proc_net_dev.c 61 KB

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  1. // SPDX-License-Identifier: GPL-3.0-or-later
  2. #include "plugin_proc.h"
  3. #define PLUGIN_PROC_MODULE_NETDEV_NAME "/proc/net/dev"
  4. #define CONFIG_SECTION_PLUGIN_PROC_NETDEV "plugin:" PLUGIN_PROC_CONFIG_NAME ":" PLUGIN_PROC_MODULE_NETDEV_NAME
  5. #define STATE_LENGTH_MAX 32
  6. #define READ_RETRY_PERIOD 60 // seconds
  7. enum {
  8. NETDEV_DUPLEX_UNKNOWN,
  9. NETDEV_DUPLEX_HALF,
  10. NETDEV_DUPLEX_FULL
  11. };
  12. enum {
  13. NETDEV_OPERSTATE_UNKNOWN,
  14. NETDEV_OPERSTATE_NOTPRESENT,
  15. NETDEV_OPERSTATE_DOWN,
  16. NETDEV_OPERSTATE_LOWERLAYERDOWN,
  17. NETDEV_OPERSTATE_TESTING,
  18. NETDEV_OPERSTATE_DORMANT,
  19. NETDEV_OPERSTATE_UP
  20. };
  21. static inline int get_operstate(char *operstate)
  22. {
  23. // As defined in https://www.kernel.org/doc/Documentation/ABI/testing/sysfs-class-net
  24. if (!strcmp(operstate, "up"))
  25. return NETDEV_OPERSTATE_UP;
  26. if (!strcmp(operstate, "down"))
  27. return NETDEV_OPERSTATE_DOWN;
  28. if (!strcmp(operstate, "notpresent"))
  29. return NETDEV_OPERSTATE_NOTPRESENT;
  30. if (!strcmp(operstate, "lowerlayerdown"))
  31. return NETDEV_OPERSTATE_LOWERLAYERDOWN;
  32. if (!strcmp(operstate, "testing"))
  33. return NETDEV_OPERSTATE_TESTING;
  34. if (!strcmp(operstate, "dormant"))
  35. return NETDEV_OPERSTATE_DORMANT;
  36. return NETDEV_OPERSTATE_UNKNOWN;
  37. }
  38. // ----------------------------------------------------------------------------
  39. // netdev list
  40. static struct netdev {
  41. char *name;
  42. uint32_t hash;
  43. size_t len;
  44. // flags
  45. int virtual;
  46. int configured;
  47. int enabled;
  48. int updated;
  49. int carrier_file_exists;
  50. time_t carrier_file_lost_time;
  51. int duplex_file_exists;
  52. time_t duplex_file_lost_time;
  53. int speed_file_exists;
  54. time_t speed_file_lost_time;
  55. int do_bandwidth;
  56. int do_packets;
  57. int do_errors;
  58. int do_drops;
  59. int do_fifo;
  60. int do_compressed;
  61. int do_events;
  62. int do_speed;
  63. int do_duplex;
  64. int do_operstate;
  65. int do_carrier;
  66. int do_mtu;
  67. const char *chart_type_net_bytes;
  68. const char *chart_type_net_packets;
  69. const char *chart_type_net_errors;
  70. const char *chart_type_net_fifo;
  71. const char *chart_type_net_events;
  72. const char *chart_type_net_drops;
  73. const char *chart_type_net_compressed;
  74. const char *chart_type_net_speed;
  75. const char *chart_type_net_duplex;
  76. const char *chart_type_net_operstate;
  77. const char *chart_type_net_carrier;
  78. const char *chart_type_net_mtu;
  79. const char *chart_id_net_bytes;
  80. const char *chart_id_net_packets;
  81. const char *chart_id_net_errors;
  82. const char *chart_id_net_fifo;
  83. const char *chart_id_net_events;
  84. const char *chart_id_net_drops;
  85. const char *chart_id_net_compressed;
  86. const char *chart_id_net_speed;
  87. const char *chart_id_net_duplex;
  88. const char *chart_id_net_operstate;
  89. const char *chart_id_net_carrier;
  90. const char *chart_id_net_mtu;
  91. const char *chart_ctx_net_bytes;
  92. const char *chart_ctx_net_packets;
  93. const char *chart_ctx_net_errors;
  94. const char *chart_ctx_net_fifo;
  95. const char *chart_ctx_net_events;
  96. const char *chart_ctx_net_drops;
  97. const char *chart_ctx_net_compressed;
  98. const char *chart_ctx_net_speed;
  99. const char *chart_ctx_net_duplex;
  100. const char *chart_ctx_net_operstate;
  101. const char *chart_ctx_net_carrier;
  102. const char *chart_ctx_net_mtu;
  103. const char *chart_family;
  104. DICTIONARY *chart_labels;
  105. int flipped;
  106. unsigned long priority;
  107. // data collected
  108. kernel_uint_t rbytes;
  109. kernel_uint_t rpackets;
  110. kernel_uint_t rerrors;
  111. kernel_uint_t rdrops;
  112. kernel_uint_t rfifo;
  113. kernel_uint_t rframe;
  114. kernel_uint_t rcompressed;
  115. kernel_uint_t rmulticast;
  116. kernel_uint_t tbytes;
  117. kernel_uint_t tpackets;
  118. kernel_uint_t terrors;
  119. kernel_uint_t tdrops;
  120. kernel_uint_t tfifo;
  121. kernel_uint_t tcollisions;
  122. kernel_uint_t tcarrier;
  123. kernel_uint_t tcompressed;
  124. kernel_uint_t speed;
  125. kernel_uint_t duplex;
  126. kernel_uint_t operstate;
  127. unsigned long long carrier;
  128. unsigned long long mtu;
  129. // charts
  130. RRDSET *st_bandwidth;
  131. RRDSET *st_packets;
  132. RRDSET *st_errors;
  133. RRDSET *st_drops;
  134. RRDSET *st_fifo;
  135. RRDSET *st_compressed;
  136. RRDSET *st_events;
  137. RRDSET *st_speed;
  138. RRDSET *st_duplex;
  139. RRDSET *st_operstate;
  140. RRDSET *st_carrier;
  141. RRDSET *st_mtu;
  142. // dimensions
  143. RRDDIM *rd_rbytes;
  144. RRDDIM *rd_rpackets;
  145. RRDDIM *rd_rerrors;
  146. RRDDIM *rd_rdrops;
  147. RRDDIM *rd_rfifo;
  148. RRDDIM *rd_rframe;
  149. RRDDIM *rd_rcompressed;
  150. RRDDIM *rd_rmulticast;
  151. RRDDIM *rd_tbytes;
  152. RRDDIM *rd_tpackets;
  153. RRDDIM *rd_terrors;
  154. RRDDIM *rd_tdrops;
  155. RRDDIM *rd_tfifo;
  156. RRDDIM *rd_tcollisions;
  157. RRDDIM *rd_tcarrier;
  158. RRDDIM *rd_tcompressed;
  159. RRDDIM *rd_speed;
  160. RRDDIM *rd_duplex_full;
  161. RRDDIM *rd_duplex_half;
  162. RRDDIM *rd_duplex_unknown;
  163. RRDDIM *rd_operstate_unknown;
  164. RRDDIM *rd_operstate_notpresent;
  165. RRDDIM *rd_operstate_down;
  166. RRDDIM *rd_operstate_lowerlayerdown;
  167. RRDDIM *rd_operstate_testing;
  168. RRDDIM *rd_operstate_dormant;
  169. RRDDIM *rd_operstate_up;
  170. RRDDIM *rd_carrier_up;
  171. RRDDIM *rd_carrier_down;
  172. RRDDIM *rd_mtu;
  173. char *filename_speed;
  174. const RRDSETVAR_ACQUIRED *chart_var_speed;
  175. char *filename_duplex;
  176. char *filename_operstate;
  177. char *filename_carrier;
  178. char *filename_mtu;
  179. struct netdev *next;
  180. } *netdev_root = NULL, *netdev_last_used = NULL;
  181. static size_t netdev_added = 0, netdev_found = 0;
  182. // ----------------------------------------------------------------------------
  183. static void netdev_charts_release(struct netdev *d) {
  184. if(d->st_bandwidth) rrdset_is_obsolete(d->st_bandwidth);
  185. if(d->st_packets) rrdset_is_obsolete(d->st_packets);
  186. if(d->st_errors) rrdset_is_obsolete(d->st_errors);
  187. if(d->st_drops) rrdset_is_obsolete(d->st_drops);
  188. if(d->st_fifo) rrdset_is_obsolete(d->st_fifo);
  189. if(d->st_compressed) rrdset_is_obsolete(d->st_compressed);
  190. if(d->st_events) rrdset_is_obsolete(d->st_events);
  191. if(d->st_speed) rrdset_is_obsolete(d->st_speed);
  192. if(d->st_duplex) rrdset_is_obsolete(d->st_duplex);
  193. if(d->st_operstate) rrdset_is_obsolete(d->st_operstate);
  194. if(d->st_carrier) rrdset_is_obsolete(d->st_carrier);
  195. if(d->st_mtu) rrdset_is_obsolete(d->st_mtu);
  196. d->st_bandwidth = NULL;
  197. d->st_compressed = NULL;
  198. d->st_drops = NULL;
  199. d->st_errors = NULL;
  200. d->st_events = NULL;
  201. d->st_fifo = NULL;
  202. d->st_packets = NULL;
  203. d->st_speed = NULL;
  204. d->st_duplex = NULL;
  205. d->st_operstate = NULL;
  206. d->st_carrier = NULL;
  207. d->st_mtu = NULL;
  208. d->rd_rbytes = NULL;
  209. d->rd_rpackets = NULL;
  210. d->rd_rerrors = NULL;
  211. d->rd_rdrops = NULL;
  212. d->rd_rfifo = NULL;
  213. d->rd_rframe = NULL;
  214. d->rd_rcompressed = NULL;
  215. d->rd_rmulticast = NULL;
  216. d->rd_tbytes = NULL;
  217. d->rd_tpackets = NULL;
  218. d->rd_terrors = NULL;
  219. d->rd_tdrops = NULL;
  220. d->rd_tfifo = NULL;
  221. d->rd_tcollisions = NULL;
  222. d->rd_tcarrier = NULL;
  223. d->rd_tcompressed = NULL;
  224. d->rd_speed = NULL;
  225. d->rd_duplex_full = NULL;
  226. d->rd_duplex_half = NULL;
  227. d->rd_duplex_unknown = NULL;
