circuitbuild.c 194 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) 2007-2012, The Tor Project, Inc. */
  5. /* See LICENSE for licensing information */
  6. /**
  7. * \file circuitbuild.c
  8. * \brief The actual details of building circuits.
  9. **/
  10. #define CIRCUIT_PRIVATE
  11. #include "or.h"
  12. #include "circuitbuild.h"
  13. #include "circuitlist.h"
  14. #include "circuituse.h"
  15. #include "config.h"
  16. #include "connection.h"
  17. #include "connection_edge.h"
  18. #include "connection_or.h"
  19. #include "control.h"
  20. #include "directory.h"
  21. #include "main.h"
  22. #include "networkstatus.h"
  23. #include "nodelist.h"
  24. #include "onion.h"
  25. #include "policies.h"
  26. #include "transports.h"
  27. #include "relay.h"
  28. #include "rephist.h"
  29. #include "router.h"
  30. #include "routerlist.h"
  31. #include "routerparse.h"
  32. #include "crypto.h"
  33. #undef log
  34. #include <math.h>
  35. #ifndef MIN
  36. #define MIN(a,b) ((a)<(b)?(a):(b))
  37. #endif
  38. #define CBT_BIN_TO_MS(bin) ((bin)*CBT_BIN_WIDTH + (CBT_BIN_WIDTH/2))
  39. /********* START VARIABLES **********/
  40. /** Global list of circuit build times */
  41. // XXXX: Add this as a member for entry_guard_t instead of global?
  42. // Then we could do per-guard statistics, as guards are likely to
  43. // vary in their own latency. The downside of this is that guards
  44. // can change frequently, so we'd be building a lot more circuits
  45. // most likely.
  46. /* XXXX024 Make this static; add accessor functions. */
  47. circuit_build_times_t circ_times;
  48. /** A global list of all circuits at this hop. */
  49. extern circuit_t *global_circuitlist;
  50. /** An entry_guard_t represents our information about a chosen long-term
  51. * first hop, known as a "helper" node in the literature. We can't just
  52. * use a node_t, since we want to remember these even when we
  53. * don't have any directory info. */
  54. typedef struct {
  55. char nickname[MAX_NICKNAME_LEN+1];
  56. char identity[DIGEST_LEN];
  57. time_t chosen_on_date; /**< Approximately when was this guard added?
  58. * "0" if we don't know. */
  59. char *chosen_by_version; /**< What tor version added this guard? NULL
  60. * if we don't know. */
  61. unsigned int made_contact : 1; /**< 0 if we have never connected to this
  62. * router, 1 if we have. */
  63. unsigned int can_retry : 1; /**< Should we retry connecting to this entry,
  64. * in spite of having it marked as unreachable?*/
  65. unsigned int path_bias_notice : 1; /**< Did we alert the user about path bias
  66. * for this node already? */
  67. unsigned int path_bias_disabled : 1; /**< Have we disabled this node because
  68. * of path bias issues? */
  69. time_t bad_since; /**< 0 if this guard is currently usable, or the time at
  70. * which it was observed to become (according to the
  71. * directory or the user configuration) unusable. */
  72. time_t unreachable_since; /**< 0 if we can connect to this guard, or the
  73. * time at which we first noticed we couldn't
  74. * connect to it. */
  75. time_t last_attempted; /**< 0 if we can connect to this guard, or the time
  76. * at which we last failed to connect to it. */
  77. unsigned first_hops; /**< Number of first hops this guard has completed */
  78. unsigned circuit_successes; /**< Number of successfully built circuits using
  79. * this guard as first hop. */
  80. } entry_guard_t;
  81. /** Information about a configured bridge. Currently this just matches the
  82. * ones in the torrc file, but one day we may be able to learn about new
  83. * bridges on our own, and remember them in the state file. */
  84. typedef struct {
  85. /** Address of the bridge. */
  86. tor_addr_t addr;
  87. /** TLS port for the bridge. */
  88. uint16_t port;
  89. /** Boolean: We are re-parsing our bridge list, and we are going to remove
  90. * this one if we don't find it in the list of configured bridges. */
  91. unsigned marked_for_removal : 1;
  92. /** Expected identity digest, or all zero bytes if we don't know what the
  93. * digest should be. */
  94. char identity[DIGEST_LEN];
  95. /** Name of pluggable transport protocol taken from its config line. */
  96. char *transport_name;
  97. /** When should we next try to fetch a descriptor for this bridge? */
  98. download_status_t fetch_status;
  99. } bridge_info_t;
  100. /** A list of our chosen entry guards. */
  101. static smartlist_t *entry_guards = NULL;
  102. /** A value of 1 means that the entry_guards list has changed
  103. * and those changes need to be flushed to disk. */
  104. static int entry_guards_dirty = 0;
  105. /** If set, we're running the unit tests: we should avoid clobbering
  106. * our state file or accessing get_options() or get_or_state() */
  107. static int unit_tests = 0;
  108. /********* END VARIABLES ************/
  109. static int circuit_deliver_create_cell(circuit_t *circ,
  110. uint8_t cell_type, const char *payload);
  111. static int onion_pick_cpath_exit(origin_circuit_t *circ, extend_info_t *exit);
  112. static crypt_path_t *onion_next_hop_in_cpath(crypt_path_t *cpath);
  113. static int onion_extend_cpath(origin_circuit_t *circ);
  114. static int count_acceptable_nodes(smartlist_t *routers);
  115. static int onion_append_hop(crypt_path_t **head_ptr, extend_info_t *choice);
  116. static void entry_guards_changed(void);
  117. static entry_guard_t *entry_guard_get_by_id_digest(const char *digest);
  118. static void bridge_free(bridge_info_t *bridge);
  119. static int entry_guard_inc_first_hop_count(entry_guard_t *guard);
  120. static void pathbias_count_success(origin_circuit_t *circ);
  121. /**
  122. * This function decides if CBT learning should be disabled. It returns
  123. * true if one or more of the following four conditions are met:
  124. *
  125. * 1. If the cbtdisabled consensus parameter is set.
  126. * 2. If the torrc option LearnCircuitBuildTimeout is false.
  127. * 3. If we are a directory authority
  128. * 4. If we fail to write circuit build time history to our state file.
  129. */
  130. static int
  131. circuit_build_times_disabled(void)
  132. {
  133. if (unit_tests) {
  134. return 0;
  135. } else {
  136. int consensus_disabled = networkstatus_get_param(NULL, "cbtdisabled",
  137. 0, 0, 1);
  138. int config_disabled = !get_options()->LearnCircuitBuildTimeout;
  139. int dirauth_disabled = get_options()->AuthoritativeDir;
  140. int state_disabled = did_last_state_file_write_fail() ? 1 : 0;
  141. if (consensus_disabled || config_disabled || dirauth_disabled ||
  142. state_disabled) {
  143. log_debug(LD_CIRC,
  144. "CircuitBuildTime learning is disabled. "
  145. "Consensus=%d, Config=%d, AuthDir=%d, StateFile=%d",
  146. consensus_disabled, config_disabled, dirauth_disabled,
  147. state_disabled);
  148. return 1;
  149. } else {
  150. log_debug(LD_CIRC,
  151. "CircuitBuildTime learning is not disabled. "
  152. "Consensus=%d, Config=%d, AuthDir=%d, StateFile=%d",
  153. consensus_disabled, config_disabled, dirauth_disabled,
  154. state_disabled);
  155. return 0;
  156. }
  157. }
  158. }
  159. /**
  160. * Retrieve and bounds-check the cbtmaxtimeouts consensus paramter.
  161. *
  162. * Effect: When this many timeouts happen in the last 'cbtrecentcount'
  163. * circuit attempts, the client should discard all of its history and
  164. * begin learning a fresh timeout value.
  165. */
  166. static int32_t
  167. circuit_build_times_max_timeouts(void)
  168. {
  169. int32_t cbt_maxtimeouts;
  170. cbt_maxtimeouts = networkstatus_get_param(NULL, "cbtmaxtimeouts",
  171. CBT_DEFAULT_MAX_RECENT_TIMEOUT_COUNT,
  172. CBT_MIN_MAX_RECENT_TIMEOUT_COUNT,
  173. CBT_MAX_MAX_RECENT_TIMEOUT_COUNT);
  174. if (!(get_options()->LearnCircuitBuildTimeout)) {
  175. log_debug(LD_BUG,
  176. "circuit_build_times_max_timeouts() called, cbtmaxtimeouts is"
  177. " %d",
  178. cbt_maxtimeouts);
  179. }
  180. return cbt_maxtimeouts;
  181. }
  182. /**
  183. * Retrieve and bounds-check the cbtnummodes consensus paramter.
  184. *
  185. * Effect: This value governs how many modes to use in the weighted
  186. * average calculation of Pareto parameter Xm. A value of 3 introduces
  187. * some bias (2-5% of CDF) under ideal conditions, but allows for better
  188. * performance in the event that a client chooses guard nodes of radically
  189. * different performance characteristics.
  190. */
  191. static int32_t
  192. circuit_build_times_default_num_xm_modes(void)
  193. {
  194. int32_t num = networkstatus_get_param(NULL, "cbtnummodes",
  195. CBT_DEFAULT_NUM_XM_MODES,
  196. CBT_MIN_NUM_XM_MODES,
  197. CBT_MAX_NUM_XM_MODES);
  198. if (!(get_options()->LearnCircuitBuildTimeout)) {
  199. log_debug(LD_BUG,
  200. "circuit_build_times_default_num_xm_modes() called, cbtnummodes"
  201. " is %d",
  202. num);
  203. }
  204. return num;
  205. }
  206. /**
  207. * Retrieve and bounds-check the cbtmincircs consensus paramter.
  208. *
  209. * Effect: This is the minimum number of circuits to build before
  210. * computing a timeout.
  211. */
  212. static int32_t
  213. circuit_build_times_min_circs_to_observe(void)
  214. {
  215. int32_t num = networkstatus_get_param(NULL, "cbtmincircs",
  216. CBT_DEFAULT_MIN_CIRCUITS_TO_OBSERVE,
  217. CBT_MIN_MIN_CIRCUITS_TO_OBSERVE,
  218. CBT_MAX_MIN_CIRCUITS_TO_OBSERVE);
  219. if (!(get_options()->LearnCircuitBuildTimeout)) {
  220. log_debug(LD_BUG,
  221. "circuit_build_times_min_circs_to_observe() called, cbtmincircs"
  222. " is %d",
  223. num);
  224. }
  225. return num;
  226. }
  227. /** Return true iff <b>cbt</b> has recorded enough build times that we
  228. * want to start acting on the timeout it implies. */
  229. int
  230. circuit_build_times_enough_to_compute(circuit_build_times_t *cbt)
  231. {
  232. return cbt->total_build_times >= circuit_build_times_min_circs_to_observe();
  233. }
  234. /**
  235. * Retrieve and bounds-check the cbtquantile consensus paramter.
  236. *
  237. * Effect: This is the position on the quantile curve to use to set the
  238. * timeout value. It is a percent (10-99).
  239. */
  240. double
  241. circuit_build_times_quantile_cutoff(void)
  242. {
  243. int32_t num = networkstatus_get_param(NULL, "cbtquantile",
  244. CBT_DEFAULT_QUANTILE_CUTOFF,
  245. CBT_MIN_QUANTILE_CUTOFF,
  246. CBT_MAX_QUANTILE_CUTOFF);
  247. if (!(get_options()->LearnCircuitBuildTimeout)) {
  248. log_debug(LD_BUG,
  249. "circuit_build_times_quantile_cutoff() called, cbtquantile"
  250. " is %d",
  251. num);
  252. }
  253. return num/100.0;
  254. }
  255. /* DOCDOC circuit_build_times_get_bw_scale */
  256. int
  257. circuit_build_times_get_bw_scale(networkstatus_t *ns)
  258. {
  259. return networkstatus_get_param(ns, "bwweightscale",
  260. BW_WEIGHT_SCALE,
  261. BW_MIN_WEIGHT_SCALE,
  262. BW_MAX_WEIGHT_SCALE);
  263. }
  264. /**
  265. * Retrieve and bounds-check the cbtclosequantile consensus paramter.
  266. *
  267. * Effect: This is the position on the quantile curve to use to set the
  268. * timeout value to use to actually close circuits. It is a percent
  269. * (0-99).
  270. */
  271. static double
  272. circuit_build_times_close_quantile(void)
  273. {
  274. int32_t param;
  275. /* Cast is safe - circuit_build_times_quantile_cutoff() is capped */
  276. int32_t min = (int)tor_lround(100*circuit_build_times_quantile_cutoff());
  277. param = networkstatus_get_param(NULL, "cbtclosequantile",
  278. CBT_DEFAULT_CLOSE_QUANTILE,
  279. CBT_MIN_CLOSE_QUANTILE,
  280. CBT_MAX_CLOSE_QUANTILE);
  281. if (!(get_options()->LearnCircuitBuildTimeout)) {
  282. log_debug(LD_BUG,
  283. "circuit_build_times_close_quantile() called, cbtclosequantile"
  284. " is %d", param);
  285. }
  286. if (param < min) {
  287. log_warn(LD_DIR, "Consensus parameter cbtclosequantile is "
  288. "too small, raising to %d", min);
  289. param = min;
  290. }
  291. return param / 100.0;
  292. }
  293. /**
  294. * Retrieve and bounds-check the cbttestfreq consensus paramter.
  295. *
  296. * Effect: Describes how often in seconds to build a test circuit to
  297. * gather timeout values. Only applies if less than 'cbtmincircs'
  298. * have been recorded.
  299. */
  300. static int32_t
  301. circuit_build_times_test_frequency(void)
  302. {
  303. int32_t num = networkstatus_get_param(NULL, "cbttestfreq",
  304. CBT_DEFAULT_TEST_FREQUENCY,
  305. CBT_MIN_TEST_FREQUENCY,
  306. CBT_MAX_TEST_FREQUENCY);
  307. if (!(get_options()->LearnCircuitBuildTimeout)) {
  308. log_debug(LD_BUG,
  309. "circuit_build_times_test_frequency() called, cbttestfreq is %d",
  310. num);
  311. }
  312. return num;
  313. }
  314. /**
  315. * Retrieve and bounds-check the cbtmintimeout consensus parameter.
  316. *
  317. * Effect: This is the minimum allowed timeout value in milliseconds.
  318. * The minimum is to prevent rounding to 0 (we only check once
  319. * per second).
  320. */
  321. static int32_t
  322. circuit_build_times_min_timeout(void)
  323. {
  324. int32_t num = networkstatus_get_param(NULL, "cbtmintimeout",
  325. CBT_DEFAULT_TIMEOUT_MIN_VALUE,
  326. CBT_MIN_TIMEOUT_MIN_VALUE,
  327. CBT_MAX_TIMEOUT_MIN_VALUE);
  328. if (!(get_options()->LearnCircuitBuildTimeout)) {
  329. log_debug(LD_BUG,
  330. "circuit_build_times_min_timeout() called, cbtmintimeout is %d",
  331. num);
  332. }
  333. return num;
  334. }
  335. /**
  336. * Retrieve and bounds-check the cbtinitialtimeout consensus paramter.
  337. *
  338. * Effect: This is the timeout value to use before computing a timeout,
  339. * in milliseconds.
  340. */
  341. int32_t
  342. circuit_build_times_initial_timeout(void)
  343. {
  344. int32_t min = circuit_build_times_min_timeout();
  345. int32_t param = networkstatus_get_param(NULL, "cbtinitialtimeout",
  346. CBT_DEFAULT_TIMEOUT_INITIAL_VALUE,
  347. CBT_MIN_TIMEOUT_INITIAL_VALUE,
  348. CBT_MAX_TIMEOUT_INITIAL_VALUE);
  349. if (!(get_options()->LearnCircuitBuildTimeout)) {
  350. log_debug(LD_BUG,
  351. "circuit_build_times_initial_timeout() called, "
  352. "cbtinitialtimeout is %d",
  353. param);
  354. }
  355. if (param < min) {
  356. log_warn(LD_DIR, "Consensus parameter cbtinitialtimeout is too small, "
  357. "raising to %d", min);
  358. param = min;
  359. }
  360. return param;
  361. }
  362. /**
  363. * Retrieve and bounds-check the cbtrecentcount consensus paramter.
  364. *
  365. * Effect: This is the number of circuit build times to keep track of
  366. * for deciding if we hit cbtmaxtimeouts and need to reset our state
  367. * and learn a new timeout.
  368. */
  369. static int32_t
  370. circuit_build_times_recent_circuit_count(networkstatus_t *ns)
  371. {
  372. int32_t num;
  373. num = networkstatus_get_param(ns, "cbtrecentcount",
  374. CBT_DEFAULT_RECENT_CIRCUITS,
  375. CBT_MIN_RECENT_CIRCUITS,
  376. CBT_MAX_RECENT_CIRCUITS);
  377. if (!(get_options()->LearnCircuitBuildTimeout)) {
  378. log_debug(LD_BUG,
  379. "circuit_build_times_recent_circuit_count() called, "
  380. "cbtrecentcount is %d",
  381. num);
  382. }
  383. return num;
  384. }
  385. /**
  386. * This function is called when we get a consensus update.
  387. *
  388. * It checks to see if we have changed any consensus parameters
  389. * that require reallocation or discard of previous stats.
  390. */
  391. void
  392. circuit_build_times_new_consensus_params(circuit_build_times_t *cbt,
  393. networkstatus_t *ns)
  394. {
  395. int32_t num;
  396. /*
  397. * First check if we're doing adaptive timeouts at all; nothing to
  398. * update if we aren't.
  399. */
  400. if (!circuit_build_times_disabled()) {
  401. num = circuit_build_times_recent_circuit_count(ns);
  402. if (num > 0) {
  403. if (num != cbt->liveness.num_recent_circs) {
  404. int8_t *recent_circs;
  405. log_notice(LD_CIRC, "The Tor Directory Consensus has changed how many "
  406. "circuits we must track to detect network failures from %d "
  407. "to %d.", cbt->liveness.num_recent_circs, num);
  408. tor_assert(cbt->liveness.timeouts_after_firsthop ||
  409. cbt->liveness.num_recent_circs == 0);
  410. /*
  411. * Technically this is a circular array that we are reallocating
  412. * and memcopying. However, since it only consists of either 1s
  413. * or 0s, and is only used in a statistical test to determine when
  414. * we should discard our history after a sufficient number of 1's
  415. * have been reached, it is fine if order is not preserved or
  416. * elements are lost.
  417. *
  418. * cbtrecentcount should only be changing in cases of severe network
  419. * distress anyway, so memory correctness here is paramount over
  420. * doing acrobatics to preserve the array.
  421. */
  422. recent_circs = tor_malloc_zero(sizeof(int8_t)*num);
  423. if (cbt->liveness.timeouts_after_firsthop &&
  424. cbt->liveness.num_recent_circs > 0) {
  425. memcpy(recent_circs, cbt->liveness.timeouts_after_firsthop,
  426. sizeof(int8_t)*MIN(num, cbt->liveness.num_recent_circs));
  427. }
  428. // Adjust the index if it needs it.
  429. if (num < cbt->liveness.num_recent_circs) {
  430. cbt->liveness.after_firsthop_idx = MIN(num-1,
  431. cbt->liveness.after_firsthop_idx);
  432. }
  433. tor_free(cbt->liveness.timeouts_after_firsthop);
  434. cbt->liveness.timeouts_after_firsthop = recent_circs;
  435. cbt->liveness.num_recent_circs = num;
  436. }
  437. /* else no change, nothing to do */
  438. } else { /* num == 0 */
  439. /*
  440. * Weird. This probably shouldn't happen, so log a warning, but try
  441. * to do something sensible anyway.
  442. */
  443. log_warn(LD_CIRC,
  444. "The cbtrecentcircs consensus parameter came back zero! "
  445. "This disables adaptive timeouts since we can't keep track of "
  446. "any recent circuits.");
  447. circuit_build_times_free_timeouts(cbt);
  448. }
  449. } else {
  450. /*
  451. * Adaptive timeouts are disabled; this might be because of the
  452. * LearnCircuitBuildTimes config parameter, and hence permanent, or
  453. * the cbtdisabled consensus parameter, so it may be a new condition.
  454. * Treat it like getting num == 0 above and free the circuit history
  455. * if we have any.
  456. */
  457. circuit_build_times_free_timeouts(cbt);
  458. }
  459. }
  460. /** Make a note that we're running unit tests (rather than running Tor
  461. * itself), so we avoid clobbering our state file. */
  462. void
  463. circuitbuild_running_unit_tests(void)
  464. {
  465. unit_tests = 1;
  466. }
  467. /**
  468. * Return the initial default or configured timeout in milliseconds
  469. */
  470. static double
  471. circuit_build_times_get_initial_timeout(void)
  472. {
  473. double timeout;
  474. /*
  475. * Check if we have LearnCircuitBuildTimeout, and if we don't,
  476. * always use CircuitBuildTimeout, no questions asked.
  477. */
  478. if (get_options()->LearnCircuitBuildTimeout) {
  479. if (!unit_tests && get_options()->CircuitBuildTimeout) {
  480. timeout = get_options()->CircuitBuildTimeout*1000;
  481. if (timeout < circuit_build_times_min_timeout()) {
  482. log_warn(LD_CIRC, "Config CircuitBuildTimeout too low. Setting to %ds",
  483. circuit_build_times_min_timeout()/1000);
  484. timeout = circuit_build_times_min_timeout();
  485. }
  486. } else {
  487. timeout = circuit_build_times_initial_timeout();
  488. }
  489. } else {
  490. timeout = get_options()->CircuitBuildTimeout*1000;
  491. }
  492. return timeout;
  493. }
  494. /**
  495. * Reset the build time state.
  496. *
  497. * Leave estimated parameters, timeout and network liveness intact
  498. * for future use.
  499. */
  500. void
  501. circuit_build_times_reset(circuit_build_times_t *cbt)
  502. {
  503. memset(cbt->circuit_build_times, 0, sizeof(cbt->circuit_build_times));
  504. cbt->total_build_times = 0;
  505. cbt->build_times_idx = 0;
  506. cbt->have_computed_timeout = 0;
  507. }
  508. /**
  509. * Initialize the buildtimes structure for first use.
  510. *
  511. * Sets the initial timeout values based on either the config setting,
  512. * the consensus param, or the default (CBT_DEFAULT_TIMEOUT_INITIAL_VALUE).
  513. */
  514. void
  515. circuit_build_times_init(circuit_build_times_t *cbt)
  516. {
  517. memset(cbt, 0, sizeof(*cbt));
  518. /*
  519. * Check if we really are using adaptive timeouts, and don't keep
  520. * track of this stuff if not.
  521. */
  522. if (!circuit_build_times_disabled()) {
  523. cbt->liveness.num_recent_circs =
  524. circuit_build_times_recent_circuit_count(NULL);
  525. cbt->liveness.timeouts_after_firsthop =
  526. tor_malloc_zero(sizeof(int8_t)*cbt->liveness.num_recent_circs);
  527. } else {
  528. cbt->liveness.num_recent_circs = 0;
  529. cbt->liveness.timeouts_after_firsthop = NULL;
  530. }
  531. cbt->close_ms = cbt->timeout_ms = circuit_build_times_get_initial_timeout();
  532. control_event_buildtimeout_set(cbt, BUILDTIMEOUT_SET_EVENT_RESET);
  533. }
  534. /**
  535. * Free the saved timeouts, if the cbtdisabled consensus parameter got turned
  536. * on or something.
  537. */
  538. void
  539. circuit_build_times_free_timeouts(circuit_build_times_t *cbt)
  540. {
  541. if (!cbt) return;
  542. if (cbt->liveness.timeouts_after_firsthop) {
  543. tor_free(cbt->liveness.timeouts_after_firsthop);
  544. }
  545. cbt->liveness.num_recent_circs = 0;
  546. }
  547. #if 0
  548. /**
  549. * Rewind our build time history by n positions.
  550. */
  551. static void
  552. circuit_build_times_rewind_history(circuit_build_times_t *cbt, int n)
  553. {
  554. int i = 0;
  555. cbt->build_times_idx -= n;
  556. cbt->build_times_idx %= CBT_NCIRCUITS_TO_OBSERVE;
  557. for (i = 0; i < n; i++) {
  558. cbt->circuit_build_times[(i+cbt->build_times_idx)
  559. %CBT_NCIRCUITS_TO_OBSERVE]=0;
  560. }
  561. if (cbt->total_build_times > n) {
  562. cbt->total_build_times -= n;
  563. } else {
  564. cbt->total_build_times = 0;
  565. }
  566. log_info(LD_CIRC,
  567. "Rewound history by %d places. Current index: %d. "
  568. "Total: %d", n, cbt->build_times_idx, cbt->total_build_times);
  569. }
  570. #endif
  571. /**
  572. * Add a new build time value <b>time</b> to the set of build times. Time
  573. * units are milliseconds.
  574. *
  575. * circuit_build_times <b>cbt</b> is a circular array, so loop around when
  576. * array is full.
  577. */
  578. int
  579. circuit_build_times_add_time(circuit_build_times_t *cbt, build_time_t time)
  580. {
  581. if (time <= 0 || time > CBT_BUILD_TIME_MAX) {
  582. log_warn(LD_BUG, "Circuit build time is too large (%u)."
  583. "This is probably a bug.", time);
  584. tor_fragile_assert();
  585. return -1;
  586. }
  587. log_debug(LD_CIRC, "Adding circuit build time %u", time);
  588. cbt->circuit_build_times[cbt->build_times_idx] = time;
  589. cbt->build_times_idx = (cbt->build_times_idx + 1) % CBT_NCIRCUITS_TO_OBSERVE;
  590. if (cbt->total_build_times < CBT_NCIRCUITS_TO_OBSERVE)
  591. cbt->total_build_times++;
  592. if ((cbt->total_build_times % CBT_SAVE_STATE_EVERY) == 0) {
  593. /* Save state every n circuit builds */
  594. if (!unit_tests && !get_options()->AvoidDiskWrites)
  595. or_state_mark_dirty(get_or_state(), 0);
  596. }
  597. return 0;
  598. }
  599. /**
  600. * Return maximum circuit build time
  601. */
  602. static build_time_t
  603. circuit_build_times_max(circuit_build_times_t *cbt)
  604. {
  605. int i = 0;
  606. build_time_t max_build_time = 0;
  607. for (i = 0; i < CBT_NCIRCUITS_TO_OBSERVE; i++) {
  608. if (cbt->circuit_build_times[i] > max_build_time
  609. && cbt->circuit_build_times[i] != CBT_BUILD_ABANDONED)
  610. max_build_time = cbt->circuit_build_times[i];
  611. }
  612. return max_build_time;
  613. }
  614. #if 0
  615. /** Return minimum circuit build time */
  616. build_time_t
  617. circuit_build_times_min(circuit_build_times_t *cbt)
  618. {
  619. int i = 0;
  620. build_time_t min_build_time = CBT_BUILD_TIME_MAX;
  621. for (i = 0; i < CBT_NCIRCUITS_TO_OBSERVE; i++) {
  622. if (cbt->circuit_build_times[i] && /* 0 <-> uninitialized */
  623. cbt->circuit_build_times[i] < min_build_time)
  624. min_build_time = cbt->circuit_build_times[i];
  625. }
  626. if (min_build_time == CBT_BUILD_TIME_MAX) {
  627. log_warn(LD_CIRC, "No build times less than CBT_BUILD_TIME_MAX!");
  628. }
  629. return min_build_time;
  630. }
  631. #endif
  632. /**
  633. * Calculate and return a histogram for the set of build times.
  634. *
  635. * Returns an allocated array of histrogram bins representing
  636. * the frequency of index*CBT_BIN_WIDTH millisecond
  637. * build times. Also outputs the number of bins in nbins.
  638. *
  639. * The return value must be freed by the caller.
  640. */
  641. static uint32_t *
  642. circuit_build_times_create_histogram(circuit_build_times_t *cbt,
  643. build_time_t *nbins)
  644. {
  645. uint32_t *histogram;
  646. build_time_t max_build_time = circuit_build_times_max(cbt);
  647. int i, c;
  648. *nbins = 1 + (max_build_time / CBT_BIN_WIDTH);
  649. histogram = tor_malloc_zero(*nbins * sizeof(build_time_t));
  650. // calculate histogram
  651. for (i = 0; i < CBT_NCIRCUITS_TO_OBSERVE; i++) {
  652. if (cbt->circuit_build_times[i] == 0
  653. || cbt->circuit_build_times[i] == CBT_BUILD_ABANDONED)
  654. continue; /* 0 <-> uninitialized */
  655. c = (cbt->circuit_build_times[i] / CBT_BIN_WIDTH);
  656. histogram[c]++;
  657. }
  658. return histogram;
  659. }
  660. /**
  661. * Return the Pareto start-of-curve parameter Xm.
  662. *
  663. * Because we are not a true Pareto curve, we compute this as the
  664. * weighted average of the N most frequent build time bins. N is either
  665. * 1 if we don't have enough circuit build time data collected, or
  666. * determined by the consensus parameter cbtnummodes (default 3).
  667. */
  668. static build_time_t
  669. circuit_build_times_get_xm(circuit_build_times_t *cbt)
  670. {
  671. build_time_t i, nbins;
  672. build_time_t *nth_max_bin;
  673. int32_t bin_counts=0;
  674. build_time_t ret = 0;
  675. uint32_t *histogram = circuit_build_times_create_histogram(cbt, &nbins);
  676. int n=0;
  677. int num_modes = circuit_build_times_default_num_xm_modes();
  678. tor_assert(nbins > 0);
  679. tor_assert(num_modes > 0);
  680. // Only use one mode if < 1000 buildtimes. Not enough data
  681. // for multiple.
  682. if (cbt->total_build_times < CBT_NCIRCUITS_TO_OBSERVE)
  683. num_modes = 1;
  684. nth_max_bin = (build_time_t*)tor_malloc_zero(num_modes*sizeof(build_time_t));
  685. /* Determine the N most common build times */
  686. for (i = 0; i < nbins; i++) {
  687. if (histogram[i] >= histogram[nth_max_bin[0]]) {
  688. nth_max_bin[0] = i;
  689. }
  690. for (n = 1; n < num_modes; n++) {
  691. if (histogram[i] >= histogram[nth_max_bin[n]] &&
  692. (!histogram[nth_max_bin[n-1]]
  693. || histogram[i] < histogram[nth_max_bin[n-1]])) {
  694. nth_max_bin[n] = i;
  695. }
  696. }
  697. }
  698. for (n = 0; n < num_modes; n++) {
  699. bin_counts += histogram[nth_max_bin[n]];
  700. ret += CBT_BIN_TO_MS(nth_max_bin[n])*histogram[nth_max_bin[n]];
  701. log_info(LD_CIRC, "Xm mode #%d: %u %u", n, CBT_BIN_TO_MS(nth_max_bin[n]),
  702. histogram[nth_max_bin[n]]);
  703. }
  704. /* The following assert is safe, because we don't get called when we
  705. * haven't observed at least CBT_MIN_MIN_CIRCUITS_TO_OBSERVE circuits. */
  706. tor_assert(bin_counts > 0);
  707. ret /= bin_counts;
  708. tor_free(histogram);
  709. tor_free(nth_max_bin);
  710. return ret;
  711. }
  712. /**
  713. * Output a histogram of current circuit build times to
  714. * the or_state_t state structure.
