proc_diskstats.c 108 KB

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  1. // SPDX-License-Identifier: GPL-3.0-or-later
  2. #include "plugin_proc.h"
  3. #define RRD_TYPE_DISK "disk"
  4. #define PLUGIN_PROC_MODULE_DISKSTATS_NAME "/proc/diskstats"
  5. #define CONFIG_SECTION_PLUGIN_PROC_DISKSTATS "plugin:" PLUGIN_PROC_CONFIG_NAME ":" PLUGIN_PROC_MODULE_DISKSTATS_NAME
  6. #define RRDFUNCTIONS_DISKSTATS_HELP "View block device statistics"
  7. #define DISK_TYPE_UNKNOWN 0
  8. #define DISK_TYPE_PHYSICAL 1
  9. #define DISK_TYPE_PARTITION 2
  10. #define DISK_TYPE_VIRTUAL 3
  11. #define DEFAULT_PREFERRED_IDS "*"
  12. #define DEFAULT_EXCLUDED_DISKS "loop* ram*"
  13. static netdata_mutex_t diskstats_dev_mutex = NETDATA_MUTEX_INITIALIZER;
  14. static struct disk {
  15. char *disk; // the name of the disk (sda, sdb, etc, after being looked up)
  16. char *device; // the device of the disk (before being looked up)
  17. char *disk_by_id;
  18. char *model;
  19. char *serial;
  20. // bool rotational;
  21. // bool removable;
  22. uint32_t hash;
  23. unsigned long major;
  24. unsigned long minor;
  25. int sector_size;
  26. int type;
  27. bool excluded;
  28. bool function_ready;
  29. char *mount_point;
  30. char *chart_id;
  31. // disk options caching
  32. int do_io;
  33. int do_ops;
  34. int do_mops;
  35. int do_iotime;
  36. int do_qops;
  37. int do_util;
  38. int do_ext;
  39. int do_backlog;
  40. int do_bcache;
  41. int updated;
  42. int device_is_bcache;
  43. char *bcache_filename_dirty_data;
  44. char *bcache_filename_writeback_rate;
  45. char *bcache_filename_cache_congested;
  46. char *bcache_filename_cache_available_percent;
  47. char *bcache_filename_stats_five_minute_cache_hit_ratio;
  48. char *bcache_filename_stats_hour_cache_hit_ratio;
  49. char *bcache_filename_stats_day_cache_hit_ratio;
  50. char *bcache_filename_stats_total_cache_hit_ratio;
  51. char *bcache_filename_stats_total_cache_hits;
  52. char *bcache_filename_stats_total_cache_misses;
  53. char *bcache_filename_stats_total_cache_miss_collisions;
  54. char *bcache_filename_stats_total_cache_bypass_hits;
  55. char *bcache_filename_stats_total_cache_bypass_misses;
  56. char *bcache_filename_stats_total_cache_readaheads;
  57. char *bcache_filename_cache_read_races;
  58. char *bcache_filename_cache_io_errors;
  59. char *bcache_filename_priority_stats;
  60. usec_t bcache_priority_stats_update_every_usec;
  61. usec_t bcache_priority_stats_elapsed_usec;
  62. RRDSET *st_io;
  63. RRDDIM *rd_io_reads;
  64. RRDDIM *rd_io_writes;
  65. RRDSET *st_ext_io;
  66. RRDDIM *rd_io_discards;
  67. RRDSET *st_ops;
  68. RRDDIM *rd_ops_reads;
  69. RRDDIM *rd_ops_writes;
  70. RRDSET *st_ext_ops;
  71. RRDDIM *rd_ops_discards;
  72. RRDDIM *rd_ops_flushes;
  73. RRDSET *st_qops;
  74. RRDDIM *rd_qops_operations;
  75. RRDSET *st_backlog;
  76. RRDDIM *rd_backlog_backlog;
  77. RRDSET *st_busy;
  78. RRDDIM *rd_busy_busy;
  79. RRDSET *st_util;
  80. RRDDIM *rd_util_utilization;
  81. RRDSET *st_mops;
  82. RRDDIM *rd_mops_reads;
  83. RRDDIM *rd_mops_writes;
  84. RRDSET *st_ext_mops;
  85. RRDDIM *rd_mops_discards;
  86. RRDSET *st_iotime;
  87. RRDDIM *rd_iotime_reads;
  88. RRDDIM *rd_iotime_writes;
  89. RRDSET *st_ext_iotime;
  90. RRDDIM *rd_iotime_discards;
  91. RRDDIM *rd_iotime_flushes;
  92. RRDSET *st_await;
  93. RRDDIM *rd_await_reads;
  94. RRDDIM *rd_await_writes;
  95. RRDSET *st_ext_await;
  96. RRDDIM *rd_await_discards;
  97. RRDDIM *rd_await_flushes;
  98. RRDSET *st_avgsz;
  99. RRDDIM *rd_avgsz_reads;
  100. RRDDIM *rd_avgsz_writes;
  101. RRDSET *st_ext_avgsz;
  102. RRDDIM *rd_avgsz_discards;
  103. RRDSET *st_svctm;
  104. RRDDIM *rd_svctm_svctm;
  105. RRDSET *st_bcache_size;
  106. RRDDIM *rd_bcache_dirty_size;
  107. RRDSET *st_bcache_usage;
  108. RRDDIM *rd_bcache_available_percent;
  109. RRDSET *st_bcache_hit_ratio;
  110. RRDDIM *rd_bcache_hit_ratio_5min;
  111. RRDDIM *rd_bcache_hit_ratio_1hour;
  112. RRDDIM *rd_bcache_hit_ratio_1day;
  113. RRDDIM *rd_bcache_hit_ratio_total;
  114. RRDSET *st_bcache;
  115. RRDDIM *rd_bcache_hits;
  116. RRDDIM *rd_bcache_misses;
  117. RRDDIM *rd_bcache_miss_collisions;
  118. RRDSET *st_bcache_bypass;
  119. RRDDIM *rd_bcache_bypass_hits;
  120. RRDDIM *rd_bcache_bypass_misses;
  121. RRDSET *st_bcache_rates;
  122. RRDDIM *rd_bcache_rate_congested;
  123. RRDDIM *rd_bcache_readaheads;
  124. RRDDIM *rd_bcache_rate_writeback;
  125. RRDSET *st_bcache_cache_allocations;
  126. RRDDIM *rd_bcache_cache_allocations_unused;
  127. RRDDIM *rd_bcache_cache_allocations_clean;
  128. RRDDIM *rd_bcache_cache_allocations_dirty;
  129. RRDDIM *rd_bcache_cache_allocations_metadata;
  130. RRDDIM *rd_bcache_cache_allocations_unknown;
  131. RRDSET *st_bcache_cache_read_races;
  132. RRDDIM *rd_bcache_cache_read_races;
  133. RRDDIM *rd_bcache_cache_io_errors;
  134. struct disk *next;
  135. } *disk_root = NULL;
  136. #define rrdset_obsolete_and_pointer_null(st) do { if(st) { rrdset_is_obsolete___safe_from_collector_thread(st); (st) = NULL; } } while(st)
  137. // static char *path_to_get_hw_sector_size = NULL;
  138. // static char *path_to_get_hw_sector_size_partitions = NULL;
  139. static char *path_to_sys_dev_block_major_minor_string = NULL;
  140. static char *path_to_sys_block_device = NULL;
  141. static char *path_to_sys_block_device_bcache = NULL;
  142. static char *path_to_sys_devices_virtual_block_device = NULL;
  143. static char *path_to_device_mapper = NULL;
  144. static char *path_to_dev_disk = NULL;
  145. static char *path_to_sys_block = NULL;
  146. static char *path_to_device_label = NULL;
  147. static char *path_to_device_id = NULL;
  148. static char *path_to_veritas_volume_groups = NULL;
  149. static int name_disks_by_id = CONFIG_BOOLEAN_NO;
  150. static int global_bcache_priority_stats_update_every = 0; // disabled by default
  151. static int global_enable_new_disks_detected_at_runtime = CONFIG_BOOLEAN_YES,
  152. global_enable_performance_for_physical_disks = CONFIG_BOOLEAN_AUTO,
  153. global_enable_performance_for_virtual_disks = CONFIG_BOOLEAN_AUTO,
  154. global_enable_performance_for_partitions = CONFIG_BOOLEAN_NO,
  155. global_do_io = CONFIG_BOOLEAN_AUTO,
  156. global_do_ops = CONFIG_BOOLEAN_AUTO,
  157. global_do_mops = CONFIG_BOOLEAN_AUTO,
  158. global_do_iotime = CONFIG_BOOLEAN_AUTO,
  159. global_do_qops = CONFIG_BOOLEAN_AUTO,
  160. global_do_util = CONFIG_BOOLEAN_AUTO,
  161. global_do_ext = CONFIG_BOOLEAN_AUTO,
  162. global_do_backlog = CONFIG_BOOLEAN_AUTO,
  163. global_do_bcache = CONFIG_BOOLEAN_AUTO,
  164. globals_initialized = 0,
  165. global_cleanup_removed_disks = 1;
  166. static SIMPLE_PATTERN *preferred_ids = NULL;
  167. static SIMPLE_PATTERN *excluded_disks = NULL;
  168. static unsigned long long int bcache_read_number_with_units(const char *filename) {
  169. char buffer[50 + 1];
  170. if(read_file(filename, buffer, 50) == 0) {
  171. static int unknown_units_error = 10;
  172. char *end = NULL;
  173. NETDATA_DOUBLE value = str2ndd(buffer, &end);
  174. if(end && *end) {
  175. if(*end == 'k')
  176. return (unsigned long long int)(value * 1024.0);
  177. else if(*end == 'M')
  178. return (unsigned long long int)(value * 1024.0 * 1024.0);
  179. else if(*end == 'G')
  180. return (unsigned long long int)(value * 1024.0 * 1024.0 * 1024.0);
  181. else if(*end == 'T')
  182. return (unsigned long long int)(value * 1024.0 * 1024.0 * 1024.0 * 1024.0);
  183. else if(unknown_units_error > 0) {
  184. collector_error("bcache file '%s' provides value '%s' with unknown units '%s'", filename, buffer, end);
  185. unknown_units_error--;
  186. }
  187. }
  188. return (unsigned long long int)value;
  189. }
  190. return 0;
  191. }
  192. void bcache_read_priority_stats(struct disk *d, const char *family, int update_every, usec_t dt) {
  193. static procfile *ff = NULL;
  194. static char *separators = " \t:%[]";
  195. static ARL_BASE *arl_base = NULL;
  196. static unsigned long long unused;
  197. static unsigned long long clean;
  198. static unsigned long long dirty;
  199. static unsigned long long metadata;
  200. static unsigned long long unknown;
  201. // check if it is time to update this metric
  202. d->bcache_priority_stats_elapsed_usec += dt;
  203. if(likely(d->bcache_priority_stats_elapsed_usec < d->bcache_priority_stats_update_every_usec)) return;
  204. d->bcache_priority_stats_elapsed_usec = 0;
  205. // initialize ARL
  206. if(unlikely(!arl_base)) {
  207. arl_base = arl_create("bcache/priority_stats", NULL, 60);
  208. arl_expect(arl_base, "Unused", &unused);
  209. arl_expect(arl_base, "Clean", &clean);
  210. arl_expect(arl_base, "Dirty", &dirty);
  211. arl_expect(arl_base, "Metadata", &metadata);
  212. }
  213. ff = procfile_reopen(ff, d->bcache_filename_priority_stats, separators, PROCFILE_FLAG_DEFAULT);
  214. if(likely(ff)) ff = procfile_readall(ff);
  215. if(unlikely(!ff)) {
  216. separators = " \t:%[]";
  217. return;
  218. }
  219. // do not reset the separators on every iteration
  220. separators = NULL;
  221. arl_begin(arl_base);
  222. unused = clean = dirty = metadata = unknown = 0;
  223. size_t lines = procfile_lines(ff), l;
  224. for(l = 0; l < lines ;l++) {
  225. size_t words = procfile_linewords(ff, l);
  226. if(unlikely(words < 2)) {
  227. if(unlikely(words)) collector_error("Cannot read '%s' line %zu. Expected 2 params, read %zu.", d->bcache_filename_priority_stats, l, words);
  228. continue;
  229. }
  230. if(unlikely(arl_check(arl_base,
  231. procfile_lineword(ff, l, 0),
  232. procfile_lineword(ff, l, 1)))) break;
  233. }
  234. unknown = 100 - unused - clean - dirty - metadata;
  235. // create / update the cache allocations chart
  236. {
  237. if(unlikely(!d->st_bcache_cache_allocations)) {
  238. d->st_bcache_cache_allocations = rrdset_create_localhost(
  239. "disk_bcache_cache_alloc"
  240. , d->chart_id
  241. , d->disk
  242. , family
  243. , "disk.bcache_cache_alloc"
  244. , "BCache Cache Allocations"
  245. , "percentage"
  246. , PLUGIN_PROC_NAME
  247. , PLUGIN_PROC_MODULE_DISKSTATS_NAME
  248. , NETDATA_CHART_PRIO_BCACHE_CACHE_ALLOC
  249. , update_every
  250. , RRDSET_TYPE_STACKED
  251. );
  252. d->rd_bcache_cache_allocations_unused = rrddim_add(d->st_bcache_cache_allocations, "unused", NULL, 1, 1, RRD_ALGORITHM_ABSOLUTE);
  253. d->rd_bcache_cache_allocations_dirty = rrddim_add(d->st_bcache_cache_allocations, "dirty", NULL, 1, 1, RRD_ALGORITHM_ABSOLUTE);
  254. d->rd_bcache_cache_allocations_clean = rrddim_add(d->st_bcache_cache_allocations, "clean", NULL, 1, 1, RRD_ALGORITHM_ABSOLUTE);
  255. d->rd_bcache_cache_allocations_metadata = rrddim_add(d->st_bcache_cache_allocations, "metadata", NULL, 1, 1, RRD_ALGORITHM_ABSOLUTE);
  256. d->rd_bcache_cache_allocations_unknown = rrddim_add(d->st_bcache_cache_allocations, "undefined", NULL, 1, 1, RRD_ALGORITHM_ABSOLUTE);
  257. d->bcache_priority_stats_update_every_usec = update_every * USEC_PER_SEC;
  258. }
  259. rrddim_set_by_pointer(d->st_bcache_cache_allocations, d->rd_bcache_cache_allocations_unused, unused);
  260. rrddim_set_by_pointer(d->st_bcache_cache_allocations, d->rd_bcache_cache_allocations_dirty, dirty);
  261. rrddim_set_by_pointer(d->st_bcache_cache_allocations, d->rd_bcache_cache_allocations_clean, clean);
  262. rrddim_set_by_pointer(d->st_bcache_cache_allocations, d->rd_bcache_cache_allocations_metadata, metadata);
  263. rrddim_set_by_pointer(d->st_bcache_cache_allocations, d->rd_bcache_cache_allocations_unknown, unknown);
  264. rrdset_done(d->st_bcache_cache_allocations);
  265. }
  266. }
  267. static inline int is_major_enabled(int major) {
  268. static int8_t *major_configs = NULL;
  269. static size_t major_size = 0;
  270. if(major < 0) return 1;
  271. size_t wanted_size = (size_t)major + 1;
  272. if(major_size < wanted_size) {
  273. major_configs = reallocz(major_configs, wanted_size * sizeof(int8_t));
  274. size_t i;
  275. for(i = major_size; i < wanted_size ; i++)
  276. major_configs[i] = -1;
  277. major_size = wanted_size;
  278. }
  279. if(major_configs[major] == -1) {
  280. char buffer[CONFIG_MAX_NAME + 1];
  281. snprintfz(buffer, CONFIG_MAX_NAME, "performance metrics for disks with major %d", major);
  282. major_configs[major] = (char)config_get_boolean(CONFIG_SECTION_PLUGIN_PROC_DISKSTATS, buffer, 1);
  283. }
  284. return (int)major_configs[major];
  285. }
  286. static inline int get_disk_name_from_path(const char *path, char *result, size_t result_size, unsigned long major, unsigned long minor, char *disk, char *prefix, int depth) {
  287. //collector_info("DEVICE-MAPPER ('%s', %lu:%lu): examining directory '%s' (allowed depth %d).", disk, major, minor, path, depth);
  288. int found = 0, preferred = 0;
  289. char *first_result = mallocz(result_size + 1);
  290. DIR *dir = opendir(path);
  291. if (!dir) {
  292. if (errno == ENOENT)
  293. nd_log_collector(NDLP_DEBUG, "DEVICE-MAPPER ('%s', %lu:%lu): Cannot open directory '%s': no such file or directory.", disk, major, minor, path);
  294. else
  295. collector_error("DEVICE-MAPPER ('%s', %lu:%lu): Cannot open directory '%s'.", disk, major, minor, path);
  296. goto failed;
  297. }
  298. struct dirent *de = NULL;
  299. while ((de = readdir(dir))) {
  300. if(de->d_type == DT_DIR) {
