plugin_proc.c 7.8 KB

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  1. // SPDX-License-Identifier: GPL-3.0-or-later
  2. #include "plugin_proc.h"
  3. static struct proc_module {
  4. const char *name;
  5. const char *dim;
  6. int enabled;
  7. int (*func)(int update_every, usec_t dt);
  8. usec_t duration;
  9. RRDDIM *rd;
  10. } proc_modules[] = {
  11. // system metrics
  12. { .name = "/proc/stat", .dim = "stat", .func = do_proc_stat },
  13. { .name = "/proc/uptime", .dim = "uptime", .func = do_proc_uptime },
  14. { .name = "/proc/loadavg", .dim = "loadavg", .func = do_proc_loadavg },
  15. { .name = "/proc/sys/kernel/random/entropy_avail", .dim = "entropy", .func = do_proc_sys_kernel_random_entropy_avail },
  16. // CPU metrics
  17. { .name = "/proc/interrupts", .dim = "interrupts", .func = do_proc_interrupts },
  18. { .name = "/proc/softirqs", .dim = "softirqs", .func = do_proc_softirqs },
  19. // memory metrics
  20. { .name = "/proc/vmstat", .dim = "vmstat", .func = do_proc_vmstat },
  21. { .name = "/proc/meminfo", .dim = "meminfo", .func = do_proc_meminfo },
  22. { .name = "/sys/kernel/mm/ksm", .dim = "ksm", .func = do_sys_kernel_mm_ksm },
  23. { .name = "/sys/block/zram", .dim = "zram", .func = do_sys_block_zram },
  24. { .name = "/sys/devices/system/edac/mc", .dim = "ecc", .func = do_proc_sys_devices_system_edac_mc },
  25. { .name = "/sys/devices/system/node", .dim = "numa", .func = do_proc_sys_devices_system_node },
  26. // network metrics
  27. { .name = "/proc/net/dev", .dim = "netdev", .func = do_proc_net_dev },
  28. { .name = "/proc/net/sockstat", .dim = "sockstat", .func = do_proc_net_sockstat },
  29. { .name = "/proc/net/sockstat6", .dim = "sockstat6", .func = do_proc_net_sockstat6 },
  30. { .name = "/proc/net/netstat", .dim = "netstat", .func = do_proc_net_netstat }, // this has to be before /proc/net/snmp, because there is a shared metric
  31. { .name = "/proc/net/snmp", .dim = "snmp", .func = do_proc_net_snmp },
  32. { .name = "/proc/net/snmp6", .dim = "snmp6", .func = do_proc_net_snmp6 },
  33. { .name = "/proc/net/sctp/snmp", .dim = "sctp", .func = do_proc_net_sctp_snmp },
  34. { .name = "/proc/net/softnet_stat", .dim = "softnet", .func = do_proc_net_softnet_stat },
  35. { .name = "/proc/net/ip_vs/stats", .dim = "ipvs", .func = do_proc_net_ip_vs_stats },
  36. // firewall metrics
  37. { .name = "/proc/net/stat/conntrack", .dim = "conntrack", .func = do_proc_net_stat_conntrack },
  38. { .name = "/proc/net/stat/synproxy", .dim = "synproxy", .func = do_proc_net_stat_synproxy },
  39. // disk metrics
  40. { .name = "/proc/diskstats", .dim = "diskstats", .func = do_proc_diskstats },
  41. { .name = "/proc/mdstat", .dim = "mdstat", .func = do_proc_mdstat },
  42. // NFS metrics
  43. { .name = "/proc/net/rpc/nfsd", .dim = "nfsd", .func = do_proc_net_rpc_nfsd },
  44. { .name = "/proc/net/rpc/nfs", .dim = "nfs", .func = do_proc_net_rpc_nfs },
  45. // ZFS metrics
  46. { .name = "/proc/spl/kstat/zfs/arcstats", .dim = "zfs_arcstats", .func = do_proc_spl_kstat_zfs_arcstats },
  47. // BTRFS metrics
  48. { .name = "/sys/fs/btrfs", .dim = "btrfs", .func = do_sys_fs_btrfs },
  49. // IPC metrics
  50. { .name = "ipc", .dim = "ipc", .func = do_ipc },
  51. // linux power supply metrics
  52. { .name = "/sys/class/power_supply", .dim = "power_supply", .func = do_sys_class_power_supply },
  53. // the terminator of this array
  54. { .name = NULL, .dim = NULL, .func = NULL }
  55. };
  56. static void proc_main_cleanup(void *ptr) {
  57. struct netdata_static_thread *static_thread = (struct netdata_static_thread *)ptr;
  58. static_thread->enabled = NETDATA_MAIN_THREAD_EXITING;
  59. info("cleaning up...");