  715. */
  716. void
  717. circuit_build_times_update_state(circuit_build_times_t *cbt,
  718. or_state_t *state)
  719. {
  720. uint32_t *histogram;
  721. build_time_t i = 0;
  722. build_time_t nbins = 0;
  723. config_line_t **next, *line;
  724. histogram = circuit_build_times_create_histogram(cbt, &nbins);
  725. // write to state
  726. config_free_lines(state->BuildtimeHistogram);
  727. next = &state->BuildtimeHistogram;
  728. *next = NULL;
  729. state->TotalBuildTimes = cbt->total_build_times;
  730. state->CircuitBuildAbandonedCount = 0;
  731. for (i = 0; i < CBT_NCIRCUITS_TO_OBSERVE; i++) {
  732. if (cbt->circuit_build_times[i] == CBT_BUILD_ABANDONED)
  733. state->CircuitBuildAbandonedCount++;
  734. }
  735. for (i = 0; i < nbins; i++) {
  736. // compress the histogram by skipping the blanks
  737. if (histogram[i] == 0) continue;
  738. *next = line = tor_malloc_zero(sizeof(config_line_t));
  739. line->key = tor_strdup("CircuitBuildTimeBin");
  740. tor_asprintf(&line->value, "%d %d",
  741. CBT_BIN_TO_MS(i), histogram[i]);
  742. next = &(line->next);
  743. }
  744. if (!unit_tests) {
  745. if (!get_options()->AvoidDiskWrites)
  746. or_state_mark_dirty(get_or_state(), 0);
  747. }
  748. tor_free(histogram);
  749. }
  750. /**
  751. * Shuffle the build times array.
  752. *
  753. * Adapted from http://en.wikipedia.org/wiki/Fisher-Yates_shuffle
  754. */
  755. static void
  756. circuit_build_times_shuffle_and_store_array(circuit_build_times_t *cbt,
  757. build_time_t *raw_times,
  758. uint32_t num_times)
  759. {
  760. uint32_t n = num_times;
  761. if (num_times > CBT_NCIRCUITS_TO_OBSERVE) {
  762. log_notice(LD_CIRC, "The number of circuit times that this Tor version "
  763. "uses to calculate build times is less than the number stored "
  764. "in your state file. Decreasing the circuit time history from "
  765. "%lu to %d.", (unsigned long)num_times,
  766. CBT_NCIRCUITS_TO_OBSERVE);
  767. }
  768. if (n > INT_MAX-1) {
  769. log_warn(LD_CIRC, "For some insane reasons, you had %lu circuit build "
  770. "observations in your state file. That's far too many; probably "
  771. "there's a bug here.", (unsigned long)n);
  772. n = INT_MAX-1;
  773. }
  774. /* This code can only be run on a compact array */
  775. while (n-- > 1) {
  776. int k = crypto_rand_int(n + 1); /* 0 <= k <= n. */
  777. build_time_t tmp = raw_times[k];
  778. raw_times[k] = raw_times[n];
  779. raw_times[n] = tmp;
  780. }
  781. /* Since the times are now shuffled, take a random CBT_NCIRCUITS_TO_OBSERVE
  782. * subset (ie the first CBT_NCIRCUITS_TO_OBSERVE values) */
  783. for (n = 0; n < MIN(num_times, CBT_NCIRCUITS_TO_OBSERVE); n++) {
  784. circuit_build_times_add_time(cbt, raw_times[n]);
  785. }
  786. }
  787. /**
  788. * Filter old synthetic timeouts that were created before the
  789. * new right-censored Pareto calculation was deployed.
  790. *
  791. * Once all clients before 0.2.1.13-alpha are gone, this code
  792. * will be unused.
  793. */
  794. static int
  795. circuit_build_times_filter_timeouts(circuit_build_times_t *cbt)
  796. {
  797. int num_filtered=0, i=0;
  798. double timeout_rate = 0;
  799. build_time_t max_timeout = 0;
  800. timeout_rate = circuit_build_times_timeout_rate(cbt);
  801. max_timeout = (build_time_t)cbt->close_ms;
  802. for (i = 0; i < CBT_NCIRCUITS_TO_OBSERVE; i++) {
  803. if (cbt->circuit_build_times[i] > max_timeout) {
  804. build_time_t replaced = cbt->circuit_build_times[i];
  805. num_filtered++;
  806. cbt->circuit_build_times[i] = CBT_BUILD_ABANDONED;
  807. log_debug(LD_CIRC, "Replaced timeout %d with %d", replaced,
  808. cbt->circuit_build_times[i]);
  809. }
  810. }
  811. log_info(LD_CIRC,
  812. "We had %d timeouts out of %d build times, "
  813. "and filtered %d above the max of %u",
  814. (int)(cbt->total_build_times*timeout_rate),
  815. cbt->total_build_times, num_filtered, max_timeout);
  816. return num_filtered;
  817. }
  818. /**
  819. * Load histogram from <b>state</b>, shuffling the resulting array
  820. * after we do so. Use this result to estimate parameters and
  821. * calculate the timeout.
  822. *
  823. * Return -1 on error.
  824. */
  825. int
  826. circuit_build_times_parse_state(circuit_build_times_t *cbt,
  827. or_state_t *state)
  828. {
  829. int tot_values = 0;
  830. uint32_t loaded_cnt = 0, N = 0;
  831. config_line_t *line;
  832. unsigned int i;
  833. build_time_t *loaded_times;
  834. int err = 0;
  835. circuit_build_times_init(cbt);
  836. if (circuit_build_times_disabled()) {
  837. return 0;
  838. }
  839. /* build_time_t 0 means uninitialized */
  840. loaded_times = tor_malloc_zero(sizeof(build_time_t)*state->TotalBuildTimes);
  841. for (line = state->BuildtimeHistogram; line; line = line->next) {
  842. smartlist_t *args = smartlist_new();
  843. smartlist_split_string(args, line->value, " ",
  844. SPLIT_SKIP_SPACE|SPLIT_IGNORE_BLANK, 0);
  845. if (smartlist_len(args) < 2) {
  846. log_warn(LD_GENERAL, "Unable to parse circuit build times: "
  847. "Too few arguments to CircuitBuildTime");
  848. err = 1;
  849. SMARTLIST_FOREACH(args, char*, cp, tor_free(cp));
  850. smartlist_free(args);
  851. break;
  852. } else {
  853. const char *ms_str = smartlist_get(args,0);
  854. const char *count_str = smartlist_get(args,1);
  855. uint32_t count, k;
  856. build_time_t ms;
  857. int ok;
  858. ms = (build_time_t)tor_parse_ulong(ms_str, 0, 0,
  859. CBT_BUILD_TIME_MAX, &ok, NULL);
  860. if (!ok) {
  861. log_warn(LD_GENERAL, "Unable to parse circuit build times: "
  862. "Unparsable bin number");
  863. err = 1;
  864. SMARTLIST_FOREACH(args, char*, cp, tor_free(cp));
  865. smartlist_free(args);
  866. break;
  867. }
  868. count = (uint32_t)tor_parse_ulong(count_str, 0, 0,
  869. UINT32_MAX, &ok, NULL);
  870. if (!ok) {
  871. log_warn(LD_GENERAL, "Unable to parse circuit build times: "
  872. "Unparsable bin count");
  873. err = 1;
  874. SMARTLIST_FOREACH(args, char*, cp, tor_free(cp));
  875. smartlist_free(args);
  876. break;
  877. }
  878. if (loaded_cnt+count+state->CircuitBuildAbandonedCount
  879. > state->TotalBuildTimes) {
  880. log_warn(LD_CIRC,
  881. "Too many build times in state file. "
  882. "Stopping short before %d",
  883. loaded_cnt+count);
  884. SMARTLIST_FOREACH(args, char*, cp, tor_free(cp));
  885. smartlist_free(args);
  886. break;
  887. }
  888. for (k = 0; k < count; k++) {
  889. loaded_times[loaded_cnt++] = ms;
  890. }
  891. N++;
  892. SMARTLIST_FOREACH(args, char*, cp, tor_free(cp));
  893. smartlist_free(args);
  894. }
  895. }
  896. log_info(LD_CIRC,
  897. "Adding %d timeouts.", state->CircuitBuildAbandonedCount);
  898. for (i=0; i < state->CircuitBuildAbandonedCount; i++) {
  899. loaded_times[loaded_cnt++] = CBT_BUILD_ABANDONED;
  900. }
  901. if (loaded_cnt != state->TotalBuildTimes) {
  902. log_warn(LD_CIRC,
  903. "Corrupt state file? Build times count mismatch. "
  904. "Read %d times, but file says %d", loaded_cnt,
  905. state->TotalBuildTimes);
  906. err = 1;
  907. circuit_build_times_reset(cbt);
  908. goto done;
  909. }
  910. circuit_build_times_shuffle_and_store_array(cbt, loaded_times, loaded_cnt);
  911. /* Verify that we didn't overwrite any indexes */
  912. for (i=0; i < CBT_NCIRCUITS_TO_OBSERVE; i++) {
  913. if (!cbt->circuit_build_times[i])
  914. break;
  915. tot_values++;
  916. }
  917. log_info(LD_CIRC,
  918. "Loaded %d/%d values from %d lines in circuit time histogram",
  919. tot_values, cbt->total_build_times, N);
  920. if (cbt->total_build_times != tot_values
  921. || cbt->total_build_times > CBT_NCIRCUITS_TO_OBSERVE) {
  922. log_warn(LD_CIRC,
  923. "Corrupt state file? Shuffled build times mismatch. "
  924. "Read %d times, but file says %d", tot_values,
  925. state->TotalBuildTimes);
  926. err = 1;
  927. circuit_build_times_reset(cbt);
  928. goto done;
  929. }
  930. circuit_build_times_set_timeout(cbt);
  931. if (!state->CircuitBuildAbandonedCount && cbt->total_build_times) {
  932. circuit_build_times_filter_timeouts(cbt);
  933. }
  934. done:
  935. tor_free(loaded_times);
  936. return err ? -1 : 0;
  937. }
  938. /**
  939. * Estimates the Xm and Alpha parameters using
  940. * http://en.wikipedia.org/wiki/Pareto_distribution#Parameter_estimation
  941. *
  942. * The notable difference is that we use mode instead of min to estimate Xm.
  943. * This is because our distribution is frechet-like. We claim this is
  944. * an acceptable approximation because we are only concerned with the
  945. * accuracy of the CDF of the tail.
  946. */
  947. int
  948. circuit_build_times_update_alpha(circuit_build_times_t *cbt)
  949. {
  950. build_time_t *x=cbt->circuit_build_times;
  951. double a = 0;
  952. int n=0,i=0,abandoned_count=0;
  953. build_time_t max_time=0;
  954. /* http://en.wikipedia.org/wiki/Pareto_distribution#Parameter_estimation */
  955. /* We sort of cheat here and make our samples slightly more pareto-like
  956. * and less frechet-like. */
  957. cbt->Xm = circuit_build_times_get_xm(cbt);
  958. tor_assert(cbt->Xm > 0);
  959. for (i=0; i< CBT_NCIRCUITS_TO_OBSERVE; i++) {
  960. if (!x[i]) {
  961. continue;
  962. }
  963. if (x[i] < cbt->Xm) {
  964. a += tor_mathlog(cbt->Xm);
  965. } else if (x[i] == CBT_BUILD_ABANDONED) {
  966. abandoned_count++;
  967. } else {
  968. a += tor_mathlog(x[i]);
  969. if (x[i] > max_time)
  970. max_time = x[i];
  971. }
  972. n++;
  973. }
  974. /*
  975. * We are erring and asserting here because this can only happen
  976. * in codepaths other than startup. The startup state parsing code
  977. * performs this same check, and resets state if it hits it. If we
  978. * hit it at runtime, something serious has gone wrong.
  979. */
  980. if (n!=cbt->total_build_times) {
  981. log_err(LD_CIRC, "Discrepancy in build times count: %d vs %d", n,
  982. cbt->total_build_times);
  983. }
  984. tor_assert(n==cbt->total_build_times);
  985. if (max_time <= 0) {
  986. /* This can happen if Xm is actually the *maximum* value in the set.
  987. * It can also happen if we've abandoned every single circuit somehow.
  988. * In either case, tell the caller not to compute a new build timeout. */
  989. log_warn(LD_BUG,
  990. "Could not determine largest build time (%d). "
  991. "Xm is %dms and we've abandoned %d out of %d circuits.", max_time,
  992. cbt->Xm, abandoned_count, n);
  993. return 0;
  994. }
  995. a += abandoned_count*tor_mathlog(max_time);
  996. a -= n*tor_mathlog(cbt->Xm);
  997. // Estimator comes from Eq #4 in:
  998. // "Bayesian estimation based on trimmed samples from Pareto populations"
  999. // by Arturo J. Fernández. We are right-censored only.
  1000. a = (n-abandoned_count)/a;
  1001. cbt->alpha = a;
  1002. return 1;
  1003. }
  1004. /**
  1005. * This is the Pareto Quantile Function. It calculates the point x
  1006. * in the distribution such that F(x) = quantile (ie quantile*100%
  1007. * of the mass of the density function is below x on the curve).
  1008. *
  1009. * We use it to calculate the timeout and also to generate synthetic
  1010. * values of time for circuits that timeout before completion.
  1011. *
  1012. * See http://en.wikipedia.org/wiki/Quantile_function,
  1013. * http://en.wikipedia.org/wiki/Inverse_transform_sampling and
  1014. * http://en.wikipedia.org/wiki/Pareto_distribution#Generating_a_
  1015. * random_sample_from_Pareto_distribution
  1016. * That's right. I'll cite wikipedia all day long.
  1017. *
  1018. * Return value is in milliseconds.
  1019. */
  1020. double
  1021. circuit_build_times_calculate_timeout(circuit_build_times_t *cbt,
  1022. double quantile)
  1023. {
  1024. double ret;
  1025. tor_assert(quantile >= 0);
  1026. tor_assert(1.0-quantile > 0);
  1027. tor_assert(cbt->Xm > 0);
  1028. ret = cbt->Xm/pow(1.0-quantile,1.0/cbt->alpha);
  1029. if (ret > INT32_MAX) {
  1030. ret = INT32_MAX;
  1031. }
  1032. tor_assert(ret > 0);
  1033. return ret;
  1034. }
  1035. /** Pareto CDF */
  1036. double
  1037. circuit_build_times_cdf(circuit_build_times_t *cbt, double x)
  1038. {
  1039. double ret;
  1040. tor_assert(cbt->Xm > 0);
  1041. ret = 1.0-pow(cbt->Xm/x,cbt->alpha);
  1042. tor_assert(0 <= ret && ret <= 1.0);
  1043. return ret;
  1044. }
  1045. /**
  1046. * Generate a synthetic time using our distribution parameters.
  1047. *
  1048. * The return value will be within the [q_lo, q_hi) quantile points
  1049. * on the CDF.
  1050. */
  1051. build_time_t
  1052. circuit_build_times_generate_sample(circuit_build_times_t *cbt,
  1053. double q_lo, double q_hi)
  1054. {
  1055. double randval = crypto_rand_double();
  1056. build_time_t ret;
  1057. double u;
  1058. /* Generate between [q_lo, q_hi) */
  1059. /*XXXX This is what nextafter is supposed to be for; we should use it on the
  1060. * platforms that support it. */
  1061. q_hi -= 1.0/(INT32_MAX);
  1062. tor_assert(q_lo >= 0);
  1063. tor_assert(q_hi < 1);
  1064. tor_assert(q_lo < q_hi);
  1065. u = q_lo + (q_hi-q_lo)*randval;
  1066. tor_assert(0 <= u && u < 1.0);
  1067. /* circuit_build_times_calculate_timeout returns <= INT32_MAX */
  1068. ret = (build_time_t)
  1069. tor_lround(circuit_build_times_calculate_timeout(cbt, u));
  1070. tor_assert(ret > 0);
  1071. return ret;
  1072. }
  1073. /**
  1074. * Estimate an initial alpha parameter by solving the quantile
  1075. * function with a quantile point and a specific timeout value.
  1076. */
  1077. void
  1078. circuit_build_times_initial_alpha(circuit_build_times_t *cbt,
  1079. double quantile, double timeout_ms)
  1080. {
  1081. // Q(u) = Xm/((1-u)^(1/a))
  1082. // Q(0.8) = Xm/((1-0.8))^(1/a)) = CircBuildTimeout
  1083. // CircBuildTimeout = Xm/((1-0.8))^(1/a))
  1084. // CircBuildTimeout = Xm*((1-0.8))^(-1/a))
  1085. // ln(CircBuildTimeout) = ln(Xm)+ln(((1-0.8)))*(-1/a)
  1086. // -ln(1-0.8)/(ln(CircBuildTimeout)-ln(Xm))=a
  1087. tor_assert(quantile >= 0);
  1088. tor_assert(cbt->Xm > 0);
  1089. cbt->alpha = tor_mathlog(1.0-quantile)/
  1090. (tor_mathlog(cbt->Xm)-tor_mathlog(timeout_ms));
  1091. tor_assert(cbt->alpha > 0);
  1092. }
  1093. /**
  1094. * Returns true if we need circuits to be built
  1095. */
  1096. int
  1097. circuit_build_times_needs_circuits(circuit_build_times_t *cbt)
  1098. {
  1099. /* Return true if < MIN_CIRCUITS_TO_OBSERVE */
  1100. return !circuit_build_times_enough_to_compute(cbt);
  1101. }
  1102. /**
  1103. * Returns true if we should build a timeout test circuit
  1104. * right now.
  1105. */
  1106. int
  1107. circuit_build_times_needs_circuits_now(circuit_build_times_t *cbt)
  1108. {
  1109. return circuit_build_times_needs_circuits(cbt) &&
  1110. approx_time()-cbt->last_circ_at > circuit_build_times_test_frequency();
  1111. }
  1112. /**
  1113. * Called to indicate that the network showed some signs of liveness,
  1114. * i.e. we received a cell.
  1115. *
  1116. * This is used by circuit_build_times_network_check_live() to decide
  1117. * if we should record the circuit build timeout or not.
  1118. *
  1119. * This function is called every time we receive a cell. Avoid
  1120. * syscalls, events, and other high-intensity work.
  1121. */
  1122. void
  1123. circuit_build_times_network_is_live(circuit_build_times_t *cbt)
  1124. {
  1125. time_t now = approx_time();
  1126. if (cbt->liveness.nonlive_timeouts > 0) {
  1127. log_notice(LD_CIRC,
  1128. "Tor now sees network activity. Restoring circuit build "
  1129. "timeout recording. Network was down for %d seconds "
  1130. "during %d circuit attempts.",
  1131. (int)(now - cbt->liveness.network_last_live),
  1132. cbt->liveness.nonlive_timeouts);
  1133. }
  1134. cbt->liveness.network_last_live = now;
  1135. cbt->liveness.nonlive_timeouts = 0;
  1136. }
  1137. /**
  1138. * Called to indicate that we completed a circuit. Because this circuit
  1139. * succeeded, it doesn't count as a timeout-after-the-first-hop.
  1140. *
  1141. * This is used by circuit_build_times_network_check_changed() to determine
  1142. * if we had too many recent timeouts and need to reset our learned timeout
  1143. * to something higher.
  1144. */
  1145. void
  1146. circuit_build_times_network_circ_success(circuit_build_times_t *cbt)
  1147. {
  1148. /* Check for NULLness because we might not be using adaptive timeouts */
  1149. if (cbt->liveness.timeouts_after_firsthop &&
  1150. cbt->liveness.num_recent_circs > 0) {
  1151. cbt->liveness.timeouts_after_firsthop[cbt->liveness.after_firsthop_idx]
  1152. = 0;
  1153. cbt->liveness.after_firsthop_idx++;
  1154. cbt->liveness.after_firsthop_idx %= cbt->liveness.num_recent_circs;
  1155. }
  1156. }
  1157. /**
  1158. * A circuit just timed out. If it failed after the first hop, record it
  1159. * in our history for later deciding if the network speed has changed.
  1160. *
  1161. * This is used by circuit_build_times_network_check_changed() to determine
  1162. * if we had too many recent timeouts and need to reset our learned timeout
  1163. * to something higher.
  1164. */
  1165. static void
  1166. circuit_build_times_network_timeout(circuit_build_times_t *cbt,
  1167. int did_onehop)
  1168. {
  1169. /* Check for NULLness because we might not be using adaptive timeouts */
  1170. if (cbt->liveness.timeouts_after_firsthop &&
  1171. cbt->liveness.num_recent_circs > 0) {
  1172. if (did_onehop) {
  1173. cbt->liveness.timeouts_after_firsthop[cbt->liveness.after_firsthop_idx]
  1174. = 1;
  1175. cbt->liveness.after_firsthop_idx++;
  1176. cbt->liveness.after_firsthop_idx %= cbt->liveness.num_recent_circs;
  1177. }
  1178. }
  1179. }
  1180. /**
  1181. * A circuit was just forcibly closed. If there has been no recent network
  1182. * activity at all, but this circuit was launched back when we thought the
  1183. * network was live, increment the number of "nonlive" circuit timeouts.
  1184. *
  1185. * This is used by circuit_build_times_network_check_live() to decide
  1186. * if we should record the circuit build timeout or not.
  1187. */
  1188. static void
  1189. circuit_build_times_network_close(circuit_build_times_t *cbt,
  1190. int did_onehop, time_t start_time)
  1191. {
  1192. time_t now = time(NULL);
  1193. /*
  1194. * Check if this is a timeout that was for a circuit that spent its
  1195. * entire existence during a time where we have had no network activity.
  1196. */
  1197. if (cbt->liveness.network_last_live < start_time) {
  1198. if (did_onehop) {
  1199. char last_live_buf[ISO_TIME_LEN+1];
  1200. char start_time_buf[ISO_TIME_LEN+1];
  1201. char now_buf[ISO_TIME_LEN+1];
  1202. format_local_iso_time(last_live_buf, cbt->liveness.network_last_live);
  1203. format_local_iso_time(start_time_buf, start_time);
  1204. format_local_iso_time(now_buf, now);
  1205. log_warn(LD_BUG,
  1206. "Circuit somehow completed a hop while the network was "
  1207. "not live. Network was last live at %s, but circuit launched "
  1208. "at %s. It's now %s.", last_live_buf, start_time_buf,
  1209. now_buf);
  1210. }
  1211. cbt->liveness.nonlive_timeouts++;
  1212. if (cbt->liveness.nonlive_timeouts == 1) {
  1213. log_notice(LD_CIRC,
  1214. "Tor has not observed any network activity for the past %d "
  1215. "seconds. Disabling circuit build timeout recording.",
  1216. (int)(now - cbt->liveness.network_last_live));
  1217. } else {
  1218. log_info(LD_CIRC,
  1219. "Got non-live timeout. Current count is: %d",
  1220. cbt->liveness.nonlive_timeouts);
  1221. }
  1222. }
  1223. }
  1224. /**
  1225. * When the network is not live, we do not record circuit build times.
  1226. *
  1227. * The network is considered not live if there has been at least one
  1228. * circuit build that began and ended (had its close_ms measurement
  1229. * period expire) since we last received a cell.
  1230. *
  1231. * Also has the side effect of rewinding the circuit time history
  1232. * in the case of recent liveness changes.
  1233. */
  1234. int
  1235. circuit_build_times_network_check_live(circuit_build_times_t *cbt)
  1236. {
  1237. if (cbt->liveness.nonlive_timeouts > 0) {
  1238. return 0;
  1239. }
  1240. return 1;
  1241. }
  1242. /**
  1243. * Returns true if we have seen more than MAX_RECENT_TIMEOUT_COUNT of
  1244. * the past RECENT_CIRCUITS time out after the first hop. Used to detect
  1245. * if the network connection has changed significantly, and if so,
  1246. * resets our circuit build timeout to the default.
  1247. *
  1248. * Also resets the entire timeout history in this case and causes us
  1249. * to restart the process of building test circuits and estimating a
  1250. * new timeout.
  1251. */
  1252. int
  1253. circuit_build_times_network_check_changed(circuit_build_times_t *cbt)
  1254. {
  1255. int total_build_times = cbt->total_build_times;
  1256. int timeout_count=0;
  1257. int i;
  1258. if (cbt->liveness.timeouts_after_firsthop &&
  1259. cbt->liveness.num_recent_circs > 0) {
  1260. /* how many of our recent circuits made it to the first hop but then
  1261. * timed out? */
  1262. for (i = 0; i < cbt->liveness.num_recent_circs; i++) {
  1263. timeout_count += cbt->liveness.timeouts_after_firsthop[i];
  1264. }
  1265. }
  1266. /* If 80% of our recent circuits are timing out after the first hop,
  1267. * we need to re-estimate a new initial alpha and timeout. */
  1268. if (timeout_count < circuit_build_times_max_timeouts()) {
  1269. return 0;
  1270. }
  1271. circuit_build_times_reset(cbt);
  1272. if (cbt->liveness.timeouts_after_firsthop &&
  1273. cbt->liveness.num_recent_circs > 0) {
  1274. memset(cbt->liveness.timeouts_after_firsthop, 0,
  1275. sizeof(*cbt->liveness.timeouts_after_firsthop)*
  1276. cbt->liveness.num_recent_circs);
  1277. }
  1278. cbt->liveness.after_firsthop_idx = 0;
  1279. /* Check to see if this has happened before. If so, double the timeout
  1280. * to give people on abysmally bad network connections a shot at access */
  1281. if (cbt->timeout_ms >= circuit_build_times_get_initial_timeout()) {
  1282. if (cbt->timeout_ms > INT32_MAX/2 || cbt->close_ms > INT32_MAX/2) {
  1283. log_warn(LD_CIRC, "Insanely large circuit build timeout value. "
  1284. "(timeout = %fmsec, close = %fmsec)",
  1285. cbt->timeout_ms, cbt->close_ms);
  1286. } else {
  1287. cbt->timeout_ms *= 2;
  1288. cbt->close_ms *= 2;
  1289. }
  1290. } else {
  1291. cbt->close_ms = cbt->timeout_ms
  1292. = circuit_build_times_get_initial_timeout();
  1293. }
  1294. control_event_buildtimeout_set(cbt, BUILDTIMEOUT_SET_EVENT_RESET);
  1295. log_notice(LD_CIRC,
  1296. "Your network connection speed appears to have changed. Resetting "
  1297. "timeout to %lds after %d timeouts and %d buildtimes.",
  1298. tor_lround(cbt->timeout_ms/1000), timeout_count,
  1299. total_build_times);
  1300. return 1;
  1301. }
  1302. /**
  1303. * Count the number of timeouts in a set of cbt data.
  1304. */
  1305. double
  1306. circuit_build_times_timeout_rate(const circuit_build_times_t *cbt)
  1307. {
  1308. int i=0,timeouts=0;
  1309. for (i = 0; i < CBT_NCIRCUITS_TO_OBSERVE; i++) {
  1310. if (cbt->circuit_build_times[i] >= cbt->timeout_ms) {
  1311. timeouts++;
  1312. }
  1313. }
  1314. if (!cbt->total_build_times)
  1315. return 0;
  1316. return ((double)timeouts)/cbt->total_build_times;
  1317. }
  1318. /**
  1319. * Count the number of closed circuits in a set of cbt data.
  1320. */
  1321. double
  1322. circuit_build_times_close_rate(const circuit_build_times_t *cbt)
  1323. {
  1324. int i=0,closed=0;
  1325. for (i = 0; i < CBT_NCIRCUITS_TO_OBSERVE; i++) {
  1326. if (cbt->circuit_build_times[i] == CBT_BUILD_ABANDONED) {
  1327. closed++;
  1328. }
  1329. }
  1330. if (!cbt->total_build_times)
  1331. return 0;
  1332. return ((double)closed)/cbt->total_build_times;
  1333. }
  1334. /**
  1335. * Store a timeout as a synthetic value.
  1336. *
  1337. * Returns true if the store was successful and we should possibly
  1338. * update our timeout estimate.
  1339. */
  1340. int
  1341. circuit_build_times_count_close(circuit_build_times_t *cbt,
  1342. int did_onehop,
  1343. time_t start_time)
  1344. {
  1345. if (circuit_build_times_disabled()) {
  1346. cbt->close_ms = cbt->timeout_ms
  1347. = circuit_build_times_get_initial_timeout();
  1348. return 0;
  1349. }
  1350. /* Record this force-close to help determine if the network is dead */
  1351. circuit_build_times_network_close(cbt, did_onehop, start_time);
  1352. /* Only count timeouts if network is live.. */
  1353. if (!circuit_build_times_network_check_live(cbt)) {
  1354. return 0;
  1355. }
  1356. circuit_build_times_add_time(cbt, CBT_BUILD_ABANDONED);
  1357. return 1;
  1358. }
  1359. /**
  1360. * Update timeout counts to determine if we need to expire
  1361. * our build time history due to excessive timeouts.
  1362. *
  1363. * We do not record any actual time values at this stage;
  1364. * we are only interested in recording the fact that a timeout
  1365. * happened. We record the time values via
  1366. * circuit_build_times_count_close() and circuit_build_times_add_time().
  1367. */
  1368. void
  1369. circuit_build_times_count_timeout(circuit_build_times_t *cbt,
  1370. int did_onehop)
  1371. {
  1372. if (circuit_build_times_disabled()) {
  1373. cbt->close_ms = cbt->timeout_ms
  1374. = circuit_build_times_get_initial_timeout();
  1375. return;
  1376. }
  1377. /* Register the fact that a timeout just occurred. */
  1378. circuit_build_times_network_timeout(cbt, did_onehop);
  1379. /* If there are a ton of timeouts, we should reset
  1380. * the circuit build timeout. */
  1381. circuit_build_times_network_check_changed(cbt);
  1382. }
  1383. /**
  1384. * Estimate a new timeout based on history and set our timeout
  1385. * variable accordingly.
  1386. */
  1387. static int
  1388. circuit_build_times_set_timeout_worker(circuit_build_times_t *cbt)
  1389. {
  1390. build_time_t max_time;
  1391. if (!circuit_build_times_enough_to_compute(cbt))
  1392. return 0;
  1393. if (!circuit_build_times_update_alpha(cbt))
  1394. return 0;
  1395. cbt->timeout_ms = circuit_build_times_calculate_timeout(cbt,
  1396. circuit_build_times_quantile_cutoff());
  1397. cbt->close_ms = circuit_build_times_calculate_timeout(cbt,
  1398. circuit_build_times_close_quantile());
  1399. max_time = circuit_build_times_max(cbt);
  1400. /* Sometimes really fast guard nodes give us such a steep curve
  1401. * that this ends up being not that much greater than timeout_ms.
