slstatus.c 14 KB

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  1. /* See LICENSE file for copyright and license details. */
  2. #include <alsa/asoundlib.h>
  3. #include <fcntl.h>
  4. #include <ifaddrs.h>
  5. #include <limits.h>
  6. #include <linux/wireless.h>
  7. #include <netdb.h>
  8. #include <pwd.h>
  9. #include <stdarg.h>
  10. #include <stdio.h>
  11. #include <stdlib.h>
  12. #include <string.h>
  13. #include <sys/ioctl.h>
  14. #include <sys/stat.h>
  15. #include <sys/statvfs.h>
  16. #include <sys/socket.h>
  17. #include <sys/sysinfo.h>
  18. #include <sys/types.h>
  19. #include <time.h>
  20. #include <unistd.h>
  21. #include <X11/Xlib.h>
  22. #undef strlcat
  23. #undef strlcpy
  24. #include "strlcat.h"
  25. #include "strlcpy.h"
  26. typedef char *(*op_fun)();
  27. struct arg {
  28. op_fun func;
  29. const char *format;
  30. const char *args;
  31. };
  32. static void setstatus(const char *);
  33. static char *smprintf(const char *, ...);
  34. static char *battery_perc(const char *);
  35. static char *cpu_perc(void);
  36. static char *datetime(const char *);
  37. static char *disk_free(const char *);
  38. static char *disk_perc(const char *);
  39. static char *disk_total(const char *);
  40. static char *disk_used(const char *);
  41. static char *entropy(void);
  42. static char *gid(void);
  43. static char *hostname(void);
  44. static char *ip(const char *);
  45. static char *load_avg(void);
  46. static char *ram_free(void);
  47. static char *ram_perc(void);
  48. static char *ram_used(void);
  49. static char *ram_total(void);
  50. static char *run_command(const char *);
  51. static char *temp(const char *);
  52. static char *uid(void);
  53. static char *uptime(void);
  54. static char *username(void);
  55. static char *vol_perc(const char *);
  56. static char *wifi_perc(const char *);
  57. static char *wifi_essid(const char *);
  58. static Display *dpy;
  59. #include "config.h"
  60. static void
  61. setstatus(const char *str)
  62. {
  63. /* set WM_NAME via X11 */
  64. XStoreName(dpy, DefaultRootWindow(dpy), str);
  65. XSync(dpy, False);
  66. }
  67. static char *
  68. smprintf(const char *fmt, ...)
  69. {
  70. va_list ap;
  71. char *ret;
  72. int len;
  73. va_start(ap, fmt);
  74. len = vsnprintf(NULL, 0, fmt, ap);
  75. va_end(ap);
  76. ret = malloc(++len);
  77. if (ret == NULL) {
  78. perror("malloc");
  79. exit(1);
  80. }
  81. va_start(ap, fmt);
  82. vsnprintf(ret, len, fmt, ap);
  83. va_end(ap);
  84. return ret;
  85. }
  86. static char *
  87. battery_perc(const char *battery)
  88. {
  89. int now, full, perc;
  90. char batterynowfile[64];
  91. char batteryfullfile[64];
  92. FILE *fp;
  93. strlcpy(batterynowfile, BATTERY_PATH, sizeof(batterynowfile));
  94. strlcat(batterynowfile, battery, sizeof(batterynowfile));
  95. strlcat(batterynowfile, "/", sizeof(batterynowfile));
  96. strlcat(batterynowfile, BATTERY_NOW, sizeof(batterynowfile));
  97. strlcpy(batteryfullfile, BATTERY_PATH, sizeof(batteryfullfile));
  98. strlcat(batteryfullfile, battery, sizeof(batteryfullfile));
  99. strlcat(batteryfullfile, "/", sizeof(batteryfullfile));
  100. strlcat(batteryfullfile, BATTERY_FULL, sizeof(batteryfullfile));
  101. fp = fopen(batterynowfile, "r");
  102. if (fp == NULL ) {
  103. fprintf(stderr, "Error opening battery file: %s: %s\n",
  104. batterynowfile,
  105. strerror(errno));
  106. return smprintf(UNKNOWN_STR);
  107. }
  108. fscanf(fp, "%i", &now);
  109. fclose(fp);
  110. fp = fopen(batteryfullfile, "r");
