ebpf_filesystem.c 22 KB

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  1. // SPDX-License-Identifier: GPL-3.0-or-later
  2. #include "ebpf_filesystem.h"
  3. struct config fs_config = { .first_section = NULL,
  4. .last_section = NULL,
  5. .mutex = NETDATA_MUTEX_INITIALIZER,
  6. .index = { .avl_tree = { .root = NULL, .compar = appconfig_section_compare },
  7. .rwlock = AVL_LOCK_INITIALIZER } };
  8. static ebpf_local_maps_t fs_maps[] = {{.name = "tbl_ext4", .internal_input = NETDATA_KEY_CALLS_SYNC,
  9. .user_input = 0, .type = NETDATA_EBPF_MAP_STATIC,
  10. .map_fd = ND_EBPF_MAP_FD_NOT_INITIALIZED},
  11. {.name = "tbl_xfs", .internal_input = NETDATA_KEY_CALLS_SYNC,
  12. .user_input = 0, .type = NETDATA_EBPF_MAP_STATIC,
  13. .map_fd = ND_EBPF_MAP_FD_NOT_INITIALIZED},
  14. {.name = "tbl_nfs", .internal_input = NETDATA_KEY_CALLS_SYNC,
  15. .user_input = 0, .type = NETDATA_EBPF_MAP_STATIC,
  16. .map_fd = ND_EBPF_MAP_FD_NOT_INITIALIZED},
  17. {.name = "tbl_zfs", .internal_input = NETDATA_KEY_CALLS_SYNC,
  18. .user_input = 0, .type = NETDATA_EBPF_MAP_STATIC,
  19. .map_fd = ND_EBPF_MAP_FD_NOT_INITIALIZED},
  20. {.name = "tbl_btrfs", .internal_input = NETDATA_KEY_CALLS_SYNC,
  21. .user_input = 0, .type = NETDATA_EBPF_MAP_STATIC,
  22. .map_fd = ND_EBPF_MAP_FD_NOT_INITIALIZED},
  23. {.name = "tbl_ext_addr", .internal_input = 1,
  24. .user_input = 0, .type = NETDATA_EBPF_MAP_STATIC,
  25. .map_fd = ND_EBPF_MAP_FD_NOT_INITIALIZED},
  26. {.name = NULL, .internal_input = 0, .user_input = 0,
  27. .type = NETDATA_EBPF_MAP_CONTROLLER,
  28. .map_fd = ND_EBPF_MAP_FD_NOT_INITIALIZED}};
  29. struct netdata_static_thread filesystem_threads = {
  30. .name = "EBPF FS READ",
  31. .config_section = NULL,
  32. .config_name = NULL,
  33. .env_name = NULL,
  34. .enabled = 1,
  35. .thread = NULL,
  36. .init_routine = NULL,
  37. .start_routine = NULL
  38. };
  39. static netdata_syscall_stat_t filesystem_aggregated_data[NETDATA_EBPF_HIST_MAX_BINS];
  40. static netdata_publish_syscall_t filesystem_publish_aggregated[NETDATA_EBPF_HIST_MAX_BINS];
  41. char **dimensions = NULL;
  42. static netdata_idx_t *filesystem_hash_values = NULL;
  43. /*****************************************************************
  44. *
  45. * COMMON FUNCTIONS
  46. *
  47. *****************************************************************/
  48. /**
  49. * Create Filesystem chart
  50. *
  51. * Create latency charts
  52. *
  53. * @param update_every value to overwrite the update frequency set by the server.