  1402. * Make it be at least 1 min to handle this case. */
  1403. cbt->close_ms = MAX(cbt->close_ms, circuit_build_times_initial_timeout());
  1404. if (cbt->timeout_ms > max_time) {
  1405. log_info(LD_CIRC,
  1406. "Circuit build timeout of %dms is beyond the maximum build "
  1407. "time we have ever observed. Capping it to %dms.",
  1408. (int)cbt->timeout_ms, max_time);
  1409. cbt->timeout_ms = max_time;
  1410. }
  1411. if (max_time < INT32_MAX/2 && cbt->close_ms > 2*max_time) {
  1412. log_info(LD_CIRC,
  1413. "Circuit build measurement period of %dms is more than twice "
  1414. "the maximum build time we have ever observed. Capping it to "
  1415. "%dms.", (int)cbt->close_ms, 2*max_time);
  1416. cbt->close_ms = 2*max_time;
  1417. }
  1418. cbt->have_computed_timeout = 1;
  1419. return 1;
  1420. }
  1421. /**
  1422. * Exposed function to compute a new timeout. Dispatches events and
  1423. * also filters out extremely high timeout values.
  1424. */
  1425. void
  1426. circuit_build_times_set_timeout(circuit_build_times_t *cbt)
  1427. {
  1428. long prev_timeout = tor_lround(cbt->timeout_ms/1000);
  1429. double timeout_rate;
  1430. /*
  1431. * Just return if we aren't using adaptive timeouts
  1432. */
  1433. if (circuit_build_times_disabled())
  1434. return;
  1435. if (!circuit_build_times_set_timeout_worker(cbt))
  1436. return;
  1437. if (cbt->timeout_ms < circuit_build_times_min_timeout()) {
  1438. log_warn(LD_CIRC, "Set buildtimeout to low value %fms. Setting to %dms",
  1439. cbt->timeout_ms, circuit_build_times_min_timeout());
  1440. cbt->timeout_ms = circuit_build_times_min_timeout();
  1441. if (cbt->close_ms < cbt->timeout_ms) {
  1442. /* This shouldn't happen because of MAX() in timeout_worker above,
  1443. * but doing it just in case */
  1444. cbt->close_ms = circuit_build_times_initial_timeout();
  1445. }
  1446. }
  1447. control_event_buildtimeout_set(cbt, BUILDTIMEOUT_SET_EVENT_COMPUTED);
  1448. timeout_rate = circuit_build_times_timeout_rate(cbt);
  1449. if (prev_timeout > tor_lround(cbt->timeout_ms/1000)) {
  1450. log_info(LD_CIRC,
  1451. "Based on %d circuit times, it looks like we don't need to "
  1452. "wait so long for circuits to finish. We will now assume a "
  1453. "circuit is too slow to use after waiting %ld seconds.",
  1454. cbt->total_build_times,
  1455. tor_lround(cbt->timeout_ms/1000));
  1456. log_info(LD_CIRC,
  1457. "Circuit timeout data: %fms, %fms, Xm: %d, a: %f, r: %f",
  1458. cbt->timeout_ms, cbt->close_ms, cbt->Xm, cbt->alpha,
  1459. timeout_rate);
  1460. } else if (prev_timeout < tor_lround(cbt->timeout_ms/1000)) {
  1461. log_info(LD_CIRC,
  1462. "Based on %d circuit times, it looks like we need to wait "
  1463. "longer for circuits to finish. We will now assume a "
  1464. "circuit is too slow to use after waiting %ld seconds.",
  1465. cbt->total_build_times,
  1466. tor_lround(cbt->timeout_ms/1000));
  1467. log_info(LD_CIRC,
  1468. "Circuit timeout data: %fms, %fms, Xm: %d, a: %f, r: %f",
  1469. cbt->timeout_ms, cbt->close_ms, cbt->Xm, cbt->alpha,
  1470. timeout_rate);
  1471. } else {
  1472. log_info(LD_CIRC,
  1473. "Set circuit build timeout to %lds (%fms, %fms, Xm: %d, a: %f,"
  1474. " r: %f) based on %d circuit times",
  1475. tor_lround(cbt->timeout_ms/1000),
  1476. cbt->timeout_ms, cbt->close_ms, cbt->Xm, cbt->alpha, timeout_rate,
  1477. cbt->total_build_times);
  1478. }
  1479. }
  1480. /** Iterate over values of circ_id, starting from conn-\>next_circ_id,
  1481. * and with the high bit specified by conn-\>circ_id_type, until we get
  1482. * a circ_id that is not in use by any other circuit on that conn.
  1483. *
  1484. * Return it, or 0 if can't get a unique circ_id.
  1485. */
  1486. static circid_t
  1487. get_unique_circ_id_by_conn(or_connection_t *conn)
  1488. {
  1489. circid_t test_circ_id;
  1490. circid_t attempts=0;
  1491. circid_t high_bit;
  1492. tor_assert(conn);
  1493. if (conn->circ_id_type == CIRC_ID_TYPE_NEITHER) {
  1494. log_warn(LD_BUG, "Trying to pick a circuit ID for a connection from "
  1495. "a client with no identity.");
  1496. return 0;
  1497. }
  1498. high_bit = (conn->circ_id_type == CIRC_ID_TYPE_HIGHER) ? 1<<15 : 0;
  1499. do {
  1500. /* Sequentially iterate over test_circ_id=1...1<<15-1 until we find a
  1501. * circID such that (high_bit|test_circ_id) is not already used. */
  1502. test_circ_id = conn->next_circ_id++;
  1503. if (test_circ_id == 0 || test_circ_id >= 1<<15) {
  1504. test_circ_id = 1;
  1505. conn->next_circ_id = 2;
  1506. }
  1507. if (++attempts > 1<<15) {
  1508. /* Make sure we don't loop forever if all circ_id's are used. This
  1509. * matters because it's an external DoS opportunity.
  1510. */
  1511. log_warn(LD_CIRC,"No unused circ IDs. Failing.");
  1512. return 0;
  1513. }
  1514. test_circ_id |= high_bit;
  1515. } while (circuit_id_in_use_on_orconn(test_circ_id, conn));
  1516. return test_circ_id;
  1517. }
  1518. /** If <b>verbose</b> is false, allocate and return a comma-separated list of
  1519. * the currently built elements of <b>circ</b>. If <b>verbose</b> is true, also
  1520. * list information about link status in a more verbose format using spaces.
  1521. * If <b>verbose_names</b> is false, give nicknames for Named routers and hex
  1522. * digests for others; if <b>verbose_names</b> is true, use $DIGEST=Name style
  1523. * names.
  1524. */
  1525. static char *
  1526. circuit_list_path_impl(origin_circuit_t *circ, int verbose, int verbose_names)
  1527. {
  1528. crypt_path_t *hop;
  1529. smartlist_t *elements;
  1530. const char *states[] = {"closed", "waiting for keys", "open"};
  1531. char *s;
  1532. elements = smartlist_new();
  1533. if (verbose) {
  1534. const char *nickname = build_state_get_exit_nickname(circ->build_state);
  1535. smartlist_add_asprintf(elements, "%s%s circ (length %d%s%s):",
  1536. circ->build_state->is_internal ? "internal" : "exit",
  1537. circ->build_state->need_uptime ? " (high-uptime)" : "",
  1538. circ->build_state->desired_path_len,
  1539. circ->_base.state == CIRCUIT_STATE_OPEN ? "" : ", last hop ",
  1540. circ->_base.state == CIRCUIT_STATE_OPEN ? "" :
  1541. (nickname?nickname:"*unnamed*"));
  1542. }
  1543. hop = circ->cpath;
  1544. do {
  1545. char *elt;
  1546. const char *id;
  1547. const node_t *node;
  1548. if (!hop)
  1549. break;
  1550. if (!verbose && hop->state != CPATH_STATE_OPEN)
  1551. break;
  1552. if (!hop->extend_info)
  1553. break;
  1554. id = hop->extend_info->identity_digest;
  1555. if (verbose_names) {
  1556. elt = tor_malloc(MAX_VERBOSE_NICKNAME_LEN+1);
  1557. if ((node = node_get_by_id(id))) {
  1558. node_get_verbose_nickname(node, elt);
  1559. } else if (is_legal_nickname(hop->extend_info->nickname)) {
  1560. elt[0] = '$';
  1561. base16_encode(elt+1, HEX_DIGEST_LEN+1, id, DIGEST_LEN);
  1562. elt[HEX_DIGEST_LEN+1]= '~';
  1563. strlcpy(elt+HEX_DIGEST_LEN+2,
  1564. hop->extend_info->nickname, MAX_NICKNAME_LEN+1);
  1565. } else {
  1566. elt[0] = '$';
  1567. base16_encode(elt+1, HEX_DIGEST_LEN+1, id, DIGEST_LEN);
  1568. }
  1569. } else { /* ! verbose_names */
  1570. node = node_get_by_id(id);
  1571. if (node && node_is_named(node)) {
  1572. elt = tor_strdup(node_get_nickname(node));
  1573. } else {
  1574. elt = tor_malloc(HEX_DIGEST_LEN+2);
  1575. elt[0] = '$';
  1576. base16_encode(elt+1, HEX_DIGEST_LEN+1, id, DIGEST_LEN);
  1577. }
  1578. }
  1579. tor_assert(elt);
  1580. if (verbose) {
  1581. tor_assert(hop->state <= 2);
  1582. smartlist_add_asprintf(elements,"%s(%s)",elt,states[hop->state]);
  1583. tor_free(elt);
  1584. } else {
  1585. smartlist_add(elements, elt);
  1586. }
  1587. hop = hop->next;
  1588. } while (hop != circ->cpath);
  1589. s = smartlist_join_strings(elements, verbose?" ":",", 0, NULL);
  1590. SMARTLIST_FOREACH(elements, char*, cp, tor_free(cp));
  1591. smartlist_free(elements);
  1592. return s;
  1593. }
  1594. /** If <b>verbose</b> is false, allocate and return a comma-separated
  1595. * list of the currently built elements of <b>circ</b>. If
  1596. * <b>verbose</b> is true, also list information about link status in
  1597. * a more verbose format using spaces.
  1598. */
  1599. char *
  1600. circuit_list_path(origin_circuit_t *circ, int verbose)
  1601. {
  1602. return circuit_list_path_impl(circ, verbose, 0);
  1603. }
  1604. /** Allocate and return a comma-separated list of the currently built elements
  1605. * of <b>circ</b>, giving each as a verbose nickname.
  1606. */
  1607. char *
  1608. circuit_list_path_for_controller(origin_circuit_t *circ)
  1609. {
  1610. return circuit_list_path_impl(circ, 0, 1);
  1611. }
  1612. /** Log, at severity <b>severity</b>, the nicknames of each router in
  1613. * <b>circ</b>'s cpath. Also log the length of the cpath, and the intended
  1614. * exit point.
  1615. */
  1616. void
  1617. circuit_log_path(int severity, unsigned int domain, origin_circuit_t *circ)
  1618. {
  1619. char *s = circuit_list_path(circ,1);
  1620. tor_log(severity,domain,"%s",s);
  1621. tor_free(s);
  1622. }
  1623. /** Tell the rep(utation)hist(ory) module about the status of the links
  1624. * in <b>circ</b>. Hops that have become OPEN are marked as successfully
  1625. * extended; the _first_ hop that isn't open (if any) is marked as
  1626. * unable to extend.
  1627. */
  1628. /* XXXX Someday we should learn from OR circuits too. */
  1629. void
  1630. circuit_rep_hist_note_result(origin_circuit_t *circ)
  1631. {
  1632. crypt_path_t *hop;
  1633. const char *prev_digest = NULL;
  1634. hop = circ->cpath;
  1635. if (!hop) /* circuit hasn't started building yet. */
  1636. return;
  1637. if (server_mode(get_options())) {
  1638. const routerinfo_t *me = router_get_my_routerinfo();
  1639. if (!me)
  1640. return;
  1641. prev_digest = me->cache_info.identity_digest;
  1642. }
  1643. do {
  1644. const node_t *node = node_get_by_id(hop->extend_info->identity_digest);
  1645. if (node) { /* Why do we check this? We know the identity. -NM XXXX */
  1646. if (prev_digest) {
  1647. if (hop->state == CPATH_STATE_OPEN)
  1648. rep_hist_note_extend_succeeded(prev_digest, node->identity);
  1649. else {
  1650. rep_hist_note_extend_failed(prev_digest, node->identity);
  1651. break;
  1652. }
  1653. }
  1654. prev_digest = node->identity;
  1655. } else {
  1656. prev_digest = NULL;
  1657. }
  1658. hop=hop->next;
  1659. } while (hop!=circ->cpath);
  1660. }
  1661. /** Pick all the entries in our cpath. Stop and return 0 when we're
  1662. * happy, or return -1 if an error occurs. */
  1663. static int
  1664. onion_populate_cpath(origin_circuit_t *circ)
  1665. {
  1666. int r;
  1667. again:
  1668. r = onion_extend_cpath(circ);
  1669. if (r < 0) {
  1670. log_info(LD_CIRC,"Generating cpath hop failed.");
  1671. return -1;
  1672. }
  1673. if (r == 0)
  1674. goto again;
  1675. return 0; /* if r == 1 */
  1676. }
  1677. /** Create and return a new origin circuit. Initialize its purpose and
  1678. * build-state based on our arguments. The <b>flags</b> argument is a
  1679. * bitfield of CIRCLAUNCH_* flags. */
  1680. origin_circuit_t *
  1681. origin_circuit_init(uint8_t purpose, int flags)
  1682. {
  1683. /* sets circ->p_circ_id and circ->p_conn */
  1684. origin_circuit_t *circ = origin_circuit_new();
  1685. circuit_set_state(TO_CIRCUIT(circ), CIRCUIT_STATE_OR_WAIT);
  1686. circ->build_state = tor_malloc_zero(sizeof(cpath_build_state_t));
  1687. circ->build_state->onehop_tunnel =
  1688. ((flags & CIRCLAUNCH_ONEHOP_TUNNEL) ? 1 : 0);
  1689. circ->build_state->need_uptime =
  1690. ((flags & CIRCLAUNCH_NEED_UPTIME) ? 1 : 0);
  1691. circ->build_state->need_capacity =
  1692. ((flags & CIRCLAUNCH_NEED_CAPACITY) ? 1 : 0);
  1693. circ->build_state->is_internal =
  1694. ((flags & CIRCLAUNCH_IS_INTERNAL) ? 1 : 0);
  1695. circ->_base.purpose = purpose;
  1696. return circ;
  1697. }
  1698. /** Build a new circuit for <b>purpose</b>. If <b>exit</b>
  1699. * is defined, then use that as your exit router, else choose a suitable
  1700. * exit node.
  1701. *
  1702. * Also launch a connection to the first OR in the chosen path, if
  1703. * it's not open already.
  1704. */
  1705. origin_circuit_t *
  1706. circuit_establish_circuit(uint8_t purpose, extend_info_t *exit, int flags)
  1707. {
  1708. origin_circuit_t *circ;
  1709. int err_reason = 0;
  1710. circ = origin_circuit_init(purpose, flags);
  1711. if (onion_pick_cpath_exit(circ, exit) < 0 ||
  1712. onion_populate_cpath(circ) < 0) {
  1713. circuit_mark_for_close(TO_CIRCUIT(circ), END_CIRC_REASON_NOPATH);
  1714. return NULL;
  1715. }
  1716. control_event_circuit_status(circ, CIRC_EVENT_LAUNCHED, 0);
  1717. if ((err_reason = circuit_handle_first_hop(circ)) < 0) {
  1718. circuit_mark_for_close(TO_CIRCUIT(circ), -err_reason);
  1719. return NULL;
  1720. }
  1721. return circ;
  1722. }
  1723. /** Start establishing the first hop of our circuit. Figure out what
  1724. * OR we should connect to, and if necessary start the connection to
  1725. * it. If we're already connected, then send the 'create' cell.
  1726. * Return 0 for ok, -reason if circ should be marked-for-close. */
  1727. int
  1728. circuit_handle_first_hop(origin_circuit_t *circ)
  1729. {
  1730. crypt_path_t *firsthop;
  1731. or_connection_t *n_conn;
  1732. int err_reason = 0;
  1733. const char *msg = NULL;
  1734. int should_launch = 0;
  1735. firsthop = onion_next_hop_in_cpath(circ->cpath);
  1736. tor_assert(firsthop);
  1737. tor_assert(firsthop->extend_info);
  1738. /* now see if we're already connected to the first OR in 'route' */
  1739. log_debug(LD_CIRC,"Looking for firsthop '%s:%u'",
  1740. fmt_addr(&firsthop->extend_info->addr),
  1741. firsthop->extend_info->port);
  1742. n_conn = connection_or_get_for_extend(firsthop->extend_info->identity_digest,
  1743. &firsthop->extend_info->addr,
  1744. &msg,
  1745. &should_launch);
  1746. if (!n_conn) {
  1747. /* not currently connected in a useful way. */
  1748. log_info(LD_CIRC, "Next router is %s: %s",
  1749. safe_str_client(extend_info_describe(firsthop->extend_info)),
  1750. msg?msg:"???");
  1751. circ->_base.n_hop = extend_info_dup(firsthop->extend_info);
  1752. if (should_launch) {
  1753. if (circ->build_state->onehop_tunnel)
  1754. control_event_bootstrap(BOOTSTRAP_STATUS_CONN_DIR, 0);
  1755. n_conn = connection_or_connect(&firsthop->extend_info->addr,
  1756. firsthop->extend_info->port,
  1757. firsthop->extend_info->identity_digest);
  1758. if (!n_conn) { /* connect failed, forget the whole thing */
  1759. log_info(LD_CIRC,"connect to firsthop failed. Closing.");
  1760. return -END_CIRC_REASON_CONNECTFAILED;
  1761. }
  1762. }
  1763. log_debug(LD_CIRC,"connecting in progress (or finished). Good.");
  1764. /* return success. The onion/circuit/etc will be taken care of
  1765. * automatically (may already have been) whenever n_conn reaches
  1766. * OR_CONN_STATE_OPEN.
  1767. */
  1768. return 0;
  1769. } else { /* it's already open. use it. */
  1770. tor_assert(!circ->_base.n_hop);
  1771. circ->_base.n_conn = n_conn;
  1772. log_debug(LD_CIRC,"Conn open. Delivering first onion skin.");
  1773. if ((err_reason = circuit_send_next_onion_skin(circ)) < 0) {
  1774. log_info(LD_CIRC,"circuit_send_next_onion_skin failed.");
  1775. return err_reason;
  1776. }
  1777. }
  1778. return 0;
  1779. }
  1780. /** Find any circuits that are waiting on <b>or_conn</b> to become
  1781. * open and get them to send their create cells forward.
  1782. *
  1783. * Status is 1 if connect succeeded, or 0 if connect failed.
  1784. */
  1785. void
  1786. circuit_n_conn_done(or_connection_t *or_conn, int status)
  1787. {
  1788. smartlist_t *pending_circs;
  1789. int err_reason = 0;
  1790. log_debug(LD_CIRC,"or_conn to %s/%s, status=%d",
  1791. or_conn->nickname ? or_conn->nickname : "NULL",
  1792. or_conn->_base.address, status);
  1793. pending_circs = smartlist_new();
  1794. circuit_get_all_pending_on_or_conn(pending_circs, or_conn);
  1795. SMARTLIST_FOREACH_BEGIN(pending_circs, circuit_t *, circ)
  1796. {
  1797. /* These checks are redundant wrt get_all_pending_on_or_conn, but I'm
  1798. * leaving them in in case it's possible for the status of a circuit to
  1799. * change as we're going down the list. */
  1800. if (circ->marked_for_close || circ->n_conn || !circ->n_hop ||
  1801. circ->state != CIRCUIT_STATE_OR_WAIT)
  1802. continue;
  1803. if (tor_digest_is_zero(circ->n_hop->identity_digest)) {
  1804. /* Look at addr/port. This is an unkeyed connection. */
  1805. if (!tor_addr_eq(&circ->n_hop->addr, &or_conn->_base.addr) ||
  1806. circ->n_hop->port != or_conn->_base.port)
  1807. continue;
  1808. } else {
  1809. /* We expected a key. See if it's the right one. */
  1810. if (tor_memneq(or_conn->identity_digest,
  1811. circ->n_hop->identity_digest, DIGEST_LEN))
  1812. continue;
  1813. }
  1814. if (!status) { /* or_conn failed; close circ */
  1815. log_info(LD_CIRC,"or_conn failed. Closing circ.");
  1816. circuit_mark_for_close(circ, END_CIRC_REASON_OR_CONN_CLOSED);
  1817. continue;
  1818. }
  1819. log_debug(LD_CIRC, "Found circ, sending create cell.");
  1820. /* circuit_deliver_create_cell will set n_circ_id and add us to
  1821. * orconn_circuid_circuit_map, so we don't need to call
  1822. * set_circid_orconn here. */
  1823. circ->n_conn = or_conn;
  1824. extend_info_free(circ->n_hop);
  1825. circ->n_hop = NULL;
  1826. if (CIRCUIT_IS_ORIGIN(circ)) {
  1827. if ((err_reason =
  1828. circuit_send_next_onion_skin(TO_ORIGIN_CIRCUIT(circ))) < 0) {
  1829. log_info(LD_CIRC,
  1830. "send_next_onion_skin failed; circuit marked for closing.");
  1831. circuit_mark_for_close(circ, -err_reason);
  1832. continue;
  1833. /* XXX could this be bad, eg if next_onion_skin failed because conn
  1834. * died? */
  1835. }
  1836. } else {
  1837. /* pull the create cell out of circ->onionskin, and send it */
  1838. tor_assert(circ->n_conn_onionskin);
  1839. if (circuit_deliver_create_cell(circ,CELL_CREATE,
  1840. circ->n_conn_onionskin)<0) {
  1841. circuit_mark_for_close(circ, END_CIRC_REASON_RESOURCELIMIT);
  1842. continue;
  1843. }
  1844. tor_free(circ->n_conn_onionskin);
  1845. circuit_set_state(circ, CIRCUIT_STATE_OPEN);
  1846. }
  1847. }
  1848. SMARTLIST_FOREACH_END(circ);
  1849. smartlist_free(pending_circs);
  1850. }
  1851. /** Find a new circid that isn't currently in use on the circ->n_conn
  1852. * for the outgoing
  1853. * circuit <b>circ</b>, and deliver a cell of type <b>cell_type</b>
  1854. * (either CELL_CREATE or CELL_CREATE_FAST) with payload <b>payload</b>
  1855. * to this circuit.
  1856. * Return -1 if we failed to find a suitable circid, else return 0.
  1857. */
  1858. static int
  1859. circuit_deliver_create_cell(circuit_t *circ, uint8_t cell_type,
  1860. const char *payload)
  1861. {
  1862. cell_t cell;
  1863. circid_t id;
  1864. tor_assert(circ);
  1865. tor_assert(circ->n_conn);
  1866. tor_assert(payload);
  1867. tor_assert(cell_type == CELL_CREATE || cell_type == CELL_CREATE_FAST);
  1868. id = get_unique_circ_id_by_conn(circ->n_conn);
  1869. if (!id) {
  1870. log_warn(LD_CIRC,"failed to get unique circID.");
  1871. return -1;
  1872. }
  1873. log_debug(LD_CIRC,"Chosen circID %u.", id);
  1874. circuit_set_n_circid_orconn(circ, id, circ->n_conn);
  1875. memset(&cell, 0, sizeof(cell_t));
  1876. cell.command = cell_type;
  1877. cell.circ_id = circ->n_circ_id;
  1878. memcpy(cell.payload, payload, ONIONSKIN_CHALLENGE_LEN);
  1879. append_cell_to_circuit_queue(circ, circ->n_conn, &cell,
  1880. CELL_DIRECTION_OUT, 0);
  1881. if (CIRCUIT_IS_ORIGIN(circ)) {
  1882. /* mark it so it gets better rate limiting treatment. */
  1883. circ->n_conn->client_used = time(NULL);
  1884. }
  1885. return 0;
  1886. }
  1887. /** We've decided to start our reachability testing. If all
  1888. * is set, log this to the user. Return 1 if we did, or 0 if
  1889. * we chose not to log anything. */
  1890. int
  1891. inform_testing_reachability(void)
  1892. {
  1893. char dirbuf[128];
  1894. const routerinfo_t *me = router_get_my_routerinfo();
  1895. if (!me)
  1896. return 0;
  1897. control_event_server_status(LOG_NOTICE,
  1898. "CHECKING_REACHABILITY ORADDRESS=%s:%d",
  1899. me->address, me->or_port);
  1900. if (me->dir_port) {
  1901. tor_snprintf(dirbuf, sizeof(dirbuf), " and DirPort %s:%d",
  1902. me->address, me->dir_port);
  1903. control_event_server_status(LOG_NOTICE,
  1904. "CHECKING_REACHABILITY DIRADDRESS=%s:%d",
  1905. me->address, me->dir_port);
  1906. }
  1907. log_notice(LD_OR, "Now checking whether ORPort %s:%d%s %s reachable... "
  1908. "(this may take up to %d minutes -- look for log "
  1909. "messages indicating success)",
  1910. me->address, me->or_port,
  1911. me->dir_port ? dirbuf : "",
  1912. me->dir_port ? "are" : "is",
  1913. TIMEOUT_UNTIL_UNREACHABILITY_COMPLAINT/60);
  1914. return 1;
  1915. }
  1916. /** Return true iff we should send a create_fast cell to start building a given
  1917. * circuit */
  1918. static INLINE int
  1919. should_use_create_fast_for_circuit(origin_circuit_t *circ)
  1920. {
  1921. const or_options_t *options = get_options();
  1922. tor_assert(circ->cpath);
  1923. tor_assert(circ->cpath->extend_info);
  1924. if (!circ->cpath->extend_info->onion_key)
  1925. return 1; /* our hand is forced: only a create_fast will work. */
  1926. if (!options->FastFirstHopPK)
  1927. return 0; /* we prefer to avoid create_fast */
  1928. if (public_server_mode(options)) {
  1929. /* We're a server, and we know an onion key. We can choose.
  1930. * Prefer to blend our circuit into the other circuits we are
  1931. * creating on behalf of others. */
  1932. return 0;
  1933. }
  1934. return 1;
  1935. }
  1936. /** Return true if <b>circ</b> is the type of circuit we want to count
  1937. * timeouts from. In particular, we want it to have not completed yet
  1938. * (already completing indicates we cannibalized it), and we want it to
  1939. * have exactly three hops.
  1940. */
  1941. int
  1942. circuit_timeout_want_to_count_circ(origin_circuit_t *circ)
  1943. {
  1944. return !circ->has_opened
  1945. && circ->build_state->desired_path_len == DEFAULT_ROUTE_LEN;
  1946. }
  1947. /** This is the backbone function for building circuits.
  1948. *
  1949. * If circ's first hop is closed, then we need to build a create
  1950. * cell and send it forward.
  1951. *
  1952. * Otherwise, we need to build a relay extend cell and send it
  1953. * forward.
  1954. *
  1955. * Return -reason if we want to tear down circ, else return 0.
  1956. */
  1957. int
  1958. circuit_send_next_onion_skin(origin_circuit_t *circ)
  1959. {
  1960. crypt_path_t *hop;
  1961. const node_t *node;
  1962. char payload[2+4+DIGEST_LEN+ONIONSKIN_CHALLENGE_LEN];
  1963. char *onionskin;
  1964. size_t payload_len;
  1965. tor_assert(circ);
  1966. if (circ->cpath->state == CPATH_STATE_CLOSED) {
  1967. int fast;
  1968. uint8_t cell_type;
  1969. log_debug(LD_CIRC,"First skin; sending create cell.");
  1970. if (circ->build_state->onehop_tunnel)
  1971. control_event_bootstrap(BOOTSTRAP_STATUS_ONEHOP_CREATE, 0);
  1972. else
  1973. control_event_bootstrap(BOOTSTRAP_STATUS_CIRCUIT_CREATE, 0);
  1974. node = node_get_by_id(circ->_base.n_conn->identity_digest);
  1975. fast = should_use_create_fast_for_circuit(circ);
  1976. if (!fast) {
  1977. /* We are an OR and we know the right onion key: we should
  1978. * send an old slow create cell.
  1979. */
  1980. cell_type = CELL_CREATE;
  1981. if (onion_skin_create(circ->cpath->extend_info->onion_key,
  1982. &(circ->cpath->dh_handshake_state),
  1983. payload) < 0) {
  1984. log_warn(LD_CIRC,"onion_skin_create (first hop) failed.");
  1985. return - END_CIRC_REASON_INTERNAL;
  1986. }
  1987. note_request("cell: create", 1);
  1988. } else {
  1989. /* We are not an OR, and we're building the first hop of a circuit to a
  1990. * new OR: we can be speedy and use CREATE_FAST to save an RSA operation
  1991. * and a DH operation. */
  1992. cell_type = CELL_CREATE_FAST;
  1993. memset(payload, 0, sizeof(payload));
  1994. crypto_rand((char*) circ->cpath->fast_handshake_state,
  1995. sizeof(circ->cpath->fast_handshake_state));
  1996. memcpy(payload, circ->cpath->fast_handshake_state,
  1997. sizeof(circ->cpath->fast_handshake_state));
  1998. note_request("cell: create fast", 1);
  1999. }
  2000. if (circuit_deliver_create_cell(TO_CIRCUIT(circ), cell_type, payload) < 0)
  2001. return - END_CIRC_REASON_RESOURCELIMIT;
  2002. circ->cpath->state = CPATH_STATE_AWAITING_KEYS;
  2003. circuit_set_state(TO_CIRCUIT(circ), CIRCUIT_STATE_BUILDING);
  2004. log_info(LD_CIRC,"First hop: finished sending %s cell to '%s'",
  2005. fast ? "CREATE_FAST" : "CREATE",
  2006. node ? node_describe(node) : "<unnamed>");
  2007. } else {
  2008. tor_assert(circ->cpath->state == CPATH_STATE_OPEN);
  2009. tor_assert(circ->_base.state == CIRCUIT_STATE_BUILDING);
  2010. log_debug(LD_CIRC,"starting to send subsequent skin.");
  2011. hop = onion_next_hop_in_cpath(circ->cpath);
  2012. if (!hop) {
  2013. /* done building the circuit. whew. */
  2014. circuit_set_state(TO_CIRCUIT(circ), CIRCUIT_STATE_OPEN);
  2015. if (circuit_timeout_want_to_count_circ(circ)) {
  2016. struct timeval end;
  2017. long timediff;
  2018. tor_gettimeofday(&end);
  2019. timediff = tv_mdiff(&circ->_base.timestamp_created, &end);
  2020. /*
  2021. * If the circuit build time is much greater than we would have cut
  2022. * it off at, we probably had a suspend event along this codepath,
  2023. * and we should discard the value.
