mainloop.c 94 KB

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  1. /* Copyright (c) 2001 Matej Pfajfar.
  2. * Copyright (c) 2001-2004, Roger Dingledine.
  3. * Copyright (c) 2004-2006, Roger Dingledine, Nick Mathewson.
  4. * Copyright (c) 2007-2018, The Tor Project, Inc. */
  5. /* See LICENSE for licensing information */
  6. /**
  7. * \file mainloop.c
  8. * \brief Toplevel module. Handles signals, multiplexes between
  9. * connections, implements main loop, and drives scheduled events.
  10. *
  11. * For the main loop itself; see run_main_loop_once(). It invokes the rest of
  12. * Tor mostly through Libevent callbacks. Libevent callbacks can happen when
  13. * a timer elapses, a signal is received, a socket is ready to read or write,
  14. * or an event is manually activated.
  15. *
  16. * Most events in Tor are driven from these callbacks:
  17. * <ul>
  18. * <li>conn_read_callback() and conn_write_callback() here, which are
  19. * invoked when a socket is ready to read or write respectively.
  20. * <li>signal_callback(), which handles incoming signals.
  21. * </ul>
  22. * Other events are used for specific purposes, or for building more complex
  23. * control structures. If you search for usage of tor_libevent_new(), you
  24. * will find all the events that we construct in Tor.
  25. *
  26. * Tor has numerous housekeeping operations that need to happen
  27. * regularly. They are handled in different ways:
  28. * <ul>
  29. * <li>The most frequent operations are handled after every read or write
  30. * event, at the end of connection_handle_read() and
  31. * connection_handle_write().
  32. *
  33. * <li>The next most frequent operations happen after each invocation of the
  34. * main loop, in run_main_loop_once().
  35. *
  36. * <li>Once per second, we run all of the operations listed in
  37. * second_elapsed_callback(), and in its child, run_scheduled_events().
  38. *
  39. * <li>Once-a-second operations are handled in second_elapsed_callback().
  40. *
  41. * <li>More infrequent operations take place based on the periodic event
  42. * driver in periodic.c . These are stored in the periodic_events[]
  43. * table.
  44. * </ul>
  45. *
  46. **/
  47. #define MAINLOOP_PRIVATE
  48. #include "core/or/or.h"
  49. #include "feature/client/addressmap.h"
  50. #include "lib/err/backtrace.h"
  51. #include "feature/client/bridges.h"
  52. #include "lib/container/buffers.h"
  53. #include "lib/tls/buffers_tls.h"
  54. #include "core/or/channel.h"
  55. #include "core/or/channeltls.h"
  56. #include "core/or/channelpadding.h"
  57. #include "core/or/circuitbuild.h"
  58. #include "core/or/circuitlist.h"
  59. #include "core/or/circuituse.h"
  60. #include "app/config/config.h"
  61. #include "core/mainloop/connection.h"
  62. #include "core/or/connection_edge.h"
  63. #include "core/or/connection_or.h"
  64. #include "feature/dircache/consdiffmgr.h"
  65. #include "feature/control/control.h"
  66. #include "core/mainloop/cpuworker.h"
  67. #include "lib/crypt_ops/crypto_rand.h"
  68. #include "feature/dircommon/directory.h"
  69. #include "feature/dircache/dirserv.h"
  70. #include "feature/dirauth/reachability.h"
  71. #include "feature/relay/dns.h"
  72. #include "feature/client/dnsserv.h"
  73. #include "core/or/dos.h"
  74. #include "feature/client/entrynodes.h"
  75. #include "feature/stats/geoip.h"
  76. #include "feature/hibernate/hibernate.h"
  77. #include "feature/hs/hs_cache.h"
  78. #include "feature/hs/hs_client.h"
  79. #include "feature/hs/hs_service.h"
  80. #include "core/mainloop/mainloop.h"
  81. #include "feature/nodelist/microdesc.h"
  82. #include "feature/nodelist/networkstatus.h"
  83. #include "feature/nodelist/nodelist.h"
  84. #include "app/main/ntmain.h"
  85. #include "core/mainloop/periodic.h"
  86. #include "feature/client/transports.h"
  87. #include "feature/rend/rendcache.h"
  88. #include "feature/rend/rendservice.h"
  89. #include "feature/stats/rephist.h"
  90. #include "feature/relay/router.h"
  91. #include "feature/relay/routerkeys.h"
  92. #include "feature/nodelist/routerlist.h"
  93. #include "app/config/statefile.h"
  94. #include "core/or/status.h"
  95. #include "lib/net/buffers_net.h"
  96. #include "lib/evloop/compat_libevent.h"
  97. #include <event2/event.h>
  98. #include "feature/dirauth/dirvote.h"
  99. #include "feature/dirauth/mode.h"
  100. #include "core/or/cell_st.h"
  101. #include "core/or/entry_connection_st.h"
  102. #include "feature/nodelist/networkstatus_st.h"
  103. #include "core/or/or_connection_st.h"
  104. #include "app/config/or_state_st.h"
  105. #include "feature/nodelist/routerinfo_st.h"
  106. #include "core/or/socks_request_st.h"
  107. #ifdef HAVE_UNISTD_H
  108. #include <unistd.h>
  109. #endif
  110. #ifdef HAVE_SYSTEMD
  111. # if defined(__COVERITY__) && !defined(__INCLUDE_LEVEL__)
  112. /* Systemd's use of gcc's __INCLUDE_LEVEL__ extension macro appears to confuse
  113. * Coverity. Here's a kludge to unconfuse it.
  114. */
  115. # define __INCLUDE_LEVEL__ 2
  116. #endif /* defined(__COVERITY__) && !defined(__INCLUDE_LEVEL__) */
  117. #include <systemd/sd-daemon.h>
  118. #endif /* defined(HAVE_SYSTEMD) */
  119. /* Token bucket for all traffic. */
  120. token_bucket_rw_t global_bucket;
  121. /* Token bucket for relayed traffic. */
  122. token_bucket_rw_t global_relayed_bucket;
  123. /* XXX we might want to keep stats about global_relayed_*_bucket too. Or not.*/
  124. /** How many bytes have we read since we started the process? */
  125. static uint64_t stats_n_bytes_read = 0;
  126. /** How many bytes have we written since we started the process? */
  127. static uint64_t stats_n_bytes_written = 0;
  128. /** What time did this process start up? */
  129. time_t time_of_process_start = 0;
  130. /** How many seconds have we been running? */
  131. static long stats_n_seconds_working = 0;
  132. /** How many times have we returned from the main loop successfully? */
  133. static uint64_t stats_n_main_loop_successes = 0;
  134. /** How many times have we received an error from the main loop? */
  135. static uint64_t stats_n_main_loop_errors = 0;
  136. /** How many times have we returned from the main loop with no events. */
  137. static uint64_t stats_n_main_loop_idle = 0;
  138. /** How often will we honor SIGNEWNYM requests? */
  139. #define MAX_SIGNEWNYM_RATE 10
  140. /** When did we last process a SIGNEWNYM request? */
  141. static time_t time_of_last_signewnym = 0;
  142. /** Is there a signewnym request we're currently waiting to handle? */
  143. static int signewnym_is_pending = 0;
  144. /** Mainloop event for the deferred signewnym call. */
  145. static mainloop_event_t *handle_deferred_signewnym_ev = NULL;
  146. /** How many times have we called newnym? */
  147. static unsigned newnym_epoch = 0;
  148. /** Smartlist of all open connections. */
  149. STATIC smartlist_t *connection_array = NULL;
  150. /** List of connections that have been marked for close and need to be freed
  151. * and removed from connection_array. */
  152. static smartlist_t *closeable_connection_lst = NULL;
  153. /** List of linked connections that are currently reading data into their
  154. * inbuf from their partner's outbuf. */
  155. static smartlist_t *active_linked_connection_lst = NULL;
  156. /** Flag: Set to true iff we entered the current libevent main loop via
  157. * <b>loop_once</b>. If so, there's no need to trigger a loopexit in order
  158. * to handle linked connections. */
  159. static int called_loop_once = 0;
  160. /** Flag: if true, it's time to shut down, so the main loop should exit as
  161. * soon as possible.
  162. */
  163. static int main_loop_should_exit = 0;
  164. /** The return value that the main loop should yield when it exits, if
  165. * main_loop_should_exit is true.
  166. */
  167. static int main_loop_exit_value = 0;
  168. /** We set this to 1 when we've opened a circuit, so we can print a log
  169. * entry to inform the user that Tor is working. We set it to 0 when
  170. * we think the fact that we once opened a circuit doesn't mean we can do so
  171. * any longer (a big time jump happened, when we notice our directory is
  172. * heinously out-of-date, etc.
  173. */
  174. static int can_complete_circuits = 0;
  175. /** How often do we check for router descriptors that we should download
  176. * when we have too little directory info? */
  177. #define GREEDY_DESCRIPTOR_RETRY_INTERVAL (10)
  178. /** How often do we check for router descriptors that we should download
  179. * when we have enough directory info? */
  180. #define LAZY_DESCRIPTOR_RETRY_INTERVAL (60)
  181. static int conn_close_if_marked(int i);
  182. static int run_main_loop_until_done(void);
  183. static void connection_start_reading_from_linked_conn(connection_t *conn);
  184. static int connection_should_read_from_linked_conn(connection_t *conn);
  185. static void conn_read_callback(evutil_socket_t fd, short event, void *_conn);
  186. static void conn_write_callback(evutil_socket_t fd, short event, void *_conn);
  187. static void second_elapsed_callback(periodic_timer_t *timer, void *args);
  188. static void shutdown_did_not_work_callback(evutil_socket_t fd, short event,
  189. void *arg) ATTR_NORETURN;
  190. /****************************************************************************
  191. *
  192. * This section contains accessors and other methods on the connection_array
  193. * variables (which are global within this file and unavailable outside it).
  194. *
  195. ****************************************************************************/
  196. /** Return 1 if we have successfully built a circuit, and nothing has changed
  197. * to make us think that maybe we can't.
  198. */
  199. int
  200. have_completed_a_circuit(void)
  201. {
  202. return can_complete_circuits;
  203. }
  204. /** Note that we have successfully built a circuit, so that reachability
  205. * testing and introduction points and so on may be attempted. */
  206. void
  207. note_that_we_completed_a_circuit(void)
  208. {
  209. can_complete_circuits = 1;
  210. }
  211. /** Note that something has happened (like a clock jump, or DisableNetwork) to
  212. * make us think that maybe we can't complete circuits. */
  213. void
  214. note_that_we_maybe_cant_complete_circuits(void)
  215. {
  216. can_complete_circuits = 0;
  217. }
  218. /** Add <b>conn</b> to the array of connections that we can poll on. The
  219. * connection's socket must be set; the connection starts out
  220. * non-reading and non-writing.
  221. */
  222. int
  223. connection_add_impl(connection_t *conn, int is_connecting)
  224. {
  225. tor_assert(conn);
  226. tor_assert(SOCKET_OK(conn->s) ||
  227. conn->linked ||
  228. (conn->type == CONN_TYPE_AP &&
  229. TO_EDGE_CONN(conn)->is_dns_request));
  230. tor_assert(conn->conn_array_index == -1); /* can only connection_add once */
  231. conn->conn_array_index = smartlist_len(connection_array);
  232. smartlist_add(connection_array, conn);
  233. (void) is_connecting;
  234. if (SOCKET_OK(conn->s) || conn->linked) {
  235. conn->read_event = tor_event_new(tor_libevent_get_base(),
  236. conn->s, EV_READ|EV_PERSIST, conn_read_callback, conn);
  237. conn->write_event = tor_event_new(tor_libevent_get_base(),
  238. conn->s, EV_WRITE|EV_PERSIST, conn_write_callback, conn);
  239. /* XXXX CHECK FOR NULL RETURN! */
  240. }
  241. log_debug(LD_NET,"new conn type %s, socket %d, address %s, n_conns %d.",
  242. conn_type_to_string(conn->type), (int)conn->s, conn->address,
  243. smartlist_len(connection_array));
  244. return 0;
  245. }
  246. /** Tell libevent that we don't care about <b>conn</b> any more. */
  247. void
  248. connection_unregister_events(connection_t *conn)
  249. {
  250. if (conn->read_event) {
  251. if (event_del(conn->read_event))
  252. log_warn(LD_BUG, "Error removing read event for %d", (int)conn->s);
  253. tor_free(conn->read_event);
  254. }
  255. if (conn->write_event) {
  256. if (event_del(conn->write_event))
  257. log_warn(LD_BUG, "Error removing write event for %d", (int)conn->s);
  258. tor_free(conn->write_event);
  259. }
  260. if (conn->type == CONN_TYPE_AP_DNS_LISTENER) {
  261. dnsserv_close_listener(conn);
  262. }
  263. }
  264. /** Remove the connection from the global list, and remove the
  265. * corresponding poll entry. Calling this function will shift the last
  266. * connection (if any) into the position occupied by conn.
  267. */
  268. int
  269. connection_remove(connection_t *conn)
  270. {
  271. int current_index;
  272. connection_t *tmp;
  273. tor_assert(conn);
  274. log_debug(LD_NET,"removing socket %d (type %s), n_conns now %d",
  275. (int)conn->s, conn_type_to_string(conn->type),
  276. smartlist_len(connection_array));
  277. if (conn->type == CONN_TYPE_AP && conn->socket_family == AF_UNIX) {
  278. log_info(LD_NET, "Closing SOCKS Unix socket connection");
  279. }
  280. control_event_conn_bandwidth(conn);
  281. tor_assert(conn->conn_array_index >= 0);
  282. current_index = conn->conn_array_index;
  283. connection_unregister_events(conn); /* This is redundant, but cheap. */
  284. if (current_index == smartlist_len(connection_array)-1) { /* at the end */
  285. smartlist_del(connection_array, current_index);
  286. return 0;
  287. }
  288. /* replace this one with the one at the end */
  289. smartlist_del(connection_array, current_index);
  290. tmp = smartlist_get(connection_array, current_index);
  291. tmp->conn_array_index = current_index;
  292. return 0;
  293. }
  294. /** If <b>conn</b> is an edge conn, remove it from the list
  295. * of conn's on this circuit. If it's not on an edge,
  296. * flush and send destroys for all circuits on this conn.
  297. *
  298. * Remove it from connection_array (if applicable) and
  299. * from closeable_connection_list.
  300. *
  301. * Then free it.