  301. if((de->d_name[0] == '.' && de->d_name[1] == '\0') || (de->d_name[0] == '.' && de->d_name[1] == '.' && de->d_name[2] == '\0'))
  302. continue;
  303. if(depth <= 0) {
  304. collector_error("DEVICE-MAPPER ('%s', %lu:%lu): Depth limit reached for path '%s/%s'. Ignoring path.", disk, major, minor, path, de->d_name);
  305. break;
  306. }
  307. else {
  308. char *path_nested = NULL;
  309. char *prefix_nested = NULL;
  310. {
  311. char buffer[FILENAME_MAX + 1];
  312. snprintfz(buffer, FILENAME_MAX, "%s/%s", path, de->d_name);
  313. path_nested = strdupz(buffer);
  314. snprintfz(buffer, FILENAME_MAX, "%s%s%s", (prefix)?prefix:"", (prefix)?"_":"", de->d_name);
  315. prefix_nested = strdupz(buffer);
  316. }
  317. found = get_disk_name_from_path(path_nested, result, result_size, major, minor, disk, prefix_nested, depth - 1);
  318. freez(path_nested);
  319. freez(prefix_nested);
  320. if(found) break;
  321. }
  322. }
  323. else if(de->d_type == DT_LNK || de->d_type == DT_BLK) {
  324. char filename[FILENAME_MAX + 1];
  325. if(de->d_type == DT_LNK) {
  326. snprintfz(filename, FILENAME_MAX, "%s/%s", path, de->d_name);
  327. ssize_t len = readlink(filename, result, result_size - 1);
  328. if(len <= 0) {
  329. collector_error("DEVICE-MAPPER ('%s', %lu:%lu): Cannot read link '%s'.", disk, major, minor, filename);
  330. continue;
  331. }
  332. result[len] = '\0';
  333. if(result[0] != '/')
  334. snprintfz(filename, FILENAME_MAX, "%s/%s", path, result);
  335. else
  336. strncpyz(filename, result, FILENAME_MAX);
  337. }
  338. else {
  339. snprintfz(filename, FILENAME_MAX, "%s/%s", path, de->d_name);
  340. }
  341. struct stat sb;
  342. if(stat(filename, &sb) == -1) {
  343. collector_error("DEVICE-MAPPER ('%s', %lu:%lu): Cannot stat() file '%s'.", disk, major, minor, filename);
  344. continue;
  345. }
  346. if((sb.st_mode & S_IFMT) != S_IFBLK) {
  347. //collector_info("DEVICE-MAPPER ('%s', %lu:%lu): file '%s' is not a block device.", disk, major, minor, filename);
  348. continue;
  349. }
  350. if(major(sb.st_rdev) != major || minor(sb.st_rdev) != minor || strcmp(basename(filename), disk)) {
  351. //collector_info("DEVICE-MAPPER ('%s', %lu:%lu): filename '%s' does not match %lu:%lu.", disk, major, minor, filename, (unsigned long)major(sb.st_rdev), (unsigned long)minor(sb.st_rdev));
  352. continue;
  353. }
  354. //collector_info("DEVICE-MAPPER ('%s', %lu:%lu): filename '%s' matches.", disk, major, minor, filename);
  355. snprintfz(result, result_size - 1, "%s%s%s", (prefix)?prefix:"", (prefix)?"_":"", de->d_name);
  356. if(!found) {
  357. strncpyz(first_result, result, result_size);
  358. found = 1;
  359. }
  360. if(simple_pattern_matches(preferred_ids, result)) {
  361. preferred = 1;
  362. break;
  363. }
  364. }
  365. }
  366. closedir(dir);
  367. failed:
  368. if(!found)
  369. result[0] = '\0';
  370. else if(!preferred)
  371. strncpyz(result, first_result, result_size);
  372. freez(first_result);
  373. return found;
  374. }
  375. static inline char *get_disk_name(unsigned long major, unsigned long minor, char *disk) {
  376. char result[FILENAME_MAX + 2] = "";
  377. if(!path_to_device_mapper || !*path_to_device_mapper || !get_disk_name_from_path(path_to_device_mapper, result, FILENAME_MAX + 1, major, minor, disk, NULL, 0))
  378. if(!path_to_device_label || !*path_to_device_label || !get_disk_name_from_path(path_to_device_label, result, FILENAME_MAX + 1, major, minor, disk, NULL, 0))
  379. if(!path_to_veritas_volume_groups || !*path_to_veritas_volume_groups || !get_disk_name_from_path(path_to_veritas_volume_groups, result, FILENAME_MAX + 1, major, minor, disk, "vx", 2))
  380. if(name_disks_by_id != CONFIG_BOOLEAN_YES || !path_to_device_id || !*path_to_device_id || !get_disk_name_from_path(path_to_device_id, result, FILENAME_MAX + 1, major, minor, disk, NULL, 0))
  381. strncpy(result, disk, FILENAME_MAX);
  382. if(!result[0])
  383. strncpy(result, disk, FILENAME_MAX);
  384. netdata_fix_chart_name(result);
  385. return strdup(result);
  386. }
  387. static inline bool ends_with(const char *str, const char *suffix) {
  388. if (!str || !suffix)
  389. return false;
  390. size_t len_str = strlen(str);
  391. size_t len_suffix = strlen(suffix);
  392. if (len_suffix > len_str)
  393. return false;
  394. return strncmp(str + len_str - len_suffix, suffix, len_suffix) == 0;
  395. }
  396. static inline char *get_disk_by_id(char *device) {
  397. char pathname[256 + 1];
  398. snprintfz(pathname, sizeof(pathname) - 1, "%s/by-id", path_to_dev_disk);
  399. struct dirent *entry;
  400. DIR *dp = opendir(pathname);
  401. if (dp == NULL) {
  402. internal_error(true, "Cannot open '%s'", pathname);
  403. return NULL;
  404. }
  405. while ((entry = readdir(dp))) {
  406. // We ignore the '.' and '..' entries
  407. if (strcmp(entry->d_name, ".") == 0 || strcmp(entry->d_name, "..") == 0)
  408. continue;
  409. if(strncmp(entry->d_name, "md-uuid-", 8) == 0 ||
  410. strncmp(entry->d_name, "dm-uuid-", 8) == 0 ||
  411. strncmp(entry->d_name, "nvme-eui.", 9) == 0 ||
  412. strncmp(entry->d_name, "wwn-", 4) == 0 ||
  413. strncmp(entry->d_name, "lvm-pv-uuid-", 12) == 0)
  414. continue;
  415. char link_target[256 + 1];
  416. char full_path[256 + 1];
  417. snprintfz(full_path, 256, "%s/%s", pathname, entry->d_name);
  418. ssize_t len = readlink(full_path, link_target, 256);
  419. if (len == -1)
  420. continue;
  421. link_target[len] = '\0';
  422. if (ends_with(link_target, device)) {
  423. char *s = strdupz(entry->d_name);
  424. closedir(dp);
  425. return s;
  426. }
  427. }
  428. closedir(dp);
  429. return NULL;
  430. }
  431. static inline char *get_disk_model(char *device) {
  432. char path[256 + 1];
  433. char buffer[256 + 1];
  434. snprintfz(path, sizeof(path) - 1, "%s/%s/device/model", path_to_sys_block, device);
  435. if(read_file(path, buffer, 256) != 0) {
  436. snprintfz(path, sizeof(path) - 1, "%s/%s/device/name", path_to_sys_block, device);
  437. if(read_file(path, buffer, 256) != 0)
  438. return NULL;
  439. }
  440. char *clean = trim(buffer);
  441. if (!clean)
  442. return NULL;
  443. return strdupz(clean);
  444. }
  445. static inline char *get_disk_serial(char *device) {
  446. char path[256 + 1];
  447. char buffer[256 + 1];
  448. snprintfz(path, sizeof(path) - 1, "%s/%s/device/serial", path_to_sys_block, device);
  449. if(read_file(path, buffer, 256) != 0)
  450. return NULL;
  451. return strdupz(buffer);
  452. }
  453. //static inline bool get_disk_rotational(char *device) {
  454. // char path[256 + 1];
  455. // char buffer[256 + 1];
  456. //
  457. // snprintfz(path, 256, "%s/%s/queue/rotational", path_to_sys_block, device);
  458. // if(read_file(path, buffer, 256) != 0)
  459. // return false;
  460. //
  461. // return buffer[0] == '1';
  462. //}
  463. //
  464. //static inline bool get_disk_removable(char *device) {
  465. // char path[256 + 1];
  466. // char buffer[256 + 1];
  467. //
  468. // snprintfz(path, 256, "%s/%s/removable", path_to_sys_block, device);
  469. // if(read_file(path, buffer, 256) != 0)
  470. // return false;
  471. //
  472. // return buffer[0] == '1';
  473. //}
  474. static void get_disk_config(struct disk *d) {
  475. int def_enable = global_enable_new_disks_detected_at_runtime;
  476. if(def_enable != CONFIG_BOOLEAN_NO && (simple_pattern_matches(excluded_disks, d->device) || simple_pattern_matches(excluded_disks, d->disk))) {
  477. d->excluded = true;
  478. def_enable = CONFIG_BOOLEAN_NO;
  479. }
  480. char var_name[4096 + 1];
  481. snprintfz(var_name, 4096, CONFIG_SECTION_PLUGIN_PROC_DISKSTATS ":%s", d->disk);
  482. if (config_exists(var_name, "enable"))
  483. def_enable = config_get_boolean_ondemand(var_name, "enable", def_enable);
  484. if(unlikely(def_enable == CONFIG_BOOLEAN_NO)) {
  485. // the user does not want any metrics for this disk
  486. d->do_io = CONFIG_BOOLEAN_NO;
  487. d->do_ops = CONFIG_BOOLEAN_NO;
  488. d->do_mops = CONFIG_BOOLEAN_NO;
  489. d->do_iotime = CONFIG_BOOLEAN_NO;
  490. d->do_qops = CONFIG_BOOLEAN_NO;
  491. d->do_util = CONFIG_BOOLEAN_NO;
  492. d->do_ext = CONFIG_BOOLEAN_NO;
  493. d->do_backlog = CONFIG_BOOLEAN_NO;
  494. d->do_bcache = CONFIG_BOOLEAN_NO;
  495. }
  496. else {
  497. // this disk is enabled
  498. // check its direct settings
  499. int def_performance = CONFIG_BOOLEAN_AUTO;
  500. // since this is 'on demand' we can figure the performance settings
  501. // based on the type of disk
  502. if(!d->device_is_bcache) {
  503. switch(d->type) {
  504. default:
  505. case DISK_TYPE_UNKNOWN:
  506. break;
  507. case DISK_TYPE_PHYSICAL:
  508. def_performance = global_enable_performance_for_physical_disks;
  509. break;
  510. case DISK_TYPE_PARTITION:
  511. def_performance = global_enable_performance_for_partitions;
  512. break;
  513. case DISK_TYPE_VIRTUAL:
  514. def_performance = global_enable_performance_for_virtual_disks;
  515. break;
  516. }
  517. }
  518. // check if we have to disable performance for this disk
  519. if(def_performance)
  520. def_performance = is_major_enabled((int)d->major);
  521. // ------------------------------------------------------------
  522. // now we have def_performance and def_space
  523. // to work further
  524. // def_performance
  525. // check the user configuration (this will also show our 'on demand' decision)
  526. if (config_exists(var_name, "enable performance metrics"))
  527. def_performance = config_get_boolean_ondemand(var_name, "enable performance metrics", def_performance);
  528. int ddo_io = CONFIG_BOOLEAN_NO,
  529. ddo_ops = CONFIG_BOOLEAN_NO,
  530. ddo_mops = CONFIG_BOOLEAN_NO,
  531. ddo_iotime = CONFIG_BOOLEAN_NO,
  532. ddo_qops = CONFIG_BOOLEAN_NO,
  533. ddo_util = CONFIG_BOOLEAN_NO,
  534. ddo_ext = CONFIG_BOOLEAN_NO,
  535. ddo_backlog = CONFIG_BOOLEAN_NO,
  536. ddo_bcache = CONFIG_BOOLEAN_NO;
  537. // we enable individual performance charts only when def_performance is not disabled
  538. if(unlikely(def_performance != CONFIG_BOOLEAN_NO)) {
  539. ddo_io = global_do_io,
  540. ddo_ops = global_do_ops,
  541. ddo_mops = global_do_mops,
  542. ddo_iotime = global_do_iotime,
  543. ddo_qops = global_do_qops,
  544. ddo_util = global_do_util,
  545. ddo_ext = global_do_ext,
  546. ddo_backlog = global_do_backlog,
  547. ddo_bcache = global_do_bcache;
  548. } else {
  549. d->excluded = true;
  550. }
  551. d->do_io = ddo_io;
  552. d->do_ops = ddo_ops;
  553. d->do_mops = ddo_mops;
  554. d->do_iotime = ddo_iotime;
  555. d->do_qops = ddo_qops;
  556. d->do_util = ddo_util;
  557. d->do_ext = ddo_ext;
  558. d->do_backlog = ddo_backlog;
  559. if (config_exists(var_name, "bandwidth"))
  560. d->do_io = config_get_boolean_ondemand(var_name, "bandwidth", ddo_io);
  561. if (config_exists(var_name, "operations"))
  562. d->do_ops = config_get_boolean_ondemand(var_name, "operations", ddo_ops);
  563. if (config_exists(var_name, "merged operations"))
  564. d->do_mops = config_get_boolean_ondemand(var_name, "merged operations", ddo_mops);
  565. if (config_exists(var_name, "i/o time"))
  566. d->do_iotime = config_get_boolean_ondemand(var_name, "i/o time", ddo_iotime);
  567. if (config_exists(var_name, "queued operations"))
  568. d->do_qops = config_get_boolean_ondemand(var_name, "queued operations", ddo_qops);
  569. if (config_exists(var_name, "utilization percentage"))
  570. d->do_util = config_get_boolean_ondemand(var_name, "utilization percentage", ddo_util);
  571. if (config_exists(var_name, "extended operations"))
  572. d->do_ext = config_get_boolean_ondemand(var_name, "extended operations", ddo_ext);
  573. if (config_exists(var_name, "backlog"))
  574. d->do_backlog = config_get_boolean_ondemand(var_name, "backlog", ddo_backlog);
  575. d->do_bcache = ddo_bcache;
  576. if (d->device_is_bcache) {
  577. if (config_exists(var_name, "bcache"))
  578. d->do_bcache = config_get_boolean_ondemand(var_name, "bcache", ddo_bcache);
  579. } else {
  580. d->do_bcache = 0;
  581. }
  582. }
  583. }
  584. static struct disk *get_disk(unsigned long major, unsigned long minor, char *disk) {
  585. static struct mountinfo *disk_mountinfo_root = NULL;
  586. struct disk *d;
  587. uint32_t hash = simple_hash(disk);
  588. // search for it in our RAM list.
  589. // this is sequential, but since we just walk through
  590. // and the number of disks / partitions in a system
  591. // should not be that many, it should be acceptable
  592. for(d = disk_root; d ; d = d->next){
  593. if (unlikely(
  594. d->major == major && d->minor == minor && d->hash == hash && !strcmp(d->device, disk)))
  595. return d;
  596. }
  597. // not found
  598. // create a new disk structure
  599. d = (struct disk *)callocz(1, sizeof(struct disk));
  600. d->excluded = false;
  601. d->function_ready = false;
  602. d->disk = get_disk_name(major, minor, disk);
  603. d->device = strdupz(disk);
  604. d->disk_by_id = get_disk_by_id(disk);
  605. d->model = get_disk_model(disk);
  606. d->serial = get_disk_serial(disk);
  607. // d->rotational = get_disk_rotational(disk);
  608. // d->removable = get_disk_removable(disk);
  609. d->hash = simple_hash(d->device);
  610. d->major = major;
  611. d->minor = minor;
  612. d->type = DISK_TYPE_UNKNOWN; // Default type. Changed later if not correct.