  2024. */
  2025. if (timediff < 0 || timediff > 2*circ_times.close_ms+1000) {
  2026. log_notice(LD_CIRC, "Strange value for circuit build time: %ldmsec. "
  2027. "Assuming clock jump. Purpose %d (%s)", timediff,
  2028. circ->_base.purpose,
  2029. circuit_purpose_to_string(circ->_base.purpose));
  2030. } else if (!circuit_build_times_disabled()) {
  2031. /* Only count circuit times if the network is live */
  2032. if (circuit_build_times_network_check_live(&circ_times)) {
  2033. circuit_build_times_add_time(&circ_times, (build_time_t)timediff);
  2034. circuit_build_times_set_timeout(&circ_times);
  2035. }
  2036. if (circ->_base.purpose != CIRCUIT_PURPOSE_C_MEASURE_TIMEOUT) {
  2037. circuit_build_times_network_circ_success(&circ_times);
  2038. }
  2039. }
  2040. }
  2041. log_info(LD_CIRC,"circuit built!");
  2042. circuit_reset_failure_count(0);
  2043. if (circ->build_state->onehop_tunnel || circ->has_opened) {
  2044. control_event_bootstrap(BOOTSTRAP_STATUS_REQUESTING_STATUS, 0);
  2045. }
  2046. if (!can_complete_circuit && !circ->build_state->onehop_tunnel) {
  2047. const or_options_t *options = get_options();
  2048. can_complete_circuit=1;
  2049. /* FFFF Log a count of known routers here */
  2050. log_notice(LD_GENERAL,
  2051. "Tor has successfully opened a circuit. "
  2052. "Looks like client functionality is working.");
  2053. control_event_bootstrap(BOOTSTRAP_STATUS_DONE, 0);
  2054. control_event_client_status(LOG_NOTICE, "CIRCUIT_ESTABLISHED");
  2055. clear_broken_connection_map(1);
  2056. if (server_mode(options) && !check_whether_orport_reachable()) {
  2057. inform_testing_reachability();
  2058. consider_testing_reachability(1, 1);
  2059. }
  2060. }
  2061. pathbias_count_success(circ);
  2062. circuit_rep_hist_note_result(circ);
  2063. circuit_has_opened(circ); /* do other actions as necessary */
  2064. /* We're done with measurement circuits here. Just close them */
  2065. if (circ->_base.purpose == CIRCUIT_PURPOSE_C_MEASURE_TIMEOUT)
  2066. circuit_mark_for_close(TO_CIRCUIT(circ), END_CIRC_REASON_FINISHED);
  2067. return 0;
  2068. }
  2069. if (tor_addr_family(&hop->extend_info->addr) != AF_INET) {
  2070. log_warn(LD_BUG, "Trying to extend to a non-IPv4 address.");
  2071. return - END_CIRC_REASON_INTERNAL;
  2072. }
  2073. set_uint32(payload, tor_addr_to_ipv4n(&hop->extend_info->addr));
  2074. set_uint16(payload+4, htons(hop->extend_info->port));
  2075. onionskin = payload+2+4;
  2076. memcpy(payload+2+4+ONIONSKIN_CHALLENGE_LEN,
  2077. hop->extend_info->identity_digest, DIGEST_LEN);
  2078. payload_len = 2+4+ONIONSKIN_CHALLENGE_LEN+DIGEST_LEN;
  2079. if (onion_skin_create(hop->extend_info->onion_key,
  2080. &(hop->dh_handshake_state), onionskin) < 0) {
  2081. log_warn(LD_CIRC,"onion_skin_create failed.");
  2082. return - END_CIRC_REASON_INTERNAL;
  2083. }
  2084. log_info(LD_CIRC,"Sending extend relay cell.");
  2085. note_request("cell: extend", 1);
  2086. /* send it to hop->prev, because it will transfer
  2087. * it to a create cell and then send to hop */
  2088. if (relay_send_command_from_edge(0, TO_CIRCUIT(circ),
  2089. RELAY_COMMAND_EXTEND,
  2090. payload, payload_len, hop->prev) < 0)
  2091. return 0; /* circuit is closed */
  2092. hop->state = CPATH_STATE_AWAITING_KEYS;
  2093. }
  2094. return 0;
  2095. }
  2096. /** Our clock just jumped by <b>seconds_elapsed</b>. Assume
  2097. * something has also gone wrong with our network: notify the user,
  2098. * and abandon all not-yet-used circuits. */
  2099. void
  2100. circuit_note_clock_jumped(int seconds_elapsed)
  2101. {
  2102. int severity = server_mode(get_options()) ? LOG_WARN : LOG_NOTICE;
  2103. tor_log(severity, LD_GENERAL, "Your system clock just jumped %d seconds %s; "
  2104. "assuming established circuits no longer work.",
  2105. seconds_elapsed >=0 ? seconds_elapsed : -seconds_elapsed,
  2106. seconds_elapsed >=0 ? "forward" : "backward");
  2107. control_event_general_status(LOG_WARN, "CLOCK_JUMPED TIME=%d",
  2108. seconds_elapsed);
  2109. can_complete_circuit=0; /* so it'll log when it works again */
  2110. control_event_client_status(severity, "CIRCUIT_NOT_ESTABLISHED REASON=%s",
  2111. "CLOCK_JUMPED");
  2112. circuit_mark_all_unused_circs();
  2113. circuit_expire_all_dirty_circs();
  2114. }
  2115. /** Take the 'extend' <b>cell</b>, pull out addr/port plus the onion
  2116. * skin and identity digest for the next hop. If we're already connected,
  2117. * pass the onion skin to the next hop using a create cell; otherwise
  2118. * launch a new OR connection, and <b>circ</b> will notice when the
  2119. * connection succeeds or fails.
  2120. *
  2121. * Return -1 if we want to warn and tear down the circuit, else return 0.
  2122. */
  2123. int
  2124. circuit_extend(cell_t *cell, circuit_t *circ)
  2125. {
  2126. or_connection_t *n_conn;
  2127. relay_header_t rh;
  2128. char *onionskin;
  2129. char *id_digest=NULL;
  2130. uint32_t n_addr32;
  2131. uint16_t n_port;
  2132. tor_addr_t n_addr;
  2133. const char *msg = NULL;
  2134. int should_launch = 0;
  2135. if (circ->n_conn) {
  2136. log_fn(LOG_PROTOCOL_WARN, LD_PROTOCOL,
  2137. "n_conn already set. Bug/attack. Closing.");
  2138. return -1;
  2139. }
  2140. if (circ->n_hop) {
  2141. log_fn(LOG_PROTOCOL_WARN, LD_PROTOCOL,
  2142. "conn to next hop already launched. Bug/attack. Closing.");
  2143. return -1;
  2144. }
  2145. if (!server_mode(get_options())) {
  2146. log_fn(LOG_PROTOCOL_WARN, LD_PROTOCOL,
  2147. "Got an extend cell, but running as a client. Closing.");
  2148. return -1;
  2149. }
  2150. relay_header_unpack(&rh, cell->payload);
  2151. if (rh.length < 4+2+ONIONSKIN_CHALLENGE_LEN+DIGEST_LEN) {
  2152. log_fn(LOG_PROTOCOL_WARN, LD_PROTOCOL,
  2153. "Wrong length %d on extend cell. Closing circuit.",
  2154. rh.length);
  2155. return -1;
  2156. }
  2157. n_addr32 = ntohl(get_uint32(cell->payload+RELAY_HEADER_SIZE));
  2158. n_port = ntohs(get_uint16(cell->payload+RELAY_HEADER_SIZE+4));
  2159. onionskin = (char*) cell->payload+RELAY_HEADER_SIZE+4+2;
  2160. id_digest = (char*) cell->payload+RELAY_HEADER_SIZE+4+2+
  2161. ONIONSKIN_CHALLENGE_LEN;
  2162. tor_addr_from_ipv4h(&n_addr, n_addr32);
  2163. if (!n_port || !n_addr32) {
  2164. log_fn(LOG_PROTOCOL_WARN, LD_PROTOCOL,
  2165. "Client asked me to extend to zero destination port or addr.");
  2166. return -1;
  2167. }
  2168. if (tor_addr_is_internal(&n_addr, 0) &&
  2169. !get_options()->ExtendAllowPrivateAddresses) {
  2170. log_fn(LOG_PROTOCOL_WARN, LD_PROTOCOL,
  2171. "Client asked me to extend to a private address");
  2172. return -1;
  2173. }
  2174. /* Check if they asked us for 0000..0000. We support using
  2175. * an empty fingerprint for the first hop (e.g. for a bridge relay),
  2176. * but we don't want to let people send us extend cells for empty
  2177. * fingerprints -- a) because it opens the user up to a mitm attack,
  2178. * and b) because it lets an attacker force the relay to hold open a
  2179. * new TLS connection for each extend request. */
  2180. if (tor_digest_is_zero(id_digest)) {
  2181. log_fn(LOG_PROTOCOL_WARN, LD_PROTOCOL,
  2182. "Client asked me to extend without specifying an id_digest.");
  2183. return -1;
  2184. }
  2185. /* Next, check if we're being asked to connect to the hop that the
  2186. * extend cell came from. There isn't any reason for that, and it can
  2187. * assist circular-path attacks. */
  2188. if (tor_memeq(id_digest, TO_OR_CIRCUIT(circ)->p_conn->identity_digest,
  2189. DIGEST_LEN)) {
  2190. log_fn(LOG_PROTOCOL_WARN, LD_PROTOCOL,
  2191. "Client asked me to extend back to the previous hop.");
  2192. return -1;
  2193. }
  2194. n_conn = connection_or_get_for_extend(id_digest,
  2195. &n_addr,
  2196. &msg,
  2197. &should_launch);
  2198. if (!n_conn) {
  2199. log_debug(LD_CIRC|LD_OR,"Next router (%s:%d): %s",
  2200. fmt_addr(&n_addr), (int)n_port, msg?msg:"????");
  2201. circ->n_hop = extend_info_alloc(NULL /*nickname*/,
  2202. id_digest,
  2203. NULL /*onion_key*/,
  2204. &n_addr, n_port);
  2205. circ->n_conn_onionskin = tor_malloc(ONIONSKIN_CHALLENGE_LEN);
  2206. memcpy(circ->n_conn_onionskin, onionskin, ONIONSKIN_CHALLENGE_LEN);
  2207. circuit_set_state(circ, CIRCUIT_STATE_OR_WAIT);
  2208. if (should_launch) {
  2209. /* we should try to open a connection */
  2210. n_conn = connection_or_connect(&n_addr, n_port, id_digest);
  2211. if (!n_conn) {
  2212. log_info(LD_CIRC,"Launching n_conn failed. Closing circuit.");
  2213. circuit_mark_for_close(circ, END_CIRC_REASON_CONNECTFAILED);
  2214. return 0;
  2215. }
  2216. log_debug(LD_CIRC,"connecting in progress (or finished). Good.");
  2217. }
  2218. /* return success. The onion/circuit/etc will be taken care of
  2219. * automatically (may already have been) whenever n_conn reaches
  2220. * OR_CONN_STATE_OPEN.
  2221. */
  2222. return 0;
  2223. }
  2224. tor_assert(!circ->n_hop); /* Connection is already established. */
  2225. circ->n_conn = n_conn;
  2226. log_debug(LD_CIRC,"n_conn is %s:%u",
  2227. n_conn->_base.address,n_conn->_base.port);
  2228. if (circuit_deliver_create_cell(circ, CELL_CREATE, onionskin) < 0)
  2229. return -1;
  2230. return 0;
  2231. }
  2232. /** Initialize cpath-\>{f|b}_{crypto|digest} from the key material in
  2233. * key_data. key_data must contain CPATH_KEY_MATERIAL bytes, which are
  2234. * used as follows:
  2235. * - 20 to initialize f_digest
  2236. * - 20 to initialize b_digest
  2237. * - 16 to key f_crypto
  2238. * - 16 to key b_crypto
  2239. *
  2240. * (If 'reverse' is true, then f_XX and b_XX are swapped.)
  2241. */
  2242. int
  2243. circuit_init_cpath_crypto(crypt_path_t *cpath, const char *key_data,
  2244. int reverse)
  2245. {
  2246. crypto_digest_t *tmp_digest;
  2247. crypto_cipher_t *tmp_crypto;
  2248. tor_assert(cpath);
  2249. tor_assert(key_data);
  2250. tor_assert(!(cpath->f_crypto || cpath->b_crypto ||
  2251. cpath->f_digest || cpath->b_digest));
  2252. cpath->f_digest = crypto_digest_new();
  2253. crypto_digest_add_bytes(cpath->f_digest, key_data, DIGEST_LEN);
  2254. cpath->b_digest = crypto_digest_new();
  2255. crypto_digest_add_bytes(cpath->b_digest, key_data+DIGEST_LEN, DIGEST_LEN);
  2256. if (!(cpath->f_crypto =
  2257. crypto_cipher_new(key_data+(2*DIGEST_LEN)))) {
  2258. log_warn(LD_BUG,"Forward cipher initialization failed.");
  2259. return -1;
  2260. }
  2261. if (!(cpath->b_crypto =
  2262. crypto_cipher_new(key_data+(2*DIGEST_LEN)+CIPHER_KEY_LEN))) {
  2263. log_warn(LD_BUG,"Backward cipher initialization failed.");
  2264. return -1;
  2265. }
  2266. if (reverse) {
  2267. tmp_digest = cpath->f_digest;
  2268. cpath->f_digest = cpath->b_digest;
  2269. cpath->b_digest = tmp_digest;
  2270. tmp_crypto = cpath->f_crypto;
  2271. cpath->f_crypto = cpath->b_crypto;
  2272. cpath->b_crypto = tmp_crypto;
  2273. }
  2274. return 0;
  2275. }
  2276. /** The minimum number of first hop completions before we start
  2277. * thinking about warning about path bias and dropping guards */
  2278. static int
  2279. pathbias_get_min_circs(const or_options_t *options)
  2280. {
  2281. #define DFLT_PATH_BIAS_MIN_CIRC 20
  2282. if (options->PathBiasCircThreshold >= 5)
  2283. return options->PathBiasCircThreshold;
  2284. else
  2285. return networkstatus_get_param(NULL, "pb_mincircs",
  2286. DFLT_PATH_BIAS_MIN_CIRC,
  2287. 5, INT32_MAX);
  2288. }
  2289. static double
  2290. pathbias_get_notice_rate(const or_options_t *options)
  2291. {
  2292. #define DFLT_PATH_BIAS_NOTICE_PCT 40
  2293. if (options->PathBiasNoticeRate >= 0.0)
  2294. return options->PathBiasNoticeRate;
  2295. else
  2296. return networkstatus_get_param(NULL, "pb_noticepct",
  2297. DFLT_PATH_BIAS_NOTICE_PCT, 0, 100)/100.0;
  2298. }
  2299. static double
  2300. pathbias_get_disable_rate(const or_options_t *options)
  2301. {
  2302. // XXX: This needs tuning based on use + experimentation before we set it
  2303. #define DFLT_PATH_BIAS_DISABLE_PCT 0
  2304. if (options->PathBiasDisableRate >= 0.0)
  2305. return options->PathBiasDisableRate;
  2306. else
  2307. return networkstatus_get_param(NULL, "pb_disablepct",
  2308. DFLT_PATH_BIAS_DISABLE_PCT, 0, 100)/100.0;
  2309. }
  2310. static int
  2311. pathbias_get_scale_threshold(const or_options_t *options)
  2312. {
  2313. #define DFLT_PATH_BIAS_SCALE_THRESHOLD 200
  2314. if (options->PathBiasScaleThreshold >= 2)
  2315. return options->PathBiasScaleThreshold;
  2316. else
  2317. return networkstatus_get_param(NULL, "pb_scalecircs",
  2318. DFLT_PATH_BIAS_SCALE_THRESHOLD, 10,
  2319. INT32_MAX);
  2320. }
  2321. static int
  2322. pathbias_get_scale_factor(const or_options_t *options)
  2323. {
  2324. #define DFLT_PATH_BIAS_SCALE_FACTOR 4
  2325. if (options->PathBiasScaleFactor >= 1)
  2326. return options->PathBiasScaleFactor;
  2327. else
  2328. return networkstatus_get_param(NULL, "pb_scalefactor",
  2329. DFLT_PATH_BIAS_SCALE_THRESHOLD, 1, INT32_MAX);
  2330. }
  2331. static const char *
  2332. pathbias_state_to_string(path_state_t state)
  2333. {
  2334. switch (state) {
  2335. case PATH_STATE_NEW_CIRC:
  2336. return "new";
  2337. case PATH_STATE_DID_FIRST_HOP:
  2338. return "first hop";
  2339. case PATH_STATE_SUCCEEDED:
  2340. return "succeeded";
  2341. }
  2342. return "unknown";
  2343. }
  2344. /**
  2345. * Check our circuit state to see if this is a successful first hop.
  2346. * If so, record it in the current guard's path bias first_hop count.
  2347. *
  2348. * Also check for several potential error cases for bug #6475.
  2349. */
  2350. static int
  2351. pathbias_count_first_hop(origin_circuit_t *circ)
  2352. {
  2353. #define FIRST_HOP_NOTICE_INTERVAL (600)
  2354. static ratelim_t first_hop_notice_limit =
  2355. RATELIM_INIT(FIRST_HOP_NOTICE_INTERVAL);
  2356. char *rate_msg = NULL;
  2357. /* Completely ignore one hop circuits */
  2358. if (circ->build_state->onehop_tunnel) {
  2359. tor_assert(circ->build_state->desired_path_len == 1);
  2360. return 0;
  2361. }
  2362. if (circ->cpath->state == CPATH_STATE_AWAITING_KEYS) {
  2363. /* Help track down the real cause of bug #6475: */
  2364. if (circ->has_opened && circ->path_state != PATH_STATE_DID_FIRST_HOP) {
  2365. if ((rate_msg = rate_limit_log(&first_hop_notice_limit,
  2366. approx_time()))) {
  2367. log_notice(LD_BUG,
  2368. "Opened circuit is in strange path state %s. "
  2369. "Circuit is a %s currently %s. %s",
  2370. pathbias_state_to_string(circ->path_state),
  2371. circuit_purpose_to_string(circ->_base.purpose),
  2372. circuit_state_to_string(circ->_base.state),
  2373. rate_msg);
  2374. }
  2375. }
  2376. /* Don't count cannibalized circs for path bias */
  2377. if (!circ->has_opened) {
  2378. entry_guard_t *guard;
  2379. guard = entry_guard_get_by_id_digest(
  2380. circ->_base.n_conn->identity_digest);
  2381. if (guard) {
  2382. if (circ->path_state == PATH_STATE_NEW_CIRC) {
  2383. circ->path_state = PATH_STATE_DID_FIRST_HOP;
  2384. if (entry_guard_inc_first_hop_count(guard) < 0) {
  2385. /* Bogus guard; we already warned. */
  2386. return -END_CIRC_REASON_TORPROTOCOL;
  2387. }
  2388. } else {
  2389. if ((rate_msg = rate_limit_log(&first_hop_notice_limit,
  2390. approx_time()))) {
  2391. log_notice(LD_BUG,
  2392. "Unopened circuit has strange path state %s. "
  2393. "Circuit is a %s currently %s. %s",
  2394. pathbias_state_to_string(circ->path_state),
  2395. circuit_purpose_to_string(circ->_base.purpose),
  2396. circuit_state_to_string(circ->_base.state),
  2397. rate_msg);
  2398. }
  2399. }
  2400. } else {
  2401. if ((rate_msg = rate_limit_log(&first_hop_notice_limit,
  2402. approx_time()))) {
  2403. log_notice(LD_BUG,
  2404. "Unopened circuit has no known guard. "
  2405. "Circuit is a %s currently %s. %s",
  2406. circuit_purpose_to_string(circ->_base.purpose),
  2407. circuit_state_to_string(circ->_base.state),
  2408. rate_msg);
  2409. }
  2410. }
  2411. }
  2412. } else {
  2413. /* Help track down the real cause of bug #6475: */
  2414. if (circ->path_state == PATH_STATE_NEW_CIRC) {
  2415. if ((rate_msg = rate_limit_log(&first_hop_notice_limit,
  2416. approx_time()))) {
  2417. log_notice(LD_BUG,
  2418. "A %s circuit is in cpath state %d (opened: %d). "
  2419. "Circuit is a %s currently %s. %s",
  2420. pathbias_state_to_string(circ->path_state),
  2421. circ->cpath->state, circ->has_opened,
  2422. circuit_purpose_to_string(circ->_base.purpose),
  2423. circuit_state_to_string(circ->_base.state),
  2424. rate_msg);
  2425. }
  2426. }
  2427. }
  2428. return 0;
  2429. }
  2430. /**
  2431. * Check our circuit state to see if this is a successful circuit
  2432. * completion. If so, record it in the current guard's path bias
  2433. * success count.
  2434. *
  2435. * Also check for several potential error cases for bug #6475.
  2436. */
  2437. static void
  2438. pathbias_count_success(origin_circuit_t *circ)
  2439. {
  2440. #define SUCCESS_NOTICE_INTERVAL (600)
  2441. static ratelim_t success_notice_limit =
  2442. RATELIM_INIT(SUCCESS_NOTICE_INTERVAL);
  2443. char *rate_msg = NULL;
  2444. /* Ignore one hop circuits */
  2445. if (circ->build_state->onehop_tunnel) {
  2446. tor_assert(circ->build_state->desired_path_len == 1);
  2447. return;
  2448. }
  2449. /* Don't count cannibalized/reused circs for path bias */
  2450. if (!circ->has_opened) {
  2451. entry_guard_t *guard =
  2452. entry_guard_get_by_id_digest(circ->_base.n_conn->identity_digest);
  2453. if (guard) {
  2454. if (circ->path_state == PATH_STATE_DID_FIRST_HOP) {
  2455. circ->path_state = PATH_STATE_SUCCEEDED;
  2456. guard->circuit_successes++;
  2457. log_info(LD_PROTOCOL, "Got success count %u/%u for guard %s=%s",
  2458. guard->circuit_successes, guard->first_hops,
  2459. guard->nickname, hex_str(guard->identity, DIGEST_LEN));
  2460. } else {
  2461. if ((rate_msg = rate_limit_log(&success_notice_limit,
  2462. approx_time()))) {
  2463. log_notice(LD_BUG,
  2464. "Succeeded circuit is in strange path state %s. "
  2465. "Circuit is a %s currently %s. %s",
  2466. pathbias_state_to_string(circ->path_state),
  2467. circuit_purpose_to_string(circ->_base.purpose),
  2468. circuit_state_to_string(circ->_base.state),
  2469. rate_msg);
  2470. }
  2471. }
  2472. if (guard->first_hops < guard->circuit_successes) {
  2473. log_warn(LD_BUG, "Unexpectedly high circuit_successes (%u/%u) "
  2474. "for guard %s=%s",
  2475. guard->circuit_successes, guard->first_hops,
  2476. guard->nickname, hex_str(guard->identity, DIGEST_LEN));
  2477. }
  2478. } else {
  2479. if ((rate_msg = rate_limit_log(&success_notice_limit,
  2480. approx_time()))) {
  2481. log_notice(LD_BUG,
  2482. "Completed circuit has no known guard. "
  2483. "Circuit is a %s currently %s. %s",
  2484. circuit_purpose_to_string(circ->_base.purpose),
  2485. circuit_state_to_string(circ->_base.state),
  2486. rate_msg);
  2487. }
  2488. }
  2489. } else {
  2490. if (circ->path_state != PATH_STATE_SUCCEEDED) {
  2491. if ((rate_msg = rate_limit_log(&success_notice_limit,
  2492. approx_time()))) {
  2493. log_notice(LD_BUG,
  2494. "Opened circuit is in strange path state %s. "
  2495. "Circuit is a %s currently %s. %s",
  2496. pathbias_state_to_string(circ->path_state),
  2497. circuit_purpose_to_string(circ->_base.purpose),
  2498. circuit_state_to_string(circ->_base.state),
  2499. rate_msg);
  2500. }
  2501. }
  2502. }
  2503. }
  2504. /** Increment the number of times we successfully extended a circuit to
  2505. * 'guard', first checking if the failure rate is high enough that we should
  2506. * eliminate the guard. Return -1 if the guard looks no good; return 0 if the
  2507. * guard looks fine. */
  2508. static int
  2509. entry_guard_inc_first_hop_count(entry_guard_t *guard)
  2510. {
  2511. const or_options_t *options = get_options();
  2512. entry_guards_changed();
  2513. if (guard->first_hops > (unsigned)pathbias_get_min_circs(options)) {
  2514. /* Note: We rely on the < comparison here to allow us to set a 0
  2515. * rate and disable the feature entirely. If refactoring, don't
  2516. * change to <= */
  2517. if (guard->circuit_successes/((double)guard->first_hops)
  2518. < pathbias_get_disable_rate(options)) {
  2519. log_warn(LD_PROTOCOL,
  2520. "Extremely low circuit success rate %u/%u for guard %s=%s. "
  2521. "This might indicate an attack, or a bug.",
  2522. guard->circuit_successes, guard->first_hops, guard->nickname,
  2523. hex_str(guard->identity, DIGEST_LEN));
  2524. guard->path_bias_disabled = 1;
  2525. guard->bad_since = approx_time();
  2526. return -1;
  2527. } else if (guard->circuit_successes/((double)guard->first_hops)
  2528. < pathbias_get_notice_rate(options)
  2529. && !guard->path_bias_notice) {
  2530. guard->path_bias_notice = 1;
  2531. log_notice(LD_PROTOCOL,
  2532. "Low circuit success rate %u/%u for guard %s=%s.",
  2533. guard->circuit_successes, guard->first_hops, guard->nickname,
  2534. hex_str(guard->identity, DIGEST_LEN));
  2535. }
  2536. }
  2537. /* If we get a ton of circuits, just scale everything down */
  2538. if (guard->first_hops > (unsigned)pathbias_get_scale_threshold(options)) {
  2539. const int scale_factor = pathbias_get_scale_factor(options);
  2540. guard->first_hops /= scale_factor;
  2541. guard->circuit_successes /= scale_factor;
  2542. }
  2543. guard->first_hops++;
  2544. log_info(LD_PROTOCOL, "Got success count %u/%u for guard %s=%s",
  2545. guard->circuit_successes, guard->first_hops, guard->nickname,
  2546. hex_str(guard->identity, DIGEST_LEN));
  2547. return 0;
  2548. }
  2549. /** A created or extended cell came back to us on the circuit, and it included
  2550. * <b>reply</b> as its body. (If <b>reply_type</b> is CELL_CREATED, the body
  2551. * contains (the second DH key, plus KH). If <b>reply_type</b> is
  2552. * CELL_CREATED_FAST, the body contains a secret y and a hash H(x|y).)
  2553. *
  2554. * Calculate the appropriate keys and digests, make sure KH is
  2555. * correct, and initialize this hop of the cpath.
  2556. *
  2557. * Return - reason if we want to mark circ for close, else return 0.
  2558. */
  2559. int
  2560. circuit_finish_handshake(origin_circuit_t *circ, uint8_t reply_type,
  2561. const uint8_t *reply)
  2562. {
  2563. char keys[CPATH_KEY_MATERIAL_LEN];
  2564. crypt_path_t *hop;
  2565. int rv;
  2566. if ((rv = pathbias_count_first_hop(circ)) < 0)
  2567. return rv;
  2568. if (circ->cpath->state == CPATH_STATE_AWAITING_KEYS) {
  2569. hop = circ->cpath;
  2570. } else {
  2571. hop = onion_next_hop_in_cpath(circ->cpath);
  2572. if (!hop) { /* got an extended when we're all done? */
  2573. log_warn(LD_PROTOCOL,"got extended when circ already built? Closing.");
  2574. return - END_CIRC_REASON_TORPROTOCOL;
  2575. }
  2576. }
  2577. tor_assert(hop->state == CPATH_STATE_AWAITING_KEYS);
  2578. if (reply_type == CELL_CREATED && hop->dh_handshake_state) {
  2579. if (onion_skin_client_handshake(hop->dh_handshake_state, (char*)reply,keys,
  2580. DIGEST_LEN*2+CIPHER_KEY_LEN*2) < 0) {
  2581. log_warn(LD_CIRC,"onion_skin_client_handshake failed.");
  2582. return -END_CIRC_REASON_TORPROTOCOL;
  2583. }
  2584. /* Remember hash of g^xy */
  2585. memcpy(hop->handshake_digest, reply+DH_KEY_LEN, DIGEST_LEN);
  2586. } else if (reply_type == CELL_CREATED_FAST && !hop->dh_handshake_state) {
  2587. if (fast_client_handshake(hop->fast_handshake_state, reply,
  2588. (uint8_t*)keys,
  2589. DIGEST_LEN*2+CIPHER_KEY_LEN*2) < 0) {
  2590. log_warn(LD_CIRC,"fast_client_handshake failed.");
  2591. return -END_CIRC_REASON_TORPROTOCOL;
  2592. }
  2593. memcpy(hop->handshake_digest, reply+DIGEST_LEN, DIGEST_LEN);
  2594. } else {
  2595. log_warn(LD_PROTOCOL,"CREATED cell type did not match CREATE cell type.");
  2596. return -END_CIRC_REASON_TORPROTOCOL;
  2597. }
  2598. crypto_dh_free(hop->dh_handshake_state); /* don't need it anymore */
  2599. hop->dh_handshake_state = NULL;
  2600. memset(hop->fast_handshake_state, 0, sizeof(hop->fast_handshake_state));
  2601. if (circuit_init_cpath_crypto(hop, keys, 0)<0) {
  2602. return -END_CIRC_REASON_TORPROTOCOL;
  2603. }
  2604. hop->state = CPATH_STATE_OPEN;
  2605. log_info(LD_CIRC,"Finished building %scircuit hop:",
  2606. (reply_type == CELL_CREATED_FAST) ? "fast " : "");
  2607. circuit_log_path(LOG_INFO,LD_CIRC,circ);
  2608. control_event_circuit_status(circ, CIRC_EVENT_EXTENDED, 0);
  2609. return 0;
  2610. }
  2611. /** We received a relay truncated cell on circ.
  2612. *
  2613. * Since we don't ask for truncates currently, getting a truncated
  2614. * means that a connection broke or an extend failed. For now,
  2615. * just give up: for circ to close, and return 0.
  2616. */
  2617. int
  2618. circuit_truncated(origin_circuit_t *circ, crypt_path_t *layer)
  2619. {
  2620. // crypt_path_t *victim;
  2621. // connection_t *stream;
  2622. tor_assert(circ);
  2623. tor_assert(layer);
  2624. /* XXX Since we don't ask for truncates currently, getting a truncated
  2625. * means that a connection broke or an extend failed. For now,
  2626. * just give up.