  302. */
  303. static void
  304. connection_unlink(connection_t *conn)
  305. {
  306. connection_about_to_close_connection(conn);
  307. if (conn->conn_array_index >= 0) {
  308. connection_remove(conn);
  309. }
  310. if (conn->linked_conn) {
  311. conn->linked_conn->linked_conn = NULL;
  312. if (! conn->linked_conn->marked_for_close &&
  313. conn->linked_conn->reading_from_linked_conn)
  314. connection_start_reading(conn->linked_conn);
  315. conn->linked_conn = NULL;
  316. }
  317. smartlist_remove(closeable_connection_lst, conn);
  318. smartlist_remove(active_linked_connection_lst, conn);
  319. if (conn->type == CONN_TYPE_EXIT) {
  320. assert_connection_edge_not_dns_pending(TO_EDGE_CONN(conn));
  321. }
  322. if (conn->type == CONN_TYPE_OR) {
  323. if (!tor_digest_is_zero(TO_OR_CONN(conn)->identity_digest))
  324. connection_or_clear_identity(TO_OR_CONN(conn));
  325. /* connection_unlink() can only get called if the connection
  326. * was already on the closeable list, and it got there by
  327. * connection_mark_for_close(), which was called from
  328. * connection_or_close_normally() or
  329. * connection_or_close_for_error(), so the channel should
  330. * already be in CHANNEL_STATE_CLOSING, and then the
  331. * connection_about_to_close_connection() goes to
  332. * connection_or_about_to_close(), which calls channel_closed()
  333. * to notify the channel_t layer, and closed the channel, so
  334. * nothing more to do here to deal with the channel associated
  335. * with an orconn.
  336. */
  337. }
  338. connection_free(conn);
  339. }
  340. /**
  341. * Callback: used to activate read events for all linked connections, so
  342. * libevent knows to call their read callbacks. This callback run as a
  343. * postloop event, so that the events _it_ activates don't happen until
  344. * Libevent has a chance to check for other events.
  345. */
  346. static void
  347. schedule_active_linked_connections_cb(mainloop_event_t *event, void *arg)
  348. {
  349. (void)event;
  350. (void)arg;
  351. /* All active linked conns should get their read events activated,
  352. * so that libevent knows to run their callbacks. */
  353. SMARTLIST_FOREACH(active_linked_connection_lst, connection_t *, conn,
  354. event_active(conn->read_event, EV_READ, 1));
  355. }
  356. /** Event that invokes schedule_active_linked_connections_cb. */
  357. static mainloop_event_t *schedule_active_linked_connections_event = NULL;
  358. /** Initialize the global connection list, closeable connection list,
  359. * and active connection list. */
  360. void
  361. tor_init_connection_lists(void)
  362. {
  363. if (!connection_array)
  364. connection_array = smartlist_new();
  365. if (!closeable_connection_lst)
  366. closeable_connection_lst = smartlist_new();
  367. if (!active_linked_connection_lst)
  368. active_linked_connection_lst = smartlist_new();
  369. }
  370. /** Schedule <b>conn</b> to be closed. **/
  371. void
  372. add_connection_to_closeable_list(connection_t *conn)
  373. {
  374. tor_assert(!smartlist_contains(closeable_connection_lst, conn));
  375. tor_assert(conn->marked_for_close);
  376. assert_connection_ok(conn, time(NULL));
  377. smartlist_add(closeable_connection_lst, conn);
  378. mainloop_schedule_postloop_cleanup();
  379. }
  380. /** Return 1 if conn is on the closeable list, else return 0. */
  381. int
  382. connection_is_on_closeable_list(connection_t *conn)
  383. {
  384. return smartlist_contains(closeable_connection_lst, conn);
  385. }
  386. /** Return true iff conn is in the current poll array. */
  387. int
  388. connection_in_array(connection_t *conn)
  389. {
  390. return smartlist_contains(connection_array, conn);
  391. }
  392. /** Set <b>*array</b> to an array of all connections. <b>*array</b> must not
  393. * be modified.
  394. */
  395. MOCK_IMPL(smartlist_t *,
  396. get_connection_array, (void))
  397. {
  398. if (!connection_array)
  399. connection_array = smartlist_new();
  400. return connection_array;
  401. }
  402. /**
  403. * Return the amount of network traffic read, in bytes, over the life of this
  404. * process.
  405. */
  406. MOCK_IMPL(uint64_t,
  407. get_bytes_read,(void))
  408. {
  409. return stats_n_bytes_read;
  410. }
  411. /**
  412. * Return the amount of network traffic read, in bytes, over the life of this
  413. * process.
  414. */
  415. MOCK_IMPL(uint64_t,
  416. get_bytes_written,(void))
  417. {
  418. return stats_n_bytes_written;
  419. }
  420. /**
  421. * Increment the amount of network traffic read and written, over the life of
  422. * this process.
  423. */
  424. void
  425. stats_increment_bytes_read_and_written(uint64_t r, uint64_t w)
  426. {
  427. stats_n_bytes_read += r;
  428. stats_n_bytes_written += w;
  429. }
  430. /** Set the event mask on <b>conn</b> to <b>events</b>. (The event
  431. * mask is a bitmask whose bits are READ_EVENT and WRITE_EVENT)
  432. */
  433. void
  434. connection_watch_events(connection_t *conn, watchable_events_t events)
  435. {
  436. if (events & READ_EVENT)
  437. connection_start_reading(conn);
  438. else
  439. connection_stop_reading(conn);
  440. if (events & WRITE_EVENT)
  441. connection_start_writing(conn);
  442. else
  443. connection_stop_writing(conn);
  444. }
  445. /** Return true iff <b>conn</b> is listening for read events. */
  446. int
  447. connection_is_reading(connection_t *conn)
  448. {
  449. tor_assert(conn);
  450. return conn->reading_from_linked_conn ||
  451. (conn->read_event && event_pending(conn->read_event, EV_READ, NULL));
  452. }
  453. /** Reset our main loop counters. */
  454. void
  455. reset_main_loop_counters(void)
  456. {
  457. stats_n_main_loop_successes = 0;
  458. stats_n_main_loop_errors = 0;
  459. stats_n_main_loop_idle = 0;
  460. }
  461. /** Increment the main loop success counter. */
  462. static void
  463. increment_main_loop_success_count(void)
  464. {
  465. ++stats_n_main_loop_successes;
  466. }
  467. /** Get the main loop success counter. */
  468. uint64_t
  469. get_main_loop_success_count(void)
  470. {
  471. return stats_n_main_loop_successes;
  472. }
  473. /** Increment the main loop error counter. */
  474. static void
  475. increment_main_loop_error_count(void)
  476. {
  477. ++stats_n_main_loop_errors;
  478. }
  479. /** Get the main loop error counter. */
  480. uint64_t
  481. get_main_loop_error_count(void)
  482. {
  483. return stats_n_main_loop_errors;
  484. }
  485. /** Increment the main loop idle counter. */
  486. static void
  487. increment_main_loop_idle_count(void)
  488. {
  489. ++stats_n_main_loop_idle;
  490. }
  491. /** Get the main loop idle counter. */
  492. uint64_t
  493. get_main_loop_idle_count(void)
  494. {
  495. return stats_n_main_loop_idle;
  496. }
  497. /** Check whether <b>conn</b> is correct in having (or not having) a
  498. * read/write event (passed in <b>ev</b>). On success, return 0. On failure,
  499. * log a warning and return -1. */
  500. static int
  501. connection_check_event(connection_t *conn, struct event *ev)
  502. {
  503. int bad;
  504. if (conn->type == CONN_TYPE_AP && TO_EDGE_CONN(conn)->is_dns_request) {
  505. /* DNS requests which we launch through the dnsserv.c module do not have
  506. * any underlying socket or any underlying linked connection, so they
  507. * shouldn't have any attached events either.
  508. */
  509. bad = ev != NULL;
  510. } else {
  511. /* Everything else should have an underlying socket, or a linked
  512. * connection (which is also tracked with a read_event/write_event pair).
  513. */
  514. bad = ev == NULL;
  515. }
  516. if (bad) {
  517. log_warn(LD_BUG, "Event missing on connection %p [%s;%s]. "
  518. "socket=%d. linked=%d. "
  519. "is_dns_request=%d. Marked_for_close=%s:%d",
  520. conn,
  521. conn_type_to_string(conn->type),
  522. conn_state_to_string(conn->type, conn->state),
  523. (int)conn->s, (int)conn->linked,
  524. (conn->type == CONN_TYPE_AP &&
  525. TO_EDGE_CONN(conn)->is_dns_request),
  526. conn->marked_for_close_file ? conn->marked_for_close_file : "-",
  527. conn->marked_for_close
  528. );
  529. log_backtrace(LOG_WARN, LD_BUG, "Backtrace attached.");
  530. return -1;
  531. }
  532. return 0;
  533. }
  534. /** Tell the main loop to stop notifying <b>conn</b> of any read events. */
  535. MOCK_IMPL(void,
  536. connection_stop_reading,(connection_t *conn))
  537. {
  538. tor_assert(conn);
  539. if (connection_check_event(conn, conn->read_event) < 0) {
  540. return;
  541. }
  542. if (conn->linked) {
  543. conn->reading_from_linked_conn = 0;
  544. connection_stop_reading_from_linked_conn(conn);
  545. } else {
  546. if (event_del(conn->read_event))
  547. log_warn(LD_NET, "Error from libevent setting read event state for %d "
  548. "to unwatched: %s",
  549. (int)conn->s,
  550. tor_socket_strerror(tor_socket_errno(conn->s)));
  551. }
  552. }
  553. /** Tell the main loop to start notifying <b>conn</b> of any read events. */
  554. MOCK_IMPL(void,
  555. connection_start_reading,(connection_t *conn))
  556. {
  557. tor_assert(conn);
  558. if (connection_check_event(conn, conn->read_event) < 0) {
  559. return;
  560. }
  561. if (conn->linked) {
  562. conn->reading_from_linked_conn = 1;
  563. if (connection_should_read_from_linked_conn(conn))
  564. connection_start_reading_from_linked_conn(conn);
  565. } else {
  566. if (event_add(conn->read_event, NULL))
  567. log_warn(LD_NET, "Error from libevent setting read event state for %d "
  568. "to watched: %s",
  569. (int)conn->s,
  570. tor_socket_strerror(tor_socket_errno(conn->s)));
  571. }
  572. }
  573. /** Return true iff <b>conn</b> is listening for write events. */
  574. int
  575. connection_is_writing(connection_t *conn)
  576. {
  577. tor_assert(conn);
  578. return conn->writing_to_linked_conn ||
  579. (conn->write_event && event_pending(conn->write_event, EV_WRITE, NULL));
  580. }
  581. /** Tell the main loop to stop notifying <b>conn</b> of any write events. */
  582. MOCK_IMPL(void,
  583. connection_stop_writing,(connection_t *conn))
  584. {
  585. tor_assert(conn);
  586. if (connection_check_event(conn, conn->write_event) < 0) {
  587. return;
  588. }
  589. if (conn->linked) {
  590. conn->writing_to_linked_conn = 0;
  591. if (conn->linked_conn)
  592. connection_stop_reading_from_linked_conn(conn->linked_conn);
  593. } else {
  594. if (event_del(conn->write_event))
  595. log_warn(LD_NET, "Error from libevent setting write event state for %d "
  596. "to unwatched: %s",
  597. (int)conn->s,
  598. tor_socket_strerror(tor_socket_errno(conn->s)));
  599. }
  600. }
  601. /** Tell the main loop to start notifying <b>conn</b> of any write events. */
  602. MOCK_IMPL(void,
  603. connection_start_writing,(connection_t *conn))
  604. {
  605. tor_assert(conn);
  606. if (connection_check_event(conn, conn->write_event) < 0) {
  607. return;
  608. }
  609. if (conn->linked) {
  610. conn->writing_to_linked_conn = 1;
  611. if (conn->linked_conn &&
  612. connection_should_read_from_linked_conn(conn->linked_conn))
  613. connection_start_reading_from_linked_conn(conn->linked_conn);
  614. } else {
  615. if (event_add(conn->write_event, NULL))
  616. log_warn(LD_NET, "Error from libevent setting write event state for %d "
  617. "to watched: %s",
  618. (int)conn->s,
  619. tor_socket_strerror(tor_socket_errno(conn->s)));
  620. }
  621. }
  622. /** Return true iff <b>conn</b> is linked conn, and reading from the conn
  623. * linked to it would be good and feasible. (Reading is "feasible" if the
  624. * other conn exists and has data in its outbuf, and is "good" if we have our
  625. * reading_from_linked_conn flag set and the other conn has its
  626. * writing_to_linked_conn flag set.)*/
  627. static int
  628. connection_should_read_from_linked_conn(connection_t *conn)
  629. {
  630. if (conn->linked && conn->reading_from_linked_conn) {
  631. if (! conn->linked_conn ||
  632. (conn->linked_conn->writing_to_linked_conn &&
  633. buf_datalen(conn->linked_conn->outbuf)))
  634. return 1;
  635. }
  636. return 0;
  637. }
  638. /** Event to run 'shutdown did not work callback'. */
  639. static struct event *shutdown_did_not_work_event = NULL;
  640. /** Failsafe measure that should never actually be necessary: If
  641. * tor_shutdown_event_loop_and_exit() somehow doesn't successfully exit the
  642. * event loop, then this callback will kill Tor with an assertion failure
  643. * seconds later
  644. */
  645. static void
  646. shutdown_did_not_work_callback(evutil_socket_t fd, short event, void *arg)
  647. {
  648. // LCOV_EXCL_START
  649. (void) fd;
  650. (void) event;
  651. (void) arg;
  652. tor_assert_unreached();
  653. // LCOV_EXCL_STOP
  654. }
  655. #ifdef ENABLE_RESTART_DEBUGGING
  656. static struct event *tor_shutdown_event_loop_for_restart_event = NULL;
  657. static void
  658. tor_shutdown_event_loop_for_restart_cb(
  659. evutil_socket_t fd, short event, void *arg)
  660. {
  661. (void)fd;
  662. (void)event;
  663. (void)arg;
  664. tor_event_free(tor_shutdown_event_loop_for_restart_event);
  665. tor_shutdown_event_loop_and_exit(0);
  666. }
  667. #endif
  668. /**
  669. * After finishing the current callback (if any), shut down the main loop,
  670. * clean up the process, and exit with <b>exitcode</b>.
