cgroup-top.c 19 KB

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  1. // SPDX-License-Identifier: GPL-3.0-or-later
  2. #include "cgroup-internals.h"
  3. struct cgroup_netdev_link {
  4. size_t read_slot;
  5. NETDATA_DOUBLE received[2];
  6. NETDATA_DOUBLE sent[2];
  7. };
  8. static DICTIONARY *cgroup_netdev_link_dict = NULL;
  9. void cgroup_netdev_link_init(void) {
  10. cgroup_netdev_link_dict = dictionary_create_advanced(DICT_OPTION_FIXED_SIZE|DICT_OPTION_DONT_OVERWRITE_VALUE, NULL, sizeof(struct cgroup_netdev_link));
  11. }
  12. const DICTIONARY_ITEM *cgroup_netdev_get(struct cgroup *cg) {
  13. if(!cg->cgroup_netdev_link) {
  14. struct cgroup_netdev_link t = {
  15. .read_slot = 0,
  16. .received = {NAN, NAN},
  17. .sent = {NAN, NAN},
  18. };
  19. cg->cgroup_netdev_link =
  20. dictionary_set_and_acquire_item(cgroup_netdev_link_dict, cg->id, &t, sizeof(struct cgroup_netdev_link));
  21. }
  22. return dictionary_acquired_item_dup(cgroup_netdev_link_dict, cg->cgroup_netdev_link);
  23. }
  24. void cgroup_netdev_delete(struct cgroup *cg) {
  25. if(cg->cgroup_netdev_link) {
  26. dictionary_acquired_item_release(cgroup_netdev_link_dict, cg->cgroup_netdev_link);
  27. dictionary_del(cgroup_netdev_link_dict, cg->id);
  28. dictionary_garbage_collect(cgroup_netdev_link_dict);
  29. cg->cgroup_netdev_link = NULL;
  30. }
  31. }
  32. void cgroup_netdev_release(const DICTIONARY_ITEM *link) {
  33. if(link)
  34. dictionary_acquired_item_release(cgroup_netdev_link_dict, link);
  35. }
  36. const void *cgroup_netdev_dup(const DICTIONARY_ITEM *link) {
  37. return dictionary_acquired_item_dup(cgroup_netdev_link_dict, link);
  38. }
  39. void cgroup_netdev_reset_all(void) {
  40. struct cgroup_netdev_link *t;
  41. dfe_start_read(cgroup_netdev_link_dict, t) {
  42. if(t->read_slot >= 1) {
  43. t->read_slot = 0;
  44. t->received[1] = NAN;
  45. t->sent[1] = NAN;
  46. }
  47. else {
  48. t->read_slot = 1;
  49. t->received[0] = NAN;
  50. t->sent[0] = NAN;
  51. }
  52. }
  53. dfe_done(t);
  54. }
  55. void cgroup_netdev_add_bandwidth(const DICTIONARY_ITEM *link, NETDATA_DOUBLE received, NETDATA_DOUBLE sent) {
  56. if(!link)
  57. return;
  58. struct cgroup_netdev_link *t = dictionary_acquired_item_value(link);
  59. size_t slot = (t->read_slot) ? 0 : 1;
  60. if(isnan(t->received[slot]))
  61. t->received[slot] = received;
  62. else
  63. t->received[slot] += received;
  64. if(isnan(t->sent[slot]))
  65. t->sent[slot] = sent;
  66. else
  67. t->sent[slot] += sent;
  68. }
  69. void cgroup_netdev_get_bandwidth(struct cgroup *cg, NETDATA_DOUBLE *received, NETDATA_DOUBLE *sent) {
  70. if(!cg->cgroup_netdev_link) {
  71. *received = NAN;
  72. *sent = NAN;
  73. return;
  74. }
  75. struct cgroup_netdev_link *t = dictionary_acquired_item_value(cg->cgroup_netdev_link);
  76. size_t slot = (t->read_slot) ? 1 : 0;
  77. *received = t->received[slot];
  78. *sent = t->sent[slot];
  79. }
  80. int cgroup_function_cgroup_top(BUFFER *wb, const char *function __maybe_unused) {
