circuitlist.c 81 KB

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  1. /* Copyright 2001 Matej Pfajfar.
  2. * Copyright (c) 2001-2004, Roger Dingledine.
  3. * Copyright (c) 2004-2006, Roger Dingledine, Nick Mathewson.
  4. * Copyright (c) 2007-2016, The Tor Project, Inc. */
  5. /* See LICENSE for licensing information */
  6. /**
  7. * \file circuitlist.c
  8. *
  9. * \brief Manage global structures that list and index circuits, and
  10. * look up circuits within them.
  11. *
  12. * One of the most frequent operations in Tor occurs every time that
  13. * a relay cell arrives on a channel. When that happens, we need to
  14. * find which circuit it is associated with, based on the channel and the
  15. * circuit ID in the relay cell.
  16. *
  17. * To handle that, we maintain a global list of circuits, and a hashtable
  18. * mapping [channel,circID] pairs to circuits. Circuits are added to and
  19. * removed from this mapping using circuit_set_p_circid_chan() and
  20. * circuit_set_n_circid_chan(). To look up a circuit from this map, most
  21. * callers should use circuit_get_by_circid_channel(), though
  22. * circuit_get_by_circid_channel_even_if_marked() is appropriate under some
  23. * circumstances.
  24. *
  25. * We also need to allow for the possibility that we have blocked use of a
  26. * circuit ID (because we are waiting to send a DESTROY cell), but the
  27. * circuit is not there any more. For that case, we allow placeholder
  28. * entries in the table, using channel_mark_circid_unusable().
  29. *
  30. * To efficiently handle a channel that has just opened, we also maintain a
  31. * list of the circuits waiting for channels, so we can attach them as
  32. * needed without iterating through the whole list of circuits, using
  33. * circuit_get_all_pending_on_channel().
  34. *
  35. * In this module, we also handle the list of circuits that have been
  36. * marked for close elsewhere, and close them as needed. (We use this
  37. * "mark now, close later" pattern here and elsewhere to avoid
  38. * unpredictable recursion if we closed every circuit immediately upon
  39. * realizing it needed to close.) See circuit_mark_for_close() for the
  40. * mark function, and circuit_close_all_marked() for the close function.
  41. *
  42. * For hidden services, we need to be able to look up introduction point
  43. * circuits and rendezvous circuits by cookie, key, etc. These are
  44. * currently handled with linear searches in
  45. * circuit_get_ready_rend_circuit_by_rend_data(),
  46. * circuit_get_next_by_pk_and_purpose(), and with hash lookups in
  47. * circuit_get_rendezvous() and circuit_get_intro_point().
  48. *
  49. * This module is also the entry point for our out-of-memory handler
  50. * logic, which was originally circuit-focused.
  51. **/
  52. #define CIRCUITLIST_PRIVATE
  53. #include "or.h"
  54. #include "channel.h"
  55. #include "circpathbias.h"
  56. #include "circuitbuild.h"
  57. #include "circuitlist.h"
  58. #include "circuituse.h"
  59. #include "circuitstats.h"
  60. #include "connection.h"
  61. #include "config.h"
  62. #include "connection_edge.h"
  63. #include "connection_or.h"
  64. #include "control.h"
  65. #include "entrynodes.h"
  66. #include "main.h"
  67. #include "hs_common.h"
  68. #include "networkstatus.h"
  69. #include "nodelist.h"
  70. #include "onion.h"
  71. #include "onion_fast.h"
  72. #include "policies.h"
  73. #include "relay.h"
  74. #include "rendclient.h"
  75. #include "rendcommon.h"
  76. #include "rephist.h"
  77. #include "routerlist.h"
  78. #include "routerset.h"
  79. #include "ht.h"
  80. /********* START VARIABLES **********/
  81. /** A global list of all circuits at this hop. */
  82. static smartlist_t *global_circuitlist = NULL;
  83. /** A global list of all origin circuits. Every element of this is also
  84. * an element of global_circuitlist. */
  85. static smartlist_t *global_origin_circuit_list = NULL;
  86. /** A list of all the circuits in CIRCUIT_STATE_CHAN_WAIT. */
  87. static smartlist_t *circuits_pending_chans = NULL;
  88. /** List of all the (origin) circuits whose state is
  89. * CIRCUIT_STATE_GUARD_WAIT. */
  90. static smartlist_t *circuits_pending_other_guards = NULL;
  91. /** A list of all the circuits that have been marked with
  92. * circuit_mark_for_close and which are waiting for circuit_about_to_free. */
  93. static smartlist_t *circuits_pending_close = NULL;
  94. static void circuit_free_cpath_node(crypt_path_t *victim);
  95. static void cpath_ref_decref(crypt_path_reference_t *cpath_ref);
  96. //static void circuit_set_rend_token(or_circuit_t *circ, int is_rend_circ,
  97. // const uint8_t *token);
  98. static void circuit_clear_rend_token(or_circuit_t *circ);
  99. static void circuit_about_to_free_atexit(circuit_t *circ);
  100. static void circuit_about_to_free(circuit_t *circ);
  101. /********* END VARIABLES ************/
  102. /** A map from channel and circuit ID to circuit. (Lookup performance is
  103. * very important here, since we need to do it every time a cell arrives.) */
  104. typedef struct chan_circid_circuit_map_t {
  105. HT_ENTRY(chan_circid_circuit_map_t) node;
  106. channel_t *chan;
  107. circid_t circ_id;
  108. circuit_t *circuit;
  109. /* For debugging 12184: when was this placeholder item added? */
  110. time_t made_placeholder_at;
  111. } chan_circid_circuit_map_t;
  112. /** Helper for hash tables: compare the channel and circuit ID for a and
  113. * b, and return less than, equal to, or greater than zero appropriately.
  114. */
  115. static inline int
  116. chan_circid_entries_eq_(chan_circid_circuit_map_t *a,
  117. chan_circid_circuit_map_t *b)
  118. {
  119. return a->chan == b->chan && a->circ_id == b->circ_id;
  120. }
  121. /** Helper: return a hash based on circuit ID and the pointer value of
  122. * chan in <b>a</b>. */
  123. static inline unsigned int
  124. chan_circid_entry_hash_(chan_circid_circuit_map_t *a)
  125. {
  126. /* Try to squeze the siphash input into 8 bytes to save any extra siphash
  127. * rounds. This hash function is in the critical path. */
  128. uintptr_t chan = (uintptr_t) (void*) a->chan;
  129. uint32_t array[2];
  130. array[0] = a->circ_id;
  131. /* The low bits of the channel pointer are uninteresting, since the channel
  132. * is a pretty big structure. */
  133. array[1] = (uint32_t) (chan >> 6);
  134. return (unsigned) siphash24g(array, sizeof(array));
  135. }
  136. /** Map from [chan,circid] to circuit. */
  137. static HT_HEAD(chan_circid_map, chan_circid_circuit_map_t)
  138. chan_circid_map = HT_INITIALIZER();
  139. HT_PROTOTYPE(chan_circid_map, chan_circid_circuit_map_t, node,
  140. chan_circid_entry_hash_, chan_circid_entries_eq_)
  141. HT_GENERATE2(chan_circid_map, chan_circid_circuit_map_t, node,
  142. chan_circid_entry_hash_, chan_circid_entries_eq_, 0.6,
  143. tor_reallocarray_, tor_free_)
  144. /** The most recently returned entry from circuit_get_by_circid_chan;
  145. * used to improve performance when many cells arrive in a row from the
  146. * same circuit.
  147. */
  148. static chan_circid_circuit_map_t *_last_circid_chan_ent = NULL;
  149. /** Implementation helper for circuit_set_{p,n}_circid_channel: A circuit ID
  150. * and/or channel for circ has just changed from <b>old_chan, old_id</b>
  151. * to <b>chan, id</b>. Adjust the chan,circid map as appropriate, removing
  152. * the old entry (if any) and adding a new one. */
  153. static void
  154. circuit_set_circid_chan_helper(circuit_t *circ, int direction,
  155. circid_t id,
  156. channel_t *chan)
  157. {
  158. chan_circid_circuit_map_t search;
  159. chan_circid_circuit_map_t *found;
  160. channel_t *old_chan, **chan_ptr;
  161. circid_t old_id, *circid_ptr;
  162. int make_active, attached = 0;
  163. if (direction == CELL_DIRECTION_OUT) {
  164. chan_ptr = &circ->n_chan;
  165. circid_ptr = &circ->n_circ_id;
  166. make_active = circ->n_chan_cells.n > 0;
  167. } else {
  168. or_circuit_t *c = TO_OR_CIRCUIT(circ);
  169. chan_ptr = &c->p_chan;
  170. circid_ptr = &c->p_circ_id;
  171. make_active = c->p_chan_cells.n > 0;
  172. }
  173. old_chan = *chan_ptr;
  174. old_id = *circid_ptr;
  175. if (id == old_id && chan == old_chan)
  176. return;
  177. if (_last_circid_chan_ent &&
  178. ((old_id == _last_circid_chan_ent->circ_id &&
  179. old_chan == _last_circid_chan_ent->chan) ||
  180. (id == _last_circid_chan_ent->circ_id &&
  181. chan == _last_circid_chan_ent->chan))) {
  182. _last_circid_chan_ent = NULL;
  183. }
  184. if (old_chan) {
  185. /*
  186. * If we're changing channels or ID and had an old channel and a non
  187. * zero old ID and weren't marked for close (i.e., we should have been
  188. * attached), detach the circuit. ID changes require this because
  189. * circuitmux hashes on (channel_id, circuit_id).
  190. */
  191. if (old_id != 0 && (old_chan != chan || old_id != id) &&
  192. !(circ->marked_for_close)) {
  193. tor_assert(old_chan->cmux);
  194. circuitmux_detach_circuit(old_chan->cmux, circ);
  195. }
  196. /* we may need to remove it from the conn-circid map */
  197. search.circ_id = old_id;
  198. search.chan = old_chan;
  199. found = HT_REMOVE(chan_circid_map, &chan_circid_map, &search);
  200. if (found) {
  201. tor_free(found);
  202. if (direction == CELL_DIRECTION_OUT) {
  203. /* One fewer circuits use old_chan as n_chan */
  204. --(old_chan->num_n_circuits);
  205. } else {
  206. /* One fewer circuits use old_chan as p_chan */
  207. --(old_chan->num_p_circuits);
  208. }
  209. }
  210. }
  211. /* Change the values only after we have possibly made the circuit inactive
  212. * on the previous chan. */
  213. *chan_ptr = chan;
  214. *circid_ptr = id;
  215. if (chan == NULL)
  216. return;
  217. /* now add the new one to the conn-circid map */
  218. search.circ_id = id;
  219. search.chan = chan;
  220. found = HT_FIND(chan_circid_map, &chan_circid_map, &search);
  221. if (found) {
  222. found->circuit = circ;
  223. found->made_placeholder_at = 0;
  224. } else {
  225. found = tor_malloc_zero(sizeof(chan_circid_circuit_map_t));
  226. found->circ_id = id;
  227. found->chan = chan;
  228. found->circuit = circ;
  229. HT_INSERT(chan_circid_map, &chan_circid_map, found);
  230. }
  231. /*
  232. * Attach to the circuitmux if we're changing channels or IDs and
  233. * have a new channel and ID to use and the circuit is not marked for
  234. * close.
  235. */
  236. if (chan && id != 0 && (old_chan != chan || old_id != id) &&
  237. !(circ->marked_for_close)) {
  238. tor_assert(chan->cmux);
  239. circuitmux_attach_circuit(chan->cmux, circ, direction);
  240. attached = 1;
  241. }
  242. /*
  243. * This is a no-op if we have no cells, but if we do it marks us active to
  244. * the circuitmux
  245. */
  246. if (make_active && attached)
  247. update_circuit_on_cmux(circ, direction);
  248. /* Adjust circuit counts on new channel */
  249. if (direction == CELL_DIRECTION_OUT) {
  250. ++chan->num_n_circuits;
  251. } else {
  252. ++chan->num_p_circuits;
  253. }
  254. }
  255. /** Mark that circuit id <b>id</b> shouldn't be used on channel <b>chan</b>,
  256. * even if there is no circuit on the channel. We use this to keep the
  257. * circuit id from getting re-used while we have queued but not yet sent
  258. * a destroy cell. */
  259. void
  260. channel_mark_circid_unusable(channel_t *chan, circid_t id)
  261. {
  262. chan_circid_circuit_map_t search;
  263. chan_circid_circuit_map_t *ent;
  264. /* See if there's an entry there. That wouldn't be good. */
  265. memset(&search, 0, sizeof(search));
  266. search.chan = chan;
  267. search.circ_id = id;
  268. ent = HT_FIND(chan_circid_map, &chan_circid_map, &search);
  269. if (ent && ent->circuit) {
  270. /* we have a problem. */
  271. log_warn(LD_BUG, "Tried to mark %u unusable on %p, but there was already "
  272. "a circuit there.", (unsigned)id, chan);
  273. } else if (ent) {
  274. /* It's already marked. */
  275. if (!ent->made_placeholder_at)
  276. ent->made_placeholder_at = approx_time();
  277. } else {
  278. ent = tor_malloc_zero(sizeof(chan_circid_circuit_map_t));
  279. ent->chan = chan;
  280. ent->circ_id = id;
  281. /* leave circuit at NULL. */
  282. ent->made_placeholder_at = approx_time();
  283. HT_INSERT(chan_circid_map, &chan_circid_map, ent);
  284. }
  285. }
  286. /** Mark that a circuit id <b>id</b> can be used again on <b>chan</b>.
  287. * We use this to re-enable the circuit ID after we've sent a destroy cell.