  613. d->sector_size = 512; // the default, will be changed below
  614. d->next = NULL;
  615. // append it to the list
  616. if(unlikely(!disk_root))
  617. disk_root = d;
  618. else {
  619. struct disk *last;
  620. for(last = disk_root; last->next ;last = last->next);
  621. last->next = d;
  622. }
  623. d->chart_id = strdupz(d->device);
  624. // read device uuid if it is an LVM volume
  625. if (!strncmp(d->device, "dm-", 3)) {
  626. char uuid_filename[FILENAME_MAX + 1];
  627. int size = snprintfz(uuid_filename, FILENAME_MAX, path_to_sys_devices_virtual_block_device, disk);
  628. strncat(uuid_filename, "/dm/uuid", FILENAME_MAX - size);
  629. char device_uuid[RRD_ID_LENGTH_MAX + 1];
  630. if (!read_file(uuid_filename, device_uuid, RRD_ID_LENGTH_MAX) && !strncmp(device_uuid, "LVM-", 4)) {
  631. trim(device_uuid);
  632. char chart_id[RRD_ID_LENGTH_MAX + 1];
  633. snprintf(chart_id, RRD_ID_LENGTH_MAX, "%s-%s", d->device, device_uuid + 4);
  634. freez(d->chart_id);
  635. d->chart_id = strdupz(chart_id);
  636. }
  637. }
  638. char buffer[FILENAME_MAX + 1];
  639. // find if it is a physical disk
  640. // by checking if /sys/block/DISK is readable.
  641. snprintfz(buffer, FILENAME_MAX, path_to_sys_block_device, disk);
  642. if(likely(access(buffer, R_OK) == 0)) {
  643. // assign it here, but it will be overwritten if it is not a physical disk
  644. d->type = DISK_TYPE_PHYSICAL;
  645. }
  646. // find if it is a partition
  647. // by checking if /sys/dev/block/MAJOR:MINOR/partition is readable.
  648. snprintfz(buffer, FILENAME_MAX, path_to_sys_dev_block_major_minor_string, major, minor, "partition");
  649. if(likely(access(buffer, R_OK) == 0)) {
  650. d->type = DISK_TYPE_PARTITION;
  651. }
  652. else {
  653. // find if it is a virtual disk
  654. // by checking if /sys/devices/virtual/block/DISK is readable.
  655. snprintfz(buffer, FILENAME_MAX, path_to_sys_devices_virtual_block_device, disk);
  656. if(likely(access(buffer, R_OK) == 0)) {
  657. d->type = DISK_TYPE_VIRTUAL;
  658. }
  659. else {
  660. // find if it is a virtual device
  661. // by checking if /sys/dev/block/MAJOR:MINOR/slaves has entries
  662. snprintfz(buffer, FILENAME_MAX, path_to_sys_dev_block_major_minor_string, major, minor, "slaves/");
  663. DIR *dirp = opendir(buffer);
  664. if (likely(dirp != NULL)) {
  665. struct dirent *dp;
  666. while ((dp = readdir(dirp))) {
  667. // . and .. are also files in empty folders.
  668. if (unlikely(strcmp(dp->d_name, ".") == 0 || strcmp(dp->d_name, "..") == 0)) {
  669. continue;
  670. }
  671. d->type = DISK_TYPE_VIRTUAL;
  672. // Stop the loop after we found one file.
  673. break;
  674. }
  675. if (unlikely(closedir(dirp) == -1))
  676. collector_error("Unable to close dir %s", buffer);
  677. }
  678. }
  679. }
  680. // ------------------------------------------------------------------------
  681. // check if we can find its mount point
  682. // mountinfo_find() can be called with NULL disk_mountinfo_root
  683. struct mountinfo *mi = mountinfo_find(disk_mountinfo_root, d->major, d->minor, d->device);
  684. if(unlikely(!mi)) {
  685. // mountinfo_free_all can be called with NULL
  686. mountinfo_free_all(disk_mountinfo_root);
  687. disk_mountinfo_root = mountinfo_read(0);
  688. mi = mountinfo_find(disk_mountinfo_root, d->major, d->minor, d->device);
  689. }
  690. if(unlikely(mi))
  691. d->mount_point = strdupz(mi->mount_point);
  692. else
  693. d->mount_point = NULL;
  694. // ------------------------------------------------------------------------
  695. // find the disk sector size
  696. /*
  697. * sector size is always 512 bytes inside the kernel #3481
  698. *
  699. {
  700. char tf[FILENAME_MAX + 1], *t;
  701. strncpyz(tf, d->device, FILENAME_MAX);
  702. // replace all / with !
  703. for(t = tf; *t ;t++)
  704. if(unlikely(*t == '/')) *t = '!';
  705. if(likely(d->type == DISK_TYPE_PARTITION))
  706. snprintfz(buffer, FILENAME_MAX, path_to_get_hw_sector_size_partitions, d->major, d->minor, tf);
  707. else
  708. snprintfz(buffer, FILENAME_MAX, path_to_get_hw_sector_size, tf);
  709. FILE *fpss = fopen(buffer, "r");
  710. if(likely(fpss)) {
  711. char buffer2[1024 + 1];
  712. char *tmp = fgets(buffer2, 1024, fpss);
  713. if(likely(tmp)) {
  714. d->sector_size = str2i(tmp);
  715. if(unlikely(d->sector_size <= 0)) {
  716. collector_error("Invalid sector size %d for device %s in %s. Assuming 512.", d->sector_size, d->device, buffer);
  717. d->sector_size = 512;
  718. }
  719. }
  720. else collector_error("Cannot read data for sector size for device %s from %s. Assuming 512.", d->device, buffer);
  721. fclose(fpss);
  722. }
  723. else collector_error("Cannot read sector size for device %s from %s. Assuming 512.", d->device, buffer);
  724. }
  725. */
  726. // ------------------------------------------------------------------------
  727. // check if the device is a bcache
  728. struct stat bcache;
  729. snprintfz(buffer, FILENAME_MAX, path_to_sys_block_device_bcache, disk);
  730. if(unlikely(stat(buffer, &bcache) == 0 && (bcache.st_mode & S_IFMT) == S_IFDIR)) {
  731. // we have the 'bcache' directory
  732. d->device_is_bcache = 1;
  733. char buffer2[FILENAME_MAX + 1];
  734. snprintfz(buffer2, FILENAME_MAX, "%s/cache/congested", buffer);
  735. if(access(buffer2, R_OK) == 0)
  736. d->bcache_filename_cache_congested = strdupz(buffer2);
  737. else
  738. collector_error("bcache file '%s' cannot be read.", buffer2);
  739. snprintfz(buffer2, FILENAME_MAX, "%s/readahead", buffer);
  740. if(access(buffer2, R_OK) == 0)
  741. d->bcache_filename_stats_total_cache_readaheads = strdupz(buffer2);
  742. else
  743. collector_error("bcache file '%s' cannot be read.", buffer2);
  744. snprintfz(buffer2, FILENAME_MAX, "%s/cache/cache0/priority_stats", buffer); // only one cache is supported by bcache
  745. if(access(buffer2, R_OK) == 0)
  746. d->bcache_filename_priority_stats = strdupz(buffer2);
  747. else
  748. collector_error("bcache file '%s' cannot be read.", buffer2);
  749. snprintfz(buffer2, FILENAME_MAX, "%s/cache/internal/cache_read_races", buffer);
  750. if(access(buffer2, R_OK) == 0)
  751. d->bcache_filename_cache_read_races = strdupz(buffer2);
  752. else
  753. collector_error("bcache file '%s' cannot be read.", buffer2);
  754. snprintfz(buffer2, FILENAME_MAX, "%s/cache/cache0/io_errors", buffer);
  755. if(access(buffer2, R_OK) == 0)
  756. d->bcache_filename_cache_io_errors = strdupz(buffer2);
  757. else
  758. collector_error("bcache file '%s' cannot be read.", buffer2);
  759. snprintfz(buffer2, FILENAME_MAX, "%s/dirty_data", buffer);
  760. if(access(buffer2, R_OK) == 0)
  761. d->bcache_filename_dirty_data = strdupz(buffer2);
  762. else
  763. collector_error("bcache file '%s' cannot be read.", buffer2);
  764. snprintfz(buffer2, FILENAME_MAX, "%s/writeback_rate", buffer);
  765. if(access(buffer2, R_OK) == 0)
  766. d->bcache_filename_writeback_rate = strdupz(buffer2);
  767. else
  768. collector_error("bcache file '%s' cannot be read.", buffer2);
  769. snprintfz(buffer2, FILENAME_MAX, "%s/cache/cache_available_percent", buffer);
  770. if(access(buffer2, R_OK) == 0)
  771. d->bcache_filename_cache_available_percent = strdupz(buffer2);
  772. else
  773. collector_error("bcache file '%s' cannot be read.", buffer2);
  774. snprintfz(buffer2, FILENAME_MAX, "%s/stats_total/cache_hits", buffer);
  775. if(access(buffer2, R_OK) == 0)
  776. d->bcache_filename_stats_total_cache_hits = strdupz(buffer2);
  777. else
  778. collector_error("bcache file '%s' cannot be read.", buffer2);
  779. snprintfz(buffer2, FILENAME_MAX, "%s/stats_five_minute/cache_hit_ratio", buffer);
  780. if(access(buffer2, R_OK) == 0)
  781. d->bcache_filename_stats_five_minute_cache_hit_ratio = strdupz(buffer2);
  782. else
  783. collector_error("bcache file '%s' cannot be read.", buffer2);
  784. snprintfz(buffer2, FILENAME_MAX, "%s/stats_hour/cache_hit_ratio", buffer);
  785. if(access(buffer2, R_OK) == 0)
  786. d->bcache_filename_stats_hour_cache_hit_ratio = strdupz(buffer2);
  787. else
  788. collector_error("bcache file '%s' cannot be read.", buffer2);
  789. snprintfz(buffer2, FILENAME_MAX, "%s/stats_day/cache_hit_ratio", buffer);
  790. if(access(buffer2, R_OK) == 0)
  791. d->bcache_filename_stats_day_cache_hit_ratio = strdupz(buffer2);
  792. else
  793. collector_error("bcache file '%s' cannot be read.", buffer2);
  794. snprintfz(buffer2, FILENAME_MAX, "%s/stats_total/cache_hit_ratio", buffer);
  795. if(access(buffer2, R_OK) == 0)
  796. d->bcache_filename_stats_total_cache_hit_ratio = strdupz(buffer2);
  797. else
  798. collector_error("bcache file '%s' cannot be read.", buffer2);
  799. snprintfz(buffer2, FILENAME_MAX, "%s/stats_total/cache_misses", buffer);
  800. if(access(buffer2, R_OK) == 0)
  801. d->bcache_filename_stats_total_cache_misses = strdupz(buffer2);
  802. else
  803. collector_error("bcache file '%s' cannot be read.", buffer2);
  804. snprintfz(buffer2, FILENAME_MAX, "%s/stats_total/cache_bypass_hits", buffer);
  805. if(access(buffer2, R_OK) == 0)
  806. d->bcache_filename_stats_total_cache_bypass_hits = strdupz(buffer2);
  807. else
  808. collector_error("bcache file '%s' cannot be read.", buffer2);
  809. snprintfz(buffer2, FILENAME_MAX, "%s/stats_total/cache_bypass_misses", buffer);
  810. if(access(buffer2, R_OK) == 0)
  811. d->bcache_filename_stats_total_cache_bypass_misses = strdupz(buffer2);
  812. else
  813. collector_error("bcache file '%s' cannot be read.", buffer2);
  814. snprintfz(buffer2, FILENAME_MAX, "%s/stats_total/cache_miss_collisions", buffer);
  815. if(access(buffer2, R_OK) == 0)
  816. d->bcache_filename_stats_total_cache_miss_collisions = strdupz(buffer2);
  817. else
  818. collector_error("bcache file '%s' cannot be read.", buffer2);
  819. }
  820. get_disk_config(d);
  821. return d;
  822. }
  823. static const char *get_disk_type_string(int disk_type) {
  824. switch (disk_type) {
  825. case DISK_TYPE_PHYSICAL:
  826. return "physical";
  827. case DISK_TYPE_PARTITION:
  828. return "partition";
  829. case DISK_TYPE_VIRTUAL:
  830. return "virtual";
  831. default:
  832. return "unknown";
  833. }
  834. }
  835. static void add_labels_to_disk(struct disk *d, RRDSET *st) {
  836. rrdlabels_add(st->rrdlabels, "device", d->disk, RRDLABEL_SRC_AUTO);
  837. rrdlabels_add(st->rrdlabels, "mount_point", d->mount_point, RRDLABEL_SRC_AUTO);
  838. rrdlabels_add(st->rrdlabels, "id", d->disk_by_id, RRDLABEL_SRC_AUTO);
  839. rrdlabels_add(st->rrdlabels, "model", d->model, RRDLABEL_SRC_AUTO);
  840. rrdlabels_add(st->rrdlabels, "serial", d->serial, RRDLABEL_SRC_AUTO);
  841. rrdlabels_add(st->rrdlabels, "device_type", get_disk_type_string(d->type), RRDLABEL_SRC_AUTO);
  842. }
  843. static int diskstats_function_block_devices(BUFFER *wb, const char *function __maybe_unused) {
  844. buffer_flush(wb);
  845. wb->content_type = CT_APPLICATION_JSON;
  846. buffer_json_initialize(wb, "\"", "\"", 0, true, BUFFER_JSON_OPTIONS_DEFAULT);
  847. buffer_json_member_add_string(wb, "hostname", rrdhost_hostname(localhost));
  848. buffer_json_member_add_uint64(wb, "status", HTTP_RESP_OK);
  849. buffer_json_member_add_string(wb, "type", "table");
  850. buffer_json_member_add_time_t(wb, "update_every", 1);
  851. buffer_json_member_add_string(wb, "help", RRDFUNCTIONS_DISKSTATS_HELP);
  852. buffer_json_member_add_array(wb, "data");
  853. double max_io_reads = 0.0;
  854. double max_io_writes = 0.0;
  855. double max_io = 0.0;
  856. double max_backlog_time = 0.0;
  857. double max_busy_time = 0.0;
  858. double max_busy_perc = 0.0;
  859. double max_iops_reads = 0.0;
  860. double max_iops_writes = 0.0;
  861. double max_iops_time_reads = 0.0;
  862. double max_iops_time_writes = 0.0;
  863. double max_iops_avg_time_read = 0.0;
  864. double max_iops_avg_time_write = 0.0;
  865. double max_iops_avg_size_read = 0.0;
  866. double max_iops_avg_size_write = 0.0;
  867. netdata_mutex_lock(&diskstats_dev_mutex);
  868. for (struct disk *d = disk_root; d; d = d->next) {
  869. if (unlikely(!d->function_ready))
  870. continue;
  871. buffer_json_add_array_item_array(wb);
  872. buffer_json_add_array_item_string(wb, d->device);
  873. buffer_json_add_array_item_string(wb, get_disk_type_string(d->type));
