httpd.c 22 KB

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  1. /* snac - A simple, minimalistic ActivityPub instance */
  2. /* copyright (c) 2022 - 2024 grunfink et al. / MIT license */
  3. #include "xs.h"
  4. #include "xs_io.h"
  5. #include "xs_json.h"
  6. #include "xs_socket.h"
  7. #include "xs_httpd.h"
  8. #include "xs_mime.h"
  9. #include "xs_time.h"
  10. #include "xs_openssl.h"
  11. #include "xs_fcgi.h"
  12. #include "xs_html.h"
  13. #include "snac.h"
  14. #include <setjmp.h>
  15. #include <pthread.h>
  16. #include <semaphore.h>
  17. #include <fcntl.h>
  18. #include <stdint.h>
  19. #include <sys/resource.h> // for getrlimit()
  20. #include <sys/mman.h>
  21. #ifdef USE_POLL_FOR_SLEEP
  22. #include <poll.h>
  23. #endif
  24. /** server state **/
  25. srv_state *p_state = NULL;
  26. /** job control **/
  27. /* mutex to access the lists of jobs */
  28. static pthread_mutex_t job_mutex;
  29. /* semaphore to trigger job processing */
  30. static sem_t *job_sem;
  31. typedef struct job_fifo_item {
  32. struct job_fifo_item *next;
  33. xs_val *job;
  34. } job_fifo_item;
  35. static job_fifo_item *job_fifo_first = NULL;
  36. static job_fifo_item *job_fifo_last = NULL;
  37. /** other global data **/
  38. static jmp_buf on_break;
  39. /** code **/
  40. /* nodeinfo 2.0 template */
  41. const char *nodeinfo_2_0_template = ""
  42. "{\"version\":\"2.0\","
  43. "\"software\":{\"name\":\"snac\",\"version\":\"" VERSION "\"},"
  44. "\"protocols\":[\"activitypub\"],"
  45. "\"services\":{\"outbound\":[],\"inbound\":[]},"
  46. "\"usage\":{\"users\":{\"total\":%d,\"activeMonth\":%d,\"activeHalfyear\":%d},"
  47. "\"localPosts\":%d},"
  48. "\"openRegistrations\":false,\"metadata\":{}}";
  49. xs_str *nodeinfo_2_0(void)
  50. /* builds a nodeinfo json object */
  51. {
  52. int n_utotal = 0;
  53. int n_umonth = 0;
  54. int n_uhyear = 0;
  55. int n_posts = 0;
  56. xs *users = user_list();
  57. xs_list *p = users;
  58. char *v;
  59. double now = (double)time(NULL);
  60. while (xs_list_iter(&p, &v)) {
  61. /* build the full path name to the last usage log */
  62. xs *llfn = xs_fmt("%s/user/%s/lastlog.txt", srv_basedir, v);
  63. double llsecs = now - mtime(llfn);
  64. if (llsecs < 60 * 60 * 24 * 30 * 6) {
  65. n_uhyear++;
  66. if (llsecs < 60 * 60 * 24 * 30)
  67. n_umonth++;
  68. }
  69. n_utotal++;
  70. /* build the file to each user public.idx */
  71. xs *pidxfn = xs_fmt("%s/user/%s/public.idx", srv_basedir, v);
  72. n_posts += index_len(pidxfn);
  73. }
  74. return xs_fmt(nodeinfo_2_0_template, n_utotal, n_umonth, n_uhyear, n_posts);
  75. }
  76. static xs_str *greeting_html(void)
  77. /* processes and returns greeting.html */
  78. {
  79. /* try to open greeting.html */
  80. xs *fn = xs_fmt("%s/greeting.html", srv_basedir);
  81. FILE *f;
  82. xs_str *s = NULL;
  83. if ((f = fopen(fn, "r")) != NULL) {
  84. s = xs_readall(f);
  85. fclose(f);
  86. /* replace %host% */
  87. s = xs_replace_i(s, "%host%", xs_dict_get(srv_config, "host"));
  88. const char *adm_email = xs_dict_get(srv_config, "admin_email");