  288. */
  289. void
  290. channel_mark_circid_usable(channel_t *chan, circid_t id)
  291. {
  292. chan_circid_circuit_map_t search;
  293. chan_circid_circuit_map_t *ent;
  294. /* See if there's an entry there. That wouldn't be good. */
  295. memset(&search, 0, sizeof(search));
  296. search.chan = chan;
  297. search.circ_id = id;
  298. ent = HT_REMOVE(chan_circid_map, &chan_circid_map, &search);
  299. if (ent && ent->circuit) {
  300. log_warn(LD_BUG, "Tried to mark %u usable on %p, but there was already "
  301. "a circuit there.", (unsigned)id, chan);
  302. return;
  303. }
  304. if (_last_circid_chan_ent == ent)
  305. _last_circid_chan_ent = NULL;
  306. tor_free(ent);
  307. }
  308. /** Called to indicate that a DESTROY is pending on <b>chan</b> with
  309. * circuit ID <b>id</b>, but hasn't been sent yet. */
  310. void
  311. channel_note_destroy_pending(channel_t *chan, circid_t id)
  312. {
  313. circuit_t *circ = circuit_get_by_circid_channel_even_if_marked(id,chan);
  314. if (circ) {
  315. if (circ->n_chan == chan && circ->n_circ_id == id) {
  316. circ->n_delete_pending = 1;
  317. } else {
  318. or_circuit_t *orcirc = TO_OR_CIRCUIT(circ);
  319. if (orcirc->p_chan == chan && orcirc->p_circ_id == id) {
  320. circ->p_delete_pending = 1;
  321. }
  322. }
  323. return;
  324. }
  325. channel_mark_circid_unusable(chan, id);
  326. }
  327. /** Called to indicate that a DESTROY is no longer pending on <b>chan</b> with
  328. * circuit ID <b>id</b> -- typically, because it has been sent. */
  329. MOCK_IMPL(void, channel_note_destroy_not_pending,
  330. (channel_t *chan, circid_t id))
  331. {
  332. circuit_t *circ = circuit_get_by_circid_channel_even_if_marked(id,chan);
  333. if (circ) {
  334. if (circ->n_chan == chan && circ->n_circ_id == id) {
  335. circ->n_delete_pending = 0;
  336. } else {
  337. or_circuit_t *orcirc = TO_OR_CIRCUIT(circ);
  338. if (orcirc->p_chan == chan && orcirc->p_circ_id == id) {
  339. circ->p_delete_pending = 0;
  340. }
  341. }
  342. /* XXXX this shouldn't happen; log a bug here. */
  343. return;
  344. }
  345. channel_mark_circid_usable(chan, id);
  346. }
  347. /** Set the p_conn field of a circuit <b>circ</b>, along
  348. * with the corresponding circuit ID, and add the circuit as appropriate
  349. * to the (chan,id)-\>circuit map. */
  350. void
  351. circuit_set_p_circid_chan(or_circuit_t *or_circ, circid_t id,
  352. channel_t *chan)
  353. {
  354. circuit_t *circ = TO_CIRCUIT(or_circ);
  355. channel_t *old_chan = or_circ->p_chan;
  356. circid_t old_id = or_circ->p_circ_id;
  357. circuit_set_circid_chan_helper(circ, CELL_DIRECTION_IN, id, chan);
  358. if (chan) {
  359. tor_assert(bool_eq(or_circ->p_chan_cells.n,
  360. or_circ->next_active_on_p_chan));
  361. chan->timestamp_last_had_circuits = approx_time();
  362. }
  363. if (circ->p_delete_pending && old_chan) {
  364. channel_mark_circid_unusable(old_chan, old_id);
  365. circ->p_delete_pending = 0;
  366. }
  367. }
  368. /** Set the n_conn field of a circuit <b>circ</b>, along
  369. * with the corresponding circuit ID, and add the circuit as appropriate
  370. * to the (chan,id)-\>circuit map. */
  371. void
  372. circuit_set_n_circid_chan(circuit_t *circ, circid_t id,
  373. channel_t *chan)
  374. {
  375. channel_t *old_chan = circ->n_chan;
  376. circid_t old_id = circ->n_circ_id;
  377. circuit_set_circid_chan_helper(circ, CELL_DIRECTION_OUT, id, chan);
  378. if (chan) {
  379. tor_assert(bool_eq(circ->n_chan_cells.n, circ->next_active_on_n_chan));
  380. chan->timestamp_last_had_circuits = approx_time();
  381. }
  382. if (circ->n_delete_pending && old_chan) {
  383. channel_mark_circid_unusable(old_chan, old_id);
  384. circ->n_delete_pending = 0;
  385. }
  386. }
  387. /** Change the state of <b>circ</b> to <b>state</b>, adding it to or removing
  388. * it from lists as appropriate. */
  389. void
  390. circuit_set_state(circuit_t *circ, uint8_t state)
  391. {
  392. tor_assert(circ);
  393. if (state == circ->state)
  394. return;
  395. if (PREDICT_UNLIKELY(!circuits_pending_chans))
  396. circuits_pending_chans = smartlist_new();
  397. if (PREDICT_UNLIKELY(!circuits_pending_other_guards))
  398. circuits_pending_other_guards = smartlist_new();
  399. if (circ->state == CIRCUIT_STATE_CHAN_WAIT) {
  400. /* remove from waiting-circuit list. */
  401. smartlist_remove(circuits_pending_chans, circ);
  402. }
  403. if (state == CIRCUIT_STATE_CHAN_WAIT) {
  404. /* add to waiting-circuit list. */
  405. smartlist_add(circuits_pending_chans, circ);
  406. }
  407. if (circ->state == CIRCUIT_STATE_GUARD_WAIT) {
  408. smartlist_remove(circuits_pending_other_guards, circ);
  409. }
  410. if (state == CIRCUIT_STATE_GUARD_WAIT) {
  411. smartlist_add(circuits_pending_other_guards, circ);
  412. }
  413. if (state == CIRCUIT_STATE_GUARD_WAIT || state == CIRCUIT_STATE_OPEN)
  414. tor_assert(!circ->n_chan_create_cell);
  415. circ->state = state;
  416. }
  417. /** Append to <b>out</b> all circuits in state CHAN_WAIT waiting for
  418. * the given connection. */
  419. void
  420. circuit_get_all_pending_on_channel(smartlist_t *out, channel_t *chan)
  421. {
  422. tor_assert(out);
  423. tor_assert(chan);
  424. if (!circuits_pending_chans)
  425. return;
  426. SMARTLIST_FOREACH_BEGIN(circuits_pending_chans, circuit_t *, circ) {
  427. if (circ->marked_for_close)
  428. continue;
  429. if (!circ->n_hop)
  430. continue;
  431. tor_assert(circ->state == CIRCUIT_STATE_CHAN_WAIT);
  432. if (tor_digest_is_zero(circ->n_hop->identity_digest)) {
  433. /* Look at addr/port. This is an unkeyed connection. */
  434. if (!channel_matches_extend_info(chan, circ->n_hop))
  435. continue;
  436. } else {
  437. /* We expected a key. See if it's the right one. */
  438. if (tor_memneq(chan->identity_digest,
  439. circ->n_hop->identity_digest, DIGEST_LEN))
  440. continue;
  441. }
  442. smartlist_add(out, circ);
  443. } SMARTLIST_FOREACH_END(circ);
  444. }
  445. /** Return the number of circuits in state CHAN_WAIT, waiting for the given
  446. * channel. */
  447. int
  448. circuit_count_pending_on_channel(channel_t *chan)
  449. {
  450. int cnt;
  451. smartlist_t *sl = smartlist_new();
  452. tor_assert(chan);
  453. circuit_get_all_pending_on_channel(sl, chan);
  454. cnt = smartlist_len(sl);
  455. smartlist_free(sl);
  456. log_debug(LD_CIRC,"or_conn to %s at %s, %d pending circs",
  457. chan->nickname ? chan->nickname : "NULL",
  458. channel_get_canonical_remote_descr(chan),
  459. cnt);
  460. return cnt;
  461. }
  462. /** Detach from the global circuit list, and deallocate, all
  463. * circuits that have been marked for close.
  464. */
  465. void
  466. circuit_close_all_marked(void)
  467. {
  468. if (circuits_pending_close == NULL)
  469. return;
  470. smartlist_t *lst = circuit_get_global_list();
  471. SMARTLIST_FOREACH_BEGIN(circuits_pending_close, circuit_t *, circ) {
  472. tor_assert(circ->marked_for_close);
  473. /* Remove it from the circuit list. */
  474. int idx = circ->global_circuitlist_idx;
  475. smartlist_del(lst, idx);
  476. if (idx < smartlist_len(lst)) {
  477. circuit_t *replacement = smartlist_get(lst, idx);
  478. replacement->global_circuitlist_idx = idx;
  479. }
  480. circ->global_circuitlist_idx = -1;
  481. /* Remove it from the origin circuit list, if appropriate. */
  482. if (CIRCUIT_IS_ORIGIN(circ)) {
  483. origin_circuit_t *origin_circ = TO_ORIGIN_CIRCUIT(circ);
  484. int origin_idx = origin_circ->global_origin_circuit_list_idx;
  485. smartlist_del(global_origin_circuit_list, origin_idx);
  486. if (origin_idx < smartlist_len(global_origin_circuit_list)) {
  487. origin_circuit_t *replacement =
  488. smartlist_get(global_origin_circuit_list, origin_idx);
  489. replacement->global_origin_circuit_list_idx = origin_idx;
  490. }
  491. origin_circ->global_origin_circuit_list_idx = -1;
  492. }
  493. circuit_about_to_free(circ);
  494. circuit_free(circ);
  495. } SMARTLIST_FOREACH_END(circ);
  496. smartlist_clear(circuits_pending_close);
  497. }
  498. /** Return the head of the global linked list of circuits. */
  499. MOCK_IMPL(smartlist_t *,
  500. circuit_get_global_list,(void))
  501. {
  502. if (NULL == global_circuitlist)
  503. global_circuitlist = smartlist_new();
  504. return global_circuitlist;
  505. }
  506. /** Function to make circ-\>state human-readable */
  507. const char *
  508. circuit_state_to_string(int state)
  509. {
  510. static char buf[64];
  511. switch (state) {
  512. case CIRCUIT_STATE_BUILDING: return "doing handshakes";
  513. case CIRCUIT_STATE_ONIONSKIN_PENDING: return "processing the onion";
  514. case CIRCUIT_STATE_CHAN_WAIT: return "connecting to server";
  515. case CIRCUIT_STATE_GUARD_WAIT: return "waiting to see how other "
  516. "guards perform";
  517. case CIRCUIT_STATE_OPEN: return "open";
  518. default:
  519. log_warn(LD_BUG, "Unknown circuit state %d", state);
  520. tor_snprintf(buf, sizeof(buf), "unknown state [%d]", state);
  521. return buf;
  522. }
  523. }
  524. /** Map a circuit purpose to a string suitable to be displayed to a
  525. * controller. */
  526. const char *
  527. circuit_purpose_to_controller_string(uint8_t purpose)
  528. {
  529. static char buf[32];
  530. switch (purpose) {
  531. case CIRCUIT_PURPOSE_OR:
  532. case CIRCUIT_PURPOSE_INTRO_POINT:
  533. case CIRCUIT_PURPOSE_REND_POINT_WAITING:
  534. case CIRCUIT_PURPOSE_REND_ESTABLISHED:
  535. return "SERVER"; /* A controller should never see these, actually. */
  536. case CIRCUIT_PURPOSE_C_GENERAL:
  537. return "GENERAL";
  538. case CIRCUIT_PURPOSE_C_INTRODUCING:
  539. case CIRCUIT_PURPOSE_C_INTRODUCE_ACK_WAIT:
  540. case CIRCUIT_PURPOSE_C_INTRODUCE_ACKED:
  541. return "HS_CLIENT_INTRO";
  542. case CIRCUIT_PURPOSE_C_ESTABLISH_REND:
  543. case CIRCUIT_PURPOSE_C_REND_READY:
  544. case CIRCUIT_PURPOSE_C_REND_READY_INTRO_ACKED:
  545. case CIRCUIT_PURPOSE_C_REND_JOINED:
  546. return "HS_CLIENT_REND";
  547. case CIRCUIT_PURPOSE_S_ESTABLISH_INTRO:
  548. case CIRCUIT_PURPOSE_S_INTRO:
  549. return "HS_SERVICE_INTRO";
  550. case CIRCUIT_PURPOSE_S_CONNECT_REND:
  551. case CIRCUIT_PURPOSE_S_REND_JOINED:
  552. return "HS_SERVICE_REND";
  553. case CIRCUIT_PURPOSE_TESTING:
  554. return "TESTING";
  555. case CIRCUIT_PURPOSE_C_MEASURE_TIMEOUT:
  556. return "MEASURE_TIMEOUT";
  557. case CIRCUIT_PURPOSE_CONTROLLER:
  558. return "CONTROLLER";
  559. case CIRCUIT_PURPOSE_PATH_BIAS_TESTING:
  560. return "PATH_BIAS_TESTING";
  561. default:
  562. tor_snprintf(buf, sizeof(buf), "UNKNOWN_%d", (int)purpose);
  563. return buf;
  564. }
  565. }
  566. /** Return a string specifying the state of the hidden-service circuit
  567. * purpose <b>purpose</b>, or NULL if <b>purpose</b> is not a
  568. * hidden-service-related circuit purpose. */
  569. const char *
  570. circuit_purpose_to_controller_hs_state_string(uint8_t purpose)
  571. {
  572. switch (purpose)
  573. {
  574. default:
  575. log_fn(LOG_WARN, LD_BUG,
  576. "Unrecognized circuit purpose: %d",
  577. (int)purpose);
  578. tor_fragile_assert();
  579. /* fall through */
  580. case CIRCUIT_PURPOSE_OR:
  581. case CIRCUIT_PURPOSE_C_GENERAL:
  582. case CIRCUIT_PURPOSE_C_MEASURE_TIMEOUT:
  583. case CIRCUIT_PURPOSE_TESTING:
  584. case CIRCUIT_PURPOSE_CONTROLLER:
  585. case CIRCUIT_PURPOSE_PATH_BIAS_TESTING:
  586. return NULL;
  587. case CIRCUIT_PURPOSE_INTRO_POINT:
  588. return "OR_HSSI_ESTABLISHED";
  589. case CIRCUIT_PURPOSE_REND_POINT_WAITING:
  590. return "OR_HSCR_ESTABLISHED";
  591. case CIRCUIT_PURPOSE_REND_ESTABLISHED:
  592. return "OR_HS_R_JOINED";
  593. case CIRCUIT_PURPOSE_C_INTRODUCING:
  594. return "HSCI_CONNECTING";
  595. case CIRCUIT_PURPOSE_C_INTRODUCE_ACK_WAIT:
  596. return "HSCI_INTRO_SENT";
  597. case CIRCUIT_PURPOSE_C_INTRODUCE_ACKED:
  598. return "HSCI_DONE";
  599. case CIRCUIT_PURPOSE_C_ESTABLISH_REND:
  600. return "HSCR_CONNECTING";
  601. case CIRCUIT_PURPOSE_C_REND_READY:
  602. return "HSCR_ESTABLISHED_IDLE";
  603. case CIRCUIT_PURPOSE_C_REND_READY_INTRO_ACKED:
  604. return "HSCR_ESTABLISHED_WAITING";
  605. case CIRCUIT_PURPOSE_C_REND_JOINED:
  606. return "HSCR_JOINED";
  607. case CIRCUIT_PURPOSE_S_ESTABLISH_INTRO:
  608. return "HSSI_CONNECTING";
  609. case CIRCUIT_PURPOSE_S_INTRO:
  610. return "HSSI_ESTABLISHED";
  611. case CIRCUIT_PURPOSE_S_CONNECT_REND:
  612. return "HSSR_CONNECTING";
  613. case CIRCUIT_PURPOSE_S_REND_JOINED:
  614. return "HSSR_JOINED";
  615. }
  616. }
  617. /** Return a human-readable string for the circuit purpose <b>purpose</b>. */
  618. const char *
  619. circuit_purpose_to_string(uint8_t purpose)
  620. {
  621. static char buf[32];
  622. switch (purpose)
  623. {
  624. case CIRCUIT_PURPOSE_OR:
  625. return "Circuit at relay";
  626. case CIRCUIT_PURPOSE_INTRO_POINT:
  627. return "Acting as intro point";
  628. case CIRCUIT_PURPOSE_REND_POINT_WAITING:
  629. return "Acting as rendevous (pending)";
  630. case CIRCUIT_PURPOSE_REND_ESTABLISHED:
  631. return "Acting as rendevous (established)";
  632. case CIRCUIT_PURPOSE_C_GENERAL:
  633. return "General-purpose client";
  634. case CIRCUIT_PURPOSE_C_INTRODUCING:
  635. return "Hidden service client: Connecting to intro point";
  636. case CIRCUIT_PURPOSE_C_INTRODUCE_ACK_WAIT:
  637. return "Hidden service client: Waiting for ack from intro point";
  638. case CIRCUIT_PURPOSE_C_INTRODUCE_ACKED:
  639. return "Hidden service client: Received ack from intro point";
  640. case CIRCUIT_PURPOSE_C_ESTABLISH_REND:
  641. return "Hidden service client: Establishing rendezvous point";
  642. case CIRCUIT_PURPOSE_C_REND_READY:
  643. return "Hidden service client: Pending rendezvous point";
  644. case CIRCUIT_PURPOSE_C_REND_READY_INTRO_ACKED:
  645. return "Hidden service client: Pending rendezvous point (ack received)";
  646. case CIRCUIT_PURPOSE_C_REND_JOINED:
  647. return "Hidden service client: Active rendezvous point";
  648. case CIRCUIT_PURPOSE_C_MEASURE_TIMEOUT:
  649. return "Measuring circuit timeout";
  650. case CIRCUIT_PURPOSE_S_ESTABLISH_INTRO:
  651. return "Hidden service: Establishing introduction point";
  652. case CIRCUIT_PURPOSE_S_INTRO:
  653. return "Hidden service: Introduction point";
  654. case CIRCUIT_PURPOSE_S_CONNECT_REND:
  655. return "Hidden service: Connecting to rendezvous point";
  656. case CIRCUIT_PURPOSE_S_REND_JOINED:
  657. return "Hidden service: Active rendezvous point";
  658. case CIRCUIT_PURPOSE_TESTING:
  659. return "Testing circuit";
  660. case CIRCUIT_PURPOSE_CONTROLLER:
  661. return "Circuit made by controller";
  662. case CIRCUIT_PURPOSE_PATH_BIAS_TESTING:
  663. return "Path-bias testing circuit";
  664. default:
  665. tor_snprintf(buf, sizeof(buf), "UNKNOWN_%d", (int)purpose);
  666. return buf;
  667. }
  668. }
  669. /** Pick a reasonable package_window to start out for our circuits.
  670. * Originally this was hard-coded at 1000, but now the consensus votes
  671. * on the answer. See proposal 168. */
  672. int32_t
  673. circuit_initial_package_window(void)
  674. {
  675. int32_t num = networkstatus_get_param(NULL, "circwindow", CIRCWINDOW_START,
  676. CIRCWINDOW_START_MIN,
  677. CIRCWINDOW_START_MAX);
  678. /* If the consensus tells us a negative number, we'd assert. */
  679. if (num < 0)
  680. num = CIRCWINDOW_START;
  681. return num;
  682. }
  683. /** Initialize the common elements in a circuit_t, and add it to the global
  684. * list. */
  685. static void
  686. init_circuit_base(circuit_t *circ)
  687. {
  688. tor_gettimeofday(&circ->timestamp_created);
  689. // Gets reset when we send CREATE_FAST.
  690. // circuit_expire_building() expects these to be equal
  691. // until the orconn is built.
  692. circ->timestamp_began = circ->timestamp_created;
  693. circ->package_window = circuit_initial_package_window();
  694. circ->deliver_window = CIRCWINDOW_START;
  695. cell_queue_init(&circ->n_chan_cells);
  696. smartlist_add(circuit_get_global_list(), circ);
  697. circ->global_circuitlist_idx = smartlist_len(circuit_get_global_list()) - 1;
  698. }
  699. /** Allocate space for a new circuit, initializing with <b>p_circ_id</b>
  700. * and <b>p_conn</b>. Add it to the global circuit list.
  701. */
  702. origin_circuit_t *
  703. origin_circuit_new(void)
  704. {
  705. origin_circuit_t *circ;
  706. /* never zero, since a global ID of 0 is treated specially by the
  707. * controller */
  708. static uint32_t n_circuits_allocated = 1;
  709. circ = tor_malloc_zero(sizeof(origin_circuit_t));
  710. circ->base_.magic = ORIGIN_CIRCUIT_MAGIC;
  711. circ->next_stream_id = crypto_rand_int(1<<16);
  712. circ->global_identifier = n_circuits_allocated++;
  713. circ->remaining_relay_early_cells = MAX_RELAY_EARLY_CELLS_PER_CIRCUIT;
  714. circ->remaining_relay_early_cells -= crypto_rand_int(2);
  715. init_circuit_base(TO_CIRCUIT(circ));
  716. /* Add to origin-list. */
  717. if (!global_origin_circuit_list)
  718. global_origin_circuit_list = smartlist_new();
  719. smartlist_add(global_origin_circuit_list, circ);
  720. circ->global_origin_circuit_list_idx =
  721. smartlist_len(global_origin_circuit_list) - 1;
  722. circuit_build_times_update_last_circ(get_circuit_build_times_mutable());
  723. return circ;
  724. }
  725. /** Allocate a new or_circuit_t, connected to <b>p_chan</b> as
  726. * <b>p_circ_id</b>. If <b>p_chan</b> is NULL, the circuit is unattached. */
  727. or_circuit_t *
  728. or_circuit_new(circid_t p_circ_id, channel_t *p_chan)
  729. {
  730. /* CircIDs */
  731. or_circuit_t *circ;
  732. circ = tor_malloc_zero(sizeof(or_circuit_t));
  733. circ->base_.magic = OR_CIRCUIT_MAGIC;
  734. if (p_chan)
  735. circuit_set_p_circid_chan(circ, p_circ_id, p_chan);
  736. circ->remaining_relay_early_cells = MAX_RELAY_EARLY_CELLS_PER_CIRCUIT;
  737. cell_queue_init(&circ->p_chan_cells);
  738. init_circuit_base(TO_CIRCUIT(circ));
  739. return circ;
  740. }
  741. /** Free all storage held in circ->testing_cell_stats */
  742. void
  743. circuit_clear_testing_cell_stats(circuit_t *circ)
  744. {
  745. if (!circ || !circ->testing_cell_stats)
  746. return;
  747. SMARTLIST_FOREACH(circ->testing_cell_stats, testing_cell_stats_entry_t *,
  748. ent, tor_free(ent));
  749. smartlist_free(circ->testing_cell_stats);
  750. circ->testing_cell_stats = NULL;
  751. }
  752. /** Deallocate space associated with circ.
  753. */
  754. STATIC void
  755. circuit_free(circuit_t *circ)
  756. {
  757. void *mem;
  758. size_t memlen;
  759. int should_free = 1;
  760. if (!circ)
  761. return;
  762. circuit_clear_testing_cell_stats(circ);
  763. if (CIRCUIT_IS_ORIGIN(circ)) {
  764. origin_circuit_t *ocirc = TO_ORIGIN_CIRCUIT(circ);
  765. mem = ocirc;
  766. memlen = sizeof(origin_circuit_t);
  767. tor_assert(circ->magic == ORIGIN_CIRCUIT_MAGIC);
  768. if (ocirc->global_origin_circuit_list_idx != -1) {
  769. int idx = ocirc->global_origin_circuit_list_idx;
  770. origin_circuit_t *c2 = smartlist_get(global_origin_circuit_list, idx);
  771. tor_assert(c2 == ocirc);
  772. smartlist_del(global_origin_circuit_list, idx);
  773. if (idx < smartlist_len(global_origin_circuit_list)) {
  774. c2 = smartlist_get(global_origin_circuit_list, idx);
  775. c2->global_origin_circuit_list_idx = idx;
  776. }
  777. }
  778. if (ocirc->build_state) {
  779. extend_info_free(ocirc->build_state->chosen_exit);
  780. circuit_free_cpath_node(ocirc->build_state->pending_final_cpath);
  781. cpath_ref_decref(ocirc->build_state->service_pending_final_cpath_ref);
  782. }
  783. tor_free(ocirc->build_state);
  784. /* Cancel before freeing, if we haven't already succeeded or failed. */
  785. if (ocirc->guard_state) {
  786. entry_guard_cancel(get_guard_selection_info(), &ocirc->guard_state);
  787. }
  788. circuit_guard_state_free(ocirc->guard_state);
  789. circuit_clear_cpath(ocirc);
  790. crypto_pk_free(ocirc->intro_key);
  791. rend_data_free(ocirc->rend_data);
  792. tor_free(ocirc->dest_address);
  793. if (ocirc->socks_username) {
  794. memwipe(ocirc->socks_username, 0x12, ocirc->socks_username_len);
  795. tor_free(ocirc->socks_username);
  796. }
  797. if (ocirc->socks_password) {
  798. memwipe(ocirc->socks_password, 0x06, ocirc->socks_password_len);
  799. tor_free(ocirc->socks_password);
  800. }
  801. addr_policy_list_free(ocirc->prepend_policy);
  802. } else {
  803. or_circuit_t *ocirc = TO_OR_CIRCUIT(circ);
  804. /* Remember cell statistics for this circuit before deallocating. */
  805. if (get_options()->CellStatistics)
  806. rep_hist_buffer_stats_add_circ(circ, time(NULL));
  807. mem = ocirc;
  808. memlen = sizeof(or_circuit_t);
  809. tor_assert(circ->magic == OR_CIRCUIT_MAGIC);
  810. should_free = (ocirc->workqueue_entry == NULL);
  811. crypto_cipher_free(ocirc->p_crypto);
  812. crypto_digest_free(ocirc->p_digest);
  813. crypto_cipher_free(ocirc->n_crypto);
  814. crypto_digest_free(ocirc->n_digest);
  815. circuit_clear_rend_token(ocirc);
  816. if (ocirc->rend_splice) {
  817. or_circuit_t *other = ocirc->rend_splice;
  818. tor_assert(other->base_.magic == OR_CIRCUIT_MAGIC);
  819. other->rend_splice = NULL;
  820. }
  821. /* remove from map. */
  822. circuit_set_p_circid_chan(ocirc, 0, NULL);
  823. /* Clear cell queue _after_ removing it from the map. Otherwise our
  824. * "active" checks will be violated. */
  825. cell_queue_clear(&ocirc->p_chan_cells);
  826. }
  827. extend_info_free(circ->n_hop);
  828. tor_free(circ->n_chan_create_cell);
  829. if (circ->global_circuitlist_idx != -1) {
  830. int idx = circ->global_circuitlist_idx;
  831. circuit_t *c2 = smartlist_get(global_circuitlist, idx);
  832. tor_assert(c2 == circ);
  833. smartlist_del(global_circuitlist, idx);
  834. if (idx < smartlist_len(global_circuitlist)) {
  835. c2 = smartlist_get(global_circuitlist, idx);
  836. c2->global_circuitlist_idx = idx;
  837. }
  838. }
  839. /* Remove from map. */
  840. circuit_set_n_circid_chan(circ, 0, NULL);
  841. /* Clear cell queue _after_ removing it from the map. Otherwise our
  842. * "active" checks will be violated. */
  843. cell_queue_clear(&circ->n_chan_cells);
  844. if (should_free) {
  845. memwipe(mem, 0xAA, memlen); /* poison memory */
  846. tor_free(mem);
  847. } else {
  848. /* If we made it here, this is an or_circuit_t that still has a pending
  849. * cpuworker request which we weren't able to cancel. Instead, set up
  850. * the magic value so that when the reply comes back, we'll know to discard
  851. * the reply and free this structure.