  671. */
  672. void
  673. tor_shutdown_event_loop_and_exit(int exitcode)
  674. {
  675. if (main_loop_should_exit)
  676. return; /* Ignore multiple calls to this function. */
  677. main_loop_should_exit = 1;
  678. main_loop_exit_value = exitcode;
  679. /* Die with an assertion failure in ten seconds, if for some reason we don't
  680. * exit normally. */
  681. /* XXXX We should consider this code if it's never used. */
  682. struct timeval ten_seconds = { 10, 0 };
  683. shutdown_did_not_work_event = tor_evtimer_new(
  684. tor_libevent_get_base(),
  685. shutdown_did_not_work_callback, NULL);
  686. event_add(shutdown_did_not_work_event, &ten_seconds);
  687. /* Unlike exit_loop_after_delay(), exit_loop_after_callback
  688. * prevents other callbacks from running. */
  689. tor_libevent_exit_loop_after_callback(tor_libevent_get_base());
  690. }
  691. /** Return true iff tor_shutdown_event_loop_and_exit() has been called. */
  692. int
  693. tor_event_loop_shutdown_is_pending(void)
  694. {
  695. return main_loop_should_exit;
  696. }
  697. /** Helper: Tell the main loop to begin reading bytes into <b>conn</b> from
  698. * its linked connection, if it is not doing so already. Called by
  699. * connection_start_reading and connection_start_writing as appropriate. */
  700. static void
  701. connection_start_reading_from_linked_conn(connection_t *conn)
  702. {
  703. tor_assert(conn);
  704. tor_assert(conn->linked == 1);
  705. if (!conn->active_on_link) {
  706. conn->active_on_link = 1;
  707. smartlist_add(active_linked_connection_lst, conn);
  708. mainloop_event_activate(schedule_active_linked_connections_event);
  709. } else {
  710. tor_assert(smartlist_contains(active_linked_connection_lst, conn));
  711. }
  712. }
  713. /** Tell the main loop to stop reading bytes into <b>conn</b> from its linked
  714. * connection, if is currently doing so. Called by connection_stop_reading,
  715. * connection_stop_writing, and connection_read. */
  716. void
  717. connection_stop_reading_from_linked_conn(connection_t *conn)
  718. {
  719. tor_assert(conn);
  720. tor_assert(conn->linked == 1);
  721. if (conn->active_on_link) {
  722. conn->active_on_link = 0;
  723. /* FFFF We could keep an index here so we can smartlist_del
  724. * cleanly. On the other hand, this doesn't show up on profiles,
  725. * so let's leave it alone for now. */
  726. smartlist_remove(active_linked_connection_lst, conn);
  727. } else {
  728. tor_assert(!smartlist_contains(active_linked_connection_lst, conn));
  729. }
  730. }
  731. /** Close all connections that have been scheduled to get closed. */
  732. STATIC void
  733. close_closeable_connections(void)
  734. {
  735. int i;
  736. for (i = 0; i < smartlist_len(closeable_connection_lst); ) {
  737. connection_t *conn = smartlist_get(closeable_connection_lst, i);
  738. if (conn->conn_array_index < 0) {
  739. connection_unlink(conn); /* blow it away right now */
  740. } else {
  741. if (!conn_close_if_marked(conn->conn_array_index))
  742. ++i;
  743. }
  744. }
  745. }
  746. /** Count moribund connections for the OOS handler */
  747. MOCK_IMPL(int,
  748. connection_count_moribund, (void))
  749. {
  750. int moribund = 0;
  751. /*
  752. * Count things we'll try to kill when close_closeable_connections()
  753. * runs next.
  754. */
  755. SMARTLIST_FOREACH_BEGIN(closeable_connection_lst, connection_t *, conn) {
  756. if (SOCKET_OK(conn->s) && connection_is_moribund(conn)) ++moribund;
  757. } SMARTLIST_FOREACH_END(conn);
  758. return moribund;
  759. }
  760. /** Libevent callback: this gets invoked when (connection_t*)<b>conn</b> has
  761. * some data to read. */
  762. static void
  763. conn_read_callback(evutil_socket_t fd, short event, void *_conn)
  764. {
  765. connection_t *conn = _conn;
  766. (void)fd;
  767. (void)event;
  768. log_debug(LD_NET,"socket %d wants to read.",(int)conn->s);
  769. /* assert_connection_ok(conn, time(NULL)); */
  770. if (connection_handle_read(conn) < 0) {
  771. if (!conn->marked_for_close) {
  772. #ifndef _WIN32
  773. log_warn(LD_BUG,"Unhandled error on read for %s connection "
  774. "(fd %d); removing",
  775. conn_type_to_string(conn->type), (int)conn->s);
  776. tor_fragile_assert();
  777. #endif /* !defined(_WIN32) */
  778. if (CONN_IS_EDGE(conn))
  779. connection_edge_end_errno(TO_EDGE_CONN(conn));
  780. connection_mark_for_close(conn);
  781. }
  782. }
  783. assert_connection_ok(conn, time(NULL));
  784. if (smartlist_len(closeable_connection_lst))
  785. close_closeable_connections();
  786. }
  787. /** Libevent callback: this gets invoked when (connection_t*)<b>conn</b> has
  788. * some data to write. */
  789. static void
  790. conn_write_callback(evutil_socket_t fd, short events, void *_conn)
  791. {
  792. connection_t *conn = _conn;
  793. (void)fd;
  794. (void)events;
  795. LOG_FN_CONN(conn, (LOG_DEBUG, LD_NET, "socket %d wants to write.",
  796. (int)conn->s));
  797. /* assert_connection_ok(conn, time(NULL)); */
  798. if (connection_handle_write(conn, 0) < 0) {
  799. if (!conn->marked_for_close) {
  800. /* this connection is broken. remove it. */
  801. log_fn(LOG_WARN,LD_BUG,
  802. "unhandled error on write for %s connection (fd %d); removing",
  803. conn_type_to_string(conn->type), (int)conn->s);
  804. tor_fragile_assert();
  805. if (CONN_IS_EDGE(conn)) {
  806. /* otherwise we cry wolf about duplicate close */
  807. edge_connection_t *edge_conn = TO_EDGE_CONN(conn);
  808. if (!edge_conn->end_reason)
  809. edge_conn->end_reason = END_STREAM_REASON_INTERNAL;
  810. edge_conn->edge_has_sent_end = 1;
  811. }
  812. connection_close_immediate(conn); /* So we don't try to flush. */
  813. connection_mark_for_close(conn);
  814. }
  815. }
  816. assert_connection_ok(conn, time(NULL));
  817. if (smartlist_len(closeable_connection_lst))
  818. close_closeable_connections();
  819. }
  820. /** If the connection at connection_array[i] is marked for close, then:
  821. * - If it has data that it wants to flush, try to flush it.
  822. * - If it _still_ has data to flush, and conn->hold_open_until_flushed is
  823. * true, then leave the connection open and return.
  824. * - Otherwise, remove the connection from connection_array and from
  825. * all other lists, close it, and free it.
  826. * Returns 1 if the connection was closed, 0 otherwise.
  827. */
  828. static int
  829. conn_close_if_marked(int i)
  830. {
  831. connection_t *conn;
  832. int retval;
  833. time_t now;
  834. conn = smartlist_get(connection_array, i);
  835. if (!conn->marked_for_close)
  836. return 0; /* nothing to see here, move along */
  837. now = time(NULL);
  838. assert_connection_ok(conn, now);
  839. /* assert_all_pending_dns_resolves_ok(); */
  840. log_debug(LD_NET,"Cleaning up connection (fd "TOR_SOCKET_T_FORMAT").",
  841. conn->s);
  842. /* If the connection we are about to close was trying to connect to
  843. a proxy server and failed, the client won't be able to use that
  844. proxy. We should warn the user about this. */
  845. if (conn->proxy_state == PROXY_INFANT)
  846. log_failed_proxy_connection(conn);
  847. if ((SOCKET_OK(conn->s) || conn->linked_conn) &&
  848. connection_wants_to_flush(conn)) {
  849. /* s == -1 means it's an incomplete edge connection, or that the socket
  850. * has already been closed as unflushable. */
  851. ssize_t sz = connection_bucket_write_limit(conn, now);
  852. if (!conn->hold_open_until_flushed)
  853. log_info(LD_NET,
  854. "Conn (addr %s, fd %d, type %s, state %d) marked, but wants "
  855. "to flush %d bytes. (Marked at %s:%d)",
  856. escaped_safe_str_client(conn->address),
  857. (int)conn->s, conn_type_to_string(conn->type), conn->state,
  858. (int)conn->outbuf_flushlen,
  859. conn->marked_for_close_file, conn->marked_for_close);
  860. if (conn->linked_conn) {
  861. retval = buf_move_to_buf(conn->linked_conn->inbuf, conn->outbuf,
  862. &conn->outbuf_flushlen);
  863. if (retval >= 0) {
  864. /* The linked conn will notice that it has data when it notices that
  865. * we're gone. */
  866. connection_start_reading_from_linked_conn(conn->linked_conn);
  867. }
  868. log_debug(LD_GENERAL, "Flushed last %d bytes from a linked conn; "
  869. "%d left; flushlen %d; wants-to-flush==%d", retval,
  870. (int)connection_get_outbuf_len(conn),
  871. (int)conn->outbuf_flushlen,
  872. connection_wants_to_flush(conn));
  873. } else if (connection_speaks_cells(conn)) {
  874. if (conn->state == OR_CONN_STATE_OPEN) {
  875. retval = buf_flush_to_tls(conn->outbuf, TO_OR_CONN(conn)->tls, sz,
  876. &conn->outbuf_flushlen);
  877. } else
  878. retval = -1; /* never flush non-open broken tls connections */
  879. } else {
  880. retval = buf_flush_to_socket(conn->outbuf, conn->s, sz,
  881. &conn->outbuf_flushlen);
  882. }
  883. if (retval >= 0 && /* Technically, we could survive things like
  884. TLS_WANT_WRITE here. But don't bother for now. */
  885. conn->hold_open_until_flushed && connection_wants_to_flush(conn)) {
  886. if (retval > 0) {
  887. LOG_FN_CONN(conn, (LOG_INFO,LD_NET,
  888. "Holding conn (fd %d) open for more flushing.",
  889. (int)conn->s));
  890. conn->timestamp_last_write_allowed = now; /* reset so we can flush
  891. * more */
  892. } else if (sz == 0) {
  893. /* Also, retval==0. If we get here, we didn't want to write anything
  894. * (because of rate-limiting) and we didn't. */
  895. /* Connection must flush before closing, but it's being rate-limited.
  896. * Let's remove from Libevent, and mark it as blocked on bandwidth
  897. * so it will be re-added on next token bucket refill. Prevents
  898. * busy Libevent loops where we keep ending up here and returning
  899. * 0 until we are no longer blocked on bandwidth.
  900. */
  901. connection_consider_empty_read_buckets(conn);
  902. connection_consider_empty_write_buckets(conn);
  903. /* Make sure that consider_empty_buckets really disabled the
  904. * connection: */
  905. if (BUG(connection_is_writing(conn))) {
  906. connection_write_bw_exhausted(conn, true);
  907. }
  908. if (BUG(connection_is_reading(conn))) {
  909. /* XXXX+ We should make this code unreachable; if a connection is
  910. * marked for close and flushing, there is no point in reading to it
  911. * at all. Further, checking at this point is a bit of a hack: it
  912. * would make much more sense to react in
  913. * connection_handle_read_impl, or to just stop reading in
  914. * mark_and_flush */
  915. connection_read_bw_exhausted(conn, true/* kludge. */);
  916. }
  917. }
  918. return 0;
  919. }
  920. if (connection_wants_to_flush(conn)) {
  921. log_fn(LOG_INFO, LD_NET, "We stalled too much while trying to write %d "
  922. "bytes to address %s. If this happens a lot, either "
  923. "something is wrong with your network connection, or "
  924. "something is wrong with theirs. "
  925. "(fd %d, type %s, state %d, marked at %s:%d).",
  926. (int)connection_get_outbuf_len(conn),
  927. escaped_safe_str_client(conn->address),
  928. (int)conn->s, conn_type_to_string(conn->type), conn->state,
  929. conn->marked_for_close_file,
  930. conn->marked_for_close);
  931. }
  932. }
  933. connection_unlink(conn); /* unlink, remove, free */
  934. return 1;
  935. }
  936. /** Implementation for directory_all_unreachable. This is done in a callback,
  937. * since otherwise it would complicate Tor's control-flow graph beyond all
  938. * reason.
  939. */
  940. static void
  941. directory_all_unreachable_cb(mainloop_event_t *event, void *arg)
  942. {
  943. (void)event;
  944. (void)arg;
  945. connection_t *conn;
  946. while ((conn = connection_get_by_type_state(CONN_TYPE_AP,
  947. AP_CONN_STATE_CIRCUIT_WAIT))) {
  948. entry_connection_t *entry_conn = TO_ENTRY_CONN(conn);
  949. log_notice(LD_NET,
  950. "Is your network connection down? "
  951. "Failing connection to '%s:%d'.",
  952. safe_str_client(entry_conn->socks_request->address),
  953. entry_conn->socks_request->port);
  954. connection_mark_unattached_ap(entry_conn,
  955. END_STREAM_REASON_NET_UNREACHABLE);
  956. }
  957. control_event_general_error("DIR_ALL_UNREACHABLE");
  958. }
  959. static mainloop_event_t *directory_all_unreachable_cb_event = NULL;
  960. /** We've just tried every dirserver we know about, and none of
  961. * them were reachable. Assume the network is down. Change state
  962. * so next time an application connection arrives we'll delay it
  963. * and try another directory fetch. Kill off all the circuit_wait
  964. * streams that are waiting now, since they will all timeout anyway.
  965. */
  966. void
  967. directory_all_unreachable(time_t now)
  968. {
  969. (void)now;
  970. reset_uptime(); /* reset it */
  971. if (!directory_all_unreachable_cb_event) {
  972. directory_all_unreachable_cb_event =
  973. mainloop_event_new(directory_all_unreachable_cb, NULL);
  974. tor_assert(directory_all_unreachable_cb_event);
  975. }
  976. mainloop_event_activate(directory_all_unreachable_cb_event);
  977. }
  978. /** This function is called whenever we successfully pull down some new
  979. * network statuses or server descriptors. */
  980. void
  981. directory_info_has_arrived(time_t now, int from_cache, int suppress_logs)
  982. {
  983. const or_options_t *options = get_options();
  984. /* if we have enough dir info, then update our guard status with
  985. * whatever we just learned. */
  986. int invalidate_circs = guards_update_all();
  987. if (invalidate_circs) {
  988. circuit_mark_all_unused_circs();
  989. circuit_mark_all_dirty_circs_as_unusable();
  990. }
  991. if (!router_have_minimum_dir_info()) {
  992. int quiet = suppress_logs || from_cache ||
  993. directory_too_idle_to_fetch_descriptors(options, now);
  994. tor_log(quiet ? LOG_INFO : LOG_NOTICE, LD_DIR,
  995. "I learned some more directory information, but not enough to "
  996. "build a circuit: %s", get_dir_info_status_string());
  997. update_all_descriptor_downloads(now);
  998. return;
  999. } else {
  1000. if (directory_fetches_from_authorities(options)) {
  1001. update_all_descriptor_downloads(now);
  1002. }
  1003. /* Don't even bother trying to get extrainfo until the rest of our
  1004. * directory info is up-to-date */
  1005. if (options->DownloadExtraInfo)
  1006. update_extrainfo_downloads(now);
  1007. }
  1008. if (server_mode(options) && !net_is_disabled() && !from_cache &&
  1009. (have_completed_a_circuit() || !any_predicted_circuits(now)))
  1010. router_do_reachability_checks(1, 1);
  1011. }
  1012. /** Perform regular maintenance tasks for a single connection. This
  1013. * function gets run once per second per connection by run_scheduled_events.
