sys_class_power_supply.c 15 KB

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  1. // SPDX-License-Identifier: GPL-3.0-or-later
  2. #include "plugin_proc.h"
  3. #define PLUGIN_PROC_MODULE_POWER_SUPPLY_NAME "/sys/class/power_supply"
  4. const char *ps_property_names[] = { "charge", "energy", "voltage"};
  5. const char *ps_property_titles[] = {"Battery charge", "Battery energy", "Power supply voltage"};
  6. const char *ps_property_units[] = { "Ah", "Wh", "V"};
  7. const char *ps_property_dim_names[] = {"empty_design", "empty", "now", "full", "full_design",
  8. "empty_design", "empty", "now", "full", "full_design",
  9. "min_design", "min", "now", "max", "max_design"};
  10. struct ps_property_dim {
  11. char *name;
  12. char *filename;
  13. int fd;
  14. RRDDIM *rd;
  15. unsigned long long value;
  16. int always_zero;
  17. struct ps_property_dim *next;
  18. };
  19. struct ps_property {
  20. char *name;
  21. char *title;
  22. char *units;
  23. RRDSET *st;
  24. struct ps_property_dim *property_dim_root;
  25. struct ps_property *next;
  26. };
  27. struct capacity {
  28. char *filename;
  29. int fd;
  30. RRDSET *st;
  31. RRDDIM *rd;
  32. unsigned long long value;
  33. };
  34. struct power_supply {
  35. char *name;
  36. uint32_t hash;
  37. int found;
  38. struct capacity *capacity;
  39. struct ps_property *property_root;
  40. struct power_supply *next;
  41. };
  42. static struct power_supply *power_supply_root = NULL;
  43. static int files_num = 0;
  44. void power_supply_free(struct power_supply *ps) {
  45. if(likely(ps)) {
  46. // free capacity structure
  47. if(likely(ps->capacity)) {
  48. if(likely(ps->capacity->st)) rrdset_is_obsolete(ps->capacity->st);
  49. freez(ps->capacity->filename);
  50. if(likely(ps->capacity->fd != -1)) close(ps->capacity->fd);
  51. files_num--;
  52. freez(ps->capacity);
  53. }
  54. freez(ps->name);
  55. struct ps_property *pr = ps->property_root;
  56. while(likely(pr)) {
  57. // free dimensions
  58. struct ps_property_dim *pd = pr->property_dim_root;
  59. while(likely(pd)) {
  60. freez(pd->name);
  61. freez(pd->filename);
  62. if(likely(pd->fd != -1)) close(pd->fd);
  63. files_num--;
  64. struct ps_property_dim *d = pd;
  65. pd = pd->next;
  66. freez(d);
  67. }
  68. // free properties
  69. if(likely(pr->st)) rrdset_is_obsolete(pr->st);
  70. freez(pr->name);
  71. freez(pr->title);
  72. freez(pr->units);
  73. struct ps_property *p = pr;
  74. pr = pr->next;
  75. freez(p);
  76. }
  77. // remove power supply from linked list
  78. if(likely(ps == power_supply_root)) {
  79. power_supply_root = ps->next;
  80. }
  81. else {
  82. struct power_supply *last;
  83. for(last = power_supply_root; last && last->next != ps; last = last->next);
  84. if(likely(last)) last->next = ps->next;
  85. }
  86. freez(ps);
  87. }
  88. }
  89. int do_sys_class_power_supply(int update_every, usec_t dt) {
  90. (void)dt;
  91. static int do_capacity = -1, do_property[3] = {-1};
  92. static int keep_fds_open = CONFIG_BOOLEAN_NO, keep_fds_open_config = -1;