  228. d->rd_carrier_up = NULL;
  229. d->rd_carrier_down = NULL;
  230. d->rd_mtu = NULL;
  231. d->rd_operstate_unknown = NULL;
  232. d->rd_operstate_notpresent = NULL;
  233. d->rd_operstate_down = NULL;
  234. d->rd_operstate_lowerlayerdown = NULL;
  235. d->rd_operstate_testing = NULL;
  236. d->rd_operstate_dormant = NULL;
  237. d->rd_operstate_up = NULL;
  238. d->chart_var_speed = NULL;
  239. }
  240. static void netdev_free_chart_strings(struct netdev *d) {
  241. freez((void *)d->chart_type_net_bytes);
  242. freez((void *)d->chart_type_net_compressed);
  243. freez((void *)d->chart_type_net_drops);
  244. freez((void *)d->chart_type_net_errors);
  245. freez((void *)d->chart_type_net_events);
  246. freez((void *)d->chart_type_net_fifo);
  247. freez((void *)d->chart_type_net_packets);
  248. freez((void *)d->chart_type_net_speed);
  249. freez((void *)d->chart_type_net_duplex);
  250. freez((void *)d->chart_type_net_operstate);
  251. freez((void *)d->chart_type_net_carrier);
  252. freez((void *)d->chart_type_net_mtu);
  253. freez((void *)d->chart_id_net_bytes);
  254. freez((void *)d->chart_id_net_compressed);
  255. freez((void *)d->chart_id_net_drops);
  256. freez((void *)d->chart_id_net_errors);
  257. freez((void *)d->chart_id_net_events);
  258. freez((void *)d->chart_id_net_fifo);
  259. freez((void *)d->chart_id_net_packets);
  260. freez((void *)d->chart_id_net_speed);
  261. freez((void *)d->chart_id_net_duplex);
  262. freez((void *)d->chart_id_net_operstate);
  263. freez((void *)d->chart_id_net_carrier);
  264. freez((void *)d->chart_id_net_mtu);
  265. freez((void *)d->chart_ctx_net_bytes);
  266. freez((void *)d->chart_ctx_net_compressed);
  267. freez((void *)d->chart_ctx_net_drops);
  268. freez((void *)d->chart_ctx_net_errors);
  269. freez((void *)d->chart_ctx_net_events);
  270. freez((void *)d->chart_ctx_net_fifo);
  271. freez((void *)d->chart_ctx_net_packets);
  272. freez((void *)d->chart_ctx_net_speed);
  273. freez((void *)d->chart_ctx_net_duplex);
  274. freez((void *)d->chart_ctx_net_operstate);
  275. freez((void *)d->chart_ctx_net_carrier);
  276. freez((void *)d->chart_ctx_net_mtu);
  277. freez((void *)d->chart_family);
  278. }
  279. static void netdev_free(struct netdev *d) {
  280. netdev_charts_release(d);
  281. netdev_free_chart_strings(d);
  282. rrdlabels_destroy(d->chart_labels);
  283. freez((void *)d->name);
  284. freez((void *)d->filename_speed);
  285. freez((void *)d->filename_duplex);
  286. freez((void *)d->filename_operstate);
  287. freez((void *)d->filename_carrier);
  288. freez((void *)d->filename_mtu);
  289. freez((void *)d);
  290. netdev_added--;
  291. }
  292. // ----------------------------------------------------------------------------
  293. // netdev renames
  294. static struct netdev_rename {
  295. const char *host_device;
  296. uint32_t hash;
  297. const char *container_device;
  298. const char *container_name;
  299. const char *ctx_prefix;
  300. DICTIONARY *chart_labels;
  301. int processed;
  302. struct netdev_rename *next;
  303. } *netdev_rename_root = NULL;
  304. static int netdev_pending_renames = 0;
  305. static netdata_mutex_t netdev_rename_mutex = NETDATA_MUTEX_INITIALIZER;
  306. static struct netdev_rename *netdev_rename_find(const char *host_device, uint32_t hash) {
  307. struct netdev_rename *r;
  308. for(r = netdev_rename_root; r ; r = r->next)
  309. if(r->hash == hash && !strcmp(host_device, r->host_device))
  310. return r;
  311. return NULL;
  312. }
  313. // other threads can call this function to register a rename to a netdev
  314. void netdev_rename_device_add(
  315. const char *host_device,
  316. const char *container_device,
  317. const char *container_name,
  318. DICTIONARY *labels,
  319. const char *ctx_prefix)
  320. {
  321. netdata_mutex_lock(&netdev_rename_mutex);
  322. uint32_t hash = simple_hash(host_device);
  323. struct netdev_rename *r = netdev_rename_find(host_device, hash);
  324. if(!r) {
  325. r = callocz(1, sizeof(struct netdev_rename));
  326. r->host_device = strdupz(host_device);
  327. r->container_device = strdupz(container_device);
  328. r->container_name = strdupz(container_name);
  329. r->ctx_prefix = strdupz(ctx_prefix);
  330. r->chart_labels = rrdlabels_create();
  331. rrdlabels_migrate_to_these(r->chart_labels, labels);
  332. r->hash = hash;
  333. r->next = netdev_rename_root;
  334. r->processed = 0;
  335. netdev_rename_root = r;
  336. netdev_pending_renames++;
  337. collector_info("CGROUP: registered network interface rename for '%s' as '%s' under '%s'", r->host_device, r->container_device, r->container_name);
  338. }
  339. else {
  340. if(strcmp(r->container_device, container_device) != 0 || strcmp(r->container_name, container_name) != 0) {
  341. freez((void *) r->container_device);
  342. freez((void *) r->container_name);
  343. r->container_device = strdupz(container_device);
  344. r->container_name = strdupz(container_name);
  345. rrdlabels_migrate_to_these(r->chart_labels, labels);
  346. r->processed = 0;
  347. netdev_pending_renames++;
  348. collector_info("CGROUP: altered network interface rename for '%s' as '%s' under '%s'", r->host_device, r->container_device, r->container_name);
  349. }
  350. }
  351. netdata_mutex_unlock(&netdev_rename_mutex);
  352. }
  353. // other threads can call this function to delete a rename to a netdev
  354. void netdev_rename_device_del(const char *host_device) {
  355. netdata_mutex_lock(&netdev_rename_mutex);
  356. struct netdev_rename *r, *last = NULL;
  357. uint32_t hash = simple_hash(host_device);
  358. for(r = netdev_rename_root; r ; last = r, r = r->next) {
  359. if (r->hash == hash && !strcmp(host_device, r->host_device)) {
  360. if (netdev_rename_root == r)
  361. netdev_rename_root = r->next;
  362. else if (last)
  363. last->next = r->next;
  364. if(!r->processed)
  365. netdev_pending_renames--;
  366. collector_info("CGROUP: unregistered network interface rename for '%s' as '%s' under '%s'", r->host_device, r->container_device, r->container_name);
  367. freez((void *) r->host_device);
  368. freez((void *) r->container_name);
  369. freez((void *) r->container_device);
  370. freez((void *) r->ctx_prefix);
  371. rrdlabels_destroy(r->chart_labels);
  372. freez((void *) r);
  373. break;
  374. }
  375. }
  376. netdata_mutex_unlock(&netdev_rename_mutex);
  377. }
  378. static inline void netdev_rename_cgroup(struct netdev *d, struct netdev_rename *r) {
  379. collector_info("CGROUP: renaming network interface '%s' as '%s' under '%s'", r->host_device, r->container_device, r->container_name);
  380. netdev_charts_release(d);
  381. netdev_free_chart_strings(d);
  382. char buffer[RRD_ID_LENGTH_MAX + 1];
  383. snprintfz(buffer, RRD_ID_LENGTH_MAX, "cgroup_%s", r->container_name);
  384. d->chart_type_net_bytes = strdupz(buffer);
  385. d->chart_type_net_compressed = strdupz(buffer);
  386. d->chart_type_net_drops = strdupz(buffer);
  387. d->chart_type_net_errors = strdupz(buffer);
  388. d->chart_type_net_events = strdupz(buffer);
  389. d->chart_type_net_fifo = strdupz(buffer);
  390. d->chart_type_net_packets = strdupz(buffer);
  391. d->chart_type_net_speed = strdupz(buffer);
  392. d->chart_type_net_duplex = strdupz(buffer);
  393. d->chart_type_net_operstate = strdupz(buffer);
  394. d->chart_type_net_carrier = strdupz(buffer);
  395. d->chart_type_net_mtu = strdupz(buffer);
  396. snprintfz(buffer, RRD_ID_LENGTH_MAX, "net_%s", r->container_device);
  397. d->chart_id_net_bytes = strdupz(buffer);
  398. snprintfz(buffer, RRD_ID_LENGTH_MAX, "net_compressed_%s", r->container_device);
  399. d->chart_id_net_compressed = strdupz(buffer);
  400. snprintfz(buffer, RRD_ID_LENGTH_MAX, "net_drops_%s", r->container_device);