  1014. */
  1015. static void
  1016. run_connection_housekeeping(int i, time_t now)
  1017. {
  1018. cell_t cell;
  1019. connection_t *conn = smartlist_get(connection_array, i);
  1020. const or_options_t *options = get_options();
  1021. or_connection_t *or_conn;
  1022. channel_t *chan = NULL;
  1023. int have_any_circuits;
  1024. int past_keepalive =
  1025. now >= conn->timestamp_last_write_allowed + options->KeepalivePeriod;
  1026. if (conn->outbuf && !connection_get_outbuf_len(conn) &&
  1027. conn->type == CONN_TYPE_OR)
  1028. TO_OR_CONN(conn)->timestamp_lastempty = now;
  1029. if (conn->marked_for_close) {
  1030. /* nothing to do here */
  1031. return;
  1032. }
  1033. /* Expire any directory connections that haven't been active (sent
  1034. * if a server or received if a client) for 5 min */
  1035. if (conn->type == CONN_TYPE_DIR &&
  1036. ((DIR_CONN_IS_SERVER(conn) &&
  1037. conn->timestamp_last_write_allowed
  1038. + options->TestingDirConnectionMaxStall < now) ||
  1039. (!DIR_CONN_IS_SERVER(conn) &&
  1040. conn->timestamp_last_read_allowed
  1041. + options->TestingDirConnectionMaxStall < now))) {
  1042. log_info(LD_DIR,"Expiring wedged directory conn (fd %d, purpose %d)",
  1043. (int)conn->s, conn->purpose);
  1044. /* This check is temporary; it's to let us know whether we should consider
  1045. * parsing partial serverdesc responses. */
  1046. if (conn->purpose == DIR_PURPOSE_FETCH_SERVERDESC &&
  1047. connection_get_inbuf_len(conn) >= 1024) {
  1048. log_info(LD_DIR,"Trying to extract information from wedged server desc "
  1049. "download.");
  1050. connection_dir_reached_eof(TO_DIR_CONN(conn));
  1051. } else {
  1052. connection_mark_for_close(conn);
  1053. }
  1054. return;
  1055. }
  1056. if (!connection_speaks_cells(conn))
  1057. return; /* we're all done here, the rest is just for OR conns */
  1058. /* If we haven't flushed to an OR connection for a while, then either nuke
  1059. the connection or send a keepalive, depending. */
  1060. or_conn = TO_OR_CONN(conn);
  1061. tor_assert(conn->outbuf);
  1062. chan = TLS_CHAN_TO_BASE(or_conn->chan);
  1063. tor_assert(chan);
  1064. if (channel_num_circuits(chan) != 0) {
  1065. have_any_circuits = 1;
  1066. chan->timestamp_last_had_circuits = now;
  1067. } else {
  1068. have_any_circuits = 0;
  1069. }
  1070. if (channel_is_bad_for_new_circs(TLS_CHAN_TO_BASE(or_conn->chan)) &&
  1071. ! have_any_circuits) {
  1072. /* It's bad for new circuits, and has no unmarked circuits on it:
  1073. * mark it now. */
  1074. log_info(LD_OR,
  1075. "Expiring non-used OR connection to fd %d (%s:%d) [Too old].",
  1076. (int)conn->s, conn->address, conn->port);
  1077. if (conn->state == OR_CONN_STATE_CONNECTING)
  1078. connection_or_connect_failed(TO_OR_CONN(conn),
  1079. END_OR_CONN_REASON_TIMEOUT,
  1080. "Tor gave up on the connection");
  1081. connection_or_close_normally(TO_OR_CONN(conn), 1);
  1082. } else if (!connection_state_is_open(conn)) {
  1083. if (past_keepalive) {
  1084. /* We never managed to actually get this connection open and happy. */
  1085. log_info(LD_OR,"Expiring non-open OR connection to fd %d (%s:%d).",
  1086. (int)conn->s,conn->address, conn->port);
  1087. connection_or_close_normally(TO_OR_CONN(conn), 0);
  1088. }
  1089. } else if (we_are_hibernating() &&
  1090. ! have_any_circuits &&
  1091. !connection_get_outbuf_len(conn)) {
  1092. /* We're hibernating or shutting down, there's no circuits, and nothing to
  1093. * flush.*/
  1094. log_info(LD_OR,"Expiring non-used OR connection to fd %d (%s:%d) "
  1095. "[Hibernating or exiting].",
  1096. (int)conn->s,conn->address, conn->port);
  1097. connection_or_close_normally(TO_OR_CONN(conn), 1);
  1098. } else if (!have_any_circuits &&
  1099. now - or_conn->idle_timeout >=
  1100. chan->timestamp_last_had_circuits) {
  1101. log_info(LD_OR,"Expiring non-used OR connection %"PRIu64" to fd %d "
  1102. "(%s:%d) [no circuits for %d; timeout %d; %scanonical].",
  1103. (chan->global_identifier),
  1104. (int)conn->s, conn->address, conn->port,
  1105. (int)(now - chan->timestamp_last_had_circuits),
  1106. or_conn->idle_timeout,
  1107. or_conn->is_canonical ? "" : "non");
  1108. connection_or_close_normally(TO_OR_CONN(conn), 0);
  1109. } else if (
  1110. now >= or_conn->timestamp_lastempty + options->KeepalivePeriod*10 &&
  1111. now >=
  1112. conn->timestamp_last_write_allowed + options->KeepalivePeriod*10) {
  1113. log_fn(LOG_PROTOCOL_WARN,LD_PROTOCOL,
  1114. "Expiring stuck OR connection to fd %d (%s:%d). (%d bytes to "
  1115. "flush; %d seconds since last write)",
  1116. (int)conn->s, conn->address, conn->port,
  1117. (int)connection_get_outbuf_len(conn),
  1118. (int)(now-conn->timestamp_last_write_allowed));
  1119. connection_or_close_normally(TO_OR_CONN(conn), 0);
  1120. } else if (past_keepalive && !connection_get_outbuf_len(conn)) {
  1121. /* send a padding cell */
  1122. log_fn(LOG_DEBUG,LD_OR,"Sending keepalive to (%s:%d)",
  1123. conn->address, conn->port);
  1124. memset(&cell,0,sizeof(cell_t));
  1125. cell.command = CELL_PADDING;
  1126. connection_or_write_cell_to_buf(&cell, or_conn);
  1127. } else {
  1128. channelpadding_decide_to_pad_channel(chan);
  1129. }
  1130. }
  1131. /** Honor a NEWNYM request: make future requests unlinkable to past
  1132. * requests. */
  1133. static void
  1134. signewnym_impl(time_t now)
  1135. {
  1136. const or_options_t *options = get_options();
  1137. if (!proxy_mode(options)) {
  1138. log_info(LD_CONTROL, "Ignoring SIGNAL NEWNYM because client functionality "
  1139. "is disabled.");
  1140. return;
  1141. }
  1142. circuit_mark_all_dirty_circs_as_unusable();
  1143. addressmap_clear_transient();
  1144. hs_client_purge_state();
  1145. time_of_last_signewnym = now;
  1146. signewnym_is_pending = 0;
  1147. ++newnym_epoch;
  1148. control_event_signal(SIGNEWNYM);
  1149. }
  1150. /** Callback: run a deferred signewnym. */
  1151. static void
  1152. handle_deferred_signewnym_cb(mainloop_event_t *event, void *arg)
  1153. {
  1154. (void)event;
  1155. (void)arg;
  1156. log_info(LD_CONTROL, "Honoring delayed NEWNYM request");
  1157. do_signewnym(time(NULL));
  1158. }
  1159. /** Either perform a signewnym or schedule one, depending on rate limiting. */
  1160. void
  1161. do_signewnym(time_t now)
  1162. {
  1163. if (time_of_last_signewnym + MAX_SIGNEWNYM_RATE > now) {
  1164. const time_t delay_sec =
  1165. time_of_last_signewnym + MAX_SIGNEWNYM_RATE - now;
  1166. if (! signewnym_is_pending) {
  1167. signewnym_is_pending = 1;
  1168. if (!handle_deferred_signewnym_ev) {
  1169. handle_deferred_signewnym_ev =
  1170. mainloop_event_postloop_new(handle_deferred_signewnym_cb, NULL);
  1171. }
  1172. const struct timeval delay_tv = { delay_sec, 0 };
  1173. mainloop_event_schedule(handle_deferred_signewnym_ev, &delay_tv);
  1174. }
  1175. log_notice(LD_CONTROL,
  1176. "Rate limiting NEWNYM request: delaying by %d second(s)",
  1177. (int)(delay_sec));
  1178. } else {
  1179. signewnym_impl(now);
  1180. }
  1181. }
  1182. /** Return the number of times that signewnym has been called. */
  1183. unsigned
  1184. get_signewnym_epoch(void)
  1185. {
  1186. return newnym_epoch;
  1187. }
  1188. /** True iff we have initialized all the members of <b>periodic_events</b>.
  1189. * Used to prevent double-initialization. */
  1190. static int periodic_events_initialized = 0;
  1191. /* Declare all the timer callback functions... */
  1192. #undef CALLBACK
  1193. #define CALLBACK(name) \
  1194. static int name ## _callback(time_t, const or_options_t *)
  1195. CALLBACK(add_entropy);
  1196. CALLBACK(check_authority_cert);
  1197. CALLBACK(check_canonical_channels);
  1198. CALLBACK(check_descriptor);
  1199. CALLBACK(check_dns_honesty);
  1200. CALLBACK(check_ed_keys);
  1201. CALLBACK(check_expired_networkstatus);
  1202. CALLBACK(check_for_reachability_bw);
  1203. CALLBACK(check_onion_keys_expiry_time);
  1204. CALLBACK(clean_caches);
  1205. CALLBACK(clean_consdiffmgr);
  1206. CALLBACK(dirvote);
  1207. CALLBACK(downrate_stability);
  1208. CALLBACK(expire_old_ciruits_serverside);
  1209. CALLBACK(fetch_networkstatus);
  1210. CALLBACK(heartbeat);
  1211. CALLBACK(hs_service);
  1212. CALLBACK(launch_descriptor_fetches);
  1213. CALLBACK(launch_reachability_tests);
  1214. CALLBACK(reachability_warnings);
  1215. CALLBACK(record_bridge_stats);
  1216. CALLBACK(rend_cache_failure_clean);
  1217. CALLBACK(reset_padding_counts);
  1218. CALLBACK(retry_dns);
  1219. CALLBACK(retry_listeners);
  1220. CALLBACK(rotate_onion_key);
  1221. CALLBACK(rotate_x509_certificate);
  1222. CALLBACK(save_stability);
  1223. CALLBACK(save_state);
  1224. CALLBACK(write_bridge_ns);
  1225. CALLBACK(write_stats_file);
  1226. #undef CALLBACK
  1227. /* Now we declare an array of periodic_event_item_t for each periodic event */
  1228. #define CALLBACK(name, r, f) PERIODIC_EVENT(name, r, f)
  1229. STATIC periodic_event_item_t periodic_events[] = {
  1230. /* Everyone needs to run those. */
  1231. CALLBACK(add_entropy, PERIODIC_EVENT_ROLE_ALL, 0),
  1232. CALLBACK(check_expired_networkstatus, PERIODIC_EVENT_ROLE_ALL, 0),
  1233. CALLBACK(clean_caches, PERIODIC_EVENT_ROLE_ALL, 0),
  1234. CALLBACK(fetch_networkstatus, PERIODIC_EVENT_ROLE_ALL,
  1235. PERIODIC_EVENT_FLAG_NEED_NET),
  1236. CALLBACK(heartbeat, PERIODIC_EVENT_ROLE_ALL, 0),
  1237. CALLBACK(launch_descriptor_fetches, PERIODIC_EVENT_ROLE_ALL,
  1238. PERIODIC_EVENT_FLAG_NEED_NET),
  1239. CALLBACK(reset_padding_counts, PERIODIC_EVENT_ROLE_ALL, 0),
  1240. CALLBACK(retry_listeners, PERIODIC_EVENT_ROLE_ALL,
  1241. PERIODIC_EVENT_FLAG_NEED_NET),
  1242. CALLBACK(save_state, PERIODIC_EVENT_ROLE_ALL, 0),
  1243. CALLBACK(rotate_x509_certificate, PERIODIC_EVENT_ROLE_ALL, 0),
  1244. CALLBACK(write_stats_file, PERIODIC_EVENT_ROLE_ALL, 0),
  1245. /* Routers (bridge and relay) only. */
  1246. CALLBACK(check_descriptor, PERIODIC_EVENT_ROLE_ROUTER,
  1247. PERIODIC_EVENT_FLAG_NEED_NET),
  1248. CALLBACK(check_ed_keys, PERIODIC_EVENT_ROLE_ROUTER, 0),
  1249. CALLBACK(check_for_reachability_bw, PERIODIC_EVENT_ROLE_ROUTER,
  1250. PERIODIC_EVENT_FLAG_NEED_NET),
  1251. CALLBACK(check_onion_keys_expiry_time, PERIODIC_EVENT_ROLE_ROUTER, 0),
  1252. CALLBACK(expire_old_ciruits_serverside, PERIODIC_EVENT_ROLE_ROUTER,
  1253. PERIODIC_EVENT_FLAG_NEED_NET),
  1254. CALLBACK(reachability_warnings, PERIODIC_EVENT_ROLE_ROUTER,
  1255. PERIODIC_EVENT_FLAG_NEED_NET),
  1256. CALLBACK(retry_dns, PERIODIC_EVENT_ROLE_ROUTER, 0),
  1257. CALLBACK(rotate_onion_key, PERIODIC_EVENT_ROLE_ROUTER, 0),
  1258. /* Authorities (bridge and directory) only. */
  1259. CALLBACK(downrate_stability, PERIODIC_EVENT_ROLE_AUTHORITIES, 0),
  1260. CALLBACK(launch_reachability_tests, PERIODIC_EVENT_ROLE_AUTHORITIES,
  1261. PERIODIC_EVENT_FLAG_NEED_NET),
  1262. CALLBACK(save_stability, PERIODIC_EVENT_ROLE_AUTHORITIES, 0),
  1263. /* Directory authority only. */
  1264. CALLBACK(check_authority_cert, PERIODIC_EVENT_ROLE_DIRAUTH, 0),
  1265. CALLBACK(dirvote, PERIODIC_EVENT_ROLE_DIRAUTH, PERIODIC_EVENT_FLAG_NEED_NET),
  1266. /* Relay only. */
  1267. CALLBACK(check_canonical_channels, PERIODIC_EVENT_ROLE_RELAY,
  1268. PERIODIC_EVENT_FLAG_NEED_NET),
  1269. CALLBACK(check_dns_honesty, PERIODIC_EVENT_ROLE_RELAY,
  1270. PERIODIC_EVENT_FLAG_NEED_NET),
  1271. /* Hidden Service service only. */
  1272. CALLBACK(hs_service, PERIODIC_EVENT_ROLE_HS_SERVICE,
  1273. PERIODIC_EVENT_FLAG_NEED_NET),
  1274. /* Bridge only. */
  1275. CALLBACK(record_bridge_stats, PERIODIC_EVENT_ROLE_BRIDGE, 0),
  1276. /* Client only. */
  1277. CALLBACK(rend_cache_failure_clean, PERIODIC_EVENT_ROLE_CLIENT, 0),
  1278. /* Bridge Authority only. */
  1279. CALLBACK(write_bridge_ns, PERIODIC_EVENT_ROLE_BRIDGEAUTH, 0),
  1280. /* Directory server only. */
  1281. CALLBACK(clean_consdiffmgr, PERIODIC_EVENT_ROLE_DIRSERVER, 0),
  1282. END_OF_PERIODIC_EVENTS
  1283. };
  1284. #undef CALLBACK
  1285. /* These are pointers to members of periodic_events[] that are used to
  1286. * implement particular callbacks. We keep them separate here so that we
  1287. * can access them by name. We also keep them inside periodic_events[]
  1288. * so that we can implement "reset all timers" in a reasonable way. */
  1289. static periodic_event_item_t *check_descriptor_event=NULL;
  1290. static periodic_event_item_t *dirvote_event=NULL;
  1291. static periodic_event_item_t *fetch_networkstatus_event=NULL;
  1292. static periodic_event_item_t *launch_descriptor_fetches_event=NULL;
  1293. static periodic_event_item_t *check_dns_honesty_event=NULL;
  1294. static periodic_event_item_t *save_state_event=NULL;
  1295. /** Reset all the periodic events so we'll do all our actions again as if we
  1296. * just started up.