  81. buffer_flush(wb);
  82. wb->content_type = CT_APPLICATION_JSON;
  83. buffer_json_initialize(wb, "\"", "\"", 0, true, BUFFER_JSON_OPTIONS_DEFAULT);
  84. buffer_json_member_add_string(wb, "hostname", rrdhost_hostname(localhost));
  85. buffer_json_member_add_uint64(wb, "status", HTTP_RESP_OK);
  86. buffer_json_member_add_string(wb, "type", "table");
  87. buffer_json_member_add_time_t(wb, "update_every", 1);
  88. buffer_json_member_add_string(wb, "help", RRDFUNCTIONS_CGTOP_HELP);
  89. buffer_json_member_add_array(wb, "data");
  90. double max_pids = 0.0;
  91. double max_cpu = 0.0;
  92. double max_ram = 0.0;
  93. double max_disk_io_read = 0.0;
  94. double max_disk_io_written = 0.0;
  95. double max_net_received = 0.0;
  96. double max_net_sent = 0.0;
  97. RRDDIM *rd = NULL;
  98. uv_mutex_lock(&cgroup_root_mutex);
  99. for(struct cgroup *cg = cgroup_root; cg ; cg = cg->next) {
  100. if(unlikely(!cg->enabled || cg->pending_renames || !cg->function_ready || is_cgroup_systemd_service(cg)))
  101. continue;
  102. buffer_json_add_array_item_array(wb);
  103. buffer_json_add_array_item_string(wb, cg->name); // Name
  104. if(k8s_is_kubepod(cg))
  105. buffer_json_add_array_item_string(wb, "k8s"); // Kind
  106. else
  107. buffer_json_add_array_item_string(wb, "cgroup"); // Kind
  108. double pids_current = rrddim_get_last_stored_value(cg->st_pids_rd_pids_current, &max_pids, 1.0);
  109. double cpu = NAN;
  110. if (cg->st_cpu_rd_user && cg->st_cpu_rd_system) {
  111. cpu = cg->st_cpu_rd_user->collector.last_stored_value + cg->st_cpu_rd_system->collector.last_stored_value;
  112. max_cpu = MAX(max_cpu, cpu);
  113. }
  114. double ram = rrddim_get_last_stored_value(cg->st_mem_rd_ram, &max_ram, 1.0);
  115. rd = cg->st_throttle_io_rd_read ? cg->st_throttle_io_rd_read : cg->st_io_rd_read;
  116. double disk_io_read = rrddim_get_last_stored_value(rd, &max_disk_io_read, 1024.0);
  117. rd = cg->st_throttle_io_rd_written ? cg->st_throttle_io_rd_written : cg->st_io_rd_written;
  118. double disk_io_written = rrddim_get_last_stored_value(rd, &max_disk_io_written, 1024.0);
  119. NETDATA_DOUBLE received, sent;
  120. cgroup_netdev_get_bandwidth(cg, &received, &sent);
  121. if (!isnan(received) && !isnan(sent)) {
  122. received /= 1000.0;
  123. sent /= 1000.0;
  124. max_net_received = MAX(max_net_received, received);
  125. max_net_sent = MAX(max_net_sent, sent);
  126. }
  127. buffer_json_add_array_item_double(wb, pids_current);
  128. buffer_json_add_array_item_double(wb, cpu);
  129. buffer_json_add_array_item_double(wb, ram);
  130. buffer_json_add_array_item_double(wb, disk_io_read);
  131. buffer_json_add_array_item_double(wb, disk_io_written);
  132. buffer_json_add_array_item_double(wb, received);
  133. buffer_json_add_array_item_double(wb, sent);
  134. buffer_json_array_close(wb);
  135. }
  136. uv_mutex_unlock(&cgroup_root_mutex);
  137. buffer_json_array_close(wb); // data
  138. buffer_json_member_add_object(wb, "columns");
  139. {
  140. size_t field_id = 0;
  141. // Node