  401. d->chart_id_net_drops = strdupz(buffer);
  402. snprintfz(buffer, RRD_ID_LENGTH_MAX, "net_errors_%s", r->container_device);
  403. d->chart_id_net_errors = strdupz(buffer);
  404. snprintfz(buffer, RRD_ID_LENGTH_MAX, "net_events_%s", r->container_device);
  405. d->chart_id_net_events = strdupz(buffer);
  406. snprintfz(buffer, RRD_ID_LENGTH_MAX, "net_fifo_%s", r->container_device);
  407. d->chart_id_net_fifo = strdupz(buffer);
  408. snprintfz(buffer, RRD_ID_LENGTH_MAX, "net_packets_%s", r->container_device);
  409. d->chart_id_net_packets = strdupz(buffer);
  410. snprintfz(buffer, RRD_ID_LENGTH_MAX, "net_speed_%s", r->container_device);
  411. d->chart_id_net_speed = strdupz(buffer);
  412. snprintfz(buffer, RRD_ID_LENGTH_MAX, "net_duplex_%s", r->container_device);
  413. d->chart_id_net_duplex = strdupz(buffer);
  414. snprintfz(buffer, RRD_ID_LENGTH_MAX, "net_operstate_%s", r->container_device);
  415. d->chart_id_net_operstate = strdupz(buffer);
  416. snprintfz(buffer, RRD_ID_LENGTH_MAX, "net_carrier_%s", r->container_device);
  417. d->chart_id_net_carrier = strdupz(buffer);
  418. snprintfz(buffer, RRD_ID_LENGTH_MAX, "net_mtu_%s", r->container_device);
  419. d->chart_id_net_mtu = strdupz(buffer);
  420. snprintfz(buffer, RRD_ID_LENGTH_MAX, "%scgroup.net_net", r->ctx_prefix);
  421. d->chart_ctx_net_bytes = strdupz(buffer);
  422. snprintfz(buffer, RRD_ID_LENGTH_MAX, "%scgroup.net_compressed", r->ctx_prefix);
  423. d->chart_ctx_net_compressed = strdupz(buffer);
  424. snprintfz(buffer, RRD_ID_LENGTH_MAX, "%scgroup.net_drops", r->ctx_prefix);
  425. d->chart_ctx_net_drops = strdupz(buffer);
  426. snprintfz(buffer, RRD_ID_LENGTH_MAX, "%scgroup.net_errors", r->ctx_prefix);
  427. d->chart_ctx_net_errors = strdupz(buffer);
  428. snprintfz(buffer, RRD_ID_LENGTH_MAX, "%scgroup.net_events", r->ctx_prefix);
  429. d->chart_ctx_net_events = strdupz(buffer);
  430. snprintfz(buffer, RRD_ID_LENGTH_MAX, "%scgroup.net_fifo", r->ctx_prefix);
  431. d->chart_ctx_net_fifo = strdupz(buffer);
  432. snprintfz(buffer, RRD_ID_LENGTH_MAX, "%scgroup.net_packets", r->ctx_prefix);
  433. d->chart_ctx_net_packets = strdupz(buffer);
  434. snprintfz(buffer, RRD_ID_LENGTH_MAX, "%scgroup.net_speed", r->ctx_prefix);
  435. d->chart_ctx_net_speed = strdupz(buffer);
  436. snprintfz(buffer, RRD_ID_LENGTH_MAX, "%scgroup.net_duplex", r->ctx_prefix);
  437. d->chart_ctx_net_duplex = strdupz(buffer);
  438. snprintfz(buffer, RRD_ID_LENGTH_MAX, "%scgroup.net_operstate", r->ctx_prefix);
  439. d->chart_ctx_net_operstate = strdupz(buffer);
  440. snprintfz(buffer, RRD_ID_LENGTH_MAX, "%scgroup.net_carrier", r->ctx_prefix);
  441. d->chart_ctx_net_carrier = strdupz(buffer);
  442. snprintfz(buffer, RRD_ID_LENGTH_MAX, "%scgroup.net_mtu", r->ctx_prefix);
  443. d->chart_ctx_net_mtu = strdupz(buffer);
  444. d->chart_family = strdupz("net");
  445. rrdlabels_copy(d->chart_labels, r->chart_labels);
  446. d->priority = NETDATA_CHART_PRIO_CGROUP_NET_IFACE;
  447. d->flipped = 1;
  448. }
  449. static inline void netdev_rename(struct netdev *d) {
  450. struct netdev_rename *r = netdev_rename_find(d->name, d->hash);
  451. if(unlikely(r && !r->processed)) {
  452. netdev_rename_cgroup(d, r);
  453. r->processed = 1;
  454. netdev_pending_renames--;
  455. }
  456. }
  457. static inline void netdev_rename_lock(struct netdev *d) {
  458. netdata_mutex_lock(&netdev_rename_mutex);
  459. netdev_rename(d);
  460. netdata_mutex_unlock(&netdev_rename_mutex);
  461. }
  462. static inline void netdev_rename_all_lock(void) {
  463. netdata_mutex_lock(&netdev_rename_mutex);
  464. struct netdev *d;
  465. for(d = netdev_root; d ; d = d->next)
  466. netdev_rename(d);
  467. netdev_pending_renames = 0;
  468. netdata_mutex_unlock(&netdev_rename_mutex);
  469. }
  470. // ----------------------------------------------------------------------------
  471. // netdev data collection
  472. static void netdev_cleanup() {
  473. if(likely(netdev_found == netdev_added)) return;
  474. netdev_added = 0;
  475. struct netdev *d = netdev_root, *last = NULL;
  476. while(d) {
  477. if(unlikely(!d->updated)) {
  478. // collector_info("Removing network device '%s', linked after '%s'", d->name, last?last->name:"ROOT");
  479. if(netdev_last_used == d)
  480. netdev_last_used = last;
  481. struct netdev *t = d;
  482. if(d == netdev_root || !last)
  483. netdev_root = d = d->next;
  484. else
  485. last->next = d = d->next;
  486. t->next = NULL;
  487. netdev_free(t);
  488. }
  489. else {
  490. netdev_added++;
  491. last = d;
  492. d->updated = 0;
  493. d = d->next;
  494. }
  495. }
  496. }
  497. static struct netdev *get_netdev(const char *name) {
  498. struct netdev *d;
  499. uint32_t hash = simple_hash(name);
  500. // search it, from the last position to the end
  501. for(d = netdev_last_used ; d ; d = d->next) {
  502. if(unlikely(hash == d->hash && !strcmp(name, d->name))) {
  503. netdev_last_used = d->next;
  504. return d;
  505. }
  506. }
  507. // search it from the beginning to the last position we used
  508. for(d = netdev_root ; d != netdev_last_used ; d = d->next) {
  509. if(unlikely(hash == d->hash && !strcmp(name, d->name))) {
  510. netdev_last_used = d->next;
  511. return d;
  512. }
  513. }
  514. // create a new one
  515. d = callocz(1, sizeof(struct netdev));
  516. d->name = strdupz(name);
  517. d->hash = simple_hash(d->name);
  518. d->len = strlen(d->name);
  519. d->chart_labels = rrdlabels_create();
  520. d->chart_type_net_bytes = strdupz("net");
  521. d->chart_type_net_compressed = strdupz("net_compressed");
  522. d->chart_type_net_drops = strdupz("net_drops");
  523. d->chart_type_net_errors = strdupz("net_errors");
  524. d->chart_type_net_events = strdupz("net_events");
  525. d->chart_type_net_fifo = strdupz("net_fifo");
  526. d->chart_type_net_packets = strdupz("net_packets");
  527. d->chart_type_net_speed = strdupz("net_speed");
  528. d->chart_type_net_duplex = strdupz("net_duplex");
  529. d->chart_type_net_operstate = strdupz("net_operstate");
  530. d->chart_type_net_carrier = strdupz("net_carrier");
  531. d->chart_type_net_mtu = strdupz("net_mtu");
  532. d->chart_id_net_bytes = strdupz(d->name);
  533. d->chart_id_net_compressed = strdupz(d->name);
  534. d->chart_id_net_drops = strdupz(d->name);
  535. d->chart_id_net_errors = strdupz(d->name);
  536. d->chart_id_net_events = strdupz(d->name);
  537. d->chart_id_net_fifo = strdupz(d->name);
  538. d->chart_id_net_packets = strdupz(d->name);
  539. d->chart_id_net_speed = strdupz(d->name);
  540. d->chart_id_net_duplex = strdupz(d->name);
  541. d->chart_id_net_operstate = strdupz(d->name);
  542. d->chart_id_net_carrier = strdupz(d->name);
  543. d->chart_id_net_mtu = strdupz(d->name);
  544. d->chart_ctx_net_bytes = strdupz("net.net");
  545. d->chart_ctx_net_compressed = strdupz("net.compressed");
  546. d->chart_ctx_net_drops = strdupz("net.drops");
  547. d->chart_ctx_net_errors = strdupz("net.errors");
  548. d->chart_ctx_net_events = strdupz("net.events");
  549. d->chart_ctx_net_fifo = strdupz("net.fifo");
  550. d->chart_ctx_net_packets = strdupz("net.packets");
  551. d->chart_ctx_net_speed = strdupz("net.speed");
  552. d->chart_ctx_net_duplex = strdupz("net.duplex");
  553. d->chart_ctx_net_operstate = strdupz("net.operstate");
  554. d->chart_ctx_net_carrier = strdupz("net.carrier");
  555. d->chart_ctx_net_mtu = strdupz("net.mtu");
  556. d->chart_family = strdupz(d->name);
  557. d->priority = NETDATA_CHART_PRIO_FIRST_NET_IFACE;
  558. netdev_rename_lock(d);
  559. netdev_added++;
  560. // link it to the end
  561. if(netdev_root) {
  562. struct netdev *e;
  563. for(e = netdev_root; e->next ; e = e->next) ;
  564. e->next = d;
  565. }
  566. else
  567. netdev_root = d;
  568. return d;