  111. if (fp == NULL) {
  112. fprintf(stderr, "Error opening battery file: %s\n",
  113. strerror(errno));
  114. return smprintf(UNKNOWN_STR);
  115. }
  116. fscanf(fp, "%i", &full);
  117. fclose(fp);
  118. perc = now / (full / 100);
  119. return smprintf("%d%%", perc);
  120. }
  121. static char *
  122. cpu_perc(void)
  123. {
  124. int perc;
  125. long double a[4], b[4];
  126. FILE *fp = fopen("/proc/stat","r");
  127. if (fp == NULL) {
  128. fprintf(stderr, "Error opening stat file: %s\n",
  129. strerror(errno));
  130. return smprintf(UNKNOWN_STR);
  131. }
  132. fscanf(fp, "%*s %Lf %Lf %Lf %Lf", &a[0], &a[1], &a[2], &a[3]);
  133. fclose(fp);
  134. /* wait a second (for avg values) */
  135. sleep(1);
  136. fp = fopen("/proc/stat","r");
  137. if (fp == NULL) {
  138. fprintf(stderr, "Error opening stat file: %s\n",
  139. strerror(errno));
  140. return smprintf(UNKNOWN_STR);
  141. }
  142. fscanf(fp, "%*s %Lf %Lf %Lf %Lf", &b[0], &b[1], &b[2], &b[3]);
  143. fclose(fp);
  144. perc = 100 * ((b[0]+b[1]+b[2]) - (a[0]+a[1]+a[2])) / ((b[0]+b[1]+b[2]+b[3]) - (a[0]+a[1]+a[2]+a[3]));
  145. return smprintf("%d%%", perc);
  146. }
  147. static char *
  148. datetime(const char *timeformat)
  149. {
  150. time_t t;
  151. char timestr[80];
  152. t = time(NULL);
  153. if (strftime(timestr, sizeof(timestr), timeformat, localtime(&t)) == 0)
  154. return smprintf(UNKNOWN_STR);
  155. return smprintf("%s", timestr);
  156. }
  157. static char *
  158. disk_free(const char *mountpoint)
  159. {
  160. struct statvfs fs;
  161. if (statvfs(mountpoint, &fs) < 0) {
  162. fprintf(stderr, "Could not get filesystem info: %s\n",
  163. strerror(errno));
  164. return smprintf(UNKNOWN_STR);
  165. }
  166. return smprintf("%f", (float)fs.f_bsize * (float)fs.f_bfree / 1024 / 1024 / 1024);
  167. }
  168. static char *
  169. disk_perc(const char *mountpoint)
  170. {
  171. int perc = 0;
  172. struct statvfs fs;
  173. if (statvfs(mountpoint, &fs) < 0) {
  174. fprintf(stderr, "Could not get filesystem info: %s\n",
  175. strerror(errno));
  176. return smprintf(UNKNOWN_STR);
  177. }
  178. perc = 100 * (1.0f - ((float)fs.f_bfree / (float)fs.f_blocks));
  179. return smprintf("%d%%", perc);
  180. }
  181. static char *
  182. disk_total(const char *mountpoint)
  183. {
  184. struct statvfs fs;
  185. if (statvfs(mountpoint, &fs) < 0) {
  186. fprintf(stderr, "Could not get filesystem info: %s\n",
  187. strerror(errno));
  188. return smprintf(UNKNOWN_STR);
  189. }
  190. return smprintf("%f", (float)fs.f_bsize * (float)fs.f_blocks / 1024 / 1024 / 1024);
  191. }
  192. static char *
  193. disk_used(const char *mountpoint)
  194. {
  195. struct statvfs fs;
  196. if (statvfs(mountpoint, &fs) < 0) {
  197. fprintf(stderr, "Could not get filesystem info: %s\n",
  198. strerror(errno));
  199. return smprintf(UNKNOWN_STR);
  200. }
  201. return smprintf("%f", (float)fs.f_bsize * ((float)fs.f_blocks - (float)fs.f_bfree) / 1024 / 1024 / 1024);
  202. }
  203. static char *
  204. entropy(void)
  205. {
  206. int entropy = 0;
  207. FILE *fp = fopen("/proc/sys/kernel/random/entropy_avail", "r");
  208. if (fp == NULL) {
  209. fprintf(stderr, "Could not open entropy file: %s\n",
  210. strerror(errno));
  211. return smprintf(UNKNOWN_STR);
  212. }
  213. fscanf(fp, "%d", &entropy);
  214. fclose(fp);
  215. return smprintf("%d", entropy);
  216. }
  217. static char *
  218. gid(void)
  219. {
  220. gid_t gid = getgid();
  221. return smprintf("%d", gid);
  222. }
  223. static char *
  224. hostname(void)