  142. buffer_rrdf_table_add_field(wb, field_id++, "Name", "CGROUP Name",
  143. RRDF_FIELD_TYPE_STRING, RRDF_FIELD_VISUAL_VALUE, RRDF_FIELD_TRANSFORM_NONE,
  144. 0, NULL, NAN, RRDF_FIELD_SORT_ASCENDING, NULL,
  145. RRDF_FIELD_SUMMARY_COUNT, RRDF_FIELD_FILTER_MULTISELECT,
  146. RRDF_FIELD_OPTS_VISIBLE | RRDF_FIELD_OPTS_UNIQUE_KEY | RRDF_FIELD_OPTS_STICKY | RRDF_FIELD_OPTS_FULL_WIDTH,
  147. NULL);
  148. // Kind
  149. buffer_rrdf_table_add_field(wb, field_id++, "Kind", "CGROUP Kind",
  150. RRDF_FIELD_TYPE_STRING, RRDF_FIELD_VISUAL_VALUE, RRDF_FIELD_TRANSFORM_NONE,
  151. 0, NULL, NAN, RRDF_FIELD_SORT_ASCENDING, NULL,
  152. RRDF_FIELD_SUMMARY_COUNT, RRDF_FIELD_FILTER_MULTISELECT,
  153. RRDF_FIELD_OPTS_VISIBLE,
  154. NULL);
  155. // PIDs
  156. buffer_rrdf_table_add_field(wb, field_id++, "PIDs", "Number of Processes Currently in the CGROUP",
  157. RRDF_FIELD_TYPE_INTEGER, RRDF_FIELD_VISUAL_VALUE, RRDF_FIELD_TRANSFORM_NUMBER,
  158. 0, "pids", max_pids, RRDF_FIELD_SORT_DESCENDING, NULL,
  159. RRDF_FIELD_SUMMARY_SUM, RRDF_FIELD_FILTER_NONE,
  160. RRDF_FIELD_OPTS_VISIBLE,
  161. NULL);
  162. // CPU
  163. buffer_rrdf_table_add_field(wb, field_id++, "CPU", "CPU Usage",
  164. RRDF_FIELD_TYPE_BAR_WITH_INTEGER, RRDF_FIELD_VISUAL_BAR, RRDF_FIELD_TRANSFORM_NUMBER,
  165. 2, "%", max_cpu, RRDF_FIELD_SORT_DESCENDING, NULL,
  166. RRDF_FIELD_SUMMARY_SUM, RRDF_FIELD_FILTER_NONE,
  167. RRDF_FIELD_OPTS_VISIBLE,
  168. NULL);
  169. // RAM
  170. buffer_rrdf_table_add_field(wb, field_id++, "RAM", "RAM Usage",
  171. RRDF_FIELD_TYPE_BAR_WITH_INTEGER, RRDF_FIELD_VISUAL_BAR, RRDF_FIELD_TRANSFORM_NUMBER,
  172. 2, "MiB", max_ram, RRDF_FIELD_SORT_DESCENDING, NULL,
  173. RRDF_FIELD_SUMMARY_SUM, RRDF_FIELD_FILTER_NONE,
  174. RRDF_FIELD_OPTS_VISIBLE,
  175. NULL);
  176. // Disk IO Reads
  177. buffer_rrdf_table_add_field(wb, field_id++, "Reads", "Disk Read Data",
  178. RRDF_FIELD_TYPE_BAR_WITH_INTEGER, RRDF_FIELD_VISUAL_BAR, RRDF_FIELD_TRANSFORM_NUMBER,
  179. 2, "MiB", max_disk_io_read, RRDF_FIELD_SORT_DESCENDING, NULL,
  180. RRDF_FIELD_SUMMARY_SUM, RRDF_FIELD_FILTER_NONE,
  181. RRDF_FIELD_OPTS_VISIBLE,
  182. NULL);
  183. // Disk IO Writes
  184. buffer_rrdf_table_add_field(wb, field_id++, "Writes", "Disk Written Data",
  185. RRDF_FIELD_TYPE_BAR_WITH_INTEGER, RRDF_FIELD_VISUAL_BAR, RRDF_FIELD_TRANSFORM_NUMBER,
  186. 2, "MiB", max_disk_io_written, RRDF_FIELD_SORT_DESCENDING, NULL,
  187. RRDF_FIELD_SUMMARY_SUM, RRDF_FIELD_FILTER_NONE,
  188. RRDF_FIELD_OPTS_VISIBLE,
  189. NULL);
  190. // Network Received
  191. buffer_rrdf_table_add_field(wb, field_id++, "Received", "Network Traffic Received",
  192. RRDF_FIELD_TYPE_BAR_WITH_INTEGER, RRDF_FIELD_VISUAL_BAR, RRDF_FIELD_TRANSFORM_NUMBER,
  193. 2, "Mbps", max_net_received, RRDF_FIELD_SORT_DESCENDING, NULL,
  194. RRDF_FIELD_SUMMARY_SUM, RRDF_FIELD_FILTER_NONE,
  195. RRDF_FIELD_OPTS_VISIBLE,
  196. NULL);
  197. // Network Sent
  198. buffer_rrdf_table_add_field(wb, field_id++, "Sent", "Network Traffic Sent ",