  874. buffer_json_add_array_item_string(wb, d->disk_by_id);
  875. buffer_json_add_array_item_string(wb, d->model);
  876. buffer_json_add_array_item_string(wb, d->serial);
  877. // IO
  878. double io_reads = rrddim_get_last_stored_value(d->rd_io_reads, &max_io_reads, 1024.0);
  879. double io_writes = rrddim_get_last_stored_value(d->rd_io_writes, &max_io_writes, 1024.0);
  880. double io_total = NAN;
  881. if (!isnan(io_reads) && !isnan(io_writes)) {
  882. io_total = io_reads + io_writes;
  883. max_io = MAX(max_io, io_total);
  884. }
  885. // Backlog and Busy Time
  886. double busy_perc = rrddim_get_last_stored_value(d->rd_util_utilization, &max_busy_perc, 1);
  887. double busy_time = rrddim_get_last_stored_value(d->rd_busy_busy, &max_busy_time, 1);
  888. double backlog_time = rrddim_get_last_stored_value(d->rd_backlog_backlog, &max_backlog_time, 1);
  889. // IOPS
  890. double iops_reads = rrddim_get_last_stored_value(d->rd_ops_reads, &max_iops_reads, 1);
  891. double iops_writes = rrddim_get_last_stored_value(d->rd_ops_writes, &max_iops_writes, 1);
  892. // IO Time
  893. double iops_time_reads = rrddim_get_last_stored_value(d->rd_iotime_reads, &max_iops_time_reads, 1);
  894. double iops_time_writes = rrddim_get_last_stored_value(d->rd_iotime_writes, &max_iops_time_writes, 1);
  895. // Avg IO Time
  896. double iops_avg_time_read = rrddim_get_last_stored_value(d->rd_await_reads, &max_iops_avg_time_read, 1);
  897. double iops_avg_time_write = rrddim_get_last_stored_value(d->rd_await_writes, &max_iops_avg_time_write, 1);
  898. // Avg IO Size
  899. double iops_avg_size_read = rrddim_get_last_stored_value(d->rd_avgsz_reads, &max_iops_avg_size_read, 1);
  900. double iops_avg_size_write = rrddim_get_last_stored_value(d->rd_avgsz_writes, &max_iops_avg_size_write, 1);
  901. buffer_json_add_array_item_double(wb, io_reads);
  902. buffer_json_add_array_item_double(wb, io_writes);
  903. buffer_json_add_array_item_double(wb, io_total);
  904. buffer_json_add_array_item_double(wb, busy_perc);
  905. buffer_json_add_array_item_double(wb, busy_time);
  906. buffer_json_add_array_item_double(wb, backlog_time);
  907. buffer_json_add_array_item_double(wb, iops_reads);
  908. buffer_json_add_array_item_double(wb, iops_writes);
  909. buffer_json_add_array_item_double(wb, iops_time_reads);
  910. buffer_json_add_array_item_double(wb, iops_time_writes);
  911. buffer_json_add_array_item_double(wb, iops_avg_time_read);
  912. buffer_json_add_array_item_double(wb, iops_avg_time_write);
  913. buffer_json_add_array_item_double(wb, iops_avg_size_read);
  914. buffer_json_add_array_item_double(wb, iops_avg_size_write);
  915. // End
  916. buffer_json_array_close(wb);
  917. }
  918. netdata_mutex_unlock(&diskstats_dev_mutex);
  919. buffer_json_array_close(wb); // data
  920. buffer_json_member_add_object(wb, "columns");
  921. {
  922. size_t field_id = 0;
  923. buffer_rrdf_table_add_field(wb, field_id++, "Device", "Device Name",
  924. RRDF_FIELD_TYPE_STRING, RRDF_FIELD_VISUAL_VALUE, RRDF_FIELD_TRANSFORM_NONE,
  925. 0, NULL, NAN, RRDF_FIELD_SORT_ASCENDING, NULL,
  926. RRDF_FIELD_SUMMARY_COUNT, RRDF_FIELD_FILTER_MULTISELECT,
  927. RRDF_FIELD_OPTS_VISIBLE | RRDF_FIELD_OPTS_UNIQUE_KEY | RRDF_FIELD_OPTS_STICKY,
  928. NULL);
  929. buffer_rrdf_table_add_field(wb, field_id++, "Type", "Device Type",
  930. RRDF_FIELD_TYPE_STRING, RRDF_FIELD_VISUAL_VALUE, RRDF_FIELD_TRANSFORM_NONE,
  931. 0, NULL, NAN, RRDF_FIELD_SORT_ASCENDING, NULL,
  932. RRDF_FIELD_SUMMARY_COUNT, RRDF_FIELD_FILTER_MULTISELECT,
  933. RRDF_FIELD_OPTS_UNIQUE_KEY,
  934. NULL);
  935. buffer_rrdf_table_add_field(wb, field_id++, "ID", "Device ID",
  936. RRDF_FIELD_TYPE_STRING, RRDF_FIELD_VISUAL_VALUE, RRDF_FIELD_TRANSFORM_NONE,
  937. 0, NULL, NAN, RRDF_FIELD_SORT_ASCENDING, NULL,
  938. RRDF_FIELD_SUMMARY_COUNT, RRDF_FIELD_FILTER_MULTISELECT,
  939. RRDF_FIELD_OPTS_UNIQUE_KEY,
  940. NULL);
  941. buffer_rrdf_table_add_field(wb, field_id++, "Model", "Device Model",
  942. RRDF_FIELD_TYPE_STRING, RRDF_FIELD_VISUAL_VALUE, RRDF_FIELD_TRANSFORM_NONE,
  943. 0, NULL, NAN, RRDF_FIELD_SORT_ASCENDING, NULL,
  944. RRDF_FIELD_SUMMARY_COUNT, RRDF_FIELD_FILTER_MULTISELECT,
  945. RRDF_FIELD_OPTS_UNIQUE_KEY,
  946. NULL);
  947. buffer_rrdf_table_add_field(wb, field_id++, "Serial", "Device Serial Number",
  948. RRDF_FIELD_TYPE_STRING, RRDF_FIELD_VISUAL_VALUE, RRDF_FIELD_TRANSFORM_NONE,
  949. 0, NULL, NAN, RRDF_FIELD_SORT_ASCENDING, NULL,
  950. RRDF_FIELD_SUMMARY_COUNT, RRDF_FIELD_FILTER_MULTISELECT,
  951. RRDF_FIELD_OPTS_UNIQUE_KEY,
  952. NULL);
  953. buffer_rrdf_table_add_field(wb, field_id++, "Read", "Data Read from Device",
  954. RRDF_FIELD_TYPE_BAR_WITH_INTEGER, RRDF_FIELD_VISUAL_BAR, RRDF_FIELD_TRANSFORM_NUMBER,
  955. 2, "MiB", max_io_reads, RRDF_FIELD_SORT_DESCENDING, NULL,
  956. RRDF_FIELD_SUMMARY_SUM, RRDF_FIELD_FILTER_NONE,
  957. RRDF_FIELD_OPTS_VISIBLE,
  958. NULL);
  959. buffer_rrdf_table_add_field(wb, field_id++, "Written", "Data Writen to Device",
  960. RRDF_FIELD_TYPE_BAR_WITH_INTEGER, RRDF_FIELD_VISUAL_BAR, RRDF_FIELD_TRANSFORM_NUMBER,
  961. 2, "MiB", max_io_writes, RRDF_FIELD_SORT_DESCENDING, NULL,
  962. RRDF_FIELD_SUMMARY_SUM, RRDF_FIELD_FILTER_NONE,
  963. RRDF_FIELD_OPTS_VISIBLE,
  964. NULL);
  965. buffer_rrdf_table_add_field(wb, field_id++, "Total", "Data Transferred to and from Device",
  966. RRDF_FIELD_TYPE_BAR_WITH_INTEGER, RRDF_FIELD_VISUAL_BAR, RRDF_FIELD_TRANSFORM_NUMBER,
  967. 2, "MiB", max_io, RRDF_FIELD_SORT_DESCENDING, NULL,
  968. RRDF_FIELD_SUMMARY_SUM, RRDF_FIELD_FILTER_NONE,
  969. RRDF_FIELD_OPTS_NONE,
  970. NULL);
  971. buffer_rrdf_table_add_field(wb, field_id++, "Busy%", "Disk Busy Percentage",
  972. RRDF_FIELD_TYPE_BAR_WITH_INTEGER, RRDF_FIELD_VISUAL_BAR, RRDF_FIELD_TRANSFORM_NUMBER,
  973. 2, "%", max_busy_perc, RRDF_FIELD_SORT_DESCENDING, NULL,
  974. RRDF_FIELD_SUMMARY_SUM, RRDF_FIELD_FILTER_NONE,
  975. RRDF_FIELD_OPTS_VISIBLE,
  976. NULL);
  977. buffer_rrdf_table_add_field(wb, field_id++, "Busy", "Disk Busy Time",
  978. RRDF_FIELD_TYPE_BAR_WITH_INTEGER, RRDF_FIELD_VISUAL_BAR, RRDF_FIELD_TRANSFORM_NUMBER,
  979. 2, "milliseconds", max_busy_time, RRDF_FIELD_SORT_DESCENDING, NULL,
  980. RRDF_FIELD_SUMMARY_SUM, RRDF_FIELD_FILTER_NONE,
  981. RRDF_FIELD_OPTS_VISIBLE,
  982. NULL);
  983. buffer_rrdf_table_add_field(wb, field_id++, "Backlog", "Disk Backlog",
  984. RRDF_FIELD_TYPE_BAR_WITH_INTEGER, RRDF_FIELD_VISUAL_BAR, RRDF_FIELD_TRANSFORM_NUMBER,
  985. 2, "milliseconds", max_backlog_time, RRDF_FIELD_SORT_DESCENDING, NULL,
  986. RRDF_FIELD_SUMMARY_SUM, RRDF_FIELD_FILTER_NONE,
  987. RRDF_FIELD_OPTS_VISIBLE,
  988. NULL);
  989. buffer_rrdf_table_add_field(wb, field_id++, "Reads", "Completed Read Operations",
  990. RRDF_FIELD_TYPE_BAR_WITH_INTEGER, RRDF_FIELD_VISUAL_BAR, RRDF_FIELD_TRANSFORM_NUMBER,
  991. 2, "ops", max_iops_reads, RRDF_FIELD_SORT_DESCENDING, NULL,
  992. RRDF_FIELD_SUMMARY_SUM, RRDF_FIELD_FILTER_NONE,
  993. RRDF_FIELD_OPTS_VISIBLE,
  994. NULL);
  995. buffer_rrdf_table_add_field(wb, field_id++, "Writes", "Completed Write Operations",
  996. RRDF_FIELD_TYPE_BAR_WITH_INTEGER, RRDF_FIELD_VISUAL_BAR, RRDF_FIELD_TRANSFORM_NUMBER,
  997. 2, "ops", max_iops_writes, RRDF_FIELD_SORT_DESCENDING, NULL,
  998. RRDF_FIELD_SUMMARY_SUM, RRDF_FIELD_FILTER_NONE,
  999. RRDF_FIELD_OPTS_VISIBLE,
  1000. NULL);
  1001. buffer_rrdf_table_add_field(wb, field_id++, "ReadsTime", "Read Operations Time",
  1002. RRDF_FIELD_TYPE_BAR_WITH_INTEGER, RRDF_FIELD_VISUAL_BAR, RRDF_FIELD_TRANSFORM_NUMBER,
  1003. 2, "milliseconds", max_iops_time_reads, RRDF_FIELD_SORT_DESCENDING, NULL,
  1004. RRDF_FIELD_SUMMARY_SUM, RRDF_FIELD_FILTER_NONE,
  1005. RRDF_FIELD_OPTS_VISIBLE,
  1006. NULL);
  1007. buffer_rrdf_table_add_field(wb, field_id++, "WritesTime", "Write Operations Time",
  1008. RRDF_FIELD_TYPE_BAR_WITH_INTEGER, RRDF_FIELD_VISUAL_BAR, RRDF_FIELD_TRANSFORM_NUMBER,
  1009. 2, "milliseconds", max_iops_time_writes, RRDF_FIELD_SORT_DESCENDING, NULL,
  1010. RRDF_FIELD_SUMMARY_SUM, RRDF_FIELD_FILTER_NONE,
  1011. RRDF_FIELD_OPTS_VISIBLE,
  1012. NULL);
  1013. buffer_rrdf_table_add_field(wb, field_id++, "ReadAvgTime", "Average Read Operation Service Time",
  1014. RRDF_FIELD_TYPE_BAR_WITH_INTEGER, RRDF_FIELD_VISUAL_BAR, RRDF_FIELD_TRANSFORM_NUMBER,
  1015. 2, "milliseconds", max_iops_avg_time_read, RRDF_FIELD_SORT_DESCENDING, NULL,
  1016. RRDF_FIELD_SUMMARY_SUM, RRDF_FIELD_FILTER_NONE,
  1017. RRDF_FIELD_OPTS_VISIBLE,
  1018. NULL);
  1019. buffer_rrdf_table_add_field(wb, field_id++, "WriteAvgTime", "Average Write Operation Service Time",
  1020. RRDF_FIELD_TYPE_BAR_WITH_INTEGER, RRDF_FIELD_VISUAL_BAR, RRDF_FIELD_TRANSFORM_NUMBER,
  1021. 2, "milliseconds", max_iops_avg_time_write, RRDF_FIELD_SORT_DESCENDING, NULL,
  1022. RRDF_FIELD_SUMMARY_SUM, RRDF_FIELD_FILTER_NONE,
  1023. RRDF_FIELD_OPTS_VISIBLE,
  1024. NULL);
  1025. buffer_rrdf_table_add_field(wb, field_id++, "ReadAvgSz", "Average Read Operation Size",
  1026. RRDF_FIELD_TYPE_BAR_WITH_INTEGER, RRDF_FIELD_VISUAL_BAR, RRDF_FIELD_TRANSFORM_NUMBER,
  1027. 2, "KiB", max_iops_avg_size_read, RRDF_FIELD_SORT_DESCENDING, NULL,
  1028. RRDF_FIELD_SUMMARY_SUM, RRDF_FIELD_FILTER_NONE,
  1029. RRDF_FIELD_OPTS_VISIBLE,
  1030. NULL);
  1031. buffer_rrdf_table_add_field(wb, field_id++, "WriteAvgSz", "Average Write Operation Size",
  1032. RRDF_FIELD_TYPE_BAR_WITH_INTEGER, RRDF_FIELD_VISUAL_BAR, RRDF_FIELD_TRANSFORM_NUMBER,
  1033. 2, "KiB", max_iops_avg_size_write, RRDF_FIELD_SORT_DESCENDING, NULL,
  1034. RRDF_FIELD_SUMMARY_SUM, RRDF_FIELD_FILTER_NONE,
  1035. RRDF_FIELD_OPTS_VISIBLE,
  1036. NULL);
  1037. }
  1038. buffer_json_object_close(wb); // columns
  1039. buffer_json_member_add_string(wb, "default_sort_column", "Total");
  1040. buffer_json_member_add_object(wb, "charts");
  1041. {
  1042. buffer_json_member_add_object(wb, "IO");
  1043. {
  1044. buffer_json_member_add_string(wb, "name", "IO");
  1045. buffer_json_member_add_string(wb, "type", "stacked-bar");
  1046. buffer_json_member_add_array(wb, "columns");
  1047. {
  1048. buffer_json_add_array_item_string(wb, "Read");
  1049. buffer_json_add_array_item_string(wb, "Written");
  1050. }
  1051. buffer_json_array_close(wb);
  1052. }
  1053. buffer_json_object_close(wb);
  1054. buffer_json_member_add_object(wb, "Busy");
  1055. {
  1056. buffer_json_member_add_string(wb, "name", "Busy");
  1057. buffer_json_member_add_string(wb, "type", "stacked-bar");
  1058. buffer_json_member_add_array(wb, "columns");
  1059. {
  1060. buffer_json_add_array_item_string(wb, "Busy");
  1061. }
  1062. buffer_json_array_close(wb);
  1063. }
  1064. buffer_json_object_close(wb);
  1065. }
  1066. buffer_json_object_close(wb); // charts
  1067. buffer_json_member_add_array(wb, "default_charts");
  1068. {
  1069. buffer_json_add_array_item_array(wb);
  1070. buffer_json_add_array_item_string(wb, "IO");
  1071. buffer_json_add_array_item_string(wb, "Device");
  1072. buffer_json_array_close(wb);
  1073. buffer_json_add_array_item_array(wb);
  1074. buffer_json_add_array_item_string(wb, "Busy");
  1075. buffer_json_add_array_item_string(wb, "Device");
  1076. buffer_json_array_close(wb);
  1077. }
  1078. buffer_json_array_close(wb);
  1079. buffer_json_member_add_object(wb, "group_by");
  1080. {
  1081. buffer_json_member_add_object(wb, "Type");
  1082. {
  1083. buffer_json_member_add_string(wb, "name", "Type");
  1084. buffer_json_member_add_array(wb, "columns");
  1085. {
  1086. buffer_json_add_array_item_string(wb, "Type");
  1087. }
  1088. buffer_json_array_close(wb);
  1089. }
  1090. buffer_json_object_close(wb);
  1091. }
  1092. buffer_json_object_close(wb); // group_by
  1093. buffer_json_member_add_time_t(wb, "expires", now_realtime_sec() + 1);
  1094. buffer_json_finalize(wb);
  1095. return HTTP_RESP_OK;
  1096. }
  1097. static void diskstats_cleanup_disks() {
  1098. struct disk *d = disk_root, *last = NULL;
  1099. while (d) {
  1100. if (unlikely(global_cleanup_removed_disks && !d->updated)) {
  1101. struct disk *t = d;
  1102. rrdset_obsolete_and_pointer_null(d->st_avgsz);
  1103. rrdset_obsolete_and_pointer_null(d->st_ext_avgsz);
  1104. rrdset_obsolete_and_pointer_null(d->st_await);
  1105. rrdset_obsolete_and_pointer_null(d->st_ext_await);
  1106. rrdset_obsolete_and_pointer_null(d->st_backlog);