  225. {
  226. char hostname[HOST_NAME_MAX];
  227. FILE *fp = fopen("/proc/sys/kernel/hostname", "r");
  228. if (fp == NULL) {
  229. fprintf(stderr, "Could not open hostname file: %s\n",
  230. strerror(errno));
  231. return smprintf(UNKNOWN_STR);
  232. }
  233. fgets(hostname, sizeof(hostname), fp);
  234. /* FIXME: needs improvement */
  235. memset(&hostname[strlen(hostname)-1], '\0',
  236. sizeof(hostname) - strlen(hostname));
  237. fclose(fp);
  238. return smprintf("%s", hostname);
  239. }
  240. static char *
  241. ip(const char *interface)
  242. {
  243. struct ifaddrs *ifaddr, *ifa;
  244. int s;
  245. char host[NI_MAXHOST];
  246. if (getifaddrs(&ifaddr) == -1) {
  247. fprintf(stderr, "Error getting IP address: %s\n",
  248. strerror(errno));
  249. return smprintf(UNKNOWN_STR);
  250. }
  251. /* get the ip address */
  252. for (ifa = ifaddr; ifa != NULL; ifa = ifa->ifa_next) {
  253. if (ifa->ifa_addr == NULL)
  254. continue;
  255. s = getnameinfo(ifa->ifa_addr, sizeof(struct sockaddr_in), host, NI_MAXHOST,
  256. NULL, 0, NI_NUMERICHOST);
  257. if ((strcmp(ifa->ifa_name, interface) == 0) && (ifa->ifa_addr->sa_family == AF_INET)) {
  258. if (s != 0) {
  259. fprintf(stderr, "Error getting IP address.\n");
  260. return smprintf(UNKNOWN_STR);
  261. }
  262. return smprintf("%s", host);
  263. }
  264. }
  265. /* free the address */
  266. freeifaddrs(ifaddr);
  267. return smprintf(UNKNOWN_STR);
  268. }
  269. static char *
  270. load_avg(void)
  271. {
  272. double avgs[3];
  273. if (getloadavg(avgs, 3) < 0) {
  274. fprintf(stderr, "Error getting load avg.\n");
  275. return smprintf(UNKNOWN_STR);
  276. }
  277. return smprintf("%.2f %.2f %.2f", avgs[0], avgs[1], avgs[2]);
  278. }
  279. static char *
  280. ram_free(void)
  281. {
  282. long free;
  283. FILE *fp = fopen("/proc/meminfo", "r");
  284. if (fp == NULL) {
  285. fprintf(stderr, "Error opening meminfo file: %s\n",
  286. strerror(errno));
  287. return smprintf(UNKNOWN_STR);
  288. }
  289. fscanf(fp, "MemFree: %ld kB\n", &free);
  290. fclose(fp);
  291. return smprintf("%f", (float)free / 1024 / 1024);
  292. }
  293. static char *
  294. ram_perc(void)
  295. {
  296. int perc;
  297. long total, free, buffers, cached;
  298. FILE *fp = fopen("/proc/meminfo", "r");
  299. if (fp == NULL) {
  300. fprintf(stderr, "Error opening meminfo file: %s\n",
  301. strerror(errno));
  302. return smprintf(UNKNOWN_STR);
  303. }
  304. fscanf(fp, "MemTotal: %ld kB\n", &total);
  305. fscanf(fp, "MemFree: %ld kB\n", &free);
  306. fscanf(fp, "MemAvailable: %ld kB\nBuffers: %ld kB\n", &buffers, &buffers);
  307. fscanf(fp, "Cached: %ld kB\n", &cached);
  308. fclose(fp);
  309. perc = 100 * ((total - free) - (buffers + cached)) / total;
  310. return smprintf("%d%%", perc);
  311. }
  312. static char *
  313. ram_total(void)
  314. {
  315. long total;
  316. FILE *fp = fopen("/proc/meminfo", "r");
  317. if (fp == NULL) {
  318. fprintf(stderr, "Error opening meminfo file: %s\n",
  319. strerror(errno));
  320. return smprintf(UNKNOWN_STR);
  321. }
  322. fscanf(fp, "MemTotal: %ld kB\n", &total);
  323. fclose(fp);
  324. return smprintf("%f", (float)total / 1024 / 1024);
  325. }
  326. static char *
  327. ram_used(void)
  328. {
  329. long free, total, buffers, cached, used;
  330. FILE *fp = fopen("/proc/meminfo", "r");
  331. if (fp == NULL) {
  332. fprintf(stderr, "Error opening meminfo file: %s\n",
  333. strerror(errno));
  334. return smprintf(UNKNOWN_STR);
  335. }
  336. fscanf(fp, "MemTotal: %ld kB\n", &total);