  89. if (xs_is_null(adm_email) || *adm_email == '\0')
  90. adm_email = "the administrator of this instance";
  91. /* replace %admin_email */
  92. s = xs_replace_i(s, "%admin_email%", adm_email);
  93. /* does it have a %userlist% mark? */
  94. if (xs_str_in(s, "%userlist%") != -1) {
  95. char *host = xs_dict_get(srv_config, "host");
  96. xs *list = user_list();
  97. xs_list *p = list;
  98. xs_str *uid;
  99. xs_html *ul = xs_html_tag("ul",
  100. xs_html_attr("class", "snac-user-list"));
  101. p = list;
  102. while (xs_list_iter(&p, &uid)) {
  103. snac user;
  104. if (user_open(&user, uid)) {
  105. xs_html_add(ul,
  106. xs_html_tag("li",
  107. xs_html_tag("a",
  108. xs_html_attr("href", user.actor),
  109. xs_html_text("@"),
  110. xs_html_text(uid),
  111. xs_html_text("@"),
  112. xs_html_text(host),
  113. xs_html_text(" ("),
  114. xs_html_text(xs_dict_get(user.config, "name")),
  115. xs_html_text(")"))));
  116. user_free(&user);
  117. }
  118. }
  119. xs *s1 = xs_html_render(ul);
  120. s = xs_replace_i(s, "%userlist%", s1);
  121. }
  122. }
  123. return s;
  124. }
  125. int server_get_handler(xs_dict *req, const char *q_path,
  126. char **body, int *b_size, char **ctype)
  127. /* basic server services */
  128. {
  129. int status = 0;
  130. (void)req;
  131. /* is it the server root? */
  132. if (*q_path == '\0') {
  133. xs_dict *q_vars = xs_dict_get(req, "q_vars");
  134. char *t = NULL;
  135. if (xs_type(q_vars) == XSTYPE_DICT && (t = xs_dict_get(q_vars, "t"))) {
  136. /** search by tag **/
  137. int skip = 0;
  138. int show = xs_number_get(xs_dict_get(srv_config, "max_timeline_entries"));
  139. char *v;
  140. if ((v = xs_dict_get(q_vars, "skip")) != NULL)
  141. skip = atoi(v);
  142. if ((v = xs_dict_get(q_vars, "show")) != NULL)
  143. show = atoi(v);
  144. xs *tl = tag_search(t, skip, show + 1);
  145. int more = 0;
  146. if (xs_list_len(tl) >= show + 1) {
  147. /* drop the last one */
  148. tl = xs_list_del(tl, -1);
  149. more = 1;
  150. }
  151. *body = html_timeline(NULL, tl, 0, skip, show, more, t, NULL, 0);
  152. }
  153. else
  154. if (xs_type(xs_dict_get(srv_config, "show_instance_timeline")) == XSTYPE_TRUE) {
  155. /** instance timeline **/
  156. xs *tl = timeline_instance_list(0, 30);
  157. *body = html_timeline(NULL, tl, 0, 0, 0, 0, NULL, NULL, 0);
  158. }
  159. else
  160. *body = greeting_html();
  161. if (*body)
  162. status = 200;
  163. }
  164. else
  165. if (strcmp(q_path, "/susie.png") == 0 || strcmp(q_path, "/favicon.ico") == 0 ) {
  166. status = 200;
  167. *body = xs_base64_dec(default_avatar_base64(), b_size);
  168. *ctype = "image/png";
  169. }
  170. else
  171. if (strcmp(q_path, "/.well-known/nodeinfo") == 0) {
  172. status = 200;
  173. *ctype = "application/json; charset=utf-8";
  174. *body = xs_fmt("{\"links\":["
  175. "{\"rel\":\"http:/" "/nodeinfo.diaspora.software/ns/schema/2.0\","
  176. "\"href\":\"%s/nodeinfo_2_0\"}]}",
  177. srv_baseurl);
  178. }
  179. else
  180. if (strcmp(q_path, "/.well-known/host-meta") == 0) {
  181. status = 200;
  182. *ctype = "application/xrd+xml";