  199. RRDF_FIELD_TYPE_BAR_WITH_INTEGER, RRDF_FIELD_VISUAL_BAR, RRDF_FIELD_TRANSFORM_NUMBER,
  200. 2, "Mbps", max_net_sent, RRDF_FIELD_SORT_DESCENDING, NULL,
  201. RRDF_FIELD_SUMMARY_SUM, RRDF_FIELD_FILTER_NONE,
  202. RRDF_FIELD_OPTS_VISIBLE,
  203. NULL);
  204. }
  205. buffer_json_object_close(wb); // columns
  206. buffer_json_member_add_string(wb, "default_sort_column", "CPU");
  207. buffer_json_member_add_object(wb, "charts");
  208. {
  209. buffer_json_member_add_object(wb, "CPU");
  210. {
  211. buffer_json_member_add_string(wb, "name", "CPU");
  212. buffer_json_member_add_string(wb, "type", "stacked-bar");
  213. buffer_json_member_add_array(wb, "columns");
  214. {
  215. buffer_json_add_array_item_string(wb, "CPU");
  216. }
  217. buffer_json_array_close(wb);
  218. }
  219. buffer_json_object_close(wb);
  220. buffer_json_member_add_object(wb, "Memory");
  221. {
  222. buffer_json_member_add_string(wb, "name", "Memory");
  223. buffer_json_member_add_string(wb, "type", "stacked-bar");
  224. buffer_json_member_add_array(wb, "columns");
  225. {
  226. buffer_json_add_array_item_string(wb, "RAM");
  227. }
  228. buffer_json_array_close(wb);
  229. }
  230. buffer_json_object_close(wb);
  231. buffer_json_member_add_object(wb, "Traffic");
  232. {
  233. buffer_json_member_add_string(wb, "name", "Traffic");
  234. buffer_json_member_add_string(wb, "type", "stacked-bar");
  235. buffer_json_member_add_array(wb, "columns");
  236. {
  237. buffer_json_add_array_item_string(wb, "Received");
  238. buffer_json_add_array_item_string(wb, "Sent");
  239. }
  240. buffer_json_array_close(wb);
  241. }
  242. buffer_json_object_close(wb);
  243. }
  244. buffer_json_object_close(wb); // charts
  245. buffer_json_member_add_array(wb, "default_charts");
  246. {
  247. buffer_json_add_array_item_array(wb);
  248. buffer_json_add_array_item_string(wb, "CPU");
  249. buffer_json_add_array_item_string(wb, "Name");
  250. buffer_json_array_close(wb);
  251. buffer_json_add_array_item_array(wb);
  252. buffer_json_add_array_item_string(wb, "Memory");
  253. buffer_json_add_array_item_string(wb, "Name");
  254. buffer_json_array_close(wb);
  255. }
  256. buffer_json_array_close(wb);
  257. buffer_json_member_add_object(wb, "group_by");
  258. {
  259. buffer_json_member_add_object(wb, "Kind");
  260. {
  261. buffer_json_member_add_string(wb, "name", "Kind");
  262. buffer_json_member_add_array(wb, "columns");
  263. {
  264. buffer_json_add_array_item_string(wb, "Kind");
  265. }
  266. buffer_json_array_close(wb);
  267. }
  268. buffer_json_object_close(wb);
  269. }
  270. buffer_json_object_close(wb); // group_by
  271. buffer_json_member_add_time_t(wb, "expires", now_realtime_sec() + 1);
  272. buffer_json_finalize(wb);
  273. return HTTP_RESP_OK;
  274. }
  275. int cgroup_function_systemd_top(BUFFER *wb, const char *function __maybe_unused) {
  276. buffer_flush(wb);
  277. wb->content_type = CT_APPLICATION_JSON;
  278. buffer_json_initialize(wb, "\"", "\"", 0, true, BUFFER_JSON_OPTIONS_DEFAULT);