  60. static_thread->enabled = NETDATA_MAIN_THREAD_EXITED;
  61. }
  62. void *proc_main(void *ptr) {
  63. netdata_thread_cleanup_push(proc_main_cleanup, ptr);
  64. int vdo_cpu_netdata = config_get_boolean("plugin:proc", "netdata server resources", 1);
  65. // check the enabled status for each module
  66. int i;
  67. for(i = 0 ; proc_modules[i].name ;i++) {
  68. struct proc_module *pm = &proc_modules[i];
  69. pm->enabled = config_get_boolean("plugin:proc", pm->name, 1);
  70. pm->duration = 0ULL;
  71. pm->rd = NULL;
  72. }
  73. usec_t step = localhost->rrd_update_every * USEC_PER_SEC;
  74. heartbeat_t hb;
  75. heartbeat_init(&hb);
  76. size_t iterations = 0;
  77. while(!netdata_exit) {
  78. iterations++;
  79. (void)iterations;
  80. usec_t hb_dt = heartbeat_next(&hb, step);
  81. usec_t duration = 0ULL;
  82. if(unlikely(netdata_exit)) break;
  83. // BEGIN -- the job to be done
  84. for(i = 0 ; proc_modules[i].name ;i++) {
  85. struct proc_module *pm = &proc_modules[i];
  86. if(unlikely(!pm->enabled)) continue;
  87. debug(D_PROCNETDEV_LOOP, "PROC calling %s.", pm->name);
  88. //#ifdef NETDATA_LOG_ALLOCATIONS
  89. // if(pm->func == do_proc_interrupts)
  90. // log_thread_memory_allocations = iterations;
  91. //#endif
  92. pm->enabled = !pm->func(localhost->rrd_update_every, hb_dt);
  93. pm->duration = heartbeat_monotonic_dt_to_now_usec(&hb) - duration;
  94. duration += pm->duration;
  95. //#ifdef NETDATA_LOG_ALLOCATIONS
  96. // if(pm->func == do_proc_interrupts)
  97. // log_thread_memory_allocations = 0;
  98. //#endif
  99. if(unlikely(netdata_exit)) break;
  100. }
  101. // END -- the job is done
  102. // --------------------------------------------------------------------
  103. if(vdo_cpu_netdata) {
  104. static RRDSET *st = NULL;
  105. if(unlikely(!st)) {
  106. st = rrdset_find_bytype_localhost("netdata", "plugin_proc_modules");
  107. if(!st) {
  108. st = rrdset_create_localhost(
  109. "netdata"
  110. , "plugin_proc_modules"
  111. , NULL
  112. , "proc"
  113. , NULL
  114. , "NetData Proc Plugin Modules Durations"
  115. , "milliseconds/run"
  116. , "netdata"
  117. , "stats"
  118. , 132001
  119. , localhost->rrd_update_every
  120. , RRDSET_TYPE_STACKED
  121. );
  122. for(i = 0 ; proc_modules[i].name ;i++) {
  123. struct proc_module *pm = &proc_modules[i];
  124. if(unlikely(!pm->enabled)) continue;
  125. pm->rd = rrddim_add(st, pm->dim, NULL, 1, 1000, RRD_ALGORITHM_ABSOLUTE);
  126. }
  127. }
  128. }
  129. else rrdset_next(st);
  130. for(i = 0 ; proc_modules[i].name ;i++) {
  131. struct proc_module *pm = &proc_modules[i];
  132. if(unlikely(!pm->enabled)) continue;
  133. rrddim_set_by_pointer(st, pm->rd, pm->duration);
  134. }
  135. rrdset_done(st);
  136. global_statistics_charts();
  137. registry_statistics();
  138. }
  139. }
  140. netdata_thread_cleanup_pop(1);
  141. return NULL;
  142. }
  143. int get_numa_node_count(void)
  144. {
  145. static int numa_node_count = -1;
  146. if (numa_node_count != -1)
  147. return numa_node_count;
  148. numa_node_count = 0;
  149. char name[FILENAME_MAX + 1];
  150. snprintfz(name, FILENAME_MAX, "%s%s", netdata_configured_host_prefix, "/sys/devices/system/node");
  151. char *dirname = config_get("plugin:proc:/sys/devices/system/node", "directory to monitor", name);
  152. DIR *dir = opendir(dirname);
  153. if(dir) {
  154. struct dirent *de = NULL;
  155. while((de = readdir(dir))) {
  156. if(de->d_type != DT_DIR)
  157. continue;
  158. if(strncmp(de->d_name, "node", 4) != 0)
  159. continue;
  160. if(!isdigit(de->d_name[4]))
  161. continue;
  162. numa_node_count++;
  163. }
  164. closedir(dir);
  165. }
  166. return numa_node_count;
  167. }