cups_plugin.c 15 KB

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  1. // SPDX-License-Identifier: GPL-3.0-or-later
  2. /*
  3. * netdata cups.plugin
  4. * (C) Copyright 2017-2018 Simon Nagl <simon.nagl@gmx.de>
  5. * Released under GPL v3+
  6. */
  7. #include "libnetdata/libnetdata.h"
  8. #include "libnetdata/required_dummies.h"
  9. #include <cups/cups.h>
  10. #include <limits.h>
  11. // Variables
  12. static int debug = 0;
  13. static int netdata_update_every = 1;
  14. static int netdata_priority = 100004;
  15. http_t *http; // connection to the cups daemon
  16. /*
  17. * Used to aggregate job metrics for a destination (and all destinations).
  18. */
  19. struct job_metrics {
  20. int is_collected; // flag if this was collected in the current cycle
  21. int num_pending;
  22. int num_processing;
  23. int num_held;
  24. int size_pending; // in kilobyte
  25. int size_processing; // in kilobyte
  26. int size_held; // in kilobyte
  27. };
  28. DICTIONARY *dict_dest_job_metrics = NULL;
  29. struct job_metrics global_job_metrics;
  30. int num_dest_total;
  31. int num_dest_accepting_jobs;
  32. int num_dest_shared;
  33. int num_dest_idle;
  34. int num_dest_printing;
  35. int num_dest_stopped;
  36. void print_help() {
  37. fprintf(stderr,
  38. "\n"
  39. "netdata cups.plugin %s\n"
  40. "\n"
  41. "Copyright (C) 2017-2018 Simon Nagl <simon.nagl@gmx.de>\n"
  42. "Released under GNU General Public License v3+.\n"
  43. "All rights reserved.\n"
  44. "\n"
  45. "This program is a data collector plugin for netdata.\n"
  46. "\n"
  47. "SYNOPSIS: cups.plugin [-d][-h][-v] COLLECTION_FREQUENCY\n"
  48. "\n"
  49. "Options:"
  50. "\n"
  51. " COLLECTION_FREQUENCY data collection frequency in seconds\n"
  52. "\n"
  53. " -d enable verbose output\n"
  54. " default: disabled\n"
  55. "\n"
  56. " -v print version and exit\n"
  57. "\n"
  58. " -h print this message and exit\n"
  59. "\n",
  60. VERSION);
  61. }
  62. void parse_command_line(int argc, char **argv) {
  63. int i;
  64. int freq = 0;
  65. int update_every_found = 0;
  66. for (i = 1; i < argc; i++) {
  67. if (isdigit(*argv[i]) && !update_every_found) {
  68. int n = str2i(argv[i]);
  69. if (n > 0 && n < 86400) {
  70. freq = n;
  71. continue;
  72. }
  73. } else if (strcmp("-v", argv[i]) == 0) {
  74. printf("cups.plugin %s\n", VERSION);
  75. exit(0);
  76. } else if (strcmp("-d", argv[i]) == 0) {
  77. debug = 1;
  78. continue;
  79. } else if (strcmp("-h", argv[i]) == 0) {
  80. print_help();
  81. exit(0);
  82. }
  83. print_help();
  84. exit(1);
  85. }
  86. if (freq >= netdata_update_every) {
  87. netdata_update_every = freq;
  88. } else if (freq) {
  89. error("update frequency %d seconds is too small for CUPS. Using %d.", freq, netdata_update_every);
  90. }
  91. }
  92. /*
  93. * 'cupsGetIntegerOption()' - Get an integer option value.
  94. *
  95. * INT_MIN is returned when the option does not exist, is not an integer, or
  96. * exceeds the range of values for the "int" type.