  1107. rrdset_obsolete_and_pointer_null(d->st_busy);
  1108. rrdset_obsolete_and_pointer_null(d->st_io);
  1109. rrdset_obsolete_and_pointer_null(d->st_ext_io);
  1110. rrdset_obsolete_and_pointer_null(d->st_iotime);
  1111. rrdset_obsolete_and_pointer_null(d->st_ext_iotime);
  1112. rrdset_obsolete_and_pointer_null(d->st_mops);
  1113. rrdset_obsolete_and_pointer_null(d->st_ext_mops);
  1114. rrdset_obsolete_and_pointer_null(d->st_ops);
  1115. rrdset_obsolete_and_pointer_null(d->st_ext_ops);
  1116. rrdset_obsolete_and_pointer_null(d->st_qops);
  1117. rrdset_obsolete_and_pointer_null(d->st_svctm);
  1118. rrdset_obsolete_and_pointer_null(d->st_util);
  1119. rrdset_obsolete_and_pointer_null(d->st_bcache);
  1120. rrdset_obsolete_and_pointer_null(d->st_bcache_bypass);
  1121. rrdset_obsolete_and_pointer_null(d->st_bcache_rates);
  1122. rrdset_obsolete_and_pointer_null(d->st_bcache_size);
  1123. rrdset_obsolete_and_pointer_null(d->st_bcache_usage);
  1124. rrdset_obsolete_and_pointer_null(d->st_bcache_hit_ratio);
  1125. rrdset_obsolete_and_pointer_null(d->st_bcache_cache_allocations);
  1126. rrdset_obsolete_and_pointer_null(d->st_bcache_cache_read_races);
  1127. if (d == disk_root) {
  1128. disk_root = d = d->next;
  1129. last = NULL;
  1130. } else if (last) {
  1131. last->next = d = d->next;
  1132. }
  1133. freez(t->bcache_filename_dirty_data);
  1134. freez(t->bcache_filename_writeback_rate);
  1135. freez(t->bcache_filename_cache_congested);
  1136. freez(t->bcache_filename_cache_available_percent);
  1137. freez(t->bcache_filename_stats_five_minute_cache_hit_ratio);
  1138. freez(t->bcache_filename_stats_hour_cache_hit_ratio);
  1139. freez(t->bcache_filename_stats_day_cache_hit_ratio);
  1140. freez(t->bcache_filename_stats_total_cache_hit_ratio);
  1141. freez(t->bcache_filename_stats_total_cache_hits);
  1142. freez(t->bcache_filename_stats_total_cache_misses);
  1143. freez(t->bcache_filename_stats_total_cache_miss_collisions);
  1144. freez(t->bcache_filename_stats_total_cache_bypass_hits);
  1145. freez(t->bcache_filename_stats_total_cache_bypass_misses);
  1146. freez(t->bcache_filename_stats_total_cache_readaheads);
  1147. freez(t->bcache_filename_cache_read_races);
  1148. freez(t->bcache_filename_cache_io_errors);
  1149. freez(t->bcache_filename_priority_stats);
  1150. freez(t->disk);
  1151. freez(t->device);
  1152. freez(t->disk_by_id);
  1153. freez(t->model);
  1154. freez(t->serial);
  1155. freez(t->mount_point);
  1156. freez(t->chart_id);
  1157. freez(t);
  1158. } else {
  1159. d->updated = 0;
  1160. last = d;
  1161. d = d->next;
  1162. }
  1163. }
  1164. }
  1165. int do_proc_diskstats(int update_every, usec_t dt) {
  1166. static procfile *ff = NULL;
  1167. if(unlikely(!globals_initialized)) {
  1168. globals_initialized = 1;
  1169. global_enable_new_disks_detected_at_runtime = config_get_boolean(CONFIG_SECTION_PLUGIN_PROC_DISKSTATS, "enable new disks detected at runtime", global_enable_new_disks_detected_at_runtime);
  1170. global_enable_performance_for_physical_disks = config_get_boolean_ondemand(CONFIG_SECTION_PLUGIN_PROC_DISKSTATS, "performance metrics for physical disks", global_enable_performance_for_physical_disks);
  1171. global_enable_performance_for_virtual_disks = config_get_boolean_ondemand(CONFIG_SECTION_PLUGIN_PROC_DISKSTATS, "performance metrics for virtual disks", global_enable_performance_for_virtual_disks);
  1172. global_enable_performance_for_partitions = config_get_boolean_ondemand(CONFIG_SECTION_PLUGIN_PROC_DISKSTATS, "performance metrics for partitions", global_enable_performance_for_partitions);
  1173. global_do_io = config_get_boolean_ondemand(CONFIG_SECTION_PLUGIN_PROC_DISKSTATS, "bandwidth for all disks", global_do_io);
  1174. global_do_ops = config_get_boolean_ondemand(CONFIG_SECTION_PLUGIN_PROC_DISKSTATS, "operations for all disks", global_do_ops);
  1175. global_do_mops = config_get_boolean_ondemand(CONFIG_SECTION_PLUGIN_PROC_DISKSTATS, "merged operations for all disks", global_do_mops);
  1176. global_do_iotime = config_get_boolean_ondemand(CONFIG_SECTION_PLUGIN_PROC_DISKSTATS, "i/o time for all disks", global_do_iotime);
  1177. global_do_qops = config_get_boolean_ondemand(CONFIG_SECTION_PLUGIN_PROC_DISKSTATS, "queued operations for all disks", global_do_qops);
  1178. global_do_util = config_get_boolean_ondemand(CONFIG_SECTION_PLUGIN_PROC_DISKSTATS, "utilization percentage for all disks", global_do_util);
  1179. global_do_ext = config_get_boolean_ondemand(CONFIG_SECTION_PLUGIN_PROC_DISKSTATS, "extended operations for all disks", global_do_ext);
  1180. global_do_backlog = config_get_boolean_ondemand(CONFIG_SECTION_PLUGIN_PROC_DISKSTATS, "backlog for all disks", global_do_backlog);
  1181. global_do_bcache = config_get_boolean_ondemand(CONFIG_SECTION_PLUGIN_PROC_DISKSTATS, "bcache for all disks", global_do_bcache);
  1182. global_bcache_priority_stats_update_every = (int)config_get_number(CONFIG_SECTION_PLUGIN_PROC_DISKSTATS, "bcache priority stats update every", global_bcache_priority_stats_update_every);
  1183. global_cleanup_removed_disks = config_get_boolean(CONFIG_SECTION_PLUGIN_PROC_DISKSTATS, "remove charts of removed disks" , global_cleanup_removed_disks);
  1184. char buffer[FILENAME_MAX + 1];
  1185. snprintfz(buffer, FILENAME_MAX, "%s%s", netdata_configured_host_prefix, "/sys/block/%s");
  1186. path_to_sys_block_device = config_get(CONFIG_SECTION_PLUGIN_PROC_DISKSTATS, "path to get block device", buffer);
  1187. snprintfz(buffer, FILENAME_MAX, "%s%s", netdata_configured_host_prefix, "/sys/block/%s/bcache");
  1188. path_to_sys_block_device_bcache = config_get(CONFIG_SECTION_PLUGIN_PROC_DISKSTATS, "path to get block device bcache", buffer);
  1189. snprintfz(buffer, FILENAME_MAX, "%s%s", netdata_configured_host_prefix, "/sys/devices/virtual/block/%s");
  1190. path_to_sys_devices_virtual_block_device = config_get(CONFIG_SECTION_PLUGIN_PROC_DISKSTATS, "path to get virtual block device", buffer);
  1191. snprintfz(buffer, FILENAME_MAX, "%s%s", netdata_configured_host_prefix, "/sys/dev/block/%lu:%lu/%s");
  1192. path_to_sys_dev_block_major_minor_string = config_get(CONFIG_SECTION_PLUGIN_PROC_DISKSTATS, "path to get block device infos", buffer);
  1193. //snprintfz(buffer, FILENAME_MAX, "%s%s", netdata_configured_host_prefix, "/sys/block/%s/queue/hw_sector_size");
  1194. //path_to_get_hw_sector_size = config_get(CONFIG_SECTION_PLUGIN_PROC_DISKSTATS, "path to get h/w sector size", buffer);
  1195. //snprintfz(buffer, FILENAME_MAX, "%s%s", netdata_configured_host_prefix, "/sys/dev/block/%lu:%lu/subsystem/%s/../queue/hw_sector_size");
  1196. //path_to_get_hw_sector_size_partitions = config_get(CONFIG_SECTION_PLUGIN_PROC_DISKSTATS, "path to get h/w sector size for partitions", buffer);
  1197. snprintfz(buffer, FILENAME_MAX, "%s/dev/mapper", netdata_configured_host_prefix);
  1198. path_to_device_mapper = config_get(CONFIG_SECTION_PLUGIN_PROC_DISKSTATS, "path to device mapper", buffer);
  1199. snprintfz(buffer, FILENAME_MAX, "%s/dev/disk", netdata_configured_host_prefix);
  1200. path_to_dev_disk = config_get(CONFIG_SECTION_PLUGIN_PROC_DISKSTATS, "path to /dev/disk", buffer);
  1201. snprintfz(buffer, FILENAME_MAX, "%s/sys/block", netdata_configured_host_prefix);
  1202. path_to_sys_block = config_get(CONFIG_SECTION_PLUGIN_PROC_DISKSTATS, "path to /sys/block", buffer);
  1203. snprintfz(buffer, FILENAME_MAX, "%s/dev/disk/by-label", netdata_configured_host_prefix);
  1204. path_to_device_label = config_get(CONFIG_SECTION_PLUGIN_PROC_DISKSTATS, "path to /dev/disk/by-label", buffer);
  1205. snprintfz(buffer, FILENAME_MAX, "%s/dev/disk/by-id", netdata_configured_host_prefix);
  1206. path_to_device_id = config_get(CONFIG_SECTION_PLUGIN_PROC_DISKSTATS, "path to /dev/disk/by-id", buffer);
  1207. snprintfz(buffer, FILENAME_MAX, "%s/dev/vx/dsk", netdata_configured_host_prefix);
  1208. path_to_veritas_volume_groups = config_get(CONFIG_SECTION_PLUGIN_PROC_DISKSTATS, "path to /dev/vx/dsk", buffer);
  1209. name_disks_by_id = config_get_boolean(CONFIG_SECTION_PLUGIN_PROC_DISKSTATS, "name disks by id", name_disks_by_id);
  1210. preferred_ids = simple_pattern_create(
  1211. config_get(CONFIG_SECTION_PLUGIN_PROC_DISKSTATS, "preferred disk ids", DEFAULT_PREFERRED_IDS), NULL,
  1212. SIMPLE_PATTERN_EXACT, true);
  1213. excluded_disks = simple_pattern_create(
  1214. config_get(CONFIG_SECTION_PLUGIN_PROC_DISKSTATS, "exclude disks", DEFAULT_EXCLUDED_DISKS), NULL,
  1215. SIMPLE_PATTERN_EXACT, true);
  1216. rrd_function_add_inline(localhost, NULL, "block-devices", 10,
  1217. RRDFUNCTIONS_PRIORITY_DEFAULT, RRDFUNCTIONS_DISKSTATS_HELP,
  1218. "top", HTTP_ACCESS_ANY, diskstats_function_block_devices);
  1219. }
  1220. // --------------------------------------------------------------------------
  1221. if(unlikely(!ff)) {
  1222. char filename[FILENAME_MAX + 1];
  1223. snprintfz(filename, FILENAME_MAX, "%s%s", netdata_configured_host_prefix, "/proc/diskstats");
  1224. ff = procfile_open(config_get(CONFIG_SECTION_PLUGIN_PROC_DISKSTATS, "filename to monitor", filename), " \t", PROCFILE_FLAG_DEFAULT);
  1225. }
  1226. if(unlikely(!ff)) return 0;
  1227. ff = procfile_readall(ff);
  1228. if(unlikely(!ff)) return 0; // we return 0, so that we will retry to open it next time
  1229. size_t lines = procfile_lines(ff), l;
  1230. collected_number system_read_kb = 0, system_write_kb = 0;
  1231. int do_dc_stats = 0, do_fl_stats = 0;
  1232. netdata_mutex_lock(&diskstats_dev_mutex);
  1233. for(l = 0; l < lines ;l++) {
  1234. // --------------------------------------------------------------------------
  1235. // Read parameters
  1236. char *disk;
  1237. unsigned long major = 0, minor = 0;
  1238. collected_number reads = 0, mreads = 0, readsectors = 0, readms = 0,
  1239. writes = 0, mwrites = 0, writesectors = 0, writems = 0,
  1240. queued_ios = 0, busy_ms = 0, backlog_ms = 0,
  1241. discards = 0, mdiscards = 0, discardsectors = 0, discardms = 0,
  1242. flushes = 0, flushms = 0;
  1243. collected_number last_reads = 0, last_readsectors = 0, last_readms = 0,
  1244. last_writes = 0, last_writesectors = 0, last_writems = 0,
  1245. last_busy_ms = 0,
  1246. last_discards = 0, last_discardsectors = 0, last_discardms = 0,
  1247. last_flushes = 0, last_flushms = 0;
  1248. size_t words = procfile_linewords(ff, l);
  1249. if(unlikely(words < 14)) continue;
  1250. major = str2ul(procfile_lineword(ff, l, 0));
  1251. minor = str2ul(procfile_lineword(ff, l, 1));
  1252. disk = procfile_lineword(ff, l, 2);
  1253. // # of reads completed # of writes completed
  1254. // This is the total number of reads or writes completed successfully.
  1255. reads = str2ull(procfile_lineword(ff, l, 3), NULL); // rd_ios
  1256. writes = str2ull(procfile_lineword(ff, l, 7), NULL); // wr_ios
  1257. // # of reads merged # of writes merged
  1258. // Reads and writes which are adjacent to each other may be merged for
  1259. // efficiency. Thus two 4K reads may become one 8K read before it is
  1260. // ultimately handed to the disk, and so it will be counted (and queued)
  1261. mreads = str2ull(procfile_lineword(ff, l, 4), NULL); // rd_merges_or_rd_sec
  1262. mwrites = str2ull(procfile_lineword(ff, l, 8), NULL); // wr_merges
  1263. // # of sectors read # of sectors written
  1264. // This is the total number of sectors read or written successfully.
  1265. readsectors = str2ull(procfile_lineword(ff, l, 5), NULL); // rd_sec_or_wr_ios
  1266. writesectors = str2ull(procfile_lineword(ff, l, 9), NULL); // wr_sec
  1267. // # of milliseconds spent reading # of milliseconds spent writing
  1268. // This is the total number of milliseconds spent by all reads or writes (as
  1269. // measured from __make_request() to end_that_request_last()).
  1270. readms = str2ull(procfile_lineword(ff, l, 6), NULL); // rd_ticks_or_wr_sec
  1271. writems = str2ull(procfile_lineword(ff, l, 10), NULL); // wr_ticks
  1272. // # of I/Os currently in progress
  1273. // The only field that should go to zero. Incremented as requests are
  1274. // given to appropriate struct request_queue and decremented as they finish.
  1275. queued_ios = str2ull(procfile_lineword(ff, l, 11), NULL); // ios_pgr
  1276. // # of milliseconds spent doing I/Os
  1277. // This field increases so long as field queued_ios is nonzero.