  2627. */
  2628. circuit_mark_for_close(TO_CIRCUIT(circ),
  2629. END_CIRC_REASON_FLAG_REMOTE|END_CIRC_REASON_OR_CONN_CLOSED);
  2630. return 0;
  2631. #if 0
  2632. while (layer->next != circ->cpath) {
  2633. /* we need to clear out layer->next */
  2634. victim = layer->next;
  2635. log_debug(LD_CIRC, "Killing a layer of the cpath.");
  2636. for (stream = circ->p_streams; stream; stream=stream->next_stream) {
  2637. if (stream->cpath_layer == victim) {
  2638. log_info(LD_APP, "Marking stream %d for close because of truncate.",
  2639. stream->stream_id);
  2640. /* no need to send 'end' relay cells,
  2641. * because the other side's already dead
  2642. */
  2643. connection_mark_unattached_ap(stream, END_STREAM_REASON_DESTROY);
  2644. }
  2645. }
  2646. layer->next = victim->next;
  2647. circuit_free_cpath_node(victim);
  2648. }
  2649. log_info(LD_CIRC, "finished");
  2650. return 0;
  2651. #endif
  2652. }
  2653. /** Given a response payload and keys, initialize, then send a created
  2654. * cell back.
  2655. */
  2656. int
  2657. onionskin_answer(or_circuit_t *circ, uint8_t cell_type, const char *payload,
  2658. const char *keys)
  2659. {
  2660. cell_t cell;
  2661. crypt_path_t *tmp_cpath;
  2662. tmp_cpath = tor_malloc_zero(sizeof(crypt_path_t));
  2663. tmp_cpath->magic = CRYPT_PATH_MAGIC;
  2664. memset(&cell, 0, sizeof(cell_t));
  2665. cell.command = cell_type;
  2666. cell.circ_id = circ->p_circ_id;
  2667. circuit_set_state(TO_CIRCUIT(circ), CIRCUIT_STATE_OPEN);
  2668. memcpy(cell.payload, payload,
  2669. cell_type == CELL_CREATED ? ONIONSKIN_REPLY_LEN : DIGEST_LEN*2);
  2670. log_debug(LD_CIRC,"init digest forward 0x%.8x, backward 0x%.8x.",
  2671. (unsigned int)get_uint32(keys),
  2672. (unsigned int)get_uint32(keys+20));
  2673. if (circuit_init_cpath_crypto(tmp_cpath, keys, 0)<0) {
  2674. log_warn(LD_BUG,"Circuit initialization failed");
  2675. tor_free(tmp_cpath);
  2676. return -1;
  2677. }
  2678. circ->n_digest = tmp_cpath->f_digest;
  2679. circ->n_crypto = tmp_cpath->f_crypto;
  2680. circ->p_digest = tmp_cpath->b_digest;
  2681. circ->p_crypto = tmp_cpath->b_crypto;
  2682. tmp_cpath->magic = 0;
  2683. tor_free(tmp_cpath);
  2684. if (cell_type == CELL_CREATED)
  2685. memcpy(circ->handshake_digest, cell.payload+DH_KEY_LEN, DIGEST_LEN);
  2686. else
  2687. memcpy(circ->handshake_digest, cell.payload+DIGEST_LEN, DIGEST_LEN);
  2688. circ->is_first_hop = (cell_type == CELL_CREATED_FAST);
  2689. append_cell_to_circuit_queue(TO_CIRCUIT(circ),
  2690. circ->p_conn, &cell, CELL_DIRECTION_IN, 0);
  2691. log_debug(LD_CIRC,"Finished sending '%s' cell.",
  2692. circ->is_first_hop ? "created_fast" : "created");
  2693. if (!is_local_addr(&circ->p_conn->_base.addr) &&
  2694. !connection_or_nonopen_was_started_here(circ->p_conn)) {
  2695. /* record that we could process create cells from a non-local conn
  2696. * that we didn't initiate; presumably this means that create cells
  2697. * can reach us too. */
  2698. router_orport_found_reachable();
  2699. }
  2700. return 0;
  2701. }
  2702. /** Choose a length for a circuit of purpose <b>purpose</b>.
  2703. * Default length is 3 + the number of endpoints that would give something
  2704. * away. If the routerlist <b>routers</b> doesn't have enough routers
  2705. * to handle the desired path length, return as large a path length as
  2706. * is feasible, except if it's less than 2, in which case return -1.
  2707. */
  2708. static int
  2709. new_route_len(uint8_t purpose, extend_info_t *exit,
  2710. smartlist_t *nodes)
  2711. {
  2712. int num_acceptable_routers;
  2713. int routelen;
  2714. tor_assert(nodes);
  2715. routelen = DEFAULT_ROUTE_LEN;
  2716. if (exit &&
  2717. purpose != CIRCUIT_PURPOSE_TESTING &&
  2718. purpose != CIRCUIT_PURPOSE_S_ESTABLISH_INTRO)
  2719. routelen++;
  2720. num_acceptable_routers = count_acceptable_nodes(nodes);
  2721. log_debug(LD_CIRC,"Chosen route length %d (%d/%d routers suitable).",
  2722. routelen, num_acceptable_routers, smartlist_len(nodes));
  2723. if (num_acceptable_routers < 2) {
  2724. log_info(LD_CIRC,
  2725. "Not enough acceptable routers (%d). Discarding this circuit.",
  2726. num_acceptable_routers);
  2727. return -1;
  2728. }
  2729. if (num_acceptable_routers < routelen) {
  2730. log_info(LD_CIRC,"Not enough routers: cutting routelen from %d to %d.",
  2731. routelen, num_acceptable_routers);
  2732. routelen = num_acceptable_routers;
  2733. }
  2734. return routelen;
  2735. }
  2736. /** Return a newly allocated list of uint16_t * for each predicted port not
  2737. * handled by a current circuit. */
  2738. static smartlist_t *
  2739. circuit_get_unhandled_ports(time_t now)
  2740. {
  2741. smartlist_t *dest = rep_hist_get_predicted_ports(now);
  2742. circuit_remove_handled_ports(dest);
  2743. return dest;
  2744. }
  2745. /** Return 1 if we already have circuits present or on the way for
  2746. * all anticipated ports. Return 0 if we should make more.
  2747. *
  2748. * If we're returning 0, set need_uptime and need_capacity to
  2749. * indicate any requirements that the unhandled ports have.
  2750. */
  2751. int
  2752. circuit_all_predicted_ports_handled(time_t now, int *need_uptime,
  2753. int *need_capacity)
  2754. {
  2755. int i, enough;
  2756. uint16_t *port;
  2757. smartlist_t *sl = circuit_get_unhandled_ports(now);
  2758. smartlist_t *LongLivedServices = get_options()->LongLivedPorts;
  2759. tor_assert(need_uptime);
  2760. tor_assert(need_capacity);
  2761. // Always predict need_capacity
  2762. *need_capacity = 1;
  2763. enough = (smartlist_len(sl) == 0);
  2764. for (i = 0; i < smartlist_len(sl); ++i) {
  2765. port = smartlist_get(sl, i);
  2766. if (smartlist_string_num_isin(LongLivedServices, *port))
  2767. *need_uptime = 1;
  2768. tor_free(port);
  2769. }
  2770. smartlist_free(sl);
  2771. return enough;
  2772. }
  2773. /** Return 1 if <b>node</b> can handle one or more of the ports in
  2774. * <b>needed_ports</b>, else return 0.
  2775. */
  2776. static int
  2777. node_handles_some_port(const node_t *node, smartlist_t *needed_ports)
  2778. { /* XXXX MOVE */
  2779. int i;
  2780. uint16_t port;
  2781. for (i = 0; i < smartlist_len(needed_ports); ++i) {
  2782. addr_policy_result_t r;
  2783. /* alignment issues aren't a worry for this dereference, since
  2784. needed_ports is explicitly a smartlist of uint16_t's */
  2785. port = *(uint16_t *)smartlist_get(needed_ports, i);
  2786. tor_assert(port);
  2787. if (node)
  2788. r = compare_tor_addr_to_node_policy(NULL, port, node);
  2789. else
  2790. continue;
  2791. if (r != ADDR_POLICY_REJECTED && r != ADDR_POLICY_PROBABLY_REJECTED)
  2792. return 1;
  2793. }
  2794. return 0;
  2795. }
  2796. /** Return true iff <b>conn</b> needs another general circuit to be
  2797. * built. */
  2798. static int
  2799. ap_stream_wants_exit_attention(connection_t *conn)
  2800. {
  2801. entry_connection_t *entry;
  2802. if (conn->type != CONN_TYPE_AP)
  2803. return 0;
  2804. entry = TO_ENTRY_CONN(conn);
  2805. if (conn->state == AP_CONN_STATE_CIRCUIT_WAIT &&
  2806. !conn->marked_for_close &&
  2807. !(entry->want_onehop) && /* ignore one-hop streams */
  2808. !(entry->use_begindir) && /* ignore targeted dir fetches */
  2809. !(entry->chosen_exit_name) && /* ignore defined streams */
  2810. !connection_edge_is_rendezvous_stream(TO_EDGE_CONN(conn)) &&
  2811. !circuit_stream_is_being_handled(TO_ENTRY_CONN(conn), 0,
  2812. MIN_CIRCUITS_HANDLING_STREAM))
  2813. return 1;
  2814. return 0;
  2815. }
  2816. /** Return a pointer to a suitable router to be the exit node for the
  2817. * general-purpose circuit we're about to build.
  2818. *
  2819. * Look through the connection array, and choose a router that maximizes
  2820. * the number of pending streams that can exit from this router.
  2821. *
  2822. * Return NULL if we can't find any suitable routers.
  2823. */
  2824. static const node_t *
  2825. choose_good_exit_server_general(int need_uptime, int need_capacity)
  2826. {
  2827. int *n_supported;
  2828. int n_pending_connections = 0;
  2829. smartlist_t *connections;
  2830. int best_support = -1;
  2831. int n_best_support=0;
  2832. const or_options_t *options = get_options();
  2833. const smartlist_t *the_nodes;
  2834. const node_t *node=NULL;
  2835. connections = get_connection_array();
  2836. /* Count how many connections are waiting for a circuit to be built.
  2837. * We use this for log messages now, but in the future we may depend on it.
  2838. */
  2839. SMARTLIST_FOREACH(connections, connection_t *, conn,
  2840. {
  2841. if (ap_stream_wants_exit_attention(conn))
  2842. ++n_pending_connections;
  2843. });
  2844. // log_fn(LOG_DEBUG, "Choosing exit node; %d connections are pending",
  2845. // n_pending_connections);
  2846. /* Now we count, for each of the routers in the directory, how many
  2847. * of the pending connections could possibly exit from that
  2848. * router (n_supported[i]). (We can't be sure about cases where we
  2849. * don't know the IP address of the pending connection.)
  2850. *
  2851. * -1 means "Don't use this router at all."
  2852. */
  2853. the_nodes = nodelist_get_list();
  2854. n_supported = tor_malloc(sizeof(int)*smartlist_len(the_nodes));
  2855. SMARTLIST_FOREACH_BEGIN(the_nodes, const node_t *, node) {
  2856. const int i = node_sl_idx;
  2857. if (router_digest_is_me(node->identity)) {
  2858. n_supported[i] = -1;
  2859. // log_fn(LOG_DEBUG,"Skipping node %s -- it's me.", router->nickname);
  2860. /* XXX there's probably a reverse predecessor attack here, but
  2861. * it's slow. should we take this out? -RD
  2862. */
  2863. continue;
  2864. }
  2865. if (!node_has_descriptor(node)) {
  2866. n_supported[i] = -1;
  2867. continue;
  2868. }
  2869. if (!node->is_running || node->is_bad_exit) {
  2870. n_supported[i] = -1;
  2871. continue; /* skip routers that are known to be down or bad exits */
  2872. }
  2873. if (node_get_purpose(node) != ROUTER_PURPOSE_GENERAL) {
  2874. /* never pick a non-general node as a random exit. */
  2875. n_supported[i] = -1;
  2876. continue;
  2877. }
  2878. if (routerset_contains_node(options->_ExcludeExitNodesUnion, node)) {
  2879. n_supported[i] = -1;
  2880. continue; /* user asked us not to use it, no matter what */
  2881. }
  2882. if (options->ExitNodes &&
  2883. !routerset_contains_node(options->ExitNodes, node)) {
  2884. n_supported[i] = -1;
  2885. continue; /* not one of our chosen exit nodes */
  2886. }
  2887. if (node_is_unreliable(node, need_uptime, need_capacity, 0)) {
  2888. n_supported[i] = -1;
  2889. continue; /* skip routers that are not suitable. Don't worry if
  2890. * this makes us reject all the possible routers: if so,
  2891. * we'll retry later in this function with need_update and
  2892. * need_capacity set to 0. */
  2893. }
  2894. if (!(node->is_valid || options->_AllowInvalid & ALLOW_INVALID_EXIT)) {
  2895. /* if it's invalid and we don't want it */
  2896. n_supported[i] = -1;
  2897. // log_fn(LOG_DEBUG,"Skipping node %s (index %d) -- invalid router.",
  2898. // router->nickname, i);
  2899. continue; /* skip invalid routers */
  2900. }
  2901. if (options->ExcludeSingleHopRelays &&
  2902. node_allows_single_hop_exits(node)) {
  2903. n_supported[i] = -1;
  2904. continue;
  2905. }
  2906. if (node_exit_policy_rejects_all(node)) {
  2907. n_supported[i] = -1;
  2908. // log_fn(LOG_DEBUG,"Skipping node %s (index %d) -- it rejects all.",
  2909. // router->nickname, i);
  2910. continue; /* skip routers that reject all */
  2911. }
  2912. n_supported[i] = 0;
  2913. /* iterate over connections */
  2914. SMARTLIST_FOREACH_BEGIN(connections, connection_t *, conn) {
  2915. if (!ap_stream_wants_exit_attention(conn))
  2916. continue; /* Skip everything but APs in CIRCUIT_WAIT */
  2917. if (connection_ap_can_use_exit(TO_ENTRY_CONN(conn), node)) {
  2918. ++n_supported[i];
  2919. // log_fn(LOG_DEBUG,"%s is supported. n_supported[%d] now %d.",
  2920. // router->nickname, i, n_supported[i]);
  2921. } else {
  2922. // log_fn(LOG_DEBUG,"%s (index %d) would reject this stream.",
  2923. // router->nickname, i);
  2924. }
  2925. } SMARTLIST_FOREACH_END(conn);
  2926. if (n_pending_connections > 0 && n_supported[i] == 0) {
  2927. /* Leave best_support at -1 if that's where it is, so we can
  2928. * distinguish it later. */
  2929. continue;
  2930. }
  2931. if (n_supported[i] > best_support) {
  2932. /* If this router is better than previous ones, remember its index
  2933. * and goodness, and start counting how many routers are this good. */
  2934. best_support = n_supported[i]; n_best_support=1;
  2935. // log_fn(LOG_DEBUG,"%s is new best supported option so far.",
  2936. // router->nickname);
  2937. } else if (n_supported[i] == best_support) {
  2938. /* If this router is _as good_ as the best one, just increment the
  2939. * count of equally good routers.*/
  2940. ++n_best_support;
  2941. }
  2942. } SMARTLIST_FOREACH_END(node);
  2943. log_info(LD_CIRC,
  2944. "Found %d servers that might support %d/%d pending connections.",
  2945. n_best_support, best_support >= 0 ? best_support : 0,
  2946. n_pending_connections);
  2947. /* If any routers definitely support any pending connections, choose one
  2948. * at random. */
  2949. if (best_support > 0) {
  2950. smartlist_t *supporting = smartlist_new();
  2951. SMARTLIST_FOREACH(the_nodes, const node_t *, node, {
  2952. if (n_supported[node_sl_idx] == best_support)
  2953. smartlist_add(supporting, (void*)node);
  2954. });
  2955. node = node_sl_choose_by_bandwidth(supporting, WEIGHT_FOR_EXIT);
  2956. smartlist_free(supporting);
  2957. } else {
  2958. /* Either there are no pending connections, or no routers even seem to
  2959. * possibly support any of them. Choose a router at random that satisfies
  2960. * at least one predicted exit port. */
  2961. int attempt;
  2962. smartlist_t *needed_ports, *supporting;
  2963. if (best_support == -1) {
  2964. if (need_uptime || need_capacity) {
  2965. log_info(LD_CIRC,
  2966. "We couldn't find any live%s%s routers; falling back "
  2967. "to list of all routers.",
  2968. need_capacity?", fast":"",
  2969. need_uptime?", stable":"");
  2970. tor_free(n_supported);
  2971. return choose_good_exit_server_general(0, 0);
  2972. }
  2973. log_notice(LD_CIRC, "All routers are down or won't exit%s -- "
  2974. "choosing a doomed exit at random.",
  2975. options->_ExcludeExitNodesUnion ? " or are Excluded" : "");
  2976. }
  2977. supporting = smartlist_new();
  2978. needed_ports = circuit_get_unhandled_ports(time(NULL));
  2979. for (attempt = 0; attempt < 2; attempt++) {
  2980. /* try once to pick only from routers that satisfy a needed port,
  2981. * then if there are none, pick from any that support exiting. */
  2982. SMARTLIST_FOREACH_BEGIN(the_nodes, const node_t *, node) {
  2983. if (n_supported[node_sl_idx] != -1 &&
  2984. (attempt || node_handles_some_port(node, needed_ports))) {
  2985. // log_fn(LOG_DEBUG,"Try %d: '%s' is a possibility.",
  2986. // try, router->nickname);
  2987. smartlist_add(supporting, (void*)node);
  2988. }
  2989. } SMARTLIST_FOREACH_END(node);
  2990. node = node_sl_choose_by_bandwidth(supporting, WEIGHT_FOR_EXIT);
  2991. if (node)
  2992. break;
  2993. smartlist_clear(supporting);
  2994. /* If we reach this point, we can't actually support any unhandled
  2995. * predicted ports, so clear all the remaining ones. */
  2996. if (smartlist_len(needed_ports))
  2997. rep_hist_remove_predicted_ports(needed_ports);
  2998. }
  2999. SMARTLIST_FOREACH(needed_ports, uint16_t *, cp, tor_free(cp));
  3000. smartlist_free(needed_ports);
  3001. smartlist_free(supporting);
  3002. }
  3003. tor_free(n_supported);
  3004. if (node) {
  3005. log_info(LD_CIRC, "Chose exit server '%s'", node_describe(node));
  3006. return node;
  3007. }
  3008. if (options->ExitNodes) {
  3009. log_warn(LD_CIRC,
  3010. "No specified %sexit routers seem to be running: "
  3011. "can't choose an exit.",
  3012. options->_ExcludeExitNodesUnion ? "non-excluded " : "");
  3013. }
  3014. return NULL;
  3015. }
  3016. /** Return a pointer to a suitable router to be the exit node for the
  3017. * circuit of purpose <b>purpose</b> that we're about to build (or NULL
  3018. * if no router is suitable).
  3019. *
  3020. * For general-purpose circuits, pass it off to
  3021. * choose_good_exit_server_general()
  3022. *
  3023. * For client-side rendezvous circuits, choose a random node, weighted
  3024. * toward the preferences in 'options'.
  3025. */
  3026. static const node_t *
  3027. choose_good_exit_server(uint8_t purpose,
  3028. int need_uptime, int need_capacity, int is_internal)
  3029. {
  3030. const or_options_t *options = get_options();
  3031. router_crn_flags_t flags = CRN_NEED_DESC;
  3032. if (need_uptime)
  3033. flags |= CRN_NEED_UPTIME;
  3034. if (need_capacity)
  3035. flags |= CRN_NEED_CAPACITY;
  3036. switch (purpose) {
  3037. case CIRCUIT_PURPOSE_C_GENERAL:
  3038. if (options->_AllowInvalid & ALLOW_INVALID_MIDDLE)
  3039. flags |= CRN_ALLOW_INVALID;
  3040. if (is_internal) /* pick it like a middle hop */
  3041. return router_choose_random_node(NULL, options->ExcludeNodes, flags);
  3042. else
  3043. return choose_good_exit_server_general(need_uptime,need_capacity);
  3044. case CIRCUIT_PURPOSE_C_ESTABLISH_REND:
  3045. if (options->_AllowInvalid & ALLOW_INVALID_RENDEZVOUS)
  3046. flags |= CRN_ALLOW_INVALID;
  3047. return router_choose_random_node(NULL, options->ExcludeNodes, flags);
  3048. }
  3049. log_warn(LD_BUG,"Unhandled purpose %d", purpose);
  3050. tor_fragile_assert();
  3051. return NULL;
  3052. }
  3053. /** Log a warning if the user specified an exit for the circuit that
  3054. * has been excluded from use by ExcludeNodes or ExcludeExitNodes. */
  3055. static void
  3056. warn_if_last_router_excluded(origin_circuit_t *circ, const extend_info_t *exit)
  3057. {
  3058. const or_options_t *options = get_options();
  3059. routerset_t *rs = options->ExcludeNodes;
  3060. const char *description;
  3061. uint8_t purpose = circ->_base.purpose;
  3062. if (circ->build_state->onehop_tunnel)
  3063. return;
  3064. switch (purpose)
  3065. {
  3066. default:
  3067. case CIRCUIT_PURPOSE_OR:
  3068. case CIRCUIT_PURPOSE_INTRO_POINT:
  3069. case CIRCUIT_PURPOSE_REND_POINT_WAITING:
  3070. case CIRCUIT_PURPOSE_REND_ESTABLISHED:
  3071. log_warn(LD_BUG, "Called on non-origin circuit (purpose %d, %s)",
  3072. (int)purpose,
  3073. circuit_purpose_to_string(purpose));
  3074. return;
  3075. case CIRCUIT_PURPOSE_C_GENERAL:
  3076. if (circ->build_state->is_internal)
  3077. return;
  3078. description = "requested exit node";
  3079. rs = options->_ExcludeExitNodesUnion;
  3080. break;
  3081. case CIRCUIT_PURPOSE_C_INTRODUCING:
  3082. case CIRCUIT_PURPOSE_C_INTRODUCE_ACK_WAIT:
  3083. case CIRCUIT_PURPOSE_C_INTRODUCE_ACKED:
  3084. case CIRCUIT_PURPOSE_S_ESTABLISH_INTRO:
  3085. case CIRCUIT_PURPOSE_S_CONNECT_REND:
  3086. case CIRCUIT_PURPOSE_S_REND_JOINED:
  3087. case CIRCUIT_PURPOSE_TESTING:
  3088. return;
  3089. case CIRCUIT_PURPOSE_C_ESTABLISH_REND:
  3090. case CIRCUIT_PURPOSE_C_REND_READY:
  3091. case CIRCUIT_PURPOSE_C_REND_READY_INTRO_ACKED:
  3092. case CIRCUIT_PURPOSE_C_REND_JOINED:
  3093. description = "chosen rendezvous point";
  3094. break;
  3095. case CIRCUIT_PURPOSE_CONTROLLER:
  3096. rs = options->_ExcludeExitNodesUnion;
  3097. description = "controller-selected circuit target";
  3098. break;
  3099. }
  3100. if (routerset_contains_extendinfo(rs, exit)) {
  3101. /* We should never get here if StrictNodes is set to 1. */
  3102. if (options->StrictNodes) {
  3103. log_warn(LD_BUG, "Using %s '%s' which is listed in ExcludeNodes%s, "
  3104. "even though StrictNodes is set. Please report. "
  3105. "(Circuit purpose: %s)",
  3106. description, extend_info_describe(exit),
  3107. rs==options->ExcludeNodes?"":" or ExcludeExitNodes",
  3108. circuit_purpose_to_string(purpose));
  3109. } else {
  3110. log_warn(LD_CIRC, "Using %s '%s' which is listed in "
  3111. "ExcludeNodes%s, because no better options were available. To "
  3112. "prevent this (and possibly break your Tor functionality), "
  3113. "set the StrictNodes configuration option. "
  3114. "(Circuit purpose: %s)",
  3115. description, extend_info_describe(exit),
  3116. rs==options->ExcludeNodes?"":" or ExcludeExitNodes",
  3117. circuit_purpose_to_string(purpose));
  3118. }
  3119. circuit_log_path(LOG_WARN, LD_CIRC, circ);
  3120. }
  3121. return;
  3122. }
  3123. /** Decide a suitable length for circ's cpath, and pick an exit
  3124. * router (or use <b>exit</b> if provided). Store these in the
  3125. * cpath. Return 0 if ok, -1 if circuit should be closed. */
  3126. static int
  3127. onion_pick_cpath_exit(origin_circuit_t *circ, extend_info_t *exit)
  3128. {
  3129. cpath_build_state_t *state = circ->build_state;
  3130. if (state->onehop_tunnel) {
  3131. log_debug(LD_CIRC, "Launching a one-hop circuit for dir tunnel.");
  3132. state->desired_path_len = 1;
  3133. } else {
  3134. int r = new_route_len(circ->_base.purpose, exit, nodelist_get_list());
  3135. if (r < 1) /* must be at least 1 */
  3136. return -1;
  3137. state->desired_path_len = r;
  3138. }
  3139. if (exit) { /* the circuit-builder pre-requested one */
  3140. warn_if_last_router_excluded(circ, exit);
  3141. log_info(LD_CIRC,"Using requested exit node '%s'",
  3142. extend_info_describe(exit));
  3143. exit = extend_info_dup(exit);
  3144. } else { /* we have to decide one */
  3145. const node_t *node =
  3146. choose_good_exit_server(circ->_base.purpose, state->need_uptime,
  3147. state->need_capacity, state->is_internal);
  3148. if (!node) {
  3149. log_warn(LD_CIRC,"failed to choose an exit server");
  3150. return -1;
  3151. }
  3152. exit = extend_info_from_node(node, 0);
  3153. tor_assert(exit);
  3154. }
  3155. state->chosen_exit = exit;
  3156. return 0;
  3157. }
  3158. /** Give <b>circ</b> a new exit destination to <b>exit</b>, and add a
  3159. * hop to the cpath reflecting this. Don't send the next extend cell --
  3160. * the caller will do this if it wants to.
  3161. */
  3162. int
  3163. circuit_append_new_exit(origin_circuit_t *circ, extend_info_t *exit)
  3164. {
  3165. cpath_build_state_t *state;
  3166. tor_assert(exit);
  3167. tor_assert(circ);
  3168. state = circ->build_state;
  3169. tor_assert(state);
  3170. extend_info_free(state->chosen_exit);
  3171. state->chosen_exit = extend_info_dup(exit);
  3172. ++circ->build_state->desired_path_len;
  3173. onion_append_hop(&circ->cpath, exit);
  3174. return 0;
  3175. }
  3176. /** Take an open <b>circ</b>, and add a new hop at the end, based on
  3177. * <b>info</b>. Set its state back to CIRCUIT_STATE_BUILDING, and then
  3178. * send the next extend cell to begin connecting to that hop.
  3179. */
  3180. int
  3181. circuit_extend_to_new_exit(origin_circuit_t *circ, extend_info_t *exit)
  3182. {
  3183. int err_reason = 0;
  3184. warn_if_last_router_excluded(circ, exit);
  3185. circuit_append_new_exit(circ, exit);
  3186. circuit_set_state(TO_CIRCUIT(circ), CIRCUIT_STATE_BUILDING);
  3187. if ((err_reason = circuit_send_next_onion_skin(circ))<0) {
  3188. log_warn(LD_CIRC, "Couldn't extend circuit to new point %s.",
  3189. extend_info_describe(exit));
  3190. circuit_mark_for_close(TO_CIRCUIT(circ), -err_reason);
  3191. return -1;
  3192. }
  3193. return 0;
  3194. }
  3195. /** Return the number of routers in <b>routers</b> that are currently up
  3196. * and available for building circuits through.
  3197. */
  3198. static int
  3199. count_acceptable_nodes(smartlist_t *nodes)
  3200. {
  3201. int num=0;
  3202. SMARTLIST_FOREACH_BEGIN(nodes, const node_t *, node) {
  3203. // log_debug(LD_CIRC,
  3204. // "Contemplating whether router %d (%s) is a new option.",
  3205. // i, r->nickname);
  3206. if (! node->is_running)
  3207. // log_debug(LD_CIRC,"Nope, the directory says %d is not running.",i);
  3208. continue;
  3209. if (! node->is_valid)
  3210. // log_debug(LD_CIRC,"Nope, the directory says %d is not valid.",i);
  3211. continue;
  3212. if (! node_has_descriptor(node))
  3213. continue;
  3214. /* XXX This clause makes us count incorrectly: if AllowInvalidRouters
  3215. * allows this node in some places, then we're getting an inaccurate
  3216. * count. For now, be conservative and don't count it. But later we
  3217. * should try to be smarter. */
  3218. ++num;
  3219. } SMARTLIST_FOREACH_END(node);
  3220. // log_debug(LD_CIRC,"I like %d. num_acceptable_routers now %d.",i, num);
  3221. return num;
  3222. }
  3223. /** Add <b>new_hop</b> to the end of the doubly-linked-list <b>head_ptr</b>.
  3224. * This function is used to extend cpath by another hop.
  3225. */
  3226. void
  3227. onion_append_to_cpath(crypt_path_t **head_ptr, crypt_path_t *new_hop)
  3228. {
  3229. if (*head_ptr) {
  3230. new_hop->next = (*head_ptr);
  3231. new_hop->prev = (*head_ptr)->prev;
  3232. (*head_ptr)->prev->next = new_hop;
  3233. (*head_ptr)->prev = new_hop;
  3234. } else {
  3235. *head_ptr = new_hop;
  3236. new_hop->prev = new_hop->next = new_hop;
  3237. }
  3238. }
  3239. /** A helper function used by onion_extend_cpath(). Use <b>purpose</b>
  3240. * and <b>state</b> and the cpath <b>head</b> (currently populated only
  3241. * to length <b>cur_len</b> to decide a suitable middle hop for a
  3242. * circuit. In particular, make sure we don't pick the exit node or its
  3243. * family, and make sure we don't duplicate any previous nodes or their
  3244. * families. */
  3245. static const node_t *
  3246. choose_good_middle_server(uint8_t purpose,
  3247. cpath_build_state_t *state,
  3248. crypt_path_t *head,
  3249. int cur_len)
  3250. {
  3251. int i;
  3252. const node_t *r, *choice;
  3253. crypt_path_t *cpath;
  3254. smartlist_t *excluded;
  3255. const or_options_t *options = get_options();
  3256. router_crn_flags_t flags = CRN_NEED_DESC;
  3257. tor_assert(_CIRCUIT_PURPOSE_MIN <= purpose &&
  3258. purpose <= _CIRCUIT_PURPOSE_MAX);
  3259. log_debug(LD_CIRC, "Contemplating intermediate hop: random choice.");
  3260. excluded = smartlist_new();
  3261. if ((r = build_state_get_exit_node(state))) {
  3262. nodelist_add_node_and_family(excluded, r);
  3263. }
  3264. for (i = 0, cpath = head; i < cur_len; ++i, cpath=cpath->next) {
  3265. if ((r = node_get_by_id(cpath->extend_info->identity_digest))) {
  3266. nodelist_add_node_and_family(excluded, r);
  3267. }
  3268. }
  3269. if (state->need_uptime)
  3270. flags |= CRN_NEED_UPTIME;
  3271. if (state->need_capacity)
  3272. flags |= CRN_NEED_CAPACITY;
  3273. if (options->_AllowInvalid & ALLOW_INVALID_MIDDLE)
  3274. flags |= CRN_ALLOW_INVALID;
  3275. choice = router_choose_random_node(excluded, options->ExcludeNodes, flags);
  3276. smartlist_free(excluded);
  3277. return choice;
  3278. }
  3279. /** Pick a good entry server for the circuit to be built according to
  3280. * <b>state</b>. Don't reuse a chosen exit (if any), don't use this
  3281. * router (if we're an OR), and respect firewall settings; if we're
  3282. * configured to use entry guards, return one.