  1297. * Useful if our clock just moved back a long time from the future,
  1298. * so we don't wait until that future arrives again before acting.
  1299. */
  1300. void
  1301. reset_all_main_loop_timers(void)
  1302. {
  1303. int i;
  1304. for (i = 0; periodic_events[i].name; ++i) {
  1305. periodic_event_reschedule(&periodic_events[i]);
  1306. }
  1307. }
  1308. /** Return the member of periodic_events[] whose name is <b>name</b>.
  1309. * Return NULL if no such event is found.
  1310. */
  1311. static periodic_event_item_t *
  1312. find_periodic_event(const char *name)
  1313. {
  1314. int i;
  1315. for (i = 0; periodic_events[i].name; ++i) {
  1316. if (strcmp(name, periodic_events[i].name) == 0)
  1317. return &periodic_events[i];
  1318. }
  1319. return NULL;
  1320. }
  1321. /** Return a bitmask of the roles this tor instance is configured for using
  1322. * the given options. */
  1323. STATIC int
  1324. get_my_roles(const or_options_t *options)
  1325. {
  1326. tor_assert(options);
  1327. int roles = 0;
  1328. int is_bridge = options->BridgeRelay;
  1329. int is_client = options_any_client_port_set(options);
  1330. int is_relay = server_mode(options);
  1331. int is_dirauth = authdir_mode_v3(options);
  1332. int is_bridgeauth = authdir_mode_bridge(options);
  1333. int is_hidden_service = !!hs_service_get_num_services() ||
  1334. !!rend_num_services();
  1335. int is_dirserver = dir_server_mode(options);
  1336. if (is_bridge) roles |= PERIODIC_EVENT_ROLE_BRIDGE;
  1337. if (is_client) roles |= PERIODIC_EVENT_ROLE_CLIENT;
  1338. if (is_relay) roles |= PERIODIC_EVENT_ROLE_RELAY;
  1339. if (is_dirauth) roles |= PERIODIC_EVENT_ROLE_DIRAUTH;
  1340. if (is_bridgeauth) roles |= PERIODIC_EVENT_ROLE_BRIDGEAUTH;
  1341. if (is_hidden_service) roles |= PERIODIC_EVENT_ROLE_HS_SERVICE;
  1342. if (is_dirserver) roles |= PERIODIC_EVENT_ROLE_DIRSERVER;
  1343. return roles;
  1344. }
  1345. /** Event to run initialize_periodic_events_cb */
  1346. static struct event *initialize_periodic_events_event = NULL;
  1347. /** Helper, run one second after setup:
  1348. * Initializes all members of periodic_events and starts them running.
  1349. *
  1350. * (We do this one second after setup for backward-compatibility reasons;
  1351. * it might not actually be necessary.) */
  1352. static void
  1353. initialize_periodic_events_cb(evutil_socket_t fd, short events, void *data)
  1354. {
  1355. (void) fd;
  1356. (void) events;
  1357. (void) data;
  1358. tor_event_free(initialize_periodic_events_event);
  1359. rescan_periodic_events(get_options());
  1360. }
  1361. /** Set up all the members of periodic_events[], and configure them all to be
  1362. * launched from a callback. */
  1363. STATIC void
  1364. initialize_periodic_events(void)
  1365. {
  1366. tor_assert(periodic_events_initialized == 0);
  1367. periodic_events_initialized = 1;
  1368. /* Set up all periodic events. We'll launch them by roles. */
  1369. int i;
  1370. for (i = 0; periodic_events[i].name; ++i) {
  1371. periodic_event_setup(&periodic_events[i]);
  1372. }
  1373. #define NAMED_CALLBACK(name) \
  1374. STMT_BEGIN name ## _event = find_periodic_event( #name ); STMT_END
  1375. NAMED_CALLBACK(check_descriptor);
  1376. NAMED_CALLBACK(dirvote);
  1377. NAMED_CALLBACK(fetch_networkstatus);
  1378. NAMED_CALLBACK(launch_descriptor_fetches);
  1379. NAMED_CALLBACK(check_dns_honesty);
  1380. NAMED_CALLBACK(save_state);
  1381. struct timeval one_second = { 1, 0 };
  1382. initialize_periodic_events_event = tor_evtimer_new(
  1383. tor_libevent_get_base(),
  1384. initialize_periodic_events_cb, NULL);
  1385. event_add(initialize_periodic_events_event, &one_second);
  1386. }
  1387. STATIC void
  1388. teardown_periodic_events(void)
  1389. {
  1390. int i;
  1391. for (i = 0; periodic_events[i].name; ++i) {
  1392. periodic_event_destroy(&periodic_events[i]);
  1393. }
  1394. periodic_events_initialized = 0;
  1395. }
  1396. /** Do a pass at all our periodic events, disable those we don't need anymore
  1397. * and enable those we need now using the given options. */
  1398. void
  1399. rescan_periodic_events(const or_options_t *options)
  1400. {
  1401. tor_assert(options);
  1402. /* Avoid scanning the event list if we haven't initialized it yet. This is
  1403. * particularly useful for unit tests in order to avoid initializing main
  1404. * loop events everytime. */
  1405. if (!periodic_events_initialized) {
  1406. return;
  1407. }
  1408. int roles = get_my_roles(options);
  1409. for (int i = 0; periodic_events[i].name; ++i) {
  1410. periodic_event_item_t *item = &periodic_events[i];
  1411. /* Handle the event flags. */
  1412. if (net_is_disabled() &&
  1413. (item->flags & PERIODIC_EVENT_FLAG_NEED_NET)) {
  1414. continue;
  1415. }
  1416. /* Enable the event if needed. It is safe to enable an event that was
  1417. * already enabled. Same goes for disabling it. */
  1418. if (item->roles & roles) {
  1419. log_debug(LD_GENERAL, "Launching periodic event %s", item->name);
  1420. periodic_event_enable(item);
  1421. } else {
  1422. log_debug(LD_GENERAL, "Disabling periodic event %s", item->name);
  1423. periodic_event_disable(item);
  1424. }
  1425. }
  1426. }
  1427. /* We just got new options globally set, see if we need to enabled or disable
  1428. * periodic events. */
  1429. void
  1430. periodic_events_on_new_options(const or_options_t *options)
  1431. {
  1432. /* Only if we've already initialized the events, rescan the list which will
  1433. * enable or disable events depending on our roles. This will be called at
  1434. * bootup and we don't want this function to initialize the events because
  1435. * they aren't set up at this stage. */
  1436. if (periodic_events_initialized) {
  1437. rescan_periodic_events(options);
  1438. }
  1439. }
  1440. /**
  1441. * Update our schedule so that we'll check whether we need to update our
  1442. * descriptor immediately, rather than after up to CHECK_DESCRIPTOR_INTERVAL
  1443. * seconds.
  1444. */
  1445. void
  1446. reschedule_descriptor_update_check(void)
  1447. {
  1448. if (check_descriptor_event) {
  1449. periodic_event_reschedule(check_descriptor_event);
  1450. }
  1451. }
  1452. /**
  1453. * Update our schedule so that we'll check whether we need to fetch directory
  1454. * info immediately.
  1455. */
  1456. void
  1457. reschedule_directory_downloads(void)
  1458. {
  1459. tor_assert(fetch_networkstatus_event);
  1460. tor_assert(launch_descriptor_fetches_event);
  1461. periodic_event_reschedule(fetch_networkstatus_event);
  1462. periodic_event_reschedule(launch_descriptor_fetches_event);
  1463. }
  1464. /** Mainloop callback: clean up circuits, channels, and connections
  1465. * that are pending close. */
  1466. static void
  1467. postloop_cleanup_cb(mainloop_event_t *ev, void *arg)
  1468. {
  1469. (void)ev;
  1470. (void)arg;
  1471. circuit_close_all_marked();
  1472. close_closeable_connections();
  1473. channel_run_cleanup();
  1474. channel_listener_run_cleanup();
  1475. }
  1476. /** Event to run postloop_cleanup_cb */
  1477. static mainloop_event_t *postloop_cleanup_ev=NULL;
  1478. /** Schedule a post-loop event to clean up marked channels, connections, and
  1479. * circuits. */
  1480. void
  1481. mainloop_schedule_postloop_cleanup(void)
  1482. {
  1483. if (PREDICT_UNLIKELY(postloop_cleanup_ev == NULL)) {
  1484. // (It's possible that we can get here if we decide to close a connection
  1485. // in the earliest stages of our configuration, before we create events.)
  1486. return;
  1487. }
  1488. mainloop_event_activate(postloop_cleanup_ev);
  1489. }
  1490. #define LONGEST_TIMER_PERIOD (30 * 86400)
  1491. /** Helper: Return the number of seconds between <b>now</b> and <b>next</b>,
  1492. * clipped to the range [1 second, LONGEST_TIMER_PERIOD]. */
  1493. static inline int
  1494. safe_timer_diff(time_t now, time_t next)
  1495. {
  1496. if (next > now) {
  1497. /* There were no computers at signed TIME_MIN (1902 on 32-bit systems),
  1498. * and nothing that could run Tor. It's a bug if 'next' is around then.
  1499. * On 64-bit systems with signed TIME_MIN, TIME_MIN is before the Big
  1500. * Bang. We cannot extrapolate past a singularity, but there was probably
  1501. * nothing that could run Tor then, either.
  1502. **/
  1503. tor_assert(next > TIME_MIN + LONGEST_TIMER_PERIOD);
  1504. if (next - LONGEST_TIMER_PERIOD > now)
  1505. return LONGEST_TIMER_PERIOD;
  1506. return (int)(next - now);
  1507. } else {
  1508. return 1;
  1509. }
  1510. }
  1511. /** Perform regular maintenance tasks. This function gets run once per
  1512. * second by second_elapsed_callback().
  1513. */
  1514. static void
  1515. run_scheduled_events(time_t now)
  1516. {
  1517. const or_options_t *options = get_options();
  1518. /* 0. See if we've been asked to shut down and our timeout has
  1519. * expired; or if our bandwidth limits are exhausted and we
  1520. * should hibernate; or if it's time to wake up from hibernation.
  1521. */
  1522. consider_hibernation(now);
  1523. /* Maybe enough time elapsed for us to reconsider a circuit. */
  1524. circuit_upgrade_circuits_from_guard_wait();
  1525. if (options->UseBridges && !net_is_disabled()) {
  1526. /* Note: this check uses net_is_disabled(), not should_delay_dir_fetches()
  1527. * -- the latter is only for fetching consensus-derived directory info. */
  1528. fetch_bridge_descriptors(options, now);
  1529. }
  1530. if (accounting_is_enabled(options)) {
  1531. accounting_run_housekeeping(now);
  1532. }
  1533. /* 3a. Every second, we examine pending circuits and prune the
  1534. * ones which have been pending for more than a few seconds.
  1535. * We do this before step 4, so it can try building more if
  1536. * it's not comfortable with the number of available circuits.
  1537. */
  1538. /* (If our circuit build timeout can ever become lower than a second (which
  1539. * it can't, currently), we should do this more often.) */
  1540. circuit_expire_building();
  1541. circuit_expire_waiting_for_better_guard();
  1542. /* 3b. Also look at pending streams and prune the ones that 'began'
  1543. * a long time ago but haven't gotten a 'connected' yet.
  1544. * Do this before step 4, so we can put them back into pending
  1545. * state to be picked up by the new circuit.
  1546. */
  1547. connection_ap_expire_beginning();
  1548. /* 3c. And expire connections that we've held open for too long.
  1549. */
  1550. connection_expire_held_open();
  1551. /* 4. Every second, we try a new circuit if there are no valid
  1552. * circuits. Every NewCircuitPeriod seconds, we expire circuits
  1553. * that became dirty more than MaxCircuitDirtiness seconds ago,
  1554. * and we make a new circ if there are no clean circuits.
  1555. */
  1556. const int have_dir_info = router_have_minimum_dir_info();
  1557. if (have_dir_info && !net_is_disabled()) {
  1558. circuit_build_needed_circs(now);
  1559. } else {
  1560. circuit_expire_old_circs_as_needed(now);
  1561. }
  1562. /* 5. We do housekeeping for each connection... */
  1563. channel_update_bad_for_new_circs(NULL, 0);
  1564. int i;
  1565. for (i=0;i<smartlist_len(connection_array);i++) {
  1566. run_connection_housekeeping(i, now);
  1567. }
  1568. /* 11b. check pending unconfigured managed proxies */
  1569. if (!net_is_disabled() && pt_proxies_configuration_pending())
  1570. pt_configure_remaining_proxies();
  1571. }
  1572. /* Periodic callback: rotate the onion keys after the period defined by the
  1573. * "onion-key-rotation-days" consensus parameter, shut down and restart all
  1574. * cpuworkers, and update our descriptor if necessary.
  1575. */
  1576. static int
  1577. rotate_onion_key_callback(time_t now, const or_options_t *options)
  1578. {
  1579. if (server_mode(options)) {
  1580. int onion_key_lifetime = get_onion_key_lifetime();
  1581. time_t rotation_time = get_onion_key_set_at()+onion_key_lifetime;
  1582. if (rotation_time > now) {
  1583. return ONION_KEY_CONSENSUS_CHECK_INTERVAL;
  1584. }
  1585. log_info(LD_GENERAL,"Rotating onion key.");
  1586. rotate_onion_key();
  1587. cpuworkers_rotate_keyinfo();
  1588. if (router_rebuild_descriptor(1)<0) {
  1589. log_info(LD_CONFIG, "Couldn't rebuild router descriptor");
  1590. }
  1591. if (advertised_server_mode() && !net_is_disabled())
  1592. router_upload_dir_desc_to_dirservers(0);
  1593. return ONION_KEY_CONSENSUS_CHECK_INTERVAL;
  1594. }
  1595. return PERIODIC_EVENT_NO_UPDATE;
  1596. }
  1597. /* Period callback: Check if our old onion keys are still valid after the
  1598. * period of time defined by the consensus parameter
  1599. * "onion-key-grace-period-days", otherwise expire them by setting them to
  1600. * NULL.