  569. }
  570. int do_proc_net_dev(int update_every, usec_t dt) {
  571. (void)dt;
  572. static SIMPLE_PATTERN *disabled_list = NULL;
  573. static procfile *ff = NULL;
  574. static int enable_new_interfaces = -1;
  575. static int do_bandwidth = -1, do_packets = -1, do_errors = -1, do_drops = -1, do_fifo = -1, do_compressed = -1,
  576. do_events = -1, do_speed = -1, do_duplex = -1, do_operstate = -1, do_carrier = -1, do_mtu = -1;
  577. static char *path_to_sys_devices_virtual_net = NULL, *path_to_sys_class_net_speed = NULL,
  578. *proc_net_dev_filename = NULL;
  579. static char *path_to_sys_class_net_duplex = NULL;
  580. static char *path_to_sys_class_net_operstate = NULL;
  581. static char *path_to_sys_class_net_carrier = NULL;
  582. static char *path_to_sys_class_net_mtu = NULL;
  583. if(unlikely(enable_new_interfaces == -1)) {
  584. char filename[FILENAME_MAX + 1];
  585. snprintfz(filename, FILENAME_MAX, "%s%s", netdata_configured_host_prefix, (*netdata_configured_host_prefix)?"/proc/1/net/dev":"/proc/net/dev");
  586. proc_net_dev_filename = config_get(CONFIG_SECTION_PLUGIN_PROC_NETDEV, "filename to monitor", filename);
  587. snprintfz(filename, FILENAME_MAX, "%s%s", netdata_configured_host_prefix, "/sys/devices/virtual/net/%s");
  588. path_to_sys_devices_virtual_net = config_get(CONFIG_SECTION_PLUGIN_PROC_NETDEV, "path to get virtual interfaces", filename);
  589. snprintfz(filename, FILENAME_MAX, "%s%s", netdata_configured_host_prefix, "/sys/class/net/%s/speed");
  590. path_to_sys_class_net_speed = config_get(CONFIG_SECTION_PLUGIN_PROC_NETDEV, "path to get net device speed", filename);
  591. snprintfz(filename, FILENAME_MAX, "%s%s", netdata_configured_host_prefix, "/sys/class/net/%s/duplex");
  592. path_to_sys_class_net_duplex = config_get(CONFIG_SECTION_PLUGIN_PROC_NETDEV, "path to get net device duplex", filename);
  593. snprintfz(filename, FILENAME_MAX, "%s%s", netdata_configured_host_prefix, "/sys/class/net/%s/operstate");
  594. path_to_sys_class_net_operstate = config_get(CONFIG_SECTION_PLUGIN_PROC_NETDEV, "path to get net device operstate", filename);
  595. snprintfz(filename, FILENAME_MAX, "%s%s", netdata_configured_host_prefix, "/sys/class/net/%s/carrier");
  596. path_to_sys_class_net_carrier = config_get(CONFIG_SECTION_PLUGIN_PROC_NETDEV, "path to get net device carrier", filename);
  597. snprintfz(filename, FILENAME_MAX, "%s%s", netdata_configured_host_prefix, "/sys/class/net/%s/mtu");
  598. path_to_sys_class_net_mtu = config_get(CONFIG_SECTION_PLUGIN_PROC_NETDEV, "path to get net device mtu", filename);
  599. enable_new_interfaces = config_get_boolean_ondemand(CONFIG_SECTION_PLUGIN_PROC_NETDEV, "enable new interfaces detected at runtime", CONFIG_BOOLEAN_AUTO);
  600. do_bandwidth = config_get_boolean_ondemand(CONFIG_SECTION_PLUGIN_PROC_NETDEV, "bandwidth for all interfaces", CONFIG_BOOLEAN_AUTO);
  601. do_packets = config_get_boolean_ondemand(CONFIG_SECTION_PLUGIN_PROC_NETDEV, "packets for all interfaces", CONFIG_BOOLEAN_AUTO);
  602. do_errors = config_get_boolean_ondemand(CONFIG_SECTION_PLUGIN_PROC_NETDEV, "errors for all interfaces", CONFIG_BOOLEAN_AUTO);
  603. do_drops = config_get_boolean_ondemand(CONFIG_SECTION_PLUGIN_PROC_NETDEV, "drops for all interfaces", CONFIG_BOOLEAN_AUTO);
  604. do_fifo = config_get_boolean_ondemand(CONFIG_SECTION_PLUGIN_PROC_NETDEV, "fifo for all interfaces", CONFIG_BOOLEAN_AUTO);
  605. do_compressed = config_get_boolean_ondemand(CONFIG_SECTION_PLUGIN_PROC_NETDEV, "compressed packets for all interfaces", CONFIG_BOOLEAN_AUTO);
  606. do_events = config_get_boolean_ondemand(CONFIG_SECTION_PLUGIN_PROC_NETDEV, "frames, collisions, carrier counters for all interfaces", CONFIG_BOOLEAN_AUTO);
  607. do_speed = config_get_boolean_ondemand(CONFIG_SECTION_PLUGIN_PROC_NETDEV, "speed for all interfaces", CONFIG_BOOLEAN_AUTO);
  608. do_duplex = config_get_boolean_ondemand(CONFIG_SECTION_PLUGIN_PROC_NETDEV, "duplex for all interfaces", CONFIG_BOOLEAN_AUTO);
  609. do_operstate = config_get_boolean_ondemand(CONFIG_SECTION_PLUGIN_PROC_NETDEV, "operstate for all interfaces", CONFIG_BOOLEAN_AUTO);
  610. do_carrier = config_get_boolean_ondemand(CONFIG_SECTION_PLUGIN_PROC_NETDEV, "carrier for all interfaces", CONFIG_BOOLEAN_AUTO);
  611. do_mtu = config_get_boolean_ondemand(CONFIG_SECTION_PLUGIN_PROC_NETDEV, "mtu for all interfaces", CONFIG_BOOLEAN_AUTO);
  612. disabled_list = simple_pattern_create(config_get(CONFIG_SECTION_PLUGIN_PROC_NETDEV, "disable by default interfaces matching", "lo fireqos* *-ifb fwpr* fwbr* fwln*"), NULL, SIMPLE_PATTERN_EXACT);
  613. }
  614. if(unlikely(!ff)) {
  615. ff = procfile_open(proc_net_dev_filename, " \t,|", PROCFILE_FLAG_DEFAULT);
  616. if(unlikely(!ff)) return 1;
  617. }
  618. ff = procfile_readall(ff);
  619. if(unlikely(!ff)) return 0; // we return 0, so that we will retry to open it next time
  620. // rename all the devices, if we have pending renames
  621. if(unlikely(netdev_pending_renames))
  622. netdev_rename_all_lock();
  623. netdev_found = 0;
  624. kernel_uint_t system_rbytes = 0;
  625. kernel_uint_t system_tbytes = 0;
  626. size_t lines = procfile_lines(ff), l;
  627. for(l = 2; l < lines ;l++) {
  628. // require 17 words on each line
  629. if(unlikely(procfile_linewords(ff, l) < 17)) continue;
  630. char *name = procfile_lineword(ff, l, 0);
  631. size_t len = strlen(name);
  632. if(name[len - 1] == ':') name[len - 1] = '\0';
  633. struct netdev *d = get_netdev(name);
  634. d->updated = 1;
  635. netdev_found++;
  636. if(unlikely(!d->configured)) {
  637. // this is the first time we see this interface
  638. // remember we configured it
  639. d->configured = 1;
  640. d->enabled = enable_new_interfaces;
  641. if(d->enabled)
  642. d->enabled = !simple_pattern_matches(disabled_list, d->name);
  643. char buffer[FILENAME_MAX + 1];
  644. snprintfz(buffer, FILENAME_MAX, path_to_sys_devices_virtual_net, d->name);
  645. if (likely(access(buffer, R_OK) == 0)) {
  646. d->virtual = 1;
  647. rrdlabels_add(d->chart_labels, "interface_type", "virtual", RRDLABEL_SRC_AUTO|RRDLABEL_FLAG_PERMANENT);
  648. }
  649. else {
  650. d->virtual = 0;
  651. rrdlabels_add(d->chart_labels, "interface_type", "real", RRDLABEL_SRC_AUTO|RRDLABEL_FLAG_PERMANENT);
  652. }
  653. rrdlabels_add(d->chart_labels, "device", name, RRDLABEL_SRC_AUTO|RRDLABEL_FLAG_PERMANENT);
  654. if(likely(!d->virtual)) {
  655. // set the filename to get the interface speed
  656. snprintfz(buffer, FILENAME_MAX, path_to_sys_class_net_speed, d->name);
  657. d->filename_speed = strdupz(buffer);
  658. snprintfz(buffer, FILENAME_MAX, path_to_sys_class_net_duplex, d->name);
  659. d->filename_duplex = strdupz(buffer);
  660. }
  661. snprintfz(buffer, FILENAME_MAX, path_to_sys_class_net_operstate, d->name);
  662. d->filename_operstate = strdupz(buffer);
  663. snprintfz(buffer, FILENAME_MAX, path_to_sys_class_net_carrier, d->name);
  664. d->filename_carrier = strdupz(buffer);
  665. snprintfz(buffer, FILENAME_MAX, path_to_sys_class_net_mtu, d->name);
  666. d->filename_mtu = strdupz(buffer);
  667. snprintfz(buffer, FILENAME_MAX, "plugin:proc:/proc/net/dev:%s", d->name);
  668. d->enabled = config_get_boolean_ondemand(buffer, "enabled", d->enabled);
  669. d->virtual = config_get_boolean(buffer, "virtual", d->virtual);
  670. if(d->enabled == CONFIG_BOOLEAN_NO)
  671. continue;
  672. d->do_bandwidth = config_get_boolean_ondemand(buffer, "bandwidth", do_bandwidth);
  673. d->do_packets = config_get_boolean_ondemand(buffer, "packets", do_packets);
  674. d->do_errors = config_get_boolean_ondemand(buffer, "errors", do_errors);
  675. d->do_drops = config_get_boolean_ondemand(buffer, "drops", do_drops);
  676. d->do_fifo = config_get_boolean_ondemand(buffer, "fifo", do_fifo);