  97. *
  98. * @since CUPS 2.2.4/macOS 10.13@
  99. */
  100. int /* O - Option value or @code INT_MIN@ */
  101. getIntegerOption(
  102. const char *name, /* I - Name of option */
  103. int num_options, /* I - Number of options */
  104. cups_option_t *options) /* I - Options */
  105. {
  106. const char *value = cupsGetOption(name, num_options, options);
  107. /* String value of option */
  108. char *ptr; /* Pointer into string value */
  109. long intvalue; /* Integer value */
  110. if (!value || !*value)
  111. return (INT_MIN);
  112. intvalue = strtol(value, &ptr, 10);
  113. if (intvalue < INT_MIN || intvalue > INT_MAX || *ptr)
  114. return (INT_MIN);
  115. return ((int)intvalue);
  116. }
  117. static int reset_job_metrics(const DICTIONARY_ITEM *item __maybe_unused, void *entry, void *data __maybe_unused) {
  118. struct job_metrics *jm = (struct job_metrics *)entry;
  119. jm->is_collected = 0;
  120. jm->num_held = 0;
  121. jm->num_pending = 0;
  122. jm->num_processing = 0;
  123. jm->size_held = 0;
  124. jm->size_pending = 0;
  125. jm->size_processing = 0;
  126. return 0;
  127. }
  128. struct job_metrics *get_job_metrics(char *dest) {
  129. struct job_metrics *jm = dictionary_get(dict_dest_job_metrics, dest);
  130. if (unlikely(!jm)) {
  131. struct job_metrics new_job_metrics;
  132. reset_job_metrics(NULL, &new_job_metrics, NULL);
  133. jm = dictionary_set(dict_dest_job_metrics, dest, &new_job_metrics, sizeof(struct job_metrics));
  134. printf("CHART cups.job_num_%s '' 'Active jobs of %s' jobs '%s' cups.destination_job_num stacked %i %i\n", dest, dest, dest, netdata_priority++, netdata_update_every);
  135. printf("DIMENSION pending '' absolute 1 1\n");
  136. printf("DIMENSION held '' absolute 1 1\n");
  137. printf("DIMENSION processing '' absolute 1 1\n");
  138. printf("CHART cups.job_size_%s '' 'Active jobs size of %s' KB '%s' cups.destination_job_size stacked %i %i\n", dest, dest, dest, netdata_priority++, netdata_update_every);
  139. printf("DIMENSION pending '' absolute 1 1\n");
  140. printf("DIMENSION held '' absolute 1 1\n");
  141. printf("DIMENSION processing '' absolute 1 1\n");
  142. };
  143. return jm;
  144. }
  145. int collect_job_metrics(const DICTIONARY_ITEM *item, void *entry, void *data __maybe_unused) {
  146. const char *name = dictionary_acquired_item_name(item);
  147. struct job_metrics *jm = (struct job_metrics *)entry;
  148. if (jm->is_collected) {
  149. printf(
  150. "BEGIN cups.job_num_%s\n"
  151. "SET pending = %d\n"
  152. "SET held = %d\n"
  153. "SET processing = %d\n"
  154. "END\n",
  155. name, jm->num_pending, jm->num_held, jm->num_processing);
  156. printf(
  157. "BEGIN cups.job_size_%s\n"
  158. "SET pending = %d\n"
  159. "SET held = %d\n"
  160. "SET processing = %d\n"
  161. "END\n",
  162. name, jm->size_pending, jm->size_held, jm->size_processing);
  163. } else {
  164. printf("CHART cups.job_num_%s '' 'Active jobs of %s' jobs '%s' cups.destination_job_num stacked 1 %i 'obsolete'\n", name, name, name, netdata_update_every);
  165. printf("DIMENSION pending '' absolute 1 1\n");
  166. printf("DIMENSION held '' absolute 1 1\n");
  167. printf("DIMENSION processing '' absolute 1 1\n");
  168. printf("CHART cups.job_size_%s '' 'Active jobs size of %s' KB '%s' cups.destination_job_size stacked 1 %i 'obsolete'\n", name, name, name, netdata_update_every);
  169. printf("DIMENSION pending '' absolute 1 1\n");
  170. printf("DIMENSION held '' absolute 1 1\n");
  171. printf("DIMENSION processing '' absolute 1 1\n");
  172. dictionary_del(dict_dest_job_metrics, name);
  173. }