  3283. *
  3284. * If <b>state</b> is NULL, we're choosing a router to serve as an entry
  3285. * guard, not for any particular circuit.
  3286. */
  3287. static const node_t *
  3288. choose_good_entry_server(uint8_t purpose, cpath_build_state_t *state)
  3289. {
  3290. const node_t *choice;
  3291. smartlist_t *excluded;
  3292. const or_options_t *options = get_options();
  3293. router_crn_flags_t flags = CRN_NEED_GUARD|CRN_NEED_DESC;
  3294. const node_t *node;
  3295. if (state && options->UseEntryGuards &&
  3296. (purpose != CIRCUIT_PURPOSE_TESTING || options->BridgeRelay)) {
  3297. /* This request is for an entry server to use for a regular circuit,
  3298. * and we use entry guard nodes. Just return one of the guard nodes. */
  3299. return choose_random_entry(state);
  3300. }
  3301. excluded = smartlist_new();
  3302. if (state && (node = build_state_get_exit_node(state))) {
  3303. /* Exclude the exit node from the state, if we have one. Also exclude its
  3304. * family. */
  3305. nodelist_add_node_and_family(excluded, node);
  3306. }
  3307. if (firewall_is_fascist_or()) {
  3308. /* Exclude all ORs that we can't reach through our firewall */
  3309. smartlist_t *nodes = nodelist_get_list();
  3310. SMARTLIST_FOREACH(nodes, const node_t *, node, {
  3311. if (!fascist_firewall_allows_node(node))
  3312. smartlist_add(excluded, (void*)node);
  3313. });
  3314. }
  3315. /* and exclude current entry guards and their families, if applicable */
  3316. if (options->UseEntryGuards && entry_guards) {
  3317. SMARTLIST_FOREACH(entry_guards, entry_guard_t *, entry,
  3318. {
  3319. if ((node = node_get_by_id(entry->identity))) {
  3320. nodelist_add_node_and_family(excluded, node);
  3321. }
  3322. });
  3323. }
  3324. if (state) {
  3325. if (state->need_uptime)
  3326. flags |= CRN_NEED_UPTIME;
  3327. if (state->need_capacity)
  3328. flags |= CRN_NEED_CAPACITY;
  3329. }
  3330. if (options->_AllowInvalid & ALLOW_INVALID_ENTRY)
  3331. flags |= CRN_ALLOW_INVALID;
  3332. choice = router_choose_random_node(excluded, options->ExcludeNodes, flags);
  3333. smartlist_free(excluded);
  3334. return choice;
  3335. }
  3336. /** Return the first non-open hop in cpath, or return NULL if all
  3337. * hops are open. */
  3338. static crypt_path_t *
  3339. onion_next_hop_in_cpath(crypt_path_t *cpath)
  3340. {
  3341. crypt_path_t *hop = cpath;
  3342. do {
  3343. if (hop->state != CPATH_STATE_OPEN)
  3344. return hop;
  3345. hop = hop->next;
  3346. } while (hop != cpath);
  3347. return NULL;
  3348. }
  3349. /** Choose a suitable next hop in the cpath <b>head_ptr</b>,
  3350. * based on <b>state</b>. Append the hop info to head_ptr.
  3351. */
  3352. static int
  3353. onion_extend_cpath(origin_circuit_t *circ)
  3354. {
  3355. uint8_t purpose = circ->_base.purpose;
  3356. cpath_build_state_t *state = circ->build_state;
  3357. int cur_len = circuit_get_cpath_len(circ);
  3358. extend_info_t *info = NULL;
  3359. if (cur_len >= state->desired_path_len) {
  3360. log_debug(LD_CIRC, "Path is complete: %d steps long",
  3361. state->desired_path_len);
  3362. return 1;
  3363. }
  3364. log_debug(LD_CIRC, "Path is %d long; we want %d", cur_len,
  3365. state->desired_path_len);
  3366. if (cur_len == state->desired_path_len - 1) { /* Picking last node */
  3367. info = extend_info_dup(state->chosen_exit);
  3368. } else if (cur_len == 0) { /* picking first node */
  3369. const node_t *r = choose_good_entry_server(purpose, state);
  3370. if (r) {
  3371. /* If we're extending to a bridge, use the preferred address
  3372. rather than the primary, for potentially extending to an IPv6
  3373. bridge. */
  3374. int use_pref_addr = (r->ri != NULL &&
  3375. r->ri->purpose == ROUTER_PURPOSE_BRIDGE);
  3376. info = extend_info_from_node(r, use_pref_addr);
  3377. tor_assert(info);
  3378. }
  3379. } else {
  3380. const node_t *r =
  3381. choose_good_middle_server(purpose, state, circ->cpath, cur_len);
  3382. if (r) {
  3383. info = extend_info_from_node(r, 0);
  3384. tor_assert(info);
  3385. }
  3386. }
  3387. if (!info) {
  3388. log_warn(LD_CIRC,"Failed to find node for hop %d of our path. Discarding "
  3389. "this circuit.", cur_len);
  3390. return -1;
  3391. }
  3392. log_debug(LD_CIRC,"Chose router %s for hop %d (exit is %s)",
  3393. extend_info_describe(info),
  3394. cur_len+1, build_state_get_exit_nickname(state));
  3395. onion_append_hop(&circ->cpath, info);
  3396. extend_info_free(info);
  3397. return 0;
  3398. }
  3399. /** Create a new hop, annotate it with information about its
  3400. * corresponding router <b>choice</b>, and append it to the
  3401. * end of the cpath <b>head_ptr</b>. */
  3402. static int
  3403. onion_append_hop(crypt_path_t **head_ptr, extend_info_t *choice)
  3404. {
  3405. crypt_path_t *hop = tor_malloc_zero(sizeof(crypt_path_t));
  3406. /* link hop into the cpath, at the end. */
  3407. onion_append_to_cpath(head_ptr, hop);
  3408. hop->magic = CRYPT_PATH_MAGIC;
  3409. hop->state = CPATH_STATE_CLOSED;
  3410. hop->extend_info = extend_info_dup(choice);
  3411. hop->package_window = circuit_initial_package_window();
  3412. hop->deliver_window = CIRCWINDOW_START;
  3413. return 0;
  3414. }
  3415. /** Allocate a new extend_info object based on the various arguments. */
  3416. extend_info_t *
  3417. extend_info_alloc(const char *nickname, const char *digest,
  3418. crypto_pk_t *onion_key,
  3419. const tor_addr_t *addr, uint16_t port)
  3420. {
  3421. extend_info_t *info = tor_malloc_zero(sizeof(extend_info_t));
  3422. memcpy(info->identity_digest, digest, DIGEST_LEN);
  3423. if (nickname)
  3424. strlcpy(info->nickname, nickname, sizeof(info->nickname));
  3425. if (onion_key)
  3426. info->onion_key = crypto_pk_dup_key(onion_key);
  3427. tor_addr_copy(&info->addr, addr);
  3428. info->port = port;
  3429. return info;
  3430. }
  3431. /** Allocate and return a new extend_info that can be used to build a
  3432. * circuit to or through the node <b>node</b>. Use the primary address
  3433. * of the node unless <b>for_direct_connect</b> is true, in which case
  3434. * the preferred address is used instead. May return NULL if there is
  3435. * not enough info about <b>node</b> to extend to it--for example, if
  3436. * there is no routerinfo_t or microdesc_t.
  3437. **/
  3438. extend_info_t *
  3439. extend_info_from_node(const node_t *node, int for_direct_connect)
  3440. {
  3441. if (node->ri) {
  3442. const routerinfo_t *r = node->ri;
  3443. tor_addr_port_t ap;
  3444. if (for_direct_connect)
  3445. node_get_pref_orport(node, &ap);
  3446. else
  3447. node_get_prim_orport(node, &ap);
  3448. return extend_info_alloc(r->nickname, r->cache_info.identity_digest,
  3449. r->onion_pkey, &ap.addr, ap.port);
  3450. } else if (node->rs && node->md) {
  3451. tor_addr_t addr;
  3452. tor_addr_from_ipv4h(&addr, node->rs->addr);
  3453. return extend_info_alloc(node->rs->nickname,
  3454. node->identity,
  3455. node->md->onion_pkey,
  3456. &addr,
  3457. node->rs->or_port);
  3458. } else {
  3459. return NULL;
  3460. }
  3461. }
  3462. /** Release storage held by an extend_info_t struct. */
  3463. void
  3464. extend_info_free(extend_info_t *info)
  3465. {
  3466. if (!info)
  3467. return;
  3468. crypto_pk_free(info->onion_key);
  3469. tor_free(info);
  3470. }
  3471. /** Allocate and return a new extend_info_t with the same contents as
  3472. * <b>info</b>. */
  3473. extend_info_t *
  3474. extend_info_dup(extend_info_t *info)
  3475. {
  3476. extend_info_t *newinfo;
  3477. tor_assert(info);
  3478. newinfo = tor_malloc(sizeof(extend_info_t));
  3479. memcpy(newinfo, info, sizeof(extend_info_t));
  3480. if (info->onion_key)
  3481. newinfo->onion_key = crypto_pk_dup_key(info->onion_key);
  3482. else
  3483. newinfo->onion_key = NULL;
  3484. return newinfo;
  3485. }
  3486. /** Return the routerinfo_t for the chosen exit router in <b>state</b>.
  3487. * If there is no chosen exit, or if we don't know the routerinfo_t for
  3488. * the chosen exit, return NULL.
  3489. */
  3490. const node_t *
  3491. build_state_get_exit_node(cpath_build_state_t *state)
  3492. {
  3493. if (!state || !state->chosen_exit)
  3494. return NULL;
  3495. return node_get_by_id(state->chosen_exit->identity_digest);
  3496. }
  3497. /** Return the nickname for the chosen exit router in <b>state</b>. If
  3498. * there is no chosen exit, or if we don't know the routerinfo_t for the
  3499. * chosen exit, return NULL.
  3500. */
  3501. const char *
  3502. build_state_get_exit_nickname(cpath_build_state_t *state)
  3503. {
  3504. if (!state || !state->chosen_exit)
  3505. return NULL;
  3506. return state->chosen_exit->nickname;
  3507. }
  3508. /** Check whether the entry guard <b>e</b> is usable, given the directory
  3509. * authorities' opinion about the router (stored in <b>ri</b>) and the user's
  3510. * configuration (in <b>options</b>). Set <b>e</b>-&gt;bad_since
  3511. * accordingly. Return true iff the entry guard's status changes.
  3512. *
  3513. * If it's not usable, set *<b>reason</b> to a static string explaining why.
  3514. */
  3515. static int
  3516. entry_guard_set_status(entry_guard_t *e, const node_t *node,
  3517. time_t now, const or_options_t *options,
  3518. const char **reason)
  3519. {
  3520. char buf[HEX_DIGEST_LEN+1];
  3521. int changed = 0;
  3522. *reason = NULL;
  3523. /* Do we want to mark this guard as bad? */
  3524. if (!node)
  3525. *reason = "unlisted";
  3526. else if (!node->is_running)
  3527. *reason = "down";
  3528. else if (options->UseBridges && (!node->ri ||
  3529. node->ri->purpose != ROUTER_PURPOSE_BRIDGE))
  3530. *reason = "not a bridge";
  3531. else if (options->UseBridges && !node_is_a_configured_bridge(node))
  3532. *reason = "not a configured bridge";
  3533. else if (!options->UseBridges && !node->is_possible_guard &&
  3534. !routerset_contains_node(options->EntryNodes,node))
  3535. *reason = "not recommended as a guard";
  3536. else if (routerset_contains_node(options->ExcludeNodes, node))
  3537. *reason = "excluded";
  3538. else if (e->path_bias_disabled)
  3539. *reason = "path-biased";
  3540. if (*reason && ! e->bad_since) {
  3541. /* Router is newly bad. */
  3542. base16_encode(buf, sizeof(buf), e->identity, DIGEST_LEN);
  3543. log_info(LD_CIRC, "Entry guard %s (%s) is %s: marking as unusable.",
  3544. e->nickname, buf, *reason);
  3545. e->bad_since = now;
  3546. control_event_guard(e->nickname, e->identity, "BAD");
  3547. changed = 1;
  3548. } else if (!*reason && e->bad_since) {
  3549. /* There's nothing wrong with the router any more. */
  3550. base16_encode(buf, sizeof(buf), e->identity, DIGEST_LEN);
  3551. log_info(LD_CIRC, "Entry guard %s (%s) is no longer unusable: "
  3552. "marking as ok.", e->nickname, buf);
  3553. e->bad_since = 0;
  3554. control_event_guard(e->nickname, e->identity, "GOOD");
  3555. changed = 1;
  3556. }
  3557. return changed;
  3558. }
  3559. /** Return true iff enough time has passed since we last tried to connect
  3560. * to the unreachable guard <b>e</b> that we're willing to try again. */
  3561. static int
  3562. entry_is_time_to_retry(entry_guard_t *e, time_t now)
  3563. {
  3564. long diff;
  3565. if (e->last_attempted < e->unreachable_since)
  3566. return 1;
  3567. diff = now - e->unreachable_since;
  3568. if (diff < 6*60*60)
  3569. return now > (e->last_attempted + 60*60);
  3570. else if (diff < 3*24*60*60)
  3571. return now > (e->last_attempted + 4*60*60);
  3572. else if (diff < 7*24*60*60)
  3573. return now > (e->last_attempted + 18*60*60);
  3574. else
  3575. return now > (e->last_attempted + 36*60*60);
  3576. }
  3577. /** Return the node corresponding to <b>e</b>, if <b>e</b> is
  3578. * working well enough that we are willing to use it as an entry
  3579. * right now. (Else return NULL.) In particular, it must be
  3580. * - Listed as either up or never yet contacted;
  3581. * - Present in the routerlist;
  3582. * - Listed as 'stable' or 'fast' by the current dirserver consensus,
  3583. * if demanded by <b>need_uptime</b> or <b>need_capacity</b>
  3584. * (unless it's a configured EntryNode);
  3585. * - Allowed by our current ReachableORAddresses config option; and
  3586. * - Currently thought to be reachable by us (unless <b>assume_reachable</b>
  3587. * is true).
  3588. *
  3589. * If the answer is no, set *<b>msg</b> to an explanation of why.
  3590. */
  3591. static INLINE const node_t *
  3592. entry_is_live(entry_guard_t *e, int need_uptime, int need_capacity,
  3593. int assume_reachable, const char **msg)
  3594. {
  3595. const node_t *node;
  3596. const or_options_t *options = get_options();
  3597. tor_assert(msg);
  3598. if (e->path_bias_disabled) {
  3599. *msg = "path-biased";
  3600. return NULL;
  3601. }
  3602. if (e->bad_since) {
  3603. *msg = "bad";
  3604. return NULL;
  3605. }
  3606. /* no good if it's unreachable, unless assume_unreachable or can_retry. */
  3607. if (!assume_reachable && !e->can_retry &&
  3608. e->unreachable_since && !entry_is_time_to_retry(e, time(NULL))) {
  3609. *msg = "unreachable";
  3610. return NULL;
  3611. }
  3612. node = node_get_by_id(e->identity);
  3613. if (!node || !node_has_descriptor(node)) {
  3614. *msg = "no descriptor";
  3615. return NULL;
  3616. }
  3617. if (get_options()->UseBridges) {
  3618. if (node_get_purpose(node) != ROUTER_PURPOSE_BRIDGE) {
  3619. *msg = "not a bridge";
  3620. return NULL;
  3621. }
  3622. if (!node_is_a_configured_bridge(node)) {
  3623. *msg = "not a configured bridge";
  3624. return NULL;
  3625. }
  3626. } else { /* !get_options()->UseBridges */
  3627. if (node_get_purpose(node) != ROUTER_PURPOSE_GENERAL) {
  3628. *msg = "not general-purpose";
  3629. return NULL;
  3630. }
  3631. }
  3632. if (routerset_contains_node(options->EntryNodes, node)) {
  3633. /* they asked for it, they get it */
  3634. need_uptime = need_capacity = 0;
  3635. }
  3636. if (node_is_unreliable(node, need_uptime, need_capacity, 0)) {
  3637. *msg = "not fast/stable";
  3638. return NULL;
  3639. }
  3640. if (!fascist_firewall_allows_node(node)) {
  3641. *msg = "unreachable by config";
  3642. return NULL;
  3643. }
  3644. return node;
  3645. }
  3646. /** Return the number of entry guards that we think are usable. */
  3647. static int
  3648. num_live_entry_guards(void)
  3649. {
  3650. int n = 0;
  3651. const char *msg;
  3652. if (! entry_guards)
  3653. return 0;
  3654. SMARTLIST_FOREACH(entry_guards, entry_guard_t *, entry,
  3655. {
  3656. if (entry_is_live(entry, 0, 1, 0, &msg))
  3657. ++n;
  3658. });
  3659. return n;
  3660. }
  3661. /** If <b>digest</b> matches the identity of any node in the
  3662. * entry_guards list, return that node. Else return NULL. */
  3663. static entry_guard_t *
  3664. entry_guard_get_by_id_digest(const char *digest)
  3665. {
  3666. SMARTLIST_FOREACH(entry_guards, entry_guard_t *, entry,
  3667. if (tor_memeq(digest, entry->identity, DIGEST_LEN))
  3668. return entry;
  3669. );
  3670. return NULL;
  3671. }
  3672. /** Dump a description of our list of entry guards to the log at level
  3673. * <b>severity</b>. */
  3674. static void
  3675. log_entry_guards(int severity)
  3676. {
  3677. smartlist_t *elements = smartlist_new();
  3678. char *s;
  3679. SMARTLIST_FOREACH_BEGIN(entry_guards, entry_guard_t *, e)
  3680. {
  3681. const char *msg = NULL;
  3682. if (entry_is_live(e, 0, 1, 0, &msg))
  3683. smartlist_add_asprintf(elements, "%s [%s] (up %s)",
  3684. e->nickname,
  3685. hex_str(e->identity, DIGEST_LEN),
  3686. e->made_contact ? "made-contact" : "never-contacted");
  3687. else
  3688. smartlist_add_asprintf(elements, "%s [%s] (%s, %s)",
  3689. e->nickname,
  3690. hex_str(e->identity, DIGEST_LEN),
  3691. msg,
  3692. e->made_contact ? "made-contact" : "never-contacted");
  3693. }
  3694. SMARTLIST_FOREACH_END(e);
  3695. s = smartlist_join_strings(elements, ",", 0, NULL);
  3696. SMARTLIST_FOREACH(elements, char*, cp, tor_free(cp));
  3697. smartlist_free(elements);
  3698. log_fn(severity,LD_CIRC,"%s",s);
  3699. tor_free(s);
  3700. }
  3701. /** Called when one or more guards that we would previously have used for some
  3702. * purpose are no longer in use because a higher-priority guard has become
  3703. * usable again. */
  3704. static void
  3705. control_event_guard_deferred(void)
  3706. {
  3707. /* XXXX We don't actually have a good way to figure out _how many_ entries
  3708. * are live for some purpose. We need an entry_is_even_slightly_live()
  3709. * function for this to work right. NumEntryGuards isn't reliable: if we
  3710. * need guards with weird properties, we can have more than that number
  3711. * live.
  3712. **/
  3713. #if 0
  3714. int n = 0;
  3715. const char *msg;
  3716. const or_options_t *options = get_options();
  3717. if (!entry_guards)
  3718. return;
  3719. SMARTLIST_FOREACH(entry_guards, entry_guard_t *, entry,
  3720. {
  3721. if (entry_is_live(entry, 0, 1, 0, &msg)) {
  3722. if (n++ == options->NumEntryGuards) {
  3723. control_event_guard(entry->nickname, entry->identity, "DEFERRED");
  3724. return;
  3725. }
  3726. }
  3727. });
  3728. #endif
  3729. }
  3730. /** Add a new (preferably stable and fast) router to our
  3731. * entry_guards list. Return a pointer to the router if we succeed,
  3732. * or NULL if we can't find any more suitable entries.
  3733. *
  3734. * If <b>chosen</b> is defined, use that one, and if it's not
  3735. * already in our entry_guards list, put it at the *beginning*.
  3736. * Else, put the one we pick at the end of the list. */
  3737. static const node_t *
  3738. add_an_entry_guard(const node_t *chosen, int reset_status, int prepend)
  3739. {
  3740. const node_t *node;
  3741. entry_guard_t *entry;
  3742. if (chosen) {
  3743. node = chosen;
  3744. entry = entry_guard_get_by_id_digest(node->identity);
  3745. if (entry) {
  3746. if (reset_status) {
  3747. entry->bad_since = 0;
  3748. entry->can_retry = 1;
  3749. }
  3750. return NULL;
  3751. }
  3752. } else {
  3753. node = choose_good_entry_server(CIRCUIT_PURPOSE_C_GENERAL, NULL);
  3754. if (!node)
  3755. return NULL;
  3756. }
  3757. entry = tor_malloc_zero(sizeof(entry_guard_t));
  3758. log_info(LD_CIRC, "Chose %s as new entry guard.",
  3759. node_describe(node));
  3760. strlcpy(entry->nickname, node_get_nickname(node), sizeof(entry->nickname));
  3761. memcpy(entry->identity, node->identity, DIGEST_LEN);
  3762. /* Choose expiry time smudged over the past month. The goal here
  3763. * is to a) spread out when Tor clients rotate their guards, so they
  3764. * don't all select them on the same day, and b) avoid leaving a
  3765. * precise timestamp in the state file about when we first picked
  3766. * this guard. For details, see the Jan 2010 or-dev thread. */
  3767. entry->chosen_on_date = time(NULL) - crypto_rand_int(3600*24*30);
  3768. entry->chosen_by_version = tor_strdup(VERSION);
  3769. if (prepend)
  3770. smartlist_insert(entry_guards, 0, entry);
  3771. else
  3772. smartlist_add(entry_guards, entry);
  3773. control_event_guard(entry->nickname, entry->identity, "NEW");
  3774. control_event_guard_deferred();
  3775. log_entry_guards(LOG_INFO);
  3776. return node;
  3777. }
  3778. /** If the use of entry guards is configured, choose more entry guards
  3779. * until we have enough in the list. */
  3780. static void
  3781. pick_entry_guards(const or_options_t *options)
  3782. {
  3783. int changed = 0;
  3784. tor_assert(entry_guards);
  3785. while (num_live_entry_guards() < options->NumEntryGuards) {
  3786. if (!add_an_entry_guard(NULL, 0, 0))
  3787. break;
  3788. changed = 1;
  3789. }
  3790. if (changed)
  3791. entry_guards_changed();
  3792. }
  3793. /** How long (in seconds) do we allow an entry guard to be nonfunctional,
  3794. * unlisted, excluded, or otherwise nonusable before we give up on it? */
  3795. #define ENTRY_GUARD_REMOVE_AFTER (30*24*60*60)
  3796. /** Release all storage held by <b>e</b>. */
  3797. static void
  3798. entry_guard_free(entry_guard_t *e)
  3799. {
  3800. if (!e)
  3801. return;
  3802. tor_free(e->chosen_by_version);
  3803. tor_free(e);
  3804. }
  3805. /** Remove any entry guard which was selected by an unknown version of Tor,
  3806. * or which was selected by a version of Tor that's known to select
  3807. * entry guards badly, or which was selected more 2 months ago. */
  3808. /* XXXX The "obsolete guards" and "chosen long ago guards" things should
  3809. * probably be different functions. */
  3810. static int
  3811. remove_obsolete_entry_guards(time_t now)
  3812. {
  3813. int changed = 0, i;
  3814. for (i = 0; i < smartlist_len(entry_guards); ++i) {
  3815. entry_guard_t *entry = smartlist_get(entry_guards, i);
  3816. const char *ver = entry->chosen_by_version;
  3817. const char *msg = NULL;
  3818. tor_version_t v;
  3819. int version_is_bad = 0, date_is_bad = 0;
  3820. if (!ver) {
  3821. msg = "does not say what version of Tor it was selected by";
  3822. version_is_bad = 1;
  3823. } else if (tor_version_parse(ver, &v)) {
  3824. msg = "does not seem to be from any recognized version of Tor";
  3825. version_is_bad = 1;
  3826. } else {
  3827. char *tor_ver = NULL;
  3828. tor_asprintf(&tor_ver, "Tor %s", ver);
  3829. if ((tor_version_as_new_as(tor_ver, "0.1.0.10-alpha") &&
  3830. !tor_version_as_new_as(tor_ver, "0.1.2.16-dev")) ||
  3831. (tor_version_as_new_as(tor_ver, "0.2.0.0-alpha") &&
  3832. !tor_version_as_new_as(tor_ver, "0.2.0.6-alpha")) ||
  3833. /* above are bug 440; below are bug 1217 */
  3834. (tor_version_as_new_as(tor_ver, "0.2.1.3-alpha") &&
  3835. !tor_version_as_new_as(tor_ver, "0.2.1.23")) ||
  3836. (tor_version_as_new_as(tor_ver, "0.2.2.0-alpha") &&
  3837. !tor_version_as_new_as(tor_ver, "0.2.2.7-alpha"))) {
  3838. msg = "was selected without regard for guard bandwidth";
  3839. version_is_bad = 1;
  3840. }
  3841. tor_free(tor_ver);
  3842. }
  3843. if (!version_is_bad && entry->chosen_on_date + 3600*24*60 < now) {
  3844. /* It's been 2 months since the date listed in our state file. */
  3845. msg = "was selected several months ago";
  3846. date_is_bad = 1;
  3847. }
  3848. if (version_is_bad || date_is_bad) { /* we need to drop it */
  3849. char dbuf[HEX_DIGEST_LEN+1];
  3850. tor_assert(msg);
  3851. base16_encode(dbuf, sizeof(dbuf), entry->identity, DIGEST_LEN);
  3852. log_fn(version_is_bad ? LOG_NOTICE : LOG_INFO, LD_CIRC,
  3853. "Entry guard '%s' (%s) %s. (Version=%s.) Replacing it.",
  3854. entry->nickname, dbuf, msg, ver?escaped(ver):"none");
  3855. control_event_guard(entry->nickname, entry->identity, "DROPPED");
  3856. entry_guard_free(entry);
  3857. smartlist_del_keeporder(entry_guards, i--);
  3858. log_entry_guards(LOG_INFO);
  3859. changed = 1;
  3860. }
  3861. }
  3862. return changed ? 1 : 0;
  3863. }
  3864. /** Remove all entry guards that have been down or unlisted for so
  3865. * long that we don't think they'll come up again. Return 1 if we
  3866. * removed any, or 0 if we did nothing. */
  3867. static int
  3868. remove_dead_entry_guards(time_t now)
  3869. {
  3870. char dbuf[HEX_DIGEST_LEN+1];
  3871. char tbuf[ISO_TIME_LEN+1];
  3872. int i;
  3873. int changed = 0;
  3874. for (i = 0; i < smartlist_len(entry_guards); ) {
  3875. entry_guard_t *entry = smartlist_get(entry_guards, i);
  3876. if (entry->bad_since &&
  3877. ! entry->path_bias_disabled &&
  3878. entry->bad_since + ENTRY_GUARD_REMOVE_AFTER < now) {
  3879. base16_encode(dbuf, sizeof(dbuf), entry->identity, DIGEST_LEN);
  3880. format_local_iso_time(tbuf, entry->bad_since);
  3881. log_info(LD_CIRC, "Entry guard '%s' (%s) has been down or unlisted "
  3882. "since %s local time; removing.",
  3883. entry->nickname, dbuf, tbuf);
  3884. control_event_guard(entry->nickname, entry->identity, "DROPPED");
  3885. entry_guard_free(entry);
  3886. smartlist_del_keeporder(entry_guards, i);
  3887. log_entry_guards(LOG_INFO);
  3888. changed = 1;
  3889. } else
  3890. ++i;
  3891. }
  3892. return changed ? 1 : 0;
  3893. }
  3894. /** A new directory or router-status has arrived; update the down/listed
  3895. * status of the entry guards.
  3896. *
  3897. * An entry is 'down' if the directory lists it as nonrunning.
  3898. * An entry is 'unlisted' if the directory doesn't include it.
  3899. *
  3900. * Don't call this on startup; only on a fresh download. Otherwise we'll
  3901. * think that things are unlisted.
  3902. */
  3903. void
  3904. entry_guards_compute_status(const or_options_t *options, time_t now)
  3905. {
  3906. int changed = 0;
  3907. digestmap_t *reasons;
  3908. if (! entry_guards)
  3909. return;
  3910. if (options->EntryNodes) /* reshuffle the entry guard list if needed */
  3911. entry_nodes_should_be_added();
  3912. reasons = digestmap_new();
  3913. SMARTLIST_FOREACH_BEGIN(entry_guards, entry_guard_t *, entry)
  3914. {
  3915. const node_t *r = node_get_by_id(entry->identity);
  3916. const char *reason = NULL;
  3917. if (entry_guard_set_status(entry, r, now, options, &reason))
  3918. changed = 1;
  3919. if (entry->bad_since)
  3920. tor_assert(reason);
  3921. if (reason)
  3922. digestmap_set(reasons, entry->identity, (char*)reason);
  3923. }
  3924. SMARTLIST_FOREACH_END(entry);
  3925. if (remove_dead_entry_guards(now))
  3926. changed = 1;
  3927. if (remove_obsolete_entry_guards(now))
  3928. changed = 1;
  3929. if (changed) {
  3930. SMARTLIST_FOREACH_BEGIN(entry_guards, entry_guard_t *, entry) {
  3931. const char *reason = digestmap_get(reasons, entry->identity);
  3932. const char *live_msg = "";
  3933. const node_t *r = entry_is_live(entry, 0, 1, 0, &live_msg);
  3934. log_info(LD_CIRC, "Summary: Entry %s [%s] is %s, %s%s%s, and %s%s.",
  3935. entry->nickname,
  3936. hex_str(entry->identity, DIGEST_LEN),
  3937. entry->unreachable_since ? "unreachable" : "reachable",
  3938. entry->bad_since ? "unusable" : "usable",
  3939. reason ? ", ": "",
  3940. reason ? reason : "",
  3941. r ? "live" : "not live / ",
  3942. r ? "" : live_msg);
  3943. } SMARTLIST_FOREACH_END(entry);
  3944. log_info(LD_CIRC, " (%d/%d entry guards are usable/new)",
  3945. num_live_entry_guards(), smartlist_len(entry_guards));
  3946. log_entry_guards(LOG_INFO);
  3947. entry_guards_changed();
  3948. }
  3949. digestmap_free(reasons, NULL);
  3950. }
  3951. /** Called when a connection to an OR with the identity digest <b>digest</b>
  3952. * is established (<b>succeeded</b>==1) or has failed (<b>succeeded</b>==0).