  93. static char *dirname = NULL;
  94. if(unlikely(do_capacity == -1)) {
  95. do_capacity = config_get_boolean("plugin:proc:/sys/class/power_supply", "battery capacity", CONFIG_BOOLEAN_YES);
  96. do_property[0] = config_get_boolean("plugin:proc:/sys/class/power_supply", "battery charge", CONFIG_BOOLEAN_NO);
  97. do_property[1] = config_get_boolean("plugin:proc:/sys/class/power_supply", "battery energy", CONFIG_BOOLEAN_NO);
  98. do_property[2] = config_get_boolean("plugin:proc:/sys/class/power_supply", "power supply voltage", CONFIG_BOOLEAN_NO);
  99. keep_fds_open_config = config_get_boolean_ondemand("plugin:proc:/sys/class/power_supply", "keep files open", CONFIG_BOOLEAN_AUTO);
  100. char filename[FILENAME_MAX + 1];
  101. snprintfz(filename, FILENAME_MAX, "%s%s", netdata_configured_host_prefix, "/sys/class/power_supply");
  102. dirname = config_get("plugin:proc:/sys/class/power_supply", "directory to monitor", filename);
  103. }
  104. DIR *dir = opendir(dirname);
  105. if(unlikely(!dir)) {
  106. error("Cannot read directory '%s'", dirname);
  107. return 1;
  108. }
  109. struct dirent *de = NULL;
  110. while(likely(de = readdir(dir))) {
  111. if(likely(de->d_type == DT_DIR
  112. && (
  113. (de->d_name[0] == '.' && de->d_name[1] == '\0')
  114. || (de->d_name[0] == '.' && de->d_name[1] == '.' && de->d_name[2] == '\0')
  115. )))
  116. continue;
  117. if(likely(de->d_type == DT_LNK || de->d_type == DT_DIR)) {
  118. uint32_t hash = simple_hash(de->d_name);
  119. struct power_supply *ps;
  120. for(ps = power_supply_root; ps; ps = ps->next) {
  121. if(unlikely(ps->hash == hash && !strcmp(ps->name, de->d_name))) {
  122. ps->found = 1;
  123. break;
  124. }
  125. }
  126. // allocate memory for power supply and initialize it
  127. if(unlikely(!ps)) {
  128. ps = callocz(sizeof(struct power_supply), 1);
  129. ps->name = strdupz(de->d_name);
  130. ps->hash = simple_hash(de->d_name);
  131. ps->found = 1;
  132. ps->next = power_supply_root;
  133. power_supply_root = ps;
  134. struct stat stbuf;
  135. if(likely(do_capacity != CONFIG_BOOLEAN_NO)) {
  136. char filename[FILENAME_MAX + 1];
  137. snprintfz(filename, FILENAME_MAX, "%s/%s/%s", dirname, de->d_name, "capacity");
  138. if (stat(filename, &stbuf) == 0) {
  139. ps->capacity = callocz(sizeof(struct capacity), 1);
  140. ps->capacity->filename = strdupz(filename);
  141. ps->capacity->fd = -1;
  142. files_num++;
  143. }
  144. }
  145. // allocate memory and initialize structures for every property and file found
  146. size_t pr_idx, pd_idx;
  147. size_t prev_idx = 3; // there is no property with this index
  148. for(pr_idx = 0; pr_idx < 3; pr_idx++) {
  149. if(unlikely(do_property[pr_idx] != CONFIG_BOOLEAN_NO)) {
  150. struct ps_property *pr = NULL;
  151. int min_value_found = 0, max_value_found = 0;
  152. for(pd_idx = pr_idx * 5; pd_idx < pr_idx * 5 + 5; pd_idx++) {
  153. // check if file exists
  154. char filename[FILENAME_MAX + 1];
  155. snprintfz(filename, FILENAME_MAX, "%s/%s/%s_%s", dirname, de->d_name,