  174. return 0;
  175. }
  176. void reset_metrics() {
  177. num_dest_total = 0;
  178. num_dest_accepting_jobs = 0;
  179. num_dest_shared = 0;
  180. num_dest_idle = 0;
  181. num_dest_printing = 0;
  182. num_dest_stopped = 0;
  183. reset_job_metrics(NULL, &global_job_metrics, NULL);
  184. dictionary_walkthrough_write(dict_dest_job_metrics, reset_job_metrics, NULL);
  185. }
  186. int main(int argc, char **argv) {
  187. stderror = stderr;
  188. clocks_init();
  189. // ------------------------------------------------------------------------
  190. // initialization of netdata plugin
  191. program_name = "cups.plugin";
  192. // disable syslog
  193. error_log_syslog = 0;
  194. // set errors flood protection to 100 logs per hour
  195. error_log_errors_per_period = 100;
  196. error_log_throttle_period = 3600;
  197. parse_command_line(argc, argv);
  198. errno = 0;
  199. dict_dest_job_metrics = dictionary_create(DICT_OPTION_SINGLE_THREADED);
  200. // ------------------------------------------------------------------------
  201. // the main loop
  202. if (debug)
  203. fprintf(stderr, "starting data collection\n");
  204. time_t started_t = now_monotonic_sec();
  205. size_t iteration = 0;
  206. usec_t step = netdata_update_every * USEC_PER_SEC;
  207. heartbeat_t hb;
  208. heartbeat_init(&hb);
  209. for (iteration = 0; 1; iteration++)
  210. {
  211. heartbeat_next(&hb, step);
  212. if (unlikely(netdata_exit))
  213. {
  214. break;
  215. }
  216. reset_metrics();
  217. cups_dest_t *dests;
  218. num_dest_total = cupsGetDests2(http, &dests);
  219. if(unlikely(num_dest_total == 0)) {
  220. // reconnect to cups to check if the server is down.
  221. httpClose(http);
  222. http = httpConnect2(cupsServer(), ippPort(), NULL, AF_UNSPEC, cupsEncryption(), 0, netdata_update_every * 1000, NULL);
  223. if(http == NULL) {
  224. error("cups daemon is not running. Exiting!");
  225. exit(1);
  226. }
  227. }
  228. cups_dest_t *curr_dest = dests;
  229. int counter = 0;
  230. while (counter < num_dest_total) {
  231. if (counter != 0) {
  232. curr_dest++;
  233. }
  234. counter++;
  235. const char *printer_uri_supported = cupsGetOption("printer-uri-supported", curr_dest->num_options, curr_dest->options);
  236. if (!printer_uri_supported) {
  237. if(debug)
  238. fprintf(stderr, "destination %s discovered, but not yet setup as a local printer", curr_dest->name);
  239. continue;
  240. }
  241. const char *printer_is_accepting_jobs = cupsGetOption("printer-is-accepting-jobs", curr_dest->num_options, curr_dest->options);
  242. if (printer_is_accepting_jobs && !strcmp(printer_is_accepting_jobs, "true")) {
  243. num_dest_accepting_jobs++;
  244. }
  245. const char *printer_is_shared = cupsGetOption("printer-is-shared", curr_dest->num_options, curr_dest->options);
  246. if (printer_is_shared && !strcmp(printer_is_shared, "true")) {
  247. num_dest_shared++;
  248. }
  249. int printer_state = getIntegerOption("printer-state", curr_dest->num_options, curr_dest->options);
  250. switch (printer_state) {
  251. case 3:
  252. num_dest_idle++;
  253. break;
  254. case 4:
  255. num_dest_printing++;
  256. break;
  257. case 5:
  258. num_dest_stopped++;
  259. break;
  260. case INT_MIN:
  261. if(debug)
  262. fprintf(stderr, "printer state is missing for destination %s", curr_dest->name);
  263. break;
  264. default:
  265. error("Unknown printer state (%d) found.", printer_state);
  266. break;
  267. }
  268. /*
  269. * flag job metrics to print values.
  270. * This is needed to report also destinations with zero active jobs.