  3953. * If the OR is an entry, change that entry's up/down status.
  3954. * Return 0 normally, or -1 if we want to tear down the new connection.
  3955. *
  3956. * If <b>mark_relay_status</b>, also call router_set_status() on this
  3957. * relay.
  3958. *
  3959. * XXX024 change succeeded and mark_relay_status into 'int flags'.
  3960. */
  3961. int
  3962. entry_guard_register_connect_status(const char *digest, int succeeded,
  3963. int mark_relay_status, time_t now)
  3964. {
  3965. int changed = 0;
  3966. int refuse_conn = 0;
  3967. int first_contact = 0;
  3968. entry_guard_t *entry = NULL;
  3969. int idx = -1;
  3970. char buf[HEX_DIGEST_LEN+1];
  3971. if (! entry_guards)
  3972. return 0;
  3973. SMARTLIST_FOREACH_BEGIN(entry_guards, entry_guard_t *, e) {
  3974. tor_assert(e);
  3975. if (tor_memeq(e->identity, digest, DIGEST_LEN)) {
  3976. entry = e;
  3977. idx = e_sl_idx;
  3978. break;
  3979. }
  3980. } SMARTLIST_FOREACH_END(e);
  3981. if (!entry)
  3982. return 0;
  3983. base16_encode(buf, sizeof(buf), entry->identity, DIGEST_LEN);
  3984. if (succeeded) {
  3985. if (entry->unreachable_since) {
  3986. log_info(LD_CIRC, "Entry guard '%s' (%s) is now reachable again. Good.",
  3987. entry->nickname, buf);
  3988. entry->can_retry = 0;
  3989. entry->unreachable_since = 0;
  3990. entry->last_attempted = now;
  3991. control_event_guard(entry->nickname, entry->identity, "UP");
  3992. changed = 1;
  3993. }
  3994. if (!entry->made_contact) {
  3995. entry->made_contact = 1;
  3996. first_contact = changed = 1;
  3997. }
  3998. } else { /* ! succeeded */
  3999. if (!entry->made_contact) {
  4000. /* We've never connected to this one. */
  4001. log_info(LD_CIRC,
  4002. "Connection to never-contacted entry guard '%s' (%s) failed. "
  4003. "Removing from the list. %d/%d entry guards usable/new.",
  4004. entry->nickname, buf,
  4005. num_live_entry_guards()-1, smartlist_len(entry_guards)-1);
  4006. control_event_guard(entry->nickname, entry->identity, "DROPPED");
  4007. entry_guard_free(entry);
  4008. smartlist_del_keeporder(entry_guards, idx);
  4009. log_entry_guards(LOG_INFO);
  4010. changed = 1;
  4011. } else if (!entry->unreachable_since) {
  4012. log_info(LD_CIRC, "Unable to connect to entry guard '%s' (%s). "
  4013. "Marking as unreachable.", entry->nickname, buf);
  4014. entry->unreachable_since = entry->last_attempted = now;
  4015. control_event_guard(entry->nickname, entry->identity, "DOWN");
  4016. changed = 1;
  4017. entry->can_retry = 0; /* We gave it an early chance; no good. */
  4018. } else {
  4019. char tbuf[ISO_TIME_LEN+1];
  4020. format_iso_time(tbuf, entry->unreachable_since);
  4021. log_debug(LD_CIRC, "Failed to connect to unreachable entry guard "
  4022. "'%s' (%s). It has been unreachable since %s.",
  4023. entry->nickname, buf, tbuf);
  4024. entry->last_attempted = now;
  4025. entry->can_retry = 0; /* We gave it an early chance; no good. */
  4026. }
  4027. }
  4028. /* if the caller asked us to, also update the is_running flags for this
  4029. * relay */
  4030. if (mark_relay_status)
  4031. router_set_status(digest, succeeded);
  4032. if (first_contact) {
  4033. /* We've just added a new long-term entry guard. Perhaps the network just
  4034. * came back? We should give our earlier entries another try too,
  4035. * and close this connection so we don't use it before we've given
  4036. * the others a shot. */
  4037. SMARTLIST_FOREACH_BEGIN(entry_guards, entry_guard_t *, e) {
  4038. if (e == entry)
  4039. break;
  4040. if (e->made_contact) {
  4041. const char *msg;
  4042. const node_t *r = entry_is_live(e, 0, 1, 1, &msg);
  4043. if (r && e->unreachable_since) {
  4044. refuse_conn = 1;
  4045. e->can_retry = 1;
  4046. }
  4047. }
  4048. } SMARTLIST_FOREACH_END(e);
  4049. if (refuse_conn) {
  4050. log_info(LD_CIRC,
  4051. "Connected to new entry guard '%s' (%s). Marking earlier "
  4052. "entry guards up. %d/%d entry guards usable/new.",
  4053. entry->nickname, buf,
  4054. num_live_entry_guards(), smartlist_len(entry_guards));
  4055. log_entry_guards(LOG_INFO);
  4056. changed = 1;
  4057. }
  4058. }
  4059. if (changed)
  4060. entry_guards_changed();
  4061. return refuse_conn ? -1 : 0;
  4062. }
  4063. /** When we try to choose an entry guard, should we parse and add
  4064. * config's EntryNodes first? */
  4065. static int should_add_entry_nodes = 0;
  4066. /** Called when the value of EntryNodes changes in our configuration. */
  4067. void
  4068. entry_nodes_should_be_added(void)
  4069. {
  4070. log_info(LD_CIRC, "EntryNodes config option set. Putting configured "
  4071. "relays at the front of the entry guard list.");
  4072. should_add_entry_nodes = 1;
  4073. }
  4074. /** Adjust the entry guards list so that it only contains entries from
  4075. * EntryNodes, adding new entries from EntryNodes to the list as needed. */
  4076. static void
  4077. entry_guards_set_from_config(const or_options_t *options)
  4078. {
  4079. smartlist_t *entry_nodes, *worse_entry_nodes, *entry_fps;
  4080. smartlist_t *old_entry_guards_on_list, *old_entry_guards_not_on_list;
  4081. tor_assert(entry_guards);
  4082. should_add_entry_nodes = 0;
  4083. if (!options->EntryNodes) {
  4084. /* It's possible that a controller set EntryNodes, thus making
  4085. * should_add_entry_nodes set, then cleared it again, all before the
  4086. * call to choose_random_entry() that triggered us. If so, just return.
  4087. */
  4088. return;
  4089. }
  4090. {
  4091. char *string = routerset_to_string(options->EntryNodes);
  4092. log_info(LD_CIRC,"Adding configured EntryNodes '%s'.", string);
  4093. tor_free(string);
  4094. }
  4095. entry_nodes = smartlist_new();
  4096. worse_entry_nodes = smartlist_new();
  4097. entry_fps = smartlist_new();
  4098. old_entry_guards_on_list = smartlist_new();
  4099. old_entry_guards_not_on_list = smartlist_new();
  4100. /* Split entry guards into those on the list and those not. */
  4101. routerset_get_all_nodes(entry_nodes, options->EntryNodes,
  4102. options->ExcludeNodes, 0);
  4103. SMARTLIST_FOREACH(entry_nodes, const node_t *,node,
  4104. smartlist_add(entry_fps, (void*)node->identity));
  4105. SMARTLIST_FOREACH(entry_guards, entry_guard_t *, e, {
  4106. if (smartlist_digest_isin(entry_fps, e->identity))
  4107. smartlist_add(old_entry_guards_on_list, e);
  4108. else
  4109. smartlist_add(old_entry_guards_not_on_list, e);
  4110. });
  4111. /* Remove all currently configured guard nodes, excluded nodes, unreachable
  4112. * nodes, or non-Guard nodes from entry_nodes. */
  4113. SMARTLIST_FOREACH_BEGIN(entry_nodes, const node_t *, node) {
  4114. if (entry_guard_get_by_id_digest(node->identity)) {
  4115. SMARTLIST_DEL_CURRENT(entry_nodes, node);
  4116. continue;
  4117. } else if (routerset_contains_node(options->ExcludeNodes, node)) {
  4118. SMARTLIST_DEL_CURRENT(entry_nodes, node);
  4119. continue;
  4120. } else if (!fascist_firewall_allows_node(node)) {
  4121. SMARTLIST_DEL_CURRENT(entry_nodes, node);
  4122. continue;
  4123. } else if (! node->is_possible_guard) {
  4124. smartlist_add(worse_entry_nodes, (node_t*)node);
  4125. SMARTLIST_DEL_CURRENT(entry_nodes, node);
  4126. }
  4127. } SMARTLIST_FOREACH_END(node);
  4128. /* Now build the new entry_guards list. */
  4129. smartlist_clear(entry_guards);
  4130. /* First, the previously configured guards that are in EntryNodes. */
  4131. smartlist_add_all(entry_guards, old_entry_guards_on_list);
  4132. /* Next, scramble the rest of EntryNodes, putting the guards first. */
  4133. smartlist_shuffle(entry_nodes);
  4134. smartlist_shuffle(worse_entry_nodes);
  4135. smartlist_add_all(entry_nodes, worse_entry_nodes);
  4136. /* Next, the rest of EntryNodes */
  4137. SMARTLIST_FOREACH_BEGIN(entry_nodes, const node_t *, node) {
  4138. add_an_entry_guard(node, 0, 0);
  4139. if (smartlist_len(entry_guards) > options->NumEntryGuards * 10)
  4140. break;
  4141. } SMARTLIST_FOREACH_END(node);
  4142. log_notice(LD_GENERAL, "%d entries in guards", smartlist_len(entry_guards));
  4143. /* Finally, free the remaining previously configured guards that are not in
  4144. * EntryNodes. */
  4145. SMARTLIST_FOREACH(old_entry_guards_not_on_list, entry_guard_t *, e,
  4146. entry_guard_free(e));
  4147. smartlist_free(entry_nodes);
  4148. smartlist_free(worse_entry_nodes);
  4149. smartlist_free(entry_fps);
  4150. smartlist_free(old_entry_guards_on_list);
  4151. smartlist_free(old_entry_guards_not_on_list);
  4152. entry_guards_changed();
  4153. }
  4154. /** Return 0 if we're fine adding arbitrary routers out of the
  4155. * directory to our entry guard list, or return 1 if we have a
  4156. * list already and we must stick to it.
  4157. */
  4158. int
  4159. entry_list_is_constrained(const or_options_t *options)
  4160. {
  4161. if (options->EntryNodes)
  4162. return 1;
  4163. if (options->UseBridges)
  4164. return 1;
  4165. return 0;
  4166. }
  4167. /** Pick a live (up and listed) entry guard from entry_guards. If
  4168. * <b>state</b> is non-NULL, this is for a specific circuit --
  4169. * make sure not to pick this circuit's exit or any node in the
  4170. * exit's family. If <b>state</b> is NULL, we're looking for a random
  4171. * guard (likely a bridge). */
  4172. const node_t *
  4173. choose_random_entry(cpath_build_state_t *state)
  4174. {
  4175. const or_options_t *options = get_options();
  4176. smartlist_t *live_entry_guards = smartlist_new();
  4177. smartlist_t *exit_family = smartlist_new();
  4178. const node_t *chosen_exit =
  4179. state?build_state_get_exit_node(state) : NULL;
  4180. const node_t *node = NULL;
  4181. int need_uptime = state ? state->need_uptime : 0;
  4182. int need_capacity = state ? state->need_capacity : 0;
  4183. int preferred_min, consider_exit_family = 0;
  4184. if (chosen_exit) {
  4185. nodelist_add_node_and_family(exit_family, chosen_exit);
  4186. consider_exit_family = 1;
  4187. }
  4188. if (!entry_guards)
  4189. entry_guards = smartlist_new();
  4190. if (should_add_entry_nodes)
  4191. entry_guards_set_from_config(options);
  4192. if (!entry_list_is_constrained(options) &&
  4193. smartlist_len(entry_guards) < options->NumEntryGuards)
  4194. pick_entry_guards(options);
  4195. retry:
  4196. smartlist_clear(live_entry_guards);
  4197. SMARTLIST_FOREACH_BEGIN(entry_guards, entry_guard_t *, entry) {
  4198. const char *msg;
  4199. node = entry_is_live(entry, need_uptime, need_capacity, 0, &msg);
  4200. if (!node)
  4201. continue; /* down, no point */
  4202. if (node == chosen_exit)
  4203. continue; /* don't pick the same node for entry and exit */
  4204. if (consider_exit_family && smartlist_isin(exit_family, node))
  4205. continue; /* avoid relays that are family members of our exit */
  4206. #if 0 /* since EntryNodes is always strict now, this clause is moot */
  4207. if (options->EntryNodes &&
  4208. !routerset_contains_node(options->EntryNodes, node)) {
  4209. /* We've come to the end of our preferred entry nodes. */
  4210. if (smartlist_len(live_entry_guards))
  4211. goto choose_and_finish; /* only choose from the ones we like */
  4212. if (options->StrictNodes) {
  4213. /* in theory this case should never happen, since
  4214. * entry_guards_set_from_config() drops unwanted relays */
  4215. tor_fragile_assert();
  4216. } else {
  4217. log_info(LD_CIRC,
  4218. "No relays from EntryNodes available. Using others.");
  4219. }
  4220. }
  4221. #endif
  4222. smartlist_add(live_entry_guards, (void*)node);
  4223. if (!entry->made_contact) {
  4224. /* Always start with the first not-yet-contacted entry
  4225. * guard. Otherwise we might add several new ones, pick
  4226. * the second new one, and now we've expanded our entry
  4227. * guard list without needing to. */
  4228. goto choose_and_finish;
  4229. }
  4230. if (smartlist_len(live_entry_guards) >= options->NumEntryGuards)
  4231. goto choose_and_finish; /* we have enough */
  4232. } SMARTLIST_FOREACH_END(entry);
  4233. if (entry_list_is_constrained(options)) {
  4234. /* If we prefer the entry nodes we've got, and we have at least
  4235. * one choice, that's great. Use it. */
  4236. preferred_min = 1;
  4237. } else {
  4238. /* Try to have at least 2 choices available. This way we don't
  4239. * get stuck with a single live-but-crummy entry and just keep
  4240. * using him.
  4241. * (We might get 2 live-but-crummy entry guards, but so be it.) */
  4242. preferred_min = 2;
  4243. }
  4244. if (smartlist_len(live_entry_guards) < preferred_min) {
  4245. if (!entry_list_is_constrained(options)) {
  4246. /* still no? try adding a new entry then */
  4247. /* XXX if guard doesn't imply fast and stable, then we need
  4248. * to tell add_an_entry_guard below what we want, or it might
  4249. * be a long time til we get it. -RD */
  4250. node = add_an_entry_guard(NULL, 0, 0);
  4251. if (node) {
  4252. entry_guards_changed();
  4253. /* XXX we start over here in case the new node we added shares
  4254. * a family with our exit node. There's a chance that we'll just
  4255. * load up on entry guards here, if the network we're using is
  4256. * one big family. Perhaps we should teach add_an_entry_guard()
  4257. * to understand nodes-to-avoid-if-possible? -RD */
  4258. goto retry;
  4259. }
  4260. }
  4261. if (!node && need_uptime) {
  4262. need_uptime = 0; /* try without that requirement */
  4263. goto retry;
  4264. }
  4265. if (!node && need_capacity) {
  4266. /* still no? last attempt, try without requiring capacity */
  4267. need_capacity = 0;
  4268. goto retry;
  4269. }
  4270. #if 0
  4271. /* Removing this retry logic: if we only allow one exit, and it is in the
  4272. same family as all our entries, then we are just plain not going to win
  4273. here. */
  4274. if (!node && entry_list_is_constrained(options) && consider_exit_family) {
  4275. /* still no? if we're using bridges or have strictentrynodes
  4276. * set, and our chosen exit is in the same family as all our
  4277. * bridges/entry guards, then be flexible about families. */
  4278. consider_exit_family = 0;
  4279. goto retry;
  4280. }
  4281. #endif
  4282. /* live_entry_guards may be empty below. Oh well, we tried. */
  4283. }
  4284. choose_and_finish:
  4285. if (entry_list_is_constrained(options)) {
  4286. /* We need to weight by bandwidth, because our bridges or entryguards
  4287. * were not already selected proportional to their bandwidth. */
  4288. node = node_sl_choose_by_bandwidth(live_entry_guards, WEIGHT_FOR_GUARD);
  4289. } else {
  4290. /* We choose uniformly at random here, because choose_good_entry_server()
  4291. * already weights its choices by bandwidth, so we don't want to
  4292. * *double*-weight our guard selection. */
  4293. node = smartlist_choose(live_entry_guards);
  4294. }
  4295. smartlist_free(live_entry_guards);
  4296. smartlist_free(exit_family);
  4297. return node;
  4298. }
  4299. /** Parse <b>state</b> and learn about the entry guards it describes.
  4300. * If <b>set</b> is true, and there are no errors, replace the global
  4301. * entry_list with what we find.
  4302. * On success, return 0. On failure, alloc into *<b>msg</b> a string
  4303. * describing the error, and return -1.
  4304. */
  4305. int
  4306. entry_guards_parse_state(or_state_t *state, int set, char **msg)
  4307. {
  4308. entry_guard_t *node = NULL;
  4309. smartlist_t *new_entry_guards = smartlist_new();
  4310. config_line_t *line;
  4311. time_t now = time(NULL);
  4312. const char *state_version = state->TorVersion;
  4313. digestmap_t *added_by = digestmap_new();
  4314. *msg = NULL;
  4315. for (line = state->EntryGuards; line; line = line->next) {
  4316. if (!strcasecmp(line->key, "EntryGuard")) {
  4317. smartlist_t *args = smartlist_new();
  4318. node = tor_malloc_zero(sizeof(entry_guard_t));
  4319. /* all entry guards on disk have been contacted */
  4320. node->made_contact = 1;
  4321. smartlist_add(new_entry_guards, node);
  4322. smartlist_split_string(args, line->value, " ",
  4323. SPLIT_SKIP_SPACE|SPLIT_IGNORE_BLANK, 0);
  4324. if (smartlist_len(args)<2) {
  4325. *msg = tor_strdup("Unable to parse entry nodes: "
  4326. "Too few arguments to EntryGuard");
  4327. } else if (!is_legal_nickname(smartlist_get(args,0))) {
  4328. *msg = tor_strdup("Unable to parse entry nodes: "
  4329. "Bad nickname for EntryGuard");
  4330. } else {
  4331. strlcpy(node->nickname, smartlist_get(args,0), MAX_NICKNAME_LEN+1);
  4332. if (base16_decode(node->identity, DIGEST_LEN, smartlist_get(args,1),
  4333. strlen(smartlist_get(args,1)))<0) {
  4334. *msg = tor_strdup("Unable to parse entry nodes: "
  4335. "Bad hex digest for EntryGuard");
  4336. }
  4337. }
  4338. SMARTLIST_FOREACH(args, char*, cp, tor_free(cp));
  4339. smartlist_free(args);
  4340. if (*msg)
  4341. break;
  4342. } else if (!strcasecmp(line->key, "EntryGuardDownSince") ||
  4343. !strcasecmp(line->key, "EntryGuardUnlistedSince")) {
  4344. time_t when;
  4345. time_t last_try = 0;
  4346. if (!node) {
  4347. *msg = tor_strdup("Unable to parse entry nodes: "
  4348. "EntryGuardDownSince/UnlistedSince without EntryGuard");
  4349. break;
  4350. }
  4351. if (parse_iso_time(line->value, &when)<0) {
  4352. *msg = tor_strdup("Unable to parse entry nodes: "
  4353. "Bad time in EntryGuardDownSince/UnlistedSince");
  4354. break;
  4355. }
  4356. if (when > now) {
  4357. /* It's a bad idea to believe info in the future: you can wind
  4358. * up with timeouts that aren't allowed to happen for years. */
  4359. continue;
  4360. }
  4361. if (strlen(line->value) >= ISO_TIME_LEN+ISO_TIME_LEN+1) {
  4362. /* ignore failure */
  4363. (void) parse_iso_time(line->value+ISO_TIME_LEN+1, &last_try);
  4364. }
  4365. if (!strcasecmp(line->key, "EntryGuardDownSince")) {
  4366. node->unreachable_since = when;
  4367. node->last_attempted = last_try;
  4368. } else {
  4369. node->bad_since = when;
  4370. }
  4371. } else if (!strcasecmp(line->key, "EntryGuardAddedBy")) {
  4372. char d[DIGEST_LEN];
  4373. /* format is digest version date */
  4374. if (strlen(line->value) < HEX_DIGEST_LEN+1+1+1+ISO_TIME_LEN) {
  4375. log_warn(LD_BUG, "EntryGuardAddedBy line is not long enough.");
  4376. continue;
  4377. }
  4378. if (base16_decode(d, sizeof(d), line->value, HEX_DIGEST_LEN)<0 ||
  4379. line->value[HEX_DIGEST_LEN] != ' ') {
  4380. log_warn(LD_BUG, "EntryGuardAddedBy line %s does not begin with "
  4381. "hex digest", escaped(line->value));
  4382. continue;
  4383. }
  4384. digestmap_set(added_by, d, tor_strdup(line->value+HEX_DIGEST_LEN+1));
  4385. } else if (!strcasecmp(line->key, "EntryGuardPathBias")) {
  4386. const or_options_t *options = get_options();
  4387. unsigned hop_cnt, success_cnt;
  4388. if (tor_sscanf(line->value, "%u %u", &success_cnt, &hop_cnt) != 2) {
  4389. log_warn(LD_GENERAL, "Unable to parse guard path bias info: "
  4390. "Misformated EntryGuardPathBias %s", escaped(line->value));
  4391. continue;
  4392. }
  4393. node->first_hops = hop_cnt;
  4394. node->circuit_successes = success_cnt;
  4395. log_info(LD_GENERAL, "Read %u/%u path bias for node %s",
  4396. node->circuit_successes, node->first_hops, node->nickname);
  4397. /* Note: We rely on the < comparison here to allow us to set a 0
  4398. * rate and disable the feature entirely. If refactoring, don't
  4399. * change to <= */
  4400. if (node->circuit_successes/((double)node->first_hops)
  4401. < pathbias_get_disable_rate(options)) {
  4402. node->path_bias_disabled = 1;
  4403. log_info(LD_GENERAL,
  4404. "Path bias is too high (%u/%u); disabling node %s",
  4405. node->circuit_successes, node->first_hops, node->nickname);
  4406. }
  4407. } else {
  4408. log_warn(LD_BUG, "Unexpected key %s", line->key);
  4409. }
  4410. }
  4411. SMARTLIST_FOREACH_BEGIN(new_entry_guards, entry_guard_t *, e) {
  4412. char *sp;
  4413. char *val = digestmap_get(added_by, e->identity);
  4414. if (val && (sp = strchr(val, ' '))) {
  4415. time_t when;
  4416. *sp++ = '\0';
  4417. if (parse_iso_time(sp, &when)<0) {
  4418. log_warn(LD_BUG, "Can't read time %s in EntryGuardAddedBy", sp);
  4419. } else {
  4420. e->chosen_by_version = tor_strdup(val);
  4421. e->chosen_on_date = when;
  4422. }
  4423. } else {
  4424. if (state_version) {
  4425. e->chosen_by_version = tor_strdup(state_version);
  4426. e->chosen_on_date = time(NULL) - crypto_rand_int(3600*24*30);
  4427. }
  4428. }
  4429. if (e->path_bias_disabled && !e->bad_since)
  4430. e->bad_since = time(NULL);
  4431. }
  4432. SMARTLIST_FOREACH_END(e);
  4433. if (*msg || !set) {
  4434. SMARTLIST_FOREACH(new_entry_guards, entry_guard_t *, e,
  4435. entry_guard_free(e));
  4436. smartlist_free(new_entry_guards);
  4437. } else { /* !err && set */
  4438. if (entry_guards) {
  4439. SMARTLIST_FOREACH(entry_guards, entry_guard_t *, e,
  4440. entry_guard_free(e));
  4441. smartlist_free(entry_guards);
  4442. }
  4443. entry_guards = new_entry_guards;
  4444. entry_guards_dirty = 0;
  4445. /* XXX024 hand new_entry_guards to this func, and move it up a
  4446. * few lines, so we don't have to re-dirty it */
  4447. if (remove_obsolete_entry_guards(now))
  4448. entry_guards_dirty = 1;
  4449. }
  4450. digestmap_free(added_by, _tor_free);
  4451. return *msg ? -1 : 0;
  4452. }
  4453. /** Our list of entry guards has changed, or some element of one
  4454. * of our entry guards has changed. Write the changes to disk within
  4455. * the next few minutes.
  4456. */
  4457. static void
  4458. entry_guards_changed(void)
  4459. {
  4460. time_t when;
  4461. entry_guards_dirty = 1;
  4462. /* or_state_save() will call entry_guards_update_state(). */
  4463. when = get_options()->AvoidDiskWrites ? time(NULL) + 3600 : time(NULL)+600;
  4464. or_state_mark_dirty(get_or_state(), when);
  4465. }
  4466. /** If the entry guard info has not changed, do nothing and return.
  4467. * Otherwise, free the EntryGuards piece of <b>state</b> and create
  4468. * a new one out of the global entry_guards list, and then mark
  4469. * <b>state</b> dirty so it will get saved to disk.
  4470. */
  4471. void
  4472. entry_guards_update_state(or_state_t *state)
  4473. {
  4474. config_line_t **next, *line;
  4475. if (! entry_guards_dirty)
  4476. return;
  4477. config_free_lines(state->EntryGuards);
  4478. next = &state->EntryGuards;
  4479. *next = NULL;
  4480. if (!entry_guards)
  4481. entry_guards = smartlist_new();
  4482. SMARTLIST_FOREACH_BEGIN(entry_guards, entry_guard_t *, e) {
  4483. char dbuf[HEX_DIGEST_LEN+1];
  4484. if (!e->made_contact)
  4485. continue; /* don't write this one to disk */
  4486. *next = line = tor_malloc_zero(sizeof(config_line_t));
  4487. line->key = tor_strdup("EntryGuard");
  4488. base16_encode(dbuf, sizeof(dbuf), e->identity, DIGEST_LEN);
  4489. tor_asprintf(&line->value, "%s %s", e->nickname, dbuf);
  4490. next = &(line->next);
  4491. if (e->unreachable_since) {
  4492. *next = line = tor_malloc_zero(sizeof(config_line_t));
  4493. line->key = tor_strdup("EntryGuardDownSince");
  4494. line->value = tor_malloc(ISO_TIME_LEN+1+ISO_TIME_LEN+1);
  4495. format_iso_time(line->value, e->unreachable_since);
  4496. if (e->last_attempted) {
  4497. line->value[ISO_TIME_LEN] = ' ';
  4498. format_iso_time(line->value+ISO_TIME_LEN+1, e->last_attempted);
  4499. }
  4500. next = &(line->next);
  4501. }
  4502. if (e->bad_since) {
  4503. *next = line = tor_malloc_zero(sizeof(config_line_t));
  4504. line->key = tor_strdup("EntryGuardUnlistedSince");
  4505. line->value = tor_malloc(ISO_TIME_LEN+1);
  4506. format_iso_time(line->value, e->bad_since);
  4507. next = &(line->next);
  4508. }
  4509. if (e->chosen_on_date && e->chosen_by_version &&
  4510. !strchr(e->chosen_by_version, ' ')) {
  4511. char d[HEX_DIGEST_LEN+1];
  4512. char t[ISO_TIME_LEN+1];
  4513. *next = line = tor_malloc_zero(sizeof(config_line_t));
  4514. line->key = tor_strdup("EntryGuardAddedBy");
  4515. base16_encode(d, sizeof(d), e->identity, DIGEST_LEN);
  4516. format_iso_time(t, e->chosen_on_date);
  4517. tor_asprintf(&line->value, "%s %s %s",
  4518. d, e->chosen_by_version, t);
  4519. next = &(line->next);
  4520. }
  4521. if (e->first_hops) {
  4522. *next = line = tor_malloc_zero(sizeof(config_line_t));
  4523. line->key = tor_strdup("EntryGuardPathBias");
  4524. tor_asprintf(&line->value, "%u %u",
  4525. e->circuit_successes, e->first_hops);
  4526. next = &(line->next);
  4527. }
  4528. } SMARTLIST_FOREACH_END(e);
  4529. if (!get_options()->AvoidDiskWrites)
  4530. or_state_mark_dirty(get_or_state(), 0);
  4531. entry_guards_dirty = 0;
  4532. }
  4533. /** If <b>question</b> is the string "entry-guards", then dump
  4534. * to *<b>answer</b> a newly allocated string describing all of
  4535. * the nodes in the global entry_guards list. See control-spec.txt
  4536. * for details.
  4537. * For backward compatibility, we also handle the string "helper-nodes".
