharts = rrddim_add(st_pcharts, "charts", NULL, 1, 1, RRD_ALGORITHM_ABSOLUTE);
  2243. // ----------------------------------------------------------------------------------------------------------------
  2244. // statsd thread to turn metrics into charts
  2245. usec_t step = statsd.update_every * USEC_PER_SEC;
  2246. heartbeat_t hb;
  2247. heartbeat_init(&hb);
  2248. while(!netdata_exit) {
  2249. worker_is_idle();
  2250. usec_t hb_dt = heartbeat_next(&hb, step);
  2251. worker_is_busy(WORKER_STATSD_FLUSH_GAUGES);
  2252. statsd_flush_index_metrics(&statsd.gauges, statsd_flush_gauge);
  2253. worker_is_busy(WORKER_STATSD_FLUSH_COUNTERS);
  2254. statsd_flush_index_metrics(&statsd.counters, statsd_flush_counter);
  2255. worker_is_busy(WORKER_STATSD_FLUSH_METERS);
  2256. statsd_flush_index_metrics(&statsd.meters, statsd_flush_meter);
  2257. worker_is_busy(WORKER_STATSD_FLUSH_TIMERS);
  2258. statsd_flush_index_metrics(&statsd.timers, statsd_flush_timer);
  2259. worker_is_busy(WORKER_STATSD_FLUSH_HISTOGRAMS);
  2260. statsd_flush_index_metrics(&statsd.histograms, statsd_flush_histogram);
  2261. worker_is_busy(WORKER_STATSD_FLUSH_SETS);
  2262. statsd_flush_index_metrics(&statsd.sets, statsd_flush_set);
  2263. worker_is_busy(WORKER_STATSD_FLUSH_DICTIONARIES);
  2264. statsd_flush_index_metrics(&statsd.dictionaries,statsd_flush_dictionary);
  2265. worker_is_busy(WORKER_STATSD_FLUSH_STATS);
  2266. statsd_update_all_app_charts();
  2267. if(unlikely(netdata_exit))
  2268. break;
  2269. if(likely(hb_dt)) {
  2270. rrdset_next(st_metrics);
  2271. rrdset_next(st_useful_metrics);
  2272. rrdset_next(st_events);
  2273. rrdset_next(st_reads);
  2274. rrdset_next(st_bytes);
  2275. rrdset_next(st_packets);
  2276. rrdset_next(st_tcp_connects);
  2277. rrdset_next(st_tcp_connected);
  2278. rrdset_next(st_pcharts);
  2279. }
  2280. rrddim_set_by_pointer(st_metrics, rd_metrics_gauge, (collected_number)statsd.gauges.metrics);
  2281. rrddim_set_by_pointer(st_metrics, rd_metrics_counter, (collected_number)statsd.counters.metrics);
  2282. rrddim_set_by_pointer(st_metrics, rd_metrics_timer, (collected_number)statsd.timers.metrics);
  2283. rrddim_set_by_pointer(st_metrics, rd_metrics_meter, (collected_number)statsd.meters.metrics);
  2284. rrddim_set_by_pointer(st_metrics, rd_metrics_histogram, (collected_number)statsd.histograms.metrics);
  2285. rrddim_set_by_pointer(st_metrics, rd_metrics_set, (collected_number)statsd.sets.metrics);
  2286. rrddim_set_by_pointer(st_metrics, rd_metrics_dictionary, (collected_number)statsd.dictionaries.metrics);
  2287. rrdset_done(st_metrics);
  2288. rrddim_set_by_pointer(st_useful_metrics, rd_useful_metrics_gauge, (collected_number)statsd.gauges.useful);
  2289. rrddim_set_by_pointer(st_useful_metrics, rd_useful_metrics_counter, (collected_number)statsd.counters.useful);
  2290. rrddim_set_by_pointer(st_useful_metrics, rd_useful_metrics_timer, (collected_number)statsd.timers.useful);
  2291. rrddim_set_by_pointer(st_useful_metrics, rd_useful_metrics_meter, (collected_number)statsd.meters.useful);
  2292. rrddim_set_by_pointer(st_useful_metrics, rd_useful_metrics_histogram, (collected_number)statsd.histograms.useful);
  2293. rrddim_set_by_pointer(st_useful_metrics, rd_useful_metrics_set, (collected_number)statsd.sets.useful);
  2294. rrddim_set_by_pointer(st_useful_metrics, rd_useful_metrics_dictionary, (collected_number)statsd.dictionaries.useful);
  2295. rrdset_done(st_useful_metrics);
  2296. rrddim_set_by_pointer(st_events, rd_events_gauge, (collected_number)statsd.gauges.events);
  2297. rrddim_set_by_pointer(st_events, rd_events_counter, (collected_number)statsd.counters.events);
  2298. rrddim_set_by_pointer(st_events, rd_events_timer, (collected_number)statsd.timers.events);
  2299. rrddim_set_by_pointer(st_events, rd_events_meter, (collected_number)statsd.meters.events);
  2300. rrddim_set_by_pointer(st_events, rd_events_histogram, (collected_number)statsd.histograms.events);
  2301. rrddim_set_by_pointer(st_events, rd_events_set, (collected_number)statsd.sets.events);
  2302. rrddim_set_by_pointer(st_events, rd_events_dictionary, (collected_number)statsd.dictionaries.events);
  2303. rrddim_set_by_pointer(st_events, rd_events_unknown, (collected_number)statsd.unknown_types);
  2304. rrddim_set_by_pointer(st_events, rd_events_errors, (collected_number)statsd.socket_errors);
  2305. rrdset_done(st_events);
  2306. rrddim_set_by_pointer(st_reads, rd_reads_tcp, (collected_number)statsd.tcp_socket_reads);
  2307. rrddim_set_by_pointer(st_reads, rd_reads_udp, (collected_number)statsd.udp_socket_reads);
  2308. rrdset_done(st_reads);
  2309. rrddim_set_by_pointer(st_bytes, rd_bytes_tcp, (collected_number)statsd.tcp_bytes_read);
  2310. rrddim_set_by_pointer(st_bytes, rd_bytes_udp, (collected_number)statsd.udp_bytes_read);
  2311. rrdset_done(st_bytes);
  2312. rrddim_set_by_pointer(st_packets, rd_packets_tcp, (collected_number)statsd.tcp_packets_received);
  2313. rrddim_set_by_pointer(st_packets, rd_packets_udp, (collected_number)statsd.udp_packets_received);
  2314. rrdset_done(st_packets);
  2315. rrddim_set_by_pointer(st_tcp_connects, rd_tcp_connects, (collected_number)statsd.tcp_socket_connects);
  2316. rrddim_set_by_pointer(st_tcp_connects, rd_tcp_disconnects, (collected_number)statsd.tcp_socket_disconnects);
  2317. rrdset_done(st_tcp_connects);
  2318. rrddim_set_by_pointer(st_tcp_connected, rd_tcp_connected, (collected_number)statsd.tcp_socket_connected);
  2319. rrdset_done(st_tcp_connected);
  2320. rrddim_set_by_pointer(st_pcharts, rd_pcharts, (collected_number)statsd.private_charts);
  2321. rrdset_done(st_pcharts);
  2322. }
  2323. cleanup: ; // added semi-colon to prevent older gcc error: label at end of compound statement
  2324. netdata_thread_cleanup_pop(1);
  2325. return NULL;
  2326. }