  852. */
  853. memwipe(mem, 0xAA, memlen);
  854. circ->magic = DEAD_CIRCUIT_MAGIC;
  855. }
  856. }
  857. /** Deallocate the linked list circ-><b>cpath</b>, and remove the cpath from
  858. * <b>circ</b>. */
  859. void
  860. circuit_clear_cpath(origin_circuit_t *circ)
  861. {
  862. crypt_path_t *victim, *head, *cpath;
  863. head = cpath = circ->cpath;
  864. if (!cpath)
  865. return;
  866. /* it's a circular list, so we have to notice when we've
  867. * gone through it once. */
  868. while (cpath->next && cpath->next != head) {
  869. victim = cpath;
  870. cpath = victim->next;
  871. circuit_free_cpath_node(victim);
  872. }
  873. circuit_free_cpath_node(cpath);
  874. circ->cpath = NULL;
  875. }
  876. /** Release all storage held by circuits. */
  877. void
  878. circuit_free_all(void)
  879. {
  880. smartlist_t *lst = circuit_get_global_list();
  881. SMARTLIST_FOREACH_BEGIN(lst, circuit_t *, tmp) {
  882. if (! CIRCUIT_IS_ORIGIN(tmp)) {
  883. or_circuit_t *or_circ = TO_OR_CIRCUIT(tmp);
  884. while (or_circ->resolving_streams) {
  885. edge_connection_t *next_conn;
  886. next_conn = or_circ->resolving_streams->next_stream;
  887. connection_free(TO_CONN(or_circ->resolving_streams));
  888. or_circ->resolving_streams = next_conn;
  889. }
  890. }
  891. tmp->global_circuitlist_idx = -1;
  892. circuit_about_to_free_atexit(tmp);
  893. circuit_free(tmp);
  894. SMARTLIST_DEL_CURRENT(lst, tmp);
  895. } SMARTLIST_FOREACH_END(tmp);
  896. smartlist_free(lst);
  897. global_circuitlist = NULL;
  898. smartlist_free(global_origin_circuit_list);
  899. global_origin_circuit_list = NULL;
  900. smartlist_free(circuits_pending_chans);
  901. circuits_pending_chans = NULL;
  902. smartlist_free(circuits_pending_close);
  903. circuits_pending_close = NULL;
  904. smartlist_free(circuits_pending_other_guards);
  905. circuits_pending_other_guards = NULL;
  906. {
  907. chan_circid_circuit_map_t **elt, **next, *c;
  908. for (elt = HT_START(chan_circid_map, &chan_circid_map);
  909. elt;
  910. elt = next) {
  911. c = *elt;
  912. next = HT_NEXT_RMV(chan_circid_map, &chan_circid_map, elt);
  913. tor_assert(c->circuit == NULL);
  914. tor_free(c);
  915. }
  916. }
  917. HT_CLEAR(chan_circid_map, &chan_circid_map);
  918. }
  919. /** Deallocate space associated with the cpath node <b>victim</b>. */
  920. static void
  921. circuit_free_cpath_node(crypt_path_t *victim)
  922. {
  923. if (!victim)
  924. return;
  925. crypto_cipher_free(victim->f_crypto);
  926. crypto_cipher_free(victim->b_crypto);
  927. crypto_digest_free(victim->f_digest);
  928. crypto_digest_free(victim->b_digest);
  929. onion_handshake_state_release(&victim->handshake_state);
  930. crypto_dh_free(victim->rend_dh_handshake_state);
  931. extend_info_free(victim->extend_info);
  932. memwipe(victim, 0xBB, sizeof(crypt_path_t)); /* poison memory */
  933. tor_free(victim);
  934. }
  935. /** Release a crypt_path_reference_t*, which may be NULL. */
  936. static void
  937. cpath_ref_decref(crypt_path_reference_t *cpath_ref)
  938. {
  939. if (cpath_ref != NULL) {
  940. if (--(cpath_ref->refcount) == 0) {
  941. circuit_free_cpath_node(cpath_ref->cpath);
  942. tor_free(cpath_ref);
  943. }
  944. }
  945. }
  946. /** A helper function for circuit_dump_by_conn() below. Log a bunch
  947. * of information about circuit <b>circ</b>.
  948. */
  949. static void
  950. circuit_dump_conn_details(int severity,
  951. circuit_t *circ,
  952. int conn_array_index,
  953. const char *type,
  954. circid_t this_circid,
  955. circid_t other_circid)
  956. {
  957. tor_log(severity, LD_CIRC, "Conn %d has %s circuit: circID %u "
  958. "(other side %u), state %d (%s), born %ld:",
  959. conn_array_index, type, (unsigned)this_circid, (unsigned)other_circid,
  960. circ->state, circuit_state_to_string(circ->state),
  961. (long)circ->timestamp_began.tv_sec);
  962. if (CIRCUIT_IS_ORIGIN(circ)) { /* circ starts at this node */
  963. circuit_log_path(severity, LD_CIRC, TO_ORIGIN_CIRCUIT(circ));
  964. }
  965. }
  966. /** Log, at severity <b>severity</b>, information about each circuit
  967. * that is connected to <b>conn</b>.
  968. */
  969. void
  970. circuit_dump_by_conn(connection_t *conn, int severity)
  971. {
  972. edge_connection_t *tmpconn;
  973. SMARTLIST_FOREACH_BEGIN(circuit_get_global_list(), circuit_t *, circ) {
  974. circid_t n_circ_id = circ->n_circ_id, p_circ_id = 0;
  975. if (circ->marked_for_close) {
  976. continue;
  977. }
  978. if (!CIRCUIT_IS_ORIGIN(circ)) {
  979. p_circ_id = TO_OR_CIRCUIT(circ)->p_circ_id;
  980. }
  981. if (CIRCUIT_IS_ORIGIN(circ)) {
  982. for (tmpconn=TO_ORIGIN_CIRCUIT(circ)->p_streams; tmpconn;
  983. tmpconn=tmpconn->next_stream) {
  984. if (TO_CONN(tmpconn) == conn) {
  985. circuit_dump_conn_details(severity, circ, conn->conn_array_index,
  986. "App-ward", p_circ_id, n_circ_id);
  987. }
  988. }
  989. }
  990. if (! CIRCUIT_IS_ORIGIN(circ)) {
  991. for (tmpconn=TO_OR_CIRCUIT(circ)->n_streams; tmpconn;
  992. tmpconn=tmpconn->next_stream) {
  993. if (TO_CONN(tmpconn) == conn) {
  994. circuit_dump_conn_details(severity, circ, conn->conn_array_index,
  995. "Exit-ward", n_circ_id, p_circ_id);
  996. }
  997. }
  998. }
  999. }
  1000. SMARTLIST_FOREACH_END(circ);
  1001. }
  1002. /** Return the circuit whose global ID is <b>id</b>, or NULL if no
  1003. * such circuit exists. */
  1004. origin_circuit_t *
  1005. circuit_get_by_global_id(uint32_t id)
  1006. {
  1007. SMARTLIST_FOREACH_BEGIN(circuit_get_global_list(), circuit_t *, circ) {
  1008. if (CIRCUIT_IS_ORIGIN(circ) &&
  1009. TO_ORIGIN_CIRCUIT(circ)->global_identifier == id) {
  1010. if (circ->marked_for_close)
  1011. return NULL;
  1012. else
  1013. return TO_ORIGIN_CIRCUIT(circ);
  1014. }
  1015. }
  1016. SMARTLIST_FOREACH_END(circ);
  1017. return NULL;
  1018. }
  1019. /** Return a circ such that:
  1020. * - circ-\>n_circ_id or circ-\>p_circ_id is equal to <b>circ_id</b>, and
  1021. * - circ is attached to <b>chan</b>, either as p_chan or n_chan.
  1022. * Return NULL if no such circuit exists.
  1023. *
  1024. * If <b>found_entry_out</b> is provided, set it to true if we have a
  1025. * placeholder entry for circid/chan, and leave it unset otherwise.
  1026. */
  1027. static inline circuit_t *
  1028. circuit_get_by_circid_channel_impl(circid_t circ_id, channel_t *chan,
  1029. int *found_entry_out)
  1030. {
  1031. chan_circid_circuit_map_t search;
  1032. chan_circid_circuit_map_t *found;
  1033. if (_last_circid_chan_ent &&
  1034. circ_id == _last_circid_chan_ent->circ_id &&
  1035. chan == _last_circid_chan_ent->chan) {
  1036. found = _last_circid_chan_ent;
  1037. } else {
  1038. search.circ_id = circ_id;
  1039. search.chan = chan;
  1040. found = HT_FIND(chan_circid_map, &chan_circid_map, &search);
  1041. _last_circid_chan_ent = found;
  1042. }
  1043. if (found && found->circuit) {
  1044. log_debug(LD_CIRC,
  1045. "circuit_get_by_circid_channel_impl() returning circuit %p for"
  1046. " circ_id %u, channel ID " U64_FORMAT " (%p)",
  1047. found->circuit, (unsigned)circ_id,
  1048. U64_PRINTF_ARG(chan->global_identifier), chan);
  1049. if (found_entry_out)
  1050. *found_entry_out = 1;
  1051. return found->circuit;
  1052. }
  1053. log_debug(LD_CIRC,
  1054. "circuit_get_by_circid_channel_impl() found %s for"
  1055. " circ_id %u, channel ID " U64_FORMAT " (%p)",
  1056. found ? "placeholder" : "nothing",
  1057. (unsigned)circ_id,
  1058. U64_PRINTF_ARG(chan->global_identifier), chan);
  1059. if (found_entry_out)
  1060. *found_entry_out = found ? 1 : 0;
  1061. return NULL;
  1062. /* The rest of this checks for bugs. Disabled by default. */
  1063. /* We comment it out because coverity complains otherwise.
  1064. {
  1065. circuit_t *circ;
  1066. TOR_LIST_FOREACH(circ, &global_circuitlist, head) {
  1067. if (! CIRCUIT_IS_ORIGIN(circ)) {
  1068. or_circuit_t *or_circ = TO_OR_CIRCUIT(circ);
  1069. if (or_circ->p_chan == chan && or_circ->p_circ_id == circ_id) {
  1070. log_warn(LD_BUG,
  1071. "circuit matches p_chan, but not in hash table (Bug!)");
  1072. return circ;
  1073. }
  1074. }
  1075. if (circ->n_chan == chan && circ->n_circ_id == circ_id) {
  1076. log_warn(LD_BUG,
  1077. "circuit matches n_chan, but not in hash table (Bug!)");
  1078. return circ;
  1079. }
  1080. }
  1081. return NULL;
  1082. } */
  1083. }
  1084. /** Return a circ such that:
  1085. * - circ-\>n_circ_id or circ-\>p_circ_id is equal to <b>circ_id</b>, and
  1086. * - circ is attached to <b>chan</b>, either as p_chan or n_chan.
  1087. * - circ is not marked for close.
  1088. * Return NULL if no such circuit exists.
  1089. */
  1090. circuit_t *
  1091. circuit_get_by_circid_channel(circid_t circ_id, channel_t *chan)
  1092. {
  1093. circuit_t *circ = circuit_get_by_circid_channel_impl(circ_id, chan, NULL);
  1094. if (!circ || circ->marked_for_close)
  1095. return NULL;
  1096. else
  1097. return circ;
  1098. }
  1099. /** Return a circ such that:
  1100. * - circ-\>n_circ_id or circ-\>p_circ_id is equal to <b>circ_id</b>, and
  1101. * - circ is attached to <b>chan</b>, either as p_chan or n_chan.
  1102. * Return NULL if no such circuit exists.
  1103. */
  1104. circuit_t *
  1105. circuit_get_by_circid_channel_even_if_marked(circid_t circ_id,
  1106. channel_t *chan)
  1107. {
  1108. return circuit_get_by_circid_channel_impl(circ_id, chan, NULL);
  1109. }
  1110. /** Return true iff the circuit ID <b>circ_id</b> is currently used by a
  1111. * circuit, marked or not, on <b>chan</b>, or if the circ ID is reserved until
  1112. * a queued destroy cell can be sent.
  1113. *
  1114. * (Return 1 if the circuit is present, marked or not; Return 2
  1115. * if the circuit ID is pending a destroy.)
  1116. **/
  1117. int
  1118. circuit_id_in_use_on_channel(circid_t circ_id, channel_t *chan)
  1119. {
  1120. int found = 0;
  1121. if (circuit_get_by_circid_channel_impl(circ_id, chan, &found) != NULL)
  1122. return 1;
  1123. if (found)
  1124. return 2;
  1125. return 0;
  1126. }
  1127. /** Helper for debugging 12184. Returns the time since which 'circ_id' has
  1128. * been marked unusable on 'chan'. */
  1129. time_t
  1130. circuit_id_when_marked_unusable_on_channel(circid_t circ_id, channel_t *chan)
  1131. {
  1132. chan_circid_circuit_map_t search;
  1133. chan_circid_circuit_map_t *found;
  1134. memset(&search, 0, sizeof(search));
  1135. search.circ_id = circ_id;
  1136. search.chan = chan;
  1137. found = HT_FIND(chan_circid_map, &chan_circid_map, &search);
  1138. if (! found || found->circuit)
  1139. return 0;
  1140. return found->made_placeholder_at;
  1141. }
  1142. /** Return the circuit that a given edge connection is using. */
  1143. circuit_t *
  1144. circuit_get_by_edge_conn(edge_connection_t *conn)
  1145. {
  1146. circuit_t *circ;
  1147. circ = conn->on_circuit;
  1148. tor_assert(!circ ||
  1149. (CIRCUIT_IS_ORIGIN(circ) ? circ->magic == ORIGIN_CIRCUIT_MAGIC
  1150. : circ->magic == OR_CIRCUIT_MAGIC));
  1151. return circ;
  1152. }
  1153. /** For each circuit that has <b>chan</b> as n_chan or p_chan, unlink the
  1154. * circuit from the chan,circid map, and mark it for close if it hasn't
  1155. * been marked already.