  4538. * */
  4539. int
  4540. getinfo_helper_entry_guards(control_connection_t *conn,
  4541. const char *question, char **answer,
  4542. const char **errmsg)
  4543. {
  4544. (void) conn;
  4545. (void) errmsg;
  4546. if (!strcmp(question,"entry-guards") ||
  4547. !strcmp(question,"helper-nodes")) {
  4548. smartlist_t *sl = smartlist_new();
  4549. char tbuf[ISO_TIME_LEN+1];
  4550. char nbuf[MAX_VERBOSE_NICKNAME_LEN+1];
  4551. if (!entry_guards)
  4552. entry_guards = smartlist_new();
  4553. SMARTLIST_FOREACH_BEGIN(entry_guards, entry_guard_t *, e) {
  4554. const char *status = NULL;
  4555. time_t when = 0;
  4556. const node_t *node;
  4557. if (!e->made_contact) {
  4558. status = "never-connected";
  4559. } else if (e->bad_since) {
  4560. when = e->bad_since;
  4561. status = "unusable";
  4562. } else {
  4563. status = "up";
  4564. }
  4565. node = node_get_by_id(e->identity);
  4566. if (node) {
  4567. node_get_verbose_nickname(node, nbuf);
  4568. } else {
  4569. nbuf[0] = '$';
  4570. base16_encode(nbuf+1, sizeof(nbuf)-1, e->identity, DIGEST_LEN);
  4571. /* e->nickname field is not very reliable if we don't know about
  4572. * this router any longer; don't include it. */
  4573. }
  4574. if (when) {
  4575. format_iso_time(tbuf, when);
  4576. smartlist_add_asprintf(sl, "%s %s %s\n", nbuf, status, tbuf);
  4577. } else {
  4578. smartlist_add_asprintf(sl, "%s %s\n", nbuf, status);
  4579. }
  4580. } SMARTLIST_FOREACH_END(e);
  4581. *answer = smartlist_join_strings(sl, "", 0, NULL);
  4582. SMARTLIST_FOREACH(sl, char *, c, tor_free(c));
  4583. smartlist_free(sl);
  4584. }
  4585. return 0;
  4586. }
  4587. /** A list of configured bridges. Whenever we actually get a descriptor
  4588. * for one, we add it as an entry guard. Note that the order of bridges
  4589. * in this list does not necessarily correspond to the order of bridges
  4590. * in the torrc. */
  4591. static smartlist_t *bridge_list = NULL;
  4592. /** Mark every entry of the bridge list to be removed on our next call to
  4593. * sweep_bridge_list unless it has first been un-marked. */
  4594. void
  4595. mark_bridge_list(void)
  4596. {
  4597. if (!bridge_list)
  4598. bridge_list = smartlist_new();
  4599. SMARTLIST_FOREACH(bridge_list, bridge_info_t *, b,
  4600. b->marked_for_removal = 1);
  4601. }
  4602. /** Remove every entry of the bridge list that was marked with
  4603. * mark_bridge_list if it has not subsequently been un-marked. */
  4604. void
  4605. sweep_bridge_list(void)
  4606. {
  4607. if (!bridge_list)
  4608. bridge_list = smartlist_new();
  4609. SMARTLIST_FOREACH_BEGIN(bridge_list, bridge_info_t *, b) {
  4610. if (b->marked_for_removal) {
  4611. SMARTLIST_DEL_CURRENT(bridge_list, b);
  4612. bridge_free(b);
  4613. }
  4614. } SMARTLIST_FOREACH_END(b);
  4615. }
  4616. /** Initialize the bridge list to empty, creating it if needed. */
  4617. static void
  4618. clear_bridge_list(void)
  4619. {
  4620. if (!bridge_list)
  4621. bridge_list = smartlist_new();
  4622. SMARTLIST_FOREACH(bridge_list, bridge_info_t *, b, bridge_free(b));
  4623. smartlist_clear(bridge_list);
  4624. }
  4625. /** Free the bridge <b>bridge</b>. */
  4626. static void
  4627. bridge_free(bridge_info_t *bridge)
  4628. {
  4629. if (!bridge)
  4630. return;
  4631. tor_free(bridge->transport_name);
  4632. tor_free(bridge);
  4633. }
  4634. /** If we have a bridge configured whose digest matches <b>digest</b>, or a
  4635. * bridge with no known digest whose address matches any of the
  4636. * tor_addr_port_t's in <b>orports</b>, return that bridge. Else return
  4637. * NULL. */
  4638. static bridge_info_t *
  4639. get_configured_bridge_by_orports_digest(const char *digest,
  4640. const smartlist_t *orports)
  4641. {
  4642. if (!bridge_list)
  4643. return NULL;
  4644. SMARTLIST_FOREACH_BEGIN(bridge_list, bridge_info_t *, bridge)
  4645. {
  4646. if (tor_digest_is_zero(bridge->identity)) {
  4647. SMARTLIST_FOREACH_BEGIN(orports, tor_addr_port_t *, ap)
  4648. {
  4649. if (tor_addr_compare(&bridge->addr, &ap->addr, CMP_EXACT) == 0 &&
  4650. bridge->port == ap->port)
  4651. return bridge;
  4652. }
  4653. SMARTLIST_FOREACH_END(ap);
  4654. }
  4655. if (digest && tor_memeq(bridge->identity, digest, DIGEST_LEN))
  4656. return bridge;
  4657. }
  4658. SMARTLIST_FOREACH_END(bridge);
  4659. return NULL;
  4660. }
  4661. /** If we have a bridge configured whose digest matches <b>digest</b>, or a
  4662. * bridge with no known digest whose address matches <b>addr</b>:<b>/port</b>,
  4663. * return that bridge. Else return NULL. */
  4664. static bridge_info_t *
  4665. get_configured_bridge_by_addr_port_digest(const tor_addr_t *addr,
  4666. uint16_t port,
  4667. const char *digest)
  4668. {
  4669. if (!bridge_list)
  4670. return NULL;
  4671. SMARTLIST_FOREACH_BEGIN(bridge_list, bridge_info_t *, bridge)
  4672. {
  4673. if (tor_digest_is_zero(bridge->identity) &&
  4674. !tor_addr_compare(&bridge->addr, addr, CMP_EXACT) &&
  4675. bridge->port == port)
  4676. return bridge;
  4677. if (digest && tor_memeq(bridge->identity, digest, DIGEST_LEN))
  4678. return bridge;
  4679. }
  4680. SMARTLIST_FOREACH_END(bridge);
  4681. return NULL;
  4682. }
  4683. /** Wrapper around get_configured_bridge_by_addr_port_digest() to look
  4684. * it up via router descriptor <b>ri</b>. */
  4685. static bridge_info_t *
  4686. get_configured_bridge_by_routerinfo(const routerinfo_t *ri)
  4687. {
  4688. bridge_info_t *bi = NULL;
  4689. smartlist_t *orports = router_get_all_orports(ri);
  4690. bi = get_configured_bridge_by_orports_digest(ri->cache_info.identity_digest,
  4691. orports);
  4692. SMARTLIST_FOREACH(orports, tor_addr_port_t *, p, tor_free(p));
  4693. smartlist_free(orports);
  4694. return bi;
  4695. }
  4696. /** Return 1 if <b>ri</b> is one of our known bridges, else 0. */
  4697. int
  4698. routerinfo_is_a_configured_bridge(const routerinfo_t *ri)
  4699. {
  4700. return get_configured_bridge_by_routerinfo(ri) ? 1 : 0;
  4701. }
  4702. /** Return 1 if <b>node</b> is one of our configured bridges, else 0. */
  4703. int
  4704. node_is_a_configured_bridge(const node_t *node)
  4705. {
  4706. int retval = 0;
  4707. smartlist_t *orports = node_get_all_orports(node);
  4708. retval = get_configured_bridge_by_orports_digest(node->identity,
  4709. orports) != NULL;
  4710. SMARTLIST_FOREACH(orports, tor_addr_port_t *, p, tor_free(p));
  4711. smartlist_free(orports);
  4712. return retval;
  4713. }
  4714. /** We made a connection to a router at <b>addr</b>:<b>port</b>
  4715. * without knowing its digest. Its digest turned out to be <b>digest</b>.
  4716. * If it was a bridge, and we still don't know its digest, record it.
  4717. */
  4718. void
  4719. learned_router_identity(const tor_addr_t *addr, uint16_t port,
  4720. const char *digest)
  4721. {
  4722. bridge_info_t *bridge =
  4723. get_configured_bridge_by_addr_port_digest(addr, port, digest);
  4724. if (bridge && tor_digest_is_zero(bridge->identity)) {
  4725. memcpy(bridge->identity, digest, DIGEST_LEN);
  4726. log_notice(LD_DIR, "Learned fingerprint %s for bridge %s:%d",
  4727. hex_str(digest, DIGEST_LEN), fmt_addr(addr), port);
  4728. }
  4729. }
  4730. /** Return true if <b>bridge</b> has the same identity digest as
  4731. * <b>digest</b>. If <b>digest</b> is NULL, it matches
  4732. * bridges with unspecified identity digests. */
  4733. static int
  4734. bridge_has_digest(const bridge_info_t *bridge, const char *digest)
  4735. {
  4736. if (digest)
  4737. return tor_memeq(digest, bridge->identity, DIGEST_LEN);
  4738. else
  4739. return tor_digest_is_zero(bridge->identity);
  4740. }
  4741. /** We are about to add a new bridge at <b>addr</b>:<b>port</b>, with optional
  4742. * <b>digest</b> and <b>transport_name</b>. Mark for removal any previously
  4743. * existing bridge with the same address and port, and warn the user as
  4744. * appropriate.
  4745. */
  4746. static void
  4747. bridge_resolve_conflicts(const tor_addr_t *addr, uint16_t port,
  4748. const char *digest, const char *transport_name)
  4749. {
  4750. /* Iterate the already-registered bridge list:
  4751. If you find a bridge with the same adress and port, mark it for
  4752. removal. It doesn't make sense to have two active bridges with
  4753. the same IP:PORT. If the bridge in question has a different
  4754. digest or transport than <b>digest</b>/<b>transport_name</b>,
  4755. it's probably a misconfiguration and we should warn the user.
  4756. */
  4757. SMARTLIST_FOREACH_BEGIN(bridge_list, bridge_info_t *, bridge) {
  4758. if (bridge->marked_for_removal)
  4759. continue;
  4760. if (tor_addr_eq(&bridge->addr, addr) && (bridge->port == port)) {
  4761. bridge->marked_for_removal = 1;
  4762. if (!bridge_has_digest(bridge, digest) ||
  4763. strcmp_opt(bridge->transport_name, transport_name)) {
  4764. /* warn the user */
  4765. char *bridge_description_new, *bridge_description_old;
  4766. tor_asprintf(&bridge_description_new, "%s:%u:%s:%s",
  4767. fmt_addr(addr), port,
  4768. digest ? hex_str(digest, DIGEST_LEN) : "",
  4769. transport_name ? transport_name : "");
  4770. tor_asprintf(&bridge_description_old, "%s:%u:%s:%s",
  4771. fmt_addr(&bridge->addr), bridge->port,
  4772. tor_digest_is_zero(bridge->identity) ?
  4773. "" : hex_str(bridge->identity,DIGEST_LEN),
  4774. bridge->transport_name ? bridge->transport_name : "");
  4775. log_warn(LD_GENERAL,"Tried to add bridge '%s', but we found a conflict"
  4776. " with the already registered bridge '%s'. We will discard"
  4777. " the old bridge and keep '%s'. If this is not what you"
  4778. " wanted, please change your configuration file accordingly.",
  4779. bridge_description_new, bridge_description_old,
  4780. bridge_description_new);
  4781. tor_free(bridge_description_new);
  4782. tor_free(bridge_description_old);
  4783. }
  4784. }
  4785. } SMARTLIST_FOREACH_END(bridge);
  4786. }
  4787. /** Remember a new bridge at <b>addr</b>:<b>port</b>. If <b>digest</b>
  4788. * is set, it tells us the identity key too. If we already had the
  4789. * bridge in our list, unmark it, and don't actually add anything new.
  4790. * If <b>transport_name</b> is non-NULL - the bridge is associated with a
  4791. * pluggable transport - we assign the transport to the bridge. */
  4792. void
  4793. bridge_add_from_config(const tor_addr_t *addr, uint16_t port,
  4794. const char *digest, const char *transport_name)
  4795. {
  4796. bridge_info_t *b;
  4797. bridge_resolve_conflicts(addr, port, digest, transport_name);
  4798. b = tor_malloc_zero(sizeof(bridge_info_t));
  4799. tor_addr_copy(&b->addr, addr);
  4800. b->port = port;
  4801. if (digest)
  4802. memcpy(b->identity, digest, DIGEST_LEN);
  4803. if (transport_name)
  4804. b->transport_name = tor_strdup(transport_name);
  4805. b->fetch_status.schedule = DL_SCHED_BRIDGE;
  4806. if (!bridge_list)
  4807. bridge_list = smartlist_new();
  4808. smartlist_add(bridge_list, b);
  4809. }
  4810. /** Return true iff <b>routerset</b> contains the bridge <b>bridge</b>. */
  4811. static int
  4812. routerset_contains_bridge(const routerset_t *routerset,
  4813. const bridge_info_t *bridge)
  4814. {
  4815. int result;
  4816. extend_info_t *extinfo;
  4817. tor_assert(bridge);
  4818. if (!routerset)
  4819. return 0;
  4820. extinfo = extend_info_alloc(
  4821. NULL, bridge->identity, NULL, &bridge->addr, bridge->port);
  4822. result = routerset_contains_extendinfo(routerset, extinfo);
  4823. extend_info_free(extinfo);
  4824. return result;
  4825. }
  4826. /** If <b>digest</b> is one of our known bridges, return it. */
  4827. static bridge_info_t *
  4828. find_bridge_by_digest(const char *digest)
  4829. {
  4830. SMARTLIST_FOREACH(bridge_list, bridge_info_t *, bridge,
  4831. {
  4832. if (tor_memeq(bridge->identity, digest, DIGEST_LEN))
  4833. return bridge;
  4834. });
  4835. return NULL;
  4836. }
  4837. /* DOCDOC find_transport_name_by_bridge_addrport */
  4838. const char *
  4839. find_transport_name_by_bridge_addrport(const tor_addr_t *addr, uint16_t port)
  4840. {
  4841. if (!bridge_list)
  4842. return NULL;
  4843. SMARTLIST_FOREACH_BEGIN(bridge_list, const bridge_info_t *, bridge) {
  4844. if (tor_addr_eq(&bridge->addr, addr) &&
  4845. (bridge->port == port))
  4846. return bridge->transport_name;
  4847. } SMARTLIST_FOREACH_END(bridge);
  4848. return NULL;
  4849. }
  4850. /** If <b>addr</b> and <b>port</b> match the address and port of a
  4851. * bridge of ours that uses pluggable transports, place its transport
  4852. * in <b>transport</b>.
  4853. *
  4854. * Return 0 on success (found a transport, or found a bridge with no
  4855. * transport, or found no bridge); return -1 if we should be using a
  4856. * transport, but the transport could not be found.
  4857. */
  4858. int
  4859. find_transport_by_bridge_addrport(const tor_addr_t *addr, uint16_t port,
  4860. const transport_t **transport)
  4861. {
  4862. *transport = NULL;
  4863. if (!bridge_list)
  4864. return 0;
  4865. SMARTLIST_FOREACH_BEGIN(bridge_list, const bridge_info_t *, bridge) {
  4866. if (tor_addr_eq(&bridge->addr, addr) &&
  4867. (bridge->port == port)) { /* bridge matched */
  4868. if (bridge->transport_name) { /* it also uses pluggable transports */
  4869. *transport = transport_get_by_name(bridge->transport_name);
  4870. if (*transport == NULL) { /* it uses pluggable transports, but
  4871. the transport could not be found! */
  4872. return -1;
  4873. }
  4874. return 0;
  4875. } else { /* bridge matched, but it doesn't use transports. */
  4876. break;
  4877. }
  4878. }
  4879. } SMARTLIST_FOREACH_END(bridge);
  4880. *transport = NULL;
  4881. return 0;
  4882. }
  4883. /** We need to ask <b>bridge</b> for its server descriptor. */
  4884. static void
  4885. launch_direct_bridge_descriptor_fetch(bridge_info_t *bridge)
  4886. {
  4887. char *address;
  4888. const or_options_t *options = get_options();
  4889. if (connection_get_by_type_addr_port_purpose(
  4890. CONN_TYPE_DIR, &bridge->addr, bridge->port,
  4891. DIR_PURPOSE_FETCH_SERVERDESC))
  4892. return; /* it's already on the way */
  4893. if (routerset_contains_bridge(options->ExcludeNodes, bridge)) {
  4894. download_status_mark_impossible(&bridge->fetch_status);
  4895. log_warn(LD_APP, "Not using bridge at %s: it is in ExcludeNodes.",
  4896. safe_str_client(fmt_addr(&bridge->addr)));
  4897. return;
  4898. }
  4899. address = tor_dup_addr(&bridge->addr);
  4900. directory_initiate_command(address, &bridge->addr,
  4901. bridge->port, 0,
  4902. 0, /* does not matter */
  4903. 1, bridge->identity,
  4904. DIR_PURPOSE_FETCH_SERVERDESC,
  4905. ROUTER_PURPOSE_BRIDGE,
  4906. 0, "authority.z", NULL, 0, 0);
  4907. tor_free(address);
  4908. }
  4909. /** Fetching the bridge descriptor from the bridge authority returned a
  4910. * "not found". Fall back to trying a direct fetch. */
  4911. void
  4912. retry_bridge_descriptor_fetch_directly(const char *digest)
  4913. {
  4914. bridge_info_t *bridge = find_bridge_by_digest(digest);
  4915. if (!bridge)
  4916. return; /* not found? oh well. */
  4917. launch_direct_bridge_descriptor_fetch(bridge);
  4918. }
  4919. /** For each bridge in our list for which we don't currently have a
  4920. * descriptor, fetch a new copy of its descriptor -- either directly
  4921. * from the bridge or via a bridge authority. */
  4922. void
  4923. fetch_bridge_descriptors(const or_options_t *options, time_t now)
  4924. {
  4925. int num_bridge_auths = get_n_authorities(BRIDGE_DIRINFO);
  4926. int ask_bridge_directly;
  4927. int can_use_bridge_authority;
  4928. if (!bridge_list)
  4929. return;
  4930. /* If we still have unconfigured managed proxies, don't go and
  4931. connect to a bridge. */
  4932. if (pt_proxies_configuration_pending())
  4933. return;
  4934. SMARTLIST_FOREACH_BEGIN(bridge_list, bridge_info_t *, bridge)
  4935. {
  4936. if (!download_status_is_ready(&bridge->fetch_status, now,
  4937. IMPOSSIBLE_TO_DOWNLOAD))
  4938. continue; /* don't bother, no need to retry yet */
  4939. if (routerset_contains_bridge(options->ExcludeNodes, bridge)) {
  4940. download_status_mark_impossible(&bridge->fetch_status);
  4941. log_warn(LD_APP, "Not using bridge at %s: it is in ExcludeNodes.",
  4942. safe_str_client(fmt_addr(&bridge->addr)));
  4943. continue;
  4944. }
  4945. /* schedule another fetch as if this one will fail, in case it does */
  4946. download_status_failed(&bridge->fetch_status, 0);
  4947. can_use_bridge_authority = !tor_digest_is_zero(bridge->identity) &&
  4948. num_bridge_auths;
  4949. ask_bridge_directly = !can_use_bridge_authority ||
  4950. !options->UpdateBridgesFromAuthority;
  4951. log_debug(LD_DIR, "ask_bridge_directly=%d (%d, %d, %d)",
  4952. ask_bridge_directly, tor_digest_is_zero(bridge->identity),
  4953. !options->UpdateBridgesFromAuthority, !num_bridge_auths);
  4954. if (ask_bridge_directly &&
  4955. !fascist_firewall_allows_address_or(&bridge->addr, bridge->port)) {
  4956. log_notice(LD_DIR, "Bridge at '%s:%d' isn't reachable by our "
  4957. "firewall policy. %s.", fmt_addr(&bridge->addr),
  4958. bridge->port,
  4959. can_use_bridge_authority ?
  4960. "Asking bridge authority instead" : "Skipping");
  4961. if (can_use_bridge_authority)
  4962. ask_bridge_directly = 0;
  4963. else
  4964. continue;
  4965. }
  4966. if (ask_bridge_directly) {
  4967. /* we need to ask the bridge itself for its descriptor. */
  4968. launch_direct_bridge_descriptor_fetch(bridge);
  4969. } else {
  4970. /* We have a digest and we want to ask an authority. We could
  4971. * combine all the requests into one, but that may give more
  4972. * hints to the bridge authority than we want to give. */
  4973. char resource[10 + HEX_DIGEST_LEN];
  4974. memcpy(resource, "fp/", 3);
  4975. base16_encode(resource+3, HEX_DIGEST_LEN+1,
  4976. bridge->identity, DIGEST_LEN);
  4977. memcpy(resource+3+HEX_DIGEST_LEN, ".z", 3);
  4978. log_info(LD_DIR, "Fetching bridge info '%s' from bridge authority.",
  4979. resource);
  4980. directory_get_from_dirserver(DIR_PURPOSE_FETCH_SERVERDESC,
  4981. ROUTER_PURPOSE_BRIDGE, resource, 0);
  4982. }
  4983. }
  4984. SMARTLIST_FOREACH_END(bridge);
  4985. }
  4986. /** If our <b>bridge</b> is configured to be a different address than
  4987. * the bridge gives in <b>node</b>, rewrite the routerinfo
  4988. * we received to use the address we meant to use. Now we handle
  4989. * multihomed bridges better.
  4990. */
  4991. static void
  4992. rewrite_node_address_for_bridge(const bridge_info_t *bridge, node_t *node)
  4993. {
  4994. /* XXXX move this function. */
  4995. /* XXXX overridden addresses should really live in the node_t, so that the
  4996. * routerinfo_t and the microdesc_t can be immutable. But we can only
  4997. * do that safely if we know that no function that connects to an OR
  4998. * does so through an address from any source other than node_get_addr().
  4999. */
  5000. tor_addr_t addr;
  5001. if (node->ri) {
  5002. routerinfo_t *ri = node->ri;
  5003. tor_addr_from_ipv4h(&addr, ri->addr);
  5004. if ((!tor_addr_compare(&bridge->addr, &addr, CMP_EXACT) &&
  5005. bridge->port == ri->or_port) ||
  5006. (!tor_addr_compare(&bridge->addr, &ri->ipv6_addr, CMP_EXACT) &&
  5007. bridge->port == ri->ipv6_orport)) {
  5008. /* they match, so no need to do anything */
  5009. } else {
  5010. if (tor_addr_family(&bridge->addr) == AF_INET) {
  5011. ri->addr = tor_addr_to_ipv4h(&bridge->addr);
  5012. tor_free(ri->address);
  5013. ri->address = tor_dup_ip(ri->addr);
  5014. ri->or_port = bridge->port;
  5015. log_info(LD_DIR,
  5016. "Adjusted bridge routerinfo for '%s' to match configured "
  5017. "address %s:%d.",
  5018. ri->nickname, ri->address, ri->or_port);
  5019. } else if (tor_addr_family(&bridge->addr) == AF_INET6) {
  5020. tor_addr_copy(&ri->ipv6_addr, &bridge->addr);
  5021. ri->ipv6_orport = bridge->port;
  5022. log_info(LD_DIR,
  5023. "Adjusted bridge routerinfo for '%s' to match configured "
  5024. "address %s:%d.",
  5025. ri->nickname, fmt_addr(&ri->ipv6_addr), ri->ipv6_orport);
  5026. } else {
  5027. log_err(LD_BUG, "Address family not supported: %d.",
  5028. tor_addr_family(&bridge->addr));
  5029. return;
  5030. }
  5031. }
  5032. /* Indicate that we prefer connecting to this bridge over the
  5033. protocol that the bridge address indicates. Last bridge
  5034. descriptor handled wins. */
  5035. node->ipv6_preferred = tor_addr_family(&bridge->addr) == AF_INET6;
  5036. /* XXXipv6 we lack support for falling back to another address for
  5037. the same relay, warn the user */
  5038. if (!tor_addr_is_null(&ri->ipv6_addr)) {
  5039. tor_addr_port_t ap;
  5040. node_get_pref_orport(node, &ap);
  5041. log_notice(LD_CONFIG,
  5042. "Bridge '%s' has both an IPv4 and an IPv6 address. "
  5043. "Will prefer using its %s address (%s:%d).",
  5044. ri->nickname,
  5045. node->ipv6_preferred ? "IPv6" : "IPv4",
  5046. fmt_addr(&ap.addr), ap.port);
  5047. }
  5048. }
  5049. if (node->rs) {
  5050. routerstatus_t *rs = node->rs;
  5051. tor_addr_from_ipv4h(&addr, rs->addr);
  5052. if (!tor_addr_compare(&bridge->addr, &addr, CMP_EXACT) &&
  5053. bridge->port == rs->or_port) {
  5054. /* they match, so no need to do anything */
  5055. } else {
  5056. rs->addr = tor_addr_to_ipv4h(&bridge->addr);
  5057. rs->or_port = bridge->port;
  5058. log_info(LD_DIR,
  5059. "Adjusted bridge routerstatus for '%s' to match "
  5060. "configured address %s:%d.",
  5061. rs->nickname, fmt_addr(&bridge->addr), rs->or_port);
  5062. }
  5063. }
  5064. }
  5065. /** We just learned a descriptor for a bridge. See if that
  5066. * digest is in our entry guard list, and add it if not. */
  5067. void
  5068. learned_bridge_descriptor(routerinfo_t *ri, int from_cache)
  5069. {
  5070. tor_assert(ri);
  5071. tor_assert(ri->purpose == ROUTER_PURPOSE_BRIDGE);
  5072. if (get_options()->UseBridges) {
  5073. int first = !any_bridge_descriptors_known();
  5074. bridge_info_t *bridge = get_configured_bridge_by_routerinfo(ri);
  5075. time_t now = time(NULL);
  5076. router_set_status(ri->cache_info.identity_digest, 1);
  5077. if (bridge) { /* if we actually want to use this one */
  5078. node_t *node;
  5079. /* it's here; schedule its re-fetch for a long time from now. */
  5080. if (!from_cache)
  5081. download_status_reset(&bridge->fetch_status);
  5082. node = node_get_mutable_by_id(ri->cache_info.identity_digest);
  5083. tor_assert(node);
  5084. rewrite_node_address_for_bridge(bridge, node);
  5085. add_an_entry_guard(node, 1, 1);
  5086. log_notice(LD_DIR, "new bridge descriptor '%s' (%s): %s", ri->nickname,
  5087. from_cache ? "cached" : "fresh", router_describe(ri));
  5088. /* set entry->made_contact so if it goes down we don't drop it from
  5089. * our entry node list */
  5090. entry_guard_register_connect_status(ri->cache_info.identity_digest,
  5091. 1, 0, now);
  5092. if (first)
  5093. routerlist_retry_directory_downloads(now);
  5094. }
  5095. }
  5096. }
  5097. /** Return 1 if any of our entry guards have descriptors that
  5098. * are marked with purpose 'bridge' and are running. Else return 0.
  5099. *
  5100. * We use this function to decide if we're ready to start building
  5101. * circuits through our bridges, or if we need to wait until the
  5102. * directory "server/authority" requests finish. */
  5103. int
  5104. any_bridge_descriptors_known(void)
  5105. {
  5106. tor_assert(get_options()->UseBridges);
  5107. return choose_random_entry(NULL)!=NULL ? 1 : 0;
  5108. }
  5109. /** Return 1 if there are any directory conns fetching bridge descriptors
  5110. * that aren't marked for close. We use this to guess if we should tell
  5111. * the controller that we have a problem. */
  5112. int
  5113. any_pending_bridge_descriptor_fetches(void)
  5114. {
  5115. smartlist_t *conns = get_connection_array();
  5116. SMARTLIST_FOREACH_BEGIN(conns, connection_t *, conn) {
  5117. if (conn->type == CONN_TYPE_DIR &&
  5118. conn->purpose == DIR_PURPOSE_FETCH_SERVERDESC &&
  5119. TO_DIR_CONN(conn)->router_purpose == ROUTER_PURPOSE_BRIDGE &&
  5120. !conn->marked_for_close &&
  5121. conn->linked &&
  5122. conn->linked_conn && !conn->linked_conn->marked_for_close) {
  5123. log_debug(LD_DIR, "found one: %s", conn->address);
  5124. return 1;
  5125. }
  5126. } SMARTLIST_FOREACH_END(conn);
  5127. return 0;
  5128. }
  5129. /** Return 1 if we have at least one descriptor for an entry guard
  5130. * (bridge or member of EntryNodes) and all descriptors we know are
  5131. * down. Else return 0. If <b>act</b> is 1, then mark the down guards
  5132. * up; else just observe and report. */
  5133. static int
  5134. entries_retry_helper(const or_options_t *options, int act)
  5135. {
  5136. const node_t *node;
  5137. int any_known = 0;
  5138. int any_running = 0;
  5139. int need_bridges = options->UseBridges != 0;
  5140. if (!entry_guards)
  5141. entry_guards = smartlist_new();
  5142. SMARTLIST_FOREACH_BEGIN(entry_guards, entry_guard_t *, e) {
  5143. node = node_get_by_id(e->identity);
  5144. if (node && node_has_descriptor(node) &&
  5145. node_is_bridge(node) == need_bridges) {
  5146. any_known = 1;
  5147. if (node->is_running)
  5148. any_running = 1; /* some entry is both known and running */
  5149. else if (act) {
  5150. /* Mark all current connections to this OR as unhealthy, since
  5151. * otherwise there could be one that started 30 seconds
  5152. * ago, and in 30 seconds it will time out, causing us to mark
  5153. * the node down and undermine the retry attempt. We mark even
  5154. * the established conns, since if the network just came back
  5155. * we'll want to attach circuits to fresh conns. */
  5156. connection_or_set_bad_connections(node->identity, 1);
  5157. /* mark this entry node for retry */
  5158. router_set_status(node->identity, 1);
  5159. e->can_retry = 1;
  5160. e->bad_since = 0;
  5161. }
  5162. }
  5163. } SMARTLIST_FOREACH_END(e);
  5164. log_debug(LD_DIR, "%d: any_known %d, any_running %d",
  5165. act, any_known, any_running);
  5166. return any_known && !any_running;
  5167. }
  5168. /** Do we know any descriptors for our bridges / entrynodes, and are
  5169. * all the ones we have descriptors for down? */
  5170. int
  5171. entries_known_but_down(const or_options_t *options)
  5172. {
  5173. tor_assert(entry_list_is_constrained(options));
  5174. return entries_retry_helper(options, 0);
  5175. }
  5176. /** Mark all down known bridges / entrynodes up. */
  5177. void
  5178. entries_retry_all(const or_options_t *options)
  5179. {
  5180. tor_assert(entry_list_is_constrained(options));
  5181. entries_retry_helper(options, 1);
  5182. }
  5183. /** Return true if we've ever had a bridge running a Tor version that can't
  5184. * provide microdescriptors to us. In that case fall back to asking for
  5185. * full descriptors. Eventually all bridges will support microdescriptors
  5186. * and we can take this check out; see bug 4013. */
  5187. int
  5188. any_bridges_dont_support_microdescriptors(void)
  5189. {
  5190. const node_t *node;
  5191. static int ever_answered_yes = 0;
  5192. if (!get_options()->UseBridges || !entry_guards)
  5193. return 0;
  5194. if (ever_answered_yes)
  5195. return 1; /* if we ever answer 'yes', always answer 'yes' */
  5196. SMARTLIST_FOREACH_BEGIN(entry_guards, entry_guard_t *, e) {
  5197. node = node_get_by_id(e->identity);
  5198. if (node && node->ri &&
  5199. node_is_bridge(node) && node_is_a_configured_bridge(node) &&
  5200. !tor_version_supports_microdescriptors(node->ri->platform)) {
  5201. /* This is one of our current bridges, and we know enough about
  5202. * it to know that it won't be able to answer our microdescriptor
  5203. * questions. */
  5204. ever_answered_yes = 1;
  5205. return 1;
  5206. }
  5207. } SMARTLIST_FOREACH_END(e);
  5208. return 0;
  5209. }
  5210. /** Release all storage held by the list of entry guards and related
  5211. * memory structs. */
  5212. void
  5213. entry_guards_free_all(void)
  5214. {
  5215. if (entry_guards) {
  5216. SMARTLIST_FOREACH(entry_guards, entry_guard_t *, e,
  5217. entry_guard_free(e));
  5218. smartlist_free(entry_guards);
  5219. entry_guards = NULL;
  5220. }
  5221. clear_bridge_list();
  5222. smartlist_free(bridge_list);
  5223. bridge_list = NULL;
  5224. }