  1278. busy_ms = str2ull(procfile_lineword(ff, l, 12), NULL); // tot_ticks
  1279. // weighted # of milliseconds spent doing I/Os
  1280. // This field is incremented at each I/O start, I/O completion, I/O
  1281. // merge, or read of these stats by the number of I/Os in progress
  1282. // (field queued_ios) times the number of milliseconds spent doing I/O since the
  1283. // last update of this field. This can provide an easy measure of both
  1284. // I/O completion time and the backlog that may be accumulating.
  1285. backlog_ms = str2ull(procfile_lineword(ff, l, 13), NULL); // rq_ticks
  1286. if (unlikely(words > 13)) {
  1287. do_dc_stats = 1;
  1288. // # of discards completed
  1289. // This is the total number of discards completed successfully.
  1290. discards = str2ull(procfile_lineword(ff, l, 14), NULL); // dc_ios
  1291. // # of discards merged
  1292. // See the description of mreads/mwrites
  1293. mdiscards = str2ull(procfile_lineword(ff, l, 15), NULL); // dc_merges
  1294. // # of sectors discarded
  1295. // This is the total number of sectors discarded successfully.
  1296. discardsectors = str2ull(procfile_lineword(ff, l, 16), NULL); // dc_sec
  1297. // # of milliseconds spent discarding
  1298. // This is the total number of milliseconds spent by all discards (as
  1299. // measured from __make_request() to end_that_request_last()).
  1300. discardms = str2ull(procfile_lineword(ff, l, 17), NULL); // dc_ticks
  1301. }
  1302. if (unlikely(words > 17)) {
  1303. do_fl_stats = 1;
  1304. // number of flush I/Os processed
  1305. // These values increment when an flush I/O request completes.
  1306. // Block layer combines flush requests and executes at most one at a time.
  1307. // This counts flush requests executed by disk. Not tracked for partitions.
  1308. flushes = str2ull(procfile_lineword(ff, l, 18), NULL); // fl_ios
  1309. // total wait time for flush requests
  1310. flushms = str2ull(procfile_lineword(ff, l, 19), NULL); // fl_ticks
  1311. }
  1312. // --------------------------------------------------------------------------
  1313. // get a disk structure for the disk
  1314. struct disk *d = get_disk(major, minor, disk);
  1315. d->updated = 1;
  1316. // --------------------------------------------------------------------------
  1317. // count the global system disk I/O of physical disks
  1318. if(unlikely(d->type == DISK_TYPE_PHYSICAL)) {
  1319. system_read_kb += readsectors * d->sector_size / 1024;
  1320. system_write_kb += writesectors * d->sector_size / 1024;
  1321. }
  1322. // --------------------------------------------------------------------------
  1323. // Set its family based on mount point
  1324. char *family = d->mount_point;
  1325. if(!family) family = d->disk;
  1326. // --------------------------------------------------------------------------
  1327. // Do performance metrics
  1328. if(d->do_io == CONFIG_BOOLEAN_YES || (d->do_io == CONFIG_BOOLEAN_AUTO &&
  1329. (readsectors || writesectors || discardsectors ||
  1330. netdata_zero_metrics_enabled == CONFIG_BOOLEAN_YES))) {
  1331. d->do_io = CONFIG_BOOLEAN_YES;
  1332. if(unlikely(!d->st_io)) {
  1333. d->st_io = rrdset_create_localhost(
  1334. RRD_TYPE_DISK
  1335. , d->chart_id
  1336. , d->disk
  1337. , family
  1338. , "disk.io"
  1339. , "Disk I/O Bandwidth"
  1340. , "KiB/s"
  1341. , PLUGIN_PROC_NAME
  1342. , PLUGIN_PROC_MODULE_DISKSTATS_NAME
  1343. , NETDATA_CHART_PRIO_DISK_IO
  1344. , update_every
  1345. , RRDSET_TYPE_AREA
  1346. );
  1347. d->rd_io_reads = rrddim_add(d->st_io, "reads", NULL, d->sector_size, 1024, RRD_ALGORITHM_INCREMENTAL);
  1348. d->rd_io_writes = rrddim_add(d->st_io, "writes", NULL, d->sector_size * -1, 1024, RRD_ALGORITHM_INCREMENTAL);
  1349. add_labels_to_disk(d, d->st_io);
  1350. }
  1351. last_readsectors = rrddim_set_by_pointer(d->st_io, d->rd_io_reads, readsectors);
  1352. last_writesectors = rrddim_set_by_pointer(d->st_io, d->rd_io_writes, writesectors);
  1353. rrdset_done(d->st_io);
  1354. }
  1355. if (do_dc_stats && d->do_io == CONFIG_BOOLEAN_YES && d->do_ext != CONFIG_BOOLEAN_NO) {
  1356. if (unlikely(!d->st_ext_io)) {
  1357. d->st_ext_io = rrdset_create_localhost(
  1358. "disk_ext"
  1359. , d->chart_id
  1360. , d->disk
  1361. , family
  1362. , "disk_ext.io"
  1363. , "Amount of Discarded Data"
  1364. , "KiB/s"
  1365. , PLUGIN_PROC_NAME
  1366. , PLUGIN_PROC_MODULE_DISKSTATS_NAME
  1367. , NETDATA_CHART_PRIO_DISK_IO + 1
  1368. , update_every
  1369. , RRDSET_TYPE_AREA
  1370. );
  1371. d->rd_io_discards = rrddim_add(d->st_ext_io, "discards", NULL, d->sector_size, 1024, RRD_ALGORITHM_INCREMENTAL);
  1372. add_labels_to_disk(d, d->st_ext_io);
  1373. }
  1374. last_discardsectors = rrddim_set_by_pointer(d->st_ext_io, d->rd_io_discards, discardsectors);
  1375. rrdset_done(d->st_ext_io);
  1376. }
  1377. if(d->do_ops == CONFIG_BOOLEAN_YES || (d->do_ops == CONFIG_BOOLEAN_AUTO &&
  1378. (reads || writes || discards || flushes ||
  1379. netdata_zero_metrics_enabled == CONFIG_BOOLEAN_YES))) {
  1380. d->do_ops = CONFIG_BOOLEAN_YES;
  1381. if(unlikely(!d->st_ops)) {
  1382. d->st_ops = rrdset_create_localhost(
  1383. "disk_ops"
  1384. , d->chart_id
  1385. , d->disk
  1386. , family
  1387. , "disk.ops"
  1388. , "Disk Completed I/O Operations"
  1389. , "operations/s"
  1390. , PLUGIN_PROC_NAME
  1391. , PLUGIN_PROC_MODULE_DISKSTATS_NAME
  1392. , NETDATA_CHART_PRIO_DISK_OPS
  1393. , update_every
  1394. , RRDSET_TYPE_LINE
  1395. );
  1396. rrdset_flag_set(d->st_ops, RRDSET_FLAG_DETAIL);
  1397. d->rd_ops_reads = rrddim_add(d->st_ops, "reads", NULL, 1, 1, RRD_ALGORITHM_INCREMENTAL);
  1398. d->rd_ops_writes = rrddim_add(d->st_ops, "writes", NULL, -1, 1, RRD_ALGORITHM_INCREMENTAL);
  1399. add_labels_to_disk(d, d->st_ops);
  1400. }
  1401. last_reads = rrddim_set_by_pointer(d->st_ops, d->rd_ops_reads, reads);
  1402. last_writes = rrddim_set_by_pointer(d->st_ops, d->rd_ops_writes, writes);
  1403. rrdset_done(d->st_ops);
  1404. }
  1405. if (do_dc_stats && d->do_ops == CONFIG_BOOLEAN_YES && d->do_ext != CONFIG_BOOLEAN_NO) {
  1406. if (unlikely(!d->st_ext_ops)) {
  1407. d->st_ext_ops = rrdset_create_localhost(
  1408. "disk_ext_ops"
  1409. , d->chart_id
  1410. , d->disk
  1411. , family
  1412. , "disk_ext.ops"
  1413. , "Disk Completed Extended I/O Operations"
  1414. , "operations/s"
  1415. , PLUGIN_PROC_NAME
  1416. , PLUGIN_PROC_MODULE_DISKSTATS_NAME
  1417. , NETDATA_CHART_PRIO_DISK_OPS + 1
  1418. , update_every
  1419. , RRDSET_TYPE_LINE
  1420. );
  1421. rrdset_flag_set(d->st_ext_ops, RRDSET_FLAG_DETAIL);
  1422. d->rd_ops_discards = rrddim_add(d->st_ext_ops, "discards", NULL, 1, 1, RRD_ALGORITHM_INCREMENTAL);
  1423. if (do_fl_stats)
  1424. d->rd_ops_flushes = rrddim_add(d->st_ext_ops, "flushes", NULL, 1, 1, RRD_ALGORITHM_INCREMENTAL);
  1425. add_labels_to_disk(d, d->st_ext_ops);
  1426. }
  1427. last_discards = rrddim_set_by_pointer(d->st_ext_ops, d->rd_ops_discards, discards);
  1428. if (do_fl_stats)
  1429. last_flushes = rrddim_set_by_pointer(d->st_ext_ops, d->rd_ops_flushes, flushes);
  1430. rrdset_done(d->st_ext_ops);
  1431. }
  1432. if(d->do_qops == CONFIG_BOOLEAN_YES || (d->do_qops == CONFIG_BOOLEAN_AUTO &&
  1433. (queued_ios || netdata_zero_metrics_enabled == CONFIG_BOOLEAN_YES))) {
  1434. d->do_qops = CONFIG_BOOLEAN_YES;
  1435. if(unlikely(!d->st_qops)) {
  1436. d->st_qops = rrdset_create_localhost(
  1437. "disk_qops"
  1438. , d->chart_id
  1439. , d->disk
  1440. , family
  1441. , "disk.qops"
  1442. , "Disk Current I/O Operations"
  1443. , "operations"
  1444. , PLUGIN_PROC_NAME
  1445. , PLUGIN_PROC_MODULE_DISKSTATS_NAME
  1446. , NETDATA_CHART_PRIO_DISK_QOPS
  1447. , update_every
  1448. , RRDSET_TYPE_LINE
  1449. );
  1450. rrdset_flag_set(d->st_qops, RRDSET_FLAG_DETAIL);
  1451. d->rd_qops_operations = rrddim_add(d->st_qops, "operations", NULL, 1, 1, RRD_ALGORITHM_ABSOLUTE);
  1452. add_labels_to_disk(d, d->st_qops);
  1453. }
  1454. rrddim_set_by_pointer(d->st_qops, d->rd_qops_operations, queued_ios);
  1455. rrdset_done(d->st_qops);
  1456. }
  1457. if(d->do_backlog == CONFIG_BOOLEAN_YES || (d->do_backlog == CONFIG_BOOLEAN_AUTO &&
  1458. (backlog_ms || netdata_zero_metrics_enabled == CONFIG_BOOLEAN_YES))) {
  1459. d->do_backlog = CONFIG_BOOLEAN_YES;
  1460. if(unlikely(!d->st_backlog)) {
  1461. d->st_backlog = rrdset_create_localhost(
  1462. "disk_backlog"
  1463. , d->chart_id
  1464. , d->disk
  1465. , family
  1466. , "disk.backlog"
  1467. , "Disk Backlog"
  1468. , "milliseconds"
  1469. , PLUGIN_PROC_NAME
  1470. , PLUGIN_PROC_MODULE_DISKSTATS_NAME
  1471. , NETDATA_CHART_PRIO_DISK_BACKLOG
  1472. , update_every
  1473. , RRDSET_TYPE_AREA
  1474. );
  1475. rrdset_flag_set(d->st_backlog, RRDSET_FLAG_DETAIL);
  1476. d->rd_backlog_backlog = rrddim_add(d->st_backlog, "backlog", NULL, 1, 1, RRD_ALGORITHM_INCREMENTAL);
  1477. add_labels_to_disk(d, d->st_backlog);
  1478. }
  1479. rrddim_set_by_pointer(d->st_backlog, d->rd_backlog_backlog, backlog_ms);
  1480. rrdset_done(d->st_backlog);
  1481. }
  1482. if(d->do_util == CONFIG_BOOLEAN_YES || (d->do_util == CONFIG_BOOLEAN_AUTO &&
  1483. (busy_ms || netdata_zero_metrics_enabled == CONFIG_BOOLEAN_YES))) {
  1484. d->do_util = CONFIG_BOOLEAN_YES;
  1485. if(unlikely(!d->st_busy)) {
  1486. d->st_busy = rrdset_create_localhost(
  1487. "disk_busy"
  1488. , d->chart_id
  1489. , d->disk
  1490. , family
  1491. , "disk.busy"
  1492. , "Disk Busy Time"
  1493. , "milliseconds"
  1494. , PLUGIN_PROC_NAME
  1495. , PLUGIN_PROC_MODULE_DISKSTATS_NAME
  1496. , NETDATA_CHART_PRIO_DISK_BUSY
  1497. , update_every
  1498. , RRDSET_TYPE_AREA
  1499. );
  1500. rrdset_flag_set(d->st_busy, RRDSET_FLAG_DETAIL);
  1501. d->rd_busy_busy = rrddim_add(d->st_busy, "busy", NULL, 1, 1, RRD_ALGORITHM_INCREMENTAL);
  1502. add_labels_to_disk(d, d->st_busy);
  1503. }
  1504. last_busy_ms = rrddim_set_by_pointer(d->st_busy, d->rd_busy_busy, busy_ms);
  1505. rrdset_done(d->st_busy);
  1506. if(unlikely(!d->st_util)) {
  1507. d->st_util = rrdset_create_localhost(
  1508. "disk_util"
  1509. , d->chart_id
  1510. , d->disk
  1511. , family
  1512. , "disk.util"
  1513. , "Disk Utilization Time"
  1514. , "% of time working"
  1515. , PLUGIN_PROC_NAME
  1516. , PLUGIN_PROC_MODULE_DISKSTATS_NAME
  1517. , NETDATA_CHART_PRIO_DISK_UTIL
  1518. , update_every
  1519. , RRDSET_TYPE_AREA
  1520. );
  1521. rrdset_flag_set(d->st_util, RRDSET_FLAG_DETAIL);
  1522. d->rd_util_utilization = rrddim_add(d->st_util, "utilization", NULL, 1, 1, RRD_ALGORITHM_ABSOLUTE);
  1523. add_labels_to_disk(d, d->st_util);
  1524. }
  1525. collected_number disk_utilization = (busy_ms - last_busy_ms) / (10 * update_every);
  1526. if (disk_utilization > 100)
  1527. disk_utilization = 100;
  1528. rrddim_set_by_pointer(d->st_util, d->rd_util_utilization, disk_utilization);
  1529. rrdset_done(d->st_util);
  1530. }
  1531. if(d->do_mops == CONFIG_BOOLEAN_YES || (d->do_mops == CONFIG_BOOLEAN_AUTO &&
  1532. (mreads || mwrites || mdiscards ||
  1533. netdata_zero_metrics_enabled == CONFIG_BOOLEAN_YES))) {
  1534. d->do_mops = CONFIG_BOOLEAN_YES;
  1535. if(unlikely(!d->st_mops)) {
  1536. d->st_mops = rrdset_create_localhost(
  1537. "disk_mops"
  1538. , d->chart_id
  1539. , d->disk
  1540. , family
  1541. , "disk.mops"
  1542. , "Disk Merged Operations"
  1543. , "merged operations/s"
  1544. , PLUGIN_PROC_NAME
  1545. , PLUGIN_PROC_MODULE_DISKSTATS_NAME
  1546. , NETDATA_CHART_PRIO_DISK_MOPS
  1547. , update_every
  1548. , RRDSET_TYPE_LINE
  1549. );
  1550. rrdset_flag_set(d->st_mops, RRDSET_FLAG_DETAIL);