  54. */
  55. static void ebpf_obsolete_fs_charts(int update_every)
  56. {
  57. int i;
  58. uint32_t test = NETDATA_FILESYSTEM_FLAG_CHART_CREATED | NETDATA_FILESYSTEM_REMOVE_CHARTS;
  59. for (i = 0; localfs[i].filesystem; i++) {
  60. ebpf_filesystem_partitions_t *efp = &localfs[i];
  61. uint32_t flags = efp->flags;
  62. if ((flags & test) == test) {
  63. flags &= ~NETDATA_FILESYSTEM_FLAG_CHART_CREATED;
  64. ebpf_write_chart_obsolete(NETDATA_FILESYSTEM_FAMILY, efp->hread.name,
  65. efp->hread.title,
  66. EBPF_COMMON_DIMENSION_CALL, efp->family_name,
  67. NULL, NETDATA_EBPF_CHART_TYPE_STACKED, efp->hread.order, update_every);
  68. ebpf_write_chart_obsolete(NETDATA_FILESYSTEM_FAMILY, efp->hwrite.name,
  69. efp->hwrite.title,
  70. EBPF_COMMON_DIMENSION_CALL, efp->family_name,
  71. NULL, NETDATA_EBPF_CHART_TYPE_STACKED, efp->hwrite.order, update_every);
  72. ebpf_write_chart_obsolete(NETDATA_FILESYSTEM_FAMILY, efp->hopen.name, efp->hopen.title,
  73. EBPF_COMMON_DIMENSION_CALL, efp->family_name,
  74. NULL, NETDATA_EBPF_CHART_TYPE_STACKED, efp->hopen.order, update_every);
  75. ebpf_write_chart_obsolete(NETDATA_FILESYSTEM_FAMILY, efp->hadditional.name, efp->hadditional.title,
  76. EBPF_COMMON_DIMENSION_CALL, efp->family_name,
  77. NULL, NETDATA_EBPF_CHART_TYPE_STACKED, efp->hadditional.order,
  78. update_every);
  79. }
  80. efp->flags = flags;
  81. }
  82. }
  83. /**
  84. * Create Filesystem chart
  85. *
  86. * Create latency charts
  87. *
  88. * @param update_every value to overwrite the update frequency set by the server.
  89. */
  90. static void ebpf_create_fs_charts(int update_every)
  91. {
  92. static int order = NETDATA_CHART_PRIO_EBPF_FILESYSTEM_CHARTS;
  93. char chart_name[64], title[256], family[64];
  94. int i;
  95. uint32_t test = NETDATA_FILESYSTEM_FLAG_CHART_CREATED|NETDATA_FILESYSTEM_REMOVE_CHARTS;
  96. for (i = 0; localfs[i].filesystem; i++) {
  97. ebpf_filesystem_partitions_t *efp = &localfs[i];
  98. uint32_t flags = efp->flags;
  99. if (flags & NETDATA_FILESYSTEM_FLAG_HAS_PARTITION && !(flags & test)) {
  100. snprintfz(title, 255, "%s latency for each read request.", efp->filesystem);
  101. snprintfz(family, 63, "%s_latency", efp->family);
  102. snprintfz(chart_name, 63, "%s_read_latency", efp->filesystem);
  103. efp->hread.name = strdupz(chart_name);
  104. efp->hread.title = strdupz(title);
  105. efp->hread.order = order;
  106. efp->family_name = strdupz(family);
  107. ebpf_create_chart(NETDATA_FILESYSTEM_FAMILY, efp->hread.name,
  108. title,
  109. EBPF_COMMON_DIMENSION_CALL, family,
  110. NULL, NETDATA_EBPF_CHART_TYPE_STACKED, order, ebpf_create_global_dimension,
  111. filesystem_publish_aggregated, NETDATA_EBPF_HIST_MAX_BINS,
  112. update_every, NETDATA_EBPF_MODULE_NAME_FILESYSTEM);
  113. order++;
  114. snprintfz(title, 255, "%s latency for each write request.", efp->filesystem);
  115. snprintfz(chart_name, 63, "%s_write_latency", efp->filesystem);
  116. efp->hwrite.name = strdupz(chart_name);
  117. efp->hwrite.title = strdupz(title);
  118. efp->hwrite.order = order;
  119. ebpf_create_chart(NETDATA_FILESYSTEM_FAMILY, efp->hwrite.name,
  120. title,
  121. EBPF_COMMON_DIMENSION_CALL, family,
  122. NULL, NETDATA_EBPF_CHART_TYPE_STACKED, order, ebpf_create_global_dimension,