  279. buffer_json_member_add_string(wb, "hostname", rrdhost_hostname(localhost));
  280. buffer_json_member_add_uint64(wb, "status", HTTP_RESP_OK);
  281. buffer_json_member_add_string(wb, "type", "table");
  282. buffer_json_member_add_time_t(wb, "update_every", 1);
  283. buffer_json_member_add_string(wb, "help", RRDFUNCTIONS_CGTOP_HELP);
  284. buffer_json_member_add_array(wb, "data");
  285. double max_pids = 0.0;
  286. double max_cpu = 0.0;
  287. double max_ram = 0.0;
  288. double max_disk_io_read = 0.0;
  289. double max_disk_io_written = 0.0;
  290. RRDDIM *rd = NULL;
  291. uv_mutex_lock(&cgroup_root_mutex);
  292. for(struct cgroup *cg = cgroup_root; cg ; cg = cg->next) {
  293. if(unlikely(!cg->enabled || cg->pending_renames || !cg->function_ready || !is_cgroup_systemd_service(cg)))
  294. continue;
  295. buffer_json_add_array_item_array(wb);
  296. buffer_json_add_array_item_string(wb, cg->name);
  297. double pids_current = rrddim_get_last_stored_value(cg->st_pids_rd_pids_current, &max_pids, 1.0);
  298. double cpu = NAN;
  299. if (cg->st_cpu_rd_user && cg->st_cpu_rd_system) {
  300. cpu = cg->st_cpu_rd_user->collector.last_stored_value + cg->st_cpu_rd_system->collector.last_stored_value;
  301. max_cpu = MAX(max_cpu, cpu);
  302. }
  303. double ram = rrddim_get_last_stored_value(cg->st_mem_rd_ram, &max_ram, 1.0);
  304. rd = cg->st_throttle_io_rd_read ? cg->st_throttle_io_rd_read : cg->st_io_rd_read;
  305. double disk_io_read = rrddim_get_last_stored_value(rd, &max_disk_io_read, 1024.0);
  306. rd = cg->st_throttle_io_rd_written ? cg->st_throttle_io_rd_written : cg->st_io_rd_written;
  307. double disk_io_written = rrddim_get_last_stored_value(rd, &max_disk_io_written, 1024.0);
  308. buffer_json_add_array_item_double(wb, pids_current);
  309. buffer_json_add_array_item_double(wb, cpu);
  310. buffer_json_add_array_item_double(wb, ram);
  311. buffer_json_add_array_item_double(wb, disk_io_read);
  312. buffer_json_add_array_item_double(wb, disk_io_written);
  313. buffer_json_array_close(wb);
  314. }
  315. uv_mutex_unlock(&cgroup_root_mutex);
  316. buffer_json_array_close(wb); // data
  317. buffer_json_member_add_object(wb, "columns");
  318. {
  319. size_t field_id = 0;
  320. // Node
  321. buffer_rrdf_table_add_field(wb, field_id++, "Name", "Systemd Service Name",
  322. RRDF_FIELD_TYPE_STRING, RRDF_FIELD_VISUAL_VALUE, RRDF_FIELD_TRANSFORM_NONE,
  323. 0, NULL, NAN, RRDF_FIELD_SORT_ASCENDING, NULL,
  324. RRDF_FIELD_SUMMARY_COUNT, RRDF_FIELD_FILTER_MULTISELECT,
  325. RRDF_FIELD_OPTS_VISIBLE | RRDF_FIELD_OPTS_UNIQUE_KEY | RRDF_FIELD_OPTS_STICKY | RRDF_FIELD_OPTS_FULL_WIDTH,
  326. NULL);
  327. // PIDs
  328. buffer_rrdf_table_add_field(wb, field_id++, "PIDs", "Number of Processes Currently in the CGROUP",
  329. RRDF_FIELD_TYPE_INTEGER, RRDF_FIELD_VISUAL_VALUE, RRDF_FIELD_TRANSFORM_NUMBER,
  330. 0, "pids", max_pids, RRDF_FIELD_SORT_DESCENDING, NULL,
  331. RRDF_FIELD_SUMMARY_SUM, RRDF_FIELD_FILTER_NONE,
  332. RRDF_FIELD_OPTS_VISIBLE,
  333. NULL);
  334. // CPU