  183. *body = xs_fmt("<?xml version=\"1.0\" encoding=\"UTF-8\"?>\n"
  184. "<XRD>"
  185. "<Link rel=\"lrdd\" type=\"application/xrd+xml\" template=\"https://%s/.well-known/webfinger?resource={uri}\"/>"
  186. "</XRD>", xs_dict_get(srv_config, "host"));
  187. }
  188. else
  189. if (strcmp(q_path, "/nodeinfo_2_0") == 0) {
  190. status = 200;
  191. *ctype = "application/json; charset=utf-8";
  192. *body = nodeinfo_2_0();
  193. }
  194. else
  195. if (strcmp(q_path, "/robots.txt") == 0) {
  196. status = 200;
  197. *ctype = "text/plain";
  198. *body = xs_str_new("User-agent: *\n"
  199. "Disallow: /\n");
  200. }
  201. if (status != 0)
  202. srv_debug(1, xs_fmt("server_get_handler serving '%s' %d", q_path, status));
  203. return status;
  204. }
  205. void httpd_connection(FILE *f)
  206. /* the connection processor */
  207. {
  208. xs *req;
  209. char *method;
  210. int status = 0;
  211. xs_str *body = NULL;
  212. int b_size = 0;
  213. char *ctype = NULL;
  214. xs *headers = xs_dict_new();
  215. xs *q_path = NULL;
  216. xs *payload = NULL;
  217. xs *etag = NULL;
  218. int p_size = 0;
  219. char *p;
  220. int fcgi_id;
  221. if (p_state->use_fcgi)
  222. req = xs_fcgi_request(f, &payload, &p_size, &fcgi_id);
  223. else
  224. req = xs_httpd_request(f, &payload, &p_size);
  225. if (req == NULL) {
  226. /* probably because a timeout */
  227. fclose(f);
  228. return;
  229. }
  230. if (!(method = xs_dict_get(req, "method")) || !(p = xs_dict_get(req, "path"))) {
  231. /* missing needed headers; discard */
  232. fclose(f);
  233. return;
  234. }
  235. q_path = xs_dup(p);
  236. /* crop the q_path from leading / and the prefix */
  237. if (xs_endswith(q_path, "/"))
  238. q_path = xs_crop_i(q_path, 0, -1);
  239. p = xs_dict_get(srv_config, "prefix");
  240. if (xs_startswith(q_path, p))
  241. q_path = xs_crop_i(q_path, strlen(p), 0);
  242. if (strcmp(method, "GET") == 0 || strcmp(method, "HEAD") == 0) {
  243. /* cascade through */
  244. if (status == 0)
  245. status = server_get_handler(req, q_path, &body, &b_size, &ctype);
  246. if (status == 0)
  247. status = webfinger_get_handler(req, q_path, &body, &b_size, &ctype);
  248. if (status == 0)
  249. status = activitypub_get_handler(req, q_path, &body, &b_size, &ctype);
  250. #ifndef NO_MASTODON_API
  251. if (status == 0)
  252. status = oauth_get_handler(req, q_path, &body, &b_size, &ctype);
  253. if (status == 0)
  254. status = mastoapi_get_handler(req, q_path, &body, &b_size, &ctype);
  255. #endif /* NO_MASTODON_API */
  256. if (status == 0)
  257. status = html_get_handler(req, q_path, &body, &b_size, &ctype, &etag);
  258. }
  259. else
  260. if (strcmp(method, "POST") == 0) {
  261. #ifndef NO_MASTODON_API
  262. if (status == 0)
  263. status = oauth_post_handler(req, q_path,
  264. payload, p_size, &body, &b_size, &ctype);
  265. if (status == 0)
  266. status = mastoapi_post_handler(req, q_path,
  267. payload, p_size, &body, &b_size, &ctype);
  268. #endif
  269. if (status == 0)
  270. status = activitypub_post_handler(req, q_path,
  271. payload, p_size, &body, &b_size, &ctype);