  123. filesystem_publish_aggregated, NETDATA_EBPF_HIST_MAX_BINS,
  124. update_every, NETDATA_EBPF_MODULE_NAME_FILESYSTEM);
  125. order++;
  126. snprintfz(title, 255, "%s latency for each open request.", efp->filesystem);
  127. snprintfz(chart_name, 63, "%s_open_latency", efp->filesystem);
  128. efp->hopen.name = strdupz(chart_name);
  129. efp->hopen.title = strdupz(title);
  130. efp->hopen.order = order;
  131. ebpf_create_chart(NETDATA_FILESYSTEM_FAMILY, efp->hopen.name,
  132. title,
  133. EBPF_COMMON_DIMENSION_CALL, family,
  134. NULL, NETDATA_EBPF_CHART_TYPE_STACKED, order, ebpf_create_global_dimension,
  135. filesystem_publish_aggregated, NETDATA_EBPF_HIST_MAX_BINS,
  136. update_every, NETDATA_EBPF_MODULE_NAME_FILESYSTEM);
  137. order++;
  138. char *type = (efp->flags & NETDATA_FILESYSTEM_ATTR_CHARTS) ? "attribute" : "sync";
  139. snprintfz(title, 255, "%s latency for each %s request.", efp->filesystem, type);
  140. snprintfz(chart_name, 63, "%s_%s_latency", efp->filesystem, type);
  141. efp->hadditional.name = strdupz(chart_name);
  142. efp->hadditional.title = strdupz(title);
  143. efp->hadditional.order = order;
  144. ebpf_create_chart(NETDATA_FILESYSTEM_FAMILY, efp->hadditional.name, title,
  145. EBPF_COMMON_DIMENSION_CALL, family,
  146. NULL, NETDATA_EBPF_CHART_TYPE_STACKED, order, ebpf_create_global_dimension,
  147. filesystem_publish_aggregated, NETDATA_EBPF_HIST_MAX_BINS,
  148. update_every, NETDATA_EBPF_MODULE_NAME_FILESYSTEM);
  149. order++;
  150. efp->flags |= NETDATA_FILESYSTEM_FLAG_CHART_CREATED;
  151. }
  152. }
  153. }
  154. /**
  155. * Initialize eBPF data
  156. *
  157. * @param em main thread structure.
  158. *
  159. * @return it returns 0 on success and -1 otherwise.
  160. */
  161. int ebpf_filesystem_initialize_ebpf_data(ebpf_module_t *em)
  162. {
  163. int i;
  164. const char *saved_name = em->thread_name;
  165. uint64_t kernels = em->kernels;
  166. for (i = 0; localfs[i].filesystem; i++) {
  167. ebpf_filesystem_partitions_t *efp = &localfs[i];
  168. if (!efp->probe_links && efp->flags & NETDATA_FILESYSTEM_LOAD_EBPF_PROGRAM) {
  169. em->thread_name = efp->filesystem;
  170. em->kernels = efp->kernels;
  171. efp->probe_links = ebpf_load_program(ebpf_plugin_dir, em, running_on_kernel, isrh, &efp->objects);
  172. if (!efp->probe_links) {
  173. em->thread_name = saved_name;
  174. em->kernels = kernels;
  175. return -1;
  176. }
  177. efp->flags |= NETDATA_FILESYSTEM_FLAG_HAS_PARTITION;
  178. // Nedeed for filesystems like btrfs
  179. if ((efp->flags & NETDATA_FILESYSTEM_FILL_ADDRESS_TABLE) && (efp->addresses.function)) {
  180. ebpf_load_addresses(&efp->addresses, fs_maps[i + 1].map_fd);
  181. }
  182. }
  183. efp->flags &= ~NETDATA_FILESYSTEM_LOAD_EBPF_PROGRAM;
  184. }
  185. em->thread_name = saved_name;
  186. em->kernels = kernels;
  187. if (!dimensions) {
  188. dimensions = ebpf_fill_histogram_dimension(NETDATA_EBPF_HIST_MAX_BINS);
  189. memset(filesystem_aggregated_data, 0 , NETDATA_EBPF_HIST_MAX_BINS * sizeof(netdata_syscall_stat_t));
  190. memset(filesystem_publish_aggregated, 0 , NETDATA_EBPF_HIST_MAX_BINS * sizeof(netdata_publish_syscall_t));
  191. filesystem_hash_values = callocz(ebpf_nprocs, sizeof(netdata_idx_t));
  192. }
  193. return 0;
  194. }
  195. /**
  196. * Read Local partitions