  677. d->do_compressed = config_get_boolean_ondemand(buffer, "compressed", do_compressed);
  678. d->do_events = config_get_boolean_ondemand(buffer, "events", do_events);
  679. d->do_speed = config_get_boolean_ondemand(buffer, "speed", do_speed);
  680. d->do_duplex = config_get_boolean_ondemand(buffer, "duplex", do_duplex);
  681. d->do_operstate = config_get_boolean_ondemand(buffer, "operstate", do_operstate);
  682. d->do_carrier = config_get_boolean_ondemand(buffer, "carrier", do_carrier);
  683. d->do_mtu = config_get_boolean_ondemand(buffer, "mtu", do_mtu);
  684. }
  685. if(unlikely(!d->enabled))
  686. continue;
  687. if(likely(d->do_bandwidth != CONFIG_BOOLEAN_NO || !d->virtual)) {
  688. d->rbytes = str2kernel_uint_t(procfile_lineword(ff, l, 1));
  689. d->tbytes = str2kernel_uint_t(procfile_lineword(ff, l, 9));
  690. if(likely(!d->virtual)) {
  691. system_rbytes += d->rbytes;
  692. system_tbytes += d->tbytes;
  693. }
  694. }
  695. if(likely(d->do_packets != CONFIG_BOOLEAN_NO)) {
  696. d->rpackets = str2kernel_uint_t(procfile_lineword(ff, l, 2));
  697. d->rmulticast = str2kernel_uint_t(procfile_lineword(ff, l, 8));
  698. d->tpackets = str2kernel_uint_t(procfile_lineword(ff, l, 10));
  699. }
  700. if(likely(d->do_errors != CONFIG_BOOLEAN_NO)) {
  701. d->rerrors = str2kernel_uint_t(procfile_lineword(ff, l, 3));
  702. d->terrors = str2kernel_uint_t(procfile_lineword(ff, l, 11));
  703. }
  704. if(likely(d->do_drops != CONFIG_BOOLEAN_NO)) {
  705. d->rdrops = str2kernel_uint_t(procfile_lineword(ff, l, 4));
  706. d->tdrops = str2kernel_uint_t(procfile_lineword(ff, l, 12));
  707. }
  708. if(likely(d->do_fifo != CONFIG_BOOLEAN_NO)) {
  709. d->rfifo = str2kernel_uint_t(procfile_lineword(ff, l, 5));
  710. d->tfifo = str2kernel_uint_t(procfile_lineword(ff, l, 13));
  711. }
  712. if(likely(d->do_compressed != CONFIG_BOOLEAN_NO)) {
  713. d->rcompressed = str2kernel_uint_t(procfile_lineword(ff, l, 7));
  714. d->tcompressed = str2kernel_uint_t(procfile_lineword(ff, l, 16));
  715. }
  716. if(likely(d->do_events != CONFIG_BOOLEAN_NO)) {
  717. d->rframe = str2kernel_uint_t(procfile_lineword(ff, l, 6));
  718. d->tcollisions = str2kernel_uint_t(procfile_lineword(ff, l, 14));
  719. d->tcarrier = str2kernel_uint_t(procfile_lineword(ff, l, 15));
  720. }
  721. if ((d->do_carrier != CONFIG_BOOLEAN_NO ||
  722. d->do_duplex != CONFIG_BOOLEAN_NO ||
  723. d->do_speed != CONFIG_BOOLEAN_NO) &&
  724. d->filename_carrier &&
  725. (d->carrier_file_exists ||
  726. now_monotonic_sec() - d->carrier_file_lost_time > READ_RETRY_PERIOD)) {
  727. if (read_single_number_file(d->filename_carrier, &d->carrier)) {
  728. if (d->carrier_file_exists)
  729. collector_error(
  730. "Cannot refresh interface %s carrier state by reading '%s'. Next update is in %d seconds.",
  731. d->name,
  732. d->filename_carrier,
  733. READ_RETRY_PERIOD);
  734. d->carrier_file_exists = 0;
  735. d->carrier_file_lost_time = now_monotonic_sec();
  736. } else {
  737. d->carrier_file_exists = 1;
  738. d->carrier_file_lost_time = 0;
  739. }
  740. }
  741. if (d->do_duplex != CONFIG_BOOLEAN_NO &&
  742. d->filename_duplex &&
  743. (d->carrier || d->carrier_file_exists) &&
  744. (d->duplex_file_exists ||
  745. now_monotonic_sec() - d->duplex_file_lost_time > READ_RETRY_PERIOD)) {
  746. char buffer[STATE_LENGTH_MAX + 1];
  747. if (read_file(d->filename_duplex, buffer, STATE_LENGTH_MAX)) {
  748. if (d->duplex_file_exists)
  749. collector_error("Cannot refresh interface %s duplex state by reading '%s'.", d->name, d->filename_duplex);
  750. d->duplex_file_exists = 0;
  751. d->duplex_file_lost_time = now_monotonic_sec();
  752. d->duplex = NETDEV_DUPLEX_UNKNOWN;
  753. } else {
  754. // values can be unknown, half or full -- just check the first letter for speed
  755. if (buffer[0] == 'f')
  756. d->duplex = NETDEV_DUPLEX_FULL;
  757. else if (buffer[0] == 'h')
  758. d->duplex = NETDEV_DUPLEX_HALF;
  759. else
  760. d->duplex = NETDEV_DUPLEX_UNKNOWN;
  761. d->duplex_file_exists = 1;
  762. d->duplex_file_lost_time = 0;
  763. }
  764. } else {
  765. d->duplex = NETDEV_DUPLEX_UNKNOWN;
  766. }
  767. if(d->do_operstate != CONFIG_BOOLEAN_NO && d->filename_operstate) {
  768. char buffer[STATE_LENGTH_MAX + 1], *trimmed_buffer;
  769. if (read_file(d->filename_operstate, buffer, STATE_LENGTH_MAX)) {
  770. collector_error(
  771. "Cannot refresh %s operstate by reading '%s'. Will not update its status anymore.",
  772. d->name, d->filename_operstate);
  773. freez(d->filename_operstate);
  774. d->filename_operstate = NULL;
  775. } else {
  776. trimmed_buffer = trim(buffer);
  777. d->operstate = get_operstate(trimmed_buffer);
  778. }
  779. }
  780. if (d->do_mtu != CONFIG_BOOLEAN_NO && d->filename_mtu) {
  781. if (read_single_number_file(d->filename_mtu, &d->mtu)) {
  782. collector_error(
  783. "Cannot refresh mtu for interface %s by reading '%s'. Stop updating it.", d->name, d->filename_mtu);
  784. freez(d->filename_mtu);
  785. d->filename_mtu = NULL;
  786. }
  787. }
  788. //collector_info("PROC_NET_DEV: %s speed %zu, bytes %zu/%zu, packets %zu/%zu/%zu, errors %zu/%zu, drops %zu/%zu, fifo %zu/%zu, compressed %zu/%zu, rframe %zu, tcollisions %zu, tcarrier %zu"
  789. // , d->name, d->speed
  790. // , d->rbytes, d->tbytes
  791. // , d->rpackets, d->tpackets, d->rmulticast
  792. // , d->rerrors, d->terrors
  793. // , d->rdrops, d->tdrops
  794. // , d->rfifo, d->tfifo
  795. // , d->rcompressed, d->tcompressed
  796. // , d->rframe, d->tcollisions, d->tcarrier
  797. // );
  798. if(unlikely(d->do_bandwidth == CONFIG_BOOLEAN_AUTO &&
  799. (d->rbytes || d->tbytes || netdata_zero_metrics_enabled == CONFIG_BOOLEAN_YES)))
  800. d->do_bandwidth = CONFIG_BOOLEAN_YES;
  801. if(d->do_bandwidth == CONFIG_BOOLEAN_YES) {
  802. if(unlikely(!d->st_bandwidth)) {
  803. d->st_bandwidth = rrdset_create_localhost(
  804. d->chart_type_net_bytes
  805. , d->chart_id_net_bytes
  806. , NULL
  807. , d->chart_family
  808. , d->chart_ctx_net_bytes
  809. , "Bandwidth"
  810. , "kilobits/s"
  811. , PLUGIN_PROC_NAME
  812. , PLUGIN_PROC_MODULE_NETDEV_NAME
  813. , d->priority
  814. , update_every
  815. , RRDSET_TYPE_AREA
  816. );
  817. rrdset_update_rrdlabels(d->st_bandwidth, d->chart_labels);
  818. d->rd_rbytes = rrddim_add(d->st_bandwidth, "received", NULL, 8, BITS_IN_A_KILOBIT, RRD_ALGORITHM_INCREMENTAL);
  819. d->rd_tbytes = rrddim_add(d->st_bandwidth, "sent", NULL, -8, BITS_IN_A_KILOBIT, RRD_ALGORITHM_INCREMENTAL);
  820. if(d->flipped) {
  821. // flip receive/transmit
  822. RRDDIM *td = d->rd_rbytes;
  823. d->rd_rbytes = d->rd_tbytes;
  824. d->rd_tbytes = td;
  825. }
  826. }
  827. rrddim_set_by_pointer(d->st_bandwidth, d->rd_rbytes, (collected_number)d->rbytes);
  828. rrddim_set_by_pointer(d->st_bandwidth, d->rd_tbytes, (collected_number)d->tbytes);
  829. rrdset_done(d->st_bandwidth);
  830. // update the interface speed
  831. if(d->filename_speed) {
  832. if(unlikely(!d->chart_var_speed)) {
  833. d->chart_var_speed =
  834. rrdsetvar_custom_chart_variable_add_and_acquire(d->st_bandwidth, "nic_speed_max");
  835. if(!d->chart_var_speed) {
  836. collector_error(
  837. "Cannot create interface %s chart variable 'nic_speed_max'. Will not update its speed anymore.",
  838. d->name);
  839. freez(d->filename_speed);
  840. d->filename_speed = NULL;
  841. }
  842. }
  843. if (d->filename_speed && d->chart_var_speed) {
  844. int ret = 0;
  845. if ((d->carrier || d->carrier_file_exists) &&
  846. (d->speed_file_exists || now_monotonic_sec() - d->speed_file_lost_time > READ_RETRY_PERIOD)) {
  847. ret = read_single_number_file(d->filename_speed, (unsigned long long *) &d->speed);
  848. } else {
  849. d->speed = 0; // TODO: this is wrong, shouldn't use 0 value, but NULL.