  1156. */
  1157. void
  1158. circuit_unlink_all_from_channel(channel_t *chan, int reason)
  1159. {
  1160. smartlist_t *detached = smartlist_new();
  1161. /* #define DEBUG_CIRCUIT_UNLINK_ALL */
  1162. channel_unlink_all_circuits(chan, detached);
  1163. #ifdef DEBUG_CIRCUIT_UNLINK_ALL
  1164. {
  1165. smartlist_t *detached_2 = smartlist_new();
  1166. int mismatch = 0, badlen = 0;
  1167. SMARTLIST_FOREACH_BEGIN(circuit_get_global_list(), circuit_t *, circ) {
  1168. if (circ->n_chan == chan ||
  1169. (!CIRCUIT_IS_ORIGIN(circ) &&
  1170. TO_OR_CIRCUIT(circ)->p_chan == chan)) {
  1171. smartlist_add(detached_2, circ);
  1172. }
  1173. }
  1174. SMARTLIST_FOREACH_END(circ);
  1175. if (smartlist_len(detached) != smartlist_len(detached_2)) {
  1176. log_warn(LD_BUG, "List of detached circuits had the wrong length! "
  1177. "(got %d, should have gotten %d)",
  1178. (int)smartlist_len(detached),
  1179. (int)smartlist_len(detached_2));
  1180. badlen = 1;
  1181. }
  1182. smartlist_sort_pointers(detached);
  1183. smartlist_sort_pointers(detached_2);
  1184. SMARTLIST_FOREACH(detached, circuit_t *, c,
  1185. if (c != smartlist_get(detached_2, c_sl_idx))
  1186. mismatch = 1;
  1187. );
  1188. if (mismatch)
  1189. log_warn(LD_BUG, "Mismatch in list of detached circuits.");
  1190. if (badlen || mismatch) {
  1191. smartlist_free(detached);
  1192. detached = detached_2;
  1193. } else {
  1194. log_notice(LD_CIRC, "List of %d circuits was as expected.",
  1195. (int)smartlist_len(detached));
  1196. smartlist_free(detached_2);
  1197. }
  1198. }
  1199. #endif
  1200. SMARTLIST_FOREACH_BEGIN(detached, circuit_t *, circ) {
  1201. int mark = 0;
  1202. if (circ->n_chan == chan) {
  1203. circuit_set_n_circid_chan(circ, 0, NULL);
  1204. mark = 1;
  1205. /* If we didn't request this closure, pass the remote
  1206. * bit to mark_for_close. */
  1207. if (chan->reason_for_closing != CHANNEL_CLOSE_REQUESTED)
  1208. reason |= END_CIRC_REASON_FLAG_REMOTE;
  1209. }
  1210. if (! CIRCUIT_IS_ORIGIN(circ)) {
  1211. or_circuit_t *or_circ = TO_OR_CIRCUIT(circ);
  1212. if (or_circ->p_chan == chan) {
  1213. circuit_set_p_circid_chan(or_circ, 0, NULL);
  1214. mark = 1;
  1215. }
  1216. }
  1217. if (!mark) {
  1218. log_warn(LD_BUG, "Circuit on detached list which I had no reason "
  1219. "to mark");
  1220. continue;
  1221. }
  1222. if (!circ->marked_for_close)
  1223. circuit_mark_for_close(circ, reason);
  1224. } SMARTLIST_FOREACH_END(circ);
  1225. smartlist_free(detached);
  1226. }
  1227. /** Return a circ such that
  1228. * - circ-\>rend_data-\>onion_address is equal to
  1229. * <b>rend_data</b>-\>onion_address,
  1230. * - circ-\>rend_data-\>rend_cookie is equal to
  1231. * <b>rend_data</b>-\>rend_cookie, and
  1232. * - circ-\>purpose is equal to CIRCUIT_PURPOSE_C_REND_READY.
  1233. *
  1234. * Return NULL if no such circuit exists.
  1235. */
  1236. origin_circuit_t *
  1237. circuit_get_ready_rend_circ_by_rend_data(const rend_data_t *rend_data)
  1238. {
  1239. SMARTLIST_FOREACH_BEGIN(circuit_get_global_list(), circuit_t *, circ) {
  1240. if (!circ->marked_for_close &&
  1241. circ->purpose == CIRCUIT_PURPOSE_C_REND_READY) {
  1242. origin_circuit_t *ocirc = TO_ORIGIN_CIRCUIT(circ);
  1243. if (ocirc->rend_data == NULL) {
  1244. continue;
  1245. }
  1246. if (!rend_cmp_service_ids(rend_data_get_address(rend_data),
  1247. rend_data_get_address(ocirc->rend_data)) &&
  1248. tor_memeq(ocirc->rend_data->rend_cookie,
  1249. rend_data->rend_cookie,
  1250. REND_COOKIE_LEN))
  1251. return ocirc;
  1252. }
  1253. }
  1254. SMARTLIST_FOREACH_END(circ);
  1255. return NULL;
  1256. }
  1257. /** Return the first circuit originating here in global_circuitlist after
  1258. * <b>start</b> whose purpose is <b>purpose</b>, and where <b>digest</b> (if
  1259. * set) matches the private key digest of the rend data associated with the
  1260. * circuit. Return NULL if no circuit is found. If <b>start</b> is NULL,
  1261. * begin at the start of the list.
  1262. */
  1263. origin_circuit_t *
  1264. circuit_get_next_by_pk_and_purpose(origin_circuit_t *start,
  1265. const uint8_t *digest, uint8_t purpose)
  1266. {
  1267. int idx;
  1268. smartlist_t *lst = circuit_get_global_list();
  1269. tor_assert(CIRCUIT_PURPOSE_IS_ORIGIN(purpose));
  1270. if (start == NULL)
  1271. idx = 0;
  1272. else
  1273. idx = TO_CIRCUIT(start)->global_circuitlist_idx + 1;
  1274. for ( ; idx < smartlist_len(lst); ++idx) {
  1275. circuit_t *circ = smartlist_get(lst, idx);
  1276. origin_circuit_t *ocirc;
  1277. if (circ->marked_for_close)
  1278. continue;
  1279. if (circ->purpose != purpose)
  1280. continue;
  1281. /* At this point we should be able to get a valid origin circuit because
  1282. * the origin purpose we are looking for matches this circuit. */
  1283. if (BUG(!CIRCUIT_PURPOSE_IS_ORIGIN(circ->purpose))) {
  1284. break;
  1285. }
  1286. ocirc = TO_ORIGIN_CIRCUIT(circ);
  1287. if (!digest)
  1288. return ocirc;
  1289. if (rend_circuit_pk_digest_eq(ocirc, digest)) {
  1290. return ocirc;
  1291. }
  1292. }
  1293. return NULL;
  1294. }
  1295. /** Map from rendezvous cookie to or_circuit_t */
  1296. static digestmap_t *rend_cookie_map = NULL;
  1297. /** Map from introduction point digest to or_circuit_t */
  1298. static digestmap_t *intro_digest_map = NULL;
  1299. /** Return the OR circuit whose purpose is <b>purpose</b>, and whose
  1300. * rend_token is the REND_TOKEN_LEN-byte <b>token</b>. If <b>is_rend_circ</b>,
  1301. * look for rendezvous point circuits; otherwise look for introduction point
  1302. * circuits. */
  1303. static or_circuit_t *
  1304. circuit_get_by_rend_token_and_purpose(uint8_t purpose, int is_rend_circ,
  1305. const char *token)
  1306. {
  1307. or_circuit_t *circ;
  1308. digestmap_t *map = is_rend_circ ? rend_cookie_map : intro_digest_map;
  1309. if (!map)
  1310. return NULL;
  1311. circ = digestmap_get(map, token);
  1312. if (!circ ||
  1313. circ->base_.purpose != purpose ||
  1314. circ->base_.marked_for_close)
  1315. return NULL;
  1316. if (!circ->rendinfo) {
  1317. char *t = tor_strdup(hex_str(token, REND_TOKEN_LEN));
  1318. log_warn(LD_BUG, "Wanted a circuit with %s:%d, but lookup returned a "
  1319. "circuit with no rendinfo set.",
  1320. safe_str(t), is_rend_circ);
  1321. tor_free(t);
  1322. return NULL;
  1323. }
  1324. if (! bool_eq(circ->rendinfo->is_rend_circ, is_rend_circ) ||
  1325. tor_memneq(circ->rendinfo->rend_token, token, REND_TOKEN_LEN)) {
  1326. char *t = tor_strdup(hex_str(token, REND_TOKEN_LEN));
  1327. log_warn(LD_BUG, "Wanted a circuit with %s:%d, but lookup returned %s:%d",
  1328. safe_str(t), is_rend_circ,
  1329. safe_str(hex_str(circ->rendinfo->rend_token, REND_TOKEN_LEN)),
  1330. (int)circ->rendinfo->is_rend_circ);
  1331. tor_free(t);
  1332. return NULL;
  1333. }
  1334. return circ;
  1335. }
  1336. /** Clear the rendezvous cookie or introduction point key digest that's
  1337. * configured on <b>circ</b>, if any, and remove it from any such maps. */
  1338. static void
  1339. circuit_clear_rend_token(or_circuit_t *circ)
  1340. {
  1341. or_circuit_t *found_circ;
  1342. digestmap_t *map;
  1343. if (!circ || !circ->rendinfo)
  1344. return;
  1345. map = circ->rendinfo->is_rend_circ ? rend_cookie_map : intro_digest_map;
  1346. if (!map) {
  1347. log_warn(LD_BUG, "Tried to clear rend token on circuit, but found no map");
  1348. return;
  1349. }
  1350. found_circ = digestmap_get(map, circ->rendinfo->rend_token);
  1351. if (found_circ == circ) {
  1352. /* Great, this is the right one. */
  1353. digestmap_remove(map, circ->rendinfo->rend_token);
  1354. } else if (found_circ) {
  1355. log_warn(LD_BUG, "Tried to clear rend token on circuit, but "
  1356. "it was already replaced in the map.");
  1357. } else {
  1358. log_warn(LD_BUG, "Tried to clear rend token on circuit, but "
  1359. "it not in the map at all.");
  1360. }
  1361. tor_free(circ->rendinfo); /* Sets it to NULL too */
  1362. }
  1363. /** Set the rendezvous cookie (if is_rend_circ), or the introduction point
  1364. * digest (if ! is_rend_circ) of <b>circ</b> to the REND_TOKEN_LEN-byte value
  1365. * in <b>token</b>, and add it to the appropriate map. If it previously had a
  1366. * token, clear it. If another circuit previously had the same
  1367. * cookie/intro-digest, mark that circuit and remove it from the map. */
  1368. static void
  1369. circuit_set_rend_token(or_circuit_t *circ, int is_rend_circ,
  1370. const uint8_t *token)
  1371. {
  1372. digestmap_t **map_p, *map;
  1373. or_circuit_t *found_circ;
  1374. /* Find the right map, creating it as needed */
  1375. map_p = is_rend_circ ? &rend_cookie_map : &intro_digest_map;
  1376. if (!*map_p)
  1377. *map_p = digestmap_new();
  1378. map = *map_p;
  1379. /* If this circuit already has a token, we need to remove that. */
  1380. if (circ->rendinfo)
  1381. circuit_clear_rend_token(circ);
  1382. if (token == NULL) {
  1383. /* We were only trying to remove this token, not set a new one. */
  1384. return;
  1385. }
  1386. found_circ = digestmap_get(map, (const char *)token);
  1387. if (found_circ) {
  1388. tor_assert(found_circ != circ);
  1389. circuit_clear_rend_token(found_circ);
  1390. if (! found_circ->base_.marked_for_close) {
  1391. circuit_mark_for_close(TO_CIRCUIT(found_circ), END_CIRC_REASON_FINISHED);
  1392. if (is_rend_circ) {
  1393. log_fn(LOG_PROTOCOL_WARN, LD_REND,
  1394. "Duplicate rendezvous cookie (%s...) used on two circuits",
  1395. hex_str((const char*)token, 4)); /* only log first 4 chars */
  1396. }
  1397. }
  1398. }
  1399. /* Now set up the rendinfo */
  1400. circ->rendinfo = tor_malloc(sizeof(*circ->rendinfo));
  1401. memcpy(circ->rendinfo->rend_token, token, REND_TOKEN_LEN);
  1402. circ->rendinfo->is_rend_circ = is_rend_circ ? 1 : 0;
  1403. digestmap_set(map, (const char *)token, circ);
  1404. }
  1405. /** Return the circuit waiting for a rendezvous with the provided cookie.
  1406. * Return NULL if no such circuit is found.
  1407. */
  1408. or_circuit_t *
  1409. circuit_get_rendezvous(const uint8_t *cookie)
  1410. {
  1411. return circuit_get_by_rend_token_and_purpose(
  1412. CIRCUIT_PURPOSE_REND_POINT_WAITING,
  1413. 1, (const char*)cookie);
  1414. }
  1415. /** Return the circuit waiting for intro cells of the given digest.
  1416. * Return NULL if no such circuit is found.