  197. *
  198. * @return the total of partitions that will be monitored
  199. */
  200. static int ebpf_read_local_partitions()
  201. {
  202. char filename[FILENAME_MAX + 1];
  203. snprintfz(filename, FILENAME_MAX, "%s/proc/self/mountinfo", netdata_configured_host_prefix);
  204. procfile *ff = procfile_open(filename, " \t", PROCFILE_FLAG_DEFAULT);
  205. if(unlikely(!ff)) {
  206. snprintfz(filename, FILENAME_MAX, "%s/proc/1/mountinfo", netdata_configured_host_prefix);
  207. ff = procfile_open(filename, " \t", PROCFILE_FLAG_DEFAULT);
  208. if(unlikely(!ff)) return 0;
  209. }
  210. ff = procfile_readall(ff);
  211. if(unlikely(!ff))
  212. return 0;
  213. int count = 0;
  214. unsigned long l, i, lines = procfile_lines(ff);
  215. for (i = 0; localfs[i].filesystem; i++) {
  216. localfs[i].flags |= NETDATA_FILESYSTEM_REMOVE_CHARTS;
  217. }
  218. for(l = 0; l < lines ; l++) {
  219. // In "normal" situation the expected value is at column 7
  220. // When `shared` options is added to mount information, the filesystem is at column 8
  221. // Finally when we have systemd starting netdata, it will be at column 9
  222. unsigned long index = procfile_linewords(ff, l) - 3;
  223. char *fs = procfile_lineword(ff, l, index);
  224. for (i = 0; localfs[i].filesystem; i++) {
  225. ebpf_filesystem_partitions_t *w = &localfs[i];
  226. if (w->enabled && (!strcmp(fs, w->filesystem) ||
  227. (w->optional_filesystem && !strcmp(fs, w->optional_filesystem)))) {
  228. localfs[i].flags |= NETDATA_FILESYSTEM_LOAD_EBPF_PROGRAM;
  229. localfs[i].flags &= ~NETDATA_FILESYSTEM_REMOVE_CHARTS;
  230. count++;
  231. break;
  232. }
  233. }
  234. }
  235. procfile_close(ff);
  236. return count;
  237. }
  238. /**
  239. * Update partition
  240. *
  241. * Update the partition structures before to plot
  242. *
  243. * @param em main thread structure
  244. *
  245. * @return 0 on success and -1 otherwise.
  246. */
  247. static int ebpf_update_partitions(ebpf_module_t *em)
  248. {
  249. static time_t update_every = 0;
  250. time_t curr = now_realtime_sec();
  251. if (curr < update_every)
  252. return 0;
  253. update_every = curr + 5 * em->update_every;
  254. if (!ebpf_read_local_partitions()) {
  255. em->optional = -1;
  256. return -1;
  257. }
  258. if (ebpf_filesystem_initialize_ebpf_data(em)) {
  259. return -1;
  260. }
  261. return 0;
  262. }
  263. /*****************************************************************
  264. *
  265. * CLEANUP FUNCTIONS
  266. *
  267. *****************************************************************/
  268. /*
  269. * Cleanup eBPF data
  270. */
  271. void ebpf_filesystem_cleanup_ebpf_data()
  272. {
  273. int i;
  274. for (i = 0; localfs[i].filesystem; i++) {
  275. ebpf_filesystem_partitions_t *efp = &localfs[i];
  276. if (efp->probe_links) {
  277. freez(efp->family_name);
  278. freez(efp->hread.name);
  279. freez(efp->hread.title);
  280. freez(efp->hwrite.name);
  281. freez(efp->hwrite.title);
  282. freez(efp->hopen.name);
  283. freez(efp->hopen.title);
  284. freez(efp->hadditional.name);
  285. freez(efp->hadditional.title);
  286. }
  287. }
  288. }
  289. /**
  290. * Filesystem Free
  291. *
  292. * Cleanup variables after child threads to stop
  293. *
  294. * @param ptr thread data.