  850. }
  851. if(ret) {
  852. if (d->speed_file_exists)
  853. collector_error("Cannot refresh interface %s speed by reading '%s'.", d->name, d->filename_speed);
  854. d->speed_file_exists = 0;
  855. d->speed_file_lost_time = now_monotonic_sec();
  856. }
  857. else {
  858. if(d->do_speed != CONFIG_BOOLEAN_NO) {
  859. if(unlikely(!d->st_speed)) {
  860. d->st_speed = rrdset_create_localhost(
  861. d->chart_type_net_speed
  862. , d->chart_id_net_speed
  863. , NULL
  864. , d->chart_family
  865. , d->chart_ctx_net_speed
  866. , "Interface Speed"
  867. , "kilobits/s"
  868. , PLUGIN_PROC_NAME
  869. , PLUGIN_PROC_MODULE_NETDEV_NAME
  870. , d->priority + 7
  871. , update_every
  872. , RRDSET_TYPE_LINE
  873. );
  874. rrdset_flag_set(d->st_speed, RRDSET_FLAG_DETAIL);
  875. rrdset_update_rrdlabels(d->st_speed, d->chart_labels);
  876. d->rd_speed = rrddim_add(d->st_speed, "speed", NULL, 1, 1, RRD_ALGORITHM_ABSOLUTE);
  877. }
  878. rrddim_set_by_pointer(d->st_speed, d->rd_speed, (collected_number)d->speed * KILOBITS_IN_A_MEGABIT);
  879. rrdset_done(d->st_speed);
  880. }
  881. rrdsetvar_custom_chart_variable_set(
  882. d->st_bandwidth, d->chart_var_speed, (NETDATA_DOUBLE)d->speed * KILOBITS_IN_A_MEGABIT);
  883. if (d->speed) {
  884. d->speed_file_exists = 1;
  885. d->speed_file_lost_time = 0;
  886. }
  887. }
  888. }
  889. }
  890. }
  891. if(d->do_duplex != CONFIG_BOOLEAN_NO && d->filename_duplex) {
  892. if(unlikely(!d->st_duplex)) {
  893. d->st_duplex = rrdset_create_localhost(
  894. d->chart_type_net_duplex
  895. , d->chart_id_net_duplex
  896. , NULL
  897. , d->chart_family
  898. , d->chart_ctx_net_duplex
  899. , "Interface Duplex State"
  900. , "state"
  901. , PLUGIN_PROC_NAME
  902. , PLUGIN_PROC_MODULE_NETDEV_NAME
  903. , d->priority + 8
  904. , update_every
  905. , RRDSET_TYPE_LINE
  906. );
  907. rrdset_flag_set(d->st_duplex, RRDSET_FLAG_DETAIL);
  908. rrdset_update_rrdlabels(d->st_duplex, d->chart_labels);
  909. d->rd_duplex_full = rrddim_add(d->st_duplex, "full", NULL, 1, 1, RRD_ALGORITHM_ABSOLUTE);
  910. d->rd_duplex_half = rrddim_add(d->st_duplex, "half", NULL, 1, 1, RRD_ALGORITHM_ABSOLUTE);
  911. d->rd_duplex_unknown = rrddim_add(d->st_duplex, "unknown", NULL, 1, 1, RRD_ALGORITHM_ABSOLUTE);
  912. }
  913. rrddim_set_by_pointer(d->st_duplex, d->rd_duplex_full, (collected_number)(d->duplex == NETDEV_DUPLEX_FULL));
  914. rrddim_set_by_pointer(d->st_duplex, d->rd_duplex_half, (collected_number)(d->duplex == NETDEV_DUPLEX_HALF));
  915. rrddim_set_by_pointer(d->st_duplex, d->rd_duplex_unknown, (collected_number)(d->duplex == NETDEV_DUPLEX_UNKNOWN));
  916. rrdset_done(d->st_duplex);
  917. }
  918. if(d->do_operstate != CONFIG_BOOLEAN_NO && d->filename_operstate) {
  919. if(unlikely(!d->st_operstate)) {
  920. d->st_operstate = rrdset_create_localhost(
  921. d->chart_type_net_operstate
  922. , d->chart_id_net_operstate
  923. , NULL
  924. , d->chart_family
  925. , d->chart_ctx_net_operstate
  926. , "Interface Operational State"
  927. , "state"
  928. , PLUGIN_PROC_NAME
  929. , PLUGIN_PROC_MODULE_NETDEV_NAME
  930. , d->priority + 9
  931. , update_every
  932. , RRDSET_TYPE_LINE
  933. );
  934. rrdset_flag_set(d->st_operstate, RRDSET_FLAG_DETAIL);
  935. rrdset_update_rrdlabels(d->st_operstate, d->chart_labels);
  936. d->rd_operstate_up = rrddim_add(d->st_operstate, "up", NULL, 1, 1, RRD_ALGORITHM_ABSOLUTE);
  937. d->rd_operstate_down = rrddim_add(d->st_operstate, "down", NULL, 1, 1, RRD_ALGORITHM_ABSOLUTE);
  938. d->rd_operstate_notpresent = rrddim_add(d->st_operstate, "notpresent", NULL, 1, 1, RRD_ALGORITHM_ABSOLUTE);
  939. d->rd_operstate_lowerlayerdown = rrddim_add(d->st_operstate, "lowerlayerdown", NULL, 1, 1, RRD_ALGORITHM_ABSOLUTE);
  940. d->rd_operstate_testing = rrddim_add(d->st_operstate, "testing", NULL, 1, 1, RRD_ALGORITHM_ABSOLUTE);
  941. d->rd_operstate_dormant = rrddim_add(d->st_operstate, "dormant", NULL, 1, 1, RRD_ALGORITHM_ABSOLUTE);
  942. d->rd_operstate_unknown = rrddim_add(d->st_operstate, "unknown", NULL, 1, 1, RRD_ALGORITHM_ABSOLUTE);
  943. }
  944. rrddim_set_by_pointer(d->st_operstate, d->rd_operstate_up, (collected_number)(d->operstate == NETDEV_OPERSTATE_UP));
  945. rrddim_set_by_pointer(d->st_operstate, d->rd_operstate_down, (collected_number)(d->operstate == NETDEV_OPERSTATE_DOWN));
  946. rrddim_set_by_pointer(d->st_operstate, d->rd_operstate_notpresent, (collected_number)(d->operstate == NETDEV_OPERSTATE_NOTPRESENT));
  947. rrddim_set_by_pointer(d->st_operstate, d->rd_operstate_lowerlayerdown, (collected_number)(d->operstate == NETDEV_OPERSTATE_LOWERLAYERDOWN));
  948. rrddim_set_by_pointer(d->st_operstate, d->rd_operstate_testing, (collected_number)(d->operstate == NETDEV_OPERSTATE_TESTING));
  949. rrddim_set_by_pointer(d->st_operstate, d->rd_operstate_dormant, (collected_number)(d->operstate == NETDEV_OPERSTATE_DORMANT));
  950. rrddim_set_by_pointer(d->st_operstate, d->rd_operstate_unknown, (collected_number)(d->operstate == NETDEV_OPERSTATE_UNKNOWN));
  951. rrdset_done(d->st_operstate);
  952. }
  953. if(d->do_carrier != CONFIG_BOOLEAN_NO && d->carrier_file_exists) {
  954. if(unlikely(!d->st_carrier)) {
  955. d->st_carrier = rrdset_create_localhost(
  956. d->chart_type_net_carrier
  957. , d->chart_id_net_carrier
  958. , NULL
  959. , d->chart_family
  960. , d->chart_ctx_net_carrier
  961. , "Interface Physical Link State"
  962. , "state"
  963. , PLUGIN_PROC_NAME
  964. , PLUGIN_PROC_MODULE_NETDEV_NAME
  965. , d->priority + 10
  966. , update_every
  967. , RRDSET_TYPE_LINE
  968. );
  969. rrdset_flag_set(d->st_carrier, RRDSET_FLAG_DETAIL);
  970. rrdset_update_rrdlabels(d->st_carrier, d->chart_labels);
  971. d->rd_carrier_up = rrddim_add(d->st_carrier, "up", NULL, 1, 1, RRD_ALGORITHM_ABSOLUTE);
  972. d->rd_carrier_down = rrddim_add(d->st_carrier, "down", NULL, 1, 1, RRD_ALGORITHM_ABSOLUTE);
  973. }