  1417. */
  1418. or_circuit_t *
  1419. circuit_get_intro_point(const uint8_t *digest)
  1420. {
  1421. return circuit_get_by_rend_token_and_purpose(
  1422. CIRCUIT_PURPOSE_INTRO_POINT, 0,
  1423. (const char *)digest);
  1424. }
  1425. /** Set the rendezvous cookie of <b>circ</b> to <b>cookie</b>. If another
  1426. * circuit previously had that cookie, mark it. */
  1427. void
  1428. circuit_set_rendezvous_cookie(or_circuit_t *circ, const uint8_t *cookie)
  1429. {
  1430. circuit_set_rend_token(circ, 1, cookie);
  1431. }
  1432. /** Set the intro point key digest of <b>circ</b> to <b>cookie</b>. If another
  1433. * circuit previously had that intro point digest, mark it. */
  1434. void
  1435. circuit_set_intro_point_digest(or_circuit_t *circ, const uint8_t *digest)
  1436. {
  1437. circuit_set_rend_token(circ, 0, digest);
  1438. }
  1439. /** Return a circuit that is open, is CIRCUIT_PURPOSE_C_GENERAL,
  1440. * has a timestamp_dirty value of 0, has flags matching the CIRCLAUNCH_*
  1441. * flags in <b>flags</b>, and if info is defined, does not already use info
  1442. * as any of its hops; or NULL if no circuit fits this description.
  1443. *
  1444. * The <b>purpose</b> argument (currently ignored) refers to the purpose of
  1445. * the circuit we want to create, not the purpose of the circuit we want to
  1446. * cannibalize.
  1447. *
  1448. * If !CIRCLAUNCH_NEED_UPTIME, prefer returning non-uptime circuits.
  1449. *
  1450. * To "cannibalize" a circuit means to extend it an extra hop, and use it
  1451. * for some other purpose than we had originally intended. We do this when
  1452. * we want to perform some low-bandwidth task at a specific relay, and we
  1453. * would like the circuit to complete as soon as possible. (If we were going
  1454. * to use a lot of bandwidth, we wouldn't want a circuit with an extra hop.
  1455. * If we didn't care about circuit completion latency, we would just build
  1456. * a new circuit.)
  1457. */
  1458. origin_circuit_t *
  1459. circuit_find_to_cannibalize(uint8_t purpose, extend_info_t *info,
  1460. int flags)
  1461. {
  1462. origin_circuit_t *best=NULL;
  1463. int need_uptime = (flags & CIRCLAUNCH_NEED_UPTIME) != 0;
  1464. int need_capacity = (flags & CIRCLAUNCH_NEED_CAPACITY) != 0;
  1465. int internal = (flags & CIRCLAUNCH_IS_INTERNAL) != 0;
  1466. const or_options_t *options = get_options();
  1467. /* Make sure we're not trying to create a onehop circ by
  1468. * cannibalization. */
  1469. tor_assert(!(flags & CIRCLAUNCH_ONEHOP_TUNNEL));
  1470. log_debug(LD_CIRC,
  1471. "Hunting for a circ to cannibalize: purpose %d, uptime %d, "
  1472. "capacity %d, internal %d",
  1473. purpose, need_uptime, need_capacity, internal);
  1474. SMARTLIST_FOREACH_BEGIN(circuit_get_global_list(), circuit_t *, circ_) {
  1475. if (CIRCUIT_IS_ORIGIN(circ_) &&
  1476. circ_->state == CIRCUIT_STATE_OPEN &&
  1477. !circ_->marked_for_close &&
  1478. circ_->purpose == CIRCUIT_PURPOSE_C_GENERAL &&
  1479. !circ_->timestamp_dirty) {
  1480. origin_circuit_t *circ = TO_ORIGIN_CIRCUIT(circ_);
  1481. if ((!need_uptime || circ->build_state->need_uptime) &&
  1482. (!need_capacity || circ->build_state->need_capacity) &&
  1483. (internal == circ->build_state->is_internal) &&
  1484. !circ->unusable_for_new_conns &&
  1485. circ->remaining_relay_early_cells &&
  1486. circ->build_state->desired_path_len == DEFAULT_ROUTE_LEN &&
  1487. !circ->build_state->onehop_tunnel &&
  1488. !circ->isolation_values_set) {
  1489. if (info) {
  1490. /* need to make sure we don't duplicate hops */
  1491. crypt_path_t *hop = circ->cpath;
  1492. const node_t *ri1 = node_get_by_id(info->identity_digest);
  1493. do {
  1494. const node_t *ri2;
  1495. if (tor_memeq(hop->extend_info->identity_digest,
  1496. info->identity_digest, DIGEST_LEN))
  1497. goto next;
  1498. if (ri1 &&
  1499. (ri2 = node_get_by_id(hop->extend_info->identity_digest))
  1500. && nodes_in_same_family(ri1, ri2))
  1501. goto next;
  1502. hop=hop->next;
  1503. } while (hop!=circ->cpath);
  1504. }
  1505. if (options->ExcludeNodes) {
  1506. /* Make sure no existing nodes in the circuit are excluded for
  1507. * general use. (This may be possible if StrictNodes is 0, and we
  1508. * thought we needed to use an otherwise excluded node for, say, a
  1509. * directory operation.) */
  1510. crypt_path_t *hop = circ->cpath;
  1511. do {
  1512. if (routerset_contains_extendinfo(options->ExcludeNodes,
  1513. hop->extend_info))
  1514. goto next;
  1515. hop = hop->next;
  1516. } while (hop != circ->cpath);
  1517. }
  1518. if (!best || (best->build_state->need_uptime && !need_uptime))
  1519. best = circ;
  1520. next: ;
  1521. }
  1522. }
  1523. }
  1524. SMARTLIST_FOREACH_END(circ_);
  1525. return best;
  1526. }
  1527. /**
  1528. * Check whether any of the origin circuits that are waiting to see if
  1529. * their guard is good enough to use can be upgraded to "ready". If so,
  1530. * return a new smartlist containing them. Otherwise return NULL.
  1531. */
  1532. smartlist_t *
  1533. circuit_find_circuits_to_upgrade_from_guard_wait(void)
  1534. {
  1535. /* Only if some circuit is actually waiting on an upgrade should we
  1536. * run the algorithm. */
  1537. if (! circuits_pending_other_guards ||
  1538. smartlist_len(circuits_pending_other_guards)==0)
  1539. return NULL;
  1540. /* Only if we have some origin circuiuts should we run the algorithm.
  1541. */
  1542. if (!global_origin_circuit_list)
  1543. return NULL;
  1544. /* Okay; we can pass our circuit list to entrynodes.c.*/
  1545. smartlist_t *result = smartlist_new();
  1546. int r = entry_guards_upgrade_waiting_circuits(get_guard_selection_info(),
  1547. global_origin_circuit_list,
  1548. result);
  1549. if (r && smartlist_len(result)) {
  1550. return result;
  1551. } else {
  1552. smartlist_free(result);
  1553. return NULL;
  1554. }
  1555. }
  1556. /** Return the number of hops in circuit's path. If circ has no entries,
  1557. * or is NULL, returns 0. */
  1558. int
  1559. circuit_get_cpath_len(origin_circuit_t *circ)
  1560. {
  1561. int n = 0;
  1562. if (circ && circ->cpath) {
  1563. crypt_path_t *cpath, *cpath_next = NULL;
  1564. for (cpath = circ->cpath; cpath_next != circ->cpath; cpath = cpath_next) {
  1565. cpath_next = cpath->next;
  1566. ++n;
  1567. }
  1568. }
  1569. return n;
  1570. }
  1571. /** Return the <b>hopnum</b>th hop in <b>circ</b>->cpath, or NULL if there
  1572. * aren't that many hops in the list. <b>hopnum</b> starts at 1.
  1573. * Returns NULL if <b>hopnum</b> is 0 or negative. */
  1574. crypt_path_t *
  1575. circuit_get_cpath_hop(origin_circuit_t *circ, int hopnum)
  1576. {
  1577. if (circ && circ->cpath && hopnum > 0) {
  1578. crypt_path_t *cpath, *cpath_next = NULL;
  1579. for (cpath = circ->cpath; cpath_next != circ->cpath; cpath = cpath_next) {
  1580. cpath_next = cpath->next;
  1581. if (--hopnum <= 0)
  1582. return cpath;
  1583. }
  1584. }
  1585. return NULL;
  1586. }
  1587. /** Go through the circuitlist; mark-for-close each circuit that starts
  1588. * at us but has not yet been used. */
  1589. void
  1590. circuit_mark_all_unused_circs(void)
  1591. {
  1592. SMARTLIST_FOREACH_BEGIN(circuit_get_global_list(), circuit_t *, circ) {
  1593. if (CIRCUIT_IS_ORIGIN(circ) &&
  1594. !circ->marked_for_close &&
  1595. !circ->timestamp_dirty)
  1596. circuit_mark_for_close(circ, END_CIRC_REASON_FINISHED);
  1597. }
  1598. SMARTLIST_FOREACH_END(circ);
  1599. }
  1600. /** Go through the circuitlist; for each circuit that starts at us
  1601. * and is dirty, frob its timestamp_dirty so we won't use it for any
  1602. * new streams.
  1603. *
  1604. * This is useful for letting the user change pseudonyms, so new
  1605. * streams will not be linkable to old streams.
  1606. */
  1607. void
  1608. circuit_mark_all_dirty_circs_as_unusable(void)
  1609. {
  1610. SMARTLIST_FOREACH_BEGIN(circuit_get_global_list(), circuit_t *, circ) {
  1611. if (CIRCUIT_IS_ORIGIN(circ) &&
  1612. !circ->marked_for_close &&
  1613. circ->timestamp_dirty) {
  1614. mark_circuit_unusable_for_new_conns(TO_ORIGIN_CIRCUIT(circ));
  1615. }
  1616. }
  1617. SMARTLIST_FOREACH_END(circ);
  1618. }
  1619. /** Mark <b>circ</b> to be closed next time we call
  1620. * circuit_close_all_marked(). Do any cleanup needed:
  1621. * - If state is onionskin_pending, remove circ from the onion_pending
  1622. * list.
  1623. * - If circ isn't open yet: call circuit_build_failed() if we're
  1624. * the origin, and in either case call circuit_rep_hist_note_result()
  1625. * to note stats.
  1626. * - If purpose is C_INTRODUCE_ACK_WAIT, report the intro point
  1627. * failure we just had to the hidden service client module.
  1628. * - If purpose is C_INTRODUCING and <b>reason</b> isn't TIMEOUT,
  1629. * report to the hidden service client module that the intro point
  1630. * we just tried may be unreachable.
  1631. * - Send appropriate destroys and edge_destroys for conns and
  1632. * streams attached to circ.
  1633. * - If circ->rend_splice is set (we are the midpoint of a joined
  1634. * rendezvous stream), then mark the other circuit to close as well.
  1635. */
  1636. MOCK_IMPL(void,
  1637. circuit_mark_for_close_, (circuit_t *circ, int reason, int line,
  1638. const char *file))
  1639. {
  1640. int orig_reason = reason; /* Passed to the controller */
  1641. assert_circuit_ok(circ);
  1642. tor_assert(line);
  1643. tor_assert(file);
  1644. if (circ->marked_for_close) {
  1645. log_warn(LD_BUG,
  1646. "Duplicate call to circuit_mark_for_close at %s:%d"
  1647. " (first at %s:%d)", file, line,
  1648. circ->marked_for_close_file, circ->marked_for_close);
  1649. return;
  1650. }
  1651. if (reason == END_CIRC_AT_ORIGIN) {
  1652. if (!CIRCUIT_IS_ORIGIN(circ)) {
  1653. log_warn(LD_BUG, "Specified 'at-origin' non-reason for ending circuit, "
  1654. "but circuit was not at origin. (called %s:%d, purpose=%d)",
  1655. file, line, circ->purpose);
  1656. }
  1657. reason = END_CIRC_REASON_NONE;
  1658. }
  1659. if (CIRCUIT_IS_ORIGIN(circ)) {
  1660. if (pathbias_check_close(TO_ORIGIN_CIRCUIT(circ), reason) == -1) {
  1661. /* Don't close it yet, we need to test it first */
  1662. return;
  1663. }
  1664. /* We don't send reasons when closing circuits at the origin. */
  1665. reason = END_CIRC_REASON_NONE;
  1666. }
  1667. if (reason & END_CIRC_REASON_FLAG_REMOTE)
  1668. reason &= ~END_CIRC_REASON_FLAG_REMOTE;
  1669. if (reason < END_CIRC_REASON_MIN_ || reason > END_CIRC_REASON_MAX_) {
  1670. if (!(orig_reason & END_CIRC_REASON_FLAG_REMOTE))
  1671. log_warn(LD_BUG, "Reason %d out of range at %s:%d", reason, file, line);
  1672. reason = END_CIRC_REASON_NONE;
  1673. }
  1674. circ->marked_for_close = line;
  1675. circ->marked_for_close_file = file;
  1676. circ->marked_for_close_reason = reason;
  1677. circ->marked_for_close_orig_reason = orig_reason;
  1678. if (!CIRCUIT_IS_ORIGIN(circ)) {
  1679. or_circuit_t *or_circ = TO_OR_CIRCUIT(circ);
  1680. if (or_circ->rend_splice) {
  1681. if (!or_circ->rend_splice->base_.marked_for_close) {
  1682. /* do this after marking this circuit, to avoid infinite recursion. */
  1683. circuit_mark_for_close(TO_CIRCUIT(or_circ->rend_splice), reason);
  1684. }
  1685. or_circ->rend_splice = NULL;
  1686. }
  1687. }
  1688. if (circuits_pending_close == NULL)
  1689. circuits_pending_close = smartlist_new();
  1690. smartlist_add(circuits_pending_close, circ);
  1691. }
  1692. /** Called immediately before freeing a marked circuit <b>circ</b> from
  1693. * circuit_free_all() while shutting down Tor; this is a safe-at-shutdown
  1694. * version of circuit_about_to_free(). It's important that it at least
  1695. * do circuitmux_detach_circuit() when appropriate.