  295. */
  296. static void ebpf_filesystem_free(ebpf_module_t *em)
  297. {
  298. pthread_mutex_lock(&ebpf_exit_cleanup);
  299. if (em->thread->enabled == NETDATA_THREAD_EBPF_RUNNING) {
  300. em->thread->enabled = NETDATA_THREAD_EBPF_STOPPING;
  301. pthread_mutex_unlock(&ebpf_exit_cleanup);
  302. return;
  303. }
  304. pthread_mutex_unlock(&ebpf_exit_cleanup);
  305. freez(filesystem_threads.thread);
  306. ebpf_cleanup_publish_syscall(filesystem_publish_aggregated);
  307. ebpf_filesystem_cleanup_ebpf_data();
  308. if (dimensions)
  309. ebpf_histogram_dimension_cleanup(dimensions, NETDATA_EBPF_HIST_MAX_BINS);
  310. freez(filesystem_hash_values);
  311. pthread_mutex_lock(&ebpf_exit_cleanup);
  312. em->thread->enabled = NETDATA_THREAD_EBPF_STOPPED;
  313. pthread_mutex_unlock(&ebpf_exit_cleanup);
  314. }
  315. /**
  316. * Filesystem exit
  317. *
  318. * Cancel child thread.
  319. *
  320. * @param ptr thread data.
  321. */
  322. static void ebpf_filesystem_exit(void *ptr)
  323. {
  324. ebpf_module_t *em = (ebpf_module_t *)ptr;
  325. if (filesystem_threads.thread)
  326. netdata_thread_cancel(*filesystem_threads.thread);
  327. ebpf_filesystem_free(em);
  328. }
  329. /**
  330. * File system cleanup
  331. *
  332. * Clean up allocated thread.
  333. *
  334. * @param ptr thread data.
  335. */
  336. static void ebpf_filesystem_cleanup(void *ptr)
  337. {
  338. ebpf_module_t *em = (ebpf_module_t *)ptr;
  339. ebpf_filesystem_free(em);
  340. }
  341. /*****************************************************************
  342. *
  343. * MAIN THREAD
  344. *
  345. *****************************************************************/
  346. /**
  347. * Select hist
  348. *
  349. * Select a histogram to store data.
  350. *
  351. * @param efp pointer for the structure with pointers.
  352. * @param id histogram selector
  353. *
  354. * @return It returns a pointer for the histogram
  355. */
  356. static inline netdata_ebpf_histogram_t *select_hist(ebpf_filesystem_partitions_t *efp, uint32_t *idx, uint32_t id)
  357. {
  358. if (id < NETDATA_KEY_CALLS_READ) {
  359. *idx = id;
  360. return &efp->hread;
  361. } else if (id < NETDATA_KEY_CALLS_WRITE) {
  362. *idx = id - NETDATA_KEY_CALLS_READ;
  363. return &efp->hwrite;
  364. } else if (id < NETDATA_KEY_CALLS_OPEN) {
  365. *idx = id - NETDATA_KEY_CALLS_WRITE;
  366. return &efp->hopen;
  367. } else if (id < NETDATA_KEY_CALLS_SYNC ){
  368. *idx = id - NETDATA_KEY_CALLS_OPEN;
  369. return &efp->hadditional;
  370. }
  371. return NULL;
  372. }
  373. /**
  374. * Read hard disk table
  375. *
  376. * @param table index for the hash table
  377. *
  378. * Read the table with number of calls for all functions
  379. */
  380. static void read_filesystem_table(ebpf_filesystem_partitions_t *efp, int fd)
  381. {
  382. netdata_idx_t *values = filesystem_hash_values;
  383. uint32_t key;
  384. uint32_t idx;
  385. for (key = 0; key < NETDATA_KEY_CALLS_SYNC; key++) {
  386. netdata_ebpf_histogram_t *w = select_hist(efp, &idx, key);
  387. if (!w) {