  1601. */
  1602. static int
  1603. check_onion_keys_expiry_time_callback(time_t now, const or_options_t *options)
  1604. {
  1605. if (server_mode(options)) {
  1606. int onion_key_grace_period = get_onion_key_grace_period();
  1607. time_t expiry_time = get_onion_key_set_at()+onion_key_grace_period;
  1608. if (expiry_time > now) {
  1609. return ONION_KEY_CONSENSUS_CHECK_INTERVAL;
  1610. }
  1611. log_info(LD_GENERAL, "Expiring old onion keys.");
  1612. expire_old_onion_keys();
  1613. cpuworkers_rotate_keyinfo();
  1614. return ONION_KEY_CONSENSUS_CHECK_INTERVAL;
  1615. }
  1616. return PERIODIC_EVENT_NO_UPDATE;
  1617. }
  1618. /* Periodic callback: Every 30 seconds, check whether it's time to make new
  1619. * Ed25519 subkeys.
  1620. */
  1621. static int
  1622. check_ed_keys_callback(time_t now, const or_options_t *options)
  1623. {
  1624. if (server_mode(options)) {
  1625. if (should_make_new_ed_keys(options, now)) {
  1626. int new_signing_key = load_ed_keys(options, now);
  1627. if (new_signing_key < 0 ||
  1628. generate_ed_link_cert(options, now, new_signing_key > 0)) {
  1629. log_err(LD_OR, "Unable to update Ed25519 keys! Exiting.");
  1630. tor_shutdown_event_loop_and_exit(1);
  1631. }
  1632. }
  1633. return 30;
  1634. }
  1635. return PERIODIC_EVENT_NO_UPDATE;
  1636. }
  1637. /**
  1638. * Periodic callback: Every {LAZY,GREEDY}_DESCRIPTOR_RETRY_INTERVAL,
  1639. * see about fetching descriptors, microdescriptors, and extrainfo
  1640. * documents.
  1641. */
  1642. static int
  1643. launch_descriptor_fetches_callback(time_t now, const or_options_t *options)
  1644. {
  1645. if (should_delay_dir_fetches(options, NULL))
  1646. return PERIODIC_EVENT_NO_UPDATE;
  1647. update_all_descriptor_downloads(now);
  1648. update_extrainfo_downloads(now);
  1649. if (router_have_minimum_dir_info())
  1650. return LAZY_DESCRIPTOR_RETRY_INTERVAL;
  1651. else
  1652. return GREEDY_DESCRIPTOR_RETRY_INTERVAL;
  1653. }
  1654. /**
  1655. * Periodic event: Rotate our X.509 certificates and TLS keys once every
  1656. * MAX_SSL_KEY_LIFETIME_INTERNAL.
  1657. */
  1658. static int
  1659. rotate_x509_certificate_callback(time_t now, const or_options_t *options)
  1660. {
  1661. static int first = 1;
  1662. (void)now;
  1663. (void)options;
  1664. if (first) {
  1665. first = 0;
  1666. return MAX_SSL_KEY_LIFETIME_INTERNAL;
  1667. }
  1668. /* 1b. Every MAX_SSL_KEY_LIFETIME_INTERNAL seconds, we change our
  1669. * TLS context. */
  1670. log_info(LD_GENERAL,"Rotating tls context.");
  1671. if (router_initialize_tls_context() < 0) {
  1672. log_err(LD_BUG, "Error reinitializing TLS context");
  1673. tor_assert_unreached();
  1674. }
  1675. if (generate_ed_link_cert(options, now, 1)) {
  1676. log_err(LD_OR, "Unable to update Ed25519->TLS link certificate for "
  1677. "new TLS context.");
  1678. tor_assert_unreached();
  1679. }
  1680. /* We also make sure to rotate the TLS connections themselves if they've
  1681. * been up for too long -- but that's done via is_bad_for_new_circs in
  1682. * run_connection_housekeeping() above. */
  1683. return MAX_SSL_KEY_LIFETIME_INTERNAL;
  1684. }
  1685. /**
  1686. * Periodic callback: once an hour, grab some more entropy from the
  1687. * kernel and feed it to our CSPRNG.
  1688. **/
  1689. static int
  1690. add_entropy_callback(time_t now, const or_options_t *options)
  1691. {
  1692. (void)now;
  1693. (void)options;
  1694. /* We already seeded once, so don't die on failure. */
  1695. if (crypto_seed_rng() < 0) {
  1696. log_warn(LD_GENERAL, "Tried to re-seed RNG, but failed. We already "
  1697. "seeded once, though, so we won't exit here.");
  1698. }
  1699. /** How often do we add more entropy to OpenSSL's RNG pool? */
  1700. #define ENTROPY_INTERVAL (60*60)
  1701. return ENTROPY_INTERVAL;
  1702. }
  1703. /**
  1704. * Periodic callback: if we're an authority, make sure we test
  1705. * the routers on the network for reachability.
  1706. */
  1707. static int
  1708. launch_reachability_tests_callback(time_t now, const or_options_t *options)
  1709. {
  1710. if (authdir_mode_tests_reachability(options) &&
  1711. !net_is_disabled()) {
  1712. /* try to determine reachability of the other Tor relays */
  1713. dirserv_test_reachability(now);
  1714. }
  1715. return REACHABILITY_TEST_INTERVAL;
  1716. }
  1717. /**
  1718. * Periodic callback: if we're an authority, discount the stability
  1719. * information (and other rephist information) that's older.
  1720. */
  1721. static int
  1722. downrate_stability_callback(time_t now, const or_options_t *options)
  1723. {
  1724. (void)options;
  1725. /* 1d. Periodically, we discount older stability information so that new
  1726. * stability info counts more, and save the stability information to disk as
  1727. * appropriate. */
  1728. time_t next = rep_hist_downrate_old_runs(now);
  1729. return safe_timer_diff(now, next);
  1730. }
  1731. /**
  1732. * Periodic callback: if we're an authority, record our measured stability
  1733. * information from rephist in an mtbf file.
  1734. */
  1735. static int
  1736. save_stability_callback(time_t now, const or_options_t *options)
  1737. {
  1738. if (authdir_mode_tests_reachability(options)) {
  1739. if (rep_hist_record_mtbf_data(now, 1)<0) {
  1740. log_warn(LD_GENERAL, "Couldn't store mtbf data.");
  1741. }
  1742. }
  1743. #define SAVE_STABILITY_INTERVAL (30*60)
  1744. return SAVE_STABILITY_INTERVAL;
  1745. }
  1746. /**
  1747. * Periodic callback: if we're an authority, check on our authority
  1748. * certificate (the one that authenticates our authority signing key).
  1749. */
  1750. static int
  1751. check_authority_cert_callback(time_t now, const or_options_t *options)
  1752. {
  1753. (void)now;
  1754. (void)options;
  1755. /* 1e. Periodically, if we're a v3 authority, we check whether our cert is
  1756. * close to expiring and warn the admin if it is. */
  1757. v3_authority_check_key_expiry();
  1758. #define CHECK_V3_CERTIFICATE_INTERVAL (5*60)
  1759. return CHECK_V3_CERTIFICATE_INTERVAL;
  1760. }
  1761. /**
  1762. * Scheduled callback: Run directory-authority voting functionality.
  1763. *
  1764. * The schedule is a bit complicated here, so dirvote_act() manages the
  1765. * schedule itself.
  1766. **/
  1767. static int
  1768. dirvote_callback(time_t now, const or_options_t *options)
  1769. {
  1770. if (!authdir_mode_v3(options)) {
  1771. tor_assert_nonfatal_unreached();
  1772. return 3600;
  1773. }
  1774. time_t next = dirvote_act(options, now);
  1775. if (BUG(next == TIME_MAX)) {
  1776. /* This shouldn't be returned unless we called dirvote_act() without
  1777. * being an authority. If it happens, maybe our configuration will
  1778. * fix itself in an hour or so? */
  1779. return 3600;
  1780. }
  1781. return safe_timer_diff(now, next);
  1782. }
  1783. /** Reschedule the directory-authority voting event. Run this whenever the
  1784. * schedule has changed. */
  1785. void
  1786. reschedule_dirvote(const or_options_t *options)
  1787. {
  1788. if (periodic_events_initialized && authdir_mode_v3(options)) {
  1789. periodic_event_reschedule(dirvote_event);
  1790. }
  1791. }
  1792. /**
  1793. * Periodic callback: If our consensus is too old, recalculate whether
  1794. * we can actually use it.
  1795. */
  1796. static int
  1797. check_expired_networkstatus_callback(time_t now, const or_options_t *options)
  1798. {
  1799. (void)options;
  1800. /* Check whether our networkstatus has expired. */
  1801. networkstatus_t *ns = networkstatus_get_latest_consensus();
  1802. /*XXXX RD: This value needs to be the same as REASONABLY_LIVE_TIME in
  1803. * networkstatus_get_reasonably_live_consensus(), but that value is way
  1804. * way too high. Arma: is the bridge issue there resolved yet? -NM */
  1805. #define NS_EXPIRY_SLOP (24*60*60)
  1806. if (ns && ns->valid_until < (now - NS_EXPIRY_SLOP) &&
  1807. router_have_minimum_dir_info()) {
  1808. router_dir_info_changed();
  1809. }
  1810. #define CHECK_EXPIRED_NS_INTERVAL (2*60)
  1811. return CHECK_EXPIRED_NS_INTERVAL;
  1812. }
  1813. /**
  1814. * Scheduled callback: Save the state file to disk if appropriate.
  1815. */
  1816. static int
  1817. save_state_callback(time_t now, const or_options_t *options)
  1818. {
  1819. (void) options;
  1820. (void) or_state_save(now); // only saves if appropriate
  1821. const time_t next_write = get_or_state()->next_write;
  1822. if (next_write == TIME_MAX) {
  1823. return 86400;
  1824. }
  1825. return safe_timer_diff(now, next_write);
  1826. }
  1827. /** Reschedule the event for saving the state file.
  1828. *
  1829. * Run this when the state becomes dirty. */
  1830. void
  1831. reschedule_or_state_save(void)
  1832. {
  1833. if (save_state_event == NULL) {
  1834. /* This can happen early on during startup. */
  1835. return;
  1836. }
  1837. periodic_event_reschedule(save_state_event);
  1838. }
  1839. /**
  1840. * Periodic callback: Write statistics to disk if appropriate.
  1841. */
  1842. static int
  1843. write_stats_file_callback(time_t now, const or_options_t *options)
  1844. {
  1845. /* 1g. Check whether we should write statistics to disk.
  1846. */
  1847. #define CHECK_WRITE_STATS_INTERVAL (60*60)
  1848. time_t next_time_to_write_stats_files = now + CHECK_WRITE_STATS_INTERVAL;
  1849. if (options->CellStatistics) {
  1850. time_t next_write =
  1851. rep_hist_buffer_stats_write(now);
  1852. if (next_write && next_write < next_time_to_write_stats_files)
  1853. next_time_to_write_stats_files = next_write;
  1854. }
  1855. if (options->DirReqStatistics) {
  1856. time_t next_write = geoip_dirreq_stats_write(now);
  1857. if (next_write && next_write < next_time_to_write_stats_files)
  1858. next_time_to_write_stats_files = next_write;
  1859. }
  1860. if (options->EntryStatistics) {
  1861. time_t next_write = geoip_entry_stats_write(now);
  1862. if (next_write && next_write < next_time_to_write_stats_files)
  1863. next_time_to_write_stats_files = next_write;
  1864. }
  1865. if (options->HiddenServiceStatistics) {
  1866. time_t next_write = rep_hist_hs_stats_write(now);
  1867. if (next_write && next_write < next_time_to_write_stats_files)
  1868. next_time_to_write_stats_files = next_write;
  1869. }
  1870. if (options->ExitPortStatistics) {
  1871. time_t next_write = rep_hist_exit_stats_write(now);
  1872. if (next_write && next_write < next_time_to_write_stats_files)
  1873. next_time_to_write_stats_files = next_write;
  1874. }
  1875. if (options->ConnDirectionStatistics) {
  1876. time_t next_write = rep_hist_conn_stats_write(now);
  1877. if (next_write && next_write < next_time_to_write_stats_files)
  1878. next_time_to_write_stats_files = next_write;
  1879. }
  1880. if (options->BridgeAuthoritativeDir) {
  1881. time_t next_write = rep_hist_desc_stats_write(now);
  1882. if (next_write && next_write < next_time_to_write_stats_files)
  1883. next_time_to_write_stats_files = next_write;
  1884. }
  1885. return safe_timer_diff(now, next_time_to_write_stats_files);
  1886. }
  1887. #define CHANNEL_CHECK_INTERVAL (60*60)
  1888. static int
  1889. check_canonical_channels_callback(time_t now, const or_options_t *options)
  1890. {
  1891. (void)now;
  1892. if (public_server_mode(options))
  1893. channel_check_for_duplicates();
  1894. return CHANNEL_CHECK_INTERVAL;
  1895. }
  1896. static int
  1897. reset_padding_counts_callback(time_t now, const or_options_t *options)
  1898. {
  1899. if (options->PaddingStatistics) {
  1900. rep_hist_prep_published_padding_counts(now);
  1901. }
  1902. rep_hist_reset_padding_counts();
  1903. return REPHIST_CELL_PADDING_COUNTS_INTERVAL;
  1904. }
  1905. static int should_init_bridge_stats = 1;
  1906. /**
  1907. * Periodic callback: Write bridge statistics to disk if appropriate.
  1908. */
  1909. static int
  1910. record_bridge_stats_callback(time_t now, const or_options_t *options)
  1911. {
  1912. /* 1h. Check whether we should write bridge statistics to disk.