  272. if (status == 0)
  273. status = html_post_handler(req, q_path,
  274. payload, p_size, &body, &b_size, &ctype);
  275. }
  276. else
  277. if (strcmp(method, "PUT") == 0) {
  278. #ifndef NO_MASTODON_API
  279. if (status == 0)
  280. status = mastoapi_put_handler(req, q_path,
  281. payload, p_size, &body, &b_size, &ctype);
  282. #endif
  283. }
  284. else
  285. if (strcmp(method, "OPTIONS") == 0) {
  286. status = 200;
  287. }
  288. else
  289. if (strcmp(method, "DELETE") == 0) {
  290. #ifndef NO_MASTODON_API
  291. if (status == 0)
  292. status = mastoapi_delete_handler(req, q_path,
  293. &body, &b_size, &ctype);
  294. #endif
  295. }
  296. /* unattended? it's an error */
  297. if (status == 0) {
  298. srv_archive_error("unattended_method", "unattended method", req, payload);
  299. srv_debug(1, xs_fmt("httpd_connection unattended %s %s", method, q_path));
  300. status = 404;
  301. }
  302. if (status == 403)
  303. body = xs_str_new("<h1>403 Forbidden</h1>");
  304. if (status == 404)
  305. body = xs_str_new("<h1>404 Not Found</h1>");
  306. if (status == 400 && body != NULL)
  307. body = xs_str_new("<h1>400 Bad Request</h1>");
  308. if (status == 303)
  309. headers = xs_dict_append(headers, "location", body);
  310. if (status == 401) {
  311. xs *www_auth = xs_fmt("Basic realm=\"@%s@%s snac login\"",
  312. body, xs_dict_get(srv_config, "host"));
  313. headers = xs_dict_append(headers, "WWW-Authenticate", www_auth);
  314. }
  315. if (ctype == NULL)
  316. ctype = "text/html; charset=utf-8";
  317. headers = xs_dict_append(headers, "content-type", ctype);
  318. headers = xs_dict_append(headers, "x-creator", USER_AGENT);
  319. if (!xs_is_null(etag))
  320. headers = xs_dict_append(headers, "etag", etag);
  321. /* if there are any additional headers, add them */
  322. xs_dict *more_headers = xs_dict_get(srv_config, "http_headers");
  323. if (xs_type(more_headers) == XSTYPE_DICT) {
  324. char *k, *v;
  325. int c = 0;
  326. while (xs_dict_next(more_headers, &k, &v, &c))
  327. headers = xs_dict_set(headers, k, v);
  328. }
  329. if (b_size == 0 && body != NULL)
  330. b_size = strlen(body);
  331. /* if it was a HEAD, no body will be sent */
  332. if (strcmp(method, "HEAD") == 0)
  333. body = xs_free(body);
  334. headers = xs_dict_append(headers, "access-control-allow-origin", "*");
  335. headers = xs_dict_append(headers, "access-control-allow-headers", "*");
  336. if (p_state->use_fcgi)
  337. xs_fcgi_response(f, status, headers, body, b_size, fcgi_id);
  338. else
  339. xs_httpd_response(f, status, headers, body, b_size);
  340. fclose(f);
  341. srv_archive("RECV", NULL, req, payload, p_size, status, headers, body, b_size);
  342. /* JSON validation check */
  343. if (!xs_is_null(body) && strcmp(ctype, "application/json") == 0) {
  344. xs *j = xs_json_loads(body);
  345. if (j == NULL) {
  346. srv_log(xs_fmt("bad JSON"));
  347. srv_archive_error("bad_json", "bad JSON", req, body);
  348. }
  349. }
  350. xs_free(body);
  351. }
  352. void job_post(const xs_val *job, int urgent)
  353. /* posts a job for the threads to process it */