  337. fscanf(fp, "MemFree: %ld kB\n", &free);
  338. fscanf(fp, "MemAvailable: %ld kB\nBuffers: %ld kB\n", &buffers, &buffers);
  339. fscanf(fp, "Cached: %ld kB\n", &cached);
  340. fclose(fp);
  341. used = total - free - buffers - cached;
  342. return smprintf("%f", (float)used / 1024 / 1024);
  343. }
  344. static char *
  345. run_command(const char* command)
  346. {
  347. int good;
  348. FILE *fp = popen(command, "r");
  349. char buffer[64];
  350. if (fp == NULL) {
  351. fprintf(stderr, "Could not get command output for: %s: %s\n",
  352. command, strerror(errno));
  353. return smprintf(UNKNOWN_STR);
  354. }
  355. fgets(buffer, sizeof(buffer)-1, fp);
  356. pclose(fp);
  357. for (int i = 0 ; i != sizeof(buffer); i++) {
  358. if (buffer[i] == '\0') {
  359. good = 1;
  360. break;
  361. }
  362. }
  363. if (good)
  364. buffer[strlen(buffer)-1] = '\0';
  365. return smprintf("%s", buffer);
  366. }
  367. static char *
  368. temp(const char *file)
  369. {
  370. int temperature;
  371. FILE *fp = fopen(file, "r");
  372. if (fp == NULL) {
  373. fprintf(stderr, "Could not open temperature file: %s\n",
  374. strerror(errno));
  375. return smprintf(UNKNOWN_STR);
  376. }
  377. fscanf(fp, "%d", &temperature);
  378. fclose(fp);
  379. return smprintf("%d°C", temperature / 1000);
  380. }
  381. static char *
  382. uptime(void)
  383. {
  384. struct sysinfo info;
  385. int hours = 0;
  386. int minutes = 0;
  387. sysinfo(&info);
  388. hours = info.uptime / 3600;
  389. minutes = (info.uptime - hours * 3600 ) / 60;
  390. return smprintf("%dh %dm", hours, minutes);
  391. }
  392. static char *
  393. username(void)
  394. {
  395. register struct passwd *pw;
  396. register uid_t uid;
  397. uid = geteuid();
  398. pw = getpwuid(uid);
  399. if (pw)
  400. return smprintf("%s", pw->pw_name);
  401. else {
  402. fprintf(stderr, "Could not get username: %s\n",
  403. strerror(errno));
  404. return smprintf(UNKNOWN_STR);
  405. }
  406. return smprintf(UNKNOWN_STR);
  407. }
  408. static char *
  409. uid(void)
  410. {
  411. /* FIXME: WHY USE register modifier? */
  412. register uid_t uid;
  413. uid = geteuid();
  414. if (uid)
  415. return smprintf("%d", uid);
  416. else {
  417. fprintf(stderr, "Could not get uid.\n");
  418. return smprintf(UNKNOWN_STR);
  419. }
  420. return smprintf(UNKNOWN_STR);
  421. }
  422. static char *
  423. vol_perc(const char *soundcard)
  424. {
  425. int mute = 0;
  426. long vol = 0, max = 0, min = 0;
  427. snd_mixer_t *handle;
  428. snd_mixer_elem_t *pcm_mixer, *mas_mixer;
  429. snd_mixer_selem_id_t *vol_info, *mute_info;
  430. snd_mixer_open(&handle, 0);
  431. snd_mixer_attach(handle, soundcard);
  432. snd_mixer_selem_register(handle, NULL, NULL);
  433. snd_mixer_load(handle);
  434. snd_mixer_selem_id_malloc(&vol_info);
  435. snd_mixer_selem_id_malloc(&mute_info);
  436. if (vol_info == NULL || mute_info == NULL) {
  437. fprintf(stderr, "Could not get alsa volume.\n");
  438. return smprintf(UNKNOWN_STR);
  439. }
  440. snd_mixer_selem_id_set_name(vol_info, ALSA_CHANNEL);
  441. snd_mixer_selem_id_set_name(mute_info, ALSA_CHANNEL);
  442. pcm_mixer = snd_mixer_find_selem(handle, vol_info);
  443. mas_mixer = snd_mixer_find_selem(handle, mute_info);
  444. snd_mixer_selem_get_playback_volume_range((snd_mixer_elem_t *)pcm_mixer, &min, &max);
  445. snd_mixer_selem_get_playback_volume((snd_mixer_elem_t *)pcm_mixer, SND_MIXER_SCHN_MONO, &vol);
  446. snd_mixer_selem_get_playback_switch(mas_mixer, SND_MIXER_SCHN_MONO, &mute);