  335. buffer_rrdf_table_add_field(wb, field_id++, "CPU", "CPU Usage",
  336. RRDF_FIELD_TYPE_BAR_WITH_INTEGER, RRDF_FIELD_VISUAL_BAR, RRDF_FIELD_TRANSFORM_NUMBER,
  337. 2, "%", max_cpu, RRDF_FIELD_SORT_DESCENDING, NULL,
  338. RRDF_FIELD_SUMMARY_SUM, RRDF_FIELD_FILTER_NONE,
  339. RRDF_FIELD_OPTS_VISIBLE,
  340. NULL);
  341. // RAM
  342. buffer_rrdf_table_add_field(wb, field_id++, "RAM", "RAM Usage",
  343. RRDF_FIELD_TYPE_BAR_WITH_INTEGER, RRDF_FIELD_VISUAL_BAR, RRDF_FIELD_TRANSFORM_NUMBER,
  344. 2, "MiB", max_ram, RRDF_FIELD_SORT_DESCENDING, NULL,
  345. RRDF_FIELD_SUMMARY_SUM, RRDF_FIELD_FILTER_NONE,
  346. RRDF_FIELD_OPTS_VISIBLE,
  347. NULL);
  348. // Disk IO Reads
  349. buffer_rrdf_table_add_field(wb, field_id++, "Reads", "Disk Read Data",
  350. RRDF_FIELD_TYPE_BAR_WITH_INTEGER, RRDF_FIELD_VISUAL_BAR, RRDF_FIELD_TRANSFORM_NUMBER,
  351. 2, "MiB", max_disk_io_read, RRDF_FIELD_SORT_DESCENDING, NULL,
  352. RRDF_FIELD_SUMMARY_SUM, RRDF_FIELD_FILTER_NONE,
  353. RRDF_FIELD_OPTS_VISIBLE,
  354. NULL);
  355. // Disk IO Writes
  356. buffer_rrdf_table_add_field(wb, field_id++, "Writes", "Disk Written Data",
  357. RRDF_FIELD_TYPE_BAR_WITH_INTEGER, RRDF_FIELD_VISUAL_BAR, RRDF_FIELD_TRANSFORM_NUMBER,
  358. 2, "MiB", max_disk_io_written, RRDF_FIELD_SORT_DESCENDING, NULL,
  359. RRDF_FIELD_SUMMARY_SUM, RRDF_FIELD_FILTER_NONE,
  360. RRDF_FIELD_OPTS_VISIBLE,
  361. NULL);
  362. }
  363. buffer_json_object_close(wb); // columns
  364. buffer_json_member_add_string(wb, "default_sort_column", "CPU");
  365. buffer_json_member_add_object(wb, "charts");
  366. {
  367. buffer_json_member_add_object(wb, "CPU");
  368. {
  369. buffer_json_member_add_string(wb, "name", "CPU");
  370. buffer_json_member_add_string(wb, "type", "stacked-bar");
  371. buffer_json_member_add_array(wb, "columns");
  372. {
  373. buffer_json_add_array_item_string(wb, "CPU");
  374. }
  375. buffer_json_array_close(wb);
  376. }
  377. buffer_json_object_close(wb);
  378. buffer_json_member_add_object(wb, "Memory");
  379. {
  380. buffer_json_member_add_string(wb, "name", "Memory");
  381. buffer_json_member_add_string(wb, "type", "stacked-bar");
  382. buffer_json_member_add_array(wb, "columns");
  383. {
  384. buffer_json_add_array_item_string(wb, "RAM");
  385. }
  386. buffer_json_array_close(wb);
  387. }
  388. buffer_json_object_close(wb);
  389. }
  390. buffer_json_object_close(wb); // charts
  391. buffer_json_member_add_array(wb, "default_charts");
  392. {
  393. buffer_json_add_array_item_array(wb);
  394. buffer_json_add_array_item_string(wb, "CPU");
  395. buffer_json_add_array_item_string(wb, "Name");
  396. buffer_json_array_close(wb);
  397. buffer_json_add_array_item_array(wb);
  398. buffer_json_add_array_item_string(wb, "Memory");
  399. buffer_json_add_array_item_string(wb, "Name");
  400. buffer_json_array_close(wb);
  401. }
  402. buffer_json_array_close(wb);
  403. buffer_json_member_add_time_t(wb, "expires", now_realtime_sec() + 1);
  404. buffer_json_finalize(wb);
  405. return HTTP_RESP_OK;
  406. }