  354. {
  355. if (job != NULL) {
  356. /* lock the mutex */
  357. pthread_mutex_lock(&job_mutex);
  358. job_fifo_item *i = xs_realloc(NULL, sizeof(job_fifo_item));
  359. *i = (job_fifo_item){ NULL, xs_dup(job) };
  360. if (job_fifo_first == NULL)
  361. job_fifo_first = job_fifo_last = i;
  362. else
  363. if (urgent) {
  364. /* prepend */
  365. i->next = job_fifo_first;
  366. job_fifo_first = i;
  367. }
  368. else {
  369. /* append */
  370. job_fifo_last->next = i;
  371. job_fifo_last = i;
  372. }
  373. p_state->job_fifo_size++;
  374. if (p_state->job_fifo_size > p_state->peak_job_fifo_size)
  375. p_state->peak_job_fifo_size = p_state->job_fifo_size;
  376. /* unlock the mutex */
  377. pthread_mutex_unlock(&job_mutex);
  378. /* ask for someone to attend it */
  379. sem_post(job_sem);
  380. }
  381. }
  382. void job_wait(xs_val **job)
  383. /* waits for an available job */
  384. {
  385. *job = NULL;
  386. if (sem_wait(job_sem) == 0) {
  387. /* lock the mutex */
  388. pthread_mutex_lock(&job_mutex);
  389. /* dequeue */
  390. job_fifo_item *i = job_fifo_first;
  391. if (i != NULL) {
  392. job_fifo_first = i->next;
  393. if (job_fifo_first == NULL)
  394. job_fifo_last = NULL;
  395. *job = i->job;
  396. xs_free(i);
  397. p_state->job_fifo_size--;
  398. }
  399. /* unlock the mutex */
  400. pthread_mutex_unlock(&job_mutex);
  401. }
  402. }
  403. static void *job_thread(void *arg)
  404. /* job thread */
  405. {
  406. int pid = (int)(uintptr_t)arg;
  407. srv_debug(1, xs_fmt("job thread %d started", pid));
  408. for (;;) {
  409. xs *job = NULL;
  410. p_state->th_state[pid] = THST_WAIT;
  411. job_wait(&job);
  412. if (job == NULL) /* corrupted message? */
  413. continue;
  414. if (xs_type(job) == XSTYPE_FALSE) /* special message: exit */
  415. break;
  416. else
  417. if (xs_type(job) == XSTYPE_DATA) {
  418. /* it's a socket */
  419. FILE *f = NULL;
  420. p_state->th_state[pid] = THST_IN;
  421. xs_data_get(&f, job);
  422. if (f != NULL)
  423. httpd_connection(f);
  424. }
  425. else {
  426. /* it's a q_item */
  427. p_state->th_state[pid] = THST_QUEUE;
  428. process_queue_item(job);
  429. }
  430. }
  431. p_state->th_state[pid] = THST_STOP;
  432. srv_debug(1, xs_fmt("job thread %d stopped", pid));
  433. return NULL;
  434. }
  435. /* background thread sleep control */
  436. static pthread_mutex_t sleep_mutex;
  437. static pthread_cond_t sleep_cond;
  438. static void *background_thread(void *arg)
  439. /* background thread (queue management and other things) */
  440. {
  441. time_t purge_time;
  442. (void)arg;
  443. /* first purge time */
  444. purge_time = time(NULL) + 10 * 60;
  445. srv_log(xs_fmt("background thread started"));
  446. while (p_state->srv_running) {
  447. time_t t;
  448. int cnt = 0;
  449. p_state->th_state[0] = THST_QUEUE;
  450. {
  451. xs *list = user_list();
  452. char *p, *uid;
  453. /* process queues for all users */
  454. p = list;
  455. while (xs_list_iter(&p, &uid)) {
  456. snac snac;
  457. if (user_open(&snac, uid)) {
  458. cnt += process_user_queue(&snac);
  459. user_free(&snac);