  447. if (vol_info)
  448. snd_mixer_selem_id_free(vol_info);
  449. if (mute_info)
  450. snd_mixer_selem_id_free(mute_info);
  451. if (handle)
  452. snd_mixer_close(handle);
  453. if (!mute)
  454. return smprintf("mute");
  455. else
  456. return smprintf("%d%%", (vol * 100) / max);
  457. }
  458. static char *
  459. wifi_perc(const char *wificard)
  460. {
  461. int strength;
  462. char buf[255];
  463. char *datastart;
  464. char path[64];
  465. char status[5];
  466. char needle[strlen(wificard)+2];
  467. FILE *fp;
  468. strlcpy(path, "/sys/class/net/", sizeof(path));
  469. strlcat(path, wificard, sizeof(path));
  470. strlcat(path, "/operstate", sizeof(path));
  471. fp = fopen(path, "r");
  472. if(fp == NULL) {
  473. fprintf(stderr, "Error opening wifi operstate file: %s\n",
  474. strerror(errno));
  475. return smprintf(UNKNOWN_STR);
  476. }
  477. fgets(status, 5, fp);
  478. fclose(fp);
  479. if(strcmp(status, "up\n") != 0)
  480. return smprintf(UNKNOWN_STR);
  481. fp = fopen("/proc/net/wireless", "r");
  482. if (fp == NULL) {
  483. fprintf(stderr, "Error opening wireless file: %s\n",
  484. strerror(errno));
  485. return smprintf(UNKNOWN_STR);
  486. }
  487. strlcpy(needle, wificard, sizeof(needle));
  488. strlcat(needle, ":", sizeof(needle));
  489. fgets(buf, sizeof(buf), fp);
  490. fgets(buf, sizeof(buf), fp);
  491. fgets(buf, sizeof(buf), fp);
  492. datastart = strstr(buf, needle);
  493. if (datastart != NULL) {
  494. datastart = strstr(buf, ":");
  495. sscanf(datastart + 1, " %*d %d %*d %*d %*d %*d %*d %*d %*d %*d", &strength);
  496. }
  497. fclose(fp);
  498. return smprintf("%d%%", strength);
  499. }
  500. static char *
  501. wifi_essid(const char *wificard)
  502. {
  503. char id[IW_ESSID_MAX_SIZE+1];
  504. int sockfd = socket(AF_INET, SOCK_DGRAM, 0);
  505. struct iwreq wreq;
  506. memset(&wreq, 0, sizeof(struct iwreq));
  507. wreq.u.essid.length = IW_ESSID_MAX_SIZE+1;
  508. sprintf(wreq.ifr_name, wificard);
  509. if(sockfd == -1) {
  510. fprintf(stderr, "Cannot open socket for interface: %s: %s\n",
  511. wificard, strerror(errno));
  512. return smprintf(UNKNOWN_STR);
  513. }
  514. wreq.u.essid.pointer = id;
  515. if (ioctl(sockfd,SIOCGIWESSID, &wreq) == -1) {
  516. fprintf(stderr, "Get ESSID ioctl failed for interface %s: %s\n",
  517. wificard, strerror(errno));
  518. return smprintf(UNKNOWN_STR);
  519. }
  520. if (strcmp((char *)wreq.u.essid.pointer, "") == 0)
  521. return smprintf(UNKNOWN_STR);
  522. else
  523. return smprintf("%s", (char *)wreq.u.essid.pointer);
  524. }
  525. int
  526. main(void)
  527. {
  528. size_t i;
  529. char status_string[4096];
  530. char *res, *element;
  531. struct arg argument;
  532. dpy = XOpenDisplay(0x0);
  533. if (!dpy) {
  534. fprintf(stderr, "Cannot open display!\n");
  535. exit(1);
  536. }
  537. for (;;) {
  538. memset(status_string, 0, sizeof(status_string));
  539. for (i = 0; i < sizeof(args) / sizeof(args[0]); ++i) {
  540. argument = args[i];
  541. if (argument.args == NULL)
  542. res = argument.func();
  543. else
  544. res = argument.func(argument.args);
  545. element = smprintf(argument.format, res);
  546. if (element == NULL) {
  547. element = smprintf(UNKNOWN_STR);
  548. fprintf(stderr, "Failed to format output.\n");
  549. }
  550. strlcat(status_string, element, sizeof(status_string));
  551. free(res);
  552. free(element);
  553. }
  554. setstatus(status_string);
  555. sleep(UPDATE_INTERVAL -1);
  556. }
  557. XCloseDisplay(dpy);
  558. return 0;
  559. }