  156. ps_property_names[pr_idx], ps_property_dim_names[pd_idx]);
  157. if (stat(filename, &stbuf) == 0) {
  158. if(unlikely(pd_idx == pr_idx * 5 + 1))
  159. min_value_found = 1;
  160. if(unlikely(pd_idx == pr_idx * 5 + 3))
  161. max_value_found = 1;
  162. // add chart
  163. if(unlikely(prev_idx != pr_idx)) {
  164. pr = callocz(sizeof(struct ps_property), 1);
  165. pr->name = strdupz(ps_property_names[pr_idx]);
  166. pr->title = strdupz(ps_property_titles[pr_idx]);
  167. pr->units = strdupz(ps_property_units[pr_idx]);
  168. prev_idx = pr_idx;
  169. pr->next = ps->property_root;
  170. ps->property_root = pr;
  171. }
  172. // add dimension
  173. struct ps_property_dim *pd;
  174. pd= callocz(sizeof(struct ps_property_dim), 1);
  175. pd->name = strdupz(ps_property_dim_names[pd_idx]);
  176. pd->filename = strdupz(filename);
  177. pd->fd = -1;
  178. files_num++;
  179. pd->next = pr->property_dim_root;
  180. pr->property_dim_root = pd;
  181. }
  182. }
  183. // create a zero empty/min dimension
  184. if(unlikely(max_value_found && !min_value_found)) {
  185. struct ps_property_dim *pd;
  186. pd= callocz(sizeof(struct ps_property_dim), 1);
  187. pd->name = strdupz(ps_property_dim_names[pr_idx * 5 + 1]);
  188. pd->always_zero = 1;
  189. pd->next = pr->property_dim_root;
  190. pr->property_dim_root = pd;
  191. }
  192. }
  193. }
  194. }
  195. // read capacity file
  196. if(likely(ps->capacity)) {
  197. char buffer[30 + 1];
  198. if(unlikely(ps->capacity->fd == -1)) {
  199. ps->capacity->fd = open(ps->capacity->filename, O_RDONLY, 0666);
  200. if(unlikely(ps->capacity->fd == -1)) {
  201. error("Cannot open file '%s'", ps->capacity->filename);
  202. power_supply_free(ps);
  203. ps = NULL;
  204. }
  205. }
  206. if (ps)
  207. {
  208. ssize_t r = read(ps->capacity->fd, buffer, 30);
  209. if(unlikely(r < 1)) {
  210. error("Cannot read file '%s'", ps->capacity->filename);
  211. power_supply_free(ps);
  212. ps = NULL;
  213. }
  214. else {
  215. buffer[r] = '\0';
  216. ps->capacity->value = str2ull(buffer);
  217. if(unlikely(!keep_fds_open)) {
  218. close(ps->capacity->fd);
  219. ps->capacity->fd = -1;
  220. }
  221. else if(unlikely(lseek(ps->capacity->fd, 0, SEEK_SET) == -1)) {
  222. error("Cannot seek in file '%s'", ps->capacity->filename);
  223. close(ps->capacity->fd);
  224. ps->capacity->fd = -1;
  225. }
  226. }
  227. }
  228. }
  229. // read property files
  230. int read_error = 0;
  231. struct ps_property *pr;
  232. if (ps)
  233. {
  234. for(pr = ps->property_root; pr && !read_error; pr = pr->next) {
  235. struct ps_property_dim *pd;
  236. for(pd = pr->property_dim_root; pd; pd = pd->next) {
  237. if(likely(!pd->always_zero)) {
  238. char buffer[30 + 1];
  239. if(unlikely(pd->fd == -1)) {
  240. pd->fd = open(pd->filename, O_RDONLY, 0666);
  241. if(unlikely(pd->fd == -1)) {
  242. error("Cannot open file '%s'", pd->filename);
  243. read_error = 1;
  244. power_supply_free(ps);
  245. break;
  246. }
  247. }