  460. }
  461. }
  462. }
  463. /* global queue */
  464. cnt += process_queue();
  465. /* time to purge? */
  466. if ((t = time(NULL)) > purge_time) {
  467. /* next purge time is tomorrow */
  468. purge_time = t + 24 * 60 * 60;
  469. xs *q_item = xs_dict_new();
  470. q_item = xs_dict_append(q_item, "type", "purge");
  471. job_post(q_item, 0);
  472. }
  473. if (cnt == 0) {
  474. /* sleep 3 seconds */
  475. p_state->th_state[0] = THST_WAIT;
  476. #ifdef USE_POLL_FOR_SLEEP
  477. poll(NULL, 0, 3 * 1000);
  478. #else
  479. struct timespec ts;
  480. clock_gettime(CLOCK_REALTIME, &ts);
  481. ts.tv_sec += 3;
  482. pthread_mutex_lock(&sleep_mutex);
  483. while (pthread_cond_timedwait(&sleep_cond, &sleep_mutex, &ts) == 0);
  484. pthread_mutex_unlock(&sleep_mutex);
  485. #endif
  486. }
  487. }
  488. p_state->th_state[0] = THST_STOP;
  489. srv_log(xs_fmt("background thread stopped"));
  490. return NULL;
  491. }
  492. void term_handler(int s)
  493. {
  494. (void)s;
  495. longjmp(on_break, 1);
  496. }
  497. srv_state *srv_state_op(xs_str **fname, int op)
  498. /* opens or deletes the shared memory object */
  499. {
  500. int fd;
  501. srv_state *ss = NULL;
  502. if (*fname == NULL)
  503. *fname = xs_fmt("/%s_snac_state", xs_dict_get(srv_config, "host"));
  504. switch (op) {
  505. case 0: /* open for writing */
  506. if ((fd = shm_open(*fname, O_CREAT | O_RDWR, 0666)) != -1) {
  507. ftruncate(fd, sizeof(*ss));
  508. if ((ss = mmap(0, sizeof(*ss), PROT_READ | PROT_WRITE,
  509. MAP_SHARED, fd, 0)) == MAP_FAILED)
  510. ss = NULL;
  511. close(fd);
  512. }
  513. if (ss == NULL) {
  514. /* shared memory error: just create a plain structure */
  515. srv_log(xs_fmt("warning: shm object error (%s)", strerror(errno)));
  516. ss = malloc(sizeof(*ss));
  517. }
  518. /* init structure */
  519. *ss = (srv_state){0};
  520. ss->s_size = sizeof(*ss);
  521. break;
  522. case 1: /* open for reading */
  523. if ((fd = shm_open(*fname, O_RDONLY, 0666)) != -1) {
  524. if ((ss = mmap(0, sizeof(*ss), PROT_READ, MAP_SHARED, fd, 0)) == MAP_FAILED)
  525. ss = NULL;
  526. close(fd);
  527. }
  528. if (ss == NULL) {
  529. /* shared memory error */
  530. srv_log(xs_fmt("error: shm object error (%s) server not running?", strerror(errno)));
  531. }
  532. else
  533. if (ss->s_size != sizeof(*ss)) {
  534. srv_log(xs_fmt("error: struct size mismatch (%d != %d)",
  535. ss->s_size, sizeof(*ss)));
  536. munmap(ss, sizeof(*ss));
  537. ss = NULL;
  538. }
  539. break;
  540. case 2: /* unlink */
  541. if (*fname)
  542. shm_unlink(*fname);
  543. break;
  544. }
  545. return ss;
  546. }
  547. void httpd(void)
  548. /* starts the server */
  549. {
  550. const char *address;
  551. const char *port;
  552. int rs;
  553. pthread_t threads[MAX_THREADS] = {0};
  554. int n;
  555. xs *sem_name = NULL;
  556. xs *shm_name = NULL;
  557. sem_t anon_job_sem;
  558. address = xs_dict_get(srv_config, "address");
  559. port = xs_number_str(xs_dict_get(srv_config, "port"));
  560. if ((rs = xs_socket_server(address, port)) == -1) {