  271. */
  272. struct job_metrics *jm = get_job_metrics(curr_dest->name);
  273. jm->is_collected = 1;
  274. }
  275. cupsFreeDests(num_dest_total, dests);
  276. if (unlikely(netdata_exit))
  277. break;
  278. cups_job_t *jobs, *curr_job;
  279. int num_jobs = cupsGetJobs2(http, &jobs, NULL, 0, CUPS_WHICHJOBS_ACTIVE);
  280. int i;
  281. for (i = num_jobs, curr_job = jobs; i > 0; i--, curr_job++) {
  282. struct job_metrics *jm = get_job_metrics(curr_job->dest);
  283. jm->is_collected = 1;
  284. switch (curr_job->state) {
  285. case IPP_JOB_PENDING:
  286. jm->num_pending++;
  287. jm->size_pending += curr_job->size;
  288. global_job_metrics.num_pending++;
  289. global_job_metrics.size_pending += curr_job->size;
  290. break;
  291. case IPP_JOB_HELD:
  292. jm->num_held++;
  293. jm->size_held += curr_job->size;
  294. global_job_metrics.num_held++;
  295. global_job_metrics.size_held += curr_job->size;
  296. break;
  297. case IPP_JOB_PROCESSING:
  298. jm->num_processing++;
  299. jm->size_processing += curr_job->size;
  300. global_job_metrics.num_processing++;
  301. global_job_metrics.size_processing += curr_job->size;
  302. break;
  303. default:
  304. error("Unsupported job state (%u) found.", curr_job->state);
  305. break;
  306. }
  307. }
  308. cupsFreeJobs(num_jobs, jobs);
  309. dictionary_walkthrough_write(dict_dest_job_metrics, collect_job_metrics, NULL);
  310. static int cups_printer_by_option_created = 0;
  311. if (unlikely(!cups_printer_by_option_created))
  312. {
  313. cups_printer_by_option_created = 1;
  314. printf("CHART cups.dest_state '' 'Destinations by state' dests overview cups.dests_state stacked 100000 %i\n", netdata_update_every);
  315. printf("DIMENSION idle '' absolute 1 1\n");
  316. printf("DIMENSION printing '' absolute 1 1\n");
  317. printf("DIMENSION stopped '' absolute 1 1\n");
  318. printf("CHART cups.dest_option '' 'Destinations by option' dests overview cups.dests_option line 100001 %i\n", netdata_update_every);
  319. printf("DIMENSION total '' absolute 1 1\n");
  320. printf("DIMENSION acceptingjobs '' absolute 1 1\n");
  321. printf("DIMENSION shared '' absolute 1 1\n");
  322. printf("CHART cups.job_num '' 'Active jobs' jobs overview cups.job_num stacked 100002 %i\n", netdata_update_every);
  323. printf("DIMENSION pending '' absolute 1 1\n");
  324. printf("DIMENSION held '' absolute 1 1\n");
  325. printf("DIMENSION processing '' absolute 1 1\n");
  326. printf("CHART cups.job_size '' 'Active jobs size' KB overview cups.job_size stacked 100003 %i\n", netdata_update_every);
  327. printf("DIMENSION pending '' absolute 1 1\n");
  328. printf("DIMENSION held '' absolute 1 1\n");
  329. printf("DIMENSION processing '' absolute 1 1\n");
  330. }
  331. printf(
  332. "BEGIN cups.dest_state\n"
  333. "SET idle = %d\n"
  334. "SET printing = %d\n"
  335. "SET stopped = %d\n"
  336. "END\n",
  337. num_dest_idle, num_dest_printing, num_dest_stopped);
  338. printf(
  339. "BEGIN cups.dest_option\n"
  340. "SET total = %d\n"
  341. "SET acceptingjobs = %d\n"
  342. "SET shared = %d\n"
  343. "END\n",
  344. num_dest_total, num_dest_accepting_jobs, num_dest_shared);
  345. printf(
  346. "BEGIN cups.job_num\n"
  347. "SET pending = %d\n"
  348. "SET held = %d\n"
  349. "SET processing = %d\n"
  350. "END\n",
  351. global_job_metrics.num_pending, global_job_metrics.num_held, global_job_metrics.num_processing);
  352. printf(
  353. "BEGIN cups.job_size\n"
  354. "SET pending = %d\n"
  355. "SET held = %d\n"
  356. "SET processing = %d\n"
  357. "END\n",
  358. global_job_metrics.size_pending, global_job_metrics.size_held, global_job_metrics.size_processing);
  359. fflush(stdout);
  360. if (unlikely(netdata_exit))
  361. break;
  362. // restart check (14400 seconds)
  363. if (!now_monotonic_sec() - started_t > 14400)
  364. break;
  365. }
  366. httpClose(http);
  367. info("CUPS process exiting");
  368. }