  974. rrddim_set_by_pointer(d->st_carrier, d->rd_carrier_up, (collected_number)(d->carrier == 1));
  975. rrddim_set_by_pointer(d->st_carrier, d->rd_carrier_down, (collected_number)(d->carrier != 1));
  976. rrdset_done(d->st_carrier);
  977. }
  978. if(d->do_mtu != CONFIG_BOOLEAN_NO && d->filename_mtu) {
  979. if(unlikely(!d->st_mtu)) {
  980. d->st_mtu = rrdset_create_localhost(
  981. d->chart_type_net_mtu
  982. , d->chart_id_net_mtu
  983. , NULL
  984. , d->chart_family
  985. , d->chart_ctx_net_mtu
  986. , "Interface MTU"
  987. , "octets"
  988. , PLUGIN_PROC_NAME
  989. , PLUGIN_PROC_MODULE_NETDEV_NAME
  990. , d->priority + 11
  991. , update_every
  992. , RRDSET_TYPE_LINE
  993. );
  994. rrdset_flag_set(d->st_mtu, RRDSET_FLAG_DETAIL);
  995. rrdset_update_rrdlabels(d->st_mtu, d->chart_labels);
  996. d->rd_mtu = rrddim_add(d->st_mtu, "mtu", NULL, 1, 1, RRD_ALGORITHM_ABSOLUTE);
  997. }
  998. rrddim_set_by_pointer(d->st_mtu, d->rd_mtu, (collected_number)d->mtu);
  999. rrdset_done(d->st_mtu);
  1000. }
  1001. if(unlikely(d->do_packets == CONFIG_BOOLEAN_AUTO &&
  1002. (d->rpackets || d->tpackets || d->rmulticast || netdata_zero_metrics_enabled == CONFIG_BOOLEAN_YES)))
  1003. d->do_packets = CONFIG_BOOLEAN_YES;
  1004. if(d->do_packets == CONFIG_BOOLEAN_YES) {
  1005. if(unlikely(!d->st_packets)) {
  1006. d->st_packets = rrdset_create_localhost(
  1007. d->chart_type_net_packets
  1008. , d->chart_id_net_packets
  1009. , NULL
  1010. , d->chart_family
  1011. , d->chart_ctx_net_packets
  1012. , "Packets"
  1013. , "packets/s"
  1014. , PLUGIN_PROC_NAME
  1015. , PLUGIN_PROC_MODULE_NETDEV_NAME
  1016. , d->priority + 1
  1017. , update_every
  1018. , RRDSET_TYPE_LINE
  1019. );
  1020. rrdset_flag_set(d->st_packets, RRDSET_FLAG_DETAIL);
  1021. rrdset_update_rrdlabels(d->st_packets, d->chart_labels);
  1022. d->rd_rpackets = rrddim_add(d->st_packets, "received", NULL, 1, 1, RRD_ALGORITHM_INCREMENTAL);
  1023. d->rd_tpackets = rrddim_add(d->st_packets, "sent", NULL, -1, 1, RRD_ALGORITHM_INCREMENTAL);
  1024. d->rd_rmulticast = rrddim_add(d->st_packets, "multicast", NULL, 1, 1, RRD_ALGORITHM_INCREMENTAL);
  1025. if(d->flipped) {
  1026. // flip receive/transmit
  1027. RRDDIM *td = d->rd_rpackets;
  1028. d->rd_rpackets = d->rd_tpackets;
  1029. d->rd_tpackets = td;
  1030. }
  1031. }
  1032. rrddim_set_by_pointer(d->st_packets, d->rd_rpackets, (collected_number)d->rpackets);
  1033. rrddim_set_by_pointer(d->st_packets, d->rd_tpackets, (collected_number)d->tpackets);
  1034. rrddim_set_by_pointer(d->st_packets, d->rd_rmulticast, (collected_number)d->rmulticast);
  1035. rrdset_done(d->st_packets);
  1036. }
  1037. if(unlikely(d->do_errors == CONFIG_BOOLEAN_AUTO &&
  1038. (d->rerrors || d->terrors || netdata_zero_metrics_enabled == CONFIG_BOOLEAN_YES)))
  1039. d->do_errors = CONFIG_BOOLEAN_YES;
  1040. if(d->do_errors == CONFIG_BOOLEAN_YES) {
  1041. if(unlikely(!d->st_errors)) {
  1042. d->st_errors = rrdset_create_localhost(
  1043. d->chart_type_net_errors
  1044. , d->chart_id_net_errors
  1045. , NULL
  1046. , d->chart_family
  1047. , d->chart_ctx_net_errors
  1048. , "Interface Errors"
  1049. , "errors/s"
  1050. , PLUGIN_PROC_NAME
  1051. , PLUGIN_PROC_MODULE_NETDEV_NAME
  1052. , d->priority + 2
  1053. , update_every
  1054. , RRDSET_TYPE_LINE
  1055. );
  1056. rrdset_flag_set(d->st_errors, RRDSET_FLAG_DETAIL);
  1057. rrdset_update_rrdlabels(d->st_errors, d->chart_labels);
  1058. d->rd_rerrors = rrddim_add(d->st_errors, "inbound", NULL, 1, 1, RRD_ALGORITHM_INCREMENTAL);
  1059. d->rd_terrors = rrddim_add(d->st_errors, "outbound", NULL, -1, 1, RRD_ALGORITHM_INCREMENTAL);
  1060. if(d->flipped) {
  1061. // flip receive/transmit
  1062. RRDDIM *td = d->rd_rerrors;
  1063. d->rd_rerrors = d->rd_terrors;
  1064. d->rd_terrors = td;
  1065. }
  1066. }
  1067. rrddim_set_by_pointer(d->st_errors, d->rd_rerrors, (collected_number)d->rerrors);
  1068. rrddim_set_by_pointer(d->st_errors, d->rd_terrors, (collected_number)d->terrors);
  1069. rrdset_done(d->st_errors);
  1070. }
  1071. if(unlikely(d->do_drops == CONFIG_BOOLEAN_AUTO &&
  1072. (d->rdrops || d->tdrops || netdata_zero_metrics_enabled == CONFIG_BOOLEAN_YES)))
  1073. d->do_drops = CONFIG_BOOLEAN_YES;
  1074. if(d->do_drops == CONFIG_BOOLEAN_YES) {
  1075. if(unlikely(!d->st_drops)) {
  1076. d->st_drops = rrdset_create_localhost(
  1077. d->chart_type_net_drops
  1078. , d->chart_id_net_drops
  1079. , NULL
  1080. , d->chart_family
  1081. , d->chart_ctx_net_drops
  1082. , "Interface Drops"
  1083. , "drops/s"
  1084. , PLUGIN_PROC_NAME
  1085. , PLUGIN_PROC_MODULE_NETDEV_NAME
  1086. , d->priority + 3
  1087. , update_every
  1088. , RRDSET_TYPE_LINE
  1089. );
  1090. rrdset_flag_set(d->st_drops, RRDSET_FLAG_DETAIL);
  1091. rrdset_update_rrdlabels(d->st_drops, d->chart_labels);
  1092. d->rd_rdrops = rrddim_add(d->st_drops, "inbound", NULL, 1, 1, RRD_ALGORITHM_INCREMENTAL);
  1093. d->rd_tdrops = rrddim_add(d->st_drops, "outbound", NULL, -1, 1, RRD_ALGORITHM_INCREMENTAL);
  1094. if(d->flipped) {
  1095. // flip receive/transmit
  1096. RRDDIM *td = d->rd_rdrops;
  1097. d->rd_rdrops = d->rd_tdrops;
  1098. d->rd_tdrops = td;
  1099. }
  1100. }
  1101. rrddim_set_by_pointer(d->st_drops, d->rd_rdrops, (collected_number)d->rdrops);
  1102. rrddim_set_by_pointer(d->st_drops, d->rd_tdrops, (collected_number)d->tdrops);
  1103. rrdset_done(d->st_drops);
  1104. }
  1105. if(unlikely(d->do_fifo == CONFIG_BOOLEAN_AUTO &&
  1106. (d->rfifo || d->tfifo || netdata_zero_metrics_enabled == CONFIG_BOOLEAN_YES)))
  1107. d->do_fifo = CONFIG_BOOLEAN_YES;
  1108. if(d->do_fifo == CONFIG_BOOLEAN_YES) {
  1109. if(unlikely(!d->st_fifo)) {
  1110. d->st_fifo = rrdset_create_localhost(
  1111. d->chart_type_net_fifo
  1112. , d->chart_id_net_fifo
  1113. , NULL
  1114. , d->chart_family
  1115. , d->chart_ctx_net_fifo
  1116. , "Interface FIFO Buffer Errors"
  1117. , "errors"
  1118. , PLUGIN_PROC_NAME