  561. srv_log(xs_fmt("cannot bind socket to %s:%s", address, port));
  562. return;
  563. }
  564. /* setup the server stat structure */
  565. p_state = srv_state_op(&shm_name, 0);
  566. p_state->srv_start_time = time(NULL);
  567. p_state->use_fcgi = xs_type(xs_dict_get(srv_config, "fastcgi")) == XSTYPE_TRUE;
  568. p_state->srv_running = 1;
  569. signal(SIGPIPE, SIG_IGN);
  570. signal(SIGTERM, term_handler);
  571. signal(SIGINT, term_handler);
  572. srv_log(xs_fmt("httpd%s start %s:%s %s", p_state->use_fcgi ? " (FastCGI)" : "",
  573. address, port, USER_AGENT));
  574. /* show the number of usable file descriptors */
  575. struct rlimit r;
  576. getrlimit(RLIMIT_NOFILE, &r);
  577. srv_debug(0, xs_fmt("available (rlimit) fds: %d (cur) / %d (max)",
  578. (int) r.rlim_cur, (int) r.rlim_max));
  579. /* initialize the job control engine */
  580. pthread_mutex_init(&job_mutex, NULL);
  581. sem_name = xs_fmt("/job_%d", getpid());
  582. job_sem = sem_open(sem_name, O_CREAT, 0644, 0);
  583. if (job_sem == NULL) {
  584. /* error opening a named semaphore; try with an anonymous one */
  585. if (sem_init(&anon_job_sem, 0, 0) != -1)
  586. job_sem = &anon_job_sem;
  587. }
  588. if (job_sem == NULL) {
  589. srv_log(xs_fmt("fatal error: cannot create semaphore -- cannot continue"));
  590. return;
  591. }
  592. /* initialize sleep control */
  593. pthread_mutex_init(&sleep_mutex, NULL);
  594. pthread_cond_init(&sleep_cond, NULL);
  595. p_state->n_threads = xs_number_get(xs_dict_get(srv_config, "num_threads"));
  596. #ifdef _SC_NPROCESSORS_ONLN
  597. if (p_state->n_threads == 0) {
  598. /* get number of CPUs on the machine */
  599. p_state->n_threads = sysconf(_SC_NPROCESSORS_ONLN);
  600. }
  601. #endif
  602. if (p_state->n_threads < 4)
  603. p_state->n_threads = 4;
  604. if (p_state->n_threads > MAX_THREADS)
  605. p_state->n_threads = MAX_THREADS;
  606. srv_debug(0, xs_fmt("using %d threads", p_state->n_threads));
  607. /* thread #0 is the background thread */
  608. pthread_create(&threads[0], NULL, background_thread, NULL);
  609. /* the rest of threads are for job processing */
  610. char *ptr = (char *) 0x1;
  611. for (n = 1; n < p_state->n_threads; n++)
  612. pthread_create(&threads[n], NULL, job_thread, ptr++);
  613. if (setjmp(on_break) == 0) {
  614. for (;;) {
  615. FILE *f = xs_socket_accept(rs);
  616. if (f != NULL) {
  617. xs *job = xs_data_new(&f, sizeof(FILE *));
  618. job_post(job, 1);
  619. }
  620. else
  621. break;
  622. }
  623. }
  624. p_state->srv_running = 0;
  625. /* send as many exit jobs as working threads */
  626. for (n = 1; n < p_state->n_threads; n++)
  627. job_post(xs_stock(XSTYPE_FALSE), 0);
  628. /* wait for all the threads to exit */
  629. for (n = 0; n < p_state->n_threads; n++)
  630. pthread_join(threads[n], NULL);
  631. sem_close(job_sem);
  632. sem_unlink(sem_name);
  633. srv_state_op(&shm_name, 2);
  634. xs *uptime = xs_str_time_diff(time(NULL) - p_state->srv_start_time);
  635. srv_log(xs_fmt("httpd%s stop %s:%s (run time: %s)",
  636. p_state->use_fcgi ? " (FastCGI)" : "",
  637. address, port, uptime));
  638. }