  1913. */
  1914. if (should_record_bridge_info(options)) {
  1915. if (should_init_bridge_stats) {
  1916. /* (Re-)initialize bridge statistics. */
  1917. geoip_bridge_stats_init(now);
  1918. should_init_bridge_stats = 0;
  1919. return WRITE_STATS_INTERVAL;
  1920. } else {
  1921. /* Possibly write bridge statistics to disk and ask when to write
  1922. * them next time. */
  1923. time_t next = geoip_bridge_stats_write(now);
  1924. return safe_timer_diff(now, next);
  1925. }
  1926. } else if (!should_init_bridge_stats) {
  1927. /* Bridge mode was turned off. Ensure that stats are re-initialized
  1928. * next time bridge mode is turned on. */
  1929. should_init_bridge_stats = 1;
  1930. }
  1931. return PERIODIC_EVENT_NO_UPDATE;
  1932. }
  1933. /**
  1934. * Periodic callback: Clean in-memory caches every once in a while
  1935. */
  1936. static int
  1937. clean_caches_callback(time_t now, const or_options_t *options)
  1938. {
  1939. /* Remove old information from rephist and the rend cache. */
  1940. rep_history_clean(now - options->RephistTrackTime);
  1941. rend_cache_clean(now, REND_CACHE_TYPE_SERVICE);
  1942. hs_cache_clean_as_client(now);
  1943. hs_cache_clean_as_dir(now);
  1944. microdesc_cache_rebuild(NULL, 0);
  1945. #define CLEAN_CACHES_INTERVAL (30*60)
  1946. return CLEAN_CACHES_INTERVAL;
  1947. }
  1948. /**
  1949. * Periodic callback: Clean the cache of failed hidden service lookups
  1950. * frequently.
  1951. */
  1952. static int
  1953. rend_cache_failure_clean_callback(time_t now, const or_options_t *options)
  1954. {
  1955. (void)options;
  1956. /* We don't keep entries that are more than five minutes old so we try to
  1957. * clean it as soon as we can since we want to make sure the client waits
  1958. * as little as possible for reachability reasons. */
  1959. rend_cache_failure_clean(now);
  1960. hs_cache_client_intro_state_clean(now);
  1961. return 30;
  1962. }
  1963. /**
  1964. * Periodic callback: If we're a server and initializing dns failed, retry.
  1965. */
  1966. static int
  1967. retry_dns_callback(time_t now, const or_options_t *options)
  1968. {
  1969. (void)now;
  1970. #define RETRY_DNS_INTERVAL (10*60)
  1971. if (server_mode(options) && has_dns_init_failed())
  1972. dns_init();
  1973. return RETRY_DNS_INTERVAL;
  1974. }
  1975. /** Periodic callback: consider rebuilding or and re-uploading our descriptor
  1976. * (if we've passed our internal checks). */
  1977. static int
  1978. check_descriptor_callback(time_t now, const or_options_t *options)
  1979. {
  1980. /** How often do we check whether part of our router info has changed in a
  1981. * way that would require an upload? That includes checking whether our IP
  1982. * address has changed. */
  1983. #define CHECK_DESCRIPTOR_INTERVAL (60)
  1984. (void)options;
  1985. /* 2b. Once per minute, regenerate and upload the descriptor if the old
  1986. * one is inaccurate. */
  1987. if (!net_is_disabled()) {
  1988. check_descriptor_bandwidth_changed(now);
  1989. check_descriptor_ipaddress_changed(now);
  1990. mark_my_descriptor_dirty_if_too_old(now);
  1991. consider_publishable_server(0);
  1992. /* If any networkstatus documents are no longer recent, we need to
  1993. * update all the descriptors' running status. */
  1994. /* Remove dead routers. */
  1995. /* XXXX This doesn't belong here, but it was here in the pre-
  1996. * XXXX refactoring code. */
  1997. routerlist_remove_old_routers();
  1998. }
  1999. return CHECK_DESCRIPTOR_INTERVAL;
  2000. }
  2001. /**
  2002. * Periodic callback: check whether we're reachable (as a relay), and
  2003. * whether our bandwidth has changed enough that we need to
  2004. * publish a new descriptor.
  2005. */
  2006. static int
  2007. check_for_reachability_bw_callback(time_t now, const or_options_t *options)
  2008. {
  2009. /* XXXX This whole thing was stuck in the middle of what is now
  2010. * XXXX check_descriptor_callback. I'm not sure it's right. */
  2011. static int dirport_reachability_count = 0;
  2012. /* also, check religiously for reachability, if it's within the first
  2013. * 20 minutes of our uptime. */
  2014. if (server_mode(options) &&
  2015. (have_completed_a_circuit() || !any_predicted_circuits(now)) &&
  2016. !net_is_disabled()) {
  2017. if (get_uptime() < TIMEOUT_UNTIL_UNREACHABILITY_COMPLAINT) {
  2018. router_do_reachability_checks(1, dirport_reachability_count==0);
  2019. if (++dirport_reachability_count > 5)
  2020. dirport_reachability_count = 0;
  2021. return 1;
  2022. } else {
  2023. /* If we haven't checked for 12 hours and our bandwidth estimate is
  2024. * low, do another bandwidth test. This is especially important for
  2025. * bridges, since they might go long periods without much use. */
  2026. const routerinfo_t *me = router_get_my_routerinfo();
  2027. static int first_time = 1;
  2028. if (!first_time && me &&
  2029. me->bandwidthcapacity < me->bandwidthrate &&
  2030. me->bandwidthcapacity < 51200) {
  2031. reset_bandwidth_test();
  2032. }
  2033. first_time = 0;
  2034. #define BANDWIDTH_RECHECK_INTERVAL (12*60*60)
  2035. return BANDWIDTH_RECHECK_INTERVAL;
  2036. }
  2037. }
  2038. return CHECK_DESCRIPTOR_INTERVAL;
  2039. }
  2040. /**
  2041. * Periodic event: once a minute, (or every second if TestingTorNetwork, or
  2042. * during client bootstrap), check whether we want to download any
  2043. * networkstatus documents. */
  2044. static int
  2045. fetch_networkstatus_callback(time_t now, const or_options_t *options)
  2046. {
  2047. /* How often do we check whether we should download network status
  2048. * documents? */
  2049. const int we_are_bootstrapping = networkstatus_consensus_is_bootstrapping(
  2050. now);
  2051. const int prefer_mirrors = !directory_fetches_from_authorities(
  2052. get_options());
  2053. int networkstatus_dl_check_interval = 60;
  2054. /* check more often when testing, or when bootstrapping from mirrors
  2055. * (connection limits prevent too many connections being made) */
  2056. if (options->TestingTorNetwork
  2057. || (we_are_bootstrapping && prefer_mirrors)) {
  2058. networkstatus_dl_check_interval = 1;
  2059. }
  2060. if (should_delay_dir_fetches(options, NULL))
  2061. return PERIODIC_EVENT_NO_UPDATE;
  2062. update_networkstatus_downloads(now);
  2063. return networkstatus_dl_check_interval;
  2064. }
  2065. /**
  2066. * Periodic callback: Every 60 seconds, we relaunch listeners if any died. */
  2067. static int
  2068. retry_listeners_callback(time_t now, const or_options_t *options)
  2069. {
  2070. (void)now;
  2071. (void)options;
  2072. if (!net_is_disabled()) {
  2073. retry_all_listeners(NULL, 0);
  2074. return 60;
  2075. }
  2076. return PERIODIC_EVENT_NO_UPDATE;
  2077. }
  2078. /**
  2079. * Periodic callback: as a server, see if we have any old unused circuits
  2080. * that should be expired */
  2081. static int
  2082. expire_old_ciruits_serverside_callback(time_t now, const or_options_t *options)
  2083. {
  2084. (void)options;
  2085. /* every 11 seconds, so not usually the same second as other such events */
  2086. circuit_expire_old_circuits_serverside(now);
  2087. return 11;
  2088. }
  2089. /**
  2090. * Callback: Send warnings if Tor doesn't find its ports reachable.
  2091. */
  2092. static int
  2093. reachability_warnings_callback(time_t now, const or_options_t *options)
  2094. {
  2095. (void) now;
  2096. if (get_uptime() < TIMEOUT_UNTIL_UNREACHABILITY_COMPLAINT) {
  2097. return (int)(TIMEOUT_UNTIL_UNREACHABILITY_COMPLAINT - get_uptime());
  2098. }
  2099. if (server_mode(options) &&
  2100. !net_is_disabled() &&
  2101. have_completed_a_circuit()) {
  2102. /* every 20 minutes, check and complain if necessary */
  2103. const routerinfo_t *me = router_get_my_routerinfo();
  2104. if (me && !check_whether_orport_reachable(options)) {
  2105. char *address = tor_dup_ip(me->addr);
  2106. log_warn(LD_CONFIG,"Your server (%s:%d) has not managed to confirm that "
  2107. "its ORPort is reachable. Relays do not publish descriptors "
  2108. "until their ORPort and DirPort are reachable. Please check "
  2109. "your firewalls, ports, address, /etc/hosts file, etc.",
  2110. address, me->or_port);
  2111. control_event_server_status(LOG_WARN,
  2112. "REACHABILITY_FAILED ORADDRESS=%s:%d",
  2113. address, me->or_port);
  2114. tor_free(address);
  2115. }
  2116. if (me && !check_whether_dirport_reachable(options)) {
  2117. char *address = tor_dup_ip(me->addr);
  2118. log_warn(LD_CONFIG,
  2119. "Your server (%s:%d) has not managed to confirm that its "
  2120. "DirPort is reachable. Relays do not publish descriptors "
  2121. "until their ORPort and DirPort are reachable. Please check "
  2122. "your firewalls, ports, address, /etc/hosts file, etc.",
  2123. address, me->dir_port);
  2124. control_event_server_status(LOG_WARN,
  2125. "REACHABILITY_FAILED DIRADDRESS=%s:%d",
  2126. address, me->dir_port);
  2127. tor_free(address);
  2128. }
  2129. }
  2130. return TIMEOUT_UNTIL_UNREACHABILITY_COMPLAINT;
  2131. }
  2132. static int dns_honesty_first_time = 1;
  2133. /**
  2134. * Periodic event: if we're an exit, see if our DNS server is telling us
  2135. * obvious lies.
  2136. */
  2137. static int
  2138. check_dns_honesty_callback(time_t now, const or_options_t *options)
  2139. {
  2140. (void)now;
  2141. /* 9. and if we're an exit node, check whether our DNS is telling stories
  2142. * to us. */
  2143. if (net_is_disabled() ||
  2144. ! public_server_mode(options) ||
  2145. router_my_exit_policy_is_reject_star())
  2146. return PERIODIC_EVENT_NO_UPDATE;
  2147. if (dns_honesty_first_time) {
  2148. /* Don't launch right when we start */
  2149. dns_honesty_first_time = 0;
  2150. return crypto_rand_int_range(60, 180);
  2151. }
  2152. dns_launch_correctness_checks();
  2153. return 12*3600 + crypto_rand_int(12*3600);
  2154. }
  2155. /**
  2156. * Periodic callback: if we're the bridge authority, write a networkstatus
  2157. * file to disk.
  2158. */
  2159. static int
  2160. write_bridge_ns_callback(time_t now, const or_options_t *options)
  2161. {
  2162. /* 10. write bridge networkstatus file to disk */
  2163. if (options->BridgeAuthoritativeDir) {
  2164. networkstatus_dump_bridge_status_to_file(now);
  2165. #define BRIDGE_STATUSFILE_INTERVAL (30*60)
  2166. return BRIDGE_STATUSFILE_INTERVAL;
  2167. }
  2168. return PERIODIC_EVENT_NO_UPDATE;
  2169. }
  2170. static int heartbeat_callback_first_time = 1;
  2171. /**
  2172. * Periodic callback: write the heartbeat message in the logs.
  2173. *
  2174. * If writing the heartbeat message to the logs fails for some reason, retry
  2175. * again after <b>MIN_HEARTBEAT_PERIOD</b> seconds.
  2176. */
  2177. static int
  2178. heartbeat_callback(time_t now, const or_options_t *options)
  2179. {
  2180. /* Check if heartbeat is disabled */
  2181. if (!options->HeartbeatPeriod) {
  2182. return PERIODIC_EVENT_NO_UPDATE;
  2183. }
  2184. /* Skip the first one. */
  2185. if (heartbeat_callback_first_time) {
  2186. heartbeat_callback_first_time = 0;
  2187. return options->HeartbeatPeriod;
  2188. }
  2189. /* Write the heartbeat message */
  2190. if (log_heartbeat(now) == 0) {
  2191. return options->HeartbeatPeriod;
  2192. } else {
  2193. /* If we couldn't write the heartbeat log message, try again in the minimum
  2194. * interval of time. */
  2195. return MIN_HEARTBEAT_PERIOD;
  2196. }
  2197. }
  2198. #define CDM_CLEAN_CALLBACK_INTERVAL 600
  2199. static int
  2200. clean_consdiffmgr_callback(time_t now, const or_options_t *options)
  2201. {
  2202. (void)now;
  2203. if (dir_server_mode(options)) {
  2204. consdiffmgr_cleanup();
  2205. }
  2206. return CDM_CLEAN_CALLBACK_INTERVAL;
  2207. }
  2208. /*
  2209. * Periodic callback: Run scheduled events for HS service. This is called
  2210. * every second.
  2211. */
  2212. static int
  2213. hs_service_callback(time_t now, const or_options_t *options)
  2214. {
  2215. (void) options;
  2216. /* We need to at least be able to build circuits and that we actually have
  2217. * a working network. */
  2218. if (!have_completed_a_circuit() || net_is_disabled() ||
  2219. networkstatus_get_live_consensus(now) == NULL) {
  2220. goto end;
  2221. }
  2222. hs_service_run_scheduled_events(now);
  2223. end:
  2224. /* Every 1 second. */
  2225. return 1;
  2226. }
  2227. /** Timer: used to invoke second_elapsed_callback() once per second. */
  2228. static periodic_timer_t *second_timer = NULL;
  2229. /**
  2230. * Enable or disable the per-second timer as appropriate, creating it if
  2231. * necessary.
  2232. */
  2233. void
  2234. reschedule_per_second_timer(void)
  2235. {
  2236. struct timeval one_second;
  2237. one_second.tv_sec = 1;
  2238. one_second.tv_usec = 0;
  2239. if (! second_timer) {
  2240. second_timer = periodic_timer_new(tor_libevent_get_base(),
  2241. &one_second,
  2242. second_elapsed_callback,
  2243. NULL);
  2244. tor_assert(second_timer);
  2245. }
  2246. const bool run_per_second_events =
  2247. control_any_per_second_event_enabled() || ! net_is_completely_disabled();
  2248. if (run_per_second_events) {
  2249. periodic_timer_launch(second_timer, &one_second);
  2250. } else {
  2251. periodic_timer_disable(second_timer);
  2252. }
  2253. }
  2254. /** Last time that update_current_time was called. */
  2255. static time_t current_second = 0;
  2256. /** Last time that update_current_time updated current_second. */
  2257. static monotime_coarse_t current_second_last_changed;
  2258. /**
  2259. * Set the current time to "now", which should be the value returned by
  2260. * time(). Check for clock jumps and track the total number of seconds we
  2261. * have been running.