  388. continue;
  389. }
  390. int test = bpf_map_lookup_elem(fd, &key, values);
  391. if (test < 0) {
  392. continue;
  393. }
  394. uint64_t total = 0;
  395. int i;
  396. int end = ebpf_nprocs;
  397. for (i = 0; i < end; i++) {
  398. total += values[i];
  399. }
  400. if (idx >= NETDATA_EBPF_HIST_MAX_BINS)
  401. idx = NETDATA_EBPF_HIST_MAX_BINS - 1;
  402. w->histogram[idx] = total;
  403. }
  404. }
  405. /**
  406. * Read hard disk table
  407. *
  408. * @param table index for the hash table
  409. *
  410. * Read the table with number of calls for all functions
  411. */
  412. static void read_filesystem_tables()
  413. {
  414. int i;
  415. for (i = 0; localfs[i].filesystem; i++) {
  416. ebpf_filesystem_partitions_t *efp = &localfs[i];
  417. if (efp->flags & NETDATA_FILESYSTEM_FLAG_HAS_PARTITION) {
  418. read_filesystem_table(efp, fs_maps[i].map_fd);
  419. }
  420. }
  421. }
  422. /**
  423. * Socket read hash
  424. *
  425. * This is the thread callback.
  426. * This thread is necessary, because we cannot freeze the whole plugin to read the data on very busy socket.
  427. *
  428. * @param ptr It is a NULL value for this thread.
  429. *
  430. * @return It always returns NULL.
  431. */
  432. void *ebpf_filesystem_read_hash(void *ptr)
  433. {
  434. netdata_thread_cleanup_push(ebpf_filesystem_cleanup, ptr);
  435. ebpf_module_t *em = (ebpf_module_t *)ptr;
  436. heartbeat_t hb;
  437. heartbeat_init(&hb);
  438. usec_t step = NETDATA_FILESYSTEM_READ_SLEEP_MS * em->update_every;
  439. int update_every = em->update_every;
  440. while (!ebpf_exit_plugin) {
  441. (void)heartbeat_next(&hb, step);
  442. (void) ebpf_update_partitions(em);
  443. ebpf_obsolete_fs_charts(update_every);
  444. // No more partitions, it is not necessary to read tables
  445. if (em->optional)
  446. continue;
  447. read_filesystem_tables();
  448. }
  449. netdata_thread_cleanup_pop(1);
  450. return NULL;
  451. }
  452. /**
  453. * Send Hard disk data
  454. *
  455. * Send hard disk information to Netdata.
  456. */
  457. static void ebpf_histogram_send_data()
  458. {
  459. uint32_t i;
  460. uint32_t test = NETDATA_FILESYSTEM_FLAG_HAS_PARTITION | NETDATA_FILESYSTEM_REMOVE_CHARTS;
  461. for (i = 0; localfs[i].filesystem; i++) {
  462. ebpf_filesystem_partitions_t *efp = &localfs[i];
  463. if ((efp->flags & test) == NETDATA_FILESYSTEM_FLAG_HAS_PARTITION) {
  464. write_histogram_chart(NETDATA_FILESYSTEM_FAMILY, efp->hread.name,
  465. efp->hread.histogram, dimensions, NETDATA_EBPF_HIST_MAX_BINS);
  466. write_histogram_chart(NETDATA_FILESYSTEM_FAMILY, efp->hwrite.name,
  467. efp->hwrite.histogram, dimensions, NETDATA_EBPF_HIST_MAX_BINS);
  468. write_histogram_chart(NETDATA_FILESYSTEM_FAMILY, efp->hopen.name,
  469. efp->hopen.histogram, dimensions, NETDATA_EBPF_HIST_MAX_BINS);
  470. write_histogram_chart(NETDATA_FILESYSTEM_FAMILY, efp->hadditional.name,
  471. efp->hadditional.histogram, dimensions, NETDATA_EBPF_HIST_MAX_BINS);
  472. }
  473. }
  474. }
  475. /**
  476. * Main loop for this collector.