  1119. , PLUGIN_PROC_MODULE_NETDEV_NAME
  1120. , d->priority + 4
  1121. , update_every
  1122. , RRDSET_TYPE_LINE
  1123. );
  1124. rrdset_flag_set(d->st_fifo, RRDSET_FLAG_DETAIL);
  1125. rrdset_update_rrdlabels(d->st_fifo, d->chart_labels);
  1126. d->rd_rfifo = rrddim_add(d->st_fifo, "receive", NULL, 1, 1, RRD_ALGORITHM_INCREMENTAL);
  1127. d->rd_tfifo = rrddim_add(d->st_fifo, "transmit", NULL, -1, 1, RRD_ALGORITHM_INCREMENTAL);
  1128. if(d->flipped) {
  1129. // flip receive/transmit
  1130. RRDDIM *td = d->rd_rfifo;
  1131. d->rd_rfifo = d->rd_tfifo;
  1132. d->rd_tfifo = td;
  1133. }
  1134. }
  1135. rrddim_set_by_pointer(d->st_fifo, d->rd_rfifo, (collected_number)d->rfifo);
  1136. rrddim_set_by_pointer(d->st_fifo, d->rd_tfifo, (collected_number)d->tfifo);
  1137. rrdset_done(d->st_fifo);
  1138. }
  1139. if(unlikely(d->do_compressed == CONFIG_BOOLEAN_AUTO &&
  1140. (d->rcompressed || d->tcompressed || netdata_zero_metrics_enabled == CONFIG_BOOLEAN_YES)))
  1141. d->do_compressed = CONFIG_BOOLEAN_YES;
  1142. if(d->do_compressed == CONFIG_BOOLEAN_YES) {
  1143. if(unlikely(!d->st_compressed)) {
  1144. d->st_compressed = rrdset_create_localhost(
  1145. d->chart_type_net_compressed
  1146. , d->chart_id_net_compressed
  1147. , NULL
  1148. , d->chart_family
  1149. , d->chart_ctx_net_compressed
  1150. , "Compressed Packets"
  1151. , "packets/s"
  1152. , PLUGIN_PROC_NAME
  1153. , PLUGIN_PROC_MODULE_NETDEV_NAME
  1154. , d->priority + 5
  1155. , update_every
  1156. , RRDSET_TYPE_LINE
  1157. );
  1158. rrdset_flag_set(d->st_compressed, RRDSET_FLAG_DETAIL);
  1159. rrdset_update_rrdlabels(d->st_compressed, d->chart_labels);
  1160. d->rd_rcompressed = rrddim_add(d->st_compressed, "received", NULL, 1, 1, RRD_ALGORITHM_INCREMENTAL);
  1161. d->rd_tcompressed = rrddim_add(d->st_compressed, "sent", NULL, -1, 1, RRD_ALGORITHM_INCREMENTAL);
  1162. if(d->flipped) {
  1163. // flip receive/transmit
  1164. RRDDIM *td = d->rd_rcompressed;
  1165. d->rd_rcompressed = d->rd_tcompressed;
  1166. d->rd_tcompressed = td;
  1167. }
  1168. }
  1169. rrddim_set_by_pointer(d->st_compressed, d->rd_rcompressed, (collected_number)d->rcompressed);
  1170. rrddim_set_by_pointer(d->st_compressed, d->rd_tcompressed, (collected_number)d->tcompressed);
  1171. rrdset_done(d->st_compressed);
  1172. }
  1173. if(unlikely(d->do_events == CONFIG_BOOLEAN_AUTO &&
  1174. (d->rframe || d->tcollisions || d->tcarrier || netdata_zero_metrics_enabled == CONFIG_BOOLEAN_YES)))
  1175. d->do_events = CONFIG_BOOLEAN_YES;
  1176. if(d->do_events == CONFIG_BOOLEAN_YES) {
  1177. if(unlikely(!d->st_events)) {
  1178. d->st_events = rrdset_create_localhost(
  1179. d->chart_type_net_events
  1180. , d->chart_id_net_events
  1181. , NULL
  1182. , d->chart_family
  1183. , d->chart_ctx_net_events
  1184. , "Network Interface Events"
  1185. , "events/s"
  1186. , PLUGIN_PROC_NAME
  1187. , PLUGIN_PROC_MODULE_NETDEV_NAME
  1188. , d->priority + 6
  1189. , update_every
  1190. , RRDSET_TYPE_LINE
  1191. );
  1192. rrdset_flag_set(d->st_events, RRDSET_FLAG_DETAIL);
  1193. rrdset_update_rrdlabels(d->st_events, d->chart_labels);
  1194. d->rd_rframe = rrddim_add(d->st_events, "frames", NULL, 1, 1, RRD_ALGORITHM_INCREMENTAL);
  1195. d->rd_tcollisions = rrddim_add(d->st_events, "collisions", NULL, -1, 1, RRD_ALGORITHM_INCREMENTAL);
  1196. d->rd_tcarrier = rrddim_add(d->st_events, "carrier", NULL, -1, 1, RRD_ALGORITHM_INCREMENTAL);
  1197. }
  1198. rrddim_set_by_pointer(d->st_events, d->rd_rframe, (collected_number)d->rframe);
  1199. rrddim_set_by_pointer(d->st_events, d->rd_tcollisions, (collected_number)d->tcollisions);
  1200. rrddim_set_by_pointer(d->st_events, d->rd_tcarrier, (collected_number)d->tcarrier);
  1201. rrdset_done(d->st_events);
  1202. }
  1203. }
  1204. if(do_bandwidth == CONFIG_BOOLEAN_YES || (do_bandwidth == CONFIG_BOOLEAN_AUTO &&
  1205. (system_rbytes || system_tbytes ||
  1206. netdata_zero_metrics_enabled == CONFIG_BOOLEAN_YES))) {
  1207. do_bandwidth = CONFIG_BOOLEAN_YES;
  1208. static RRDSET *st_system_net = NULL;
  1209. static RRDDIM *rd_in = NULL, *rd_out = NULL;
  1210. if(unlikely(!st_system_net)) {
  1211. st_system_net = rrdset_create_localhost(
  1212. "system"
  1213. , "net"
  1214. , NULL
  1215. , "network"
  1216. , NULL
  1217. , "Physical Network Interfaces Aggregated Bandwidth"
  1218. , "kilobits/s"
  1219. , PLUGIN_PROC_NAME
  1220. , PLUGIN_PROC_MODULE_NETDEV_NAME
  1221. , NETDATA_CHART_PRIO_SYSTEM_NET
  1222. , update_every
  1223. , RRDSET_TYPE_AREA
  1224. );
  1225. rd_in = rrddim_add(st_system_net, "InOctets", "received", 8, BITS_IN_A_KILOBIT, RRD_ALGORITHM_INCREMENTAL);
  1226. rd_out = rrddim_add(st_system_net, "OutOctets", "sent", -8, BITS_IN_A_KILOBIT, RRD_ALGORITHM_INCREMENTAL);
  1227. }
  1228. rrddim_set_by_pointer(st_system_net, rd_in, (collected_number)system_rbytes);
  1229. rrddim_set_by_pointer(st_system_net, rd_out, (collected_number)system_tbytes);
  1230. rrdset_done(st_system_net);
  1231. }
  1232. netdev_cleanup();
  1233. return 0;
  1234. }
  1235. static void netdev_main_cleanup(void *ptr)
  1236. {
  1237. UNUSED(ptr);
  1238. collector_info("cleaning up...");
  1239. worker_unregister();
  1240. }
  1241. void *netdev_main(void *ptr)
  1242. {
  1243. worker_register("NETDEV");
  1244. worker_register_job_name(0, "netdev");
  1245. netdata_thread_cleanup_push(netdev_main_cleanup, ptr);
  1246. usec_t step = localhost->rrd_update_every * USEC_PER_SEC;
  1247. heartbeat_t hb;
  1248. heartbeat_init(&hb);
  1249. while (service_running(SERVICE_COLLECTORS)) {
  1250. worker_is_idle();
  1251. usec_t hb_dt = heartbeat_next(&hb, step);
  1252. if (unlikely(!service_running(SERVICE_COLLECTORS)))
  1253. break;
  1254. worker_is_busy(0);
  1255. if(do_proc_net_dev(localhost->rrd_update_every, hb_dt))
  1256. break;
  1257. }
  1258. netdata_thread_cleanup_pop(1);
  1259. return NULL;
  1260. }