  2262. */
  2263. void
  2264. update_current_time(time_t now)
  2265. {
  2266. if (PREDICT_LIKELY(now == current_second)) {
  2267. /* We call this function a lot. Most frequently, the current second
  2268. * will not have changed, so we just return. */
  2269. return;
  2270. }
  2271. const time_t seconds_elapsed = current_second ? (now - current_second) : 0;
  2272. /* Check the wall clock against the monotonic clock, so we can
  2273. * better tell idleness from clock jumps and/or other shenanigans. */
  2274. monotime_coarse_t last_updated;
  2275. memcpy(&last_updated, &current_second_last_changed, sizeof(last_updated));
  2276. monotime_coarse_get(&current_second_last_changed);
  2277. /** How much clock jumping do we tolerate? */
  2278. #define NUM_JUMPED_SECONDS_BEFORE_WARN 100
  2279. /** How much idleness do we tolerate? */
  2280. #define NUM_IDLE_SECONDS_BEFORE_WARN 3600
  2281. if (seconds_elapsed < -NUM_JUMPED_SECONDS_BEFORE_WARN) {
  2282. // moving back in time is always a bad sign.
  2283. circuit_note_clock_jumped(seconds_elapsed, false);
  2284. } else if (seconds_elapsed >= NUM_JUMPED_SECONDS_BEFORE_WARN) {
  2285. /* Compare the monotonic clock to the result of time(). */
  2286. const int32_t monotime_msec_passed =
  2287. monotime_coarse_diff_msec32(&last_updated,
  2288. &current_second_last_changed);
  2289. const int monotime_sec_passed = monotime_msec_passed / 1000;
  2290. const int discrepancy = monotime_sec_passed - (int)seconds_elapsed;
  2291. /* If the monotonic clock deviates from time(NULL), we have a couple of
  2292. * possibilities. On some systems, this means we have been suspended or
  2293. * sleeping. Everywhere, it can mean that the wall-clock time has
  2294. * been changed -- for example, with settimeofday().
  2295. *
  2296. * On the other hand, if the monotonic time matches with the wall-clock
  2297. * time, we've probably just been idle for a while, with no events firing.
  2298. * we tolerate much more of that.
  2299. */
  2300. const bool clock_jumped = abs(discrepancy) > 2;
  2301. if (clock_jumped || seconds_elapsed >= NUM_IDLE_SECONDS_BEFORE_WARN) {
  2302. circuit_note_clock_jumped(seconds_elapsed, ! clock_jumped);
  2303. }
  2304. } else if (seconds_elapsed > 0) {
  2305. stats_n_seconds_working += seconds_elapsed;
  2306. }
  2307. update_approx_time(now);
  2308. current_second = now;
  2309. }
  2310. /** Libevent callback: invoked once every second. */
  2311. static void
  2312. second_elapsed_callback(periodic_timer_t *timer, void *arg)
  2313. {
  2314. /* XXXX This could be sensibly refactored into multiple callbacks, and we
  2315. * could use Libevent's timers for this rather than checking the current
  2316. * time against a bunch of timeouts every second. */
  2317. time_t now;
  2318. (void)timer;
  2319. (void)arg;
  2320. now = time(NULL);
  2321. /* We don't need to do this once-per-second any more: time-updating is
  2322. * only in this callback _because it is a callback_. It should be fine
  2323. * to disable this callback, and the time will still get updated.
  2324. */
  2325. update_current_time(now);
  2326. /* Maybe some controller events are ready to fire */
  2327. control_per_second_events();
  2328. run_scheduled_events(now);
  2329. }
  2330. #ifdef HAVE_SYSTEMD_209
  2331. static periodic_timer_t *systemd_watchdog_timer = NULL;
  2332. /** Libevent callback: invoked to reset systemd watchdog. */
  2333. static void
  2334. systemd_watchdog_callback(periodic_timer_t *timer, void *arg)
  2335. {
  2336. (void)timer;
  2337. (void)arg;
  2338. sd_notify(0, "WATCHDOG=1");
  2339. }
  2340. #endif /* defined(HAVE_SYSTEMD_209) */
  2341. #define UPTIME_CUTOFF_FOR_NEW_BANDWIDTH_TEST (6*60*60)
  2342. /** Called when our IP address seems to have changed. <b>at_interface</b>
  2343. * should be true if we detected a change in our interface, and false if we
  2344. * detected a change in our published address. */
  2345. void
  2346. ip_address_changed(int at_interface)
  2347. {
  2348. const or_options_t *options = get_options();
  2349. int server = server_mode(options);
  2350. int exit_reject_interfaces = (server && options->ExitRelay
  2351. && options->ExitPolicyRejectLocalInterfaces);
  2352. if (at_interface) {
  2353. if (! server) {
  2354. /* Okay, change our keys. */
  2355. if (init_keys_client() < 0)
  2356. log_warn(LD_GENERAL, "Unable to rotate keys after IP change!");
  2357. }
  2358. } else {
  2359. if (server) {
  2360. if (get_uptime() > UPTIME_CUTOFF_FOR_NEW_BANDWIDTH_TEST)
  2361. reset_bandwidth_test();
  2362. reset_uptime();
  2363. router_reset_reachability();
  2364. }
  2365. }
  2366. /* Exit relays incorporate interface addresses in their exit policies when
  2367. * ExitPolicyRejectLocalInterfaces is set */
  2368. if (exit_reject_interfaces || (server && !at_interface)) {
  2369. mark_my_descriptor_dirty("IP address changed");
  2370. }
  2371. dns_servers_relaunch_checks();
  2372. }
  2373. /** Forget what we've learned about the correctness of our DNS servers, and
  2374. * start learning again. */
  2375. void
  2376. dns_servers_relaunch_checks(void)
  2377. {
  2378. if (server_mode(get_options())) {
  2379. dns_reset_correctness_checks();
  2380. if (periodic_events_initialized) {
  2381. tor_assert(check_dns_honesty_event);
  2382. periodic_event_reschedule(check_dns_honesty_event);
  2383. }
  2384. }
  2385. }
  2386. /** Initialize some mainloop_event_t objects that we require. */
  2387. STATIC void
  2388. initialize_mainloop_events(void)
  2389. {
  2390. if (!schedule_active_linked_connections_event) {
  2391. schedule_active_linked_connections_event =
  2392. mainloop_event_postloop_new(schedule_active_linked_connections_cb, NULL);
  2393. }
  2394. if (!postloop_cleanup_ev) {
  2395. postloop_cleanup_ev =
  2396. mainloop_event_postloop_new(postloop_cleanup_cb, NULL);
  2397. }
  2398. }
  2399. /** Tor main loop. */
  2400. int
  2401. do_main_loop(void)
  2402. {
  2403. /* initialize the periodic events first, so that code that depends on the
  2404. * events being present does not assert.
  2405. */
  2406. if (! periodic_events_initialized) {
  2407. initialize_periodic_events();
  2408. }
  2409. initialize_mainloop_events();
  2410. /* set up once-a-second callback. */
  2411. reschedule_per_second_timer();
  2412. #ifdef HAVE_SYSTEMD_209
  2413. uint64_t watchdog_delay;
  2414. /* set up systemd watchdog notification. */
  2415. if (sd_watchdog_enabled(1, &watchdog_delay) > 0) {
  2416. if (! systemd_watchdog_timer) {
  2417. struct timeval watchdog;
  2418. /* The manager will "act on" us if we don't send them a notification
  2419. * every 'watchdog_delay' microseconds. So, send notifications twice
  2420. * that often. */
  2421. watchdog_delay /= 2;
  2422. watchdog.tv_sec = watchdog_delay / 1000000;
  2423. watchdog.tv_usec = watchdog_delay % 1000000;
  2424. systemd_watchdog_timer = periodic_timer_new(tor_libevent_get_base(),
  2425. &watchdog,
  2426. systemd_watchdog_callback,
  2427. NULL);
  2428. tor_assert(systemd_watchdog_timer);
  2429. }
  2430. }
  2431. #endif /* defined(HAVE_SYSTEMD_209) */
  2432. main_loop_should_exit = 0;
  2433. main_loop_exit_value = 0;
  2434. #ifdef ENABLE_RESTART_DEBUGGING
  2435. {
  2436. static int first_time = 1;
  2437. if (first_time && getenv("TOR_DEBUG_RESTART")) {
  2438. first_time = 0;
  2439. const char *sec_str = getenv("TOR_DEBUG_RESTART_AFTER_SECONDS");
  2440. long sec;
  2441. int sec_ok=0;
  2442. if (sec_str &&
  2443. (sec = tor_parse_long(sec_str, 10, 0, INT_MAX, &sec_ok, NULL)) &&
  2444. sec_ok) {
  2445. /* Okay, we parsed the seconds. */
  2446. } else {
  2447. sec = 5;
  2448. }
  2449. struct timeval restart_after = { (time_t) sec, 0 };
  2450. tor_shutdown_event_loop_for_restart_event =
  2451. tor_evtimer_new(tor_libevent_get_base(),
  2452. tor_shutdown_event_loop_for_restart_cb, NULL);
  2453. event_add(tor_shutdown_event_loop_for_restart_event, &restart_after);
  2454. }
  2455. }
  2456. #endif
  2457. return run_main_loop_until_done();
  2458. }
  2459. #ifndef _WIN32
  2460. /** Rate-limiter for EINVAL-type libevent warnings. */
  2461. static ratelim_t libevent_error_ratelim = RATELIM_INIT(10);
  2462. #endif
  2463. /**
  2464. * Run the main loop a single time. Return 0 for "exit"; -1 for "exit with
  2465. * error", and 1 for "run this again."
  2466. */
  2467. static int
  2468. run_main_loop_once(void)
  2469. {
  2470. int loop_result;
  2471. if (nt_service_is_stopping())
  2472. return 0;
  2473. if (main_loop_should_exit)
  2474. return 0;
  2475. #ifndef _WIN32
  2476. /* Make it easier to tell whether libevent failure is our fault or not. */
  2477. errno = 0;
  2478. #endif
  2479. if (get_options()->MainloopStats) {
  2480. /* We always enforce that EVLOOP_ONCE is passed to event_base_loop() if we
  2481. * are collecting main loop statistics. */
  2482. called_loop_once = 1;
  2483. } else {
  2484. called_loop_once = 0;
  2485. }
  2486. /* Make sure we know (about) what time it is. */
  2487. update_approx_time(time(NULL));
  2488. /* Here it is: the main loop. Here we tell Libevent to poll until we have
  2489. * an event, or the second ends, or until we have some active linked
  2490. * connections to trigger events for. Libevent will wait till one
  2491. * of these happens, then run all the appropriate callbacks. */
  2492. loop_result = tor_libevent_run_event_loop(tor_libevent_get_base(),
  2493. called_loop_once);
  2494. if (get_options()->MainloopStats) {
  2495. /* Update our main loop counters. */
  2496. if (loop_result == 0) {
  2497. // The call was successful.
  2498. increment_main_loop_success_count();
  2499. } else if (loop_result == -1) {
  2500. // The call was erroneous.
  2501. increment_main_loop_error_count();
  2502. } else if (loop_result == 1) {
  2503. // The call didn't have any active or pending events
  2504. // to handle.
  2505. increment_main_loop_idle_count();
  2506. }
  2507. }
  2508. /* Oh, the loop failed. That might be an error that we need to
  2509. * catch, but more likely, it's just an interrupted poll() call or something,
  2510. * and we should try again. */
  2511. if (loop_result < 0) {
  2512. int e = tor_socket_errno(-1);
  2513. /* let the program survive things like ^z */
  2514. if (e != EINTR && !ERRNO_IS_EINPROGRESS(e)) {
  2515. log_err(LD_NET,"libevent call with %s failed: %s [%d]",
  2516. tor_libevent_get_method(), tor_socket_strerror(e), e);
  2517. return -1;
  2518. #ifndef _WIN32
  2519. } else if (e == EINVAL) {
  2520. log_fn_ratelim(&libevent_error_ratelim, LOG_WARN, LD_NET,
  2521. "EINVAL from libevent: should you upgrade libevent?");
  2522. if (libevent_error_ratelim.n_calls_since_last_time > 8) {
  2523. log_err(LD_NET, "Too many libevent errors, too fast: dying");
  2524. return -1;
  2525. }
  2526. #endif /* !defined(_WIN32) */
  2527. } else {
  2528. tor_assert_nonfatal_once(! ERRNO_IS_EINPROGRESS(e));
  2529. log_debug(LD_NET,"libevent call interrupted.");
  2530. /* You can't trust the results of this poll(). Go back to the
  2531. * top of the big for loop. */
  2532. return 1;
  2533. }
  2534. }
  2535. if (main_loop_should_exit)
  2536. return 0;
  2537. return 1;
  2538. }
  2539. /** Run the run_main_loop_once() function until it declares itself done,
  2540. * and return its final return value.
  2541. *
  2542. * Shadow won't invoke this function, so don't fill it up with things.
  2543. */
  2544. static int
  2545. run_main_loop_until_done(void)
  2546. {
  2547. int loop_result = 1;
  2548. do {
  2549. loop_result = run_main_loop_once();
  2550. } while (loop_result == 1);
  2551. if (main_loop_should_exit)
  2552. return main_loop_exit_value;
  2553. else
  2554. return loop_result;
  2555. }
  2556. /** Returns Tor's uptime. */
  2557. MOCK_IMPL(long,
  2558. get_uptime,(void))
  2559. {
  2560. return stats_n_seconds_working;
  2561. }
  2562. /** Reset Tor's uptime. */
  2563. MOCK_IMPL(void,
  2564. reset_uptime,(void))
  2565. {
  2566. stats_n_seconds_working = 0;
  2567. }
  2568. void
  2569. tor_mainloop_free_all(void)
  2570. {
  2571. smartlist_free(connection_array);
  2572. smartlist_free(closeable_connection_lst);
  2573. smartlist_free(active_linked_connection_lst);
  2574. periodic_timer_free(second_timer);
  2575. teardown_periodic_events();
  2576. tor_event_free(shutdown_did_not_work_event);
  2577. tor_event_free(initialize_periodic_events_event);
  2578. mainloop_event_free(directory_all_unreachable_cb_event);
  2579. mainloop_event_free(schedule_active_linked_connections_event);
  2580. mainloop_event_free(postloop_cleanup_ev);
  2581. mainloop_event_free(handle_deferred_signewnym_ev);
  2582. stats_n_bytes_read = stats_n_bytes_written = 0;
  2583. memset(&global_bucket, 0, sizeof(global_bucket));
  2584. memset(&global_relayed_bucket, 0, sizeof(global_relayed_bucket));
  2585. time_of_process_start = 0;
  2586. time_of_last_signewnym = 0;
  2587. signewnym_is_pending = 0;
  2588. newnym_epoch = 0;
  2589. called_loop_once = 0;
  2590. main_loop_should_exit = 0;
  2591. main_loop_exit_value = 0;
  2592. can_complete_circuits = 0;
  2593. quiet_level = 0;
  2594. should_init_bridge_stats = 1;
  2595. dns_honesty_first_time = 1;
  2596. heartbeat_callback_first_time = 1;
  2597. current_second = 0;
  2598. memset(&current_second_last_changed, 0,
  2599. sizeof(current_second_last_changed));
  2600. }