  477. *
  478. * @param em main structure for this thread
  479. */
  480. static void filesystem_collector(ebpf_module_t *em)
  481. {
  482. filesystem_threads.thread = mallocz(sizeof(netdata_thread_t));
  483. filesystem_threads.start_routine = ebpf_filesystem_read_hash;
  484. netdata_thread_create(filesystem_threads.thread, filesystem_threads.name,
  485. NETDATA_THREAD_OPTION_DEFAULT, ebpf_filesystem_read_hash, em);
  486. int update_every = em->update_every;
  487. heartbeat_t hb;
  488. heartbeat_init(&hb);
  489. usec_t step = update_every * USEC_PER_SEC;
  490. while (!ebpf_exit_plugin) {
  491. (void)heartbeat_next(&hb, step);
  492. if (ebpf_exit_plugin)
  493. break;
  494. pthread_mutex_lock(&lock);
  495. ebpf_create_fs_charts(update_every);
  496. ebpf_histogram_send_data();
  497. pthread_mutex_unlock(&lock);
  498. }
  499. }
  500. /*****************************************************************
  501. *
  502. * ENTRY THREAD
  503. *
  504. *****************************************************************/
  505. /**
  506. * Update Filesystem
  507. *
  508. * Update file system structure using values read from configuration file.
  509. */
  510. static void ebpf_update_filesystem()
  511. {
  512. char dist[NETDATA_FS_MAX_DIST_NAME + 1];
  513. int i;
  514. for (i = 0; localfs[i].filesystem; i++) {
  515. snprintfz(dist, NETDATA_FS_MAX_DIST_NAME, "%sdist", localfs[i].filesystem);
  516. localfs[i].enabled = appconfig_get_boolean(&fs_config, NETDATA_FILESYSTEM_CONFIG_NAME, dist,
  517. CONFIG_BOOLEAN_YES);
  518. }
  519. }
  520. /**
  521. * Filesystem thread
  522. *
  523. * Thread used to generate socket charts.
  524. *
  525. * @param ptr a pointer to `struct ebpf_module`
  526. *
  527. * @return It always return NULL
  528. */
  529. void *ebpf_filesystem_thread(void *ptr)
  530. {
  531. netdata_thread_cleanup_push(ebpf_filesystem_exit, ptr);
  532. ebpf_module_t *em = (ebpf_module_t *)ptr;
  533. em->maps = fs_maps;
  534. ebpf_update_filesystem();
  535. // Initialize optional as zero, to identify when there are not partitions to monitor
  536. em->optional = 0;
  537. if (ebpf_update_partitions(em)) {
  538. if (em->optional)
  539. info("Netdata cannot monitor the filesystems used on this host.");
  540. em->thread->enabled = NETDATA_THREAD_EBPF_STOPPED;
  541. goto endfilesystem;
  542. }
  543. int algorithms[NETDATA_EBPF_HIST_MAX_BINS];
  544. ebpf_fill_algorithms(algorithms, NETDATA_EBPF_HIST_MAX_BINS, NETDATA_EBPF_INCREMENTAL_IDX);
  545. ebpf_global_labels(filesystem_aggregated_data, filesystem_publish_aggregated, dimensions, dimensions,
  546. algorithms, NETDATA_EBPF_HIST_MAX_BINS);
  547. pthread_mutex_lock(&lock);
  548. ebpf_create_fs_charts(em->update_every);
  549. ebpf_update_stats(&plugin_statistics, em);
  550. pthread_mutex_unlock(&lock);
  551. filesystem_collector(em);
  552. endfilesystem:
  553. ebpf_update_disabled_plugin_stats(em);
  554. netdata_thread_cleanup_pop(1);
  555. return NULL;
  556. }