  1696. */
  1697. static void
  1698. circuit_about_to_free_atexit(circuit_t *circ)
  1699. {
  1700. if (circ->n_chan) {
  1701. circuit_clear_cell_queue(circ, circ->n_chan);
  1702. circuitmux_detach_circuit(circ->n_chan->cmux, circ);
  1703. circuit_set_n_circid_chan(circ, 0, NULL);
  1704. }
  1705. if (! CIRCUIT_IS_ORIGIN(circ)) {
  1706. or_circuit_t *or_circ = TO_OR_CIRCUIT(circ);
  1707. if (or_circ->p_chan) {
  1708. circuit_clear_cell_queue(circ, or_circ->p_chan);
  1709. circuitmux_detach_circuit(or_circ->p_chan->cmux, circ);
  1710. circuit_set_p_circid_chan(or_circ, 0, NULL);
  1711. }
  1712. }
  1713. }
  1714. /** Called immediately before freeing a marked circuit <b>circ</b>.
  1715. * Disconnects the circuit from other data structures, launches events
  1716. * as appropriate, and performs other housekeeping.
  1717. */
  1718. static void
  1719. circuit_about_to_free(circuit_t *circ)
  1720. {
  1721. int reason = circ->marked_for_close_reason;
  1722. int orig_reason = circ->marked_for_close_orig_reason;
  1723. if (circ->state == CIRCUIT_STATE_ONIONSKIN_PENDING) {
  1724. onion_pending_remove(TO_OR_CIRCUIT(circ));
  1725. }
  1726. /* If the circuit ever became OPEN, we sent it to the reputation history
  1727. * module then. If it isn't OPEN, we send it there now to remember which
  1728. * links worked and which didn't.
  1729. */
  1730. if (circ->state != CIRCUIT_STATE_OPEN &&
  1731. circ->state != CIRCUIT_STATE_GUARD_WAIT) {
  1732. if (CIRCUIT_IS_ORIGIN(circ)) {
  1733. origin_circuit_t *ocirc = TO_ORIGIN_CIRCUIT(circ);
  1734. circuit_build_failed(ocirc); /* take actions if necessary */
  1735. circuit_rep_hist_note_result(ocirc);
  1736. }
  1737. }
  1738. if (circ->state == CIRCUIT_STATE_CHAN_WAIT) {
  1739. if (circuits_pending_chans)
  1740. smartlist_remove(circuits_pending_chans, circ);
  1741. }
  1742. if (CIRCUIT_IS_ORIGIN(circ)) {
  1743. control_event_circuit_status(TO_ORIGIN_CIRCUIT(circ),
  1744. (circ->state == CIRCUIT_STATE_OPEN ||
  1745. circ->state == CIRCUIT_STATE_GUARD_WAIT) ?
  1746. CIRC_EVENT_CLOSED:CIRC_EVENT_FAILED,
  1747. orig_reason);
  1748. }
  1749. if (circ->purpose == CIRCUIT_PURPOSE_C_INTRODUCE_ACK_WAIT) {
  1750. origin_circuit_t *ocirc = TO_ORIGIN_CIRCUIT(circ);
  1751. int timed_out = (reason == END_CIRC_REASON_TIMEOUT);
  1752. tor_assert(circ->state == CIRCUIT_STATE_OPEN);
  1753. tor_assert(ocirc->build_state->chosen_exit);
  1754. tor_assert(ocirc->rend_data);
  1755. if (orig_reason != END_CIRC_REASON_IP_NOW_REDUNDANT) {
  1756. /* treat this like getting a nack from it */
  1757. log_info(LD_REND, "Failed intro circ %s to %s (awaiting ack). %s",
  1758. safe_str_client(rend_data_get_address(ocirc->rend_data)),
  1759. safe_str_client(build_state_get_exit_nickname(ocirc->build_state)),
  1760. timed_out ? "Recording timeout." : "Removing from descriptor.");
  1761. rend_client_report_intro_point_failure(ocirc->build_state->chosen_exit,
  1762. ocirc->rend_data,
  1763. timed_out ?
  1764. INTRO_POINT_FAILURE_TIMEOUT :
  1765. INTRO_POINT_FAILURE_GENERIC);
  1766. }
  1767. } else if (circ->purpose == CIRCUIT_PURPOSE_C_INTRODUCING &&
  1768. reason != END_CIRC_REASON_TIMEOUT) {
  1769. origin_circuit_t *ocirc = TO_ORIGIN_CIRCUIT(circ);
  1770. if (ocirc->build_state->chosen_exit && ocirc->rend_data) {
  1771. if (orig_reason != END_CIRC_REASON_IP_NOW_REDUNDANT) {
  1772. log_info(LD_REND, "Failed intro circ %s to %s "
  1773. "(building circuit to intro point). "
  1774. "Marking intro point as possibly unreachable.",
  1775. safe_str_client(rend_data_get_address(ocirc->rend_data)),
  1776. safe_str_client(build_state_get_exit_nickname(
  1777. ocirc->build_state)));
  1778. rend_client_report_intro_point_failure(ocirc->build_state->chosen_exit,
  1779. ocirc->rend_data,
  1780. INTRO_POINT_FAILURE_UNREACHABLE);
  1781. }
  1782. }
  1783. }
  1784. if (circ->n_chan) {
  1785. circuit_clear_cell_queue(circ, circ->n_chan);
  1786. /* Only send destroy if the channel isn't closing anyway */
  1787. if (!CHANNEL_CONDEMNED(circ->n_chan)) {
  1788. channel_send_destroy(circ->n_circ_id, circ->n_chan, reason);
  1789. }
  1790. circuitmux_detach_circuit(circ->n_chan->cmux, circ);
  1791. circuit_set_n_circid_chan(circ, 0, NULL);
  1792. }
  1793. if (! CIRCUIT_IS_ORIGIN(circ)) {
  1794. or_circuit_t *or_circ = TO_OR_CIRCUIT(circ);
  1795. edge_connection_t *conn;
  1796. for (conn=or_circ->n_streams; conn; conn=conn->next_stream)
  1797. connection_edge_destroy(or_circ->p_circ_id, conn);
  1798. or_circ->n_streams = NULL;
  1799. while (or_circ->resolving_streams) {
  1800. conn = or_circ->resolving_streams;
  1801. or_circ->resolving_streams = conn->next_stream;
  1802. if (!conn->base_.marked_for_close) {
  1803. /* The client will see a DESTROY, and infer that the connections
  1804. * are closing because the circuit is getting torn down. No need
  1805. * to send an end cell. */
  1806. conn->edge_has_sent_end = 1;
  1807. conn->end_reason = END_STREAM_REASON_DESTROY;
  1808. conn->end_reason |= END_STREAM_REASON_FLAG_ALREADY_SENT_CLOSED;
  1809. connection_mark_for_close(TO_CONN(conn));
  1810. }
  1811. conn->on_circuit = NULL;
  1812. }
  1813. if (or_circ->p_chan) {
  1814. circuit_clear_cell_queue(circ, or_circ->p_chan);
  1815. /* Only send destroy if the channel isn't closing anyway */
  1816. if (!CHANNEL_CONDEMNED(or_circ->p_chan)) {
  1817. channel_send_destroy(or_circ->p_circ_id, or_circ->p_chan, reason);
  1818. }
  1819. circuitmux_detach_circuit(or_circ->p_chan->cmux, circ);
  1820. circuit_set_p_circid_chan(or_circ, 0, NULL);
  1821. }
  1822. } else {
  1823. origin_circuit_t *ocirc = TO_ORIGIN_CIRCUIT(circ);
  1824. edge_connection_t *conn;
  1825. for (conn=ocirc->p_streams; conn; conn=conn->next_stream)
  1826. connection_edge_destroy(circ->n_circ_id, conn);
  1827. ocirc->p_streams = NULL;
  1828. }
  1829. }
  1830. /** Given a marked circuit <b>circ</b>, aggressively free its cell queues to
  1831. * recover memory. */
  1832. static void
  1833. marked_circuit_free_cells(circuit_t *circ)
  1834. {
  1835. if (!circ->marked_for_close) {
  1836. log_warn(LD_BUG, "Called on non-marked circuit");
  1837. return;
  1838. }
  1839. cell_queue_clear(&circ->n_chan_cells);
  1840. if (circ->n_mux)
  1841. circuitmux_clear_num_cells(circ->n_mux, circ);
  1842. if (! CIRCUIT_IS_ORIGIN(circ)) {
  1843. or_circuit_t *orcirc = TO_OR_CIRCUIT(circ);
  1844. cell_queue_clear(&orcirc->p_chan_cells);
  1845. if (orcirc->p_mux)
  1846. circuitmux_clear_num_cells(orcirc->p_mux, circ);
  1847. }
  1848. }
  1849. static size_t
  1850. single_conn_free_bytes(connection_t *conn)
  1851. {
  1852. size_t result = 0;
  1853. if (conn->inbuf) {
  1854. result += buf_allocation(conn->inbuf);
  1855. buf_clear(conn->inbuf);
  1856. }
  1857. if (conn->outbuf) {
  1858. result += buf_allocation(conn->outbuf);
  1859. buf_clear(conn->outbuf);
  1860. }
  1861. if (conn->type == CONN_TYPE_DIR) {
  1862. dir_connection_t *dir_conn = TO_DIR_CONN(conn);
  1863. if (dir_conn->zlib_state) {
  1864. result += tor_zlib_state_size(dir_conn->zlib_state);
  1865. tor_zlib_free(dir_conn->zlib_state);
  1866. dir_conn->zlib_state = NULL;
  1867. }
  1868. }
  1869. return result;
  1870. }
  1871. /** Aggressively free buffer contents on all the buffers of all streams in the
  1872. * list starting at <b>stream</b>. Return the number of bytes recovered. */
  1873. static size_t
  1874. marked_circuit_streams_free_bytes(edge_connection_t *stream)
  1875. {
  1876. size_t result = 0;
  1877. for ( ; stream; stream = stream->next_stream) {
  1878. connection_t *conn = TO_CONN(stream);
  1879. result += single_conn_free_bytes(conn);
  1880. if (conn->linked_conn) {
  1881. result += single_conn_free_bytes(conn->linked_conn);
  1882. }
  1883. }
  1884. return result;
  1885. }
  1886. /** Aggressively free buffer contents on all the buffers of all streams on
  1887. * circuit <b>c</b>. Return the number of bytes recovered. */
  1888. static size_t
  1889. marked_circuit_free_stream_bytes(circuit_t *c)
  1890. {
  1891. if (CIRCUIT_IS_ORIGIN(c)) {
  1892. return marked_circuit_streams_free_bytes(TO_ORIGIN_CIRCUIT(c)->p_streams);
  1893. } else {
  1894. return marked_circuit_streams_free_bytes(TO_OR_CIRCUIT(c)->n_streams);
  1895. }
  1896. }
  1897. /** Return the number of cells used by the circuit <b>c</b>'s cell queues. */
  1898. STATIC size_t
  1899. n_cells_in_circ_queues(const circuit_t *c)
  1900. {
  1901. size_t n = c->n_chan_cells.n;
  1902. if (! CIRCUIT_IS_ORIGIN(c)) {
  1903. circuit_t *cc = (circuit_t *) c;
  1904. n += TO_OR_CIRCUIT(cc)->p_chan_cells.n;
  1905. }
  1906. return n;
  1907. }
  1908. /**
  1909. * Return the age of the oldest cell queued on <b>c</b>, in milliseconds.
  1910. * Return 0 if there are no cells queued on c. Requires that <b>now</b> be
  1911. * the current time in milliseconds since the epoch, truncated.
  1912. *
  1913. * This function will return incorrect results if the oldest cell queued on
  1914. * the circuit is older than 2**32 msec (about 49 days) old.
  1915. */
  1916. STATIC uint32_t
  1917. circuit_max_queued_cell_age(const circuit_t *c, uint32_t now)
  1918. {
  1919. uint32_t age = 0;
  1920. packed_cell_t *cell;
  1921. if (NULL != (cell = TOR_SIMPLEQ_FIRST(&c->n_chan_cells.head)))
  1922. age = now - cell->inserted_time;
  1923. if (! CIRCUIT_IS_ORIGIN(c)) {
  1924. const or_circuit_t *orcirc = CONST_TO_OR_CIRCUIT(c);
  1925. if (NULL != (cell = TOR_SIMPLEQ_FIRST(&orcirc->p_chan_cells.head))) {
  1926. uint32_t age2 = now - cell->inserted_time;
  1927. if (age2 > age)
  1928. return age2;
  1929. }
  1930. }
  1931. return age;
  1932. }
  1933. /** Return the age in milliseconds of the oldest buffer chunk on <b>conn</b>,
  1934. * where age is taken in milliseconds before the time <b>now</b> (in truncated
  1935. * absolute monotonic msec). If the connection has no data, treat
  1936. * it as having age zero.