  248. ssize_t r = read(pd->fd, buffer, 30);
  249. if(unlikely(r < 1)) {
  250. error("Cannot read file '%s'", pd->filename);
  251. read_error = 1;
  252. power_supply_free(ps);
  253. break;
  254. }
  255. buffer[r] = '\0';
  256. pd->value = str2ull(buffer);
  257. if(unlikely(!keep_fds_open)) {
  258. close(pd->fd);
  259. pd->fd = -1;
  260. }
  261. else if(unlikely(lseek(pd->fd, 0, SEEK_SET) == -1)) {
  262. error("Cannot seek in file '%s'", pd->filename);
  263. close(pd->fd);
  264. pd->fd = -1;
  265. }
  266. }
  267. }
  268. }
  269. }
  270. }
  271. }
  272. closedir(dir);
  273. keep_fds_open = keep_fds_open_config;
  274. if(likely(keep_fds_open_config == CONFIG_BOOLEAN_AUTO)) {
  275. if(unlikely(files_num > 32))
  276. keep_fds_open = CONFIG_BOOLEAN_NO;
  277. else
  278. keep_fds_open = CONFIG_BOOLEAN_YES;
  279. }
  280. // --------------------------------------------------------------------
  281. struct power_supply *ps = power_supply_root;
  282. while(unlikely(ps)) {
  283. if(unlikely(!ps->found)) {
  284. struct power_supply *f = ps;
  285. ps = ps->next;
  286. power_supply_free(f);
  287. continue;
  288. }
  289. if(likely(ps->capacity)) {
  290. if(unlikely(!ps->capacity->st)) {
  291. ps->capacity->st = rrdset_create_localhost(
  292. "powersupply_capacity"
  293. , ps->name
  294. , NULL
  295. , ps->name
  296. , "powersupply.capacity"
  297. , "Battery capacity"
  298. , "percentage"
  299. , PLUGIN_PROC_NAME
  300. , PLUGIN_PROC_MODULE_POWER_SUPPLY_NAME
  301. , NETDATA_CHART_PRIO_POWER_SUPPLY_CAPACITY
  302. , update_every
  303. , RRDSET_TYPE_LINE
  304. );
  305. }
  306. else
  307. rrdset_next(ps->capacity->st);
  308. if(unlikely(!ps->capacity->rd)) ps->capacity->rd = rrddim_add(ps->capacity->st, "capacity", NULL, 1, 1, RRD_ALGORITHM_ABSOLUTE);
  309. rrddim_set_by_pointer(ps->capacity->st, ps->capacity->rd, ps->capacity->value);
  310. rrdset_done(ps->capacity->st);
  311. }
  312. struct ps_property *pr;
  313. for(pr = ps->property_root; pr; pr = pr->next) {
  314. if(unlikely(!pr->st)) {
  315. char id[RRD_ID_LENGTH_MAX + 1], context[RRD_ID_LENGTH_MAX + 1];
  316. snprintfz(id, RRD_ID_LENGTH_MAX, "powersupply_%s", pr->name);
  317. snprintfz(context, RRD_ID_LENGTH_MAX, "powersupply.%s", pr->name);
  318. pr->st = rrdset_create_localhost(
  319. id
  320. , ps->name
  321. , NULL
  322. , ps->name
  323. , context
  324. , pr->title
  325. , pr->units
  326. , PLUGIN_PROC_NAME
  327. , PLUGIN_PROC_MODULE_POWER_SUPPLY_NAME
  328. , NETDATA_CHART_PRIO_POWER_SUPPLY_CAPACITY
  329. , update_every
  330. , RRDSET_TYPE_LINE
  331. );
  332. }
  333. else
  334. rrdset_next(pr->st);
  335. struct ps_property_dim *pd;
  336. for(pd = pr->property_dim_root; pd; pd = pd->next) {
  337. if(unlikely(!pd->rd)) pd->rd = rrddim_add(pr->st, pd->name, NULL, 1, 1000000, RRD_ALGORITHM_ABSOLUTE);
  338. rrddim_set_by_pointer(pr->st, pd->rd, pd->value);
  339. }
  340. rrdset_done(pr->st);
  341. }
  342. ps->found = 0;
  343. ps = ps->next;
  344. }
  345. return 0;
  346. }