  1551. d->rd_mops_reads = rrddim_add(d->st_mops, "reads", NULL, 1, 1, RRD_ALGORITHM_INCREMENTAL);
  1552. d->rd_mops_writes = rrddim_add(d->st_mops, "writes", NULL, -1, 1, RRD_ALGORITHM_INCREMENTAL);
  1553. add_labels_to_disk(d, d->st_mops);
  1554. }
  1555. rrddim_set_by_pointer(d->st_mops, d->rd_mops_reads, mreads);
  1556. rrddim_set_by_pointer(d->st_mops, d->rd_mops_writes, mwrites);
  1557. rrdset_done(d->st_mops);
  1558. }
  1559. if(do_dc_stats && d->do_mops == CONFIG_BOOLEAN_YES && d->do_ext != CONFIG_BOOLEAN_NO) {
  1560. d->do_mops = CONFIG_BOOLEAN_YES;
  1561. if(unlikely(!d->st_ext_mops)) {
  1562. d->st_ext_mops = rrdset_create_localhost(
  1563. "disk_ext_mops"
  1564. , d->chart_id
  1565. , d->disk
  1566. , family
  1567. , "disk_ext.mops"
  1568. , "Disk Merged Discard Operations"
  1569. , "merged operations/s"
  1570. , PLUGIN_PROC_NAME
  1571. , PLUGIN_PROC_MODULE_DISKSTATS_NAME
  1572. , NETDATA_CHART_PRIO_DISK_MOPS + 1
  1573. , update_every
  1574. , RRDSET_TYPE_LINE
  1575. );
  1576. rrdset_flag_set(d->st_ext_mops, RRDSET_FLAG_DETAIL);
  1577. d->rd_mops_discards = rrddim_add(d->st_ext_mops, "discards", NULL, 1, 1, RRD_ALGORITHM_INCREMENTAL);
  1578. add_labels_to_disk(d, d->st_ext_mops);
  1579. }
  1580. rrddim_set_by_pointer(d->st_ext_mops, d->rd_mops_discards, mdiscards);
  1581. rrdset_done(d->st_ext_mops);
  1582. }
  1583. if(d->do_iotime == CONFIG_BOOLEAN_YES || (d->do_iotime == CONFIG_BOOLEAN_AUTO &&
  1584. (readms || writems || discardms || flushms || netdata_zero_metrics_enabled == CONFIG_BOOLEAN_YES))) {
  1585. d->do_iotime = CONFIG_BOOLEAN_YES;
  1586. if(unlikely(!d->st_iotime)) {
  1587. d->st_iotime = rrdset_create_localhost(
  1588. "disk_iotime"
  1589. , d->chart_id
  1590. , d->disk
  1591. , family
  1592. , "disk.iotime"
  1593. , "Disk Total I/O Time"
  1594. , "milliseconds/s"
  1595. , PLUGIN_PROC_NAME
  1596. , PLUGIN_PROC_MODULE_DISKSTATS_NAME
  1597. , NETDATA_CHART_PRIO_DISK_IOTIME
  1598. , update_every
  1599. , RRDSET_TYPE_LINE
  1600. );
  1601. rrdset_flag_set(d->st_iotime, RRDSET_FLAG_DETAIL);
  1602. d->rd_iotime_reads = rrddim_add(d->st_iotime, "reads", NULL, 1, 1, RRD_ALGORITHM_INCREMENTAL);
  1603. d->rd_iotime_writes = rrddim_add(d->st_iotime, "writes", NULL, -1, 1, RRD_ALGORITHM_INCREMENTAL);
  1604. add_labels_to_disk(d, d->st_iotime);
  1605. }
  1606. last_readms = rrddim_set_by_pointer(d->st_iotime, d->rd_iotime_reads, readms);
  1607. last_writems = rrddim_set_by_pointer(d->st_iotime, d->rd_iotime_writes, writems);
  1608. rrdset_done(d->st_iotime);
  1609. }
  1610. if(do_dc_stats && d->do_iotime == CONFIG_BOOLEAN_YES && d->do_ext != CONFIG_BOOLEAN_NO) {
  1611. if(unlikely(!d->st_ext_iotime)) {
  1612. d->st_ext_iotime = rrdset_create_localhost(
  1613. "disk_ext_iotime"
  1614. , d->chart_id
  1615. , d->disk
  1616. , family
  1617. , "disk_ext.iotime"
  1618. , "Disk Total I/O Time for Extended Operations"
  1619. , "milliseconds/s"
  1620. , PLUGIN_PROC_NAME
  1621. , PLUGIN_PROC_MODULE_DISKSTATS_NAME
  1622. , NETDATA_CHART_PRIO_DISK_IOTIME + 1
  1623. , update_every
  1624. , RRDSET_TYPE_LINE
  1625. );
  1626. rrdset_flag_set(d->st_ext_iotime, RRDSET_FLAG_DETAIL);
  1627. d->rd_iotime_discards = rrddim_add(d->st_ext_iotime, "discards", NULL, 1, 1, RRD_ALGORITHM_INCREMENTAL);
  1628. if (do_fl_stats)
  1629. d->rd_iotime_flushes = rrddim_add(d->st_ext_iotime, "flushes", NULL, 1, 1, RRD_ALGORITHM_INCREMENTAL);
  1630. add_labels_to_disk(d, d->st_ext_iotime);
  1631. }
  1632. last_discardms = rrddim_set_by_pointer(d->st_ext_iotime, d->rd_iotime_discards, discardms);
  1633. if (do_fl_stats)
  1634. last_flushms = rrddim_set_by_pointer(d->st_ext_iotime, d->rd_iotime_flushes, flushms);
  1635. rrdset_done(d->st_ext_iotime);
  1636. }
  1637. // calculate differential charts
  1638. // only if this is not the first time we run
  1639. if(likely(dt)) {
  1640. if( (d->do_iotime == CONFIG_BOOLEAN_YES || (d->do_iotime == CONFIG_BOOLEAN_AUTO &&
  1641. (readms || writems ||
  1642. netdata_zero_metrics_enabled == CONFIG_BOOLEAN_YES))) &&
  1643. (d->do_ops == CONFIG_BOOLEAN_YES || (d->do_ops == CONFIG_BOOLEAN_AUTO &&
  1644. (reads || writes ||
  1645. netdata_zero_metrics_enabled == CONFIG_BOOLEAN_YES)))) {
  1646. if(unlikely(!d->st_await)) {
  1647. d->st_await = rrdset_create_localhost(
  1648. "disk_await"
  1649. , d->chart_id
  1650. , d->disk
  1651. , family
  1652. , "disk.await"
  1653. , "Average Completed I/O Operation Time"
  1654. , "milliseconds/operation"
  1655. , PLUGIN_PROC_NAME
  1656. , PLUGIN_PROC_MODULE_DISKSTATS_NAME
  1657. , NETDATA_CHART_PRIO_DISK_AWAIT
  1658. , update_every
  1659. , RRDSET_TYPE_LINE
  1660. );
  1661. rrdset_flag_set(d->st_await, RRDSET_FLAG_DETAIL);
  1662. d->rd_await_reads = rrddim_add(d->st_await, "reads", NULL, 1, 1, RRD_ALGORITHM_ABSOLUTE);
  1663. d->rd_await_writes = rrddim_add(d->st_await, "writes", NULL, -1, 1, RRD_ALGORITHM_ABSOLUTE);
  1664. add_labels_to_disk(d, d->st_await);
  1665. }
  1666. rrddim_set_by_pointer(d->st_await, d->rd_await_reads, (reads - last_reads) ? (readms - last_readms) / (reads - last_reads) : 0);
  1667. rrddim_set_by_pointer(d->st_await, d->rd_await_writes, (writes - last_writes) ? (writems - last_writems) / (writes - last_writes) : 0);
  1668. rrdset_done(d->st_await);
  1669. }
  1670. if (do_dc_stats && d->do_iotime == CONFIG_BOOLEAN_YES && d->do_ops == CONFIG_BOOLEAN_YES && d->do_ext != CONFIG_BOOLEAN_NO) {
  1671. if(unlikely(!d->st_ext_await)) {
  1672. d->st_ext_await = rrdset_create_localhost(
  1673. "disk_ext_await"
  1674. , d->chart_id
  1675. , d->disk
  1676. , family
  1677. , "disk_ext.await"
  1678. , "Average Completed Extended I/O Operation Time"
  1679. , "milliseconds/operation"
  1680. , PLUGIN_PROC_NAME
  1681. , PLUGIN_PROC_MODULE_DISKSTATS_NAME
  1682. , NETDATA_CHART_PRIO_DISK_AWAIT + 1
  1683. , update_every
  1684. , RRDSET_TYPE_LINE
  1685. );
  1686. rrdset_flag_set(d->st_ext_await, RRDSET_FLAG_DETAIL);
  1687. d->rd_await_discards = rrddim_add(d->st_ext_await, "discards", NULL, 1, 1, RRD_ALGORITHM_ABSOLUTE);
  1688. if (do_fl_stats)
  1689. d->rd_await_flushes = rrddim_add(d->st_ext_await, "flushes", NULL, 1, 1, RRD_ALGORITHM_ABSOLUTE);
  1690. add_labels_to_disk(d, d->st_ext_await);
  1691. }
  1692. rrddim_set_by_pointer(
  1693. d->st_ext_await, d->rd_await_discards,
  1694. (discards - last_discards) ? (discardms - last_discardms) / (discards - last_discards) : 0);
  1695. if (do_fl_stats)
  1696. rrddim_set_by_pointer(
  1697. d->st_ext_await, d->rd_await_flushes,
  1698. (flushes - last_flushes) ? (flushms - last_flushms) / (flushes - last_flushes) : 0);
  1699. rrdset_done(d->st_ext_await);
  1700. }
  1701. if( (d->do_io == CONFIG_BOOLEAN_YES || (d->do_io == CONFIG_BOOLEAN_AUTO &&
  1702. (readsectors || writesectors || netdata_zero_metrics_enabled == CONFIG_BOOLEAN_YES))) &&
  1703. (d->do_ops == CONFIG_BOOLEAN_YES || (d->do_ops == CONFIG_BOOLEAN_AUTO &&
  1704. (reads || writes || netdata_zero_metrics_enabled == CONFIG_BOOLEAN_YES)))) {
  1705. if(unlikely(!d->st_avgsz)) {
  1706. d->st_avgsz = rrdset_create_localhost(
  1707. "disk_avgsz"
  1708. , d->chart_id
  1709. , d->disk
  1710. , family
  1711. , "disk.avgsz"
  1712. , "Average Completed I/O Operation Bandwidth"
  1713. , "KiB/operation"
  1714. , PLUGIN_PROC_NAME
  1715. , PLUGIN_PROC_MODULE_DISKSTATS_NAME
  1716. , NETDATA_CHART_PRIO_DISK_AVGSZ
  1717. , update_every
  1718. , RRDSET_TYPE_AREA
  1719. );
  1720. rrdset_flag_set(d->st_avgsz, RRDSET_FLAG_DETAIL);
  1721. d->rd_avgsz_reads = rrddim_add(d->st_avgsz, "reads", NULL, d->sector_size, 1024, RRD_ALGORITHM_ABSOLUTE);
  1722. d->rd_avgsz_writes = rrddim_add(d->st_avgsz, "writes", NULL, d->sector_size * -1, 1024, RRD_ALGORITHM_ABSOLUTE);
  1723. add_labels_to_disk(d, d->st_avgsz);
  1724. }
  1725. rrddim_set_by_pointer(d->st_avgsz, d->rd_avgsz_reads, (reads - last_reads) ? (readsectors - last_readsectors) / (reads - last_reads) : 0);
  1726. rrddim_set_by_pointer(d->st_avgsz, d->rd_avgsz_writes, (writes - last_writes) ? (writesectors - last_writesectors) / (writes - last_writes) : 0);
  1727. rrdset_done(d->st_avgsz);
  1728. }
  1729. if(do_dc_stats && d->do_io == CONFIG_BOOLEAN_YES && d->do_ops == CONFIG_BOOLEAN_YES && d->do_ext != CONFIG_BOOLEAN_NO) {
  1730. if(unlikely(!d->st_ext_avgsz)) {
  1731. d->st_ext_avgsz = rrdset_create_localhost(
  1732. "disk_ext_avgsz"
  1733. , d->chart_id
  1734. , d->disk
  1735. , family
  1736. , "disk_ext.avgsz"
  1737. , "Average Amount of Discarded Data"
  1738. , "KiB/operation"
  1739. , PLUGIN_PROC_NAME
  1740. , PLUGIN_PROC_MODULE_DISKSTATS_NAME
  1741. , NETDATA_CHART_PRIO_DISK_AVGSZ
  1742. , update_every
  1743. , RRDSET_TYPE_AREA
  1744. );
  1745. rrdset_flag_set(d->st_ext_avgsz, RRDSET_FLAG_DETAIL);
  1746. d->rd_avgsz_discards = rrddim_add(d->st_ext_avgsz, "discards", NULL, d->sector_size, 1024, RRD_ALGORITHM_ABSOLUTE);
  1747. add_labels_to_disk(d, d->st_ext_avgsz);
  1748. }
  1749. rrddim_set_by_pointer(
  1750. d->st_ext_avgsz, d->rd_avgsz_discards,
  1751. (discards - last_discards) ? (discardsectors - last_discardsectors) / (discards - last_discards) :
  1752. 0);
  1753. rrdset_done(d->st_ext_avgsz);
  1754. }
  1755. if( (d->do_util == CONFIG_BOOLEAN_YES || (d->do_util == CONFIG_BOOLEAN_AUTO &&
  1756. (busy_ms ||
  1757. netdata_zero_metrics_enabled == CONFIG_BOOLEAN_YES))) &&
  1758. (d->do_ops == CONFIG_BOOLEAN_YES || (d->do_ops == CONFIG_BOOLEAN_AUTO &&
  1759. (reads || writes ||
  1760. netdata_zero_metrics_enabled == CONFIG_BOOLEAN_YES)))) {
  1761. if(unlikely(!d->st_svctm)) {
  1762. d->st_svctm = rrdset_create_localhost(
  1763. "disk_svctm"
  1764. , d->chart_id
  1765. , d->disk
  1766. , family
  1767. , "disk.svctm"
  1768. , "Average Service Time"
  1769. , "milliseconds/operation"
  1770. , PLUGIN_PROC_NAME
  1771. , PLUGIN_PROC_MODULE_DISKSTATS_NAME
  1772. , NETDATA_CHART_PRIO_DISK_SVCTM
  1773. , update_every
  1774. , RRDSET_TYPE_LINE
  1775. );
  1776. rrdset_flag_set(d->st_svctm, RRDSET_FLAG_DETAIL);
  1777. d->rd_svctm_svctm = rrddim_add(d->st_svctm, "svctm", NULL, 1, 1, RRD_ALGORITHM_ABSOLUTE);
  1778. add_labels_to_disk(d, d->st_svctm);
  1779. }
  1780. rrddim_set_by_pointer(d->st_svctm, d->rd_svctm_svctm, ((reads - last_reads) + (writes - last_writes)) ? (busy_ms - last_busy_ms) / ((reads - last_reads) + (writes - last_writes)) : 0);
  1781. rrdset_done(d->st_svctm);
  1782. }
  1783. }
  1784. // read bcache metrics and generate the bcache charts
  1785. if(d->device_is_bcache && d->do_bcache != CONFIG_BOOLEAN_NO) {
  1786. unsigned long long int
  1787. stats_total_cache_bypass_hits = 0,
  1788. stats_total_cache_bypass_misses = 0,
  1789. stats_total_cache_hits = 0,
  1790. stats_total_cache_miss_collisions = 0,
  1791. stats_total_cache_misses = 0,
  1792. stats_five_minute_cache_hit_ratio = 0,
  1793. stats_hour_cache_hit_ratio = 0,
  1794. stats_day_cache_hit_ratio = 0,
  1795. stats_total_cache_hit_ratio = 0,
  1796. cache_available_percent = 0,
  1797. cache_readaheads = 0,
  1798. cache_read_races = 0,
  1799. cache_io_errors = 0,
  1800. cache_congested = 0,
  1801. dirty_data = 0,
  1802. writeback_rate = 0;
  1803. // read the bcache values
  1804. if(d->bcache_filename_dirty_data)
  1805. dirty_data = bcache_read_number_with_units(d->bcache_filename_dirty_data);
  1806. if(d->bcache_filename_writeback_rate)
  1807. writeback_rate = bcache_read_number_with_units(d->bcache_filename_writeback_rate);
  1808. if(d->bcache_filename_cache_congested)
  1809. cache_congested = bcache_read_number_with_units(d->bcache_filename_cache_congested);
  1810. if(d->bcache_filename_cache_available_percent)