  1937. **/
  1938. static uint32_t
  1939. conn_get_buffer_age(const connection_t *conn, uint32_t now)
  1940. {
  1941. uint32_t age = 0, age2;
  1942. if (conn->outbuf) {
  1943. age2 = buf_get_oldest_chunk_timestamp(conn->outbuf, now);
  1944. if (age2 > age)
  1945. age = age2;
  1946. }
  1947. if (conn->inbuf) {
  1948. age2 = buf_get_oldest_chunk_timestamp(conn->inbuf, now);
  1949. if (age2 > age)
  1950. age = age2;
  1951. }
  1952. return age;
  1953. }
  1954. /** Return the age in milliseconds of the oldest buffer chunk on any stream in
  1955. * the linked list <b>stream</b>, where age is taken in milliseconds before
  1956. * the time <b>now</b> (in truncated milliseconds since the epoch). */
  1957. static uint32_t
  1958. circuit_get_streams_max_data_age(const edge_connection_t *stream, uint32_t now)
  1959. {
  1960. uint32_t age = 0, age2;
  1961. for (; stream; stream = stream->next_stream) {
  1962. const connection_t *conn = TO_CONN(stream);
  1963. age2 = conn_get_buffer_age(conn, now);
  1964. if (age2 > age)
  1965. age = age2;
  1966. if (conn->linked_conn) {
  1967. age2 = conn_get_buffer_age(conn->linked_conn, now);
  1968. if (age2 > age)
  1969. age = age2;
  1970. }
  1971. }
  1972. return age;
  1973. }
  1974. /** Return the age in milliseconds of the oldest buffer chunk on any stream
  1975. * attached to the circuit <b>c</b>, where age is taken in milliseconds before
  1976. * the time <b>now</b> (in truncated milliseconds since the epoch). */
  1977. STATIC uint32_t
  1978. circuit_max_queued_data_age(const circuit_t *c, uint32_t now)
  1979. {
  1980. if (CIRCUIT_IS_ORIGIN(c)) {
  1981. return circuit_get_streams_max_data_age(
  1982. CONST_TO_ORIGIN_CIRCUIT(c)->p_streams, now);
  1983. } else {
  1984. return circuit_get_streams_max_data_age(
  1985. CONST_TO_OR_CIRCUIT(c)->n_streams, now);
  1986. }
  1987. }
  1988. /** Return the age of the oldest cell or stream buffer chunk on the circuit
  1989. * <b>c</b>, where age is taken in milliseconds before the time <b>now</b> (in
  1990. * truncated milliseconds since the epoch). */
  1991. STATIC uint32_t
  1992. circuit_max_queued_item_age(const circuit_t *c, uint32_t now)
  1993. {
  1994. uint32_t cell_age = circuit_max_queued_cell_age(c, now);
  1995. uint32_t data_age = circuit_max_queued_data_age(c, now);
  1996. if (cell_age > data_age)
  1997. return cell_age;
  1998. else
  1999. return data_age;
  2000. }
  2001. /** Helper to sort a list of circuit_t by age of oldest item, in descending
  2002. * order. */
  2003. static int
  2004. circuits_compare_by_oldest_queued_item_(const void **a_, const void **b_)
  2005. {
  2006. const circuit_t *a = *a_;
  2007. const circuit_t *b = *b_;
  2008. uint32_t age_a = a->age_tmp;
  2009. uint32_t age_b = b->age_tmp;
  2010. if (age_a < age_b)
  2011. return 1;
  2012. else if (age_a == age_b)
  2013. return 0;
  2014. else
  2015. return -1;
  2016. }
  2017. static uint32_t now_ms_for_buf_cmp;
  2018. /** Helper to sort a list of circuit_t by age of oldest item, in descending
  2019. * order. */
  2020. static int
  2021. conns_compare_by_buffer_age_(const void **a_, const void **b_)
  2022. {
  2023. const connection_t *a = *a_;
  2024. const connection_t *b = *b_;
  2025. time_t age_a = conn_get_buffer_age(a, now_ms_for_buf_cmp);
  2026. time_t age_b = conn_get_buffer_age(b, now_ms_for_buf_cmp);
  2027. if (age_a < age_b)
  2028. return 1;
  2029. else if (age_a == age_b)
  2030. return 0;
  2031. else
  2032. return -1;
  2033. }
  2034. #define FRACTION_OF_DATA_TO_RETAIN_ON_OOM 0.90
  2035. /** We're out of memory for cells, having allocated <b>current_allocation</b>
  2036. * bytes' worth. Kill the 'worst' circuits until we're under
  2037. * FRACTION_OF_DATA_TO_RETAIN_ON_OOM of our maximum usage. */
  2038. void
  2039. circuits_handle_oom(size_t current_allocation)
  2040. {
  2041. smartlist_t *circlist;
  2042. smartlist_t *connection_array = get_connection_array();
  2043. int conn_idx;
  2044. size_t mem_to_recover;
  2045. size_t mem_recovered=0;
  2046. int n_circuits_killed=0;
  2047. int n_dirconns_killed=0;
  2048. uint32_t now_ms;
  2049. log_notice(LD_GENERAL, "We're low on memory. Killing circuits with "
  2050. "over-long queues. (This behavior is controlled by "
  2051. "MaxMemInQueues.)");
  2052. {
  2053. size_t mem_target = (size_t)(get_options()->MaxMemInQueues *
  2054. FRACTION_OF_DATA_TO_RETAIN_ON_OOM);
  2055. if (current_allocation <= mem_target)
  2056. return;
  2057. mem_to_recover = current_allocation - mem_target;
  2058. }
  2059. now_ms = (uint32_t)monotime_coarse_absolute_msec();
  2060. circlist = circuit_get_global_list();
  2061. SMARTLIST_FOREACH_BEGIN(circlist, circuit_t *, circ) {
  2062. circ->age_tmp = circuit_max_queued_item_age(circ, now_ms);
  2063. } SMARTLIST_FOREACH_END(circ);
  2064. /* This is O(n log n); there are faster algorithms we could use instead.
  2065. * Let's hope this doesn't happen enough to be in the critical path. */
  2066. smartlist_sort(circlist, circuits_compare_by_oldest_queued_item_);
  2067. /* Fix up the indices before we run into trouble */
  2068. SMARTLIST_FOREACH_BEGIN(circlist, circuit_t *, circ) {
  2069. circ->global_circuitlist_idx = circ_sl_idx;
  2070. } SMARTLIST_FOREACH_END(circ);
  2071. /* Now sort the connection array ... */
  2072. now_ms_for_buf_cmp = now_ms;
  2073. smartlist_sort(connection_array, conns_compare_by_buffer_age_);
  2074. now_ms_for_buf_cmp = 0;
  2075. /* Fix up the connection array to its new order. */
  2076. SMARTLIST_FOREACH_BEGIN(connection_array, connection_t *, conn) {
  2077. conn->conn_array_index = conn_sl_idx;
  2078. } SMARTLIST_FOREACH_END(conn);
  2079. /* Okay, now the worst circuits and connections are at the front of their
  2080. * respective lists. Let's mark them, and reclaim their storage
  2081. * aggressively. */
  2082. conn_idx = 0;
  2083. SMARTLIST_FOREACH_BEGIN(circlist, circuit_t *, circ) {
  2084. size_t n;
  2085. size_t freed;
  2086. /* Free storage in any non-linked directory connections that have buffered
  2087. * data older than this circuit. */
  2088. while (conn_idx < smartlist_len(connection_array)) {
  2089. connection_t *conn = smartlist_get(connection_array, conn_idx);
  2090. uint32_t conn_age = conn_get_buffer_age(conn, now_ms);
  2091. if (conn_age < circ->age_tmp) {
  2092. break;
  2093. }
  2094. if (conn->type == CONN_TYPE_DIR && conn->linked_conn == NULL) {
  2095. if (!conn->marked_for_close)
  2096. connection_mark_for_close(conn);
  2097. mem_recovered += single_conn_free_bytes(conn);
  2098. ++n_dirconns_killed;
  2099. if (mem_recovered >= mem_to_recover)
  2100. goto done_recovering_mem;
  2101. }
  2102. ++conn_idx;
  2103. }
  2104. /* Now, kill the circuit. */
  2105. n = n_cells_in_circ_queues(circ);
  2106. if (! circ->marked_for_close) {
  2107. circuit_mark_for_close(circ, END_CIRC_REASON_RESOURCELIMIT);
  2108. }
  2109. marked_circuit_free_cells(circ);
  2110. freed = marked_circuit_free_stream_bytes(circ);
  2111. ++n_circuits_killed;
  2112. mem_recovered += n * packed_cell_mem_cost();
  2113. mem_recovered += freed;
  2114. if (mem_recovered >= mem_to_recover)
  2115. goto done_recovering_mem;
  2116. } SMARTLIST_FOREACH_END(circ);
  2117. done_recovering_mem:
  2118. log_notice(LD_GENERAL, "Removed "U64_FORMAT" bytes by killing %d circuits; "
  2119. "%d circuits remain alive. Also killed %d non-linked directory "
  2120. "connections.",
  2121. U64_PRINTF_ARG(mem_recovered),
  2122. n_circuits_killed,
  2123. smartlist_len(circlist) - n_circuits_killed,
  2124. n_dirconns_killed);
  2125. }
  2126. /** Verify that cpath layer <b>cp</b> has all of its invariants
  2127. * correct. Trigger an assert if anything is invalid.
  2128. */
  2129. void
  2130. assert_cpath_layer_ok(const crypt_path_t *cp)
  2131. {
  2132. // tor_assert(cp->addr); /* these are zero for rendezvous extra-hops */
  2133. // tor_assert(cp->port);
  2134. tor_assert(cp);
  2135. tor_assert(cp->magic == CRYPT_PATH_MAGIC);
  2136. switch (cp->state)
  2137. {
  2138. case CPATH_STATE_OPEN:
  2139. tor_assert(cp->f_crypto);
  2140. tor_assert(cp->b_crypto);
  2141. /* fall through */
  2142. case CPATH_STATE_CLOSED:
  2143. /*XXXX Assert that there's no handshake_state either. */
  2144. tor_assert(!cp->rend_dh_handshake_state);
  2145. break;
  2146. case CPATH_STATE_AWAITING_KEYS:
  2147. /* tor_assert(cp->dh_handshake_state); */
  2148. break;
  2149. default:
  2150. log_fn(LOG_ERR, LD_BUG, "Unexpected state %d", cp->state);
  2151. tor_assert(0);
  2152. }
  2153. tor_assert(cp->package_window >= 0);
  2154. tor_assert(cp->deliver_window >= 0);
  2155. }
  2156. /** Verify that cpath <b>cp</b> has all of its invariants
  2157. * correct. Trigger an assert if anything is invalid.
  2158. */
  2159. static void
  2160. assert_cpath_ok(const crypt_path_t *cp)
  2161. {
  2162. const crypt_path_t *start = cp;
  2163. do {
  2164. assert_cpath_layer_ok(cp);
  2165. /* layers must be in sequence of: "open* awaiting? closed*" */
  2166. if (cp != start) {
  2167. if (cp->state == CPATH_STATE_AWAITING_KEYS) {
  2168. tor_assert(cp->prev->state == CPATH_STATE_OPEN);
  2169. } else if (cp->state == CPATH_STATE_OPEN) {
  2170. tor_assert(cp->prev->state == CPATH_STATE_OPEN);
  2171. }
  2172. }
  2173. cp = cp->next;
  2174. tor_assert(cp);
  2175. } while (cp != start);
  2176. }
  2177. /** Verify that circuit <b>c</b> has all of its invariants
  2178. * correct. Trigger an assert if anything is invalid.
  2179. */
  2180. void
  2181. assert_circuit_ok(const circuit_t *c)
  2182. {
  2183. edge_connection_t *conn;
  2184. const or_circuit_t *or_circ = NULL;
  2185. const origin_circuit_t *origin_circ = NULL;
  2186. tor_assert(c);
  2187. tor_assert(c->magic == ORIGIN_CIRCUIT_MAGIC || c->magic == OR_CIRCUIT_MAGIC);
  2188. tor_assert(c->purpose >= CIRCUIT_PURPOSE_MIN_ &&
  2189. c->purpose <= CIRCUIT_PURPOSE_MAX_);
  2190. if (CIRCUIT_IS_ORIGIN(c))
  2191. origin_circ = CONST_TO_ORIGIN_CIRCUIT(c);
  2192. else
  2193. or_circ = CONST_TO_OR_CIRCUIT(c);
  2194. if (c->n_chan) {
  2195. tor_assert(!c->n_hop);
  2196. if (c->n_circ_id) {
  2197. /* We use the _impl variant here to make sure we don't fail on marked
  2198. * circuits, which would not be returned by the regular function. */
  2199. circuit_t *c2 = circuit_get_by_circid_channel_impl(c->n_circ_id,
  2200. c->n_chan, NULL);
  2201. tor_assert(c == c2);
  2202. }
  2203. }
  2204. if (or_circ && or_circ->p_chan) {
  2205. if (or_circ->p_circ_id) {
  2206. /* ibid */
  2207. circuit_t *c2 =
  2208. circuit_get_by_circid_channel_impl(or_circ->p_circ_id,
  2209. or_circ->p_chan, NULL);
  2210. tor_assert(c == c2);
  2211. }
  2212. }
  2213. if (or_circ)
  2214. for (conn = or_circ->n_streams; conn; conn = conn->next_stream)
  2215. tor_assert(conn->base_.type == CONN_TYPE_EXIT);
  2216. tor_assert(c->deliver_window >= 0);
  2217. tor_assert(c->package_window >= 0);
  2218. if (c->state == CIRCUIT_STATE_OPEN ||
  2219. c->state == CIRCUIT_STATE_GUARD_WAIT) {
  2220. tor_assert(!c->n_chan_create_cell);
  2221. if (or_circ) {
  2222. tor_assert(or_circ->n_crypto);
  2223. tor_assert(or_circ->p_crypto);
  2224. tor_assert(or_circ->n_digest);
  2225. tor_assert(or_circ->p_digest);
  2226. }
  2227. }
  2228. if (c->state == CIRCUIT_STATE_CHAN_WAIT && !c->marked_for_close) {
  2229. tor_assert(circuits_pending_chans &&
  2230. smartlist_contains(circuits_pending_chans, c));
  2231. } else {
  2232. tor_assert(!circuits_pending_chans ||
  2233. !smartlist_contains(circuits_pending_chans, c));
  2234. }
  2235. if (origin_circ && origin_circ->cpath) {
  2236. assert_cpath_ok(origin_circ->cpath);
  2237. }
  2238. if (c->purpose == CIRCUIT_PURPOSE_REND_ESTABLISHED) {
  2239. tor_assert(or_circ);
  2240. if (!c->marked_for_close) {
  2241. tor_assert(or_circ->rend_splice);
  2242. tor_assert(or_circ->rend_splice->rend_splice == or_circ);
  2243. }
  2244. tor_assert(or_circ->rend_splice != or_circ);
  2245. } else {
  2246. tor_assert(!or_circ || !or_circ->rend_splice);
  2247. }
  2248. }