  1811. read_single_number_file(d->bcache_filename_cache_available_percent, &cache_available_percent);
  1812. if(d->bcache_filename_stats_five_minute_cache_hit_ratio)
  1813. read_single_number_file(d->bcache_filename_stats_five_minute_cache_hit_ratio, &stats_five_minute_cache_hit_ratio);
  1814. if(d->bcache_filename_stats_hour_cache_hit_ratio)
  1815. read_single_number_file(d->bcache_filename_stats_hour_cache_hit_ratio, &stats_hour_cache_hit_ratio);
  1816. if(d->bcache_filename_stats_day_cache_hit_ratio)
  1817. read_single_number_file(d->bcache_filename_stats_day_cache_hit_ratio, &stats_day_cache_hit_ratio);
  1818. if(d->bcache_filename_stats_total_cache_hit_ratio)
  1819. read_single_number_file(d->bcache_filename_stats_total_cache_hit_ratio, &stats_total_cache_hit_ratio);
  1820. if(d->bcache_filename_stats_total_cache_hits)
  1821. read_single_number_file(d->bcache_filename_stats_total_cache_hits, &stats_total_cache_hits);
  1822. if(d->bcache_filename_stats_total_cache_misses)
  1823. read_single_number_file(d->bcache_filename_stats_total_cache_misses, &stats_total_cache_misses);
  1824. if(d->bcache_filename_stats_total_cache_miss_collisions)
  1825. read_single_number_file(d->bcache_filename_stats_total_cache_miss_collisions, &stats_total_cache_miss_collisions);
  1826. if(d->bcache_filename_stats_total_cache_bypass_hits)
  1827. read_single_number_file(d->bcache_filename_stats_total_cache_bypass_hits, &stats_total_cache_bypass_hits);
  1828. if(d->bcache_filename_stats_total_cache_bypass_misses)
  1829. read_single_number_file(d->bcache_filename_stats_total_cache_bypass_misses, &stats_total_cache_bypass_misses);
  1830. if(d->bcache_filename_stats_total_cache_readaheads)
  1831. cache_readaheads = bcache_read_number_with_units(d->bcache_filename_stats_total_cache_readaheads);
  1832. if(d->bcache_filename_cache_read_races)
  1833. read_single_number_file(d->bcache_filename_cache_read_races, &cache_read_races);
  1834. if(d->bcache_filename_cache_io_errors)
  1835. read_single_number_file(d->bcache_filename_cache_io_errors, &cache_io_errors);
  1836. if(d->bcache_filename_priority_stats && global_bcache_priority_stats_update_every >= 1)
  1837. bcache_read_priority_stats(d, family, global_bcache_priority_stats_update_every, dt);
  1838. // update the charts
  1839. {
  1840. if(unlikely(!d->st_bcache_hit_ratio)) {
  1841. d->st_bcache_hit_ratio = rrdset_create_localhost(
  1842. "disk_bcache_hit_ratio"
  1843. , d->chart_id
  1844. , d->disk
  1845. , family
  1846. , "disk.bcache_hit_ratio"
  1847. , "BCache Cache Hit Ratio"
  1848. , "percentage"
  1849. , PLUGIN_PROC_NAME
  1850. , PLUGIN_PROC_MODULE_DISKSTATS_NAME
  1851. , NETDATA_CHART_PRIO_BCACHE_HIT_RATIO
  1852. , update_every
  1853. , RRDSET_TYPE_LINE
  1854. );
  1855. d->rd_bcache_hit_ratio_5min = rrddim_add(d->st_bcache_hit_ratio, "5min", NULL, 1, 1, RRD_ALGORITHM_ABSOLUTE);
  1856. d->rd_bcache_hit_ratio_1hour = rrddim_add(d->st_bcache_hit_ratio, "1hour", NULL, 1, 1, RRD_ALGORITHM_ABSOLUTE);
  1857. d->rd_bcache_hit_ratio_1day = rrddim_add(d->st_bcache_hit_ratio, "1day", NULL, 1, 1, RRD_ALGORITHM_ABSOLUTE);
  1858. d->rd_bcache_hit_ratio_total = rrddim_add(d->st_bcache_hit_ratio, "ever", NULL, 1, 1, RRD_ALGORITHM_ABSOLUTE);
  1859. add_labels_to_disk(d, d->st_bcache_hit_ratio);
  1860. }
  1861. rrddim_set_by_pointer(d->st_bcache_hit_ratio, d->rd_bcache_hit_ratio_5min, stats_five_minute_cache_hit_ratio);
  1862. rrddim_set_by_pointer(d->st_bcache_hit_ratio, d->rd_bcache_hit_ratio_1hour, stats_hour_cache_hit_ratio);
  1863. rrddim_set_by_pointer(d->st_bcache_hit_ratio, d->rd_bcache_hit_ratio_1day, stats_day_cache_hit_ratio);
  1864. rrddim_set_by_pointer(d->st_bcache_hit_ratio, d->rd_bcache_hit_ratio_total, stats_total_cache_hit_ratio);
  1865. rrdset_done(d->st_bcache_hit_ratio);
  1866. }
  1867. {
  1868. if(unlikely(!d->st_bcache_rates)) {
  1869. d->st_bcache_rates = rrdset_create_localhost(
  1870. "disk_bcache_rates"
  1871. , d->chart_id
  1872. , d->disk
  1873. , family
  1874. , "disk.bcache_rates"
  1875. , "BCache Rates"
  1876. , "KiB/s"
  1877. , PLUGIN_PROC_NAME
  1878. , PLUGIN_PROC_MODULE_DISKSTATS_NAME
  1879. , NETDATA_CHART_PRIO_BCACHE_RATES
  1880. , update_every
  1881. , RRDSET_TYPE_AREA
  1882. );
  1883. d->rd_bcache_rate_congested = rrddim_add(d->st_bcache_rates, "congested", NULL, 1, 1024, RRD_ALGORITHM_ABSOLUTE);
  1884. d->rd_bcache_rate_writeback = rrddim_add(d->st_bcache_rates, "writeback", NULL, -1, 1024, RRD_ALGORITHM_ABSOLUTE);
  1885. add_labels_to_disk(d, d->st_bcache_rates);
  1886. }
  1887. rrddim_set_by_pointer(d->st_bcache_rates, d->rd_bcache_rate_writeback, writeback_rate);
  1888. rrddim_set_by_pointer(d->st_bcache_rates, d->rd_bcache_rate_congested, cache_congested);
  1889. rrdset_done(d->st_bcache_rates);
  1890. }
  1891. {
  1892. if(unlikely(!d->st_bcache_size)) {
  1893. d->st_bcache_size = rrdset_create_localhost(
  1894. "disk_bcache_size"
  1895. , d->chart_id
  1896. , d->disk
  1897. , family
  1898. , "disk.bcache_size"
  1899. , "BCache Cache Sizes"
  1900. , "MiB"
  1901. , PLUGIN_PROC_NAME
  1902. , PLUGIN_PROC_MODULE_DISKSTATS_NAME
  1903. , NETDATA_CHART_PRIO_BCACHE_SIZE
  1904. , update_every
  1905. , RRDSET_TYPE_AREA
  1906. );
  1907. d->rd_bcache_dirty_size = rrddim_add(d->st_bcache_size, "dirty", NULL, 1, 1024 * 1024, RRD_ALGORITHM_ABSOLUTE);
  1908. add_labels_to_disk(d, d->st_bcache_size);
  1909. }
  1910. rrddim_set_by_pointer(d->st_bcache_size, d->rd_bcache_dirty_size, dirty_data);
  1911. rrdset_done(d->st_bcache_size);
  1912. }
  1913. {
  1914. if(unlikely(!d->st_bcache_usage)) {
  1915. d->st_bcache_usage = rrdset_create_localhost(
  1916. "disk_bcache_usage"
  1917. , d->chart_id
  1918. , d->disk
  1919. , family
  1920. , "disk.bcache_usage"
  1921. , "BCache Cache Usage"
  1922. , "percentage"
  1923. , PLUGIN_PROC_NAME
  1924. , PLUGIN_PROC_MODULE_DISKSTATS_NAME
  1925. , NETDATA_CHART_PRIO_BCACHE_USAGE
  1926. , update_every
  1927. , RRDSET_TYPE_AREA
  1928. );
  1929. d->rd_bcache_available_percent = rrddim_add(d->st_bcache_usage, "avail", NULL, 1, 1, RRD_ALGORITHM_ABSOLUTE);
  1930. add_labels_to_disk(d, d->st_bcache_usage);
  1931. }
  1932. rrddim_set_by_pointer(d->st_bcache_usage, d->rd_bcache_available_percent, cache_available_percent);
  1933. rrdset_done(d->st_bcache_usage);
  1934. }
  1935. {
  1936. if(unlikely(!d->st_bcache_cache_read_races)) {
  1937. d->st_bcache_cache_read_races = rrdset_create_localhost(
  1938. "disk_bcache_cache_read_races"
  1939. , d->chart_id
  1940. , d->disk
  1941. , family
  1942. , "disk.bcache_cache_read_races"
  1943. , "BCache Cache Read Races"
  1944. , "operations/s"
  1945. , PLUGIN_PROC_NAME
  1946. , PLUGIN_PROC_MODULE_DISKSTATS_NAME
  1947. , NETDATA_CHART_PRIO_BCACHE_CACHE_READ_RACES
  1948. , update_every
  1949. , RRDSET_TYPE_LINE
  1950. );
  1951. d->rd_bcache_cache_read_races = rrddim_add(d->st_bcache_cache_read_races, "races", NULL, 1, 1, RRD_ALGORITHM_INCREMENTAL);
  1952. d->rd_bcache_cache_io_errors = rrddim_add(d->st_bcache_cache_read_races, "errors", NULL, 1, 1, RRD_ALGORITHM_INCREMENTAL);
  1953. add_labels_to_disk(d, d->st_bcache_cache_read_races);
  1954. }
  1955. rrddim_set_by_pointer(d->st_bcache_cache_read_races, d->rd_bcache_cache_read_races, cache_read_races);
  1956. rrddim_set_by_pointer(d->st_bcache_cache_read_races, d->rd_bcache_cache_io_errors, cache_io_errors);
  1957. rrdset_done(d->st_bcache_cache_read_races);
  1958. }
  1959. if(d->do_bcache == CONFIG_BOOLEAN_YES || (d->do_bcache == CONFIG_BOOLEAN_AUTO &&
  1960. (stats_total_cache_hits ||
  1961. stats_total_cache_misses ||
  1962. stats_total_cache_miss_collisions ||
  1963. netdata_zero_metrics_enabled == CONFIG_BOOLEAN_YES))) {
  1964. if(unlikely(!d->st_bcache)) {
  1965. d->st_bcache = rrdset_create_localhost(
  1966. "disk_bcache"
  1967. , d->chart_id
  1968. , d->disk
  1969. , family
  1970. , "disk.bcache"
  1971. , "BCache Cache I/O Operations"
  1972. , "operations/s"
  1973. , PLUGIN_PROC_NAME
  1974. , PLUGIN_PROC_MODULE_DISKSTATS_NAME
  1975. , NETDATA_CHART_PRIO_BCACHE_OPS
  1976. , update_every
  1977. , RRDSET_TYPE_LINE
  1978. );
  1979. rrdset_flag_set(d->st_bcache, RRDSET_FLAG_DETAIL);
  1980. d->rd_bcache_hits = rrddim_add(d->st_bcache, "hits", NULL, 1, 1, RRD_ALGORITHM_INCREMENTAL);
  1981. d->rd_bcache_misses = rrddim_add(d->st_bcache, "misses", NULL, -1, 1, RRD_ALGORITHM_INCREMENTAL);
  1982. d->rd_bcache_miss_collisions = rrddim_add(d->st_bcache, "collisions", NULL, -1, 1, RRD_ALGORITHM_INCREMENTAL);
  1983. d->rd_bcache_readaheads = rrddim_add(d->st_bcache, "readaheads", NULL, 1, 1, RRD_ALGORITHM_INCREMENTAL);
  1984. add_labels_to_disk(d, d->st_bcache);
  1985. }
  1986. rrddim_set_by_pointer(d->st_bcache, d->rd_bcache_hits, stats_total_cache_hits);
  1987. rrddim_set_by_pointer(d->st_bcache, d->rd_bcache_misses, stats_total_cache_misses);
  1988. rrddim_set_by_pointer(d->st_bcache, d->rd_bcache_miss_collisions, stats_total_cache_miss_collisions);
  1989. rrddim_set_by_pointer(d->st_bcache, d->rd_bcache_readaheads, cache_readaheads);
  1990. rrdset_done(d->st_bcache);
  1991. }
  1992. if(d->do_bcache == CONFIG_BOOLEAN_YES || (d->do_bcache == CONFIG_BOOLEAN_AUTO &&
  1993. (stats_total_cache_bypass_hits ||
  1994. stats_total_cache_bypass_misses ||
  1995. netdata_zero_metrics_enabled == CONFIG_BOOLEAN_YES))) {
  1996. if(unlikely(!d->st_bcache_bypass)) {
  1997. d->st_bcache_bypass = rrdset_create_localhost(
  1998. "disk_bcache_bypass"
  1999. , d->chart_id
  2000. , d->disk
  2001. , family
  2002. , "disk.bcache_bypass"
  2003. , "BCache Cache Bypass I/O Operations"
  2004. , "operations/s"
  2005. , PLUGIN_PROC_NAME
  2006. , PLUGIN_PROC_MODULE_DISKSTATS_NAME
  2007. , NETDATA_CHART_PRIO_BCACHE_BYPASS
  2008. , update_every
  2009. , RRDSET_TYPE_LINE
  2010. );
  2011. rrdset_flag_set(d->st_bcache_bypass, RRDSET_FLAG_DETAIL);
  2012. d->rd_bcache_bypass_hits = rrddim_add(d->st_bcache_bypass, "hits", NULL, 1, 1, RRD_ALGORITHM_INCREMENTAL);
  2013. d->rd_bcache_bypass_misses = rrddim_add(d->st_bcache_bypass, "misses", NULL, -1, 1, RRD_ALGORITHM_INCREMENTAL);
  2014. add_labels_to_disk(d, d->st_bcache_bypass);
  2015. }
  2016. rrddim_set_by_pointer(d->st_bcache_bypass, d->rd_bcache_bypass_hits, stats_total_cache_bypass_hits);
  2017. rrddim_set_by_pointer(d->st_bcache_bypass, d->rd_bcache_bypass_misses, stats_total_cache_bypass_misses);
  2018. rrdset_done(d->st_bcache_bypass);
  2019. }
  2020. }
  2021. d->function_ready = !d->excluded;
  2022. }
  2023. diskstats_cleanup_disks();
  2024. netdata_mutex_unlock(&diskstats_dev_mutex);
  2025. // update the system total I/O
  2026. if(global_do_io == CONFIG_BOOLEAN_YES || (global_do_io == CONFIG_BOOLEAN_AUTO &&
  2027. (system_read_kb || system_write_kb ||
  2028. netdata_zero_metrics_enabled == CONFIG_BOOLEAN_YES))) {
  2029. static RRDSET *st_io = NULL;
  2030. static RRDDIM *rd_in = NULL, *rd_out = NULL;
  2031. if(unlikely(!st_io)) {
  2032. st_io = rrdset_create_localhost(
  2033. "system"
  2034. , "io"
  2035. , NULL
  2036. , "disk"
  2037. , NULL
  2038. , "Disk I/O"
  2039. , "KiB/s"
  2040. , PLUGIN_PROC_NAME
  2041. , PLUGIN_PROC_MODULE_DISKSTATS_NAME
  2042. , NETDATA_CHART_PRIO_SYSTEM_IO
  2043. , update_every
  2044. , RRDSET_TYPE_AREA
  2045. );
  2046. rd_in = rrddim_add(st_io, "in", NULL, 1, 1, RRD_ALGORITHM_INCREMENTAL);
  2047. rd_out = rrddim_add(st_io, "out", NULL, -1, 1, RRD_ALGORITHM_INCREMENTAL);
  2048. }
  2049. rrddim_set_by_pointer(st_io, rd_in, system_read_kb);
  2050. rrddim_set_by_pointer(st_io, rd_out, system_write_kb);
  2051. rrdset_done(st_io);
  2052. }
  2053. return 0;
  2054. }